source: vendor/gcc/3.2.2/libjava/include/java-interp.h

Last change on this file was 2, checked in by bird, 22 years ago

Initial revision

  • Property cvs2svn:cvs-rev set to 1.1
  • Property svn:eol-style set to native
  • Property svn:executable set to *
File size: 5.0 KB
Line 
1// java-interp.h - Header file for the bytecode interpreter. -*- c++ -*-
2
3/* Copyright (C) 1999, 2000, 2001 Free Software Foundation
4
5 This file is part of libgcj.
6
7This software is copyrighted work licensed under the terms of the
8Libgcj License. Please consult the file "LIBGCJ_LICENSE" for
9details. */
10
11#ifndef __JAVA_INTERP_H__
12#define __JAVA_INTERP_H__
13
14#include <jvm.h>
15#include <java-cpool.h>
16
17#ifdef INTERPRETER
18
19#pragma interface
20
21#include <java/lang/Class.h>
22#include <java/lang/ClassLoader.h>
23
24extern "C" {
25#include <ffi.h>
26}
27
28extern inline jboolean
29_Jv_IsInterpretedClass (jclass c)
30{
31 return (c->loader != 0);
32}
33
34struct _Jv_ResolvedMethod;
35
36void _Jv_DefineClass (jclass, jbyteArray, jint, jint);
37
38void _Jv_InitField (jobject, jclass, int);
39void * _Jv_AllocMethodInvocation (jsize size);
40int _Jv_count_arguments (_Jv_Utf8Const *signature,
41 jboolean staticp = true);
42void _Jv_VerifyMethod (_Jv_InterpMethod *method);
43
44/* FIXME: this should really be defined in some more generic place */
45#define ROUND(V, A) (((((unsigned) (V))-1) | ((A)-1))+1)
46
47/* the interpreter is written in C++, primarily because it makes it easy for
48 * the entire thing to be "friend" with class Class. */
49
50class _Jv_InterpClass;
51class _Jv_InterpMethod;
52class _Jv_InterpMethodInvocation;
53
54class _Jv_InterpException
55{
56 int start_pc;
57 int end_pc;
58 int handler_pc;
59 int handler_type;
60
61 friend class _Jv_ClassReader;
62 friend class _Jv_InterpMethod;
63 friend class _Jv_BytecodeVerifier;
64};
65
66// Base class for method representations. Subclasses are interpreted
67// and JNI methods.
68class _Jv_MethodBase
69{
70protected:
71 // The class which defined this method.
72 _Jv_InterpClass *defining_class;
73
74 // The method description.
75 _Jv_Method *self;
76
77 // Size of raw arguments.
78 _Jv_ushort args_raw_size;
79
80public:
81 _Jv_Method *get_method ()
82 {
83 return self;
84 }
85};
86
87class _Jv_InterpMethod : public _Jv_MethodBase
88{
89 _Jv_ushort max_stack;
90 _Jv_ushort max_locals;
91 int code_length;
92
93 _Jv_ushort exc_count;
94
95 unsigned char* bytecode ()
96 {
97 return
98 ((unsigned char*)this)
99 + ROUND((sizeof (_Jv_InterpMethod)
100 + exc_count*sizeof (_Jv_InterpException)), 4);
101 }
102
103 _Jv_InterpException * exceptions ()
104 {
105 return (_Jv_InterpException*) (this+1);
106 }
107
108 static size_t size (int exc_count, int code_length)
109 {
110 return
111 ROUND ((sizeof (_Jv_InterpMethod)
112 + (exc_count * sizeof (_Jv_InterpException))), 4)
113 + code_length;
114 }
115
116 // return the method's invocation pointer (a stub).
117 void *ncode ();
118 void continue1 (_Jv_InterpMethodInvocation *inv);
119
120 static void run_normal (ffi_cif*, void*, ffi_raw*, void*);
121 static void run_synch_object (ffi_cif*, void*, ffi_raw*, void*);
122 static void run_synch_class (ffi_cif*, void*, ffi_raw*, void*);
123
124 inline jobject run (ffi_cif*, void*, ffi_raw*,
125 _Jv_InterpMethodInvocation*);
126
127 bool find_exception (jobject ex,
128 _Jv_InterpMethodInvocation *inv);
129
130 public:
131 static void dump_object(jobject o);
132
133 friend class _Jv_ClassReader;
134 friend class _Jv_InterpMethodInvocation;
135 friend class _Jv_BytecodeVerifier;
136
137 friend void _Jv_PrepareClass(jclass);
138};
139
140class _Jv_InterpMethodInvocation {
141 _Jv_InterpMethod *running;
142 _Jv_word *sp;
143 unsigned char *pc;
144 _Jv_word state[0];
145
146 _Jv_word* stack_base () { return &state[0]; }
147 _Jv_word* local_base () { return &state[running->max_stack]; }
148
149 friend class _Jv_InterpMethod;
150};
151
152class _Jv_InterpClass : public java::lang::Class
153{
154 _Jv_MethodBase **interpreted_methods;
155 _Jv_ushort *field_initializers;
156
157 friend class _Jv_ClassReader;
158 friend class _Jv_InterpMethod;
159 friend void _Jv_PrepareClass(jclass);
160 friend void _Jv_InitField (jobject, jclass, int);
161#ifdef JV_MARKOBJ_DECL
162 friend JV_MARKOBJ_DECL;
163#endif
164
165 friend _Jv_MethodBase ** _Jv_GetFirstMethod (_Jv_InterpClass *klass);
166};
167
168extern inline _Jv_MethodBase **
169_Jv_GetFirstMethod (_Jv_InterpClass *klass)
170{
171 return klass->interpreted_methods;
172}
173
174struct _Jv_ResolvedMethod {
175 jint stack_item_count;
176 jint vtable_index;
177 jclass klass;
178 _Jv_Method* method;
179
180 // a resolved method holds the cif in-line, so that _Jv_MarkObj just needs
181 // to mark the resolved method to hold on to the cif. Some memory could be
182 // saved by keeping a cache of cif's, since many will be the same.
183 ffi_cif cif;
184 ffi_type * arg_types[0];
185};
186
187class _Jv_JNIMethod : public _Jv_MethodBase
188{
189 // The underlying function. If NULL we have to look for the
190 // function.
191 void *function;
192
193 // This is the CIF used by the JNI function.
194 ffi_cif jni_cif;
195
196 // These are the argument types used by the JNI function.
197 ffi_type **jni_arg_types;
198
199 // This function is used when making a JNI call from the interpreter.
200 static void call (ffi_cif *, void *, ffi_raw *, void *);
201
202 void *ncode ();
203
204 friend class _Jv_ClassReader;
205 friend void _Jv_PrepareClass(jclass);
206
207public:
208 // FIXME: this is ugly.
209 void set_function (void *f)
210 {
211 function = f;
212 }
213};
214
215#endif /* INTERPRETER */
216
217#endif /* __JAVA_INTERP_H__ */
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