237 lines
7.3 KiB
Ada
237 lines
7.3 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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-- B o d y --
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-- --
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-- Copyright (C) 1997-2006, Free Software Fundation, 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 a AIX (Native) version of this package
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pragma Polling (Off);
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-- Turn off polling, we do not want ATC polling to take place during
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-- tasking operations. It causes infinite loops and other problems.
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package body System.OS_Interface is
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use Interfaces.C;
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-----------------
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-- To_Duration --
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-----------------
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function To_Duration (TS : timespec) return Duration is
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begin
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return Duration (TS.tv_sec) + Duration (TS.tv_nsec) / 10#1#E9;
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end To_Duration;
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function To_Duration (TV : struct_timeval) return Duration is
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begin
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return Duration (TV.tv_sec) + Duration (TV.tv_usec) / 10#1#E6;
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end To_Duration;
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------------------------
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-- To_Target_Priority --
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------------------------
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function To_Target_Priority
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(Prio : System.Any_Priority) return Interfaces.C.int
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is
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begin
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-- Priorities on AIX are defined in the range 1 .. 127, so we
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-- map 0 .. 126 to 1 .. 127.
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return Interfaces.C.int (Prio) + 1;
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end To_Target_Priority;
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-----------------
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-- To_Timespec --
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-----------------
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function To_Timespec (D : Duration) return timespec is
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S : time_t;
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F : Duration;
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begin
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S := time_t (Long_Long_Integer (D));
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F := D - Duration (S);
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-- If F has negative value due to a round-up, adjust for positive F
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-- value.
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if F < 0.0 then
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S := S - 1;
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F := F + 1.0;
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end if;
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return timespec'(tv_sec => S,
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tv_nsec => long (Long_Long_Integer (F * 10#1#E9)));
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end To_Timespec;
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----------------
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-- To_Timeval --
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----------------
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function To_Timeval (D : Duration) return struct_timeval is
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S : long;
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F : Duration;
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begin
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S := long (Long_Long_Integer (D));
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F := D - Duration (S);
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-- If F has negative value due to a round-up, adjust for positive F
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-- value.
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if F < 0.0 then
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S := S - 1;
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F := F + 1.0;
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end if;
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return
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struct_timeval'
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(tv_sec => S,
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tv_usec => long (Long_Long_Integer (F * 10#1#E6)));
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end To_Timeval;
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-------------------
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-- clock_gettime --
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-------------------
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function clock_gettime
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(clock_id : clockid_t;
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tp : access timespec)
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return int
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is
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pragma Warnings (Off, clock_id);
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Result : int;
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tv : aliased struct_timeval;
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function gettimeofday
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(tv : access struct_timeval;
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tz : System.Address := System.Null_Address)
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return int;
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pragma Import (C, gettimeofday, "gettimeofday");
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begin
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Result := gettimeofday (tv'Unchecked_Access);
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tp.all := To_Timespec (To_Duration (tv));
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return Result;
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end clock_gettime;
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-----------------
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-- sched_yield --
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-----------------
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-- AIX Thread does not have sched_yield;
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function sched_yield return int is
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procedure pthread_yield;
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pragma Import (C, pthread_yield, "sched_yield");
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begin
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pthread_yield;
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return 0;
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end sched_yield;
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--------------------
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-- Get_Stack_Base --
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--------------------
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function Get_Stack_Base (thread : pthread_t) return Address is
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pragma Warnings (Off, thread);
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begin
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return Null_Address;
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end Get_Stack_Base;
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--------------------------
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-- PTHREAD_PRIO_INHERIT --
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--------------------------
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AIX_Version : Integer := 0;
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-- AIX version in the form xy for AIX version x.y (0 means not set)
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SYS_NMLN : constant := 32;
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-- AIX system constant used to define utsname, see sys/utsname.h
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subtype String_NMLN is String (1 .. SYS_NMLN);
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type utsname is record
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sysname : String_NMLN;
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nodename : String_NMLN;
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release : String_NMLN;
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version : String_NMLN;
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machine : String_NMLN;
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procserial : String_NMLN;
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end record;
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pragma Convention (C, utsname);
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procedure uname (name : out utsname);
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pragma Import (C, uname);
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function PTHREAD_PRIO_INHERIT return int is
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name : utsname;
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function Val (C : Character) return Integer;
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-- Transform a numeric character ('0' .. '9') to an integer
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---------
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-- Val --
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---------
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function Val (C : Character) return Integer is
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begin
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return Character'Pos (C) - Character'Pos ('0');
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end Val;
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-- Start of processing for PTHREAD_PRIO_INHERIT
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begin
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if AIX_Version = 0 then
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-- Set AIX_Version
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uname (name);
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AIX_Version := Val (name.version (1)) * 10 + Val (name.release (1));
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end if;
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if AIX_Version < 53 then
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-- Under AIX < 5.3, PTHREAD_PRIO_INHERIT is defined as 0 in pthread.h
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return 0;
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else
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-- Under AIX >= 5.3, PTHREAD_PRIO_INHERIT is defined as 3
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return 3;
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end if;
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end PTHREAD_PRIO_INHERIT;
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end System.OS_Interface;
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