602 lines
21 KiB
Ada
602 lines
21 KiB
Ada
------------------------------------------------------------------------------
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-- --
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-- GNAT RUN-TIME LIBRARY (GNARL) COMPONENTS --
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-- --
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-- S Y S T E M . O S _ I N T E R F A C E --
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-- --
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-- S p e c --
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-- --
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-- Copyright (C) 1991-1994, Florida State University --
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-- Copyright (C) 1995-2006, Free Software Foundation, Inc. --
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-- --
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-- GNARL is free software; you can redistribute it and/or modify it under --
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-- terms of the GNU General Public License as published by the Free Soft- --
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-- ware Foundation; either version 2, or (at your option) any later ver- --
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-- sion. GNARL is distributed in the hope that it will be useful, but WITH- --
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-- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
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-- or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License --
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-- for more details. You should have received a copy of the GNU General --
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-- Public License distributed with GNARL; see file COPYING. If not, write --
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-- to the Free Software Foundation, 51 Franklin Street, Fifth Floor, --
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-- Boston, MA 02110-1301, USA. --
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-- --
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-- As a special exception, if other files instantiate generics from this --
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-- unit, or you link this unit with other files to produce an executable, --
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-- this unit does not by itself cause the resulting executable to be --
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-- covered by the GNU General Public License. This exception does not --
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-- however invalidate any other reasons why the executable file might be --
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-- covered by the GNU Public License. --
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-- --
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-- GNARL was developed by the GNARL team at Florida State University. --
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-- Extensive contributions were provided by Ada Core Technologies, Inc. --
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-- --
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------------------------------------------------------------------------------
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-- This is the DEC Unix 4.0/5.1 version of this package
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-- This package encapsulates all direct interfaces to OS services
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-- that are needed by children of System.
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-- PLEASE DO NOT add any with-clauses to this package or remove the pragma
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-- Preelaborate. This package is designed to be a bottom-level (leaf) package.
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with Interfaces.C;
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with Unchecked_Conversion;
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package System.OS_Interface is
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pragma Preelaborate;
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pragma Linker_Options ("-lpthread");
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pragma Linker_Options ("-lmach");
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pragma Linker_Options ("-lexc");
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pragma Linker_Options ("-lrt");
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subtype int is Interfaces.C.int;
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subtype short is Interfaces.C.short;
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subtype long is Interfaces.C.long;
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subtype unsigned is Interfaces.C.unsigned;
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subtype unsigned_short is Interfaces.C.unsigned_short;
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subtype unsigned_long is Interfaces.C.unsigned_long;
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subtype unsigned_char is Interfaces.C.unsigned_char;
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subtype plain_char is Interfaces.C.plain_char;
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subtype size_t is Interfaces.C.size_t;
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subtype char_array is Interfaces.C.char_array;
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-----------
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-- Errno --
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-----------
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function errno return int;
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pragma Import (C, errno, "_Geterrno");
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EAGAIN : constant := 35;
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EINTR : constant := 4;
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EINVAL : constant := 22;
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ENOMEM : constant := 12;
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ETIMEDOUT : constant := 60;
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-------------
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-- Signals --
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-------------
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Max_Interrupt : constant := 48;
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type Signal is new int range 0 .. Max_Interrupt;
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for Signal'Size use int'Size;
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SIGHUP : constant := 1; -- hangup
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SIGINT : constant := 2; -- interrupt (rubout)
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SIGQUIT : constant := 3; -- quit (ASCD FS)
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SIGILL : constant := 4; -- illegal instruction (not reset)
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SIGTRAP : constant := 5; -- trace trap (not reset)
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SIGABRT : constant := 6; -- used by abort, replace SIGIOT in the future
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SIGIOT : constant := 6; -- abort (terminate) process
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SIGLOST : constant := 6; -- old BSD signal ??
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SIGEMT : constant := 7; -- EMT instruction
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SIGFPE : constant := 8; -- floating point exception
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SIGKILL : constant := 9; -- kill (cannot be caught or ignored)
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SIGBUS : constant := 10; -- bus error
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SIGSEGV : constant := 11; -- segmentation violation
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SIGSYS : constant := 12; -- bad argument to system call
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SIGPIPE : constant := 13; -- write on a pipe with no one to read it
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SIGALRM : constant := 14; -- alarm clock
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SIGTERM : constant := 15; -- software termination signal from kill
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SIGURG : constant := 16; -- urgent condition on IO channel
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SIGIOINT : constant := 16; -- printer to backend error signal
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SIGSTOP : constant := 17; -- stop (cannot be caught or ignored)
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SIGTSTP : constant := 18; -- user stop requested from tty
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SIGCONT : constant := 19; -- stopped process has been continued
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SIGCHLD : constant := 20; -- child status change
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SIGTTIN : constant := 21; -- background tty read attempted
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SIGTTOU : constant := 22; -- background tty write attempted
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SIGPOLL : constant := 23; -- I/O possible, or completed
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SIGIO : constant := 23; -- STREAMS version of SIGPOLL
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SIGAIO : constant := 23; -- base lan i/o
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SIGPTY : constant := 23; -- pty i/o
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SIGXCPU : constant := 24; -- CPU time limit exceeded
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SIGXFSZ : constant := 25; -- filesize limit exceeded
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SIGVTALRM : constant := 26; -- virtual timer expired
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SIGPROF : constant := 27; -- profiling timer expired
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SIGWINCH : constant := 28; -- window size change
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SIGINFO : constant := 29; -- information request
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SIGPWR : constant := 29; -- Power Fail/Restart -- SVID3/SVR4
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SIGUSR1 : constant := 30; -- user defined signal 1
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SIGUSR2 : constant := 31; -- user defined signal 2
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SIGRESV : constant := 32; -- reserved by Digital for future use
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SIGADAABORT : constant := SIGABRT;
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type Signal_Set is array (Natural range <>) of Signal;
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Unmasked : constant Signal_Set := (0 .. 0 => SIGTRAP);
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Reserved : constant Signal_Set := (SIGALRM, SIGABRT, SIGKILL, SIGSTOP);
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type sigset_t is private;
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function sigaddset (set : access sigset_t; sig : Signal) return int;
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pragma Import (C, sigaddset);
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function sigdelset (set : access sigset_t; sig : Signal) return int;
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pragma Import (C, sigdelset);
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function sigfillset (set : access sigset_t) return int;
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pragma Import (C, sigfillset);
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function sigismember (set : access sigset_t; sig : Signal) return int;
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pragma Import (C, sigismember);
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function sigemptyset (set : access sigset_t) return int;
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pragma Import (C, sigemptyset);
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type union_type_3 is new String (1 .. 116);
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type siginfo_t is record
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si_signo : int;
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si_errno : int;
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si_code : int;
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X_data : union_type_3;
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end record;
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for siginfo_t'Size use 8 * 128;
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pragma Convention (C, siginfo_t);
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type struct_sigaction is record
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sa_handler : System.Address;
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sa_mask : sigset_t;
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sa_flags : int;
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sa_signo : int;
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end record;
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pragma Convention (C, struct_sigaction);
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type struct_sigaction_ptr is access all struct_sigaction;
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SIG_BLOCK : constant := 1;
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SIG_UNBLOCK : constant := 2;
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SIG_SETMASK : constant := 3;
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SIG_DFL : constant := 0;
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SIG_IGN : constant := 1;
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SA_NODEFER : constant := 8;
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SA_SIGINFO : constant := 16#40#;
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function sigaction
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(sig : Signal;
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act : struct_sigaction_ptr;
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oact : struct_sigaction_ptr) return int;
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pragma Import (C, sigaction);
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----------
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-- Time --
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----------
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type timespec is private;
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function nanosleep (rqtp, rmtp : access timespec) return int;
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pragma Import (C, nanosleep);
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type clockid_t is private;
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CLOCK_REALTIME : constant clockid_t;
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function clock_gettime
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(clock_id : clockid_t;
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tp : access timespec) return int;
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pragma Import (C, clock_gettime);
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function To_Duration (TS : timespec) return Duration;
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pragma Inline (To_Duration);
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function To_Timespec (D : Duration) return timespec;
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pragma Inline (To_Timespec);
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type struct_timezone is record
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tz_minuteswest : int;
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tz_dsttime : int;
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end record;
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pragma Convention (C, struct_timezone);
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type struct_timeval is private;
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-- This is needed on systems that do not have clock_gettime()
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-- but do have gettimeofday().
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function To_Duration (TV : struct_timeval) return Duration;
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pragma Inline (To_Duration);
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function To_Timeval (D : Duration) return struct_timeval;
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pragma Inline (To_Timeval);
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-------------------------
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-- Priority Scheduling --
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-------------------------
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SCHED_FIFO : constant := 1;
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SCHED_RR : constant := 2;
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SCHED_OTHER : constant := 3;
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SCHED_LFI : constant := 5;
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-------------
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-- Process --
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-------------
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type pid_t is private;
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function kill (pid : pid_t; sig : Signal) return int;
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pragma Import (C, kill);
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function getpid return pid_t;
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pragma Import (C, getpid);
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BIND_NO_INHERIT : constant := 1;
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function bind_to_cpu
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(pid : pid_t;
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cpu_mask : unsigned_long;
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flag : unsigned_long := BIND_NO_INHERIT) return int;
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pragma Import (C, bind_to_cpu);
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-------------
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-- Threads --
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-------------
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type Thread_Body is access
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function (arg : System.Address) return System.Address;
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function Thread_Body_Access is new
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Unchecked_Conversion (System.Address, Thread_Body);
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type pthread_t is private;
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subtype Thread_Id is pthread_t;
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type pthread_mutex_t is limited private;
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type pthread_cond_t is limited private;
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type pthread_attr_t is limited private;
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type pthread_mutexattr_t is limited private;
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type pthread_condattr_t is limited private;
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type pthread_key_t is private;
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PTHREAD_CREATE_DETACHED : constant := 1;
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PTHREAD_SCOPE_PROCESS : constant := 0;
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PTHREAD_SCOPE_SYSTEM : constant := 1;
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PTHREAD_EXPLICIT_SCHED : constant := 1;
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-----------
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-- Stack --
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-----------
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Stack_Base_Available : constant Boolean := False;
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-- Indicates wether the stack base is available on this target.
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function Get_Stack_Base (thread : pthread_t) return Address;
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pragma Inline (Get_Stack_Base);
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-- returns the stack base of the specified thread.
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-- Only call this function when Stack_Base_Available is True.
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function Get_Page_Size return size_t;
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function Get_Page_Size return Address;
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pragma Import (C, Get_Page_Size, "getpagesize");
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-- returns the size of a page, or 0 if this is not relevant on this
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-- target
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PROT_NONE : constant := 0;
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PROT_READ : constant := 1;
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PROT_WRITE : constant := 2;
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PROT_EXEC : constant := 4;
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PROT_ALL : constant := PROT_READ + PROT_WRITE + PROT_EXEC;
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PROT_ON : constant := PROT_READ;
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PROT_OFF : constant := PROT_ALL;
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function mprotect (addr : Address; len : size_t; prot : int) return int;
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pragma Import (C, mprotect);
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procedure Hide_Yellow_Zone;
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-- Every thread except the initial one features an overflow warning area
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-- just above the overflow guard area on the stack. They are called
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-- the Yellow Zone and the Red Zone respectively. This procedure hides
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-- the former so that the latter could be exposed to stack probing.
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---------------------------------------
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-- Nonstandard Thread Initialization --
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---------------------------------------
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procedure pthread_init;
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pragma Inline (pthread_init);
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-- This is a dummy procedure to share some GNULLI files
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-------------------------
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-- POSIX.1c Section 3 --
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-------------------------
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function sigwait
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(set : access sigset_t;
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sig : access Signal) return int;
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pragma Import (C, sigwait, "__sigwaitd10");
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function pthread_kill
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(thread : pthread_t;
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sig : Signal) return int;
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pragma Import (C, pthread_kill);
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function pthread_sigmask
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(how : int;
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set : access sigset_t;
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oset : access sigset_t) return int;
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pragma Import (C, pthread_sigmask);
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--------------------------
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-- POSIX.1c Section 11 --
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--------------------------
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function pthread_mutexattr_init (attr : access pthread_mutexattr_t)
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return int;
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pragma Import (C, pthread_mutexattr_init);
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function pthread_mutexattr_destroy
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(attr : access pthread_mutexattr_t) return int;
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pragma Import (C, pthread_mutexattr_destroy);
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function pthread_mutex_init
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(mutex : access pthread_mutex_t;
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attr : access pthread_mutexattr_t) return int;
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pragma Import (C, pthread_mutex_init, "__pthread_mutex_init");
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function pthread_mutex_destroy (mutex : access pthread_mutex_t) return int;
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pragma Import (C, pthread_mutex_destroy, "__pthread_mutex_destroy");
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function pthread_mutex_lock (mutex : access pthread_mutex_t) return int;
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pragma Import (C, pthread_mutex_lock, "__pthread_mutex_lock");
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function pthread_mutex_unlock (mutex : access pthread_mutex_t) return int;
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pragma Import (C, pthread_mutex_unlock, "__pthread_mutex_unlock");
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function pthread_condattr_init
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(attr : access pthread_condattr_t) return int;
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pragma Import (C, pthread_condattr_init);
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function pthread_condattr_destroy
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(attr : access pthread_condattr_t) return int;
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pragma Import (C, pthread_condattr_destroy);
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function pthread_cond_init
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(cond : access pthread_cond_t;
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attr : access pthread_condattr_t) return int;
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pragma Import (C, pthread_cond_init, "__pthread_cond_init");
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function pthread_cond_destroy (cond : access pthread_cond_t) return int;
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pragma Import (C, pthread_cond_destroy, "__pthread_cond_destroy");
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function pthread_cond_signal (cond : access pthread_cond_t) return int;
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pragma Import (C, pthread_cond_signal, "__pthread_cond_signal");
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function pthread_cond_wait
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(cond : access pthread_cond_t;
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mutex : access pthread_mutex_t) return int;
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pragma Import (C, pthread_cond_wait, "__pthread_cond_wait");
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function pthread_cond_timedwait
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(cond : access pthread_cond_t;
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mutex : access pthread_mutex_t;
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abstime : access timespec) return int;
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pragma Import (C, pthread_cond_timedwait, "__pthread_cond_timedwait");
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--------------------------
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-- POSIX.1c Section 13 --
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--------------------------
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function pthread_mutexattr_setprotocol
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(attr : access pthread_mutexattr_t;
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protocol : int) return int;
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pragma Import (C, pthread_mutexattr_setprotocol);
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function pthread_mutexattr_setprioceiling
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(attr : access pthread_mutexattr_t;
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prioceiling : int) return int;
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pragma Import (C, pthread_mutexattr_setprioceiling);
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type struct_sched_param is record
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sched_priority : int; -- scheduling priority
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end record;
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function pthread_setschedparam
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(thread : pthread_t;
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policy : int;
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param : access struct_sched_param) return int;
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pragma Import (C, pthread_setschedparam);
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function pthread_attr_setscope
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(attr : access pthread_attr_t;
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contentionscope : int) return int;
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pragma Import (C, pthread_attr_setscope);
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function pthread_attr_setinheritsched
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(attr : access pthread_attr_t;
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inheritsched : int) return int;
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pragma Import (C, pthread_attr_setinheritsched,
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"__pthread_attr_setinheritsched");
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function pthread_attr_setschedpolicy
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(attr : access pthread_attr_t; policy : int) return int;
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pragma Import (C, pthread_attr_setschedpolicy);
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function pthread_attr_setschedparam
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(attr : access pthread_attr_t;
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sched_param : access struct_sched_param) return int;
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pragma Import (C, pthread_attr_setschedparam);
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function sched_yield return int;
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pragma Import (C, sched_yield);
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--------------------------
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-- P1003.1c Section 16 --
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--------------------------
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function pthread_attr_init (attributes : access pthread_attr_t)
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return int;
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pragma Import (C, pthread_attr_init);
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function pthread_attr_destroy (attributes : access pthread_attr_t)
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return int;
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pragma Import (C, pthread_attr_destroy);
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function pthread_attr_setdetachstate
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(attr : access pthread_attr_t;
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detachstate : int) return int;
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pragma Import (C, pthread_attr_setdetachstate);
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function pthread_attr_setstacksize
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(attr : access pthread_attr_t;
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stacksize : size_t) return int;
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pragma Import (C, pthread_attr_setstacksize, "__pthread_attr_setstacksize");
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function pthread_create
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(thread : access pthread_t;
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attributes : access pthread_attr_t;
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start_routine : Thread_Body;
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arg : System.Address) return int;
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pragma Import (C, pthread_create, "__pthread_create");
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procedure pthread_exit (status : System.Address);
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pragma Import (C, pthread_exit, "__pthread_exit");
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function pthread_self return pthread_t;
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pragma Inline (pthread_self);
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--------------------------
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-- POSIX.1c Section 17 --
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--------------------------
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function pthread_setspecific
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(key : pthread_key_t; value : System.Address) return int;
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pragma Import (C, pthread_setspecific, "__pthread_setspecific");
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function pthread_getspecific (key : pthread_key_t) return System.Address;
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pragma Import (C, pthread_getspecific, "__pthread_getspecific");
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type destructor_pointer is access procedure (arg : System.Address);
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function pthread_key_create
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(key : access pthread_key_t;
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destructor : destructor_pointer) return int;
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pragma Import (C, pthread_key_create);
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private
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type sigset_t is new unsigned_long;
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type pid_t is new int;
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type time_t is new int;
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type timespec is record
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tv_sec : time_t;
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tv_nsec : long;
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end record;
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pragma Convention (C, timespec);
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type clockid_t is new int;
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CLOCK_REALTIME : constant clockid_t := 1;
|
|
|
|
type struct_timeval is record
|
|
tv_sec : time_t;
|
|
tv_usec : time_t;
|
|
end record;
|
|
pragma Convention (C, struct_timeval);
|
|
|
|
type unsigned_long_array is array (Natural range <>) of unsigned_long;
|
|
|
|
type pthread_t is new System.Address;
|
|
|
|
type pthread_teb_t is record
|
|
reserved1 : System.Address;
|
|
reserved2 : System.Address;
|
|
size : unsigned_short;
|
|
version : unsigned_char;
|
|
reserved3 : unsigned_char;
|
|
external : unsigned_char;
|
|
reserved4 : char_array (0 .. 1);
|
|
creator : unsigned_char;
|
|
sequence : unsigned_long;
|
|
reserved5 : unsigned_long_array (0 .. 1);
|
|
per_kt_area : System.Address;
|
|
stack_base : System.Address;
|
|
stack_reserve : System.Address;
|
|
stack_yellow : System.Address;
|
|
stack_guard : System.Address;
|
|
stack_size : unsigned_long;
|
|
tsd_values : System.Address;
|
|
tsd_count : unsigned_long;
|
|
reserved6 : unsigned;
|
|
reserved7 : unsigned;
|
|
thread_flags : unsigned;
|
|
thd_errno : int;
|
|
stack_hiwater : System.Address;
|
|
home_rad : unsigned_long;
|
|
end record;
|
|
pragma Convention (C, pthread_teb_t);
|
|
|
|
type pthread_cond_t is record
|
|
state : unsigned;
|
|
valid : unsigned;
|
|
name : System.Address;
|
|
arg : unsigned;
|
|
reserved1 : unsigned;
|
|
sequence : unsigned_long;
|
|
block : System.Address;
|
|
end record;
|
|
pragma Convention (C, pthread_cond_t);
|
|
|
|
type pthread_attr_t is record
|
|
valid : long;
|
|
name : System.Address;
|
|
arg : unsigned_long;
|
|
reserved : unsigned_long_array (0 .. 18);
|
|
end record;
|
|
pragma Convention (C, pthread_attr_t);
|
|
|
|
type pthread_mutex_t is record
|
|
lock : unsigned;
|
|
valid : unsigned;
|
|
name : System.Address;
|
|
arg : unsigned;
|
|
depth : unsigned;
|
|
sequence : unsigned_long;
|
|
owner : unsigned_long;
|
|
block : System.Address;
|
|
end record;
|
|
for pthread_mutex_t'Size use 8 * 48;
|
|
pragma Convention (C, pthread_mutex_t);
|
|
|
|
type pthread_mutexattr_t is record
|
|
valid : long;
|
|
reserved : unsigned_long_array (0 .. 14);
|
|
end record;
|
|
pragma Convention (C, pthread_mutexattr_t);
|
|
|
|
type pthread_condattr_t is record
|
|
valid : long;
|
|
reserved : unsigned_long_array (0 .. 12);
|
|
end record;
|
|
pragma Convention (C, pthread_condattr_t);
|
|
|
|
type pthread_key_t is new unsigned;
|
|
|
|
end System.OS_Interface;
|