[MMEBUDDY]
[reactos.git] / rostests / winetests / kernel32 / pipe.c
1 /*
2 * Unit tests for named pipe functions in Wine
3 *
4 * Copyright (c) 2002 Dan Kegel
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
21 #include <assert.h>
22 #include <stdarg.h>
23 #include <stdio.h>
24
25 #include <windef.h>
26 #include <winbase.h>
27 #include <winsock.h>
28 #include <wtypes.h>
29 #include <winerror.h>
30
31 #include "wine/test.h"
32
33 #define PIPENAME "\\\\.\\PiPe\\tests_pipe.c"
34
35 #define NB_SERVER_LOOPS 8
36
37 static HANDLE alarm_event;
38 static BOOL (WINAPI *pDuplicateTokenEx)(HANDLE,DWORD,LPSECURITY_ATTRIBUTES,
39 SECURITY_IMPERSONATION_LEVEL,TOKEN_TYPE,PHANDLE);
40
41
42 static void test_CreateNamedPipe(int pipemode)
43 {
44 HANDLE hnp;
45 HANDLE hFile;
46 static const char obuf[] = "Bit Bucket";
47 static const char obuf2[] = "More bits";
48 char ibuf[32], *pbuf;
49 DWORD written;
50 DWORD readden;
51 DWORD avail;
52 DWORD lpmode;
53
54 if (pipemode == PIPE_TYPE_BYTE)
55 trace("test_CreateNamedPipe starting in byte mode\n");
56 else
57 trace("test_CreateNamedPipe starting in message mode\n");
58 /* Bad parameter checks */
59 hnp = CreateNamedPipe("not a named pipe", PIPE_ACCESS_DUPLEX, pipemode | PIPE_WAIT,
60 /* nMaxInstances */ 1,
61 /* nOutBufSize */ 1024,
62 /* nInBufSize */ 1024,
63 /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
64 /* lpSecurityAttrib */ NULL);
65 ok(hnp == INVALID_HANDLE_VALUE && GetLastError() == ERROR_INVALID_NAME,
66 "CreateNamedPipe should fail if name doesn't start with \\\\.\\pipe\n");
67
68 hnp = CreateNamedPipe(NULL,
69 PIPE_ACCESS_DUPLEX, pipemode | PIPE_WAIT,
70 1, 1024, 1024, NMPWAIT_USE_DEFAULT_WAIT, NULL);
71 ok(hnp == INVALID_HANDLE_VALUE && GetLastError() == ERROR_PATH_NOT_FOUND,
72 "CreateNamedPipe should fail if name is NULL\n");
73
74 hFile = CreateFileA(PIPENAME, GENERIC_READ | GENERIC_WRITE, 0, NULL, OPEN_EXISTING, 0, 0);
75 ok(hFile == INVALID_HANDLE_VALUE
76 && GetLastError() == ERROR_FILE_NOT_FOUND,
77 "connecting to nonexistent named pipe should fail with ERROR_FILE_NOT_FOUND\n");
78
79 /* Functional checks */
80
81 hnp = CreateNamedPipe(PIPENAME, PIPE_ACCESS_DUPLEX, pipemode | PIPE_WAIT,
82 /* nMaxInstances */ 1,
83 /* nOutBufSize */ 1024,
84 /* nInBufSize */ 1024,
85 /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
86 /* lpSecurityAttrib */ NULL);
87 ok(hnp != INVALID_HANDLE_VALUE, "CreateNamedPipe failed\n");
88
89 ok(WaitNamedPipeA(PIPENAME, 2000), "WaitNamedPipe failed (%d)\n", GetLastError());
90
91 hFile = CreateFileA(PIPENAME, GENERIC_READ | GENERIC_WRITE, 0, NULL, OPEN_EXISTING, 0, 0);
92 ok(hFile != INVALID_HANDLE_VALUE, "CreateFile failed (%d)\n", GetLastError());
93
94 ok(!WaitNamedPipeA(PIPENAME, 1000), "WaitNamedPipe succeeded\n");
95 ok(GetLastError() == ERROR_SEM_TIMEOUT, "wrong error %u\n", GetLastError());
96
97 /* don't try to do i/o if one side couldn't be opened, as it hangs */
98 if (hFile != INVALID_HANDLE_VALUE) {
99 HANDLE hFile2;
100
101 /* Make sure we can read and write a few bytes in both directions */
102 memset(ibuf, 0, sizeof(ibuf));
103 ok(WriteFile(hnp, obuf, sizeof(obuf), &written, NULL), "WriteFile\n");
104 ok(written == sizeof(obuf), "write file len 1\n");
105 ok(PeekNamedPipe(hFile, NULL, 0, NULL, &readden, NULL), "Peek\n");
106 ok(readden == sizeof(obuf), "peek 1 got %d bytes\n", readden);
107 ok(ReadFile(hFile, ibuf, sizeof(ibuf), &readden, NULL), "ReadFile\n");
108 ok(readden == sizeof(obuf), "read 1 got %d bytes\n", readden);
109 ok(memcmp(obuf, ibuf, written) == 0, "content 1 check\n");
110
111 memset(ibuf, 0, sizeof(ibuf));
112 ok(WriteFile(hFile, obuf2, sizeof(obuf2), &written, NULL), "WriteFile\n");
113 ok(written == sizeof(obuf2), "write file len 2\n");
114 ok(PeekNamedPipe(hnp, NULL, 0, NULL, &readden, NULL), "Peek\n");
115 ok(readden == sizeof(obuf2), "peek 2 got %d bytes\n", readden);
116 ok(PeekNamedPipe(hnp, (LPVOID)1, 0, NULL, &readden, NULL), "Peek\n");
117 ok(readden == sizeof(obuf2), "peek 2 got %d bytes\n", readden);
118 ok(ReadFile(hnp, ibuf, sizeof(ibuf), &readden, NULL), "ReadFile\n");
119 ok(readden == sizeof(obuf2), "read 2 got %d bytes\n", readden);
120 ok(memcmp(obuf2, ibuf, written) == 0, "content 2 check\n");
121
122 /* Test reading of multiple writes */
123 memset(ibuf, 0, sizeof(ibuf));
124 ok(WriteFile(hnp, obuf, sizeof(obuf), &written, NULL), "WriteFile3a\n");
125 ok(written == sizeof(obuf), "write file len 3a\n");
126 ok(WriteFile(hnp, obuf2, sizeof(obuf2), &written, NULL), " WriteFile3b\n");
127 ok(written == sizeof(obuf2), "write file len 3b\n");
128 ok(PeekNamedPipe(hFile, ibuf, sizeof(ibuf), &readden, &avail, NULL), "Peek3\n");
129 if (pipemode == PIPE_TYPE_BYTE) {
130 if (readden != sizeof(obuf)) /* Linux only returns the first message */
131 ok(readden == sizeof(obuf) + sizeof(obuf2), "peek3 got %d bytes\n", readden);
132 else
133 todo_wine ok(readden == sizeof(obuf) + sizeof(obuf2), "peek3 got %d bytes\n", readden);
134 }
135 else
136 {
137 if (readden != sizeof(obuf) + sizeof(obuf2)) /* MacOS returns both messages */
138 ok(readden == sizeof(obuf), "peek3 got %d bytes\n", readden);
139 else
140 todo_wine ok(readden == sizeof(obuf), "peek3 got %d bytes\n", readden);
141 }
142 if (avail != sizeof(obuf)) /* older Linux kernels only return the first write here */
143 ok(avail == sizeof(obuf) + sizeof(obuf2), "peek3 got %d bytes available\n", avail);
144 pbuf = ibuf;
145 ok(memcmp(obuf, pbuf, sizeof(obuf)) == 0, "pipe content 3a check\n");
146 if (pipemode == PIPE_TYPE_BYTE && readden >= sizeof(obuf)+sizeof(obuf2)) {
147 pbuf += sizeof(obuf);
148 ok(memcmp(obuf2, pbuf, sizeof(obuf2)) == 0, "pipe content 3b check\n");
149 }
150 ok(ReadFile(hFile, ibuf, sizeof(ibuf), &readden, NULL), "ReadFile\n");
151 ok(readden == sizeof(obuf) + sizeof(obuf2), "read 3 got %d bytes\n", readden);
152 pbuf = ibuf;
153 ok(memcmp(obuf, pbuf, sizeof(obuf)) == 0, "content 3a check\n");
154 pbuf += sizeof(obuf);
155 ok(memcmp(obuf2, pbuf, sizeof(obuf2)) == 0, "content 3b check\n");
156
157 /* Multiple writes in the reverse direction */
158 memset(ibuf, 0, sizeof(ibuf));
159 ok(WriteFile(hFile, obuf, sizeof(obuf), &written, NULL), "WriteFile4a\n");
160 ok(written == sizeof(obuf), "write file len 4a\n");
161 ok(WriteFile(hFile, obuf2, sizeof(obuf2), &written, NULL), " WriteFile4b\n");
162 ok(written == sizeof(obuf2), "write file len 4b\n");
163 ok(PeekNamedPipe(hnp, ibuf, sizeof(ibuf), &readden, &avail, NULL), "Peek4\n");
164 if (pipemode == PIPE_TYPE_BYTE) {
165 if (readden != sizeof(obuf)) /* Linux only returns the first message */
166 /* should return all 23 bytes */
167 ok(readden == sizeof(obuf) + sizeof(obuf2), "peek4 got %d bytes\n", readden);
168 else
169 todo_wine ok(readden == sizeof(obuf) + sizeof(obuf2), "peek4 got %d bytes\n", readden);
170 }
171 else
172 {
173 if (readden != sizeof(obuf) + sizeof(obuf2)) /* MacOS returns both messages */
174 ok(readden == sizeof(obuf), "peek4 got %d bytes\n", readden);
175 else
176 todo_wine ok(readden == sizeof(obuf), "peek4 got %d bytes\n", readden);
177 }
178 if (avail != sizeof(obuf)) /* older Linux kernels only return the first write here */
179 ok(avail == sizeof(obuf) + sizeof(obuf2), "peek4 got %d bytes available\n", avail);
180 pbuf = ibuf;
181 ok(memcmp(obuf, pbuf, sizeof(obuf)) == 0, "pipe content 4a check\n");
182 if (pipemode == PIPE_TYPE_BYTE && readden >= sizeof(obuf)+sizeof(obuf2)) {
183 pbuf += sizeof(obuf);
184 ok(memcmp(obuf2, pbuf, sizeof(obuf2)) == 0, "pipe content 4b check\n");
185 }
186 ok(ReadFile(hnp, ibuf, sizeof(ibuf), &readden, NULL), "ReadFile\n");
187 if (pipemode == PIPE_TYPE_BYTE) {
188 ok(readden == sizeof(obuf) + sizeof(obuf2), "read 4 got %d bytes\n", readden);
189 }
190 else {
191 todo_wine {
192 ok(readden == sizeof(obuf), "read 4 got %d bytes\n", readden);
193 }
194 }
195 pbuf = ibuf;
196 ok(memcmp(obuf, pbuf, sizeof(obuf)) == 0, "content 4a check\n");
197 if (pipemode == PIPE_TYPE_BYTE) {
198 pbuf += sizeof(obuf);
199 ok(memcmp(obuf2, pbuf, sizeof(obuf2)) == 0, "content 4b check\n");
200 }
201
202 /* Test reading of multiple writes after a mode change
203 (CreateFile always creates a byte mode pipe) */
204 lpmode = PIPE_READMODE_MESSAGE;
205 if (pipemode == PIPE_TYPE_BYTE) {
206 /* trying to change the client end of a byte pipe to message mode should fail */
207 ok(!SetNamedPipeHandleState(hFile, &lpmode, NULL, NULL), "Change mode\n");
208 }
209 else {
210 todo_wine {
211 ok(SetNamedPipeHandleState(hFile, &lpmode, NULL, NULL), "Change mode\n");
212 }
213
214 memset(ibuf, 0, sizeof(ibuf));
215 ok(WriteFile(hnp, obuf, sizeof(obuf), &written, NULL), "WriteFile5a\n");
216 ok(written == sizeof(obuf), "write file len 3a\n");
217 ok(WriteFile(hnp, obuf2, sizeof(obuf2), &written, NULL), " WriteFile5b\n");
218 ok(written == sizeof(obuf2), "write file len 3b\n");
219 ok(PeekNamedPipe(hFile, ibuf, sizeof(ibuf), &readden, &avail, NULL), "Peek5\n");
220 if (readden != sizeof(obuf) + sizeof(obuf2)) /* MacOS returns both writes */
221 ok(readden == sizeof(obuf), "peek5 got %d bytes\n", readden);
222 else
223 todo_wine ok(readden == sizeof(obuf), "peek5 got %d bytes\n", readden);
224 if (avail != sizeof(obuf)) /* older Linux kernels only return the first write here */
225 ok(avail == sizeof(obuf) + sizeof(obuf2), "peek5 got %d bytes available\n", avail);
226 else
227 todo_wine ok(avail == sizeof(obuf) + sizeof(obuf2), "peek5 got %d bytes available\n", avail);
228 pbuf = ibuf;
229 ok(memcmp(obuf, pbuf, sizeof(obuf)) == 0, "content 5a check\n");
230 ok(ReadFile(hFile, ibuf, sizeof(ibuf), &readden, NULL), "ReadFile\n");
231 todo_wine {
232 ok(readden == sizeof(obuf), "read 5 got %d bytes\n", readden);
233 }
234 pbuf = ibuf;
235 ok(memcmp(obuf, pbuf, sizeof(obuf)) == 0, "content 5a check\n");
236
237 /* Multiple writes in the reverse direction */
238 /* the write of obuf2 from write4 should still be in the buffer */
239 ok(PeekNamedPipe(hnp, ibuf, sizeof(ibuf), &readden, &avail, NULL), "Peek6a\n");
240 todo_wine {
241 ok(readden == sizeof(obuf2), "peek6a got %d bytes\n", readden);
242 ok(avail == sizeof(obuf2), "peek6a got %d bytes available\n", avail);
243 }
244 if (avail > 0) {
245 ok(ReadFile(hnp, ibuf, sizeof(ibuf), &readden, NULL), "ReadFile\n");
246 ok(readden == sizeof(obuf2), "read 6a got %d bytes\n", readden);
247 pbuf = ibuf;
248 ok(memcmp(obuf2, pbuf, sizeof(obuf2)) == 0, "content 6a check\n");
249 }
250 memset(ibuf, 0, sizeof(ibuf));
251 ok(WriteFile(hFile, obuf, sizeof(obuf), &written, NULL), "WriteFile6a\n");
252 ok(written == sizeof(obuf), "write file len 6a\n");
253 ok(WriteFile(hFile, obuf2, sizeof(obuf2), &written, NULL), " WriteFile6b\n");
254 ok(written == sizeof(obuf2), "write file len 6b\n");
255 ok(PeekNamedPipe(hnp, ibuf, sizeof(ibuf), &readden, &avail, NULL), "Peek6\n");
256 if (readden != sizeof(obuf) + sizeof(obuf2)) /* MacOS returns both writes */
257 ok(readden == sizeof(obuf), "peek6 got %d bytes\n", readden);
258 else
259 todo_wine ok(readden == sizeof(obuf), "peek6 got %d bytes\n", readden);
260 if (avail != sizeof(obuf)) /* older Linux kernels only return the first write here */
261 ok(avail == sizeof(obuf) + sizeof(obuf2), "peek6b got %d bytes available\n", avail);
262 pbuf = ibuf;
263 ok(memcmp(obuf, pbuf, sizeof(obuf)) == 0, "content 6a check\n");
264 ok(ReadFile(hnp, ibuf, sizeof(ibuf), &readden, NULL), "ReadFile\n");
265 todo_wine {
266 ok(readden == sizeof(obuf), "read 6b got %d bytes\n", readden);
267 }
268 pbuf = ibuf;
269 ok(memcmp(obuf, pbuf, sizeof(obuf)) == 0, "content 6a check\n");
270 }
271
272 /* Picky conformance tests */
273
274 /* Verify that you can't connect to pipe again
275 * until server calls DisconnectNamedPipe+ConnectNamedPipe
276 * or creates a new pipe
277 * case 1: other client not yet closed
278 */
279 hFile2 = CreateFileA(PIPENAME, GENERIC_READ | GENERIC_WRITE, 0, NULL, OPEN_EXISTING, 0, 0);
280 ok(hFile2 == INVALID_HANDLE_VALUE,
281 "connecting to named pipe after other client closes but before DisconnectNamedPipe should fail\n");
282 ok(GetLastError() == ERROR_PIPE_BUSY,
283 "connecting to named pipe before other client closes should fail with ERROR_PIPE_BUSY\n");
284
285 ok(CloseHandle(hFile), "CloseHandle\n");
286
287 /* case 2: other client already closed */
288 hFile = CreateFileA(PIPENAME, GENERIC_READ | GENERIC_WRITE, 0, NULL, OPEN_EXISTING, 0, 0);
289 ok(hFile == INVALID_HANDLE_VALUE,
290 "connecting to named pipe after other client closes but before DisconnectNamedPipe should fail\n");
291 ok(GetLastError() == ERROR_PIPE_BUSY,
292 "connecting to named pipe after other client closes but before DisconnectNamedPipe should fail with ERROR_PIPE_BUSY\n");
293
294 ok(DisconnectNamedPipe(hnp), "DisconnectNamedPipe\n");
295
296 /* case 3: server has called DisconnectNamedPipe but not ConnectNamed Pipe */
297 hFile = CreateFileA(PIPENAME, GENERIC_READ | GENERIC_WRITE, 0, NULL, OPEN_EXISTING, 0, 0);
298 ok(hFile == INVALID_HANDLE_VALUE,
299 "connecting to named pipe after other client closes but before DisconnectNamedPipe should fail\n");
300 ok(GetLastError() == ERROR_PIPE_BUSY,
301 "connecting to named pipe after other client closes but before ConnectNamedPipe should fail with ERROR_PIPE_BUSY\n");
302
303 /* to be complete, we'd call ConnectNamedPipe here and loop,
304 * but by default that's blocking, so we'd either have
305 * to turn on the uncommon nonblocking mode, or
306 * use another thread.
307 */
308 }
309
310 ok(CloseHandle(hnp), "CloseHandle\n");
311
312 trace("test_CreateNamedPipe returning\n");
313 }
314
315 static void test_CreateNamedPipe_instances_must_match(void)
316 {
317 HANDLE hnp, hnp2;
318
319 /* Check no mismatch */
320 hnp = CreateNamedPipe(PIPENAME, PIPE_ACCESS_DUPLEX, PIPE_TYPE_BYTE | PIPE_WAIT,
321 /* nMaxInstances */ 2,
322 /* nOutBufSize */ 1024,
323 /* nInBufSize */ 1024,
324 /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
325 /* lpSecurityAttrib */ NULL);
326 ok(hnp != INVALID_HANDLE_VALUE, "CreateNamedPipe failed\n");
327
328 hnp2 = CreateNamedPipe(PIPENAME, PIPE_ACCESS_DUPLEX, PIPE_TYPE_BYTE | PIPE_WAIT,
329 /* nMaxInstances */ 2,
330 /* nOutBufSize */ 1024,
331 /* nInBufSize */ 1024,
332 /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
333 /* lpSecurityAttrib */ NULL);
334 ok(hnp2 != INVALID_HANDLE_VALUE, "CreateNamedPipe failed\n");
335
336 ok(CloseHandle(hnp), "CloseHandle\n");
337 ok(CloseHandle(hnp2), "CloseHandle\n");
338
339 /* Check nMaxInstances */
340 hnp = CreateNamedPipe(PIPENAME, PIPE_ACCESS_DUPLEX, PIPE_TYPE_BYTE | PIPE_WAIT,
341 /* nMaxInstances */ 1,
342 /* nOutBufSize */ 1024,
343 /* nInBufSize */ 1024,
344 /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
345 /* lpSecurityAttrib */ NULL);
346 ok(hnp != INVALID_HANDLE_VALUE, "CreateNamedPipe failed\n");
347
348 hnp2 = CreateNamedPipe(PIPENAME, PIPE_ACCESS_DUPLEX, PIPE_TYPE_BYTE | PIPE_WAIT,
349 /* nMaxInstances */ 1,
350 /* nOutBufSize */ 1024,
351 /* nInBufSize */ 1024,
352 /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
353 /* lpSecurityAttrib */ NULL);
354 ok(hnp2 == INVALID_HANDLE_VALUE
355 && GetLastError() == ERROR_PIPE_BUSY, "nMaxInstances not obeyed\n");
356
357 ok(CloseHandle(hnp), "CloseHandle\n");
358
359 /* Check PIPE_ACCESS_* */
360 hnp = CreateNamedPipe(PIPENAME, PIPE_ACCESS_DUPLEX, PIPE_TYPE_BYTE | PIPE_WAIT,
361 /* nMaxInstances */ 2,
362 /* nOutBufSize */ 1024,
363 /* nInBufSize */ 1024,
364 /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
365 /* lpSecurityAttrib */ NULL);
366 ok(hnp != INVALID_HANDLE_VALUE, "CreateNamedPipe failed\n");
367
368 hnp2 = CreateNamedPipe(PIPENAME, PIPE_ACCESS_INBOUND, PIPE_TYPE_BYTE | PIPE_WAIT,
369 /* nMaxInstances */ 1,
370 /* nOutBufSize */ 1024,
371 /* nInBufSize */ 1024,
372 /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
373 /* lpSecurityAttrib */ NULL);
374 ok(hnp2 == INVALID_HANDLE_VALUE
375 && GetLastError() == ERROR_ACCESS_DENIED, "PIPE_ACCESS_* mismatch allowed\n");
376
377 ok(CloseHandle(hnp), "CloseHandle\n");
378
379 /* etc, etc */
380 }
381
382 /** implementation of alarm() */
383 static DWORD CALLBACK alarmThreadMain(LPVOID arg)
384 {
385 DWORD_PTR timeout = (DWORD_PTR) arg;
386 trace("alarmThreadMain\n");
387 if (WaitForSingleObject( alarm_event, timeout ) == WAIT_TIMEOUT)
388 {
389 ok(FALSE, "alarm\n");
390 ExitProcess(1);
391 }
392 return 1;
393 }
394
395 HANDLE hnp = INVALID_HANDLE_VALUE;
396
397 /** Trivial byte echo server - disconnects after each session */
398 static DWORD CALLBACK serverThreadMain1(LPVOID arg)
399 {
400 int i;
401
402 trace("serverThreadMain1 start\n");
403 /* Set up a simple echo server */
404 hnp = CreateNamedPipe(PIPENAME "serverThreadMain1", PIPE_ACCESS_DUPLEX,
405 PIPE_TYPE_BYTE | PIPE_WAIT,
406 /* nMaxInstances */ 1,
407 /* nOutBufSize */ 1024,
408 /* nInBufSize */ 1024,
409 /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
410 /* lpSecurityAttrib */ NULL);
411
412 ok(hnp != INVALID_HANDLE_VALUE, "CreateNamedPipe failed\n");
413 for (i = 0; i < NB_SERVER_LOOPS; i++) {
414 char buf[512];
415 DWORD written;
416 DWORD readden;
417 DWORD success;
418
419 /* Wait for client to connect */
420 trace("Server calling ConnectNamedPipe...\n");
421 ok(ConnectNamedPipe(hnp, NULL)
422 || GetLastError() == ERROR_PIPE_CONNECTED, "ConnectNamedPipe\n");
423 trace("ConnectNamedPipe returned.\n");
424
425 /* Echo bytes once */
426 memset(buf, 0, sizeof(buf));
427
428 trace("Server reading...\n");
429 success = ReadFile(hnp, buf, sizeof(buf), &readden, NULL);
430 trace("Server done reading.\n");
431 ok(success, "ReadFile\n");
432 ok(readden, "short read\n");
433
434 trace("Server writing...\n");
435 ok(WriteFile(hnp, buf, readden, &written, NULL), "WriteFile\n");
436 trace("Server done writing.\n");
437 ok(written == readden, "write file len\n");
438
439 /* finish this connection, wait for next one */
440 ok(FlushFileBuffers(hnp), "FlushFileBuffers\n");
441 trace("Server done flushing.\n");
442 ok(DisconnectNamedPipe(hnp), "DisconnectNamedPipe\n");
443 trace("Server done disconnecting.\n");
444 }
445 return 0;
446 }
447
448 /** Trivial byte echo server - closes after each connection */
449 static DWORD CALLBACK serverThreadMain2(LPVOID arg)
450 {
451 int i;
452 HANDLE hnpNext = 0;
453
454 trace("serverThreadMain2\n");
455 /* Set up a simple echo server */
456 hnp = CreateNamedPipe(PIPENAME "serverThreadMain2", PIPE_ACCESS_DUPLEX,
457 PIPE_TYPE_BYTE | PIPE_WAIT,
458 /* nMaxInstances */ 2,
459 /* nOutBufSize */ 1024,
460 /* nInBufSize */ 1024,
461 /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
462 /* lpSecurityAttrib */ NULL);
463 ok(hnp != INVALID_HANDLE_VALUE, "CreateNamedPipe failed\n");
464
465 for (i = 0; i < NB_SERVER_LOOPS; i++) {
466 char buf[512];
467 DWORD written;
468 DWORD readden;
469 DWORD success;
470
471 /* Wait for client to connect */
472 trace("Server calling ConnectNamedPipe...\n");
473 ok(ConnectNamedPipe(hnp, NULL)
474 || GetLastError() == ERROR_PIPE_CONNECTED, "ConnectNamedPipe\n");
475 trace("ConnectNamedPipe returned.\n");
476
477 /* Echo bytes once */
478 memset(buf, 0, sizeof(buf));
479
480 trace("Server reading...\n");
481 success = ReadFile(hnp, buf, sizeof(buf), &readden, NULL);
482 trace("Server done reading.\n");
483 ok(success, "ReadFile\n");
484
485 trace("Server writing...\n");
486 ok(WriteFile(hnp, buf, readden, &written, NULL), "WriteFile\n");
487 trace("Server done writing.\n");
488 ok(written == readden, "write file len\n");
489
490 /* finish this connection, wait for next one */
491 ok(FlushFileBuffers(hnp), "FlushFileBuffers\n");
492 ok(DisconnectNamedPipe(hnp), "DisconnectNamedPipe\n");
493
494 /* Set up next echo server */
495 hnpNext =
496 CreateNamedPipe(PIPENAME "serverThreadMain2", PIPE_ACCESS_DUPLEX,
497 PIPE_TYPE_BYTE | PIPE_WAIT,
498 /* nMaxInstances */ 2,
499 /* nOutBufSize */ 1024,
500 /* nInBufSize */ 1024,
501 /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
502 /* lpSecurityAttrib */ NULL);
503
504 ok(hnpNext != INVALID_HANDLE_VALUE, "CreateNamedPipe failed\n");
505
506 ok(CloseHandle(hnp), "CloseHandle\n");
507 hnp = hnpNext;
508 }
509 return 0;
510 }
511
512 /** Trivial byte echo server - uses overlapped named pipe calls */
513 static DWORD CALLBACK serverThreadMain3(LPVOID arg)
514 {
515 int i;
516 HANDLE hEvent;
517
518 trace("serverThreadMain3\n");
519 /* Set up a simple echo server */
520 hnp = CreateNamedPipe(PIPENAME "serverThreadMain3", PIPE_ACCESS_DUPLEX | FILE_FLAG_OVERLAPPED,
521 PIPE_TYPE_BYTE | PIPE_WAIT,
522 /* nMaxInstances */ 1,
523 /* nOutBufSize */ 1024,
524 /* nInBufSize */ 1024,
525 /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
526 /* lpSecurityAttrib */ NULL);
527 ok(hnp != INVALID_HANDLE_VALUE, "CreateNamedPipe failed\n");
528
529 hEvent = CreateEvent(NULL, /* security attribute */
530 TRUE, /* manual reset event */
531 FALSE, /* initial state */
532 NULL); /* name */
533 ok(hEvent != NULL, "CreateEvent\n");
534
535 for (i = 0; i < NB_SERVER_LOOPS; i++) {
536 char buf[512];
537 DWORD written;
538 DWORD readden;
539 DWORD dummy;
540 DWORD success;
541 OVERLAPPED oOverlap;
542 int letWFSOEwait = (i & 2);
543 int letGORwait = (i & 1);
544 DWORD err;
545
546 memset(&oOverlap, 0, sizeof(oOverlap));
547 oOverlap.hEvent = hEvent;
548
549 /* Wait for client to connect */
550 if (i == 0) {
551 trace("Server calling non-overlapped ConnectNamedPipe on overlapped pipe...\n");
552 success = ConnectNamedPipe(hnp, NULL);
553 err = GetLastError();
554 ok(success || (err == ERROR_PIPE_CONNECTED), "ConnectNamedPipe failed: %d\n", err);
555 trace("ConnectNamedPipe operation complete.\n");
556 } else {
557 trace("Server calling overlapped ConnectNamedPipe...\n");
558 success = ConnectNamedPipe(hnp, &oOverlap);
559 err = GetLastError();
560 ok(!success && (err == ERROR_IO_PENDING || err == ERROR_PIPE_CONNECTED), "overlapped ConnectNamedPipe\n");
561 trace("overlapped ConnectNamedPipe returned.\n");
562 if (!success && (err == ERROR_IO_PENDING)) {
563 if (letWFSOEwait)
564 {
565 DWORD ret;
566 do {
567 ret = WaitForSingleObjectEx(hEvent, INFINITE, TRUE);
568 } while (ret == WAIT_IO_COMPLETION);
569 ok(ret == 0, "wait ConnectNamedPipe returned %x\n", ret);
570 }
571 success = GetOverlappedResult(hnp, &oOverlap, &dummy, letGORwait);
572 if (!letGORwait && !letWFSOEwait && !success) {
573 ok(GetLastError() == ERROR_IO_INCOMPLETE, "GetOverlappedResult\n");
574 success = GetOverlappedResult(hnp, &oOverlap, &dummy, TRUE);
575 }
576 }
577 ok(success || (err == ERROR_PIPE_CONNECTED), "GetOverlappedResult ConnectNamedPipe\n");
578 trace("overlapped ConnectNamedPipe operation complete.\n");
579 }
580
581 /* Echo bytes once */
582 memset(buf, 0, sizeof(buf));
583
584 trace("Server reading...\n");
585 success = ReadFile(hnp, buf, sizeof(buf), &readden, &oOverlap);
586 trace("Server ReadFile returned...\n");
587 err = GetLastError();
588 ok(success || err == ERROR_IO_PENDING, "overlapped ReadFile\n");
589 trace("overlapped ReadFile returned.\n");
590 if (!success && (err == ERROR_IO_PENDING)) {
591 if (letWFSOEwait)
592 {
593 DWORD ret;
594 do {
595 ret = WaitForSingleObjectEx(hEvent, INFINITE, TRUE);
596 } while (ret == WAIT_IO_COMPLETION);
597 ok(ret == 0, "wait ReadFile returned %x\n", ret);
598 }
599 success = GetOverlappedResult(hnp, &oOverlap, &readden, letGORwait);
600 if (!letGORwait && !letWFSOEwait && !success) {
601 ok(GetLastError() == ERROR_IO_INCOMPLETE, "GetOverlappedResult\n");
602 success = GetOverlappedResult(hnp, &oOverlap, &readden, TRUE);
603 }
604 }
605 trace("Server done reading.\n");
606 ok(success, "overlapped ReadFile\n");
607
608 trace("Server writing...\n");
609 success = WriteFile(hnp, buf, readden, &written, &oOverlap);
610 trace("Server WriteFile returned...\n");
611 err = GetLastError();
612 ok(success || err == ERROR_IO_PENDING, "overlapped WriteFile\n");
613 trace("overlapped WriteFile returned.\n");
614 if (!success && (err == ERROR_IO_PENDING)) {
615 if (letWFSOEwait)
616 {
617 DWORD ret;
618 do {
619 ret = WaitForSingleObjectEx(hEvent, INFINITE, TRUE);
620 } while (ret == WAIT_IO_COMPLETION);
621 ok(ret == 0, "wait WriteFile returned %x\n", ret);
622 }
623 success = GetOverlappedResult(hnp, &oOverlap, &written, letGORwait);
624 if (!letGORwait && !letWFSOEwait && !success) {
625 ok(GetLastError() == ERROR_IO_INCOMPLETE, "GetOverlappedResult\n");
626 success = GetOverlappedResult(hnp, &oOverlap, &written, TRUE);
627 }
628 }
629 trace("Server done writing.\n");
630 ok(success, "overlapped WriteFile\n");
631 ok(written == readden, "write file len\n");
632
633 /* finish this connection, wait for next one */
634 ok(FlushFileBuffers(hnp), "FlushFileBuffers\n");
635 ok(DisconnectNamedPipe(hnp), "DisconnectNamedPipe\n");
636 }
637 return 0;
638 }
639
640 /** Trivial byte echo server - uses i/o completion ports */
641 static DWORD CALLBACK serverThreadMain4(LPVOID arg)
642 {
643 int i;
644 HANDLE hcompletion;
645
646 trace("serverThreadMain4\n");
647 /* Set up a simple echo server */
648 hnp = CreateNamedPipe(PIPENAME "serverThreadMain4", PIPE_ACCESS_DUPLEX | FILE_FLAG_OVERLAPPED,
649 PIPE_TYPE_BYTE | PIPE_WAIT,
650 /* nMaxInstances */ 1,
651 /* nOutBufSize */ 1024,
652 /* nInBufSize */ 1024,
653 /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
654 /* lpSecurityAttrib */ NULL);
655 ok(hnp != INVALID_HANDLE_VALUE, "CreateNamedPipe failed\n");
656
657 hcompletion = CreateIoCompletionPort(hnp, NULL, 12345, 1);
658 ok(hcompletion != NULL, "CreateIoCompletionPort failed, error=%i\n", GetLastError());
659
660 for (i = 0; i < NB_SERVER_LOOPS; i++) {
661 char buf[512];
662 DWORD written;
663 DWORD readden;
664 DWORD dummy;
665 DWORD success;
666 OVERLAPPED oConnect;
667 OVERLAPPED oRead;
668 OVERLAPPED oWrite;
669 OVERLAPPED *oResult;
670 DWORD err;
671 ULONG_PTR compkey;
672
673 memset(&oConnect, 0, sizeof(oConnect));
674 memset(&oRead, 0, sizeof(oRead));
675 memset(&oWrite, 0, sizeof(oWrite));
676
677 /* Wait for client to connect */
678 trace("Server calling overlapped ConnectNamedPipe...\n");
679 success = ConnectNamedPipe(hnp, &oConnect);
680 err = GetLastError();
681 ok(!success && (err == ERROR_IO_PENDING || err == ERROR_PIPE_CONNECTED),
682 "overlapped ConnectNamedPipe got %u err %u\n", success, err );
683 if (!success && err == ERROR_IO_PENDING) {
684 trace("ConnectNamedPipe GetQueuedCompletionStatus\n");
685 success = GetQueuedCompletionStatus(hcompletion, &dummy, &compkey, &oResult, 0);
686 if (!success)
687 {
688 ok( GetLastError() == WAIT_TIMEOUT,
689 "ConnectNamedPipe GetQueuedCompletionStatus wrong error %u\n", GetLastError());
690 success = GetQueuedCompletionStatus(hcompletion, &dummy, &compkey, &oResult, 10000);
691 }
692 ok(success, "ConnectNamedPipe GetQueuedCompletionStatus failed, errno=%i\n", GetLastError());
693 if (success)
694 {
695 ok(compkey == 12345, "got completion key %i instead of 12345\n", (int)compkey);
696 ok(oResult == &oConnect, "got overlapped pointer %p instead of %p\n", oResult, &oConnect);
697 }
698 }
699 trace("overlapped ConnectNamedPipe operation complete.\n");
700
701 /* Echo bytes once */
702 memset(buf, 0, sizeof(buf));
703
704 trace("Server reading...\n");
705 success = ReadFile(hnp, buf, sizeof(buf), &readden, &oRead);
706 trace("Server ReadFile returned...\n");
707 err = GetLastError();
708 ok(success || err == ERROR_IO_PENDING, "overlapped ReadFile, err=%i\n", err);
709 success = GetQueuedCompletionStatus(hcompletion, &readden, &compkey,
710 &oResult, 10000);
711 ok(success, "ReadFile GetQueuedCompletionStatus failed, errno=%i\n", GetLastError());
712 if (success)
713 {
714 ok(compkey == 12345, "got completion key %i instead of 12345\n", (int)compkey);
715 ok(oResult == &oRead, "got overlapped pointer %p instead of %p\n", oResult, &oRead);
716 }
717 trace("Server done reading.\n");
718
719 trace("Server writing...\n");
720 success = WriteFile(hnp, buf, readden, &written, &oWrite);
721 trace("Server WriteFile returned...\n");
722 err = GetLastError();
723 ok(success || err == ERROR_IO_PENDING, "overlapped WriteFile failed, err=%u\n", err);
724 success = GetQueuedCompletionStatus(hcompletion, &written, &compkey,
725 &oResult, 10000);
726 ok(success, "WriteFile GetQueuedCompletionStatus failed, errno=%i\n", GetLastError());
727 if (success)
728 {
729 ok(compkey == 12345, "got completion key %i instead of 12345\n", (int)compkey);
730 ok(oResult == &oWrite, "got overlapped pointer %p instead of %p\n", oResult, &oWrite);
731 ok(written == readden, "write file len\n");
732 }
733 trace("Server done writing.\n");
734
735 /* finish this connection, wait for next one */
736 ok(FlushFileBuffers(hnp), "FlushFileBuffers\n");
737 success = DisconnectNamedPipe(hnp);
738 ok(success, "DisconnectNamedPipe failed, err %u\n", GetLastError());
739 }
740
741 ok(CloseHandle(hnp), "CloseHandle named pipe failed, err=%i\n", GetLastError());
742 ok(CloseHandle(hcompletion), "CloseHandle completion failed, err=%i\n", GetLastError());
743
744 return 0;
745 }
746
747 static void exercizeServer(const char *pipename, HANDLE serverThread)
748 {
749 int i;
750
751 trace("exercizeServer starting\n");
752 for (i = 0; i < NB_SERVER_LOOPS; i++) {
753 HANDLE hFile=INVALID_HANDLE_VALUE;
754 static const char obuf[] = "Bit Bucket";
755 char ibuf[32];
756 DWORD written;
757 DWORD readden;
758 int loop;
759
760 for (loop = 0; loop < 3; loop++) {
761 DWORD err;
762 trace("Client connecting...\n");
763 /* Connect to the server */
764 hFile = CreateFileA(pipename, GENERIC_READ | GENERIC_WRITE, 0,
765 NULL, OPEN_EXISTING, 0, 0);
766 if (hFile != INVALID_HANDLE_VALUE)
767 break;
768 err = GetLastError();
769 if (loop == 0)
770 ok(err == ERROR_PIPE_BUSY || err == ERROR_FILE_NOT_FOUND, "connecting to pipe\n");
771 else
772 ok(err == ERROR_PIPE_BUSY, "connecting to pipe\n");
773 trace("connect failed, retrying\n");
774 Sleep(200);
775 }
776 ok(hFile != INVALID_HANDLE_VALUE, "client opening named pipe\n");
777
778 /* Make sure it can echo */
779 memset(ibuf, 0, sizeof(ibuf));
780 trace("Client writing...\n");
781 ok(WriteFile(hFile, obuf, sizeof(obuf), &written, NULL), "WriteFile to client end of pipe\n");
782 ok(written == sizeof(obuf), "write file len\n");
783 trace("Client reading...\n");
784 ok(ReadFile(hFile, ibuf, sizeof(obuf), &readden, NULL), "ReadFile from client end of pipe\n");
785 ok(readden == sizeof(obuf), "read file len\n");
786 ok(memcmp(obuf, ibuf, written) == 0, "content check\n");
787
788 trace("Client closing...\n");
789 ok(CloseHandle(hFile), "CloseHandle\n");
790 }
791
792 ok(WaitForSingleObject(serverThread,INFINITE) == WAIT_OBJECT_0, "WaitForSingleObject\n");
793 CloseHandle(hnp);
794 trace("exercizeServer returning\n");
795 }
796
797 static void test_NamedPipe_2(void)
798 {
799 HANDLE serverThread;
800 DWORD serverThreadId;
801 HANDLE alarmThread;
802 DWORD alarmThreadId;
803
804 trace("test_NamedPipe_2 starting\n");
805 /* Set up a twenty second timeout */
806 alarm_event = CreateEvent( NULL, TRUE, FALSE, NULL );
807 SetLastError(0xdeadbeef);
808 alarmThread = CreateThread(NULL, 0, alarmThreadMain, (void *) 20000, 0, &alarmThreadId);
809 ok(alarmThread != NULL, "CreateThread failed: %d\n", GetLastError());
810
811 /* The servers we're about to exercise do try to clean up carefully,
812 * but to reduce the chance of a test failure due to a pipe handle
813 * leak in the test code, we'll use a different pipe name for each server.
814 */
815
816 /* Try server #1 */
817 SetLastError(0xdeadbeef);
818 serverThread = CreateThread(NULL, 0, serverThreadMain1, (void *)8, 0, &serverThreadId);
819 ok(serverThread != NULL, "CreateThread failed: %d\n", GetLastError());
820 exercizeServer(PIPENAME "serverThreadMain1", serverThread);
821
822 /* Try server #2 */
823 SetLastError(0xdeadbeef);
824 serverThread = CreateThread(NULL, 0, serverThreadMain2, 0, 0, &serverThreadId);
825 ok(serverThread != NULL, "CreateThread failed: %d\n", GetLastError());
826 exercizeServer(PIPENAME "serverThreadMain2", serverThread);
827
828 /* Try server #3 */
829 SetLastError(0xdeadbeef);
830 serverThread = CreateThread(NULL, 0, serverThreadMain3, 0, 0, &serverThreadId);
831 ok(serverThread != NULL, "CreateThread failed: %d\n", GetLastError());
832 exercizeServer(PIPENAME "serverThreadMain3", serverThread);
833
834 /* Try server #4 */
835 SetLastError(0xdeadbeef);
836 serverThread = CreateThread(NULL, 0, serverThreadMain4, 0, 0, &serverThreadId);
837 ok(serverThread != NULL, "CreateThread failed: %d\n", GetLastError());
838 exercizeServer(PIPENAME "serverThreadMain4", serverThread);
839
840 ok(SetEvent( alarm_event ), "SetEvent\n");
841 CloseHandle( alarm_event );
842 trace("test_NamedPipe_2 returning\n");
843 }
844
845 static int test_DisconnectNamedPipe(void)
846 {
847 HANDLE hnp;
848 HANDLE hFile;
849 static const char obuf[] = "Bit Bucket";
850 char ibuf[32];
851 DWORD written;
852 DWORD readden;
853 DWORD ret;
854
855 SetLastError(0xdeadbeef);
856 hnp = CreateNamedPipe(PIPENAME, PIPE_ACCESS_DUPLEX, PIPE_TYPE_BYTE | PIPE_WAIT,
857 /* nMaxInstances */ 1,
858 /* nOutBufSize */ 1024,
859 /* nInBufSize */ 1024,
860 /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
861 /* lpSecurityAttrib */ NULL);
862 if ((hnp == INVALID_HANDLE_VALUE /* Win98 */ || !hnp /* Win95 */)
863 && GetLastError() == ERROR_CALL_NOT_IMPLEMENTED) {
864
865 win_skip("Named pipes are not implemented\n");
866 return 1;
867 }
868
869 ok(WriteFile(hnp, obuf, sizeof(obuf), &written, NULL) == 0
870 && GetLastError() == ERROR_PIPE_LISTENING, "WriteFile to not-yet-connected pipe\n");
871 ok(ReadFile(hnp, ibuf, sizeof(ibuf), &readden, NULL) == 0
872 && GetLastError() == ERROR_PIPE_LISTENING, "ReadFile from not-yet-connected pipe\n");
873
874 hFile = CreateFileA(PIPENAME, GENERIC_READ | GENERIC_WRITE, 0, NULL, OPEN_EXISTING, 0, 0);
875 ok(hFile != INVALID_HANDLE_VALUE, "CreateFile failed\n");
876
877 /* don't try to do i/o if one side couldn't be opened, as it hangs */
878 if (hFile != INVALID_HANDLE_VALUE) {
879
880 /* see what happens if server calls DisconnectNamedPipe
881 * when there are bytes in the pipe
882 */
883
884 ok(WriteFile(hFile, obuf, sizeof(obuf), &written, NULL), "WriteFile\n");
885 ok(written == sizeof(obuf), "write file len\n");
886 ok(DisconnectNamedPipe(hnp), "DisconnectNamedPipe while messages waiting\n");
887 ok(WriteFile(hFile, obuf, sizeof(obuf), &written, NULL) == 0
888 && GetLastError() == ERROR_PIPE_NOT_CONNECTED, "WriteFile to disconnected pipe\n");
889 ok(ReadFile(hnp, ibuf, sizeof(ibuf), &readden, NULL) == 0
890 && GetLastError() == ERROR_PIPE_NOT_CONNECTED,
891 "ReadFile from disconnected pipe with bytes waiting\n");
892 ok(!DisconnectNamedPipe(hnp) && GetLastError() == ERROR_PIPE_NOT_CONNECTED,
893 "DisconnectNamedPipe worked twice\n");
894 ret = WaitForSingleObject(hFile, 0);
895 ok(ret == WAIT_TIMEOUT, "WaitForSingleObject returned %X\n", ret);
896 ok(CloseHandle(hFile), "CloseHandle\n");
897 }
898
899 ok(CloseHandle(hnp), "CloseHandle\n");
900
901 return 0;
902 }
903 static void test_CreatePipe(void)
904 {
905 SECURITY_ATTRIBUTES pipe_attr;
906 HANDLE piperead, pipewrite;
907 DWORD written;
908 DWORD read;
909 DWORD i, size;
910 BYTE *buffer;
911 char readbuf[32];
912
913 pipe_attr.nLength = sizeof(SECURITY_ATTRIBUTES);
914 pipe_attr.bInheritHandle = TRUE;
915 pipe_attr.lpSecurityDescriptor = NULL;
916 ok(CreatePipe(&piperead, &pipewrite, &pipe_attr, 0) != 0, "CreatePipe failed\n");
917 ok(WriteFile(pipewrite,PIPENAME,sizeof(PIPENAME), &written, NULL), "Write to anonymous pipe failed\n");
918 ok(written == sizeof(PIPENAME), "Write to anonymous pipe wrote %d bytes\n", written);
919 ok(ReadFile(piperead,readbuf,sizeof(readbuf),&read, NULL), "Read from non empty pipe failed\n");
920 ok(read == sizeof(PIPENAME), "Read from anonymous pipe got %d bytes\n", read);
921 ok(CloseHandle(pipewrite), "CloseHandle for the write pipe failed\n");
922 ok(CloseHandle(piperead), "CloseHandle for the read pipe failed\n");
923
924 /* Now write another chunk*/
925 ok(CreatePipe(&piperead, &pipewrite, &pipe_attr, 0) != 0, "CreatePipe failed\n");
926 ok(WriteFile(pipewrite,PIPENAME,sizeof(PIPENAME), &written, NULL), "Write to anonymous pipe failed\n");
927 ok(written == sizeof(PIPENAME), "Write to anonymous pipe wrote %d bytes\n", written);
928 /* and close the write end, read should still succeed*/
929 ok(CloseHandle(pipewrite), "CloseHandle for the Write Pipe failed\n");
930 ok(ReadFile(piperead,readbuf,sizeof(readbuf),&read, NULL), "Read from broken pipe withe with pending data failed\n");
931 ok(read == sizeof(PIPENAME), "Read from anonymous pipe got %d bytes\n", read);
932 /* But now we need to get informed that the pipe is closed */
933 ok(ReadFile(piperead,readbuf,sizeof(readbuf),&read, NULL) == 0, "Broken pipe not detected\n");
934 ok(CloseHandle(piperead), "CloseHandle for the read pipe failed\n");
935
936 /* Try bigger chunks */
937 size = 32768;
938 buffer = HeapAlloc( GetProcessHeap(), 0, size );
939 for (i = 0; i < size; i++) buffer[i] = i;
940 ok(CreatePipe(&piperead, &pipewrite, &pipe_attr, (size + 24)) != 0, "CreatePipe failed\n");
941 ok(WriteFile(pipewrite, buffer, size, &written, NULL), "Write to anonymous pipe failed\n");
942 ok(written == size, "Write to anonymous pipe wrote %d bytes\n", written);
943 /* and close the write end, read should still succeed*/
944 ok(CloseHandle(pipewrite), "CloseHandle for the Write Pipe failed\n");
945 memset( buffer, 0, size );
946 ok(ReadFile(piperead, buffer, size, &read, NULL), "Read from broken pipe withe with pending data failed\n");
947 ok(read == size, "Read from anonymous pipe got %d bytes\n", read);
948 for (i = 0; i < size; i++) ok( buffer[i] == (BYTE)i, "invalid data %x at %x\n", buffer[i], i );
949 /* But now we need to get informed that the pipe is closed */
950 ok(ReadFile(piperead,readbuf,sizeof(readbuf),&read, NULL) == 0, "Broken pipe not detected\n");
951 ok(CloseHandle(piperead), "CloseHandle for the read pipe failed\n");
952 HeapFree(GetProcessHeap(), 0, buffer);
953 }
954
955 struct named_pipe_client_params
956 {
957 DWORD security_flags;
958 HANDLE token;
959 BOOL revert;
960 };
961
962 #define PIPE_NAME "\\\\.\\pipe\\named_pipe_test"
963
964 static DWORD CALLBACK named_pipe_client_func(LPVOID p)
965 {
966 struct named_pipe_client_params *params = p;
967 HANDLE pipe;
968 BOOL ret;
969 const char message[] = "Test";
970 DWORD bytes_read, bytes_written;
971 char dummy;
972 TOKEN_PRIVILEGES *Privileges = NULL;
973
974 if (params->token)
975 {
976 if (params->revert)
977 {
978 /* modify the token so we can tell if the pipe impersonation
979 * token reverts to the process token */
980 ret = AdjustTokenPrivileges(params->token, TRUE, NULL, 0, NULL, NULL);
981 ok(ret, "AdjustTokenPrivileges failed with error %d\n", GetLastError());
982 }
983 ret = SetThreadToken(NULL, params->token);
984 ok(ret, "SetThreadToken failed with error %d\n", GetLastError());
985 }
986 else
987 {
988 DWORD Size = 0;
989 HANDLE process_token;
990
991 ret = OpenProcessToken(GetCurrentProcess(), TOKEN_QUERY|TOKEN_ADJUST_PRIVILEGES, &process_token);
992 ok(ret, "OpenProcessToken failed with error %d\n", GetLastError());
993
994 ret = GetTokenInformation(process_token, TokenPrivileges, NULL, 0, &Size);
995 ok(!ret && GetLastError() == ERROR_INSUFFICIENT_BUFFER, "GetTokenInformation(TokenPrivileges) failed with %d\n", GetLastError());
996 Privileges = HeapAlloc(GetProcessHeap(), 0, Size);
997 ret = GetTokenInformation(process_token, TokenPrivileges, Privileges, Size, &Size);
998 ok(ret, "GetTokenInformation(TokenPrivileges) failed with %d\n", GetLastError());
999
1000 ret = AdjustTokenPrivileges(process_token, TRUE, NULL, 0, NULL, NULL);
1001 ok(ret, "AdjustTokenPrivileges failed with error %d\n", GetLastError());
1002
1003 CloseHandle(process_token);
1004 }
1005
1006 pipe = CreateFile(PIPE_NAME, GENERIC_READ | GENERIC_WRITE, 0, NULL, OPEN_EXISTING, params->security_flags, NULL);
1007 ok(pipe != INVALID_HANDLE_VALUE, "CreateFile for pipe failed with error %d\n", GetLastError());
1008
1009 ret = WriteFile(pipe, message, sizeof(message), &bytes_written, NULL);
1010 ok(ret, "WriteFile failed with error %d\n", GetLastError());
1011
1012 ret = ReadFile(pipe, &dummy, sizeof(dummy), &bytes_read, NULL);
1013 ok(ret, "ReadFile failed with error %d\n", GetLastError());
1014
1015 if (params->token)
1016 {
1017 if (params->revert)
1018 {
1019 ret = RevertToSelf();
1020 ok(ret, "RevertToSelf failed with error %d\n", GetLastError());
1021 }
1022 else
1023 {
1024 ret = AdjustTokenPrivileges(params->token, TRUE, NULL, 0, NULL, NULL);
1025 ok(ret, "AdjustTokenPrivileges failed with error %d\n", GetLastError());
1026 }
1027 }
1028 else
1029 {
1030 HANDLE process_token;
1031
1032 ret = OpenProcessToken(GetCurrentProcess(), TOKEN_ADJUST_PRIVILEGES, &process_token);
1033 ok(ret, "OpenProcessToken failed with error %d\n", GetLastError());
1034
1035 ret = AdjustTokenPrivileges(process_token, FALSE, Privileges, 0, NULL, NULL);
1036 ok(ret, "AdjustTokenPrivileges failed with error %d\n", GetLastError());
1037
1038 HeapFree(GetProcessHeap(), 0, Privileges);
1039
1040 CloseHandle(process_token);
1041 }
1042
1043 ret = WriteFile(pipe, message, sizeof(message), &bytes_written, NULL);
1044 ok(ret, "WriteFile failed with error %d\n", GetLastError());
1045
1046 ret = ReadFile(pipe, &dummy, sizeof(dummy), &bytes_read, NULL);
1047 ok(ret, "ReadFile failed with error %d\n", GetLastError());
1048
1049 CloseHandle(pipe);
1050
1051 return 0;
1052 }
1053
1054 static HANDLE make_impersonation_token(DWORD Access, SECURITY_IMPERSONATION_LEVEL ImpersonationLevel)
1055 {
1056 HANDLE ProcessToken;
1057 HANDLE Token = NULL;
1058 BOOL ret;
1059
1060 ret = OpenProcessToken(GetCurrentProcess(), TOKEN_DUPLICATE, &ProcessToken);
1061 ok(ret, "OpenProcessToken failed with error %d\n", GetLastError());
1062
1063 ret = pDuplicateTokenEx(ProcessToken, Access, NULL, ImpersonationLevel, TokenImpersonation, &Token);
1064 ok(ret, "DuplicateToken failed with error %d\n", GetLastError());
1065
1066 CloseHandle(ProcessToken);
1067
1068 return Token;
1069 }
1070
1071 static void test_ImpersonateNamedPipeClient(HANDLE hClientToken, DWORD security_flags, BOOL revert, void (*test_func)(int, HANDLE))
1072 {
1073 HANDLE hPipeServer;
1074 BOOL ret;
1075 DWORD dwTid;
1076 HANDLE hThread;
1077 char buffer[256];
1078 DWORD dwBytesRead;
1079 DWORD error;
1080 struct named_pipe_client_params params;
1081 char dummy = 0;
1082 DWORD dwBytesWritten;
1083 HANDLE hToken = NULL;
1084 SECURITY_IMPERSONATION_LEVEL ImpersonationLevel;
1085 DWORD size;
1086
1087 hPipeServer = CreateNamedPipe(PIPE_NAME, PIPE_ACCESS_DUPLEX, PIPE_TYPE_BYTE | PIPE_READMODE_BYTE | PIPE_WAIT, 1, 100, 100, NMPWAIT_USE_DEFAULT_WAIT, NULL);
1088 ok(hPipeServer != INVALID_HANDLE_VALUE, "CreateNamedPipe failed with error %d\n", GetLastError());
1089
1090 params.security_flags = security_flags;
1091 params.token = hClientToken;
1092 params.revert = revert;
1093 hThread = CreateThread(NULL, 0, named_pipe_client_func, &params, 0, &dwTid);
1094 ok(hThread != NULL, "CreateThread failed with error %d\n", GetLastError());
1095
1096 SetLastError(0xdeadbeef);
1097 ret = ImpersonateNamedPipeClient(hPipeServer);
1098 error = GetLastError();
1099 ok(ret /* win2k3 */ || (error == ERROR_CANNOT_IMPERSONATE),
1100 "ImpersonateNamedPipeClient should have failed with ERROR_CANNOT_IMPERSONATE instead of %d\n", GetLastError());
1101
1102 ret = ConnectNamedPipe(hPipeServer, NULL);
1103 ok(ret || (GetLastError() == ERROR_PIPE_CONNECTED), "ConnectNamedPipe failed with error %d\n", GetLastError());
1104
1105 ret = ReadFile(hPipeServer, buffer, sizeof(buffer), &dwBytesRead, NULL);
1106 ok(ret, "ReadFile failed with error %d\n", GetLastError());
1107
1108 ret = ImpersonateNamedPipeClient(hPipeServer);
1109 ok(ret, "ImpersonateNamedPipeClient failed with error %d\n", GetLastError());
1110
1111 ret = OpenThreadToken(GetCurrentThread(), TOKEN_QUERY, FALSE, &hToken);
1112 ok(ret, "OpenThreadToken failed with error %d\n", GetLastError());
1113
1114 (*test_func)(0, hToken);
1115
1116 ImpersonationLevel = 0xdeadbeef; /* to avoid false positives */
1117 ret = GetTokenInformation(hToken, TokenImpersonationLevel, &ImpersonationLevel, sizeof(ImpersonationLevel), &size);
1118 ok(ret, "GetTokenInformation(TokenImpersonationLevel) failed with error %d\n", GetLastError());
1119 ok(ImpersonationLevel == SecurityImpersonation, "ImpersonationLevel should have been SecurityImpersonation(%d) instead of %d\n", SecurityImpersonation, ImpersonationLevel);
1120
1121 CloseHandle(hToken);
1122
1123 RevertToSelf();
1124
1125 ret = WriteFile(hPipeServer, &dummy, sizeof(dummy), &dwBytesWritten, NULL);
1126 ok(ret, "WriteFile failed with error %d\n", GetLastError());
1127
1128 ret = ReadFile(hPipeServer, buffer, sizeof(buffer), &dwBytesRead, NULL);
1129 ok(ret, "ReadFile failed with error %d\n", GetLastError());
1130
1131 ret = ImpersonateNamedPipeClient(hPipeServer);
1132 ok(ret, "ImpersonateNamedPipeClient failed with error %d\n", GetLastError());
1133
1134 ret = OpenThreadToken(GetCurrentThread(), TOKEN_QUERY, FALSE, &hToken);
1135 ok(ret, "OpenThreadToken failed with error %d\n", GetLastError());
1136
1137 (*test_func)(1, hToken);
1138
1139 CloseHandle(hToken);
1140
1141 RevertToSelf();
1142
1143 ret = WriteFile(hPipeServer, &dummy, sizeof(dummy), &dwBytesWritten, NULL);
1144 ok(ret, "WriteFile failed with error %d\n", GetLastError());
1145
1146 WaitForSingleObject(hThread, INFINITE);
1147
1148 ret = ImpersonateNamedPipeClient(hPipeServer);
1149 ok(ret, "ImpersonateNamedPipeClient failed with error %d\n", GetLastError());
1150
1151 RevertToSelf();
1152
1153 CloseHandle(hThread);
1154 CloseHandle(hPipeServer);
1155 }
1156
1157 static BOOL are_all_privileges_disabled(HANDLE hToken)
1158 {
1159 BOOL ret;
1160 TOKEN_PRIVILEGES *Privileges = NULL;
1161 DWORD Size = 0;
1162 BOOL all_privs_disabled = TRUE;
1163 DWORD i;
1164
1165 ret = GetTokenInformation(hToken, TokenPrivileges, NULL, 0, &Size);
1166 if (!ret && GetLastError() == ERROR_INSUFFICIENT_BUFFER)
1167 {
1168 Privileges = HeapAlloc(GetProcessHeap(), 0, Size);
1169 ret = GetTokenInformation(hToken, TokenPrivileges, Privileges, Size, &Size);
1170 if (!ret)
1171 {
1172 HeapFree(GetProcessHeap(), 0, Privileges);
1173 return FALSE;
1174 }
1175 }
1176 else
1177 return FALSE;
1178
1179 for (i = 0; i < Privileges->PrivilegeCount; i++)
1180 {
1181 if (Privileges->Privileges[i].Attributes & SE_PRIVILEGE_ENABLED)
1182 {
1183 all_privs_disabled = FALSE;
1184 break;
1185 }
1186 }
1187
1188 HeapFree(GetProcessHeap(), 0, Privileges);
1189
1190 return all_privs_disabled;
1191 }
1192
1193 static DWORD get_privilege_count(HANDLE hToken)
1194 {
1195 TOKEN_STATISTICS Statistics;
1196 DWORD Size = sizeof(Statistics);
1197 BOOL ret;
1198
1199 ret = GetTokenInformation(hToken, TokenStatistics, &Statistics, Size, &Size);
1200 ok(ret, "GetTokenInformation(TokenStatistics)\n");
1201 if (!ret) return -1;
1202
1203 return Statistics.PrivilegeCount;
1204 }
1205
1206 static void test_no_sqos_no_token(int call_index, HANDLE hToken)
1207 {
1208 DWORD priv_count;
1209
1210 switch (call_index)
1211 {
1212 case 0:
1213 priv_count = get_privilege_count(hToken);
1214 todo_wine
1215 ok(priv_count == 0, "privilege count should have been 0 instead of %d\n", priv_count);
1216 break;
1217 case 1:
1218 priv_count = get_privilege_count(hToken);
1219 ok(priv_count > 0, "privilege count should now be > 0 instead of 0\n");
1220 ok(!are_all_privileges_disabled(hToken), "impersonated token should not have been modified\n");
1221 break;
1222 default:
1223 ok(0, "shouldn't happen\n");
1224 }
1225 }
1226
1227 static void test_no_sqos(int call_index, HANDLE hToken)
1228 {
1229 switch (call_index)
1230 {
1231 case 0:
1232 ok(!are_all_privileges_disabled(hToken), "token should be a copy of the process one\n");
1233 break;
1234 case 1:
1235 todo_wine
1236 ok(are_all_privileges_disabled(hToken), "impersonated token should have been modified\n");
1237 break;
1238 default:
1239 ok(0, "shouldn't happen\n");
1240 }
1241 }
1242
1243 static void test_static_context(int call_index, HANDLE hToken)
1244 {
1245 switch (call_index)
1246 {
1247 case 0:
1248 ok(!are_all_privileges_disabled(hToken), "token should be a copy of the process one\n");
1249 break;
1250 case 1:
1251 ok(!are_all_privileges_disabled(hToken), "impersonated token should not have been modified\n");
1252 break;
1253 default:
1254 ok(0, "shouldn't happen\n");
1255 }
1256 }
1257
1258 static void test_dynamic_context(int call_index, HANDLE hToken)
1259 {
1260 switch (call_index)
1261 {
1262 case 0:
1263 ok(!are_all_privileges_disabled(hToken), "token should be a copy of the process one\n");
1264 break;
1265 case 1:
1266 todo_wine
1267 ok(are_all_privileges_disabled(hToken), "impersonated token should have been modified\n");
1268 break;
1269 default:
1270 ok(0, "shouldn't happen\n");
1271 }
1272 }
1273
1274 static void test_dynamic_context_no_token(int call_index, HANDLE hToken)
1275 {
1276 switch (call_index)
1277 {
1278 case 0:
1279 ok(are_all_privileges_disabled(hToken), "token should be a copy of the process one\n");
1280 break;
1281 case 1:
1282 ok(!are_all_privileges_disabled(hToken), "process token modification should have been detected and impersonation token updated\n");
1283 break;
1284 default:
1285 ok(0, "shouldn't happen\n");
1286 }
1287 }
1288
1289 static void test_no_sqos_revert(int call_index, HANDLE hToken)
1290 {
1291 DWORD priv_count;
1292 switch (call_index)
1293 {
1294 case 0:
1295 priv_count = get_privilege_count(hToken);
1296 todo_wine
1297 ok(priv_count == 0, "privilege count should have been 0 instead of %d\n", priv_count);
1298 break;
1299 case 1:
1300 priv_count = get_privilege_count(hToken);
1301 ok(priv_count > 0, "privilege count should now be > 0 instead of 0\n");
1302 ok(!are_all_privileges_disabled(hToken), "impersonated token should not have been modified\n");
1303 break;
1304 default:
1305 ok(0, "shouldn't happen\n");
1306 }
1307 }
1308
1309 static void test_static_context_revert(int call_index, HANDLE hToken)
1310 {
1311 switch (call_index)
1312 {
1313 case 0:
1314 todo_wine
1315 ok(are_all_privileges_disabled(hToken), "privileges should have been disabled\n");
1316 break;
1317 case 1:
1318 todo_wine
1319 ok(are_all_privileges_disabled(hToken), "impersonated token should not have been modified\n");
1320 break;
1321 default:
1322 ok(0, "shouldn't happen\n");
1323 }
1324 }
1325
1326 static void test_dynamic_context_revert(int call_index, HANDLE hToken)
1327 {
1328 switch (call_index)
1329 {
1330 case 0:
1331 todo_wine
1332 ok(are_all_privileges_disabled(hToken), "privileges should have been disabled\n");
1333 break;
1334 case 1:
1335 ok(!are_all_privileges_disabled(hToken), "impersonated token should now be process token\n");
1336 break;
1337 default:
1338 ok(0, "shouldn't happen\n");
1339 }
1340 }
1341
1342 static void test_impersonation(void)
1343 {
1344 HANDLE hClientToken;
1345 HANDLE hProcessToken;
1346 BOOL ret;
1347
1348 if( !pDuplicateTokenEx ) {
1349 skip("DuplicateTokenEx not found\n");
1350 return;
1351 }
1352
1353 ret = OpenProcessToken(GetCurrentProcess(), TOKEN_QUERY, &hProcessToken);
1354 if (!ret)
1355 {
1356 skip("couldn't open process token, skipping impersonation tests\n");
1357 return;
1358 }
1359
1360 if (!get_privilege_count(hProcessToken) || are_all_privileges_disabled(hProcessToken))
1361 {
1362 skip("token didn't have any privileges or they were all disabled. token not suitable for impersonation tests\n");
1363 CloseHandle(hProcessToken);
1364 return;
1365 }
1366 CloseHandle(hProcessToken);
1367
1368 test_ImpersonateNamedPipeClient(NULL, 0, FALSE, test_no_sqos_no_token);
1369 hClientToken = make_impersonation_token(TOKEN_IMPERSONATE | TOKEN_ADJUST_PRIVILEGES | TOKEN_QUERY, SecurityImpersonation);
1370 test_ImpersonateNamedPipeClient(hClientToken, 0, FALSE, test_no_sqos);
1371 CloseHandle(hClientToken);
1372 hClientToken = make_impersonation_token(TOKEN_IMPERSONATE | TOKEN_ADJUST_PRIVILEGES | TOKEN_QUERY, SecurityImpersonation);
1373 test_ImpersonateNamedPipeClient(hClientToken,
1374 SECURITY_SQOS_PRESENT | SECURITY_IMPERSONATION, FALSE,
1375 test_static_context);
1376 CloseHandle(hClientToken);
1377 hClientToken = make_impersonation_token(TOKEN_IMPERSONATE | TOKEN_ADJUST_PRIVILEGES | TOKEN_QUERY, SecurityImpersonation);
1378 test_ImpersonateNamedPipeClient(hClientToken,
1379 SECURITY_SQOS_PRESENT | SECURITY_CONTEXT_TRACKING | SECURITY_IMPERSONATION,
1380 FALSE, test_dynamic_context);
1381 CloseHandle(hClientToken);
1382 test_ImpersonateNamedPipeClient(NULL,
1383 SECURITY_SQOS_PRESENT | SECURITY_CONTEXT_TRACKING | SECURITY_IMPERSONATION,
1384 FALSE, test_dynamic_context_no_token);
1385
1386 hClientToken = make_impersonation_token(TOKEN_IMPERSONATE | TOKEN_ADJUST_PRIVILEGES | TOKEN_QUERY, SecurityImpersonation);
1387 test_ImpersonateNamedPipeClient(hClientToken, 0, TRUE, test_no_sqos_revert);
1388 CloseHandle(hClientToken);
1389 hClientToken = make_impersonation_token(TOKEN_IMPERSONATE | TOKEN_ADJUST_PRIVILEGES | TOKEN_QUERY, SecurityImpersonation);
1390 test_ImpersonateNamedPipeClient(hClientToken,
1391 SECURITY_SQOS_PRESENT | SECURITY_IMPERSONATION, TRUE,
1392 test_static_context_revert);
1393 CloseHandle(hClientToken);
1394 hClientToken = make_impersonation_token(TOKEN_IMPERSONATE | TOKEN_ADJUST_PRIVILEGES | TOKEN_QUERY, SecurityImpersonation);
1395 test_ImpersonateNamedPipeClient(hClientToken,
1396 SECURITY_SQOS_PRESENT | SECURITY_CONTEXT_TRACKING | SECURITY_IMPERSONATION,
1397 TRUE, test_dynamic_context_revert);
1398 CloseHandle(hClientToken);
1399 }
1400
1401 struct overlapped_server_args
1402 {
1403 HANDLE pipe_created;
1404 };
1405
1406 static DWORD CALLBACK overlapped_server(LPVOID arg)
1407 {
1408 OVERLAPPED ol;
1409 HANDLE pipe;
1410 int ret, err;
1411 struct overlapped_server_args *a = arg;
1412 DWORD num;
1413 char buf[100];
1414
1415 pipe = CreateNamedPipeA("\\\\.\\pipe\\my pipe", FILE_FLAG_OVERLAPPED | PIPE_ACCESS_DUPLEX, PIPE_TYPE_MESSAGE | PIPE_READMODE_MESSAGE, 1, 0, 0, 100000, NULL);
1416 ok(pipe != NULL, "pipe NULL\n");
1417
1418 ol.hEvent = CreateEventA(0, 1, 0, 0);
1419 ok(ol.hEvent != NULL, "event NULL\n");
1420 ret = ConnectNamedPipe(pipe, &ol);
1421 err = GetLastError();
1422 ok(ret == 0, "ret %d\n", ret);
1423 ok(err == ERROR_IO_PENDING, "gle %d\n", err);
1424 SetEvent(a->pipe_created);
1425
1426 ret = WaitForSingleObjectEx(ol.hEvent, INFINITE, 1);
1427 ok(ret == WAIT_OBJECT_0, "ret %x\n", ret);
1428
1429 ret = GetOverlappedResult(pipe, &ol, &num, 1);
1430 ok(ret == 1, "ret %d\n", ret);
1431
1432 /* This should block */
1433 ret = ReadFile(pipe, buf, sizeof(buf), &num, NULL);
1434 ok(ret == 1, "ret %d\n", ret);
1435
1436 DisconnectNamedPipe(pipe);
1437 CloseHandle(ol.hEvent);
1438 CloseHandle(pipe);
1439 return 1;
1440 }
1441
1442 static void test_overlapped(void)
1443 {
1444 DWORD tid, num;
1445 HANDLE thread, pipe;
1446 int ret;
1447 struct overlapped_server_args args;
1448
1449 args.pipe_created = CreateEventA(0, 1, 0, 0);
1450 thread = CreateThread(NULL, 0, overlapped_server, &args, 0, &tid);
1451
1452 WaitForSingleObject(args.pipe_created, INFINITE);
1453 pipe = CreateFileA("\\\\.\\pipe\\my pipe", GENERIC_READ|GENERIC_WRITE, 0, NULL, OPEN_EXISTING, 0, NULL);
1454 ok(pipe != INVALID_HANDLE_VALUE, "cf failed\n");
1455
1456 /* Sleep to try to get the ReadFile in the server to occur before the following WriteFile */
1457 Sleep(1);
1458
1459 ret = WriteFile(pipe, "x", 1, &num, NULL);
1460 ok(ret == 1, "ret %d\n", ret);
1461
1462 WaitForSingleObject(thread, INFINITE);
1463 CloseHandle(pipe);
1464 CloseHandle(args.pipe_created);
1465 CloseHandle(thread);
1466 }
1467
1468 static void test_NamedPipeHandleState(void)
1469 {
1470 HANDLE server, client;
1471 BOOL ret;
1472 DWORD state, instances, maxCollectionCount, collectDataTimeout;
1473 char userName[MAX_PATH];
1474
1475 server = CreateNamedPipe(PIPENAME, PIPE_ACCESS_DUPLEX,
1476 /* dwOpenMode */ PIPE_TYPE_BYTE | PIPE_WAIT,
1477 /* nMaxInstances */ 1,
1478 /* nOutBufSize */ 1024,
1479 /* nInBufSize */ 1024,
1480 /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
1481 /* lpSecurityAttrib */ NULL);
1482 ok(server != INVALID_HANDLE_VALUE, "cf failed\n");
1483 ret = GetNamedPipeHandleState(server, NULL, NULL, NULL, NULL, NULL, 0);
1484 todo_wine
1485 ok(ret, "GetNamedPipeHandleState failed: %d\n", GetLastError());
1486 ret = GetNamedPipeHandleState(server, &state, &instances, NULL, NULL, NULL,
1487 0);
1488 todo_wine
1489 ok(ret, "GetNamedPipeHandleState failed: %d\n", GetLastError());
1490 if (ret)
1491 {
1492 ok(state == 0, "unexpected state %08x\n", state);
1493 ok(instances == 1, "expected 1 instances, got %d\n", instances);
1494 }
1495 /* Some parameters have no meaning, and therefore can't be retrieved,
1496 * on a local pipe.
1497 */
1498 SetLastError(0xdeadbeef);
1499 ret = GetNamedPipeHandleState(server, &state, &instances,
1500 &maxCollectionCount, &collectDataTimeout, userName,
1501 sizeof(userName) / sizeof(userName[0]));
1502 todo_wine
1503 ok(!ret && GetLastError() == ERROR_INVALID_PARAMETER,
1504 "expected ERROR_INVALID_PARAMETER, got %d\n", GetLastError());
1505 /* A byte-mode pipe server can't be changed to message mode. */
1506 state = PIPE_READMODE_MESSAGE;
1507 SetLastError(0xdeadbeef);
1508 ret = SetNamedPipeHandleState(server, &state, NULL, NULL);
1509 todo_wine
1510 ok(!ret && GetLastError() == ERROR_INVALID_PARAMETER,
1511 "expected ERROR_INVALID_PARAMETER, got %d\n", GetLastError());
1512
1513 client = CreateFileA(PIPENAME, GENERIC_READ|GENERIC_WRITE, 0, NULL,
1514 OPEN_EXISTING, 0, NULL);
1515 ok(client != INVALID_HANDLE_VALUE, "cf failed\n");
1516
1517 state = PIPE_READMODE_BYTE;
1518 ret = SetNamedPipeHandleState(client, &state, NULL, NULL);
1519 todo_wine
1520 ok(ret, "SetNamedPipeHandleState failed: %d\n", GetLastError());
1521 /* A byte-mode pipe client can't be changed to message mode, either. */
1522 state = PIPE_READMODE_MESSAGE;
1523 SetLastError(0xdeadbeef);
1524 ret = SetNamedPipeHandleState(server, &state, NULL, NULL);
1525 todo_wine
1526 ok(!ret && GetLastError() == ERROR_INVALID_PARAMETER,
1527 "expected ERROR_INVALID_PARAMETER, got %d\n", GetLastError());
1528
1529 CloseHandle(client);
1530 CloseHandle(server);
1531
1532 server = CreateNamedPipe(PIPENAME, PIPE_ACCESS_DUPLEX,
1533 /* dwOpenMode */ PIPE_TYPE_MESSAGE | PIPE_WAIT,
1534 /* nMaxInstances */ 1,
1535 /* nOutBufSize */ 1024,
1536 /* nInBufSize */ 1024,
1537 /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
1538 /* lpSecurityAttrib */ NULL);
1539 ok(server != INVALID_HANDLE_VALUE, "cf failed\n");
1540 ret = GetNamedPipeHandleState(server, NULL, NULL, NULL, NULL, NULL, 0);
1541 todo_wine
1542 ok(ret, "GetNamedPipeHandleState failed: %d\n", GetLastError());
1543 ret = GetNamedPipeHandleState(server, &state, &instances, NULL, NULL, NULL,
1544 0);
1545 todo_wine
1546 ok(ret, "GetNamedPipeHandleState failed: %d\n", GetLastError());
1547 if (ret)
1548 {
1549 ok(state == 0, "unexpected state %08x\n", state);
1550 ok(instances == 1, "expected 1 instances, got %d\n", instances);
1551 }
1552 /* In contrast to byte-mode pipes, a message-mode pipe server can be
1553 * changed to byte mode.
1554 */
1555 state = PIPE_READMODE_BYTE;
1556 ret = SetNamedPipeHandleState(server, &state, NULL, NULL);
1557 todo_wine
1558 ok(ret, "SetNamedPipeHandleState failed: %d\n", GetLastError());
1559
1560 client = CreateFileA(PIPENAME, GENERIC_READ|GENERIC_WRITE, 0, NULL,
1561 OPEN_EXISTING, 0, NULL);
1562 ok(client != INVALID_HANDLE_VALUE, "cf failed\n");
1563
1564 state = PIPE_READMODE_MESSAGE;
1565 ret = SetNamedPipeHandleState(client, &state, NULL, NULL);
1566 todo_wine
1567 ok(ret, "SetNamedPipeHandleState failed: %d\n", GetLastError());
1568 /* A message-mode pipe client can also be changed to byte mode.
1569 */
1570 state = PIPE_READMODE_BYTE;
1571 ret = SetNamedPipeHandleState(client, &state, NULL, NULL);
1572 todo_wine
1573 ok(ret, "SetNamedPipeHandleState failed: %d\n", GetLastError());
1574
1575 CloseHandle(client);
1576 CloseHandle(server);
1577 }
1578
1579 START_TEST(pipe)
1580 {
1581 HMODULE hmod;
1582
1583 hmod = GetModuleHandle("advapi32.dll");
1584 pDuplicateTokenEx = (void *) GetProcAddress(hmod, "DuplicateTokenEx");
1585
1586 if (test_DisconnectNamedPipe())
1587 return;
1588 test_CreateNamedPipe_instances_must_match();
1589 test_NamedPipe_2();
1590 test_CreateNamedPipe(PIPE_TYPE_BYTE);
1591 test_CreateNamedPipe(PIPE_TYPE_MESSAGE | PIPE_READMODE_MESSAGE);
1592 test_CreatePipe();
1593 test_impersonation();
1594 test_overlapped();
1595 test_NamedPipeHandleState();
1596 }