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[gcc.git] / gcc / ada / s-osinte-hpux.ads
1 ------------------------------------------------------------------------------
2 -- --
3 -- GNAT RUN-TIME LIBRARY (GNARL) COMPONENTS --
4 -- --
5 -- S Y S T E M . O S _ I N T E R F A C E --
6 -- --
7 -- S p e c --
8 -- --
9 -- Copyright (C) 1991-1994, Florida State University --
10 -- Copyright (C) 1995-2011, Free Software Foundation, Inc. --
11 -- --
12 -- GNAT is free software; you can redistribute it and/or modify it under --
13 -- terms of the GNU General Public License as published by the Free Soft- --
14 -- ware Foundation; either version 3, or (at your option) any later ver- --
15 -- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
16 -- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
17 -- or FITNESS FOR A PARTICULAR PURPOSE. --
18 -- --
19 -- As a special exception under Section 7 of GPL version 3, you are granted --
20 -- additional permissions described in the GCC Runtime Library Exception, --
21 -- version 3.1, as published by the Free Software Foundation. --
22 -- --
23 -- You should have received a copy of the GNU General Public License and --
24 -- a copy of the GCC Runtime Library Exception along with this program; --
25 -- see the files COPYING3 and COPYING.RUNTIME respectively. If not, see --
26 -- <http://www.gnu.org/licenses/>. --
27 -- --
28 -- GNARL was developed by the GNARL team at Florida State University. --
29 -- Extensive contributions were provided by Ada Core Technologies, Inc. --
30 -- --
31 ------------------------------------------------------------------------------
32
33 -- This is a HPUX 11.0 (Native THREADS) version of this package
34
35 -- This package encapsulates all direct interfaces to OS services that are
36 -- needed by the tasking run-time (libgnarl).
37
38 -- PLEASE DO NOT add any with-clauses to this package or remove the pragma
39 -- Preelaborate. This package is designed to be a bottom-level (leaf) package.
40
41 with Ada.Unchecked_Conversion;
42
43 with Interfaces.C;
44
45 package System.OS_Interface is
46 pragma Preelaborate;
47
48 pragma Linker_Options ("-lpthread");
49
50 subtype int is Interfaces.C.int;
51 subtype short is Interfaces.C.short;
52 subtype long is Interfaces.C.long;
53 subtype unsigned is Interfaces.C.unsigned;
54 subtype unsigned_short is Interfaces.C.unsigned_short;
55 subtype unsigned_long is Interfaces.C.unsigned_long;
56 subtype unsigned_char is Interfaces.C.unsigned_char;
57 subtype plain_char is Interfaces.C.plain_char;
58 subtype size_t is Interfaces.C.size_t;
59
60 -----------
61 -- Errno --
62 -----------
63
64 function errno return int;
65 pragma Import (C, errno, "__get_errno");
66
67 EAGAIN : constant := 11;
68 EINTR : constant := 4;
69 EINVAL : constant := 22;
70 ENOMEM : constant := 12;
71 ETIMEDOUT : constant := 238;
72
73 -------------
74 -- Signals --
75 -------------
76
77 Max_Interrupt : constant := 44;
78 type Signal is new int range 0 .. Max_Interrupt;
79 for Signal'Size use int'Size;
80
81 SIGHUP : constant := 1; -- hangup
82 SIGINT : constant := 2; -- interrupt (rubout)
83 SIGQUIT : constant := 3; -- quit (ASCD FS)
84 SIGILL : constant := 4; -- illegal instruction (not reset)
85 SIGTRAP : constant := 5; -- trace trap (not reset)
86 SIGIOT : constant := 6; -- IOT instruction
87 SIGABRT : constant := 6; -- used by abort, replace SIGIOT in the future
88 SIGEMT : constant := 7; -- EMT instruction
89 SIGFPE : constant := 8; -- floating point exception
90 SIGKILL : constant := 9; -- kill (cannot be caught or ignored)
91 SIGBUS : constant := 10; -- bus error
92 SIGSEGV : constant := 11; -- segmentation violation
93 SIGSYS : constant := 12; -- bad argument to system call
94 SIGPIPE : constant := 13; -- write on a pipe with no one to read it
95 SIGALRM : constant := 14; -- alarm clock
96 SIGTERM : constant := 15; -- software termination signal from kill
97 SIGUSR1 : constant := 16; -- user defined signal 1
98 SIGUSR2 : constant := 17; -- user defined signal 2
99 SIGCLD : constant := 18; -- alias for SIGCHLD
100 SIGCHLD : constant := 18; -- child status change
101 SIGPWR : constant := 19; -- power-fail restart
102 SIGVTALRM : constant := 20; -- virtual timer alarm
103 SIGPROF : constant := 21; -- profiling timer alarm
104 SIGIO : constant := 22; -- asynchronous I/O
105 SIGPOLL : constant := 22; -- pollable event occurred
106 SIGWINCH : constant := 23; -- window size change
107 SIGSTOP : constant := 24; -- stop (cannot be caught or ignored)
108 SIGTSTP : constant := 25; -- user stop requested from tty
109 SIGCONT : constant := 26; -- stopped process has been continued
110 SIGTTIN : constant := 27; -- background tty read attempted
111 SIGTTOU : constant := 28; -- background tty write attempted
112 SIGURG : constant := 29; -- urgent condition on IO channel
113 SIGLOST : constant := 30; -- remote lock lost (NFS)
114 SIGDIL : constant := 32; -- DIL signal
115 SIGXCPU : constant := 33; -- CPU time limit exceeded (setrlimit)
116 SIGXFSZ : constant := 34; -- file size limit exceeded (setrlimit)
117 SIGCANCEL : constant := 35; -- used for pthread cancellation.
118 SIGGFAULT : constant := 36; -- Graphics framebuffer fault
119
120 SIGADAABORT : constant := SIGABRT;
121 -- Note: on other targets, we usually use SIGABRT, but on HPUX, it
122 -- appears that SIGABRT can't be used in sigwait(), so we use SIGTERM.
123 -- Do we use SIGTERM or SIGABRT???
124
125 type Signal_Set is array (Natural range <>) of Signal;
126
127 Unmasked : constant Signal_Set :=
128 (SIGABRT, SIGPIPE, SIGBUS, SIGTRAP, SIGTTIN, SIGTTOU, SIGTSTP, SIGPROF,
129 SIGALRM, SIGVTALRM, SIGIO, SIGCHLD);
130
131 Reserved : constant Signal_Set := (SIGKILL, SIGSTOP);
132
133 type sigset_t is private;
134
135 function sigaddset (set : access sigset_t; sig : Signal) return int;
136 pragma Import (C, sigaddset, "sigaddset");
137
138 function sigdelset (set : access sigset_t; sig : Signal) return int;
139 pragma Import (C, sigdelset, "sigdelset");
140
141 function sigfillset (set : access sigset_t) return int;
142 pragma Import (C, sigfillset, "sigfillset");
143
144 function sigismember (set : access sigset_t; sig : Signal) return int;
145 pragma Import (C, sigismember, "sigismember");
146
147 function sigemptyset (set : access sigset_t) return int;
148 pragma Import (C, sigemptyset, "sigemptyset");
149
150 type struct_sigaction is record
151 sa_handler : System.Address;
152 sa_mask : sigset_t;
153 sa_flags : int;
154 end record;
155 pragma Convention (C, struct_sigaction);
156 type struct_sigaction_ptr is access all struct_sigaction;
157
158 SA_SIGINFO : constant := 16#10#;
159 SA_ONSTACK : constant := 16#01#;
160
161 SIG_BLOCK : constant := 0;
162 SIG_UNBLOCK : constant := 1;
163 SIG_SETMASK : constant := 2;
164
165 SIG_DFL : constant := 0;
166 SIG_IGN : constant := 1;
167
168 function sigaction
169 (sig : Signal;
170 act : struct_sigaction_ptr;
171 oact : struct_sigaction_ptr) return int;
172 pragma Import (C, sigaction, "sigaction");
173
174 ----------
175 -- Time --
176 ----------
177
178 Time_Slice_Supported : constant Boolean := True;
179 -- Indicates whether time slicing is supported
180
181 type timespec is private;
182
183 type clockid_t is private;
184
185 CLOCK_REALTIME : constant clockid_t;
186 CLOCK_MONOTONIC : constant clockid_t;
187
188 function clock_gettime
189 (clock_id : clockid_t;
190 tp : access timespec) return int;
191 pragma Import (C, clock_gettime, "clock_gettime");
192
193 function clock_getres
194 (clock_id : clockid_t;
195 res : access timespec) return int;
196 pragma Import (C, clock_getres, "clock_getres");
197
198 function To_Duration (TS : timespec) return Duration;
199 pragma Inline (To_Duration);
200
201 function To_Timespec (D : Duration) return timespec;
202 pragma Inline (To_Timespec);
203
204 type struct_timezone is record
205 tz_minuteswest : int;
206 tz_dsttime : int;
207 end record;
208 pragma Convention (C, struct_timezone);
209 type struct_timezone_ptr is access all struct_timezone;
210
211 -------------------------
212 -- Priority Scheduling --
213 -------------------------
214
215 SCHED_FIFO : constant := 0;
216 SCHED_RR : constant := 1;
217 SCHED_OTHER : constant := 2;
218
219 function To_Target_Priority
220 (Prio : System.Any_Priority) return Interfaces.C.int;
221 -- Maps System.Any_Priority to a POSIX priority
222
223 -------------
224 -- Process --
225 -------------
226
227 type pid_t is private;
228
229 function kill (pid : pid_t; sig : Signal) return int;
230 pragma Import (C, kill, "kill");
231
232 function getpid return pid_t;
233 pragma Import (C, getpid, "getpid");
234
235 ---------
236 -- LWP --
237 ---------
238
239 function lwp_self return System.Address;
240 pragma Import (C, lwp_self, "_lwp_self");
241
242 -------------
243 -- Threads --
244 -------------
245
246 type Thread_Body is access
247 function (arg : System.Address) return System.Address;
248 pragma Convention (C, Thread_Body);
249
250 function Thread_Body_Access is new
251 Ada.Unchecked_Conversion (System.Address, Thread_Body);
252
253 type pthread_t is private;
254 subtype Thread_Id is pthread_t;
255
256 type pthread_mutex_t is limited private;
257 type pthread_cond_t is limited private;
258 type pthread_attr_t is limited private;
259 type pthread_mutexattr_t is limited private;
260 type pthread_condattr_t is limited private;
261 type pthread_key_t is private;
262
263 PTHREAD_CREATE_DETACHED : constant := 16#de#;
264
265 PTHREAD_SCOPE_PROCESS : constant := 2;
266 PTHREAD_SCOPE_SYSTEM : constant := 1;
267
268 -----------
269 -- Stack --
270 -----------
271
272 type stack_t is record
273 ss_sp : System.Address;
274 ss_flags : int;
275 ss_size : size_t;
276 end record;
277 pragma Convention (C, stack_t);
278
279 function sigaltstack
280 (ss : not null access stack_t;
281 oss : access stack_t) return int;
282 pragma Import (C, sigaltstack, "sigaltstack");
283
284 Alternate_Stack : aliased System.Address;
285 pragma Import (C, Alternate_Stack, "__gnat_alternate_stack");
286 -- The alternate signal stack for stack overflows
287
288 Alternate_Stack_Size : constant := 16 * 1024;
289 -- This must be in keeping with init.c:__gnat_alternate_stack
290
291 Stack_Base_Available : constant Boolean := False;
292 -- Indicates whether the stack base is available on this target
293
294 function Get_Stack_Base (thread : pthread_t) return Address;
295 pragma Inline (Get_Stack_Base);
296 -- Returns the stack base of the specified thread. Only call this function
297 -- when Stack_Base_Available is True.
298
299 function Get_Page_Size return size_t;
300 function Get_Page_Size return Address;
301 pragma Import (C, Get_Page_Size, "getpagesize");
302 -- Returns the size of a page
303
304 PROT_NONE : constant := 0;
305 PROT_READ : constant := 1;
306 PROT_WRITE : constant := 2;
307 PROT_EXEC : constant := 4;
308 PROT_ALL : constant := PROT_READ + PROT_WRITE + PROT_EXEC;
309 PROT_ON : constant := PROT_READ;
310 PROT_OFF : constant := PROT_ALL;
311
312 function mprotect (addr : Address; len : size_t; prot : int) return int;
313 pragma Import (C, mprotect);
314
315 ---------------------------------------
316 -- Nonstandard Thread Initialization --
317 ---------------------------------------
318
319 procedure pthread_init;
320 pragma Inline (pthread_init);
321 -- This is a dummy procedure to share some GNULLI files
322
323 -------------------------
324 -- POSIX.1c Section 3 --
325 -------------------------
326
327 function sigwait
328 (set : access sigset_t;
329 sig : access Signal) return int;
330 pragma Import (C, sigwait, "sigwait");
331
332 function pthread_kill
333 (thread : pthread_t;
334 sig : Signal) return int;
335 pragma Import (C, pthread_kill, "pthread_kill");
336
337 function pthread_sigmask
338 (how : int;
339 set : access sigset_t;
340 oset : access sigset_t) return int;
341 pragma Import (C, pthread_sigmask, "pthread_sigmask");
342
343 --------------------------
344 -- POSIX.1c Section 11 --
345 --------------------------
346
347 function pthread_mutexattr_init
348 (attr : access pthread_mutexattr_t) return int;
349 pragma Import (C, pthread_mutexattr_init, "pthread_mutexattr_init");
350
351 function pthread_mutexattr_destroy
352 (attr : access pthread_mutexattr_t) return int;
353 pragma Import (C, pthread_mutexattr_destroy, "pthread_mutexattr_destroy");
354
355 function pthread_mutex_init
356 (mutex : access pthread_mutex_t;
357 attr : access pthread_mutexattr_t) return int;
358 pragma Import (C, pthread_mutex_init, "pthread_mutex_init");
359
360 function pthread_mutex_destroy (mutex : access pthread_mutex_t) return int;
361 pragma Import (C, pthread_mutex_destroy, "pthread_mutex_destroy");
362
363 function pthread_mutex_lock (mutex : access pthread_mutex_t) return int;
364 pragma Import (C, pthread_mutex_lock, "pthread_mutex_lock");
365
366 function pthread_mutex_unlock (mutex : access pthread_mutex_t) return int;
367 pragma Import (C, pthread_mutex_unlock, "pthread_mutex_unlock");
368
369 function pthread_condattr_init
370 (attr : access pthread_condattr_t) return int;
371 pragma Import (C, pthread_condattr_init, "pthread_condattr_init");
372
373 function pthread_condattr_destroy
374 (attr : access pthread_condattr_t) return int;
375 pragma Import (C, pthread_condattr_destroy, "pthread_condattr_destroy");
376
377 function pthread_cond_init
378 (cond : access pthread_cond_t;
379 attr : access pthread_condattr_t) return int;
380 pragma Import (C, pthread_cond_init, "pthread_cond_init");
381
382 function pthread_cond_destroy (cond : access pthread_cond_t) return int;
383 pragma Import (C, pthread_cond_destroy, "pthread_cond_destroy");
384
385 function pthread_cond_signal (cond : access pthread_cond_t) return int;
386 pragma Import (C, pthread_cond_signal, "pthread_cond_signal");
387
388 function pthread_cond_wait
389 (cond : access pthread_cond_t;
390 mutex : access pthread_mutex_t) return int;
391 pragma Import (C, pthread_cond_wait, "pthread_cond_wait");
392
393 function pthread_cond_timedwait
394 (cond : access pthread_cond_t;
395 mutex : access pthread_mutex_t;
396 abstime : access timespec) return int;
397 pragma Import (C, pthread_cond_timedwait, "pthread_cond_timedwait");
398
399 Relative_Timed_Wait : constant Boolean := False;
400 -- pthread_cond_timedwait requires an absolute delay time
401
402 --------------------------
403 -- POSIX.1c Section 13 --
404 --------------------------
405
406 PTHREAD_PRIO_NONE : constant := 16#100#;
407 PTHREAD_PRIO_PROTECT : constant := 16#200#;
408 PTHREAD_PRIO_INHERIT : constant := 16#400#;
409
410 function pthread_mutexattr_setprotocol
411 (attr : access pthread_mutexattr_t;
412 protocol : int) return int;
413 pragma Import (C, pthread_mutexattr_setprotocol);
414
415 function pthread_mutexattr_setprioceiling
416 (attr : access pthread_mutexattr_t;
417 prioceiling : int) return int;
418 pragma Import (C, pthread_mutexattr_setprioceiling);
419
420 type Array_7_Int is array (0 .. 6) of int;
421 type struct_sched_param is record
422 sched_priority : int;
423 sched_reserved : Array_7_Int;
424 end record;
425
426 function pthread_setschedparam
427 (thread : pthread_t;
428 policy : int;
429 param : access struct_sched_param)
430 return int;
431 pragma Import (C, pthread_setschedparam, "pthread_setschedparam");
432
433 function pthread_attr_setscope
434 (attr : access pthread_attr_t;
435 contentionscope : int) return int;
436 pragma Import (C, pthread_attr_setscope, "pthread_attr_setscope");
437
438 function pthread_attr_setinheritsched
439 (attr : access pthread_attr_t;
440 inheritsched : int) return int;
441 pragma Import (C, pthread_attr_setinheritsched);
442
443 function pthread_attr_setschedpolicy
444 (attr : access pthread_attr_t;
445 policy : int) return int;
446 pragma Import (C, pthread_attr_setschedpolicy);
447
448 function sched_yield return int;
449 pragma Import (C, sched_yield, "sched_yield");
450
451 --------------------------
452 -- P1003.1c Section 16 --
453 --------------------------
454
455 function pthread_attr_init
456 (attributes : access pthread_attr_t) return int;
457 pragma Import (C, pthread_attr_init, "__pthread_attr_init_system");
458
459 function pthread_attr_destroy
460 (attributes : access pthread_attr_t) return int;
461 pragma Import (C, pthread_attr_destroy, "pthread_attr_destroy");
462
463 function pthread_attr_setdetachstate
464 (attr : access pthread_attr_t;
465 detachstate : int) return int;
466 pragma Import (C, pthread_attr_setdetachstate);
467
468 function pthread_attr_setstacksize
469 (attr : access pthread_attr_t;
470 stacksize : size_t) return int;
471 pragma Import (C, pthread_attr_setstacksize, "pthread_attr_setstacksize");
472
473 function pthread_create
474 (thread : access pthread_t;
475 attributes : access pthread_attr_t;
476 start_routine : Thread_Body;
477 arg : System.Address) return int;
478 pragma Import (C, pthread_create, "__pthread_create_system");
479
480 procedure pthread_exit (status : System.Address);
481 pragma Import (C, pthread_exit, "pthread_exit");
482
483 function pthread_self return pthread_t;
484 pragma Import (C, pthread_self, "pthread_self");
485
486 --------------------------
487 -- POSIX.1c Section 17 --
488 --------------------------
489
490 function pthread_setspecific
491 (key : pthread_key_t;
492 value : System.Address) return int;
493 pragma Import (C, pthread_setspecific, "pthread_setspecific");
494
495 function pthread_getspecific (key : pthread_key_t) return System.Address;
496 pragma Import (C, pthread_getspecific, "pthread_getspecific");
497
498 type destructor_pointer is access procedure (arg : System.Address);
499 pragma Convention (C, destructor_pointer);
500
501 function pthread_key_create
502 (key : access pthread_key_t;
503 destructor : destructor_pointer) return int;
504 pragma Import (C, pthread_key_create, "pthread_key_create");
505
506 private
507
508 type unsigned_int_array_8 is array (0 .. 7) of unsigned;
509 type sigset_t is record
510 sigset : unsigned_int_array_8;
511 end record;
512 pragma Convention (C_Pass_By_Copy, sigset_t);
513
514 type pid_t is new int;
515
516 type time_t is new long;
517
518 type timespec is record
519 tv_sec : time_t;
520 tv_nsec : long;
521 end record;
522 pragma Convention (C, timespec);
523
524 type clockid_t is new int;
525 CLOCK_REALTIME : constant clockid_t := 1;
526 CLOCK_MONOTONIC : constant clockid_t := CLOCK_REALTIME;
527
528 type pthread_attr_t is new int;
529 type pthread_condattr_t is new int;
530 type pthread_mutexattr_t is new int;
531 type pthread_t is new int;
532
533 type short_array is array (Natural range <>) of short;
534 type int_array is array (Natural range <>) of int;
535
536 type pthread_mutex_t is record
537 m_short : short_array (0 .. 1);
538 m_int : int;
539 m_int1 : int_array (0 .. 3);
540 m_pad : int;
541
542 m_ptr : int;
543 -- actually m_ptr is a void*, and on 32 bit ABI, m_pad is added so that
544 -- this field takes 64 bits. On 64 bit ABI, m_pad is gone, and m_ptr is
545 -- a 64 bit void*. Assume int'Size = 32.
546
547 m_int2 : int_array (0 .. 1);
548 m_int3 : int_array (0 .. 3);
549 m_short2 : short_array (0 .. 1);
550 m_int4 : int_array (0 .. 4);
551 m_int5 : int_array (0 .. 1);
552 end record;
553 for pthread_mutex_t'Alignment use System.Address'Alignment;
554 pragma Convention (C, pthread_mutex_t);
555
556 type pthread_cond_t is record
557 c_short : short_array (0 .. 1);
558 c_int : int;
559 c_int1 : int_array (0 .. 3);
560 m_pad : int;
561 m_ptr : int; -- see comment in pthread_mutex_t
562 c_int2 : int_array (0 .. 1);
563 c_int3 : int_array (0 .. 1);
564 c_int4 : int_array (0 .. 1);
565 end record;
566 for pthread_cond_t'Alignment use System.Address'Alignment;
567 pragma Convention (C, pthread_cond_t);
568
569 type pthread_key_t is new int;
570
571 end System.OS_Interface;