1/*
2 * Copyright (c) 2005, 2012, Oracle and/or its affiliates. All rights reserved.
3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
4 *
5 * This code is free software; you can redistribute it and/or modify it
6 * under the terms of the GNU General Public License version 2 only, as
7 * published by the Free Software Foundation.  Oracle designates this
8 * particular file as subject to the "Classpath" exception as provided
9 * by Oracle in the LICENSE file that accompanied this code.
10 *
11 * This code is distributed in the hope that it will be useful, but WITHOUT
12 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
13 * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
14 * version 2 for more details (a copy is included in the LICENSE file that
15 * accompanied this code).
16 *
17 * You should have received a copy of the GNU General Public License version
18 * 2 along with this work; if not, write to the Free Software Foundation,
19 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
20 *
21 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
22 * or visit www.oracle.com if you need additional information or have any
23 * questions.
24 */
25
26/*
27 * This file is available under and governed by the GNU General Public
28 * License version 2 only, as published by the Free Software Foundation.
29 * However, the following notice accompanied the original version of this
30 * file:
31 *
32 * ASM: a very small and fast Java bytecode manipulation framework
33 * Copyright (c) 2000-2007 INRIA, France Telecom
34 * All rights reserved.
35 *
36 * Redistribution and use in source and binary forms, with or without
37 * modification, are permitted provided that the following conditions
38 * are met:
39 * 1. Redistributions of source code must retain the above copyright
40 *    notice, this list of conditions and the following disclaimer.
41 * 2. Redistributions in binary form must reproduce the above copyright
42 *    notice, this list of conditions and the following disclaimer in the
43 *    documentation and/or other materials provided with the distribution.
44 * 3. Neither the name of the copyright holders nor the names of its
45 *    contributors may be used to endorse or promote products derived from
46 *    this software without specific prior written permission.
47 *
48 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
49 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
50 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
51 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
52 * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
53 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
54 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
55 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
56 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
57 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
58 * THE POSSIBILITY OF SUCH DAMAGE.
59 */
60package com.sun.xml.internal.ws.org.objectweb.asm;
61
62/**
63 * Defines the JVM opcodes, access flags and array type codes. This interface
64 * does not define all the JVM opcodes because some opcodes are automatically
65 * handled. For example, the xLOAD and xSTORE opcodes are automatically replaced
66 * by xLOAD_n and xSTORE_n opcodes when possible. The xLOAD_n and xSTORE_n
67 * opcodes are therefore not defined in this interface. Likewise for LDC,
68 * automatically replaced by LDC_W or LDC2_W when necessary, WIDE, GOTO_W and
69 * JSR_W.
70 *
71 * @author Eric Bruneton
72 * @author Eugene Kuleshov
73 */
74public interface Opcodes {
75
76    // versions
77
78    int V1_1 = 3 << 16 | 45;
79    int V1_2 = 0 << 16 | 46;
80    int V1_3 = 0 << 16 | 47;
81    int V1_4 = 0 << 16 | 48;
82    int V1_5 = 0 << 16 | 49;
83    int V1_6 = 0 << 16 | 50;
84
85    // access flags
86
87    int ACC_PUBLIC = 0x0001; // class, field, method
88    int ACC_PRIVATE = 0x0002; // class, field, method
89    int ACC_PROTECTED = 0x0004; // class, field, method
90    int ACC_STATIC = 0x0008; // field, method
91    int ACC_FINAL = 0x0010; // class, field, method
92    int ACC_SUPER = 0x0020; // class
93    int ACC_SYNCHRONIZED = 0x0020; // method
94    int ACC_VOLATILE = 0x0040; // field
95    int ACC_BRIDGE = 0x0040; // method
96    int ACC_VARARGS = 0x0080; // method
97    int ACC_TRANSIENT = 0x0080; // field
98    int ACC_NATIVE = 0x0100; // method
99    int ACC_INTERFACE = 0x0200; // class
100    int ACC_ABSTRACT = 0x0400; // class, method
101    int ACC_STRICT = 0x0800; // method
102    int ACC_SYNTHETIC = 0x1000; // class, field, method
103    int ACC_ANNOTATION = 0x2000; // class
104    int ACC_ENUM = 0x4000; // class(?) field inner
105
106    // ASM specific pseudo access flags
107
108    int ACC_DEPRECATED = 131072; // class, field, method
109
110    // types for NEWARRAY
111
112    int T_BOOLEAN = 4;
113    int T_CHAR = 5;
114    int T_FLOAT = 6;
115    int T_DOUBLE = 7;
116    int T_BYTE = 8;
117    int T_SHORT = 9;
118    int T_INT = 10;
119    int T_LONG = 11;
120
121    // stack map frame types
122
123    /**
124     * Represents an expanded frame. See {@link ClassReader#EXPAND_FRAMES}.
125     */
126    int F_NEW = -1;
127
128    /**
129     * Represents a compressed frame with complete frame data.
130     */
131    int F_FULL = 0;
132
133    /**
134     * Represents a compressed frame where locals are the same as the locals in
135     * the previous frame, except that additional 1-3 locals are defined, and
136     * with an empty stack.
137     */
138    int F_APPEND = 1;
139
140    /**
141     * Represents a compressed frame where locals are the same as the locals in
142     * the previous frame, except that the last 1-3 locals are absent and with
143     * an empty stack.
144     */
145    int F_CHOP = 2;
146
147    /**
148     * Represents a compressed frame with exactly the same locals as the
149     * previous frame and with an empty stack.
150     */
151    int F_SAME = 3;
152
153    /**
154     * Represents a compressed frame with exactly the same locals as the
155     * previous frame and with a single value on the stack.
156     */
157    int F_SAME1 = 4;
158
159    Integer TOP = new Integer(0);
160    Integer INTEGER = new Integer(1);
161    Integer FLOAT = new Integer(2);
162    Integer DOUBLE = new Integer(3);
163    Integer LONG = new Integer(4);
164    Integer NULL = new Integer(5);
165    Integer UNINITIALIZED_THIS = new Integer(6);
166
167    // opcodes // visit method (- = idem)
168
169    int NOP = 0; // visitInsn
170    int ACONST_NULL = 1; // -
171    int ICONST_M1 = 2; // -
172    int ICONST_0 = 3; // -
173    int ICONST_1 = 4; // -
174    int ICONST_2 = 5; // -
175    int ICONST_3 = 6; // -
176    int ICONST_4 = 7; // -
177    int ICONST_5 = 8; // -
178    int LCONST_0 = 9; // -
179    int LCONST_1 = 10; // -
180    int FCONST_0 = 11; // -
181    int FCONST_1 = 12; // -
182    int FCONST_2 = 13; // -
183    int DCONST_0 = 14; // -
184    int DCONST_1 = 15; // -
185    int BIPUSH = 16; // visitIntInsn
186    int SIPUSH = 17; // -
187    int LDC = 18; // visitLdcInsn
188    // int LDC_W = 19; // -
189    // int LDC2_W = 20; // -
190    int ILOAD = 21; // visitVarInsn
191    int LLOAD = 22; // -
192    int FLOAD = 23; // -
193    int DLOAD = 24; // -
194    int ALOAD = 25; // -
195    // int ILOAD_0 = 26; // -
196    // int ILOAD_1 = 27; // -
197    // int ILOAD_2 = 28; // -
198    // int ILOAD_3 = 29; // -
199    // int LLOAD_0 = 30; // -
200    // int LLOAD_1 = 31; // -
201    // int LLOAD_2 = 32; // -
202    // int LLOAD_3 = 33; // -
203    // int FLOAD_0 = 34; // -
204    // int FLOAD_1 = 35; // -
205    // int FLOAD_2 = 36; // -
206    // int FLOAD_3 = 37; // -
207    // int DLOAD_0 = 38; // -
208    // int DLOAD_1 = 39; // -
209    // int DLOAD_2 = 40; // -
210    // int DLOAD_3 = 41; // -
211    // int ALOAD_0 = 42; // -
212    // int ALOAD_1 = 43; // -
213    // int ALOAD_2 = 44; // -
214    // int ALOAD_3 = 45; // -
215    int IALOAD = 46; // visitInsn
216    int LALOAD = 47; // -
217    int FALOAD = 48; // -
218    int DALOAD = 49; // -
219    int AALOAD = 50; // -
220    int BALOAD = 51; // -
221    int CALOAD = 52; // -
222    int SALOAD = 53; // -
223    int ISTORE = 54; // visitVarInsn
224    int LSTORE = 55; // -
225    int FSTORE = 56; // -
226    int DSTORE = 57; // -
227    int ASTORE = 58; // -
228    // int ISTORE_0 = 59; // -
229    // int ISTORE_1 = 60; // -
230    // int ISTORE_2 = 61; // -
231    // int ISTORE_3 = 62; // -
232    // int LSTORE_0 = 63; // -
233    // int LSTORE_1 = 64; // -
234    // int LSTORE_2 = 65; // -
235    // int LSTORE_3 = 66; // -
236    // int FSTORE_0 = 67; // -
237    // int FSTORE_1 = 68; // -
238    // int FSTORE_2 = 69; // -
239    // int FSTORE_3 = 70; // -
240    // int DSTORE_0 = 71; // -
241    // int DSTORE_1 = 72; // -
242    // int DSTORE_2 = 73; // -
243    // int DSTORE_3 = 74; // -
244    // int ASTORE_0 = 75; // -
245    // int ASTORE_1 = 76; // -
246    // int ASTORE_2 = 77; // -
247    // int ASTORE_3 = 78; // -
248    int IASTORE = 79; // visitInsn
249    int LASTORE = 80; // -
250    int FASTORE = 81; // -
251    int DASTORE = 82; // -
252    int AASTORE = 83; // -
253    int BASTORE = 84; // -
254    int CASTORE = 85; // -
255    int SASTORE = 86; // -
256    int POP = 87; // -
257    int POP2 = 88; // -
258    int DUP = 89; // -
259    int DUP_X1 = 90; // -
260    int DUP_X2 = 91; // -
261    int DUP2 = 92; // -
262    int DUP2_X1 = 93; // -
263    int DUP2_X2 = 94; // -
264    int SWAP = 95; // -
265    int IADD = 96; // -
266    int LADD = 97; // -
267    int FADD = 98; // -
268    int DADD = 99; // -
269    int ISUB = 100; // -
270    int LSUB = 101; // -
271    int FSUB = 102; // -
272    int DSUB = 103; // -
273    int IMUL = 104; // -
274    int LMUL = 105; // -
275    int FMUL = 106; // -
276    int DMUL = 107; // -
277    int IDIV = 108; // -
278    int LDIV = 109; // -
279    int FDIV = 110; // -
280    int DDIV = 111; // -
281    int IREM = 112; // -
282    int LREM = 113; // -
283    int FREM = 114; // -
284    int DREM = 115; // -
285    int INEG = 116; // -
286    int LNEG = 117; // -
287    int FNEG = 118; // -
288    int DNEG = 119; // -
289    int ISHL = 120; // -
290    int LSHL = 121; // -
291    int ISHR = 122; // -
292    int LSHR = 123; // -
293    int IUSHR = 124; // -
294    int LUSHR = 125; // -
295    int IAND = 126; // -
296    int LAND = 127; // -
297    int IOR = 128; // -
298    int LOR = 129; // -
299    int IXOR = 130; // -
300    int LXOR = 131; // -
301    int IINC = 132; // visitIincInsn
302    int I2L = 133; // visitInsn
303    int I2F = 134; // -
304    int I2D = 135; // -
305    int L2I = 136; // -
306    int L2F = 137; // -
307    int L2D = 138; // -
308    int F2I = 139; // -
309    int F2L = 140; // -
310    int F2D = 141; // -
311    int D2I = 142; // -
312    int D2L = 143; // -
313    int D2F = 144; // -
314    int I2B = 145; // -
315    int I2C = 146; // -
316    int I2S = 147; // -
317    int LCMP = 148; // -
318    int FCMPL = 149; // -
319    int FCMPG = 150; // -
320    int DCMPL = 151; // -
321    int DCMPG = 152; // -
322    int IFEQ = 153; // visitJumpInsn
323    int IFNE = 154; // -
324    int IFLT = 155; // -
325    int IFGE = 156; // -
326    int IFGT = 157; // -
327    int IFLE = 158; // -
328    int IF_ICMPEQ = 159; // -
329    int IF_ICMPNE = 160; // -
330    int IF_ICMPLT = 161; // -
331    int IF_ICMPGE = 162; // -
332    int IF_ICMPGT = 163; // -
333    int IF_ICMPLE = 164; // -
334    int IF_ACMPEQ = 165; // -
335    int IF_ACMPNE = 166; // -
336    int GOTO = 167; // -
337    int JSR = 168; // -
338    int RET = 169; // visitVarInsn
339    int TABLESWITCH = 170; // visiTableSwitchInsn
340    int LOOKUPSWITCH = 171; // visitLookupSwitch
341    int IRETURN = 172; // visitInsn
342    int LRETURN = 173; // -
343    int FRETURN = 174; // -
344    int DRETURN = 175; // -
345    int ARETURN = 176; // -
346    int RETURN = 177; // -
347    int GETSTATIC = 178; // visitFieldInsn
348    int PUTSTATIC = 179; // -
349    int GETFIELD = 180; // -
350    int PUTFIELD = 181; // -
351    int INVOKEVIRTUAL = 182; // visitMethodInsn
352    int INVOKESPECIAL = 183; // -
353    int INVOKESTATIC = 184; // -
354    int INVOKEINTERFACE = 185; // -
355    // int UNUSED = 186; // NOT VISITED
356    int NEW = 187; // visitTypeInsn
357    int NEWARRAY = 188; // visitIntInsn
358    int ANEWARRAY = 189; // visitTypeInsn
359    int ARRAYLENGTH = 190; // visitInsn
360    int ATHROW = 191; // -
361    int CHECKCAST = 192; // visitTypeInsn
362    int INSTANCEOF = 193; // -
363    int MONITORENTER = 194; // visitInsn
364    int MONITOREXIT = 195; // -
365    // int WIDE = 196; // NOT VISITED
366    int MULTIANEWARRAY = 197; // visitMultiANewArrayInsn
367    int IFNULL = 198; // visitJumpInsn
368    int IFNONNULL = 199; // -
369    // int GOTO_W = 200; // -
370    // int JSR_W = 201; // -
371}
372