sync rostests to r44455
[reactos.git] / rostests / winetests / oleaut32 / vartest.c
1 /*
2 * VARIANT test program
3 *
4 * Copyright 1998 Jean-Claude Cote
5 * Copyright 2006 Google (Benjamin Arai)
6 *
7 * This library is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU Lesser General Public
9 * License as published by the Free Software Foundation; either
10 * version 2.1 of the License, or (at your option) any later version.
11 *
12 * This library is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 * Lesser General Public License for more details.
16 *
17 * You should have received a copy of the GNU Lesser General Public
18 * License along with this library; if not, write to the Free Software
19 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
20 */
21
22 #include <stdarg.h>
23 #include <stdio.h>
24 #include <math.h>
25 #include <float.h>
26
27 #include "windef.h"
28 #include "winbase.h"
29 #include "winsock.h"
30 #include "wine/test.h"
31 #include "winuser.h"
32 #include "wingdi.h"
33 #include "winnls.h"
34 #include "winerror.h"
35 #include "winnt.h"
36
37 #include "wtypes.h"
38 #include "oleauto.h"
39
40 static HMODULE hOleaut32;
41
42 static HRESULT (WINAPI *pVarUdateFromDate)(DATE,ULONG,UDATE*);
43 static HRESULT (WINAPI *pVarDateFromUdate)(UDATE*,ULONG,DATE*);
44 static INT (WINAPI *pSystemTimeToVariantTime)(LPSYSTEMTIME,double*);
45 static INT (WINAPI *pVariantTimeToSystemTime)(double,LPSYSTEMTIME);
46 static INT (WINAPI *pDosDateTimeToVariantTime)(USHORT,USHORT,double*);
47 static INT (WINAPI *pVariantTimeToDosDateTime)(double,USHORT*,USHORT *);
48
49 static const WCHAR sz12[] = {'1','2','\0'};
50 /* the strings are localized */
51 static WCHAR sz12_false[32];
52 static WCHAR sz12_true[32];
53
54 /* Get a conversion function ptr, return if function not available */
55 #define CHECKPTR(func) p##func = (void*)GetProcAddress(hOleaut32, #func); \
56 if (!p##func) { trace("function " # func " not available, not testing it\n"); return; }
57
58 /* Have IRecordInfo data type? */
59 static int HAVE_OLEAUT32_RECORD = 0;
60 /* Have I8/UI8 data type? */
61 static int HAVE_OLEAUT32_I8 = 0;
62 /* Is this an ancient version with support for only I2/I4/R4/R8/DATE? */
63 static int IS_ANCIENT = 0;
64
65 /* When comparing floating point values we cannot expect an exact match
66 * because the rounding errors depend on the exact algorithm.
67 */
68 #define EQ_DOUBLE(a,b) (fabs((a)-(b)) / (1.0+fabs(a)+fabs(b)) < 1e-14)
69 #define EQ_FLOAT(a,b) (fabs((a)-(b)) / (1.0+fabs(a)+fabs(b)) < 1e-7)
70
71 #define SKIPTESTS(a) if((a > VT_CLSID+10) && (a < VT_BSTR_BLOB-10)) continue
72
73 /* Allow our test macros to work for VT_NULL and VT_EMPTY too */
74 #define V_EMPTY(v) V_I4(v)
75 #define V_NULL(v) V_I4(v)
76
77 /* Size constraints for overflow tests */
78 #define I1_MAX 0x7f
79 #define I1_MIN ((-I1_MAX)-1)
80 #define UI1_MAX 0xff
81 #define UI1_MIN 0
82 #define I2_MAX 0x7fff
83 #define I2_MIN ((-I2_MAX)-1)
84 #define UI2_MAX 0xffff
85 #define UI2_MIN 0
86 #define I4_MAX 0x7fffffff
87 #define I4_MIN ((-I4_MAX)-1)
88 #define UI4_MAX 0xffffffff
89 #define UI4_MIN 0
90 #define I8_MAX (((LONGLONG)I4_MAX << 32) | UI4_MAX)
91 #define I8_MIN ((-I8_MAX)-1)
92 #define UI8_MAX (((ULONGLONG)UI4_MAX << 32) | UI4_MAX)
93 #define UI8_MIN 0
94 #define DATE_MAX 2958465
95 #define DATE_MIN -657434
96 #define R4_MAX FLT_MAX
97 #define R4_MIN FLT_MIN
98 #define R8_MAX DBL_MAX
99 #define R8_MIN DBL_MIN
100
101 static void init(void)
102 {
103 BSTR bstr;
104 HRESULT res;
105
106 res = VarBstrFromBool(VARIANT_TRUE, LANG_USER_DEFAULT, VAR_LOCALBOOL, &bstr);
107 ok(SUCCEEDED(res) && (lstrlenW(bstr) > 0),
108 "Expected localized string for 'True'\n");
109 /* lstrcpyW / lstrcatW do not work on win95 */
110 memcpy(sz12_true, sz12, sizeof(sz12));
111 if (bstr) memcpy(&sz12_true[2], bstr, SysStringByteLen(bstr) + sizeof(WCHAR));
112 SysFreeString(bstr);
113
114 res = VarBstrFromBool(VARIANT_FALSE, LANG_USER_DEFAULT, VAR_LOCALBOOL, &bstr);
115 ok(SUCCEEDED(res) && (lstrlenW(bstr) > 0),
116 "Expected localized string for 'False'\n");
117 memcpy(sz12_false, sz12, sizeof(sz12));
118 if (bstr) memcpy(&sz12_false[2], bstr, SysStringByteLen(bstr) + sizeof(WCHAR));
119 SysFreeString(bstr);
120
121 hOleaut32 = GetModuleHandle("oleaut32.dll");
122
123 /* Is a given function exported from oleaut32? */
124 #define HAVE_FUNC(func) ((void*)GetProcAddress(hOleaut32, #func) != NULL)
125
126 HAVE_OLEAUT32_I8 = HAVE_FUNC(VarI8FromI1);
127 if (!HAVE_OLEAUT32_I8)
128 skip("No support for I8 and UI8 data types\n");
129
130 HAVE_OLEAUT32_RECORD = HAVE_FUNC(SafeArraySetRecordInfo);
131 IS_ANCIENT = (!HAVE_FUNC(VarI1FromI2));
132
133 #undef HAVE_FUNC
134 }
135
136 /* Functions to set a DECIMAL */
137 static void setdec(DECIMAL* dec, BYTE scl, BYTE sgn, ULONG hi32, ULONG64 lo64)
138 {
139 S(U(*dec)).scale = scl;
140 S(U(*dec)).sign = sgn;
141 dec->Hi32 = hi32;
142 U1(*dec).Lo64 = lo64;
143 }
144
145 static void setdec64(DECIMAL* dec, BYTE scl, BYTE sgn, ULONG hi32, ULONG mid32, ULONG lo32)
146 {
147 S(U(*dec)).scale = scl;
148 S(U(*dec)).sign = sgn;
149 dec->Hi32 = hi32;
150 S1(U1(*dec)).Mid32 = mid32;
151 S1(U1(*dec)).Lo32 = lo32;
152 }
153
154 static inline int strcmpW( const WCHAR *str1, const WCHAR *str2 )
155 {
156 while (*str1 && (*str1 == *str2)) { str1++; str2++; }
157 return *str1 - *str2;
158 }
159
160 /* return the string text of a given variant type */
161 static char vtstr_buffer[16][256];
162 static int vtstr_current=0;
163 static const char *vtstr(int x)
164 {
165 switch(x) {
166 #define CASE(vt) case VT_##vt: return #vt
167 CASE(EMPTY);
168 CASE(NULL);
169 CASE(I2);
170 CASE(I4);
171 CASE(R4);
172 CASE(R8);
173 CASE(CY);
174 CASE(DATE);
175 CASE(BSTR);
176 CASE(DISPATCH);
177 CASE(ERROR);
178 CASE(BOOL);
179 CASE(VARIANT);
180 CASE(UNKNOWN);
181 CASE(DECIMAL);
182 CASE(I1);
183 CASE(UI1);
184 CASE(UI2);
185 CASE(UI4);
186 CASE(I8);
187 CASE(UI8);
188 CASE(INT);
189 CASE(UINT);
190 CASE(VOID);
191 CASE(HRESULT);
192 CASE(PTR);
193 CASE(SAFEARRAY);
194 CASE(CARRAY);
195 CASE(USERDEFINED);
196 CASE(LPSTR);
197 CASE(LPWSTR);
198 CASE(RECORD);
199 CASE(INT_PTR);
200 CASE(UINT_PTR);
201 CASE(FILETIME);
202 CASE(BLOB);
203 CASE(STREAM);
204 CASE(STORAGE);
205 CASE(STREAMED_OBJECT);
206 CASE(STORED_OBJECT);
207 CASE(BLOB_OBJECT);
208 CASE(CF);
209 CASE(CLSID);
210 CASE(VERSIONED_STREAM);
211 CASE(VECTOR);
212 CASE(ARRAY);
213 CASE(BYREF);
214 CASE(RESERVED);
215 CASE(ILLEGAL);
216 #undef CASE
217
218 case 0xfff:
219 return "VT_BSTR_BLOB/VT_ILLEGALMASKED/VT_TYPEMASK";
220
221 default:
222 vtstr_current %= sizeof(vtstr_buffer)/sizeof(*vtstr_buffer);
223 sprintf(vtstr_buffer[vtstr_current], "unknown variant type %d", x);
224 return vtstr_buffer[vtstr_current++];
225 }
226 }
227
228 static const char *variantstr( const VARIANT *var )
229 {
230 vtstr_current %= sizeof(vtstr_buffer)/sizeof(*vtstr_buffer);
231 switch(V_VT(var))
232 {
233 case VT_I1:
234 sprintf( vtstr_buffer[vtstr_current], "VT_I1(%d)", V_I1(var) ); break;
235 case VT_I2:
236 sprintf( vtstr_buffer[vtstr_current], "VT_I2(%d)", V_I2(var) ); break;
237 case VT_I4:
238 sprintf( vtstr_buffer[vtstr_current], "VT_I4(%d)", V_I4(var) ); break;
239 case VT_INT:
240 sprintf( vtstr_buffer[vtstr_current], "VT_INT(%d)", V_INT(var) ); break;
241 case VT_I8:
242 sprintf( vtstr_buffer[vtstr_current], "VT_I8(%x%08x)", (UINT)(V_I8(var) >> 32), (UINT)V_I8(var) ); break;
243 case VT_UI8:
244 sprintf( vtstr_buffer[vtstr_current], "VT_UI8(%x%08x)", (UINT)(V_UI8(var) >> 32), (UINT)V_UI8(var) ); break;
245 case VT_R4:
246 sprintf( vtstr_buffer[vtstr_current], "VT_R4(%g)", V_R4(var) ); break;
247 case VT_R8:
248 sprintf( vtstr_buffer[vtstr_current], "VT_R8(%g)", V_R8(var) ); break;
249 case VT_UI1:
250 sprintf( vtstr_buffer[vtstr_current], "VT_UI1(%u)", V_UI1(var) ); break;
251 case VT_UI2:
252 sprintf( vtstr_buffer[vtstr_current], "VT_UI2(%u)", V_UI2(var) ); break;
253 case VT_UI4:
254 sprintf( vtstr_buffer[vtstr_current], "VT_UI4(%u)", V_UI4(var) ); break;
255 case VT_UINT:
256 sprintf( vtstr_buffer[vtstr_current], "VT_UINT(%d)", V_UINT(var) ); break;
257 case VT_CY:
258 sprintf( vtstr_buffer[vtstr_current], "VT_CY(%x%08x)", S(V_CY(var)).Hi, S(V_CY(var)).Lo ); break;
259 case VT_DATE:
260 sprintf( vtstr_buffer[vtstr_current], "VT_DATE(%g)", V_DATE(var) ); break;
261 default:
262 return vtstr(V_VT(var));
263 }
264 return vtstr_buffer[vtstr_current++];
265 }
266
267 static BOOL is_expected_variant( const VARIANT *result, const VARIANT *expected )
268 {
269 if (V_VT(result) != V_VT(expected)) return FALSE;
270 switch(V_VT(expected))
271 {
272 case VT_EMPTY:
273 case VT_NULL:
274 return TRUE;
275
276 #define CASE(vt) case VT_##vt: return (V_##vt(result) == V_##vt(expected))
277 CASE(BOOL);
278 CASE(I1);
279 CASE(UI1);
280 CASE(I2);
281 CASE(UI2);
282 CASE(I4);
283 CASE(UI4);
284 CASE(I8);
285 CASE(UI8);
286 CASE(INT);
287 CASE(UINT);
288 #undef CASE
289
290 case VT_DATE:
291 return EQ_FLOAT(V_DATE(result), V_DATE(expected));
292 case VT_R4:
293 return EQ_FLOAT(V_R4(result), V_R4(expected));
294 case VT_R8:
295 return EQ_FLOAT(V_R8(result), V_R8(expected));
296 case VT_CY:
297 return (V_CY(result).int64 == V_CY(expected).int64);
298 case VT_BSTR:
299 return !lstrcmpW( V_BSTR(result), V_BSTR(expected) );
300 case VT_DECIMAL:
301 return !memcmp( &V_DECIMAL(result), &V_DECIMAL(expected), sizeof(DECIMAL) );
302 default:
303 ok(0, "unhandled variant type %s\n",vtstr(V_VT(expected)));
304 return 0;
305 }
306 }
307
308 static void test_var_call1( int line, HRESULT (WINAPI *func)(LPVARIANT,LPVARIANT),
309 VARIANT *arg, VARIANT *expected )
310 {
311 VARIANT old_arg = *arg;
312 VARIANT result;
313 HRESULT hres;
314
315 memset( &result, 0, sizeof(result) );
316 hres = func( arg, &result );
317 ok_(__FILE__,line)( hres == S_OK, "wrong result %x\n", hres );
318 if (hres == S_OK)
319 ok_(__FILE__,line)( is_expected_variant( &result, expected ),
320 "got %s expected %s\n", variantstr(&result), variantstr(expected) );
321 ok_(__FILE__,line)( is_expected_variant( arg, &old_arg ), "Modified argument %s / %s\n",
322 variantstr(&old_arg), variantstr(arg));
323 VariantClear( &result );
324 }
325
326 static void test_var_call2( int line, HRESULT (WINAPI *func)(LPVARIANT,LPVARIANT,LPVARIANT),
327 VARIANT *left, VARIANT *right, VARIANT *expected )
328 {
329 VARIANT old_left = *left, old_right = *right;
330 VARIANT result;
331 HRESULT hres;
332
333 memset( &result, 0, sizeof(result) );
334 hres = func( left, right, &result );
335 ok_(__FILE__,line)( hres == S_OK, "wrong result %x\n", hres );
336 if (hres == S_OK)
337 ok_(__FILE__,line)( is_expected_variant( &result, expected ),
338 "got %s expected %s\n", variantstr(&result), variantstr(expected) );
339 ok_(__FILE__,line)( is_expected_variant( left, &old_left ), "Modified left argument %s / %s\n",
340 variantstr(&old_left), variantstr(left));
341 ok_(__FILE__,line)( is_expected_variant( right, &old_right ), "Modified right argument %s / %s\n",
342 variantstr(&old_right), variantstr(right));
343 VariantClear( &result );
344 }
345
346
347 static void test_VariantInit(void)
348 {
349 VARIANTARG v1, v2;
350
351 /* Test that VariantInit() only sets the type */
352 memset(&v1, -1, sizeof(v1));
353 v2 = v1;
354 V_VT(&v2) = VT_EMPTY;
355 VariantInit(&v1);
356 ok(!memcmp(&v1, &v2, sizeof(v1)), "VariantInit() set extra fields\n");
357 }
358
359 /* All possible combinations of extra V_VT() flags */
360 static const VARTYPE ExtraFlags[16] =
361 {
362 0,
363 VT_VECTOR,
364 VT_ARRAY,
365 VT_BYREF,
366 VT_RESERVED,
367 VT_VECTOR|VT_ARRAY,
368 VT_VECTOR|VT_BYREF,
369 VT_VECTOR|VT_RESERVED,
370 VT_VECTOR|VT_ARRAY|VT_BYREF,
371 VT_VECTOR|VT_ARRAY|VT_RESERVED,
372 VT_VECTOR|VT_BYREF|VT_RESERVED,
373 VT_VECTOR|VT_ARRAY|VT_BYREF|VT_RESERVED,
374 VT_ARRAY|VT_BYREF,
375 VT_ARRAY|VT_RESERVED,
376 VT_ARRAY|VT_BYREF|VT_RESERVED,
377 VT_BYREF|VT_RESERVED,
378 };
379
380 /* Determine if a vt is valid for VariantClear() */
381 static int IsValidVariantClearVT(VARTYPE vt, VARTYPE extraFlags)
382 {
383 int ret = 0;
384
385 /* Only the following flags/types are valid */
386 if ((vt <= VT_LPWSTR || vt == VT_RECORD || vt == VT_CLSID) &&
387 vt != (VARTYPE)15 &&
388 (vt < (VARTYPE)24 || vt > (VARTYPE)31) &&
389 (!(extraFlags & (VT_BYREF|VT_ARRAY)) || vt > VT_NULL) &&
390 (extraFlags == 0 || extraFlags == VT_BYREF || extraFlags == VT_ARRAY ||
391 extraFlags == (VT_ARRAY|VT_BYREF)))
392 ret = 1; /* ok */
393
394 if ((vt == VT_RECORD && !HAVE_OLEAUT32_RECORD) ||
395 ((vt == VT_I8 || vt == VT_UI8) && !HAVE_OLEAUT32_I8))
396 ret = 0; /* Old versions of oleaut32 */
397 return ret;
398 }
399
400 typedef struct
401 {
402 const IUnknownVtbl *lpVtbl;
403 LONG ref;
404 LONG events;
405 } test_VariantClearImpl;
406
407 static HRESULT WINAPI VC_QueryInterface(LPUNKNOWN iface,REFIID riid,LPVOID *ppobj)
408 {
409 test_VariantClearImpl *This = (test_VariantClearImpl *)iface;
410 This->events |= 0x1;
411 return E_NOINTERFACE;
412 }
413
414 static ULONG WINAPI VC_AddRef(LPUNKNOWN iface) {
415 test_VariantClearImpl *This = (test_VariantClearImpl *)iface;
416 This->events |= 0x2;
417 return InterlockedIncrement(&This->ref);
418 }
419
420 static ULONG WINAPI VC_Release(LPUNKNOWN iface) {
421 test_VariantClearImpl *This = (test_VariantClearImpl *)iface;
422 /* static class, won't be freed */
423 This->events |= 0x4;
424 return InterlockedDecrement(&This->ref);
425 }
426
427 static const IUnknownVtbl test_VariantClear_vtbl = {
428 VC_QueryInterface,
429 VC_AddRef,
430 VC_Release,
431 };
432
433 static test_VariantClearImpl test_myVariantClearImpl = {&test_VariantClear_vtbl, 1, 0};
434
435 static void test_VariantClear(void)
436 {
437 HRESULT hres;
438 VARIANTARG v;
439 VARIANT v2;
440 size_t i;
441 LONG i4;
442 IUnknown *punk;
443
444 /* Crashes: Native does not test input for NULL, so neither does Wine */
445 if (0) hres = VariantClear(NULL);
446
447 /* Only the type field is set, to VT_EMPTY */
448 V_VT(&v) = VT_UI4;
449 V_UI4(&v) = ~0u;
450 hres = VariantClear(&v);
451 ok((hres == S_OK && V_VT(&v) == VT_EMPTY) ||
452 (IS_ANCIENT && hres == DISP_E_BADVARTYPE && V_VT(&v) == VT_UI4),
453 "VariantClear: Type set to %d, res %08x\n", V_VT(&v), hres);
454 ok(V_UI4(&v) == ~0u, "VariantClear: Overwrote value\n");
455
456 /* Test all possible V_VT values.
457 * Also demonstrates that null pointers in 'v' are not dereferenced.
458 * Individual variant tests should test VariantClear() with non-NULL values.
459 */
460 for (i = 0; i < sizeof(ExtraFlags)/sizeof(ExtraFlags[0]) && !IS_ANCIENT; i++)
461 {
462 VARTYPE vt;
463
464 for (vt = 0; vt <= VT_BSTR_BLOB; vt++)
465 {
466 HRESULT hExpected = DISP_E_BADVARTYPE;
467
468 SKIPTESTS(vt);
469
470 memset(&v, 0, sizeof(v));
471 V_VT(&v) = vt | ExtraFlags[i];
472
473 hres = VariantClear(&v);
474
475 if (IsValidVariantClearVT(vt, ExtraFlags[i]))
476 hExpected = S_OK;
477
478 ok(hres == hExpected, "VariantClear: expected 0x%X, got 0x%X for vt %d | 0x%X\n",
479 hExpected, hres, vt, ExtraFlags[i]);
480 }
481 }
482
483 /* Some BYREF tests with non-NULL ptrs */
484
485 /* VARIANT BYREF */
486 V_VT(&v2) = VT_I4;
487 V_I4(&v2) = 0x1234;
488 V_VT(&v) = VT_VARIANT | VT_BYREF;
489 V_VARIANTREF(&v) = &v2;
490
491 hres = VariantClear(&v);
492 ok(hres == S_OK, "ret %08x\n", hres);
493 ok(V_VT(&v) == 0, "vt %04x\n", V_VT(&v));
494 ok(V_VARIANTREF(&v) == &v2, "variant ref %p\n", V_VARIANTREF(&v2));
495 ok(V_VT(&v2) == VT_I4, "vt %04x\n", V_VT(&v2));
496 ok(V_I4(&v2) == 0x1234, "i4 %04x\n", V_I4(&v2));
497
498 /* I4 BYREF */
499 i4 = 0x4321;
500 V_VT(&v) = VT_I4 | VT_BYREF;
501 V_I4REF(&v) = &i4;
502
503 hres = VariantClear(&v);
504 ok(hres == S_OK, "ret %08x\n", hres);
505 ok(V_VT(&v) == 0, "vt %04x\n", V_VT(&v));
506 ok(V_I4REF(&v) == &i4, "i4 ref %p\n", V_I4REF(&v2));
507 ok(i4 == 0x4321, "i4 changed %08x\n", i4);
508
509
510 /* UNKNOWN */
511 V_VT(&v) = VT_UNKNOWN;
512 V_UNKNOWN(&v) = (IUnknown*)&test_myVariantClearImpl;
513 test_myVariantClearImpl.events = 0;
514 hres = VariantClear(&v);
515 ok(hres == S_OK, "ret %08x\n", hres);
516 ok(V_VT(&v) == 0, "vt %04x\n", V_VT(&v));
517 ok(V_UNKNOWN(&v) == (IUnknown*)&test_myVariantClearImpl, "unknown %p\n", V_UNKNOWN(&v));
518 /* Check that Release got called, but nothing else */
519 ok(test_myVariantClearImpl.events == 0x4, "Unexpected call. events %08x\n", test_myVariantClearImpl.events);
520
521 /* UNKNOWN BYREF */
522 punk = (IUnknown*)&test_myVariantClearImpl;
523 V_VT(&v) = VT_UNKNOWN | VT_BYREF;
524 V_UNKNOWNREF(&v) = &punk;
525 test_myVariantClearImpl.events = 0;
526 hres = VariantClear(&v);
527 ok(hres == S_OK, "ret %08x\n", hres);
528 ok(V_VT(&v) == 0, "vt %04x\n", V_VT(&v));
529 ok(V_UNKNOWNREF(&v) == &punk, "unknown ref %p\n", V_UNKNOWNREF(&v));
530 /* Check that nothing got called */
531 ok(test_myVariantClearImpl.events == 0, "Unexpected call. events %08x\n", test_myVariantClearImpl.events);
532
533 /* DISPATCH */
534 V_VT(&v) = VT_DISPATCH;
535 V_DISPATCH(&v) = (IDispatch*)&test_myVariantClearImpl;
536 test_myVariantClearImpl.events = 0;
537 hres = VariantClear(&v);
538 ok(hres == S_OK, "ret %08x\n", hres);
539 ok(V_VT(&v) == 0, "vt %04x\n", V_VT(&v));
540 ok(V_DISPATCH(&v) == (IDispatch*)&test_myVariantClearImpl, "dispatch %p\n", V_DISPATCH(&v));
541 /* Check that Release got called, but nothing else */
542 ok(test_myVariantClearImpl.events == 0x4, "Unexpected call. events %08x\n", test_myVariantClearImpl.events);
543
544 /* DISPATCH BYREF */
545 punk = (IUnknown*)&test_myVariantClearImpl;
546 V_VT(&v) = VT_DISPATCH | VT_BYREF;
547 V_DISPATCHREF(&v) = (IDispatch**)&punk;
548 test_myVariantClearImpl.events = 0;
549 hres = VariantClear(&v);
550 ok(hres == S_OK, "ret %08x\n", hres);
551 ok(V_VT(&v) == 0, "vt %04x\n", V_VT(&v));
552 ok(V_DISPATCHREF(&v) == (IDispatch**)&punk, "dispatch ref %p\n", V_DISPATCHREF(&v));
553 /* Check that nothing got called */
554 ok(test_myVariantClearImpl.events == 0, "Unexpected call. events %08x\n", test_myVariantClearImpl.events);
555 }
556
557 static void test_VariantCopy(void)
558 {
559 VARIANTARG vSrc, vDst;
560 VARTYPE vt;
561 size_t i;
562 HRESULT hres, hExpected;
563
564 /* Establish that the failure/other cases are dealt with. Individual tests
565 * for each type should verify that data is copied correctly, references
566 * are updated, etc.
567 */
568
569 /* vSrc == vDst */
570 for (i = 0; i < sizeof(ExtraFlags)/sizeof(ExtraFlags[0]) && !IS_ANCIENT; i++)
571 {
572 for (vt = 0; vt <= VT_BSTR_BLOB; vt++)
573 {
574 SKIPTESTS(vt);
575
576 memset(&vSrc, 0, sizeof(vSrc));
577 V_VT(&vSrc) = vt | ExtraFlags[i];
578
579 hExpected = DISP_E_BADVARTYPE;
580 /* src is allowed to be a VT_CLSID */
581 if (vt != VT_CLSID && IsValidVariantClearVT(vt, ExtraFlags[i]))
582 hExpected = S_OK;
583
584 hres = VariantCopy(&vSrc, &vSrc);
585
586 ok(hres == hExpected,
587 "Copy(src==dst): expected 0x%X, got 0x%X for src==dest vt %d|0x%X\n",
588 hExpected, hres, vt, ExtraFlags[i]);
589 }
590 }
591
592 /* Test that if VariantClear() fails on dest, the function fails. This also
593 * shows that dest is in fact cleared and not just overwritten
594 */
595 memset(&vSrc, 0, sizeof(vSrc));
596 V_VT(&vSrc) = VT_UI1;
597
598 for (i = 0; i < sizeof(ExtraFlags)/sizeof(ExtraFlags[0]) && !IS_ANCIENT; i++)
599 {
600 for (vt = 0; vt <= VT_BSTR_BLOB; vt++)
601 {
602 SKIPTESTS(vt);
603
604 hExpected = DISP_E_BADVARTYPE;
605
606 memset(&vDst, 0, sizeof(vDst));
607 V_VT(&vDst) = vt | ExtraFlags[i];
608
609 if (IsValidVariantClearVT(vt, ExtraFlags[i]))
610 hExpected = S_OK;
611
612 hres = VariantCopy(&vDst, &vSrc);
613
614 ok(hres == hExpected,
615 "Copy(bad dst): expected 0x%X, got 0x%X for dest vt %d|0x%X\n",
616 hExpected, hres, vt, ExtraFlags[i]);
617 if (hres == S_OK)
618 ok(V_VT(&vDst) == VT_UI1,
619 "Copy(bad dst): expected vt = VT_UI1, got %d\n", V_VT(&vDst));
620 }
621 }
622
623 /* Test that VariantClear() checks vSrc for validity before copying */
624 for (i = 0; i < sizeof(ExtraFlags)/sizeof(ExtraFlags[0]) && !IS_ANCIENT; i++)
625 {
626 for (vt = 0; vt <= VT_BSTR_BLOB; vt++)
627 {
628 SKIPTESTS(vt);
629
630 hExpected = DISP_E_BADVARTYPE;
631
632 memset(&vDst, 0, sizeof(vDst));
633 V_VT(&vDst) = VT_EMPTY;
634
635 memset(&vSrc, 0, sizeof(vSrc));
636 V_VT(&vSrc) = vt | ExtraFlags[i];
637
638 /* src is allowed to be a VT_CLSID */
639 if (vt != VT_CLSID && IsValidVariantClearVT(vt, ExtraFlags[i]))
640 hExpected = S_OK;
641
642 hres = VariantCopy(&vDst, &vSrc);
643
644 ok(hres == hExpected,
645 "Copy(bad src): expected 0x%X, got 0x%X for src vt %d|0x%X\n",
646 hExpected, hres, vt, ExtraFlags[i]);
647 if (hres == S_OK)
648 {
649 ok(V_VT(&vDst) == (vt|ExtraFlags[i]),
650 "Copy(bad src): expected vt = %d, got %d\n",
651 vt | ExtraFlags[i], V_VT(&vDst));
652 VariantClear(&vDst);
653 }
654 }
655 }
656
657 /* Test that copying a NULL BSTR results in an empty BSTR */
658 memset(&vDst, 0, sizeof(vDst));
659 V_VT(&vDst) = VT_EMPTY;
660 memset(&vSrc, 0, sizeof(vSrc));
661 V_VT(&vSrc) = VT_BSTR;
662 hres = VariantCopy(&vDst, &vSrc);
663 ok(hres == S_OK, "Copy(NULL BSTR): Failed to copy a NULL BSTR\n");
664 if (hres == S_OK)
665 {
666 ok((V_VT(&vDst) == VT_BSTR) && V_BSTR(&vDst),
667 "Copy(NULL BSTR): should have non-NULL result\n");
668 if ((V_VT(&vDst) == VT_BSTR) && V_BSTR(&vDst))
669 {
670 ok(*V_BSTR(&vDst) == 0, "Copy(NULL BSTR): result not empty\n");
671 }
672 VariantClear(&vDst);
673 }
674 }
675
676 /* Determine if a vt is valid for VariantCopyInd() */
677 static int IsValidVariantCopyIndVT(VARTYPE vt, VARTYPE extraFlags)
678 {
679 int ret = 0;
680
681 if ((extraFlags & VT_ARRAY) ||
682 (vt > VT_NULL && vt != (VARTYPE)15 && vt < VT_VOID &&
683 !(extraFlags & (VT_VECTOR|VT_RESERVED))))
684 {
685 ret = 1; /* ok */
686 }
687 return ret;
688 }
689
690 static void test_VariantCopyInd(void)
691 {
692 VARIANTARG vSrc, vDst, vRef, vRef2;
693 VARTYPE vt;
694 size_t i;
695 BYTE buffer[64];
696 HRESULT hres, hExpected;
697
698 memset(buffer, 0, sizeof(buffer));
699
700 /* vSrc == vDst */
701 for (i = 0; i < sizeof(ExtraFlags)/sizeof(ExtraFlags[0]) && !IS_ANCIENT; i++)
702 {
703 if (ExtraFlags[i] & VT_ARRAY)
704 continue; /* Native crashes on NULL safearray */
705
706 for (vt = 0; vt <= VT_BSTR_BLOB; vt++)
707 {
708 SKIPTESTS(vt);
709
710 memset(&vSrc, 0, sizeof(vSrc));
711 V_VT(&vSrc) = vt | ExtraFlags[i];
712
713 hExpected = DISP_E_BADVARTYPE;
714 if (!(ExtraFlags[i] & VT_BYREF))
715 {
716 /* if src is not by-reference, acts as VariantCopy() */
717 if (vt != VT_CLSID && IsValidVariantClearVT(vt, ExtraFlags[i]))
718 hExpected = S_OK;
719 }
720 else
721 {
722 if (vt == VT_SAFEARRAY || vt == VT_BSTR || vt == VT_UNKNOWN ||
723 vt == VT_DISPATCH || vt == VT_RECORD)
724 continue; /* Need valid ptrs for deep copies */
725
726 V_BYREF(&vSrc) = &buffer;
727 hExpected = E_INVALIDARG;
728
729 if ((vt == VT_I8 || vt == VT_UI8) &&
730 ExtraFlags[i] == VT_BYREF)
731 {
732 if (HAVE_OLEAUT32_I8)
733 hExpected = S_OK; /* Only valid if I8 is a known type */
734 }
735 else if (IsValidVariantCopyIndVT(vt, ExtraFlags[i]))
736 hExpected = S_OK;
737 }
738
739 hres = VariantCopyInd(&vSrc, &vSrc);
740
741 ok(hres == hExpected,
742 "CopyInd(src==dst): expected 0x%X, got 0x%X for src==dst vt %d|0x%X\n",
743 hExpected, hres, vt, ExtraFlags[i]);
744 }
745 }
746
747 /* Bad dest */
748 memset(&vSrc, 0, sizeof(vSrc));
749 V_VT(&vSrc) = VT_UI1|VT_BYREF;
750 V_BYREF(&vSrc) = &buffer;
751
752 for (i = 0; i < sizeof(ExtraFlags)/sizeof(ExtraFlags[0]) && !IS_ANCIENT; i++)
753 {
754 for (vt = 0; vt <= VT_BSTR_BLOB; vt++)
755 {
756 SKIPTESTS(vt);
757
758 memset(&vDst, 0, sizeof(vDst));
759 V_VT(&vDst) = vt | ExtraFlags[i];
760
761 hExpected = DISP_E_BADVARTYPE;
762
763 if (IsValidVariantClearVT(vt, ExtraFlags[i]))
764 hExpected = S_OK;
765
766 hres = VariantCopyInd(&vDst, &vSrc);
767
768 ok(hres == hExpected,
769 "CopyInd(bad dst): expected 0x%X, got 0x%X for dst vt %d|0x%X\n",
770 hExpected, hres, vt, ExtraFlags[i]);
771 if (hres == S_OK)
772 ok(V_VT(&vDst) == VT_UI1,
773 "CopyInd(bad dst): expected vt = VT_UI1, got %d\n", V_VT(&vDst));
774 }
775 }
776
777 /* bad src */
778 for (i = 0; i < sizeof(ExtraFlags)/sizeof(ExtraFlags[0]) && !IS_ANCIENT; i++)
779 {
780 if (ExtraFlags[i] & VT_ARRAY)
781 continue; /* Native crashes on NULL safearray */
782
783 for (vt = 0; vt <= VT_BSTR_BLOB; vt++)
784 {
785 SKIPTESTS(vt);
786
787 memset(&vDst, 0, sizeof(vDst));
788 V_VT(&vDst) = VT_EMPTY;
789
790 memset(&vSrc, 0, sizeof(vSrc));
791 V_VT(&vSrc) = vt | ExtraFlags[i];
792
793 hExpected = DISP_E_BADVARTYPE;
794 if (!(ExtraFlags[i] & VT_BYREF))
795 {
796 /* if src is not by-reference, acts as VariantCopy() */
797 if (vt != VT_CLSID && IsValidVariantClearVT(vt, ExtraFlags[i]))
798 hExpected = S_OK;
799 }
800 else
801 {
802 if (vt == VT_SAFEARRAY || vt == VT_BSTR || vt == VT_UNKNOWN ||
803 vt == VT_DISPATCH || vt == VT_RECORD)
804 continue; /* Need valid ptrs for deep copies, see vartype.c */
805
806 V_BYREF(&vSrc) = &buffer;
807
808 hExpected = E_INVALIDARG;
809
810 if ((vt == VT_I8 || vt == VT_UI8) &&
811 ExtraFlags[i] == VT_BYREF)
812 {
813 if (HAVE_OLEAUT32_I8)
814 hExpected = S_OK; /* Only valid if I8 is a known type */
815 }
816 else if (IsValidVariantCopyIndVT(vt, ExtraFlags[i]))
817 hExpected = S_OK;
818 }
819
820 hres = VariantCopyInd(&vDst, &vSrc);
821
822 ok(hres == hExpected,
823 "CopyInd(bad src): expected 0x%X, got 0x%X for src vt %d|0x%X\n",
824 hExpected, hres, vt, ExtraFlags[i]);
825 if (hres == S_OK)
826 {
827 if (vt == VT_VARIANT && ExtraFlags[i] == VT_BYREF)
828 {
829 /* Type of vDst should be the type of the referenced variant.
830 * Since we set the buffer to all zeros, its type should be
831 * VT_EMPTY.
832 */
833 ok(V_VT(&vDst) == VT_EMPTY,
834 "CopyInd(bad src): expected dst vt = VT_EMPTY, got %d|0x%X\n",
835 V_VT(&vDst) & VT_TYPEMASK, V_VT(&vDst) & ~VT_TYPEMASK);
836 }
837 else
838 {
839 ok(V_VT(&vDst) == (vt|(ExtraFlags[i] & ~VT_BYREF)),
840 "CopyInd(bad src): expected dst vt = %d|0x%X, got %d|0x%X\n",
841 vt, ExtraFlags[i] & ~VT_BYREF,
842 V_VT(&vDst) & VT_TYPEMASK, V_VT(&vDst) & ~VT_TYPEMASK);
843 }
844 VariantClear(&vDst);
845 }
846 }
847 }
848
849 /* By-reference variants are dereferenced */
850 V_VT(&vRef) = VT_UI1;
851 V_UI1(&vRef) = 0x77;
852 V_VT(&vSrc) = VT_VARIANT|VT_BYREF;
853 V_VARIANTREF(&vSrc) = &vRef;
854 VariantInit(&vDst);
855
856 hres = VariantCopyInd(&vDst, &vSrc);
857 ok(V_VT(&vDst) == VT_UI1 && V_UI1(&vDst) == 0x77,
858 "CopyInd(deref): expected dst vt = VT_UI1, val 0x77, got %d|0x%X, 0x%2X\n",
859 V_VT(&vDst) & VT_TYPEMASK, V_VT(&vDst) & ~VT_TYPEMASK, V_UI1(&vDst));
860
861 /* By-reference variant to a by-reference type succeeds */
862 V_VT(&vRef) = VT_UI1|VT_BYREF;
863 V_UI1REF(&vRef) = buffer; buffer[0] = 0x88;
864 V_VT(&vSrc) = VT_VARIANT|VT_BYREF;
865 V_VARIANTREF(&vSrc) = &vRef;
866 VariantInit(&vDst);
867
868 hres = VariantCopyInd(&vDst, &vSrc);
869 ok(V_VT(&vDst) == VT_UI1 && V_UI1(&vDst) == 0x88,
870 "CopyInd(deref): expected dst vt = VT_UI1, val 0x77, got %d|0x%X, 0x%2X\n",
871 V_VT(&vDst) & VT_TYPEMASK, V_VT(&vDst) & ~VT_TYPEMASK, V_UI1(&vDst));
872
873 /* But a by-reference variant to a by-reference variant fails */
874 V_VT(&vRef2) = VT_UI1;
875 V_UI1(&vRef2) = 0x77;
876 V_VT(&vRef) = VT_VARIANT|VT_BYREF;
877 V_VARIANTREF(&vRef) = &vRef2;
878 V_VT(&vSrc) = VT_VARIANT|VT_BYREF;
879 V_VARIANTREF(&vSrc) = &vRef;
880 VariantInit(&vDst);
881
882 hres = VariantCopyInd(&vDst, &vSrc);
883 ok(hres == E_INVALIDARG,
884 "CopyInd(ref->ref): expected E_INVALIDARG, got 0x%08x\n", hres);
885 }
886
887 static HRESULT (WINAPI *pVarParseNumFromStr)(OLECHAR*,LCID,ULONG,NUMPARSE*,BYTE*);
888
889 /* Macros for converting and testing the result of VarParseNumFromStr */
890 #define FAILDIG 255
891
892 static HRESULT convert_str( const char *str, INT dig, ULONG flags,
893 NUMPARSE *np, BYTE rgb[128], LCID lcid )
894 {
895 OLECHAR buff[128];
896 MultiByteToWideChar( CP_ACP,0, str, -1, buff, sizeof(buff)/sizeof(WCHAR) );
897 memset( rgb, FAILDIG, 128 );
898 memset( np, 255, sizeof(*np) );
899 np->cDig = dig;
900 np->dwInFlags = flags;
901 return pVarParseNumFromStr( buff, lcid, LOCALE_NOUSEROVERRIDE, np, rgb);
902 }
903
904 static void expect_NumFromStr( int line, HRESULT hres, NUMPARSE *np, INT a, ULONG b, ULONG c,
905 INT d, INT e, INT f )
906 {
907 if (hres == (HRESULT)S_OK)
908 {
909 ok_(__FILE__,line)(np->cDig == a, "Expected cDig = %d, got %d\n", a, np->cDig);
910 ok_(__FILE__,line)(np->dwInFlags == b, "Expected dwInFlags = 0x%x, got 0x%x\n", b, np->dwInFlags);
911 ok_(__FILE__,line)(np->dwOutFlags == c, "Expected dwOutFlags = 0x%x, got 0x%x\n", c, np->dwOutFlags);
912 ok_(__FILE__,line)(np->cchUsed == d, "Expected cchUsed = %d, got %d\n", d, np->cchUsed);
913 ok_(__FILE__,line)(np->nBaseShift == e, "Expected nBaseShift = %d, got %d\n", e, np->nBaseShift);
914 ok_(__FILE__,line)(np->nPwr10 == f, "Expected nPwr10 = %d, got %d\n", f, np->nPwr10);
915 }
916 }
917
918 #define CONVERTN(str,dig,flags) hres = convert_str( str, dig, flags, &np, rgb, lcid )
919 #define CONVERT(str,flags) CONVERTN(str,sizeof(rgb),flags)
920 #define EXPECT(a,b,c,d,e,f) expect_NumFromStr( __LINE__, hres, &np, a, b, c, d, e, f )
921 #define EXPECTRGB(a,b) ok(rgb[a] == b, "Digit[%d], expected %d, got %d\n", a, b, rgb[a])
922 #define EXPECTFAIL ok(hres == (HRESULT)DISP_E_TYPEMISMATCH, "Call succeeded, hres = %08x\n", hres)
923 #define EXPECT2(a,b) EXPECTRGB(0,a); EXPECTRGB(1,b)
924
925 static void test_VarParseNumFromStr(void)
926 {
927 HRESULT hres;
928 /* Ensure all tests are using the same locale characters for '$', ',' etc */
929 LCID lcid = MAKELCID(MAKELANGID(LANG_ENGLISH,SUBLANG_ENGLISH_US),SORT_DEFAULT);
930 NUMPARSE np;
931 BYTE rgb[128];
932
933 /** No flags **/
934
935 CHECKPTR(VarParseNumFromStr);
936
937 /* Consume a single digit */
938 CONVERT("7", 0);
939 EXPECT(1,0,0,1,0,0);
940 EXPECT2(7,FAILDIG);
941
942 /* cDig is not literal digits - zeros are suppressed and nPwr10 is increased */
943 CONVERT("10", 0);
944 EXPECT(1,0,0,2,0,1);
945 /* Note: Win32 writes the trailing zeros if they are within cDig's limits,
946 * but then excludes them from the returned cDig count.
947 * In our implementation we don't bother writing them at all.
948 */
949 EXPECTRGB(0, 1);
950
951 /* if cDig is too small and numbers follow, sets INEXACT */
952 CONVERTN("11",1, 0);
953 EXPECT(1,0,NUMPRS_INEXACT,2,0,1);
954 EXPECT2(1,FAILDIG);
955
956 /* Strips leading zeros */
957 CONVERT("01", 0);
958 EXPECT(1,0,0,2,0,0);
959 EXPECT2(1,FAILDIG);
960
961 /* Strips leading zeros */
962 CONVERTN("01",1, 0);
963 EXPECT(1,0,0,2,0,0);
964 EXPECT2(1,FAILDIG);
965
966
967 /* Fails on non digits */
968 CONVERT("a", 0);
969 EXPECTFAIL;
970 EXPECTRGB(0,FAILDIG);
971
972 /** NUMPRS_LEADING_WHITE/NUMPRS_TRAILING_WHITE **/
973
974 /* Without flag, fails on whitespace */
975 CONVERT(" 0", 0);
976 EXPECTFAIL;
977 EXPECTRGB(0,FAILDIG);
978
979
980 /* With flag, consumes whitespace */
981 CONVERT(" 0", NUMPRS_LEADING_WHITE);
982 EXPECT(1,NUMPRS_LEADING_WHITE,NUMPRS_LEADING_WHITE,2,0,0);
983 EXPECT2(0,FAILDIG);
984
985 /* Test TAB once, then assume it acts as space for all cases */
986 CONVERT("\t0", NUMPRS_LEADING_WHITE);
987 EXPECT(1,NUMPRS_LEADING_WHITE,NUMPRS_LEADING_WHITE,2,0,0);
988 EXPECT2(0,FAILDIG);
989
990
991 /* Doesn't pick up trailing whitespace without flag */
992 CONVERT("0 ", 0);
993 EXPECT(1,0,0,1,0,0);
994 EXPECT2(0,FAILDIG);
995
996 /* With flag, consumes trailing whitespace */
997 CONVERT("0 ", NUMPRS_TRAILING_WHITE);
998 EXPECT(1,NUMPRS_TRAILING_WHITE,NUMPRS_TRAILING_WHITE,2,0,0);
999 EXPECT2(0,FAILDIG);
1000
1001 /* Leading flag only consumes leading */
1002 CONVERT(" 0 ", NUMPRS_LEADING_WHITE);
1003 EXPECT(1,NUMPRS_LEADING_WHITE,NUMPRS_LEADING_WHITE,2,0,0);
1004 EXPECT2(0,FAILDIG);
1005
1006 /* Both flags consumes both */
1007 CONVERT(" 0 ", NUMPRS_LEADING_WHITE|NUMPRS_TRAILING_WHITE);
1008 EXPECT(1,NUMPRS_LEADING_WHITE|NUMPRS_TRAILING_WHITE,NUMPRS_LEADING_WHITE|NUMPRS_TRAILING_WHITE,3,0,0);
1009 EXPECT2(0,FAILDIG);
1010
1011 /** NUMPRS_LEADING_PLUS/NUMPRS_TRAILING_PLUS **/
1012
1013 /* Without flag, fails on + */
1014 CONVERT("+0", 0);
1015 EXPECTFAIL;
1016 EXPECTRGB(0,FAILDIG);
1017
1018 /* With flag, consumes + */
1019 CONVERT("+0", NUMPRS_LEADING_PLUS);
1020 EXPECT(1,NUMPRS_LEADING_PLUS,NUMPRS_LEADING_PLUS,2,0,0);
1021 EXPECT2(0,FAILDIG);
1022
1023 /* Without flag, doesn't consume trailing + */
1024 CONVERT("0+", 0);
1025 EXPECT(1,0,0,1,0,0);
1026 EXPECT2(0,FAILDIG);
1027
1028 /* With flag, consumes trailing + */
1029 CONVERT("0+", NUMPRS_TRAILING_PLUS);
1030 EXPECT(1,NUMPRS_TRAILING_PLUS,NUMPRS_TRAILING_PLUS,2,0,0);
1031 EXPECT2(0,FAILDIG);
1032
1033 /* With leading flag, doesn't consume trailing + */
1034 CONVERT("+0+", NUMPRS_LEADING_PLUS);
1035 EXPECT(1,NUMPRS_LEADING_PLUS,NUMPRS_LEADING_PLUS,2,0,0);
1036 EXPECT2(0,FAILDIG);
1037
1038 /* Trailing + doesn't get consumed if we specify both (unlike whitespace) */
1039 CONVERT("+0+", NUMPRS_LEADING_PLUS|NUMPRS_TRAILING_PLUS);
1040 EXPECT(1,NUMPRS_LEADING_PLUS|NUMPRS_TRAILING_PLUS,NUMPRS_LEADING_PLUS,2,0,0);
1041 EXPECT2(0,FAILDIG);
1042
1043 /** NUMPRS_LEADING_MINUS/NUMPRS_TRAILING_MINUS **/
1044
1045 /* Without flag, fails on - */
1046 CONVERT("-0", 0);
1047 EXPECTFAIL;
1048 EXPECTRGB(0,FAILDIG);
1049
1050 /* With flag, consumes - */
1051 CONVERT("-0", NUMPRS_LEADING_MINUS);
1052 EXPECT(1,NUMPRS_LEADING_MINUS,NUMPRS_NEG|NUMPRS_LEADING_MINUS,2,0,0);
1053 EXPECT2(0,FAILDIG);
1054
1055 /* Without flag, doesn't consume trailing - */
1056 CONVERT("0-", 0);
1057 EXPECT(1,0,0,1,0,0);
1058 EXPECT2(0,FAILDIG);
1059
1060 /* With flag, consumes trailing - */
1061 CONVERT("0-", NUMPRS_TRAILING_MINUS);
1062 EXPECT(1,NUMPRS_TRAILING_MINUS,NUMPRS_NEG|NUMPRS_TRAILING_MINUS,2,0,0);
1063 EXPECT2(0,FAILDIG);
1064
1065 /* With leading flag, doesn't consume trailing - */
1066 CONVERT("-0-", NUMPRS_LEADING_MINUS);
1067 EXPECT(1,NUMPRS_LEADING_MINUS,NUMPRS_NEG|NUMPRS_LEADING_MINUS,2,0,0);
1068 EXPECT2(0,FAILDIG);
1069
1070 /* Trailing - doesn't get consumed if we specify both (unlike whitespace) */
1071 CONVERT("-0-", NUMPRS_LEADING_MINUS|NUMPRS_TRAILING_MINUS);
1072 EXPECT(1,NUMPRS_LEADING_MINUS|NUMPRS_TRAILING_MINUS,NUMPRS_NEG|NUMPRS_LEADING_MINUS,2,0,0);
1073 EXPECT2(0,FAILDIG);
1074
1075 /** NUMPRS_HEX_OCT **/
1076
1077 /* Could be hex, octal or decimal - With flag reads as decimal */
1078 CONVERT("0", NUMPRS_HEX_OCT);
1079 EXPECT(1,NUMPRS_HEX_OCT,0,1,0,0);
1080 EXPECT2(0,FAILDIG);
1081
1082 /* Doesn't recognise hex in .asm syntax */
1083 CONVERT("0h", NUMPRS_HEX_OCT);
1084 EXPECT(1,NUMPRS_HEX_OCT,0,1,0,0);
1085 EXPECT2(0,FAILDIG);
1086
1087 /* Doesn't fail with valid leading string but no digits */
1088 CONVERT("0x", NUMPRS_HEX_OCT);
1089 EXPECT(1,NUMPRS_HEX_OCT,0,1,0,0);
1090 EXPECT2(0,FAILDIG);
1091
1092 /* Doesn't recognise hex format numbers at all! */
1093 CONVERT("0x0", NUMPRS_HEX_OCT);
1094 EXPECT(1,NUMPRS_HEX_OCT,0,1,0,0);
1095 EXPECT2(0,FAILDIG);
1096
1097 /* Doesn't recognise plain hex digits either */
1098 CONVERT("FE", NUMPRS_HEX_OCT);
1099 EXPECTFAIL;
1100 EXPECTRGB(0,FAILDIG);
1101
1102 /* Octal */
1103 CONVERT("0100", NUMPRS_HEX_OCT);
1104 EXPECT(1,NUMPRS_HEX_OCT,0,4,0,2);
1105 EXPECTRGB(0,1);
1106 EXPECTRGB(1,0);
1107 EXPECTRGB(2,0);
1108 EXPECTRGB(3,FAILDIG);
1109
1110 /* VB hex */
1111 CONVERT("&HF800", NUMPRS_HEX_OCT);
1112 EXPECT(4,NUMPRS_HEX_OCT,0x40,6,4,0);
1113 EXPECTRGB(0,15);
1114 EXPECTRGB(1,8);
1115 EXPECTRGB(2,0);
1116 EXPECTRGB(3,0);
1117 EXPECTRGB(4,FAILDIG);
1118
1119 /* VB hex lower case and leading zero */
1120 CONVERT("&h0abcdef", NUMPRS_HEX_OCT);
1121 EXPECT(6,NUMPRS_HEX_OCT,0x40,9,4,0);
1122 EXPECTRGB(0,10);
1123 EXPECTRGB(1,11);
1124 EXPECTRGB(2,12);
1125 EXPECTRGB(3,13);
1126 EXPECTRGB(4,14);
1127 EXPECTRGB(5,15);
1128 EXPECTRGB(6,FAILDIG);
1129
1130 /* VB oct */
1131 CONVERT("&O300", NUMPRS_HEX_OCT);
1132 EXPECT(3,NUMPRS_HEX_OCT,0x40,5,3,0);
1133 EXPECTRGB(0,3);
1134 EXPECTRGB(1,0);
1135 EXPECTRGB(2,0);
1136 EXPECTRGB(3,FAILDIG);
1137
1138 /* VB oct lower case and leading zero */
1139 CONVERT("&o0777", NUMPRS_HEX_OCT);
1140 EXPECT(3,NUMPRS_HEX_OCT,0x40,6,3,0);
1141 EXPECTRGB(0,7);
1142 EXPECTRGB(1,7);
1143 EXPECTRGB(2,7);
1144 EXPECTRGB(3,FAILDIG);
1145
1146 /* VB oct char bigger than 7 */
1147 CONVERT("&o128", NUMPRS_HEX_OCT);
1148 /*
1149 Native versions 2.x of oleaut32 allow this to succeed: later versions and Wine don't
1150 EXPECTFAIL;
1151 EXPECTRGB(0,FAILDIG);
1152 */
1153 /** NUMPRS_PARENS **/
1154
1155 /* Empty parens = error */
1156 CONVERT("()", NUMPRS_PARENS);
1157 EXPECTFAIL;
1158 EXPECTRGB(0,FAILDIG);
1159
1160 /* With flag, trailing parens not consumed */
1161 CONVERT("0()", NUMPRS_PARENS);
1162 EXPECT(1,NUMPRS_PARENS,0,1,0,0);
1163 EXPECT2(0,FAILDIG);
1164
1165 /* With flag, Number in parens made negative and parens consumed */
1166 CONVERT("(0)", NUMPRS_PARENS);
1167 EXPECT(1,NUMPRS_PARENS,NUMPRS_NEG|NUMPRS_PARENS,3,0,0);
1168 EXPECT2(0,FAILDIG);
1169
1170 /** NUMPRS_THOUSANDS **/
1171
1172 /* With flag, thousands sep. not needed */
1173 CONVERT("0", NUMPRS_THOUSANDS);
1174 EXPECT(1,NUMPRS_THOUSANDS,0,1,0,0);
1175 EXPECT2(0,FAILDIG);
1176
1177 /* With flag, thousands sep. and following digits consumed */
1178 CONVERT("1,000", NUMPRS_THOUSANDS);
1179 EXPECT(1,NUMPRS_THOUSANDS,NUMPRS_THOUSANDS,5,0,3);
1180 EXPECTRGB(0,1);
1181
1182 /* With flag and decimal point, thousands sep. but not decimals consumed */
1183 CONVERT("1,000.0", NUMPRS_THOUSANDS);
1184 EXPECT(1,NUMPRS_THOUSANDS,NUMPRS_THOUSANDS,5,0,3);
1185 EXPECTRGB(0,1);
1186
1187 /** NUMPRS_CURRENCY **/
1188
1189 /* Without flag, chokes on currency sign */
1190 CONVERT("$11", 0);
1191 EXPECTFAIL;
1192 EXPECTRGB(0,FAILDIG);
1193
1194 /* With flag, consumes currency sign */
1195 CONVERT("$11", NUMPRS_CURRENCY);
1196 EXPECT(2,NUMPRS_CURRENCY,NUMPRS_CURRENCY,3,0,0);
1197 EXPECT2(1,1);
1198 EXPECTRGB(2,FAILDIG);
1199
1200 /* With flag only, doesn't consume decimal point */
1201 CONVERT("$11.1", NUMPRS_CURRENCY);
1202 EXPECT(2,NUMPRS_CURRENCY,NUMPRS_CURRENCY,3,0,0);
1203 EXPECT2(1,1);
1204 EXPECTRGB(2,FAILDIG);
1205
1206 /* With flag and decimal flag, consumes decimal point and following digits */
1207 CONVERT("$11.1", NUMPRS_CURRENCY|NUMPRS_DECIMAL);
1208 EXPECT(3,NUMPRS_CURRENCY|NUMPRS_DECIMAL,NUMPRS_CURRENCY|NUMPRS_DECIMAL,5,0,-1);
1209 EXPECT2(1,1);
1210 EXPECTRGB(2,1);
1211 EXPECTRGB(3,FAILDIG);
1212
1213 /* Thousands flag can only be used with currency */
1214 CONVERT("$1,234", NUMPRS_CURRENCY|NUMPRS_THOUSANDS);
1215 EXPECT(4,NUMPRS_CURRENCY|NUMPRS_THOUSANDS,NUMPRS_CURRENCY|NUMPRS_THOUSANDS,6,0,0);
1216 EXPECT2(1,2);
1217 EXPECTRGB(2,3);
1218 EXPECTRGB(3,4);
1219 EXPECTRGB(4,FAILDIG);
1220
1221 /** NUMPRS_DECIMAL **/
1222
1223 /* With flag, consumes decimal point */
1224 CONVERT("1.1", NUMPRS_DECIMAL);
1225 EXPECT(2,NUMPRS_DECIMAL,NUMPRS_DECIMAL,3,0,-1);
1226 EXPECT2(1,1);
1227 EXPECTRGB(2,FAILDIG);
1228
1229 /* With flag, consumes decimal point. Skipping the decimal part is not an error */
1230 CONVERT("1.", NUMPRS_DECIMAL);
1231 EXPECT(1,NUMPRS_DECIMAL,NUMPRS_DECIMAL,2,0,0);
1232 EXPECT2(1,FAILDIG);
1233
1234 /* Consumes only one decimal point */
1235 CONVERT("1.1.", NUMPRS_DECIMAL);
1236 EXPECT(2,NUMPRS_DECIMAL,NUMPRS_DECIMAL,3,0,-1);
1237 EXPECT2(1,1);
1238 EXPECTRGB(2,FAILDIG);
1239
1240 /** NUMPRS_EXPONENT **/
1241
1242 /* Without flag, doesn't consume exponent */
1243 CONVERT("1e1", 0);
1244 EXPECT(1,0,0,1,0,0);
1245 EXPECT2(1,FAILDIG);
1246
1247 /* With flag, consumes exponent */
1248 CONVERT("1e1", NUMPRS_EXPONENT);
1249 EXPECT(1,NUMPRS_EXPONENT,NUMPRS_EXPONENT,3,0,1);
1250 EXPECT2(1,FAILDIG);
1251
1252 /* Negative exponents are accepted without flags */
1253 CONVERT("1e-1", NUMPRS_EXPONENT);
1254 EXPECT(1,NUMPRS_EXPONENT,NUMPRS_EXPONENT,4,0,-1);
1255 EXPECT2(1,FAILDIG);
1256
1257 /* As are positive exponents and leading exponent 0s */
1258 CONVERT("1e+01", NUMPRS_EXPONENT);
1259 EXPECT(1,NUMPRS_EXPONENT,NUMPRS_EXPONENT,5,0,1);
1260 EXPECT2(1,FAILDIG);
1261
1262 /* The same for zero exponents */
1263 CONVERT("1e0", NUMPRS_EXPONENT);
1264 EXPECT(1,NUMPRS_EXPONENT,NUMPRS_EXPONENT,3,0,0);
1265 EXPECT2(1,FAILDIG);
1266
1267 /* Sign on a zero exponent doesn't matter */
1268 CONVERT("1e+0", NUMPRS_EXPONENT);
1269 EXPECT(1,NUMPRS_EXPONENT,NUMPRS_EXPONENT,4,0,0);
1270 EXPECT2(1,FAILDIG);
1271
1272 CONVERT("1e-0", NUMPRS_EXPONENT);
1273 EXPECT(1,NUMPRS_EXPONENT,NUMPRS_EXPONENT,4,0,0);
1274 EXPECT2(1,FAILDIG);
1275
1276 /* Doesn't consume a real number exponent */
1277 CONVERT("1e1.", NUMPRS_EXPONENT);
1278 EXPECT(1,NUMPRS_EXPONENT,NUMPRS_EXPONENT,3,0,1);
1279 EXPECT2(1,FAILDIG);
1280
1281 /* Powers of 10 are calculated from the position of any decimal point */
1282 CONVERT("1.5e20", NUMPRS_EXPONENT|NUMPRS_DECIMAL);
1283 EXPECT(2,NUMPRS_EXPONENT|NUMPRS_DECIMAL,NUMPRS_EXPONENT|NUMPRS_DECIMAL,6,0,19);
1284 EXPECT2(1,5);
1285
1286 CONVERT("1.5e-20", NUMPRS_EXPONENT|NUMPRS_DECIMAL);
1287 EXPECT(2,NUMPRS_EXPONENT|NUMPRS_DECIMAL,NUMPRS_EXPONENT|NUMPRS_DECIMAL,7,0,-21);
1288 EXPECT2(1,5);
1289
1290 /** NUMPRS_USE_ALL **/
1291
1292 /* Flag expects all digits */
1293 CONVERT("0", NUMPRS_USE_ALL);
1294 EXPECT(1,NUMPRS_USE_ALL,0,1,0,0);
1295 EXPECT2(0,FAILDIG);
1296
1297 /* Rejects anything trailing */
1298 CONVERT("0 ", NUMPRS_USE_ALL);
1299 EXPECTFAIL;
1300 EXPECT2(0,FAILDIG);
1301
1302 /* Unless consumed by trailing flag */
1303 CONVERT("0 ", NUMPRS_USE_ALL|NUMPRS_TRAILING_WHITE);
1304 EXPECT(1,NUMPRS_USE_ALL|NUMPRS_TRAILING_WHITE,NUMPRS_TRAILING_WHITE,2,0,0);
1305 EXPECT2(0,FAILDIG);
1306
1307 /** Combinations **/
1308
1309 /* Leading whitespace and plus, doesn't consume trailing whitespace */
1310 CONVERT("+ 0 ", NUMPRS_LEADING_PLUS|NUMPRS_LEADING_WHITE);
1311 EXPECT(1,NUMPRS_LEADING_PLUS|NUMPRS_LEADING_WHITE,NUMPRS_LEADING_PLUS|NUMPRS_LEADING_WHITE,3,0,0);
1312 EXPECT2(0,FAILDIG);
1313
1314 /* Order of whitespace and plus is unimportant */
1315 CONVERT(" +0", NUMPRS_LEADING_PLUS|NUMPRS_LEADING_WHITE);
1316 EXPECT(1,NUMPRS_LEADING_PLUS|NUMPRS_LEADING_WHITE,NUMPRS_LEADING_PLUS|NUMPRS_LEADING_WHITE,3,0,0);
1317 EXPECT2(0,FAILDIG);
1318
1319 /* Leading whitespace can be repeated */
1320 CONVERT(" + 0", NUMPRS_LEADING_PLUS|NUMPRS_LEADING_WHITE);
1321 EXPECT(1,NUMPRS_LEADING_PLUS|NUMPRS_LEADING_WHITE,NUMPRS_LEADING_PLUS|NUMPRS_LEADING_WHITE,4,0,0);
1322 EXPECT2(0,FAILDIG);
1323
1324 /* But plus/minus etc. cannot */
1325 CONVERT("+ +0", NUMPRS_LEADING_PLUS|NUMPRS_LEADING_WHITE);
1326 EXPECTFAIL;
1327 EXPECTRGB(0,FAILDIG);
1328
1329 /* Inexact is not set if trailing zeros are removed */
1330 CONVERTN("10", 1, 0);
1331 EXPECT(1,0,0,2,0,1);
1332 EXPECT2(1,FAILDIG);
1333
1334 /* Make sure a leading 0 is stripped but decimals after it get read */
1335 CONVERT("-0.51", NUMPRS_STD);
1336 EXPECT(2,NUMPRS_STD,NUMPRS_NEG|NUMPRS_DECIMAL|NUMPRS_LEADING_MINUS,5,0,-2);
1337 EXPECT2(5,1);
1338
1339 /* Keep trailing zeros on whole number part of a decimal */
1340 CONVERT("10.1", NUMPRS_STD);
1341 EXPECT(3,NUMPRS_STD,NUMPRS_DECIMAL,4,0,-1);
1342 EXPECT2(1,0);
1343 EXPECTRGB(2,1);
1344
1345 /* Zeros after decimal sign */
1346 CONVERT("0.01", NUMPRS_STD);
1347 EXPECT(1,NUMPRS_STD,NUMPRS_DECIMAL,4,0,-2);
1348 EXPECT2(1,FAILDIG);
1349
1350 /* Trailing zeros after decimal part */
1351 CONVERT("0.10", NUMPRS_STD);
1352 EXPECT(1,NUMPRS_STD,NUMPRS_DECIMAL,4,0,-1);
1353 EXPECT2(1,0);
1354 }
1355
1356 static HRESULT (WINAPI *pVarNumFromParseNum)(NUMPARSE*,BYTE*,ULONG,VARIANT*);
1357
1358 /* Macros for converting and testing the result of VarNumFromParseNum */
1359 #define SETRGB(indx,val) if (!indx) memset(rgb, FAILDIG, sizeof(rgb)); rgb[indx] = val
1360 #undef CONVERT
1361 #define CONVERT(a,b,c,d,e,f,bits) \
1362 np.cDig = (a); np.dwInFlags = (b); np.dwOutFlags = (c); np.cchUsed = (d); \
1363 np.nBaseShift = (e); np.nPwr10 = (f); hres = pVarNumFromParseNum(&np, rgb, bits, &vOut)
1364 static const char *szFailOverflow = "Expected overflow, hres = %08x\n";
1365 #define EXPECT_OVERFLOW ok(hres == (HRESULT)DISP_E_OVERFLOW, szFailOverflow, hres)
1366 static const char *szFailOk = "Call failed, hres = %08x\n";
1367 #define EXPECT_OK ok(hres == (HRESULT)S_OK, szFailOk, hres); \
1368 if (hres == (HRESULT)S_OK)
1369 #define EXPECT_TYPE(typ) ok(V_VT(&vOut) == typ,"Expected Type = " #typ ", got %d\n", V_VT(&vOut))
1370 #define EXPECT_I1(val) EXPECT_OK { EXPECT_TYPE(VT_I1); \
1371 ok(V_I1(&vOut) == val, "Expected i1 = %d, got %d\n", (signed char)val, V_I1(&vOut)); }
1372 #define EXPECT_UI1(val) EXPECT_OK { EXPECT_TYPE(VT_UI1); \
1373 ok(V_UI1(&vOut) == val, "Expected ui1 = %d, got %d\n", (BYTE)val, V_UI1(&vOut)); }
1374 #define EXPECT_I2(val) EXPECT_OK { EXPECT_TYPE(VT_I2); \
1375 ok(V_I2(&vOut) == val, "Expected i2 = %d, got %d\n", (SHORT)val, V_I2(&vOut)); }
1376 #define EXPECT_UI2(val) EXPECT_OK { EXPECT_TYPE(VT_UI2); \
1377 ok(V_UI2(&vOut) == val, "Expected ui2 = %d, got %d\n", (USHORT)val, V_UI2(&vOut)); }
1378 #define EXPECT_I4(val) EXPECT_OK { EXPECT_TYPE(VT_I4); \
1379 ok(V_I4(&vOut) == val, "Expected i4 = %d, got %d\n", (LONG)val, V_I4(&vOut)); }
1380 #define EXPECT_UI4(val) EXPECT_OK { EXPECT_TYPE(VT_UI4); \
1381 ok(V_UI4(&vOut) == val, "Expected ui4 = %d, got %d\n", (ULONG)val, V_UI4(&vOut)); }
1382 #define EXPECT_I8(high,low) EXPECT_OK { EXPECT_TYPE(VT_I8); \
1383 ok(V_I8(&vOut) == ((((LONG64)(high))<<32)|(low)), "Expected i8 = %x%08x, got %x%08x\n", \
1384 (LONG)(high), (LONG)(low), (LONG)(V_I8(&vOut)>>32), (LONG)V_I8(&vOut) ); }
1385 #define EXPECT_UI8(val) EXPECT_OK { EXPECT_TYPE(VT_UI8); \
1386 ok(V_UI8(&vOut) == val, "Expected ui8 = 0x%x%08x, got 0x%x%08x\n", \
1387 (DWORD)((ULONG64)val >> 32), (DWORD)(ULONG64)val, (DWORD)(V_UI8(&vOut) >> 32), (DWORD)V_UI8(&vOut)); }
1388 #define EXPECT_R4(val) EXPECT_OK { EXPECT_TYPE(VT_R4); \
1389 ok(V_R4(&vOut) == val, "Expected r4 = %f, got %f\n", val, V_R4(&vOut)); }
1390 #define EXPECT_R8(val) EXPECT_OK { EXPECT_TYPE(VT_R8); \
1391 ok(V_R8(&vOut) == val, "Expected r8 = %g, got %g\n", val, V_R8(&vOut)); }
1392 #define CY_MULTIPLIER 10000
1393 #define EXPECT_CY(val) EXPECT_OK { EXPECT_TYPE(VT_CY); \
1394 ok(V_CY(&vOut).int64 == (LONG64)(val * CY_MULTIPLIER), "Expected r8 = 0x%x%08x, got 0x%x%08x\n", \
1395 (DWORD)((LONG64)val >> 23), (DWORD)(LONG64)val, (DWORD)(V_CY(&vOut).int64 >>32), (DWORD)V_CY(&vOut).int64); }
1396 #define EXPECT_DECIMAL(valHi, valMid, valLo) EXPECT_OK { EXPECT_TYPE(VT_DECIMAL); \
1397 ok((V_DECIMAL(&vOut).Hi32 == valHi) && (S1(U1(V_DECIMAL(&vOut))).Mid32 == valMid) && \
1398 (S1(U1(V_DECIMAL(&vOut))).Lo32 == valLo), \
1399 "Expected decimal = %x/0x%x%08x, got %x/0x%x%08x\n", valHi, valMid, valLo, \
1400 V_DECIMAL(&vOut).Hi32, S1(U1(V_DECIMAL(&vOut))).Mid32, S1(U1(V_DECIMAL(&vOut))).Lo32); }
1401
1402 static void test_VarNumFromParseNum(void)
1403 {
1404 HRESULT hres;
1405 NUMPARSE np;
1406 BYTE rgb[128];
1407 VARIANT vOut;
1408
1409 CHECKPTR(VarNumFromParseNum);
1410
1411 /* Convert the number 1 to different types */
1412 SETRGB(0, 1); CONVERT(1,0,0,1,0,0, VTBIT_I1); EXPECT_I1(1);
1413 SETRGB(0, 1); CONVERT(1,0,0,1,0,0, VTBIT_UI1); EXPECT_UI1(1);
1414 /* Prefers a signed type to unsigned of the same size */
1415 SETRGB(0, 1); CONVERT(1,0,0,1,0,0, VTBIT_I1|VTBIT_UI1); EXPECT_I1(1);
1416 /* But takes the smaller size if possible */
1417 SETRGB(0, 1); CONVERT(1,0,0,1,0,0, VTBIT_I2|VTBIT_UI1); EXPECT_UI1(1);
1418
1419 /* Try different integer sizes */
1420 #define INTEGER_VTBITS (VTBIT_I1|VTBIT_UI1|VTBIT_I2|VTBIT_UI2|VTBIT_I4|VTBIT_UI4|VTBIT_I8|VTBIT_UI8)
1421
1422 SETRGB(0, 1); CONVERT(1,0,0,1,0,0, INTEGER_VTBITS); EXPECT_I1(1);
1423 /* 127 */
1424 SETRGB(0, 1); SETRGB(1, 2); SETRGB(2, 7);
1425 CONVERT(3,0,0,3,0,0, INTEGER_VTBITS); EXPECT_I1(127);
1426 /* 128 */
1427 SETRGB(0, 1); SETRGB(1, 2); SETRGB(2, 8);
1428 CONVERT(3,0,0,3,0,0, INTEGER_VTBITS); EXPECT_UI1(128);
1429 /* 255 */
1430 SETRGB(0, 2); SETRGB(1, 5); SETRGB(2, 5);
1431 CONVERT(3,0,0,3,0,0, INTEGER_VTBITS); EXPECT_UI1(255);
1432 /* 256 */
1433 SETRGB(0, 2); SETRGB(1, 5); SETRGB(2, 6);
1434 CONVERT(3,0,0,3,0,0, INTEGER_VTBITS); EXPECT_I2(256);
1435 /* 32767 */
1436 SETRGB(0, 3); SETRGB(1, 2); SETRGB(2, 7); SETRGB(3, 6); SETRGB(4, 7);
1437 CONVERT(5,0,0,5,0,0, INTEGER_VTBITS); EXPECT_I2(32767);
1438 /* 32768 */
1439 SETRGB(0, 3); SETRGB(1, 2); SETRGB(2, 7); SETRGB(3, 6); SETRGB(4, 8);
1440 CONVERT(5,0,0,5,0,0, INTEGER_VTBITS); EXPECT_UI2(32768);
1441
1442 /* Assume the above pattern holds for remaining positive integers; test negative */
1443
1444 /* -128 */
1445 SETRGB(0, 1); SETRGB(1, 2); SETRGB(2, 8);
1446 CONVERT(3,0,NUMPRS_NEG,3,0,0, INTEGER_VTBITS); EXPECT_I1(-128);
1447 /* -129 */
1448 SETRGB(0, 1); SETRGB(1, 2); SETRGB(2, 9);
1449 CONVERT(3,0,NUMPRS_NEG,3,0,0, INTEGER_VTBITS); EXPECT_I2(-129);
1450 /* -32768 */
1451 SETRGB(0, 3); SETRGB(1, 2); SETRGB(2, 7); SETRGB(3, 6); SETRGB(4, 8);
1452 CONVERT(5,0,NUMPRS_NEG,5,0,0, INTEGER_VTBITS); EXPECT_I2(-32768);
1453 /* -32768 */
1454 SETRGB(0, 3); SETRGB(1, 2); SETRGB(2, 7); SETRGB(3, 6); SETRGB(4, 9);
1455 CONVERT(5,0,NUMPRS_NEG,5,0,0, INTEGER_VTBITS); EXPECT_I4(-32769);
1456
1457 /* Assume the above pattern holds for remaining negative integers */
1458
1459 /* Test hexadecimal conversions */
1460 SETRGB(0, 1); CONVERT(1,0,0,1,4,0, INTEGER_VTBITS); EXPECT_I1(0x01);
1461 /* 0x7f */
1462 SETRGB(0, 7); SETRGB(1, 0xf);
1463 CONVERT(2,0,0,2,4,0, INTEGER_VTBITS); EXPECT_I1(0x7f);
1464 SETRGB(0, 7); SETRGB(1, 0xf);
1465 CONVERT(2,0,0,2,4,0, VTBIT_DECIMAL); EXPECT_DECIMAL(0,0,0x7f);
1466 /* 0x7fff */
1467 SETRGB(0, 7); SETRGB(1, 0xf); SETRGB(2, 0xf); SETRGB(3, 0xf);
1468 CONVERT(4,0,0,4,4,0, INTEGER_VTBITS); EXPECT_I2(0x7fff);
1469 /* 0x7fffffff */
1470 SETRGB(0, 7); SETRGB(1, 0xf); SETRGB(2, 0xf); SETRGB(3, 0xf);
1471 SETRGB(4, 0xf); SETRGB(5, 0xf); SETRGB(6, 0xf); SETRGB(7, 0xf);
1472 CONVERT(8,0,0,8,4,0, INTEGER_VTBITS); EXPECT_I4(0x7fffffffL);
1473 /* 0x7fffffffffffffff (64 bits) */
1474 SETRGB(0, 7); SETRGB(1, 0xf); SETRGB(2, 0xf); SETRGB(3, 0xf);
1475 SETRGB(4, 0xf); SETRGB(5, 0xf); SETRGB(6, 0xf); SETRGB(7, 0xf);
1476 SETRGB(8, 0xf); SETRGB(9, 0xf); SETRGB(10, 0xf); SETRGB(11, 0xf);
1477 SETRGB(12, 0xf); SETRGB(13, 0xf); SETRGB(14, 0xf); SETRGB(15, 0xf);
1478 if (HAVE_OLEAUT32_I8)
1479 {
1480 /* We cannot use INTEGER_VTBITS as WinXP and Win2003 are broken(?). They
1481 truncate the number to the smallest integer size requested:
1482 CONVERT(16,0,0,16,4,0, INTEGER_VTBITS); EXPECT_I1((signed char)0xff); */
1483 CONVERT(16,0,0,16,4,0, VTBIT_I8); EXPECT_I8(0x7fffffff,0xffffffff);
1484 }
1485
1486 /* Assume the above pattern holds for numbers without hi-bit set, test (preservation of) hi-bit */
1487 /* 0x82 */
1488 SETRGB(0, 8); SETRGB(1, 2);
1489 CONVERT(2,0,0,2,4,0, INTEGER_VTBITS);
1490 EXPECT_I1((signed char)0x82);
1491 /* 0x8002 */
1492 SETRGB(0, 8); SETRGB(1, 0); SETRGB(2, 0); SETRGB(3, 2);
1493 CONVERT(4,0,0,4,4,0, INTEGER_VTBITS);
1494 EXPECT_I2((signed short)0x8002);
1495 /* 0x80000002 */
1496 SETRGB(0, 8); SETRGB(1, 0); SETRGB(2, 0); SETRGB(3, 0);
1497 SETRGB(4, 0); SETRGB(5, 0); SETRGB(6, 0); SETRGB(7, 2);
1498 CONVERT(8,0,0,8,4,0, INTEGER_VTBITS); EXPECT_I4(0x80000002);
1499 /* 0x8000000000000002 (64 bits) */
1500 SETRGB(0, 8); SETRGB(1, 0); SETRGB(2, 0); SETRGB(3, 0);
1501 SETRGB(4, 0); SETRGB(5, 0); SETRGB(6, 0); SETRGB(7, 0);
1502 SETRGB(8, 0); SETRGB(9, 0); SETRGB(10, 0); SETRGB(11, 0);
1503 SETRGB(12, 0); SETRGB(13, 0); SETRGB(14, 0); SETRGB(15, 2);
1504 if (HAVE_OLEAUT32_I8)
1505 {
1506 /* We cannot use INTEGER_VTBITS as WinXP and Win2003 are broken(?). They
1507 truncate the number to the smallest integer size requested:
1508 CONVERT(16,0,0,16,4,0, INTEGER_VTBITS & ~VTBIT_I1);
1509 EXPECT_I2((signed short)0x0002); */
1510 CONVERT(16,0,0,16,4,0, VTBIT_I8); EXPECT_I8(0x80000000,0x00000002);
1511 }
1512
1513 /* Test (preservation of) hi-bit with STRICT type requesting */
1514 /* 0x82 */
1515 SETRGB(0, 8); SETRGB(1, 2);
1516 CONVERT(2,0,0,2,4,0, VTBIT_I1);
1517 EXPECT_I1((signed char)0x82);
1518 /* 0x8002 */
1519 SETRGB(0, 8); SETRGB(1, 0); SETRGB(2, 0); SETRGB(3, 2);
1520 CONVERT(4,0,0,4,4,0, VTBIT_I2);
1521 EXPECT_I2((signed short)0x8002);
1522 /* 0x80000002 */
1523 SETRGB(0, 8); SETRGB(1, 0); SETRGB(2, 0); SETRGB(3, 0);
1524 SETRGB(4, 0); SETRGB(5, 0); SETRGB(6, 0); SETRGB(7, 2);
1525 CONVERT(8,0,0,8,4,0, VTBIT_I4); EXPECT_I4(0x80000002);
1526 /* 0x8000000000000002 (64 bits) */
1527 SETRGB(0, 8); SETRGB(1, 0); SETRGB(2, 0); SETRGB(3, 0);
1528 SETRGB(4, 0); SETRGB(5, 0); SETRGB(6, 0); SETRGB(7, 0);
1529 SETRGB(8, 0); SETRGB(9, 0); SETRGB(10, 0); SETRGB(11, 0);
1530 SETRGB(12, 0); SETRGB(13, 0); SETRGB(14, 0); SETRGB(15, 2);
1531 if (HAVE_OLEAUT32_I8)
1532 {
1533 CONVERT(16,0,0,16,4,0, VTBIT_I8); EXPECT_I8(0x80000000,0x00000002);
1534 }
1535 /* Assume the above pattern holds for numbers with hi-bit set */
1536
1537 /* Negative numbers overflow if we have only unsigned outputs */
1538 /* -1 */
1539 SETRGB(0, 1); CONVERT(1,0,NUMPRS_NEG,1,0,0, VTBIT_UI1); EXPECT_OVERFLOW;
1540 /* -0.6 */
1541 SETRGB(0, 6); CONVERT(1,0,NUMPRS_NEG,1,0,~0u, VTBIT_UI1); EXPECT_OVERFLOW;
1542
1543 /* Except that rounding is done first, so -0.5 to 0 are accepted as 0 */
1544 /* -0.5 */
1545 SETRGB(0, 5); CONVERT(1,0,NUMPRS_NEG,1,0,~0u, VTBIT_UI1); EXPECT_UI1(0);
1546
1547 /* Floating point zero is OK */
1548 /* 0.00000000E0 */
1549 SETRGB(0, 0); CONVERT(1,0,NUMPRS_DECIMAL|NUMPRS_EXPONENT,12,0,-8, VTBIT_R8);
1550 EXPECT_R8(0.0);
1551
1552 /* Float is acceptable for an integer input value */
1553 SETRGB(0, 1); CONVERT(1,0,0,1,0,0, VTBIT_R4); EXPECT_R4(1.0f);
1554 /* As is double */
1555 SETRGB(0, 1); CONVERT(1,0,0,1,0,0, VTBIT_R8); EXPECT_R8(1.0);
1556 /* As is currency */
1557 SETRGB(0, 1); CONVERT(1,0,0,1,0,0, VTBIT_CY); EXPECT_CY(1);
1558
1559 /* Float is preferred over double */
1560 SETRGB(0, 1); CONVERT(1,0,0,1,0,0, VTBIT_R4|VTBIT_R8); EXPECT_R4(1.0f);
1561
1562 /* Double is preferred over currency */
1563 SETRGB(0, 1); CONVERT(1,0,0,1,0,0, VTBIT_R8|VTBIT_CY); EXPECT_R8(1.0);
1564
1565 /* Currency is preferred over decimal */
1566 SETRGB(0, 1); CONVERT(1,0,0,1,0,0, VTBIT_CY|VTBIT_DECIMAL); EXPECT_CY(1);
1567 }
1568
1569
1570 static void test_UdateFromDate( int line, DATE dt, ULONG flags, HRESULT r, WORD d, WORD m, WORD y,
1571 WORD h, WORD mn, WORD s, WORD ms, WORD dw, WORD dy)
1572 {
1573 UDATE ud;
1574 HRESULT res;
1575
1576 memset(&ud, 0, sizeof(ud));
1577 res = pVarUdateFromDate(dt, flags, &ud);
1578 ok_(__FILE__,line)(r == res, "Wrong result %x/%x\n", r, res);
1579 if (SUCCEEDED(res))
1580 ok_(__FILE__,line)(ud.st.wYear == y && ud.st.wMonth == m && ud.st.wDay == d &&
1581 ud.st.wHour == h && ud.st.wMinute == mn && ud.st.wSecond == s &&
1582 ud.st.wMilliseconds == ms && ud.st.wDayOfWeek == dw && ud.wDayOfYear == dy,
1583 "%.16g expected %d,%d,%d,%d,%d,%d,%d %d %d, got %d,%d,%d,%d,%d,%d,%d %d %d\n",
1584 dt, d, m, y, h, mn, s, ms, dw, dy,
1585 ud.st.wDay, ud.st.wMonth, ud.st.wYear, ud.st.wHour, ud.st.wMinute,
1586 ud.st.wSecond, ud.st.wMilliseconds, ud.st.wDayOfWeek, ud.wDayOfYear );
1587 }
1588 #define DT2UD(dt,flags,r,d,m,y,h,mn,s,ms,dw,dy) test_UdateFromDate(__LINE__,dt,flags,r,d,m,y,h,mn,s,ms,dw,dy)
1589
1590 static void test_VarUdateFromDate(void)
1591 {
1592 CHECKPTR(VarUdateFromDate);
1593 DT2UD(29221.0,0,S_OK,1,1,1980,0,0,0,0,2,1); /* 1 Jan 1980 */
1594 DT2UD(29222.0,0,S_OK,2,1,1980,0,0,0,0,3,2); /* 2 Jan 1980 */
1595 DT2UD(33238.0,0,S_OK,31,12,1990,0,0,0,0,1,365); /* 31 Dec 1990 */
1596 DT2UD(0.0,0,S_OK,30,12,1899,0,0,0,0,6,364); /* 30 Dec 1899 - VT_DATE 0.0 */
1597 DT2UD(-657434.0,0,S_OK,1,1,100,0,0,0,0,5,1); /* 1 Jan 100 - Min */
1598 DT2UD(-657435.0,0,E_INVALIDARG,0,0,0,0,0,0,0,0,0); /* < 1 Jan 100 => err */
1599 DT2UD(2958465.0,0,S_OK,31,12,9999,0,0,0,0,5,365); /* 31 Dec 9999 - Max */
1600 DT2UD(2958466.0,0,E_INVALIDARG,0,0,0,0,0,0,0,0,0); /* > 31 Dec 9999 => err */
1601
1602 /* VAR_VALIDDATE doesn't prevent upper and lower bounds being checked */
1603 DT2UD(-657435.0,VAR_VALIDDATE,E_INVALIDARG,0,0,0,0,0,0,0,0,0);
1604 DT2UD(2958466.0,VAR_VALIDDATE,E_INVALIDARG,0,0,0,0,0,0,0,0,0);
1605
1606 /* Times */
1607 DT2UD(29221.25,0,S_OK,1,1,1980,6,0,0,0,2,1); /* 6 AM */
1608 DT2UD(29221.33333333,0,S_OK,1,1,1980,8,0,0,0,2,1); /* 8 AM */
1609 DT2UD(29221.5,0,S_OK,1,1,1980,12,0,0,0,2,1); /* 12 AM */
1610 DT2UD(29221.9888884444,0,S_OK,1,1,1980,23,44,0,0,2,1); /* 11:44 PM */
1611 DT2UD(29221.7508765432,0,S_OK,1,1,1980,18,1,16,0,2,1); /* 6:18:02 PM */
1612 }
1613
1614
1615 static void test_DateFromUDate( int line, WORD d, WORD m, WORD y, WORD h, WORD mn, WORD s, WORD ms,
1616 WORD dw, WORD dy, ULONG flags, HRESULT r, DATE dt )
1617 {
1618 UDATE ud;
1619 double out;
1620 HRESULT res;
1621
1622 ud.st.wYear = y;
1623 ud.st.wMonth = m;
1624 ud.st.wDay = d;
1625 ud.st.wHour = h;
1626 ud.st.wMinute = mn;
1627 ud.st.wSecond = s;
1628 ud.st.wMilliseconds = ms;
1629 ud.st.wDayOfWeek = dw;
1630 ud.wDayOfYear = dy;
1631 res = pVarDateFromUdate(&ud, flags, &out);
1632 ok_(__FILE__,line)(r == res && (FAILED(r) || EQ_DOUBLE(out, dt)),
1633 "expected %x, %.16g, got %x, %.16g\n", r, dt, res, out);
1634 }
1635 #define UD2T(d,m,y,h,mn,s,ms,dw,dy,flags,r,dt) test_DateFromUDate(__LINE__,d,m,y,h,mn,s,ms,dw,dy,flags,r,dt)
1636
1637 static void test_VarDateFromUdate(void)
1638 {
1639 CHECKPTR(VarDateFromUdate);
1640 UD2T(1,1,1980,0,0,0,0,2,1,0,S_OK,29221.0); /* 1 Jan 1980 */
1641 UD2T(2,1,1980,0,0,0,0,3,2,0,S_OK,29222.0); /* 2 Jan 1980 */
1642 UD2T(31,12,1990,0,0,0,0,0,0,0,S_OK,33238.0); /* 31 Dec 1990 */
1643 UD2T(31,12,90,0,0,0,0,0,0,0,S_OK,33238.0); /* year < 100 is 1900+year! */
1644 UD2T(30,12,1899,0,0,0,0,6,364,0,S_OK,0.0); /* 30 Dec 1899 - VT_DATE 0.0 */
1645 UD2T(1,1,100,0,0,0,0,0,0,0,S_OK,-657434.0); /* 1 Jan 100 - Min */
1646 UD2T(31,12,9999,0,0,0,0,0,0,0,S_OK,2958465.0); /* 31 Dec 9999 - Max */
1647 UD2T(1,1,10000,0,0,0,0,0,0,0,E_INVALIDARG,0.0); /* > 31 Dec 9999 => err */
1648
1649 UD2T(1,1,1980,18,1,16,0,2,1,0,S_OK,29221.75087962963); /* 6:18:02 PM */
1650
1651 UD2T(0,1,1980,0,0,0,0,2,1,0,S_OK,29220.0); /* Rolls back to 31 Dec 1899 */
1652 UD2T(1,13,1980,0,0,0,0,2,1,0,S_OK,29587.0); /* Rolls fwd to 1/1/1981 */
1653 }
1654
1655 static void test_st2dt(int line, WORD d, WORD m, WORD y, WORD h, WORD mn,
1656 WORD s, WORD ms, INT r, double dt)
1657 {
1658 SYSTEMTIME st;
1659 double out;
1660 INT res;
1661
1662 st.wYear = y;
1663 st.wMonth = m;
1664 st.wDay = d;
1665 st.wHour = h;
1666 st.wMinute = mn;
1667 st.wSecond = s;
1668 st.wMilliseconds = ms;
1669 st.wDayOfWeek = 0;
1670 res = pSystemTimeToVariantTime(&st, &out);
1671 ok_(__FILE__,line)(r == res && (!r || EQ_DOUBLE(out, dt)),
1672 "expected %d, %.16g, got %d, %.16g\n", r, dt, res, out);
1673 }
1674 #define ST2DT(d,m,y,h,mn,s,ms,r,dt) test_st2dt(__LINE__,d,m,y,h,mn,s,ms,r,dt)
1675
1676 static void test_SystemTimeToVariantTime(void)
1677 {
1678 CHECKPTR(SystemTimeToVariantTime);
1679 ST2DT(1,1,1980,0,0,0,0,TRUE,29221.0);
1680 ST2DT(2,1,1980,0,0,0,0,TRUE,29222.0);
1681 ST2DT(0,1,1980,0,0,0,0,TRUE,29220.0); /* Rolls back to 31 Dec 1899 */
1682 ST2DT(1,13,1980,0,0,0,0,FALSE,29587.0); /* Fails on invalid month */
1683 ST2DT(31,12,90,0,0,0,0,TRUE,33238.0); /* year < 100 is 1900+year! */
1684 }
1685
1686 static void test_dt2st(int line, double dt, INT r, WORD d, WORD m, WORD y,
1687 WORD h, WORD mn, WORD s, WORD ms)
1688 {
1689 SYSTEMTIME st;
1690 INT res;
1691
1692 memset(&st, 0, sizeof(st));
1693 res = pVariantTimeToSystemTime(dt, &st);
1694 ok_(__FILE__,line)(r == res &&
1695 (!r || (st.wYear == y && st.wMonth == m && st.wDay == d &&
1696 st.wHour == h && st.wMinute == mn &&
1697 st.wSecond == s && st.wMilliseconds == ms)),
1698 "%.16g expected %d, %d,%d,%d,%d,%d,%d,%d, got %d, %d,%d,%d,%d,%d,%d,%d\n",
1699 dt, r, d, m, y, h, mn, s, ms, res, st.wDay, st.wMonth,
1700 st.wYear, st.wHour, st.wMinute, st.wSecond,
1701 st.wMilliseconds);
1702 }
1703 #define DT2ST(dt,r,d,m,y,h,mn,s,ms) test_dt2st(__LINE__,dt,r,d,m,y,h,mn,s,ms)
1704
1705 static void test_VariantTimeToSystemTime(void)
1706 {
1707 CHECKPTR(VariantTimeToSystemTime);
1708 DT2ST(29221.0,1,1,1,1980,0,0,0,0);
1709 DT2ST(29222.0,1,2,1,1980,0,0,0,0);
1710 }
1711
1712 #define MKDOSDATE(d,m,y) ((d & 0x1f) | ((m & 0xf) << 5) | (((y-1980) & 0x7f) << 9))
1713 #define MKDOSTIME(h,m,s) (((s>>1) & 0x1f) | ((m & 0x3f) << 5) | ((h & 0x1f) << 11))
1714
1715 static void test_dos2dt(int line, WORD d, WORD m, WORD y, WORD h, WORD mn,
1716 WORD s, INT r, double dt)
1717 {
1718 unsigned short dosDate, dosTime;
1719 double out;
1720 INT res;
1721
1722 out = 0.0;
1723 dosDate = MKDOSDATE(d, m, y);
1724 dosTime = MKDOSTIME(h, mn, s);
1725 res = pDosDateTimeToVariantTime(dosDate, dosTime, &out);
1726 ok_(__FILE__,line)(r == res && (!r || EQ_DOUBLE(out, dt)),
1727 "expected %d, %.16g, got %d, %.16g\n", r, dt, res, out);
1728 }
1729 #define DOS2DT(d,m,y,h,mn,s,r,dt) test_dos2dt(__LINE__,d,m,y,h,mn,s,r,dt)
1730
1731 static void test_DosDateTimeToVariantTime(void)
1732 {
1733 CHECKPTR(DosDateTimeToVariantTime);
1734
1735 /* Date */
1736 DOS2DT(1,1,1980,0,0,0,1,29221.0); /* 1/1/1980 */
1737 DOS2DT(31,12,2099,0,0,0,1,73050.0); /* 31/12/2099 */
1738 /* Dates are limited to the dos date max of 31/12/2099 */
1739 DOS2DT(31,12,2100,0,0,0,0,0.0); /* 31/12/2100 */
1740 /* Days and months of 0 cause date to roll back 1 day or month */
1741 DOS2DT(0,1,1980,0,0,0,1,29220.0); /* 0 Day => 31/12/1979 */
1742 DOS2DT(1,0,1980,0,0,0,1,29190.0); /* 0 Mth => 1/12/1979 */
1743 DOS2DT(0,0,1980,0,0,0,1,29189.0); /* 0 D/M => 30/11/1979 */
1744 /* Days > days in the month cause date to roll forward 1 month */
1745 DOS2DT(29,2,1981,0,0,0,1,29646.0); /* 29/2/1981 -> 3/1/1980 */
1746 DOS2DT(30,2,1981,0,0,0,1,29647.0); /* 30/2/1981 -> 4/1/1980 */
1747 /* Takes leap years into account when rolling forward */
1748 DOS2DT(29,2,1980,0,0,0,1,29280.0); /* 2/29/1980 */
1749 /* Months > 12 cause an error */
1750 DOS2DT(2,13,1980,0,0,0,0,0.0);
1751
1752 /* Time */
1753 DOS2DT(1,1,1980,0,0,29,1,29221.00032407407); /* 1/1/1980 12:00:28 AM */
1754 DOS2DT(1,1,1980,0,0,31,1,29221.00034722222); /* 1/1/1980 12:00:30 AM */
1755 DOS2DT(1,1,1980,0,59,0,1,29221.04097222222); /* 1/1/1980 12:59:00 AM */
1756 DOS2DT(1,1,1980,0,60,0,0,0.0); /* Invalid seconds */
1757 DOS2DT(1,1,1980,23,0,0,1,29221.95833333333); /* 1/1/1980 11:00:00 PM */
1758 DOS2DT(1,1,1980,24,0,0,0,0.0); /* Invalid hours */
1759 }
1760
1761 static void test_dt2dos(int line, double dt, INT r, WORD d, WORD m, WORD y,
1762 WORD h, WORD mn, WORD s)
1763 {
1764 unsigned short dosDate, dosTime, expDosDate, expDosTime;
1765 INT res;
1766
1767 dosTime = dosDate = 0;
1768 expDosDate = MKDOSDATE(d,m,y);
1769 expDosTime = MKDOSTIME(h,mn,s);
1770 res = pVariantTimeToDosDateTime(dt, &dosDate, &dosTime);
1771 ok_(__FILE__,line)(r == res && (!r || (dosTime == expDosTime && dosDate == expDosDate)),
1772 "%g: expected %d,%d(%d/%d/%d),%d(%d:%d:%d) got %d,%d(%d/%d/%d),%d(%d:%d:%d)\n",
1773 dt, r, expDosDate, expDosDate & 0x1f,
1774 (expDosDate >> 5) & 0xf, 1980 + (expDosDate >> 9),
1775 expDosTime, expDosTime >> 11, (expDosTime >> 5) & 0x3f,
1776 (expDosTime & 0x1f),
1777 res, dosDate, dosDate & 0x1f, (dosDate >> 5) & 0xf,
1778 1980 + (dosDate >> 9), dosTime, dosTime >> 11,
1779 (dosTime >> 5) & 0x3f, (dosTime & 0x1f));
1780 }
1781 #define DT2DOS(dt,r,d,m,y,h,mn,s) test_dt2dos(__LINE__,dt,r,d,m,y,h,mn,s)
1782
1783 static void test_VariantTimeToDosDateTime(void)
1784 {
1785 CHECKPTR(VariantTimeToDosDateTime);
1786
1787 /* Date */
1788 DT2DOS(29221.0,1,1,1,1980,0,0,0); /* 1/1/1980 */
1789 DT2DOS(73050.0,1,31,12,2099,0,0,0); /* 31/12/2099 */
1790 DT2DOS(29220.0,0,0,0,0,0,0,0); /* 31/12/1979 - out of range */
1791 DT2DOS(73415.0,0,0,0,0,0,0,0); /* 31/12/2100 - out of range */
1792
1793 /* Time */
1794 DT2DOS(29221.00032407407,1,1,1,1980,0,0,29); /* 1/1/1980 12:00:28 AM */
1795 DT2DOS(29221.00034722222,1,1,1,1980,0,0,31); /* 1/1/1980 12:00:30 AM */
1796 DT2DOS(29221.04097222222,1,1,1,1980,0,59,0); /* 1/1/1980 12:59:00 AM */
1797 DT2DOS(29221.95833333333,1,1,1,1980,23,0,0); /* 1/1/1980 11:00:00 PM */
1798 }
1799
1800 static HRESULT (WINAPI *pVarAbs)(LPVARIANT,LPVARIANT);
1801
1802 #define VARABS(vt,val,rvt,rval) \
1803 V_VT(&v) = VT_##vt; V_##vt(&v) = val; \
1804 V_VT(&exp) = VT_##rvt; V_##rvt(&exp) = rval; \
1805 test_var_call1( __LINE__, pVarAbs, &v, &exp )
1806
1807 static void test_VarAbs(void)
1808 {
1809 static WCHAR szNum[] = {'-','1','.','1','\0' };
1810 char buff[8];
1811 HRESULT hres;
1812 VARIANT v, vDst, exp;
1813 size_t i;
1814
1815 CHECKPTR(VarAbs);
1816
1817 /* Test all possible V_VT values.
1818 */
1819 for (i = 0; i < sizeof(ExtraFlags)/sizeof(ExtraFlags[0]); i++)
1820 {
1821 VARTYPE vt;
1822
1823 for (vt = 0; vt <= VT_BSTR_BLOB; vt++)
1824 {
1825 HRESULT hExpected = DISP_E_BADVARTYPE;
1826
1827 SKIPTESTS(vt);
1828
1829 memset(&v, 0, sizeof(v));
1830 V_VT(&v) = vt | ExtraFlags[i];
1831 V_VT(&vDst) = VT_EMPTY;
1832
1833 hres = pVarAbs(&v,&vDst);
1834 if (ExtraFlags[i] & (VT_ARRAY|VT_ARRAY) ||
1835 (!ExtraFlags[i] && (vt == VT_UNKNOWN || vt == VT_BSTR ||
1836 vt == VT_DISPATCH || vt == VT_ERROR || vt == VT_RECORD)))
1837 {
1838 hExpected = DISP_E_TYPEMISMATCH;
1839 }
1840 else if (ExtraFlags[i] || vt >= VT_CLSID || vt == VT_VARIANT)
1841 {
1842 hExpected = DISP_E_BADVARTYPE;
1843 }
1844 else if (IsValidVariantClearVT(vt, ExtraFlags[i]))
1845 hExpected = S_OK;
1846
1847 /* Native always fails on some vartypes that should be valid. don't
1848 * check that Wine does the same; these are bugs in native.
1849 */
1850 if (vt == VT_I8 || vt == VT_UI8 || vt == VT_INT || vt == VT_UINT ||
1851 vt == VT_I1 || vt == VT_UI2 || vt == VT_UI4)
1852 continue;
1853 ok(hres == hExpected, "VarAbs: expected 0x%X, got 0x%X for vt %d | 0x%X\n",
1854 hExpected, hres, vt, ExtraFlags[i]);
1855 }
1856 }
1857
1858 /* BOOL->I2, BSTR->R8, all others remain the same */
1859 VARABS(BOOL,VARIANT_TRUE,I2,-VARIANT_TRUE);
1860 VARABS(BOOL,VARIANT_FALSE,I2,VARIANT_FALSE);
1861 VARABS(EMPTY,0,I2,0);
1862 VARABS(EMPTY,1,I2,0);
1863 VARABS(NULL,0,NULL,0);
1864 VARABS(NULL,1,NULL,0);
1865 VARABS(I2,1,I2,1);
1866 VARABS(I2,-1,I2,1);
1867 VARABS(I4,1,I4,1);
1868 VARABS(I4,-1,I4,1);
1869 VARABS(UI1,1,UI1,1);
1870 VARABS(R4,1,R4,1);
1871 VARABS(R4,-1,R4,1);
1872 VARABS(R8,1,R8,1);
1873 VARABS(R8,-1,R8,1);
1874 VARABS(DATE,1,DATE,1);
1875 VARABS(DATE,-1,DATE,1);
1876 V_VT(&v) = VT_CY;
1877 V_CY(&v).int64 = -10000;
1878 memset(&vDst,0,sizeof(vDst));
1879 hres = pVarAbs(&v,&vDst);
1880 ok(hres == S_OK && V_VT(&vDst) == VT_CY && V_CY(&vDst).int64 == 10000,
1881 "VarAbs(CY): expected 0x0 got 0x%X\n", hres);
1882 GetLocaleInfoA(LOCALE_USER_DEFAULT, LOCALE_SDECIMAL, buff, sizeof(buff)/sizeof(char));
1883 if (buff[1])
1884 {
1885 trace("Skipping VarAbs(BSTR) as decimal separator is '%s'\n", buff);
1886 return;
1887 } else {
1888 szNum[2] = buff[0];
1889 }
1890 V_VT(&v) = VT_BSTR;
1891 V_BSTR(&v) = (BSTR)szNum;
1892 memset(&vDst,0,sizeof(vDst));
1893 hres = pVarAbs(&v,&vDst);
1894 ok(hres == S_OK && V_VT(&vDst) == VT_R8 && V_R8(&vDst) == 1.1,
1895 "VarAbs: expected 0x0,%d,%g, got 0x%X,%d,%g\n", VT_R8, 1.1, hres, V_VT(&vDst), V_R8(&vDst));
1896 }
1897
1898 static HRESULT (WINAPI *pVarNot)(LPVARIANT,LPVARIANT);
1899
1900 #define VARNOT(vt,val,rvt,rval) \
1901 V_VT(&v) = VT_##vt; V_##vt(&v) = val; \
1902 V_VT(&exp) = VT_##rvt; V_##rvt(&exp) = rval; \
1903 test_var_call1( __LINE__, pVarNot, &v, &exp )
1904
1905 static void test_VarNot(void)
1906 {
1907 static const WCHAR szNum0[] = {'0','\0' };
1908 static const WCHAR szNum1[] = {'1','\0' };
1909 HRESULT hres;
1910 VARIANT v, exp, vDst;
1911 DECIMAL *pdec = &V_DECIMAL(&v);
1912 CY *pcy = &V_CY(&v);
1913 size_t i;
1914
1915 CHECKPTR(VarNot);
1916
1917 /* Test all possible V_VT values */
1918 for (i = 0; i < sizeof(ExtraFlags)/sizeof(ExtraFlags[0]); i++)
1919 {
1920 VARTYPE vt;
1921
1922 for (vt = 0; vt <= VT_BSTR_BLOB; vt++)
1923 {
1924 HRESULT hExpected = DISP_E_BADVARTYPE;
1925
1926 SKIPTESTS(vt);
1927
1928 memset(&v, 0, sizeof(v));
1929 V_VT(&v) = vt | ExtraFlags[i];
1930 V_VT(&vDst) = VT_EMPTY;
1931
1932 switch (V_VT(&v))
1933 {
1934 case VT_I1: case VT_UI1: case VT_I2: case VT_UI2:
1935 case VT_INT: case VT_UINT: case VT_I4: case VT_UI4:
1936 case VT_R4: case VT_R8:
1937 case VT_DECIMAL: case VT_BOOL: case VT_NULL: case VT_EMPTY:
1938 case VT_DATE: case VT_CY:
1939 hExpected = S_OK;
1940 break;
1941 case VT_I8: case VT_UI8:
1942 if (HAVE_OLEAUT32_I8)
1943 hExpected = S_OK;
1944 break;
1945 case VT_RECORD:
1946 if (HAVE_OLEAUT32_RECORD)
1947 hExpected = DISP_E_TYPEMISMATCH;
1948 break;
1949 case VT_UNKNOWN: case VT_BSTR: case VT_DISPATCH: case VT_ERROR:
1950 hExpected = DISP_E_TYPEMISMATCH;
1951 break;
1952 default:
1953 if (IsValidVariantClearVT(vt, ExtraFlags[i]) && vt != VT_CLSID)
1954 hExpected = DISP_E_TYPEMISMATCH;
1955 break;
1956 }
1957
1958 hres = pVarNot(&v,&vDst);
1959 ok(hres == hExpected, "VarNot: expected 0x%X, got 0x%X vt %d|0x%X\n",
1960 hExpected, hres, vt, ExtraFlags[i]);
1961 }
1962 }
1963 /* Test the values returned by all cases that can succeed */
1964 VARNOT(EMPTY,0,I2,-1);
1965 VARNOT(EMPTY,1,I2,-1);
1966 VARNOT(NULL,0,NULL,0);
1967 VARNOT(NULL,1,NULL,0);
1968 VARNOT(BOOL,VARIANT_TRUE,BOOL,VARIANT_FALSE);
1969 VARNOT(BOOL,VARIANT_FALSE,BOOL,VARIANT_TRUE);
1970 VARNOT(I1,-1,I4,0);
1971 VARNOT(I1,0,I4,-1);
1972 VARNOT(I2,-1,I2,0);
1973 VARNOT(I2,0,I2,-1);
1974 VARNOT(I2,1,I2,-2);
1975 VARNOT(I4,1,I4,-2);
1976 VARNOT(I4,0,I4,-1);
1977 VARNOT(UI1,1,UI1,254);
1978 VARNOT(UI1,0,UI1,255);
1979 VARNOT(UI2,0,I4,-1);
1980 VARNOT(UI2,1,I4,-2);
1981 VARNOT(UI4,0,I4,-1);
1982 VARNOT(UI4,1,I4,-2);
1983 VARNOT(INT,0,I4,-1);
1984 VARNOT(INT,1,I4,-2);
1985 VARNOT(UINT,0,I4,-1);
1986 VARNOT(UINT,1,I4,-2);
1987 if (HAVE_OLEAUT32_I8)
1988 {
1989 VARNOT(I8,1,I8,-2);
1990 VARNOT(I8,0,I8,-1);
1991 VARNOT(UI8,0,I4,-1);
1992 VARNOT(UI8,1,I4,-2);
1993 }
1994 VARNOT(R4,1,I4,-2);
1995 VARNOT(R4,0,I4,-1);
1996 VARNOT(R8,1,I4,-2);
1997 VARNOT(R8,0,I4,-1);
1998 VARNOT(DATE,1,I4,-2);
1999 VARNOT(DATE,0,I4,-1);
2000 VARNOT(BSTR,(BSTR)szNum0,I4,-1);
2001 ok(V_VT(&v) == VT_BSTR && V_BSTR(&v) == szNum0, "VarNot(0): changed input\n");
2002 VARNOT(BSTR,(BSTR)szNum1,I4,-2);
2003 ok(V_VT(&v) == VT_BSTR && V_BSTR(&v) == szNum1, "VarNot(1): changed input\n");
2004
2005 V_VT(&v) = VT_DECIMAL;
2006 S(U(*pdec)).sign = DECIMAL_NEG;
2007 S(U(*pdec)).scale = 0;
2008 pdec->Hi32 = 0;
2009 S1(U1(*pdec)).Mid32 = 0;
2010 S1(U1(*pdec)).Lo32 = 1;
2011 VARNOT(DECIMAL,*pdec,I4,0);
2012
2013 pcy->int64 = 10000;
2014 VARNOT(CY,*pcy,I4,-2);
2015
2016 pcy->int64 = 0;
2017 VARNOT(CY,*pcy,I4,-1);
2018
2019 pcy->int64 = -1;
2020 VARNOT(CY,*pcy,I4,-1);
2021 }
2022
2023 static HRESULT (WINAPI *pVarSub)(LPVARIANT,LPVARIANT,LPVARIANT);
2024
2025 #define VARSUB(vt1,val1,vt2,val2,rvt,rval) \
2026 V_VT(&left) = VT_##vt1; V_##vt1(&left) = val1; \
2027 V_VT(&right) = VT_##vt2; V_##vt2(&right) = val2; \
2028 V_VT(&exp) = VT_##rvt; V_##rvt(&exp) = rval; \
2029 test_var_call2( __LINE__, pVarSub, &left, &right, &exp )
2030
2031 static void test_VarSub(void)
2032 {
2033 VARIANT left, right, exp, result, cy, dec;
2034 VARTYPE i;
2035 BSTR lbstr, rbstr;
2036 HRESULT hres, expectedhres;
2037 double r;
2038
2039 CHECKPTR(VarSub);
2040
2041 lbstr = SysAllocString(sz12);
2042 rbstr = SysAllocString(sz12);
2043
2044 VariantInit(&left);
2045 VariantInit(&right);
2046 VariantInit(&result);
2047
2048 /* Test all possible flag/vt combinations & the resulting vt type */
2049 for (i = 0; i < sizeof(ExtraFlags)/sizeof(ExtraFlags[0]); i++)
2050 {
2051
2052 VARTYPE leftvt, rightvt, resvt;
2053
2054 for (leftvt = 0; leftvt <= VT_BSTR_BLOB; leftvt++)
2055 {
2056
2057 SKIPTESTS(leftvt);
2058
2059 for (rightvt = 0; rightvt <= VT_BSTR_BLOB; rightvt++)
2060 {
2061
2062 SKIPTESTS(rightvt);
2063 expectedhres = S_OK;
2064
2065 memset(&left, 0, sizeof(left));
2066 memset(&right, 0, sizeof(right));
2067 V_VT(&left) = leftvt | ExtraFlags[i];
2068 if (leftvt == VT_BSTR)
2069 V_BSTR(&left) = lbstr;
2070 V_VT(&right) = rightvt | ExtraFlags[i];
2071 if (rightvt == VT_BSTR)
2072 V_BSTR(&right) = rbstr;
2073 V_VT(&result) = VT_EMPTY;
2074 resvt = VT_ERROR;
2075
2076 /* All extra flags produce errors */
2077 if (ExtraFlags[i] == (VT_VECTOR|VT_BYREF|VT_RESERVED) ||
2078 ExtraFlags[i] == (VT_VECTOR|VT_RESERVED) ||
2079 ExtraFlags[i] == (VT_VECTOR|VT_BYREF) ||
2080 ExtraFlags[i] == (VT_BYREF|VT_RESERVED) ||
2081 ExtraFlags[i] == VT_VECTOR ||
2082 ExtraFlags[i] == VT_BYREF ||
2083 ExtraFlags[i] == VT_RESERVED)
2084 {
2085 expectedhres = DISP_E_BADVARTYPE;
2086 resvt = VT_EMPTY;
2087 }
2088 else if (ExtraFlags[i] >= VT_ARRAY)
2089 {
2090 expectedhres = DISP_E_TYPEMISMATCH;
2091 resvt = VT_EMPTY;
2092 }
2093 /* Native VarSub cannot handle: VT_I1, VT_UI2, VT_UI4,
2094 VT_INT, VT_UINT and VT_UI8. Tested with WinXP */
2095 else if (!IsValidVariantClearVT(leftvt, ExtraFlags[i]) ||
2096 !IsValidVariantClearVT(rightvt, ExtraFlags[i]) ||
2097 leftvt == VT_CLSID || rightvt == VT_CLSID ||
2098 leftvt == VT_VARIANT || rightvt == VT_VARIANT ||
2099 leftvt == VT_I1 || rightvt == VT_I1 ||
2100 leftvt == VT_UI2 || rightvt == VT_UI2 ||
2101 leftvt == VT_UI4 || rightvt == VT_UI4 ||
2102 leftvt == VT_UI8 || rightvt == VT_UI8 ||
2103 leftvt == VT_INT || rightvt == VT_INT ||
2104 leftvt == VT_UINT || rightvt == VT_UINT ||
2105 leftvt == VT_UNKNOWN || rightvt == VT_UNKNOWN ||
2106 leftvt == VT_RECORD || rightvt == VT_RECORD)
2107 {
2108 if (leftvt == VT_RECORD && rightvt == VT_I8)
2109 {
2110 if (HAVE_OLEAUT32_I8)
2111 expectedhres = DISP_E_TYPEMISMATCH;
2112 else
2113 expectedhres = DISP_E_BADVARTYPE;
2114 }
2115 else if (leftvt < VT_UI1 && rightvt == VT_RECORD)
2116 expectedhres = DISP_E_TYPEMISMATCH;
2117 else if (leftvt >= VT_UI1 && rightvt == VT_RECORD)
2118 expectedhres = DISP_E_TYPEMISMATCH;
2119 else if (leftvt == VT_RECORD && rightvt <= VT_UI1)
2120 expectedhres = DISP_E_TYPEMISMATCH;
2121 else if (leftvt == VT_RECORD && rightvt > VT_UI1)
2122 expectedhres = DISP_E_BADVARTYPE;
2123 else
2124 expectedhres = DISP_E_BADVARTYPE;
2125 resvt = VT_EMPTY;
2126 }
2127 else if ((leftvt == VT_NULL && rightvt == VT_DISPATCH) ||
2128 (leftvt == VT_DISPATCH && rightvt == VT_NULL))
2129 resvt = VT_NULL;
2130 else if (leftvt == VT_DISPATCH || rightvt == VT_DISPATCH ||
2131 leftvt == VT_ERROR || rightvt == VT_ERROR)
2132 {
2133 resvt = VT_EMPTY;
2134 expectedhres = DISP_E_TYPEMISMATCH;
2135 }
2136 else if (leftvt == VT_NULL || rightvt == VT_NULL)
2137 resvt = VT_NULL;
2138 else if ((leftvt == VT_EMPTY && rightvt == VT_BSTR) ||
2139 (leftvt == VT_DATE && rightvt == VT_DATE) ||
2140 (leftvt == VT_BSTR && rightvt == VT_EMPTY) ||
2141 (leftvt == VT_BSTR && rightvt == VT_BSTR))
2142 resvt = VT_R8;
2143 else if (leftvt == VT_DECIMAL || rightvt == VT_DECIMAL)
2144 resvt = VT_DECIMAL;
2145 else if (leftvt == VT_DATE || rightvt == VT_DATE)
2146 resvt = VT_DATE;
2147 else if (leftvt == VT_CY || rightvt == VT_CY)
2148 resvt = VT_CY;
2149 else if (leftvt == VT_R8 || rightvt == VT_R8)
2150 resvt = VT_R8;
2151 else if (leftvt == VT_BSTR || rightvt == VT_BSTR) {
2152 resvt = VT_R8;
2153 } else if (leftvt == VT_R4 || rightvt == VT_R4) {
2154 if (leftvt == VT_I4 || rightvt == VT_I4 ||
2155 leftvt == VT_I8 || rightvt == VT_I8)
2156 resvt = VT_R8;
2157 else
2158 resvt = VT_R4;
2159 }
2160 else if (leftvt == VT_I8 || rightvt == VT_I8)
2161 resvt = VT_I8;
2162 else if (leftvt == VT_I4 || rightvt == VT_I4)
2163 resvt = VT_I4;
2164 else if (leftvt == VT_I2 || rightvt == VT_I2 ||
2165 leftvt == VT_BOOL || rightvt == VT_BOOL ||
2166 (leftvt == VT_EMPTY && rightvt == VT_EMPTY))
2167 resvt = VT_I2;
2168 else if (leftvt == VT_UI1 || rightvt == VT_UI1)
2169 resvt = VT_UI1;
2170 else
2171 {
2172 resvt = VT_EMPTY;
2173 expectedhres = DISP_E_TYPEMISMATCH;
2174 }
2175
2176 hres = pVarSub(&left, &right, &result);
2177
2178 ok(hres == expectedhres && V_VT(&result) == resvt,
2179 "VarSub: %d|0x%X, %d|0x%X: Expected failure 0x%X, "
2180 "got 0x%X, expected vt %d got vt %d\n",
2181 leftvt, ExtraFlags[i], rightvt, ExtraFlags[i],
2182 expectedhres, hres, resvt, V_VT(&result));
2183 }
2184 }
2185 }
2186
2187 /* Test returned values */
2188 VARSUB(I4,4,I4,2,I4,2);
2189 VARSUB(I2,4,I2,2,I2,2);
2190 VARSUB(I2,-13,I4,5,I4,-18);
2191 VARSUB(I4,-13,I4,5,I4,-18);
2192 VARSUB(I2,7,R4,0.5f,R4,6.5f);
2193 VARSUB(R4,0.5f,I4,5,R8,-4.5);
2194 VARSUB(R8,7.1,BOOL,0,R8,7.1);
2195 VARSUB(BSTR,lbstr,I2,4,R8,8);
2196 VARSUB(BSTR,lbstr,BOOL,1,R8,11);
2197 VARSUB(BSTR,lbstr,R4,0.1f,R8,11.9);
2198 VARSUB(R4,0.2f,BSTR,rbstr,R8,-11.8);
2199 VARSUB(DATE,2.25,I4,7,DATE,-4.75);
2200 VARSUB(DATE,1.25,R4,-1.7f,DATE,2.95);
2201
2202 VARSUB(UI1, UI1_MAX, UI1, UI1_MAX, UI1, 0);
2203 VARSUB(I2, I2_MAX, I2, I2_MAX, I2, 0);
2204 VARSUB(I2, I2_MIN, I2, I2_MIN, I2, 0);
2205 VARSUB(I4, I4_MAX, I4, I4_MAX, I4, 0);
2206 VARSUB(I4, I4_MIN, I4, I4_MIN, I4, 0);
2207 VARSUB(R4, R4_MAX, R4, R4_MAX, R4, 0.0f);
2208 VARSUB(R4, R4_MAX, R4, R4_MIN, R4, R4_MAX - R4_MIN);
2209 VARSUB(R4, R4_MIN, R4, R4_MIN, R4, 0.0f);
2210 VARSUB(R8, R8_MAX, R8, R8_MIN, R8, R8_MAX - R8_MIN);
2211 VARSUB(R8, R8_MIN, R8, R8_MIN, R8, 0.0);
2212
2213 /* Manually test BSTR + BSTR */
2214 V_VT(&left) = VT_BSTR;
2215 V_BSTR(&left) = lbstr;
2216 V_VT(&right) = VT_BSTR;
2217 V_BSTR(&right) = rbstr;
2218 hres = VarSub(&left, &right, &result);
2219 ok(hres == S_OK && V_VT(&result) == VT_R8,
2220 "VarSub: expected coerced type VT_R8, got %s!\n", vtstr(V_VT(&result)));
2221 ok(hres == S_OK && EQ_DOUBLE(V_R8(&result), 0),
2222 "VarSub: BSTR + BSTR, expected %f got %f\n", 0.0, V_R8(&result));
2223
2224 /* Manually test some VT_CY and VT_DECIMAL variants */
2225 V_VT(&cy) = VT_CY;
2226 hres = VarCyFromI4(4711, &V_CY(&cy));
2227 ok(hres == S_OK, "VarCyFromI4 failed!\n");
2228 V_VT(&dec) = VT_DECIMAL;
2229 hres = VarDecFromR8(-4.2, &V_DECIMAL(&dec));
2230 ok(hres == S_OK, "VarDecFromR4 failed!\n");
2231 memset(&left, 0, sizeof(left));
2232 memset(&right, 0, sizeof(right));
2233 V_VT(&left) = VT_I4;
2234 V_I4(&left) = -11;
2235 V_VT(&right) = VT_UI1;
2236 V_UI1(&right) = 9;
2237
2238 hres = VarSub(&cy, &right, &result);
2239 ok(hres == S_OK && V_VT(&result) == VT_CY,
2240 "VarSub: expected coerced type VT_CY, got %s!\n", vtstr(V_VT(&result)));
2241 hres = VarR8FromCy(V_CY(&result), &r);
2242 ok(hres == S_OK && EQ_DOUBLE(r, 4702),
2243 "VarSub: CY value %f, expected %f\n", r, (double)4720);
2244
2245 hres = VarSub(&left, &dec, &result);
2246 ok(hres == S_OK && V_VT(&result) == VT_DECIMAL,
2247 "VarSub: expected coerced type VT_DECIMAL, got %s!\n", vtstr(V_VT(&result)));
2248 hres = VarR8FromDec(&V_DECIMAL(&result), &r);
2249 ok(hres == S_OK && EQ_DOUBLE(r, -6.8),
2250 "VarSub: DECIMAL value %f, expected %f\n", r, (double)-15.2);
2251
2252 SysFreeString(lbstr);
2253 SysFreeString(rbstr);
2254 }
2255
2256 static HRESULT (WINAPI *pVarMod)(LPVARIANT,LPVARIANT,LPVARIANT);
2257
2258 static void test_Mod( int line, VARIANT *left, VARIANT *right, VARIANT *expected, HRESULT expres )
2259 {
2260 VARIANT result;
2261 HRESULT hres;
2262
2263 memset( &result, 0, sizeof(result) );
2264 hres = pVarMod( left, right, &result );
2265 ok_(__FILE__,line)( hres == expres, "wrong result %x/%x\n", hres, expres );
2266 if (hres == S_OK)
2267 ok_(__FILE__,line)( is_expected_variant( &result, expected ),
2268 "got %s expected %s\n", variantstr(&result), variantstr(expected) );
2269 }
2270
2271 #define VARMOD(vt1,vt2,val1,val2,rvt,rval) \
2272 V_VT(&left) = VT_##vt1; V_##vt1(&left) = val1; \
2273 V_VT(&right) = VT_##vt2; V_##vt2(&right) = val2; \
2274 V_VT(&exp) = VT_##rvt; V_##rvt(&exp) = rval; \
2275 test_var_call2( __LINE__, pVarMod, &left, &right, &exp )
2276
2277 #define VARMOD2(vt1,vt2,val1,val2,rvt,rval,hexpected) \
2278 V_VT(&left) = VT_##vt1; V_I4(&left) = val1; \
2279 V_VT(&right) = VT_##vt2; V_I4(&right) = val2; \
2280 V_VT(&exp) = VT_##rvt; V_I4(&exp) = rval; \
2281 test_Mod( __LINE__, &left, &right, &exp, hexpected )
2282
2283 static void test_VarMod(void)
2284 {
2285 VARIANT v1, v2, vDst, left, right, exp;
2286 HRESULT hres;
2287 HRESULT hexpected = 0;
2288 static const WCHAR szNum0[] = {'1','2','5','\0'};
2289 static const WCHAR szNum1[] = {'1','0','\0'};
2290 int l, r;
2291 BOOL lFound, rFound;
2292 BOOL lValid, rValid;
2293 BSTR strNum0, strNum1;
2294
2295 CHECKPTR(VarMod);
2296
2297 VARMOD(I1,BOOL,100,10,I4,0);
2298 VARMOD(I1,I1,100,10,I4,0);
2299 VARMOD(I1,UI1,100,10,I4,0);
2300 VARMOD(I1,I2,100,10,I4,0);
2301 VARMOD(I1,UI2,100,10,I4,0);
2302 VARMOD(I1,I4,100,10,I4,0);
2303 VARMOD(I1,UI4,100,10,I4,0);
2304 VARMOD(I1,R4,100,10,I4,0);
2305 VARMOD(I1,R8,100,10,I4,0);
2306
2307 VARMOD(UI1,BOOL,100,10,I2,0);
2308 VARMOD(UI1,I1,100,10,I4,0);
2309 VARMOD(UI1,UI1,100,10,UI1,0);
2310 VARMOD(UI1,I2,100,10,I2,0);
2311 VARMOD(UI1,UI2,100,10,I4,0);
2312 VARMOD(UI1,I4,100,10,I4,0);
2313 VARMOD(UI1,UI4,100,10,I4,0);
2314 VARMOD(UI1,R4,100,10,I4,0);
2315 VARMOD(UI1,R8,100,10,I4,0);
2316
2317 VARMOD(I2,BOOL,100,10,I2,0);
2318 VARMOD(I2,I1,100,10,I4,0);
2319 VARMOD(I2,UI1,100,10,I2,0);
2320 VARMOD(I2,I2,100,10,I2,0);
2321 VARMOD(I2,UI2,100,10,I4,0);
2322 VARMOD(I2,I4,100,10,I4,0);
2323 VARMOD(I2,UI4,100,10,I4,0);
2324 VARMOD(I2,R4,100,10,I4,0);
2325 VARMOD(I2,R8,100,10,I4,0);
2326
2327 VARMOD(I4,BOOL,100,10,I4,0);
2328 VARMOD(I4,I1,100,10,I4,0);
2329 VARMOD(I4,UI1,100,10,I4,0);
2330 VARMOD(I4,I2,100,10,I4,0);
2331 VARMOD(I4,UI2,100,10,I4,0);
2332 VARMOD(I4,I4,100,10,I4,0);
2333 VARMOD(I4,UI4,100,10,I4,0);
2334 VARMOD(I4,R4,100,10,I4,0);
2335 VARMOD(I4,R8,100,10,I4,0);
2336 VARMOD(UI4,BOOL,100,10,I4,0);
2337 VARMOD(UI4,I1,100,10,I4,0);
2338 VARMOD(UI4,UI1,100,10,I4,0);
2339 VARMOD(UI4,I2,100,10,I4,0);
2340 VARMOD(UI4,UI2,100,10,I4,0);
2341 VARMOD(UI4,I4,100,10,I4,0);
2342 VARMOD(UI4,UI4,100,10,I4,0);
2343 VARMOD(UI4,R4,100,10,I4,0);
2344 VARMOD(UI4,R8,100,10,I4,0);
2345 VARMOD(R4,BOOL,100,10,I4,0);
2346 VARMOD(R4,I1,100,10,I4,0);
2347 VARMOD(R4,UI1,100,10,I4,0);
2348 VARMOD(R4,I2,100,10,I4,0);
2349 VARMOD(R4,UI2,100,10,I4,0);
2350 VARMOD(R4,I4,100,10,I4,0);
2351 VARMOD(R4,UI4,100,10,I4,0);
2352 VARMOD(R4,R4,100,10,I4,0);
2353 VARMOD(R4,R8,100,10,I4,0);
2354 VARMOD(R8,BOOL,100,10,I4,0);
2355 VARMOD(R8,I1,100,10,I4,0);
2356 VARMOD(R8,UI1,100,10,I4,0);
2357 VARMOD(R8,I2,100,10,I4,0);
2358 VARMOD(R8,UI2,100,10,I4,0);
2359 VARMOD(R8,I4,100,10,I4,0);
2360 VARMOD(R8,UI4,100,10,I4,0);
2361 VARMOD(R8,R4,100,10,I4,0);
2362 VARMOD(R8,R8,100,10,I4,0);
2363
2364 VARMOD(INT,INT,100,10,I4,0);
2365 VARMOD(INT,UINT,100,10,I4,0);
2366
2367 VARMOD(BOOL,BOOL,100,10,I2,0);
2368 VARMOD(BOOL,I1,100,10,I4,0);
2369 VARMOD(BOOL,UI1,100,10,I2,0);
2370 VARMOD(BOOL,I2,100,10,I2,0);
2371 VARMOD(BOOL,UI2,100,10,I4,0);
2372 VARMOD(BOOL,I4,100,10,I4,0);
2373 VARMOD(BOOL,UI4,100,10,I4,0);
2374 VARMOD(BOOL,R4,100,10,I4,0);
2375 VARMOD(BOOL,R8,100,10,I4,0);
2376 VARMOD(BOOL,DATE,100,10,I4,0);
2377
2378 VARMOD(DATE,BOOL,100,10,I4,0);
2379 VARMOD(DATE,I1,100,10,I4,0);
2380 VARMOD(DATE,UI1,100,10,I4,0);
2381 VARMOD(DATE,I2,100,10,I4,0);
2382 VARMOD(DATE,UI2,100,10,I4,0);
2383 VARMOD(DATE,I4,100,10,I4,0);
2384 VARMOD(DATE,UI4,100,10,I4,0);
2385 VARMOD(DATE,R4,100,10,I4,0);
2386 VARMOD(DATE,R8,100,10,I4,0);
2387 VARMOD(DATE,DATE,100,10,I4,0);
2388
2389 strNum0 = SysAllocString(szNum0);
2390 strNum1 = SysAllocString(szNum1);
2391 VARMOD(BSTR,BSTR,strNum0,strNum1,I4,5);
2392 VARMOD(BSTR,I1,strNum0,10,I4,5);
2393 VARMOD(BSTR,I2,strNum0,10,I4,5);
2394 VARMOD(BSTR,I4,strNum0,10,I4,5);
2395 VARMOD(BSTR,R4,strNum0,10,I4,5);
2396 VARMOD(BSTR,R8,strNum0,10,I4,5);
2397 VARMOD(I4,BSTR,125,strNum1,I4,5);
2398
2399 if (HAVE_OLEAUT32_I8)
2400 {
2401 VARMOD(BOOL,I8,100,10,I8,0);
2402 VARMOD(I1,I8,100,10,I8,0);
2403 VARMOD(UI1,I8,100,10,I8,0);
2404 VARMOD(I2,I8,100,10,I8,0);
2405 VARMOD(I4,I8,100,10,I8,0);
2406 VARMOD(UI4,I8,100,10,I8,0);
2407 VARMOD(R4,I8,100,10,I8,0);
2408 VARMOD(R8,I8,100,10,I8,0);
2409 VARMOD(DATE,I8,100,10,I8,0);
2410
2411 VARMOD(I8,BOOL,100,10,I8,0);
2412 VARMOD(I8,I1,100,10,I8,0);
2413 VARMOD(I8,UI1,100,10,I8,0);
2414 VARMOD(I8,I2,100,10,I8,0);
2415 VARMOD(I8,UI2,100,10,I8,0);
2416 VARMOD(I8,I4,100,10,I8,0);
2417 VARMOD(I8,UI4,100,10,I8,0);
2418 VARMOD(I8,R4,100,10,I8,0);
2419 VARMOD(I8,R8,100,10,I8,0);
2420 VARMOD(I8,I8,100,10,I8,0);
2421
2422 VARMOD(BSTR,I8,strNum0,10,I8,5);
2423 }
2424
2425 /* test all combinations of types */
2426 for(l = 0; l < VT_BSTR_BLOB; l++)
2427 {
2428 SKIPTESTS(l);
2429
2430 for(r = 0; r < VT_BSTR_BLOB; r++)
2431 {
2432 SKIPTESTS(r);
2433
2434 if(l == VT_BSTR) continue;
2435 if(l == VT_DISPATCH) continue;
2436 if(r == VT_BSTR) continue;
2437 if(r == VT_DISPATCH) continue;
2438
2439 lFound = TRUE;
2440 lValid = TRUE;
2441 switch(l)
2442 {
2443 case VT_EMPTY:
2444 case VT_NULL:
2445 case VT_I1:
2446 case VT_UI1:
2447 case VT_I2:
2448 case VT_UI2:
2449 case VT_I4:
2450 case VT_I8:
2451 case VT_UI4:
2452 case VT_UI8:
2453 case VT_INT:
2454 case VT_UINT:
2455 case VT_R4:
2456 case VT_R8:
2457 case VT_BOOL:
2458 case VT_DATE:
2459 case VT_CY:
2460 case VT_DECIMAL:
2461 hexpected = S_OK;
2462 break;
2463 case VT_ERROR:
2464 case VT_VARIANT:
2465 case VT_UNKNOWN:
2466 case VT_RECORD:
2467 lValid = FALSE;
2468 break;
2469 default:
2470 lFound = FALSE;
2471 hexpected = DISP_E_BADVARTYPE;
2472 break;
2473 }
2474
2475 rFound = TRUE;
2476 rValid = TRUE;
2477 switch(r)
2478 {
2479 case VT_EMPTY:
2480 case VT_NULL:
2481 case VT_I1:
2482 case VT_UI1:
2483 case VT_I2:
2484 case VT_UI2:
2485 case VT_I4:
2486 case VT_I8:
2487 case VT_UI4:
2488 case VT_UI8:
2489 case VT_INT:
2490 case VT_UINT:
2491 case VT_R4:
2492 case VT_R8:
2493 case VT_BOOL:
2494 case VT_DATE:
2495 case VT_DECIMAL:
2496 case VT_CY:
2497 hexpected = S_OK;
2498 break;
2499 case VT_ERROR:
2500 case VT_VARIANT:
2501 case VT_UNKNOWN:
2502 case VT_RECORD:
2503 rValid = FALSE;
2504 break;
2505 default:
2506 rFound = FALSE;
2507 break;
2508 }
2509
2510 if(((l == VT_I8) && (r == VT_INT)) || ((l == VT_INT) && (r == VT_I8)))
2511 {
2512 hexpected = DISP_E_TYPEMISMATCH;
2513 } else if((l == VT_EMPTY) && (r == VT_NULL))
2514 {
2515 hexpected = S_OK;
2516 } else if((l == VT_NULL) && (r == VT_EMPTY))
2517 {
2518 hexpected = S_OK;
2519 } else if((l == VT_EMPTY) && (r == VT_CY))
2520 {
2521 hexpected = S_OK;
2522 } else if((l == VT_EMPTY) && (r == VT_RECORD))
2523 {
2524 hexpected = DISP_E_TYPEMISMATCH;
2525 } else if((r == VT_EMPTY) && lFound && lValid)
2526 {
2527 hexpected = DISP_E_DIVBYZERO;
2528 } else if((l == VT_ERROR) || ((r == VT_ERROR) && lFound && lValid))
2529 {
2530 hexpected = DISP_E_TYPEMISMATCH;
2531 } else if((l == VT_NULL) && (r == VT_NULL))
2532 {
2533 hexpected = S_OK;
2534 } else if((l == VT_VARIANT) || ((r == VT_VARIANT) && lFound && lValid))
2535 {
2536 hexpected = DISP_E_TYPEMISMATCH;
2537 } else if((l == VT_NULL) && (r == VT_RECORD))
2538 {
2539 hexpected = DISP_E_TYPEMISMATCH;
2540 } else if((l == VT_I8) && (r == VT_DECIMAL))
2541 {
2542 hexpected = S_OK;
2543 } else if((l == VT_DECIMAL) && (r == VT_I8))
2544 {
2545 hexpected = S_OK;
2546 } else if((l == VT_UNKNOWN) || ((r == VT_UNKNOWN) && lFound && lValid))
2547 {
2548 hexpected = DISP_E_TYPEMISMATCH;
2549 } else if((l == VT_NULL) && rFound)
2550 {
2551 hexpected = S_OK;
2552 } else if(l == VT_RECORD)
2553 {
2554 hexpected = DISP_E_TYPEMISMATCH;
2555 } else if((r == VT_RECORD) && lValid && lFound)
2556 {
2557 hexpected = DISP_E_TYPEMISMATCH;
2558 } else if((l == VT_EMPTY) && (r == VT_EMPTY))
2559 {
2560 hexpected = DISP_E_DIVBYZERO;
2561 } else if((l == VT_CY) && !rFound)
2562 {
2563 hexpected = DISP_E_BADVARTYPE;
2564 } else if(lFound && !rFound)
2565 {
2566 hexpected = DISP_E_BADVARTYPE;
2567 } else if(!lFound && rFound)
2568 {
2569 hexpected = DISP_E_BADVARTYPE;
2570 } else if((r == VT_NULL) && lFound && lValid)
2571 {
2572 hexpected = S_OK;
2573 } else if((l == VT_NULL) || (r == VT_NULL))
2574 {
2575 hexpected = DISP_E_BADVARTYPE;
2576 } else if((l == VT_VARIANT) || (r == VT_VARIANT))
2577 {
2578 hexpected = DISP_E_BADVARTYPE;
2579 } else if(lFound && !rFound)
2580 {
2581 hexpected = DISP_E_BADVARTYPE;
2582 } else if(!lFound && !rFound)
2583 {
2584 hexpected = DISP_E_BADVARTYPE;
2585 }
2586
2587 V_VT(&v1) = l;
2588 V_VT(&v2) = r;
2589
2590 if(l == VT_CY)
2591 V_CY(&v1).int64 = 1000000;
2592 else if(l == VT_R4)
2593 V_R4(&v1) = 100;
2594 else if(l == VT_R8)
2595 V_R8(&v1) = 100;
2596 else if(l == VT_UI8)
2597 V_UI8(&v1) = 100;
2598 else if(l == VT_I8)
2599 V_I8(&v1) = 100;
2600 else if(l == VT_DATE)
2601 V_DATE(&v1) = 1000;
2602 else if (l == VT_DECIMAL)
2603 {
2604 V_DECIMAL(&v1).Hi32 = 0;
2605 U1(V_DECIMAL(&v1)).Lo64 = 100;
2606 U(V_DECIMAL(&v1)).signscale = 0;
2607 }
2608 else
2609 V_I4(&v1) = 10000;
2610
2611 if(r == VT_CY)
2612 V_CY(&v2).int64 = 10000;
2613 else if(r == VT_R4)
2614 V_R4(&v2) = 100;
2615 else if(r == VT_R8)
2616 V_R8(&v2) = 100;
2617 else if(r == VT_UI8)
2618 V_UI8(&v2) = 100;
2619 else if(r == VT_I8)
2620 V_I8(&v2) = 100;
2621 else if(r == VT_DATE)
2622 V_DATE(&v2) = 1000;
2623 else if (r == VT_DECIMAL)
2624 {
2625 V_DECIMAL(&v2).Hi32 = 0;
2626 U1(V_DECIMAL(&v2)).Lo64 = 100;
2627 U(V_DECIMAL(&v2)).signscale = 0;
2628 }
2629 else
2630 V_I4(&v2) = 10000;
2631
2632 if ((l != VT_I8 && l != VT_UI8 && r != VT_I8 && r != VT_UI8) || HAVE_OLEAUT32_I8)
2633 {
2634 hres = pVarMod(&v1,&v2,&vDst);
2635 ok(hres == hexpected,
2636 "VarMod: expected 0x%x, got 0x%X for l type of %d, r type of %d,\n", hexpected, hres, l, r);
2637 }
2638 }
2639 }
2640
2641
2642 /****************************/
2643 /* test some bad parameters */
2644 VARMOD(I4,I4,-1,-1,I4,0);
2645
2646 /* test modulus with zero */
2647 VARMOD2(I4,I4,100,0,EMPTY,0,DISP_E_DIVBYZERO);
2648
2649 VARMOD(I4,I4,0,10,I4,0); /* test 0 mod 10 */
2650
2651 /* right parameter is type empty */
2652 VARMOD2(I4,EMPTY,100,10,EMPTY,0,DISP_E_DIVBYZERO);
2653
2654 /* left parameter is type empty */
2655 VARMOD2(EMPTY,I4,100,10,I4,0,S_OK);
2656
2657 /* mod with a null left value */
2658 VARMOD2(NULL,I4,125,10,NULL,0,S_OK);
2659
2660 /* mod with a null right value */
2661 VARMOD2(I4,NULL,100,10,NULL,0,S_OK);
2662
2663 /* void left value */
2664 VARMOD2(VOID,I4,100,10,EMPTY,0,DISP_E_BADVARTYPE);
2665
2666 /* void right value */
2667 VARMOD2(I4,VOID,100,10,EMPTY,0,DISP_E_BADVARTYPE);
2668
2669 /* null left value, void right value */
2670 VARMOD2(NULL,VOID,100,10,EMPTY, 0, DISP_E_BADVARTYPE);
2671
2672 /* void left value, null right value */
2673 VARMOD2(VOID,NULL,100,10,EMPTY,0,DISP_E_BADVARTYPE);
2674
2675 /* some currencies */
2676 V_VT(&v1) = VT_CY;
2677 V_VT(&v2) = VT_CY;
2678 V_CY(&v1).int64 = 100000;
2679 V_CY(&v2).int64 = 100000;
2680 hres = pVarMod(&v1,&v2,&vDst);
2681 ok(hres == S_OK && V_VT(&vDst) == VT_I4 && V_I4(&vDst) == 0,
2682 "VarMod: expected 0x%x,%d,%d, got 0x%X,%d,%d\n", S_OK, VT_I4, 0, hres, V_VT(&vDst), V_I4(&vDst));
2683
2684 V_VT(&v1) = VT_I4;
2685 V_VT(&v2) = VT_CY;
2686 V_I4(&v1) = 100;
2687 V_CY(&v2).int64 = 100000;
2688 hres = pVarMod(&v1,&v2,&vDst);
2689 ok(hres == S_OK && V_VT(&vDst) == VT_I4 && V_I4(&vDst) == 0,
2690 "VarMod: expected 0x%x,%d,%d, got 0x%X,%d,%d\n", S_OK, VT_I4, 0, hres, V_VT(&vDst), V_I4(&vDst));
2691
2692 /* some decimals */
2693 V_VT(&v1) = VT_DECIMAL;
2694 V_VT(&v2) = VT_DECIMAL;
2695 VarDecFromI4(100, &V_DECIMAL(&v1));
2696 VarDecFromI4(10, &V_DECIMAL(&v2));
2697 hres = pVarMod(&v1,&v2,&vDst);
2698 ok(hres == S_OK && V_VT(&vDst) == VT_I4 && V_I4(&vDst) == 0,
2699 "VarMod: expected 0x%x,%d,%d, got 0x%X,%d,%d\n", S_OK, VT_I4, 0, hres, V_VT(&vDst), V_I4(&vDst));
2700
2701 V_VT(&v1) = VT_I4;
2702 V_VT(&v2) = VT_DECIMAL;
2703 V_I4(&v1) = 100;
2704 VarDecFromI4(10, &V_DECIMAL(&v2));
2705 hres = pVarMod(&v1,&v2,&vDst);
2706 ok(hres == S_OK && V_VT(&vDst) == VT_I4 && V_I4(&vDst) == 0,
2707 "VarMod: expected 0x%x,%d,%d, got 0x%X,%d,%d\n", S_OK, VT_I4, 0, hres, V_VT(&vDst), V_I4(&vDst));
2708
2709 VARMOD2(UINT,I4,100,10,I4,0,S_OK);
2710
2711 /* test that an error results in the type of the result changing but not its value */
2712 V_VT(&v1) = VT_UNKNOWN;
2713 V_VT(&v2) = VT_EMPTY;
2714 V_I4(&v1) = 100;
2715 V_CY(&v2).int64 = 100000;
2716 V_VT(&vDst) = VT_I4;
2717 V_I4(&vDst) = 1231;
2718 hres = pVarMod(&v1,&v2,&vDst);
2719 ok(hres == DISP_E_TYPEMISMATCH && V_VT(&vDst) == VT_EMPTY && V_I4(&vDst) == 1231,
2720 "VarMod: expected 0x%x,%d,%d, got 0x%X,%d,%d\n", DISP_E_TYPEMISMATCH, VT_EMPTY, 1231, hres, V_VT(&vDst), V_I4(&vDst));
2721
2722
2723 /* test some invalid types */
2724 /*TODO: not testing VT_DISPATCH */
2725 if (HAVE_OLEAUT32_I8)
2726 {
2727 VARMOD2(I8,INT,100,10,EMPTY,0,DISP_E_TYPEMISMATCH);
2728 }
2729 VARMOD2(ERROR,I4,100,10,EMPTY,0,DISP_E_TYPEMISMATCH);
2730 VARMOD2(VARIANT,I4,100,10,EMPTY,0,DISP_E_TYPEMISMATCH);
2731 VARMOD2(UNKNOWN,I4,100,10,EMPTY,0,DISP_E_TYPEMISMATCH);
2732 VARMOD2(VOID,I4,100,10,EMPTY,0,DISP_E_BADVARTYPE);
2733 VARMOD2(HRESULT,I4,100,10,EMPTY,0,DISP_E_BADVARTYPE);
2734 VARMOD2(PTR,I4,100,10,EMPTY,0,DISP_E_BADVARTYPE);
2735 VARMOD2(SAFEARRAY,I4,100,10,EMPTY,0,DISP_E_BADVARTYPE);
2736 VARMOD2(CARRAY,I4,100,10,EMPTY,0,DISP_E_BADVARTYPE);
2737 VARMOD2(USERDEFINED,I4,100,10,EMPTY,0,DISP_E_BADVARTYPE);
2738 VARMOD2(LPSTR,I4,100,10,EMPTY,0,DISP_E_BADVARTYPE);
2739 VARMOD2(LPWSTR,I4,100,10,EMPTY,0,DISP_E_BADVARTYPE);
2740 VARMOD2(RECORD,I4,100,10,EMPTY,0,DISP_E_TYPEMISMATCH);
2741 VARMOD2(FILETIME,I4,100,10,EMPTY,0,DISP_E_BADVARTYPE);
2742 VARMOD2(BLOB,I4,100,10,EMPTY,0,DISP_E_BADVARTYPE);
2743 VARMOD2(STREAM,I4,100,10,EMPTY,0,DISP_E_BADVARTYPE);
2744 VARMOD2(STORAGE,I4,100,10,EMPTY,0,DISP_E_BADVARTYPE);
2745 VARMOD2(STREAMED_OBJECT,I4,100,10,EMPTY,0,DISP_E_BADVARTYPE);
2746 VARMOD2(STORED_OBJECT,I4,100,10,EMPTY,0,DISP_E_BADVARTYPE);
2747 VARMOD2(BLOB_OBJECT,I4,100,10,EMPTY,0,DISP_E_BADVARTYPE);
2748 VARMOD2(CF,I4,100,10,EMPTY,0,DISP_E_BADVARTYPE);
2749 VARMOD2(CLSID,CLSID,100,10,EMPTY,0,DISP_E_BADVARTYPE);
2750 VARMOD2(VECTOR,I4,100,10,EMPTY,0,DISP_E_BADVARTYPE);
2751 VARMOD2(ARRAY,I4,100,10,EMPTY,0,DISP_E_BADVARTYPE);
2752 VARMOD2(BYREF,I4,100,10,EMPTY,0,DISP_E_BADVARTYPE);
2753
2754 /* test some more invalid types */
2755 V_VT(&v1) = 456;
2756 V_VT(&v2) = 234;
2757 V_I4(&v1) = 100;
2758 V_I4(&v2)= 10;
2759 hres = pVarMod(&v1,&v2,&vDst);
2760 ok(hres == DISP_E_BADVARTYPE && V_VT(&vDst) == VT_EMPTY,
2761 "VarMod: expected 0x%x,%d, got 0x%X,%d\n", DISP_E_BADVARTYPE, VT_EMPTY, hres, V_VT(&vDst));
2762
2763 SysFreeString(strNum0);
2764 SysFreeString(strNum1);
2765 }
2766
2767 static HRESULT (WINAPI *pVarFix)(LPVARIANT,LPVARIANT);
2768
2769 #define VARFIX(vt,val,rvt,rval) \
2770 V_VT(&v) = VT_##vt; V_##vt(&v) = val; \
2771 V_VT(&exp) = VT_##rvt; V_##rvt(&exp) = rval; \
2772 test_var_call1( __LINE__, pVarFix, &v, &exp )
2773
2774 static void test_VarFix(void)
2775 {
2776 static const WCHAR szNumMinus1[] = {'-','1','\0' };
2777 HRESULT hres;
2778 VARIANT v, exp, vDst;
2779 DECIMAL *pdec = &V_DECIMAL(&v);
2780 CY *pcy = &V_CY(&v);
2781 size_t i;
2782
2783 CHECKPTR(VarFix);
2784
2785 /* Test all possible V_VT values */
2786 for (i = 0; i < sizeof(ExtraFlags)/sizeof(ExtraFlags[0]); i++)
2787 {
2788 VARTYPE vt;
2789
2790 for (vt = 0; vt <= VT_BSTR_BLOB; vt++)
2791 {
2792 HRESULT bFail = TRUE;
2793
2794 SKIPTESTS(vt);
2795
2796 memset(&v, 0, sizeof(v));
2797 V_VT(&v) = vt | ExtraFlags[i];
2798 V_VT(&vDst) = VT_EMPTY;
2799
2800 switch (V_VT(&v))
2801 {
2802 case VT_UI1: case VT_I2: case VT_I4: case VT_R4: case VT_R8:
2803 case VT_DECIMAL: case VT_BOOL: case VT_NULL: case VT_EMPTY:
2804 case VT_DATE: case VT_CY:
2805 bFail = FALSE;
2806 break;
2807 case VT_I8:
2808 if (HAVE_OLEAUT32_I8)
2809 bFail = FALSE;
2810 break;
2811 }
2812
2813 hres = pVarFix(&v,&vDst);
2814 if (bFail)
2815 ok(hres == DISP_E_TYPEMISMATCH || hres == DISP_E_BADVARTYPE,
2816 "VarFix: expected failure, got 0x%X vt %d|0x%X\n",
2817 hres, vt, ExtraFlags[i]);
2818 else
2819 ok(hres == S_OK, "VarFix: expected S_OK, got 0x%X vt %d|0x%X\n",
2820 hres, vt, ExtraFlags[i]);
2821 }
2822 }
2823
2824 VARFIX(BOOL,VARIANT_TRUE,I2,VARIANT_TRUE);
2825 VARFIX(BOOL,VARIANT_FALSE,I2,0);
2826 VARFIX(BOOL,1,I2,1);
2827 VARFIX(UI1,1,UI1,1);
2828 VARFIX(I2,-1,I2,-1);
2829 VARFIX(I4,-1,I4,-1);
2830 if (HAVE_OLEAUT32_I8)
2831 {
2832 VARFIX(I8,-1,I8,-1);
2833 }
2834 VARFIX(R4,1.4f,R4,1);
2835 VARFIX(R4,1.5f,R4,1);
2836 VARFIX(R4,1.6f,R4,1);
2837 VARFIX(R4,-1.4f,R4,-1);
2838 VARFIX(R4,-1.5f,R4,-1);
2839 VARFIX(R4,-1.6f,R4,-1);
2840 /* DATE & R8 round as for R4 */
2841 VARFIX(DATE,-1,DATE,-1);
2842 VARFIX(R8,-1,R8,-1);
2843 VARFIX(BSTR,(BSTR)szNumMinus1,R8,-1);
2844
2845 V_VT(&v) = VT_EMPTY;
2846 hres = pVarFix(&v,&vDst);
2847 ok(hres == S_OK && V_VT(&vDst) == VT_I2 && V_I2(&vDst) == 0,
2848 "VarFix: expected 0x0,%d,0 got 0x%X,%d,%d\n", VT_EMPTY,
2849 hres, V_VT(&vDst), V_I2(&vDst));
2850
2851 V_VT(&v) = VT_NULL;
2852 hres = pVarFix(&v,&vDst);
2853 ok(hres == S_OK && V_VT(&vDst) == VT_NULL,
2854 "VarFix: expected 0x0,%d got 0x%X,%d\n", VT_NULL, hres, V_VT(&vDst));
2855
2856 V_VT(&v) = VT_DECIMAL;
2857 S(U(*pdec)).sign = DECIMAL_NEG;
2858 S(U(*pdec)).scale = 0;
2859 pdec->Hi32 = 0;
2860 S1(U1(*pdec)).Mid32 = 0;
2861 S1(U1(*pdec)).Lo32 = 1;
2862 hres = pVarFix(&v,&vDst);
2863 ok(hres == S_OK && V_VT(&vDst) == VT_DECIMAL && !memcmp(&V_DECIMAL(&v), &V_DECIMAL(&vDst), sizeof(DECIMAL)),
2864 "VarFix: expected 0x0,%d,identical, got 0x%X,%d\n", VT_DECIMAL,
2865 hres, V_VT(&vDst));
2866
2867 /* FIXME: Test some fractional decimals when VarDecFix is implemented */
2868
2869 V_VT(&v) = VT_CY;
2870 pcy->int64 = -10000;
2871 hres = pVarFix(&v,&vDst);
2872 ok(hres == S_OK && V_VT(&vDst) == VT_CY && V_CY(&vDst).int64 == -10000,
2873 "VarFix: VT_CY wrong, hres=0x%X\n", hres);
2874
2875 V_VT(&v) = VT_CY;
2876 pcy->int64 = -16000;
2877 hres = pVarFix(&v,&vDst);
2878 ok(hres == S_OK && V_VT(&vDst) == VT_CY && V_CY(&vDst).int64 == -10000,
2879 "VarFix: VT_CY wrong, hres=0x%X\n", hres);
2880 }
2881
2882 static HRESULT (WINAPI *pVarInt)(LPVARIANT,LPVARIANT);
2883
2884 #define VARINT(vt,val,rvt,rval) \
2885 V_VT(&v) = VT_##vt; V_##vt(&v) = val; \
2886 V_VT(&exp) = VT_##rvt; V_##rvt(&exp) = rval; \
2887 test_var_call1( __LINE__, pVarInt, &v, &exp )
2888
2889 static void test_VarInt(void)
2890 {
2891 static const WCHAR szNumMinus1[] = {'-','1','\0' };
2892 HRESULT hres;
2893 VARIANT v, exp, vDst;
2894 DECIMAL *pdec = &V_DECIMAL(&v);
2895 CY *pcy = &V_CY(&v);
2896 size_t i;
2897
2898 CHECKPTR(VarInt);
2899
2900 /* Test all possible V_VT values */
2901 for (i = 0; i < sizeof(ExtraFlags)/sizeof(ExtraFlags[0]); i++)
2902 {
2903 VARTYPE vt;
2904
2905 for (vt = 0; vt <= VT_BSTR_BLOB; vt++)
2906 {
2907 HRESULT bFail = TRUE;
2908
2909 SKIPTESTS(vt);
2910
2911 memset(&v, 0, sizeof(v));
2912 V_VT(&v) = vt | ExtraFlags[i];
2913 V_VT(&vDst) = VT_EMPTY;
2914
2915 switch (V_VT(&v))
2916 {
2917 case VT_UI1: case VT_I2: case VT_I4: case VT_R4: case VT_R8:
2918 case VT_DECIMAL: case VT_BOOL: case VT_NULL: case VT_EMPTY:
2919 case VT_DATE: case VT_CY:
2920 bFail = FALSE;
2921 break;
2922 case VT_I8:
2923 if (HAVE_OLEAUT32_I8)
2924 bFail = FALSE;
2925 break;
2926 }
2927
2928 hres = pVarInt(&v,&vDst);
2929 if (bFail)
2930 ok(hres == DISP_E_TYPEMISMATCH || hres == DISP_E_BADVARTYPE,
2931 "VarInt: expected failure, got 0x%X vt %d|0x%X\n",
2932 hres, vt, ExtraFlags[i]);
2933 else
2934 ok(hres == S_OK, "VarInt: expected S_OK, got 0x%X vt %d|0x%X\n",
2935 hres, vt, ExtraFlags[i]);
2936 }
2937 }
2938
2939 VARINT(BOOL,VARIANT_TRUE,I2,VARIANT_TRUE);
2940 VARINT(BOOL,VARIANT_FALSE,I2,0);
2941 VARINT(BOOL,1,I2,1);
2942 VARINT(UI1,1,UI1,1);
2943 VARINT(I2,-1,I2,-1);
2944 VARINT(I4,-1,I4,-1);
2945 if (HAVE_OLEAUT32_I8)
2946 {
2947 VARINT(I8,-1,I8,-1);
2948 }
2949 VARINT(R4,1.4f,R4,1);
2950 VARINT(R4,1.5f,R4,1);
2951 VARINT(R4,1.6f,R4,1);
2952 VARINT(R4,-1.4f,R4,-2); /* Note these 3 are different from VarFix */
2953 VARINT(R4,-1.5f,R4,-2);
2954 VARINT(R4,-1.6f,R4,-2);
2955 /* DATE & R8 round as for R4 */
2956 VARINT(DATE,-1,DATE,-1);
2957 VARINT(R8,-1,R8,-1);
2958 VARINT(BSTR,(BSTR)szNumMinus1,R8,-1);
2959
2960 V_VT(&v) = VT_EMPTY;
2961 hres = pVarInt(&v,&vDst);
2962 ok(hres == S_OK && V_VT(&vDst) == VT_I2 && V_I2(&vDst) == 0,
2963 "VarInt: expected 0x0,%d,0 got 0x%X,%d,%d\n", VT_EMPTY,
2964 hres, V_VT(&vDst), V_I2(&vDst));
2965
2966 V_VT(&v) = VT_NULL;
2967 hres = pVarInt(&v,&vDst);
2968 ok(hres == S_OK && V_VT(&vDst) == VT_NULL,
2969 "VarInt: expected 0x0,%d got 0x%X,%d\n", VT_NULL, hres, V_VT(&vDst));
2970
2971 V_VT(&v) = VT_DECIMAL;
2972 S(U(*pdec)).sign = DECIMAL_NEG;
2973 S(U(*pdec)).scale = 0;
2974 pdec->Hi32 = 0;
2975 S1(U1(*pdec)).Mid32 = 0;
2976 S1(U1(*pdec)).Lo32 = 1;
2977 hres = pVarInt(&v,&vDst);
2978 ok(hres == S_OK && V_VT(&vDst) == VT_DECIMAL && !memcmp(&V_DECIMAL(&v), &V_DECIMAL(&vDst), sizeof(DECIMAL)),
2979 "VarInt: expected 0x0,%d,identical, got 0x%X,%d\n", VT_DECIMAL,
2980 hres, V_VT(&vDst));
2981
2982 /* FIXME: Test some fractional decimals when VarDecInt is implemented */
2983
2984 V_VT(&v) = VT_CY;
2985 pcy->int64 = -10000;
2986 hres = pVarInt(&v,&vDst);
2987 ok(hres == S_OK && V_VT(&vDst) == VT_CY && V_CY(&vDst).int64 == -10000,
2988 "VarInt: VT_CY wrong, hres=0x%X\n", hres);
2989
2990 V_VT(&v) = VT_CY;
2991 pcy->int64 = -11000;
2992 hres = pVarInt(&v,&vDst);
2993 ok(hres == S_OK && V_VT(&vDst) == VT_CY && V_CY(&vDst).int64 == -20000,
2994 "VarInt: VT_CY wrong, hres=0x%X 0x%x%08x\n",
2995 hres, (DWORD)(V_CY(&vDst).int64 >> 32), (DWORD)V_CY(&vDst).int64);
2996 }
2997
2998 static HRESULT (WINAPI *pVarNeg)(LPVARIANT,LPVARIANT);
2999
3000 #define VARNEG(vt,val,rvt,rval) \
3001 V_VT(&v) = VT_##vt; V_##vt(&v) = val; \
3002 V_VT(&exp) = VT_##rvt; V_##rvt(&exp) = rval; \
3003 test_var_call1( __LINE__, pVarNeg, &v, &exp )
3004
3005 static void test_VarNeg(void)
3006 {
3007 static const WCHAR szNumMinus1[] = {'-','1','\0' };
3008 static const WCHAR szNum1[] = {'1','\0' };
3009 HRESULT hres;
3010 VARIANT v, exp, vDst;
3011 DECIMAL *pdec = &V_DECIMAL(&v);
3012 CY *pcy = &V_CY(&v);
3013 size_t i;
3014
3015 CHECKPTR(VarNeg);
3016
3017 /* Test all possible V_VT values. But don't test the exact return values
3018 * except for success/failure, since M$ made a hash of them in the
3019 * native version. This at least ensures (as with all tests here) that
3020 * we will notice if/when new vtypes/flags are added in native.
3021 */
3022 for (i = 0; i < sizeof(ExtraFlags)/sizeof(ExtraFlags[0]); i++)
3023 {
3024 VARTYPE vt;
3025
3026 for (vt = 0; vt <= VT_BSTR_BLOB; vt++)
3027 {
3028 HRESULT bFail = TRUE;
3029
3030 SKIPTESTS(vt);
3031
3032 memset(&v, 0, sizeof(v));
3033 V_VT(&v) = vt | ExtraFlags[i];
3034 V_VT(&vDst) = VT_EMPTY;
3035
3036 switch (V_VT(&v))
3037 {
3038 case VT_UI1: case VT_I2: case VT_I4:
3039 case VT_R4: case VT_R8:
3040 case VT_DECIMAL: case VT_BOOL: case VT_NULL: case VT_EMPTY:
3041 case VT_DATE: case VT_CY:
3042 bFail = FALSE;
3043 break;
3044 case VT_I8:
3045 if (HAVE_OLEAUT32_I8)
3046 bFail = FALSE;
3047 }
3048
3049 hres = pVarNeg(&v,&vDst);
3050 if (bFail)
3051 ok(hres == DISP_E_TYPEMISMATCH || hres == DISP_E_BADVARTYPE,
3052 "VarNeg: expected failure, got 0x%X vt %d|0x%X\n",
3053 hres, vt, ExtraFlags[i]);
3054 else
3055 ok(hres == S_OK, "VarNeg: expected S_OK, got 0x%X vt %d|0x%X\n",
3056 hres, vt, ExtraFlags[i]);
3057 }
3058 }
3059
3060 VARNEG(BOOL,VARIANT_TRUE,I2,1);
3061 VARNEG(BOOL,VARIANT_FALSE,I2,0);
3062 VARNEG(BOOL,1,I2,-1);
3063 VARNEG(UI1,1,I2,-1);
3064 VARNEG(UI1,254,I2,-254);
3065 VARNEG(I2,-32768,I4,32768);
3066 VARNEG(I2,-1,I2,1);
3067 VARNEG(I2,1,I2,-1);
3068 VARNEG(I4,-((int)(~0u >> 1)) - 1,R8,-2147483648u);
3069 VARNEG(I4,-1,I4,1);
3070 VARNEG(I4,1,I4,-1);
3071 if (HAVE_OLEAUT32_I8)
3072 {
3073 VARNEG(I8,1,I8,-1);
3074 VARNEG(I8,-1,I8,1);
3075 }
3076 VARNEG(R4,1,R4,-1);
3077 VARNEG(R4,-1,R4,1);
3078 VARNEG(DATE,1,DATE,-1);
3079 VARNEG(DATE,-1,DATE,1);
3080 VARNEG(R8,1,R8,-1);
3081 VARNEG(R8,-1,R8,1);
3082 VARNEG(BSTR,(BSTR)szNumMinus1,R8,1);
3083 VARNEG(BSTR,(BSTR)szNum1,R8,-1);
3084
3085 V_VT(&v) = VT_EMPTY;
3086 hres = pVarNeg(&v,&vDst);
3087 ok(hres == S_OK && V_VT(&vDst) == VT_I2 && V_I2(&vDst) == 0,
3088 "VarNeg: expected 0x0,%d,0 got 0x%X,%d,%d\n", VT_EMPTY,
3089 hres, V_VT(&vDst), V_I2(&vDst));
3090
3091 V_VT(&v) = VT_NULL;
3092 hres = pVarNeg(&v,&vDst);
3093 ok(hres == S_OK && V_VT(&vDst) == VT_NULL,
3094 "VarNeg: expected 0x0,%d got 0x%X,%d\n", VT_NULL, hres, V_VT(&vDst));
3095
3096 V_VT(&v) = VT_DECIMAL;
3097 S(U(*pdec)).sign = DECIMAL_NEG;
3098 S(U(*pdec)).scale = 0;
3099 pdec->Hi32 = 0;
3100 S1(U1(*pdec)).Mid32 = 0;
3101 S1(U1(*pdec)).Lo32 = 1;
3102 hres = pVarNeg(&v,&vDst);
3103 ok(hres == S_OK && V_VT(&vDst) == VT_DECIMAL &&
3104 S(U(V_DECIMAL(&vDst))).sign == 0,
3105 "VarNeg: expected 0x0,%d,0x00, got 0x%X,%d,%02x\n", VT_DECIMAL,
3106 hres, V_VT(&vDst), S(U(V_DECIMAL(&vDst))).sign);
3107
3108 S(U(*pdec)).sign = 0;
3109 hres = pVarNeg(&v,&vDst);
3110 ok(hres == S_OK && V_VT(&vDst) == VT_DECIMAL &&
3111 S(U(V_DECIMAL(&vDst))).sign == DECIMAL_NEG,
3112 "VarNeg: expected 0x0,%d,0x7f, got 0x%X,%d,%02x\n", VT_DECIMAL,
3113 hres, V_VT(&vDst), S(U(V_DECIMAL(&vDst))).sign);
3114
3115 V_VT(&v) = VT_CY;
3116 pcy->int64 = -10000;
3117 hres = pVarNeg(&v,&vDst);
3118 ok(hres == S_OK && V_VT(&vDst) == VT_CY && V_CY(&vDst).int64 == 10000,
3119 "VarNeg: VT_CY wrong, hres=0x%X\n", hres);
3120 }
3121
3122 static HRESULT (WINAPI *pVarRound)(LPVARIANT,int,LPVARIANT);
3123
3124 static void test_Round( int line, VARIANT *arg, int deci, VARIANT *expected )
3125 {
3126 VARIANT result;
3127 HRESULT hres;
3128
3129 memset( &result, 0, sizeof(result) );
3130 hres = pVarRound( arg, deci, &result );
3131 ok_(__FILE__,line)( hres == S_OK, "wrong result %x\n", hres );
3132 if (hres == S_OK)
3133 ok_(__FILE__,line)( is_expected_variant( &result, expected ),
3134 "got %s expected %s\n", variantstr(&result), variantstr(expected) );
3135 }
3136 #define VARROUND(vt,val,deci,rvt,rval) \
3137 V_VT(&v) = VT_##vt; V_##vt(&v) = val; \
3138 V_VT(&exp) = VT_##rvt; V_##rvt(&exp) = rval; \
3139 test_Round( __LINE__, &v, deci, &exp )
3140
3141 static void test_VarRound(void)
3142 {
3143 static WCHAR szNumMin[] = {'-','1','.','4','4','9','\0' };
3144 static WCHAR szNum[] = {'1','.','4','5','1','\0' };
3145 HRESULT hres;
3146 VARIANT v, exp, vDst;
3147 CY *pcy = &V_CY(&v);
3148 char buff[8];
3149
3150 CHECKPTR(VarRound);
3151
3152 /* first check valid integer types */
3153 VARROUND(BOOL,VARIANT_TRUE,0,I2,-1);
3154 VARROUND(BOOL,VARIANT_FALSE,0,I2,0);
3155 VARROUND(BOOL,1,0,I2,1);
3156 VARROUND(UI1,1,0,UI1,1);
3157 VARROUND(UI1,254,0,UI1,254);
3158 VARROUND(I2,-32768,0,I2,-32768);
3159 VARROUND(I2,-1,0,I2,-1);
3160 VARROUND(I2,1,0,I2,1);
3161 VARROUND(I4,-((int)(~0u >> 1)) - 1,0,I4,-((int)(~0u >> 1)) - 1);
3162 VARROUND(I4,-1,0,I4,-1);
3163 VARROUND(I4,1,0,I4,1);
3164
3165
3166 /* MSDN states that rounding of R4/R8 is dependent on the underlying
3167 * bit pattern of the number and so is architecture dependent. In this
3168 * case Wine returns .2 (which is more correct) and Native returns .3
3169 */
3170
3171 VARROUND(R4,1.0f,0,R4,1.0f);
3172 VARROUND(R4,-1.0f,0,R4,-1.0f);
3173 VARROUND(R8,1.0,0,R8,1.0);
3174 VARROUND(R8,-1.0,0,R8,-1.0);
3175
3176 /* floating point numbers aren't exactly equal and we can't just
3177 * compare the first few digits. */
3178 VARROUND(DATE,1.451,1,DATE,1.5);
3179 VARROUND(DATE,-1.449,1,DATE,-1.4);
3180
3181 /* replace the decimal separator */
3182 GetLocaleInfoA(LOCALE_USER_DEFAULT, LOCALE_SDECIMAL, buff, sizeof(buff)/sizeof(char));
3183 if (!buff[1]) {
3184 szNumMin[2] = buff[0];
3185 szNum[1] = buff[0];
3186 VARROUND(BSTR,(BSTR)szNumMin,1,R8,-1.40);
3187 VARROUND(BSTR,(BSTR)szNum,1,R8,1.50);
3188 } else {
3189 skip("Skipping VarRound(BSTR) as decimal separator is '%s'\n", buff);
3190 }
3191
3192 VARROUND(R4,1.23456f,0,R4,1.0f);
3193 VARROUND(R4,1.23456f,1,R4,1.2f);
3194 VARROUND(R4,1.23456f,2,R4,1.23f);
3195 VARROUND(R4,1.23456f,3,R4,1.235f);
3196 VARROUND(R4,1.23456f,4,R4,1.2346f);
3197 VARROUND(R4,-1.23456f,0,R4,-1.0f);
3198 VARROUND(R4,-1.23456f,1,R4,-1.2f);
3199 VARROUND(R4,-1.23456f,2,R4,-1.23f);
3200 VARROUND(R4,-1.23456f,3,R4,-1.235f);
3201 VARROUND(R4,-1.23456f,4,R4,-1.2346f);
3202
3203 VARROUND(R8,1.23456,0,R8,1.0);
3204 VARROUND(R8,1.23456,1,R8,1.2);
3205 VARROUND(R8,1.23456,2,R8,1.23);
3206 VARROUND(R8,1.23456,3,R8,1.235);
3207 VARROUND(R8,1.23456,4,R8,1.2346);
3208 VARROUND(R8,-1.23456,0,R8,-1.0);
3209 VARROUND(R8,-1.23456,1,R8,-1.2);
3210 VARROUND(R8,-1.23456,2,R8,-1.23);
3211 VARROUND(R8,-1.23456,3,R8,-1.235);
3212 VARROUND(R8,-1.23456,4,R8,-1.2346);
3213
3214 V_VT(&v) = VT_EMPTY;
3215 hres = pVarRound(&v,0,&vDst);
3216 ok(hres == S_OK && V_VT(&vDst) == VT_I2 && V_I2(&vDst) == 0,
3217 "VarRound: expected 0x0,%d,0 got 0x%X,%d,%d\n", VT_EMPTY,
3218 hres, V_VT(&vDst), V_I2(&vDst));
3219
3220 V_VT(&v) = VT_NULL;
3221 hres = pVarRound(&v,0,&vDst);
3222 ok(hres == S_OK && V_VT(&vDst) == VT_NULL,
3223 "VarRound: expected 0x0,%d got 0x%X,%d\n", VT_NULL, hres, V_VT(&vDst));
3224
3225 /* not yet implemented so no use testing yet
3226 todo_wine {
3227 DECIMAL *pdec = &V_DECIMAL(&v);
3228 V_VT(&v) = VT_DECIMAL;
3229 S(U(*pdec)).sign = DECIMAL_NEG;
3230 S(U(*pdec)).scale = 0;
3231 pdec->Hi32 = 0;
3232 S1(U1(*pdec)).Mid32 = 0;
3233 S1(U1(*pdec)).Lo32 = 1;
3234 hres = pVarRound(&v,0,&vDst);
3235 ok(hres == S_OK && V_VT(&vDst) == VT_DECIMAL &&
3236 S(U(V_DECIMAL(&vDst))).sign == 0,
3237 "VarRound: expected 0x0,%d,0x00, got 0x%X,%d,%02x\n", VT_DECIMAL,
3238 hres, V_VT(&vDst), S(U(V_DECIMAL(&vDst))).sign);
3239
3240 S(U(*pdec)).sign = 0;
3241 hres = pVarRound(&v,0,&vDst);
3242 ok(hres == S_OK && V_VT(&vDst) == VT_DECIMAL &&
3243 S(U(V_DECIMAL(&vDst))).sign == DECIMAL_NEG,
3244 "VarRound: expected 0x0,%d,0x7f, got 0x%X,%d,%02x\n", VT_DECIMAL,
3245 hres, V_VT(&vDst), S(U(V_DECIMAL(&vDst))).sign);
3246 }
3247 */
3248
3249 V_VT(&v) = VT_CY;
3250 pcy->int64 = 10000;
3251 hres = pVarRound(&v,0,&vDst);
3252 ok(hres == S_OK && V_VT(&vDst) == VT_CY && V_CY(&vDst).int64 == 10000,
3253 "VarRound: VT_CY wrong, hres=0x%X\n", hres);
3254
3255 }
3256
3257 static HRESULT (WINAPI *pVarXor)(LPVARIANT,LPVARIANT,LPVARIANT);
3258
3259 #define VARXOR(vt1,val1,vt2,val2,rvt,rval) \
3260 V_VT(&left) = VT_##vt1; V_##vt1(&left) = val1; \
3261 V_VT(&right) = VT_##vt2; V_##vt2(&right) = val2; \
3262 V_VT(&exp) = VT_##rvt; V_##rvt(&exp) = rval; \
3263 test_var_call2( __LINE__, pVarXor, &left, &right, &exp )
3264
3265 #define VARXORCY(vt1,val1,val2,rvt,rval) \
3266 V_VT(&left) = VT_##vt1; V_##vt1(&left) = val1; \
3267 V_VT(&right) = VT_CY; V_CY(&right).int64 = val2; \
3268 V_VT(&exp) = VT_##rvt; V_##rvt(&exp) = rval; \
3269 test_var_call2( __LINE__, pVarXor, &left, &right, &exp )
3270
3271 static void test_VarXor(void)
3272 {
3273 static const WCHAR szFalse[] = { '#','F','A','L','S','E','#','\0' };
3274 static const WCHAR szTrue[] = { '#','T','R','U','E','#','\0' };
3275 VARIANT left, right, exp, result;
3276 BSTR lbstr, rbstr;
3277 VARTYPE i;
3278 HRESULT hres;
3279
3280 CHECKPTR(VarXor);
3281
3282 /* Test all possible flag/vt combinations & the resulting vt type */
3283 for (i = 0; i < sizeof(ExtraFlags)/sizeof(ExtraFlags[0]); i++)
3284 {
3285 VARTYPE leftvt, rightvt, resvt;
3286
3287 for (leftvt = 0; leftvt <= VT_BSTR_BLOB; leftvt++)
3288 {
3289
3290 SKIPTESTS(leftvt);
3291
3292 for (rightvt = 0; rightvt <= VT_BSTR_BLOB; rightvt++)
3293 {
3294 BOOL bFail = FALSE;
3295
3296 SKIPTESTS(rightvt);
3297
3298 if (leftvt == VT_BSTR || rightvt == VT_BSTR ||
3299 leftvt == VT_DISPATCH || rightvt == VT_DISPATCH ||
3300 leftvt == VT_UNKNOWN || rightvt == VT_UNKNOWN)
3301 continue;
3302
3303 memset(&left, 0, sizeof(left));
3304 memset(&right, 0, sizeof(right));
3305 V_VT(&left) = leftvt | ExtraFlags[i];
3306 V_VT(&right) = rightvt | ExtraFlags[i];
3307 V_VT(&result) = VT_EMPTY;
3308 resvt = VT_I4;
3309
3310 if (ExtraFlags[i] & VT_ARRAY || ExtraFlags[i] & VT_BYREF ||
3311 !IsValidVariantClearVT(leftvt, ExtraFlags[i]) ||
3312 !IsValidVariantClearVT(rightvt, ExtraFlags[i]) ||
3313 leftvt == VT_CLSID || rightvt == VT_CLSID ||
3314 leftvt == VT_RECORD || rightvt == VT_RECORD ||
3315 leftvt == VT_VARIANT || rightvt == VT_VARIANT ||
3316 leftvt == VT_ERROR || rightvt == VT_ERROR)
3317 {
3318 bFail = TRUE;
3319 }
3320 if (leftvt == VT_EMPTY || rightvt == VT_EMPTY)
3321 {
3322 if (leftvt == rightvt ||
3323 leftvt == VT_I2 || rightvt == VT_I2 ||
3324 leftvt == VT_UI1 || rightvt == VT_UI1 ||
3325 leftvt == VT_BOOL || rightvt == VT_BOOL)
3326 resvt = VT_I2;
3327 else if (leftvt == VT_NULL || rightvt == VT_NULL)
3328 resvt = VT_NULL;
3329 else if (leftvt == VT_I8 || rightvt == VT_I8)
3330 resvt = VT_I8;
3331 }
3332 else if (leftvt == VT_NULL || rightvt == VT_NULL)
3333 {
3334 resvt = VT_NULL;
3335 }
3336 else if (leftvt == VT_UI1 || rightvt == VT_UI1)
3337 {
3338 if (leftvt == rightvt)
3339 resvt = VT_UI1;
3340 else if (leftvt == rightvt ||
3341 leftvt == VT_I2 || rightvt == VT_I2 ||
3342 leftvt == VT_BOOL || rightvt == VT_BOOL)
3343 {
3344 resvt = VT_I2;
3345 }
3346 else if (leftvt == VT_I8 || rightvt == VT_I8)
3347 resvt = VT_I8;
3348 }
3349 else if (leftvt == VT_I2 || rightvt == VT_I2)
3350 {
3351 if (leftvt == rightvt ||
3352 leftvt == VT_BOOL || rightvt == VT_BOOL)
3353 resvt = VT_I2;
3354 else if (leftvt == VT_I8 || rightvt == VT_I8)
3355 resvt = VT_I8;
3356 }
3357 else if (leftvt == VT_BOOL && rightvt == VT_BOOL)
3358 {
3359 resvt = VT_BOOL;
3360 }
3361 else if (leftvt == VT_I8 || rightvt == VT_I8)
3362 {
3363 if (leftvt == VT_INT || rightvt == VT_INT)
3364 bFail = TRUE;
3365 else
3366 resvt = VT_I8;
3367 }
3368 hres = pVarXor(&left, &right, &result);
3369 if (bFail)
3370 ok(hres == DISP_E_TYPEMISMATCH || hres == DISP_E_BADVARTYPE,
3371 "VarXor: %d|0x%X, %d|0x%X: Expected failure, got 0x%X vt %d\n",
3372 leftvt, ExtraFlags[i], rightvt, ExtraFlags[i], hres,
3373 V_VT(&result));
3374 else
3375 ok(hres == S_OK && V_VT(&result) == resvt,
3376 "VarXor: %d|0x%X, %d|0x%X: expected S_OK, vt %d, got 0x%X vt %d\n",
3377 leftvt, ExtraFlags[i], rightvt, ExtraFlags[i], resvt, hres,
3378 V_VT(&result));
3379 }
3380 }
3381 }
3382
3383 /* Test returned values
3384 * FIXME: Test VT_DECIMAL/VT_DISPATCH
3385 */
3386 VARXOR(EMPTY,0,EMPTY,0,I2,0);
3387 VARXOR(EMPTY,1,EMPTY,0,I2,0);
3388 VARXOR(EMPTY,0,NULL,0,NULL,0);
3389 VARXOR(EMPTY,0,I1,0,I4,0);
3390 VARXOR(EMPTY,0,I1,1,I4,1);
3391 VARXOR(EMPTY,0,UI1,0,I2,0);
3392 VARXOR(EMPTY,0,UI1,1,I2,1);
3393 VARXOR(EMPTY,0,I2,0,I2,0);
3394 VARXOR(EMPTY,0,I2,1,I2,1);
3395 VARXOR(EMPTY,0,UI2,0,I4,0);
3396 VARXOR(EMPTY,0,UI2,1,I4,1);
3397 VARXOR(EMPTY,0,I4,0,I4,0);
3398 VARXOR(EMPTY,0,I4,1,I4,1);
3399 VARXOR(EMPTY,0,UI4,0,I4,0);
3400 VARXOR(EMPTY,0,UI4,1,I4,1);
3401 if (HAVE_OLEAUT32_I8)
3402 {
3403 VARXOR(EMPTY,0,I8,0,I8,0);
3404 VARXOR(EMPTY,0,I8,1,I8,1);
3405 VARXOR(EMPTY,0,UI8,0,I4,0);
3406 VARXOR(EMPTY,0,UI8,1,I4,1);
3407 }
3408 VARXOR(EMPTY,0,INT,0,I4,0);
3409 VARXOR(EMPTY,0,INT,1,I4,1);
3410 VARXOR(EMPTY,0,UINT,0,I4,0);
3411 VARXOR(EMPTY,0,UINT,1,I4,1);
3412 VARXOR(EMPTY,0,BOOL,0,I2,0);
3413 VARXOR(EMPTY,0,BOOL,1,I2,1);
3414 VARXOR(EMPTY,0,R4,0,I4,0);
3415 VARXOR(EMPTY,0,R4,1,I4,1);
3416 VARXOR(EMPTY,0,R8,0,I4,0);
3417 VARXOR(EMPTY,0,R8,1,I4,1);
3418 rbstr = SysAllocString(szFalse);
3419 VARXOR(EMPTY,0,BSTR,rbstr,I2,0);
3420 SysFreeString(rbstr);
3421 rbstr = SysAllocString(szTrue);
3422 VARXOR(EMPTY,0,BSTR,rbstr,I2,-1);
3423 VARXORCY(EMPTY,0,10000,I4,1);
3424 SysFreeString(rbstr);
3425
3426 /* NULL OR 0 = NULL. NULL OR n = n */
3427 VARXOR(NULL,0,NULL,0,NULL,0);
3428 VARXOR(NULL,1,NULL,0,NULL,0);
3429 VARXOR(NULL,0,I1,0,NULL,0);
3430 VARXOR(NULL,0,I1,1,NULL,0);
3431 VARXOR(NULL,0,UI1,0,NULL,0);
3432 VARXOR(NULL,0,UI1,1,NULL,0);
3433 VARXOR(NULL,0,I2,0,NULL,0);
3434 VARXOR(NULL,0,I2,1,NULL,0);
3435 VARXOR(NULL,0,UI2,0,NULL,0);
3436 VARXOR(NULL,0,UI2,1,NULL,0);
3437 VARXOR(NULL,0,I4,0,NULL,0);
3438 VARXOR(NULL,0,I4,1,NULL,0);
3439 VARXOR(NULL,0,UI4,0,NULL,0);
3440 VARXOR(NULL,0,UI4,1,NULL,0);
3441 if (HAVE_OLEAUT32_I8)
3442 {
3443 VARXOR(NULL,0,I8,0,NULL,0);
3444 VARXOR(NULL,0,I8,1,NULL,0);
3445 VARXOR(NULL,0,UI8,0,NULL,0);
3446 VARXOR(NULL,0,UI8,1,NULL,0);
3447 }
3448 VARXOR(NULL,0,INT,0,NULL,0);
3449 VARXOR(NULL,0,INT,1,NULL,0);
3450 VARXOR(NULL,0,UINT,0,NULL,0);
3451 VARXOR(NULL,0,UINT,1,NULL,0);
3452 VARXOR(NULL,0,BOOL,0,NULL,0);
3453 VARXOR(NULL,0,BOOL,1,NULL,0);
3454 VARXOR(NULL,0,R4,0,NULL,0);
3455 VARXOR(NULL,0,R4,1,NULL,0);
3456 VARXOR(NULL,0,R8,0,NULL,0);
3457 VARXOR(NULL,0,R8,1,NULL,0);
3458 rbstr = SysAllocString(szFalse);
3459 VARXOR(NULL,0,BSTR,rbstr,NULL,0);
3460 SysFreeString(rbstr);
3461 rbstr = SysAllocString(szTrue);
3462 VARXOR(NULL,0,BSTR,rbstr,NULL,0);
3463 SysFreeString(rbstr);
3464 VARXORCY(NULL,0,10000,NULL,0);
3465 VARXORCY(NULL,0,0,NULL,0);
3466
3467 VARXOR(BOOL,VARIANT_TRUE,BOOL,VARIANT_TRUE,BOOL,VARIANT_FALSE);
3468 VARXOR(BOOL,VARIANT_TRUE,BOOL,VARIANT_FALSE,BOOL,VARIANT_TRUE);
3469 VARXOR(BOOL,VARIANT_FALSE,BOOL,VARIANT_TRUE,BOOL,VARIANT_TRUE);
3470 VARXOR(BOOL,VARIANT_FALSE,BOOL,VARIANT_FALSE,BOOL,VARIANT_FALSE);
3471 /* Assume x,y & y,x are the same from now on to reduce the number of tests */
3472 VARXOR(BOOL,VARIANT_TRUE,I1,-1,I4,0);
3473 VARXOR(BOOL,VARIANT_TRUE,I1,0,I4,-1);
3474 VARXOR(BOOL,VARIANT_FALSE,I1,0,I4,0);
3475 VARXOR(BOOL,VARIANT_TRUE,UI1,255,I2,-256);
3476 VARXOR(BOOL,VARIANT_TRUE,UI1,0,I2,-1);
3477 VARXOR(BOOL,VARIANT_FALSE,UI1,0,I2,0);
3478 VARXOR(BOOL,VARIANT_TRUE,I2,-1,I2,0);
3479 VARXOR(BOOL,VARIANT_TRUE,I2,0,I2,-1);
3480 VARXOR(BOOL,VARIANT_FALSE,I2,0,I2,0);
3481 VARXOR(BOOL,VARIANT_TRUE,UI2,65535,I4,-65536);
3482 VARXOR(BOOL,VARIANT_TRUE,UI2,0,I4,-1);
3483 VARXOR(BOOL,VARIANT_FALSE,UI2,0,I4,0);
3484 VARXOR(BOOL,VARIANT_TRUE,I4,-1,I4,0);
3485 VARXOR(BOOL,VARIANT_TRUE,I4,0,I4,-1);
3486 VARXOR(BOOL,VARIANT_FALSE,I4,0,I4,0);
3487 VARXOR(BOOL,VARIANT_TRUE,UI4,0xffffffff,I4,0);
3488 VARXOR(BOOL,VARIANT_TRUE,UI4,0,I4,-1);
3489 VARXOR(BOOL,VARIANT_FALSE,UI4,0,I4,0);
3490 VARXOR(BOOL,VARIANT_TRUE,R4,-1,I4,0);
3491 VARXOR(BOOL,VARIANT_TRUE,R4,0,I4,-1);
3492 VARXOR(BOOL,VARIANT_FALSE,R4,0,I4,0);
3493 VARXOR(BOOL,VARIANT_TRUE,R8,-1,I4,0);
3494 VARXOR(BOOL,VARIANT_TRUE,R8,0,I4,-1);
3495 VARXOR(BOOL,VARIANT_FALSE,R8,0,I4,0);
3496 VARXOR(BOOL,VARIANT_TRUE,DATE,-1,I4,0);
3497 VARXOR(BOOL,VARIANT_TRUE,DATE,0,I4,-1);
3498 VARXOR(BOOL,VARIANT_FALSE,DATE,0,I4,0);
3499 if (HAVE_OLEAUT32_I8)
3500 {
3501 VARXOR(BOOL,VARIANT_TRUE,I8,-1,I8,0);
3502 VARXOR(BOOL,VARIANT_TRUE,I8,0,I8,-1);
3503 VARXOR(BOOL,VARIANT_FALSE,I8,0,I8,0);
3504 /* This returns DISP_E_OVERFLOW which indicates that a conversion
3505 * to I4 is performed.
3506 */
3507 /* VARXOR(BOOL,VARIANT_TRUE,UI8,-1,I4,-1); */
3508 VARXOR(BOOL,VARIANT_TRUE,UI8,0,I4,-1);
3509 VARXOR(BOOL,VARIANT_FALSE,UI8,0,I4,0);
3510 }
3511 VARXOR(BOOL,VARIANT_TRUE,INT,-1,I4,0);
3512 VARXOR(BOOL,VARIANT_TRUE,INT,0,I4,-1);
3513 VARXOR(BOOL,VARIANT_FALSE,INT,0,I4,0);
3514 VARXOR(BOOL,VARIANT_TRUE,UINT,0xffffffff,I4,0);
3515 VARXOR(BOOL,VARIANT_TRUE,UINT,0,I4,-1);
3516 VARXOR(BOOL,VARIANT_FALSE,UINT,0,I4,0);
3517 rbstr = SysAllocString(szFalse);
3518 VARXOR(BOOL,VARIANT_FALSE,BSTR,rbstr,BOOL,VARIANT_FALSE);
3519 VARXOR(BOOL,VARIANT_TRUE,BSTR,rbstr,BOOL,VARIANT_TRUE);
3520 SysFreeString(rbstr);
3521 rbstr = SysAllocString(szTrue);
3522 VARXOR(BOOL,VARIANT_FALSE,BSTR,rbstr,BOOL,VARIANT_TRUE);
3523 VARXOR(BOOL,VARIANT_TRUE,BSTR,rbstr,BOOL,VARIANT_FALSE);
3524 SysFreeString(rbstr);
3525 VARXORCY(BOOL,VARIANT_TRUE,10000,I4,-2);
3526 VARXORCY(BOOL,VARIANT_TRUE,0,I4,-1);
3527 VARXORCY(BOOL,VARIANT_FALSE,0,I4,0);
3528
3529 VARXOR(I1,-1,I1,-1,I4,0);
3530 VARXOR(I1,-1,I1,0,I4,-1);
3531 VARXOR(I1,0,I1,0,I4,0);
3532 VARXOR(I1,-1,UI1,255,I4,-256);
3533 VARXOR(I1,-1,UI1,0,I4,-1);
3534 VARXOR(I1,0,UI1,0,I4,0);
3535 VARXOR(I1,-1,I2,-1,I4,0);
3536 VARXOR(I1,-1,I2,0,I4,-1);
3537 VARXOR(I1,0,I2,0,I4,0);
3538 VARXOR(I1,-1,UI2,65535,I4,-65536);
3539 VARXOR(I1,-1,UI2,0,I4,-1);
3540 VARXOR(I1,0,UI2,0,I4,0);
3541 VARXOR(I1,-1,I4,-1,I4,0);
3542 VARXOR(I1,-1,I4,0,I4,-1);
3543 VARXOR(I1,0,I4,0,I4,0);
3544 VARXOR(I1,-1,UI4,0xffffffff,I4,0);
3545 VARXOR(I1,-1,UI4,0,I4,-1);
3546 VARXOR(I1,0,UI4,0,I4,0);
3547 VARXOR(I1,-1,R4,-1,I4,0);
3548 VARXOR(I1,-1,R4,0,I4,-1);
3549 VARXOR(I1,0,R4,0,I4,0);
3550 VARXOR(I1,-1,R8,-1,I4,0);
3551 VARXOR(I1,-1,R8,0,I4,-1);
3552 VARXOR(I1,0,R8,0,I4,0);
3553 VARXOR(I1,-1,DATE,-1,I4,0);
3554 VARXOR(I1,-1,DATE,0,I4,-1);
3555 VARXOR(I1,0,DATE,0,I4,0);
3556 if (HAVE_OLEAUT32_I8)
3557 {
3558 VARXOR(I1,-1,I8,-1,I8,0);
3559 VARXOR(I1,-1,I8,0,I8,-1);
3560 VARXOR(I1,0,I8,0,I8,0);
3561 VARXOR(I1,-1,UI8,0,I4,-1);
3562 VARXOR(I1,0,UI8,0,I4,0);
3563 }
3564 VARXOR(I1,-1,INT,-1,I4,0);
3565 VARXOR(I1,-1,INT,0,I4,-1);
3566 VARXOR(I1,0,INT,0,I4,0);
3567 VARXOR(I1,-1,UINT,0xffffffff,I4,0);
3568 VARXOR(I1,-1,UINT,0,I4,-1);
3569 VARXOR(I1,0,UINT,0,I4,0);
3570 rbstr = SysAllocString(szFalse);
3571 VARXOR(I1,0,BSTR,rbstr,I4,0);
3572 VARXOR(I1,-1,BSTR,rbstr,I4,-1);
3573 SysFreeString(rbstr);
3574 rbstr = SysAllocString(szTrue);
3575 VARXOR(I1,0,BSTR,rbstr,I4,-1);
3576 VARXOR(I1,-1,BSTR,rbstr,I4,0);
3577 SysFreeString(rbstr);
3578 VARXORCY(I1,-1,10000,I4,-2);
3579 VARXORCY(I1,-1,0,I4,-1);
3580 VARXORCY(I1,0,0,I4,0);
3581
3582 VARXOR(UI1,255,UI1,255,UI1,0);
3583 VARXOR(UI1,255,UI1,0,UI1,255);
3584 VARXOR(UI1,0,UI1,0,UI1,0);
3585 VARXOR(UI1,255,I2,-1,I2,-256);
3586 VARXOR(UI1,255,I2,0,I2,255);
3587 VARXOR(UI1,0,I2,0,I2,0);
3588 VARXOR(UI1,255,UI2,65535,I4,65280);
3589 VARXOR(UI1,255,UI2,0,I4,255);
3590 VARXOR(UI1,0,UI2,0,I4,0);
3591 VARXOR(UI1,255,I4,-1,I4,-256);
3592 VARXOR(UI1,255,I4,0,I4,255);
3593 VARXOR(UI1,0,I4,0,I4,0);
3594 VARXOR(UI1,255,UI4,0xffffffff,I4,-256);
3595 VARXOR(UI1,255,UI4,0,I4,255);
3596 VARXOR(UI1,0,UI4,0,I4,0);
3597 VARXOR(UI1,255,R4,-1,I4,-256);
3598 VARXOR(UI1,255,R4,0,I4,255);
3599 VARXOR(UI1,0,R4,0,I4,0);
3600 VARXOR(UI1,255,R8,-1,I4,-256);
3601 VARXOR(UI1,255,R8,0,I4,255);
3602 VARXOR(UI1,0,R8,0,I4,0);
3603 VARXOR(UI1,255,DATE,-1,I4,-256);
3604 VARXOR(UI1,255,DATE,0,I4,255);
3605 VARXOR(UI1,0,DATE,0,I4,0);
3606 if (HAVE_OLEAUT32_I8)
3607 {
3608 VARXOR(UI1,255,I8,-1,I8,-256);
3609 VARXOR(UI1,255,I8,0,I8,255);
3610 VARXOR(UI1,0,I8,0,I8,0);
3611 VARXOR(UI1,255,UI8,0,I4,255);
3612 VARXOR(UI1,0,UI8,0,I4,0);
3613 }
3614 VARXOR(UI1,255,INT,-1,I4,-256);
3615 VARXOR(UI1,255,INT,0,I4,255);
3616 VARXOR(UI1,0,INT,0,I4,0);
3617 VARXOR(UI1,255,UINT,0xffffffff,I4,-256);
3618 VARXOR(UI1,255,UINT,0,I4,255);
3619 VARXOR(UI1,0,UINT,0,I4,0);
3620 rbstr = SysAllocString(szFalse);
3621 VARXOR(UI1,0,BSTR,rbstr,I2,0);
3622 VARXOR(UI1,255,BSTR,rbstr,I2,255);
3623 SysFreeString(rbstr);
3624 rbstr = SysAllocString(szTrue);
3625 VARXOR(UI1,0,BSTR,rbstr,I2,-1);
3626 VARXOR(UI1,255,BSTR,rbstr,I2,-256);
3627 SysFreeString(rbstr);
3628 VARXORCY(UI1,255,10000,I4,254);
3629 VARXORCY(UI1,255,0,I4,255);
3630 VARXORCY(UI1,0,0,I4,0);
3631
3632 VARXOR(I2,-1,I2,-1,I2,0);
3633 VARXOR(I2,-1,I2,0,I2,-1);
3634 VARXOR(I2,0,I2,0,I2,0);
3635 VARXOR(I2,-1,UI2,65535,I4,-65536);
3636 VARXOR(I2,-1,UI2,0,I4,-1);
3637 VARXOR(I2,0,UI2,0,I4,0);
3638 VARXOR(I2,-1,I4,-1,I4,0);
3639 VARXOR(I2,-1,I4,0,I4,-1);
3640 VARXOR(I2,0,I4,0,I4,0);
3641 VARXOR(I2,-1,UI4,0xffffffff,I4,0);
3642 VARXOR(I2,-1,UI4,0,I4,-1);
3643 VARXOR(I2,0,UI4,0,I4,0);
3644 VARXOR(I2,-1,R4,-1,I4,0);
3645 VARXOR(I2,-1,R4,0,I4,-1);
3646 VARXOR(I2,0,R4,0,I4,0);
3647 VARXOR(I2,-1,R8,-1,I4,0);
3648 VARXOR(I2,-1,R8,0,I4,-1);
3649 VARXOR(I2,0,R8,0,I4,0);
3650 VARXOR(I2,-1,DATE,-1,I4,0);
3651 VARXOR(I2,-1,DATE,0,I4,-1);
3652 VARXOR(I2,0,DATE,0,I4,0);
3653 if (HAVE_OLEAUT32_I8)
3654 {
3655 VARXOR(I2,-1,I8,-1,I8,0);
3656 VARXOR(I2,-1,I8,0,I8,-1);
3657 VARXOR(I2,0,I8,0,I8,0);
3658 VARXOR(I2,-1,UI8,0,I4,-1);
3659 VARXOR(I2,0,UI8,0,I4,0);
3660 }
3661 VARXOR(I2,-1,INT,-1,I4,0);
3662 VARXOR(I2,-1,INT,0,I4,-1);
3663 VARXOR(I2,0,INT,0,I4,0);
3664 VARXOR(I2,-1,UINT,0xffffffff,I4,0);
3665 VARXOR(I2,-1,UINT,0,I4,-1);
3666 VARXOR(I2,0,UINT,0,I4,0);
3667 rbstr = SysAllocString(szFalse);
3668 VARXOR(I2,0,BSTR,rbstr,I2,0);
3669 VARXOR(I2,-1,BSTR,rbstr,I2,-1);
3670 SysFreeString(rbstr);
3671 rbstr = SysAllocString(szTrue);
3672 VARXOR(I2,0,BSTR,rbstr,I2,-1);
3673 VARXOR(I2,-1,BSTR,rbstr,I2,0);
3674 SysFreeString(rbstr);
3675 VARXORCY(I2,-1,10000,I4,-2);
3676 VARXORCY(I2,-1,0,I4,-1);
3677 VARXORCY(I2,0,0,I4,0);
3678
3679 VARXOR(UI2,65535,UI2,65535,I4,0);
3680 VARXOR(UI2,65535,UI2,0,I4,65535);
3681 VARXOR(UI2,0,UI2,0,I4,0);
3682 VARXOR(UI2,65535,I4,-1,I4,-65536);
3683 VARXOR(UI2,65535,I4,0,I4,65535);
3684 VARXOR(UI2,0,I4,0,I4,0);
3685 VARXOR(UI2,65535,UI4,0xffffffff,I4,-65536);
3686 VARXOR(UI2,65535,UI4,0,I4,65535);
3687 VARXOR(UI2,0,UI4,0,I4,0);
3688 VARXOR(UI2,65535,R4,-1,I4,-65536);
3689 VARXOR(UI2,65535,R4,0,I4,65535);
3690 VARXOR(UI2,0,R4,0,I4,0);
3691 VARXOR(UI2,65535,R8,-1,I4,-65536);
3692 VARXOR(UI2,65535,R8,0,I4,65535);
3693 VARXOR(UI2,0,R8,0,I4,0);
3694 VARXOR(UI2,65535,DATE,-1,I4,-65536);
3695 VARXOR(UI2,65535,DATE,0,I4,65535);
3696 VARXOR(UI2,0,DATE,0,I4,0);
3697 if (HAVE_OLEAUT32_I8)
3698 {
3699 VARXOR(UI2,65535,I8,-1,I8,-65536);
3700 VARXOR(UI2,65535,I8,0,I8,65535);
3701 VARXOR(UI2,0,I8,0,I8,0);
3702 VARXOR(UI2,65535,UI8,0,I4,65535);
3703 VARXOR(UI2,0,UI8,0,I4,0);
3704 }
3705 VARXOR(UI2,65535,INT,-1,I4,-65536);
3706 VARXOR(UI2,65535,INT,0,I4,65535);
3707 VARXOR(UI2,0,INT,0,I4,0);
3708 VARXOR(UI2,65535,UINT,0xffffffff,I4,-65536);
3709 VARXOR(UI2,65535,UINT,0,I4,65535);
3710 VARXOR(UI2,0,UINT,0,I4,0);
3711 rbstr = SysAllocString(szFalse);
3712 VARXOR(UI2,0,BSTR,rbstr,I4,0);
3713 VARXOR(UI2,65535,BSTR,rbstr,I4,65535);
3714 SysFreeString(rbstr);
3715 rbstr = SysAllocString(szTrue);
3716 VARXOR(UI2,0,BSTR,rbstr,I4,-1);
3717 VARXOR(UI2,65535,BSTR,rbstr,I4,-65536);
3718 SysFreeString(rbstr);
3719 VARXORCY(UI2,65535,10000,I4,65534);
3720 VARXORCY(UI2,65535,0,I4,65535);
3721 VARXORCY(UI2,0,0,I4,0);
3722
3723 VARXOR(I4,-1,I4,-1,I4,0);
3724 VARXOR(I4,-1,I4,0,I4,-1);
3725 VARXOR(I4,0,I4,0,I4,0);
3726 VARXOR(I4,-1,UI4,0xffffffff,I4,0);
3727 VARXOR(I4,-1,UI4,0,I4,-1);
3728 VARXOR(I4,0,UI4,0,I4,0);
3729 VARXOR(I4,-1,R4,-1,I4,0);
3730 VARXOR(I4,-1,R4,0,I4,-1);
3731 VARXOR(I4,0,R4,0,I4,0);
3732 VARXOR(I4,-1,R8,-1,I4,0);
3733 VARXOR(I4,-1,R8,0,I4,-1);
3734 VARXOR(I4,0,R8,0,I4,0);
3735 VARXOR(I4,-1,DATE,-1,I4,0);
3736 VARXOR(I4,-1,DATE,0,I4,-1);
3737 VARXOR(I4,0,DATE,0,I4,0);
3738 if (HAVE_OLEAUT32_I8)
3739 {
3740 VARXOR(I4,-1,I8,-1,I8,0);
3741 VARXOR(I4,-1,I8,0,I8,-1);
3742 VARXOR(I4,0,I8,0,I8,0);
3743 VARXOR(I4,-1,UI8,0,I4,-1);
3744 VARXOR(I4,0,UI8,0,I4,0);
3745 }
3746 VARXOR(I4,-1,INT,-1,I4,0);
3747 VARXOR(I4,-1,INT,0,I4,-1);
3748 VARXOR(I4,0,INT,0,I4,0);
3749 VARXOR(I4,-1,UINT,0xffffffff,I4,0);
3750 VARXOR(I4,-1,UINT,0,I4,-1);
3751 VARXOR(I4,0,UINT,0,I4,0);
3752 rbstr = SysAllocString(szFalse);
3753 VARXOR(I4,0,BSTR,rbstr,I4,0);
3754 VARXOR(I4,-1,BSTR,rbstr,I4,-1);
3755 SysFreeString(rbstr);
3756 rbstr = SysAllocString(szTrue);
3757 VARXOR(I4,0,BSTR,rbstr,I4,-1);
3758 VARXOR(I4,-1,BSTR,rbstr,I4,0);
3759 SysFreeString(rbstr);
3760 VARXORCY(I4,-1,10000,I4,-2);
3761 VARXORCY(I4,-1,0,I4,-1);
3762 VARXORCY(I4,0,0,I4,0);
3763
3764 VARXOR(UI4,0xffffffff,UI4,0xffffffff,I4,0);
3765 VARXOR(UI4,0xffffffff,UI4,0,I4,-1);
3766 VARXOR(UI4,0,UI4,0,I4,0);
3767 VARXOR(UI4,0xffffffff,R4,-1,I4,0);
3768 VARXOR(UI4,0xffffffff,R4,0,I4,-1);
3769 VARXOR(UI4,0,R4,0,I4,0);
3770 VARXOR(UI4,0xffffffff,R8,-1,I4,0);
3771 VARXOR(UI4,0xffffffff,R8,0,I4,-1);
3772 VARXOR(UI4,0,R8,0,I4,0);
3773 VARXOR(UI4,0xffffffff,DATE,-1,I4,0);
3774 VARXOR(UI4,0xffffffff,DATE,0,I4,-1);
3775 VARXOR(UI4,0,DATE,0,I4,0);
3776 if (HAVE_OLEAUT32_I8)
3777 {
3778 VARXOR(UI4,0xffffffff,I8,0,I8,0xffffffff);
3779 VARXOR(UI4,VARIANT_FALSE,I8,VARIANT_FALSE,I8,0);
3780 VARXOR(UI4,0,I8,0,I8,0);
3781 VARXOR(UI4,0xffffffff,UI8,0,I4,-1);
3782 VARXOR(UI4,0,UI8,0,I4,0);
3783 }
3784 VARXOR(UI4,0xffffffff,INT,-1,I4,0);
3785 VARXOR(UI4,0xffffffff,INT,0,I4,-1);
3786 VARXOR(UI4,0,INT,0,I4,0);
3787 VARXOR(UI4,0xffffffff,UINT,0xffffffff,I4,0);
3788 VARXOR(UI4,0xffffffff,UINT,0,I4,-1);
3789 VARXOR(UI4,0,UINT,0,I4,0);
3790 rbstr = SysAllocString(szFalse);
3791 VARXOR(UI4,0,BSTR,rbstr,I4,0);
3792 VARXOR(UI4,0xffffffff,BSTR,rbstr,I4,-1);
3793 SysFreeString(rbstr);
3794 rbstr = SysAllocString(szTrue);
3795 VARXOR(UI4,0,BSTR,rbstr,I4,-1);
3796 VARXOR(UI4,0xffffffff,BSTR,rbstr,I4,0);
3797 SysFreeString(rbstr);
3798 VARXORCY(UI4,0xffffffff,10000,I4,-2);
3799 VARXORCY(UI4,0xffffffff,0,I4,-1);
3800 VARXORCY(UI4,0,0,I4,0);
3801
3802 VARXOR(R4,-1,R4,-1,I4,0);
3803 VARXOR(R4,-1,R4,0,I4,-1);
3804 VARXOR(R4,0,R4,0,I4,0);
3805 VARXOR(R4,-1,R8,-1,I4,0);
3806 VARXOR(R4,-1,R8,0,I4,-1);
3807 VARXOR(R4,0,R8,0,I4,0);
3808 VARXOR(R4,-1,DATE,-1,I4,0);
3809 VARXOR(R4,-1,DATE,0,I4,-1);
3810 VARXOR(R4,0,DATE,0,I4,0);
3811 if (HAVE_OLEAUT32_I8)
3812 {
3813 VARXOR(R4,-1,I8,-1,I8,0);
3814 VARXOR(R4,-1,I8,0,I8,-1);
3815 VARXOR(R4,0,I8,0,I8,0);
3816 VARXOR(R4,-1,UI8,0,I4,-1);
3817 VARXOR(R4,0,UI8,0,I4,0);
3818 }
3819 VARXOR(R4,-1,INT,-1,I4,0);
3820 VARXOR(R4,-1,INT,0,I4,-1);
3821 VARXOR(R4,0,INT,0,I4,0);
3822 VARXOR(R4,-1,UINT,0xffffffff,I4,0);
3823 VARXOR(R4,-1,UINT,0,I4,-1);
3824 VARXOR(R4,0,UINT,0,I4,0);
3825 rbstr = SysAllocString(szFalse);
3826 VARXOR(R4,0,BSTR,rbstr,I4,0);
3827 VARXOR(R4,-1,BSTR,rbstr,I4,-1);
3828 SysFreeString(rbstr);
3829 rbstr = SysAllocString(szTrue);
3830 VARXOR(R4,0,BSTR,rbstr,I4,-1);
3831 VARXOR(R4,-1,BSTR,rbstr,I4,0);
3832 SysFreeString(rbstr);
3833 VARXORCY(R4,-1,10000,I4,-2);
3834 VARXORCY(R4,-1,0,I4,-1);
3835 VARXORCY(R4,0,0,I4,0);
3836
3837 VARXOR(R8,-1,R8,-1,I4,0);
3838 VARXOR(R8,-1,R8,0,I4,-1);
3839 VARXOR(R8,0,R8,0,I4,0);
3840 VARXOR(R8,-1,DATE,-1,I4,0);
3841 VARXOR(R8,-1,DATE,0,I4,-1);
3842 VARXOR(R8,0,DATE,0,I4,0);
3843 if (HAVE_OLEAUT32_I8)
3844 {
3845 VARXOR(R8,-1,I8,-1,I8,0);
3846 VARXOR(R8,-1,I8,0,I8,-1);
3847 VARXOR(R8,0,I8,0,I8,0);
3848 VARXOR(R8,-1,UI8,0,I4,-1);
3849 VARXOR(R8,0,UI8,0,I4,0);
3850 }
3851 VARXOR(R8,-1,INT,-1,I4,0);
3852 VARXOR(R8,-1,INT,0,I4,-1);
3853 VARXOR(R8,0,INT,0,I4,0);
3854 VARXOR(R8,-1,UINT,0xffffffff,I4,0);
3855 VARXOR(R8,-1,UINT,0,I4,-1);
3856 VARXOR(R8,0,UINT,0,I4,0);
3857 rbstr = SysAllocString(szFalse);
3858 VARXOR(R8,0,BSTR,rbstr,I4,0);
3859 VARXOR(R8,-1,BSTR,rbstr,I4,-1);
3860 SysFreeString(rbstr);
3861 rbstr = SysAllocString(szTrue);
3862 VARXOR(R8,0,BSTR,rbstr,I4,-1);
3863 VARXOR(R8,-1,BSTR,rbstr,I4,0);
3864 SysFreeString(rbstr);
3865 VARXORCY(R8,-1,10000,I4,-2);
3866 VARXORCY(R8,-1,0,I4,-1);
3867 VARXORCY(R8,0,0,I4,0);
3868
3869 VARXOR(DATE,-1,DATE,-1,I4,0);
3870 VARXOR(DATE,-1,DATE,0,I4,-1);
3871 VARXOR(DATE,0,DATE,0,I4,0);
3872 if (HAVE_OLEAUT32_I8)
3873 {
3874 VARXOR(DATE,-1,I8,-1,I8,0);
3875 VARXOR(DATE,-1,I8,0,I8,-1);
3876 VARXOR(DATE,0,I8,0,I8,0);
3877 VARXOR(DATE,-1,UI8,0,I4,-1);
3878 VARXOR(DATE,0,UI8,0,I4,0);
3879 }
3880 VARXOR(DATE,-1,INT,-1,I4,0);
3881 VARXOR(DATE,-1,INT,0,I4,-1);
3882 VARXOR(DATE,0,INT,0,I4,0);
3883 VARXOR(DATE,-1,UINT,0xffffffff,I4,0);
3884 VARXOR(DATE,-1,UINT,0,I4,-1);
3885 VARXOR(DATE,0,UINT,0,I4,0);
3886 rbstr = SysAllocString(szFalse);
3887 VARXOR(DATE,0,BSTR,rbstr,I4,0);
3888 VARXOR(DATE,-1,BSTR,rbstr,I4,-1);
3889 SysFreeString(rbstr);
3890 rbstr = SysAllocString(szTrue);
3891 VARXOR(DATE,0,BSTR,rbstr,I4,-1);
3892 VARXOR(DATE,-1,BSTR,rbstr,I4,0);
3893 SysFreeString(rbstr);
3894 VARXORCY(DATE,-1,10000,I4,-2);
3895 VARXORCY(DATE,-1,0,I4,-1);
3896 VARXORCY(DATE,0,0,I4,0);
3897
3898 if (HAVE_OLEAUT32_I8)
3899 {
3900 VARXOR(I8,-1,I8,-1,I8,0);
3901 VARXOR(I8,-1,I8,0,I8,-1);
3902 VARXOR(I8,0,I8,0,I8,0);
3903 VARXOR(I8,-1,UI8,0,I8,-1);
3904 VARXOR(I8,0,UI8,0,I8,0);
3905 VARXOR(I8,-1,UINT,0,I8,-1);
3906 VARXOR(I8,0,UINT,0,I8,0);
3907 rbstr = SysAllocString(szFalse);
3908 VARXOR(I8,0,BSTR,rbstr,I8,0);
3909 VARXOR(I8,-1,BSTR,rbstr,I8,-1);
3910 SysFreeString(rbstr);
3911 rbstr = SysAllocString(szTrue);
3912 VARXOR(I8,0,BSTR,rbstr,I8,-1);
3913 VARXOR(I8,-1,BSTR,rbstr,I8,0);
3914 SysFreeString(rbstr);
3915 VARXORCY(I8,-1,10000,I8,-2);
3916 VARXORCY(I8,-1,0,I8,-1);
3917 VARXORCY(I8,0,0,I8,0);
3918
3919 VARXOR(UI8,0xffff,UI8,0xffff,I4,0);
3920 VARXOR(UI8,0xffff,UI8,0,I4,0xffff);
3921 VARXOR(UI8,0,UI8,0,I4,0);
3922 VARXOR(UI8,0xffff,INT,-1,I4,-65536);
3923 VARXOR(UI8,0xffff,INT,0,I4,0xffff);
3924 VARXOR(UI8,0,INT,0,I4,0);
3925 VARXOR(UI8,0xffff,UINT,0xffff,I4,0);
3926 VARXOR(UI8,0xffff,UINT,0,I4,0xffff);
3927 VARXOR(UI8,0,UINT,0,I4,0);
3928 rbstr = SysAllocString(szFalse);
3929 VARXOR(UI8,0,BSTR,rbstr,I4,0);
3930 VARXOR(UI8,0xffff,BSTR,rbstr,I4,0xffff);
3931 SysFreeString(rbstr);
3932 rbstr = SysAllocString(szTrue);
3933 VARXOR(UI8,0,BSTR,rbstr,I4,-1);
3934 VARXOR(UI8,0xffff,BSTR,rbstr,I4,-65536);
3935 SysFreeString(rbstr);
3936 VARXORCY(UI8,0xffff,10000,I4,65534);
3937 VARXORCY(UI8,0xffff,0,I4,0xffff);
3938 VARXORCY(UI8,0,0,I4,0);
3939 }
3940
3941 VARXOR(INT,-1,INT,-1,I4,0);
3942 VARXOR(INT,-1,INT,0,I4,-1);
3943 VARXOR(INT,0,INT,0,I4,0);
3944 VARXOR(INT,-1,UINT,0xffff,I4,-65536);
3945 VARXOR(INT,-1,UINT,0,I4,-1);
3946 VARXOR(INT,0,UINT,0,I4,0);
3947 rbstr = SysAllocString(szFalse);
3948 VARXOR(INT,0,BSTR,rbstr,I4,0);
3949 VARXOR(INT,-1,BSTR,rbstr,I4,-1);
3950 SysFreeString(rbstr);
3951 rbstr = SysAllocString(szTrue);
3952 VARXOR(INT,0,BSTR,rbstr,I4,-1);
3953 VARXOR(INT,-1,BSTR,rbstr,I4,0);
3954 SysFreeString(rbstr);
3955 VARXORCY(INT,-1,10000,I4,-2);
3956 VARXORCY(INT,-1,0,I4,-1);
3957 VARXORCY(INT,0,0,I4,0);
3958
3959 VARXOR(UINT,0xffff,UINT,0xffff,I4,0);
3960 VARXOR(UINT,0xffff,UINT,0,I4,0xffff);
3961 VARXOR(UINT,0,UINT,0,I4,0);
3962 rbstr = SysAllocString(szFalse);
3963 VARXOR(UINT,0,BSTR,rbstr,I4,0);
3964 VARXOR(UINT,0xffff,BSTR,rbstr,I4,0xffff);
3965 SysFreeString(rbstr);
3966 rbstr = SysAllocString(szTrue);
3967 VARXOR(UINT,0,BSTR,rbstr,I4,-1);
3968 VARXOR(UINT,0xffff,BSTR,rbstr,I4,-65536);
3969 SysFreeString(rbstr);
3970 VARXORCY(UINT,0xffff,10000,I4,65534);
3971 VARXORCY(UINT,0xffff,0,I4,0xffff);
3972 VARXORCY(UINT,0,0,I4,0);
3973
3974 lbstr = SysAllocString(szFalse);
3975 rbstr = SysAllocString(szFalse);
3976 VARXOR(BSTR,lbstr,BSTR,rbstr,BOOL,0);
3977 SysFreeString(rbstr);
3978 rbstr = SysAllocString(szTrue);
3979 VARXOR(BSTR,lbstr,BSTR,rbstr,BOOL,VARIANT_TRUE);
3980 SysFreeString(lbstr);
3981 lbstr = SysAllocString(szTrue);
3982 VARXOR(BSTR,lbstr,BSTR,rbstr,BOOL,VARIANT_FALSE);
3983 VARXORCY(BSTR,lbstr,10000,I4,-2);
3984 SysFreeString(lbstr);
3985 lbstr = SysAllocString(szFalse);
3986 VARXORCY(BSTR,lbstr,10000,I4,1);
3987 SysFreeString(lbstr);
3988 SysFreeString(rbstr);
3989 }
3990
3991 static HRESULT (WINAPI *pVarOr)(LPVARIANT,LPVARIANT,LPVARIANT);
3992
3993 #define VAROR(vt1,val1,vt2,val2,rvt,rval) \
3994 V_VT(&left) = VT_##vt1; V_##vt1(&left) = val1; \
3995 V_VT(&right) = VT_##vt2; V_##vt2(&right) = val2; \
3996 V_VT(&exp) = VT_##rvt; V_##rvt(&exp) = rval; \
3997 test_var_call2( __LINE__, pVarOr, &left, &right, &exp )
3998
3999 #define VARORCY(vt1,val1,val2,rvt,rval) \
4000 V_VT(&left) = VT_##vt1; V_##vt1(&left) = val1; \
4001 V_VT(&right) = VT_CY; V_CY(&right).int64 = val2; \
4002 V_VT(&exp) = VT_##rvt; V_##rvt(&exp) = rval; \
4003 test_var_call2( __LINE__, pVarOr, &left, &right, &exp )
4004
4005 static void test_VarOr(void)
4006 {
4007 static const WCHAR szFalse[] = { '#','F','A','L','S','E','#','\0' };
4008 static const WCHAR szTrue[] = { '#','T','R','U','E','#','\0' };
4009 VARIANT left, right, exp, result;
4010 BSTR lbstr, rbstr;
4011 VARTYPE i;
4012 HRESULT hres;
4013
4014 CHECKPTR(VarOr);
4015
4016 /* Test all possible flag/vt combinations & the resulting vt type */
4017 for (i = 0; i < sizeof(ExtraFlags)/sizeof(ExtraFlags[0]); i++)
4018 {
4019 VARTYPE leftvt, rightvt, resvt;
4020
4021 for (leftvt = 0; leftvt <= VT_BSTR_BLOB; leftvt++)
4022 {
4023
4024 SKIPTESTS(leftvt);
4025
4026 for (rightvt = 0; rightvt <= VT_BSTR_BLOB; rightvt++)
4027 {
4028 BOOL bFail = FALSE;
4029
4030 SKIPTESTS(rightvt);
4031
4032 if (leftvt == VT_BSTR || rightvt == VT_BSTR ||
4033 leftvt == VT_DISPATCH || rightvt == VT_DISPATCH ||
4034 leftvt == VT_UNKNOWN || rightvt == VT_UNKNOWN)
4035 continue;
4036
4037 memset(&left, 0, sizeof(left));
4038 memset(&right, 0, sizeof(right));
4039 V_VT(&left) = leftvt | ExtraFlags[i];
4040 V_VT(&right) = rightvt | ExtraFlags[i];
4041 V_VT(&result) = VT_EMPTY;
4042 resvt = VT_I4;
4043
4044 if (ExtraFlags[i] & VT_ARRAY || ExtraFlags[i] & VT_BYREF ||
4045 !IsValidVariantClearVT(leftvt, ExtraFlags[i]) ||
4046 !IsValidVariantClearVT(rightvt, ExtraFlags[i]) ||
4047 leftvt == VT_CLSID || rightvt == VT_CLSID ||
4048 leftvt == VT_RECORD || rightvt == VT_RECORD ||
4049 leftvt == VT_VARIANT || rightvt == VT_VARIANT ||
4050 leftvt == VT_ERROR || rightvt == VT_ERROR)
4051 {
4052 bFail = TRUE;
4053 }
4054 if (leftvt == VT_EMPTY || rightvt == VT_EMPTY)
4055 {
4056 if (leftvt == rightvt ||
4057 leftvt == VT_I2 || rightvt == VT_I2 ||
4058 leftvt == VT_UI1 || rightvt == VT_UI1 ||
4059 leftvt == VT_BOOL || rightvt == VT_BOOL)
4060 resvt = VT_I2;
4061 else if (leftvt == VT_NULL || rightvt == VT_NULL)
4062 resvt = VT_NULL;
4063 else if (leftvt == VT_I8 || rightvt == VT_I8)
4064 resvt = VT_I8;
4065 }
4066 else if (leftvt == VT_NULL || rightvt == VT_NULL)
4067 {
4068 resvt = VT_NULL;
4069 }
4070 else if (leftvt == VT_UI1 || rightvt == VT_UI1)
4071 {
4072 if (leftvt == rightvt)
4073 resvt = VT_UI1;
4074 else if (leftvt == rightvt ||
4075 leftvt == VT_I2 || rightvt == VT_I2 ||
4076 leftvt == VT_BOOL || rightvt == VT_BOOL)
4077 {
4078 resvt = VT_I2;
4079 }
4080 else if (leftvt == VT_I8 || rightvt == VT_I8)
4081 resvt = VT_I8;
4082 }
4083 else if (leftvt == VT_I2 || rightvt == VT_I2)
4084 {
4085 if (leftvt == rightvt ||
4086 leftvt == VT_BOOL || rightvt == VT_BOOL)
4087 resvt = VT_I2;
4088 else if (leftvt == VT_I8 || rightvt == VT_I8)
4089 resvt = VT_I8;
4090 }
4091 else if (leftvt == VT_BOOL && rightvt == VT_BOOL)
4092 {
4093 resvt = VT_BOOL;
4094 }
4095 else if (leftvt == VT_I8 || rightvt == VT_I8)
4096 {
4097 if (leftvt == VT_INT || rightvt == VT_INT)
4098 bFail = TRUE;
4099 else
4100 resvt = VT_I8;
4101 }
4102 hres = pVarOr(&left, &right, &result);
4103 if (bFail)
4104 ok(hres == DISP_E_TYPEMISMATCH || hres == DISP_E_BADVARTYPE,
4105 "VarOr: %d|0x%X, %d|0x%X: Expected failure, got 0x%X vt %d\n",
4106 leftvt, ExtraFlags[i], rightvt, ExtraFlags[i], hres,
4107 V_VT(&result));
4108 else
4109 ok(hres == S_OK && V_VT(&result) == resvt,
4110 "VarOr: %d|0x%X, %d|0x%X: expected S_OK, vt %d, got 0x%X vt %d\n",
4111 leftvt, ExtraFlags[i], rightvt, ExtraFlags[i], resvt, hres,
4112 V_VT(&result));
4113 }
4114 }
4115 }
4116
4117 /* Test returned values. Since we know the returned type is correct
4118 * and that we handle all combinations of invalid types, just check
4119 * that good type combinations produce the desired value.
4120 * FIXME: Test VT_DECIMAL/VT_DISPATCH
4121 */
4122 VAROR(EMPTY,0,EMPTY,0,I2,0);
4123 VAROR(EMPTY,1,EMPTY,0,I2,0);
4124 VAROR(EMPTY,0,NULL,0,NULL,0);
4125 VAROR(EMPTY,0,I1,0,I4,0);
4126 VAROR(EMPTY,0,I1,1,I4,1);
4127 VAROR(EMPTY,0,UI1,0,I2,0);
4128 VAROR(EMPTY,0,UI1,1,I2,1);
4129 VAROR(EMPTY,0,I2,0,I2,0);
4130 VAROR(EMPTY,0,I2,1,I2,1);
4131 VAROR(EMPTY,0,UI2,0,I4,0);
4132 VAROR(EMPTY,0,UI2,1,I4,1);
4133 VAROR(EMPTY,0,I4,0,I4,0);
4134 VAROR(EMPTY,0,I4,1,I4,1);
4135 VAROR(EMPTY,0,UI4,0,I4,0);
4136 VAROR(EMPTY,0,UI4,1,I4,1);
4137 if (HAVE_OLEAUT32_I8)
4138 {
4139 VAROR(EMPTY,0,I8,0,I8,0);
4140 VAROR(EMPTY,0,I8,1,I8,1);
4141 VAROR(EMPTY,0,UI8,0,I4,0);
4142 VAROR(EMPTY,0,UI8,1,I4,1);
4143 }
4144 VAROR(EMPTY,0,INT,0,I4,0);
4145 VAROR(EMPTY,0,INT,1,I4,1);
4146 VAROR(EMPTY,0,UINT,0,I4,0);
4147 VAROR(EMPTY,0,UINT,1,I4,1);
4148 VAROR(EMPTY,0,BOOL,0,I2,0);
4149 VAROR(EMPTY,0,BOOL,1,I2,1);
4150 VAROR(EMPTY,0,R4,0,I4,0);
4151 VAROR(EMPTY,0,R4,1,I4,1);
4152 VAROR(EMPTY,0,R8,0,I4,0);
4153 VAROR(EMPTY,0,R8,1,I4,1);
4154 rbstr = SysAllocString(szFalse);
4155 VAROR(EMPTY,0,BSTR,rbstr,I2,0);
4156 SysFreeString(rbstr);
4157 rbstr = SysAllocString(szTrue);
4158 VAROR(EMPTY,0,BSTR,rbstr,I2,-1);
4159 SysFreeString(rbstr);
4160 VARORCY(EMPTY,0,10000,I4,1);
4161
4162 /* NULL OR 0 = NULL. NULL OR n = n */
4163 VAROR(NULL,0,NULL,0,NULL,0);
4164 VAROR(NULL,1,NULL,0,NULL,0);
4165 VAROR(NULL,0,I1,0,NULL,0);
4166 VAROR(NULL,0,I1,1,I4,1);
4167 VAROR(NULL,0,UI1,0,NULL,0);
4168 VAROR(NULL,0,UI1,1,UI1,1);
4169 VAROR(NULL,0,I2,0,NULL,0);
4170 VAROR(NULL,0,I2,1,I2,1);
4171 VAROR(NULL,0,UI2,0,NULL,0);
4172 VAROR(NULL,0,UI2,1,I4,1);
4173 VAROR(NULL,0,I4,0,NULL,0);
4174 VAROR(NULL,0,I4,1,I4,1);
4175 VAROR(NULL,0,UI4,0,NULL,0);
4176 VAROR(NULL,0,UI4,1,I4,1);
4177 if (HAVE_OLEAUT32_I8)
4178 {
4179 VAROR(NULL,0,I8,0,NULL,0);
4180 VAROR(NULL,0,I8,1,I8,1);
4181 VAROR(NULL,0,UI8,0,NULL,0);
4182 VAROR(NULL,0,UI8,1,I4,1);
4183 }
4184 VAROR(NULL,0,INT,0,NULL,0);
4185 VAROR(NULL,0,INT,1,I4,1);
4186 VAROR(NULL,0,UINT,0,NULL,0);
4187 VAROR(NULL,0,UINT,1,I4,1);
4188 VAROR(NULL,0,BOOL,0,NULL,0);
4189 VAROR(NULL,0,BOOL,1,BOOL,1);
4190 VAROR(NULL,0,R4,0,NULL,0);
4191 VAROR(NULL,0,R4,1,I4,1);
4192 VAROR(NULL,0,R8,0,NULL,0);
4193 VAROR(NULL,0,R8,1,I4,1);
4194 rbstr = SysAllocString(szFalse);
4195 VAROR(NULL,0,BSTR,rbstr,NULL,0);
4196 SysFreeString(rbstr);
4197 rbstr = SysAllocString(szTrue);
4198 VAROR(NULL,0,BSTR,rbstr,BOOL,VARIANT_TRUE);
4199 SysFreeString(rbstr);
4200 VARORCY(NULL,0,10000,I4,1);
4201 VARORCY(NULL,0,0,NULL,0);
4202
4203 VAROR(BOOL,VARIANT_TRUE,BOOL,VARIANT_TRUE,BOOL,VARIANT_TRUE);
4204 VAROR(BOOL,VARIANT_TRUE,BOOL,VARIANT_FALSE,BOOL,VARIANT_TRUE);
4205 VAROR(BOOL,VARIANT_FALSE,BOOL,VARIANT_TRUE,BOOL,VARIANT_TRUE);
4206 VAROR(BOOL,VARIANT_FALSE,BOOL,VARIANT_FALSE,BOOL,VARIANT_FALSE);
4207 /* Assume x,y & y,x are the same from now on to reduce the number of tests */
4208 VAROR(BOOL,VARIANT_TRUE,I1,-1,I4,-1);
4209 VAROR(BOOL,VARIANT_TRUE,I1,0,I4,-1);
4210 VAROR(BOOL,VARIANT_FALSE,I1,0,I4,0);
4211 VAROR(BOOL,VARIANT_TRUE,UI1,255,I2,-1);
4212 VAROR(BOOL,VARIANT_TRUE,UI1,0,I2,-1);
4213 VAROR(BOOL,VARIANT_FALSE,UI1,0,I2,0);
4214 VAROR(BOOL,VARIANT_TRUE,I2,-1,I2,-1);
4215 VAROR(BOOL,VARIANT_TRUE,I2,0,I2,-1);
4216 VAROR(BOOL,VARIANT_FALSE,I2,0,I2,0);
4217 VAROR(BOOL,VARIANT_TRUE,UI2,65535,I4,-1);
4218 VAROR(BOOL,VARIANT_TRUE,UI2,0,I4,-1);
4219 VAROR(BOOL,VARIANT_FALSE,UI2,0,I4,0);
4220 VAROR(BOOL,VARIANT_TRUE,I4,-1,I4,-1);
4221 VAROR(BOOL,VARIANT_TRUE,I4,0,I4,-1);
4222 VAROR(BOOL,VARIANT_FALSE,I4,0,I4,0);
4223 VAROR(BOOL,VARIANT_TRUE,UI4,0xffffffff,I4,-1);
4224 VAROR(BOOL,VARIANT_TRUE,UI4,0,I4,-1);
4225 VAROR(BOOL,VARIANT_FALSE,UI4,0,I4,0);
4226 VAROR(BOOL,VARIANT_TRUE,R4,-1,I4,-1);
4227 VAROR(BOOL,VARIANT_TRUE,R4,0,I4,-1);
4228 VAROR(BOOL,VARIANT_FALSE,R4,0,I4,0);
4229 VAROR(BOOL,VARIANT_TRUE,R8,-1,I4,-1);
4230 VAROR(BOOL,VARIANT_TRUE,R8,0,I4,-1);
4231 VAROR(BOOL,VARIANT_FALSE,R8,0,I4,0);
4232 VAROR(BOOL,VARIANT_TRUE,DATE,-1,I4,-1);
4233 VAROR(BOOL,VARIANT_TRUE,DATE,0,I4,-1);
4234 VAROR(BOOL,VARIANT_FALSE,DATE,0,I4,0);
4235 if (HAVE_OLEAUT32_I8)
4236 {
4237 VAROR(BOOL,VARIANT_TRUE,I8,-1,I8,-1);
4238 VAROR(BOOL,VARIANT_TRUE,I8,0,I8,-1);
4239 VAROR(BOOL,VARIANT_FALSE,I8,0,I8,0);
4240 /* This returns DISP_E_OVERFLOW which indicates that a conversion
4241 * to I4 is performed.
4242 */
4243 /* VAROR(BOOL,VARIANT_TRUE,UI8,-1,I4,-1); */
4244 VAROR(BOOL,VARIANT_TRUE,UI8,0,I4,-1);
4245 VAROR(BOOL,VARIANT_FALSE,UI8,0,I4,0);
4246 }
4247 VAROR(BOOL,VARIANT_TRUE,INT,-1,I4,-1);
4248 VAROR(BOOL,VARIANT_TRUE,INT,0,I4,-1);
4249 VAROR(BOOL,VARIANT_FALSE,INT,0,I4,0);
4250 VAROR(BOOL,VARIANT_TRUE,UINT,0xffffffff,I4,-1);
4251 VAROR(BOOL,VARIANT_TRUE,UINT,0,I4,-1);
4252 VAROR(BOOL,VARIANT_FALSE,UINT,0,I4,0);
4253 rbstr = SysAllocString(szFalse);
4254 VAROR(BOOL,VARIANT_FALSE,BSTR,rbstr,BOOL,VARIANT_FALSE);
4255 VAROR(BOOL,VARIANT_TRUE,BSTR,rbstr,BOOL,VARIANT_TRUE);
4256 SysFreeString(rbstr);
4257 rbstr = SysAllocString(szTrue);
4258 VAROR(BOOL,VARIANT_FALSE,BSTR,rbstr,BOOL,VARIANT_TRUE);
4259 VAROR(BOOL,VARIANT_TRUE,BSTR,rbstr,BOOL,VARIANT_TRUE);
4260 SysFreeString(rbstr);
4261 VARORCY(BOOL,VARIANT_TRUE,10000,I4,-1);
4262 VARORCY(BOOL,VARIANT_TRUE,0,I4,-1);
4263 VARORCY(BOOL,VARIANT_FALSE,0,I4,0);
4264
4265 VAROR(I1,-1,I1,-1,I4,-1);
4266 VAROR(I1,-1,I1,0,I4,-1);
4267 VAROR(I1,0,I1,0,I4,0);
4268 VAROR(I1,-1,UI1,255,I4,-1);
4269 VAROR(I1,-1,UI1,0,I4,-1);
4270 VAROR(I1,0,UI1,0,I4,0);
4271 VAROR(I1,-1,I2,-1,I4,-1);
4272 VAROR(I1,-1,I2,0,I4,-1);
4273 VAROR(I1,0,I2,0,I4,0);
4274 VAROR(I1,-1,UI2,65535,I4,-1);
4275 VAROR(I1,-1,UI2,0,I4,-1);
4276 VAROR(I1,0,UI2,0,I4,0);
4277 VAROR(I1,-1,I4,-1,I4,-1);
4278 VAROR(I1,-1,I4,0,I4,-1);
4279 VAROR(I1,0,I4,0,I4,0);
4280 VAROR(I1,-1,UI4,0xffffffff,I4,-1);
4281 VAROR(I1,-1,UI4,0,I4,-1);
4282 VAROR(I1,0,UI4,0,I4,0);
4283 VAROR(I1,-1,R4,-1,I4,-1);
4284 VAROR(I1,-1,R4,0,I4,-1);
4285 VAROR(I1,0,R4,0,I4,0);
4286 VAROR(I1,-1,R8,-1,I4,-1);
4287 VAROR(I1,-1,R8,0,I4,-1);
4288 VAROR(I1,0,R8,0,I4,0);
4289 VAROR(I1,-1,DATE,-1,I4,-1);
4290 VAROR(I1,-1,DATE,0,I4,-1);
4291 VAROR(I1,0,DATE,0,I4,0);
4292 if (HAVE_OLEAUT32_I8)
4293 {
4294 VAROR(I1,-1,I8,-1,I8,-1);
4295 VAROR(I1,-1,I8,0,I8,-1);
4296 VAROR(I1,0,I8,0,I8,0);
4297 VAROR(I1,-1,UI8,0,I4,-1);
4298 VAROR(I1,0,UI8,0,I4,0);
4299 }
4300 VAROR(I1,-1,INT,-1,I4,-1);
4301 VAROR(I1,-1,INT,0,I4,-1);
4302 VAROR(I1,0,INT,0,I4,0);
4303 VAROR(I1,-1,UINT,0xffffffff,I4,-1);
4304 VAROR(I1,-1,UINT,0,I4,-1);
4305 VAROR(I1,0,UINT,0,I4,0);
4306 rbstr = SysAllocString(szFalse);
4307 VAROR(I1,0,BSTR,rbstr,I4,0);
4308 VAROR(I1,-1,BSTR,rbstr,I4,-1);
4309 SysFreeString(rbstr);
4310 rbstr = SysAllocString(szTrue);
4311 VAROR(I1,0,BSTR,rbstr,I4,-1);
4312 VAROR(I1,-1,BSTR,rbstr,I4,-1);
4313 SysFreeString(rbstr);
4314 VARORCY(I1,-1,10000,I4,-1);
4315 VARORCY(I1,-1,0,I4,-1);
4316 VARORCY(I1,0,0,I4,0);
4317
4318 VAROR(UI1,255,UI1,255,UI1,255);
4319 VAROR(UI1,255,UI1,0,UI1,255);
4320 VAROR(UI1,0,UI1,0,UI1,0);
4321 VAROR(UI1,255,I2,-1,I2,-1);
4322 VAROR(UI1,255,I2,0,I2,255);
4323 VAROR(UI1,0,I2,0,I2,0);
4324 VAROR(UI1,255,UI2,65535,I4,65535);
4325 VAROR(UI1,255,UI2,0,I4,255);
4326 VAROR(UI1,0,UI2,0,I4,0);
4327 VAROR(UI1,255,I4,-1,I4,-1);
4328 VAROR(UI1,255,I4,0,I4,255);
4329 VAROR(UI1,0,I4,0,I4,0);
4330 VAROR(UI1,255,UI4,0xffffffff,I4,-1);
4331 VAROR(UI1,255,UI4,0,I4,255);
4332 VAROR(UI1,0,UI4,0,I4,0);
4333 VAROR(UI1,255,R4,-1,I4,-1);
4334 VAROR(UI1,255,R4,0,I4,255);
4335 VAROR(UI1,0,R4,0,I4,0);
4336 VAROR(UI1,255,R8,-1,I4,-1);
4337 VAROR(UI1,255,R8,0,I4,255);
4338 VAROR(UI1,0,R8,0,I4,0);
4339 VAROR(UI1,255,DATE,-1,I4,-1);
4340 VAROR(UI1,255,DATE,0,I4,255);
4341 VAROR(UI1,0,DATE,0,I4,0);
4342 if (HAVE_OLEAUT32_I8)
4343 {
4344 VAROR(UI1,255,I8,-1,I8,-1);
4345 VAROR(UI1,255,I8,0,I8,255);
4346 VAROR(UI1,0,I8,0,I8,0);
4347 VAROR(UI1,255,UI8,0,I4,255);
4348 VAROR(UI1,0,UI8,0,I4,0);
4349 }
4350 VAROR(UI1,255,INT,-1,I4,-1);
4351 VAROR(UI1,255,INT,0,I4,255);
4352 VAROR(UI1,0,INT,0,I4,0);
4353 VAROR(UI1,255,UINT,0xffffffff,I4,-1);
4354 VAROR(UI1,255,UINT,0,I4,255);
4355 VAROR(UI1,0,UINT,0,I4,0);
4356 rbstr = SysAllocString(szFalse);
4357 VAROR(UI1,0,BSTR,rbstr,I2,0);
4358 VAROR(UI1,255,BSTR,rbstr,I2,255);
4359 SysFreeString(rbstr);
4360 rbstr = SysAllocString(szTrue);
4361 VAROR(UI1,0,BSTR,rbstr,I2,-1);
4362 VAROR(UI1,255,BSTR,rbstr,I2,-1);
4363 SysFreeString(rbstr);
4364 VARORCY(UI1,255,10000,I4,255);
4365 VARORCY(UI1,255,0,I4,255);
4366 VARORCY(UI1,0,0,I4,0);
4367
4368 VAROR(I2,-1,I2,-1,I2,-1);
4369 VAROR(I2,-1,I2,0,I2,-1);
4370 VAROR(I2,0,I2,0,I2,0);
4371 VAROR(I2,-1,UI2,65535,I4,-1);
4372 VAROR(I2,-1,UI2,0,I4,-1);
4373 VAROR(I2,0,UI2,0,I4,0);
4374 VAROR(I2,-1,I4,-1,I4,-1);
4375 VAROR(I2,-1,I4,0,I4,-1);
4376 VAROR(I2,0,I4,0,I4,0);
4377 VAROR(I2,-1,UI4,0xffffffff,I4,-1);
4378 VAROR(I2,-1,UI4,0,I4,-1);
4379 VAROR(I2,0,UI4,0,I4,0);
4380 VAROR(I2,-1,R4,-1,I4,-1);
4381 VAROR(I2,-1,R4,0,I4,-1);
4382 VAROR(I2,0,R4,0,I4,0);
4383 VAROR(I2,-1,R8,-1,I4,-1);
4384 VAROR(I2,-1,R8,0,I4,-1);
4385 VAROR(I2,0,R8,0,I4,0);
4386 VAROR(I2,-1,DATE,-1,I4,-1);
4387 VAROR(I2,-1,DATE,0,I4,-1);
4388 VAROR(I2,0,DATE,0,I4,0);
4389 if (HAVE_OLEAUT32_I8)
4390 {
4391 VAROR(I2,-1,I8,-1,I8,-1);
4392 VAROR(I2,-1,I8,0,I8,-1);
4393 VAROR(I2,0,I8,0,I8,0);
4394 VAROR(I2,-1,UI8,0,I4,-1);
4395 VAROR(I2,0,UI8,0,I4,0);
4396 }
4397 VAROR(I2,-1,INT,-1,I4,-1);
4398 VAROR(I2,-1,INT,0,I4,-1);
4399 VAROR(I2,0,INT,0,I4,0);
4400 VAROR(I2,-1,UINT,0xffffffff,I4,-1);
4401 VAROR(I2,-1,UINT,0,I4,-1);
4402 VAROR(I2,0,UINT,0,I4,0);
4403 rbstr = SysAllocString(szFalse);
4404 VAROR(I2,0,BSTR,rbstr,I2,0);
4405 VAROR(I2,-1,BSTR,rbstr,I2,-1);
4406 SysFreeString(rbstr);
4407 rbstr = SysAllocString(szTrue);
4408 VAROR(I2,0,BSTR,rbstr,I2,-1);
4409 VAROR(I2,-1,BSTR,rbstr,I2,-1);
4410 SysFreeString(rbstr);
4411 VARORCY(I2,-1,10000,I4,-1);
4412 VARORCY(I2,-1,0,I4,-1);
4413 VARORCY(I2,0,0,I4,0);
4414
4415 VAROR(UI2,65535,UI2,65535,I4,65535);
4416 VAROR(UI2,65535,UI2,0,I4,65535);
4417 VAROR(UI2,0,UI2,0,I4,0);
4418 VAROR(UI2,65535,I4,-1,I4,-1);
4419 VAROR(UI2,65535,I4,0,I4,65535);
4420 VAROR(UI2,0,I4,0,I4,0);
4421 VAROR(UI2,65535,UI4,0xffffffff,I4,-1);
4422 VAROR(UI2,65535,UI4,0,I4,65535);
4423 VAROR(UI2,0,UI4,0,I4,0);
4424 VAROR(UI2,65535,R4,-1,I4,-1);
4425 VAROR(UI2,65535,R4,0,I4,65535);
4426 VAROR(UI2,0,R4,0,I4,0);
4427 VAROR(UI2,65535,R8,-1,I4,-1);
4428 VAROR(UI2,65535,R8,0,I4,65535);
4429 VAROR(UI2,0,R8,0,I4,0);
4430 VAROR(UI2,65535,DATE,-1,I4,-1);
4431 VAROR(UI2,65535,DATE,0,I4,65535);
4432 VAROR(UI2,0,DATE,0,I4,0);
4433 if (HAVE_OLEAUT32_I8)
4434 {
4435 VAROR(UI2,65535,I8,-1,I8,-1);
4436 VAROR(UI2,65535,I8,0,I8,65535);
4437 VAROR(UI2,0,I8,0,I8,0);
4438 VAROR(UI2,65535,UI8,0,I4,65535);
4439 VAROR(UI2,0,UI8,0,I4,0);
4440 }
4441 VAROR(UI2,65535,INT,-1,I4,-1);
4442 VAROR(UI2,65535,INT,0,I4,65535);
4443 VAROR(UI2,0,INT,0,I4,0);
4444 VAROR(UI2,65535,UINT,0xffffffff,I4,-1);
4445 VAROR(UI2,65535,UINT,0,I4,65535);
4446 VAROR(UI2,0,UINT,0,I4,0);
4447 rbstr = SysAllocString(szFalse);
4448 VAROR(UI2,0,BSTR,rbstr,I4,0);
4449 VAROR(UI2,65535,BSTR,rbstr,I4,65535);
4450 SysFreeString(rbstr);
4451 rbstr = SysAllocString(szTrue);
4452 VAROR(UI2,0,BSTR,rbstr,I4,-1);
4453 VAROR(UI2,65535,BSTR,rbstr,I4,-1);
4454 SysFreeString(rbstr);
4455 VARORCY(UI2,65535,10000,I4,65535);
4456 VARORCY(UI2,65535,0,I4,65535);
4457 VARORCY(UI2,0,0,I4,0);
4458
4459 VAROR(I4,-1,I4,-1,I4,-1);
4460 VAROR(I4,-1,I4,0,I4,-1);
4461 VAROR(I4,0,I4,0,I4,0);
4462 VAROR(I4,-1,UI4,0xffffffff,I4,-1);
4463 VAROR(I4,-1,UI4,0,I4,-1);
4464 VAROR(I4,0,UI4,0,I4,0);
4465 VAROR(I4,-1,R4,-1,I4,-1);
4466 VAROR(I4,-1,R4,0,I4,-1);
4467 VAROR(I4,0,R4,0,I4,0);
4468 VAROR(I4,-1,R8,-1,I4,-1);
4469 VAROR(I4,-1,R8,0,I4,-1);
4470 VAROR(I4,0,R8,0,I4,0);
4471 VAROR(I4,-1,DATE,-1,I4,-1);
4472 VAROR(I4,-1,DATE,0,I4,-1);
4473 VAROR(I4,0,DATE,0,I4,0);
4474 if (HAVE_OLEAUT32_I8)
4475 {
4476 VAROR(I4,-1,I8,-1,I8,-1);
4477 VAROR(I4,-1,I8,0,I8,-1);
4478 VAROR(I4,0,I8,0,I8,0);
4479 VAROR(I4,-1,UI8,0,I4,-1);
4480 VAROR(I4,0,UI8,0,I4,0);
4481 }
4482 VAROR(I4,-1,INT,-1,I4,-1);
4483 VAROR(I4,-1,INT,0,I4,-1);
4484 VAROR(I4,0,INT,0,I4,0);
4485 VAROR(I4,-1,UINT,0xffffffff,I4,-1);
4486 VAROR(I4,-1,UINT,0,I4,-1);
4487 VAROR(I4,0,UINT,0,I4,0);
4488 rbstr = SysAllocString(szFalse);
4489 VAROR(I4,0,BSTR,rbstr,I4,0);
4490 VAROR(I4,-1,BSTR,rbstr,I4,-1);
4491 SysFreeString(rbstr);
4492 rbstr = SysAllocString(szTrue);
4493 VAROR(I4,0,BSTR,rbstr,I4,-1);
4494 VAROR(I4,-1,BSTR,rbstr,I4,-1);
4495 SysFreeString(rbstr);
4496 VARORCY(I4,-1,10000,I4,-1);
4497 VARORCY(I4,-1,0,I4,-1);
4498 VARORCY(I4,0,0,I4,0);
4499
4500 VAROR(UI4,0xffffffff,UI4,0xffffffff,I4,-1);
4501 VAROR(UI4,0xffffffff,UI4,0,I4,-1);
4502 VAROR(UI4,0,UI4,0,I4,0);
4503 VAROR(UI4,0xffffffff,R4,-1,I4,-1);
4504 VAROR(UI4,0xffffffff,R4,0,I4,-1);
4505 VAROR(UI4,0,R4,0,I4,0);
4506 VAROR(UI4,0xffffffff,R8,-1,I4,-1);
4507 VAROR(UI4,0xffffffff,R8,0,I4,-1);
4508 VAROR(UI4,0,R8,0,I4,0);
4509 VAROR(UI4,0xffffffff,DATE,-1,I4,-1);
4510 VAROR(UI4,0xffffffff,DATE,0,I4,-1);
4511 VAROR(UI4,0,DATE,0,I4,0);
4512 if (HAVE_OLEAUT32_I8)
4513 {
4514 VAROR(UI4,0xffffffff,I8,-1,I8,-1);
4515 VAROR(UI4,0xffffffff,I8,0,I8,0xffffffff);
4516 VAROR(UI4,0,I8,0,I8,0);
4517 VAROR(UI4,0xffffffff,UI8,0,I4,-1);
4518 VAROR(UI4,0,UI8,0,I4,0);
4519 }
4520 VAROR(UI4,0xffffffff,INT,-1,I4,-1);
4521 VAROR(UI4,0xffffffff,INT,0,I4,-1);
4522 VAROR(UI4,0,INT,0,I4,0);
4523 VAROR(UI4,0xffffffff,UINT,0xffffffff,I4,-1);
4524 VAROR(UI4,0xffffffff,UINT,0,I4,-1);
4525 VAROR(UI4,0,UINT,0,I4,0);
4526 rbstr = SysAllocString(szFalse);
4527 VAROR(UI4,0,BSTR,rbstr,I4,0);
4528 VAROR(UI4,0xffffffff,BSTR,rbstr,I4,-1);
4529 SysFreeString(rbstr);
4530 rbstr = SysAllocString(szTrue);
4531 VAROR(UI4,0,BSTR,rbstr,I4,-1);
4532 VAROR(UI4,0xffffffff,BSTR,rbstr,I4,-1);
4533 SysFreeString(rbstr);
4534 VARORCY(UI4,0xffffffff,10000,I4,-1);
4535 VARORCY(UI4,0xffffffff,0,I4,-1);
4536 VARORCY(UI4,0,0,I4,0);
4537
4538 VAROR(R4,-1,R4,-1,I4,-1);
4539 VAROR(R4,-1,R4,0,I4,-1);
4540 VAROR(R4,0,R4,0,I4,0);
4541 VAROR(R4,-1,R8,-1,I4,-1);
4542 VAROR(R4,-1,R8,0,I4,-1);
4543 VAROR(R4,0,R8,0,I4,0);
4544 VAROR(R4,-1,DATE,-1,I4,-1);
4545 VAROR(R4,-1,DATE,0,I4,-1);
4546 VAROR(R4,0,DATE,0,I4,0);
4547 if (HAVE_OLEAUT32_I8)
4548 {
4549 VAROR(R4,-1,I8,-1,I8,-1);
4550 VAROR(R4,-1,I8,0,I8,-1);
4551 VAROR(R4,0,I8,0,I8,0);
4552 VAROR(R4,-1,UI8,0,I4,-1);
4553 VAROR(R4,0,UI8,0,I4,0);
4554 }
4555 VAROR(R4,-1,INT,-1,I4,-1);
4556 VAROR(R4,-1,INT,0,I4,-1);
4557 VAROR(R4,0,INT,0,I4,0);
4558 VAROR(R4,-1,UINT,0xffffffff,I4,-1);
4559 VAROR(R4,-1,UINT,0,I4,-1);
4560 VAROR(R4,0,UINT,0,I4,0);
4561 rbstr = SysAllocString(szFalse);
4562 VAROR(R4,0,BSTR,rbstr,I4,0);
4563 VAROR(R4,-1,BSTR,rbstr,I4,-1);
4564 SysFreeString(rbstr);
4565 rbstr = SysAllocString(szTrue);
4566 VAROR(R4,0,BSTR,rbstr,I4,-1);
4567 VAROR(R4,-1,BSTR,rbstr,I4,-1);
4568 SysFreeString(rbstr);
4569 VARORCY(R4,-1,10000,I4,-1);
4570 VARORCY(R4,-1,0,I4,-1);
4571 VARORCY(R4,0,0,I4,0);
4572
4573 VAROR(R8,-1,R8,-1,I4,-1);
4574 VAROR(R8,-1,R8,0,I4,-1);
4575 VAROR(R8,0,R8,0,I4,0);
4576 VAROR(R8,-1,DATE,-1,I4,-1);
4577 VAROR(R8,-1,DATE,0,I4,-1);
4578 VAROR(R8,0,DATE,0,I4,0);
4579 if (HAVE_OLEAUT32_I8)
4580 {
4581 VAROR(R8,-1,I8,-1,I8,-1);
4582 VAROR(R8,-1,I8,0,I8,-1);
4583 VAROR(R8,0,I8,0,I8,0);
4584 VAROR(R8,-1,UI8,0,I4,-1);
4585 VAROR(R8,0,UI8,0,I4,0);
4586 }
4587 VAROR(R8,-1,INT,-1,I4,-1);
4588 VAROR(R8,-1,INT,0,I4,-1);
4589 VAROR(R8,0,INT,0,I4,0);
4590 VAROR(R8,-1,UINT,0xffffffff,I4,-1);
4591 VAROR(R8,-1,UINT,0,I4,-1);
4592 VAROR(R8,0,UINT,0,I4,0);
4593 rbstr = SysAllocString(szFalse);
4594 VAROR(R8,0,BSTR,rbstr,I4,0);
4595 VAROR(R8,-1,BSTR,rbstr,I4,-1);
4596 SysFreeString(rbstr);
4597 rbstr = SysAllocString(szTrue);
4598 VAROR(R8,0,BSTR,rbstr,I4,-1);
4599 VAROR(R8,-1,BSTR,rbstr,I4,-1);
4600 SysFreeString(rbstr);
4601 VARORCY(R8,-1,10000,I4,-1);
4602 VARORCY(R8,-1,0,I4,-1);
4603 VARORCY(R8,0,0,I4,0);
4604
4605 VAROR(DATE,-1,DATE,-1,I4,-1);
4606 VAROR(DATE,-1,DATE,0,I4,-1);
4607 VAROR(DATE,0,DATE,0,I4,0);
4608 if (HAVE_OLEAUT32_I8)
4609 {
4610 VAROR(DATE,-1,I8,-1,I8,-1);
4611 VAROR(DATE,-1,I8,0,I8,-1);
4612 VAROR(DATE,0,I8,0,I8,0);
4613 VAROR(DATE,-1,UI8,0,I4,-1);
4614 VAROR(DATE,0,UI8,0,I4,0);
4615 }
4616 VAROR(DATE,-1,INT,-1,I4,-1);
4617 VAROR(DATE,-1,INT,0,I4,-1);
4618 VAROR(DATE,0,INT,0,I4,0);
4619 VAROR(DATE,-1,UINT,0xffffffff,I4,-1);
4620 VAROR(DATE,-1,UINT,0,I4,-1);
4621 VAROR(DATE,0,UINT,0,I4,0);
4622 rbstr = SysAllocString(szFalse);
4623 VAROR(DATE,0,BSTR,rbstr,I4,0);
4624 VAROR(DATE,-1,BSTR,rbstr,I4,-1);
4625 SysFreeString(rbstr);
4626 rbstr = SysAllocString(szTrue);
4627 VAROR(DATE,0,BSTR,rbstr,I4,-1);
4628 VAROR(DATE,-1,BSTR,rbstr,I4,-1);
4629 SysFreeString(rbstr);
4630 VARORCY(DATE,-1,10000,I4,-1);
4631 VARORCY(DATE,-1,0,I4,-1);
4632 VARORCY(DATE,0,0,I4,0);
4633
4634 if (HAVE_OLEAUT32_I8)
4635 {
4636 VAROR(I8,-1,I8,-1,I8,-1);
4637 VAROR(I8,-1,I8,0,I8,-1);
4638 VAROR(I8,0,I8,0,I8,0);
4639 VAROR(I8,-1,UI8,0,I8,-1);
4640 VAROR(I8,0,UI8,0,I8,0);
4641 /* These overflow under native and Wine
4642 VAROR(I8,-1,INT,-1,I4,-1);
4643 VAROR(I8,-1,INT,0,I4,-1);
4644 VAROR(I8,0,INT,0,I4,0); */
4645 VAROR(I8,-1,UINT,0xffffffff,I8,-1);
4646 VAROR(I8,-1,UINT,0,I8,-1);
4647 VAROR(I8,0,UINT,0,I8,0);
4648 rbstr = SysAllocString(szFalse);
4649 VAROR(I8,0,BSTR,rbstr,I8,0);
4650 VAROR(I8,-1,BSTR,rbstr,I8,-1);
4651 SysFreeString(rbstr);
4652 rbstr = SysAllocString(szTrue);
4653 VAROR(I8,0,BSTR,rbstr,I8,-1);
4654 VAROR(I8,-1,BSTR,rbstr,I8,-1);
4655 SysFreeString(rbstr);
4656 VARORCY(I8,-1,10000,I8,-1);
4657 VARORCY(I8,-1,0,I8,-1);
4658 VARORCY(I8,0,0,I8,0);
4659
4660 VAROR(UI8,0xffff,UI8,0xffff,I4,0xffff);
4661 VAROR(UI8,0xffff,UI8,0,I4,0xffff);
4662 VAROR(UI8,0,UI8,0,I4,0);
4663 VAROR(UI8,0xffff,INT,-1,I4,-1);
4664 VAROR(UI8,0xffff,INT,0,I4,0xffff);
4665 VAROR(UI8,0,INT,0,I4,0);
4666 VAROR(UI8,0xffff,UINT,0xffff,I4,0xffff);
4667 VAROR(UI8,0xffff,UINT,0,I4,0xffff);
4668 VAROR(UI8,0,UINT,0,I4,0);
4669 rbstr = SysAllocString(szFalse);
4670 VAROR(UI8,0,BSTR,rbstr,I4,0);
4671 VAROR(UI8,0xffff,BSTR,rbstr,I4,0xffff);
4672 SysFreeString(rbstr);
4673 rbstr = SysAllocString(szTrue);
4674 VAROR(UI8,0,BSTR,rbstr,I4,-1);
4675 VAROR(UI8,0xffff,BSTR,rbstr,I4,-1);
4676 SysFreeString(rbstr);
4677 VARORCY(UI8,0xffff,10000,I4,0xffff);
4678 VARORCY(UI8,0xffff,0,I4,0xffff);
4679 VARORCY(UI8,0,0,I4,0);
4680 }
4681
4682 VAROR(INT,-1,INT,-1,I4,-1);
4683 VAROR(INT,-1,INT,0,I4,-1);
4684 VAROR(INT,0,INT,0,I4,0);
4685 VAROR(INT,-1,UINT,0xffff,I4,-1);
4686 VAROR(INT,-1,UINT,0,I4,-1);
4687 VAROR(INT,0,UINT,0,I4,0);
4688 rbstr = SysAllocString(szFalse);
4689 VAROR(INT,0,BSTR,rbstr,I4,0);
4690 VAROR(INT,-1,BSTR,rbstr,I4,-1);
4691 SysFreeString(rbstr);
4692 rbstr = SysAllocString(szTrue);
4693 VAROR(INT,0,BSTR,rbstr,I4,-1);
4694 VAROR(INT,-1,BSTR,rbstr,I4,-1);
4695 SysFreeString(rbstr);
4696 VARORCY(INT,-1,10000,I4,-1);
4697 VARORCY(INT,-1,0,I4,-1);
4698 VARORCY(INT,0,0,I4,0);
4699
4700 VAROR(UINT,0xffff,UINT,0xffff,I4,0xffff);
4701 VAROR(UINT,0xffff,UINT,0,I4,0xffff);
4702 VAROR(UINT,0,UINT,0,I4,0);
4703 rbstr = SysAllocString(szFalse);
4704 VAROR(UINT,0,BSTR,rbstr,I4,0);
4705 VAROR(UINT,0xffff,BSTR,rbstr,I4,0xffff);
4706 SysFreeString(rbstr);
4707 rbstr = SysAllocString(szTrue);
4708 VAROR(UINT,0,BSTR,rbstr,I4,-1);
4709 VAROR(UINT,0xffff,BSTR,rbstr,I4,-1);
4710 SysFreeString(rbstr);
4711 VARORCY(UINT,0xffff,10000,I4,0xffff);
4712 VARORCY(UINT,0xffff,0,I4,0xffff);
4713 VARORCY(UINT,0,0,I4,0);
4714
4715 lbstr = SysAllocString(szFalse);
4716 rbstr = SysAllocString(szFalse);
4717 VAROR(BSTR,lbstr,BSTR,rbstr,BOOL,0);
4718 SysFreeString(rbstr);
4719 rbstr = SysAllocString(szTrue);
4720 VAROR(BSTR,lbstr,BSTR,rbstr,BOOL,VARIANT_TRUE);
4721 SysFreeString(lbstr);
4722 lbstr = SysAllocString(szTrue);
4723 VAROR(BSTR,lbstr,BSTR,rbstr,BOOL,VARIANT_TRUE);
4724 VARORCY(BSTR,lbstr,10000,I4,-1);
4725 SysFreeString(lbstr);
4726 lbstr = SysAllocString(szFalse);
4727 VARORCY(BSTR,lbstr,10000,I4,1);
4728 SysFreeString(lbstr);
4729 SysFreeString(rbstr);
4730 }
4731
4732 static HRESULT (WINAPI *pVarEqv)(LPVARIANT,LPVARIANT,LPVARIANT);
4733
4734 #define VAREQV(vt1,val1,vt2,val2,rvt,rval) \
4735 V_VT(&left) = VT_##vt1; V_##vt1(&left) = val1; \
4736 V_VT(&right) = VT_##vt2; V_##vt2(&right) = val2; \
4737 V_VT(&exp) = VT_##rvt; V_##rvt(&exp) = rval; \
4738 test_var_call2( __LINE__, pVarEqv, &left, &right, &exp )
4739
4740 static void test_VarEqv(void)
4741 {
4742 VARIANT left, right, exp, result;
4743 VARTYPE i;
4744 HRESULT hres;
4745
4746 CHECKPTR(VarEqv);
4747
4748 /* Test all possible flag/vt combinations & the resulting vt type */
4749 for (i = 0; i < sizeof(ExtraFlags)/sizeof(ExtraFlags[0]); i++)
4750 {
4751 VARTYPE leftvt, rightvt, resvt;
4752
4753 for (leftvt = 0; leftvt <= VT_BSTR_BLOB; leftvt++)
4754 {
4755 SKIPTESTS(leftvt);
4756
4757 for (rightvt = 0; rightvt <= VT_BSTR_BLOB; rightvt++)
4758 {
4759 BOOL bFail = FALSE;
4760
4761 SKIPTESTS(rightvt);
4762
4763 if (leftvt == VT_BSTR || rightvt == VT_BSTR ||
4764 leftvt == VT_DISPATCH || rightvt == VT_DISPATCH ||
4765 leftvt == VT_UNKNOWN || rightvt == VT_UNKNOWN)
4766 continue;
4767
4768 memset(&left, 0, sizeof(left));
4769 memset(&right, 0, sizeof(right));
4770 V_VT(&left) = leftvt | ExtraFlags[i];
4771 V_VT(&right) = rightvt | ExtraFlags[i];
4772 V_VT(&result) = VT_EMPTY;
4773 resvt = VT_I4;
4774
4775 if (ExtraFlags[i] & VT_ARRAY || ExtraFlags[i] & VT_BYREF ||
4776 !IsValidVariantClearVT(leftvt, ExtraFlags[i]) ||
4777 !IsValidVariantClearVT(rightvt, ExtraFlags[i]) ||
4778 leftvt == VT_CLSID || rightvt == VT_CLSID ||
4779 leftvt == VT_RECORD || rightvt == VT_RECORD ||
4780 leftvt == VT_VARIANT || rightvt == VT_VARIANT ||
4781 leftvt == VT_ERROR || rightvt == VT_ERROR)
4782 {
4783 bFail = TRUE;
4784 }
4785 if (leftvt == VT_EMPTY || rightvt == VT_EMPTY)
4786 {
4787 if (leftvt == rightvt ||
4788 leftvt == VT_I2 || rightvt == VT_I2 ||
4789 leftvt == VT_UI1 || rightvt == VT_UI1 ||
4790 leftvt == VT_BOOL || rightvt == VT_BOOL)
4791 resvt = VT_I2;
4792 else if (leftvt == VT_NULL || rightvt == VT_NULL)
4793 resvt = VT_NULL;
4794 else if (leftvt == VT_I8 || rightvt == VT_I8)
4795 resvt = VT_I8;
4796 }
4797 else if (leftvt == VT_NULL || rightvt == VT_NULL)
4798 {
4799 resvt = VT_NULL;
4800 }
4801 else if (leftvt == VT_UI1 || rightvt == VT_UI1)
4802 {
4803 if (leftvt == rightvt)
4804 resvt = VT_UI1;
4805 else if (leftvt == rightvt ||
4806 leftvt == VT_I2 || rightvt == VT_I2 ||
4807 leftvt == VT_BOOL || rightvt == VT_BOOL)
4808 {
4809 resvt = VT_I2;
4810 }
4811 else if (leftvt == VT_I8 || rightvt == VT_I8)
4812 resvt = VT_I8;
4813 }
4814 else if (leftvt == VT_I2 || rightvt == VT_I2)
4815 {
4816 if (leftvt == rightvt ||
4817 leftvt == VT_BOOL || rightvt == VT_BOOL)
4818 resvt = VT_I2;
4819 else if (leftvt == VT_I8 || rightvt == VT_I8)
4820 resvt = VT_I8;
4821 }
4822 else if (leftvt == VT_BOOL && rightvt == VT_BOOL)
4823 {
4824 resvt = VT_BOOL;
4825 }
4826 else if (leftvt == VT_I8 || rightvt == VT_I8)
4827 {
4828 if (leftvt == VT_INT || rightvt == VT_INT)
4829 bFail = TRUE;
4830 else
4831 resvt = VT_I8;
4832 }
4833 hres = pVarEqv(&left, &right, &result);
4834 if (bFail)
4835 ok(hres == DISP_E_TYPEMISMATCH || hres == DISP_E_BADVARTYPE,
4836 "VarEqv: %d|0x%X, %d|0x%X: Expected failure, got 0x%X vt %d\n",
4837 leftvt, ExtraFlags[i], rightvt, ExtraFlags[i], hres,
4838 V_VT(&result));
4839 else
4840 ok(hres == S_OK && V_VT(&result) == resvt,
4841 "VarEqv: %d|0x%X, %d|0x%X: expected S_OK, vt %d, got 0x%X vt %d\n",
4842 leftvt, ExtraFlags[i], rightvt, ExtraFlags[i], resvt, hres,
4843 V_VT(&result));
4844 }
4845 }
4846 }
4847
4848 /* Test returned values */
4849 VAREQV(BOOL,VARIANT_TRUE,BOOL,VARIANT_TRUE,BOOL,VARIANT_TRUE);
4850 VAREQV(BOOL,VARIANT_FALSE,BOOL,VARIANT_TRUE,BOOL,VARIANT_FALSE);
4851 VAREQV(BOOL,TRUE,BOOL,TRUE,BOOL,VARIANT_TRUE);
4852 VAREQV(BOOL,FALSE,BOOL,FALSE,BOOL,VARIANT_TRUE);
4853 VAREQV(BOOL,TRUE,BOOL,FALSE,BOOL,-2);
4854 VAREQV(BOOL,FALSE,BOOL,TRUE,BOOL,-2);
4855 VAREQV(BOOL,6,BOOL,7,BOOL,-2);
4856 VAREQV(BOOL,6,BOOL,6,BOOL,VARIANT_TRUE);
4857 VAREQV(BOOL,VARIANT_TRUE,I2,VARIANT_TRUE,I2,VARIANT_TRUE);
4858 VAREQV(BOOL,VARIANT_TRUE,I2,VARIANT_FALSE,I2,VARIANT_FALSE);
4859 VAREQV(BOOL,6,I2,7,I2,-2);
4860 VAREQV(UI1,1,UI1,1,UI1,255);
4861 VAREQV(UI1,1,UI1,0,UI1,254);
4862 VAREQV(UI1,0,UI1,1,UI1,254);
4863 if (HAVE_OLEAUT32_I8)
4864 {
4865 VAREQV(UI4,VARIANT_FALSE,I8,VARIANT_FALSE,I8,-1);
4866 VAREQV(UI4,5,I8,19,I8,-23);
4867 VAREQV(UI4,VARIANT_FALSE,UI8,VARIANT_FALSE,I4,-1);
4868 }
4869 }
4870
4871 static HRESULT (WINAPI *pVarMul)(LPVARIANT,LPVARIANT,LPVARIANT);
4872
4873 #define VARMUL(vt1,val1,vt2,val2,rvt,rval) \
4874 V_VT(&left) = VT_##vt1; V_##vt1(&left) = val1; \
4875 V_VT(&right) = VT_##vt2; V_##vt2(&right) = val2; \
4876 V_VT(&exp) = VT_##rvt; V_##rvt(&exp) = rval; \
4877 test_var_call2( __LINE__, pVarMul, &left, &right, &exp )
4878
4879 static void test_VarMul(void)
4880 {
4881 VARIANT left, right, exp, result, cy, dec;
4882 VARTYPE i;
4883 BSTR lbstr, rbstr;
4884 HRESULT hres;
4885 double r;
4886
4887 CHECKPTR(VarMul);
4888
4889 lbstr = SysAllocString(sz12);
4890 rbstr = SysAllocString(sz12);
4891
4892 /* Test all possible flag/vt combinations & the resulting vt type */
4893 for (i = 0; i < sizeof(ExtraFlags)/sizeof(ExtraFlags[0]); i++)
4894 {
4895 VARTYPE leftvt, rightvt, resvt;
4896
4897 for (leftvt = 0; leftvt <= VT_BSTR_BLOB; leftvt++)
4898 {
4899
4900 SKIPTESTS(leftvt);
4901
4902 for (rightvt = 0; rightvt <= VT_BSTR_BLOB; rightvt++)
4903 {
4904 BOOL bFail = FALSE;
4905
4906 SKIPTESTS(rightvt);
4907
4908 if (leftvt == VT_DISPATCH || rightvt == VT_DISPATCH ||
4909 leftvt == VT_UNKNOWN || rightvt == VT_UNKNOWN)
4910 continue;
4911
4912 memset(&left, 0, sizeof(left));
4913 memset(&right, 0, sizeof(right));
4914 V_VT(&left) = leftvt | ExtraFlags[i];
4915 if (leftvt == VT_BSTR)
4916 V_BSTR(&left) = lbstr;
4917 V_VT(&right) = rightvt | ExtraFlags[i];
4918 if (rightvt == VT_BSTR)
4919 V_BSTR(&right) = rbstr;
4920 V_VT(&result) = VT_EMPTY;
4921 resvt = VT_UNKNOWN;
4922
4923 /* Don't ask me why but native VarMul cannot handle:
4924 VT_I1, VT_UI2, VT_UI4, VT_INT, VT_UINT and VT_UI8.
4925 Tested with DCOM98, Win2k, WinXP */
4926 if (ExtraFlags[i] & VT_ARRAY || ExtraFlags[i] & VT_BYREF ||
4927 !IsValidVariantClearVT(leftvt, ExtraFlags[i]) ||
4928 !IsValidVariantClearVT(rightvt, ExtraFlags[i]) ||
4929 leftvt == VT_CLSID || rightvt == VT_CLSID ||
4930 leftvt == VT_RECORD || rightvt == VT_RECORD ||
4931 leftvt == VT_VARIANT || rightvt == VT_VARIANT ||
4932 leftvt == VT_ERROR || rightvt == VT_ERROR ||
4933 leftvt == VT_I1 || rightvt == VT_I1 ||
4934 leftvt == VT_UI2 || rightvt == VT_UI2 ||
4935 leftvt == VT_UI4 || rightvt == VT_UI4 ||
4936 leftvt == VT_UI8 || rightvt == VT_UI8 ||
4937 leftvt == VT_INT || rightvt == VT_INT ||
4938 leftvt == VT_UINT || rightvt == VT_UINT) {
4939 bFail = TRUE;
4940 }
4941
4942 if (leftvt == VT_NULL || rightvt == VT_NULL)
4943 resvt = VT_NULL;
4944 else if (leftvt == VT_DECIMAL || rightvt == VT_DECIMAL)
4945 resvt = VT_DECIMAL;
4946 else if (leftvt == VT_R8 || rightvt == VT_R8 ||
4947 leftvt == VT_BSTR || rightvt == VT_BSTR ||
4948 leftvt == VT_DATE || rightvt == VT_DATE)
4949 resvt = VT_R8;
4950 else if (leftvt == VT_R4 || rightvt == VT_R4) {
4951 if (leftvt == VT_I4 || rightvt == VT_I4 ||
4952 leftvt == VT_I8 || rightvt == VT_I8 ||
4953 leftvt == VT_CY || rightvt == VT_CY)
4954 resvt = VT_R8;
4955 else
4956 resvt = VT_R4;
4957 } else if (leftvt == VT_CY || rightvt == VT_CY)
4958 resvt = VT_CY;
4959 else if (leftvt == VT_I8 || rightvt == VT_I8)
4960 resvt = VT_I8;
4961 else if (leftvt == VT_I4 || rightvt == VT_I4)
4962 resvt = VT_I4;
4963 else if (leftvt == VT_I2 || rightvt == VT_I2 ||
4964 leftvt == VT_BOOL || rightvt == VT_BOOL ||
4965 (leftvt == VT_EMPTY && rightvt == VT_EMPTY))
4966 resvt = VT_I2;
4967 else if (leftvt == VT_UI1 || rightvt == VT_UI1)
4968 resvt = VT_UI1;
4969
4970 hres = pVarMul(&left, &right, &result);
4971 if (bFail) {
4972 ok(hres == DISP_E_TYPEMISMATCH || hres == DISP_E_BADVARTYPE,
4973 "VarMul: %d|0x%X, %d|0x%X: Expected failure, got 0x%X vt %d\n",
4974 leftvt, ExtraFlags[i], rightvt, ExtraFlags[i], hres,
4975 V_VT(&result));
4976 } else {
4977 ok(hres == S_OK && V_VT(&result) == resvt,
4978 "VarMul: %d|0x%X, %d|0x%X: expected S_OK, vt %d, got 0x%X vt %d\n",
4979 leftvt, ExtraFlags[i], rightvt, ExtraFlags[i], resvt, hres,
4980 V_VT(&result));
4981 }
4982 }
4983 }
4984 }
4985
4986 /* Test returned values */
4987 VARMUL(I4,4,I4,2,I4,8);
4988 VARMUL(I2,4,I2,2,I2,8);
4989 VARMUL(I2,-13,I4,5,I4,-65);
4990 VARMUL(I4,-13,I4,5,I4,-65);
4991 VARMUL(I2,7,R4,0.5f,R4,3.5f);
4992 VARMUL(R4,0.5f,I4,5,R8,2.5);
4993 VARMUL(R8,7.1,BOOL,0,R8,0);
4994 VARMUL(BSTR,lbstr,I2,4,R8,48);
4995 VARMUL(BSTR,lbstr,BOOL,1,R8,12);
4996 VARMUL(BSTR,lbstr,R4,0.1f,R8,1.2);
4997 VARMUL(BSTR,lbstr,BSTR,rbstr,R8,144);
4998 VARMUL(R4,0.2f,BSTR,rbstr,R8,2.4);
4999 VARMUL(DATE,2.25,I4,7,R8,15.75);
5000
5001 VARMUL(UI1, UI1_MAX, UI1, UI1_MAX, I4, UI1_MAX * UI1_MAX);
5002 VARMUL(I2, I2_MAX, I2, I2_MAX, I4, I2_MAX * I2_MAX);
5003 VARMUL(I2, I2_MAX, I2, I2_MIN, I4, I2_MAX * I2_MIN);
5004 VARMUL(I2, I2_MIN, I2, I2_MIN, I4, I2_MIN * I2_MIN);
5005 VARMUL(I4, I4_MAX, I4, I4_MAX, R8, (double)I4_MAX * I4_MAX);
5006 VARMUL(I4, I4_MAX, I4, I4_MIN, R8, (double)I4_MAX * I4_MIN);
5007 VARMUL(I4, I4_MIN, I4, I4_MIN, R8, (double)I4_MIN * I4_MIN);
5008 VARMUL(R4, R4_MAX, R4, R4_MAX, R8, (double)R4_MAX * R4_MAX);
5009 VARMUL(R4, R4_MAX, R4, R4_MIN, R4, R4_MAX * R4_MIN);
5010 VARMUL(R4, R4_MIN, R4, R4_MIN, R4, R4_MIN * R4_MIN);
5011 VARMUL(R8, R8_MAX, R8, R8_MIN, R8, R8_MAX * R8_MIN);
5012 VARMUL(R8, R8_MIN, R8, R8_MIN, R8, R8_MIN * R8_MIN);
5013
5014 /* Manuly test some VT_CY and VT_DECIMAL variants */
5015 V_VT(&cy) = VT_CY;
5016 hres = VarCyFromI4(4711, &V_CY(&cy));
5017 ok(hres == S_OK, "VarCyFromI4 failed!\n");
5018 V_VT(&dec) = VT_DECIMAL;
5019 hres = VarDecFromR8(-4.2, &V_DECIMAL(&dec));
5020 ok(hres == S_OK, "VarDecFromR4 failed!\n");
5021 memset(&left, 0, sizeof(left));
5022 memset(&right, 0, sizeof(right));
5023 V_VT(&left) = VT_I4;
5024 V_I4(&left) = -11;
5025 V_VT(&right) = VT_UI1;
5026 V_UI1(&right) = 9;
5027
5028 hres = VarMul(&cy, &right, &result);
5029 ok(hres == S_OK && V_VT(&result) == VT_CY, "VarMul: expected coerced type VT_CY, got %s!\n", vtstr(V_VT(&result)));
5030 hres = VarR8FromCy(V_CY(&result), &r);
5031 ok(hres == S_OK && EQ_DOUBLE(r, 42399), "VarMul: CY value %f, expected %f\n", r, (double)42399);
5032
5033 hres = VarMul(&left, &dec, &result);
5034 ok(hres == S_OK && V_VT(&result) == VT_DECIMAL, "VarMul: expected coerced type VT_DECIMAL, got %s!\n", vtstr(V_VT(&result)));
5035 hres = VarR8FromDec(&V_DECIMAL(&result), &r);
5036 ok(hres == S_OK && EQ_DOUBLE(r, 46.2), "VarMul: DECIMAL value %f, expected %f\n", r, (double)46.2);
5037
5038 SysFreeString(lbstr);
5039 SysFreeString(rbstr);
5040 }
5041
5042 static HRESULT (WINAPI *pVarAdd)(LPVARIANT,LPVARIANT,LPVARIANT);
5043
5044 #define VARADD(vt1,val1,vt2,val2,rvt,rval) \
5045 V_VT(&left) = VT_##vt1; V_##vt1(&left) = val1; \
5046 V_VT(&right) = VT_##vt2; V_##vt2(&right) = val2; \
5047 V_VT(&exp) = VT_##rvt; V_##rvt(&exp) = rval; \
5048 test_var_call2( __LINE__, pVarAdd, &left, &right, &exp )
5049
5050 static void test_VarAdd(void)
5051 {
5052 VARIANT left, right, exp, result, cy, dec;
5053 VARTYPE i;
5054 BSTR lbstr, rbstr;
5055 HRESULT hres;
5056 double r;
5057
5058 CHECKPTR(VarAdd);
5059
5060 lbstr = SysAllocString(sz12);
5061 rbstr = SysAllocString(sz12);
5062
5063 /* Test all possible flag/vt combinations & the resulting vt type */
5064 for (i = 0; i < sizeof(ExtraFlags)/sizeof(ExtraFlags[0]); i++)
5065 {
5066 VARTYPE leftvt, rightvt, resvt;
5067
5068 for (leftvt = 0; leftvt <= VT_BSTR_BLOB; leftvt++)
5069 {
5070
5071 SKIPTESTS(leftvt);
5072
5073 for (rightvt = 0; rightvt <= VT_BSTR_BLOB; rightvt++)
5074 {
5075 BOOL bFail = FALSE;
5076
5077 SKIPTESTS(rightvt);
5078
5079 if (leftvt == VT_UNKNOWN || rightvt == VT_UNKNOWN)
5080 continue;
5081
5082 memset(&left, 0, sizeof(left));
5083 memset(&right, 0, sizeof(right));
5084 V_VT(&left) = leftvt | ExtraFlags[i];
5085 if (leftvt == VT_BSTR)
5086 V_BSTR(&left) = lbstr;
5087 V_VT(&right) = rightvt | ExtraFlags[i];
5088 if (rightvt == VT_BSTR)
5089 V_BSTR(&right) = rbstr;
5090 V_VT(&result) = VT_EMPTY;
5091 resvt = VT_ERROR;
5092
5093 /* Don't ask me why but native VarAdd cannot handle:
5094 VT_I1, VT_UI2, VT_UI4, VT_INT, VT_UINT and VT_UI8.
5095 Tested with DCOM98, Win2k, WinXP */
5096 if (ExtraFlags[i] & VT_ARRAY || ExtraFlags[i] & VT_BYREF ||
5097 !IsValidVariantClearVT(leftvt, ExtraFlags[i]) ||
5098 !IsValidVariantClearVT(rightvt, ExtraFlags[i]) ||
5099 leftvt == VT_CLSID || rightvt == VT_CLSID ||
5100 leftvt == VT_RECORD || rightvt == VT_RECORD ||
5101 leftvt == VT_VARIANT || rightvt == VT_VARIANT ||
5102 leftvt == VT_ERROR || rightvt == VT_ERROR ||
5103 leftvt == VT_I1 || rightvt == VT_I1 ||
5104 leftvt == VT_UI2 || rightvt == VT_UI2 ||
5105 leftvt == VT_UI4 || rightvt == VT_UI4 ||
5106 leftvt == VT_UI8 || rightvt == VT_UI8 ||
5107 leftvt == VT_INT || rightvt == VT_INT ||
5108 leftvt == VT_UINT || rightvt == VT_UINT) {
5109 bFail = TRUE;
5110 }
5111
5112 if (leftvt == VT_NULL || rightvt == VT_NULL)
5113 resvt = VT_NULL;
5114 else if (leftvt == VT_DISPATCH || rightvt == VT_DISPATCH)
5115 bFail = TRUE;
5116 else if (leftvt == VT_DECIMAL || rightvt == VT_DECIMAL)
5117 resvt = VT_DECIMAL;
5118 else if (leftvt == VT_DATE || rightvt == VT_DATE)
5119 resvt = VT_DATE;
5120 else if (leftvt == VT_CY || rightvt == VT_CY)
5121 resvt = VT_CY;
5122 else if (leftvt == VT_R8 || rightvt == VT_R8)
5123 resvt = VT_R8;
5124 else if (leftvt == VT_BSTR || rightvt == VT_BSTR) {
5125 if ((leftvt == VT_BSTR && rightvt == VT_BSTR) ||
5126 leftvt == VT_EMPTY || rightvt == VT_EMPTY)
5127 resvt = VT_BSTR;
5128 else
5129 resvt = VT_R8;
5130 } else if (leftvt == VT_R4 || rightvt == VT_R4) {
5131 if (leftvt == VT_I4 || rightvt == VT_I4 ||
5132 leftvt == VT_I8 || rightvt == VT_I8)
5133 resvt = VT_R8;
5134 else
5135 resvt = VT_R4;
5136 }
5137 else if (leftvt == VT_I8 || rightvt == VT_I8)
5138 resvt = VT_I8;
5139 else if (leftvt == VT_I4 || rightvt == VT_I4)
5140 resvt = VT_I4;
5141 else if (leftvt == VT_I2 || rightvt == VT_I2 ||
5142 leftvt == VT_BOOL || rightvt == VT_BOOL ||
5143 (leftvt == VT_EMPTY && rightvt == VT_EMPTY))
5144 resvt = VT_I2;
5145 else if (leftvt == VT_UI1 || rightvt == VT_UI1)
5146 resvt = VT_UI1;
5147
5148 hres = pVarAdd(&left, &right, &result);
5149 if (bFail) {
5150 ok(hres == DISP_E_TYPEMISMATCH || hres == DISP_E_BADVARTYPE,
5151 "VarAdd: %d|0x%X, %d|0x%X: Expected failure, got 0x%X vt %d\n",
5152 leftvt, ExtraFlags[i], rightvt, ExtraFlags[i], hres,
5153 V_VT(&result));
5154 } else {
5155 ok(hres == S_OK && V_VT(&result) == resvt,
5156 "VarAdd: %d|0x%X, %d|0x%X: expected S_OK, vt %d, got 0x%X vt %d\n",
5157 leftvt, ExtraFlags[i], rightvt, ExtraFlags[i], resvt, hres,
5158 V_VT(&result));
5159 }
5160 /* Note, we don't clear left/right deliberately here */
5161 VariantClear(&result);
5162 }
5163 }
5164 }
5165
5166 /* Test returned values */
5167 VARADD(I4,4,I4,2,I4,6);
5168 VARADD(I2,4,I2,2,I2,6);
5169 VARADD(I2,-13,I4,5,I4,-8);
5170 VARADD(I4,-13,I4,5,I4,-8);
5171 VARADD(I2,7,R4,0.5f,R4,7.5f);
5172 VARADD(R4,0.5f,I4,5,R8,5.5);
5173 VARADD(R8,7.1,BOOL,0,R8,7.1);
5174 VARADD(BSTR,lbstr,I2,4,R8,16);
5175 VARADD(BSTR,lbstr,BOOL,1,R8,13);
5176 VARADD(BSTR,lbstr,R4,0.1f,R8,12.1);
5177 VARADD(R4,0.2f,BSTR,rbstr,R8,12.2);
5178 VARADD(DATE,2.25,I4,7,DATE,9.25);
5179 VARADD(DATE,1.25,R4,-1.7f,DATE,-0.45);
5180
5181 VARADD(UI1, UI1_MAX, UI1, UI1_MAX, I2, UI1_MAX + UI1_MAX);
5182 VARADD(I2, I2_MAX, I2, I2_MAX, I4, I2_MAX + I2_MAX);
5183 VARADD(I2, I2_MAX, I2, I2_MIN, I2, I2_MAX + I2_MIN);
5184 VARADD(I2, I2_MIN, I2, I2_MIN, I4, I2_MIN + I2_MIN);
5185 VARADD(I4, I4_MAX, I4, I4_MIN, I4, I4_MAX + I4_MIN);
5186 VARADD(I4, I4_MAX, I4, I4_MAX, R8, (double)I4_MAX + I4_MAX);
5187 VARADD(I4, I4_MIN, I4, I4_MIN, R8, (double)I4_MIN + I4_MIN);
5188 VARADD(R4, R4_MAX, R4, R4_MAX, R8, (double)R4_MAX + R4_MAX);
5189 VARADD(R4, R4_MAX, R4, R4_MIN, R4, R4_MAX + R4_MIN);
5190 VARADD(R4, R4_MIN, R4, R4_MIN, R4, R4_MIN + R4_MIN);
5191 VARADD(R8, R8_MAX, R8, R8_MIN, R8, R8_MAX + R8_MIN);
5192 VARADD(R8, R8_MIN, R8, R8_MIN, R8, R8_MIN + R8_MIN);
5193
5194 /* Manually test BSTR + BSTR */
5195 V_VT(&left) = VT_BSTR;
5196 V_BSTR(&left) = lbstr;
5197 V_VT(&right) = VT_BSTR;
5198 V_BSTR(&right) = rbstr;
5199 hres = VarAdd(&left, &right, &result);
5200 ok(hres == S_OK && V_VT(&result) == VT_BSTR, "VarAdd: expected coerced type VT_BSTR, got %s!\n", vtstr(V_VT(&result)));
5201 hres = VarR8FromStr(V_BSTR(&result), 0, 0, &r);
5202 ok(hres == S_OK && EQ_DOUBLE(r, 1212), "VarAdd: BSTR value %f, expected %f\n", r, (double)1212);
5203 VariantClear(&result);
5204
5205 /* Manuly test some VT_CY and VT_DECIMAL variants */
5206 V_VT(&cy) = VT_CY;
5207 hres = VarCyFromI4(4711, &V_CY(&cy));
5208 ok(hres == S_OK, "VarCyFromI4 failed!\n");
5209 V_VT(&dec) = VT_DECIMAL;
5210 hres = VarDecFromR8(-4.2, &V_DECIMAL(&dec));
5211 ok(hres == S_OK, "VarDecFromR4 failed!\n");
5212 memset(&left, 0, sizeof(left));
5213 memset(&right, 0, sizeof(right));
5214 V_VT(&left) = VT_I4;
5215 V_I4(&left) = -11;
5216 V_VT(&right) = VT_UI1;
5217 V_UI1(&right) = 9;
5218
5219 hres = VarAdd(&cy, &right, &result);
5220 ok(hres == S_OK && V_VT(&result) == VT_CY, "VarAdd: expected coerced type VT_CY, got %s!\n", vtstr(V_VT(&result)));
5221 hres = VarR8FromCy(V_CY(&result), &r);
5222 ok(hres == S_OK && EQ_DOUBLE(r, 4720), "VarAdd: CY value %f, expected %f\n", r, (double)4720);
5223
5224 hres = VarAdd(&left, &dec, &result);
5225 ok(hres == S_OK && V_VT(&result) == VT_DECIMAL, "VarAdd: expected coerced type VT_DECIMAL, got %s!\n", vtstr(V_VT(&result)));
5226 hres = VarR8FromDec(&V_DECIMAL(&result), &r);
5227 ok(hres == S_OK && EQ_DOUBLE(r, -15.2), "VarAdd: DECIMAL value %f, expected %f\n", r, (double)-15.2);
5228 VariantClear(&result);
5229
5230 SysFreeString(lbstr);
5231 SysFreeString(rbstr);
5232 }
5233
5234 static void test_VarCat(void)
5235 {
5236 LCID lcid;
5237 VARIANT left, right, result, expected, expected_broken;
5238 static const WCHAR sz34[] = {'3','4','\0'};
5239 static const WCHAR sz1234[] = {'1','2','3','4','\0'};
5240 static const WCHAR date_sz12[] = {'9','/','3','0','/','1','9','8','0','1','2','\0'};
5241 static const WCHAR date_sz12_broken[] = {'9','/','3','0','/','8','0','1','2','\0'};
5242 static const WCHAR sz12_date[] = {'1','2','9','/','3','0','/','1','9','8','0','\0'};
5243 static const WCHAR sz12_date_broken[] = {'1','2','9','/','3','0','/','8','0','\0'};
5244 static const WCHAR sz_empty[] = {'\0'};
5245 TCHAR orig_date_format[128];
5246 VARTYPE leftvt, rightvt, resultvt;
5247 HRESULT hres;
5248 HRESULT expected_error_num;
5249
5250 /* Set date format for testing */
5251 lcid = LOCALE_USER_DEFAULT;
5252 GetLocaleInfo(lcid,LOCALE_SSHORTDATE,orig_date_format,128);
5253 SetLocaleInfo(lcid,LOCALE_SSHORTDATE,"M/d/yyyy");
5254
5255 VariantInit(&left);
5256 VariantInit(&right);
5257 VariantInit(&result);
5258 VariantInit(&expected);
5259
5260 /* Check expected types for all combinations */
5261 for (leftvt = 0; leftvt <= VT_BSTR_BLOB; leftvt++)
5262 {
5263
5264 SKIPTESTS(leftvt);
5265
5266 /* Check if we need/have support for I8 and/or UI8 */
5267 if ((leftvt == VT_I8 || leftvt == VT_UI8) && !HAVE_OLEAUT32_I8)
5268 continue;
5269
5270 for (rightvt = 0; rightvt <= VT_BSTR_BLOB; rightvt++)
5271 {
5272
5273 SKIPTESTS(rightvt);
5274 expected_error_num = S_OK;
5275 resultvt = VT_EMPTY;
5276
5277 if (leftvt == VT_DISPATCH || rightvt == VT_DISPATCH ||
5278 leftvt == VT_UNKNOWN || rightvt == VT_UNKNOWN ||
5279 leftvt == VT_RECORD || rightvt == VT_RECORD ||
5280 leftvt == 15 || rightvt == 15 /* Undefined type */)
5281 continue;
5282
5283 /* Check if we need/have support for I8 and/or UI8 */
5284 if ((rightvt == VT_I8 || rightvt == VT_UI8) && !HAVE_OLEAUT32_I8)
5285 continue;
5286
5287 if (leftvt == VT_NULL && rightvt == VT_NULL)
5288 resultvt = VT_NULL;
5289 else if (leftvt == VT_VARIANT && (rightvt == VT_ERROR ||
5290 rightvt == VT_DATE || rightvt == VT_DECIMAL))
5291 expected_error_num = DISP_E_TYPEMISMATCH;
5292 else if ((leftvt == VT_I2 || leftvt == VT_I4 ||
5293 leftvt == VT_R4 || leftvt == VT_R8 ||
5294 leftvt == VT_CY || leftvt == VT_BOOL ||
5295 leftvt == VT_BSTR || leftvt == VT_I1 ||
5296 leftvt == VT_UI1 || leftvt == VT_UI2 ||
5297 leftvt == VT_UI4 || leftvt == VT_I8 ||
5298 leftvt == VT_UI8 || leftvt == VT_INT ||
5299 leftvt == VT_UINT || leftvt == VT_EMPTY ||
5300 leftvt == VT_NULL || leftvt == VT_DECIMAL ||
5301 leftvt == VT_DATE)
5302 &&
5303 (rightvt == VT_I2 || rightvt == VT_I4 ||
5304 rightvt == VT_R4 || rightvt == VT_R8 ||
5305 rightvt == VT_CY || rightvt == VT_BOOL ||
5306 rightvt == VT_BSTR || rightvt == VT_I1 ||
5307 rightvt == VT_UI1 || rightvt == VT_UI2 ||
5308 rightvt == VT_UI4 || rightvt == VT_I8 ||
5309 rightvt == VT_UI8 || rightvt == VT_INT ||
5310 rightvt == VT_UINT || rightvt == VT_EMPTY ||
5311 rightvt == VT_NULL || rightvt == VT_DECIMAL ||
5312 rightvt == VT_DATE))
5313 resultvt = VT_BSTR;
5314 else if (rightvt == VT_ERROR && leftvt < VT_VOID)
5315 expected_error_num = DISP_E_TYPEMISMATCH;
5316 else if (leftvt == VT_ERROR && (rightvt == VT_DATE ||
5317 rightvt == VT_ERROR || rightvt == VT_DECIMAL))
5318 expected_error_num = DISP_E_TYPEMISMATCH;
5319 else if (rightvt == VT_DATE || rightvt == VT_ERROR ||
5320 rightvt == VT_DECIMAL)
5321 expected_error_num = DISP_E_BADVARTYPE;
5322 else if (leftvt == VT_ERROR || rightvt == VT_ERROR)
5323 expected_error_num = DISP_E_TYPEMISMATCH;
5324 else if (leftvt == VT_VARIANT)
5325 expected_error_num = DISP_E_TYPEMISMATCH;
5326 else if (rightvt == VT_VARIANT && (leftvt == VT_EMPTY ||
5327 leftvt == VT_NULL || leftvt == VT_I2 ||
5328 leftvt == VT_I4 || leftvt == VT_R4 ||
5329 leftvt == VT_R8 || leftvt == VT_CY ||
5330 leftvt == VT_DATE || leftvt == VT_BSTR ||
5331 leftvt == VT_BOOL || leftvt == VT_DECIMAL ||
5332 leftvt == VT_I1 || leftvt == VT_UI1 ||
5333 leftvt == VT_UI2 || leftvt == VT_UI4 ||
5334 leftvt == VT_I8 || leftvt == VT_UI8 ||
5335 leftvt == VT_INT || leftvt == VT_UINT
5336 ))
5337 expected_error_num = DISP_E_TYPEMISMATCH;
5338 else
5339 expected_error_num = DISP_E_BADVARTYPE;
5340
5341 V_VT(&left) = leftvt;
5342 V_VT(&right) = rightvt;
5343
5344 switch (leftvt) {
5345 case VT_BSTR:
5346 V_BSTR(&left) = SysAllocString(sz_empty); break;
5347 case VT_DATE:
5348 V_DATE(&left) = 0.0; break;
5349 case VT_DECIMAL:
5350 VarDecFromR8(0.0, &V_DECIMAL(&left)); break;
5351 default:
5352 V_I8(&left) = 0;
5353 }
5354
5355 switch (rightvt) {
5356 case VT_BSTR:
5357 V_BSTR(&right) = SysAllocString(sz_empty); break;
5358 case VT_DATE:
5359 V_DATE(&right) = 0.0; break;
5360 case VT_DECIMAL:
5361 VarDecFromR8(0.0, &V_DECIMAL(&right)); break;
5362 default:
5363 V_I8(&right) = 0;
5364 }
5365
5366 hres = VarCat(&left, &right, &result);
5367
5368 /* Determine the error code for the vt combination */
5369 ok(hres == expected_error_num,
5370 "VarCat: %d, %d returned error, 0x%X expected 0x%X.\n",
5371 leftvt, rightvt, expected_error_num, hres);
5372
5373 /* Check types are correct */
5374 ok(V_VT(&result) == resultvt,
5375 "VarCat: %d, %d: expected vt %d, got vt %d\n",
5376 leftvt, rightvt, resultvt, V_VT(&result));
5377
5378 VariantClear(&left);
5379 VariantClear(&right);
5380 VariantClear(&result);
5381 }
5382 }
5383
5384 /* Running single comparison tests to compare outputs */
5385
5386 /* Test concat strings */
5387 V_VT(&left) = VT_BSTR;
5388 V_VT(&right) = VT_BSTR;
5389 V_VT(&expected) = VT_BSTR;
5390 V_BSTR(&left) = SysAllocString(sz12);
5391 V_BSTR(&right) = SysAllocString(sz34);
5392 V_BSTR(&expected) = SysAllocString(sz1234);
5393 hres = VarCat(&left,&right,&result);
5394 ok(hres == S_OK, "VarCat failed with error 0x%08x\n", hres);
5395 ok(VarCmp(&result,&expected,lcid,0) == VARCMP_EQ,
5396 "VarCat: VT_BSTR concat with VT_BSTR failed to return correct result\n");
5397
5398 VariantClear(&left);
5399 VariantClear(&right);
5400 VariantClear(&result);
5401
5402 /* Test if expression is VT_ERROR */
5403 V_VT(&left) = VT_ERROR;
5404 V_VT(&right) = VT_BSTR;
5405 V_BSTR(&right) = SysAllocString(sz1234);
5406 hres = VarCat(&left,&right,&result);
5407 ok(hres == DISP_E_TYPEMISMATCH, "VarCat should have returned DISP_E_TYPEMISMATCH instead of 0x%08x\n", hres);
5408 ok(V_VT(&result) == VT_EMPTY,
5409 "VarCat: VT_ERROR concat with VT_BSTR should have returned VT_EMPTY\n");
5410
5411 VariantClear(&left);
5412 VariantClear(&right);
5413 VariantClear(&result);
5414
5415 V_VT(&left) = VT_BSTR;
5416 V_VT(&right) = VT_ERROR;
5417 V_BSTR(&left) = SysAllocString(sz1234);
5418 hres = VarCat(&left,&right,&result);
5419 ok(hres == DISP_E_TYPEMISMATCH, "VarCat should have returned DISP_E_TYPEMISMATCH instead of 0x%08x\n", hres);
5420 ok(V_VT(&result) == VT_EMPTY,
5421 "VarCat: VT_BSTR concat with VT_ERROR should have returned VT_EMPTY\n");
5422
5423 VariantClear(&left);
5424 VariantClear(&right);
5425 VariantClear(&result);
5426 VariantClear(&expected);
5427
5428 /* Test combining boolean with number */
5429 V_VT(&left) = VT_INT;
5430 V_VT(&right) = VT_BOOL;
5431 V_VT(&expected) = VT_BSTR;
5432 V_INT(&left) = 12;
5433 V_BOOL(&right) = TRUE;
5434 V_BSTR(&expected) = SysAllocString(sz12_true);
5435 hres = VarCat(&left,&right,&result);
5436 ok(hres == S_OK, "VarCat failed with error 0x%08x\n", hres);
5437 hres = VarCmp(&result,&expected,lcid,0);
5438 ok(hres == VARCMP_EQ, "Expected VARCMP_EQ, got %08x for %s, %s\n",
5439 hres, variantstr(&result), variantstr(&expected));
5440
5441 VariantClear(&left);
5442 VariantClear(&right);
5443 VariantClear(&result);
5444 VariantClear(&expected);
5445
5446 V_VT(&left) = VT_INT;
5447 V_VT(&right) = VT_BOOL;
5448 V_VT(&expected) = VT_BSTR;
5449 V_INT(&left) = 12;
5450 V_BOOL(&right) = FALSE;
5451 V_BSTR(&expected) = SysAllocString(sz12_false);
5452 hres = VarCat(&left,&right,&result);
5453 ok(hres == S_OK, "VarCat failed with error 0x%08x\n", hres);
5454 hres = VarCmp(&result,&expected,lcid,0);
5455 ok(hres == VARCMP_EQ, "Expected VARCMP_EQ, got %08x for %s, %s\n",
5456 hres, variantstr(&result), variantstr(&expected));
5457
5458 VariantClear(&left);
5459 VariantClear(&right);
5460 VariantClear(&result);
5461 VariantClear(&expected);
5462
5463 /* Test when both expressions are numeric */
5464 V_VT(&left) = VT_INT;
5465 V_VT(&right) = VT_INT;
5466 V_VT(&expected) = VT_BSTR;
5467 V_INT(&left) = 12;
5468 V_INT(&right) = 34;
5469 V_BSTR(&expected) = SysAllocString(sz1234);
5470 hres = VarCat(&left,&right,&result);
5471 ok(hres == S_OK, "VarCat failed with error 0x%08x\n", hres);
5472 ok(VarCmp(&result,&expected,lcid,0) == VARCMP_EQ,
5473 "VarCat: NUMBER concat with NUMBER returned incorrect result\n");
5474
5475 VariantClear(&left);
5476 VariantClear(&right);
5477 VariantClear(&result);
5478
5479 /* Test if one expression is numeric and the other is a string */
5480 V_VT(&left) = VT_INT;
5481 V_VT(&right) = VT_BSTR;
5482 V_INT(&left) = 12;
5483 V_BSTR(&right) = SysAllocString(sz34);
5484 hres = VarCat(&left,&right,&result);
5485 ok(hres == S_OK, "VarCat failed with error 0x%08x\n", hres);
5486 ok(VarCmp(&result,&expected,lcid,0) == VARCMP_EQ,
5487 "VarCat: NUMBER concat with VT_BSTR, incorrect result\n");
5488
5489 VariantClear(&left);
5490 VariantClear(&right);
5491 VariantClear(&result);
5492
5493 V_VT(&left) = VT_BSTR;
5494 V_VT(&right) = VT_INT;
5495 V_BSTR(&left) = SysAllocString(sz12);
5496 V_INT(&right) = 34;
5497 hres = VarCat(&left,&right,&result);
5498 ok(hres == S_OK, "VarCat failed with error 0x%08x\n", hres);
5499 ok(VarCmp(&result,&expected,lcid,0) == VARCMP_EQ,
5500 "VarCat: VT_BSTR concat with NUMBER, incorrect result\n");
5501
5502 VariantClear(&left);
5503 VariantClear(&right);
5504 VariantClear(&result);
5505 VariantClear(&expected);
5506
5507 /* Test concat dates with strings */
5508 V_VT(&left) = VT_BSTR;
5509 V_VT(&right) = VT_DATE;
5510 V_VT(&expected) = VT_BSTR;
5511 V_VT(&expected_broken) = VT_BSTR;
5512 V_BSTR(&left) = SysAllocString(sz12);
5513 V_DATE(&right) = 29494.0;
5514 V_BSTR(&expected)= SysAllocString(sz12_date);
5515 V_BSTR(&expected_broken)= SysAllocString(sz12_date_broken);
5516 hres = VarCat(&left,&right,&result);
5517 ok(hres == S_OK, "VarCat failed with error 0x%08x\n", hres);
5518 ok(VarCmp(&result,&expected,lcid,0) == VARCMP_EQ ||
5519 broken(VarCmp(&result,&expected_broken,lcid,0) == VARCMP_EQ), /* Some W98 and NT4 (intermittent) */
5520 "VarCat: VT_BSTR concat with VT_DATE returned incorrect result\n");
5521
5522 VariantClear(&left);
5523 VariantClear(&right);
5524 VariantClear(&result);
5525 VariantClear(&expected);
5526 VariantClear(&expected_broken);
5527
5528 V_VT(&left) = VT_DATE;
5529 V_VT(&right) = VT_BSTR;
5530 V_VT(&expected) = VT_BSTR;
5531 V_VT(&expected_broken) = VT_BSTR;
5532 V_DATE(&left) = 29494.0;
5533 V_BSTR(&right) = SysAllocString(sz12);
5534 V_BSTR(&expected)= SysAllocString(date_sz12);
5535 V_BSTR(&expected_broken)= SysAllocString(date_sz12_broken);
5536 hres = VarCat(&left,&right,&result);
5537 ok(hres == S_OK, "VarCat failed with error 0x%08x\n", hres);
5538 ok(VarCmp(&result,&expected,lcid,0) == VARCMP_EQ ||
5539 broken(VarCmp(&result,&expected_broken,lcid,0) == VARCMP_EQ), /* Some W98 and NT4 (intermittent) */
5540 "VarCat: VT_DATE concat with VT_BSTR returned incorrect result\n");
5541
5542 VariantClear(&left);
5543 VariantClear(&right);
5544 VariantClear(&result);
5545 VariantClear(&expected);
5546 VariantClear(&expected_broken);
5547
5548 /* Test of both expressions are empty */
5549 V_VT(&left) = VT_BSTR;
5550 V_VT(&right) = VT_BSTR;
5551 V_VT(&expected) = VT_BSTR;
5552 V_BSTR(&left) = SysAllocString(sz_empty);
5553 V_BSTR(&right) = SysAllocString(sz_empty);
5554 V_BSTR(&expected)= SysAllocString(sz_empty);
5555 hres = VarCat(&left,&right,&result);
5556 ok(hres == S_OK, "VarCat failed with error 0x%08x\n", hres);
5557 ok(VarCmp(&result,&left,lcid,0) == VARCMP_EQ,
5558 "VarCat: EMPTY concat with EMPTY did not return empty VT_BSTR\n");
5559
5560 /* Restore original date format settings */
5561 SetLocaleInfo(lcid,LOCALE_SSHORTDATE,orig_date_format);
5562
5563 VariantClear(&left);
5564 VariantClear(&right);
5565 VariantClear(&result);
5566 VariantClear(&expected);
5567 }
5568
5569 static HRESULT (WINAPI *pVarAnd)(LPVARIANT,LPVARIANT,LPVARIANT);
5570
5571 #define VARAND(vt1,val1,vt2,val2,rvt,rval) \
5572 V_VT(&left) = VT_##vt1; V_##vt1(&left) = val1; \
5573 V_VT(&right) = VT_##vt2; V_##vt2(&right) = val2; \
5574 V_VT(&exp) = VT_##rvt; V_##rvt(&exp) = rval; \
5575 test_var_call2( __LINE__, pVarAnd, &left, &right, &exp )
5576
5577 #define VARANDCY(vt1,val1,val2,rvt,rval) \
5578 V_VT(&left) = VT_##vt1; V_##vt1(&left) = val1; \
5579 V_VT(&right) = VT_CY; V_CY(&right).int64 = val2; \
5580 V_VT(&exp) = VT_##rvt; V_##rvt(&exp) = rval; \
5581 test_var_call2( __LINE__, pVarAnd, &left, &right, &exp )
5582
5583 /* Skip any type that is not defined or produces an error for every case */
5584 #define SKIPTESTAND(a) \
5585 if (a == VT_ERROR || a == VT_VARIANT || \
5586 a == VT_DISPATCH || a == VT_UNKNOWN || \
5587 a > VT_UINT || a == 15 /*not defined*/) \
5588 continue
5589
5590 static void test_VarAnd(void)
5591 {
5592 static const WCHAR szFalse[] = { '#','F','A','L','S','E','#','\0' };
5593 static const WCHAR szTrue[] = { '#','T','R','U','E','#','\0' };
5594 VARIANT left, right, exp, result;
5595 BSTR false_str, true_str;
5596 VARTYPE i;
5597 HRESULT hres;
5598
5599 true_str = SysAllocString(szTrue);
5600 false_str = SysAllocString(szFalse);
5601
5602 CHECKPTR(VarAnd);
5603
5604 /* Test all possible flag/vt combinations & the resulting vt type */
5605 for (i = 0; i < sizeof(ExtraFlags)/sizeof(ExtraFlags[0]); i++)
5606 {
5607 VARTYPE leftvt, rightvt, resvt;
5608
5609 for (leftvt = 0; leftvt <= VT_BSTR_BLOB; leftvt++)
5610 {
5611 SKIPTESTAND(leftvt);
5612
5613 /* Check if we need/have support for I8 and/or UI8 */
5614 if ((leftvt == VT_I8 || leftvt == VT_UI8) && !HAVE_OLEAUT32_I8)
5615 continue;
5616
5617 for (rightvt = 0; rightvt <= VT_BSTR_BLOB; rightvt++)
5618 {
5619 BOOL bFail = FALSE;
5620 SKIPTESTAND(rightvt);
5621
5622 /* Check if we need/have support for I8 and/or UI8 */
5623 if ((rightvt == VT_I8 || rightvt == VT_UI8) && !HAVE_OLEAUT32_I8)
5624 continue;
5625
5626 memset(&left, 0, sizeof(left));
5627 memset(&right, 0, sizeof(right));
5628 V_VT(&left) = leftvt | ExtraFlags[i];
5629 V_VT(&right) = rightvt | ExtraFlags[i];
5630 V_VT(&result) = VT_EMPTY;
5631 resvt = VT_EMPTY;
5632 if ((leftvt | ExtraFlags[i]) == VT_BSTR)
5633 V_BSTR(&left) = true_str;
5634 if ((rightvt | ExtraFlags[i]) == VT_BSTR)
5635 V_BSTR(&right) = true_str;
5636
5637 /* Native VarAnd always returns an error when using extra
5638 * flags or if the variant combination is I8 and INT.
5639 */
5640 if ((leftvt == VT_I8 && rightvt == VT_INT) ||
5641 (leftvt == VT_INT && rightvt == VT_I8) ||
5642 ExtraFlags[i] != 0)
5643 bFail = TRUE;
5644
5645 /* Determine return type */
5646 else if (leftvt == VT_I8 || rightvt == VT_I8)
5647 resvt = VT_I8;
5648 else if (leftvt == VT_I4 || rightvt == VT_I4 ||
5649 leftvt == VT_UINT || rightvt == VT_UINT ||
5650 leftvt == VT_INT || rightvt == VT_INT ||
5651 leftvt == VT_UINT || rightvt == VT_UINT ||
5652 leftvt == VT_R4 || rightvt == VT_R4 ||
5653 leftvt == VT_R8 || rightvt == VT_R8 ||
5654 leftvt == VT_CY || rightvt == VT_CY ||
5655 leftvt == VT_DATE || rightvt == VT_DATE ||
5656 leftvt == VT_I1 || rightvt == VT_I1 ||
5657 leftvt == VT_UI2 || rightvt == VT_UI2 ||
5658 leftvt == VT_UI4 || rightvt == VT_UI4 ||
5659 leftvt == VT_UI8 || rightvt == VT_UI8 ||
5660 leftvt == VT_DECIMAL || rightvt == VT_DECIMAL)
5661 resvt = VT_I4;
5662 else if (leftvt == VT_UI1 || rightvt == VT_UI1 ||
5663 leftvt == VT_I2 || rightvt == VT_I2 ||
5664 leftvt == VT_EMPTY || rightvt == VT_EMPTY)
5665 if ((leftvt == VT_NULL && rightvt == VT_UI1) ||
5666 (leftvt == VT_UI1 && rightvt == VT_NULL) ||
5667 (leftvt == VT_UI1 && rightvt == VT_UI1))
5668 resvt = VT_UI1;
5669 else
5670 resvt = VT_I2;
5671 else if (leftvt == VT_BOOL || rightvt == VT_BOOL ||
5672 (leftvt == VT_BSTR && rightvt == VT_BSTR))
5673 resvt = VT_BOOL;
5674 else if (leftvt == VT_NULL || rightvt == VT_NULL ||
5675 leftvt == VT_BSTR || rightvt == VT_BSTR)
5676 resvt = VT_NULL;
5677 else
5678 bFail = TRUE;
5679
5680 hres = pVarAnd(&left, &right, &result);
5681
5682 /* Check expected HRESULT and if result variant type is correct */
5683 if (bFail)
5684 ok (hres == DISP_E_BADVARTYPE || hres == DISP_E_TYPEMISMATCH,
5685 "VarAnd: %s|0x%X, %s|0x%X: got vt %s hr 0x%X\n",
5686 vtstr(leftvt), ExtraFlags[i], vtstr(rightvt), ExtraFlags[i],
5687 vtstr(V_VT(&result)), hres);
5688 else
5689 ok (hres == S_OK && resvt == V_VT(&result),
5690 "VarAnd: %s|0x%X, %s|0x%X: expected vt %s hr 0x%X, got vt %s hr 0x%X\n",
5691 vtstr(leftvt), ExtraFlags[i], vtstr(rightvt), ExtraFlags[i], vtstr(resvt),
5692 S_OK, vtstr(V_VT(&result)), hres);
5693 }
5694 }
5695 }
5696
5697 /*
5698 * Test returned values. Since we know the returned type is correct
5699 * and that we handle all combinations of invalid types, just check
5700 * that good type combinations produce the desired value.
5701 * FIXME: Test VT_DECIMAL
5702 */
5703 VARAND(EMPTY,0,EMPTY,0,I2,0);
5704 VARAND(EMPTY,1,EMPTY,0,I2,0);
5705 VARAND(EMPTY,1,EMPTY,1,I2,0);
5706 VARAND(EMPTY,0,NULL,0,I2,0);
5707 VARAND(EMPTY,1,NULL,0,I2,0);
5708 VARAND(EMPTY,1,NULL,1,I2,0);
5709 VARAND(EMPTY,0,I1,0,I4,0);
5710 VARAND(EMPTY,0,I1,1,I4,0);
5711 VARAND(EMPTY,1,I1,1,I4,0);
5712 VARAND(EMPTY,0,UI1,0,I2,0);
5713 VARAND(EMPTY,0,UI1,1,I2,0);
5714 VARAND(EMPTY,1,UI1,1,I2,0);
5715 VARAND(EMPTY,0,I2,0,I2,0);
5716 VARAND(EMPTY,0,I2,1,I2,0);
5717 VARAND(EMPTY,1,I2,1,I2,0);
5718 VARAND(EMPTY,0,UI2,0,I4,0);
5719 VARAND(EMPTY,0,UI2,1,I4,0);
5720 VARAND(EMPTY,1,UI2,1,I4,0);
5721 VARAND(EMPTY,0,I4,0,I4,0);
5722 VARAND(EMPTY,0,I4,1,I4,0);
5723 VARAND(EMPTY,1,I4,1,I4,0);
5724 VARAND(EMPTY,0,UI4,0,I4,0);
5725 VARAND(EMPTY,0,UI4,1,I4,0);
5726 VARAND(EMPTY,1,UI4,1,I4,0);
5727 if (HAVE_OLEAUT32_I8)
5728 {
5729 VARAND(EMPTY,0,I8,0,I8,0);
5730 VARAND(EMPTY,0,I8,1,I8,0);
5731 VARAND(EMPTY,1,I8,1,I8,0);
5732 VARAND(EMPTY,0,UI8,0,I4,0);
5733 VARAND(EMPTY,0,UI8,1,I4,0);
5734 VARAND(EMPTY,1,UI8,1,I4,0);
5735 }
5736 VARAND(EMPTY,0,INT,0,I4,0);
5737 VARAND(EMPTY,0,INT,1,I4,0);
5738 VARAND(EMPTY,1,INT,1,I4,0);
5739 VARAND(EMPTY,0,UINT,0,I4,0);
5740 VARAND(EMPTY,0,UINT,1,I4,0);
5741 VARAND(EMPTY,1,UINT,1,I4,0);
5742 VARAND(EMPTY,0,BOOL,0,I2,0);
5743 VARAND(EMPTY,0,BOOL,1,I2,0);
5744 VARAND(EMPTY,1,BOOL,1,I2,0);
5745 VARAND(EMPTY,0,R4,0,I4,0);
5746 VARAND(EMPTY,0,R4,1,I4,0);
5747 VARAND(EMPTY,1,R4,1,I4,0);
5748 VARAND(EMPTY,0,R8,0,I4,0);
5749 VARAND(EMPTY,0,R8,1,I4,0);
5750 VARAND(EMPTY,1,R8,1,I4,0);
5751 VARAND(EMPTY,0,BSTR,false_str,I2,0);
5752 VARAND(EMPTY,0,BSTR,true_str,I2,0);
5753 VARANDCY(EMPTY,0,10000,I4,0);
5754
5755 /* NULL OR 0 = NULL. NULL OR n = n */
5756 VARAND(NULL,0,NULL,0,NULL,0);
5757 VARAND(NULL,1,NULL,0,NULL,0);
5758 VARAND(NULL,0,I1,0,I4,0);
5759 VARAND(NULL,0,I1,1,NULL,0);
5760 VARAND(NULL,0,UI1,0,UI1,0);
5761 VARAND(NULL,0,UI1,1,NULL,0);
5762 VARAND(NULL,0,I2,0,I2,0);
5763 VARAND(NULL,0,I2,1,NULL,0);
5764 VARAND(NULL,0,UI2,0,I4,0);
5765 VARAND(NULL,0,UI2,1,NULL,0);
5766 VARAND(NULL,0,I4,0,I4,0);
5767 VARAND(NULL,0,I4,1,NULL,0);
5768 VARAND(NULL,0,UI4,0,I4,0);
5769 VARAND(NULL,0,UI4,1,NULL,0);
5770 if (HAVE_OLEAUT32_I8)
5771 {
5772 VARAND(NULL,0,I8,0,I8,0);
5773 VARAND(NULL,0,I8,1,NULL,0);
5774 VARAND(NULL,0,UI8,0,I4,0);
5775 VARAND(NULL,0,UI8,1,NULL,0);
5776 }
5777 VARAND(NULL,0,INT,0,I4,0);
5778 VARAND(NULL,0,INT,1,NULL,0);
5779 VARAND(NULL,0,UINT,0,I4,0);
5780 VARAND(NULL,0,UINT,1,NULL,0);
5781 VARAND(NULL,0,BOOL,0,BOOL,0);
5782 VARAND(NULL,0,BOOL,1,NULL,0);
5783 VARAND(NULL,0,R4,0,I4,0);
5784 VARAND(NULL,0,R4,1,NULL,0);
5785 VARAND(NULL,0,R8,0,I4,0);
5786 VARAND(NULL,0,R8,1,NULL,0);
5787 VARAND(NULL,0,BSTR,false_str,BOOL,0);
5788 VARAND(NULL,0,BSTR,true_str,NULL,VARIANT_FALSE);
5789 VARANDCY(NULL,0,10000,NULL,0);
5790 VARANDCY(NULL,0,0,I4,0);
5791 VARAND(BOOL,VARIANT_TRUE,BOOL,VARIANT_TRUE,BOOL,VARIANT_TRUE);
5792 VARAND(BOOL,VARIANT_TRUE,BOOL,VARIANT_FALSE,BOOL,VARIANT_FALSE);
5793 VARAND(BOOL,VARIANT_FALSE,BOOL,VARIANT_TRUE,BOOL,VARIANT_FALSE);
5794 VARAND(BOOL,VARIANT_FALSE,BOOL,VARIANT_FALSE,BOOL,VARIANT_FALSE);
5795
5796 /* Assume x,y & y,x are the same from now on to reduce the number of tests */
5797 VARAND(BOOL,VARIANT_TRUE,I1,-1,I4,-1);
5798 VARAND(BOOL,VARIANT_TRUE,I1,0,I4,0);
5799 VARAND(BOOL,VARIANT_FALSE,I1,0,I4,0);
5800 VARAND(BOOL,VARIANT_TRUE,UI1,255,I2,255);
5801 VARAND(BOOL,VARIANT_TRUE,UI1,0,I2,0);
5802 VARAND(BOOL,VARIANT_FALSE,UI1,0,I2,0);
5803 VARAND(BOOL,VARIANT_TRUE,I2,-1,I2,-1);
5804 VARAND(BOOL,VARIANT_TRUE,I2,0,I2,0);
5805 VARAND(BOOL,VARIANT_FALSE,I2,0,I2,0);
5806 VARAND(BOOL,VARIANT_TRUE,UI2,65535,I4,65535);
5807 VARAND(BOOL,VARIANT_TRUE,UI2,0,I4,0);
5808 VARAND(BOOL,VARIANT_FALSE,UI2,0,I4,0);
5809 VARAND(BOOL,VARIANT_TRUE,I4,-1,I4,-1);
5810 VARAND(BOOL,VARIANT_TRUE,I4,0,I4,0);
5811 VARAND(BOOL,VARIANT_FALSE,I4,0,I4,0);
5812 VARAND(BOOL,VARIANT_TRUE,UI4,0xffffffff,I4,-1);
5813 VARAND(BOOL,VARIANT_TRUE,UI4,0,I4,0);
5814 VARAND(BOOL,VARIANT_FALSE,UI4,0,I4,0);
5815 VARAND(BOOL,VARIANT_TRUE,R4,-1,I4,-1);
5816 VARAND(BOOL,VARIANT_TRUE,R4,0,I4,0);
5817 VARAND(BOOL,VARIANT_FALSE,R4,0,I4,0);
5818 VARAND(BOOL,VARIANT_TRUE,R8,-1,I4,-1);
5819 VARAND(BOOL,VARIANT_TRUE,R8,0,I4,0);
5820 VARAND(BOOL,VARIANT_FALSE,R8,0,I4,0);
5821 VARAND(BOOL,VARIANT_TRUE,DATE,-1,I4,-1);
5822 VARAND(BOOL,VARIANT_TRUE,DATE,0,I4,0);
5823 VARAND(BOOL,VARIANT_FALSE,DATE,0,I4,0);
5824 if (HAVE_OLEAUT32_I8)
5825 {
5826 VARAND(BOOL,VARIANT_TRUE,I8,-1,I8,-1);
5827 VARAND(BOOL,VARIANT_TRUE,I8,0,I8,0);
5828 VARAND(BOOL,VARIANT_FALSE,I8,0,I8,0);
5829 VARAND(BOOL,VARIANT_TRUE,UI8,0,I4,0);
5830 VARAND(BOOL,VARIANT_FALSE,UI8,0,I4,0);
5831 }
5832 VARAND(BOOL,VARIANT_TRUE,INT,-1,I4,-1);
5833 VARAND(BOOL,VARIANT_TRUE,INT,0,I4,0);
5834 VARAND(BOOL,VARIANT_FALSE,INT,0,I4,0);
5835 VARAND(BOOL,VARIANT_TRUE,UINT,0xffffffff,I4,-1);
5836 VARAND(BOOL,VARIANT_TRUE,UINT,0,I4,0);
5837 VARAND(BOOL,VARIANT_FALSE,UINT,0,I4,0);
5838 VARAND(BOOL,VARIANT_FALSE,BSTR,false_str,BOOL,VARIANT_FALSE);
5839 VARAND(BOOL,VARIANT_TRUE,BSTR,false_str,BOOL,VARIANT_FALSE);
5840 VARAND(BOOL,VARIANT_FALSE,BSTR,true_str,BOOL,VARIANT_FALSE);
5841 VARAND(BOOL,VARIANT_TRUE,BSTR,true_str,BOOL,VARIANT_TRUE);
5842 VARANDCY(BOOL,VARIANT_TRUE,10000,I4,1);
5843 VARANDCY(BOOL,VARIANT_TRUE,0,I4,0);
5844 VARANDCY(BOOL,VARIANT_FALSE,0,I4,0);
5845 VARAND(I1,-1,I1,-1,I4,-1);
5846 VARAND(I1,-1,I1,0,I4,0);
5847 VARAND(I1,0,I1,0,I4,0);
5848 VARAND(I1,-1,UI1,255,I4,255);
5849 VARAND(I1,-1,UI1,0,I4,0);
5850 VARAND(I1,0,UI1,0,I4,0);
5851 VARAND(I1,-1,I2,-1,I4,-1);
5852 VARAND(I1,-1,I2,0,I4,0);
5853 VARAND(I1,0,I2,0,I4,0);
5854 VARAND(I1,-1,UI2,65535,I4,65535);
5855 VARAND(I1,-1,UI2,0,I4,0);
5856 VARAND(I1,0,UI2,0,I4,0);
5857 VARAND(I1,-1,I4,-1,I4,-1);
5858 VARAND(I1,-1,I4,0,I4,0);
5859 VARAND(I1,0,I4,0,I4,0);
5860 VARAND(I1,-1,UI4,0xffffffff,I4,-1);
5861 VARAND(I1,-1,UI4,0,I4,0);
5862 VARAND(I1,0,UI4,0,I4,0);
5863 VARAND(I1,-1,R4,-1,I4,-1);
5864 VARAND(I1,-1,R4,0,I4,0);
5865 VARAND(I1,0,R4,0,I4,0);
5866 VARAND(I1,-1,R8,-1,I4,-1);
5867 VARAND(I1,-1,R8,0,I4,0);
5868 VARAND(I1,0,R8,0,I4,0);
5869 VARAND(I1,-1,DATE,-1,I4,-1);
5870 VARAND(I1,-1,DATE,0,I4,0);
5871 VARAND(I1,0,DATE,0,I4,0);
5872 if (HAVE_OLEAUT32_I8)
5873 {
5874 VARAND(I1,-1,I8,-1,I8,-1);
5875 VARAND(I1,-1,I8,0,I8,0);
5876 VARAND(I1,0,I8,0,I8,0);
5877 VARAND(I1,-1,UI8,0,I4,0);
5878 VARAND(I1,0,UI8,0,I4,0);
5879 }
5880 VARAND(I1,-1,INT,-1,I4,-1);
5881 VARAND(I1,-1,INT,0,I4,0);
5882 VARAND(I1,0,INT,0,I4,0);
5883 VARAND(I1,-1,UINT,0xffffffff,I4,-1);
5884 VARAND(I1,-1,UINT,0,I4,0);
5885 VARAND(I1,0,UINT,0,I4,0);
5886 VARAND(I1,0,BSTR,false_str,I4,0);
5887 VARAND(I1,-1,BSTR,false_str,I4,0);
5888 VARAND(I1,0,BSTR,true_str,I4,0);
5889 VARAND(I1,-1,BSTR,true_str,I4,-1);
5890 VARANDCY(I1,-1,10000,I4,1);
5891 VARANDCY(I1,-1,0,I4,0);
5892 VARANDCY(I1,0,0,I4,0);
5893
5894 VARAND(UI1,255,UI1,255,UI1,255);
5895 VARAND(UI1,255,UI1,0,UI1,0);
5896 VARAND(UI1,0,UI1,0,UI1,0);
5897 VARAND(UI1,255,I2,-1,I2,255);
5898 VARAND(UI1,255,I2,0,I2,0);
5899 VARAND(UI1,0,I2,0,I2,0);
5900 VARAND(UI1,255,UI2,65535,I4,255);
5901 VARAND(UI1,255,UI2,0,I4,0);
5902 VARAND(UI1,0,UI2,0,I4,0);
5903 VARAND(UI1,255,I4,-1,I4,255);
5904 VARAND(UI1,255,I4,0,I4,0);
5905 VARAND(UI1,0,I4,0,I4,0);
5906 VARAND(UI1,255,UI4,0xffffffff,I4,255);
5907 VARAND(UI1,255,UI4,0,I4,0);
5908 VARAND(UI1,0,UI4,0,I4,0);
5909 VARAND(UI1,255,R4,-1,I4,255);
5910 VARAND(UI1,255,R4,0,I4,0);
5911 VARAND(UI1,0,R4,0,I4,0);
5912 VARAND(UI1,255,R8,-1,I4,255);
5913 VARAND(UI1,255,R8,0,I4,0);
5914 VARAND(UI1,0,R8,0,I4,0);
5915 VARAND(UI1,255,DATE,-1,I4,255);
5916 VARAND(UI1,255,DATE,0,I4,0);
5917 VARAND(UI1,0,DATE,0,I4,0);
5918 if (HAVE_OLEAUT32_I8)
5919 {
5920 VARAND(UI1,255,I8,-1,I8,255);
5921 VARAND(UI1,255,I8,0,I8,0);
5922 VARAND(UI1,0,I8,0,I8,0);
5923 VARAND(UI1,255,UI8,0,I4,0);
5924 VARAND(UI1,0,UI8,0,I4,0);
5925 }
5926 VARAND(UI1,255,INT,-1,I4,255);
5927 VARAND(UI1,255,INT,0,I4,0);
5928 VARAND(UI1,0,INT,0,I4,0);
5929 VARAND(UI1,255,UINT,0xffffffff,I4,255);
5930 VARAND(UI1,255,UINT,0,I4,0);
5931 VARAND(UI1,0,UINT,0,I4,0);
5932 VARAND(UI1,0,BSTR,false_str,I2,0);
5933 VARAND(UI1,255,BSTR,false_str,I2,0);
5934 VARAND(UI1,0,BSTR,true_str,I2,0);
5935 VARAND(UI1,255,BSTR,true_str,I2,255);
5936 VARANDCY(UI1,255,10000,I4,1);
5937 VARANDCY(UI1,255,0,I4,0);
5938 VARANDCY(UI1,0,0,I4,0);
5939
5940 VARAND(I2,-1,I2,-1,I2,-1);
5941 VARAND(I2,-1,I2,0,I2,0);
5942 VARAND(I2,0,I2,0,I2,0);
5943 VARAND(I2,-1,UI2,65535,I4,65535);
5944 VARAND(I2,-1,UI2,0,I4,0);
5945 VARAND(I2,0,UI2,0,I4,0);
5946 VARAND(I2,-1,I4,-1,I4,-1);
5947 VARAND(I2,-1,I4,0,I4,0);
5948 VARAND(I2,0,I4,0,I4,0);
5949 VARAND(I2,-1,UI4,0xffffffff,I4,-1);
5950 VARAND(I2,-1,UI4,0,I4,0);
5951 VARAND(I2,0,UI4,0,I4,0);
5952 VARAND(I2,-1,R4,-1,I4,-1);
5953 VARAND(I2,-1,R4,0,I4,0);
5954 VARAND(I2,0,R4,0,I4,0);
5955 VARAND(I2,-1,R8,-1,I4,-1);
5956 VARAND(I2,-1,R8,0,I4,0);
5957 VARAND(I2,0,R8,0,I4,0);
5958 VARAND(I2,-1,DATE,-1,I4,-1);
5959 VARAND(I2,-1,DATE,0,I4,0);
5960 VARAND(I2,0,DATE,0,I4,0);
5961 if (HAVE_OLEAUT32_I8)
5962 {
5963 VARAND(I2,-1,I8,-1,I8,-1);
5964 VARAND(I2,-1,I8,0,I8,0);
5965 VARAND(I2,0,I8,0,I8,0);
5966 VARAND(I2,-1,UI8,0,I4,0);
5967 VARAND(I2,0,UI8,0,I4,0);
5968 }
5969 VARAND(I2,-1,INT,-1,I4,-1);
5970 VARAND(I2,-1,INT,0,I4,0);
5971 VARAND(I2,0,INT,0,I4,0);
5972 VARAND(I2,-1,UINT,0xffffffff,I4,-1);
5973 VARAND(I2,-1,UINT,0,I4,0);
5974 VARAND(I2,0,UINT,0,I4,0);
5975 VARAND(I2,0,BSTR,false_str,I2,0);
5976 VARAND(I2,-1,BSTR,false_str,I2,0);
5977 VARAND(I2,0,BSTR,true_str,I2,0);
5978 VARAND(I2,-1,BSTR,true_str,I2,-1);
5979 VARANDCY(I2,-1,10000,I4,1);
5980 VARANDCY(I2,-1,0,I4,0);
5981 VARANDCY(I2,0,0,I4,0);
5982
5983 VARAND(UI2,65535,UI2,65535,I4,65535);
5984 VARAND(UI2,65535,UI2,0,I4,0);
5985 VARAND(UI2,0,UI2,0,I4,0);
5986 VARAND(UI2,65535,I4,-1,I4,65535);
5987 VARAND(UI2,65535,I4,0,I4,0);
5988 VARAND(UI2,0,I4,0,I4,0);
5989 VARAND(UI2,65535,UI4,0xffffffff,I4,65535);
5990 VARAND(UI2,65535,UI4,0,I4,0);
5991 VARAND(UI2,0,UI4,0,I4,0);
5992 VARAND(UI2,65535,R4,-1,I4,65535);
5993 VARAND(UI2,65535,R4,0,I4,0);
5994 VARAND(UI2,0,R4,0,I4,0);
5995 VARAND(UI2,65535,R8,-1,I4,65535);
5996 VARAND(UI2,65535,R8,0,I4,0);
5997 VARAND(UI2,0,R8,0,I4,0);
5998 VARAND(UI2,65535,DATE,-1,I4,65535);
5999 VARAND(UI2,65535,DATE,0,I4,0);
6000 VARAND(UI2,0,DATE,0,I4,0);
6001 if (HAVE_OLEAUT32_I8)
6002 {
6003 VARAND(UI2,65535,I8,-1,I8,65535);
6004 VARAND(UI2,65535,I8,0,I8,0);
6005 VARAND(UI2,0,I8,0,I8,0);
6006 VARAND(UI2,65535,UI8,0,I4,0);
6007 VARAND(UI2,0,UI8,0,I4,0);
6008 }
6009 VARAND(UI2,65535,INT,-1,I4,65535);
6010 VARAND(UI2,65535,INT,0,I4,0);
6011 VARAND(UI2,0,INT,0,I4,0);
6012 VARAND(UI2,65535,UINT,0xffffffff,I4,65535);
6013 VARAND(UI2,65535,UINT,0,I4,0);
6014 VARAND(UI2,0,UINT,0,I4,0);
6015 VARAND(UI2,0,BSTR,false_str,I4,0);
6016 VARAND(UI2,65535,BSTR,false_str,I4,0);
6017 VARAND(UI2,0,BSTR,true_str,I4,0);
6018 VARAND(UI2,65535,BSTR,true_str,I4,65535);
6019 VARANDCY(UI2,65535,10000,I4,1);
6020 VARANDCY(UI2,65535,0,I4,0);
6021 VARANDCY(UI2,0,0,I4,0);
6022
6023 VARAND(I4,-1,I4,-1,I4,-1);
6024 VARAND(I4,-1,I4,0,I4,0);
6025 VARAND(I4,0,I4,0,I4,0);
6026 VARAND(I4,-1,UI4,0xffffffff,I4,-1);
6027 VARAND(I4,-1,UI4,0,I4,0);
6028 VARAND(I4,0,UI4,0,I4,0);
6029 VARAND(I4,-1,R4,-1,I4,-1);
6030 VARAND(I4,-1,R4,0,I4,0);
6031 VARAND(I4,0,R4,0,I4,0);
6032 VARAND(I4,-1,R8,-1,I4,-1);
6033 VARAND(I4,-1,R8,0,I4,0);
6034 VARAND(I4,0,R8,0,I4,0);
6035 VARAND(I4,-1,DATE,-1,I4,-1);
6036 VARAND(I4,-1,DATE,0,I4,0);
6037 VARAND(I4,0,DATE,0,I4,0);
6038 if (HAVE_OLEAUT32_I8)
6039 {
6040 VARAND(I4,-1,I8,-1,I8,-1);
6041 VARAND(I4,-1,I8,0,I8,0);
6042 VARAND(I4,0,I8,0,I8,0);
6043 VARAND(I4,-1,UI8,0,I4,0);
6044 VARAND(I4,0,UI8,0,I4,0);
6045 }
6046 VARAND(I4,-1,INT,-1,I4,-1);
6047 VARAND(I4,-1,INT,0,I4,0);
6048 VARAND(I4,0,INT,0,I4,0);
6049 VARAND(I4,-1,UINT,0xffffffff,I4,-1);
6050 VARAND(I4,-1,UINT,0,I4,0);
6051 VARAND(I4,0,UINT,0,I4,0);
6052 VARAND(I4,0,BSTR,false_str,I4,0);
6053 VARAND(I4,-1,BSTR,false_str,I4,0);
6054 VARAND(I4,0,BSTR,true_str,I4,0);
6055 VARAND(I4,-1,BSTR,true_str,I4,-1);
6056 VARANDCY(I4,-1,10000,I4,1);
6057 VARANDCY(I4,-1,0,I4,0);
6058 VARANDCY(I4,0,0,I4,0);
6059
6060 VARAND(UI4,0xffffffff,UI4,0xffffffff,I4,-1);
6061 VARAND(UI4,0xffffffff,UI4,0,I4,0);
6062 VARAND(UI4,0,UI4,0,I4,0);
6063 VARAND(UI4,0xffffffff,R4,-1,I4,-1);
6064 VARAND(UI4,0xffffffff,R4,0,I4,0);
6065 VARAND(UI4,0,R4,0,I4,0);
6066 VARAND(UI4,0xffffffff,R8,-1,I4,-1);
6067 VARAND(UI4,0xffffffff,R8,0,I4,0);
6068 VARAND(UI4,0,R8,0,I4,0);
6069 VARAND(UI4,0xffffffff,DATE,-1,I4,-1);
6070 VARAND(UI4,0xffffffff,DATE,0,I4,0);
6071 VARAND(UI4,0,DATE,0,I4,0);
6072 if (HAVE_OLEAUT32_I8)
6073 {
6074 VARAND(UI4,0xffffffff,I8,0,I8,0);
6075 VARAND(UI4,0,I8,0,I8,0);
6076 VARAND(UI4,0xffffffff,UI8,0,I4,0);
6077 VARAND(UI4,0,UI8,0,I4,0);
6078 }
6079 VARAND(UI4,0xffffffff,INT,-1,I4,-1);
6080 VARAND(UI4,0xffffffff,INT,0,I4,0);
6081 VARAND(UI4,0,INT,0,I4,0);
6082 VARAND(UI4,0xffffffff,UINT,0xffffffff,I4,-1);
6083 VARAND(UI4,0xffffffff,UINT,0,I4,0);
6084 VARAND(UI4,0,UINT,0,I4,0);
6085 VARAND(UI4,0,BSTR,false_str,I4,0);
6086 VARAND(UI4,0xffffffff,BSTR,false_str,I4,0);
6087 VARAND(UI4,0,BSTR,true_str,I4,0);
6088 VARAND(UI4,0xffffffff,BSTR,true_str,I4,-1);
6089 VARANDCY(UI4,0xffffffff,10000,I4,1);
6090 VARANDCY(UI4,0xffffffff,0,I4,0);
6091 VARANDCY(UI4,0,0,I4,0);
6092
6093 VARAND(R4,-1,R4,-1,I4,-1);
6094 VARAND(R4,-1,R4,0,I4,0);
6095 VARAND(R4,0,R4,0,I4,0);
6096 VARAND(R4,-1,R8,-1,I4,-1);
6097 VARAND(R4,-1,R8,0,I4,0);
6098 VARAND(R4,0,R8,0,I4,0);
6099 VARAND(R4,-1,DATE,-1,I4,-1);
6100 VARAND(R4,-1,DATE,0,I4,0);
6101 VARAND(R4,0,DATE,0,I4,0);
6102 if (HAVE_OLEAUT32_I8)
6103 {
6104 VARAND(R4,-1,I8,-1,I8,-1);
6105 VARAND(R4,-1,I8,0,I8,0);
6106 VARAND(R4,0,I8,0,I8,0);
6107 VARAND(R4,-1,UI8,0,I4,0);
6108 VARAND(R4,0,UI8,0,I4,0);
6109 }
6110 VARAND(R4,-1,INT,-1,I4,-1);
6111 VARAND(R4,-1,INT,0,I4,0);
6112 VARAND(R4,0,INT,0,I4,0);
6113 VARAND(R4,-1,UINT,0xffffffff,I4,-1);
6114 VARAND(R4,-1,UINT,0,I4,0);
6115 VARAND(R4,0,UINT,0,I4,0);
6116 VARAND(R4,0,BSTR,false_str,I4,0);
6117 VARAND(R4,-1,BSTR,false_str,I4,0);
6118 VARAND(R4,0,BSTR,true_str,I4,0);
6119 VARAND(R4,-1,BSTR,true_str,I4,-1);
6120 VARANDCY(R4,-1,10000,I4,1);
6121 VARANDCY(R4,-1,0,I4,0);
6122 VARANDCY(R4,0,0,I4,0);
6123
6124 VARAND(R8,-1,R8,-1,I4,-1);
6125 VARAND(R8,-1,R8,0,I4,0);
6126 VARAND(R8,0,R8,0,I4,0);
6127 VARAND(R8,-1,DATE,-1,I4,-1);
6128 VARAND(R8,-1,DATE,0,I4,0);
6129 VARAND(R8,0,DATE,0,I4,0);
6130 if (HAVE_OLEAUT32_I8)
6131 {
6132 VARAND(R8,-1,I8,-1,I8,-1);
6133 VARAND(R8,-1,I8,0,I8,0);
6134 VARAND(R8,0,I8,0,I8,0);
6135 VARAND(R8,-1,UI8,0,I4,0);
6136 VARAND(R8,0,UI8,0,I4,0);
6137 }
6138 VARAND(R8,-1,INT,-1,I4,-1);
6139 VARAND(R8,-1,INT,0,I4,0);
6140 VARAND(R8,0,INT,0,I4,0);
6141 VARAND(R8,-1,UINT,0xffffffff,I4,-1);
6142 VARAND(R8,-1,UINT,0,I4,0);
6143 VARAND(R8,0,UINT,0,I4,0);
6144 VARAND(R8,0,BSTR,false_str,I4,0);
6145 VARAND(R8,-1,BSTR,false_str,I4,0);
6146 VARAND(R8,0,BSTR,true_str,I4,0);
6147 VARAND(R8,-1,BSTR,true_str,I4,-1);
6148 VARANDCY(R8,-1,10000,I4,1);
6149 VARANDCY(R8,-1,0,I4,0);
6150 VARANDCY(R8,0,0,I4,0);
6151
6152 VARAND(DATE,-1,DATE,-1,I4,-1);
6153 VARAND(DATE,-1,DATE,0,I4,0);
6154 VARAND(DATE,0,DATE,0,I4,0);
6155 if (HAVE_OLEAUT32_I8)
6156 {
6157 VARAND(DATE,-1,I8,-1,I8,-1);
6158 VARAND(DATE,-1,I8,0,I8,0);
6159 VARAND(DATE,0,I8,0,I8,0);
6160 VARAND(DATE,-1,UI8,0,I4,0);
6161 VARAND(DATE,0,UI8,0,I4,0);
6162 }
6163 VARAND(DATE,-1,INT,-1,I4,-1);
6164 VARAND(DATE,-1,INT,0,I4,0);
6165 VARAND(DATE,0,INT,0,I4,0);
6166 VARAND(DATE,-1,UINT,0xffffffff,I4,-1);
6167 VARAND(DATE,-1,UINT,0,I4,0);
6168 VARAND(DATE,0,UINT,0,I4,0);
6169 VARAND(DATE,0,BSTR,false_str,I4,0);
6170 VARAND(DATE,-1,BSTR,false_str,I4,0);
6171 VARAND(DATE,0,BSTR,true_str,I4,0);
6172 VARAND(DATE,-1,BSTR,true_str,I4,-1);
6173 VARANDCY(DATE,-1,10000,I4,1);
6174 VARANDCY(DATE,-1,0,I4,0);
6175 VARANDCY(DATE,0,0,I4,0);
6176
6177 if (HAVE_OLEAUT32_I8)
6178 {
6179 VARAND(I8,-1,I8,-1,I8,-1);
6180 VARAND(I8,-1,I8,0,I8,0);
6181 VARAND(I8,0,I8,0,I8,0);
6182 VARAND(I8,-1,UI8,0,I8,0);
6183 VARAND(I8,0,UI8,0,I8,0);
6184 VARAND(I8,-1,UINT,0,I8,0);
6185 VARAND(I8,0,UINT,0,I8,0);
6186 VARAND(I8,0,BSTR,false_str,I8,0);
6187 VARAND(I8,-1,BSTR,false_str,I8,0);
6188 VARAND(I8,0,BSTR,true_str,I8,0);
6189 VARAND(I8,-1,BSTR,true_str,I8,-1);
6190 VARANDCY(I8,-1,10000,I8,1);
6191 VARANDCY(I8,-1,0,I8,0);
6192 VARANDCY(I8,0,0,I8,0);
6193
6194 VARAND(UI8,0xffff,UI8,0xffff,I4,0xffff);
6195 VARAND(UI8,0xffff,UI8,0,I4,0);
6196 VARAND(UI8,0,UI8,0,I4,0);
6197 VARAND(UI8,0xffff,INT,-1,I4,65535);
6198 VARAND(UI8,0xffff,INT,0,I4,0);
6199 VARAND(UI8,0,INT,0,I4,0);
6200 VARAND(UI8,0xffff,UINT,0xffff,I4,0xffff);
6201 VARAND(UI8,0xffff,UINT,0,I4,0);
6202 VARAND(UI8,0,UINT,0,I4,0);
6203 VARAND(UI8,0,BSTR,false_str,I4,0);
6204 VARAND(UI8,0xffff,BSTR,false_str,I4,0);
6205 VARAND(UI8,0,BSTR,true_str,I4,0);
6206 VARAND(UI8,0xffff,BSTR,true_str,I4,65535);
6207 VARANDCY(UI8,0xffff,10000,I4,1);
6208 VARANDCY(UI8,0xffff,0,I4,0);
6209 VARANDCY(UI8,0,0,I4,0);
6210 }
6211
6212 VARAND(INT,-1,INT,-1,I4,-1);
6213 VARAND(INT,-1,INT,0,I4,0);
6214 VARAND(INT,0,INT,0,I4,0);
6215 VARAND(INT,-1,UINT,0xffff,I4,65535);
6216 VARAND(INT,-1,UINT,0,I4,0);
6217 VARAND(INT,0,UINT,0,I4,0);
6218 VARAND(INT,0,BSTR,false_str,I4,0);
6219 VARAND(INT,-1,BSTR,false_str,I4,0);
6220 VARAND(INT,0,BSTR,true_str,I4,0);
6221 VARAND(INT,-1,BSTR,true_str,I4,-1);
6222 VARANDCY(INT,-1,10000,I4,1);
6223 VARANDCY(INT,-1,0,I4,0);
6224 VARANDCY(INT,0,0,I4,0);
6225
6226 VARAND(UINT,0xffff,UINT,0xffff,I4,0xffff);
6227 VARAND(UINT,0xffff,UINT,0,I4,0);
6228 VARAND(UINT,0,UINT,0,I4,0);
6229 VARAND(UINT,0,BSTR,false_str,I4,0);
6230 VARAND(UINT,0xffff,BSTR, false_str,I4,0);
6231 VARAND(UINT,0,BSTR,true_str,I4,0);
6232 VARAND(UINT,0xffff,BSTR,true_str,I4,65535);
6233 VARANDCY(UINT,0xffff,10000,I4,1);
6234 VARANDCY(UINT,0xffff,0,I4,0);
6235 VARANDCY(UINT,0,0,I4,0);
6236
6237 VARAND(BSTR,false_str,BSTR,false_str,BOOL,0);
6238 VARAND(BSTR,true_str,BSTR,false_str,BOOL,VARIANT_FALSE);
6239 VARAND(BSTR,true_str,BSTR,true_str,BOOL,VARIANT_TRUE);
6240 VARANDCY(BSTR,true_str,10000,I4,1);
6241 VARANDCY(BSTR,false_str,10000,I4,0);
6242
6243 SysFreeString(true_str);
6244 SysFreeString(false_str);
6245 }
6246
6247 static HRESULT (WINAPI *pVarCmp)(LPVARIANT,LPVARIANT,LCID,ULONG);
6248
6249 static void test_cmp( int line, LCID lcid, UINT flags, VARIANT *left, VARIANT *right, HRESULT result )
6250 {
6251 HRESULT hres;
6252
6253 hres = pVarCmp(left,right,lcid,flags);
6254 ok_(__FILE__,line)(hres == result, "VarCmp(%s,%s): expected 0x%x, got hres=0x%x\n",
6255 variantstr(left), variantstr(right), result, hres );
6256 }
6257 static void test_cmpex( int line, LCID lcid, VARIANT *left, VARIANT *right,
6258 HRESULT res1, HRESULT res2, HRESULT res3, HRESULT res4 )
6259 {
6260 test_cmp( line, lcid, 0, left, right, res1 );
6261 V_VT(left) |= VT_RESERVED;
6262 test_cmp( line, lcid, 0, left, right, res2 );
6263 V_VT(left) &= ~VT_RESERVED;
6264 V_VT(right) |= VT_RESERVED;
6265 test_cmp( line, lcid, 0, left, right, res3 );
6266 V_VT(left) |= VT_RESERVED;
6267 test_cmp( line, lcid, 0, left, right, res4 );
6268 ok_(__FILE__,line)(V_VT(left) & V_VT(right) & VT_RESERVED, "VT_RESERVED filtered out\n");
6269 }
6270
6271 /* ERROR from wingdi.h is interfering here */
6272 #undef ERROR
6273 #define _VARCMP(vt1,val1,vtfl1,vt2,val2,vtfl2,lcid,flags,result) \
6274 V_##vt1(&left) = val1; V_VT(&left) = VT_##vt1 | vtfl1; \
6275 V_##vt2(&right) = val2; V_VT(&right) = VT_##vt2 | vtfl2; \
6276 test_cmp( __LINE__, lcid, flags, &left, &right, result )
6277 #define VARCMPEX(vt1,val1,vt2,val2,res1,res2,res3,res4) \
6278 V_##vt1(&left) = val1; V_VT(&left) = VT_##vt1; \
6279 V_##vt2(&right) = val2; V_VT(&right) = VT_##vt2; \
6280 test_cmpex( __LINE__, lcid, &left, &right, res1, res2, res3, res4 )
6281 #define VARCMP(vt1,val1,vt2,val2,result) \
6282 VARCMPEX(vt1,val1,vt2,val2,result,result,result,result)
6283 /* The above macros do not work for VT_NULL as NULL gets expanded first */
6284 #define V_NULL_ V_NULL
6285 #define VT_NULL_ VT_NULL
6286
6287 static void test_VarCmp(void)
6288 {
6289 VARIANT left, right;
6290 VARTYPE i;
6291 LCID lcid;
6292 HRESULT hres;
6293 DECIMAL dec;
6294 static const WCHAR szhuh[] = {'h','u','h','?','\0'};
6295 static const WCHAR sz2cents[] = {'2','c','e','n','t','s','\0'};
6296 static const WCHAR szempty[] = {'\0'};
6297 static const WCHAR sz0[] = {'0','\0'};
6298 static const WCHAR sz1[] = {'1','\0'};
6299 static const WCHAR sz7[] = {'7','\0'};
6300 static const WCHAR sz42[] = {'4','2','\0'};
6301 static const WCHAR sz1neg[] = {'-','1','\0'};
6302 static const WCHAR sz666neg[] = {'-','6','6','6','\0'};
6303 static const WCHAR sz1few[] = {'1','.','0','0','0','0','0','0','0','1','\0'};
6304 BSTR bstrhuh, bstrempty, bstr0, bstr1, bstr7, bstr42, bstr1neg, bstr666neg;
6305 BSTR bstr2cents, bstr1few;
6306
6307 CHECKPTR(VarCmp);
6308
6309 lcid = MAKELCID(MAKELANGID(LANG_ENGLISH,SUBLANG_ENGLISH_US),SORT_DEFAULT);
6310 bstrempty = SysAllocString(szempty);
6311 bstrhuh = SysAllocString(szhuh);
6312 bstr2cents = SysAllocString(sz2cents);
6313 bstr0 = SysAllocString(sz0);
6314 bstr1 = SysAllocString(sz1);
6315 bstr7 = SysAllocString(sz7);
6316 bstr42 = SysAllocString(sz42);
6317 bstr1neg = SysAllocString(sz1neg);
6318 bstr666neg = SysAllocString(sz666neg);
6319 bstr1few = SysAllocString(sz1few);
6320
6321 /* Test all possible flag/vt combinations & the resulting vt type */
6322 for (i = 0; i < sizeof(ExtraFlags)/sizeof(ExtraFlags[0]); i++)
6323 {
6324 VARTYPE leftvt, rightvt;
6325
6326 for (leftvt = 0; leftvt <= VT_BSTR_BLOB; leftvt++)
6327 {
6328
6329 SKIPTESTS(leftvt);
6330
6331 for (rightvt = 0; rightvt <= VT_BSTR_BLOB; rightvt++)
6332 {
6333 BOOL bFail = FALSE;
6334 HRESULT expect = VARCMP_EQ;
6335
6336 SKIPTESTS(rightvt);
6337
6338 memset(&left, 0, sizeof(left));
6339 memset(&right, 0, sizeof(right));
6340 V_VT(&left) = leftvt | ExtraFlags[i];
6341 if (leftvt == VT_BSTR) {
6342 V_BSTR(&left) = bstr1neg;
6343 if (ExtraFlags[i] & VT_RESERVED)
6344 expect = VARCMP_LT;
6345 else
6346 expect = VARCMP_GT;
6347 }
6348 V_VT(&right) = rightvt | ExtraFlags[i];
6349 if (rightvt == VT_BSTR) {
6350 V_BSTR(&right) = bstr1neg;
6351 if (ExtraFlags[i] & VT_RESERVED)
6352 expect = VARCMP_GT;
6353 else
6354 expect = VARCMP_LT;
6355 }
6356
6357 /* Don't ask me why but native VarCmp cannot handle:
6358 VT_I1, VT_UI2, VT_UI4, VT_UINT and VT_UI8.
6359 VT_INT is only supported as left variant. Go figure.
6360 Tested with DCOM98, Win2k, WinXP */
6361 if (ExtraFlags[i] & VT_ARRAY || ExtraFlags[i] & VT_BYREF ||
6362 !IsValidVariantClearVT(leftvt, ExtraFlags[i] & ~VT_RESERVED) ||
6363 !IsValidVariantClearVT(rightvt, ExtraFlags[i] & ~VT_RESERVED) ||
6364 leftvt == VT_CLSID || rightvt == VT_CLSID ||
6365 leftvt == VT_DISPATCH || rightvt == VT_DISPATCH ||
6366 leftvt == VT_ERROR || rightvt == VT_ERROR ||
6367 leftvt == VT_RECORD || rightvt == VT_RECORD ||
6368 leftvt == VT_UNKNOWN || rightvt == VT_UNKNOWN ||
6369 leftvt == VT_VARIANT || rightvt == VT_VARIANT ||
6370 leftvt == VT_I1 || rightvt == VT_I1 ||
6371 leftvt == VT_UI2 || rightvt == VT_UI2 ||
6372 leftvt == VT_UI4 || rightvt == VT_UI4 ||
6373 leftvt == VT_UI8 || rightvt == VT_UI8 ||
6374 rightvt == VT_INT ||
6375 leftvt == VT_UINT || rightvt == VT_UINT) {
6376 bFail = TRUE;
6377 }
6378
6379 if (leftvt == VT_ERROR && rightvt == VT_ERROR &&
6380 !(ExtraFlags[i] & ~VT_RESERVED)) {
6381 expect = VARCMP_EQ;
6382 bFail = FALSE;
6383 } else if (leftvt == VT_NULL || rightvt == VT_NULL)
6384 expect = VARCMP_NULL;
6385 else if (leftvt == VT_BSTR && rightvt == VT_BSTR)
6386 expect = VARCMP_EQ;
6387 else if (leftvt == VT_BSTR && rightvt == VT_EMPTY)
6388 expect = VARCMP_GT;
6389 else if (leftvt == VT_EMPTY && rightvt == VT_BSTR)
6390 expect = VARCMP_LT;
6391
6392 hres = pVarCmp(&left, &right, LOCALE_USER_DEFAULT, 0);
6393 if (bFail) {
6394 ok(hres == DISP_E_TYPEMISMATCH || hres == DISP_E_BADVARTYPE,
6395 "VarCmp: %d|0x%X, %d|0x%X: Expected failure, got 0x%X\n",
6396 leftvt, ExtraFlags[i], rightvt, ExtraFlags[i], hres);
6397 } else {
6398 ok(hres == expect,
6399 "VarCmp: %d|0x%X, %d|0x%X: Expected 0x%X, got 0x%X\n",
6400 leftvt, ExtraFlags[i], rightvt, ExtraFlags[i], expect,
6401 hres);
6402 }
6403 }
6404 }
6405 }
6406
6407 /* VARCMP{,EX} run each 4 tests with a permutation of all possible
6408 input variants with (1) and without (0) VT_RESERVED set. The order
6409 of the permutations is (0,0); (1,0); (0,1); (1,1) */
6410 VARCMP(INT,4711,I2,4711,VARCMP_EQ);
6411 VARCMP(INT,4711,I2,-4711,VARCMP_GT);
6412 VARCMP(ERROR,0,ERROR,0,VARCMP_EQ);
6413 VARCMP(ERROR,0,UI1,0,DISP_E_TYPEMISMATCH);
6414 VARCMP(EMPTY,0,EMPTY,0,VARCMP_EQ);
6415 VARCMP(I4,1,R8,1.0,VARCMP_EQ);
6416 VARCMP(EMPTY,19,I2,0,VARCMP_EQ);
6417 ok(V_EMPTY(&left) == 19, "VT_EMPTY modified!\n");
6418 VARCMP(I4,1,UI1,1,VARCMP_EQ);
6419 VARCMP(I2,2,I2,2,VARCMP_EQ);
6420 VARCMP(I2,1,I2,2,VARCMP_LT);
6421 VARCMP(I2,2,I2,1,VARCMP_GT);
6422 VARCMP(I2,2,EMPTY,1,VARCMP_GT);
6423 VARCMP(I2,2,NULL_,1,VARCMP_NULL);
6424
6425 /* BSTR handling, especially in conjunction with VT_RESERVED */
6426 VARCMP(BSTR,bstr0,NULL_,0,VARCMP_NULL);
6427 VARCMP(BSTR,bstr0,BSTR,bstr0,VARCMP_EQ);
6428 VARCMP(BSTR,bstrempty,BSTR,bstr0,VARCMP_LT);
6429 VARCMP(BSTR,bstr7,BSTR,bstr0,VARCMP_GT);
6430 VARCMP(BSTR,bstr7,BSTR,bstr1neg,VARCMP_GT);
6431 VARCMP(BSTR,bstr0,BSTR,NULL,VARCMP_GT);
6432 VARCMP(BSTR,NULL,BSTR,NULL,VARCMP_EQ);
6433 VARCMP(BSTR,bstrempty,BSTR,NULL,VARCMP_EQ);
6434 VARCMP(BSTR,NULL,EMPTY,0,VARCMP_EQ);
6435 VARCMP(EMPTY,0,BSTR,NULL,VARCMP_EQ);
6436 VARCMP(EMPTY,0,BSTR,bstrempty,VARCMP_EQ);
6437 VARCMP(EMPTY,1,BSTR,bstrempty,VARCMP_EQ);
6438 VARCMP(BSTR,bstr0,EMPTY,0,VARCMP_GT);
6439 VARCMP(BSTR,bstr42,EMPTY,0,VARCMP_GT);
6440 VARCMPEX(BSTR,bstrempty,UI1,0,VARCMP_GT,VARCMP_LT,VARCMP_GT,VARCMP_GT);
6441 VARCMPEX(BSTR,bstrempty,I2,-1,VARCMP_GT,VARCMP_LT,VARCMP_GT,VARCMP_GT);
6442 VARCMPEX(I4,0,BSTR,bstrempty,VARCMP_LT,VARCMP_LT,VARCMP_GT,VARCMP_LT);
6443 VARCMPEX(BSTR,NULL,UI1,0,VARCMP_GT,VARCMP_LT,VARCMP_GT,VARCMP_GT);
6444 VARCMPEX(I4,7,BSTR,NULL,VARCMP_LT,VARCMP_LT,VARCMP_GT,VARCMP_LT);
6445 _VARCMP(BSTR,(BSTR)100,0,I2,100,0,lcid,0,VARCMP_GT);
6446 VARCMPEX(BSTR,bstr0,UI1,0,VARCMP_GT,VARCMP_EQ,VARCMP_EQ,VARCMP_GT);
6447 VARCMPEX(I2,0,BSTR,bstr0,VARCMP_LT,VARCMP_EQ,VARCMP_EQ,VARCMP_LT);
6448 VARCMP(BSTR,bstrhuh,I4,I4_MAX,VARCMP_GT);
6449 VARCMP(BSTR,bstr2cents,I4,2,VARCMP_GT);
6450 VARCMPEX(BSTR,bstr2cents,I4,42,VARCMP_GT,VARCMP_LT,VARCMP_GT,VARCMP_GT);
6451 VARCMP(BSTR,bstr2cents,I4,-1,VARCMP_GT);
6452 VARCMPEX(BSTR,bstr2cents,I4,-666,VARCMP_GT,VARCMP_LT,VARCMP_GT,VARCMP_GT);
6453 VARCMPEX(BSTR,bstr0,I2,0,VARCMP_GT,VARCMP_EQ,VARCMP_EQ,VARCMP_GT);
6454 VARCMPEX(BSTR,bstr0,I4,0,VARCMP_GT,VARCMP_EQ,VARCMP_EQ,VARCMP_GT);
6455 VARCMPEX(BSTR,bstr0,I4,-666,VARCMP_GT,VARCMP_LT,VARCMP_GT,VARCMP_GT);
6456 VARCMP(BSTR,bstr1,I4,0,VARCMP_GT);
6457 VARCMPEX(BSTR,bstr1,I4,1,VARCMP_GT,VARCMP_EQ,VARCMP_EQ,VARCMP_GT);
6458 VARCMPEX(BSTR,bstr1,I4,I4_MAX,VARCMP_GT,VARCMP_LT,VARCMP_LT,VARCMP_GT);
6459 VARCMPEX(BSTR,bstr1,I4,-1,VARCMP_GT,VARCMP_LT,VARCMP_GT,VARCMP_GT);
6460 VARCMP(BSTR,bstr7,I4,1,VARCMP_GT);
6461 VARCMPEX(BSTR,bstr7,I4,7,VARCMP_GT,VARCMP_EQ,VARCMP_EQ,VARCMP_GT);
6462 VARCMPEX(BSTR,bstr7,I4,42,VARCMP_GT,VARCMP_GT,VARCMP_LT,VARCMP_GT);
6463 VARCMPEX(BSTR,bstr42,I4,7,VARCMP_GT,VARCMP_LT,VARCMP_GT,VARCMP_GT);
6464 VARCMPEX(BSTR,bstr42,I4,42,VARCMP_GT,VARCMP_EQ,VARCMP_EQ,VARCMP_GT);
6465 VARCMPEX(BSTR,bstr42,I4,I4_MAX,VARCMP_GT,VARCMP_GT,VARCMP_LT,VARCMP_GT);
6466 VARCMPEX(BSTR,bstr1neg,I4,1,VARCMP_GT,VARCMP_GT,VARCMP_LT,VARCMP_LT);
6467 VARCMPEX(BSTR,bstr1neg,I4,42,VARCMP_GT,VARCMP_LT,VARCMP_LT,VARCMP_LT);
6468 VARCMPEX(BSTR,bstr1neg,I4,-1,VARCMP_GT,VARCMP_EQ,VARCMP_EQ,VARCMP_LT);
6469 VARCMPEX(BSTR,bstr1neg,I4,-666,VARCMP_GT,VARCMP_LT,VARCMP_GT,VARCMP_LT);
6470 VARCMPEX(BSTR,bstr666neg,I4,1,VARCMP_GT,VARCMP_GT,VARCMP_LT,VARCMP_LT);
6471 VARCMPEX(BSTR,bstr666neg,I4,7,VARCMP_GT,VARCMP_LT,VARCMP_LT,VARCMP_LT);
6472 VARCMPEX(BSTR,bstr666neg,I4,42,VARCMP_GT,VARCMP_GT,VARCMP_LT,VARCMP_LT);
6473 VARCMPEX(BSTR,bstr666neg,I4,I4_MAX,VARCMP_GT,VARCMP_GT,VARCMP_LT,VARCMP_LT);
6474 VARCMPEX(BSTR,bstr666neg,I4,-1,VARCMP_GT,VARCMP_GT,VARCMP_LT,VARCMP_LT);
6475 VARCMPEX(BSTR,bstr666neg,I4,-666,VARCMP_GT,VARCMP_EQ,VARCMP_EQ,VARCMP_LT);
6476 VARCMPEX(BSTR,bstr7,R8,7.0,VARCMP_GT,VARCMP_EQ,VARCMP_EQ,VARCMP_GT);
6477 VARCMPEX(R8,3.141592,BSTR,NULL,VARCMP_LT,VARCMP_LT,VARCMP_GT,VARCMP_LT);
6478 VARCMP(BSTR,bstr7,BSTR,bstr7,VARCMP_EQ);
6479 VARCMP(BSTR,bstr7,BSTR,bstr42,VARCMP_GT);
6480 VARCMP(BSTR,bstr42,BSTR,bstr7,VARCMP_LT);
6481
6482 /* DECIMAL handling */
6483 setdec(&dec,0,0,0,0);
6484 VARCMPEX(DECIMAL,dec,BSTR,bstr0,VARCMP_LT,VARCMP_EQ,VARCMP_EQ,VARCMP_LT);
6485 setdec64(&dec,0,0,0xFFFFFFFF,0xFFFFFFFF,0xFFFFFFFF); /* max DECIMAL */
6486 VARCMP(DECIMAL,dec,R8,R8_MAX,VARCMP_LT); /* R8 has bigger range */
6487 VARCMP(DECIMAL,dec,DATE,R8_MAX,VARCMP_LT); /* DATE has bigger range */
6488 setdec64(&dec,0,0x80,0xFFFFFFFF,0xFFFFFFFF,0xFFFFFFFF);
6489 VARCMP(DECIMAL,dec,R8,-R8_MAX,VARCMP_GT);
6490 setdec64(&dec,20,0,0x5,0x6BC75E2D,0x63100001); /* 1+1e-20 */
6491 VARCMP(DECIMAL,dec,R8,1,VARCMP_GT); /* DECIMAL has higher precision */
6492
6493 /* Show that DATE is handled just as a R8 */
6494 VARCMP(DATE,DATE_MAX,DATE,DATE_MAX+1,VARCMP_LT);
6495 VARCMP(DATE,DATE_MIN,DATE,DATE_MIN-1,VARCMP_GT);
6496 VARCMP(DATE,R8_MIN,R8,R8_MIN,VARCMP_EQ);
6497 VARCMP(DATE,1,DATE,1+1e-15,VARCMP_LT); /* 1e-15 == 8.64e-11 seconds */
6498 VARCMP(DATE,25570.0,DATE,25570.0,VARCMP_EQ);
6499 VARCMP(DATE,25570.0,DATE,25571.0,VARCMP_LT);
6500 VARCMP(DATE,25571.0,DATE,25570.0,VARCMP_GT);
6501 VARCMP(DATE,25570.0,EMPTY,0,VARCMP_GT);
6502 VARCMP(DATE,25570.0,NULL_,0,VARCMP_NULL);
6503
6504 /* R4 precision handling */
6505 VARCMP(R4,1,R8,1+1e-8,VARCMP_EQ);
6506 VARCMP(R8,1+1e-8,R4,1,VARCMP_EQ);
6507 VARCMP(R8,1+1e-8,R8,1,VARCMP_GT);
6508 VARCMP(R8,R4_MAX*1.1,R4,R4_MAX,VARCMP_GT);
6509 VARCMP(R4,R4_MAX,R8,R8_MAX,VARCMP_LT);
6510 VARCMP(R4,1,DATE,1+1e-8,VARCMP_EQ);
6511 VARCMP(R4,1,BSTR,bstr1few,VARCMP_LT); /* bstr1few == 1+1e-8 */
6512 setdec(&dec,8,0,0,0x5F5E101); /* 1+1e-8 */
6513 VARCMP(R4,1,DECIMAL,dec,VARCMP_LT);
6514
6515 SysFreeString(bstrhuh);
6516 SysFreeString(bstrempty);
6517 SysFreeString(bstr0);
6518 SysFreeString(bstr1);
6519 SysFreeString(bstr7);
6520 SysFreeString(bstr42);
6521 SysFreeString(bstr1neg);
6522 SysFreeString(bstr666neg);
6523 SysFreeString(bstr2cents);
6524 SysFreeString(bstr1few);
6525 }
6526
6527 static HRESULT (WINAPI *pVarPow)(LPVARIANT,LPVARIANT,LPVARIANT);
6528
6529 #define VARPOW(vt1,val1,vt2,val2,rvt,rval) \
6530 V_VT(&left) = VT_##vt1; V_##vt1(&left) = val1; \
6531 V_VT(&right) = VT_##vt2; V_##vt2(&right) = val2; \
6532 V_VT(&exp) = VT_##rvt; V_##rvt(&exp) = rval; \
6533 test_var_call2( __LINE__, pVarPow, &left, &right, &exp )
6534
6535 /* Skip any type that is not defined or produces an error for every case */
6536 #define SKIPTESTPOW(a) \
6537 if (a == VT_ERROR || a == VT_VARIANT || \
6538 a == VT_DISPATCH || a == VT_UNKNOWN || \
6539 a == VT_RECORD || a > VT_UINT || \
6540 a == 15 /*not defined*/) \
6541 continue
6542
6543 static void test_VarPow(void)
6544 {
6545 static const WCHAR str2[] = { '2','\0' };
6546 static const WCHAR str3[] = { '3','\0' };
6547 VARIANT left, right, exp, result, cy, dec;
6548 BSTR num2_str, num3_str;
6549 VARTYPE i;
6550 HRESULT hres;
6551
6552 CHECKPTR(VarPow);
6553
6554 num2_str = SysAllocString(str2);
6555 num3_str = SysAllocString(str3);
6556
6557 /* Test all possible flag/vt combinations & the resulting vt type */
6558 for (i = 0; i < sizeof(ExtraFlags)/sizeof(ExtraFlags[0]); i++)
6559 {
6560 VARTYPE leftvt, rightvt, resvt;
6561
6562 for (leftvt = 0; leftvt <= VT_BSTR_BLOB; leftvt++)
6563 {
6564 SKIPTESTPOW(leftvt);
6565
6566 for (rightvt = 0; rightvt <= VT_BSTR_BLOB; rightvt++)
6567 {
6568 BOOL bFail = FALSE;
6569 SKIPTESTPOW(rightvt);
6570
6571 /* Native crashes with VT_BYREF */
6572 if (ExtraFlags[i] == VT_BYREF)
6573 continue;
6574
6575 memset(&left, 0, sizeof(left));
6576 memset(&right, 0, sizeof(right));
6577 V_VT(&left) = leftvt | ExtraFlags[i];
6578 V_VT(&right) = rightvt | ExtraFlags[i];
6579 V_VT(&result) = VT_EMPTY;
6580 resvt = VT_EMPTY;
6581
6582 if (leftvt == VT_BSTR)
6583 V_BSTR(&left) = num2_str;
6584 if (rightvt == VT_BSTR)
6585 V_BSTR(&right) = num2_str;
6586
6587 /* Native VarPow always returns an error when using extra flags */
6588 if (ExtraFlags[i] != 0)
6589 bFail = TRUE;
6590
6591 /* Determine return type */
6592 else if ((leftvt == VT_NULL || rightvt == VT_NULL) &&
6593 ((leftvt != VT_I8 && leftvt != VT_UI8 &&
6594 rightvt != VT_I8 && rightvt != VT_UI8) || HAVE_OLEAUT32_I8))
6595 resvt = VT_NULL;
6596 else if ((leftvt == VT_EMPTY || leftvt == VT_I2 ||
6597 leftvt == VT_I4 || leftvt == VT_R4 ||
6598 leftvt == VT_R8 || leftvt == VT_CY ||
6599 leftvt == VT_DATE || leftvt == VT_BSTR ||
6600 leftvt == VT_BOOL || leftvt == VT_DECIMAL ||
6601 (leftvt >= VT_I1 && leftvt <= VT_UI4) ||
6602 (HAVE_OLEAUT32_I8 && (leftvt == VT_I8 || leftvt == VT_UI8)) ||
6603 leftvt == VT_INT || leftvt == VT_UINT) &&
6604 (rightvt == VT_EMPTY || rightvt == VT_I2 ||
6605 rightvt == VT_I4 || rightvt == VT_R4 ||
6606 rightvt == VT_R8 || rightvt == VT_CY ||
6607 rightvt == VT_DATE || rightvt == VT_BSTR ||
6608 rightvt == VT_BOOL || rightvt == VT_DECIMAL ||
6609 (rightvt >= VT_I1 && rightvt <= VT_UI4) ||
6610 (HAVE_OLEAUT32_I8 && (rightvt == VT_I8 || rightvt == VT_UI8)) ||
6611 rightvt == VT_INT || rightvt == VT_UINT))
6612 resvt = VT_R8;
6613 else
6614 bFail = TRUE;
6615
6616 hres = pVarPow(&left, &right, &result);
6617
6618 /* Check expected HRESULT and if result variant type is correct */
6619 if (bFail)
6620 ok (hres == DISP_E_BADVARTYPE || hres == DISP_E_TYPEMISMATCH,
6621 "VarPow: %s|0x%X, %s|0x%X: got vt %s hr 0x%X\n",
6622 vtstr(leftvt), ExtraFlags[i], vtstr(rightvt), ExtraFlags[i],
6623 vtstr(V_VT(&result)), hres);
6624 else
6625 ok (hres == S_OK && resvt == V_VT(&result),
6626 "VarPow: %s|0x%X, %s|0x%X: expected vt %s hr 0x%X, got vt %s hr 0x%X\n",
6627 vtstr(leftvt), ExtraFlags[i], vtstr(rightvt), ExtraFlags[i], vtstr(resvt),
6628 S_OK, vtstr(V_VT(&result)), hres);
6629 }
6630 }
6631 }
6632
6633 /* Check return values for valid variant type combinations */
6634 VARPOW(EMPTY,0,EMPTY,0,R8,1.0);
6635 VARPOW(EMPTY,0,NULL,0,NULL,0);
6636 VARPOW(EMPTY,0,I2,3,R8,0.0);
6637 VARPOW(EMPTY,0,I4,3,R8,0.0);
6638 VARPOW(EMPTY,0,R4,3.0f,R8,0.0);
6639 VARPOW(EMPTY,0,R8,3.0,R8,0.0);
6640 VARPOW(EMPTY,0,DATE,3,R8,0.0);
6641 VARPOW(EMPTY,0,BSTR,num3_str,R8,0.0);
6642 VARPOW(EMPTY,0,BOOL,VARIANT_FALSE,R8,1.0);
6643 VARPOW(EMPTY,0,I1,3,R8,0.0);
6644 VARPOW(EMPTY,0,UI1,3,R8,0.0);
6645 VARPOW(EMPTY,0,UI2,3,R8,0.0);
6646 VARPOW(EMPTY,0,UI4,3,R8,0.0);
6647 if (HAVE_OLEAUT32_I8)
6648 {
6649 VARPOW(EMPTY,0,I8,3,R8,0.0);
6650 VARPOW(EMPTY,0,UI8,3,R8,0.0);
6651 }
6652 VARPOW(EMPTY,0,INT,3,R8,0.0);
6653 VARPOW(EMPTY,0,UINT,3,R8,0.0);
6654 VARPOW(NULL,0,EMPTY,0,NULL,0);
6655 VARPOW(NULL,0,NULL,0,NULL,0);
6656 VARPOW(NULL,0,I2,3,NULL,0);
6657 VARPOW(NULL,0,I4,3,NULL,0);
6658 VARPOW(NULL,0,R4,3.0f,NULL,0);
6659 VARPOW(NULL,0,R8,3.0,NULL,0);
6660 VARPOW(NULL,0,DATE,3,NULL,0);
6661 VARPOW(NULL,0,BSTR,num3_str,NULL,0);
6662 VARPOW(NULL,0,BOOL,VARIANT_TRUE,NULL,0);
6663 VARPOW(NULL,0,I1,3,NULL,0);
6664 VARPOW(NULL,0,UI1,3,NULL,0);
6665 VARPOW(NULL,0,UI2,3,NULL,0);
6666 VARPOW(NULL,0,UI4,3,NULL,0);
6667 if (HAVE_OLEAUT32_I8)
6668 {
6669 VARPOW(NULL,0,I8,3,NULL,0);
6670 VARPOW(NULL,0,UI8,3,NULL,0);
6671 }
6672 VARPOW(NULL,0,INT,3,NULL,0);
6673 VARPOW(NULL,0,UINT,3,NULL,0);
6674 VARPOW(I2,2,EMPTY,0,R8,1.0);
6675 VARPOW(I2,2,NULL,0,NULL,0);
6676 VARPOW(I2,2,I2,3,R8,8.0);
6677 VARPOW(I2,2,I4,3,R8,8.0);
6678 VARPOW(I2,2,R4,3.0f,R8,8.0);
6679 VARPOW(I2,2,R8,3.0,R8,8.0);
6680 VARPOW(I2,2,DATE,3,R8,8.0);
6681 VARPOW(I2,2,BSTR,num3_str,R8,8.0);
6682 VARPOW(I2,2,BOOL,VARIANT_FALSE,R8,1.0);
6683 VARPOW(I2,2,I1,3,R8,8.0);
6684 VARPOW(I2,2,UI1,3,R8,8.0);
6685 VARPOW(I2,2,UI2,3,R8,8.0);
6686 VARPOW(I2,2,UI4,3,R8,8.0);
6687 if (HAVE_OLEAUT32_I8)
6688 {
6689 VARPOW(I2,2,I8,3,R8,8.0);
6690 VARPOW(I2,2,UI8,3,R8,8.0);
6691 }
6692 VARPOW(I2,2,INT,3,R8,8.0);
6693 VARPOW(I2,2,UINT,3,R8,8.0);
6694 VARPOW(I4,2,EMPTY,0,R8,1.0);
6695 VARPOW(I4,2,NULL,0,NULL,0);
6696 VARPOW(I4,2,I2,3,R8,8.0);
6697 VARPOW(I4,2,I4,3,R8,8.0);
6698 VARPOW(I4,2,R4,3.0f,R8,8.0);
6699 VARPOW(I4,2,R8,3.0,R8,8.0);
6700 VARPOW(I4,2,DATE,3,R8,8.0);
6701 VARPOW(I4,2,BSTR,num3_str,R8,8.0);
6702 VARPOW(I4,2,BOOL,VARIANT_FALSE,R8,1.0);
6703 VARPOW(I4,2,I1,3,R8,8.0);
6704 VARPOW(I4,2,UI1,3,R8,8.0);
6705 VARPOW(I4,2,UI2,3,R8,8.0);
6706 VARPOW(I4,2,UI4,3,R8,8.0);
6707 if (HAVE_OLEAUT32_I8)
6708 {
6709 VARPOW(I4,2,I8,3,R8,8.0);
6710 VARPOW(I4,2,UI8,3,R8,8.0);
6711 }
6712 VARPOW(I4,2,INT,3,R8,8.0);
6713 VARPOW(I4,2,UINT,3,R8,8.0);
6714 VARPOW(R4,2,EMPTY,0,R8,1.0);
6715 VARPOW(R4,2,NULL,0,NULL,0);
6716 VARPOW(R4,2,I2,3,R8,8.0);
6717 VARPOW(R4,2,I4,3,R8,8.0);
6718 VARPOW(R4,2,R4,3.0f,R8,8.0);
6719 VARPOW(R4,2,R8,3.0,R8,8.0);
6720 VARPOW(R4,2,DATE,3,R8,8.0);
6721 VARPOW(R4,2,BSTR,num3_str,R8,8.0);
6722 VARPOW(R4,2,BOOL,VARIANT_FALSE,R8,1.0);
6723 VARPOW(R4,2,I1,3,R8,8.0);
6724 VARPOW(R4,2,UI1,3,R8,8.0);
6725 VARPOW(R4,2,UI2,3,R8,8.0);
6726 VARPOW(R4,2,UI4,3,R8,8.0);
6727 if (HAVE_OLEAUT32_I8)
6728 {
6729 VARPOW(R4,2,I8,3,R8,8.0);
6730 VARPOW(R4,2,UI8,3,R8,8.0);
6731 }
6732 VARPOW(R4,2,INT,3,R8,8.0);
6733 VARPOW(R4,2,UINT,3,R8,8.0);
6734 VARPOW(R8,2,EMPTY,0,R8,1.0);
6735 VARPOW(R8,2,NULL,0,NULL,0);
6736 VARPOW(R8,2,I2,3,R8,8.0);
6737 VARPOW(R8,2,I4,3,R8,8.0);
6738 VARPOW(R8,2,R4,3.0f,R8,8.0);
6739 VARPOW(R8,2,R8,3.0,R8,8.0);
6740 VARPOW(R8,2,DATE,3,R8,8.0);
6741 VARPOW(R8,2,BSTR,num3_str,R8,8.0);
6742 VARPOW(R8,2,BOOL,VARIANT_FALSE,R8,1.0);
6743 VARPOW(R8,2,I1,3,R8,8.0);
6744 VARPOW(R8,2,UI1,3,R8,8.0);
6745 VARPOW(R8,2,UI2,3,R8,8.0);
6746 VARPOW(R8,2,UI4,3,R8,8.0);
6747 if (HAVE_OLEAUT32_I8)
6748 {
6749 VARPOW(R8,2,I8,3,R8,8.0);
6750 VARPOW(R8,2,UI8,3,R8,8.0);
6751 }
6752 VARPOW(R8,2,INT,3,R8,8.0);
6753 VARPOW(R8,2,UINT,3,R8,8.0);
6754 VARPOW(DATE,2,EMPTY,0,R8,1.0);
6755 VARPOW(DATE,2,NULL,0,NULL,0);
6756 VARPOW(DATE,2,I2,3,R8,8.0);
6757 VARPOW(DATE,2,I4,3,R8,8.0);
6758 VARPOW(DATE,2,R4,3.0f,R8,8.0);
6759 VARPOW(DATE,2,R8,3.0,R8,8.0);
6760 VARPOW(DATE,2,DATE,3,R8,8.0);
6761 VARPOW(DATE,2,BSTR,num3_str,R8,8.0);
6762 VARPOW(DATE,2,BOOL,VARIANT_FALSE,R8,1.0);
6763 VARPOW(DATE,2,I1,3,R8,8.0);
6764 VARPOW(DATE,2,UI1,3,R8,8.0);
6765 VARPOW(DATE,2,UI2,3,R8,8.0);
6766 VARPOW(DATE,2,UI4,3,R8,8.0);
6767 if (HAVE_OLEAUT32_I8)
6768 {
6769 VARPOW(DATE,2,I8,3,R8,8.0);
6770 VARPOW(DATE,2,UI8,3,R8,8.0);
6771 }
6772 VARPOW(DATE,2,INT,3,R8,8.0);
6773 VARPOW(DATE,2,UINT,3,R8,8.0);
6774 VARPOW(BSTR,num2_str,EMPTY,0,R8,1.0);
6775 VARPOW(BSTR,num2_str,NULL,0,NULL,0);
6776 VARPOW(BSTR,num2_str,I2,3,R8,8.0);
6777 VARPOW(BSTR,num2_str,I4,3,R8,8.0);
6778 VARPOW(BSTR,num2_str,R4,3.0f,R8,8.0);
6779 VARPOW(BSTR,num2_str,R8,3.0,R8,8.0);
6780 VARPOW(BSTR,num2_str,DATE,3,R8,8.0);
6781 VARPOW(BSTR,num2_str,BSTR,num3_str,R8,8.0);
6782 VARPOW(BSTR,num2_str,BOOL,VARIANT_FALSE,R8,1.0);
6783 VARPOW(BSTR,num2_str,I1,3,R8,8.0);
6784 VARPOW(BSTR,num2_str,UI1,3,R8,8.0);
6785 VARPOW(BSTR,num2_str,UI2,3,R8,8.0);
6786 VARPOW(BSTR,num2_str,UI4,3,R8,8.0);
6787 if (HAVE_OLEAUT32_I8)
6788 {
6789 VARPOW(BSTR,num2_str,I8,3,R8,8.0);
6790 VARPOW(BSTR,num2_str,UI8,3,R8,8.0);
6791 }
6792 VARPOW(BSTR,num2_str,INT,3,R8,8.0);
6793 VARPOW(BSTR,num2_str,UINT,3,R8,8.0);
6794 VARPOW(BOOL,VARIANT_TRUE,EMPTY,0,R8,1.0);
6795 VARPOW(BOOL,VARIANT_TRUE,NULL,0,NULL,0);
6796 VARPOW(BOOL,VARIANT_TRUE,I2,3,R8,-1.0);
6797 VARPOW(BOOL,VARIANT_TRUE,I4,3,R8,-1.0);
6798 VARPOW(BOOL,VARIANT_TRUE,R4,3.0f,R8,-1.0);
6799 VARPOW(BOOL,VARIANT_TRUE,R8,3.0,R8,-1.0);
6800 VARPOW(BOOL,VARIANT_TRUE,DATE,3,R8,-1.0);
6801 VARPOW(BOOL,VARIANT_TRUE,BSTR,num3_str,R8,-1.0);
6802 VARPOW(BOOL,VARIANT_TRUE,BOOL,VARIANT_TRUE,R8,-1.0);
6803 VARPOW(BOOL,VARIANT_TRUE,I1,3,R8,-1.0);
6804 VARPOW(BOOL,VARIANT_TRUE,UI1,3,R8,-1.0);
6805 VARPOW(BOOL,VARIANT_TRUE,UI2,3,R8,-1.0);
6806 VARPOW(BOOL,VARIANT_TRUE,UI4,3,R8,-1.0);
6807 if (HAVE_OLEAUT32_I8)
6808 {
6809 VARPOW(BOOL,VARIANT_TRUE,I8,3,R8,-1.0);
6810 VARPOW(BOOL,VARIANT_TRUE,UI8,3,R8,-1.0);
6811 }
6812 VARPOW(BOOL,VARIANT_TRUE,INT,3,R8,-1.0);
6813 VARPOW(BOOL,VARIANT_TRUE,UINT,3,R8,-1.0);
6814 VARPOW(I1,2,EMPTY,0,R8,1.0);
6815 VARPOW(I1,2,NULL,0,NULL,0);
6816 VARPOW(I1,2,I2,3,R8,8.0);
6817 VARPOW(I1,2,I4,3,R8,8.0);
6818 VARPOW(I1,2,R4,3.0f,R8,8.0);
6819 VARPOW(I1,2,R8,3.0,R8,8.0);
6820 VARPOW(I1,2,DATE,3,R8,8.0);
6821 VARPOW(I1,2,BSTR,num3_str,R8,8.0);
6822 VARPOW(I1,2,BOOL,VARIANT_FALSE,R8,1.0);
6823 VARPOW(I1,2,I1,3,R8,8.0);
6824 VARPOW(I1,2,UI1,3,R8,8.0);
6825 VARPOW(I1,2,UI2,3,R8,8.0);
6826 VARPOW(I1,2,UI4,3,R8,8.0);
6827 if (HAVE_OLEAUT32_I8)
6828 {
6829 VARPOW(I1,2,I8,3,R8,8.0);
6830 VARPOW(I1,2,UI8,3,R8,8.0);
6831 }
6832 VARPOW(I1,2,INT,3,R8,8.0);
6833 VARPOW(I1,2,UINT,3,R8,8.0);
6834 VARPOW(UI1,2,EMPTY,0,R8,1.0);
6835 VARPOW(UI1,2,NULL,0,NULL,0);
6836 VARPOW(UI1,2,I2,3,R8,8.0);
6837 VARPOW(UI1,2,I4,3,R8,8.0);
6838 VARPOW(UI1,2,R4,3.0f,R8,8.0);
6839 VARPOW(UI1,2,R8,3.0,R8,8.0);
6840 VARPOW(UI1,2,DATE,3,R8,8.0);
6841 VARPOW(UI1,2,BSTR,num3_str,R8,8.0);
6842 VARPOW(UI1,2,BOOL,VARIANT_FALSE,R8,1.0);
6843 VARPOW(UI1,2,I1,3,R8,8.0);
6844 VARPOW(UI1,2,UI1,3,R8,8.0);
6845 VARPOW(UI1,2,UI2,3,R8,8.0);
6846 VARPOW(UI1,2,UI4,3,R8,8.0);
6847 if (HAVE_OLEAUT32_I8)
6848 {
6849 VARPOW(UI1,2,I8,3,R8,8.0);
6850 VARPOW(UI1,2,UI8,3,R8,8.0);
6851 }
6852 VARPOW(UI1,2,INT,3,R8,8.0);
6853 VARPOW(UI1,2,UINT,3,R8,8.0);
6854 VARPOW(UI2,2,EMPTY,0,R8,1.0);
6855 VARPOW(UI2,2,NULL,0,NULL,0);
6856 VARPOW(UI2,2,I2,3,R8,8.0);
6857 VARPOW(UI2,2,I4,3,R8,8.0);
6858 VARPOW(UI2,2,R4,3.0f,R8,8.0);
6859 VARPOW(UI2,2,R8,3.0,R8,8.0);
6860 VARPOW(UI2,2,DATE,3,R8,8.0);
6861 VARPOW(UI2,2,BSTR,num3_str,R8,8.0);
6862 VARPOW(UI2,2,BOOL,VARIANT_FALSE,R8,1.0);
6863 VARPOW(UI2,2,I1,3,R8,8.0);
6864 VARPOW(UI2,2,UI1,3,R8,8.0);
6865 VARPOW(UI2,2,UI2,3,R8,8.0);
6866 VARPOW(UI2,2,UI4,3,R8,8.0);
6867 if (HAVE_OLEAUT32_I8)
6868 {
6869 VARPOW(UI2,2,I8,3,R8,8.0);
6870 VARPOW(UI2,2,UI8,3,R8,8.0);
6871 }
6872 VARPOW(UI2,2,INT,3,R8,8.0);
6873 VARPOW(UI2,2,UINT,3,R8,8.0);
6874 VARPOW(UI4,2,EMPTY,0,R8,1.0);
6875 VARPOW(UI4,2,NULL,0,NULL,0);
6876 VARPOW(UI4,2,I2,3,R8,8.0);
6877 VARPOW(UI4,2,I4,3,R8,8.0);
6878 VARPOW(UI4,2,R4,3.0f,R8,8.0);
6879 VARPOW(UI4,2,R8,3.0,R8,8.0);
6880 VARPOW(UI4,2,DATE,3,R8,8.0);
6881 VARPOW(UI4,2,BSTR,num3_str,R8,8.0);
6882 VARPOW(UI4,2,BOOL,VARIANT_FALSE,R8,1.0);
6883 VARPOW(UI4,2,I1,3,R8,8.0);
6884 VARPOW(UI4,2,UI1,3,R8,8.0);
6885 VARPOW(UI4,2,UI2,3,R8,8.0);
6886 VARPOW(UI4,2,UI4,3,R8,8.0);
6887 if (HAVE_OLEAUT32_I8)
6888 {
6889 VARPOW(UI4,2,I8,3,R8,8.0);
6890 VARPOW(UI4,2,UI8,3,R8,8.0);
6891 }
6892 VARPOW(UI4,2,INT,3,R8,8.0);
6893 VARPOW(UI4,2,UINT,3,R8,8.0);
6894 if (HAVE_OLEAUT32_I8)
6895 {
6896 VARPOW(I8,2,EMPTY,0,R8,1.0);
6897 VARPOW(I8,2,NULL,0,NULL,0);
6898 VARPOW(I8,2,I2,3,R8,8.0);
6899 VARPOW(I8,2,I4,3,R8,8.0);
6900 VARPOW(I8,2,R4,3.0f,R8,8.0);
6901 VARPOW(I8,2,R8,3.0,R8,8.0);
6902 VARPOW(I8,2,DATE,3,R8,8.0);
6903 VARPOW(I8,2,BSTR,num3_str,R8,8.0);
6904 VARPOW(I8,2,BOOL,VARIANT_FALSE,R8,1.0);
6905 VARPOW(I8,2,I1,3,R8,8.0);
6906 VARPOW(I8,2,UI1,3,R8,8.0);
6907 VARPOW(I8,2,UI2,3,R8,8.0);
6908 VARPOW(I8,2,UI4,3,R8,8.0);
6909 VARPOW(I8,2,I8,3,R8,8.0);
6910 VARPOW(I8,2,UI8,3,R8,8.0);
6911 VARPOW(I8,2,INT,3,R8,8.0);
6912 VARPOW(I8,2,UINT,3,R8,8.0);
6913 VARPOW(UI8,2,EMPTY,0,R8,1.0);
6914 VARPOW(UI8,2,NULL,0,NULL,0);
6915 VARPOW(UI8,2,I2,3,R8,8.0);
6916 VARPOW(UI8,2,I4,3,R8,8.0);
6917 VARPOW(UI8,2,R4,3.0f,R8,8.0);
6918 VARPOW(UI8,2,R8,3.0,R8,8.0);
6919 VARPOW(UI8,2,DATE,3,R8,8.0);
6920 VARPOW(UI8,2,BSTR,num3_str,R8,8.0);
6921 VARPOW(UI8,2,I1,3,R8,8.0);
6922 VARPOW(UI8,2,UI1,3,R8,8.0);
6923 VARPOW(UI8,2,UI2,3,R8,8.0);
6924 VARPOW(UI8,2,UI4,3,R8,8.0);
6925 VARPOW(UI8,2,I8,3,R8,8.0);
6926 VARPOW(UI8,2,UI8,3,R8,8.0);
6927 VARPOW(UI8,2,INT,3,R8,8.0);
6928 VARPOW(UI8,2,UINT,3,R8,8.0);
6929 }
6930 VARPOW(INT,2,EMPTY,0,R8,1.0);
6931 VARPOW(INT,2,NULL,0,NULL,0);
6932 VARPOW(INT,2,I2,3,R8,8.0);
6933 VARPOW(INT,2,I4,3,R8,8.0);
6934 VARPOW(INT,2,R4,3.0f,R8,8.0);
6935 VARPOW(INT,2,R8,3.0,R8,8.0);
6936 VARPOW(INT,2,DATE,3,R8,8.0);
6937 VARPOW(INT,2,BSTR,num3_str,R8,8.0);
6938 VARPOW(INT,2,BOOL,VARIANT_FALSE,R8,1.0);
6939 VARPOW(INT,2,I1,3,R8,8.0);
6940 VARPOW(INT,2,UI1,3,R8,8.0);
6941 VARPOW(INT,2,UI2,3,R8,8.0);
6942 VARPOW(INT,2,UI4,3,R8,8.0);
6943 if (HAVE_OLEAUT32_I8)
6944 {
6945 VARPOW(INT,2,I8,3,R8,8.0);
6946 VARPOW(INT,2,UI8,3,R8,8.0);
6947 }
6948 VARPOW(INT,2,INT,3,R8,8.0);
6949 VARPOW(INT,2,UINT,3,R8,8.0);
6950 VARPOW(UINT,2,EMPTY,0,R8,1.0);
6951 VARPOW(UINT,2,NULL,0,NULL,0);
6952 VARPOW(UINT,2,I2,3,R8,8.0);
6953 VARPOW(UINT,2,I4,3,R8,8.0);
6954 VARPOW(UINT,2,R4,3.0f,R8,8.0);
6955 VARPOW(UINT,2,R8,3.0,R8,8.0);
6956 VARPOW(UINT,2,DATE,3,R8,8.0);
6957 VARPOW(UINT,2,BSTR,num3_str,R8,8.0);
6958 VARPOW(UINT,2,BOOL,VARIANT_FALSE,R8,1.0);
6959 VARPOW(UINT,2,I1,3,R8,8.0);
6960 VARPOW(UINT,2,UI1,3,R8,8.0);
6961 VARPOW(UINT,2,UI2,3,R8,8.0);
6962 VARPOW(UINT,2,UI4,3,R8,8.0);
6963 if (HAVE_OLEAUT32_I8)
6964 {
6965 VARPOW(UINT,2,I8,3,R8,8.0);
6966 VARPOW(UINT,2,UI8,3,R8,8.0);
6967 }
6968 VARPOW(UINT,2,INT,3,R8,8.0);
6969 VARPOW(UINT,2,UINT,3,R8,8.0);
6970
6971 /* Manually test some VT_CY, VT_DECIMAL variants */
6972 V_VT(&cy) = VT_CY;
6973 hres = VarCyFromI4(2, &V_CY(&cy));
6974 ok(hres == S_OK, "VarCyFromI4 failed!\n");
6975 V_VT(&dec) = VT_DECIMAL;
6976 hres = VarDecFromR8(2.0, &V_DECIMAL(&dec));
6977 ok(hres == S_OK, "VarDecFromR4 failed!\n");
6978 memset(&left, 0, sizeof(left));
6979 memset(&right, 0, sizeof(right));
6980 V_VT(&left) = VT_I4;
6981 V_I4(&left) = 100;
6982 V_VT(&right) = VT_I8;
6983 V_UI1(&right) = 2;
6984
6985 hres = pVarPow(&cy, &cy, &result);
6986 ok(hres == S_OK && V_VT(&result) == VT_R8,
6987 "VARPOW: expected coerced hres 0x%X type VT_R8, got hres 0x%X type %s!\n",
6988 S_OK, hres, vtstr(V_VT(&result)));
6989 ok(hres == S_OK && EQ_DOUBLE(V_R8(&result), 4.0),
6990 "VARPOW: CY value %f, expected %f\n", V_R8(&result), 4.0);
6991
6992 hres = pVarPow(&cy, &right, &result);
6993 if (hres == S_OK)
6994 {
6995 ok(hres == S_OK && V_VT(&result) == VT_R8,
6996 "VARPOW: expected coerced hres 0x%X type VT_R8, got hres 0x%X type %s!\n",
6997 S_OK, hres, vtstr(V_VT(&result)));
6998 ok(hres == S_OK && EQ_DOUBLE(V_R8(&result), 4.0),
6999 "VARPOW: CY value %f, expected %f\n", V_R8(&result), 4.0);
7000 }
7001 else
7002 {
7003 ok(hres == DISP_E_BADVARTYPE && V_VT(&result) == VT_EMPTY,
7004 "VARPOW: expected coerced hres 0x%X type VT_EMPTY, got hres 0x%X type %s!\n",
7005 DISP_E_BADVARTYPE, hres, vtstr(V_VT(&result)));
7006 }
7007
7008 hres = pVarPow(&left, &cy, &result);
7009 ok(hres == S_OK && V_VT(&result) == VT_R8,
7010 "VARPOW: expected coerced hres 0x%X type VT_R8, got hres 0x%X type %s!\n",
7011 S_OK, hres, vtstr(V_VT(&result)));
7012 ok(hres == S_OK && EQ_DOUBLE(V_R8(&result), 10000.0),
7013 "VARPOW: CY value %f, expected %f\n", V_R8(&result), 10000.0);
7014
7015 hres = pVarPow(&left, &dec, &result);
7016 ok(hres == S_OK && V_VT(&result) == VT_R8,
7017 "VARPOW: expected coerced hres 0x%X type VT_R8, got hres 0x%X type %s!\n",
7018 S_OK, hres, vtstr(V_VT(&result)));
7019 ok(hres == S_OK && EQ_DOUBLE(V_R8(&result),10000.0),
7020 "VARPOW: DECIMAL value %f, expected %f\n", V_R8(&result), 10000.0);
7021
7022 hres = pVarPow(&dec, &dec, &result);
7023 ok(hres == S_OK && V_VT(&result) == VT_R8,
7024 "VARPOW: expected coerced hres 0x%X type VT_R8, got hres 0x%X type %s!\n",
7025 S_OK, hres, vtstr(V_VT(&result)));
7026 ok(hres == S_OK && EQ_DOUBLE(V_R8(&result), 4.0),
7027 "VARPOW: DECIMAL value %f, expected %f\n", V_R8(&result), 4.0);
7028
7029 hres = pVarPow(&dec, &right, &result);
7030 if (hres == S_OK)
7031 {
7032 ok(hres == S_OK && V_VT(&result) == VT_R8,
7033 "VARPOW: expected coerced hres 0x%X type VT_R8, got hres 0x%X type %s!\n",
7034 S_OK, hres, vtstr(V_VT(&result)));
7035 ok(hres == S_OK && EQ_DOUBLE(V_R8(&result), 4.0),
7036 "VARPOW: DECIMAL value %f, expected %f\n", V_R8(&result), 4.0);
7037 }
7038 else
7039 {
7040 ok(hres == DISP_E_BADVARTYPE && V_VT(&result) == VT_EMPTY,
7041 "VARPOW: expected coerced hres 0x%X type VT_EMPTY, got hres 0x%X type %s!\n",
7042 DISP_E_BADVARTYPE, hres, vtstr(V_VT(&result)));
7043 }
7044
7045 SysFreeString(num2_str);
7046 SysFreeString(num3_str);
7047 }
7048
7049 static HRESULT (WINAPI *pVarDiv)(LPVARIANT,LPVARIANT,LPVARIANT);
7050
7051 #define VARDIV(vt1,val1,vt2,val2,rvt,rval) \
7052 V_VT(&left) = VT_##vt1; V_##vt1(&left) = val1; \
7053 V_VT(&right) = VT_##vt2; V_##vt2(&right) = val2; \
7054 V_VT(&exp) = VT_##rvt; V_##rvt(&exp) = rval; \
7055 test_var_call2( __LINE__, pVarDiv, &left, &right, &exp )
7056
7057 /* Skip any type that is not defined or produces an error for every case */
7058 #define SKIPTESTDIV(a) \
7059 if (a == VT_ERROR || a == VT_VARIANT || \
7060 a == VT_DISPATCH || a == VT_UNKNOWN || \
7061 a == VT_RECORD || a > VT_UINT || \
7062 a == VT_I1 || a == VT_UI8 || \
7063 a == VT_INT || a == VT_UINT || \
7064 a == VT_UI2 || a == VT_UI4 || \
7065 a == 15 /*not defined*/) \
7066 continue
7067
7068 static void test_VarDiv(void)
7069 {
7070 static const WCHAR str1[] = { '1','\0' };
7071 static const WCHAR str2[] = { '2','\0' };
7072 VARIANT left, right, exp, result, cy, dec;
7073 BSTR num1_str, num2_str;
7074 VARTYPE i;
7075 HRESULT hres, expectedhres;
7076 double r;
7077
7078 num1_str = SysAllocString(str1);
7079 num2_str = SysAllocString(str2);
7080
7081 CHECKPTR(VarDiv);
7082
7083 /* Test all possible flag/vt combinations & the resulting vt type */
7084 for (i = 0; i < sizeof(ExtraFlags)/sizeof(ExtraFlags[0]); i++)
7085 {
7086 VARTYPE leftvt, rightvt, resvt;
7087
7088 for (leftvt = 0; leftvt <= VT_BSTR_BLOB; leftvt++)
7089 {
7090 SKIPTESTDIV(leftvt);
7091
7092 /* Check if we need/have support for I8 */
7093 if (leftvt == VT_I8 && !HAVE_OLEAUT32_I8)
7094 continue;
7095
7096 for (rightvt = 0; rightvt <= VT_BSTR_BLOB; rightvt++)
7097 {
7098 BOOL bFail = FALSE;
7099 SKIPTESTDIV(rightvt);
7100
7101 /* Check if we need/have support for I8 */
7102 if (rightvt == VT_I8 && !HAVE_OLEAUT32_I8)
7103 continue;
7104
7105 /* Native crashes with VT_BYREF */
7106 if (ExtraFlags[i] == VT_BYREF)
7107 continue;
7108
7109 memset(&left, 0, sizeof(left));
7110 memset(&right, 0, sizeof(right));
7111 V_VT(&left) = leftvt | ExtraFlags[i];
7112 V_VT(&right) = rightvt | ExtraFlags[i];
7113 V_VT(&result) = VT_EMPTY;
7114 resvt = VT_EMPTY;
7115 expectedhres = S_OK;
7116
7117 if (leftvt == VT_BSTR)
7118 V_BSTR(&left) = num2_str;
7119 else if (leftvt == VT_DECIMAL)
7120 {
7121 VarDecFromR8(2.0, &V_DECIMAL(&left));
7122 V_VT(&left) = leftvt | ExtraFlags[i];
7123 }
7124
7125 /* Division by 0 is undefined */
7126 switch(rightvt)
7127 {
7128 case VT_BSTR:
7129 V_BSTR(&right) = num2_str;
7130 break;
7131 case VT_DECIMAL:
7132 VarDecFromR8(2.0, &V_DECIMAL(&right));
7133 V_VT(&right) = rightvt | ExtraFlags[i];
7134 break;
7135 case VT_BOOL:
7136 V_BOOL(&right) = VARIANT_TRUE;
7137 break;
7138 case VT_I2: V_I2(&right) = 2; break;
7139 case VT_I4: V_I4(&right) = 2; break;
7140 case VT_R4: V_R4(&right) = 2.0f; break;
7141 case VT_R8: V_R8(&right) = 2.0; break;
7142 case VT_CY: V_CY(&right).int64 = 2; break;
7143 case VT_DATE: V_DATE(&right) = 2; break;
7144 case VT_UI1: V_UI1(&right) = 2; break;
7145 case VT_I8: V_I8(&right) = 2; break;
7146 default: break;
7147 }
7148
7149 /* Determine return type */
7150 if (!(rightvt == VT_EMPTY))
7151 {
7152 if (leftvt == VT_NULL || rightvt == VT_NULL)
7153 resvt = VT_NULL;
7154 else if (leftvt == VT_DECIMAL || rightvt == VT_DECIMAL)
7155 resvt = VT_DECIMAL;
7156 else if (leftvt == VT_I8 || rightvt == VT_I8 ||
7157 leftvt == VT_CY || rightvt == VT_CY ||
7158 leftvt == VT_DATE || rightvt == VT_DATE ||
7159 leftvt == VT_I4 || rightvt == VT_I4 ||
7160 leftvt == VT_BSTR || rightvt == VT_BSTR ||
7161 leftvt == VT_I2 || rightvt == VT_I2 ||
7162 leftvt == VT_BOOL || rightvt == VT_BOOL ||
7163 leftvt == VT_R8 || rightvt == VT_R8 ||
7164 leftvt == VT_UI1 || rightvt == VT_UI1)
7165 {
7166 if ((leftvt == VT_UI1 && rightvt == VT_R4) ||
7167 (leftvt == VT_R4 && rightvt == VT_UI1))
7168 resvt = VT_R4;
7169 else if ((leftvt == VT_R4 && (rightvt == VT_BOOL ||
7170 rightvt == VT_I2)) || (rightvt == VT_R4 &&
7171 (leftvt == VT_BOOL || leftvt == VT_I2)))
7172 resvt = VT_R4;
7173 else
7174 resvt = VT_R8;
7175 }
7176 else if (leftvt == VT_R4 || rightvt == VT_R4)
7177 resvt = VT_R4;
7178 }
7179 else if (leftvt == VT_NULL && rightvt == VT_EMPTY)
7180 resvt = VT_NULL;
7181 else
7182 bFail = TRUE;
7183
7184 /* Native VarDiv always returns an error when using extra flags */
7185 if (ExtraFlags[i] != 0)
7186 bFail = TRUE;
7187
7188 hres = pVarDiv(&left, &right, &result);
7189
7190 /* Check expected HRESULT and if result variant type is correct */
7191 if (bFail)
7192 ok (hres == DISP_E_BADVARTYPE || hres == DISP_E_TYPEMISMATCH ||
7193 hres == DISP_E_OVERFLOW || hres == DISP_E_DIVBYZERO,
7194 "VarDiv: %s|0x%X, %s|0x%X: got vt %s hr 0x%X\n",
7195 vtstr(leftvt), ExtraFlags[i], vtstr(rightvt), ExtraFlags[i],
7196 vtstr(V_VT(&result)), hres);
7197 else
7198 ok (hres == S_OK && resvt == V_VT(&result),
7199 "VarDiv: %s|0x%X, %s|0x%X: expected vt %s hr 0x%X, got vt %s hr 0x%X\n",
7200 vtstr(leftvt), ExtraFlags[i], vtstr(rightvt), ExtraFlags[i], vtstr(resvt),
7201 S_OK, vtstr(V_VT(&result)), hres);
7202 }
7203 }
7204 }
7205
7206 /* Test return values for all the good cases */
7207 VARDIV(EMPTY,0,NULL,0,NULL,0);
7208 VARDIV(EMPTY,0,I2,2,R8,0.0);
7209 VARDIV(EMPTY,0,I4,2,R8,0.0);
7210 VARDIV(EMPTY,0,R4,2.0f,R4,0.0f);
7211 VARDIV(EMPTY,0,R8,2.0,R8,0.0);
7212 VARDIV(EMPTY,0,DATE,2.0,R8,0.0);
7213 VARDIV(EMPTY,0,BSTR,num2_str,R8,0.0);
7214 VARDIV(EMPTY,0,BOOL,VARIANT_TRUE,R8,0.0);
7215 VARDIV(EMPTY,0,UI1,2,R8,0.0);
7216 if (HAVE_OLEAUT32_I8)
7217 {
7218 VARDIV(EMPTY,0,I8,2,R8,0.0);
7219 }
7220 VARDIV(NULL,0,EMPTY,0,NULL,0);
7221 VARDIV(NULL,0,NULL,0,NULL,0);
7222 VARDIV(NULL,0,I2,2,NULL,0);
7223 VARDIV(NULL,0,I4,2,NULL,0);
7224 VARDIV(NULL,0,R4,2.0f,NULL,0);
7225 VARDIV(NULL,0,R8,2.0,NULL,0);
7226 VARDIV(NULL,0,DATE,2,NULL,0);
7227 VARDIV(NULL,0,BSTR,num2_str,NULL,0);
7228 VARDIV(NULL,0,BOOL,VARIANT_TRUE,NULL,0);
7229 VARDIV(NULL,0,UI1,2,NULL,0);
7230 if (HAVE_OLEAUT32_I8)
7231 {
7232 VARDIV(NULL,0,I8,2,NULL,0);
7233 }
7234 VARDIV(I2,2,NULL,0,NULL,0);
7235 VARDIV(I2,1,I2,2,R8,0.5);
7236 VARDIV(I2,1,I4,2,R8,0.5);
7237 VARDIV(I2,1,R4,2,R4,0.5f);
7238 VARDIV(I2,1,R8,2.0,R8,0.5);
7239 VARDIV(I2,1,DATE,2,R8,0.5);
7240 VARDIV(I2,1,BOOL,VARIANT_TRUE,R8,-1.0);
7241 VARDIV(I2,1,UI1,2,R8,0.5);
7242 if (HAVE_OLEAUT32_I8)
7243 {
7244 VARDIV(I2,1,I8,2,R8,0.5);
7245 }
7246 VARDIV(I4,1,NULL,0,NULL,0);
7247 VARDIV(I4,1,I2,2,R8,0.5);
7248 VARDIV(I4,1,I4,2,R8,0.5);
7249 VARDIV(I4,1,R4,2.0f,R8,0.5);
7250 VARDIV(I4,1,R8,2.0,R8,0.5);
7251 VARDIV(I4,1,DATE,2,R8,0.5);
7252 VARDIV(I4,1,BSTR,num2_str,R8,0.5);
7253 VARDIV(I4,1,BOOL,VARIANT_TRUE,R8,-1.0);
7254 VARDIV(I4,1,UI1,2,R8,0.5);
7255 if (HAVE_OLEAUT32_I8)
7256 {
7257 VARDIV(I4,1,I8,2,R8,0.5);
7258 }
7259 VARDIV(R4,1.0f,NULL,0,NULL,0);
7260 VARDIV(R4,1.0f,I2,2,R4,0.5f);
7261 VARDIV(R4,1.0f,I4,2,R8,0.5);
7262 VARDIV(R4,1.0f,R4,2.0f,R4,0.5f);
7263 VARDIV(R4,1.0f,R8,2.0,R8,0.5);
7264 VARDIV(R4,1.0f,DATE,2,R8,0.5);
7265 VARDIV(R4,1.0f,BSTR,num2_str,R8,0.5);
7266 VARDIV(R4,1.0f,BOOL,VARIANT_TRUE,R4,-1);
7267 VARDIV(R4,1.0f,UI1,2,R4,0.5f);
7268 if (HAVE_OLEAUT32_I8)
7269 {
7270 VARDIV(R4,1.0f,I8,2,R8,0.5);
7271 }
7272 VARDIV(R8,1.0,NULL,0,NULL,0);
7273 VARDIV(R8,1.0,I2,2,R8,0.5);
7274 VARDIV(R8,1.0,I4,2,R8,0.5);
7275 VARDIV(R8,1.0,R4,2.0f,R8,0.5);
7276 VARDIV(R8,1.0,R8,2.0,R8,0.5);
7277 VARDIV(R8,1.0,DATE,2,R8,0.5);
7278 VARDIV(R8,1.0,BSTR,num2_str,R8,0.5);
7279 VARDIV(R8,1.0,BOOL,VARIANT_TRUE,R8,-1.0);
7280 VARDIV(R8,1.0,UI1,2,R8,0.5);
7281 if (HAVE_OLEAUT32_I8)
7282 {
7283 VARDIV(R8,1.0,I8,2,R8,0.5);
7284 }
7285 VARDIV(DATE,1,NULL,0,NULL,0);
7286 VARDIV(DATE,1,I2,2,R8,0.5);
7287 VARDIV(DATE,1,I4,2,R8,0.5);
7288 VARDIV(DATE,1,R4,2.0f,R8,0.5);
7289 VARDIV(DATE,1,R8,2.0,R8,0.5);
7290 VARDIV(DATE,1,DATE,2,R8,0.5);
7291 VARDIV(DATE,1,BSTR,num2_str,R8,0.5);
7292 VARDIV(DATE,1,BOOL,VARIANT_TRUE,R8,-1.0);
7293 VARDIV(DATE,1,UI1,2,R8,0.5);
7294 if (HAVE_OLEAUT32_I8)
7295 {
7296 VARDIV(DATE,1,I8,2,R8,0.5);
7297 }
7298 VARDIV(BSTR,num1_str,NULL,0,NULL,0);
7299 VARDIV(BSTR,num1_str,I2,2,R8,0.5);
7300 VARDIV(BSTR,num1_str,I4,2,R8,0.5);
7301 VARDIV(BSTR,num1_str,R4,2.0f,R8,0.5);
7302 VARDIV(BSTR,num1_str,R8,2.0,R8,0.5);
7303 VARDIV(BSTR,num1_str,DATE,2,R8,0.5);
7304 VARDIV(BSTR,num1_str,BSTR,num2_str,R8,0.5);
7305 VARDIV(BSTR,num1_str,BOOL,VARIANT_TRUE,R8,-1);
7306 VARDIV(BSTR,num1_str,UI1,2,R8,0.5);
7307 if (HAVE_OLEAUT32_I8)
7308 {
7309 VARDIV(BSTR,num1_str,I8,2,R8,0.5);
7310 }
7311 VARDIV(BOOL,VARIANT_TRUE,NULL,0,NULL,0);
7312 VARDIV(BOOL,VARIANT_TRUE,I2,1,R8,-1.0);
7313 VARDIV(BOOL,VARIANT_FALSE,I2,1,R8,0.0);
7314 VARDIV(BOOL,VARIANT_TRUE,I4,1,R8,-1.0);
7315 VARDIV(BOOL,VARIANT_FALSE,I4,1,R8,0.0);
7316 VARDIV(BOOL,VARIANT_TRUE,R4,1,R4,-1.0f);
7317 VARDIV(BOOL,VARIANT_FALSE,R4,1,R4,0.0f);
7318 VARDIV(BOOL,VARIANT_TRUE,R8,1.0,R8,-1.0);
7319 VARDIV(BOOL,VARIANT_FALSE,R8,1.0,R8,0.0);
7320 VARDIV(BOOL,VARIANT_FALSE,DATE,2,R8,0.0);
7321 VARDIV(BOOL,VARIANT_FALSE,BSTR,num2_str,R8,0.0);
7322 VARDIV(BOOL,VARIANT_TRUE,BOOL,VARIANT_TRUE,R8,1.0);
7323 VARDIV(BOOL,VARIANT_FALSE,BOOL,VARIANT_TRUE,R8,0.0);
7324 VARDIV(BOOL,VARIANT_TRUE,UI1,1,R8,-1.0);
7325 if (HAVE_OLEAUT32_I8)
7326 {
7327 VARDIV(BOOL,VARIANT_TRUE,I8,1,R8,-1.0);
7328 }
7329 VARDIV(UI1,1,NULL,0,NULL,0);
7330 VARDIV(UI1,1,I2,2,R8,0.5);
7331 VARDIV(UI1,1,I4,2,R8,0.5);
7332 VARDIV(UI1,1,R4,2.0f,R4,0.5f);
7333 VARDIV(UI1,1,R8,2.0,R8,0.5);
7334 VARDIV(UI1,1,DATE,2,R8,0.5);
7335 VARDIV(UI1,1,BSTR,num2_str,R8,0.5);
7336 VARDIV(UI1,1,BOOL,VARIANT_TRUE,R8,-1);
7337 VARDIV(UI1,1,UI1,2,R8,0.5);
7338 if (HAVE_OLEAUT32_I8)
7339 {
7340 VARDIV(UI1,1,I8,2,R8,0.5);
7341 VARDIV(I8,1,NULL,0,NULL,0);
7342 VARDIV(I8,1,I2,2,R8,0.5);
7343 VARDIV(I8,1,I4,2,R8,0.5);
7344 VARDIV(I8,1,R4,2.0f,R8,0.5);
7345 VARDIV(I8,1,R8,2.0,R8,0.5);
7346 VARDIV(I8,1,DATE,2,R8,0.5);
7347 VARDIV(I8,1,BSTR,num2_str,R8,0.5);
7348 VARDIV(I8,1,BOOL,VARIANT_TRUE,R8,-1);
7349 VARDIV(I8,1,UI1,2,R8,0.5);
7350 VARDIV(I8,1,I8,2,R8,0.5);
7351 }
7352
7353 /* Manually test some VT_CY, VT_DECIMAL variants */
7354 V_VT(&cy) = VT_CY;
7355 hres = VarCyFromI4(10000, &V_CY(&cy));
7356 ok(hres == S_OK, "VarCyFromI4 failed!\n");
7357 V_VT(&dec) = VT_DECIMAL;
7358 hres = VarDecFromR8(2.0, &V_DECIMAL(&dec));
7359 ok(hres == S_OK, "VarDecFromR4 failed!\n");
7360 memset(&left, 0, sizeof(left));
7361 memset(&right, 0, sizeof(right));
7362 V_VT(&left) = VT_I4;
7363 V_I4(&left) = 100;
7364 V_VT(&right) = VT_UI1;
7365 V_UI1(&right) = 2;
7366
7367 hres = pVarDiv(&cy, &cy, &result);
7368 ok(hres == S_OK && V_VT(&result) == VT_R8,
7369 "VARDIV: expected coerced type VT_R8, got %s!\n", vtstr(V_VT(&result)));
7370 ok(hres == S_OK && EQ_DOUBLE(V_R8(&result), 1.0),
7371 "VARDIV: CY value %f, expected %f\n", V_R8(&result), (double)1.0);
7372
7373 hres = pVarDiv(&cy, &right, &result);
7374 ok(hres == S_OK && V_VT(&result) == VT_R8,
7375 "VARDIV: expected coerced type VT_R8, got %s!\n", vtstr(V_VT(&result)));
7376 ok(hres == S_OK && EQ_DOUBLE(V_R8(&result), 5000.0),
7377 "VARDIV: CY value %f, expected %f\n", V_R8(&result), (double)5000.0);
7378
7379 hres = pVarDiv(&left, &cy, &result);
7380 ok(hres == S_OK && V_VT(&result) == VT_R8,
7381 "VARDIV: expected coerced type VT_R8, got %s!\n", vtstr(V_VT(&result)));
7382 ok(hres == S_OK && EQ_DOUBLE(V_R8(&result), 0.01),
7383 "VARDIV: CY value %f, expected %f\n", V_R8(&result), (double)0.01);
7384
7385 hres = pVarDiv(&left, &dec, &result);
7386 ok(hres == S_OK && V_VT(&result) == VT_DECIMAL,
7387 "VARDIV: expected coerced type VT_DECIMAL, got %s!\n", vtstr(V_VT(&result)));
7388 hres = VarR8FromDec(&V_DECIMAL(&result), &r);
7389 ok(hres == S_OK && EQ_DOUBLE(r, 50.0),
7390 "VARDIV: DECIMAL value %f, expected %f\n", r, (double)50.0);
7391
7392 hres = pVarDiv(&dec, &dec, &result);
7393 ok(hres == S_OK && V_VT(&result) == VT_DECIMAL,
7394 "VARDIV: expected coerced type VT_DECIMAL, got %s!\n", vtstr(V_VT(&result)));
7395 hres = VarR8FromDec(&V_DECIMAL(&result), &r);
7396 ok(hres == S_OK && EQ_DOUBLE(r, 1.0),
7397 "VARDIV: DECIMAL value %f, expected %f\n", r, (double)1.0);
7398
7399 hres = pVarDiv(&dec, &right, &result);
7400 ok(hres == S_OK && V_VT(&result) == VT_DECIMAL,
7401 "VARDIV: expected coerced type VT_DECIMAL, got %s!\n", vtstr(V_VT(&result)));
7402 hres = VarR8FromDec(&V_DECIMAL(&result), &r);
7403 ok(hres == S_OK && EQ_DOUBLE(r, 1.0),
7404 "VARDIV: DECIMAL value %f, expected %f\n", r, (double)1.0);
7405
7406 /* Check for division by zero and overflow */
7407 V_VT(&left) = VT_R8;
7408 V_I4(&left) = 1;
7409 V_VT(&right) = VT_R8;
7410 V_I4(&right) = 0;
7411 hres = pVarDiv(&left, &right, &result);
7412 ok(hres == DISP_E_DIVBYZERO && V_VT(&result) == VT_EMPTY,
7413 "VARDIV: Division by (1.0/0.0) should result in DISP_E_DIVBYZERO but got 0x%X\n", hres);
7414
7415 V_VT(&left) = VT_R8;
7416 V_I4(&left) = 0;
7417 V_VT(&right) = VT_R8;
7418 V_I4(&right) = 0;
7419 hres = pVarDiv(&left, &right, &result);
7420 ok(hres == DISP_E_OVERFLOW && V_VT(&result) == VT_EMPTY,
7421 "VARDIV: Division by (0.0/0.0) should result in DISP_E_OVERFLOW but got 0x%X\n", hres);
7422
7423 SysFreeString(num1_str);
7424 SysFreeString(num2_str);
7425 }
7426
7427 static HRESULT (WINAPI *pVarIdiv)(LPVARIANT,LPVARIANT,LPVARIANT);
7428
7429 #define VARIDIV(vt1,val1,vt2,val2,rvt,rval) \
7430 V_VT(&left) = VT_##vt1; V_##vt1(&left) = val1; \
7431 V_VT(&right) = VT_##vt2; V_##vt2(&right) = val2; \
7432 V_VT(&exp) = VT_##rvt; V_##rvt(&exp) = rval; \
7433 test_var_call2( __LINE__, pVarIdiv, &left, &right, &exp )
7434
7435 /* Skip any type that is not defined or produces an error for every case */
7436 #define SKIPTESTIDIV(a) \
7437 if (a == VT_ERROR || a == VT_VARIANT || \
7438 a == VT_DISPATCH || a == VT_UNKNOWN || \
7439 a == VT_RECORD || a > VT_UINT || \
7440 a == 15 /*not defined*/) \
7441 continue
7442
7443 static void test_VarIdiv(void)
7444 {
7445 static const WCHAR str1[] = { '1','\0' };
7446 static const WCHAR str2[] = { '2','\0' };
7447 VARIANT left, right, exp, result, cy, dec;
7448 BSTR num1_str, num2_str;
7449 VARTYPE i;
7450 HRESULT hres;
7451
7452 CHECKPTR(VarIdiv);
7453
7454 num1_str = SysAllocString(str1);
7455 num2_str = SysAllocString(str2);
7456
7457 /* Test all possible flag/vt combinations & the resulting vt type */
7458 for (i = 0; i < sizeof(ExtraFlags)/sizeof(ExtraFlags[0]); i++)
7459 {
7460 VARTYPE leftvt, rightvt, resvt;
7461
7462 for (leftvt = 0; leftvt <= VT_BSTR_BLOB; leftvt++)
7463 {
7464 SKIPTESTIDIV(leftvt);
7465
7466 /* Check if we need/have support for I8 and/or UI8 */
7467 if ((leftvt == VT_I8 || leftvt == VT_UI8) && !HAVE_OLEAUT32_I8)
7468 continue;
7469
7470 for (rightvt = 0; rightvt <= VT_BSTR_BLOB; rightvt++)
7471 {
7472 BOOL bFail = FALSE;
7473 SKIPTESTIDIV(rightvt);
7474
7475 /* Native crashes with extra flag VT_BYREF */
7476 if (ExtraFlags[i] == VT_BYREF)
7477 continue;
7478
7479 /* Check if we need/have support for I8 and/or UI8 */
7480 if ((rightvt == VT_I8 || rightvt == VT_UI8) && !HAVE_OLEAUT32_I8)
7481 continue;
7482
7483 memset(&left, 0, sizeof(left));
7484 memset(&right, 0, sizeof(right));
7485 V_VT(&left) = leftvt | ExtraFlags[i];
7486 V_VT(&right) = rightvt | ExtraFlags[i];
7487 V_VT(&result) = VT_EMPTY;
7488 resvt = VT_EMPTY;
7489
7490 if (leftvt == VT_BSTR)
7491 V_BSTR(&left) = num2_str;
7492 else if (leftvt == VT_DECIMAL)
7493 {
7494 VarDecFromR8(2.0, &V_DECIMAL(&left));
7495 V_VT(&left) = leftvt | ExtraFlags[i];
7496 }
7497
7498 /* Division by 0 is undefined */
7499 switch(rightvt)
7500 {
7501 case VT_BSTR:
7502 V_BSTR(&right) = num2_str;
7503 break;
7504 case VT_DECIMAL:
7505 VarDecFromR8(2.0, &V_DECIMAL(&right));
7506 V_VT(&right) = rightvt | ExtraFlags[i];
7507 break;
7508 case VT_BOOL:
7509 V_BOOL(&right) = VARIANT_TRUE;
7510 break;
7511 case VT_CY:
7512 VarCyFromI4(10000, &V_CY(&right));
7513 V_VT(&right) = rightvt | ExtraFlags[i];
7514 break;
7515 case VT_I2: V_I2(&right) = 2; break;
7516 case VT_I4: V_I4(&right) = 2; break;
7517 case VT_R4: V_R4(&right) = 2.0f; break;
7518 case VT_R8: V_R8(&right) = 2.0; break;
7519 case VT_DATE: V_DATE(&right) = 2; break;
7520 case VT_I1: V_I1(&right) = 2; break;
7521 case VT_UI1: V_UI1(&right) = 2; break;
7522 case VT_UI2: V_UI2(&right) = 2; break;
7523 case VT_UI4: V_UI4(&right) = 2; break;
7524 case VT_I8: V_I8(&right) = 2; break;
7525 case VT_UI8: V_UI8(&right) = 2; break;
7526 case VT_INT: V_INT(&right) = 2; break;
7527 case VT_UINT: V_UINT(&right) = 2; break;
7528 default: break;
7529 }
7530
7531 /* Native VarIdiv always returns an error when using extra
7532 * flags or if the variant combination is I8 and INT.
7533 */
7534 if ((leftvt == VT_I8 && rightvt == VT_INT) ||
7535 (leftvt == VT_INT && rightvt == VT_I8) ||
7536 (rightvt == VT_EMPTY && leftvt != VT_NULL) ||
7537 ExtraFlags[i] != 0)
7538 bFail = TRUE;
7539
7540 /* Determine variant type */
7541 else if (leftvt == VT_NULL || rightvt == VT_NULL)
7542 resvt = VT_NULL;
7543 else if (leftvt == VT_I8 || rightvt == VT_I8)
7544 resvt = VT_I8;
7545 else if (leftvt == VT_I4 || rightvt == VT_I4 ||
7546 leftvt == VT_INT || rightvt == VT_INT ||
7547 leftvt == VT_UINT || rightvt == VT_UINT ||
7548 leftvt == VT_UI8 || rightvt == VT_UI8 ||
7549 leftvt == VT_UI4 || rightvt == VT_UI4 ||
7550 leftvt == VT_UI2 || rightvt == VT_UI2 ||
7551 leftvt == VT_I1 || rightvt == VT_I1 ||
7552 leftvt == VT_BSTR || rightvt == VT_BSTR ||
7553 leftvt == VT_DATE || rightvt == VT_DATE ||
7554 leftvt == VT_CY || rightvt == VT_CY ||
7555 leftvt == VT_DECIMAL || rightvt == VT_DECIMAL ||
7556 leftvt == VT_R8 || rightvt == VT_R8 ||
7557 leftvt == VT_R4 || rightvt == VT_R4)
7558 resvt = VT_I4;
7559 else if (leftvt == VT_I2 || rightvt == VT_I2 ||
7560 leftvt == VT_BOOL || rightvt == VT_BOOL ||
7561 leftvt == VT_EMPTY)
7562 resvt = VT_I2;
7563 else if (leftvt == VT_UI1 || rightvt == VT_UI1)
7564 resvt = VT_UI1;
7565 else
7566 bFail = TRUE;
7567
7568 hres = pVarIdiv(&left, &right, &result);
7569
7570 /* Check expected HRESULT and if result variant type is correct */
7571 if (bFail)
7572 ok (hres == DISP_E_BADVARTYPE || hres == DISP_E_TYPEMISMATCH ||
7573 hres == DISP_E_DIVBYZERO,
7574 "VarIdiv: %s|0x%X, %s|0x%X: got vt %s hr 0x%X\n",
7575 vtstr(leftvt), ExtraFlags[i], vtstr(rightvt), ExtraFlags[i],
7576 vtstr(V_VT(&result)), hres);
7577 else
7578 ok (hres == S_OK && resvt == V_VT(&result),
7579 "VarIdiv: %s|0x%X, %s|0x%X: expected vt %s hr 0x%X, got vt %s hr 0x%X\n",
7580 vtstr(leftvt), ExtraFlags[i], vtstr(rightvt), ExtraFlags[i], vtstr(resvt),
7581 S_OK, vtstr(V_VT(&result)), hres);
7582 }
7583 }
7584 }
7585
7586 /* Test return values for all the good cases */
7587 VARIDIV(EMPTY,0,NULL,0,NULL,0);
7588 VARIDIV(EMPTY,0,I2,1,I2,0);
7589 VARIDIV(EMPTY,0,I4,1,I4,0);
7590 VARIDIV(EMPTY,0,R4,1.0f,I4,0);
7591 VARIDIV(EMPTY,0,R8,1.0,I4,0);
7592 VARIDIV(EMPTY,0,DATE,1.0,I4,0);
7593 VARIDIV(EMPTY,0,BSTR,num1_str,I4,0);
7594 VARIDIV(EMPTY,0,BOOL,VARIANT_TRUE,I2,0);
7595 VARIDIV(EMPTY,0,I1,1,I4,0);
7596 VARIDIV(EMPTY,0,UI1,1,I2,0);
7597 VARIDIV(EMPTY,0,UI2,1,I4,0);
7598 VARIDIV(EMPTY,0,UI4,1,I4,0);
7599 if (HAVE_OLEAUT32_I8)
7600 {
7601 VARIDIV(EMPTY,0,I8,1,I8,0);
7602 VARIDIV(EMPTY,0,UI8,1,I4,0);
7603 }
7604 VARIDIV(EMPTY,0,INT,1,I4,0);
7605 VARIDIV(EMPTY,0,UINT,1,I4,0);
7606 VARIDIV(NULL,0,EMPTY,0,NULL,0);
7607 VARIDIV(NULL,0,NULL,0,NULL,0);
7608 VARIDIV(NULL,0,I2,1,NULL,0);
7609 VARIDIV(NULL,0,I4,1,NULL,0);
7610 VARIDIV(NULL,0,R4,1,NULL,0);
7611 VARIDIV(NULL,0,R8,1,NULL,0);
7612 VARIDIV(NULL,0,DATE,1,NULL,0);
7613 VARIDIV(NULL,0,BSTR,num1_str,NULL,0);
7614 VARIDIV(NULL,0,BOOL,VARIANT_TRUE,NULL,0);
7615 VARIDIV(NULL,0,I1,1,NULL,0);
7616 VARIDIV(NULL,0,UI1,1,NULL,0);
7617 VARIDIV(NULL,0,UI2,1,NULL,0);
7618 VARIDIV(NULL,0,UI4,1,NULL,0);
7619 if (HAVE_OLEAUT32_I8)
7620 {
7621 VARIDIV(NULL,0,I8,1,NULL,0);
7622 VARIDIV(NULL,0,UI8,1,NULL,0);
7623 }
7624 VARIDIV(NULL,0,INT,1,NULL,0);
7625 VARIDIV(NULL,0,UINT,1,NULL,0);
7626 VARIDIV(I2,2,NULL,0,NULL,0);
7627 VARIDIV(I2,2,I2,1,I2,2);
7628 VARIDIV(I2,2,I4,1,I4,2);
7629 VARIDIV(I2,2,R4,1,I4,2);
7630 VARIDIV(I2,2,R8,1,I4,2);
7631 VARIDIV(I2,2,DATE,1,I4,2);
7632 VARIDIV(I2,2,BSTR,num1_str,I4,2);
7633 VARIDIV(I2,2,BOOL,VARIANT_TRUE,I2,-2);
7634 VARIDIV(I2,2,I1,1,I4,2);
7635 VARIDIV(I2,2,UI1,1,I2,2);
7636 VARIDIV(I2,2,UI2,1,I4,2);
7637 VARIDIV(I2,2,UI4,1,I4,2);
7638 if (HAVE_OLEAUT32_I8)
7639 {
7640 VARIDIV(I2,2,I8,1,I8,2);
7641 VARIDIV(I2,2,UI8,1,I4,2);
7642 }
7643 VARIDIV(I2,2,INT,1,I4,2);
7644 VARIDIV(I2,2,UINT,1,I4,2);
7645 VARIDIV(I4,2,NULL,0,NULL,0);
7646 VARIDIV(I4,2,I2,1,I4,2);
7647 VARIDIV(I4,2,I4,1,I4,2);
7648 VARIDIV(I4,2,R4,1,I4,2);
7649 VARIDIV(I4,2,R8,1,I4,2);
7650 VARIDIV(I4,2,DATE,1,I4,2);
7651 VARIDIV(I4,2,BSTR,num1_str,I4,2);
7652 VARIDIV(I4,2,BOOL,VARIANT_TRUE,I4,-2);
7653 VARIDIV(I4,2,I1,1,I4,2);
7654 VARIDIV(I4,2,UI1,1,I4,2);
7655 VARIDIV(I4,2,UI2,1,I4,2);
7656 VARIDIV(I4,2,UI4,1,I4,2);
7657 if (HAVE_OLEAUT32_I8)
7658 {
7659 VARIDIV(I4,2,I8,1,I8,2);
7660 VARIDIV(I4,2,UI8,1,I4,2);
7661 }
7662 VARIDIV(I4,2,INT,1,I4,2);
7663 VARIDIV(I4,2,UINT,1,I4,2);
7664 VARIDIV(R4,2.0f,NULL,0,NULL,0);
7665 VARIDIV(R4,2.0f,I2,1,I4,2);
7666 VARIDIV(R4,2.0f,I4,1,I4,2);
7667 VARIDIV(R4,2.0f,R4,1.0f,I4,2);
7668 VARIDIV(R4,2.0f,R8,1.0,I4,2);
7669 VARIDIV(R4,2.0f,DATE,1,I4,2);
7670 VARIDIV(R4,2.0f,BSTR,num1_str,I4,2);
7671 VARIDIV(R4,2.0f,BOOL,VARIANT_TRUE,I4,-2);
7672 VARIDIV(R4,2.0f,I1,1,I4,2);
7673 VARIDIV(R4,2.0f,UI1,1,I4,2);
7674 VARIDIV(R4,2.0f,UI2,1,I4,2);
7675 VARIDIV(R4,2.0f,UI4,1,I4,2);
7676 if (HAVE_OLEAUT32_I8)
7677 {
7678 VARIDIV(R4,2.0f,I8,1,I8,2);
7679 VARIDIV(R4,2.0f,UI8,1,I4,2);
7680 }
7681 VARIDIV(R4,2.0f,INT,1,I4,2);
7682 VARIDIV(R4,2.0f,UINT,1,I4,2);
7683 VARIDIV(R8,2.0,NULL,0,NULL,0);
7684 VARIDIV(R8,2.0,I2,1,I4,2);
7685 VARIDIV(R8,2.0,I4,1,I4,2);
7686 VARIDIV(R8,2.0,R4,1,I4,2);
7687 VARIDIV(R8,2.0,R8,1,I4,2);
7688 VARIDIV(R8,2.0,DATE,1,I4,2);
7689 VARIDIV(R8,2.0,BSTR,num1_str,I4,2);
7690 VARIDIV(R8,2.0,BOOL,VARIANT_TRUE,I4,-2);
7691 VARIDIV(R8,2.0,I1,1,I4,2);
7692 VARIDIV(R8,2.0,UI1,1,I4,2);
7693 VARIDIV(R8,2.0,UI2,1,I4,2);
7694 VARIDIV(R8,2.0,UI4,1,I4,2);
7695 if (HAVE_OLEAUT32_I8)
7696 {
7697 VARIDIV(R8,2.0,I8,1,I8,2);
7698 VARIDIV(R8,2.0,UI8,1,I4,2);
7699 }
7700 VARIDIV(R8,2.0,INT,1,I4,2);
7701 VARIDIV(R8,2.0,UINT,1,I4,2);
7702 VARIDIV(DATE,2,NULL,0,NULL,0);
7703 VARIDIV(DATE,2,I2,1,I4,2);
7704 VARIDIV(DATE,2,I4,1,I4,2);
7705 VARIDIV(DATE,2,R4,1,I4,2);
7706 VARIDIV(DATE,2,R8,1,I4,2);
7707 VARIDIV(DATE,2,DATE,1,I4,2);
7708 VARIDIV(DATE,2,BSTR,num1_str,I4,2);
7709 VARIDIV(DATE,2,BOOL,VARIANT_TRUE,I4,-2);
7710 VARIDIV(DATE,2,I1,1,I4,2);
7711 VARIDIV(DATE,2,UI1,1,I4,2);
7712 VARIDIV(DATE,2,UI2,1,I4,2);
7713 VARIDIV(DATE,2,UI4,1,I4,2);
7714 if (HAVE_OLEAUT32_I8)
7715 {
7716 VARIDIV(DATE,2,I8,1,I8,2);
7717 VARIDIV(DATE,2,UI8,1,I4,2);
7718 }
7719 VARIDIV(DATE,2,INT,1,I4,2);
7720 VARIDIV(DATE,2,UINT,1,I4,2);
7721 VARIDIV(BSTR,num2_str,NULL,0,NULL,0);
7722 VARIDIV(BSTR,num2_str,I2,1,I4,2);
7723 VARIDIV(BSTR,num2_str,I4,1,I4,2);
7724 VARIDIV(BSTR,num2_str,R4,1.0f,I4,2);
7725 VARIDIV(BSTR,num2_str,R8,1.0,I4,2);
7726 VARIDIV(BSTR,num2_str,DATE,1,I4,2);
7727 VARIDIV(BSTR,num2_str,BSTR,num1_str,I4,2);
7728 VARIDIV(BSTR,num2_str,BOOL,VARIANT_TRUE,I4,-2);
7729 VARIDIV(BSTR,num2_str,I1,1,I4,2);
7730 VARIDIV(BSTR,num2_str,UI1,1,I4,2);
7731 VARIDIV(BSTR,num2_str,UI2,1,I4,2);
7732 VARIDIV(BSTR,num2_str,UI4,1,I4,2);
7733 if (HAVE_OLEAUT32_I8)
7734 {
7735 VARIDIV(BSTR,num2_str,I8,1,I8,2);
7736 VARIDIV(BSTR,num2_str,UI8,1,I4,2);
7737 }
7738 VARIDIV(BSTR,num2_str,INT,1,I4,2);
7739 VARIDIV(BSTR,num2_str,UINT,1,I4,2);
7740 VARIDIV(BOOL,VARIANT_TRUE,NULL,0,NULL,0);
7741 VARIDIV(BOOL,VARIANT_TRUE,I2,1,I2,-1);
7742 VARIDIV(BOOL,VARIANT_TRUE,I4,1,I4,-1);
7743 VARIDIV(BOOL,VARIANT_TRUE,R4,1.0f,I4,-1);
7744 VARIDIV(BOOL,VARIANT_TRUE,R8,1.0,I4,-1);
7745 VARIDIV(BOOL,VARIANT_TRUE,DATE,1,I4,-1);
7746 VARIDIV(BOOL,VARIANT_TRUE,BSTR,num1_str,I4,-1);
7747 VARIDIV(BOOL,VARIANT_TRUE,BOOL,VARIANT_TRUE,I2,1);
7748 VARIDIV(BOOL,VARIANT_TRUE,I1,1,I4,-1);
7749 VARIDIV(BOOL,VARIANT_TRUE,UI1,1,I2,-1);
7750 VARIDIV(BOOL,VARIANT_TRUE,UI2,1,I4,-1);
7751 VARIDIV(BOOL,VARIANT_TRUE,UI4,1,I4,-1);
7752 if (HAVE_OLEAUT32_I8)
7753 {
7754 VARIDIV(BOOL,VARIANT_TRUE,I8,1,I8,-1);
7755 VARIDIV(BOOL,VARIANT_TRUE,UI8,1,I4,-1);
7756 }
7757 VARIDIV(BOOL,VARIANT_TRUE,INT,1,I4,-1);
7758 VARIDIV(BOOL,VARIANT_TRUE,UINT,1,I4,-1);
7759 VARIDIV(I1,2,NULL,0,NULL,0);
7760 VARIDIV(I1,2,I2,1,I4,2);
7761 VARIDIV(I1,2,I4,1,I4,2);
7762 VARIDIV(I1,2,R4,1.0f,I4,2);
7763 VARIDIV(I1,2,R8,1.0,I4,2);
7764 VARIDIV(I1,2,DATE,1,I4,2);
7765 VARIDIV(I1,2,BSTR,num1_str,I4,2);
7766 VARIDIV(I1,2,BOOL,VARIANT_TRUE,I4,-2);
7767 VARIDIV(I1,2,I1,1,I4,2);
7768 VARIDIV(I1,2,UI1,1,I4,2);
7769 VARIDIV(I1,2,UI2,1,I4,2);
7770 VARIDIV(I1,2,UI4,1,I4,2);
7771 if (HAVE_OLEAUT32_I8)
7772 {
7773 VARIDIV(I1,2,I8,1,I8,2);
7774 VARIDIV(I1,2,UI8,1,I4,2);
7775 }
7776 VARIDIV(I1,2,INT,1,I4,2);
7777 VARIDIV(I1,2,UINT,1,I4,2);
7778 VARIDIV(UI1,2,NULL,0,NULL,0);
7779 VARIDIV(UI1,2,I2,1,I2,2);
7780 VARIDIV(UI1,2,I4,1,I4,2);
7781 VARIDIV(UI1,2,R4,1.0f,I4,2);
7782 VARIDIV(UI1,2,R8,1.0,I4,2);
7783 VARIDIV(UI1,2,DATE,1,I4,2);
7784 VARIDIV(UI1,2,BSTR,num1_str,I4,2);
7785 VARIDIV(UI1,2,BOOL,VARIANT_TRUE,I2,-2);
7786 VARIDIV(UI1,2,I1,1,I4,2);
7787 VARIDIV(UI1,2,UI1,1,UI1,2);
7788 VARIDIV(UI1,2,UI2,1,I4,2);
7789 VARIDIV(UI1,2,UI4,1,I4,2);
7790 if (HAVE_OLEAUT32_I8)
7791 {
7792 VARIDIV(UI1,2,I8,1,I8,2);
7793 VARIDIV(UI1,2,UI8,1,I4,2);
7794 }
7795 VARIDIV(UI1,2,INT,1,I4,2);
7796 VARIDIV(UI1,2,UINT,1,I4,2);
7797 VARIDIV(UI2,2,NULL,0,NULL,0);
7798 VARIDIV(UI2,2,I2,1,I4,2);
7799 VARIDIV(UI2,2,I4,1,I4,2);
7800 VARIDIV(UI2,2,R4,1.0f,I4,2);
7801 VARIDIV(UI2,2,R8,1.0,I4,2);
7802 VARIDIV(UI2,2,DATE,1,I4,2);
7803 VARIDIV(UI2,2,BSTR,num1_str,I4,2);
7804 VARIDIV(UI2,2,BOOL,VARIANT_TRUE,I4,-2);
7805 VARIDIV(UI2,2,I1,1,I4,2);
7806 VARIDIV(UI2,2,UI1,1,I4,2);
7807 VARIDIV(UI2,2,UI2,1,I4,2);
7808 VARIDIV(UI2,2,UI4,1,I4,2);
7809 if (HAVE_OLEAUT32_I8)
7810 {
7811 VARIDIV(UI2,2,I8,1,I8,2);
7812 VARIDIV(UI2,2,UI8,1,I4,2);
7813 }
7814 VARIDIV(UI2,2,INT,1,I4,2);
7815 VARIDIV(UI2,2,UINT,1,I4,2);
7816 VARIDIV(UI4,2,NULL,0,NULL,0);
7817 VARIDIV(UI4,2,I2,1,I4,2);
7818 VARIDIV(UI4,2,I4,1,I4,2);
7819 VARIDIV(UI4,2,R4,1.0f,I4,2);
7820 VARIDIV(UI4,2,R8,1.0,I4,2);
7821 VARIDIV(UI4,2,DATE,1,I4,2);
7822 VARIDIV(UI4,2,BSTR,num1_str,I4,2);
7823 VARIDIV(UI4,2,BOOL,VARIANT_TRUE,I4,-2);
7824 VARIDIV(UI4,2,I1,1,I4,2);
7825 VARIDIV(UI4,2,UI1,1,I4,2);
7826 VARIDIV(UI4,2,UI2,1,I4,2);
7827 VARIDIV(UI4,2,UI4,1,I4,2);
7828 if (HAVE_OLEAUT32_I8)
7829 {
7830 VARIDIV(UI4,2,I8,1,I8,2);
7831 VARIDIV(UI4,2,UI8,1,I4,2);
7832 }
7833 VARIDIV(UI4,2,INT,1,I4,2);
7834 VARIDIV(UI4,2,UINT,1,I4,2);
7835 if (HAVE_OLEAUT32_I8)
7836 {
7837 VARIDIV(I8,2,NULL,0,NULL,0);
7838 VARIDIV(I8,2,I2,1,I8,2);
7839 VARIDIV(I8,2,I4,1,I8,2);
7840 VARIDIV(I8,2,R4,1.0f,I8,2);
7841 VARIDIV(I8,2,R8,1.0,I8,2);
7842 VARIDIV(I8,2,DATE,1,I8,2);
7843 VARIDIV(I8,2,BSTR,num1_str,I8,2);
7844 VARIDIV(I8,2,BOOL,1,I8,2);
7845 VARIDIV(I8,2,I1,1,I8,2);
7846 VARIDIV(I8,2,UI1,1,I8,2);
7847 VARIDIV(I8,2,UI2,1,I8,2);
7848 VARIDIV(I8,2,UI4,1,I8,2);
7849 VARIDIV(I8,2,I8,1,I8,2);
7850 VARIDIV(I8,2,UI8,1,I8,2);
7851 VARIDIV(I8,2,UINT,1,I8,2);
7852 VARIDIV(UI8,2,NULL,0,NULL,0);
7853 VARIDIV(UI8,2,I2,1,I4,2);
7854 VARIDIV(UI8,2,I4,1,I4,2);
7855 VARIDIV(UI8,2,R4,1.0f,I4,2);
7856 VARIDIV(UI8,2,R8,1.0,I4,2);
7857 VARIDIV(UI8,2,DATE,1,I4,2);
7858 VARIDIV(UI8,2,BSTR,num1_str,I4,2);
7859 VARIDIV(UI8,2,BOOL,VARIANT_TRUE,I4,-2);
7860 VARIDIV(UI8,2,I1,1,I4,2);
7861 VARIDIV(UI8,2,UI1,1,I4,2);
7862 VARIDIV(UI8,2,UI2,1,I4,2);
7863 VARIDIV(UI8,2,UI4,1,I4,2);
7864 VARIDIV(UI8,2,I8,1,I8,2);
7865 VARIDIV(UI8,2,UI8,1,I4,2);
7866 VARIDIV(UI8,2,INT,1,I4,2);
7867 VARIDIV(UI8,2,UINT,1,I4,2);
7868 }
7869 VARIDIV(INT,2,NULL,0,NULL,0);
7870 VARIDIV(INT,2,I2,1,I4,2);
7871 VARIDIV(INT,2,I4,1,I4,2);
7872 VARIDIV(INT,2,R4,1.0f,I4,2);
7873 VARIDIV(INT,2,R8,1.0,I4,2);
7874 VARIDIV(INT,2,DATE,1,I4,2);
7875 VARIDIV(INT,2,BSTR,num1_str,I4,2);
7876 VARIDIV(INT,2,BOOL,VARIANT_TRUE,I4,-2);
7877 VARIDIV(INT,2,I1,1,I4,2);
7878 VARIDIV(INT,2,UI1,1,I4,2);
7879 VARIDIV(INT,2,UI2,1,I4,2);
7880 VARIDIV(INT,2,UI4,1,I4,2);
7881 if (HAVE_OLEAUT32_I8)
7882 {
7883 VARIDIV(INT,2,UI8,1,I4,2);
7884 }
7885 VARIDIV(INT,2,INT,1,I4,2);
7886 VARIDIV(INT,2,UINT,1,I4,2);
7887 VARIDIV(UINT,2,NULL,0,NULL,0);
7888 VARIDIV(UINT,2,I2,1,I4,2);
7889 VARIDIV(UINT,2,I4,1,I4,2);
7890 VARIDIV(UINT,2,R4,1.0f,I4,2);
7891 VARIDIV(UINT,2,R8,1.0,I4,2);
7892 VARIDIV(UINT,2,DATE,1,I4,2);
7893 VARIDIV(UINT,2,BSTR,num1_str,I4,2);
7894 VARIDIV(UINT,2,BOOL,VARIANT_TRUE,I4,-2);
7895 VARIDIV(UINT,2,I1,1,I4,2);
7896 VARIDIV(UINT,2,UI1,1,I4,2);
7897 VARIDIV(UINT,2,UI2,1,I4,2);
7898 VARIDIV(UINT,2,UI4,1,I4,2);
7899 if (HAVE_OLEAUT32_I8)
7900 {
7901 VARIDIV(UINT,2,I8,1,I8,2);
7902 VARIDIV(UINT,2,UI8,1,I4,2);
7903 }
7904 VARIDIV(UINT,2,INT,1,I4,2);
7905 VARIDIV(UINT,2,UINT,1,I4,2);
7906
7907 /* Manually test some VT_CY, VT_DECIMAL variants */
7908 V_VT(&cy) = VT_CY;
7909 hres = VarCyFromI4(10000, &V_CY(&cy));
7910 ok(hres == S_OK, "VarCyFromI4 failed!\n");
7911 V_VT(&dec) = VT_DECIMAL;
7912 hres = VarDecFromR8(2.0, &V_DECIMAL(&dec));
7913 ok(hres == S_OK, "VarDecFromR4 failed!\n");
7914 memset(&left, 0, sizeof(left));
7915 memset(&right, 0, sizeof(right));
7916 V_VT(&left) = VT_I4;
7917 V_I4(&left) = 100;
7918 V_VT(&right) = VT_I8;
7919 V_UI1(&right) = 2;
7920
7921 hres = VarIdiv(&cy, &cy, &result);
7922 ok(hres == S_OK && V_VT(&result) == VT_I4,
7923 "VARIDIV: expected coerced hres 0x%X type VT_I4, got hres 0x%X type %s!\n",
7924 S_OK, hres, vtstr(V_VT(&result)));
7925 ok(hres == S_OK && V_I4(&result) == 1,
7926 "VARIDIV: CY value %d, expected %d\n", V_I4(&result), 1);
7927
7928 if (HAVE_OLEAUT32_I8)
7929 {
7930 hres = VarIdiv(&cy, &right, &result);
7931 ok(hres == S_OK && V_VT(&result) == VT_I8,
7932 "VARIDIV: expected coerced hres 0x%X type VT_I8, got hres 0x%X type %s!\n",
7933 S_OK, hres, vtstr(V_VT(&result)));
7934 ok(hres == S_OK && V_I8(&result) == 5000,
7935 "VARIDIV: CY value 0x%x%08x, expected 0x%x\n",
7936 (DWORD)(V_I8(&result) >>32), (DWORD)V_I8(&result), 5000);
7937 }
7938
7939 hres = VarIdiv(&left, &cy, &result);
7940 ok(hres == S_OK && V_VT(&result) == VT_I4,
7941 "VARIDIV: expected coerced hres 0x%X type VT_I4, got hres 0x%X type %s!\n",
7942 S_OK, hres, vtstr(V_VT(&result)));
7943 ok(hres == S_OK && V_I4(&result) == 0,
7944 "VARIDIV: CY value %d, expected %d\n", V_I4(&result), 0);
7945
7946 hres = VarIdiv(&left, &dec, &result);
7947 ok(hres == S_OK && V_VT(&result) == VT_I4,
7948 "VARIDIV: expected coerced hres 0x%X type VT_I4, got hres 0x%X type %s!\n",
7949 S_OK, hres, vtstr(V_VT(&result)));
7950 ok(hres == S_OK && V_I4(&result) == 50,
7951 "VARIDIV: DECIMAL value %d, expected %d\n", V_I4(&result), 50);
7952
7953 hres = VarIdiv(&dec, &dec, &result);
7954 ok(hres == S_OK && V_VT(&result) == VT_I4,
7955 "VARIDIV: expected coerced hres 0x%X type VT_I4, got hres 0x%X type %s!\n",
7956 S_OK, hres, vtstr(V_VT(&result)));
7957 ok(hres == S_OK && V_I4(&result) == 1,
7958 "VARIDIV: DECIMAL value %d, expected %d\n", V_I4(&result), 1);
7959
7960 if (HAVE_OLEAUT32_I8)
7961 {
7962 hres = VarIdiv(&dec, &right, &result);
7963 ok(hres == S_OK && V_VT(&result) == VT_I8,
7964 "VARIDIV: expected coerced hres 0x%X type VT_I8, got hres 0x%X type %s!\n",
7965 S_OK, hres, vtstr(V_VT(&result)));
7966 ok(hres == S_OK && V_I8(&result) == 1,
7967 "VARIDIV: DECIMAL value 0x%x%08x, expected %d\n",
7968 (DWORD)(V_I8(&result) >> 32), (DWORD)V_I8(&result), 1);
7969 }
7970
7971 /* Check for division by zero */
7972 V_VT(&left) = VT_INT;
7973 V_I4(&left) = 1;
7974 V_VT(&right) = VT_INT;
7975 V_I4(&right) = 0;
7976 hres = pVarIdiv(&left, &right, &result);
7977 ok(hres == DISP_E_DIVBYZERO && V_VT(&result) == VT_EMPTY,
7978 "VARIDIV: Division by 0 should result in DISP_E_DIVBYZERO but got 0x%X\n", hres);
7979
7980 V_VT(&left) = VT_INT;
7981 V_I4(&left) = 0;
7982 V_VT(&right) = VT_INT;
7983 V_I4(&right) = 0;
7984 hres = pVarIdiv(&left, &right, &result);
7985 ok(hres == DISP_E_DIVBYZERO && V_VT(&result) == VT_EMPTY,
7986 "VARIDIV: Division by 0 should result in DISP_E_DIVBYZERO but got 0x%X\n", hres);
7987
7988 SysFreeString(num1_str);
7989 SysFreeString(num2_str);
7990 }
7991
7992
7993 static HRESULT (WINAPI *pVarImp)(LPVARIANT,LPVARIANT,LPVARIANT);
7994
7995 #define VARIMP(vt1,val1,vt2,val2,rvt,rval) \
7996 V_VT(&left) = VT_##vt1; V_##vt1(&left) = val1; \
7997 V_VT(&right) = VT_##vt2; V_##vt2(&right) = val2; \
7998 V_VT(&exp) = VT_##rvt; V_##rvt(&exp) = rval; \
7999 test_var_call2( __LINE__, pVarImp, &left, &right, &exp )
8000
8001 /* Skip any type that is not defined or produces an error for every case */
8002 #define SKIPTESTIMP(a) \
8003 if (a == VT_ERROR || a == VT_VARIANT || \
8004 a == VT_DISPATCH || a == VT_UNKNOWN || \
8005 a == VT_RECORD || a > VT_UINT || \
8006 a == 15 /*not defined*/) \
8007 continue
8008
8009 static void test_VarImp(void)
8010 {
8011 static const WCHAR szFalse[] = { '#','F','A','L','S','E','#','\0' };
8012 static const WCHAR szTrue[] = { '#','T','R','U','E','#','\0' };
8013 VARIANT left, right, exp, result, cy, dec;
8014 BSTR true_str, false_str;
8015 VARTYPE i;
8016 HRESULT hres;
8017
8018 CHECKPTR(VarImp);
8019
8020 true_str = SysAllocString(szTrue);
8021 false_str = SysAllocString(szFalse);
8022
8023 /* Test all possible flag/vt combinations & the resulting vt type */
8024 for (i = 0; i < sizeof(ExtraFlags)/sizeof(ExtraFlags[0]); i++)
8025 {
8026 VARTYPE leftvt, rightvt, resvt;
8027
8028 for (leftvt = 0; leftvt <= VT_BSTR_BLOB; leftvt++)
8029 {
8030 SKIPTESTIMP(leftvt);
8031
8032 /* Check if we need/have support for I8 and/or UI8 */
8033 if ((leftvt == VT_I8 || leftvt == VT_UI8) && !HAVE_OLEAUT32_I8)
8034 continue;
8035
8036 for (rightvt = 0; rightvt <= VT_BSTR_BLOB; rightvt++)
8037 {
8038 BOOL bFail = FALSE;
8039 SKIPTESTIMP(rightvt);
8040
8041 /* Native crashes when using the extra flag VT_BYREF
8042 * or with the following VT combinations
8043 */
8044 if ((leftvt == VT_UI4 && rightvt == VT_BSTR) ||
8045 (leftvt == VT_UI8 && rightvt == VT_BSTR) ||
8046 ExtraFlags[i] == VT_BYREF)
8047 continue;
8048
8049 /* Check if we need/have support for I8 and/or UI8 */
8050 if ((rightvt == VT_I8 || rightvt == VT_UI8) && !HAVE_OLEAUT32_I8)
8051 continue;
8052
8053 memset(&left, 0, sizeof(left));
8054 memset(&right, 0, sizeof(right));
8055 V_VT(&left) = leftvt | ExtraFlags[i];
8056 V_VT(&right) = rightvt | ExtraFlags[i];
8057 V_VT(&result) = VT_EMPTY;
8058 resvt = VT_EMPTY;
8059
8060 if (leftvt == VT_BSTR)
8061 V_BSTR(&left) = true_str;
8062
8063 /* This allows us to test return types that are not NULL
8064 * (NULL Imp value = n, NULL Imp 0 = NULL)
8065 */
8066 switch(rightvt)
8067 {
8068 case VT_BSTR:
8069 V_BSTR(&right) = true_str;
8070 break;
8071 case VT_DECIMAL:
8072 VarDecFromR8(2.0, &V_DECIMAL(&right));
8073 V_VT(&right) = rightvt | ExtraFlags[i];
8074 break;
8075 case VT_BOOL:
8076 V_BOOL(&right) = VARIANT_TRUE;
8077 break;
8078 case VT_I1: V_I1(&right) = 2; break;
8079 case VT_I2: V_I2(&right) = 2; break;
8080 case VT_I4: V_I4(&right) = 2; break;
8081 case VT_R4: V_R4(&right) = 2.0f; break;
8082 case VT_R8: V_R8(&right) = 2.0; break;
8083 case VT_CY: V_CY(&right).int64 = 10000; break;
8084 case VT_DATE: V_DATE(&right) = 2; break;
8085 case VT_I8: V_I8(&right) = 2; break;
8086 case VT_INT: V_INT(&right) = 2; break;
8087 case VT_UINT: V_UINT(&right) = 2; break;
8088 case VT_UI1: V_UI1(&right) = 2; break;
8089 case VT_UI2: V_UI2(&right) = 2; break;
8090 case VT_UI4: V_UI4(&right) = 2; break;
8091 case VT_UI8: V_UI8(&right) = 2; break;
8092 default: break;
8093 }
8094
8095 /* Native VarImp always returns an error when using extra
8096 * flags or if the variants are I8 and INT.
8097 */
8098 if ((leftvt == VT_I8 && rightvt == VT_INT) ||
8099 ExtraFlags[i] != 0)
8100 bFail = TRUE;
8101
8102 /* Determine result type */
8103 else if ((leftvt == VT_BSTR && rightvt == VT_NULL) ||
8104 (leftvt == VT_NULL && rightvt == VT_NULL) ||
8105 (leftvt == VT_NULL && rightvt == VT_EMPTY))
8106 resvt = VT_NULL;
8107 else if (leftvt == VT_I8 || rightvt == VT_I8)
8108 resvt = VT_I8;
8109 else if (leftvt == VT_I4 || rightvt == VT_I4 ||
8110 leftvt == VT_INT || rightvt == VT_INT ||
8111 leftvt == VT_UINT || rightvt == VT_UINT ||
8112 leftvt == VT_UI4 || rightvt == VT_UI4 ||
8113 leftvt == VT_UI8 || rightvt == VT_UI8 ||
8114 leftvt == VT_UI2 || rightvt == VT_UI2 ||
8115 leftvt == VT_DECIMAL || rightvt == VT_DECIMAL ||
8116 leftvt == VT_DATE || rightvt == VT_DATE ||
8117 leftvt == VT_CY || rightvt == VT_CY ||
8118 leftvt == VT_R8 || rightvt == VT_R8 ||
8119 leftvt == VT_R4 || rightvt == VT_R4 ||
8120 leftvt == VT_I1 || rightvt == VT_I1)
8121 resvt = VT_I4;
8122 else if ((leftvt == VT_UI1 && rightvt == VT_UI1) ||
8123 (leftvt == VT_UI1 && rightvt == VT_NULL) ||
8124 (leftvt == VT_NULL && rightvt == VT_UI1))
8125 resvt = VT_UI1;
8126 else if (leftvt == VT_EMPTY || rightvt == VT_EMPTY ||
8127 leftvt == VT_I2 || rightvt == VT_I2 ||
8128 leftvt == VT_UI1 || rightvt == VT_UI1)
8129 resvt = VT_I2;
8130 else if (leftvt == VT_BOOL || rightvt == VT_BOOL ||
8131 leftvt == VT_BSTR || rightvt == VT_BSTR)
8132 resvt = VT_BOOL;
8133
8134 hres = pVarImp(&left, &right, &result);
8135
8136 /* Check expected HRESULT and if result variant type is correct */
8137 if (bFail)
8138 ok (hres == DISP_E_BADVARTYPE || hres == DISP_E_TYPEMISMATCH,
8139 "VarImp: %s|0x%X, %s|0x%X: got vt %s hr 0x%X\n",
8140 vtstr(leftvt), ExtraFlags[i], vtstr(rightvt), ExtraFlags[i],
8141 vtstr(V_VT(&result)), hres);
8142 else
8143 ok (hres == S_OK && resvt == V_VT(&result),
8144 "VarImp: %s|0x%X, %s|0x%X: expected vt %s hr 0x%X, got vt %s hr 0x%X\n",
8145 vtstr(leftvt), ExtraFlags[i], vtstr(rightvt), ExtraFlags[i], vtstr(resvt),
8146 S_OK, vtstr(V_VT(&result)), hres);
8147 }
8148 }
8149 }
8150
8151 VARIMP(EMPTY,0,EMPTY,0,I2,-1);
8152 VARIMP(EMPTY,0,NULL,0,I2,-1);
8153 VARIMP(EMPTY,0,I2,-1,I2,-1);
8154 VARIMP(EMPTY,0,I4,-1,I4,-1);
8155 VARIMP(EMPTY,0,R4,0.0f,I4,-1);
8156 VARIMP(EMPTY,0,R8,-1.0,I4,-1);
8157 VARIMP(EMPTY,0,DATE,0,I4,-1);
8158 VARIMP(EMPTY,0,BSTR,true_str,I2,-1);
8159 VARIMP(EMPTY,0,BOOL,VARIANT_FALSE,I2,-1);
8160 VARIMP(EMPTY,0,I1,0,I4,-1);
8161 VARIMP(EMPTY,0,UI1,1,I2,-1);
8162 VARIMP(EMPTY,0,UI2,1,I4,-1);
8163 VARIMP(EMPTY,0,UI4,1,I4,-1);
8164 if (HAVE_OLEAUT32_I8)
8165 {
8166 VARIMP(EMPTY,0,I8,1,I8,-1);
8167 VARIMP(EMPTY,0,UI8,1,I4,-1);
8168 }
8169 VARIMP(EMPTY,0,INT,-1,I4,-1);
8170 VARIMP(EMPTY,0,UINT,1,I4,-1);
8171 VARIMP(NULL,0,EMPTY,0,NULL,0);
8172 VARIMP(NULL,0,NULL,0,NULL,0);
8173 VARIMP(NULL,0,I2,-1,I2,-1);
8174 VARIMP(NULL,0,I4,-1,I4,-1);
8175 VARIMP(NULL,0,R4,0.0f,NULL,0);
8176 VARIMP(NULL,0,R8,-1.0,I4,-1);
8177 VARIMP(NULL,0,DATE,0,NULL,0);
8178 VARIMP(NULL,0,BSTR,true_str,BOOL,-1);
8179 VARIMP(NULL,0,BOOL,VARIANT_FALSE,NULL,0);
8180 VARIMP(NULL,0,I1,0,NULL,0);
8181 VARIMP(NULL,0,UI1,1,UI1,1);
8182 VARIMP(NULL,0,UI2,1,I4,1);
8183 VARIMP(NULL,0,UI4,1,I4,1);
8184 if (HAVE_OLEAUT32_I8)
8185 {
8186 VARIMP(NULL,0,I8,1,I8,1);
8187 VARIMP(NULL,0,UI8,1,I4,1);
8188 }
8189 VARIMP(NULL,0,INT,-1,I4,-1);
8190 VARIMP(NULL,0,UINT,1,I4,1);
8191 VARIMP(I2,-1,EMPTY,0,I2,0);
8192 VARIMP(I2,-1,I2,-1,I2,-1);
8193 VARIMP(I2,-1,I4,-1,I4,-1);
8194 VARIMP(I2,-1,R4,0.0f,I4,0);
8195 VARIMP(I2,-1,R8,-1.0,I4,-1);
8196 VARIMP(I2,-1,DATE,0,I4,0);
8197 VARIMP(I2,-1,BSTR,true_str,I2,-1);
8198 VARIMP(I2,-1,BOOL,VARIANT_FALSE,I2,0);
8199 VARIMP(I2,-1,I1,0,I4,0);
8200 VARIMP(I2,-1,UI1,1,I2,1);
8201 VARIMP(I2,-1,UI2,1,I4,1);
8202 VARIMP(I2,-1,UI4,1,I4,1);
8203 if (HAVE_OLEAUT32_I8)
8204 {
8205 VARIMP(I2,-1,I8,1,I8,1);
8206 VARIMP(I2,-1,UI8,1,I4,1);
8207 }
8208 VARIMP(I2,-1,INT,-1,I4,-1);
8209 VARIMP(I2,-1,UINT,1,I4,1);
8210 VARIMP(I4,2,EMPTY,0,I4,-3);
8211 VARIMP(I4,2,NULL,0,I4,-3);
8212 VARIMP(I4,2,I2,-1,I4,-1);
8213 VARIMP(I4,2,I4,-1,I4,-1);
8214 VARIMP(I4,2,R4,0.0f,I4,-3);
8215 VARIMP(I4,2,R8,-1.0,I4,-1);
8216 VARIMP(I4,2,DATE,0,I4,-3);
8217 VARIMP(I4,2,BSTR,true_str,I4,-1);
8218 VARIMP(I4,2,BOOL,VARIANT_FALSE,I4,-3);
8219 VARIMP(I4,2,I1,0,I4,-3);
8220 VARIMP(I4,2,UI1,1,I4,-3);
8221 VARIMP(I4,2,UI2,1,I4,-3);
8222 VARIMP(I4,2,UI4,1,I4,-3);
8223 if (HAVE_OLEAUT32_I8)
8224 {
8225 VARIMP(I4,2,I8,1,I8,-3);
8226 VARIMP(I4,2,UI8,1,I4,-3);
8227 }
8228 VARIMP(I4,2,INT,-1,I4,-1);
8229 VARIMP(I4,2,UINT,1,I4,-3);
8230 VARIMP(R4,-1.0f,EMPTY,0,I4,0);
8231 VARIMP(R4,-1.0f,NULL,0,NULL,0);
8232 VARIMP(R4,-1.0f,I2,-1,I4,-1);
8233 VARIMP(R4,-1.0f,I4,-1,I4,-1);
8234 VARIMP(R4,-1.0f,R4,0.0f,I4,0);
8235 VARIMP(R4,-1.0f,R8,-1.0,I4,-1);
8236 VARIMP(R4,-1.0f,DATE,1,I4,1);
8237 VARIMP(R4,-1.0f,BSTR,true_str,I4,-1);
8238 VARIMP(R4,-1.0f,BOOL,VARIANT_FALSE,I4,0);
8239 VARIMP(R4,-1.0f,I1,0,I4,0);
8240 VARIMP(R4,-1.0f,UI1,1,I4,1);
8241 VARIMP(R4,-1.0f,UI2,1,I4,1);
8242 VARIMP(R4,-1.0f,UI4,1,I4,1);
8243 if (HAVE_OLEAUT32_I8)
8244 {
8245 VARIMP(R4,-1.0f,I8,1,I8,1);
8246 VARIMP(R4,-1.0f,UI8,1,I4,1);
8247 }
8248 VARIMP(R4,-1.0f,INT,-1,I4,-1);
8249 VARIMP(R4,-1.0f,UINT,1,I4,1);
8250 VARIMP(R8,1.0,EMPTY,0,I4,-2);
8251 VARIMP(R8,1.0,NULL,0,I4,-2);
8252 VARIMP(R8,1.0,I2,-1,I4,-1);
8253 VARIMP(R8,1.0,I4,-1,I4,-1);
8254 VARIMP(R8,1.0,R4,0.0f,I4,-2);
8255 VARIMP(R8,1.0,R8,-1.0,I4,-1);
8256 VARIMP(R8,1.0,DATE,0,I4,-2);
8257 VARIMP(R8,1.0,BSTR,true_str,I4,-1);
8258 VARIMP(R8,1.0,BOOL,VARIANT_FALSE,I4,-2);
8259 VARIMP(R8,1.0,I1,0,I4,-2);
8260 VARIMP(R8,1.0,UI1,1,I4,-1);
8261 VARIMP(R8,1.0,UI2,1,I4,-1);
8262 VARIMP(R8,1.0,UI4,1,I4,-1);
8263 if (HAVE_OLEAUT32_I8)
8264 {
8265 VARIMP(R8,1.0,I8,1,I8,-1);
8266 VARIMP(R8,1.0,UI8,1,I4,-1);
8267 }
8268 VARIMP(R8,1.0,INT,-1,I4,-1);
8269 VARIMP(R8,1.0,UINT,1,I4,-1);
8270 VARIMP(DATE,0,EMPTY,0,I4,-1);
8271 VARIMP(DATE,0,NULL,0,I4,-1);
8272 VARIMP(DATE,0,I2,-1,I4,-1);
8273 VARIMP(DATE,0,I4,-1,I4,-1);
8274 VARIMP(DATE,0,R4,0.0f,I4,-1);
8275 VARIMP(DATE,0,R8,-1.0,I4,-1);
8276 VARIMP(DATE,0,DATE,0,I4,-1);
8277 VARIMP(DATE,0,BSTR,true_str,I4,-1);
8278 VARIMP(DATE,0,BOOL,VARIANT_FALSE,I4,-1);
8279 VARIMP(DATE,0,I1,0,I4,-1);
8280 VARIMP(DATE,0,UI1,1,I4,-1);
8281 VARIMP(DATE,0,UI2,1,I4,-1);
8282 VARIMP(DATE,0,UI4,1,I4,-1);
8283 if (HAVE_OLEAUT32_I8)
8284 {
8285 VARIMP(DATE,0,I8,1,I8,-1);
8286 VARIMP(DATE,0,UI8,1,I4,-1);
8287 }
8288 VARIMP(DATE,0,INT,-1,I4,-1);
8289 VARIMP(DATE,0,UINT,1,I4,-1);
8290 VARIMP(BSTR,false_str,EMPTY,0,I2,-1);
8291 VARIMP(BSTR,false_str,NULL,0,BOOL,-1);
8292 VARIMP(BSTR,false_str,I2,-1,I2,-1);
8293 VARIMP(BSTR,false_str,I4,-1,I4,-1);
8294 VARIMP(BSTR,false_str,R4,0.0f,I4,-1);
8295 VARIMP(BSTR,false_str,R8,-1.0,I4,-1);
8296 VARIMP(BSTR,false_str,DATE,0,I4,-1);
8297 VARIMP(BSTR,false_str,BSTR,true_str,BOOL,-1);
8298 VARIMP(BSTR,false_str,BOOL,VARIANT_FALSE,BOOL,-1);
8299 VARIMP(BSTR,false_str,I1,0,I4,-1);
8300 VARIMP(BSTR,false_str,UI1,1,I2,-1);
8301 VARIMP(BSTR,false_str,UI2,1,I4,-1);
8302 VARIMP(BSTR,false_str,UI4,1,I4,-1);
8303 if (HAVE_OLEAUT32_I8)
8304 {
8305 VARIMP(BSTR,false_str,I8,1,I8,-1);
8306 VARIMP(BSTR,false_str,UI8,1,I4,-1);
8307 }
8308 VARIMP(BSTR,false_str,INT,-1,I4,-1);
8309 VARIMP(BSTR,false_str,UINT,1,I4,-1);
8310 VARIMP(BOOL,VARIANT_TRUE,EMPTY,0,I2,0);
8311 VARIMP(BOOL,VARIANT_TRUE,NULL,0,NULL,0);
8312 VARIMP(BOOL,VARIANT_TRUE,I2,-1,I2,-1);
8313 VARIMP(BOOL,VARIANT_TRUE,I4,-1,I4,-1);
8314 VARIMP(BOOL,VARIANT_TRUE,R4,0.0f,I4,0);
8315 VARIMP(BOOL,VARIANT_TRUE,R8,-1.0,I4,-1);
8316 VARIMP(BOOL,VARIANT_TRUE,DATE,0,I4,0);
8317 VARIMP(BOOL,VARIANT_TRUE,BSTR,true_str,BOOL,-1);
8318 VARIMP(BOOL,VARIANT_TRUE,BOOL,VARIANT_FALSE,BOOL,0);
8319 VARIMP(BOOL,VARIANT_TRUE,I1,0,I4,0);
8320 VARIMP(BOOL,VARIANT_TRUE,UI1,1,I2,1);
8321 VARIMP(BOOL,VARIANT_TRUE,UI2,1,I4,1);
8322 VARIMP(BOOL,VARIANT_TRUE,UI4,1,I4,1);
8323 if (HAVE_OLEAUT32_I8)
8324 {
8325 VARIMP(BOOL,VARIANT_TRUE,I8,1,I8,1);
8326 VARIMP(BOOL,VARIANT_TRUE,UI8,1,I4,1);
8327 }
8328 VARIMP(BOOL,VARIANT_TRUE,INT,-1,I4,-1);
8329 VARIMP(BOOL,VARIANT_TRUE,UINT,1,I4,1);
8330 VARIMP(I1,-1,EMPTY,0,I4,0);
8331 VARIMP(I1,-1,NULL,0,NULL,0);
8332 VARIMP(I1,-1,I2,-1,I4,-1);
8333 VARIMP(I1,-1,I4,-1,I4,-1);
8334 VARIMP(I1,-1,R4,0.0f,I4,0);
8335 VARIMP(I1,-1,R8,-1.0,I4,-1);
8336 VARIMP(I1,-1,DATE,0,I4,0);
8337 VARIMP(I1,-1,BSTR,true_str,I4,-1);
8338 VARIMP(I1,-1,BOOL,VARIANT_FALSE,I4,0);
8339 VARIMP(I1,-1,I1,0,I4,0);
8340 VARIMP(I1,-1,UI1,1,I4,1);
8341 VARIMP(I1,-1,UI2,1,I4,1);
8342 VARIMP(I1,-1,UI4,1,I4,1);
8343 if (HAVE_OLEAUT32_I8)
8344 {
8345 VARIMP(I1,-1,I8,1,I8,1);
8346 VARIMP(I1,-1,UI8,1,I4,1);
8347 }
8348 VARIMP(I1,-1,INT,-1,I4,-1);
8349 VARIMP(I1,-1,UINT,1,I4,1);
8350 VARIMP(UI1,0,EMPTY,0,I2,-1);
8351 VARIMP(UI1,0,NULL,0,UI1,255);
8352 VARIMP(UI1,0,I2,-1,I2,-1);
8353 VARIMP(UI1,0,I4,-1,I4,-1);
8354 VARIMP(UI1,0,R4,0.0f,I4,-1);
8355 VARIMP(UI1,0,R8,-1.0,I4,-1);
8356 VARIMP(UI1,0,DATE,0,I4,-1);
8357 VARIMP(UI1,0,BSTR,true_str,I2,-1);
8358 VARIMP(UI1,0,BOOL,VARIANT_FALSE,I2,-1);
8359 VARIMP(UI1,0,I1,0,I4,-1);
8360 VARIMP(UI1,0,UI1,1,UI1,255);
8361 VARIMP(UI1,0,UI2,1,I4,-1);
8362 VARIMP(UI1,0,UI4,1,I4,-1);
8363 if (HAVE_OLEAUT32_I8)
8364 {
8365 VARIMP(UI1,0,I8,1,I8,-1);
8366 VARIMP(UI1,0,UI8,1,I4,-1);
8367 }
8368 VARIMP(UI1,0,INT,-1,I4,-1);
8369 VARIMP(UI1,0,UINT,1,I4,-1);
8370 VARIMP(UI2,0,EMPTY,0,I4,-1);
8371 VARIMP(UI2,0,NULL,0,I4,-1);
8372 VARIMP(UI2,0,I2,-1,I4,-1);
8373 VARIMP(UI2,0,I4,-1,I4,-1);
8374 VARIMP(UI2,0,R4,0.0f,I4,-1);
8375 VARIMP(UI2,0,R8,-1.0,I4,-1);
8376 VARIMP(UI2,0,DATE,0,I4,-1);
8377 VARIMP(UI2,0,BSTR,true_str,I4,-1);
8378 VARIMP(UI2,0,BOOL,VARIANT_FALSE,I4,-1);
8379 VARIMP(UI2,0,I1,0,I4,-1);
8380 VARIMP(UI2,0,UI1,1,I4,-1);
8381 VARIMP(UI2,0,UI2,1,I4,-1);
8382 VARIMP(UI2,0,UI4,1,I4,-1);
8383 if (HAVE_OLEAUT32_I8)
8384 {
8385 VARIMP(UI2,0,I8,1,I8,-1);
8386 VARIMP(UI2,0,UI8,1,I4,-1);
8387 }
8388 VARIMP(UI2,0,INT,-1,I4,-1);
8389 VARIMP(UI2,0,UINT,1,I4,-1);
8390 VARIMP(UI4,0,EMPTY,0,I4,-1);
8391 VARIMP(UI4,0,NULL,0,I4,-1);
8392 VARIMP(UI4,0,I2,-1,I4,-1);
8393 VARIMP(UI4,0,I4,-1,I4,-1);
8394 VARIMP(UI4,0,R4,0.0f,I4,-1);
8395 VARIMP(UI4,0,R8,-1.0,I4,-1);
8396 VARIMP(UI4,0,DATE,0,I4,-1);
8397 VARIMP(UI4,0,BSTR,true_str,I4,-1);
8398 VARIMP(UI4,0,BOOL,VARIANT_FALSE,I4,-1);
8399 VARIMP(UI4,0,I1,0,I4,-1);
8400 VARIMP(UI4,0,UI1,1,I4,-1);
8401 VARIMP(UI4,0,UI2,1,I4,-1);
8402 VARIMP(UI4,0,UI4,1,I4,-1);
8403 if (HAVE_OLEAUT32_I8)
8404 {
8405 VARIMP(UI4,0,I8,1,I8,-1);
8406 VARIMP(UI4,0,UI8,1,I4,-1);
8407 }
8408 VARIMP(UI4,0,INT,-1,I4,-1);
8409 VARIMP(UI4,0,UINT,1,I4,-1);
8410 if (HAVE_OLEAUT32_I8)
8411 {
8412 VARIMP(I8,-1,EMPTY,0,I8,0);
8413 VARIMP(I8,-1,NULL,0,NULL,0);
8414 VARIMP(I8,-1,I2,-1,I8,-1);
8415 VARIMP(I8,-1,I4,-1,I8,-1);
8416 VARIMP(I8,-1,R4,0.0f,I8,0);
8417 VARIMP(I8,-1,R8,-1.0,I8,-1);
8418 VARIMP(I8,-1,DATE,0,I8,0);
8419 VARIMP(I8,-1,BSTR,true_str,I8,-1);
8420 VARIMP(I8,-1,BOOL,VARIANT_FALSE,I8,0);
8421 VARIMP(I8,-1,I1,0,I8,0);
8422 VARIMP(I8,-1,UI1,1,I8,1);
8423 VARIMP(I8,-1,UI2,1,I8,1);
8424 VARIMP(I8,-1,UI4,1,I8,1);
8425 VARIMP(I8,-1,I8,1,I8,1);
8426 VARIMP(I8,-1,UI8,1,I8,1);
8427 VARIMP(I8,-1,UINT,1,I8,1);
8428 VARIMP(UI8,0,EMPTY,0,I4,-1);
8429 VARIMP(UI8,0,NULL,0,I4,-1);
8430 VARIMP(UI8,0,I2,-1,I4,-1);
8431 VARIMP(UI8,0,I4,-1,I4,-1);
8432 VARIMP(UI8,0,R4,0.0f,I4,-1);
8433 VARIMP(UI8,0,R8,-1.0,I4,-1);
8434 VARIMP(UI8,0,DATE,0,I4,-1);
8435 VARIMP(UI8,0,BSTR,true_str,I4,-1);
8436 VARIMP(UI8,0,BOOL,VARIANT_FALSE,I4,-1);
8437 VARIMP(UI8,0,I1,0,I4,-1);
8438 VARIMP(UI8,0,UI1,1,I4,-1);
8439 VARIMP(UI8,0,UI2,1,I4,-1);
8440 VARIMP(UI8,0,UI4,1,I4,-1);
8441 VARIMP(UI8,0,I8,1,I8,-1);
8442 VARIMP(UI8,0,UI8,1,I4,-1);
8443 VARIMP(UI8,0,INT,-1,I4,-1);
8444 VARIMP(UI8,0,UINT,1,I4,-1);
8445 }
8446 VARIMP(INT,-1,EMPTY,0,I4,0);
8447 VARIMP(INT,-1,NULL,0,NULL,0);
8448 VARIMP(INT,-1,I2,-1,I4,-1);
8449 VARIMP(INT,-1,I4,-1,I4,-1);
8450 VARIMP(INT,-1,R4,0.0f,I4,0);
8451 VARIMP(INT,-1,R8,-1.0,I4,-1);
8452 VARIMP(INT,-1,DATE,0,I4,0);
8453 VARIMP(INT,-1,BSTR,true_str,I4,-1);
8454 VARIMP(INT,-1,BOOL,VARIANT_FALSE,I4,0);
8455 VARIMP(INT,-1,I1,0,I4,0);
8456 VARIMP(INT,-1,UI1,1,I4,1);
8457 VARIMP(INT,-1,UI2,1,I4,1);
8458 VARIMP(INT,-1,UI4,1,I4,1);
8459 if (HAVE_OLEAUT32_I8)
8460 {
8461 VARIMP(INT,-1,I8,1,I8,1);
8462 VARIMP(INT,-1,UI8,1,I4,1);
8463 }
8464 VARIMP(INT,-1,INT,-1,I4,-1);
8465 VARIMP(INT,-1,UINT,1,I4,1);
8466 VARIMP(UINT,1,EMPTY,0,I4,-2);
8467 VARIMP(UINT,1,NULL,0,I4,-2);
8468 VARIMP(UINT,1,I2,-1,I4,-1);
8469 VARIMP(UINT,1,I4,-1,I4,-1);
8470 VARIMP(UINT,1,R4,0.0f,I4,-2);
8471 VARIMP(UINT,1,R8,-1.0,I4,-1);
8472 VARIMP(UINT,1,DATE,0,I4,-2);
8473 VARIMP(UINT,1,BSTR,true_str,I4,-1);
8474 VARIMP(UINT,1,BOOL,VARIANT_FALSE,I4,-2);
8475 VARIMP(UINT,1,I1,0,I4,-2);
8476 VARIMP(UINT,1,UI1,1,I4,-1);
8477 VARIMP(UINT,1,UI2,1,I4,-1);
8478 VARIMP(UINT,1,UI4,1,I4,-1);
8479 if (HAVE_OLEAUT32_I8)
8480 {
8481 VARIMP(UINT,1,I8,1,I8,-1);
8482 VARIMP(UINT,1,UI8,1,I4,-1);
8483 }
8484 VARIMP(UINT,1,INT,-1,I4,-1);
8485 VARIMP(UINT,1,UINT,1,I4,-1);
8486
8487 /* Manually test some VT_CY, VT_DECIMAL variants */
8488 V_VT(&cy) = VT_CY;
8489 hres = VarCyFromI4(1, &V_CY(&cy));
8490 ok(hres == S_OK, "VarCyFromI4 failed!\n");
8491 V_VT(&dec) = VT_DECIMAL;
8492 hres = VarDecFromR8(2.0, &V_DECIMAL(&dec));
8493 ok(hres == S_OK, "VarDecFromR4 failed!\n");
8494 memset(&left, 0, sizeof(left));
8495 memset(&right, 0, sizeof(right));
8496 V_VT(&left) = VT_I4;
8497 V_I4(&left) = 0;
8498 V_VT(&right) = VT_I8;
8499 V_UI1(&right) = 0;
8500
8501 hres = pVarImp(&cy, &cy, &result);
8502 ok(hres == S_OK && V_VT(&result) == VT_I4,
8503 "VARIMP: expected coerced hres 0x%X type VT_I4, got hres 0x%X type %s!\n",
8504 S_OK, hres, vtstr(V_VT(&result)));
8505 ok(hres == S_OK && V_I4(&result) == -1,
8506 "VARIMP: CY value %d, expected %d\n", V_I4(&result), -1);
8507
8508 if (HAVE_OLEAUT32_I8)
8509 {
8510 hres = pVarImp(&cy, &right, &result);
8511 ok(hres == S_OK && V_VT(&result) == VT_I8,
8512 "VARIMP: expected coerced hres 0x%X type VT_I8, got hres 0x%X type %s!\n",
8513 S_OK, hres, vtstr(V_VT(&result)));
8514 ok(hres == S_OK && V_I8(&result) == -2,
8515 "VARIMP: CY value %x%08x, expected %d\n",
8516 (DWORD)((V_I8(&result)) >> 32), (DWORD)(V_I8(&result)), -2);
8517 }
8518
8519 hres = pVarImp(&left, &cy, &result);
8520 ok(hres == S_OK && V_VT(&result) == VT_I4,
8521 "VARIMP: expected coerced hres 0x%X type VT_I4, got hres 0x%X type %s!\n",
8522 S_OK, hres, vtstr(V_VT(&result)));
8523 ok(hres == S_OK && V_I4(&result) == -1,
8524 "VARIMP: CY value %d, expected %d\n", V_I4(&result), -1);
8525
8526 hres = pVarImp(&left, &dec, &result);
8527 ok(hres == S_OK && V_VT(&result) == VT_I4,
8528 "VARIMP: expected coerced hres 0x%X type VT_I4, got hres 0x%X type %s!\n",
8529 S_OK, hres, vtstr(V_VT(&result)));
8530 ok(hres == S_OK && V_I4(&result) == -1,
8531 "VARIMP: DECIMAL value %d, expected %d\n", V_I4(&result), -1);
8532
8533 hres = pVarImp(&dec, &dec, &result);
8534 ok(hres == S_OK && V_VT(&result) == VT_I4,
8535 "VARIMP: expected coerced hres 0x%X type VT_I4, got hres 0x%X type %s!\n",
8536 S_OK, hres, vtstr(V_VT(&result)));
8537 ok(hres == S_OK && V_I4(&result) == -1,
8538 "VARIMP: DECIMAL value %d, expected %d\n", V_I4(&result), -1);
8539
8540 if (HAVE_OLEAUT32_I8)
8541 {
8542 hres = pVarImp(&dec, &right, &result);
8543 ok(hres == S_OK && V_VT(&result) == VT_I8,
8544 "VARIMP: expected coerced hres 0x%X type VT_I8, got hres 0x%X type %s!\n",
8545 S_OK, hres, vtstr(V_VT(&result)));
8546 ok(hres == S_OK && V_I8(&result) == -3,
8547 "VARIMP: DECIMAL value 0x%x%08x, expected %d\n",
8548 (DWORD)(V_I8(&result) >>32), (DWORD)V_I8(&result), -3);
8549 }
8550
8551 SysFreeString(false_str);
8552 SysFreeString(true_str);
8553 }
8554
8555 START_TEST(vartest)
8556 {
8557 init();
8558
8559 test_VariantInit();
8560 test_VariantClear();
8561 test_VariantCopy();
8562 test_VariantCopyInd();
8563 test_VarParseNumFromStr();
8564 test_VarNumFromParseNum();
8565 test_VarUdateFromDate();
8566 test_VarDateFromUdate();
8567 test_SystemTimeToVariantTime();
8568 test_VariantTimeToSystemTime();
8569 test_DosDateTimeToVariantTime();
8570 test_VariantTimeToDosDateTime();
8571 test_VarAbs();
8572 test_VarNot();
8573 test_VarSub();
8574 test_VarMod();
8575 test_VarFix();
8576 test_VarInt();
8577 test_VarNeg();
8578 test_VarRound();
8579 test_VarXor();
8580 test_VarOr();
8581 test_VarPow();
8582 test_VarEqv();
8583 test_VarMul();
8584 test_VarAdd();
8585 test_VarCat();
8586 test_VarCmp();
8587 test_VarAnd();
8588 test_VarDiv();
8589 test_VarIdiv();
8590 test_VarImp();
8591 }