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3d79e10b31
* java/lang/natSystem.cc (init_properties): Only declare pwd_entry once. From Anthony Green. From-SVN: r26545
309 lines
8.2 KiB
C++
309 lines
8.2 KiB
C++
// natSystem.cc - Native code implementing System class.
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/* Copyright (C) 1998, 1999 Cygnus Solutions
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This file is part of libgcj.
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This software is copyrighted work licensed under the terms of the
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Libgcj License. Please consult the file "LIBGCJ_LICENSE" for
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details. */
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#include <config.h>
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#ifdef HAVE_GETPWUID_R
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#define _POSIX_PTHREAD_SEMANTICS
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#ifndef _REENTRANT
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#define _REENTRANT
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#endif
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#endif
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#include <string.h>
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#include <time.h>
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#include <stdlib.h>
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#ifdef HAVE_UNISTD_H
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#include <unistd.h>
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#endif
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#ifdef HAVE_SYS_TIME_H
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#include <sys/time.h>
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#endif
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#ifdef HAVE_PWD_H
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#include <pwd.h>
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#endif
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#include <errno.h>
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#include <cni.h>
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#include <jvm.h>
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#include <java/lang/System.h>
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#include <java/lang/Class.h>
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#include <java/lang/ArrayStoreException.h>
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#include <java/lang/ArrayIndexOutOfBoundsException.h>
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#include <java/lang/NullPointerException.h>
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#include <java/util/Properties.h>
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#include <java/io/PrintStream.h>
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#include <java/io/InputStream.h>
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#define SystemClass _CL_Q34java4lang6System
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extern java::lang::Class SystemClass;
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#if defined (ECOS)
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extern "C" unsigned long long _clock (void);
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#endif
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void
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java::lang::System::setErr (java::io::PrintStream *newErr)
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{
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checkSetIO ();
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// This violates `final' semantics. Oh well.
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err = newErr;
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}
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void
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java::lang::System::setIn (java::io::InputStream *newIn)
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{
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checkSetIO ();
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// This violates `final' semantics. Oh well.
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in = newIn;
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}
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void
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java::lang::System::setOut (java::io::PrintStream *newOut)
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{
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checkSetIO ();
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// This violates `final' semantics. Oh well.
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out = newOut;
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}
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void
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java::lang::System::arraycopy (jobject src, jint src_offset,
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jobject dst, jint dst_offset,
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jint count)
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{
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if (! src || ! dst)
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_Jv_Throw (new NullPointerException);
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jclass src_c = src->getClass();
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jclass dst_c = dst->getClass();
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jclass src_comp = src_c->getComponentType();
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jclass dst_comp = dst_c->getComponentType();
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if (! src_c->isArray() || ! dst_c->isArray()
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|| src_comp->isPrimitive() != dst_comp->isPrimitive()
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|| (src_comp->isPrimitive() && src_comp != dst_comp))
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_Jv_Throw (new ArrayStoreException);
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__JArray *src_a = (__JArray *) src;
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__JArray *dst_a = (__JArray *) dst;
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if (src_offset < 0 || dst_offset < 0 || count < 0
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|| src_offset + count > src_a->length
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|| dst_offset + count > dst_a->length)
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_Jv_Throw (new ArrayIndexOutOfBoundsException);
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// Do-nothing cases.
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if ((src == dst && src_offset == dst_offset)
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|| ! count)
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return;
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// If both are primitive, we can optimize trivially. If DST
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// components are always assignable from SRC components, then we
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// will never need to raise an error, and thus can do the
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// optimization. If source and destinations are the same, then we
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// know that the assignability premise always holds.
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const bool prim = src_comp->isPrimitive();
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if (prim || dst_comp->isAssignableFrom(src_comp) || src == dst)
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{
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const size_t size = (prim ? src_comp->size()
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: sizeof elements((jobjectArray)src)[0]);
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// In an ideal world we would do this via a virtual function in
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// __JArray. However, we can't have virtual functions in
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// __JArray due to the need to copy an array's virtual table in
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// _Jv_FindArrayClass.
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// We can't just pick a single subtype of __JArray to use due to
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// alignment concerns.
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char *src_elts = NULL;
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if (! prim)
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src_elts = (char *) elements ((jobjectArray) src);
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else if (src_comp == JvPrimClass (byte))
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src_elts = (char *) elements ((jbyteArray) src);
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else if (src_comp == JvPrimClass (short))
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src_elts = (char *) elements ((jshortArray) src);
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else if (src_comp == JvPrimClass (int))
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src_elts = (char *) elements ((jintArray) src);
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else if (src_comp == JvPrimClass (long))
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src_elts = (char *) elements ((jlongArray) src);
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else if (src_comp == JvPrimClass (boolean))
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src_elts = (char *) elements ((jbooleanArray) src);
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else if (src_comp == JvPrimClass (char))
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src_elts = (char *) elements ((jcharArray) src);
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else if (src_comp == JvPrimClass (float))
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src_elts = (char *) elements ((jfloatArray) src);
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else if (src_comp == JvPrimClass (double))
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src_elts = (char *) elements ((jdoubleArray) src);
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src_elts += size * src_offset;
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char *dst_elts = NULL;
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if (! prim)
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dst_elts = (char *) elements ((jobjectArray) dst);
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else if (dst_comp == JvPrimClass (byte))
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dst_elts = (char *) elements ((jbyteArray) dst);
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else if (dst_comp == JvPrimClass (short))
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dst_elts = (char *) elements ((jshortArray) dst);
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else if (dst_comp == JvPrimClass (int))
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dst_elts = (char *) elements ((jintArray) dst);
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else if (dst_comp == JvPrimClass (long))
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dst_elts = (char *) elements ((jlongArray) dst);
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else if (dst_comp == JvPrimClass (boolean))
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dst_elts = (char *) elements ((jbooleanArray) dst);
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else if (dst_comp == JvPrimClass (char))
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dst_elts = (char *) elements ((jcharArray) dst);
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else if (dst_comp == JvPrimClass (float))
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dst_elts = (char *) elements ((jfloatArray) dst);
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else if (dst_comp == JvPrimClass (double))
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dst_elts = (char *) elements ((jdoubleArray) dst);
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dst_elts += size * dst_offset;
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// We don't bother trying memcpy. It can't be worth the cost of
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// the check.
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memmove ((void *) dst_elts, (void *) src_elts, count * size);
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}
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else
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{
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jobject *src_elts = elements ((jobjectArray) src_a) + src_offset;
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jobject *dst_elts = elements ((jobjectArray) dst_a) + dst_offset;
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for (int i = 0; i < count; ++i)
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{
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if (*src_elts
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&& ! dst_comp->isAssignableFrom((*src_elts)->getClass()))
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_Jv_Throw (new ArrayStoreException);
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*dst_elts++ = *src_elts++;
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}
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}
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}
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jlong
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java::lang::System::currentTimeMillis (void)
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{
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jlong r;
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#if defined (HAVE_GETTIMEOFDAY)
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struct timeval tv;
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gettimeofday (&tv, NULL);
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r = (jlong) tv.tv_sec * 1000 + tv.tv_usec / 1000;
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#elif defined (HAVE_TIME)
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r = time (NULL) * 1000;
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#elif defined (HAVE_FTIME)
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struct timeb t;
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ftime (&t);
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r = t.time * 1000 + t.millitm;
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#elif defined (ECOS)
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r = _clock();
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#else
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// In the absence of any function, time remains forever fixed.
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r = 23;
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#endif
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return r;
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}
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jint
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java::lang::System::identityHashCode (jobject obj)
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{
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return _Jv_HashCode (obj);
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}
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void
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java::lang::System::init_properties (void)
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{
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{
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// We only need to synchronize around this gatekeeper.
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JvSynchronize sync (&SystemClass);
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if (prop_init)
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return;
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prop_init = true;
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}
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properties = new java::util::Properties ();
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// A convenience define.
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#define SET(Prop,Val) \
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properties->put(JvNewStringLatin1 (Prop), JvNewStringLatin1 (Val))
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SET ("java.version", "FIXME");
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SET ("java.vendor", "Cygnus Solutions");
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SET ("java.vendor.url", "http://www.cygnus.com/");
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// SET ("java.home", "FIXME");
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// SET ("java.class.version", "FIXME");
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// SET ("java.class.path", "FIXME");
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SET ("os.name", "FIXME");
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SET ("os.arch", "FIXME");
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SET ("os.version", "FIXME");
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SET ("file.encoding", "8859_1"); // FIXME
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#ifdef WIN32
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SET ("file.separator", "\\");
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SET ("path.separator", ";");
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SET ("line.separator", "\r\n");
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#else
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// Unix.
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SET ("file.separator", "/");
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SET ("path.separator", ":");
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SET ("line.separator", "\n");
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#endif
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#ifdef HAVE_PWD_H
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uid_t user_id = getuid ();
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struct passwd *pwd_entry;
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#ifdef HAVE_GETPWUID_R
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struct passwd pwd_r;
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size_t len_r = 200;
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char *buf_r = (char *) _Jv_AllocBytes (len_r);
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while (buf_r != NULL)
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{
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int r = getpwuid_r (user_id, &pwd_r, buf_r, len_r, &pwd_entry);
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if (r == 0)
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break;
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else if (r != ERANGE)
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{
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pwd_entry = NULL;
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break;
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}
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len_r *= 2;
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buf_r = (char *) _Jv_AllocBytes (len_r);
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}
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#else
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pwd_entry = getpwuid (user_id);
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#endif /* HAVE_GETPWUID_R */
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if (pwd_entry != NULL)
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{
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SET ("user.name", pwd_entry->pw_name);
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SET ("user.home", pwd_entry->pw_dir);
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}
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#endif /* HAVE_PWD_H */
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#ifdef HAVE_UNISTD_H
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/* Use getcwd to set "user.dir". */
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int buflen = 250;
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char *buffer = (char *) malloc (buflen);
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while (buffer != NULL)
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{
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if (getcwd (buffer, buflen) != NULL)
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{
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SET ("user.dir", buffer);
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break;
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}
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if (errno != ERANGE)
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break;
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buflen = 2 * buflen;
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buffer = (char *) realloc (buffer, buflen);
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}
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if (buffer != NULL)
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free (buffer);
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#endif
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}
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