174 lines
3.7 KiB
C
174 lines
3.7 KiB
C
![]() |
// java-cpool.h - Constant pool parsing header. -*- c++ -*-
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/* Copyright (C) 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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#ifndef __JAVA_CPOOL_H__
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#define __JAVA_CPOOL_H__
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#include <javaprims.h>
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// we rename these, to avoid polluting the name space
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#define JV_CONSTANT_Undefined (0L)
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#define JV_CONSTANT_Utf8 (1L)
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#define JV_CONSTANT_Unicode (2L)
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#define JV_CONSTANT_Integer (3L)
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#define JV_CONSTANT_Float (4L)
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#define JV_CONSTANT_Long (5L)
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#define JV_CONSTANT_Double (6L)
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#define JV_CONSTANT_Class (7L)
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#define JV_CONSTANT_String (8L)
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#define JV_CONSTANT_Fieldref (9L)
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#define JV_CONSTANT_Methodref (10L)
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#define JV_CONSTANT_InterfaceMethodref (11L)
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#define JV_CONSTANT_NameAndType (12L)
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#define JV_CONSTANT_ResolvedFlag (16L)
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#define JV_CONSTANT_ResolvedString (16L | 8L)
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#define JV_CONSTANT_ResolvedClass (16L | 7L)
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/* We use the following two operations uniformly for all put/get operations
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* in the runtime system (constant pool & stack), to assure that we keep
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* everything in the same format. The idea is, that these should be inlined
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* away, into just a simple store (for small data types, and a pair of stores
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* if double or long has alignment greater than void *. On an 64-bit
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* architecture, all operations should be simple stores; on a 32-bit
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* architecture it depends on the alignment requirement for the specific
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* type. */
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template <class T>
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static inline void _Jv_put (void *dst, T value)
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{
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#if 0
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if (sizeof (T) == 8 && __alignof__ (T) > __alignof__ (void*))
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{
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jint *v_dst = (jint*)(dst);
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jint *v_src = (jint*)&value;
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v_dst[0] = v_src[0];
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v_dst[1] = v_src[1];
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}
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else
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#endif
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{
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*((T*) (dst)) = value;
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}
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}
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template <class T>
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static inline T _Jv_get (void *src)
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{
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#if 0
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if (sizeof (T) == 8 && __alignof__ (T) > __alignof__ (void*))
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{
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T value;
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jint *v_dst = (jint*)&value;
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jint *v_src = (jint*)src;
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v_dst[0] = v_src[0];
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v_dst[1] = v_src[1];
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return value;
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}
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else
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#endif
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{
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return *((T*) (src));
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}
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}
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/** needed to keep the CONSTANT_XXXRef & CONSTANT_NameAndType entries */
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extern inline void
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_Jv_storeIndexes (void **data,
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_Jv_ushort index0,
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_Jv_ushort index1)
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{
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// accomodate 64bit machines...
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if (sizeof (void*) == (2 * sizeof (jint)))
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{
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((jint*)data)[0] = index0;
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((jint*)data)[1] = index0;
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}
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else
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{
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_Jv_put<jint>(data, ((jint)index0 << 16) | (jint)index1);
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}
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}
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extern inline void
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_Jv_loadIndexes (const void **data,
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_Jv_ushort& index0,
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_Jv_ushort& index1)
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{
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if (sizeof (void*) == (2*sizeof (jint)))
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{
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index0 = ((jint*)data)[0];
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index0 = ((jint*)data)[1];
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}
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else
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{
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jint udata = _Jv_get<jint>(data);
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_Jv_uint uindex0 = ((udata >> 16) & 0xffff);
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_Jv_uint uindex1 = udata & 0xffff;
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index0 = uindex0;
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index1 = uindex1;
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}
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}
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extern inline void
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_Jv_storeFloat (void **data, jfloat f)
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{
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_Jv_put<jfloat>(data, f);
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}
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extern inline jfloat
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_Jv_loadFloat (void **data)
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{
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return _Jv_get<jfloat>(data);
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}
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extern inline void
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_Jv_storeInt (void **data, jint i)
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{
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_Jv_put<jint>(data, i);
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}
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extern inline jint
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_Jv_loadInt (void **data)
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{
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return _Jv_get<jint>(data);
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}
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extern inline void
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_Jv_storeLong (void **data, jlong l)
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{
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return _Jv_put<jlong>(data, l);
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}
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extern inline jlong
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_Jv_loadLong (void **data)
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{
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return _Jv_get<jlong>(data);
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}
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extern inline void
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_Jv_storeDouble (void **data, jdouble d)
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{
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_Jv_put<jdouble>(data, d);
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}
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extern inline jdouble
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_Jv_loadDouble (void **data)
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{
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return _Jv_get<jdouble> (data);
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}
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#endif /* __JAVA_CPOOL_H__ */
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