[gdb/testsuite] Fix gdb.base/coredump-filter-build-id.exp with older eu-unstrip
[deliverable/binutils-gdb.git] / gdb / ser-mingw.c
CommitLineData
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1/* Serial interface for local (hardwired) serial ports on Windows systems
2
3666a048 3 Copyright (C) 2006-2021 Free Software Foundation, Inc.
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4
5 This file is part of GDB.
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
a9762ec7 9 the Free Software Foundation; either version 3 of the License, or
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10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
a9762ec7 18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
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19
20#include "defs.h"
21#include "serial.h"
22#include "ser-base.h"
23#include "ser-tcp.h"
24
25#include <windows.h>
c3e2b812 26#include <conio.h>
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27
28#include <fcntl.h>
29#include <unistd.h>
30#include <sys/types.h>
31
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PA
32#include "command.h"
33
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34struct ser_windows_state
35{
36 int in_progress;
37 OVERLAPPED ov;
38 DWORD lastCommMask;
39 HANDLE except_event;
40};
41
4af53f97
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42/* CancelIo is not available for Windows 95 OS, so we need to use
43 LoadLibrary/GetProcAddress to avoid a startup failure. */
44#define CancelIo dyn_CancelIo
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PA
45typedef BOOL WINAPI (CancelIo_ftype) (HANDLE);
46static CancelIo_ftype *CancelIo;
4af53f97 47
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48/* Open up a real live device for serial I/O. */
49
50static int
51ser_windows_open (struct serial *scb, const char *name)
52{
53 HANDLE h;
54 struct ser_windows_state *state;
55 COMMTIMEOUTS timeouts;
56
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57 h = CreateFile (name, GENERIC_READ | GENERIC_WRITE, 0, NULL,
58 OPEN_EXISTING, FILE_FLAG_OVERLAPPED, NULL);
59 if (h == INVALID_HANDLE_VALUE)
60 {
61 errno = ENOENT;
62 return -1;
63 }
64
1be7fe8d 65 scb->fd = _open_osfhandle ((intptr_t) h, O_RDWR);
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66 if (scb->fd < 0)
67 {
68 errno = ENOENT;
69 return -1;
70 }
71
72 if (!SetCommMask (h, EV_RXCHAR))
73 {
74 errno = EINVAL;
75 return -1;
76 }
77
78 timeouts.ReadIntervalTimeout = MAXDWORD;
79 timeouts.ReadTotalTimeoutConstant = 0;
80 timeouts.ReadTotalTimeoutMultiplier = 0;
81 timeouts.WriteTotalTimeoutConstant = 0;
82 timeouts.WriteTotalTimeoutMultiplier = 0;
83 if (!SetCommTimeouts (h, &timeouts))
84 {
85 errno = EINVAL;
86 return -1;
87 }
88
8d749320 89 state = XCNEW (struct ser_windows_state);
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90 scb->state = state;
91
92 /* Create a manual reset event to watch the input buffer. */
93 state->ov.hEvent = CreateEvent (0, TRUE, FALSE, 0);
94
95 /* Create a (currently unused) handle to record exceptions. */
96 state->except_event = CreateEvent (0, TRUE, FALSE, 0);
97
98 return 0;
99}
100
101/* Wait for the output to drain away, as opposed to flushing (discarding)
102 it. */
103
104static int
105ser_windows_drain_output (struct serial *scb)
106{
107 HANDLE h = (HANDLE) _get_osfhandle (scb->fd);
108
109 return (FlushFileBuffers (h) != 0) ? 0 : -1;
110}
111
112static int
113ser_windows_flush_output (struct serial *scb)
114{
115 HANDLE h = (HANDLE) _get_osfhandle (scb->fd);
116
117 return (PurgeComm (h, PURGE_TXCLEAR) != 0) ? 0 : -1;
118}
119
120static int
121ser_windows_flush_input (struct serial *scb)
122{
123 HANDLE h = (HANDLE) _get_osfhandle (scb->fd);
124
125 return (PurgeComm (h, PURGE_RXCLEAR) != 0) ? 0 : -1;
126}
127
128static int
129ser_windows_send_break (struct serial *scb)
130{
131 HANDLE h = (HANDLE) _get_osfhandle (scb->fd);
132
133 if (SetCommBreak (h) == 0)
134 return -1;
135
136 /* Delay for 250 milliseconds. */
137 Sleep (250);
138
139 if (ClearCommBreak (h))
140 return -1;
141
142 return 0;
143}
144
145static void
146ser_windows_raw (struct serial *scb)
147{
148 HANDLE h = (HANDLE) _get_osfhandle (scb->fd);
149 DCB state;
150
151 if (GetCommState (h, &state) == 0)
152 return;
153
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154 state.fOutxCtsFlow = FALSE;
155 state.fOutxDsrFlow = FALSE;
156 state.fDtrControl = DTR_CONTROL_ENABLE;
157 state.fDsrSensitivity = FALSE;
158 state.fOutX = FALSE;
159 state.fInX = FALSE;
160 state.fNull = FALSE;
161 state.fAbortOnError = FALSE;
162 state.ByteSize = 8;
0ea3f30e 163
0ea3f30e 164 if (SetCommState (h, &state) == 0)
b37520b6 165 warning (_("SetCommState failed"));
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DJ
166}
167
168static int
169ser_windows_setstopbits (struct serial *scb, int num)
170{
171 HANDLE h = (HANDLE) _get_osfhandle (scb->fd);
172 DCB state;
173
174 if (GetCommState (h, &state) == 0)
175 return -1;
176
177 switch (num)
178 {
179 case SERIAL_1_STOPBITS:
180 state.StopBits = ONESTOPBIT;
181 break;
182 case SERIAL_1_AND_A_HALF_STOPBITS:
183 state.StopBits = ONE5STOPBITS;
184 break;
185 case SERIAL_2_STOPBITS:
186 state.StopBits = TWOSTOPBITS;
187 break;
188 default:
189 return 1;
190 }
191
192 return (SetCommState (h, &state) != 0) ? 0 : -1;
193}
194
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195/* Implement the "setparity" serial_ops callback. */
196
197static int
198ser_windows_setparity (struct serial *scb, int parity)
199{
200 HANDLE h = (HANDLE) _get_osfhandle (scb->fd);
201 DCB state;
202
203 if (GetCommState (h, &state) == 0)
204 return -1;
205
206 switch (parity)
207 {
208 case GDBPARITY_NONE:
209 state.Parity = NOPARITY;
210 state.fParity = FALSE;
211 break;
212 case GDBPARITY_ODD:
213 state.Parity = ODDPARITY;
214 state.fParity = TRUE;
215 break;
216 case GDBPARITY_EVEN:
217 state.Parity = EVENPARITY;
218 state.fParity = TRUE;
219 break;
220 default:
221 internal_warning (__FILE__, __LINE__,
8a4506c0 222 "Incorrect parity value: %d", parity);
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YG
223 return -1;
224 }
225
226 return (SetCommState (h, &state) != 0) ? 0 : -1;
227}
228
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229static int
230ser_windows_setbaudrate (struct serial *scb, int rate)
231{
232 HANDLE h = (HANDLE) _get_osfhandle (scb->fd);
233 DCB state;
234
235 if (GetCommState (h, &state) == 0)
236 return -1;
237
238 state.BaudRate = rate;
239
240 return (SetCommState (h, &state) != 0) ? 0 : -1;
241}
242
243static void
244ser_windows_close (struct serial *scb)
245{
246 struct ser_windows_state *state;
247
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248 /* Stop any pending selects. On Windows 95 OS, CancelIo function does
249 not exist. In that case, it can be replaced by a call to CloseHandle,
250 but this is not necessary here as we do close the Windows handle
251 by calling close (scb->fd) below. */
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252 if (CancelIo)
253 CancelIo ((HANDLE) _get_osfhandle (scb->fd));
cd78b7a1 254 state = (struct ser_windows_state *) scb->state;
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255 CloseHandle (state->ov.hEvent);
256 CloseHandle (state->except_event);
257
258 if (scb->fd < 0)
259 return;
260
261 close (scb->fd);
262 scb->fd = -1;
263
264 xfree (scb->state);
265}
266
267static void
268ser_windows_wait_handle (struct serial *scb, HANDLE *read, HANDLE *except)
269{
270 struct ser_windows_state *state;
271 COMSTAT status;
272 DWORD errors;
273 HANDLE h = (HANDLE) _get_osfhandle (scb->fd);
274
cd78b7a1 275 state = (struct ser_windows_state *) scb->state;
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276
277 *except = state->except_event;
278 *read = state->ov.hEvent;
279
280 if (state->in_progress)
281 return;
282
283 /* Reset the mask - we are only interested in any characters which
284 arrive after this point, not characters which might have arrived
285 and already been read. */
286
287 /* This really, really shouldn't be necessary - just the second one.
288 But otherwise an internal flag for EV_RXCHAR does not get
289 cleared, and we get a duplicated event, if the last batch
290 of characters included at least two arriving close together. */
291 if (!SetCommMask (h, 0))
292 warning (_("ser_windows_wait_handle: reseting mask failed"));
293
294 if (!SetCommMask (h, EV_RXCHAR))
295 warning (_("ser_windows_wait_handle: reseting mask failed (2)"));
296
297 /* There's a potential race condition here; we must check cbInQue
298 and not wait if that's nonzero. */
299
300 ClearCommError (h, &errors, &status);
301 if (status.cbInQue > 0)
302 {
303 SetEvent (state->ov.hEvent);
304 return;
305 }
306
307 state->in_progress = 1;
308 ResetEvent (state->ov.hEvent);
309 state->lastCommMask = -2;
310 if (WaitCommEvent (h, &state->lastCommMask, &state->ov))
311 {
312 gdb_assert (state->lastCommMask & EV_RXCHAR);
313 SetEvent (state->ov.hEvent);
314 }
315 else
316 gdb_assert (GetLastError () == ERROR_IO_PENDING);
317}
318
319static int
320ser_windows_read_prim (struct serial *scb, size_t count)
321{
322 struct ser_windows_state *state;
323 OVERLAPPED ov;
8d49165d 324 DWORD bytes_read;
0ea3f30e 325 HANDLE h;
0ea3f30e 326
cd78b7a1 327 state = (struct ser_windows_state *) scb->state;
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DJ
328 if (state->in_progress)
329 {
330 WaitForSingleObject (state->ov.hEvent, INFINITE);
331 state->in_progress = 0;
332 ResetEvent (state->ov.hEvent);
333 }
334
335 memset (&ov, 0, sizeof (OVERLAPPED));
336 ov.hEvent = CreateEvent (0, FALSE, FALSE, 0);
337 h = (HANDLE) _get_osfhandle (scb->fd);
338
339 if (!ReadFile (h, scb->buf, /* count */ 1, &bytes_read, &ov))
340 {
341 if (GetLastError () != ERROR_IO_PENDING
342 || !GetOverlappedResult (h, &ov, &bytes_read, TRUE))
343 bytes_read = -1;
344 }
345
346 CloseHandle (ov.hEvent);
347 return bytes_read;
348}
349
350static int
351ser_windows_write_prim (struct serial *scb, const void *buf, size_t len)
352{
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353 OVERLAPPED ov;
354 DWORD bytes_written;
355 HANDLE h;
356
357 memset (&ov, 0, sizeof (OVERLAPPED));
358 ov.hEvent = CreateEvent (0, FALSE, FALSE, 0);
359 h = (HANDLE) _get_osfhandle (scb->fd);
360 if (!WriteFile (h, buf, len, &bytes_written, &ov))
361 {
362 if (GetLastError () != ERROR_IO_PENDING
363 || !GetOverlappedResult (h, &ov, &bytes_written, TRUE))
364 bytes_written = -1;
365 }
366
367 CloseHandle (ov.hEvent);
368 return bytes_written;
369}
370
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371/* On Windows, gdb_select is implemented using WaitForMulpleObjects.
372 A "select thread" is created for each file descriptor. These
373 threads looks for activity on the corresponding descriptor, using
374 whatever techniques are appropriate for the descriptor type. When
375 that activity occurs, the thread signals an appropriate event,
376 which wakes up WaitForMultipleObjects.
377
378 Each select thread is in one of two states: stopped or started.
379 Select threads begin in the stopped state. When gdb_select is
380 called, threads corresponding to the descriptors of interest are
381 started by calling a wait_handle function. Each thread that
382 notices activity signals the appropriate event and then reenters
383 the stopped state. Before gdb_select returns it calls the
384 wait_handle_done functions, which return the threads to the stopped
385 state. */
386
387enum select_thread_state {
388 STS_STARTED,
389 STS_STOPPED
390};
391
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392struct ser_console_state
393{
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394 /* Signaled by the select thread to indicate that data is available
395 on the file descriptor. */
0ea3f30e 396 HANDLE read_event;
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397 /* Signaled by the select thread to indicate that an exception has
398 occurred on the file descriptor. */
0ea3f30e 399 HANDLE except_event;
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400 /* Signaled by the select thread to indicate that it has entered the
401 started state. HAVE_STARTED and HAVE_STOPPED are never signaled
402 simultaneously. */
403 HANDLE have_started;
404 /* Signaled by the select thread to indicate that it has stopped,
405 either because data is available (and READ_EVENT is signaled),
406 because an exception has occurred (and EXCEPT_EVENT is signaled),
407 or because STOP_SELECT was signaled. */
408 HANDLE have_stopped;
0ea3f30e 409
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410 /* Signaled by the main program to tell the select thread to enter
411 the started state. */
0ea3f30e 412 HANDLE start_select;
4577549b 413 /* Signaled by the main program to tell the select thread to enter
c378eb4e 414 the stopped state. */
0ea3f30e 415 HANDLE stop_select;
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DJ
416 /* Signaled by the main program to tell the select thread to
417 exit. */
c3e2b812 418 HANDLE exit_select;
c3e2b812 419
4577549b 420 /* The handle for the select thread. */
c3e2b812 421 HANDLE thread;
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422 /* The state of the select thread. This field is only accessed in
423 the main program, never by the select thread itself. */
424 enum select_thread_state thread_state;
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425};
426
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427/* Called by a select thread to enter the stopped state. This
428 function does not return until the thread has re-entered the
429 started state. */
430static void
431select_thread_wait (struct ser_console_state *state)
432{
433 HANDLE wait_events[2];
434
435 /* There are two things that can wake us up: a request that we enter
436 the started state, or that we exit this thread. */
437 wait_events[0] = state->start_select;
438 wait_events[1] = state->exit_select;
439 if (WaitForMultipleObjects (2, wait_events, FALSE, INFINITE)
440 != WAIT_OBJECT_0)
441 /* Either the EXIT_SELECT event was signaled (requesting that the
442 thread exit) or an error has occurred. In either case, we exit
443 the thread. */
444 ExitThread (0);
445
446 /* We are now in the started state. */
447 SetEvent (state->have_started);
448}
449
450typedef DWORD WINAPI (*thread_fn_type)(void *);
451
452/* Create a new select thread for SCB executing THREAD_FN. The STATE
453 will be filled in by this function before return. */
a95babbf 454static void
4577549b
DJ
455create_select_thread (thread_fn_type thread_fn,
456 struct serial *scb,
457 struct ser_console_state *state)
458{
459 DWORD threadId;
460
461 /* Create all of the events. These are all auto-reset events. */
462 state->read_event = CreateEvent (NULL, FALSE, FALSE, NULL);
463 state->except_event = CreateEvent (NULL, FALSE, FALSE, NULL);
464 state->have_started = CreateEvent (NULL, FALSE, FALSE, NULL);
465 state->have_stopped = CreateEvent (NULL, FALSE, FALSE, NULL);
466 state->start_select = CreateEvent (NULL, FALSE, FALSE, NULL);
467 state->stop_select = CreateEvent (NULL, FALSE, FALSE, NULL);
468 state->exit_select = CreateEvent (NULL, FALSE, FALSE, NULL);
469
470 state->thread = CreateThread (NULL, 0, thread_fn, scb, 0, &threadId);
471 /* The thread begins in the stopped state. */
472 state->thread_state = STS_STOPPED;
473}
474
475/* Destroy the select thread indicated by STATE. */
476static void
477destroy_select_thread (struct ser_console_state *state)
478{
479 /* Ask the thread to exit. */
480 SetEvent (state->exit_select);
481 /* Wait until it does. */
482 WaitForSingleObject (state->thread, INFINITE);
483
484 /* Destroy the events. */
485 CloseHandle (state->read_event);
486 CloseHandle (state->except_event);
487 CloseHandle (state->have_started);
488 CloseHandle (state->have_stopped);
489 CloseHandle (state->start_select);
490 CloseHandle (state->stop_select);
491 CloseHandle (state->exit_select);
492}
493
494/* Called by gdb_select to start the select thread indicated by STATE.
495 This function does not return until the thread has started. */
496static void
497start_select_thread (struct ser_console_state *state)
498{
499 /* Ask the thread to start. */
500 SetEvent (state->start_select);
501 /* Wait until it does. */
502 WaitForSingleObject (state->have_started, INFINITE);
503 /* The thread is now started. */
504 state->thread_state = STS_STARTED;
505}
506
507/* Called by gdb_select to stop the select thread indicated by STATE.
508 This function does not return until the thread has stopped. */
509static void
510stop_select_thread (struct ser_console_state *state)
511{
512 /* If the thread is already in the stopped state, we have nothing to
513 do. Some of the wait_handle functions avoid calling
514 start_select_thread if they notice activity on the relevant file
515 descriptors. The wait_handle_done functions still call
516 stop_select_thread -- but it is already stopped. */
517 if (state->thread_state != STS_STARTED)
518 return;
519 /* Ask the thread to stop. */
520 SetEvent (state->stop_select);
521 /* Wait until it does. */
522 WaitForSingleObject (state->have_stopped, INFINITE);
523 /* The thread is now stopped. */
524 state->thread_state = STS_STOPPED;
525}
526
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527static DWORD WINAPI
528console_select_thread (void *arg)
529{
cd78b7a1 530 struct serial *scb = (struct serial *) arg;
c3e2b812
DJ
531 struct ser_console_state *state;
532 int event_index;
0ea3f30e
DJ
533 HANDLE h;
534
cd78b7a1 535 state = (struct ser_console_state *) scb->state;
c3e2b812 536 h = (HANDLE) _get_osfhandle (scb->fd);
0ea3f30e
DJ
537
538 while (1)
539 {
540 HANDLE wait_events[2];
541 INPUT_RECORD record;
542 DWORD n_records;
543
4577549b 544 select_thread_wait (state);
c3e2b812 545
4577549b
DJ
546 while (1)
547 {
548 wait_events[0] = state->stop_select;
549 wait_events[1] = h;
0ea3f30e 550
3e43a32a
MS
551 event_index = WaitForMultipleObjects (2, wait_events,
552 FALSE, INFINITE);
0ea3f30e 553
4577549b
DJ
554 if (event_index == WAIT_OBJECT_0
555 || WaitForSingleObject (state->stop_select, 0) == WAIT_OBJECT_0)
556 break;
0ea3f30e 557
4577549b
DJ
558 if (event_index != WAIT_OBJECT_0 + 1)
559 {
560 /* Wait must have failed; assume an error has occured, e.g.
561 the handle has been closed. */
562 SetEvent (state->except_event);
563 break;
564 }
0ea3f30e 565
4577549b
DJ
566 /* We've got a pending event on the console. See if it's
567 of interest. */
568 if (!PeekConsoleInput (h, &record, 1, &n_records) || n_records != 1)
569 {
570 /* Something went wrong. Maybe the console is gone. */
571 SetEvent (state->except_event);
572 break;
573 }
0ea3f30e 574
4577549b 575 if (record.EventType == KEY_EVENT && record.Event.KeyEvent.bKeyDown)
c3e2b812 576 {
4577549b
DJ
577 WORD keycode = record.Event.KeyEvent.wVirtualKeyCode;
578
579 /* Ignore events containing only control keys. We must
580 recognize "enhanced" keys which we are interested in
581 reading via getch, if they do not map to ASCII. But we
582 do not want to report input available for e.g. the
583 control key alone. */
584
585 if (record.Event.KeyEvent.uChar.AsciiChar != 0
586 || keycode == VK_PRIOR
587 || keycode == VK_NEXT
588 || keycode == VK_END
589 || keycode == VK_HOME
590 || keycode == VK_LEFT
591 || keycode == VK_UP
592 || keycode == VK_RIGHT
593 || keycode == VK_DOWN
594 || keycode == VK_INSERT
595 || keycode == VK_DELETE)
596 {
597 /* This is really a keypress. */
598 SetEvent (state->read_event);
599 break;
600 }
c3e2b812 601 }
1bace02a
HD
602 else if (record.EventType == MOUSE_EVENT)
603 {
604 SetEvent (state->read_event);
605 break;
606 }
4577549b
DJ
607
608 /* Otherwise discard it and wait again. */
609 ReadConsoleInput (h, &record, 1, &n_records);
0ea3f30e
DJ
610 }
611
4577549b 612 SetEvent(state->have_stopped);
0ea3f30e 613 }
a32d7317 614 return 0;
0ea3f30e
DJ
615}
616
617static int
618fd_is_pipe (int fd)
619{
620 if (PeekNamedPipe ((HANDLE) _get_osfhandle (fd), NULL, 0, NULL, NULL, NULL))
621 return 1;
622 else
623 return 0;
624}
625
7e71daaa
JG
626static int
627fd_is_file (int fd)
628{
629 if (GetFileType ((HANDLE) _get_osfhandle (fd)) == FILE_TYPE_DISK)
630 return 1;
631 else
632 return 0;
633}
634
0ea3f30e
DJ
635static DWORD WINAPI
636pipe_select_thread (void *arg)
637{
cd78b7a1 638 struct serial *scb = (struct serial *) arg;
c3e2b812 639 struct ser_console_state *state;
0ea3f30e
DJ
640 HANDLE h;
641
cd78b7a1 642 state = (struct ser_console_state *) scb->state;
c3e2b812 643 h = (HANDLE) _get_osfhandle (scb->fd);
0ea3f30e
DJ
644
645 while (1)
646 {
0ea3f30e
DJ
647 DWORD n_avail;
648
4577549b 649 select_thread_wait (state);
c3e2b812 650
4577549b
DJ
651 /* Wait for something to happen on the pipe. */
652 while (1)
0ea3f30e 653 {
4577549b
DJ
654 if (!PeekNamedPipe (h, NULL, 0, NULL, &n_avail, NULL))
655 {
656 SetEvent (state->except_event);
657 break;
658 }
0ea3f30e 659
4577549b
DJ
660 if (n_avail > 0)
661 {
662 SetEvent (state->read_event);
663 break;
664 }
0ea3f30e 665
4577549b
DJ
666 /* Delay 10ms before checking again, but allow the stop
667 event to wake us. */
668 if (WaitForSingleObject (state->stop_select, 10) == WAIT_OBJECT_0)
669 break;
670 }
0ea3f30e 671
4577549b 672 SetEvent (state->have_stopped);
0ea3f30e 673 }
a32d7317 674 return 0;
0ea3f30e
DJ
675}
676
7e71daaa
JG
677static DWORD WINAPI
678file_select_thread (void *arg)
679{
cd78b7a1 680 struct serial *scb = (struct serial *) arg;
7e71daaa 681 struct ser_console_state *state;
7e71daaa
JG
682 HANDLE h;
683
cd78b7a1 684 state = (struct ser_console_state *) scb->state;
7e71daaa
JG
685 h = (HANDLE) _get_osfhandle (scb->fd);
686
687 while (1)
688 {
4577549b 689 select_thread_wait (state);
7e71daaa 690
3e43a32a
MS
691 if (SetFilePointer (h, 0, NULL, FILE_CURRENT)
692 == INVALID_SET_FILE_POINTER)
4577549b
DJ
693 SetEvent (state->except_event);
694 else
695 SetEvent (state->read_event);
7e71daaa 696
4577549b 697 SetEvent (state->have_stopped);
7e71daaa 698 }
a32d7317 699 return 0;
7e71daaa
JG
700}
701
0ea3f30e
DJ
702static void
703ser_console_wait_handle (struct serial *scb, HANDLE *read, HANDLE *except)
704{
cd78b7a1 705 struct ser_console_state *state = (struct ser_console_state *) scb->state;
0ea3f30e
DJ
706
707 if (state == NULL)
708 {
4577549b 709 thread_fn_type thread_fn;
0ea3f30e
DJ
710 int is_tty;
711
712 is_tty = isatty (scb->fd);
7e71daaa 713 if (!is_tty && !fd_is_file (scb->fd) && !fd_is_pipe (scb->fd))
0ea3f30e
DJ
714 {
715 *read = NULL;
716 *except = NULL;
717 return;
718 }
719
8d749320 720 state = XCNEW (struct ser_console_state);
0ea3f30e
DJ
721 scb->state = state;
722
0ea3f30e 723 if (is_tty)
4577549b 724 thread_fn = console_select_thread;
7e71daaa 725 else if (fd_is_pipe (scb->fd))
4577549b 726 thread_fn = pipe_select_thread;
7e71daaa 727 else
4577549b
DJ
728 thread_fn = file_select_thread;
729
730 create_select_thread (thread_fn, scb, state);
0ea3f30e
DJ
731 }
732
c3e2b812
DJ
733 *read = state->read_event;
734 *except = state->except_event;
735
736 /* Start from a blank state. */
0ea3f30e
DJ
737 ResetEvent (state->read_event);
738 ResetEvent (state->except_event);
c3e2b812
DJ
739 ResetEvent (state->stop_select);
740
741 /* First check for a key already in the buffer. If there is one,
742 we don't need a thread. This also catches the second key of
743 multi-character returns from getch, for instance for arrow
744 keys. The second half is in a C library internal buffer,
745 and PeekConsoleInput will not find it. */
746 if (_kbhit ())
747 {
748 SetEvent (state->read_event);
749 return;
750 }
0ea3f30e 751
c3e2b812 752 /* Otherwise, start the select thread. */
4577549b 753 start_select_thread (state);
c3e2b812 754}
0ea3f30e 755
c3e2b812
DJ
756static void
757ser_console_done_wait_handle (struct serial *scb)
758{
cd78b7a1 759 struct ser_console_state *state = (struct ser_console_state *) scb->state;
c3e2b812
DJ
760
761 if (state == NULL)
762 return;
763
4577549b 764 stop_select_thread (state);
0ea3f30e
DJ
765}
766
767static void
768ser_console_close (struct serial *scb)
769{
cd78b7a1 770 struct ser_console_state *state = (struct ser_console_state *) scb->state;
0ea3f30e
DJ
771
772 if (scb->state)
773 {
4577549b 774 destroy_select_thread (state);
0ea3f30e
DJ
775 xfree (scb->state);
776 }
777}
778
779struct ser_console_ttystate
780{
781 int is_a_tty;
782};
783
784static serial_ttystate
785ser_console_get_tty_state (struct serial *scb)
786{
787 if (isatty (scb->fd))
788 {
789 struct ser_console_ttystate *state;
433759f7 790
8d749320 791 state = XNEW (struct ser_console_ttystate);
0ea3f30e
DJ
792 state->is_a_tty = 1;
793 return state;
794 }
795 else
796 return NULL;
797}
798
5f1fb6dc
JB
799struct pipe_state
800{
801 /* Since we use the pipe_select_thread for our select emulation,
802 we need to place the state structure it requires at the front
803 of our state. */
804 struct ser_console_state wait;
805
806 /* The pex obj for our (one-stage) pipeline. */
807 struct pex_obj *pex;
808
809 /* Streams for the pipeline's input and output. */
810 FILE *input, *output;
811};
812
813static struct pipe_state *
814make_pipe_state (void)
815{
8d749320 816 struct pipe_state *ps = XCNEW (struct pipe_state);
5f1fb6dc 817
5f1fb6dc
JB
818 ps->wait.read_event = INVALID_HANDLE_VALUE;
819 ps->wait.except_event = INVALID_HANDLE_VALUE;
820 ps->wait.start_select = INVALID_HANDLE_VALUE;
821 ps->wait.stop_select = INVALID_HANDLE_VALUE;
822
823 return ps;
824}
825
826static void
827free_pipe_state (struct pipe_state *ps)
828{
829 int saved_errno = errno;
830
831 if (ps->wait.read_event != INVALID_HANDLE_VALUE)
4577549b 832 destroy_select_thread (&ps->wait);
5f1fb6dc
JB
833
834 /* Close the pipe to the child. We must close the pipe before
835 calling pex_free because pex_free will wait for the child to exit
836 and the child will not exit until the pipe is closed. */
837 if (ps->input)
838 fclose (ps->input);
839 if (ps->pex)
58f07bae
PA
840 {
841 pex_free (ps->pex);
842 /* pex_free closes ps->output. */
843 }
844 else if (ps->output)
845 fclose (ps->output);
5f1fb6dc
JB
846
847 xfree (ps);
848
849 errno = saved_errno;
850}
851
3f0dbd67 852struct pipe_state_destroyer
5f1fb6dc 853{
3f0dbd67
TT
854 void operator() (pipe_state *ps) const
855 {
856 free_pipe_state (ps);
857 }
858};
5f1fb6dc 859
3f0dbd67 860typedef std::unique_ptr<pipe_state, pipe_state_destroyer> pipe_state_up;
5f1fb6dc
JB
861
862static int
863pipe_windows_open (struct serial *scb, const char *name)
864{
65cc4390 865 FILE *pex_stderr;
ef7723eb 866
d1a41061
PP
867 if (name == NULL)
868 error_no_arg (_("child command"));
869
773a1edc 870 gdb_argv argv (name);
d1a41061 871
5f1fb6dc 872 if (! argv[0] || argv[0][0] == '\0')
a73c6dcd 873 error (_("missing child command"));
5f1fb6dc 874
3f0dbd67 875 pipe_state_up ps (make_pipe_state ());
5f1fb6dc
JB
876
877 ps->pex = pex_init (PEX_USE_PIPES, "target remote pipe", NULL);
878 if (! ps->pex)
3f0dbd67 879 return -1;
5f1fb6dc
JB
880 ps->input = pex_input_pipe (ps->pex, 1);
881 if (! ps->input)
3f0dbd67 882 return -1;
5f1fb6dc
JB
883
884 {
885 int err;
886 const char *err_msg
65cc4390
VP
887 = pex_run (ps->pex, PEX_SEARCH | PEX_BINARY_INPUT | PEX_BINARY_OUTPUT
888 | PEX_STDERR_TO_PIPE,
dda83cd7
SM
889 argv[0], argv.get (), NULL, NULL,
890 &err);
5f1fb6dc
JB
891
892 if (err_msg)
893 {
dda83cd7
SM
894 /* Our caller expects us to return -1, but all they'll do with
895 it generally is print the message based on errno. We have
896 all the same information here, plus err_msg provided by
897 pex_run, so we just raise the error here. */
898 if (err)
899 error (_("error starting child process '%s': %s: %s"),
900 name, err_msg, safe_strerror (err));
901 else
902 error (_("error starting child process '%s': %s"),
903 name, err_msg);
5f1fb6dc
JB
904 }
905 }
906
907 ps->output = pex_read_output (ps->pex, 1);
908 if (! ps->output)
3f0dbd67 909 return -1;
5f1fb6dc 910 scb->fd = fileno (ps->output);
65cc4390
VP
911
912 pex_stderr = pex_read_err (ps->pex, 1);
913 if (! pex_stderr)
3f0dbd67 914 return -1;
65cc4390
VP
915 scb->error_fd = fileno (pex_stderr);
916
3f0dbd67 917 scb->state = ps.release ();
5f1fb6dc 918
5f1fb6dc 919 return 0;
5f1fb6dc
JB
920}
921
58f07bae
PA
922static int
923pipe_windows_fdopen (struct serial *scb, int fd)
924{
925 struct pipe_state *ps;
926
927 ps = make_pipe_state ();
928
929 ps->input = fdopen (fd, "r+");
930 if (! ps->input)
931 goto fail;
932
933 ps->output = fdopen (fd, "r+");
934 if (! ps->output)
935 goto fail;
936
937 scb->fd = fd;
938 scb->state = (void *) ps;
939
940 return 0;
941
942 fail:
943 free_pipe_state (ps);
944 return -1;
945}
5f1fb6dc
JB
946
947static void
948pipe_windows_close (struct serial *scb)
949{
cd78b7a1 950 struct pipe_state *ps = (struct pipe_state *) scb->state;
5f1fb6dc
JB
951
952 /* In theory, we should try to kill the subprocess here, but the pex
953 interface doesn't give us enough information to do that. Usually
954 closing the input pipe will get the message across. */
955
956 free_pipe_state (ps);
957}
958
959
960static int
961pipe_windows_read (struct serial *scb, size_t count)
962{
4998c1df 963 HANDLE pipeline_out = (HANDLE) _get_osfhandle (scb->fd);
ef7723eb
VP
964 DWORD available;
965 DWORD bytes_read;
966
5f1fb6dc
JB
967 if (pipeline_out == INVALID_HANDLE_VALUE)
968 return -1;
969
5f1fb6dc
JB
970 if (! PeekNamedPipe (pipeline_out, NULL, 0, NULL, &available, NULL))
971 return -1;
972
973 if (count > available)
974 count = available;
975
5f1fb6dc
JB
976 if (! ReadFile (pipeline_out, scb->buf, count, &bytes_read, NULL))
977 return -1;
978
979 return bytes_read;
980}
981
982
983static int
984pipe_windows_write (struct serial *scb, const void *buf, size_t count)
985{
cd78b7a1 986 struct pipe_state *ps = (struct pipe_state *) scb->state;
ef7723eb
VP
987 HANDLE pipeline_in;
988 DWORD written;
989
5f1fb6dc
JB
990 int pipeline_in_fd = fileno (ps->input);
991 if (pipeline_in_fd < 0)
992 return -1;
993
ef7723eb 994 pipeline_in = (HANDLE) _get_osfhandle (pipeline_in_fd);
5f1fb6dc
JB
995 if (pipeline_in == INVALID_HANDLE_VALUE)
996 return -1;
997
5f1fb6dc
JB
998 if (! WriteFile (pipeline_in, buf, count, &written, NULL))
999 return -1;
1000
1001 return written;
1002}
1003
1004
1005static void
1006pipe_wait_handle (struct serial *scb, HANDLE *read, HANDLE *except)
1007{
cd78b7a1 1008 struct pipe_state *ps = (struct pipe_state *) scb->state;
5f1fb6dc
JB
1009
1010 /* Have we allocated our events yet? */
1011 if (ps->wait.read_event == INVALID_HANDLE_VALUE)
4577549b
DJ
1012 /* Start the thread. */
1013 create_select_thread (pipe_select_thread, scb, &ps->wait);
5f1fb6dc 1014
774a49c0
DJ
1015 *read = ps->wait.read_event;
1016 *except = ps->wait.except_event;
1017
1018 /* Start from a blank state. */
5f1fb6dc
JB
1019 ResetEvent (ps->wait.read_event);
1020 ResetEvent (ps->wait.except_event);
774a49c0 1021 ResetEvent (ps->wait.stop_select);
5f1fb6dc 1022
4577549b 1023 start_select_thread (&ps->wait);
5f1fb6dc
JB
1024}
1025
774a49c0
DJ
1026static void
1027pipe_done_wait_handle (struct serial *scb)
1028{
cd78b7a1 1029 struct pipe_state *ps = (struct pipe_state *) scb->state;
774a49c0
DJ
1030
1031 /* Have we allocated our events yet? */
1032 if (ps->wait.read_event == INVALID_HANDLE_VALUE)
1033 return;
1034
4577549b 1035 stop_select_thread (&ps->wait);
774a49c0 1036}
5f1fb6dc 1037
65cc4390
VP
1038static int
1039pipe_avail (struct serial *scb, int fd)
1040{
1041 HANDLE h = (HANDLE) _get_osfhandle (fd);
1042 DWORD numBytes;
1043 BOOL r = PeekNamedPipe (h, NULL, 0, NULL, &numBytes, NULL);
433759f7 1044
65cc4390
VP
1045 if (r == FALSE)
1046 numBytes = 0;
1047 return numBytes;
1048}
1049
58f07bae
PA
1050int
1051gdb_pipe (int pdes[2])
1052{
1053 if (_pipe (pdes, 512, _O_BINARY | _O_NOINHERIT) == -1)
1054 return -1;
1055 return 0;
1056}
1057
0ea3f30e
DJ
1058struct net_windows_state
1059{
4577549b
DJ
1060 struct ser_console_state base;
1061
0ea3f30e
DJ
1062 HANDLE sock_event;
1063};
1064
364fe1f7
PA
1065/* Check whether the socket has any pending data to be read. If so,
1066 set the select thread's read event. On error, set the select
1067 thread's except event. If any event was set, return true,
1068 otherwise return false. */
1069
1070static int
1071net_windows_socket_check_pending (struct serial *scb)
1072{
cd78b7a1 1073 struct net_windows_state *state = (struct net_windows_state *) scb->state;
364fe1f7
PA
1074 unsigned long available;
1075
1076 if (ioctlsocket (scb->fd, FIONREAD, &available) != 0)
1077 {
1078 /* The socket closed, or some other error. */
1079 SetEvent (state->base.except_event);
1080 return 1;
1081 }
1082 else if (available > 0)
1083 {
1084 SetEvent (state->base.read_event);
1085 return 1;
1086 }
1087
1088 return 0;
1089}
1090
0ea3f30e
DJ
1091static DWORD WINAPI
1092net_windows_select_thread (void *arg)
1093{
cd78b7a1 1094 struct serial *scb = (struct serial *) arg;
4577549b 1095 struct net_windows_state *state;
c3e2b812 1096 int event_index;
0ea3f30e 1097
cd78b7a1 1098 state = (struct net_windows_state *) scb->state;
0ea3f30e
DJ
1099
1100 while (1)
1101 {
1102 HANDLE wait_events[2];
1103 WSANETWORKEVENTS events;
1104
4577549b 1105 select_thread_wait (&state->base);
c3e2b812 1106
4577549b 1107 wait_events[0] = state->base.stop_select;
0ea3f30e
DJ
1108 wait_events[1] = state->sock_event;
1109
364fe1f7
PA
1110 /* Wait for something to happen on the socket. */
1111 while (1)
0ea3f30e 1112 {
364fe1f7
PA
1113 event_index = WaitForMultipleObjects (2, wait_events, FALSE, INFINITE);
1114
1115 if (event_index == WAIT_OBJECT_0
1116 || WaitForSingleObject (state->base.stop_select, 0) == WAIT_OBJECT_0)
1117 {
1118 /* We have been requested to stop. */
1119 break;
1120 }
1121
1122 if (event_index != WAIT_OBJECT_0 + 1)
1123 {
1124 /* Some error has occured. Assume that this is an error
1125 condition. */
1126 SetEvent (state->base.except_event);
1127 break;
1128 }
1129
4577549b
DJ
1130 /* Enumerate the internal network events, and reset the
1131 object that signalled us to catch the next event. */
364fe1f7
PA
1132 if (WSAEnumNetworkEvents (scb->fd, state->sock_event, &events) != 0)
1133 {
1134 /* Something went wrong. Maybe the socket is gone. */
1135 SetEvent (state->base.except_event);
1136 break;
1137 }
1138
4577549b 1139 if (events.lNetworkEvents & FD_READ)
364fe1f7
PA
1140 {
1141 if (net_windows_socket_check_pending (scb))
1142 break;
1143
1144 /* Spurious wakeup. That is, the socket's event was
1145 signalled before we last called recv. */
1146 }
1147
4577549b 1148 if (events.lNetworkEvents & FD_CLOSE)
364fe1f7
PA
1149 {
1150 SetEvent (state->base.except_event);
1151 break;
1152 }
0ea3f30e
DJ
1153 }
1154
4577549b 1155 SetEvent (state->base.have_stopped);
0ea3f30e 1156 }
364fe1f7 1157 return 0;
0ea3f30e
DJ
1158}
1159
1160static void
1161net_windows_wait_handle (struct serial *scb, HANDLE *read, HANDLE *except)
1162{
cd78b7a1 1163 struct net_windows_state *state = (struct net_windows_state *) scb->state;
0ea3f30e 1164
c3e2b812 1165 /* Start from a clean slate. */
4577549b
DJ
1166 ResetEvent (state->base.read_event);
1167 ResetEvent (state->base.except_event);
1168 ResetEvent (state->base.stop_select);
0ea3f30e 1169
4577549b
DJ
1170 *read = state->base.read_event;
1171 *except = state->base.except_event;
c3e2b812 1172
364fe1f7
PA
1173 /* Check any pending events. Otherwise, start the select
1174 thread. */
1175 if (!net_windows_socket_check_pending (scb))
1176 start_select_thread (&state->base);
c3e2b812
DJ
1177}
1178
1179static void
1180net_windows_done_wait_handle (struct serial *scb)
1181{
cd78b7a1 1182 struct net_windows_state *state = (struct net_windows_state *) scb->state;
c3e2b812 1183
4577549b 1184 stop_select_thread (&state->base);
0ea3f30e
DJ
1185}
1186
1187static int
1188net_windows_open (struct serial *scb, const char *name)
1189{
1190 struct net_windows_state *state;
1191 int ret;
0ea3f30e
DJ
1192
1193 ret = net_open (scb, name);
1194 if (ret != 0)
1195 return ret;
1196
8d749320 1197 state = XCNEW (struct net_windows_state);
0ea3f30e
DJ
1198 scb->state = state;
1199
0ea3f30e
DJ
1200 /* Associate an event with the socket. */
1201 state->sock_event = CreateEvent (0, TRUE, FALSE, 0);
1202 WSAEventSelect (scb->fd, state->sock_event, FD_READ | FD_CLOSE);
1203
4577549b
DJ
1204 /* Start the thread. */
1205 create_select_thread (net_windows_select_thread, scb, &state->base);
0ea3f30e
DJ
1206
1207 return 0;
1208}
1209
1210
1211static void
1212net_windows_close (struct serial *scb)
1213{
cd78b7a1 1214 struct net_windows_state *state = (struct net_windows_state *) scb->state;
0ea3f30e 1215
4577549b 1216 destroy_select_thread (&state->base);
0ea3f30e
DJ
1217 CloseHandle (state->sock_event);
1218
1219 xfree (scb->state);
1220
1221 net_close (scb);
1222}
1223
12e8c7d7
TT
1224/* The serial port driver. */
1225
1226static const struct serial_ops hardwire_ops =
1227{
1228 "hardwire",
1229 ser_windows_open,
1230 ser_windows_close,
1231 NULL,
1232 ser_base_readchar,
1233 ser_base_write,
1234 ser_windows_flush_output,
1235 ser_windows_flush_input,
1236 ser_windows_send_break,
1237 ser_windows_raw,
1238 /* These are only used for stdin; we do not need them for serial
1239 ports, so supply the standard dummies. */
1240 ser_base_get_tty_state,
1241 ser_base_copy_tty_state,
1242 ser_base_set_tty_state,
1243 ser_base_print_tty_state,
12e8c7d7
TT
1244 ser_windows_setbaudrate,
1245 ser_windows_setstopbits,
236af5e3 1246 ser_windows_setparity,
12e8c7d7
TT
1247 ser_windows_drain_output,
1248 ser_base_async,
1249 ser_windows_read_prim,
1250 ser_windows_write_prim,
1251 NULL,
1252 ser_windows_wait_handle
1253};
1254
1255/* The dummy serial driver used for terminals. We only provide the
1256 TTY-related methods. */
1257
1258static const struct serial_ops tty_ops =
1259{
1260 "terminal",
1261 NULL,
1262 ser_console_close,
1263 NULL,
1264 NULL,
1265 NULL,
1266 NULL,
1267 NULL,
1268 NULL,
1269 NULL,
1270 ser_console_get_tty_state,
1271 ser_base_copy_tty_state,
1272 ser_base_set_tty_state,
1273 ser_base_print_tty_state,
12e8c7d7
TT
1274 NULL,
1275 NULL,
236af5e3 1276 NULL,
12e8c7d7
TT
1277 ser_base_drain_output,
1278 NULL,
1279 NULL,
1280 NULL,
1281 NULL,
1282 ser_console_wait_handle,
1283 ser_console_done_wait_handle
1284};
1285
1286/* The pipe interface. */
1287
1288static const struct serial_ops pipe_ops =
1289{
1290 "pipe",
1291 pipe_windows_open,
1292 pipe_windows_close,
1293 pipe_windows_fdopen,
1294 ser_base_readchar,
1295 ser_base_write,
1296 ser_base_flush_output,
1297 ser_base_flush_input,
1298 ser_base_send_break,
1299 ser_base_raw,
1300 ser_base_get_tty_state,
1301 ser_base_copy_tty_state,
1302 ser_base_set_tty_state,
1303 ser_base_print_tty_state,
12e8c7d7
TT
1304 ser_base_setbaudrate,
1305 ser_base_setstopbits,
236af5e3 1306 ser_base_setparity,
12e8c7d7
TT
1307 ser_base_drain_output,
1308 ser_base_async,
1309 pipe_windows_read,
1310 pipe_windows_write,
1311 pipe_avail,
1312 pipe_wait_handle,
1313 pipe_done_wait_handle
1314};
1315
1316/* The TCP/UDP socket driver. */
1317
1318static const struct serial_ops tcp_ops =
1319{
1320 "tcp",
1321 net_windows_open,
1322 net_windows_close,
1323 NULL,
1324 ser_base_readchar,
1325 ser_base_write,
1326 ser_base_flush_output,
1327 ser_base_flush_input,
1328 ser_tcp_send_break,
1329 ser_base_raw,
1330 ser_base_get_tty_state,
1331 ser_base_copy_tty_state,
1332 ser_base_set_tty_state,
1333 ser_base_print_tty_state,
12e8c7d7
TT
1334 ser_base_setbaudrate,
1335 ser_base_setstopbits,
236af5e3 1336 ser_base_setparity,
12e8c7d7
TT
1337 ser_base_drain_output,
1338 ser_base_async,
1339 net_read_prim,
1340 net_write_prim,
1341 NULL,
1342 net_windows_wait_handle,
1343 net_windows_done_wait_handle
1344};
1345
6c265988 1346void _initialize_ser_windows ();
0ea3f30e 1347void
6c265988 1348_initialize_ser_windows ()
0ea3f30e
DJ
1349{
1350 WSADATA wsa_data;
0ea3f30e 1351
4af53f97
PM
1352 HMODULE hm = NULL;
1353
1354 /* First find out if kernel32 exports CancelIo function. */
1355 hm = LoadLibrary ("kernel32.dll");
1356 if (hm)
1357 {
cd78b7a1 1358 CancelIo = (CancelIo_ftype *) GetProcAddress (hm, "CancelIo");
4af53f97
PM
1359 FreeLibrary (hm);
1360 }
1361 else
1362 CancelIo = NULL;
0ea3f30e 1363
12e8c7d7
TT
1364 serial_add_interface (&hardwire_ops);
1365 serial_add_interface (&tty_ops);
1366 serial_add_interface (&pipe_ops);
5f1fb6dc 1367
0ea3f30e
DJ
1368 /* If WinSock works, register the TCP/UDP socket driver. */
1369
1370 if (WSAStartup (MAKEWORD (1, 0), &wsa_data) != 0)
1371 /* WinSock is unavailable. */
1372 return;
1373
12e8c7d7 1374 serial_add_interface (&tcp_ops);
0ea3f30e 1375}
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