Mercurial > hg > truffle
annotate src/share/vm/interpreter/rewriter.cpp @ 15177:66e3af78ea96
HSAIL: added safepoint support
Contributed-by: Eric Caspole <eric.caspole@amd.com>
author | Doug Simon <doug.simon@oracle.com> |
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date | Thu, 17 Apr 2014 00:44:32 +0200 |
parents | 4ca6dc0799b6 |
children | 52b4284cb496 |
rev | line source |
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0 | 1 /* |
14909 | 2 * Copyright (c) 1998, 2013, Oracle and/or its affiliates. All rights reserved. |
0 | 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. | |
8 * | |
9 * This code is distributed in the hope that it will be useful, but WITHOUT | |
10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or | |
11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License | |
12 * version 2 for more details (a copy is included in the LICENSE file that | |
13 * accompanied this code). | |
14 * | |
15 * You should have received a copy of the GNU General Public License version | |
16 * 2 along with this work; if not, write to the Free Software Foundation, | |
17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. | |
18 * | |
1552
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19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA |
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20 * or visit www.oracle.com if you need additional information or have any |
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21 * questions. |
0 | 22 * |
23 */ | |
24 | |
1972 | 25 #include "precompiled.hpp" |
26 #include "interpreter/bytecodes.hpp" | |
27 #include "interpreter/interpreter.hpp" | |
28 #include "interpreter/rewriter.hpp" | |
29 #include "memory/gcLocker.hpp" | |
30 #include "memory/resourceArea.hpp" | |
31 #include "oops/generateOopMap.hpp" | |
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32 #include "prims/methodHandles.hpp" |
0 | 33 |
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34 // Computes a CPC map (new_index -> original_index) for constant pool entries |
0 | 35 // that are referred to by the interpreter at runtime via the constant pool cache. |
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36 // Also computes a CP map (original_index -> new_index). |
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37 // Marks entries in CP which require additional processing. |
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38 void Rewriter::compute_index_maps() { |
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39 const int length = _pool->length(); |
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40 init_maps(length); |
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41 bool saw_mh_symbol = false; |
0 | 42 for (int i = 0; i < length; i++) { |
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43 int tag = _pool->tag_at(i).value(); |
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44 switch (tag) { |
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45 case JVM_CONSTANT_InterfaceMethodref: |
0 | 46 case JVM_CONSTANT_Fieldref : // fall through |
47 case JVM_CONSTANT_Methodref : // fall through | |
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48 add_cp_cache_entry(i); |
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49 break; |
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50 case JVM_CONSTANT_String: |
1602 | 51 case JVM_CONSTANT_MethodHandle : // fall through |
52 case JVM_CONSTANT_MethodType : // fall through | |
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53 add_resolved_references_entry(i); |
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54 break; |
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55 case JVM_CONSTANT_Utf8: |
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56 if (_pool->symbol_at(i) == vmSymbols::java_lang_invoke_MethodHandle()) |
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57 saw_mh_symbol = true; |
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58 break; |
0 | 59 } |
60 } | |
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61 |
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62 // Record limits of resolved reference map for constant pool cache indices |
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63 record_map_limits(); |
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64 |
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65 guarantee((int)_cp_cache_map.length()-1 <= (int)((u2)-1), |
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66 "all cp cache indexes fit in a u2"); |
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67 |
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68 if (saw_mh_symbol) |
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69 _method_handle_invokers.initialize(length, (int)0); |
0 | 70 } |
71 | |
3404 | 72 // Unrewrite the bytecodes if an error occurs. |
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73 void Rewriter::restore_bytecodes() { |
3404 | 74 int len = _methods->length(); |
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75 bool invokespecial_error = false; |
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77 for (int i = len-1; i >= 0; i--) { | |
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78 Method* method = _methods->at(i); |
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79 scan_method(method, true, &invokespecial_error); |
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80 assert(!invokespecial_error, "reversing should not get an invokespecial error"); |
3404 | 81 } |
82 } | |
0 | 83 |
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84 // Creates a constant pool cache given a CPC map |
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85 void Rewriter::make_constant_pool_cache(TRAPS) { |
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86 ClassLoaderData* loader_data = _pool->pool_holder()->class_loader_data(); |
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87 ConstantPoolCache* cache = |
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88 ConstantPoolCache::allocate(loader_data, _cp_cache_map, |
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89 _invokedynamic_cp_cache_map, |
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90 _invokedynamic_references_map, CHECK); |
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91 |
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92 // initialize object cache in constant pool |
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93 _pool->initialize_resolved_references(loader_data, _resolved_references_map, |
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94 _resolved_reference_limit, |
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95 CHECK); |
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96 _pool->set_cache(cache); |
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97 cache->set_constant_pool(_pool()); |
0 | 98 } |
99 | |
100 | |
101 | |
102 // The new finalization semantics says that registration of | |
103 // finalizable objects must be performed on successful return from the | |
104 // Object.<init> constructor. We could implement this trivially if | |
105 // <init> were never rewritten but since JVMTI allows this to occur, a | |
106 // more complicated solution is required. A special return bytecode | |
107 // is used only by Object.<init> to signal the finalization | |
108 // registration point. Additionally local 0 must be preserved so it's | |
109 // available to pass to the registration function. For simplicty we | |
110 // require that local 0 is never overwritten so it's available as an | |
111 // argument for registration. | |
112 | |
113 void Rewriter::rewrite_Object_init(methodHandle method, TRAPS) { | |
114 RawBytecodeStream bcs(method); | |
115 while (!bcs.is_last_bytecode()) { | |
116 Bytecodes::Code opcode = bcs.raw_next(); | |
117 switch (opcode) { | |
118 case Bytecodes::_return: *bcs.bcp() = Bytecodes::_return_register_finalizer; break; | |
119 | |
120 case Bytecodes::_istore: | |
121 case Bytecodes::_lstore: | |
122 case Bytecodes::_fstore: | |
123 case Bytecodes::_dstore: | |
124 case Bytecodes::_astore: | |
125 if (bcs.get_index() != 0) continue; | |
126 | |
127 // fall through | |
128 case Bytecodes::_istore_0: | |
129 case Bytecodes::_lstore_0: | |
130 case Bytecodes::_fstore_0: | |
131 case Bytecodes::_dstore_0: | |
132 case Bytecodes::_astore_0: | |
133 THROW_MSG(vmSymbols::java_lang_IncompatibleClassChangeError(), | |
134 "can't overwrite local 0 in Object.<init>"); | |
135 break; | |
136 } | |
137 } | |
138 } | |
139 | |
140 | |
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141 // Rewrite a classfile-order CP index into a native-order CPC index. |
3404 | 142 void Rewriter::rewrite_member_reference(address bcp, int offset, bool reverse) { |
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143 address p = bcp + offset; |
3404 | 144 if (!reverse) { |
145 int cp_index = Bytes::get_Java_u2(p); | |
146 int cache_index = cp_entry_to_cp_cache(cp_index); | |
147 Bytes::put_native_u2(p, cache_index); | |
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148 if (!_method_handle_invokers.is_empty()) |
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149 maybe_rewrite_invokehandle(p - 1, cp_index, cache_index, reverse); |
3404 | 150 } else { |
151 int cache_index = Bytes::get_native_u2(p); | |
152 int pool_index = cp_cache_entry_pool_index(cache_index); | |
153 Bytes::put_Java_u2(p, pool_index); | |
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154 if (!_method_handle_invokers.is_empty()) |
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155 maybe_rewrite_invokehandle(p - 1, pool_index, cache_index, reverse); |
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156 } |
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157 } |
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158 |
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159 // If the constant pool entry for invokespecial is InterfaceMethodref, |
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160 // we need to add a separate cpCache entry for its resolution, because it is |
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161 // different than the resolution for invokeinterface with InterfaceMethodref. |
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162 // These cannot share cpCache entries. It's unclear if all invokespecial to |
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163 // InterfaceMethodrefs would resolve to the same thing so a new cpCache entry |
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164 // is created for each one. This was added with lambda. |
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165 void Rewriter::rewrite_invokespecial(address bcp, int offset, bool reverse, bool* invokespecial_error) { |
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166 address p = bcp + offset; |
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167 if (!reverse) { |
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168 int cp_index = Bytes::get_Java_u2(p); |
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169 if (_pool->tag_at(cp_index).is_interface_method()) { |
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170 int cache_index = add_invokespecial_cp_cache_entry(cp_index); |
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171 if (cache_index != (int)(jushort) cache_index) { |
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172 *invokespecial_error = true; |
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173 } |
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174 Bytes::put_native_u2(p, cache_index); |
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175 } else { |
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176 rewrite_member_reference(bcp, offset, reverse); |
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177 } |
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178 } else { |
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179 rewrite_member_reference(bcp, offset, reverse); |
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180 } |
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181 } |
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182 |
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183 |
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184 // Adjust the invocation bytecode for a signature-polymorphic method (MethodHandle.invoke, etc.) |
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185 void Rewriter::maybe_rewrite_invokehandle(address opc, int cp_index, int cache_index, bool reverse) { |
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186 if (!reverse) { |
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187 if ((*opc) == (u1)Bytecodes::_invokevirtual || |
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188 // allow invokespecial as an alias, although it would be very odd: |
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189 (*opc) == (u1)Bytecodes::_invokespecial) { |
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190 assert(_pool->tag_at(cp_index).is_method(), "wrong index"); |
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191 // Determine whether this is a signature-polymorphic method. |
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192 if (cp_index >= _method_handle_invokers.length()) return; |
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193 int status = _method_handle_invokers[cp_index]; |
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194 assert(status >= -1 && status <= 1, "oob tri-state"); |
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195 if (status == 0) { |
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196 if (_pool->klass_ref_at_noresolve(cp_index) == vmSymbols::java_lang_invoke_MethodHandle() && |
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197 MethodHandles::is_signature_polymorphic_name(SystemDictionary::MethodHandle_klass(), |
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198 _pool->name_ref_at(cp_index))) { |
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199 // we may need a resolved_refs entry for the appendix |
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200 add_invokedynamic_resolved_references_entries(cp_index, cache_index); |
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201 status = +1; |
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202 } else { |
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203 status = -1; |
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204 } |
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205 _method_handle_invokers[cp_index] = status; |
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206 } |
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207 // We use a special internal bytecode for such methods (if non-static). |
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208 // The basic reason for this is that such methods need an extra "appendix" argument |
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209 // to transmit the call site's intended call type. |
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210 if (status > 0) { |
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211 (*opc) = (u1)Bytecodes::_invokehandle; |
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212 } |
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213 } |
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214 } else { |
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215 // Do not need to look at cp_index. |
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216 if ((*opc) == (u1)Bytecodes::_invokehandle) { |
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217 (*opc) = (u1)Bytecodes::_invokevirtual; |
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218 // Ignore corner case of original _invokespecial instruction. |
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219 // This is safe because (a) the signature polymorphic method was final, and |
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220 // (b) the implementation of MethodHandle will not call invokespecial on it. |
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221 } |
3404 | 222 } |
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223 } |
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224 |
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225 |
3404 | 226 void Rewriter::rewrite_invokedynamic(address bcp, int offset, bool reverse) { |
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227 address p = bcp + offset; |
3404 | 228 assert(p[-1] == Bytecodes::_invokedynamic, "not invokedynamic bytecode"); |
229 if (!reverse) { | |
230 int cp_index = Bytes::get_Java_u2(p); | |
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231 int cache_index = add_invokedynamic_cp_cache_entry(cp_index); |
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232 int resolved_index = add_invokedynamic_resolved_references_entries(cp_index, cache_index); |
3404 | 233 // Replace the trailing four bytes with a CPC index for the dynamic |
234 // call site. Unlike other CPC entries, there is one per bytecode, | |
235 // not just one per distinct CP entry. In other words, the | |
236 // CPC-to-CP relation is many-to-one for invokedynamic entries. | |
237 // This means we must use a larger index size than u2 to address | |
238 // all these entries. That is the main reason invokedynamic | |
239 // must have a five-byte instruction format. (Of course, other JVM | |
240 // implementations can use the bytes for other purposes.) | |
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241 // Note: We use native_u4 format exclusively for 4-byte indexes. |
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242 Bytes::put_native_u4(p, ConstantPool::encode_invokedynamic_index(cache_index)); |
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243 // add the bcp in case we need to patch this bytecode if we also find a |
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244 // invokespecial/InterfaceMethodref in the bytecode stream |
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245 _patch_invokedynamic_bcps->push(p); |
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246 _patch_invokedynamic_refs->push(resolved_index); |
3404 | 247 } else { |
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248 int cache_index = ConstantPool::decode_invokedynamic_index( |
3404 | 249 Bytes::get_native_u4(p)); |
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250 // We will reverse the bytecode rewriting _after_ adjusting them. |
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251 // Adjust the cache index by offset to the invokedynamic entries in the |
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252 // cpCache plus the delta if the invokedynamic bytecodes were adjusted. |
14909 | 253 cache_index = cp_cache_delta() + _first_iteration_cp_cache_limit; |
254 int cp_index = invokedynamic_cp_cache_entry_pool_index(cache_index); | |
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255 assert(_pool->tag_at(cp_index).is_invoke_dynamic(), "wrong index"); |
3404 | 256 // zero out 4 bytes |
257 Bytes::put_Java_u4(p, 0); | |
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258 Bytes::put_Java_u2(p, cp_index); |
3404 | 259 } |
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260 } |
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261 |
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262 void Rewriter::patch_invokedynamic_bytecodes() { |
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263 // If the end of the cp_cache is the same as after initializing with the |
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264 // cpool, nothing needs to be done. Invokedynamic bytecodes are at the |
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265 // correct offsets. ie. no invokespecials added |
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266 int delta = cp_cache_delta(); |
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267 if (delta > 0) { |
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268 int length = _patch_invokedynamic_bcps->length(); |
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269 assert(length == _patch_invokedynamic_refs->length(), |
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270 "lengths should match"); |
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271 for (int i = 0; i < length; i++) { |
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272 address p = _patch_invokedynamic_bcps->at(i); |
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273 int cache_index = ConstantPool::decode_invokedynamic_index( |
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274 Bytes::get_native_u4(p)); |
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275 Bytes::put_native_u4(p, ConstantPool::encode_invokedynamic_index(cache_index + delta)); |
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276 |
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277 // invokedynamic resolved references map also points to cp cache and must |
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278 // add delta to each. |
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279 int resolved_index = _patch_invokedynamic_refs->at(i); |
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280 for (int entry = 0; entry < ConstantPoolCacheEntry::_indy_resolved_references_entries; entry++) { |
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281 assert(_invokedynamic_references_map[resolved_index+entry] == cache_index, |
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282 "should be the same index"); |
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283 _invokedynamic_references_map.at_put(resolved_index+entry, |
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284 cache_index + delta); |
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285 } |
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286 } |
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287 } |
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288 } |
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289 |
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290 |
1602 | 291 // Rewrite some ldc bytecodes to _fast_aldc |
3404 | 292 void Rewriter::maybe_rewrite_ldc(address bcp, int offset, bool is_wide, |
293 bool reverse) { | |
294 if (!reverse) { | |
295 assert((*bcp) == (is_wide ? Bytecodes::_ldc_w : Bytecodes::_ldc), "not ldc bytecode"); | |
296 address p = bcp + offset; | |
297 int cp_index = is_wide ? Bytes::get_Java_u2(p) : (u1)(*p); | |
298 constantTag tag = _pool->tag_at(cp_index).value(); | |
8104 | 299 if (tag.is_method_handle() || tag.is_method_type() || tag.is_string()) { |
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300 int ref_index = cp_entry_to_resolved_references(cp_index); |
3404 | 301 if (is_wide) { |
302 (*bcp) = Bytecodes::_fast_aldc_w; | |
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303 assert(ref_index == (u2)ref_index, "index overflow"); |
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304 Bytes::put_native_u2(p, ref_index); |
3404 | 305 } else { |
306 (*bcp) = Bytecodes::_fast_aldc; | |
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307 assert(ref_index == (u1)ref_index, "index overflow"); |
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308 (*p) = (u1)ref_index; |
3404 | 309 } |
310 } | |
311 } else { | |
312 Bytecodes::Code rewritten_bc = | |
313 (is_wide ? Bytecodes::_fast_aldc_w : Bytecodes::_fast_aldc); | |
314 if ((*bcp) == rewritten_bc) { | |
315 address p = bcp + offset; | |
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316 int ref_index = is_wide ? Bytes::get_native_u2(p) : (u1)(*p); |
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317 int pool_index = resolved_references_entry_to_pool_index(ref_index); |
3404 | 318 if (is_wide) { |
319 (*bcp) = Bytecodes::_ldc_w; | |
320 assert(pool_index == (u2)pool_index, "index overflow"); | |
321 Bytes::put_Java_u2(p, pool_index); | |
322 } else { | |
323 (*bcp) = Bytecodes::_ldc; | |
324 assert(pool_index == (u1)pool_index, "index overflow"); | |
325 (*p) = (u1)pool_index; | |
326 } | |
1602 | 327 } |
328 } | |
329 } | |
330 | |
331 | |
0 | 332 // Rewrites a method given the index_map information |
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333 void Rewriter::scan_method(Method* method, bool reverse, bool* invokespecial_error) { |
0 | 334 |
335 int nof_jsrs = 0; | |
336 bool has_monitor_bytecodes = false; | |
337 | |
338 { | |
339 // We cannot tolerate a GC in this block, because we've | |
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340 // cached the bytecodes in 'code_base'. If the Method* |
0 | 341 // moves, the bytecodes will also move. |
342 No_Safepoint_Verifier nsv; | |
343 Bytecodes::Code c; | |
344 | |
345 // Bytecodes and their length | |
346 const address code_base = method->code_base(); | |
347 const int code_length = method->code_size(); | |
348 | |
349 int bc_length; | |
350 for (int bci = 0; bci < code_length; bci += bc_length) { | |
351 address bcp = code_base + bci; | |
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352 int prefix_length = 0; |
0 | 353 c = (Bytecodes::Code)(*bcp); |
354 | |
355 // Since we have the code, see if we can get the length | |
356 // directly. Some more complicated bytecodes will report | |
357 // a length of zero, meaning we need to make another method | |
358 // call to calculate the length. | |
359 bc_length = Bytecodes::length_for(c); | |
360 if (bc_length == 0) { | |
2142 | 361 bc_length = Bytecodes::length_at(method, bcp); |
0 | 362 |
363 // length_at will put us at the bytecode after the one modified | |
364 // by 'wide'. We don't currently examine any of the bytecodes | |
365 // modified by wide, but in case we do in the future... | |
366 if (c == Bytecodes::_wide) { | |
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367 prefix_length = 1; |
0 | 368 c = (Bytecodes::Code)bcp[1]; |
369 } | |
370 } | |
371 | |
372 assert(bc_length != 0, "impossible bytecode length"); | |
373 | |
374 switch (c) { | |
375 case Bytecodes::_lookupswitch : { | |
376 #ifndef CC_INTERP | |
2142 | 377 Bytecode_lookupswitch bc(method, bcp); |
1565 | 378 (*bcp) = ( |
2142 | 379 bc.number_of_pairs() < BinarySwitchThreshold |
0 | 380 ? Bytecodes::_fast_linearswitch |
381 : Bytecodes::_fast_binaryswitch | |
382 ); | |
383 #endif | |
384 break; | |
385 } | |
3404 | 386 case Bytecodes::_fast_linearswitch: |
387 case Bytecodes::_fast_binaryswitch: { | |
388 #ifndef CC_INTERP | |
389 (*bcp) = Bytecodes::_lookupswitch; | |
390 #endif | |
391 break; | |
392 } | |
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393 |
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394 case Bytecodes::_invokespecial : { |
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395 rewrite_invokespecial(bcp, prefix_length+1, reverse, invokespecial_error); |
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396 break; |
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397 } |
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398 |
0 | 399 case Bytecodes::_getstatic : // fall through |
400 case Bytecodes::_putstatic : // fall through | |
401 case Bytecodes::_getfield : // fall through | |
402 case Bytecodes::_putfield : // fall through | |
403 case Bytecodes::_invokevirtual : // fall through | |
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404 case Bytecodes::_invokestatic : |
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405 case Bytecodes::_invokeinterface: |
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406 case Bytecodes::_invokehandle : // if reverse=true |
3404 | 407 rewrite_member_reference(bcp, prefix_length+1, reverse); |
0 | 408 break; |
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409 case Bytecodes::_invokedynamic: |
3404 | 410 rewrite_invokedynamic(bcp, prefix_length+1, reverse); |
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411 break; |
1602 | 412 case Bytecodes::_ldc: |
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413 case Bytecodes::_fast_aldc: // if reverse=true |
3404 | 414 maybe_rewrite_ldc(bcp, prefix_length+1, false, reverse); |
1602 | 415 break; |
416 case Bytecodes::_ldc_w: | |
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417 case Bytecodes::_fast_aldc_w: // if reverse=true |
3404 | 418 maybe_rewrite_ldc(bcp, prefix_length+1, true, reverse); |
1602 | 419 break; |
0 | 420 case Bytecodes::_jsr : // fall through |
421 case Bytecodes::_jsr_w : nof_jsrs++; break; | |
422 case Bytecodes::_monitorenter : // fall through | |
423 case Bytecodes::_monitorexit : has_monitor_bytecodes = true; break; | |
424 } | |
425 } | |
426 } | |
427 | |
428 // Update access flags | |
429 if (has_monitor_bytecodes) { | |
430 method->set_has_monitor_bytecodes(); | |
431 } | |
432 | |
433 // The present of a jsr bytecode implies that the method might potentially | |
434 // have to be rewritten, so we run the oopMapGenerator on the method | |
435 if (nof_jsrs > 0) { | |
436 method->set_has_jsrs(); | |
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437 // Second pass will revisit this method. |
3404 | 438 assert(method->has_jsrs(), "didn't we just set this?"); |
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439 } |
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440 } |
0 | 441 |
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442 // After constant pool is created, revisit methods containing jsrs. |
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443 methodHandle Rewriter::rewrite_jsrs(methodHandle method, TRAPS) { |
3404 | 444 ResourceMark rm(THREAD); |
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445 ResolveOopMapConflicts romc(method); |
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446 methodHandle original_method = method; |
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447 method = romc.do_potential_rewrite(CHECK_(methodHandle())); |
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448 // Update monitor matching info. |
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449 if (romc.monitor_safe()) { |
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450 method->set_guaranteed_monitor_matching(); |
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451 } |
0 | 452 |
453 return method; | |
454 } | |
455 | |
14909 | 456 void Rewriter::rewrite(instanceKlassHandle klass, TRAPS) { |
457 ResourceMark rm(THREAD); | |
458 Rewriter rw(klass, klass->constants(), klass->methods(), CHECK); | |
459 // (That's all, folks.) | |
460 } | |
461 | |
462 | |
463 Rewriter::Rewriter(instanceKlassHandle klass, constantPoolHandle cpool, Array<Method*>* methods, TRAPS) | |
464 : _klass(klass), | |
465 _pool(cpool), | |
466 _methods(methods) | |
467 { | |
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468 assert(_pool->cache() == NULL, "constant pool cache must not be set yet"); |
0 | 469 |
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470 // determine index maps for Method* rewriting |
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471 compute_index_maps(); |
0 | 472 |
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473 if (RegisterFinalizersAtInit && _klass->name() == vmSymbols::java_lang_Object()) { |
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474 bool did_rewrite = false; |
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475 int i = _methods->length(); |
0 | 476 while (i-- > 0) { |
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477 Method* method = _methods->at(i); |
0 | 478 if (method->intrinsic_id() == vmIntrinsics::_Object_init) { |
479 // rewrite the return bytecodes of Object.<init> to register the | |
480 // object for finalization if needed. | |
481 methodHandle m(THREAD, method); | |
482 rewrite_Object_init(m, CHECK); | |
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483 did_rewrite = true; |
0 | 484 break; |
485 } | |
486 } | |
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487 assert(did_rewrite, "must find Object::<init> to rewrite it"); |
0 | 488 } |
489 | |
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490 // rewrite methods, in two passes |
3404 | 491 int len = _methods->length(); |
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492 bool invokespecial_error = false; |
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493 |
3404 | 494 for (int i = len-1; i >= 0; i--) { |
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495 Method* method = _methods->at(i); |
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496 scan_method(method, false, &invokespecial_error); |
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497 if (invokespecial_error) { |
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498 // If you get an error here, there is no reversing bytecodes |
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499 // This exception is stored for this class and no further attempt is |
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500 // made at verifying or rewriting. |
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501 THROW_MSG(vmSymbols::java_lang_InternalError(), |
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502 "This classfile overflows invokespecial for interfaces " |
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503 "and cannot be loaded"); |
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504 return; |
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505 } |
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506 } |
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507 |
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508 // May have to fix invokedynamic bytecodes if invokestatic/InterfaceMethodref |
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509 // entries had to be added. |
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510 patch_invokedynamic_bytecodes(); |
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511 |
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512 // allocate constant pool cache, now that we've seen all the bytecodes |
3404 | 513 make_constant_pool_cache(THREAD); |
514 | |
515 // Restore bytecodes to their unrewritten state if there are exceptions | |
516 // rewriting bytecodes or allocating the cpCache | |
517 if (HAS_PENDING_EXCEPTION) { | |
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518 restore_bytecodes(); |
3404 | 519 return; |
520 } | |
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521 |
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522 // Relocate after everything, but still do this under the is_rewritten flag, |
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523 // so methods with jsrs in custom class lists in aren't attempted to be |
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524 // rewritten in the RO section of the shared archive. |
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525 // Relocated bytecodes don't have to be restored, only the cp cache entries |
3404 | 526 for (int i = len-1; i >= 0; i--) { |
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527 methodHandle m(THREAD, _methods->at(i)); |
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528 |
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529 if (m->has_jsrs()) { |
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530 m = rewrite_jsrs(m, THREAD); |
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531 // Restore bytecodes to their unrewritten state if there are exceptions |
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532 // relocating bytecodes. If some are relocated, that is ok because that |
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533 // doesn't affect constant pool to cpCache rewriting. |
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534 if (HAS_PENDING_EXCEPTION) { |
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535 restore_bytecodes(); |
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536 return; |
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537 } |
0 | 538 // Method might have gotten rewritten. |
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539 methods->at_put(i, m()); |
0 | 540 } |
541 } | |
542 } |