Sync to trunk head(r38096)
[reactos.git] / rostests / winetests / ntdll / rtlstr.c
1 /* Unit test suite for Rtl string functions
2 *
3 * Copyright 2002 Robert Shearman
4 * Copyright 2003 Thomas Mertes
5 *
6 * This library is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU Lesser General Public
8 * License as published by the Free Software Foundation; either
9 * version 2.1 of the License, or (at your option) any later version.
10 *
11 * This library is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * Lesser General Public License for more details.
15 *
16 * You should have received a copy of the GNU Lesser General Public
17 * License along with this library; if not, write to the Free Software
18 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
19 *
20 * NOTES
21 * We use function pointers here as there is no import library for NTDLL on
22 * windows.
23 */
24
25 #include <stdlib.h>
26
27 #define INITGUID
28
29 #include "ntdll_test.h"
30 #include "winnls.h"
31 #include "guiddef.h"
32
33 /* Function ptrs for ntdll calls */
34 static HMODULE hntdll = 0;
35 static NTSTATUS (WINAPI *pRtlAnsiStringToUnicodeString)(PUNICODE_STRING, PCANSI_STRING, BOOLEAN);
36 static NTSTATUS (WINAPI *pRtlAppendAsciizToString)(STRING *, LPCSTR);
37 static NTSTATUS (WINAPI *pRtlAppendStringToString)(STRING *, const STRING *);
38 static NTSTATUS (WINAPI *pRtlAppendUnicodeStringToString)(UNICODE_STRING *, const UNICODE_STRING *);
39 static NTSTATUS (WINAPI *pRtlAppendUnicodeToString)(UNICODE_STRING *, LPCWSTR);
40 static NTSTATUS (WINAPI *pRtlCharToInteger)(PCSZ, ULONG, int *);
41 static VOID (WINAPI *pRtlCopyString)(STRING *, const STRING *);
42 static BOOLEAN (WINAPI *pRtlCreateUnicodeString)(PUNICODE_STRING, LPCWSTR);
43 static BOOLEAN (WINAPI *pRtlCreateUnicodeStringFromAsciiz)(PUNICODE_STRING, LPCSTR);
44 static NTSTATUS (WINAPI *pRtlDowncaseUnicodeString)(UNICODE_STRING *, const UNICODE_STRING *, BOOLEAN);
45 static NTSTATUS (WINAPI *pRtlDuplicateUnicodeString)(long, UNICODE_STRING *, UNICODE_STRING *);
46 static BOOLEAN (WINAPI *pRtlEqualUnicodeString)(const UNICODE_STRING *, const UNICODE_STRING *, BOOLEAN);
47 static NTSTATUS (WINAPI *pRtlFindCharInUnicodeString)(int, const UNICODE_STRING *, const UNICODE_STRING *, USHORT *);
48 static VOID (WINAPI *pRtlFreeAnsiString)(PSTRING);
49 static VOID (WINAPI *pRtlInitAnsiString)(PSTRING, LPCSTR);
50 static VOID (WINAPI *pRtlInitString)(PSTRING, LPCSTR);
51 static VOID (WINAPI *pRtlInitUnicodeString)(PUNICODE_STRING, LPCWSTR);
52 static NTSTATUS (WINAPI *pRtlInitUnicodeStringEx)(PUNICODE_STRING, LPCWSTR);
53 static NTSTATUS (WINAPI *pRtlIntegerToChar)(ULONG, ULONG, ULONG, PCHAR);
54 static NTSTATUS (WINAPI *pRtlIntegerToUnicodeString)(ULONG, ULONG, UNICODE_STRING *);
55 static NTSTATUS (WINAPI *pRtlMultiAppendUnicodeStringBuffer)(UNICODE_STRING *, long, UNICODE_STRING *);
56 static NTSTATUS (WINAPI *pRtlUnicodeStringToAnsiString)(STRING *, const UNICODE_STRING *, BOOLEAN);
57 static NTSTATUS (WINAPI *pRtlUnicodeStringToInteger)(const UNICODE_STRING *, int, int *);
58 static WCHAR (WINAPI *pRtlUpcaseUnicodeChar)(WCHAR);
59 static NTSTATUS (WINAPI *pRtlUpcaseUnicodeString)(UNICODE_STRING *, const UNICODE_STRING *, BOOLEAN);
60 static CHAR (WINAPI *pRtlUpperChar)(CHAR);
61 static NTSTATUS (WINAPI *pRtlUpperString)(STRING *, const STRING *);
62 static NTSTATUS (WINAPI *pRtlValidateUnicodeString)(long, UNICODE_STRING *);
63 static NTSTATUS (WINAPI *pRtlGUIDFromString)(const UNICODE_STRING*,GUID*);
64 static NTSTATUS (WINAPI *pRtlStringFromGUID)(const GUID*, UNICODE_STRING*);
65 static BOOLEAN (WINAPI *pRtlIsTextUnicode)(LPVOID, INT, INT *);
66
67 /*static VOID (WINAPI *pRtlFreeOemString)(PSTRING);*/
68 /*static VOID (WINAPI *pRtlFreeUnicodeString)(PUNICODE_STRING);*/
69 /*static VOID (WINAPI *pRtlCopyUnicodeString)(UNICODE_STRING *, const UNICODE_STRING *);*/
70 /*static VOID (WINAPI *pRtlEraseUnicodeString)(UNICODE_STRING *);*/
71 /*static LONG (WINAPI *pRtlCompareString)(const STRING *,const STRING *,BOOLEAN);*/
72 /*static LONG (WINAPI *pRtlCompareUnicodeString)(const UNICODE_STRING *,const UNICODE_STRING *,BOOLEAN);*/
73 /*static BOOLEAN (WINAPI *pRtlEqualString)(const STRING *,const STRING *,BOOLEAN);*/
74 /*static BOOLEAN (WINAPI *pRtlPrefixString)(const STRING *, const STRING *, BOOLEAN);*/
75 /*static BOOLEAN (WINAPI *pRtlPrefixUnicodeString)(const UNICODE_STRING *, const UNICODE_STRING *, BOOLEAN);*/
76 /*static NTSTATUS (WINAPI *pRtlOemStringToUnicodeString)(PUNICODE_STRING, const STRING *, BOOLEAN);*/
77 /*static NTSTATUS (WINAPI *pRtlUnicodeStringToOemString)(STRING *, const UNICODE_STRING *, BOOLEAN);*/
78 /*static NTSTATUS (WINAPI *pRtlMultiByteToUnicodeN)(LPWSTR, DWORD, LPDWORD, LPCSTR, DWORD);*/
79 /*static NTSTATUS (WINAPI *pRtlOemToUnicodeN)(LPWSTR, DWORD, LPDWORD, LPCSTR, DWORD);*/
80 /*static NTSTATUS (WINAPI *pRtlUpcaseUnicodeStringToAnsiString)(STRING *, const UNICODE_STRING *, BOOLEAN);*/
81 /*static NTSTATUS (WINAPI *pRtlUpcaseUnicodeStringToOemString)(STRING *, const UNICODE_STRING *, BOOLEAN);*/
82 /*static NTSTATUS (WINAPI *pRtlUpcaseUnicodeToMultiByteN)(LPSTR, DWORD, LPDWORD, LPCWSTR, DWORD);*/
83 /*static NTSTATUS (WINAPI *pRtlUpcaseUnicodeToOemN)(LPSTR, DWORD, LPDWORD, LPCWSTR, DWORD);*/
84 /*static UINT (WINAPI *pRtlOemToUnicodeSize)(const STRING *);*/
85 /*static DWORD (WINAPI *pRtlAnsiStringToUnicodeSize)(const STRING *);*/
86
87
88 static WCHAR* AtoW( const char* p )
89 {
90 WCHAR* buffer;
91 DWORD len = MultiByteToWideChar( CP_ACP, 0, p, -1, NULL, 0 );
92 buffer = malloc( len * sizeof(WCHAR) );
93 MultiByteToWideChar( CP_ACP, 0, p, -1, buffer, len );
94 return buffer;
95 }
96
97
98 static void InitFunctionPtrs(void)
99 {
100 hntdll = LoadLibraryA("ntdll.dll");
101 ok(hntdll != 0, "LoadLibrary failed\n");
102 if (hntdll) {
103 pRtlAnsiStringToUnicodeString = (void *)GetProcAddress(hntdll, "RtlAnsiStringToUnicodeString");
104 pRtlAppendAsciizToString = (void *)GetProcAddress(hntdll, "RtlAppendAsciizToString");
105 pRtlAppendStringToString = (void *)GetProcAddress(hntdll, "RtlAppendStringToString");
106 pRtlAppendUnicodeStringToString = (void *)GetProcAddress(hntdll, "RtlAppendUnicodeStringToString");
107 pRtlAppendUnicodeToString = (void *)GetProcAddress(hntdll, "RtlAppendUnicodeToString");
108 pRtlCharToInteger = (void *)GetProcAddress(hntdll, "RtlCharToInteger");
109 pRtlCopyString = (void *)GetProcAddress(hntdll, "RtlCopyString");
110 pRtlCreateUnicodeString = (void *)GetProcAddress(hntdll, "RtlCreateUnicodeString");
111 pRtlCreateUnicodeStringFromAsciiz = (void *)GetProcAddress(hntdll, "RtlCreateUnicodeStringFromAsciiz");
112 pRtlDowncaseUnicodeString = (void *)GetProcAddress(hntdll, "RtlDowncaseUnicodeString");
113 pRtlDuplicateUnicodeString = (void *)GetProcAddress(hntdll, "RtlDuplicateUnicodeString");
114 pRtlEqualUnicodeString = (void *)GetProcAddress(hntdll, "RtlEqualUnicodeString");
115 pRtlFindCharInUnicodeString = (void *)GetProcAddress(hntdll, "RtlFindCharInUnicodeString");
116 pRtlFreeAnsiString = (void *)GetProcAddress(hntdll, "RtlFreeAnsiString");
117 pRtlInitAnsiString = (void *)GetProcAddress(hntdll, "RtlInitAnsiString");
118 pRtlInitString = (void *)GetProcAddress(hntdll, "RtlInitString");
119 pRtlInitUnicodeString = (void *)GetProcAddress(hntdll, "RtlInitUnicodeString");
120 pRtlInitUnicodeStringEx = (void *)GetProcAddress(hntdll, "RtlInitUnicodeStringEx");
121 pRtlIntegerToChar = (void *)GetProcAddress(hntdll, "RtlIntegerToChar");
122 pRtlIntegerToUnicodeString = (void *)GetProcAddress(hntdll, "RtlIntegerToUnicodeString");
123 pRtlMultiAppendUnicodeStringBuffer = (void *)GetProcAddress(hntdll, "RtlMultiAppendUnicodeStringBuffer");
124 pRtlUnicodeStringToAnsiString = (void *)GetProcAddress(hntdll, "RtlUnicodeStringToAnsiString");
125 pRtlUnicodeStringToInteger = (void *)GetProcAddress(hntdll, "RtlUnicodeStringToInteger");
126 pRtlUpcaseUnicodeChar = (void *)GetProcAddress(hntdll, "RtlUpcaseUnicodeChar");
127 pRtlUpcaseUnicodeString = (void *)GetProcAddress(hntdll, "RtlUpcaseUnicodeString");
128 pRtlUpperChar = (void *)GetProcAddress(hntdll, "RtlUpperChar");
129 pRtlUpperString = (void *)GetProcAddress(hntdll, "RtlUpperString");
130 pRtlValidateUnicodeString = (void *)GetProcAddress(hntdll, "RtlValidateUnicodeString");
131 pRtlGUIDFromString = (void *)GetProcAddress(hntdll, "RtlGUIDFromString");
132 pRtlStringFromGUID = (void *)GetProcAddress(hntdll, "RtlStringFromGUID");
133 pRtlIsTextUnicode = (void *)GetProcAddress(hntdll, "RtlIsTextUnicode");
134 }
135 }
136
137
138 static void test_RtlInitString(void)
139 {
140 static const char teststring[] = "Some Wild String";
141 STRING str;
142
143 str.Length = 0;
144 str.MaximumLength = 0;
145 str.Buffer = (void *)0xdeadbeef;
146 pRtlInitString(&str, teststring);
147 ok(str.Length == sizeof(teststring) - sizeof(char), "Length uninitialized\n");
148 ok(str.MaximumLength == sizeof(teststring), "MaximumLength uninitialized\n");
149 ok(str.Buffer == teststring, "Buffer not equal to teststring\n");
150 ok(strcmp(str.Buffer, "Some Wild String") == 0, "Buffer written to\n");
151 pRtlInitString(&str, NULL);
152 ok(str.Length == 0, "Length uninitialized\n");
153 ok(str.MaximumLength == 0, "MaximumLength uninitialized\n");
154 ok(str.Buffer == NULL, "Buffer not equal to NULL\n");
155 /* pRtlInitString(NULL, teststring); */
156 }
157
158
159 static void test_RtlInitUnicodeString(void)
160 {
161 #define STRINGW {'S','o','m','e',' ','W','i','l','d',' ','S','t','r','i','n','g',0}
162 static const WCHAR teststring[] = STRINGW;
163 static const WCHAR originalstring[] = STRINGW;
164 #undef STRINGW
165 UNICODE_STRING uni;
166
167 uni.Length = 0;
168 uni.MaximumLength = 0;
169 uni.Buffer = (void *)0xdeadbeef;
170 pRtlInitUnicodeString(&uni, teststring);
171 ok(uni.Length == sizeof(teststring) - sizeof(WCHAR), "Length uninitialized\n");
172 ok(uni.MaximumLength == sizeof(teststring), "MaximumLength uninitialized\n");
173 ok(uni.Buffer == teststring, "Buffer not equal to teststring\n");
174 ok(lstrcmpW(uni.Buffer, originalstring) == 0, "Buffer written to\n");
175 pRtlInitUnicodeString(&uni, NULL);
176 ok(uni.Length == 0, "Length uninitialized\n");
177 ok(uni.MaximumLength == 0, "MaximumLength uninitialized\n");
178 ok(uni.Buffer == NULL, "Buffer not equal to NULL\n");
179 /* pRtlInitUnicodeString(NULL, teststring); */
180 }
181
182
183 #define TESTSTRING2_LEN 1000000
184 /* #define TESTSTRING2_LEN 32766 */
185
186
187 static void test_RtlInitUnicodeStringEx(void)
188 {
189 static const WCHAR teststring[] = {'S','o','m','e',' ','W','i','l','d',' ','S','t','r','i','n','g',0};
190 WCHAR *teststring2;
191 UNICODE_STRING uni;
192 NTSTATUS result;
193
194 teststring2 = (WCHAR *) malloc((TESTSTRING2_LEN + 1) * sizeof(WCHAR));
195 memset(teststring2, 'X', TESTSTRING2_LEN * sizeof(WCHAR));
196 teststring2[TESTSTRING2_LEN] = '\0';
197
198 uni.Length = 12345;
199 uni.MaximumLength = 12345;
200 uni.Buffer = (void *) 0xdeadbeef;
201 result = pRtlInitUnicodeStringEx(&uni, teststring);
202 ok(result == STATUS_SUCCESS,
203 "pRtlInitUnicodeStringEx(&uni, 0) returns %x, expected 0\n",
204 result);
205 ok(uni.Length == 32,
206 "pRtlInitUnicodeStringEx(&uni, 0) sets Length to %u, expected %u\n",
207 uni.Length, 32);
208 ok(uni.MaximumLength == 34,
209 "pRtlInitUnicodeStringEx(&uni, 0) sets MaximumLength to %u, expected %u\n",
210 uni.MaximumLength, 34);
211 ok(uni.Buffer == teststring,
212 "pRtlInitUnicodeStringEx(&uni, 0) sets Buffer to %p, expected %p\n",
213 uni.Buffer, teststring);
214
215 uni.Length = 12345;
216 uni.MaximumLength = 12345;
217 uni.Buffer = (void *) 0xdeadbeef;
218 pRtlInitUnicodeString(&uni, teststring);
219 ok(uni.Length == 32,
220 "pRtlInitUnicodeString(&uni, 0) sets Length to %u, expected %u\n",
221 uni.Length, 32);
222 ok(uni.MaximumLength == 34,
223 "pRtlInitUnicodeString(&uni, 0) sets MaximumLength to %u, expected %u\n",
224 uni.MaximumLength, 34);
225 ok(uni.Buffer == teststring,
226 "pRtlInitUnicodeString(&uni, 0) sets Buffer to %p, expected %p\n",
227 uni.Buffer, teststring);
228
229 uni.Length = 12345;
230 uni.MaximumLength = 12345;
231 uni.Buffer = (void *) 0xdeadbeef;
232 result = pRtlInitUnicodeStringEx(&uni, teststring2);
233 ok(result == STATUS_NAME_TOO_LONG,
234 "pRtlInitUnicodeStringEx(&uni, 0) returns %x, expected %x\n",
235 result, STATUS_NAME_TOO_LONG);
236 ok(uni.Length == 12345,
237 "pRtlInitUnicodeStringEx(&uni, 0) sets Length to %u, expected %u\n",
238 uni.Length, 12345);
239 ok(uni.MaximumLength == 12345,
240 "pRtlInitUnicodeStringEx(&uni, 0) sets MaximumLength to %u, expected %u\n",
241 uni.MaximumLength, 12345);
242 ok(uni.Buffer == (void *) 0xdeadbeef,
243 "pRtlInitUnicodeStringEx(&uni, 0) sets Buffer to %p, expected %x\n",
244 uni.Buffer, 0xdeadbeef);
245
246 uni.Length = 12345;
247 uni.MaximumLength = 12345;
248 uni.Buffer = (void *) 0xdeadbeef;
249 pRtlInitUnicodeString(&uni, teststring2);
250 ok(uni.Length == 33920 /* <= Win2000 */ || uni.Length == 65532 /* >= Win XP */,
251 "pRtlInitUnicodeString(&uni, 0) sets Length to %u, expected %u\n",
252 uni.Length, 65532);
253 ok(uni.MaximumLength == 33922 /* <= Win2000 */ || uni.MaximumLength == 65534 /* >= Win XP */,
254 "pRtlInitUnicodeString(&uni, 0) sets MaximumLength to %u, expected %u\n",
255 uni.MaximumLength, 65534);
256 ok(uni.Buffer == teststring2,
257 "pRtlInitUnicodeString(&uni, 0) sets Buffer to %p, expected %p\n",
258 uni.Buffer, teststring2);
259 ok(memcmp(uni.Buffer, teststring2, (TESTSTRING2_LEN + 1) * sizeof(WCHAR)) == 0,
260 "pRtlInitUnicodeString(&uni, 0) changes Buffer\n");
261
262 uni.Length = 12345;
263 uni.MaximumLength = 12345;
264 uni.Buffer = (void *) 0xdeadbeef;
265 result = pRtlInitUnicodeStringEx(&uni, 0);
266 ok(result == STATUS_SUCCESS,
267 "pRtlInitUnicodeStringEx(&uni, 0) returns %x, expected 0\n",
268 result);
269 ok(uni.Length == 0,
270 "pRtlInitUnicodeStringEx(&uni, 0) sets Length to %u, expected %u\n",
271 uni.Length, 0);
272 ok(uni.MaximumLength == 0,
273 "pRtlInitUnicodeStringEx(&uni, 0) sets MaximumLength to %u, expected %u\n",
274 uni.MaximumLength, 0);
275 ok(uni.Buffer == NULL,
276 "pRtlInitUnicodeStringEx(&uni, 0) sets Buffer to %p, expected %p\n",
277 uni.Buffer, NULL);
278
279 uni.Length = 12345;
280 uni.MaximumLength = 12345;
281 uni.Buffer = (void *) 0xdeadbeef;
282 pRtlInitUnicodeString(&uni, 0);
283 ok(uni.Length == 0,
284 "pRtlInitUnicodeString(&uni, 0) sets Length to %u, expected %u\n",
285 uni.Length, 0);
286 ok(uni.MaximumLength == 0,
287 "pRtlInitUnicodeString(&uni, 0) sets MaximumLength to %u, expected %u\n",
288 uni.MaximumLength, 0);
289 ok(uni.Buffer == NULL,
290 "pRtlInitUnicodeString(&uni, 0) sets Buffer to %p, expected %p\n",
291 uni.Buffer, NULL);
292
293 free(teststring2);
294 }
295
296
297 typedef struct {
298 int add_nul;
299 int source_Length;
300 int source_MaximumLength;
301 int source_buf_size;
302 const char *source_buf;
303 int dest_Length;
304 int dest_MaximumLength;
305 int dest_buf_size;
306 const char *dest_buf;
307 int res_Length;
308 int res_MaximumLength;
309 int res_buf_size;
310 const char *res_buf;
311 NTSTATUS result;
312 } dupl_ustr_t;
313
314 static const dupl_ustr_t dupl_ustr[] = {
315 { 0, 32, 34, 34, "This is a string", 40, 42, 42, "--------------------", 32, 32, 32, "This is a string", STATUS_SUCCESS},
316 { 0, 32, 32, 32, "This is a string", 40, 42, 42, "--------------------", 32, 32, 32, "This is a string", STATUS_SUCCESS},
317 { 0, 32, 30, 34, "This is a string", 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
318 { 0, 32, 34, 34, "This is a string", 40, 42, 42, NULL, 32, 32, 32, "This is a string", STATUS_SUCCESS},
319 { 0, 32, 32, 32, "This is a string", 40, 42, 42, NULL, 32, 32, 32, "This is a string", STATUS_SUCCESS},
320 { 0, 32, 30, 34, "This is a string", 40, 42, 42, NULL, 40, 42, 0, NULL, STATUS_INVALID_PARAMETER},
321 { 1, 32, 34, 34, "This is a string", 40, 42, 42, "--------------------", 32, 34, 34, "This is a string", STATUS_SUCCESS},
322 { 1, 32, 32, 32, "This is a string", 40, 42, 42, "--------------------", 32, 34, 34, "This is a string", STATUS_SUCCESS},
323 { 1, 32, 30, 34, "This is a string", 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
324 { 1, 32, 34, 34, "This is a string", 40, 42, 42, NULL, 32, 34, 34, "This is a string", STATUS_SUCCESS},
325 { 1, 32, 32, 32, "This is a string", 40, 42, 42, NULL, 32, 34, 34, "This is a string", STATUS_SUCCESS},
326 { 1, 32, 30, 34, "This is a string", 40, 42, 42, NULL, 40, 42, 0, NULL, STATUS_INVALID_PARAMETER},
327 { 2, 32, 34, 34, "This is a string", 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
328 { 2, 32, 32, 32, "This is a string", 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
329 { 2, 32, 30, 34, "This is a string", 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
330 { 2, 32, 34, 34, "This is a string", 40, 42, 42, NULL, 40, 42, 0, NULL, STATUS_INVALID_PARAMETER},
331 { 2, 32, 32, 32, "This is a string", 40, 42, 42, NULL, 40, 42, 0, NULL, STATUS_INVALID_PARAMETER},
332 { 2, 32, 30, 34, "This is a string", 40, 42, 42, NULL, 40, 42, 0, NULL, STATUS_INVALID_PARAMETER},
333 { 3, 32, 34, 34, "This is a string", 40, 42, 42, "--------------------", 32, 34, 34, "This is a string", STATUS_SUCCESS},
334 { 3, 32, 32, 32, "This is a string", 40, 42, 42, "--------------------", 32, 34, 34, "This is a string", STATUS_SUCCESS},
335 { 3, 32, 30, 32, "This is a string", 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
336 { 3, 32, 34, 34, "This is a string", 40, 42, 42, NULL, 32, 34, 34, "This is a string", STATUS_SUCCESS},
337 { 3, 32, 32, 32, "This is a string", 40, 42, 42, NULL, 32, 34, 34, "This is a string", STATUS_SUCCESS},
338 { 3, 32, 30, 32, "This is a string", 40, 42, 42, NULL, 40, 42, 0, NULL, STATUS_INVALID_PARAMETER},
339 { 4, 32, 34, 34, "This is a string", 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
340 { 5, 32, 34, 34, "This is a string", 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
341 { 6, 32, 34, 34, "This is a string", 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
342 { 7, 32, 34, 34, "This is a string", 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
343 { 8, 32, 34, 34, "This is a string", 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
344 { 9, 32, 34, 34, "This is a string", 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
345 {10, 32, 34, 34, "This is a string", 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
346 {11, 32, 34, 34, "This is a string", 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
347 {12, 32, 34, 34, "This is a string", 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
348 {13, 32, 34, 34, "This is a string", 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
349 {14, 32, 34, 34, "This is a string", 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
350 {15, 32, 34, 34, "This is a string", 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
351 {16, 32, 34, 34, "This is a string", 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
352 {-1, 32, 34, 34, "This is a string", 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
353 {-5, 32, 34, 34, "This is a string", 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
354 {-9, 32, 34, 34, "This is a string", 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
355 { 0, 0, 2, 2, "", 40, 42, 42, "--------------------", 0, 0, 0, NULL, STATUS_SUCCESS},
356 { 0, 0, 0, 0, "", 40, 42, 42, "--------------------", 0, 0, 0, NULL, STATUS_SUCCESS},
357 { 0, 0, 2, 2, "", 40, 42, 42, NULL, 0, 0, 0, NULL, STATUS_SUCCESS},
358 { 0, 0, 0, 0, "", 40, 42, 42, NULL, 0, 0, 0, NULL, STATUS_SUCCESS},
359 { 0, 0, 2, 2, NULL, 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
360 { 0, 0, 0, 0, NULL, 40, 42, 42, "--------------------", 0, 0, 0, NULL, STATUS_SUCCESS},
361 { 0, 0, 2, 2, NULL, 40, 42, 42, NULL, 40, 42, 0, NULL, STATUS_INVALID_PARAMETER},
362 { 0, 0, 0, 0, NULL, 40, 42, 42, NULL, 0, 0, 0, NULL, STATUS_SUCCESS},
363 { 1, 0, 2, 2, "", 40, 42, 42, "--------------------", 0, 0, 0, NULL, STATUS_SUCCESS},
364 { 1, 0, 0, 0, "", 40, 42, 42, "--------------------", 0, 0, 0, NULL, STATUS_SUCCESS},
365 { 1, 0, 2, 2, "", 40, 42, 42, NULL, 0, 0, 0, NULL, STATUS_SUCCESS},
366 { 1, 0, 0, 0, "", 40, 42, 42, NULL, 0, 0, 0, NULL, STATUS_SUCCESS},
367 { 1, 0, 2, 2, NULL, 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
368 { 1, 0, 0, 0, NULL, 40, 42, 42, "--------------------", 0, 0, 0, NULL, STATUS_SUCCESS},
369 { 1, 0, 2, 2, NULL, 40, 42, 42, NULL, 40, 42, 0, NULL, STATUS_INVALID_PARAMETER},
370 { 1, 0, 0, 0, NULL, 40, 42, 42, NULL, 0, 0, 0, NULL, STATUS_SUCCESS},
371 { 2, 0, 2, 2, "", 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
372 { 2, 0, 0, 0, "", 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
373 { 2, 0, 2, 2, "", 40, 42, 42, NULL, 40, 42, 0, NULL, STATUS_INVALID_PARAMETER},
374 { 2, 0, 0, 0, "", 40, 42, 42, NULL, 40, 42, 0, NULL, STATUS_INVALID_PARAMETER},
375 { 2, 0, 2, 2, NULL, 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
376 { 2, 0, 0, 0, NULL, 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
377 { 2, 0, 2, 2, NULL, 40, 42, 42, NULL, 40, 42, 0, NULL, STATUS_INVALID_PARAMETER},
378 { 2, 0, 0, 0, NULL, 40, 42, 42, NULL, 40, 42, 0, NULL, STATUS_INVALID_PARAMETER},
379 { 3, 0, 2, 2, "", 40, 42, 42, "--------------------", 0, 2, 2, "", STATUS_SUCCESS},
380 { 3, 0, 0, 0, "", 40, 42, 42, "--------------------", 0, 2, 2, "", STATUS_SUCCESS},
381 { 3, 0, 2, 2, "", 40, 42, 42, NULL, 0, 2, 2, "", STATUS_SUCCESS},
382 { 3, 0, 0, 0, "", 40, 42, 42, NULL, 0, 2, 2, "", STATUS_SUCCESS},
383 { 3, 0, 2, 2, NULL, 40, 42, 42, "--------------------", 40, 42, 42, "--------------------", STATUS_INVALID_PARAMETER},
384 { 3, 0, 0, 0, NULL, 40, 42, 42, "--------------------", 0, 2, 2, "", STATUS_SUCCESS},
385 { 3, 0, 2, 2, NULL, 40, 42, 42, NULL, 40, 42, 0, NULL, STATUS_INVALID_PARAMETER},
386 { 3, 0, 0, 0, NULL, 40, 42, 42, NULL, 0, 2, 2, "", STATUS_SUCCESS},
387 };
388 #define NB_DUPL_USTR (sizeof(dupl_ustr)/sizeof(*dupl_ustr))
389
390
391 static void test_RtlDuplicateUnicodeString(void)
392 {
393 size_t pos;
394 WCHAR source_buf[257];
395 WCHAR dest_buf[257];
396 WCHAR res_buf[257];
397 UNICODE_STRING source_str;
398 UNICODE_STRING dest_str;
399 UNICODE_STRING res_str;
400 CHAR dest_ansi_buf[257];
401 STRING dest_ansi_str;
402 NTSTATUS result;
403 unsigned int test_num;
404
405 for (test_num = 0; test_num < NB_DUPL_USTR; test_num++) {
406 source_str.Length = dupl_ustr[test_num].source_Length;
407 source_str.MaximumLength = dupl_ustr[test_num].source_MaximumLength;
408 if (dupl_ustr[test_num].source_buf != NULL) {
409 for (pos = 0; pos < dupl_ustr[test_num].source_buf_size/sizeof(WCHAR); pos++) {
410 source_buf[pos] = dupl_ustr[test_num].source_buf[pos];
411 }
412 source_str.Buffer = source_buf;
413 } else {
414 source_str.Buffer = NULL;
415 }
416 dest_str.Length = dupl_ustr[test_num].dest_Length;
417 dest_str.MaximumLength = dupl_ustr[test_num].dest_MaximumLength;
418 if (dupl_ustr[test_num].dest_buf != NULL) {
419 for (pos = 0; pos < dupl_ustr[test_num].dest_buf_size/sizeof(WCHAR); pos++) {
420 dest_buf[pos] = dupl_ustr[test_num].dest_buf[pos];
421 }
422 dest_str.Buffer = dest_buf;
423 } else {
424 dest_str.Buffer = NULL;
425 }
426 res_str.Length = dupl_ustr[test_num].res_Length;
427 res_str.MaximumLength = dupl_ustr[test_num].res_MaximumLength;
428 if (dupl_ustr[test_num].res_buf != NULL) {
429 for (pos = 0; pos < dupl_ustr[test_num].res_buf_size/sizeof(WCHAR); pos++) {
430 res_buf[pos] = dupl_ustr[test_num].res_buf[pos];
431 }
432 res_str.Buffer = res_buf;
433 } else {
434 res_str.Buffer = NULL;
435 }
436 result = pRtlDuplicateUnicodeString(dupl_ustr[test_num].add_nul, &source_str, &dest_str);
437 dest_ansi_str.Length = dest_str.Length / sizeof(WCHAR);
438 dest_ansi_str.MaximumLength = dest_ansi_str.Length + 1;
439 for (pos = 0; pos < dest_ansi_str.Length; pos++) {
440 dest_ansi_buf[pos] = (char)dest_buf[pos];
441 }
442 dest_ansi_buf[dest_ansi_str.Length] = '\0';
443 dest_ansi_str.Buffer = dest_ansi_buf;
444 ok(result == dupl_ustr[test_num].result,
445 "(test %d): RtlDuplicateUnicodeString(%d, source, dest) has result %x, expected %x\n",
446 test_num, dupl_ustr[test_num].add_nul, result, dupl_ustr[test_num].result);
447 ok(dest_str.Length == dupl_ustr[test_num].res_Length,
448 "(test %d): RtlDuplicateUnicodeString(%d, source, dest) destination has Length %d, expected %d\n",
449 test_num, dupl_ustr[test_num].add_nul, dest_str.Length, dupl_ustr[test_num].res_Length);
450 ok(dest_str.MaximumLength == dupl_ustr[test_num].res_MaximumLength,
451 "(test %d): RtlDuplicateUnicodeString(%d, source, dest) destination has MaximumLength %d, expected %d\n",
452 test_num, dupl_ustr[test_num].add_nul, dest_str.MaximumLength, dupl_ustr[test_num].res_MaximumLength);
453 if (result == STATUS_INVALID_PARAMETER) {
454 ok((dest_str.Buffer == NULL && res_str.Buffer == NULL) ||
455 dest_str.Buffer == dest_buf,
456 "(test %d): RtlDuplicateUnicodeString(%d, source, dest) destination buffer changed %p expected %p\n",
457 test_num, dupl_ustr[test_num].add_nul, dest_str.Buffer, dest_buf);
458 } else {
459 ok(dest_str.Buffer != dest_buf,
460 "(test %d): RtlDuplicateUnicodeString(%d, source, dest) has destination buffer unchanged %p\n",
461 test_num, dupl_ustr[test_num].add_nul, dest_str.Buffer);
462 }
463 if (dest_str.Buffer != NULL && dupl_ustr[test_num].res_buf != NULL) {
464 ok(memcmp(dest_str.Buffer, res_str.Buffer, dupl_ustr[test_num].res_buf_size) == 0,
465 "(test %d): RtlDuplicateUnicodeString(%d, source, dest) has destination \"%s\" expected \"%s\"\n",
466 test_num, dupl_ustr[test_num].add_nul, dest_ansi_str.Buffer, dupl_ustr[test_num].res_buf);
467 } else {
468 ok(dest_str.Buffer == NULL && dupl_ustr[test_num].res_buf == NULL,
469 "(test %d): RtlDuplicateUnicodeString(%d, source, dest) has destination %p expected %p\n",
470 test_num, dupl_ustr[test_num].add_nul, dest_str.Buffer, dupl_ustr[test_num].res_buf);
471 }
472 }
473 }
474
475
476 static void test_RtlCopyString(void)
477 {
478 static const char teststring[] = "Some Wild String";
479 char deststring[] = " ";
480 STRING str;
481 STRING deststr;
482
483 pRtlInitString(&str, teststring);
484 pRtlInitString(&deststr, deststring);
485 pRtlCopyString(&deststr, &str);
486 ok(strncmp(str.Buffer, deststring, str.Length) == 0, "String not copied\n");
487 }
488
489
490 static void test_RtlUpperChar(void)
491 {
492 int ch;
493 int upper_ch;
494 int expected_upper_ch;
495 int byte_ch;
496
497 for (ch = -1; ch <= 1024; ch++) {
498 upper_ch = pRtlUpperChar(ch);
499 byte_ch = ch & 0xff;
500 if (byte_ch >= 'a' && byte_ch <= 'z') {
501 expected_upper_ch = (CHAR) (byte_ch - 'a' + 'A');
502 } else {
503 expected_upper_ch = (CHAR) byte_ch;
504 }
505 ok(upper_ch == expected_upper_ch,
506 "RtlUpperChar('%c'[=0x%x]) has result '%c'[=0x%x], expected '%c'[=0x%x]\n",
507 ch, ch, upper_ch, upper_ch, expected_upper_ch, expected_upper_ch);
508 }
509 }
510
511
512 static void test_RtlUpperString(void)
513 {
514 int i;
515 CHAR ch;
516 CHAR upper_ch;
517 char ascii_buf[257];
518 char result_buf[257];
519 char upper_buf[257];
520 STRING ascii_str;
521 STRING result_str;
522 STRING upper_str;
523
524 for (i = 0; i <= 255; i++) {
525 ch = (CHAR) i;
526 if (ch >= 'a' && ch <= 'z') {
527 upper_ch = ch - 'a' + 'A';
528 } else {
529 upper_ch = ch;
530 }
531 ascii_buf[i] = ch;
532 result_buf[i] = '\0';
533 upper_buf[i] = upper_ch;
534 }
535 ascii_buf[i] = '\0';
536 result_buf[i] = '\0';
537 upper_buf[i] = '\0';
538 ascii_str.Length = 256;
539 ascii_str.MaximumLength = 256;
540 ascii_str.Buffer = ascii_buf;
541 result_str.Length = 256;
542 result_str.MaximumLength = 256;
543 result_str.Buffer = result_buf;
544 upper_str.Length = 256;
545 upper_str.MaximumLength = 256;
546 upper_str.Buffer = upper_buf;
547
548 pRtlUpperString(&result_str, &ascii_str);
549 ok(memcmp(result_str.Buffer, upper_str.Buffer, 256) == 0,
550 "RtlUpperString does not work as expected\n");
551 }
552
553
554 static void test_RtlUpcaseUnicodeChar(void)
555 {
556 int i;
557 WCHAR ch;
558 WCHAR upper_ch;
559 WCHAR expected_upper_ch;
560
561 for (i = 0; i <= 255; i++) {
562 ch = (WCHAR) i;
563 upper_ch = pRtlUpcaseUnicodeChar(ch);
564 if (ch >= 'a' && ch <= 'z') {
565 expected_upper_ch = ch - 'a' + 'A';
566 } else if (ch >= 0xe0 && ch <= 0xfe && ch != 0xf7) {
567 expected_upper_ch = ch - 0x20;
568 } else if (ch == 0xff) {
569 expected_upper_ch = 0x178;
570 } else {
571 expected_upper_ch = ch;
572 }
573 ok(upper_ch == expected_upper_ch,
574 "RtlUpcaseUnicodeChar('%c'[=0x%x]) has result '%c'[=0x%x], expected: '%c'[=0x%x]\n",
575 ch, ch, upper_ch, upper_ch, expected_upper_ch, expected_upper_ch);
576 }
577 }
578
579
580 static void test_RtlUpcaseUnicodeString(void)
581 {
582 int i;
583 WCHAR ch;
584 WCHAR upper_ch;
585 WCHAR ascii_buf[257];
586 WCHAR result_buf[257];
587 WCHAR upper_buf[257];
588 UNICODE_STRING ascii_str;
589 UNICODE_STRING result_str;
590 UNICODE_STRING upper_str;
591
592 for (i = 0; i <= 255; i++) {
593 ch = (WCHAR) i;
594 if (ch >= 'a' && ch <= 'z') {
595 upper_ch = ch - 'a' + 'A';
596 } else if (ch >= 0xe0 && ch <= 0xfe && ch != 0xf7) {
597 upper_ch = ch - 0x20;
598 } else if (ch == 0xff) {
599 upper_ch = 0x178;
600 } else {
601 upper_ch = ch;
602 }
603 ascii_buf[i] = ch;
604 result_buf[i] = '\0';
605 upper_buf[i] = upper_ch;
606 }
607 ascii_buf[i] = '\0';
608 result_buf[i] = '\0';
609 upper_buf[i] = '\0';
610 ascii_str.Length = 512;
611 ascii_str.MaximumLength = 512;
612 ascii_str.Buffer = ascii_buf;
613 result_str.Length = 512;
614 result_str.MaximumLength = 512;
615 result_str.Buffer = result_buf;
616 upper_str.Length = 512;
617 upper_str.MaximumLength = 512;
618 upper_str.Buffer = upper_buf;
619
620 pRtlUpcaseUnicodeString(&result_str, &ascii_str, 0);
621 for (i = 0; i <= 255; i++) {
622 ok(result_str.Buffer[i] == upper_str.Buffer[i],
623 "RtlUpcaseUnicodeString works wrong: '%c'[=0x%x] is converted to '%c'[=0x%x], expected: '%c'[=0x%x]\n",
624 ascii_str.Buffer[i], ascii_str.Buffer[i],
625 result_str.Buffer[i], result_str.Buffer[i],
626 upper_str.Buffer[i], upper_str.Buffer[i]);
627 }
628 }
629
630
631 static void test_RtlDowncaseUnicodeString(void)
632 {
633 int i;
634 WCHAR ch;
635 WCHAR lower_ch;
636 WCHAR source_buf[1025];
637 WCHAR result_buf[1025];
638 WCHAR lower_buf[1025];
639 UNICODE_STRING source_str;
640 UNICODE_STRING result_str;
641 UNICODE_STRING lower_str;
642
643 for (i = 0; i < 1024; i++) {
644 ch = (WCHAR) i;
645 if (ch >= 'A' && ch <= 'Z') {
646 lower_ch = ch - 'A' + 'a';
647 } else if (ch >= 0xc0 && ch <= 0xde && ch != 0xd7) {
648 lower_ch = ch + 0x20;
649 } else if (ch >= 0x391 && ch <= 0x3ab && ch != 0x3a2) {
650 lower_ch = ch + 0x20;
651 } else {
652 switch (ch) {
653 case 0x178: lower_ch = 0xff; break;
654 case 0x181: lower_ch = 0x253; break;
655 case 0x186: lower_ch = 0x254; break;
656 case 0x189: lower_ch = 0x256; break;
657 case 0x18a: lower_ch = 0x257; break;
658 case 0x18e: lower_ch = 0x1dd; break;
659 case 0x18f: lower_ch = 0x259; break;
660 case 0x190: lower_ch = 0x25b; break;
661 case 0x193: lower_ch = 0x260; break;
662 case 0x194: lower_ch = 0x263; break;
663 case 0x196: lower_ch = 0x269; break;
664 case 0x197: lower_ch = 0x268; break;
665 case 0x19c: lower_ch = 0x26f; break;
666 case 0x19d: lower_ch = 0x272; break;
667 case 0x19f: lower_ch = 0x275; break;
668 case 0x1a9: lower_ch = 0x283; break;
669 case 0x1ae: lower_ch = 0x288; break;
670 case 0x1b1: lower_ch = 0x28a; break;
671 case 0x1b2: lower_ch = 0x28b; break;
672 case 0x1b7: lower_ch = 0x292; break;
673 case 0x1c4: lower_ch = 0x1c6; break;
674 case 0x1c7: lower_ch = 0x1c9; break;
675 case 0x1ca: lower_ch = 0x1cc; break;
676 case 0x1f1: lower_ch = 0x1f3; break;
677 case 0x386: lower_ch = 0x3ac; break;
678 case 0x388: lower_ch = 0x3ad; break;
679 case 0x389: lower_ch = 0x3ae; break;
680 case 0x38a: lower_ch = 0x3af; break;
681 case 0x38c: lower_ch = 0x3cc; break;
682 case 0x38e: lower_ch = 0x3cd; break;
683 case 0x38f: lower_ch = 0x3ce; break;
684 default: lower_ch = ch; break;
685 } /* switch */
686 }
687 source_buf[i] = ch;
688 result_buf[i] = '\0';
689 lower_buf[i] = lower_ch;
690 }
691 source_buf[i] = '\0';
692 result_buf[i] = '\0';
693 lower_buf[i] = '\0';
694 source_str.Length = 2048;
695 source_str.MaximumLength = 2048;
696 source_str.Buffer = source_buf;
697 result_str.Length = 2048;
698 result_str.MaximumLength = 2048;
699 result_str.Buffer = result_buf;
700 lower_str.Length = 2048;
701 lower_str.MaximumLength = 2048;
702 lower_str.Buffer = lower_buf;
703
704 pRtlDowncaseUnicodeString(&result_str, &source_str, 0);
705 for (i = 0; i <= 1024; i++) {
706 ok(result_str.Buffer[i] == lower_str.Buffer[i] || result_str.Buffer[i] == source_str.Buffer[i] + 1,
707 "RtlDowncaseUnicodeString works wrong: '%c'[=0x%x] is converted to '%c'[=0x%x], expected: '%c'[=0x%x]\n",
708 source_str.Buffer[i], source_str.Buffer[i],
709 result_str.Buffer[i], result_str.Buffer[i],
710 lower_str.Buffer[i], lower_str.Buffer[i]);
711 }
712 }
713
714
715 typedef struct {
716 int ansi_Length;
717 int ansi_MaximumLength;
718 int ansi_buf_size;
719 const char *ansi_buf;
720 int uni_Length;
721 int uni_MaximumLength;
722 int uni_buf_size;
723 const char *uni_buf;
724 BOOLEAN doalloc;
725 int res_Length;
726 int res_MaximumLength;
727 int res_buf_size;
728 const char *res_buf;
729 NTSTATUS result;
730 } ustr2astr_t;
731
732 static const ustr2astr_t ustr2astr[] = {
733 { 10, 12, 12, "------------", 0, 0, 0, "", TRUE, 0, 1, 1, "", STATUS_SUCCESS},
734 { 10, 12, 12, "------------", 12, 12, 12, "abcdef", TRUE, 6, 7, 7, "abcdef", STATUS_SUCCESS},
735 { 0, 2, 12, "------------", 12, 12, 12, "abcdef", TRUE, 6, 7, 7, "abcdef", STATUS_SUCCESS},
736 { 10, 12, 12, NULL, 12, 12, 12, "abcdef", TRUE, 6, 7, 7, "abcdef", STATUS_SUCCESS},
737 { 0, 0, 12, "------------", 12, 12, 12, "abcdef", FALSE, 6, 0, 0, "", STATUS_BUFFER_OVERFLOW},
738 { 0, 1, 12, "------------", 12, 12, 12, "abcdef", FALSE, 0, 1, 1, "", STATUS_BUFFER_OVERFLOW},
739 { 0, 2, 12, "------------", 12, 12, 12, "abcdef", FALSE, 1, 2, 2, "a", STATUS_BUFFER_OVERFLOW},
740 { 0, 3, 12, "------------", 12, 12, 12, "abcdef", FALSE, 2, 3, 3, "ab", STATUS_BUFFER_OVERFLOW},
741 { 0, 5, 12, "------------", 12, 12, 12, "abcdef", FALSE, 4, 5, 5, "abcd", STATUS_BUFFER_OVERFLOW},
742 { 8, 5, 12, "------------", 12, 12, 12, "abcdef", FALSE, 4, 5, 5, "abcd", STATUS_BUFFER_OVERFLOW},
743 { 8, 6, 12, "------------", 12, 12, 12, "abcdef", FALSE, 5, 6, 6, "abcde", STATUS_BUFFER_OVERFLOW},
744 { 8, 7, 12, "------------", 12, 12, 12, "abcdef", FALSE, 6, 7, 7, "abcdef", STATUS_SUCCESS},
745 { 8, 7, 12, "------------", 0, 12, 12, NULL, FALSE, 0, 7, 0, "", STATUS_SUCCESS},
746 { 0, 0, 12, NULL, 10, 10, 12, NULL, FALSE, 5, 0, 0, NULL, STATUS_BUFFER_OVERFLOW},
747 };
748 #define NB_USTR2ASTR (sizeof(ustr2astr)/sizeof(*ustr2astr))
749
750
751 static void test_RtlUnicodeStringToAnsiString(void)
752 {
753 size_t pos;
754 CHAR ansi_buf[257];
755 WCHAR uni_buf[257];
756 STRING ansi_str;
757 UNICODE_STRING uni_str;
758 NTSTATUS result;
759 unsigned int test_num;
760
761 for (test_num = 0; test_num < NB_USTR2ASTR; test_num++) {
762 ansi_str.Length = ustr2astr[test_num].ansi_Length;
763 ansi_str.MaximumLength = ustr2astr[test_num].ansi_MaximumLength;
764 if (ustr2astr[test_num].ansi_buf != NULL) {
765 memcpy(ansi_buf, ustr2astr[test_num].ansi_buf, ustr2astr[test_num].ansi_buf_size);
766 ansi_buf[ustr2astr[test_num].ansi_buf_size] = '\0';
767 ansi_str.Buffer = ansi_buf;
768 } else {
769 ansi_str.Buffer = NULL;
770 }
771 uni_str.Length = ustr2astr[test_num].uni_Length;
772 uni_str.MaximumLength = ustr2astr[test_num].uni_MaximumLength;
773 if (ustr2astr[test_num].uni_buf != NULL) {
774 for (pos = 0; pos < ustr2astr[test_num].uni_buf_size/sizeof(WCHAR); pos++) {
775 uni_buf[pos] = ustr2astr[test_num].uni_buf[pos];
776 }
777 uni_str.Buffer = uni_buf;
778 } else {
779 uni_str.Buffer = NULL;
780 }
781 result = pRtlUnicodeStringToAnsiString(&ansi_str, &uni_str, ustr2astr[test_num].doalloc);
782 ok(result == ustr2astr[test_num].result,
783 "(test %d): RtlUnicodeStringToAnsiString(ansi, uni, %d) has result %x, expected %x\n",
784 test_num, ustr2astr[test_num].doalloc, result, ustr2astr[test_num].result);
785 ok(ansi_str.Length == ustr2astr[test_num].res_Length,
786 "(test %d): RtlUnicodeStringToAnsiString(ansi, uni, %d) ansi has Length %d, expected %d\n",
787 test_num, ustr2astr[test_num].doalloc, ansi_str.Length, ustr2astr[test_num].res_Length);
788 ok(ansi_str.MaximumLength == ustr2astr[test_num].res_MaximumLength,
789 "(test %d): RtlUnicodeStringToAnsiString(ansi, uni, %d) ansi has MaximumLength %d, expected %d\n",
790 test_num, ustr2astr[test_num].doalloc, ansi_str.MaximumLength, ustr2astr[test_num].res_MaximumLength);
791 ok(memcmp(ansi_str.Buffer, ustr2astr[test_num].res_buf, ustr2astr[test_num].res_buf_size) == 0,
792 "(test %d): RtlUnicodeStringToAnsiString(ansi, uni, %d) has ansi \"%s\" expected \"%s\"\n",
793 test_num, ustr2astr[test_num].doalloc, ansi_str.Buffer, ustr2astr[test_num].res_buf);
794 }
795 }
796
797
798 typedef struct {
799 int dest_Length;
800 int dest_MaximumLength;
801 int dest_buf_size;
802 const char *dest_buf;
803 const char *src;
804 int res_Length;
805 int res_MaximumLength;
806 int res_buf_size;
807 const char *res_buf;
808 NTSTATUS result;
809 } app_asc2str_t;
810
811 static const app_asc2str_t app_asc2str[] = {
812 { 5, 12, 15, "TestS01234abcde", "tring", 10, 12, 15, "TestStringabcde", STATUS_SUCCESS},
813 { 5, 11, 15, "TestS01234abcde", "tring", 10, 11, 15, "TestStringabcde", STATUS_SUCCESS},
814 { 5, 10, 15, "TestS01234abcde", "tring", 10, 10, 15, "TestStringabcde", STATUS_SUCCESS},
815 { 5, 9, 15, "TestS01234abcde", "tring", 5, 9, 15, "TestS01234abcde", STATUS_BUFFER_TOO_SMALL},
816 { 5, 0, 15, "TestS01234abcde", "tring", 5, 0, 15, "TestS01234abcde", STATUS_BUFFER_TOO_SMALL},
817 { 5, 14, 15, "TestS01234abcde", "tring", 10, 14, 15, "TestStringabcde", STATUS_SUCCESS},
818 { 5, 14, 15, "TestS01234abcde", NULL, 5, 14, 15, "TestS01234abcde", STATUS_SUCCESS},
819 { 5, 14, 15, NULL, NULL, 5, 14, 15, NULL, STATUS_SUCCESS},
820 { 5, 12, 15, "Tst\0S01234abcde", "tr\0i", 7, 12, 15, "Tst\0Str234abcde", STATUS_SUCCESS},
821 };
822 #define NB_APP_ASC2STR (sizeof(app_asc2str)/sizeof(*app_asc2str))
823
824
825 static void test_RtlAppendAsciizToString(void)
826 {
827 CHAR dest_buf[257];
828 STRING dest_str;
829 NTSTATUS result;
830 unsigned int test_num;
831
832 for (test_num = 0; test_num < NB_APP_ASC2STR; test_num++) {
833 dest_str.Length = app_asc2str[test_num].dest_Length;
834 dest_str.MaximumLength = app_asc2str[test_num].dest_MaximumLength;
835 if (app_asc2str[test_num].dest_buf != NULL) {
836 memcpy(dest_buf, app_asc2str[test_num].dest_buf, app_asc2str[test_num].dest_buf_size);
837 dest_buf[app_asc2str[test_num].dest_buf_size] = '\0';
838 dest_str.Buffer = dest_buf;
839 } else {
840 dest_str.Buffer = NULL;
841 }
842 result = pRtlAppendAsciizToString(&dest_str, app_asc2str[test_num].src);
843 ok(result == app_asc2str[test_num].result,
844 "(test %d): RtlAppendAsciizToString(dest, src) has result %x, expected %x\n",
845 test_num, result, app_asc2str[test_num].result);
846 ok(dest_str.Length == app_asc2str[test_num].res_Length,
847 "(test %d): RtlAppendAsciizToString(dest, src) dest has Length %d, expected %d\n",
848 test_num, dest_str.Length, app_asc2str[test_num].res_Length);
849 ok(dest_str.MaximumLength == app_asc2str[test_num].res_MaximumLength,
850 "(test %d): RtlAppendAsciizToString(dest, src) dest has MaximumLength %d, expected %d\n",
851 test_num, dest_str.MaximumLength, app_asc2str[test_num].res_MaximumLength);
852 if (dest_str.Buffer == dest_buf) {
853 ok(memcmp(dest_buf, app_asc2str[test_num].res_buf, app_asc2str[test_num].res_buf_size) == 0,
854 "(test %d): RtlAppendAsciizToString(dest, src) has dest \"%s\" expected \"%s\"\n",
855 test_num, dest_buf, app_asc2str[test_num].res_buf);
856 } else {
857 ok(dest_str.Buffer == app_asc2str[test_num].res_buf,
858 "(test %d): RtlAppendAsciizToString(dest, src) dest has Buffer %p expected %p\n",
859 test_num, dest_str.Buffer, app_asc2str[test_num].res_buf);
860 }
861 }
862 }
863
864
865 typedef struct {
866 int dest_Length;
867 int dest_MaximumLength;
868 int dest_buf_size;
869 const char *dest_buf;
870 int src_Length;
871 int src_MaximumLength;
872 int src_buf_size;
873 const char *src_buf;
874 int res_Length;
875 int res_MaximumLength;
876 int res_buf_size;
877 const char *res_buf;
878 NTSTATUS result;
879 } app_str2str_t;
880
881 static const app_str2str_t app_str2str[] = {
882 { 5, 12, 15, "TestS01234abcde", 5, 5, 7, "tringZY", 10, 12, 15, "TestStringabcde", STATUS_SUCCESS},
883 { 5, 11, 15, "TestS01234abcde", 5, 5, 7, "tringZY", 10, 11, 15, "TestStringabcde", STATUS_SUCCESS},
884 { 5, 10, 15, "TestS01234abcde", 5, 5, 7, "tringZY", 10, 10, 15, "TestStringabcde", STATUS_SUCCESS},
885 { 5, 9, 15, "TestS01234abcde", 5, 5, 7, "tringZY", 5, 9, 15, "TestS01234abcde", STATUS_BUFFER_TOO_SMALL},
886 { 5, 0, 15, "TestS01234abcde", 0, 0, 7, "tringZY", 5, 0, 15, "TestS01234abcde", STATUS_SUCCESS},
887 { 5, 14, 15, "TestS01234abcde", 0, 0, 7, "tringZY", 5, 14, 15, "TestS01234abcde", STATUS_SUCCESS},
888 { 5, 14, 15, "TestS01234abcde", 0, 0, 7, NULL, 5, 14, 15, "TestS01234abcde", STATUS_SUCCESS},
889 { 5, 14, 15, NULL, 0, 0, 7, NULL, 5, 14, 15, NULL, STATUS_SUCCESS},
890 { 5, 12, 15, "Tst\0S01234abcde", 4, 4, 7, "tr\0iZY", 9, 12, 15, "Tst\0Str\0i4abcde", STATUS_SUCCESS},
891 };
892 #define NB_APP_STR2STR (sizeof(app_str2str)/sizeof(*app_str2str))
893
894
895 static void test_RtlAppendStringToString(void)
896 {
897 CHAR dest_buf[257];
898 CHAR src_buf[257];
899 STRING dest_str;
900 STRING src_str;
901 NTSTATUS result;
902 unsigned int test_num;
903
904 for (test_num = 0; test_num < NB_APP_STR2STR; test_num++) {
905 dest_str.Length = app_str2str[test_num].dest_Length;
906 dest_str.MaximumLength = app_str2str[test_num].dest_MaximumLength;
907 if (app_str2str[test_num].dest_buf != NULL) {
908 memcpy(dest_buf, app_str2str[test_num].dest_buf, app_str2str[test_num].dest_buf_size);
909 dest_buf[app_str2str[test_num].dest_buf_size] = '\0';
910 dest_str.Buffer = dest_buf;
911 } else {
912 dest_str.Buffer = NULL;
913 }
914 src_str.Length = app_str2str[test_num].src_Length;
915 src_str.MaximumLength = app_str2str[test_num].src_MaximumLength;
916 if (app_str2str[test_num].src_buf != NULL) {
917 memcpy(src_buf, app_str2str[test_num].src_buf, app_str2str[test_num].src_buf_size);
918 src_buf[app_str2str[test_num].src_buf_size] = '\0';
919 src_str.Buffer = src_buf;
920 } else {
921 src_str.Buffer = NULL;
922 }
923 result = pRtlAppendStringToString(&dest_str, &src_str);
924 ok(result == app_str2str[test_num].result,
925 "(test %d): RtlAppendStringToString(dest, src) has result %x, expected %x\n",
926 test_num, result, app_str2str[test_num].result);
927 ok(dest_str.Length == app_str2str[test_num].res_Length,
928 "(test %d): RtlAppendStringToString(dest, src) dest has Length %d, expected %d\n",
929 test_num, dest_str.Length, app_str2str[test_num].res_Length);
930 ok(dest_str.MaximumLength == app_str2str[test_num].res_MaximumLength,
931 "(test %d): RtlAppendStringToString(dest, src) dest has MaximumLength %d, expected %d\n",
932 test_num, dest_str.MaximumLength, app_str2str[test_num].res_MaximumLength);
933 if (dest_str.Buffer == dest_buf) {
934 ok(memcmp(dest_buf, app_str2str[test_num].res_buf, app_str2str[test_num].res_buf_size) == 0,
935 "(test %d): RtlAppendStringToString(dest, src) has dest \"%s\" expected \"%s\"\n",
936 test_num, dest_buf, app_str2str[test_num].res_buf);
937 } else {
938 ok(dest_str.Buffer == app_str2str[test_num].res_buf,
939 "(test %d): RtlAppendStringToString(dest, src) dest has Buffer %p expected %p\n",
940 test_num, dest_str.Buffer, app_str2str[test_num].res_buf);
941 }
942 }
943 }
944
945
946 typedef struct {
947 int dest_Length;
948 int dest_MaximumLength;
949 int dest_buf_size;
950 const char *dest_buf;
951 const char *src;
952 int res_Length;
953 int res_MaximumLength;
954 int res_buf_size;
955 const char *res_buf;
956 NTSTATUS result;
957 } app_uni2str_t;
958
959 static const app_uni2str_t app_uni2str[] = {
960 { 4, 12, 14, "Fake0123abcdef", "Ustr\0", 8, 12, 14, "FakeUstr\0\0cdef", STATUS_SUCCESS},
961 { 4, 11, 14, "Fake0123abcdef", "Ustr\0", 8, 11, 14, "FakeUstr\0\0cdef", STATUS_SUCCESS},
962 { 4, 10, 14, "Fake0123abcdef", "Ustr\0", 8, 10, 14, "FakeUstr\0\0cdef", STATUS_SUCCESS},
963 /* In the following test the native function writes beyond MaximumLength
964 * { 4, 9, 14, "Fake0123abcdef", "Ustr\0", 8, 9, 14, "FakeUstrabcdef", STATUS_SUCCESS},
965 */
966 { 4, 8, 14, "Fake0123abcdef", "Ustr\0", 8, 8, 14, "FakeUstrabcdef", STATUS_SUCCESS},
967 { 4, 7, 14, "Fake0123abcdef", "Ustr\0", 4, 7, 14, "Fake0123abcdef", STATUS_BUFFER_TOO_SMALL},
968 { 4, 0, 14, "Fake0123abcdef", "Ustr\0", 4, 0, 14, "Fake0123abcdef", STATUS_BUFFER_TOO_SMALL},
969 { 4, 14, 14, "Fake0123abcdef", "Ustr\0", 8, 14, 14, "FakeUstr\0\0cdef", STATUS_SUCCESS},
970 { 4, 14, 14, "Fake0123abcdef", NULL, 4, 14, 14, "Fake0123abcdef", STATUS_SUCCESS},
971 { 4, 14, 14, NULL, NULL, 4, 14, 14, NULL, STATUS_SUCCESS},
972 { 4, 14, 14, "Fake0123abcdef", "U\0stri\0", 10, 14, 14, "FakeU\0stri\0\0ef", STATUS_SUCCESS},
973 { 6, 14, 16, "Te\0\0stabcdefghij", "St\0\0ri", 8, 14, 16, "Te\0\0stSt\0\0efghij", STATUS_SUCCESS},
974 };
975 #define NB_APP_UNI2STR (sizeof(app_uni2str)/sizeof(*app_uni2str))
976
977
978 static void test_RtlAppendUnicodeToString(void)
979 {
980 WCHAR dest_buf[257];
981 UNICODE_STRING dest_str;
982 NTSTATUS result;
983 unsigned int test_num;
984
985 for (test_num = 0; test_num < NB_APP_UNI2STR; test_num++) {
986 dest_str.Length = app_uni2str[test_num].dest_Length;
987 dest_str.MaximumLength = app_uni2str[test_num].dest_MaximumLength;
988 if (app_uni2str[test_num].dest_buf != NULL) {
989 memcpy(dest_buf, app_uni2str[test_num].dest_buf, app_uni2str[test_num].dest_buf_size);
990 dest_buf[app_uni2str[test_num].dest_buf_size/sizeof(WCHAR)] = '\0';
991 dest_str.Buffer = dest_buf;
992 } else {
993 dest_str.Buffer = NULL;
994 }
995 result = pRtlAppendUnicodeToString(&dest_str, (LPCWSTR) app_uni2str[test_num].src);
996 ok(result == app_uni2str[test_num].result,
997 "(test %d): RtlAppendUnicodeToString(dest, src) has result %x, expected %x\n",
998 test_num, result, app_uni2str[test_num].result);
999 ok(dest_str.Length == app_uni2str[test_num].res_Length,
1000 "(test %d): RtlAppendUnicodeToString(dest, src) dest has Length %d, expected %d\n",
1001 test_num, dest_str.Length, app_uni2str[test_num].res_Length);
1002 ok(dest_str.MaximumLength == app_uni2str[test_num].res_MaximumLength,
1003 "(test %d): RtlAppendUnicodeToString(dest, src) dest has MaximumLength %d, expected %d\n",
1004 test_num, dest_str.MaximumLength, app_uni2str[test_num].res_MaximumLength);
1005 if (dest_str.Buffer == dest_buf) {
1006 ok(memcmp(dest_buf, app_uni2str[test_num].res_buf, app_uni2str[test_num].res_buf_size) == 0,
1007 "(test %d): RtlAppendUnicodeToString(dest, src) has dest \"%s\" expected \"%s\"\n",
1008 test_num, (char *) dest_buf, app_uni2str[test_num].res_buf);
1009 } else {
1010 ok(dest_str.Buffer == (WCHAR *) app_uni2str[test_num].res_buf,
1011 "(test %d): RtlAppendUnicodeToString(dest, src) dest has Buffer %p expected %p\n",
1012 test_num, dest_str.Buffer, app_uni2str[test_num].res_buf);
1013 }
1014 }
1015 }
1016
1017
1018 typedef struct {
1019 int dest_Length;
1020 int dest_MaximumLength;
1021 int dest_buf_size;
1022 const char *dest_buf;
1023 int src_Length;
1024 int src_MaximumLength;
1025 int src_buf_size;
1026 const char *src_buf;
1027 int res_Length;
1028 int res_MaximumLength;
1029 int res_buf_size;
1030 const char *res_buf;
1031 NTSTATUS result;
1032 } app_ustr2str_t;
1033
1034 static const app_ustr2str_t app_ustr2str[] = {
1035 { 4, 12, 14, "Fake0123abcdef", 4, 6, 8, "UstrZYXW", 8, 12, 14, "FakeUstr\0\0cdef", STATUS_SUCCESS},
1036 { 4, 11, 14, "Fake0123abcdef", 4, 6, 8, "UstrZYXW", 8, 11, 14, "FakeUstr\0\0cdef", STATUS_SUCCESS},
1037 { 4, 10, 14, "Fake0123abcdef", 4, 6, 8, "UstrZYXW", 8, 10, 14, "FakeUstr\0\0cdef", STATUS_SUCCESS},
1038 /* In the following test the native function writes beyond MaximumLength
1039 * { 4, 9, 14, "Fake0123abcdef", 4, 6, 8, "UstrZYXW", 8, 9, 14, "FakeUstrabcdef", STATUS_SUCCESS},
1040 */
1041 { 4, 8, 14, "Fake0123abcdef", 4, 6, 8, "UstrZYXW", 8, 8, 14, "FakeUstrabcdef", STATUS_SUCCESS},
1042 { 4, 7, 14, "Fake0123abcdef", 4, 6, 8, "UstrZYXW", 4, 7, 14, "Fake0123abcdef", STATUS_BUFFER_TOO_SMALL},
1043 { 4, 0, 14, "Fake0123abcdef", 0, 0, 8, "UstrZYXW", 4, 0, 14, "Fake0123abcdef", STATUS_SUCCESS},
1044 { 4, 14, 14, "Fake0123abcdef", 0, 0, 8, "UstrZYXW", 4, 14, 14, "Fake0123abcdef", STATUS_SUCCESS},
1045 { 4, 14, 14, "Fake0123abcdef", 0, 0, 8, NULL, 4, 14, 14, "Fake0123abcdef", STATUS_SUCCESS},
1046 { 4, 14, 14, NULL, 0, 0, 8, NULL, 4, 14, 14, NULL, STATUS_SUCCESS},
1047 { 6, 14, 16, "Te\0\0stabcdefghij", 6, 8, 8, "St\0\0riZY", 12, 14, 16, "Te\0\0stSt\0\0ri\0\0ij", STATUS_SUCCESS},
1048 };
1049 #define NB_APP_USTR2STR (sizeof(app_ustr2str)/sizeof(*app_ustr2str))
1050
1051
1052 static void test_RtlAppendUnicodeStringToString(void)
1053 {
1054 WCHAR dest_buf[257];
1055 WCHAR src_buf[257];
1056 UNICODE_STRING dest_str;
1057 UNICODE_STRING src_str;
1058 NTSTATUS result;
1059 unsigned int test_num;
1060
1061 for (test_num = 0; test_num < NB_APP_USTR2STR; test_num++) {
1062 dest_str.Length = app_ustr2str[test_num].dest_Length;
1063 dest_str.MaximumLength = app_ustr2str[test_num].dest_MaximumLength;
1064 if (app_ustr2str[test_num].dest_buf != NULL) {
1065 memcpy(dest_buf, app_ustr2str[test_num].dest_buf, app_ustr2str[test_num].dest_buf_size);
1066 dest_buf[app_ustr2str[test_num].dest_buf_size/sizeof(WCHAR)] = '\0';
1067 dest_str.Buffer = dest_buf;
1068 } else {
1069 dest_str.Buffer = NULL;
1070 }
1071 src_str.Length = app_ustr2str[test_num].src_Length;
1072 src_str.MaximumLength = app_ustr2str[test_num].src_MaximumLength;
1073 if (app_ustr2str[test_num].src_buf != NULL) {
1074 memcpy(src_buf, app_ustr2str[test_num].src_buf, app_ustr2str[test_num].src_buf_size);
1075 src_buf[app_ustr2str[test_num].src_buf_size/sizeof(WCHAR)] = '\0';
1076 src_str.Buffer = src_buf;
1077 } else {
1078 src_str.Buffer = NULL;
1079 }
1080 result = pRtlAppendUnicodeStringToString(&dest_str, &src_str);
1081 ok(result == app_ustr2str[test_num].result,
1082 "(test %d): RtlAppendStringToString(dest, src) has result %x, expected %x\n",
1083 test_num, result, app_ustr2str[test_num].result);
1084 ok(dest_str.Length == app_ustr2str[test_num].res_Length,
1085 "(test %d): RtlAppendStringToString(dest, src) dest has Length %d, expected %d\n",
1086 test_num, dest_str.Length, app_ustr2str[test_num].res_Length);
1087 ok(dest_str.MaximumLength == app_ustr2str[test_num].res_MaximumLength,
1088 "(test %d): RtlAppendStringToString(dest, src) dest has MaximumLength %d, expected %d\n",
1089 test_num, dest_str.MaximumLength, app_ustr2str[test_num].res_MaximumLength);
1090 if (dest_str.Buffer == dest_buf) {
1091 ok(memcmp(dest_buf, app_ustr2str[test_num].res_buf, app_ustr2str[test_num].res_buf_size) == 0,
1092 "(test %d): RtlAppendStringToString(dest, src) has dest \"%s\" expected \"%s\"\n",
1093 test_num, (char *) dest_buf, app_ustr2str[test_num].res_buf);
1094 } else {
1095 ok(dest_str.Buffer == (WCHAR *) app_ustr2str[test_num].res_buf,
1096 "(test %d): RtlAppendStringToString(dest, src) dest has Buffer %p expected %p\n",
1097 test_num, dest_str.Buffer, app_ustr2str[test_num].res_buf);
1098 }
1099 }
1100 }
1101
1102
1103 typedef struct {
1104 int flags;
1105 const char *main_str;
1106 const char *search_chars;
1107 USHORT pos;
1108 NTSTATUS result;
1109 } find_ch_in_ustr_t;
1110
1111 static const find_ch_in_ustr_t find_ch_in_ustr[] = {
1112 { 0, "Some Wild String", "S", 2, STATUS_SUCCESS},
1113 { 0, "This is a String", "String", 6, STATUS_SUCCESS},
1114 { 1, "This is a String", "String", 30, STATUS_SUCCESS},
1115 { 2, "This is a String", "String", 2, STATUS_SUCCESS},
1116 { 3, "This is a String", "String", 18, STATUS_SUCCESS},
1117 { 0, "This is a String", "Wild", 6, STATUS_SUCCESS},
1118 { 1, "This is a String", "Wild", 26, STATUS_SUCCESS},
1119 { 2, "This is a String", "Wild", 2, STATUS_SUCCESS},
1120 { 3, "This is a String", "Wild", 30, STATUS_SUCCESS},
1121 { 0, "abcdefghijklmnopqrstuvwxyz", "", 0, STATUS_NOT_FOUND},
1122 { 0, "abcdefghijklmnopqrstuvwxyz", "123", 0, STATUS_NOT_FOUND},
1123 { 0, "abcdefghijklmnopqrstuvwxyz", "a", 2, STATUS_SUCCESS},
1124 { 0, "abcdefghijklmnopqrstuvwxyz", "12a34", 2, STATUS_SUCCESS},
1125 { 0, "abcdefghijklmnopqrstuvwxyz", "12b34", 4, STATUS_SUCCESS},
1126 { 0, "abcdefghijklmnopqrstuvwxyz", "12y34", 50, STATUS_SUCCESS},
1127 { 0, "abcdefghijklmnopqrstuvwxyz", "12z34", 52, STATUS_SUCCESS},
1128 { 0, "abcdefghijklmnopqrstuvwxyz", "rvz", 36, STATUS_SUCCESS},
1129 { 0, "abcdefghijklmmlkjihgfedcba", "egik", 10, STATUS_SUCCESS},
1130 { 1, "abcdefghijklmnopqrstuvwxyz", "", 0, STATUS_NOT_FOUND},
1131 { 1, "abcdefghijklmnopqrstuvwxyz", "rvz", 50, STATUS_SUCCESS},
1132 { 1, "abcdefghijklmnopqrstuvwxyz", "ravy", 48, STATUS_SUCCESS},
1133 { 1, "abcdefghijklmnopqrstuvwxyz", "raxv", 46, STATUS_SUCCESS},
1134 { 2, "abcdefghijklmnopqrstuvwxyz", "", 2, STATUS_SUCCESS},
1135 { 2, "abcdefghijklmnopqrstuvwxyz", "rvz", 2, STATUS_SUCCESS},
1136 { 2, "abcdefghijklmnopqrstuvwxyz", "vaz", 4, STATUS_SUCCESS},
1137 { 2, "abcdefghijklmnopqrstuvwxyz", "ravbz", 6, STATUS_SUCCESS},
1138 { 3, "abcdefghijklmnopqrstuvwxyz", "", 50, STATUS_SUCCESS},
1139 { 3, "abcdefghijklmnopqrstuvwxyz", "123", 50, STATUS_SUCCESS},
1140 { 3, "abcdefghijklmnopqrstuvwxyz", "ahp", 50, STATUS_SUCCESS},
1141 { 3, "abcdefghijklmnopqrstuvwxyz", "rvz", 48, STATUS_SUCCESS},
1142 { 0, NULL, "abc", 0, STATUS_NOT_FOUND},
1143 { 1, NULL, "abc", 0, STATUS_NOT_FOUND},
1144 { 2, NULL, "abc", 0, STATUS_NOT_FOUND},
1145 { 3, NULL, "abc", 0, STATUS_NOT_FOUND},
1146 { 0, "abcdefghijklmnopqrstuvwxyz", NULL, 0, STATUS_NOT_FOUND},
1147 { 1, "abcdefghijklmnopqrstuvwxyz", NULL, 0, STATUS_NOT_FOUND},
1148 { 2, "abcdefghijklmnopqrstuvwxyz", NULL, 2, STATUS_SUCCESS},
1149 { 3, "abcdefghijklmnopqrstuvwxyz", NULL, 50, STATUS_SUCCESS},
1150 { 0, NULL, NULL, 0, STATUS_NOT_FOUND},
1151 { 1, NULL, NULL, 0, STATUS_NOT_FOUND},
1152 { 2, NULL, NULL, 0, STATUS_NOT_FOUND},
1153 { 3, NULL, NULL, 0, STATUS_NOT_FOUND},
1154 { 0, "abcdabcdabcdabcdabcdabcd", "abcd", 2, STATUS_SUCCESS},
1155 { 1, "abcdabcdabcdabcdabcdabcd", "abcd", 46, STATUS_SUCCESS},
1156 { 2, "abcdabcdabcdabcdabcdabcd", "abcd", 0, STATUS_NOT_FOUND},
1157 { 3, "abcdabcdabcdabcdabcdabcd", "abcd", 0, STATUS_NOT_FOUND},
1158 };
1159 #define NB_FIND_CH_IN_USTR (sizeof(find_ch_in_ustr)/sizeof(*find_ch_in_ustr))
1160
1161
1162 static void test_RtlFindCharInUnicodeString(void)
1163 {
1164 WCHAR main_str_buf[257];
1165 WCHAR search_chars_buf[257];
1166 UNICODE_STRING main_str;
1167 UNICODE_STRING search_chars;
1168 USHORT pos;
1169 NTSTATUS result;
1170 unsigned int idx;
1171 unsigned int test_num;
1172
1173 for (test_num = 0; test_num < NB_FIND_CH_IN_USTR; test_num++) {
1174 if (find_ch_in_ustr[test_num].main_str != NULL) {
1175 main_str.Length = strlen(find_ch_in_ustr[test_num].main_str) * sizeof(WCHAR);
1176 main_str.MaximumLength = main_str.Length + sizeof(WCHAR);
1177 for (idx = 0; idx < main_str.Length / sizeof(WCHAR); idx++) {
1178 main_str_buf[idx] = find_ch_in_ustr[test_num].main_str[idx];
1179 }
1180 main_str.Buffer = main_str_buf;
1181 } else {
1182 main_str.Length = 0;
1183 main_str.MaximumLength = 0;
1184 main_str.Buffer = NULL;
1185 }
1186 if (find_ch_in_ustr[test_num].search_chars != NULL) {
1187 search_chars.Length = strlen(find_ch_in_ustr[test_num].search_chars) * sizeof(WCHAR);
1188 search_chars.MaximumLength = search_chars.Length + sizeof(WCHAR);
1189 for (idx = 0; idx < search_chars.Length / sizeof(WCHAR); idx++) {
1190 search_chars_buf[idx] = find_ch_in_ustr[test_num].search_chars[idx];
1191 }
1192 search_chars.Buffer = search_chars_buf;
1193 } else {
1194 search_chars.Length = 0;
1195 search_chars.MaximumLength = 0;
1196 search_chars.Buffer = NULL;
1197 }
1198 pos = 12345;
1199 result = pRtlFindCharInUnicodeString(find_ch_in_ustr[test_num].flags, &main_str, &search_chars, &pos);
1200 ok(result == find_ch_in_ustr[test_num].result,
1201 "(test %d): RtlFindCharInUnicodeString(%d, %s, %s, [out]) has result %x, expected %x\n",
1202 test_num, find_ch_in_ustr[test_num].flags,
1203 find_ch_in_ustr[test_num].main_str, find_ch_in_ustr[test_num].search_chars,
1204 result, find_ch_in_ustr[test_num].result);
1205 ok(pos == find_ch_in_ustr[test_num].pos,
1206 "(test %d): RtlFindCharInUnicodeString(%d, %s, %s, [out]) assigns %d to pos, expected %d\n",
1207 test_num, find_ch_in_ustr[test_num].flags,
1208 find_ch_in_ustr[test_num].main_str, find_ch_in_ustr[test_num].search_chars,
1209 pos, find_ch_in_ustr[test_num].pos);
1210 }
1211 }
1212
1213
1214 typedef struct {
1215 int base;
1216 const char *str;
1217 int value;
1218 NTSTATUS result;
1219 } str2int_t;
1220
1221 static const str2int_t str2int[] = {
1222 { 0, "1011101100", 1011101100, STATUS_SUCCESS},
1223 { 0, "1234567", 1234567, STATUS_SUCCESS},
1224 { 0, "-214", -214, STATUS_SUCCESS},
1225 { 0, "+214", 214, STATUS_SUCCESS}, /* The + sign is allowed also */
1226 { 0, "--214", 0, STATUS_SUCCESS}, /* Do not accept more than one sign */
1227 { 0, "-+214", 0, STATUS_SUCCESS},
1228 { 0, "++214", 0, STATUS_SUCCESS},
1229 { 0, "+-214", 0, STATUS_SUCCESS},
1230 { 0, "\001\002\003\00411", 11, STATUS_SUCCESS}, /* whitespace char 1 to 4 */
1231 { 0, "\005\006\007\01012", 12, STATUS_SUCCESS}, /* whitespace char 5 to 8 */
1232 { 0, "\011\012\013\01413", 13, STATUS_SUCCESS}, /* whitespace char 9 to 12 */
1233 { 0, "\015\016\017\02014", 14, STATUS_SUCCESS}, /* whitespace char 13 to 16 */
1234 { 0, "\021\022\023\02415", 15, STATUS_SUCCESS}, /* whitespace char 17 to 20 */
1235 { 0, "\025\026\027\03016", 16, STATUS_SUCCESS}, /* whitespace char 21 to 24 */
1236 { 0, "\031\032\033\03417", 17, STATUS_SUCCESS}, /* whitespace char 25 to 28 */
1237 { 0, "\035\036\037\04018", 18, STATUS_SUCCESS}, /* whitespace char 29 to 32 */
1238 { 0, " \n \r \t214", 214, STATUS_SUCCESS},
1239 { 0, " \n \r \t+214", 214, STATUS_SUCCESS}, /* Signs can be used after whitespace */
1240 { 0, " \n \r \t-214", -214, STATUS_SUCCESS},
1241 { 0, "+214 0", 214, STATUS_SUCCESS}, /* Space terminates the number */
1242 { 0, " 214.01", 214, STATUS_SUCCESS}, /* Decimal point not accepted */
1243 { 0, " 214,01", 214, STATUS_SUCCESS}, /* Decimal comma not accepted */
1244 { 0, "f81", 0, STATUS_SUCCESS},
1245 { 0, "0x12345", 0x12345, STATUS_SUCCESS}, /* Hex */
1246 { 0, "00x12345", 0, STATUS_SUCCESS},
1247 { 0, "0xx12345", 0, STATUS_SUCCESS},
1248 { 0, "1x34", 1, STATUS_SUCCESS},
1249 { 0, "-9999999999", -1410065407, STATUS_SUCCESS}, /* Big negative integer */
1250 { 0, "-2147483649", 2147483647, STATUS_SUCCESS}, /* Too small to fit in 32 Bits */
1251 { 0, "-2147483648", 0x80000000L, STATUS_SUCCESS}, /* Smallest negative integer */
1252 { 0, "-2147483647", -2147483647, STATUS_SUCCESS},
1253 { 0, "-1", -1, STATUS_SUCCESS},
1254 { 0, "0", 0, STATUS_SUCCESS},
1255 { 0, "1", 1, STATUS_SUCCESS},
1256 { 0, "2147483646", 2147483646, STATUS_SUCCESS},
1257 { 0, "2147483647", 2147483647, STATUS_SUCCESS}, /* Largest signed positive integer */
1258 { 0, "2147483648", 0x80000000L, STATUS_SUCCESS}, /* Positive int equal to smallest negative int */
1259 { 0, "2147483649", -2147483647, STATUS_SUCCESS},
1260 { 0, "4294967294", -2, STATUS_SUCCESS},
1261 { 0, "4294967295", -1, STATUS_SUCCESS}, /* Largest unsigned integer */
1262 { 0, "4294967296", 0, STATUS_SUCCESS}, /* Too big to fit in 32 Bits */
1263 { 0, "9999999999", 1410065407, STATUS_SUCCESS}, /* Big positive integer */
1264 { 0, "056789", 56789, STATUS_SUCCESS}, /* Leading zero and still decimal */
1265 { 0, "b1011101100", 0, STATUS_SUCCESS}, /* Binary (b-notation) */
1266 { 0, "-b1011101100", 0, STATUS_SUCCESS}, /* Negative Binary (b-notation) */
1267 { 0, "b10123456789", 0, STATUS_SUCCESS}, /* Binary with nonbinary digits (2-9) */
1268 { 0, "0b1011101100", 748, STATUS_SUCCESS}, /* Binary (0b-notation) */
1269 { 0, "-0b1011101100", -748, STATUS_SUCCESS}, /* Negative binary (0b-notation) */
1270 { 0, "0b10123456789", 5, STATUS_SUCCESS}, /* Binary with nonbinary digits (2-9) */
1271 { 0, "-0b10123456789", -5, STATUS_SUCCESS}, /* Negative binary with nonbinary digits (2-9) */
1272 { 0, "0b1", 1, STATUS_SUCCESS}, /* one digit binary */
1273 { 0, "0b2", 0, STATUS_SUCCESS}, /* empty binary */
1274 { 0, "0b", 0, STATUS_SUCCESS}, /* empty binary */
1275 { 0, "o1234567", 0, STATUS_SUCCESS}, /* Octal (o-notation) */
1276 { 0, "-o1234567", 0, STATUS_SUCCESS}, /* Negative Octal (o-notation) */
1277 { 0, "o56789", 0, STATUS_SUCCESS}, /* Octal with nonoctal digits (8 and 9) */
1278 { 0, "0o1234567", 01234567, STATUS_SUCCESS}, /* Octal (0o-notation) */
1279 { 0, "-0o1234567", -01234567, STATUS_SUCCESS}, /* Negative octal (0o-notation) */
1280 { 0, "0o56789", 0567, STATUS_SUCCESS}, /* Octal with nonoctal digits (8 and 9) */
1281 { 0, "-0o56789", -0567, STATUS_SUCCESS}, /* Negative octal with nonoctal digits (8 and 9) */
1282 { 0, "0o7", 7, STATUS_SUCCESS}, /* one digit octal */
1283 { 0, "0o8", 0, STATUS_SUCCESS}, /* empty octal */
1284 { 0, "0o", 0, STATUS_SUCCESS}, /* empty octal */
1285 { 0, "0d1011101100", 0, STATUS_SUCCESS}, /* explicit decimal with 0d */
1286 { 0, "x89abcdef", 0, STATUS_SUCCESS}, /* Hex with lower case digits a-f (x-notation) */
1287 { 0, "xFEDCBA00", 0, STATUS_SUCCESS}, /* Hex with upper case digits A-F (x-notation) */
1288 { 0, "-xFEDCBA00", 0, STATUS_SUCCESS}, /* Negative Hexadecimal (x-notation) */
1289 { 0, "0x89abcdef", 0x89abcdef, STATUS_SUCCESS}, /* Hex with lower case digits a-f (0x-notation) */
1290 { 0, "0xFEDCBA00", 0xFEDCBA00, STATUS_SUCCESS}, /* Hex with upper case digits A-F (0x-notation) */
1291 { 0, "-0xFEDCBA00", 19088896, STATUS_SUCCESS}, /* Negative Hexadecimal (0x-notation) */
1292 { 0, "0xabcdefgh", 0xabcdef, STATUS_SUCCESS}, /* Hex with illegal lower case digits (g-z) */
1293 { 0, "0xABCDEFGH", 0xABCDEF, STATUS_SUCCESS}, /* Hex with illegal upper case digits (G-Z) */
1294 { 0, "0xF", 0xf, STATUS_SUCCESS}, /* one digit hexadecimal */
1295 { 0, "0xG", 0, STATUS_SUCCESS}, /* empty hexadecimal */
1296 { 0, "0x", 0, STATUS_SUCCESS}, /* empty hexadecimal */
1297 { 0, "", 0, STATUS_SUCCESS}, /* empty string */
1298 { 2, "1011101100", 748, STATUS_SUCCESS},
1299 { 2, "-1011101100", -748, STATUS_SUCCESS},
1300 { 2, "2", 0, STATUS_SUCCESS},
1301 { 2, "0b1011101100", 0, STATUS_SUCCESS},
1302 { 2, "0o1011101100", 0, STATUS_SUCCESS},
1303 { 2, "0d1011101100", 0, STATUS_SUCCESS},
1304 { 2, "0x1011101100", 0, STATUS_SUCCESS},
1305 { 2, "", 0, STATUS_SUCCESS}, /* empty string */
1306 { 8, "1011101100", 136610368, STATUS_SUCCESS},
1307 { 8, "-1011101100", -136610368, STATUS_SUCCESS},
1308 { 8, "8", 0, STATUS_SUCCESS},
1309 { 8, "0b1011101100", 0, STATUS_SUCCESS},
1310 { 8, "0o1011101100", 0, STATUS_SUCCESS},
1311 { 8, "0d1011101100", 0, STATUS_SUCCESS},
1312 { 8, "0x1011101100", 0, STATUS_SUCCESS},
1313 { 8, "", 0, STATUS_SUCCESS}, /* empty string */
1314 {10, "1011101100", 1011101100, STATUS_SUCCESS},
1315 {10, "-1011101100", -1011101100, STATUS_SUCCESS},
1316 {10, "0b1011101100", 0, STATUS_SUCCESS},
1317 {10, "0o1011101100", 0, STATUS_SUCCESS},
1318 {10, "0d1011101100", 0, STATUS_SUCCESS},
1319 {10, "0x1011101100", 0, STATUS_SUCCESS},
1320 {10, "o12345", 0, STATUS_SUCCESS}, /* Octal although base is 10 */
1321 {10, "", 0, STATUS_SUCCESS}, /* empty string */
1322 {16, "1011101100", 286265600, STATUS_SUCCESS},
1323 {16, "-1011101100", -286265600, STATUS_SUCCESS},
1324 {16, "G", 0, STATUS_SUCCESS},
1325 {16, "g", 0, STATUS_SUCCESS},
1326 {16, "0b1011101100", 286265600, STATUS_SUCCESS},
1327 {16, "0o1011101100", 0, STATUS_SUCCESS},
1328 {16, "0d1011101100", 286265600, STATUS_SUCCESS},
1329 {16, "0x1011101100", 0, STATUS_SUCCESS},
1330 {16, "", 0, STATUS_SUCCESS}, /* empty string */
1331 {20, "0", 0xdeadbeef, STATUS_INVALID_PARAMETER}, /* illegal base */
1332 {-8, "0", 0xdeadbeef, STATUS_INVALID_PARAMETER}, /* Negative base */
1333 /* { 0, NULL, 0, STATUS_SUCCESS}, */ /* NULL as string */
1334 };
1335 #define NB_STR2INT (sizeof(str2int)/sizeof(*str2int))
1336
1337
1338 static void test_RtlUnicodeStringToInteger(void)
1339 {
1340 unsigned int test_num;
1341 int value;
1342 NTSTATUS result;
1343 WCHAR *wstr;
1344 UNICODE_STRING uni;
1345
1346 for (test_num = 0; test_num < NB_STR2INT; test_num++) {
1347 wstr = AtoW(str2int[test_num].str);
1348 value = 0xdeadbeef;
1349 pRtlInitUnicodeString(&uni, wstr);
1350 result = pRtlUnicodeStringToInteger(&uni, str2int[test_num].base, &value);
1351 ok(result == str2int[test_num].result,
1352 "(test %d): RtlUnicodeStringToInteger(\"%s\", %d, [out]) has result %x, expected: %x\n",
1353 test_num, str2int[test_num].str, str2int[test_num].base, result, str2int[test_num].result);
1354 ok(value == str2int[test_num].value,
1355 "(test %d): RtlUnicodeStringToInteger(\"%s\", %d, [out]) assigns value %d, expected: %d\n",
1356 test_num, str2int[test_num].str, str2int[test_num].base, value, str2int[test_num].value);
1357 free(wstr);
1358 }
1359
1360 wstr = AtoW(str2int[1].str);
1361 pRtlInitUnicodeString(&uni, wstr);
1362 result = pRtlUnicodeStringToInteger(&uni, str2int[1].base, NULL);
1363 ok(result == STATUS_ACCESS_VIOLATION,
1364 "call failed: RtlUnicodeStringToInteger(\"%s\", %d, NULL) has result %x\n",
1365 str2int[1].str, str2int[1].base, result);
1366 result = pRtlUnicodeStringToInteger(&uni, 20, NULL);
1367 ok(result == STATUS_INVALID_PARAMETER,
1368 "call failed: RtlUnicodeStringToInteger(\"%s\", 20, NULL) has result %x\n",
1369 str2int[1].str, result);
1370
1371 uni.Length = 10; /* Make Length shorter (5 WCHARS instead of 7) */
1372 result = pRtlUnicodeStringToInteger(&uni, str2int[1].base, &value);
1373 ok(result == STATUS_SUCCESS,
1374 "call failed: RtlUnicodeStringToInteger(\"12345\", %d, [out]) has result %x\n",
1375 str2int[1].base, result);
1376 ok(value == 12345,
1377 "didn't return expected value (test a): expected: %d, got: %d\n",
1378 12345, value);
1379
1380 uni.Length = 5; /* Use odd Length (2.5 WCHARS) */
1381 result = pRtlUnicodeStringToInteger(&uni, str2int[1].base, &value);
1382 ok(result == STATUS_SUCCESS,
1383 "call failed: RtlUnicodeStringToInteger(\"12\", %d, [out]) has result %x\n",
1384 str2int[1].base, result);
1385 ok(value == 12,
1386 "didn't return expected value (test b): expected: %d, got: %d\n",
1387 12, value);
1388
1389 uni.Length = 2;
1390 result = pRtlUnicodeStringToInteger(&uni, str2int[1].base, &value);
1391 ok(result == STATUS_SUCCESS,
1392 "call failed: RtlUnicodeStringToInteger(\"1\", %d, [out]) has result %x\n",
1393 str2int[1].base, result);
1394 ok(value == 1,
1395 "didn't return expected value (test c): expected: %d, got: %d\n",
1396 1, value);
1397 /* w2k: uni.Length = 0 returns value 11234567 instead of 0 */
1398 free(wstr);
1399 }
1400
1401
1402 static void test_RtlCharToInteger(void)
1403 {
1404 unsigned int test_num;
1405 int value;
1406 NTSTATUS result;
1407
1408 for (test_num = 0; test_num < NB_STR2INT; test_num++) {
1409 /* w2k skips a leading '\0' and processes the string after */
1410 if (str2int[test_num].str[0] != '\0') {
1411 value = 0xdeadbeef;
1412 result = pRtlCharToInteger(str2int[test_num].str, str2int[test_num].base, &value);
1413 ok(result == str2int[test_num].result,
1414 "(test %d): call failed: RtlCharToInteger(\"%s\", %d, [out]) has result %x, expected: %x\n",
1415 test_num, str2int[test_num].str, str2int[test_num].base, result, str2int[test_num].result);
1416 ok(value == str2int[test_num].value,
1417 "(test %d): call failed: RtlCharToInteger(\"%s\", %d, [out]) assigns value %d, expected: %d\n",
1418 test_num, str2int[test_num].str, str2int[test_num].base, value, str2int[test_num].value);
1419 }
1420 }
1421
1422 result = pRtlCharToInteger(str2int[1].str, str2int[1].base, NULL);
1423 ok(result == STATUS_ACCESS_VIOLATION,
1424 "call failed: RtlCharToInteger(\"%s\", %d, NULL) has result %x\n",
1425 str2int[1].str, str2int[1].base, result);
1426
1427 result = pRtlCharToInteger(str2int[1].str, 20, NULL);
1428 ok(result == STATUS_INVALID_PARAMETER,
1429 "call failed: RtlCharToInteger(\"%s\", 20, NULL) has result %x\n",
1430 str2int[1].str, result);
1431 }
1432
1433
1434 #define STRI_BUFFER_LENGTH 35
1435
1436 typedef struct {
1437 int base;
1438 ULONG value;
1439 USHORT Length;
1440 USHORT MaximumLength;
1441 const char *Buffer;
1442 NTSTATUS result;
1443 } int2str_t;
1444
1445 static const int2str_t int2str[] = {
1446 {10, 123, 3, 11, "123\0-------------------------------", STATUS_SUCCESS},
1447
1448 { 0, 0x80000000U, 10, 11, "2147483648\0------------------------", STATUS_SUCCESS}, /* min signed int */
1449 { 0, -2147483647, 10, 11, "2147483649\0------------------------", STATUS_SUCCESS},
1450 { 0, -2, 10, 11, "4294967294\0------------------------", STATUS_SUCCESS},
1451 { 0, -1, 10, 11, "4294967295\0------------------------", STATUS_SUCCESS},
1452 { 0, 0, 1, 11, "0\0---------------------------------", STATUS_SUCCESS},
1453 { 0, 1, 1, 11, "1\0---------------------------------", STATUS_SUCCESS},
1454 { 0, 12, 2, 11, "12\0--------------------------------", STATUS_SUCCESS},
1455 { 0, 123, 3, 11, "123\0-------------------------------", STATUS_SUCCESS},
1456 { 0, 1234, 4, 11, "1234\0------------------------------", STATUS_SUCCESS},
1457 { 0, 12345, 5, 11, "12345\0-----------------------------", STATUS_SUCCESS},
1458 { 0, 123456, 6, 11, "123456\0----------------------------", STATUS_SUCCESS},
1459 { 0, 1234567, 7, 11, "1234567\0---------------------------", STATUS_SUCCESS},
1460 { 0, 12345678, 8, 11, "12345678\0--------------------------", STATUS_SUCCESS},
1461 { 0, 123456789, 9, 11, "123456789\0-------------------------", STATUS_SUCCESS},
1462 { 0, 2147483646, 10, 11, "2147483646\0------------------------", STATUS_SUCCESS},
1463 { 0, 2147483647, 10, 11, "2147483647\0------------------------", STATUS_SUCCESS}, /* max signed int */
1464 { 0, 2147483648U, 10, 11, "2147483648\0------------------------", STATUS_SUCCESS}, /* uint = -max int */
1465 { 0, 2147483649U, 10, 11, "2147483649\0------------------------", STATUS_SUCCESS},
1466 { 0, 4294967294U, 10, 11, "4294967294\0------------------------", STATUS_SUCCESS},
1467 { 0, 4294967295U, 10, 11, "4294967295\0------------------------", STATUS_SUCCESS}, /* max unsigned int */
1468
1469 { 2, 0x80000000U, 32, 33, "10000000000000000000000000000000\0--", STATUS_SUCCESS}, /* min signed int */
1470 { 2, -2147483647, 32, 33, "10000000000000000000000000000001\0--", STATUS_SUCCESS},
1471 { 2, -2, 32, 33, "11111111111111111111111111111110\0--", STATUS_SUCCESS},
1472 { 2, -1, 32, 33, "11111111111111111111111111111111\0--", STATUS_SUCCESS},
1473 { 2, 0, 1, 33, "0\0---------------------------------", STATUS_SUCCESS},
1474 { 2, 1, 1, 33, "1\0---------------------------------", STATUS_SUCCESS},
1475 { 2, 10, 4, 33, "1010\0------------------------------", STATUS_SUCCESS},
1476 { 2, 100, 7, 33, "1100100\0---------------------------", STATUS_SUCCESS},
1477 { 2, 1000, 10, 33, "1111101000\0------------------------", STATUS_SUCCESS},
1478 { 2, 10000, 14, 33, "10011100010000\0--------------------", STATUS_SUCCESS},
1479 { 2, 32767, 15, 33, "111111111111111\0-------------------", STATUS_SUCCESS},
1480 { 2, 32768, 16, 33, "1000000000000000\0------------------", STATUS_SUCCESS},
1481 { 2, 65535, 16, 33, "1111111111111111\0------------------", STATUS_SUCCESS},
1482 { 2, 65536, 17, 33, "10000000000000000\0-----------------", STATUS_SUCCESS},
1483 { 2, 100000, 17, 33, "11000011010100000\0-----------------", STATUS_SUCCESS},
1484 { 2, 1000000, 20, 33, "11110100001001000000\0--------------", STATUS_SUCCESS},
1485 { 2, 10000000, 24, 33, "100110001001011010000000\0----------", STATUS_SUCCESS},
1486 { 2, 100000000, 27, 33, "101111101011110000100000000\0-------", STATUS_SUCCESS},
1487 { 2, 1000000000, 30, 33, "111011100110101100101000000000\0----", STATUS_SUCCESS},
1488 { 2, 1073741823, 30, 33, "111111111111111111111111111111\0----", STATUS_SUCCESS},
1489 { 2, 2147483646, 31, 33, "1111111111111111111111111111110\0---", STATUS_SUCCESS},
1490 { 2, 2147483647, 31, 33, "1111111111111111111111111111111\0---", STATUS_SUCCESS}, /* max signed int */
1491 { 2, 2147483648U, 32, 33, "10000000000000000000000000000000\0--", STATUS_SUCCESS}, /* uint = -max int */
1492 { 2, 2147483649U, 32, 33, "10000000000000000000000000000001\0--", STATUS_SUCCESS},
1493 { 2, 4294967294U, 32, 33, "11111111111111111111111111111110\0--", STATUS_SUCCESS},
1494 { 2, 4294967295U, 32, 33, "11111111111111111111111111111111\0--", STATUS_SUCCESS}, /* max unsigned int */
1495
1496 { 8, 0x80000000U, 11, 12, "20000000000\0-----------------------", STATUS_SUCCESS}, /* min signed int */
1497 { 8, -2147483647, 11, 12, "20000000001\0-----------------------", STATUS_SUCCESS},
1498 { 8, -2, 11, 12, "37777777776\0-----------------------", STATUS_SUCCESS},
1499 { 8, -1, 11, 12, "37777777777\0-----------------------", STATUS_SUCCESS},
1500 { 8, 0, 1, 12, "0\0---------------------------------", STATUS_SUCCESS},
1501 { 8, 1, 1, 12, "1\0---------------------------------", STATUS_SUCCESS},
1502 { 8, 2147483646, 11, 12, "17777777776\0-----------------------", STATUS_SUCCESS},
1503 { 8, 2147483647, 11, 12, "17777777777\0-----------------------", STATUS_SUCCESS}, /* max signed int */
1504 { 8, 2147483648U, 11, 12, "20000000000\0-----------------------", STATUS_SUCCESS}, /* uint = -max int */
1505 { 8, 2147483649U, 11, 12, "20000000001\0-----------------------", STATUS_SUCCESS},
1506 { 8, 4294967294U, 11, 12, "37777777776\0-----------------------", STATUS_SUCCESS},
1507 { 8, 4294967295U, 11, 12, "37777777777\0-----------------------", STATUS_SUCCESS}, /* max unsigned int */
1508
1509 {10, 0x80000000U, 10, 11, "2147483648\0------------------------", STATUS_SUCCESS}, /* min signed int */
1510 {10, -2147483647, 10, 11, "2147483649\0------------------------", STATUS_SUCCESS},
1511 {10, -2, 10, 11, "4294967294\0------------------------", STATUS_SUCCESS},
1512 {10, -1, 10, 11, "4294967295\0------------------------", STATUS_SUCCESS},
1513 {10, 0, 1, 11, "0\0---------------------------------", STATUS_SUCCESS},
1514 {10, 1, 1, 11, "1\0---------------------------------", STATUS_SUCCESS},
1515 {10, 2147483646, 10, 11, "2147483646\0------------------------", STATUS_SUCCESS},
1516 {10, 2147483647, 10, 11, "2147483647\0------------------------", STATUS_SUCCESS}, /* max signed int */
1517 {10, 2147483648U, 10, 11, "2147483648\0------------------------", STATUS_SUCCESS}, /* uint = -max int */
1518 {10, 2147483649U, 10, 11, "2147483649\0------------------------", STATUS_SUCCESS},
1519 {10, 4294967294U, 10, 11, "4294967294\0------------------------", STATUS_SUCCESS},
1520 {10, 4294967295U, 10, 11, "4294967295\0------------------------", STATUS_SUCCESS}, /* max unsigned int */
1521
1522 {16, 0x80000000U, 8, 9, "80000000\0--------------------------", STATUS_SUCCESS}, /* min signed int */
1523 {16, -2147483647, 8, 9, "80000001\0--------------------------", STATUS_SUCCESS},
1524 {16, -2, 8, 9, "FFFFFFFE\0--------------------------", STATUS_SUCCESS},
1525 {16, -1, 8, 9, "FFFFFFFF\0--------------------------", STATUS_SUCCESS},
1526 {16, 0, 1, 9, "0\0---------------------------------", STATUS_SUCCESS},
1527 {16, 1, 1, 9, "1\0---------------------------------", STATUS_SUCCESS},
1528 {16, 2147483646, 8, 9, "7FFFFFFE\0--------------------------", STATUS_SUCCESS},
1529 {16, 2147483647, 8, 9, "7FFFFFFF\0--------------------------", STATUS_SUCCESS}, /* max signed int */
1530 {16, 2147483648U, 8, 9, "80000000\0--------------------------", STATUS_SUCCESS}, /* uint = -max int */
1531 {16, 2147483649U, 8, 9, "80000001\0--------------------------", STATUS_SUCCESS},
1532 {16, 4294967294U, 8, 9, "FFFFFFFE\0--------------------------", STATUS_SUCCESS},
1533 {16, 4294967295U, 8, 9, "FFFFFFFF\0--------------------------", STATUS_SUCCESS}, /* max unsigned int */
1534
1535 { 2, 32768, 16, 17, "1000000000000000\0------------------", STATUS_SUCCESS},
1536 { 2, 32768, 16, 16, "1000000000000000-------------------", STATUS_SUCCESS},
1537 { 2, 65536, 17, 18, "10000000000000000\0-----------------", STATUS_SUCCESS},
1538 { 2, 65536, 17, 17, "10000000000000000------------------", STATUS_SUCCESS},
1539 { 2, 131072, 18, 19, "100000000000000000\0----------------", STATUS_SUCCESS},
1540 { 2, 131072, 18, 18, "100000000000000000-----------------", STATUS_SUCCESS},
1541 {16, 0xffffffff, 8, 9, "FFFFFFFF\0--------------------------", STATUS_SUCCESS},
1542 {16, 0xffffffff, 8, 8, "FFFFFFFF---------------------------", STATUS_SUCCESS}, /* No \0 term */
1543 {16, 0xffffffff, 8, 7, "-----------------------------------", STATUS_BUFFER_OVERFLOW}, /* Too short */
1544 {16, 0xa, 1, 2, "A\0---------------------------------", STATUS_SUCCESS},
1545 {16, 0xa, 1, 1, "A----------------------------------", STATUS_SUCCESS}, /* No \0 term */
1546 {16, 0, 1, 0, "-----------------------------------", STATUS_BUFFER_OVERFLOW},
1547 {20, 0xdeadbeef, 0, 9, "-----------------------------------", STATUS_INVALID_PARAMETER}, /* ill. base */
1548 {-8, 07654321, 0, 12, "-----------------------------------", STATUS_INVALID_PARAMETER}, /* neg. base */
1549 };
1550 #define NB_INT2STR (sizeof(int2str)/sizeof(*int2str))
1551
1552
1553 static void one_RtlIntegerToUnicodeString_test(int test_num, const int2str_t *int2str)
1554 {
1555 int pos;
1556 WCHAR expected_str_Buffer[STRI_BUFFER_LENGTH + 1];
1557 UNICODE_STRING expected_unicode_string;
1558 STRING expected_ansi_str;
1559 WCHAR str_Buffer[STRI_BUFFER_LENGTH + 1];
1560 UNICODE_STRING unicode_string;
1561 STRING ansi_str;
1562 NTSTATUS result;
1563
1564 for (pos = 0; pos < STRI_BUFFER_LENGTH; pos++) {
1565 expected_str_Buffer[pos] = int2str->Buffer[pos];
1566 }
1567 expected_unicode_string.Length = int2str->Length * sizeof(WCHAR);
1568 expected_unicode_string.MaximumLength = int2str->MaximumLength * sizeof(WCHAR);
1569 expected_unicode_string.Buffer = expected_str_Buffer;
1570 pRtlUnicodeStringToAnsiString(&expected_ansi_str, &expected_unicode_string, 1);
1571
1572 for (pos = 0; pos < STRI_BUFFER_LENGTH; pos++) {
1573 str_Buffer[pos] = '-';
1574 }
1575 unicode_string.Length = 0;
1576 unicode_string.MaximumLength = int2str->MaximumLength * sizeof(WCHAR);
1577 unicode_string.Buffer = str_Buffer;
1578
1579 result = pRtlIntegerToUnicodeString(int2str->value, int2str->base, &unicode_string);
1580 pRtlUnicodeStringToAnsiString(&ansi_str, &unicode_string, 1);
1581 if (result == STATUS_BUFFER_OVERFLOW) {
1582 /* On BUFFER_OVERFLOW the string Buffer should be unchanged */
1583 for (pos = 0; pos < STRI_BUFFER_LENGTH; pos++) {
1584 expected_str_Buffer[pos] = '-';
1585 }
1586 /* w2k: The native function has two reasons for BUFFER_OVERFLOW: */
1587 /* If the value is too large to convert: The Length is unchanged */
1588 /* If str is too small to hold the string: Set str->Length to the length */
1589 /* the string would have (which can be larger than the MaximumLength). */
1590 /* To allow all this in the tests we do the following: */
1591 if (expected_unicode_string.Length > 32 && unicode_string.Length == 0) {
1592 /* The value is too large to convert only triggerd when testing native */
1593 expected_unicode_string.Length = 0;
1594 }
1595 } else {
1596 ok(result == int2str->result,
1597 "(test %d): RtlIntegerToUnicodeString(%u, %d, [out]) has result %x, expected: %x\n",
1598 test_num, int2str->value, int2str->base, result, int2str->result);
1599 if (result == STATUS_SUCCESS) {
1600 ok(unicode_string.Buffer[unicode_string.Length/sizeof(WCHAR)] == '\0',
1601 "(test %d): RtlIntegerToUnicodeString(%u, %d, [out]) string \"%s\" is not NULL terminated\n",
1602 test_num, int2str->value, int2str->base, ansi_str.Buffer);
1603 }
1604 }
1605 ok(memcmp(unicode_string.Buffer, expected_unicode_string.Buffer, STRI_BUFFER_LENGTH * sizeof(WCHAR)) == 0,
1606 "(test %d): RtlIntegerToUnicodeString(%u, %d, [out]) assigns string \"%s\", expected: \"%s\"\n",
1607 test_num, int2str->value, int2str->base, ansi_str.Buffer, expected_ansi_str.Buffer);
1608 ok(unicode_string.Length == expected_unicode_string.Length,
1609 "(test %d): RtlIntegerToUnicodeString(%u, %d, [out]) string has Length %d, expected: %d\n",
1610 test_num, int2str->value, int2str->base, unicode_string.Length, expected_unicode_string.Length);
1611 ok(unicode_string.MaximumLength == expected_unicode_string.MaximumLength,
1612 "(test %d): RtlIntegerToUnicodeString(%u, %d, [out]) string has MaximumLength %d, expected: %d\n",
1613 test_num, int2str->value, int2str->base, unicode_string.MaximumLength, expected_unicode_string.MaximumLength);
1614 pRtlFreeAnsiString(&expected_ansi_str);
1615 pRtlFreeAnsiString(&ansi_str);
1616 }
1617
1618
1619 static void test_RtlIntegerToUnicodeString(void)
1620 {
1621 size_t test_num;
1622
1623 for (test_num = 0; test_num < NB_INT2STR; test_num++)
1624 one_RtlIntegerToUnicodeString_test(test_num, &int2str[test_num]);
1625 }
1626
1627
1628 static void one_RtlIntegerToChar_test(int test_num, const int2str_t *int2str)
1629 {
1630 NTSTATUS result;
1631 char dest_str[STRI_BUFFER_LENGTH + 1];
1632
1633 memset(dest_str, '-', STRI_BUFFER_LENGTH);
1634 dest_str[STRI_BUFFER_LENGTH] = '\0';
1635 result = pRtlIntegerToChar(int2str->value, int2str->base, int2str->MaximumLength, dest_str);
1636 ok(result == int2str->result,
1637 "(test %d): RtlIntegerToChar(%u, %d, %d, [out]) has result %x, expected: %x\n",
1638 test_num, int2str->value, int2str->base, int2str->MaximumLength, result, int2str->result);
1639 ok(memcmp(dest_str, int2str->Buffer, STRI_BUFFER_LENGTH) == 0,
1640 "(test %d): RtlIntegerToChar(%u, %d, %d, [out]) assigns string \"%s\", expected: \"%s\"\n",
1641 test_num, int2str->value, int2str->base, int2str->MaximumLength, dest_str, int2str->Buffer);
1642 }
1643
1644
1645 static void test_RtlIntegerToChar(void)
1646 {
1647 NTSTATUS result;
1648 size_t test_num;
1649
1650 for (test_num = 0; test_num < NB_INT2STR; test_num++)
1651 one_RtlIntegerToChar_test(test_num, &int2str[test_num]);
1652
1653 result = pRtlIntegerToChar(int2str[0].value, 20, int2str[0].MaximumLength, NULL);
1654 ok(result == STATUS_INVALID_PARAMETER,
1655 "(test a): RtlIntegerToChar(%u, %d, %d, NULL) has result %x, expected: %x\n",
1656 int2str[0].value, 20, int2str[0].MaximumLength, result, STATUS_INVALID_PARAMETER);
1657
1658 result = pRtlIntegerToChar(int2str[0].value, 20, 0, NULL);
1659 ok(result == STATUS_INVALID_PARAMETER,
1660 "(test b): RtlIntegerToChar(%u, %d, %d, NULL) has result %x, expected: %x\n",
1661 int2str[0].value, 20, 0, result, STATUS_INVALID_PARAMETER);
1662
1663 result = pRtlIntegerToChar(int2str[0].value, int2str[0].base, 0, NULL);
1664 ok(result == STATUS_BUFFER_OVERFLOW,
1665 "(test c): RtlIntegerToChar(%u, %d, %d, NULL) has result %x, expected: %x\n",
1666 int2str[0].value, int2str[0].base, 0, result, STATUS_BUFFER_OVERFLOW);
1667
1668 result = pRtlIntegerToChar(int2str[0].value, int2str[0].base, int2str[0].MaximumLength, NULL);
1669 ok(result == STATUS_ACCESS_VIOLATION,
1670 "(test d): RtlIntegerToChar(%u, %d, %d, NULL) has result %x, expected: %x\n",
1671 int2str[0].value, int2str[0].base, int2str[0].MaximumLength, result, STATUS_ACCESS_VIOLATION);
1672 }
1673
1674 static void test_RtlIsTextUnicode(void)
1675 {
1676 char ascii[] = "A simple string";
1677 WCHAR unicode[] = {'A',' ','U','n','i','c','o','d','e',' ','s','t','r','i','n','g',0};
1678 WCHAR *be_unicode;
1679 int flags;
1680 int i;
1681
1682 ok(!pRtlIsTextUnicode(ascii, sizeof(ascii), NULL), "ASCII text detected as Unicode\n");
1683
1684 ok(pRtlIsTextUnicode(unicode, sizeof(unicode), NULL), "Text should be Unicode\n");
1685 ok(!pRtlIsTextUnicode(unicode, sizeof(unicode) - 1, NULL), "Text should be Unicode\n");
1686
1687 flags = IS_TEXT_UNICODE_UNICODE_MASK;
1688 ok(pRtlIsTextUnicode(unicode, sizeof(unicode), &flags), "Text should not pass a Unicode\n");
1689 todo_wine
1690 ok(flags == (IS_TEXT_UNICODE_STATISTICS | IS_TEXT_UNICODE_CONTROLS),
1691 "Expected flags 0x6, obtained %x\n", flags);
1692
1693 flags = IS_TEXT_UNICODE_REVERSE_MASK;
1694 ok(!pRtlIsTextUnicode(unicode, sizeof(unicode), &flags), "Text should not pass reverse Unicode tests\n");
1695 ok(flags == 0, "Expected flags 0, obtained %x\n", flags);
1696
1697 flags = IS_TEXT_UNICODE_ODD_LENGTH;
1698 ok(!pRtlIsTextUnicode(unicode, sizeof(unicode) - 1, &flags), "Odd length test should have passed\n");
1699 ok(flags == IS_TEXT_UNICODE_ODD_LENGTH, "Expected flags 0x200, obtained %x\n", flags);
1700
1701 be_unicode = HeapAlloc(GetProcessHeap(), 0, sizeof(unicode) + sizeof(WCHAR));
1702 be_unicode[0] = 0xfffe;
1703 for (i = 0; i < sizeof(unicode)/sizeof(unicode[0]); i++)
1704 {
1705 be_unicode[i + 1] = (unicode[i] >> 8) | ((unicode[i] & 0xff) << 8);
1706 }
1707 ok(!pRtlIsTextUnicode(be_unicode, sizeof(unicode) + 2, NULL), "Reverse endian should not be Unicode\n");
1708 todo_wine ok(!pRtlIsTextUnicode(&be_unicode[1], sizeof(unicode), NULL), "Reverse endian should not be Unicode\n");
1709
1710 flags = IS_TEXT_UNICODE_REVERSE_MASK;
1711 ok(!pRtlIsTextUnicode(&be_unicode[1], sizeof(unicode), &flags), "Reverse endian should be Unicode\n");
1712 todo_wine
1713 ok(flags == (IS_TEXT_UNICODE_REVERSE_ASCII16 | IS_TEXT_UNICODE_REVERSE_STATISTICS | IS_TEXT_UNICODE_REVERSE_CONTROLS),
1714 "Expected flags 0x70, obtained %x\n", flags);
1715
1716 flags = IS_TEXT_UNICODE_REVERSE_MASK;
1717 ok(!pRtlIsTextUnicode(be_unicode, sizeof(unicode) + 2, &flags), "Reverse endian should be Unicode\n");
1718 todo_wine
1719 ok(flags == (IS_TEXT_UNICODE_REVERSE_CONTROLS | IS_TEXT_UNICODE_REVERSE_SIGNATURE),
1720 "Expected flags 0xc0, obtained %x\n", flags);
1721 HeapFree(GetProcessHeap(), 0, be_unicode);
1722 }
1723
1724 static const WCHAR szGuid[] = { '{','0','1','0','2','0','3','0','4','-',
1725 '0','5','0','6','-' ,'0','7','0','8','-','0','9','0','A','-',
1726 '0','B','0','C','0','D','0','E','0','F','0','A','}','\0' };
1727 static const WCHAR szGuid2[] = { '{','0','1','0','2','0','3','0','4','-',
1728 '0','5','0','6','-' ,'0','7','0','8','-','0','9','0','A','-',
1729 '0','B','0','C','0','D','0','E','0','F','0','A',']','\0' };
1730 DEFINE_GUID(IID_Endianess, 0x01020304, 0x0506, 0x0708, 0x09, 0x0A, 0x0B,
1731 0x0C, 0x0D, 0x0E, 0x0F, 0x0A);
1732
1733 static void test_RtlGUIDFromString(void)
1734 {
1735 GUID guid;
1736 UNICODE_STRING str;
1737 NTSTATUS ret;
1738
1739 str.Length = str.MaximumLength = sizeof(szGuid) - sizeof(WCHAR);
1740 str.Buffer = (LPWSTR)szGuid;
1741
1742 ret = pRtlGUIDFromString(&str, &guid);
1743 ok(ret == 0, "expected ret=0, got 0x%0x\n", ret);
1744 ok(memcmp(&guid, &IID_Endianess, sizeof(guid)) == 0, "Endianess broken\n");
1745
1746 str.Length = str.MaximumLength = sizeof(szGuid2) - sizeof(WCHAR);
1747 str.Buffer = (LPWSTR)szGuid2;
1748
1749 ret = pRtlGUIDFromString(&str, &guid);
1750 ok(ret, "expected ret!=0\n");
1751 }
1752
1753 static void test_RtlStringFromGUID(void)
1754 {
1755 UNICODE_STRING str;
1756 NTSTATUS ret;
1757
1758 str.Length = str.MaximumLength = 0;
1759 str.Buffer = NULL;
1760
1761 ret = pRtlStringFromGUID(&IID_Endianess, &str);
1762 ok(ret == 0, "expected ret=0, got 0x%0x\n", ret);
1763 ok(str.Buffer && !lstrcmpiW(str.Buffer, szGuid), "Endianess broken\n");
1764 }
1765
1766 START_TEST(rtlstr)
1767 {
1768 InitFunctionPtrs();
1769 if (pRtlInitAnsiString) {
1770 test_RtlInitString();
1771 test_RtlInitUnicodeString();
1772 test_RtlCopyString();
1773 test_RtlUnicodeStringToInteger();
1774 test_RtlCharToInteger();
1775 test_RtlIntegerToUnicodeString();
1776 test_RtlIntegerToChar();
1777 test_RtlUpperChar();
1778 test_RtlUpperString();
1779 test_RtlUnicodeStringToAnsiString();
1780 test_RtlAppendAsciizToString();
1781 test_RtlAppendStringToString();
1782 test_RtlAppendUnicodeToString();
1783 test_RtlAppendUnicodeStringToString();
1784 }
1785
1786 if (pRtlInitUnicodeStringEx)
1787 test_RtlInitUnicodeStringEx();
1788 if (pRtlDuplicateUnicodeString)
1789 test_RtlDuplicateUnicodeString();
1790 if (pRtlFindCharInUnicodeString)
1791 test_RtlFindCharInUnicodeString();
1792 if (pRtlGUIDFromString)
1793 test_RtlGUIDFromString();
1794 if (pRtlStringFromGUID)
1795 test_RtlStringFromGUID();
1796 if (pRtlIsTextUnicode)
1797 test_RtlIsTextUnicode();
1798 if(0)
1799 {
1800 test_RtlUpcaseUnicodeChar();
1801 test_RtlUpcaseUnicodeString();
1802 test_RtlDowncaseUnicodeString();
1803 }
1804 }