Mercurial > hg > truffle
annotate src/share/vm/runtime/compilationPolicy.cpp @ 7090:05ce1defa4f9
Common out some parts of UnsafeLoad/Store in UnsafeAccess
author | Gilles Duboscq <duboscq@ssw.jku.at> |
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date | Thu, 29 Nov 2012 13:24:08 +0100 |
parents | 7d815d842ee0 |
children | 1baf7f1e3f23 |
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0 | 1 /* |
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2 * Copyright (c) 2000, 2012, 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 * | |
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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 "code/compiledIC.hpp" | |
27 #include "code/nmethod.hpp" | |
28 #include "code/scopeDesc.hpp" | |
29 #include "compiler/compilerOracle.hpp" | |
30 #include "interpreter/interpreter.hpp" | |
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31 #include "oops/methodData.hpp" |
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32 #include "oops/method.hpp" |
1972 | 33 #include "oops/oop.inline.hpp" |
34 #include "prims/nativeLookup.hpp" | |
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35 #include "runtime/advancedThresholdPolicy.hpp" |
1972 | 36 #include "runtime/compilationPolicy.hpp" |
37 #include "runtime/frame.hpp" | |
38 #include "runtime/handles.inline.hpp" | |
39 #include "runtime/rframe.hpp" | |
40 #include "runtime/simpleThresholdPolicy.hpp" | |
41 #include "runtime/stubRoutines.hpp" | |
42 #include "runtime/thread.hpp" | |
43 #include "runtime/timer.hpp" | |
44 #include "runtime/vframe.hpp" | |
45 #include "runtime/vm_operations.hpp" | |
46 #include "utilities/events.hpp" | |
47 #include "utilities/globalDefinitions.hpp" | |
0 | 48 |
49 CompilationPolicy* CompilationPolicy::_policy; | |
50 elapsedTimer CompilationPolicy::_accumulated_time; | |
51 bool CompilationPolicy::_in_vm_startup; | |
52 | |
53 // Determine compilation policy based on command line argument | |
54 void compilationPolicy_init() { | |
55 CompilationPolicy::set_in_vm_startup(DelayCompilationDuringStartup); | |
56 | |
57 switch(CompilationPolicyChoice) { | |
58 case 0: | |
59 CompilationPolicy::set_policy(new SimpleCompPolicy()); | |
60 break; | |
61 | |
62 case 1: | |
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63 #if defined(COMPILER2) || defined(GRAAL) |
0 | 64 CompilationPolicy::set_policy(new StackWalkCompPolicy()); |
65 #else | |
66 Unimplemented(); | |
67 #endif | |
68 break; | |
1783 | 69 case 2: |
70 #ifdef TIERED | |
71 CompilationPolicy::set_policy(new SimpleThresholdPolicy()); | |
72 #else | |
73 Unimplemented(); | |
74 #endif | |
75 break; | |
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76 case 3: |
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77 #ifdef TIERED |
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78 CompilationPolicy::set_policy(new AdvancedThresholdPolicy()); |
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79 #else |
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80 Unimplemented(); |
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81 #endif |
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82 break; |
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83 case 4: |
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84 #if defined(GRAAL) |
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85 CompilationPolicy::set_policy(new GraalCompPolicy()); |
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86 #else |
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87 Unimplemented(); |
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88 #endif |
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89 break; |
0 | 90 default: |
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91 fatal("CompilationPolicyChoice must be in the range: [0-4]"); |
0 | 92 } |
1783 | 93 CompilationPolicy::policy()->initialize(); |
0 | 94 } |
95 | |
96 void CompilationPolicy::completed_vm_startup() { | |
97 if (TraceCompilationPolicy) { | |
98 tty->print("CompilationPolicy: completed vm startup.\n"); | |
99 } | |
100 _in_vm_startup = false; | |
101 } | |
102 | |
103 // Returns true if m must be compiled before executing it | |
104 // This is intended to force compiles for methods (usually for | |
105 // debugging) that would otherwise be interpreted for some reason. | |
1783 | 106 bool CompilationPolicy::must_be_compiled(methodHandle m, int comp_level) { |
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107 // Don't allow Xcomp to cause compiles in replay mode |
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108 if (ReplayCompiles) return false; |
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109 |
0 | 110 if (m->has_compiled_code()) return false; // already compiled |
1783 | 111 if (!can_be_compiled(m, comp_level)) return false; |
0 | 112 |
113 return !UseInterpreter || // must compile all methods | |
1202 | 114 (UseCompiler && AlwaysCompileLoopMethods && m->has_loops() && CompileBroker::should_compile_new_jobs()); // eagerly compile loop methods |
0 | 115 } |
116 | |
117 // Returns true if m is allowed to be compiled | |
1783 | 118 bool CompilationPolicy::can_be_compiled(methodHandle m, int comp_level) { |
0 | 119 if (m->is_abstract()) return false; |
120 if (DontCompileHugeMethods && m->code_size() > HugeMethodLimit) return false; | |
121 | |
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122 // Math intrinsics should never be compiled as this can lead to |
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123 // monotonicity problems because the interpreter will prefer the |
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124 // compiled code to the intrinsic version. This can't happen in |
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125 // production because the invocation counter can't be incremented |
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126 // but we shouldn't expose the system to this problem in testing |
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127 // modes. |
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128 if (!AbstractInterpreter::can_be_compiled(m)) { |
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129 return false; |
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130 } |
1783 | 131 if (comp_level == CompLevel_all) { |
132 return !m->is_not_compilable(CompLevel_simple) && !m->is_not_compilable(CompLevel_full_optimization); | |
133 } else { | |
134 return !m->is_not_compilable(comp_level); | |
135 } | |
136 } | |
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137 |
1783 | 138 bool CompilationPolicy::is_compilation_enabled() { |
139 // NOTE: CompileBroker::should_compile_new_jobs() checks for UseCompiler | |
140 return !delay_compilation_during_startup() && CompileBroker::should_compile_new_jobs(); | |
0 | 141 } |
142 | |
143 #ifndef PRODUCT | |
144 void CompilationPolicy::print_time() { | |
145 tty->print_cr ("Accumulated compilationPolicy times:"); | |
146 tty->print_cr ("---------------------------"); | |
147 tty->print_cr (" Total: %3.3f sec.", _accumulated_time.seconds()); | |
148 } | |
149 | |
1783 | 150 void NonTieredCompPolicy::trace_osr_completion(nmethod* osr_nm) { |
0 | 151 if (TraceOnStackReplacement) { |
152 if (osr_nm == NULL) tty->print_cr("compilation failed"); | |
153 else tty->print_cr("nmethod " INTPTR_FORMAT, osr_nm); | |
154 } | |
155 } | |
156 #endif // !PRODUCT | |
157 | |
1783 | 158 void NonTieredCompPolicy::initialize() { |
159 // Setup the compiler thread numbers | |
160 if (CICompilerCountPerCPU) { | |
161 // Example: if CICompilerCountPerCPU is true, then we get | |
162 // max(log2(8)-1,1) = 2 compiler threads on an 8-way machine. | |
163 // May help big-app startup time. | |
164 _compiler_count = MAX2(log2_intptr(os::active_processor_count())-1,1); | |
165 } else { | |
166 _compiler_count = CICompilerCount; | |
167 } | |
168 } | |
169 | |
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170 // Note: this policy is used ONLY if TieredCompilation is off. |
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171 // compiler_count() behaves the following way: |
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172 // - with TIERED build (with both COMPILER1 and COMPILER2 defined) it should return |
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173 // zero for the c1 compilation levels, hence the particular ordering of the |
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174 // statements. |
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175 // - the same should happen when COMPILER2 is defined and COMPILER1 is not |
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176 // (server build without TIERED defined). |
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177 // - if only COMPILER1 is defined (client build), zero should be returned for |
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178 // the c2 level. |
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179 // - if neither is defined - always return zero. |
1783 | 180 int NonTieredCompPolicy::compiler_count(CompLevel comp_level) { |
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181 assert(!TieredCompilation, "This policy should not be used with TieredCompilation"); |
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182 #ifdef COMPILER2 |
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183 if (is_c2_compile(comp_level)) { |
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184 return _compiler_count; |
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185 } else { |
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186 return 0; |
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187 } |
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188 #endif |
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189 |
1783 | 190 #ifdef COMPILER1 |
191 if (is_c1_compile(comp_level)) { | |
192 return _compiler_count; | |
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193 } else { |
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194 return 0; |
1783 | 195 } |
196 #endif | |
197 | |
198 return 0; | |
199 } | |
200 | |
201 void NonTieredCompPolicy::reset_counter_for_invocation_event(methodHandle m) { | |
0 | 202 // Make sure invocation and backedge counter doesn't overflow again right away |
203 // as would be the case for native methods. | |
204 | |
205 // BUT also make sure the method doesn't look like it was never executed. | |
206 // Set carry bit and reduce counter's value to min(count, CompileThreshold/2). | |
207 m->invocation_counter()->set_carry(); | |
208 m->backedge_counter()->set_carry(); | |
209 | |
210 assert(!m->was_never_executed(), "don't reset to 0 -- could be mistaken for never-executed"); | |
211 } | |
212 | |
1783 | 213 void NonTieredCompPolicy::reset_counter_for_back_branch_event(methodHandle m) { |
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214 // GRAAL_ONLY(assert(false, "unexpected")); |
0 | 215 // Delay next back-branch event but pump up invocation counter to triger |
216 // whole method compilation. | |
217 InvocationCounter* i = m->invocation_counter(); | |
218 InvocationCounter* b = m->backedge_counter(); | |
219 | |
220 // Don't set invocation_counter's value too low otherwise the method will | |
221 // look like immature (ic < ~5300) which prevents the inlining based on | |
222 // the type profiling. | |
223 i->set(i->state(), CompileThreshold); | |
224 // Don't reset counter too low - it is used to check if OSR method is ready. | |
225 b->set(b->state(), CompileThreshold / 2); | |
226 } | |
227 | |
1783 | 228 // |
229 // CounterDecay | |
230 // | |
231 // Interates through invocation counters and decrements them. This | |
232 // is done at each safepoint. | |
233 // | |
234 class CounterDecay : public AllStatic { | |
235 static jlong _last_timestamp; | |
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236 static void do_method(Method* m) { |
1783 | 237 m->invocation_counter()->decay(); |
238 } | |
239 public: | |
240 static void decay(); | |
241 static bool is_decay_needed() { | |
242 return (os::javaTimeMillis() - _last_timestamp) > CounterDecayMinIntervalLength; | |
243 } | |
244 }; | |
245 | |
246 jlong CounterDecay::_last_timestamp = 0; | |
247 | |
248 void CounterDecay::decay() { | |
249 _last_timestamp = os::javaTimeMillis(); | |
250 | |
251 // This operation is going to be performed only at the end of a safepoint | |
252 // and hence GC's will not be going on, all Java mutators are suspended | |
253 // at this point and hence SystemDictionary_lock is also not needed. | |
254 assert(SafepointSynchronize::is_at_safepoint(), "can only be executed at a safepoint"); | |
255 int nclasses = SystemDictionary::number_of_classes(); | |
256 double classes_per_tick = nclasses * (CounterDecayMinIntervalLength * 1e-3 / | |
257 CounterHalfLifeTime); | |
258 for (int i = 0; i < classes_per_tick; i++) { | |
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259 Klass* k = SystemDictionary::try_get_next_class(); |
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260 if (k != NULL && k->oop_is_instance()) { |
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261 InstanceKlass::cast(k)->methods_do(do_method); |
1783 | 262 } |
263 } | |
264 } | |
265 | |
266 // Called at the end of the safepoint | |
267 void NonTieredCompPolicy::do_safepoint_work() { | |
268 if(UseCounterDecay && CounterDecay::is_decay_needed()) { | |
269 CounterDecay::decay(); | |
270 } | |
271 } | |
272 | |
273 void NonTieredCompPolicy::reprofile(ScopeDesc* trap_scope, bool is_osr) { | |
274 ScopeDesc* sd = trap_scope; | |
275 for (; !sd->is_top(); sd = sd->sender()) { | |
276 // Reset ICs of inlined methods, since they can trigger compilations also. | |
277 sd->method()->invocation_counter()->reset(); | |
278 } | |
279 InvocationCounter* c = sd->method()->invocation_counter(); | |
280 if (is_osr) { | |
281 // It was an OSR method, so bump the count higher. | |
282 c->set(c->state(), CompileThreshold); | |
283 } else { | |
284 c->reset(); | |
285 } | |
286 sd->method()->backedge_counter()->reset(); | |
287 } | |
288 | |
289 // This method can be called by any component of the runtime to notify the policy | |
290 // that it's recommended to delay the complation of this method. | |
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291 void NonTieredCompPolicy::delay_compilation(Method* method) { |
1783 | 292 method->invocation_counter()->decay(); |
293 method->backedge_counter()->decay(); | |
294 } | |
295 | |
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296 void NonTieredCompPolicy::disable_compilation(Method* method) { |
1783 | 297 method->invocation_counter()->set_state(InvocationCounter::wait_for_nothing); |
298 method->backedge_counter()->set_state(InvocationCounter::wait_for_nothing); | |
299 } | |
300 | |
301 CompileTask* NonTieredCompPolicy::select_task(CompileQueue* compile_queue) { | |
302 return compile_queue->first(); | |
303 } | |
304 | |
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305 bool NonTieredCompPolicy::is_mature(Method* method) { |
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306 MethodData* mdo = method->method_data(); |
1783 | 307 assert(mdo != NULL, "Should be"); |
308 uint current = mdo->mileage_of(method); | |
309 uint initial = mdo->creation_mileage(); | |
310 if (current < initial) | |
311 return true; // some sort of overflow | |
312 uint target; | |
313 if (ProfileMaturityPercentage <= 0) | |
314 target = (uint) -ProfileMaturityPercentage; // absolute value | |
315 else | |
316 target = (uint)( (ProfileMaturityPercentage * CompileThreshold) / 100 ); | |
317 return (current >= initial + target); | |
318 } | |
319 | |
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320 nmethod* NonTieredCompPolicy::event(methodHandle method, methodHandle inlinee, int branch_bci, |
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321 int bci, CompLevel comp_level, nmethod* nm, JavaThread* thread) { |
1783 | 322 assert(comp_level == CompLevel_none, "This should be only called from the interpreter"); |
323 NOT_PRODUCT(trace_frequency_counter_overflow(method, branch_bci, bci)); | |
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324 if (JvmtiExport::can_post_interpreter_events() && thread->is_interp_only_mode()) { |
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325 // If certain JVMTI events (e.g. frame pop event) are requested then the |
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326 // thread is forced to remain in interpreted code. This is |
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327 // implemented partly by a check in the run_compiled_code |
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328 // section of the interpreter whether we should skip running |
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329 // compiled code, and partly by skipping OSR compiles for |
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330 // interpreted-only threads. |
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331 if (bci != InvocationEntryBci) { |
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332 reset_counter_for_back_branch_event(method); |
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333 return NULL; |
1783 | 334 } |
335 } | |
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336 if (CompileTheWorld || ReplayCompiles) { |
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337 // Don't trigger other compiles in testing mode |
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338 if (bci == InvocationEntryBci) { |
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339 reset_counter_for_invocation_event(method); |
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340 } else { |
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341 reset_counter_for_back_branch_event(method); |
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342 } |
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343 return NULL; |
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344 } |
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345 |
1783 | 346 if (bci == InvocationEntryBci) { |
347 // when code cache is full, compilation gets switched off, UseCompiler | |
348 // is set to false | |
349 if (!method->has_compiled_code() && UseCompiler) { | |
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350 method_invocation_event(method, thread); |
1783 | 351 } else { |
352 // Force counter overflow on method entry, even if no compilation | |
353 // happened. (The method_invocation_event call does this also.) | |
354 reset_counter_for_invocation_event(method); | |
355 } | |
356 // compilation at an invocation overflow no longer goes and retries test for | |
357 // compiled method. We always run the loser of the race as interpreted. | |
358 // so return NULL | |
359 return NULL; | |
360 } else { | |
361 // counter overflow in a loop => try to do on-stack-replacement | |
362 nmethod* osr_nm = method->lookup_osr_nmethod_for(bci, CompLevel_highest_tier, true); | |
363 NOT_PRODUCT(trace_osr_request(method, osr_nm, bci)); | |
364 // when code cache is full, we should not compile any more... | |
365 if (osr_nm == NULL && UseCompiler) { | |
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366 method_back_branch_event(method, bci, thread); |
1783 | 367 osr_nm = method->lookup_osr_nmethod_for(bci, CompLevel_highest_tier, true); |
368 } | |
369 if (osr_nm == NULL) { | |
370 reset_counter_for_back_branch_event(method); | |
371 return NULL; | |
372 } | |
373 return osr_nm; | |
374 } | |
375 return NULL; | |
376 } | |
377 | |
378 #ifndef PRODUCT | |
379 void NonTieredCompPolicy::trace_frequency_counter_overflow(methodHandle m, int branch_bci, int bci) { | |
380 if (TraceInvocationCounterOverflow) { | |
381 InvocationCounter* ic = m->invocation_counter(); | |
382 InvocationCounter* bc = m->backedge_counter(); | |
383 ResourceMark rm; | |
384 const char* msg = | |
385 bci == InvocationEntryBci | |
386 ? "comp-policy cntr ovfl @ %d in entry of " | |
387 : "comp-policy cntr ovfl @ %d in loop of "; | |
388 tty->print(msg, bci); | |
389 m->print_value(); | |
390 tty->cr(); | |
391 ic->print(); | |
392 bc->print(); | |
393 if (ProfileInterpreter) { | |
394 if (bci != InvocationEntryBci) { | |
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395 MethodData* mdo = m->method_data(); |
1783 | 396 if (mdo != NULL) { |
397 int count = mdo->bci_to_data(branch_bci)->as_JumpData()->taken(); | |
398 tty->print_cr("back branch count = %d", count); | |
399 } | |
400 } | |
401 } | |
402 } | |
403 } | |
404 | |
405 void NonTieredCompPolicy::trace_osr_request(methodHandle method, nmethod* osr, int bci) { | |
406 if (TraceOnStackReplacement) { | |
407 ResourceMark rm; | |
408 tty->print(osr != NULL ? "Reused OSR entry for " : "Requesting OSR entry for "); | |
409 method->print_short_name(tty); | |
410 tty->print_cr(" at bci %d", bci); | |
411 } | |
412 } | |
413 #endif // !PRODUCT | |
414 | |
0 | 415 // SimpleCompPolicy - compile current method |
416 | |
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417 void SimpleCompPolicy::method_invocation_event(methodHandle m, JavaThread* thread) { |
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418 const int comp_level = CompLevel_highest_tier; |
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419 const int hot_count = m->invocation_count(); |
0 | 420 reset_counter_for_invocation_event(m); |
421 const char* comment = "count"; | |
422 | |
1783 | 423 if (is_compilation_enabled() && can_be_compiled(m)) { |
0 | 424 nmethod* nm = m->code(); |
425 if (nm == NULL ) { | |
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426 CompileBroker::compile_method(m, InvocationEntryBci, comp_level, m, hot_count, comment, thread); |
0 | 427 } |
428 } | |
429 } | |
430 | |
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431 void SimpleCompPolicy::method_back_branch_event(methodHandle m, int bci, JavaThread* thread) { |
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432 const int comp_level = CompLevel_highest_tier; |
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433 const int hot_count = m->backedge_count(); |
0 | 434 const char* comment = "backedge_count"; |
435 | |
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436 if (is_compilation_enabled() && !m->is_not_osr_compilable(comp_level) && can_be_compiled(m)) { |
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437 CompileBroker::compile_method(m, bci, comp_level, m, hot_count, comment, thread); |
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438 NOT_PRODUCT(trace_osr_completion(m->lookup_osr_nmethod_for(bci, comp_level, true));) |
0 | 439 } |
440 } | |
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441 |
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442 // GraalCompPolicy - compile current method |
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443 |
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444 #ifdef GRAAL |
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445 |
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446 void GraalCompPolicy::method_invocation_event(methodHandle m, JavaThread* thread) { |
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447 int hot_count = m->invocation_count(); |
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448 jlong hot_time = m->graal_invocation_time(); |
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449 reset_counter_for_invocation_event(m); |
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450 |
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451 if (is_compilation_enabled() && can_be_compiled(m)) { |
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452 nmethod* nm = m->code(); |
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453 if (nm == NULL) { |
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454 if (hot_count > 1) { |
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455 jlong current_time = os::javaTimeNanos(); |
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456 int time_per_call = (int) ((current_time - hot_time) / hot_count); |
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457 m->set_graal_invocation_time(current_time); |
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458 if (UseNewCode) { |
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459 if (m->queued_for_compilation()) { |
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460 if (time_per_call < (m->graal_priority() / 5)) { |
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461 m->set_graal_priority(time_per_call); |
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462 m->clear_queued_for_compilation(); |
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463 } |
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464 } else { |
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465 if (time_per_call < m->graal_priority()) { |
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466 m->set_graal_priority(time_per_call); |
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467 } |
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468 } |
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469 } else { |
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470 if (time_per_call < m->graal_priority()) { |
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471 m->set_graal_priority(time_per_call); |
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472 } |
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473 } |
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474 } |
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475 |
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476 if (!m->queued_for_compilation()) { |
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477 if (TraceCompilationPolicy) { |
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478 tty->print("method invocation trigger: "); |
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479 m->print_short_name(tty); |
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480 tty->print_cr(" ( interpreted " INTPTR_FORMAT ", size=%d, hotCount=%d, hotTime=" UINT64_FORMAT " ) ", (address)m(), m->code_size(), hot_count, hot_time); |
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481 } |
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482 |
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483 assert(m->is_native() || m->method_data() != NULL, "do not compile code methods"); |
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484 CompileBroker::compile_method(m, InvocationEntryBci, CompLevel_highest_tier, m, hot_count, "count", thread); |
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485 } |
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486 } |
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487 } |
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488 } |
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489 |
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490 void GraalCompPolicy::method_back_branch_event(methodHandle m, int bci, JavaThread* thread) { |
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491 int hot_count = m->backedge_count(); |
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492 const char* comment = "backedge_count"; |
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493 |
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494 if (is_compilation_enabled() && !m->is_not_osr_compilable() && can_be_compiled(m)) { |
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495 CompileBroker::compile_method(m, bci, CompLevel_highest_tier, |
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496 m, hot_count, comment, thread); |
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497 NOT_PRODUCT(trace_osr_completion(m->lookup_osr_nmethod_for(bci, CompLevel_highest_tier, true));) |
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498 } |
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499 } |
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500 |
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501 #endif // GRAAL |
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502 |
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503 |
0 | 504 // StackWalkCompPolicy - walk up stack to find a suitable method to compile |
505 | |
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506 #if defined(COMPILER2) || defined(GRAAL) |
0 | 507 const char* StackWalkCompPolicy::_msg = NULL; |
508 | |
509 | |
510 // Consider m for compilation | |
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511 void StackWalkCompPolicy::method_invocation_event(methodHandle m, JavaThread* thread) { |
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512 const int comp_level = CompLevel_highest_tier; |
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513 const int hot_count = m->invocation_count(); |
0 | 514 reset_counter_for_invocation_event(m); |
515 const char* comment = "count"; | |
516 | |
1783 | 517 if (is_compilation_enabled() && m->code() == NULL && can_be_compiled(m)) { |
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518 ResourceMark rm(thread); |
0 | 519 frame fr = thread->last_frame(); |
520 assert(fr.is_interpreted_frame(), "must be interpreted"); | |
521 assert(fr.interpreter_frame_method() == m(), "bad method"); | |
522 | |
523 if (TraceCompilationPolicy) { | |
524 tty->print("method invocation trigger: "); | |
525 m->print_short_name(tty); | |
526 tty->print(" ( interpreted " INTPTR_FORMAT ", size=%d ) ", (address)m(), m->code_size()); | |
527 } | |
528 RegisterMap reg_map(thread, false); | |
529 javaVFrame* triggerVF = thread->last_java_vframe(®_map); | |
530 // triggerVF is the frame that triggered its counter | |
531 RFrame* first = new InterpretedRFrame(triggerVF->fr(), thread, m); | |
532 | |
533 if (first->top_method()->code() != NULL) { | |
534 // called obsolete method/nmethod -- no need to recompile | |
535 if (TraceCompilationPolicy) tty->print_cr(" --> " INTPTR_FORMAT, first->top_method()->code()); | |
536 } else { | |
537 if (TimeCompilationPolicy) accumulated_time()->start(); | |
538 GrowableArray<RFrame*>* stack = new GrowableArray<RFrame*>(50); | |
539 stack->push(first); | |
540 RFrame* top = findTopInlinableFrame(stack); | |
541 if (TimeCompilationPolicy) accumulated_time()->stop(); | |
542 assert(top != NULL, "findTopInlinableFrame returned null"); | |
543 if (TraceCompilationPolicy) top->print(); | |
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544 CompileBroker::compile_method(top->top_method(), InvocationEntryBci, comp_level, |
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545 m, hot_count, comment, thread); |
0 | 546 } |
547 } | |
548 } | |
549 | |
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550 void StackWalkCompPolicy::method_back_branch_event(methodHandle m, int bci, JavaThread* thread) { |
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551 const int comp_level = CompLevel_highest_tier; |
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552 const int hot_count = m->backedge_count(); |
0 | 553 const char* comment = "backedge_count"; |
554 | |
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555 if (is_compilation_enabled() && !m->is_not_osr_compilable(comp_level) && can_be_compiled(m)) { |
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556 CompileBroker::compile_method(m, bci, comp_level, m, hot_count, comment, thread); |
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557 NOT_PRODUCT(trace_osr_completion(m->lookup_osr_nmethod_for(bci, comp_level, true));) |
0 | 558 } |
559 } | |
560 | |
561 RFrame* StackWalkCompPolicy::findTopInlinableFrame(GrowableArray<RFrame*>* stack) { | |
562 // go up the stack until finding a frame that (probably) won't be inlined | |
563 // into its caller | |
564 RFrame* current = stack->at(0); // current choice for stopping | |
565 assert( current && !current->is_compiled(), "" ); | |
566 const char* msg = NULL; | |
567 | |
568 while (1) { | |
569 | |
570 // before going up the stack further, check if doing so would get us into | |
571 // compiled code | |
572 RFrame* next = senderOf(current, stack); | |
573 if( !next ) // No next frame up the stack? | |
574 break; // Then compile with current frame | |
575 | |
576 methodHandle m = current->top_method(); | |
577 methodHandle next_m = next->top_method(); | |
578 | |
579 if (TraceCompilationPolicy && Verbose) { | |
580 tty->print("[caller: "); | |
581 next_m->print_short_name(tty); | |
582 tty->print("] "); | |
583 } | |
584 | |
585 if( !Inline ) { // Inlining turned off | |
586 msg = "Inlining turned off"; | |
587 break; | |
588 } | |
589 if (next_m->is_not_compilable()) { // Did fail to compile this before/ | |
590 msg = "caller not compilable"; | |
591 break; | |
592 } | |
593 if (next->num() > MaxRecompilationSearchLength) { | |
594 // don't go up too high when searching for recompilees | |
595 msg = "don't go up any further: > MaxRecompilationSearchLength"; | |
596 break; | |
597 } | |
598 if (next->distance() > MaxInterpretedSearchLength) { | |
599 // don't go up too high when searching for recompilees | |
600 msg = "don't go up any further: next > MaxInterpretedSearchLength"; | |
601 break; | |
602 } | |
603 // Compiled frame above already decided not to inline; | |
604 // do not recompile him. | |
605 if (next->is_compiled()) { | |
606 msg = "not going up into optimized code"; | |
607 break; | |
608 } | |
609 | |
610 // Interpreted frame above us was already compiled. Do not force | |
611 // a recompile, although if the frame above us runs long enough an | |
612 // OSR might still happen. | |
613 if( current->is_interpreted() && next_m->has_compiled_code() ) { | |
614 msg = "not going up -- already compiled caller"; | |
615 break; | |
616 } | |
617 | |
618 // Compute how frequent this call site is. We have current method 'm'. | |
619 // We know next method 'next_m' is interpreted. Find the call site and | |
620 // check the various invocation counts. | |
621 int invcnt = 0; // Caller counts | |
622 if (ProfileInterpreter) { | |
623 invcnt = next_m->interpreter_invocation_count(); | |
624 } | |
625 int cnt = 0; // Call site counts | |
626 if (ProfileInterpreter && next_m->method_data() != NULL) { | |
627 ResourceMark rm; | |
628 int bci = next->top_vframe()->bci(); | |
629 ProfileData* data = next_m->method_data()->bci_to_data(bci); | |
630 if (data != NULL && data->is_CounterData()) | |
631 cnt = data->as_CounterData()->count(); | |
632 } | |
633 | |
634 // Caller counts / call-site counts; i.e. is this call site | |
635 // a hot call site for method next_m? | |
636 int freq = (invcnt) ? cnt/invcnt : cnt; | |
637 | |
638 // Check size and frequency limits | |
639 if ((msg = shouldInline(m, freq, cnt)) != NULL) { | |
640 break; | |
641 } | |
642 // Check inlining negative tests | |
643 if ((msg = shouldNotInline(m)) != NULL) { | |
644 break; | |
645 } | |
646 | |
647 | |
648 // If the caller method is too big or something then we do not want to | |
649 // compile it just to inline a method | |
1783 | 650 if (!can_be_compiled(next_m)) { |
0 | 651 msg = "caller cannot be compiled"; |
652 break; | |
653 } | |
654 | |
655 if( next_m->name() == vmSymbols::class_initializer_name() ) { | |
656 msg = "do not compile class initializer (OSR ok)"; | |
657 break; | |
658 } | |
659 | |
660 if (TraceCompilationPolicy && Verbose) { | |
661 tty->print("\n\t check caller: "); | |
662 next_m->print_short_name(tty); | |
663 tty->print(" ( interpreted " INTPTR_FORMAT ", size=%d ) ", (address)next_m(), next_m->code_size()); | |
664 } | |
665 | |
666 current = next; | |
667 } | |
668 | |
669 assert( !current || !current->is_compiled(), "" ); | |
670 | |
671 if (TraceCompilationPolicy && msg) tty->print("(%s)\n", msg); | |
672 | |
673 return current; | |
674 } | |
675 | |
676 RFrame* StackWalkCompPolicy::senderOf(RFrame* rf, GrowableArray<RFrame*>* stack) { | |
677 RFrame* sender = rf->caller(); | |
678 if (sender && sender->num() == stack->length()) stack->push(sender); | |
679 return sender; | |
680 } | |
681 | |
682 | |
683 const char* StackWalkCompPolicy::shouldInline(methodHandle m, float freq, int cnt) { | |
684 // Allows targeted inlining | |
685 // positive filter: should send be inlined? returns NULL (--> yes) | |
686 // or rejection msg | |
687 int max_size = MaxInlineSize; | |
688 int cost = m->code_size(); | |
689 | |
690 // Check for too many throws (and not too huge) | |
691 if (m->interpreter_throwout_count() > InlineThrowCount && cost < InlineThrowMaxSize ) { | |
692 return NULL; | |
693 } | |
694 | |
695 // bump the max size if the call is frequent | |
696 if ((freq >= InlineFrequencyRatio) || (cnt >= InlineFrequencyCount)) { | |
697 if (TraceFrequencyInlining) { | |
698 tty->print("(Inlined frequent method)\n"); | |
699 m->print(); | |
700 } | |
701 max_size = FreqInlineSize; | |
702 } | |
703 if (cost > max_size) { | |
704 return (_msg = "too big"); | |
705 } | |
706 return NULL; | |
707 } | |
708 | |
709 | |
710 const char* StackWalkCompPolicy::shouldNotInline(methodHandle m) { | |
711 // negative filter: should send NOT be inlined? returns NULL (--> inline) or rejection msg | |
712 if (m->is_abstract()) return (_msg = "abstract method"); | |
713 // note: we allow ik->is_abstract() | |
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714 if (!m->method_holder()->is_initialized()) return (_msg = "method holder not initialized"); |
0 | 715 if (m->is_native()) return (_msg = "native method"); |
716 nmethod* m_code = m->code(); | |
1748 | 717 if (m_code != NULL && m_code->code_size() > InlineSmallCode) |
0 | 718 return (_msg = "already compiled into a big method"); |
719 | |
720 // use frequency-based objections only for non-trivial methods | |
721 if (m->code_size() <= MaxTrivialSize) return NULL; | |
722 if (UseInterpreter) { // don't use counts with -Xcomp | |
723 if ((m->code() == NULL) && m->was_never_executed()) return (_msg = "never executed"); | |
724 if (!m->was_executed_more_than(MIN2(MinInliningThreshold, CompileThreshold >> 1))) return (_msg = "executed < MinInliningThreshold times"); | |
725 } | |
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726 if (Method::has_unloaded_classes_in_signature(m, JavaThread::current())) return (_msg = "unloaded signature classes"); |
0 | 727 |
728 return NULL; | |
729 } | |
730 | |
731 | |
732 | |
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733 #endif // COMPILER2 || GRAAL |