Remove stdlib.h inclusion if winsock.h is included.
[wine] / dlls / kernel / tests / 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., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
19  */
20
21 #include <assert.h>
22 #include <stdarg.h>
23 #include <stdio.h>
24 #include <time.h>
25
26 #include <windef.h>
27 #include <winbase.h>
28 #include <winsock.h>
29
30 #ifndef STANDALONE
31 #include "wine/test.h"
32 #else
33 #include <assert.h>
34 #define START_TEST(name) main(int argc, char **argv)
35 #define ok(condition, msg) \
36         do { \
37                 if(!(condition)) \
38                 { \
39                         fprintf(stderr,"failed at %d\n",__LINE__); \
40                         exit(0); \
41                 } \
42         } while(0)
43
44 #define todo_wine
45 #endif
46
47 #include <wtypes.h>
48 #include <winerror.h>
49
50 #define PIPENAME "\\\\.\\PiPe\\tests_pipe.c"
51
52 #define NB_SERVER_LOOPS 8
53
54 static HANDLE alarm_event;
55
56 static void test_CreateNamedPipe(int pipemode)
57 {
58     HANDLE hnp;
59     HANDLE hFile;
60     static const char obuf[] = "Bit Bucket";
61     static const char obuf2[] = "More bits";
62     char ibuf[32], *pbuf;
63     DWORD written;
64     DWORD readden;
65     DWORD avail;
66     DWORD lpmode;
67
68     if (pipemode == PIPE_TYPE_BYTE)
69         trace("test_CreateNamedPipe starting in byte mode\n");
70     else
71         trace("test_CreateNamedPipe starting in message mode\n");
72     /* Bad parameter checks */
73     hnp = CreateNamedPipe("not a named pipe", PIPE_ACCESS_DUPLEX, pipemode | PIPE_WAIT,
74         /* nMaxInstances */ 1,
75         /* nOutBufSize */ 1024,
76         /* nInBufSize */ 1024,
77         /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
78         /* lpSecurityAttrib */ NULL);
79
80     if (hnp == INVALID_HANDLE_VALUE && GetLastError() == ERROR_CALL_NOT_IMPLEMENTED) {
81         /* Is this the right way to notify user of skipped tests? */
82         ok(hnp == INVALID_HANDLE_VALUE && GetLastError() == ERROR_CALL_NOT_IMPLEMENTED,
83             "CreateNamedPipe not supported on this platform, skipping tests.\n");
84         return;
85     }
86     ok(hnp == INVALID_HANDLE_VALUE && GetLastError() == ERROR_INVALID_NAME,
87         "CreateNamedPipe should fail if name doesn't start with \\\\.\\pipe\n");
88
89     hnp = CreateNamedPipe(NULL,
90         PIPE_ACCESS_DUPLEX, pipemode | PIPE_WAIT,
91         1, 1024, 1024, NMPWAIT_USE_DEFAULT_WAIT, NULL);
92     ok(hnp == INVALID_HANDLE_VALUE && GetLastError() == ERROR_PATH_NOT_FOUND,
93         "CreateNamedPipe should fail if name is NULL\n");
94
95     hFile = CreateFileA(PIPENAME, GENERIC_READ | GENERIC_WRITE, 0, NULL, OPEN_EXISTING, 0, 0);
96     ok(hFile == INVALID_HANDLE_VALUE
97         && GetLastError() == ERROR_FILE_NOT_FOUND,
98         "connecting to nonexistent named pipe should fail with ERROR_FILE_NOT_FOUND\n");
99
100     /* Functional checks */
101
102     hnp = CreateNamedPipe(PIPENAME, PIPE_ACCESS_DUPLEX, pipemode | PIPE_WAIT,
103         /* nMaxInstances */ 1,
104         /* nOutBufSize */ 1024,
105         /* nInBufSize */ 1024,
106         /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
107         /* lpSecurityAttrib */ NULL);
108     ok(hnp != INVALID_HANDLE_VALUE, "CreateNamedPipe failed\n");
109
110     hFile = CreateFileA(PIPENAME, GENERIC_READ | GENERIC_WRITE, 0, NULL, OPEN_EXISTING, 0, 0);
111     ok(hFile != INVALID_HANDLE_VALUE, "CreateFile failed\n");
112
113     /* don't try to do i/o if one side couldn't be opened, as it hangs */
114     if (hFile != INVALID_HANDLE_VALUE) {
115         HANDLE hFile2;
116
117         /* Make sure we can read and write a few bytes in both directions */
118         memset(ibuf, 0, sizeof(ibuf));
119         ok(WriteFile(hnp, obuf, sizeof(obuf), &written, NULL), "WriteFile\n");
120         ok(written == sizeof(obuf), "write file len 1\n");
121         ok(PeekNamedPipe(hFile, NULL, 0, NULL, &readden, NULL), "Peek\n");
122         ok(readden == sizeof(obuf), "peek 1 got %ld bytes\n", readden);
123         ok(ReadFile(hFile, ibuf, sizeof(ibuf), &readden, NULL), "ReadFile\n");
124         ok(readden == sizeof(obuf), "read 1 got %ld bytes\n", readden);
125         ok(memcmp(obuf, ibuf, written) == 0, "content 1 check\n");
126
127         memset(ibuf, 0, sizeof(ibuf));
128         ok(WriteFile(hFile, obuf2, sizeof(obuf2), &written, NULL), "WriteFile\n");
129         ok(written == sizeof(obuf2), "write file len 2\n");
130         ok(PeekNamedPipe(hnp, NULL, 0, NULL, &readden, NULL), "Peek\n");
131         ok(readden == sizeof(obuf2), "peek 2 got %ld bytes\n", readden);
132         ok(PeekNamedPipe(hnp, (LPVOID)1, 0, NULL, &readden, NULL), "Peek\n");
133         ok(readden == sizeof(obuf2), "peek 2 got %ld bytes\n", readden);
134         ok(ReadFile(hnp, ibuf, sizeof(ibuf), &readden, NULL), "ReadFile\n");
135         ok(readden == sizeof(obuf2), "read 2 got %ld bytes\n", readden);
136         ok(memcmp(obuf2, ibuf, written) == 0, "content 2 check\n");
137
138         /* Test reading of multiple writes */
139         memset(ibuf, 0, sizeof(ibuf));
140         ok(WriteFile(hnp, obuf, sizeof(obuf), &written, NULL), "WriteFile3a\n");
141         ok(written == sizeof(obuf), "write file len 3a\n");
142         ok(WriteFile(hnp, obuf2, sizeof(obuf2), &written, NULL), " WriteFile3b\n");
143         ok(written == sizeof(obuf2), "write file len 3b\n");
144         ok(PeekNamedPipe(hFile, ibuf, sizeof(ibuf), &readden, &avail, NULL), "Peek3\n");
145         if (pipemode == PIPE_TYPE_BYTE) {
146             todo_wine {
147                 /* should return all 23 bytes */
148                 ok(readden == sizeof(obuf) + sizeof(obuf2), "peek3 got %ld bytes\n", readden);
149             }
150         }
151         else
152             ok(readden == sizeof(obuf), "peek3 got %ld bytes\n", readden);
153         if (avail != sizeof(obuf)) /* older Linux kernels only return the first write here */
154             ok(avail == sizeof(obuf) + sizeof(obuf2), "peek3 got %ld bytes available\n", avail);
155         pbuf = ibuf;
156         ok(memcmp(obuf, pbuf, sizeof(obuf)) == 0, "pipe content 3a check\n");
157         if (pipemode == PIPE_TYPE_BYTE) {
158             todo_wine {
159                 pbuf += sizeof(obuf);
160                 ok(memcmp(obuf2, pbuf, sizeof(obuf2)) == 0, "pipe content 3b check\n");
161             }
162         }
163         ok(ReadFile(hFile, ibuf, sizeof(ibuf), &readden, NULL), "ReadFile\n");
164         ok(readden == sizeof(obuf) + sizeof(obuf2), "read 3 got %ld bytes\n", readden);
165         pbuf = ibuf;
166         ok(memcmp(obuf, pbuf, sizeof(obuf)) == 0, "content 3a check\n");
167         pbuf += sizeof(obuf);
168         ok(memcmp(obuf2, pbuf, sizeof(obuf2)) == 0, "content 3b check\n");
169
170         /* Multiple writes in the reverse direction */
171         memset(ibuf, 0, sizeof(ibuf));
172         ok(WriteFile(hFile, obuf, sizeof(obuf), &written, NULL), "WriteFile4a\n");
173         ok(written == sizeof(obuf), "write file len 4a\n");
174         ok(WriteFile(hFile, obuf2, sizeof(obuf2), &written, NULL), " WriteFile4b\n");
175         ok(written == sizeof(obuf2), "write file len 4b\n");
176         ok(PeekNamedPipe(hnp, ibuf, sizeof(ibuf), &readden, &avail, NULL), "Peek4\n");
177         if (pipemode == PIPE_TYPE_BYTE) {
178             todo_wine {
179                 /* should return all 23 bytes */
180                 ok(readden == sizeof(obuf) + sizeof(obuf2), "peek4 got %ld bytes\n", readden);
181             }
182         }
183         else
184             ok(readden == sizeof(obuf), "peek4 got %ld bytes\n", readden);
185         if (avail != sizeof(obuf)) /* older Linux kernels only return the first write here */
186             ok(avail == sizeof(obuf) + sizeof(obuf2), "peek4 got %ld bytes available\n", avail);
187         pbuf = ibuf;
188         ok(memcmp(obuf, pbuf, sizeof(obuf)) == 0, "pipe content 4a check\n");
189         if (pipemode == PIPE_TYPE_BYTE) {
190             todo_wine {
191                 pbuf += sizeof(obuf);
192                 ok(memcmp(obuf2, pbuf, sizeof(obuf2)) == 0, "pipe content 4b check\n");
193             }
194         }
195         ok(ReadFile(hnp, ibuf, sizeof(ibuf), &readden, NULL), "ReadFile\n");
196         if (pipemode == PIPE_TYPE_BYTE) {
197             ok(readden == sizeof(obuf) + sizeof(obuf2), "read 4 got %ld bytes\n", readden);
198         }
199         else {
200             todo_wine {
201                 ok(readden == sizeof(obuf), "read 4 got %ld bytes\n", readden);
202             }
203         }
204         pbuf = ibuf;
205         ok(memcmp(obuf, pbuf, sizeof(obuf)) == 0, "content 4a check\n");
206         if (pipemode == PIPE_TYPE_BYTE) {
207             pbuf += sizeof(obuf);
208             ok(memcmp(obuf2, pbuf, sizeof(obuf2)) == 0, "content 4b check\n");
209         }
210
211         /* Test reading of multiple writes after a mode change
212           (CreateFile always creates a byte mode pipe) */
213         lpmode = PIPE_READMODE_MESSAGE;
214         if (pipemode == PIPE_TYPE_BYTE) {
215             /* trying to change the client end of a byte pipe to message mode should fail */
216             ok(!SetNamedPipeHandleState(hFile, &lpmode, NULL, NULL), "Change mode\n");
217         }
218         else {
219             todo_wine {
220                 ok(SetNamedPipeHandleState(hFile, &lpmode, NULL, NULL), "Change mode\n");
221             }
222         
223             memset(ibuf, 0, sizeof(ibuf));
224             ok(WriteFile(hnp, obuf, sizeof(obuf), &written, NULL), "WriteFile5a\n");
225             ok(written == sizeof(obuf), "write file len 3a\n");
226             ok(WriteFile(hnp, obuf2, sizeof(obuf2), &written, NULL), " WriteFile5b\n");
227             ok(written == sizeof(obuf2), "write file len 3b\n");
228             ok(PeekNamedPipe(hFile, ibuf, sizeof(ibuf), &readden, &avail, NULL), "Peek5\n");
229             ok(readden == sizeof(obuf), "peek5 got %ld bytes\n", readden);
230             if (avail != sizeof(obuf)) /* older Linux kernels only return the first write here */
231                 ok(avail == sizeof(obuf) + sizeof(obuf2), "peek5 got %ld bytes available\n", avail);
232             pbuf = ibuf;
233             ok(memcmp(obuf, pbuf, sizeof(obuf)) == 0, "content 5a check\n");
234             ok(ReadFile(hFile, ibuf, sizeof(ibuf), &readden, NULL), "ReadFile\n");
235             todo_wine {
236                 ok(readden == sizeof(obuf), "read 5 got %ld bytes\n", readden);
237             }
238             pbuf = ibuf;
239             ok(memcmp(obuf, pbuf, sizeof(obuf)) == 0, "content 5a check\n");
240     
241             /* Multiple writes in the reverse direction */
242             /* the write of obuf2 from write4 should still be in the buffer */
243             ok(PeekNamedPipe(hnp, ibuf, sizeof(ibuf), &readden, &avail, NULL), "Peek6a\n");
244             todo_wine {
245                 ok(readden == sizeof(obuf2), "peek6a got %ld bytes\n", readden);
246                 ok(avail == sizeof(obuf2), "peek6a got %ld bytes available\n", avail);
247             }
248             if (avail > 0) {
249                 ok(ReadFile(hnp, ibuf, sizeof(ibuf), &readden, NULL), "ReadFile\n");
250                 ok(readden == sizeof(obuf2), "read 6a got %ld bytes\n", readden);
251                 pbuf = ibuf;
252                 ok(memcmp(obuf2, pbuf, sizeof(obuf2)) == 0, "content 6a check\n");
253             }
254             memset(ibuf, 0, sizeof(ibuf));
255             ok(WriteFile(hFile, obuf, sizeof(obuf), &written, NULL), "WriteFile6a\n");
256             ok(written == sizeof(obuf), "write file len 6a\n");
257             ok(WriteFile(hFile, obuf2, sizeof(obuf2), &written, NULL), " WriteFile6b\n");
258             ok(written == sizeof(obuf2), "write file len 6b\n");
259             ok(PeekNamedPipe(hnp, ibuf, sizeof(ibuf), &readden, &avail, NULL), "Peek6\n");
260             ok(readden == sizeof(obuf), "peek6 got %ld bytes\n", readden);
261             if (avail != sizeof(obuf)) /* older Linux kernels only return the first write here */
262                 ok(avail == sizeof(obuf) + sizeof(obuf2), "peek6b got %ld bytes available\n", avail);
263             pbuf = ibuf;
264             ok(memcmp(obuf, pbuf, sizeof(obuf)) == 0, "content 6a check\n");
265             ok(ReadFile(hnp, ibuf, sizeof(ibuf), &readden, NULL), "ReadFile\n");
266             todo_wine {
267                 ok(readden == sizeof(obuf), "read 6b got %ld bytes\n", readden);
268             }
269             pbuf = ibuf;
270             ok(memcmp(obuf, pbuf, sizeof(obuf)) == 0, "content 6a check\n");
271         }
272
273         /* Picky conformance tests */
274
275         /* Verify that you can't connect to pipe again
276          * until server calls DisconnectNamedPipe+ConnectNamedPipe
277          * or creates a new pipe
278          * case 1: other client not yet closed
279          */
280         hFile2 = CreateFileA(PIPENAME, GENERIC_READ | GENERIC_WRITE, 0, NULL, OPEN_EXISTING, 0, 0);
281         ok(hFile2 == INVALID_HANDLE_VALUE,
282             "connecting to named pipe after other client closes but before DisconnectNamedPipe should fail\n");
283         ok(GetLastError() == ERROR_PIPE_BUSY,
284             "connecting to named pipe before other client closes should fail with ERROR_PIPE_BUSY\n");
285
286         ok(CloseHandle(hFile), "CloseHandle\n");
287
288         /* case 2: other client already closed */
289         hFile = CreateFileA(PIPENAME, GENERIC_READ | GENERIC_WRITE, 0, NULL, OPEN_EXISTING, 0, 0);
290         ok(hFile == INVALID_HANDLE_VALUE,
291             "connecting to named pipe after other client closes but before DisconnectNamedPipe should fail\n");
292         ok(GetLastError() == ERROR_PIPE_BUSY,
293             "connecting to named pipe after other client closes but before DisconnectNamedPipe should fail with ERROR_PIPE_BUSY\n");
294
295         ok(DisconnectNamedPipe(hnp), "DisconnectNamedPipe\n");
296
297         /* case 3: server has called DisconnectNamedPipe but not ConnectNamed Pipe */
298         hFile = CreateFileA(PIPENAME, GENERIC_READ | GENERIC_WRITE, 0, NULL, OPEN_EXISTING, 0, 0);
299         ok(hFile == INVALID_HANDLE_VALUE,
300             "connecting to named pipe after other client closes but before DisconnectNamedPipe should fail\n");
301         ok(GetLastError() == ERROR_PIPE_BUSY,
302             "connecting to named pipe after other client closes but before ConnectNamedPipe should fail with ERROR_PIPE_BUSY\n");
303
304         /* to be complete, we'd call ConnectNamedPipe here and loop,
305          * but by default that's blocking, so we'd either have
306          * to turn on the uncommon nonblocking mode, or
307          * use another thread.
308          */
309     }
310
311     ok(CloseHandle(hnp), "CloseHandle\n");
312
313     trace("test_CreateNamedPipe returning\n");
314 }
315
316 void test_CreateNamedPipe_instances_must_match(void)
317 {
318     HANDLE hnp, hnp2;
319
320     /* Check no mismatch */
321     hnp = CreateNamedPipe(PIPENAME, PIPE_ACCESS_DUPLEX, PIPE_TYPE_BYTE | PIPE_WAIT,
322         /* nMaxInstances */ 2,
323         /* nOutBufSize */ 1024,
324         /* nInBufSize */ 1024,
325         /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
326         /* lpSecurityAttrib */ NULL);
327     ok(hnp != INVALID_HANDLE_VALUE, "CreateNamedPipe failed\n");
328
329     hnp2 = CreateNamedPipe(PIPENAME, PIPE_ACCESS_DUPLEX, PIPE_TYPE_BYTE | PIPE_WAIT,
330         /* nMaxInstances */ 2,
331         /* nOutBufSize */ 1024,
332         /* nInBufSize */ 1024,
333         /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
334         /* lpSecurityAttrib */ NULL);
335     ok(hnp2 != INVALID_HANDLE_VALUE, "CreateNamedPipe failed\n");
336
337     ok(CloseHandle(hnp), "CloseHandle\n");
338     ok(CloseHandle(hnp2), "CloseHandle\n");
339
340     /* Check nMaxInstances */
341     hnp = CreateNamedPipe(PIPENAME, PIPE_ACCESS_DUPLEX, PIPE_TYPE_BYTE | PIPE_WAIT,
342         /* nMaxInstances */ 1,
343         /* nOutBufSize */ 1024,
344         /* nInBufSize */ 1024,
345         /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
346         /* lpSecurityAttrib */ NULL);
347     ok(hnp != INVALID_HANDLE_VALUE, "CreateNamedPipe failed\n");
348
349     hnp2 = CreateNamedPipe(PIPENAME, PIPE_ACCESS_DUPLEX, PIPE_TYPE_BYTE | PIPE_WAIT,
350         /* nMaxInstances */ 1,
351         /* nOutBufSize */ 1024,
352         /* nInBufSize */ 1024,
353         /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
354         /* lpSecurityAttrib */ NULL);
355     ok(hnp2 == INVALID_HANDLE_VALUE
356         && GetLastError() == ERROR_PIPE_BUSY, "nMaxInstances not obeyed\n");
357
358     ok(CloseHandle(hnp), "CloseHandle\n");
359
360     /* Check PIPE_ACCESS_* */
361     hnp = CreateNamedPipe(PIPENAME, PIPE_ACCESS_DUPLEX, PIPE_TYPE_BYTE | PIPE_WAIT,
362         /* nMaxInstances */ 2,
363         /* nOutBufSize */ 1024,
364         /* nInBufSize */ 1024,
365         /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
366         /* lpSecurityAttrib */ NULL);
367     ok(hnp != INVALID_HANDLE_VALUE, "CreateNamedPipe failed\n");
368
369     hnp2 = CreateNamedPipe(PIPENAME, PIPE_ACCESS_INBOUND, PIPE_TYPE_BYTE | PIPE_WAIT,
370         /* nMaxInstances */ 1,
371         /* nOutBufSize */ 1024,
372         /* nInBufSize */ 1024,
373         /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
374         /* lpSecurityAttrib */ NULL);
375     ok(hnp2 == INVALID_HANDLE_VALUE
376         && GetLastError() == ERROR_ACCESS_DENIED, "PIPE_ACCESS_* mismatch allowed\n");
377
378     ok(CloseHandle(hnp), "CloseHandle\n");
379
380     /* etc, etc */
381 }
382
383 /** implementation of alarm() */
384 static DWORD CALLBACK alarmThreadMain(LPVOID arg)
385 {
386     DWORD timeout = (DWORD) arg;
387     trace("alarmThreadMain\n");
388     if (WaitForSingleObject( alarm_event, timeout ) == WAIT_TIMEOUT)
389     {
390         ok(FALSE, "alarm\n");
391         ExitProcess(1);
392     }
393     return 1;
394 }
395
396 HANDLE hnp = INVALID_HANDLE_VALUE;
397
398 /** Trivial byte echo server - disconnects after each session */
399 static DWORD CALLBACK serverThreadMain1(LPVOID arg)
400 {
401     int i;
402
403     trace("serverThreadMain1 start\n");
404     /* Set up a simple echo server */
405     hnp = CreateNamedPipe(PIPENAME "serverThreadMain1", PIPE_ACCESS_DUPLEX,
406         PIPE_TYPE_BYTE | PIPE_WAIT,
407         /* nMaxInstances */ 1,
408         /* nOutBufSize */ 1024,
409         /* nInBufSize */ 1024,
410         /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
411         /* lpSecurityAttrib */ NULL);
412
413     ok(hnp != INVALID_HANDLE_VALUE, "CreateNamedPipe failed\n");
414     for (i = 0; i < NB_SERVER_LOOPS; i++) {
415         char buf[512];
416         DWORD written;
417         DWORD readden;
418         DWORD success;
419
420         /* Wait for client to connect */
421         trace("Server calling ConnectNamedPipe...\n");
422         ok(ConnectNamedPipe(hnp, NULL)
423             || GetLastError() == ERROR_PIPE_CONNECTED, "ConnectNamedPipe\n");
424         trace("ConnectNamedPipe returned.\n");
425
426         /* Echo bytes once */
427         memset(buf, 0, sizeof(buf));
428
429         trace("Server reading...\n");
430         success = ReadFile(hnp, buf, sizeof(buf), &readden, NULL);
431         trace("Server done reading.\n");
432         ok(success, "ReadFile\n");
433         ok(readden, "short read\n");
434
435         trace("Server writing...\n");
436         ok(WriteFile(hnp, buf, readden, &written, NULL), "WriteFile\n");
437         trace("Server done writing.\n");
438         ok(written == readden, "write file len\n");
439
440         /* finish this connection, wait for next one */
441         ok(FlushFileBuffers(hnp), "FlushFileBuffers\n");
442         trace("Server done flushing.\n");
443         ok(DisconnectNamedPipe(hnp), "DisconnectNamedPipe\n");
444         trace("Server done disconnecting.\n");
445     }
446     return 0;
447 }
448
449 /** Trivial byte echo server - closes after each connection */
450 static DWORD CALLBACK serverThreadMain2(LPVOID arg)
451 {
452     int i;
453     HANDLE hnpNext = 0;
454
455     trace("serverThreadMain2\n");
456     /* Set up a simple echo server */
457     hnp = CreateNamedPipe(PIPENAME "serverThreadMain2", PIPE_ACCESS_DUPLEX,
458         PIPE_TYPE_BYTE | PIPE_WAIT,
459         /* nMaxInstances */ 2,
460         /* nOutBufSize */ 1024,
461         /* nInBufSize */ 1024,
462         /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
463         /* lpSecurityAttrib */ NULL);
464     ok(hnp != INVALID_HANDLE_VALUE, "CreateNamedPipe failed\n");
465
466     for (i = 0; i < NB_SERVER_LOOPS; i++) {
467         char buf[512];
468         DWORD written;
469         DWORD readden;
470         DWORD success;
471
472         /* Wait for client to connect */
473         trace("Server calling ConnectNamedPipe...\n");
474         ok(ConnectNamedPipe(hnp, NULL)
475             || GetLastError() == ERROR_PIPE_CONNECTED, "ConnectNamedPipe\n");
476         trace("ConnectNamedPipe returned.\n");
477
478         /* Echo bytes once */
479         memset(buf, 0, sizeof(buf));
480
481         trace("Server reading...\n");
482         success = ReadFile(hnp, buf, sizeof(buf), &readden, NULL);
483         trace("Server done reading.\n");
484         ok(success, "ReadFile\n");
485
486         trace("Server writing...\n");
487         ok(WriteFile(hnp, buf, readden, &written, NULL), "WriteFile\n");
488         trace("Server done writing.\n");
489         ok(written == readden, "write file len\n");
490
491         /* finish this connection, wait for next one */
492         ok(FlushFileBuffers(hnp), "FlushFileBuffers\n");
493         ok(DisconnectNamedPipe(hnp), "DisconnectNamedPipe\n");
494
495         /* Set up next echo server */
496         hnpNext =
497             CreateNamedPipe(PIPENAME "serverThreadMain2", PIPE_ACCESS_DUPLEX,
498             PIPE_TYPE_BYTE | PIPE_WAIT,
499             /* nMaxInstances */ 2,
500             /* nOutBufSize */ 1024,
501             /* nInBufSize */ 1024,
502             /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
503             /* lpSecurityAttrib */ NULL);
504
505         ok(hnpNext != INVALID_HANDLE_VALUE, "CreateNamedPipe failed\n");
506
507         ok(CloseHandle(hnp), "CloseHandle\n");
508         hnp = hnpNext;
509     }
510     return 0;
511 }
512
513 /** Trivial byte echo server - uses overlapped named pipe calls */
514 static DWORD CALLBACK serverThreadMain3(LPVOID arg)
515 {
516     int i;
517     HANDLE hEvent;
518
519     trace("serverThreadMain3\n");
520     /* Set up a simple echo server */
521     hnp = CreateNamedPipe(PIPENAME "serverThreadMain3", PIPE_ACCESS_DUPLEX | FILE_FLAG_OVERLAPPED,
522         PIPE_TYPE_BYTE | PIPE_WAIT,
523         /* nMaxInstances */ 1,
524         /* nOutBufSize */ 1024,
525         /* nInBufSize */ 1024,
526         /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
527         /* lpSecurityAttrib */ NULL);
528     ok(hnp != INVALID_HANDLE_VALUE, "CreateNamedPipe failed\n");
529
530     hEvent = CreateEvent(NULL,  /* security attribute */
531         TRUE,                   /* manual reset event */
532         FALSE,                  /* initial state */
533         NULL);                  /* name */
534     ok(hEvent != NULL, "CreateEvent\n");
535
536     for (i = 0; i < NB_SERVER_LOOPS; i++) {
537         char buf[512];
538         DWORD written;
539         DWORD readden;
540         DWORD dummy;
541         DWORD success;
542         OVERLAPPED oOverlap;
543         int letWFSOEwait = (i & 2);
544         int letGORwait = (i & 1);
545         DWORD err;
546
547         memset(&oOverlap, 0, sizeof(oOverlap));
548         oOverlap.hEvent = hEvent;
549
550         /* Wait for client to connect */
551         trace("Server calling overlapped ConnectNamedPipe...\n");
552         success = ConnectNamedPipe(hnp, &oOverlap);
553         err = GetLastError();
554         ok(success || err == ERROR_IO_PENDING
555             || err == ERROR_PIPE_CONNECTED, "overlapped ConnectNamedPipe\n");
556         trace("overlapped ConnectNamedPipe returned.\n");
557         if (!success && (err == ERROR_IO_PENDING) && letWFSOEwait)
558             ok(WaitForSingleObjectEx(hEvent, INFINITE, TRUE) == 0, "wait ConnectNamedPipe\n");
559         success = GetOverlappedResult(hnp, &oOverlap, &dummy, letGORwait);
560         if (!letGORwait && !letWFSOEwait && !success) {
561             ok(GetLastError() == ERROR_IO_INCOMPLETE, "GetOverlappedResult\n");
562             success = GetOverlappedResult(hnp, &oOverlap, &dummy, TRUE);
563         }
564         ok(success, "GetOverlappedResult ConnectNamedPipe\n");
565         trace("overlapped ConnectNamedPipe operation complete.\n");
566
567         /* Echo bytes once */
568         memset(buf, 0, sizeof(buf));
569
570         trace("Server reading...\n");
571         success = ReadFile(hnp, buf, sizeof(buf), NULL, &oOverlap);
572         trace("Server ReadFile returned...\n");
573         err = GetLastError();
574         ok(success || err == ERROR_IO_PENDING, "overlapped ReadFile\n");
575         trace("overlapped ReadFile returned.\n");
576         if (!success && (err == ERROR_IO_PENDING) && letWFSOEwait)
577             ok(WaitForSingleObjectEx(hEvent, INFINITE, TRUE) == 0, "wait ReadFile\n");
578         success = GetOverlappedResult(hnp, &oOverlap, &readden, letGORwait);
579         if (!letGORwait && !letWFSOEwait && !success) {
580             ok(GetLastError() == ERROR_IO_INCOMPLETE, "GetOverlappedResult\n");
581             success = GetOverlappedResult(hnp, &oOverlap, &readden, TRUE);
582         }
583         trace("Server done reading.\n");
584         ok(success, "overlapped ReadFile\n");
585
586         trace("Server writing...\n");
587         success = WriteFile(hnp, buf, readden, NULL, &oOverlap);
588         trace("Server WriteFile returned...\n");
589         err = GetLastError();
590         ok(success || err == ERROR_IO_PENDING, "overlapped WriteFile\n");
591         trace("overlapped WriteFile returned.\n");
592         if (!success && (err == ERROR_IO_PENDING) && letWFSOEwait)
593             ok(WaitForSingleObjectEx(hEvent, INFINITE, TRUE) == 0, "wait WriteFile\n");
594         success = GetOverlappedResult(hnp, &oOverlap, &written, letGORwait);
595         if (!letGORwait && !letWFSOEwait && !success) {
596             ok(GetLastError() == ERROR_IO_INCOMPLETE, "GetOverlappedResult\n");
597             success = GetOverlappedResult(hnp, &oOverlap, &written, TRUE);
598         }
599         trace("Server done writing.\n");
600         ok(success, "overlapped WriteFile\n");
601         ok(written == readden, "write file len\n");
602
603         /* finish this connection, wait for next one */
604         ok(FlushFileBuffers(hnp), "FlushFileBuffers\n");
605         ok(DisconnectNamedPipe(hnp), "DisconnectNamedPipe\n");
606     }
607     return 0;
608 }
609
610 static void exercizeServer(const char *pipename, HANDLE serverThread)
611 {
612     int i;
613
614     trace("exercizeServer starting\n");
615     for (i = 0; i < NB_SERVER_LOOPS; i++) {
616         HANDLE hFile=INVALID_HANDLE_VALUE;
617         static const char obuf[] = "Bit Bucket";
618         char ibuf[32];
619         DWORD written;
620         DWORD readden;
621         int loop;
622
623         for (loop = 0; loop < 3; loop++) {
624             DWORD err;
625             trace("Client connecting...\n");
626             /* Connect to the server */
627             hFile = CreateFileA(pipename, GENERIC_READ | GENERIC_WRITE, 0,
628                 NULL, OPEN_EXISTING, 0, 0);
629             if (hFile != INVALID_HANDLE_VALUE)
630                 break;
631             err = GetLastError();
632             if (loop == 0)
633                 ok(err == ERROR_PIPE_BUSY || err == ERROR_FILE_NOT_FOUND, "connecting to pipe\n");
634             else
635                 ok(err == ERROR_PIPE_BUSY, "connecting to pipe\n");
636             trace("connect failed, retrying\n");
637             Sleep(200);
638         }
639         ok(hFile != INVALID_HANDLE_VALUE, "client opening named pipe\n");
640
641         /* Make sure it can echo */
642         memset(ibuf, 0, sizeof(ibuf));
643         trace("Client writing...\n");
644         ok(WriteFile(hFile, obuf, sizeof(obuf), &written, NULL), "WriteFile to client end of pipe\n");
645         ok(written == sizeof(obuf), "write file len\n");
646         trace("Client reading...\n");
647         ok(ReadFile(hFile, ibuf, sizeof(obuf), &readden, NULL), "ReadFile from client end of pipe\n");
648         ok(readden == sizeof(obuf), "read file len\n");
649         ok(memcmp(obuf, ibuf, written) == 0, "content check\n");
650
651         trace("Client closing...\n");
652         ok(CloseHandle(hFile), "CloseHandle\n");
653     }
654
655     ok(WaitForSingleObject(serverThread,INFINITE) == WAIT_OBJECT_0, "WaitForSingleObject\n");
656     CloseHandle(hnp);
657     trace("exercizeServer returning\n");
658 }
659
660 static void test_NamedPipe_2(void)
661 {
662     HANDLE serverThread;
663     DWORD serverThreadId;
664     HANDLE alarmThread;
665     DWORD alarmThreadId;
666
667     trace("test_NamedPipe_2 starting\n");
668     /* Set up a ten second timeout */
669     alarm_event = CreateEvent( NULL, TRUE, FALSE, NULL );
670     alarmThread = CreateThread(NULL, 0, alarmThreadMain, (void *) 10000, 0, &alarmThreadId);
671
672     /* The servers we're about to exercize do try to clean up carefully,
673      * but to reduce the change of a test failure due to a pipe handle
674      * leak in the test code, we'll use a different pipe name for each server.
675      */
676
677     /* Try server #1 */
678     serverThread = CreateThread(NULL, 0, serverThreadMain1, (void *)8, 0, &serverThreadId);
679     ok(serverThread != INVALID_HANDLE_VALUE, "CreateThread\n");
680     exercizeServer(PIPENAME "serverThreadMain1", serverThread);
681
682     /* Try server #2 */
683     serverThread = CreateThread(NULL, 0, serverThreadMain2, 0, 0, &serverThreadId);
684     ok(serverThread != INVALID_HANDLE_VALUE, "CreateThread\n");
685     exercizeServer(PIPENAME "serverThreadMain2", serverThread);
686
687     if( 0 ) /* overlapped pipe server doesn't work yet - it randomly fails */
688     {
689     /* Try server #3 */
690     serverThread = CreateThread(NULL, 0, serverThreadMain3, 0, 0, &serverThreadId);
691     ok(serverThread != INVALID_HANDLE_VALUE, "CreateThread\n");
692     exercizeServer(PIPENAME "serverThreadMain3", serverThread);
693     }
694
695     ok(SetEvent( alarm_event ), "SetEvent\n");
696     CloseHandle( alarm_event );
697     trace("test_NamedPipe_2 returning\n");
698 }
699
700 static int test_DisconnectNamedPipe(void)
701 {
702     HANDLE hnp;
703     HANDLE hFile;
704     static const char obuf[] = "Bit Bucket";
705     char ibuf[32];
706     DWORD written;
707     DWORD readden;
708
709     hnp = CreateNamedPipe(PIPENAME, PIPE_ACCESS_DUPLEX, PIPE_TYPE_BYTE | PIPE_WAIT,
710         /* nMaxInstances */ 1,
711         /* nOutBufSize */ 1024,
712         /* nInBufSize */ 1024,
713         /* nDefaultWait */ NMPWAIT_USE_DEFAULT_WAIT,
714         /* lpSecurityAttrib */ NULL);
715     if (INVALID_HANDLE_VALUE == hnp) {
716         trace ("Seems we have no named pipes.\n");
717         return 1;
718     }
719
720     ok(WriteFile(hnp, obuf, sizeof(obuf), &written, NULL) == 0
721         && GetLastError() == ERROR_PIPE_LISTENING, "WriteFile to not-yet-connected pipe\n");
722     ok(ReadFile(hnp, ibuf, sizeof(ibuf), &readden, NULL) == 0
723         && GetLastError() == ERROR_PIPE_LISTENING, "ReadFile from not-yet-connected pipe\n");
724
725     hFile = CreateFileA(PIPENAME, GENERIC_READ | GENERIC_WRITE, 0, NULL, OPEN_EXISTING, 0, 0);
726     ok(hFile != INVALID_HANDLE_VALUE, "CreateFile failed\n");
727
728     /* don't try to do i/o if one side couldn't be opened, as it hangs */
729     if (hFile != INVALID_HANDLE_VALUE) {
730
731         /* see what happens if server calls DisconnectNamedPipe
732          * when there are bytes in the pipe
733          */
734
735         ok(WriteFile(hFile, obuf, sizeof(obuf), &written, NULL), "WriteFile\n");
736         ok(written == sizeof(obuf), "write file len\n");
737         ok(DisconnectNamedPipe(hnp), "DisconnectNamedPipe while messages waiting\n");
738         ok(WriteFile(hFile, obuf, sizeof(obuf), &written, NULL) == 0
739             && GetLastError() == ERROR_PIPE_NOT_CONNECTED, "WriteFile to disconnected pipe\n");
740         ok(ReadFile(hnp, ibuf, sizeof(ibuf), &readden, NULL) == 0
741             && GetLastError() == ERROR_PIPE_NOT_CONNECTED,
742             "ReadFile from disconnected pipe with bytes waiting\n");
743         ok(CloseHandle(hFile), "CloseHandle\n");
744     }
745
746     ok(CloseHandle(hnp), "CloseHandle\n");
747
748     return 0;
749 }
750
751 START_TEST(pipe)
752 {
753     trace("test 1 of 4:\n");
754     if (test_DisconnectNamedPipe())
755         return;
756     trace("test 2 of 4:\n");
757     test_CreateNamedPipe_instances_must_match();
758     trace("test 3 of 4:\n");
759     test_NamedPipe_2();
760     trace("test 4 of 4:\n");
761     test_CreateNamedPipe(PIPE_TYPE_BYTE);
762     trace("all tests done\n");
763     test_CreateNamedPipe(PIPE_TYPE_MESSAGE | PIPE_READMODE_MESSAGE);
764     trace("all tests done\n");
765 }