Mercurial > hg > truffle
annotate src/share/vm/compiler/compileBroker.cpp @ 13040:f8b56489e455
Merge
author | mgronlun |
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date | Fri, 01 Nov 2013 17:10:31 +0000 |
parents | a196f1aaec86 |
children | 78da3894b86f 2b8e28fdf503 |
rev | line source |
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0 | 1 /* |
10405 | 2 * Copyright (c) 1999, 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 * | |
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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 "classfile/systemDictionary.hpp" | |
27 #include "classfile/vmSymbols.hpp" | |
28 #include "code/codeCache.hpp" | |
29 #include "compiler/compileBroker.hpp" | |
30 #include "compiler/compileLog.hpp" | |
31 #include "compiler/compilerOracle.hpp" | |
32 #include "interpreter/linkResolver.hpp" | |
33 #include "memory/allocation.inline.hpp" | |
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34 #include "oops/methodData.hpp" |
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35 #include "oops/method.hpp" |
1972 | 36 #include "oops/oop.inline.hpp" |
37 #include "prims/nativeLookup.hpp" | |
38 #include "runtime/arguments.hpp" | |
39 #include "runtime/compilationPolicy.hpp" | |
40 #include "runtime/init.hpp" | |
41 #include "runtime/interfaceSupport.hpp" | |
42 #include "runtime/javaCalls.hpp" | |
43 #include "runtime/os.hpp" | |
44 #include "runtime/sharedRuntime.hpp" | |
45 #include "runtime/sweeper.hpp" | |
10405 | 46 #include "trace/tracing.hpp" |
1972 | 47 #include "utilities/dtrace.hpp" |
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48 #include "utilities/events.hpp" |
1972 | 49 #ifdef COMPILER1 |
50 #include "c1/c1_Compiler.hpp" | |
51 #endif | |
52 #ifdef COMPILER2 | |
53 #include "opto/c2compiler.hpp" | |
54 #endif | |
55 #ifdef SHARK | |
56 #include "shark/sharkCompiler.hpp" | |
57 #endif | |
0 | 58 |
59 #ifdef DTRACE_ENABLED | |
60 | |
61 // Only bother with this argument setup if dtrace is available | |
62 | |
4006 | 63 #ifndef USDT2 |
0 | 64 HS_DTRACE_PROBE_DECL8(hotspot, method__compile__begin, |
65 char*, intptr_t, char*, intptr_t, char*, intptr_t, char*, intptr_t); | |
66 HS_DTRACE_PROBE_DECL9(hotspot, method__compile__end, | |
67 char*, intptr_t, char*, intptr_t, char*, intptr_t, char*, intptr_t, bool); | |
68 | |
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69 #define DTRACE_METHOD_COMPILE_BEGIN_PROBE(method, comp_name) \ |
0 | 70 { \ |
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71 Symbol* klass_name = (method)->klass_name(); \ |
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72 Symbol* name = (method)->name(); \ |
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73 Symbol* signature = (method)->signature(); \ |
0 | 74 HS_DTRACE_PROBE8(hotspot, method__compile__begin, \ |
75 comp_name, strlen(comp_name), \ | |
76 klass_name->bytes(), klass_name->utf8_length(), \ | |
77 name->bytes(), name->utf8_length(), \ | |
78 signature->bytes(), signature->utf8_length()); \ | |
79 } | |
80 | |
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81 #define DTRACE_METHOD_COMPILE_END_PROBE(method, comp_name, success) \ |
0 | 82 { \ |
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83 Symbol* klass_name = (method)->klass_name(); \ |
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84 Symbol* name = (method)->name(); \ |
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85 Symbol* signature = (method)->signature(); \ |
0 | 86 HS_DTRACE_PROBE9(hotspot, method__compile__end, \ |
87 comp_name, strlen(comp_name), \ | |
88 klass_name->bytes(), klass_name->utf8_length(), \ | |
89 name->bytes(), name->utf8_length(), \ | |
90 signature->bytes(), signature->utf8_length(), (success)); \ | |
91 } | |
92 | |
4006 | 93 #else /* USDT2 */ |
94 | |
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95 #define DTRACE_METHOD_COMPILE_BEGIN_PROBE(method, comp_name) \ |
4006 | 96 { \ |
97 Symbol* klass_name = (method)->klass_name(); \ | |
98 Symbol* name = (method)->name(); \ | |
99 Symbol* signature = (method)->signature(); \ | |
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100 HOTSPOT_METHOD_COMPILE_BEGIN( \ |
4006 | 101 comp_name, strlen(comp_name), \ |
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102 (char *) klass_name->bytes(), klass_name->utf8_length(), \ |
4006 | 103 (char *) name->bytes(), name->utf8_length(), \ |
104 (char *) signature->bytes(), signature->utf8_length()); \ | |
105 } | |
106 | |
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107 #define DTRACE_METHOD_COMPILE_END_PROBE(method, comp_name, success) \ |
4006 | 108 { \ |
109 Symbol* klass_name = (method)->klass_name(); \ | |
110 Symbol* name = (method)->name(); \ | |
111 Symbol* signature = (method)->signature(); \ | |
112 HOTSPOT_METHOD_COMPILE_END( \ | |
113 comp_name, strlen(comp_name), \ | |
114 (char *) klass_name->bytes(), klass_name->utf8_length(), \ | |
115 (char *) name->bytes(), name->utf8_length(), \ | |
116 (char *) signature->bytes(), signature->utf8_length(), (success)); \ | |
117 } | |
118 #endif /* USDT2 */ | |
119 | |
0 | 120 #else // ndef DTRACE_ENABLED |
121 | |
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122 #define DTRACE_METHOD_COMPILE_BEGIN_PROBE(method, comp_name) |
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123 #define DTRACE_METHOD_COMPILE_END_PROBE(method, comp_name, success) |
0 | 124 |
125 #endif // ndef DTRACE_ENABLED | |
126 | |
127 bool CompileBroker::_initialized = false; | |
128 volatile bool CompileBroker::_should_block = false; | |
1202 | 129 volatile jint CompileBroker::_should_compile_new_jobs = run_compilation; |
0 | 130 |
131 // The installed compiler(s) | |
132 AbstractCompiler* CompileBroker::_compilers[2]; | |
133 | |
134 // These counters are used for assigning id's to each compilation | |
135 uint CompileBroker::_compilation_id = 0; | |
136 uint CompileBroker::_osr_compilation_id = 0; | |
137 | |
138 // Debugging information | |
139 int CompileBroker::_last_compile_type = no_compile; | |
140 int CompileBroker::_last_compile_level = CompLevel_none; | |
141 char CompileBroker::_last_method_compiled[CompileBroker::name_buffer_length]; | |
142 | |
143 // Performance counters | |
144 PerfCounter* CompileBroker::_perf_total_compilation = NULL; | |
145 PerfCounter* CompileBroker::_perf_osr_compilation = NULL; | |
146 PerfCounter* CompileBroker::_perf_standard_compilation = NULL; | |
147 | |
148 PerfCounter* CompileBroker::_perf_total_bailout_count = NULL; | |
149 PerfCounter* CompileBroker::_perf_total_invalidated_count = NULL; | |
150 PerfCounter* CompileBroker::_perf_total_compile_count = NULL; | |
151 PerfCounter* CompileBroker::_perf_total_osr_compile_count = NULL; | |
152 PerfCounter* CompileBroker::_perf_total_standard_compile_count = NULL; | |
153 | |
154 PerfCounter* CompileBroker::_perf_sum_osr_bytes_compiled = NULL; | |
155 PerfCounter* CompileBroker::_perf_sum_standard_bytes_compiled = NULL; | |
156 PerfCounter* CompileBroker::_perf_sum_nmethod_size = NULL; | |
157 PerfCounter* CompileBroker::_perf_sum_nmethod_code_size = NULL; | |
158 | |
159 PerfStringVariable* CompileBroker::_perf_last_method = NULL; | |
160 PerfStringVariable* CompileBroker::_perf_last_failed_method = NULL; | |
161 PerfStringVariable* CompileBroker::_perf_last_invalidated_method = NULL; | |
162 PerfVariable* CompileBroker::_perf_last_compile_type = NULL; | |
163 PerfVariable* CompileBroker::_perf_last_compile_size = NULL; | |
164 PerfVariable* CompileBroker::_perf_last_failed_type = NULL; | |
165 PerfVariable* CompileBroker::_perf_last_invalidated_type = NULL; | |
166 | |
167 // Timers and counters for generating statistics | |
168 elapsedTimer CompileBroker::_t_total_compilation; | |
169 elapsedTimer CompileBroker::_t_osr_compilation; | |
170 elapsedTimer CompileBroker::_t_standard_compilation; | |
171 | |
172 int CompileBroker::_total_bailout_count = 0; | |
173 int CompileBroker::_total_invalidated_count = 0; | |
174 int CompileBroker::_total_compile_count = 0; | |
175 int CompileBroker::_total_osr_compile_count = 0; | |
176 int CompileBroker::_total_standard_compile_count = 0; | |
177 | |
178 int CompileBroker::_sum_osr_bytes_compiled = 0; | |
179 int CompileBroker::_sum_standard_bytes_compiled = 0; | |
180 int CompileBroker::_sum_nmethod_size = 0; | |
181 int CompileBroker::_sum_nmethod_code_size = 0; | |
182 | |
10405 | 183 long CompileBroker::_peak_compilation_time = 0; |
184 | |
185 CompileQueue* CompileBroker::_c2_method_queue = NULL; | |
186 CompileQueue* CompileBroker::_c1_method_queue = NULL; | |
187 CompileTask* CompileBroker::_task_free_list = NULL; | |
0 | 188 |
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189 GrowableArray<CompilerThread*>* CompileBroker::_compiler_threads = NULL; |
0 | 190 |
191 | |
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192 class CompilationLog : public StringEventLog { |
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193 public: |
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194 CompilationLog() : StringEventLog("Compilation events") { |
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195 } |
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196 |
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197 void log_compile(JavaThread* thread, CompileTask* task) { |
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198 StringLogMessage lm; |
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199 stringStream sstr = lm.stream(); |
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200 // msg.time_stamp().update_to(tty->time_stamp().ticks()); |
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201 task->print_compilation(&sstr, NULL, true); |
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202 log(thread, "%s", (const char*)lm); |
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203 } |
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204 |
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205 void log_nmethod(JavaThread* thread, nmethod* nm) { |
4944 | 206 log(thread, "nmethod %d%s " INTPTR_FORMAT " code ["INTPTR_FORMAT ", " INTPTR_FORMAT "]", |
207 nm->compile_id(), nm->is_osr_method() ? "%" : "", | |
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208 nm, nm->code_begin(), nm->code_end()); |
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209 } |
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210 |
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211 void log_failure(JavaThread* thread, CompileTask* task, const char* reason, const char* retry_message) { |
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212 StringLogMessage lm; |
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213 lm.print("%4d COMPILE SKIPPED: %s", task->compile_id(), reason); |
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214 if (retry_message != NULL) { |
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215 lm.append(" (%s)", retry_message); |
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216 } |
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217 lm.print("\n"); |
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218 log(thread, "%s", (const char*)lm); |
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219 } |
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220 }; |
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221 |
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222 static CompilationLog* _compilation_log = NULL; |
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223 |
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224 void compileBroker_init() { |
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225 if (LogEvents) { |
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226 _compilation_log = new CompilationLog(); |
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227 } |
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228 } |
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229 |
0 | 230 CompileTaskWrapper::CompileTaskWrapper(CompileTask* task) { |
231 CompilerThread* thread = CompilerThread::current(); | |
232 thread->set_task(task); | |
233 CompileLog* log = thread->log(); | |
234 if (log != NULL) task->log_task_start(log); | |
235 } | |
236 | |
237 CompileTaskWrapper::~CompileTaskWrapper() { | |
238 CompilerThread* thread = CompilerThread::current(); | |
239 CompileTask* task = thread->task(); | |
240 CompileLog* log = thread->log(); | |
241 if (log != NULL) task->log_task_done(log); | |
242 thread->set_task(NULL); | |
243 task->set_code_handle(NULL); | |
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244 thread->set_env(NULL); |
0 | 245 if (task->is_blocking()) { |
246 MutexLocker notifier(task->lock(), thread); | |
247 task->mark_complete(); | |
248 // Notify the waiting thread that the compilation has completed. | |
249 task->lock()->notify_all(); | |
250 } else { | |
251 task->mark_complete(); | |
252 | |
253 // By convention, the compiling thread is responsible for | |
254 // recycling a non-blocking CompileTask. | |
255 CompileBroker::free_task(task); | |
256 } | |
257 } | |
258 | |
259 | |
260 // ------------------------------------------------------------------ | |
261 // CompileTask::initialize | |
262 void CompileTask::initialize(int compile_id, | |
263 methodHandle method, | |
264 int osr_bci, | |
265 int comp_level, | |
266 methodHandle hot_method, | |
267 int hot_count, | |
268 const char* comment, | |
269 bool is_blocking) { | |
270 assert(!_lock->is_locked(), "bad locking"); | |
271 | |
272 _compile_id = compile_id; | |
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273 _method = method(); |
7409 | 274 _method_holder = JNIHandles::make_global(method->method_holder()->klass_holder()); |
0 | 275 _osr_bci = osr_bci; |
276 _is_blocking = is_blocking; | |
277 _comp_level = comp_level; | |
278 _num_inlined_bytecodes = 0; | |
279 | |
280 _is_complete = false; | |
281 _is_success = false; | |
282 _code_handle = NULL; | |
283 | |
284 _hot_method = NULL; | |
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285 _hot_method_holder = NULL; |
0 | 286 _hot_count = hot_count; |
287 _time_queued = 0; // tidy | |
288 _comment = comment; | |
289 | |
290 if (LogCompilation) { | |
291 _time_queued = os::elapsed_counter(); | |
292 if (hot_method.not_null()) { | |
293 if (hot_method == method) { | |
294 _hot_method = _method; | |
295 } else { | |
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296 _hot_method = hot_method(); |
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297 // only add loader or mirror if different from _method_holder |
7409 | 298 _hot_method_holder = JNIHandles::make_global(hot_method->method_holder()->klass_holder()); |
0 | 299 } |
300 } | |
301 } | |
302 | |
303 _next = NULL; | |
304 } | |
305 | |
306 // ------------------------------------------------------------------ | |
307 // CompileTask::code/set_code | |
308 nmethod* CompileTask::code() const { | |
309 if (_code_handle == NULL) return NULL; | |
310 return _code_handle->code(); | |
311 } | |
312 void CompileTask::set_code(nmethod* nm) { | |
313 if (_code_handle == NULL && nm == NULL) return; | |
314 guarantee(_code_handle != NULL, ""); | |
315 _code_handle->set_code(nm); | |
316 if (nm == NULL) _code_handle = NULL; // drop the handle also | |
317 } | |
318 | |
319 // ------------------------------------------------------------------ | |
320 // CompileTask::free | |
321 void CompileTask::free() { | |
322 set_code(NULL); | |
323 assert(!_lock->is_locked(), "Should not be locked when freed"); | |
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324 JNIHandles::destroy_global(_method_holder); |
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325 JNIHandles::destroy_global(_hot_method_holder); |
0 | 326 } |
327 | |
328 | |
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329 void CompileTask::mark_on_stack() { |
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330 // Mark these methods as something redefine classes cannot remove. |
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331 _method->set_on_stack(true); |
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332 if (_hot_method != NULL) { |
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333 _hot_method->set_on_stack(true); |
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334 } |
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335 } |
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336 |
0 | 337 // ------------------------------------------------------------------ |
338 // CompileTask::print | |
339 void CompileTask::print() { | |
340 tty->print("<CompileTask compile_id=%d ", _compile_id); | |
341 tty->print("method="); | |
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342 _method->print_name(tty); |
0 | 343 tty->print_cr(" osr_bci=%d is_blocking=%s is_complete=%s is_success=%s>", |
344 _osr_bci, bool_to_str(_is_blocking), | |
345 bool_to_str(_is_complete), bool_to_str(_is_success)); | |
346 } | |
347 | |
1783 | 348 |
0 | 349 // ------------------------------------------------------------------ |
350 // CompileTask::print_line_on_error | |
351 // | |
352 // This function is called by fatal error handler when the thread | |
353 // causing troubles is a compiler thread. | |
354 // | |
355 // Do not grab any lock, do not allocate memory. | |
356 // | |
357 // Otherwise it's the same as CompileTask::print_line() | |
358 // | |
359 void CompileTask::print_line_on_error(outputStream* st, char* buf, int buflen) { | |
360 // print compiler name | |
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361 st->print("%s:", CompileBroker::compiler_name(comp_level())); |
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362 print_compilation(st); |
0 | 363 } |
364 | |
365 // ------------------------------------------------------------------ | |
366 // CompileTask::print_line | |
367 void CompileTask::print_line() { | |
368 ttyLocker ttyl; // keep the following output all in one block | |
369 // print compiler name if requested | |
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370 if (CIPrintCompilerName) tty->print("%s:", CompileBroker::compiler_name(comp_level())); |
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371 print_compilation(); |
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372 } |
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373 |
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374 |
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375 // ------------------------------------------------------------------ |
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376 // CompileTask::print_compilation_impl |
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377 void CompileTask::print_compilation_impl(outputStream* st, Method* method, int compile_id, int comp_level, |
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378 bool is_osr_method, int osr_bci, bool is_blocking, |
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379 const char* msg, bool short_form) { |
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380 if (!short_form) { |
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381 st->print("%7d ", (int) st->time_stamp().milliseconds()); // print timestamp |
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382 } |
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383 st->print("%4d ", compile_id); // print compilation number |
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384 |
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385 // For unloaded methods the transition to zombie occurs after the |
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386 // method is cleared so it's impossible to report accurate |
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387 // information for that case. |
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388 bool is_synchronized = false; |
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389 bool has_exception_handler = false; |
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390 bool is_native = false; |
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391 if (method != NULL) { |
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392 is_synchronized = method->is_synchronized(); |
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393 has_exception_handler = method->has_exception_handler(); |
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394 is_native = method->is_native(); |
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395 } |
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396 // method attributes |
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397 const char compile_type = is_osr_method ? '%' : ' '; |
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398 const char sync_char = is_synchronized ? 's' : ' '; |
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399 const char exception_char = has_exception_handler ? '!' : ' '; |
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400 const char blocking_char = is_blocking ? 'b' : ' '; |
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401 const char native_char = is_native ? 'n' : ' '; |
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402 |
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403 // print method attributes |
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404 st->print("%c%c%c%c%c ", compile_type, sync_char, exception_char, blocking_char, native_char); |
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405 |
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406 if (TieredCompilation) { |
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407 if (comp_level != -1) st->print("%d ", comp_level); |
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408 else st->print("- "); |
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409 } |
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410 st->print(" "); // more indent |
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411 |
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412 if (method == NULL) { |
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413 st->print("(method)"); |
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414 } else { |
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415 method->print_short_name(st); |
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416 if (is_osr_method) { |
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417 st->print(" @ %d", osr_bci); |
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418 } |
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419 if (method->is_native()) |
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420 st->print(" (native)"); |
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421 else |
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422 st->print(" (%d bytes)", method->code_size()); |
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423 } |
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424 |
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425 if (msg != NULL) { |
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426 st->print(" %s", msg); |
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427 } |
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428 if (!short_form) { |
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429 st->cr(); |
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430 } |
0 | 431 } |
432 | |
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433 // ------------------------------------------------------------------ |
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434 // CompileTask::print_inlining |
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435 void CompileTask::print_inlining(outputStream* st, ciMethod* method, int inline_level, int bci, const char* msg) { |
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436 // 1234567 |
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437 st->print(" "); // print timestamp |
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438 // 1234 |
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439 st->print(" "); // print compilation number |
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440 |
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441 // method attributes |
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442 if (method->is_loaded()) { |
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443 const char sync_char = method->is_synchronized() ? 's' : ' '; |
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444 const char exception_char = method->has_exception_handlers() ? '!' : ' '; |
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445 const char monitors_char = method->has_monitor_bytecodes() ? 'm' : ' '; |
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446 |
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447 // print method attributes |
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448 st->print(" %c%c%c ", sync_char, exception_char, monitors_char); |
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449 } else { |
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450 // %s!bn |
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451 st->print(" "); // print method attributes |
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452 } |
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453 |
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454 if (TieredCompilation) { |
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455 st->print(" "); |
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456 } |
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457 st->print(" "); // more indent |
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458 st->print(" "); // initial inlining indent |
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459 |
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460 for (int i = 0; i < inline_level; i++) st->print(" "); |
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461 |
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462 st->print("@ %d ", bci); // print bci |
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463 method->print_short_name(st); |
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464 if (method->is_loaded()) |
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465 st->print(" (%d bytes)", method->code_size()); |
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466 else |
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467 st->print(" (not loaded)"); |
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468 |
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469 if (msg != NULL) { |
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470 st->print(" %s", msg); |
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471 } |
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472 st->cr(); |
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473 } |
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474 |
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475 // ------------------------------------------------------------------ |
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476 // CompileTask::print_inline_indent |
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477 void CompileTask::print_inline_indent(int inline_level, outputStream* st) { |
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478 // 1234567 |
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479 st->print(" "); // print timestamp |
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480 // 1234 |
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481 st->print(" "); // print compilation number |
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482 // %s!bn |
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483 st->print(" "); // print method attributes |
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484 if (TieredCompilation) { |
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485 st->print(" "); |
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486 } |
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487 st->print(" "); // more indent |
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488 st->print(" "); // initial inlining indent |
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489 for (int i = 0; i < inline_level; i++) st->print(" "); |
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490 } |
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491 |
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492 // ------------------------------------------------------------------ |
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493 // CompileTask::print_compilation |
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494 void CompileTask::print_compilation(outputStream* st, const char* msg, bool short_form) { |
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495 bool is_osr_method = osr_bci() != InvocationEntryBci; |
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496 print_compilation_impl(st, method(), compile_id(), comp_level(), is_osr_method, osr_bci(), is_blocking(), msg, short_form); |
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497 } |
0 | 498 |
499 // ------------------------------------------------------------------ | |
500 // CompileTask::log_task | |
501 void CompileTask::log_task(xmlStream* log) { | |
502 Thread* thread = Thread::current(); | |
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503 methodHandle method(thread, this->method()); |
0 | 504 ResourceMark rm(thread); |
505 | |
506 // <task id='9' method='M' osr_bci='X' level='1' blocking='1' stamp='1.234'> | |
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507 log->print(" compile_id='%d'", _compile_id); |
0 | 508 if (_osr_bci != CompileBroker::standard_entry_bci) { |
509 log->print(" compile_kind='osr'"); // same as nmethod::compile_kind | |
510 } // else compile_kind='c2c' | |
511 if (!method.is_null()) log->method(method); | |
512 if (_osr_bci != CompileBroker::standard_entry_bci) { | |
513 log->print(" osr_bci='%d'", _osr_bci); | |
514 } | |
515 if (_comp_level != CompLevel_highest_tier) { | |
516 log->print(" level='%d'", _comp_level); | |
517 } | |
518 if (_is_blocking) { | |
519 log->print(" blocking='1'"); | |
520 } | |
521 log->stamp(); | |
522 } | |
523 | |
524 | |
525 // ------------------------------------------------------------------ | |
526 // CompileTask::log_task_queued | |
527 void CompileTask::log_task_queued() { | |
528 Thread* thread = Thread::current(); | |
529 ttyLocker ttyl; | |
530 ResourceMark rm(thread); | |
531 | |
532 xtty->begin_elem("task_queued"); | |
533 log_task(xtty); | |
534 if (_comment != NULL) { | |
535 xtty->print(" comment='%s'", _comment); | |
536 } | |
537 if (_hot_method != NULL) { | |
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538 methodHandle hot(thread, _hot_method); |
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539 methodHandle method(thread, _method); |
0 | 540 if (hot() != method()) { |
541 xtty->method(hot); | |
542 } | |
543 } | |
544 if (_hot_count != 0) { | |
545 xtty->print(" hot_count='%d'", _hot_count); | |
546 } | |
547 xtty->end_elem(); | |
548 } | |
549 | |
550 | |
551 // ------------------------------------------------------------------ | |
552 // CompileTask::log_task_start | |
553 void CompileTask::log_task_start(CompileLog* log) { | |
554 log->begin_head("task"); | |
555 log_task(log); | |
556 log->end_head(); | |
557 } | |
558 | |
559 | |
560 // ------------------------------------------------------------------ | |
561 // CompileTask::log_task_done | |
562 void CompileTask::log_task_done(CompileLog* log) { | |
563 Thread* thread = Thread::current(); | |
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564 methodHandle method(thread, this->method()); |
0 | 565 ResourceMark rm(thread); |
566 | |
567 // <task_done ... stamp='1.234'> </task> | |
568 nmethod* nm = code(); | |
569 log->begin_elem("task_done success='%d' nmsize='%d' count='%d'", | |
1748 | 570 _is_success, nm == NULL ? 0 : nm->content_size(), |
0 | 571 method->invocation_count()); |
572 int bec = method->backedge_count(); | |
573 if (bec != 0) log->print(" backedge_count='%d'", bec); | |
574 // Note: "_is_complete" is about to be set, but is not. | |
575 if (_num_inlined_bytecodes != 0) { | |
576 log->print(" inlined_bytes='%d'", _num_inlined_bytecodes); | |
577 } | |
578 log->stamp(); | |
579 log->end_elem(); | |
580 log->tail("task"); | |
581 log->clear_identities(); // next task will have different CI | |
582 if (log->unflushed_count() > 2000) { | |
583 log->flush(); | |
584 } | |
585 log->mark_file_end(); | |
586 } | |
587 | |
588 | |
589 | |
590 // Add a CompileTask to a CompileQueue | |
591 void CompileQueue::add(CompileTask* task) { | |
592 assert(lock()->owned_by_self(), "must own lock"); | |
593 | |
594 task->set_next(NULL); | |
1783 | 595 task->set_prev(NULL); |
0 | 596 |
597 if (_last == NULL) { | |
598 // The compile queue is empty. | |
599 assert(_first == NULL, "queue is empty"); | |
600 _first = task; | |
601 _last = task; | |
602 } else { | |
603 // Append the task to the queue. | |
604 assert(_last->next() == NULL, "not last"); | |
605 _last->set_next(task); | |
1783 | 606 task->set_prev(_last); |
0 | 607 _last = task; |
608 } | |
1783 | 609 ++_size; |
0 | 610 |
611 // Mark the method as being in the compile queue. | |
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612 task->method()->set_queued_for_compilation(); |
0 | 613 |
614 if (CIPrintCompileQueue) { | |
615 print(); | |
616 } | |
617 | |
618 if (LogCompilation && xtty != NULL) { | |
619 task->log_task_queued(); | |
620 } | |
621 | |
622 // Notify CompilerThreads that a task is available. | |
1783 | 623 lock()->notify_all(); |
0 | 624 } |
625 | |
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626 void CompileQueue::delete_all() { |
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627 assert(lock()->owned_by_self(), "must own lock"); |
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628 if (_first != NULL) { |
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629 for (CompileTask* task = _first; task != NULL; task = task->next()) { |
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630 delete task; |
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631 } |
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632 _first = NULL; |
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633 } |
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634 } |
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635 |
0 | 636 // ------------------------------------------------------------------ |
637 // CompileQueue::get | |
638 // | |
639 // Get the next CompileTask from a CompileQueue | |
640 CompileTask* CompileQueue::get() { | |
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641 NMethodSweeper::possibly_sweep(); |
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642 |
0 | 643 MutexLocker locker(lock()); |
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644 // If _first is NULL we have no more compile jobs. There are two reasons for |
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645 // having no compile jobs: First, we compiled everything we wanted. Second, |
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646 // we ran out of code cache so compilation has been disabled. In the latter |
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647 // case we perform code cache sweeps to free memory such that we can re-enable |
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648 // compilation. |
0 | 649 while (_first == NULL) { |
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650 // Exit loop if compilation is disabled forever |
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651 if (CompileBroker::is_compilation_disabled_forever()) { |
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652 return NULL; |
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653 } |
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654 |
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655 if (UseCodeCacheFlushing && !CompileBroker::should_compile_new_jobs()) { |
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656 // Wait a certain amount of time to possibly do another sweep. |
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657 // We must wait until stack scanning has happened so that we can |
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658 // transition a method's state from 'not_entrant' to 'zombie'. |
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659 long wait_time = NmethodSweepCheckInterval * 1000; |
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660 if (FLAG_IS_DEFAULT(NmethodSweepCheckInterval)) { |
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661 // Only one thread at a time can do sweeping. Scale the |
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662 // wait time according to the number of compiler threads. |
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663 // As a result, the next sweep is likely to happen every 100ms |
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664 // with an arbitrary number of threads that do sweeping. |
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665 wait_time = 100 * CICompilerCount; |
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666 } |
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667 bool timeout = lock()->wait(!Mutex::_no_safepoint_check_flag, wait_time); |
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668 if (timeout) { |
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669 MutexUnlocker ul(lock()); |
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670 NMethodSweeper::possibly_sweep(); |
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671 } |
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672 } else { |
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673 // If there are no compilation tasks and we can compile new jobs |
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674 // (i.e., there is enough free space in the code cache) there is |
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675 // no need to invoke the sweeper. As a result, the hotness of methods |
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676 // remains unchanged. This behavior is desired, since we want to keep |
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677 // the stable state, i.e., we do not want to evict methods from the |
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678 // code cache if it is unnecessary. |
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679 // We need a timed wait here, since compiler threads can exit if compilation |
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680 // is disabled forever. We use 5 seconds wait time; the exiting of compiler threads |
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681 // is not critical and we do not want idle compiler threads to wake up too often. |
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682 lock()->wait(!Mutex::_no_safepoint_check_flag, 5*1000); |
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683 } |
0 | 684 } |
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685 |
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686 if (CompileBroker::is_compilation_disabled_forever()) { |
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687 return NULL; |
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688 } |
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689 |
1783 | 690 CompileTask* task = CompilationPolicy::policy()->select_task(this); |
691 remove(task); | |
692 return task; | |
693 } | |
0 | 694 |
1783 | 695 void CompileQueue::remove(CompileTask* task) |
696 { | |
697 assert(lock()->owned_by_self(), "must own lock"); | |
698 if (task->prev() != NULL) { | |
699 task->prev()->set_next(task->next()); | |
700 } else { | |
701 // max is the first element | |
702 assert(task == _first, "Sanity"); | |
703 _first = task->next(); | |
0 | 704 } |
705 | |
1783 | 706 if (task->next() != NULL) { |
707 task->next()->set_prev(task->prev()); | |
708 } else { | |
709 // max is the last element | |
710 assert(task == _last, "Sanity"); | |
711 _last = task->prev(); | |
712 } | |
713 --_size; | |
0 | 714 } |
715 | |
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716 // methods in the compile queue need to be marked as used on the stack |
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717 // so that they don't get reclaimed by Redefine Classes |
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718 void CompileQueue::mark_on_stack() { |
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719 CompileTask* task = _first; |
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720 while (task != NULL) { |
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721 task->mark_on_stack(); |
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722 task = task->next(); |
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723 } |
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724 } |
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725 |
0 | 726 // ------------------------------------------------------------------ |
727 // CompileQueue::print | |
728 void CompileQueue::print() { | |
729 tty->print_cr("Contents of %s", name()); | |
730 tty->print_cr("----------------------"); | |
731 CompileTask* task = _first; | |
732 while (task != NULL) { | |
733 task->print_line(); | |
734 task = task->next(); | |
735 } | |
736 tty->print_cr("----------------------"); | |
737 } | |
738 | |
739 CompilerCounters::CompilerCounters(const char* thread_name, int instance, TRAPS) { | |
740 | |
741 _current_method[0] = '\0'; | |
742 _compile_type = CompileBroker::no_compile; | |
743 | |
744 if (UsePerfData) { | |
745 ResourceMark rm; | |
746 | |
747 // create the thread instance name space string - don't create an | |
748 // instance subspace if instance is -1 - keeps the adapterThread | |
749 // counters from having a ".0" namespace. | |
750 const char* thread_i = (instance == -1) ? thread_name : | |
751 PerfDataManager::name_space(thread_name, instance); | |
752 | |
753 | |
754 char* name = PerfDataManager::counter_name(thread_i, "method"); | |
755 _perf_current_method = | |
756 PerfDataManager::create_string_variable(SUN_CI, name, | |
757 cmname_buffer_length, | |
758 _current_method, CHECK); | |
759 | |
760 name = PerfDataManager::counter_name(thread_i, "type"); | |
761 _perf_compile_type = PerfDataManager::create_variable(SUN_CI, name, | |
762 PerfData::U_None, | |
763 (jlong)_compile_type, | |
764 CHECK); | |
765 | |
766 name = PerfDataManager::counter_name(thread_i, "time"); | |
767 _perf_time = PerfDataManager::create_counter(SUN_CI, name, | |
768 PerfData::U_Ticks, CHECK); | |
769 | |
770 name = PerfDataManager::counter_name(thread_i, "compiles"); | |
771 _perf_compiles = PerfDataManager::create_counter(SUN_CI, name, | |
772 PerfData::U_Events, CHECK); | |
773 } | |
774 } | |
775 | |
776 // ------------------------------------------------------------------ | |
777 // CompileBroker::compilation_init | |
778 // | |
779 // Initialize the Compilation object | |
780 void CompileBroker::compilation_init() { | |
781 _last_method_compiled[0] = '\0'; | |
782 | |
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783 // No need to initialize compilation system if we do not use it. |
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784 if (!UseCompiler) { |
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785 return; |
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786 } |
1970 | 787 #ifndef SHARK |
0 | 788 // Set the interface to the current compiler(s). |
1783 | 789 int c1_count = CompilationPolicy::policy()->compiler_count(CompLevel_simple); |
790 int c2_count = CompilationPolicy::policy()->compiler_count(CompLevel_full_optimization); | |
0 | 791 #ifdef COMPILER1 |
1783 | 792 if (c1_count > 0) { |
793 _compilers[0] = new Compiler(); | |
794 } | |
0 | 795 #endif // COMPILER1 |
796 | |
797 #ifdef COMPILER2 | |
1783 | 798 if (c2_count > 0) { |
799 _compilers[1] = new C2Compiler(); | |
800 } | |
0 | 801 #endif // COMPILER2 |
802 | |
1970 | 803 #else // SHARK |
804 int c1_count = 0; | |
805 int c2_count = 1; | |
806 | |
807 _compilers[1] = new SharkCompiler(); | |
808 #endif // SHARK | |
1692 | 809 |
0 | 810 // Initialize the CompileTask free list |
811 _task_free_list = NULL; | |
812 | |
813 // Start the CompilerThreads | |
1783 | 814 init_compiler_threads(c1_count, c2_count); |
0 | 815 // totalTime performance counter is always created as it is required |
816 // by the implementation of java.lang.management.CompilationMBean. | |
817 { | |
818 EXCEPTION_MARK; | |
819 _perf_total_compilation = | |
820 PerfDataManager::create_counter(JAVA_CI, "totalTime", | |
821 PerfData::U_Ticks, CHECK); | |
822 } | |
823 | |
824 | |
825 if (UsePerfData) { | |
826 | |
827 EXCEPTION_MARK; | |
828 | |
829 // create the jvmstat performance counters | |
830 _perf_osr_compilation = | |
831 PerfDataManager::create_counter(SUN_CI, "osrTime", | |
832 PerfData::U_Ticks, CHECK); | |
833 | |
834 _perf_standard_compilation = | |
835 PerfDataManager::create_counter(SUN_CI, "standardTime", | |
836 PerfData::U_Ticks, CHECK); | |
837 | |
838 _perf_total_bailout_count = | |
839 PerfDataManager::create_counter(SUN_CI, "totalBailouts", | |
840 PerfData::U_Events, CHECK); | |
841 | |
842 _perf_total_invalidated_count = | |
843 PerfDataManager::create_counter(SUN_CI, "totalInvalidates", | |
844 PerfData::U_Events, CHECK); | |
845 | |
846 _perf_total_compile_count = | |
847 PerfDataManager::create_counter(SUN_CI, "totalCompiles", | |
848 PerfData::U_Events, CHECK); | |
849 _perf_total_osr_compile_count = | |
850 PerfDataManager::create_counter(SUN_CI, "osrCompiles", | |
851 PerfData::U_Events, CHECK); | |
852 | |
853 _perf_total_standard_compile_count = | |
854 PerfDataManager::create_counter(SUN_CI, "standardCompiles", | |
855 PerfData::U_Events, CHECK); | |
856 | |
857 _perf_sum_osr_bytes_compiled = | |
858 PerfDataManager::create_counter(SUN_CI, "osrBytes", | |
859 PerfData::U_Bytes, CHECK); | |
860 | |
861 _perf_sum_standard_bytes_compiled = | |
862 PerfDataManager::create_counter(SUN_CI, "standardBytes", | |
863 PerfData::U_Bytes, CHECK); | |
864 | |
865 _perf_sum_nmethod_size = | |
866 PerfDataManager::create_counter(SUN_CI, "nmethodSize", | |
867 PerfData::U_Bytes, CHECK); | |
868 | |
869 _perf_sum_nmethod_code_size = | |
870 PerfDataManager::create_counter(SUN_CI, "nmethodCodeSize", | |
871 PerfData::U_Bytes, CHECK); | |
872 | |
873 _perf_last_method = | |
874 PerfDataManager::create_string_variable(SUN_CI, "lastMethod", | |
875 CompilerCounters::cmname_buffer_length, | |
876 "", CHECK); | |
877 | |
878 _perf_last_failed_method = | |
879 PerfDataManager::create_string_variable(SUN_CI, "lastFailedMethod", | |
880 CompilerCounters::cmname_buffer_length, | |
881 "", CHECK); | |
882 | |
883 _perf_last_invalidated_method = | |
884 PerfDataManager::create_string_variable(SUN_CI, "lastInvalidatedMethod", | |
885 CompilerCounters::cmname_buffer_length, | |
886 "", CHECK); | |
887 | |
888 _perf_last_compile_type = | |
889 PerfDataManager::create_variable(SUN_CI, "lastType", | |
890 PerfData::U_None, | |
891 (jlong)CompileBroker::no_compile, | |
892 CHECK); | |
893 | |
894 _perf_last_compile_size = | |
895 PerfDataManager::create_variable(SUN_CI, "lastSize", | |
896 PerfData::U_Bytes, | |
897 (jlong)CompileBroker::no_compile, | |
898 CHECK); | |
899 | |
900 | |
901 _perf_last_failed_type = | |
902 PerfDataManager::create_variable(SUN_CI, "lastFailedType", | |
903 PerfData::U_None, | |
904 (jlong)CompileBroker::no_compile, | |
905 CHECK); | |
906 | |
907 _perf_last_invalidated_type = | |
908 PerfDataManager::create_variable(SUN_CI, "lastInvalidatedType", | |
909 PerfData::U_None, | |
910 (jlong)CompileBroker::no_compile, | |
911 CHECK); | |
912 } | |
913 | |
914 _initialized = true; | |
915 } | |
916 | |
917 | |
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918 CompilerThread* CompileBroker::make_compiler_thread(const char* name, CompileQueue* queue, CompilerCounters* counters, |
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919 AbstractCompiler* comp, TRAPS) { |
0 | 920 CompilerThread* compiler_thread = NULL; |
921 | |
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922 Klass* k = |
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923 SystemDictionary::resolve_or_fail(vmSymbols::java_lang_Thread(), |
0 | 924 true, CHECK_0); |
925 instanceKlassHandle klass (THREAD, k); | |
926 instanceHandle thread_oop = klass->allocate_instance_handle(CHECK_0); | |
927 Handle string = java_lang_String::create_from_str(name, CHECK_0); | |
928 | |
929 // Initialize thread_oop to put it into the system threadGroup | |
930 Handle thread_group (THREAD, Universe::system_thread_group()); | |
931 JavaValue result(T_VOID); | |
932 JavaCalls::call_special(&result, thread_oop, | |
933 klass, | |
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934 vmSymbols::object_initializer_name(), |
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935 vmSymbols::threadgroup_string_void_signature(), |
0 | 936 thread_group, |
937 string, | |
938 CHECK_0); | |
939 | |
940 { | |
941 MutexLocker mu(Threads_lock, THREAD); | |
942 compiler_thread = new CompilerThread(queue, counters); | |
943 // At this point the new CompilerThread data-races with this startup | |
944 // thread (which I believe is the primoridal thread and NOT the VM | |
945 // thread). This means Java bytecodes being executed at startup can | |
946 // queue compile jobs which will run at whatever default priority the | |
947 // newly created CompilerThread runs at. | |
948 | |
949 | |
950 // At this point it may be possible that no osthread was created for the | |
951 // JavaThread due to lack of memory. We would have to throw an exception | |
952 // in that case. However, since this must work and we do not allow | |
953 // exceptions anyway, check and abort if this fails. | |
954 | |
955 if (compiler_thread == NULL || compiler_thread->osthread() == NULL){ | |
956 vm_exit_during_initialization("java.lang.OutOfMemoryError", | |
957 "unable to create new native thread"); | |
958 } | |
959 | |
960 java_lang_Thread::set_thread(thread_oop(), compiler_thread); | |
961 | |
962 // Note that this only sets the JavaThread _priority field, which by | |
963 // definition is limited to Java priorities and not OS priorities. | |
964 // The os-priority is set in the CompilerThread startup code itself | |
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965 |
0 | 966 java_lang_Thread::set_priority(thread_oop(), NearMaxPriority); |
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967 |
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968 // Note that we cannot call os::set_priority because it expects Java |
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969 // priorities and we are *explicitly* using OS priorities so that it's |
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970 // possible to set the compiler thread priority higher than any Java |
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971 // thread. |
0 | 972 |
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973 int native_prio = CompilerThreadPriority; |
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974 if (native_prio == -1) { |
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975 if (UseCriticalCompilerThreadPriority) { |
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976 native_prio = os::java_to_os_priority[CriticalPriority]; |
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977 } else { |
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978 native_prio = os::java_to_os_priority[NearMaxPriority]; |
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979 } |
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980 } |
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981 os::set_native_priority(compiler_thread, native_prio); |
0 | 982 |
983 java_lang_Thread::set_daemon(thread_oop()); | |
984 | |
985 compiler_thread->set_threadObj(thread_oop()); | |
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986 compiler_thread->set_compiler(comp); |
0 | 987 Threads::add(compiler_thread); |
988 Thread::start(compiler_thread); | |
989 } | |
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990 |
0 | 991 // Let go of Threads_lock before yielding |
992 os::yield(); // make sure that the compiler thread is started early (especially helpful on SOLARIS) | |
993 | |
994 return compiler_thread; | |
995 } | |
996 | |
997 | |
1783 | 998 void CompileBroker::init_compiler_threads(int c1_compiler_count, int c2_compiler_count) { |
0 | 999 EXCEPTION_MARK; |
2447 | 1000 #if !defined(ZERO) && !defined(SHARK) |
1783 | 1001 assert(c2_compiler_count > 0 || c1_compiler_count > 0, "No compilers?"); |
2447 | 1002 #endif // !ZERO && !SHARK |
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1003 // Initialize the compilation queue |
1783 | 1004 if (c2_compiler_count > 0) { |
1005 _c2_method_queue = new CompileQueue("C2MethodQueue", MethodCompileQueue_lock); | |
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1006 _compilers[1]->set_num_compiler_threads(c2_compiler_count); |
1783 | 1007 } |
1008 if (c1_compiler_count > 0) { | |
1009 _c1_method_queue = new CompileQueue("C1MethodQueue", MethodCompileQueue_lock); | |
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1010 _compilers[0]->set_num_compiler_threads(c1_compiler_count); |
1783 | 1011 } |
0 | 1012 |
1783 | 1013 int compiler_count = c1_compiler_count + c2_compiler_count; |
1014 | |
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1015 _compiler_threads = |
6197 | 1016 new (ResourceObj::C_HEAP, mtCompiler) GrowableArray<CompilerThread*>(compiler_count, true); |
0 | 1017 |
1018 char name_buffer[256]; | |
1783 | 1019 for (int i = 0; i < c2_compiler_count; i++) { |
0 | 1020 // Create a name for our thread. |
1783 | 1021 sprintf(name_buffer, "C2 CompilerThread%d", i); |
0 | 1022 CompilerCounters* counters = new CompilerCounters("compilerThread", i, CHECK); |
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1023 // Shark and C2 |
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1024 CompilerThread* new_thread = make_compiler_thread(name_buffer, _c2_method_queue, counters, _compilers[1], CHECK); |
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1025 _compiler_threads->append(new_thread); |
0 | 1026 } |
1783 | 1027 |
1028 for (int i = c2_compiler_count; i < compiler_count; i++) { | |
1029 // Create a name for our thread. | |
1030 sprintf(name_buffer, "C1 CompilerThread%d", i); | |
1031 CompilerCounters* counters = new CompilerCounters("compilerThread", i, CHECK); | |
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1032 // C1 |
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1033 CompilerThread* new_thread = make_compiler_thread(name_buffer, _c1_method_queue, counters, _compilers[0], CHECK); |
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1034 _compiler_threads->append(new_thread); |
1783 | 1035 } |
1036 | |
0 | 1037 if (UsePerfData) { |
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1038 PerfDataManager::create_constant(SUN_CI, "threads", PerfData::U_Bytes, compiler_count, CHECK); |
0 | 1039 } |
1040 } | |
1041 | |
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1042 |
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1043 // Set the methods on the stack as on_stack so that redefine classes doesn't |
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1044 // reclaim them |
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1045 void CompileBroker::mark_on_stack() { |
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1046 if (_c2_method_queue != NULL) { |
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1047 _c2_method_queue->mark_on_stack(); |
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1048 } |
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1049 if (_c1_method_queue != NULL) { |
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1050 _c1_method_queue->mark_on_stack(); |
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1051 } |
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1052 } |
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1053 |
0 | 1054 // ------------------------------------------------------------------ |
1055 // CompileBroker::compile_method | |
1056 // | |
1057 // Request compilation of a method. | |
1058 void CompileBroker::compile_method_base(methodHandle method, | |
1059 int osr_bci, | |
1060 int comp_level, | |
1061 methodHandle hot_method, | |
1062 int hot_count, | |
1063 const char* comment, | |
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1064 Thread* thread) { |
0 | 1065 // do nothing if compiler thread(s) is not available |
1066 if (!_initialized ) { | |
1067 return; | |
1068 } | |
1069 | |
1070 guarantee(!method->is_abstract(), "cannot compile abstract methods"); | |
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1071 assert(method->method_holder()->oop_is_instance(), |
0 | 1072 "sanity check"); |
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1073 assert(!method->method_holder()->is_not_initialized(), |
0 | 1074 "method holder must be initialized"); |
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1075 assert(!method->is_method_handle_intrinsic(), "do not enqueue these guys"); |
0 | 1076 |
1077 if (CIPrintRequests) { | |
1078 tty->print("request: "); | |
1079 method->print_short_name(tty); | |
1080 if (osr_bci != InvocationEntryBci) { | |
1081 tty->print(" osr_bci: %d", osr_bci); | |
1082 } | |
1083 tty->print(" comment: %s count: %d", comment, hot_count); | |
1084 if (!hot_method.is_null()) { | |
1085 tty->print(" hot: "); | |
1086 if (hot_method() != method()) { | |
1087 hot_method->print_short_name(tty); | |
1088 } else { | |
1089 tty->print("yes"); | |
1090 } | |
1091 } | |
1092 tty->cr(); | |
1093 } | |
1094 | |
1095 // A request has been made for compilation. Before we do any | |
1096 // real work, check to see if the method has been compiled | |
1097 // in the meantime with a definitive result. | |
1098 if (compilation_is_complete(method, osr_bci, comp_level)) { | |
1099 return; | |
1100 } | |
1101 | |
2403 | 1102 #ifndef PRODUCT |
1103 if (osr_bci != -1 && !FLAG_IS_DEFAULT(OSROnlyBCI)) { | |
1104 if ((OSROnlyBCI > 0) ? (OSROnlyBCI != osr_bci) : (-OSROnlyBCI == osr_bci)) { | |
1105 // Positive OSROnlyBCI means only compile that bci. Negative means don't compile that BCI. | |
1106 return; | |
1107 } | |
1108 } | |
1109 #endif | |
1783 | 1110 |
0 | 1111 // If this method is already in the compile queue, then |
1112 // we do not block the current thread. | |
1113 if (compilation_is_in_queue(method, osr_bci)) { | |
1114 // We may want to decay our counter a bit here to prevent | |
1115 // multiple denied requests for compilation. This is an | |
1116 // open compilation policy issue. Note: The other possibility, | |
1117 // in the case that this is a blocking compile request, is to have | |
1118 // all subsequent blocking requesters wait for completion of | |
1119 // ongoing compiles. Note that in this case we'll need a protocol | |
1120 // for freeing the associated compile tasks. [Or we could have | |
1121 // a single static monitor on which all these waiters sleep.] | |
1122 return; | |
1123 } | |
1124 | |
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1125 // If the requesting thread is holding the pending list lock |
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1126 // then we just return. We can't risk blocking while holding |
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1127 // the pending list lock or a 3-way deadlock may occur |
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1128 // between the reference handler thread, a GC (instigated |
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1129 // by a compiler thread), and compiled method registration. |
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1130 if (InstanceRefKlass::owns_pending_list_lock(JavaThread::current())) { |
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1131 return; |
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1132 } |
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1133 |
0 | 1134 // Outputs from the following MutexLocker block: |
1135 CompileTask* task = NULL; | |
1136 bool blocking = false; | |
1783 | 1137 CompileQueue* queue = compile_queue(comp_level); |
0 | 1138 |
1139 // Acquire our lock. | |
1140 { | |
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1141 MutexLocker locker(queue->lock(), thread); |
0 | 1142 |
1143 // Make sure the method has not slipped into the queues since | |
1144 // last we checked; note that those checks were "fast bail-outs". | |
1145 // Here we need to be more careful, see 14012000 below. | |
1146 if (compilation_is_in_queue(method, osr_bci)) { | |
1147 return; | |
1148 } | |
1149 | |
1150 // We need to check again to see if the compilation has | |
1151 // completed. A previous compilation may have registered | |
1152 // some result. | |
1153 if (compilation_is_complete(method, osr_bci, comp_level)) { | |
1154 return; | |
1155 } | |
1156 | |
1157 // We now know that this compilation is not pending, complete, | |
1158 // or prohibited. Assign a compile_id to this compilation | |
1159 // and check to see if it is in our [Start..Stop) range. | |
1160 uint compile_id = assign_compile_id(method, osr_bci); | |
1161 if (compile_id == 0) { | |
1162 // The compilation falls outside the allowed range. | |
1163 return; | |
1164 } | |
1165 | |
1166 // Should this thread wait for completion of the compile? | |
1167 blocking = is_compile_blocking(method, osr_bci); | |
1168 | |
1169 // We will enter the compilation in the queue. | |
1170 // 14012000: Note that this sets the queued_for_compile bits in | |
1171 // the target method. We can now reason that a method cannot be | |
1172 // queued for compilation more than once, as follows: | |
1173 // Before a thread queues a task for compilation, it first acquires | |
1174 // the compile queue lock, then checks if the method's queued bits | |
1175 // are set or it has already been compiled. Thus there can not be two | |
1176 // instances of a compilation task for the same method on the | |
1177 // compilation queue. Consider now the case where the compilation | |
1178 // thread has already removed a task for that method from the queue | |
1179 // and is in the midst of compiling it. In this case, the | |
1180 // queued_for_compile bits must be set in the method (and these | |
1181 // will be visible to the current thread, since the bits were set | |
1182 // under protection of the compile queue lock, which we hold now. | |
1183 // When the compilation completes, the compiler thread first sets | |
1184 // the compilation result and then clears the queued_for_compile | |
1185 // bits. Neither of these actions are protected by a barrier (or done | |
1186 // under the protection of a lock), so the only guarantee we have | |
1187 // (on machines with TSO (Total Store Order)) is that these values | |
1188 // will update in that order. As a result, the only combinations of | |
1189 // these bits that the current thread will see are, in temporal order: | |
1190 // <RESULT, QUEUE> : | |
1191 // <0, 1> : in compile queue, but not yet compiled | |
1192 // <1, 1> : compiled but queue bit not cleared | |
1193 // <1, 0> : compiled and queue bit cleared | |
1194 // Because we first check the queue bits then check the result bits, | |
1195 // we are assured that we cannot introduce a duplicate task. | |
1196 // Note that if we did the tests in the reverse order (i.e. check | |
1197 // result then check queued bit), we could get the result bit before | |
1198 // the compilation completed, and the queue bit after the compilation | |
1199 // completed, and end up introducing a "duplicate" (redundant) task. | |
1200 // In that case, the compiler thread should first check if a method | |
1201 // has already been compiled before trying to compile it. | |
1202 // NOTE: in the event that there are multiple compiler threads and | |
1203 // there is de-optimization/recompilation, things will get hairy, | |
1204 // and in that case it's best to protect both the testing (here) of | |
1205 // these bits, and their updating (here and elsewhere) under a | |
1206 // common lock. | |
1783 | 1207 task = create_compile_task(queue, |
0 | 1208 compile_id, method, |
1209 osr_bci, comp_level, | |
1210 hot_method, hot_count, comment, | |
1211 blocking); | |
1212 } | |
1213 | |
1214 if (blocking) { | |
1215 wait_for_completion(task); | |
1216 } | |
1217 } | |
1218 | |
1219 | |
1220 nmethod* CompileBroker::compile_method(methodHandle method, int osr_bci, | |
1783 | 1221 int comp_level, |
0 | 1222 methodHandle hot_method, int hot_count, |
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1223 const char* comment, Thread* THREAD) { |
0 | 1224 // make sure arguments make sense |
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1225 assert(method->method_holder()->oop_is_instance(), "not an instance method"); |
0 | 1226 assert(osr_bci == InvocationEntryBci || (0 <= osr_bci && osr_bci < method->code_size()), "bci out of range"); |
1227 assert(!method->is_abstract() && (osr_bci == InvocationEntryBci || !method->is_native()), "cannot compile abstract/native methods"); | |
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1228 assert(!method->method_holder()->is_not_initialized(), "method holder must be initialized"); |
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1229 // allow any levels for WhiteBox |
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1230 assert(WhiteBoxAPI || TieredCompilation || comp_level == CompLevel_highest_tier, "only CompLevel_highest_tier must be used in non-tiered"); |
0 | 1231 // return quickly if possible |
1232 | |
1233 // lock, make sure that the compilation | |
1234 // isn't prohibited in a straightforward way. | |
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1235 AbstractCompiler *comp = CompileBroker::compiler(comp_level); |
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1236 if (comp == NULL || !comp->can_compile_method(method) || |
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1237 compilation_is_prohibited(method, osr_bci, comp_level)) { |
0 | 1238 return NULL; |
1239 } | |
1240 | |
1241 if (osr_bci == InvocationEntryBci) { | |
1242 // standard compilation | |
1243 nmethod* method_code = method->code(); | |
1783 | 1244 if (method_code != NULL) { |
1245 if (compilation_is_complete(method, osr_bci, comp_level)) { | |
1246 return method_code; | |
1247 } | |
0 | 1248 } |
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1249 if (method->is_not_compilable(comp_level)) { |
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1250 return NULL; |
1202 | 1251 } |
0 | 1252 } else { |
1253 // osr compilation | |
1254 #ifndef TIERED | |
1255 // seems like an assert of dubious value | |
1783 | 1256 assert(comp_level == CompLevel_highest_tier, |
0 | 1257 "all OSR compiles are assumed to be at a single compilation lavel"); |
1258 #endif // TIERED | |
1783 | 1259 // We accept a higher level osr method |
1260 nmethod* nm = method->lookup_osr_nmethod_for(osr_bci, comp_level, false); | |
0 | 1261 if (nm != NULL) return nm; |
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1262 if (method->is_not_osr_compilable(comp_level)) return NULL; |
0 | 1263 } |
1264 | |
1265 assert(!HAS_PENDING_EXCEPTION, "No exception should be present"); | |
1266 // some prerequisites that are compiler specific | |
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1267 if (comp->is_c2() || comp->is_shark()) { |
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1268 method->constants()->resolve_string_constants(CHECK_AND_CLEAR_NULL); |
0 | 1269 // Resolve all classes seen in the signature of the method |
1270 // we are compiling. | |
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1271 Method::load_signature_classes(method, CHECK_AND_CLEAR_NULL); |
0 | 1272 } |
1273 | |
1274 // If the method is native, do the lookup in the thread requesting | |
1275 // the compilation. Native lookups can load code, which is not | |
1276 // permitted during compilation. | |
1277 // | |
1278 // Note: A native method implies non-osr compilation which is | |
1279 // checked with an assertion at the entry of this method. | |
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1280 if (method->is_native() && !method->is_method_handle_intrinsic()) { |
0 | 1281 bool in_base_library; |
1282 address adr = NativeLookup::lookup(method, in_base_library, THREAD); | |
1283 if (HAS_PENDING_EXCEPTION) { | |
1284 // In case of an exception looking up the method, we just forget | |
1285 // about it. The interpreter will kick-in and throw the exception. | |
1286 method->set_not_compilable(); // implies is_not_osr_compilable() | |
1287 CLEAR_PENDING_EXCEPTION; | |
1288 return NULL; | |
1289 } | |
1290 assert(method->has_native_function(), "must have native code by now"); | |
1291 } | |
1292 | |
1293 // RedefineClasses() has replaced this method; just return | |
1294 if (method->is_old()) { | |
1295 return NULL; | |
1296 } | |
1297 | |
1298 // JVMTI -- post_compile_event requires jmethod_id() that may require | |
1299 // a lock the compiling thread can not acquire. Prefetch it here. | |
1300 if (JvmtiExport::should_post_compiled_method_load()) { | |
1301 method->jmethod_id(); | |
1302 } | |
1303 | |
1304 // do the compilation | |
1305 if (method->is_native()) { | |
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1306 if (!PreferInterpreterNativeStubs || method->is_method_handle_intrinsic()) { |
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1307 // Acquire our lock. |
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1308 int compile_id; |
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1309 { |
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1310 MutexLocker locker(MethodCompileQueue_lock, THREAD); |
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1311 compile_id = assign_compile_id(method, standard_entry_bci); |
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1312 } |
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1313 // To properly handle the appendix argument for out-of-line calls we are using a small trampoline that |
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1314 // pops off the appendix argument and jumps to the target (see gen_special_dispatch in SharedRuntime). |
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1315 // |
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1316 // Since normal compiled-to-compiled calls are not able to handle such a thing we MUST generate an adapter |
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1317 // in this case. If we can't generate one and use it we can not execute the out-of-line method handle calls. |
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1318 (void) AdapterHandlerLibrary::create_native_wrapper(method, compile_id); |
0 | 1319 } else { |
1320 return NULL; | |
1321 } | |
1322 } else { | |
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1323 // If the compiler is shut off due to code cache getting full |
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1324 // fail out now so blocking compiles dont hang the java thread |
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1325 if (!should_compile_new_jobs()) { |
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1326 CompilationPolicy::policy()->delay_compilation(method()); |
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1327 return NULL; |
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1328 } |
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1329 compile_method_base(method, osr_bci, comp_level, hot_method, hot_count, comment, THREAD); |
0 | 1330 } |
1331 | |
1332 // return requested nmethod | |
1783 | 1333 // We accept a higher level osr method |
1334 return osr_bci == InvocationEntryBci ? method->code() : method->lookup_osr_nmethod_for(osr_bci, comp_level, false); | |
0 | 1335 } |
1336 | |
1337 | |
1338 // ------------------------------------------------------------------ | |
1339 // CompileBroker::compilation_is_complete | |
1340 // | |
1341 // See if compilation of this method is already complete. | |
1342 bool CompileBroker::compilation_is_complete(methodHandle method, | |
1343 int osr_bci, | |
1344 int comp_level) { | |
1345 bool is_osr = (osr_bci != standard_entry_bci); | |
1346 if (is_osr) { | |
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1347 if (method->is_not_osr_compilable(comp_level)) { |
0 | 1348 return true; |
1349 } else { | |
1783 | 1350 nmethod* result = method->lookup_osr_nmethod_for(osr_bci, comp_level, true); |
0 | 1351 return (result != NULL); |
1352 } | |
1353 } else { | |
1354 if (method->is_not_compilable(comp_level)) { | |
1355 return true; | |
1356 } else { | |
1357 nmethod* result = method->code(); | |
1358 if (result == NULL) return false; | |
1783 | 1359 return comp_level == result->comp_level(); |
0 | 1360 } |
1361 } | |
1362 } | |
1363 | |
1364 | |
1365 // ------------------------------------------------------------------ | |
1366 // CompileBroker::compilation_is_in_queue | |
1367 // | |
1368 // See if this compilation is already requested. | |
1369 // | |
1370 // Implementation note: there is only a single "is in queue" bit | |
1371 // for each method. This means that the check below is overly | |
1372 // conservative in the sense that an osr compilation in the queue | |
1373 // will block a normal compilation from entering the queue (and vice | |
1374 // versa). This can be remedied by a full queue search to disambiguate | |
1375 // cases. If it is deemed profitible, this may be done. | |
1376 bool CompileBroker::compilation_is_in_queue(methodHandle method, | |
1783 | 1377 int osr_bci) { |
0 | 1378 return method->queued_for_compilation(); |
1379 } | |
1380 | |
1381 // ------------------------------------------------------------------ | |
1382 // CompileBroker::compilation_is_prohibited | |
1383 // | |
1384 // See if this compilation is not allowed. | |
1385 bool CompileBroker::compilation_is_prohibited(methodHandle method, int osr_bci, int comp_level) { | |
1386 bool is_native = method->is_native(); | |
1387 // Some compilers may not support the compilation of natives. | |
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1388 AbstractCompiler *comp = compiler(comp_level); |
0 | 1389 if (is_native && |
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1390 (!CICompileNatives || comp == NULL || !comp->supports_native())) { |
1783 | 1391 method->set_not_compilable_quietly(comp_level); |
0 | 1392 return true; |
1393 } | |
1394 | |
1395 bool is_osr = (osr_bci != standard_entry_bci); | |
1396 // Some compilers may not support on stack replacement. | |
1397 if (is_osr && | |
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1398 (!CICompileOSR || comp == NULL || !comp->supports_osr())) { |
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1399 method->set_not_osr_compilable(comp_level); |
0 | 1400 return true; |
1401 } | |
1402 | |
1403 // The method may be explicitly excluded by the user. | |
1404 bool quietly; | |
1405 if (CompilerOracle::should_exclude(method, quietly)) { | |
1406 if (!quietly) { | |
1407 // This does not happen quietly... | |
1408 ResourceMark rm; | |
1409 tty->print("### Excluding %s:%s", | |
1410 method->is_native() ? "generation of native wrapper" : "compile", | |
1411 (method->is_static() ? " static" : "")); | |
1412 method->print_short_name(tty); | |
1413 tty->cr(); | |
1414 } | |
7998 | 1415 method->set_not_compilable(CompLevel_all, !quietly, "excluded by CompilerOracle"); |
0 | 1416 } |
1417 | |
1418 return false; | |
1419 } | |
1420 | |
1421 | |
1422 // ------------------------------------------------------------------ | |
1423 // CompileBroker::assign_compile_id | |
1424 // | |
1425 // Assign a serialized id number to this compilation request. If the | |
1426 // number falls out of the allowed range, return a 0. OSR | |
1427 // compilations may be numbered separately from regular compilations | |
1428 // if certain debugging flags are used. | |
1429 uint CompileBroker::assign_compile_id(methodHandle method, int osr_bci) { | |
1783 | 1430 assert(MethodCompileQueue_lock->owner() == Thread::current(), |
0 | 1431 "must hold the compilation queue lock"); |
1432 bool is_osr = (osr_bci != standard_entry_bci); | |
1433 uint id; | |
1434 if (CICountOSR && is_osr) { | |
1435 id = ++_osr_compilation_id; | |
1436 if ((uint)CIStartOSR <= id && id < (uint)CIStopOSR) { | |
1437 return id; | |
1438 } | |
1439 } else { | |
1440 id = ++_compilation_id; | |
1441 if ((uint)CIStart <= id && id < (uint)CIStop) { | |
1442 return id; | |
1443 } | |
1444 } | |
1445 | |
1446 // Method was not in the appropriate compilation range. | |
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1447 method->set_not_compilable_quietly(); |
0 | 1448 return 0; |
1449 } | |
1450 | |
1451 | |
1452 // ------------------------------------------------------------------ | |
1453 // CompileBroker::is_compile_blocking | |
1454 // | |
1455 // Should the current thread be blocked until this compilation request | |
1456 // has been fulfilled? | |
1457 bool CompileBroker::is_compile_blocking(methodHandle method, int osr_bci) { | |
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1458 assert(!InstanceRefKlass::owns_pending_list_lock(JavaThread::current()), "possible deadlock"); |
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1459 return !BackgroundCompilation; |
0 | 1460 } |
1461 | |
1462 | |
1463 // ------------------------------------------------------------------ | |
1464 // CompileBroker::preload_classes | |
1465 void CompileBroker::preload_classes(methodHandle method, TRAPS) { | |
1466 // Move this code over from c1_Compiler.cpp | |
1467 ShouldNotReachHere(); | |
1468 } | |
1469 | |
1470 | |
1471 // ------------------------------------------------------------------ | |
1472 // CompileBroker::create_compile_task | |
1473 // | |
1474 // Create a CompileTask object representing the current request for | |
1475 // compilation. Add this task to the queue. | |
1476 CompileTask* CompileBroker::create_compile_task(CompileQueue* queue, | |
1477 int compile_id, | |
1478 methodHandle method, | |
1479 int osr_bci, | |
1480 int comp_level, | |
1481 methodHandle hot_method, | |
1482 int hot_count, | |
1483 const char* comment, | |
1484 bool blocking) { | |
1485 CompileTask* new_task = allocate_task(); | |
1486 new_task->initialize(compile_id, method, osr_bci, comp_level, | |
1487 hot_method, hot_count, comment, | |
1488 blocking); | |
1489 queue->add(new_task); | |
1490 return new_task; | |
1491 } | |
1492 | |
1493 | |
1494 // ------------------------------------------------------------------ | |
1495 // CompileBroker::allocate_task | |
1496 // | |
1497 // Allocate a CompileTask, from the free list if possible. | |
1498 CompileTask* CompileBroker::allocate_task() { | |
1499 MutexLocker locker(CompileTaskAlloc_lock); | |
1500 CompileTask* task = NULL; | |
1501 if (_task_free_list != NULL) { | |
1502 task = _task_free_list; | |
1503 _task_free_list = task->next(); | |
1504 task->set_next(NULL); | |
1505 } else { | |
1506 task = new CompileTask(); | |
1507 task->set_next(NULL); | |
1508 } | |
1509 return task; | |
1510 } | |
1511 | |
1512 | |
1513 // ------------------------------------------------------------------ | |
1514 // CompileBroker::free_task | |
1515 // | |
1516 // Add a task to the free list. | |
1517 void CompileBroker::free_task(CompileTask* task) { | |
1518 MutexLocker locker(CompileTaskAlloc_lock); | |
1519 task->free(); | |
1520 task->set_next(_task_free_list); | |
1521 _task_free_list = task; | |
1522 } | |
1523 | |
1524 | |
1525 // ------------------------------------------------------------------ | |
1526 // CompileBroker::wait_for_completion | |
1527 // | |
1528 // Wait for the given method CompileTask to complete. | |
1529 void CompileBroker::wait_for_completion(CompileTask* task) { | |
1530 if (CIPrintCompileQueue) { | |
1531 tty->print_cr("BLOCKING FOR COMPILE"); | |
1532 } | |
1533 | |
1534 assert(task->is_blocking(), "can only wait on blocking task"); | |
1535 | |
1536 JavaThread *thread = JavaThread::current(); | |
1537 thread->set_blocked_on_compilation(true); | |
1538 | |
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1539 methodHandle method(thread, task->method()); |
0 | 1540 { |
1541 MutexLocker waiter(task->lock(), thread); | |
1542 | |
1543 while (!task->is_complete()) | |
1544 task->lock()->wait(); | |
1545 } | |
1546 // It is harmless to check this status without the lock, because | |
1547 // completion is a stable property (until the task object is recycled). | |
1548 assert(task->is_complete(), "Compilation should have completed"); | |
1549 assert(task->code_handle() == NULL, "must be reset"); | |
1550 | |
1551 thread->set_blocked_on_compilation(false); | |
1552 | |
1553 // By convention, the waiter is responsible for recycling a | |
1554 // blocking CompileTask. Since there is only one waiter ever | |
1555 // waiting on a CompileTask, we know that no one else will | |
1556 // be using this CompileTask; we can free it. | |
1557 free_task(task); | |
1558 } | |
1559 | |
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1560 // Initialize compiler thread(s) + compiler object(s). The postcondition |
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1561 // of this function is that the compiler runtimes are initialized and that |
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1562 //compiler threads can start compiling. |
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1563 bool CompileBroker::init_compiler_runtime() { |
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1564 CompilerThread* thread = CompilerThread::current(); |
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1565 AbstractCompiler* comp = thread->compiler(); |
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1566 // Final sanity check - the compiler object must exist |
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1567 guarantee(comp != NULL, "Compiler object must exist"); |
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1568 |
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1569 int system_dictionary_modification_counter; |
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1570 { |
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1571 MutexLocker locker(Compile_lock, thread); |
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1572 system_dictionary_modification_counter = SystemDictionary::number_of_modifications(); |
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1573 } |
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1574 |
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1575 { |
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1576 // Must switch to native to allocate ci_env |
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1577 ThreadToNativeFromVM ttn(thread); |
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1578 ciEnv ci_env(NULL, system_dictionary_modification_counter); |
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1579 // Cache Jvmti state |
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1580 ci_env.cache_jvmti_state(); |
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1581 // Cache DTrace flags |
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1582 ci_env.cache_dtrace_flags(); |
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1583 |
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1584 // Switch back to VM state to do compiler initialization |
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1585 ThreadInVMfromNative tv(thread); |
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1586 ResetNoHandleMark rnhm; |
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1587 |
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1588 |
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1589 if (!comp->is_shark()) { |
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1590 // Perform per-thread and global initializations |
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1591 comp->initialize(); |
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1592 } |
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1593 } |
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1594 |
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1595 if (comp->is_failed()) { |
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1596 disable_compilation_forever(); |
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1597 // If compiler initialization failed, no compiler thread that is specific to a |
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1598 // particular compiler runtime will ever start to compile methods. |
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1599 |
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1600 shutdown_compiler_runtime(comp, thread); |
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1601 return false; |
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1602 } |
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1603 |
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1604 // C1 specific check |
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1605 if (comp->is_c1() && (thread->get_buffer_blob() == NULL)) { |
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1606 warning("Initialization of %s thread failed (no space to run compilers)", thread->name()); |
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1607 return false; |
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1608 } |
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1609 |
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1610 return true; |
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1611 } |
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1612 |
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1613 // If C1 and/or C2 initialization failed, we shut down all compilation. |
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1614 // We do this to keep things simple. This can be changed if it ever turns out to be |
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1615 // a problem. |
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1616 void CompileBroker::shutdown_compiler_runtime(AbstractCompiler* comp, CompilerThread* thread) { |
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1617 // Free buffer blob, if allocated |
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1618 if (thread->get_buffer_blob() != NULL) { |
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1619 MutexLockerEx mu(CodeCache_lock, Mutex::_no_safepoint_check_flag); |
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1620 CodeCache::free(thread->get_buffer_blob()); |
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1621 } |
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1622 |
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1623 if (comp->should_perform_shutdown()) { |
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1624 // There are two reasons for shutting down the compiler |
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1625 // 1) compiler runtime initialization failed |
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1626 // 2) The code cache is full and the following flag is set: -XX:-UseCodeCacheFlushing |
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1627 warning("Shutting down compiler %s (no space to run compilers)", comp->name()); |
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1628 |
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1629 // Only one thread per compiler runtime object enters here |
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1630 // Set state to shut down |
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1631 comp->set_shut_down(); |
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1632 |
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1633 MutexLocker mu(MethodCompileQueue_lock, thread); |
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1634 CompileQueue* queue; |
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1635 if (_c1_method_queue != NULL) { |
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1636 _c1_method_queue->delete_all(); |
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1637 queue = _c1_method_queue; |
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1638 _c1_method_queue = NULL; |
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1639 delete _c1_method_queue; |
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1640 } |
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1641 |
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1642 if (_c2_method_queue != NULL) { |
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1643 _c2_method_queue->delete_all(); |
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1644 queue = _c2_method_queue; |
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1645 _c2_method_queue = NULL; |
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1646 delete _c2_method_queue; |
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1647 } |
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1648 |
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1649 // We could delete compiler runtimes also. However, there are references to |
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1650 // the compiler runtime(s) (e.g., nmethod::is_compiled_by_c1()) which then |
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1651 // fail. This can be done later if necessary. |
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1652 } |
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1653 } |
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1654 |
0 | 1655 // ------------------------------------------------------------------ |
1656 // CompileBroker::compiler_thread_loop | |
1657 // | |
1658 // The main loop run by a CompilerThread. | |
1659 void CompileBroker::compiler_thread_loop() { | |
1660 CompilerThread* thread = CompilerThread::current(); | |
1661 CompileQueue* queue = thread->queue(); | |
1662 // For the thread that initializes the ciObjectFactory | |
1663 // this resource mark holds all the shared objects | |
1664 ResourceMark rm; | |
1665 | |
1666 // First thread to get here will initialize the compiler interface | |
1667 | |
1668 if (!ciObjectFactory::is_initialized()) { | |
1669 ASSERT_IN_VM; | |
1670 MutexLocker only_one (CompileThread_lock, thread); | |
1671 if (!ciObjectFactory::is_initialized()) { | |
1672 ciObjectFactory::initialize(); | |
1673 } | |
1674 } | |
1675 | |
1676 // Open a log. | |
1677 if (LogCompilation) { | |
1678 init_compiler_thread_log(); | |
1679 } | |
1680 CompileLog* log = thread->log(); | |
1681 if (log != NULL) { | |
6843 | 1682 log->begin_elem("start_compile_thread name='%s' thread='" UINTX_FORMAT "' process='%d'", |
1683 thread->name(), | |
0 | 1684 os::current_thread_id(), |
1685 os::current_process_id()); | |
1686 log->stamp(); | |
1687 log->end_elem(); | |
1688 } | |
1689 | |
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1690 // If compiler thread/runtime initialization fails, exit the compiler thread |
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1691 if (!init_compiler_runtime()) { |
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1692 return; |
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1693 } |
1202 | 1694 |
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1695 // Poll for new compilation tasks as long as the JVM runs. Compilation |
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1696 // should only be disabled if something went wrong while initializing the |
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1697 // compiler runtimes. This, in turn, should not happen. The only known case |
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1698 // when compiler runtime initialization fails is if there is not enough free |
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1699 // space in the code cache to generate the necessary stubs, etc. |
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1700 while (!is_compilation_disabled_forever()) { |
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1701 // We need this HandleMark to avoid leaking VM handles. |
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1702 HandleMark hm(thread); |
0 | 1703 |
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1704 if (CodeCache::unallocated_capacity() < CodeCacheMinimumFreeSpace) { |
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1705 // the code cache is really full |
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1706 handle_full_code_cache(); |
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1707 } |
0 | 1708 |
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1709 CompileTask* task = queue->get(); |
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1710 if (task == NULL) { |
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1711 continue; |
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1712 } |
0 | 1713 |
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1714 // Give compiler threads an extra quanta. They tend to be bursty and |
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1715 // this helps the compiler to finish up the job. |
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1716 if( CompilerThreadHintNoPreempt ) |
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1717 os::hint_no_preempt(); |
0 | 1718 |
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1719 // trace per thread time and compile statistics |
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1720 CompilerCounters* counters = ((CompilerThread*)thread)->counters(); |
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1721 PerfTraceTimedEvent(counters->time_counter(), counters->compile_counter()); |
0 | 1722 |
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1723 // Assign the task to the current thread. Mark this compilation |
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1724 // thread as active for the profiler. |
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1725 CompileTaskWrapper ctw(task); |
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1726 nmethodLocker result_handle; // (handle for the nmethod produced by this task) |
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1727 task->set_code_handle(&result_handle); |
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1728 methodHandle method(thread, task->method()); |
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1729 |
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1730 // Never compile a method if breakpoints are present in it |
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1731 if (method()->number_of_breakpoints() == 0) { |
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1732 // Compile the method. |
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1733 if ((UseCompiler || AlwaysCompileLoopMethods) && CompileBroker::should_compile_new_jobs()) { |
0 | 1734 #ifdef COMPILER1 |
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1735 // Allow repeating compilations for the purpose of benchmarking |
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1736 // compile speed. This is not useful for customers. |
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1737 if (CompilationRepeat != 0) { |
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1738 int compile_count = CompilationRepeat; |
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1739 while (compile_count > 0) { |
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1740 invoke_compiler_on_method(task); |
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1741 nmethod* nm = method->code(); |
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1742 if (nm != NULL) { |
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1743 nm->make_zombie(); |
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1744 method->clear_code(); |
0 | 1745 } |
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1746 compile_count--; |
0 | 1747 } |
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1748 } |
0 | 1749 #endif /* COMPILER1 */ |
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1750 invoke_compiler_on_method(task); |
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1751 } else { |
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1752 // After compilation is disabled, remove remaining methods from queue |
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1753 method->clear_queued_for_compilation(); |
0 | 1754 } |
1755 } | |
1756 } | |
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1757 |
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1758 // Shut down compiler runtime |
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1759 shutdown_compiler_runtime(thread->compiler(), thread); |
0 | 1760 } |
1761 | |
1762 // ------------------------------------------------------------------ | |
1763 // CompileBroker::init_compiler_thread_log | |
1764 // | |
1765 // Set up state required by +LogCompilation. | |
1766 void CompileBroker::init_compiler_thread_log() { | |
1767 CompilerThread* thread = CompilerThread::current(); | |
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1768 char file_name[4*K]; |
0 | 1769 FILE* fp = NULL; |
1770 intx thread_id = os::current_thread_id(); | |
1771 for (int try_temp_dir = 1; try_temp_dir >= 0; try_temp_dir--) { | |
1772 const char* dir = (try_temp_dir ? os::get_temp_directory() : NULL); | |
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1773 if (dir == NULL) { |
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1774 jio_snprintf(file_name, sizeof(file_name), "hs_c" UINTX_FORMAT "_pid%u.log", |
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1775 thread_id, os::current_process_id()); |
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1776 } else { |
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1777 jio_snprintf(file_name, sizeof(file_name), |
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1778 "%s%shs_c" UINTX_FORMAT "_pid%u.log", dir, |
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1779 os::file_separator(), thread_id, os::current_process_id()); |
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1780 } |
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1781 |
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1782 fp = fopen(file_name, "at"); |
0 | 1783 if (fp != NULL) { |
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1784 if (LogCompilation && Verbose) { |
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1785 tty->print_cr("Opening compilation log %s", file_name); |
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1786 } |
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1787 CompileLog* log = new(ResourceObj::C_HEAP, mtCompiler) CompileLog(file_name, fp, thread_id); |
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1788 thread->init_log(log); |
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1789 |
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1790 if (xtty != NULL) { |
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1791 ttyLocker ttyl; |
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1792 // Record any per thread log files |
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1793 xtty->elem("thread_logfile thread='%d' filename='%s'", thread_id, file_name); |
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1794 } |
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1795 return; |
0 | 1796 } |
1797 } | |
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1798 warning("Cannot open log file: %s", file_name); |
0 | 1799 } |
1800 | |
1801 // ------------------------------------------------------------------ | |
1802 // CompileBroker::set_should_block | |
1803 // | |
1804 // Set _should_block. | |
1805 // Call this from the VM, with Threads_lock held and a safepoint requested. | |
1806 void CompileBroker::set_should_block() { | |
1807 assert(Threads_lock->owner() == Thread::current(), "must have threads lock"); | |
1808 assert(SafepointSynchronize::is_at_safepoint(), "must be at a safepoint already"); | |
1809 #ifndef PRODUCT | |
1810 if (PrintCompilation && (Verbose || WizardMode)) | |
1811 tty->print_cr("notifying compiler thread pool to block"); | |
1812 #endif | |
1813 _should_block = true; | |
1814 } | |
1815 | |
1816 // ------------------------------------------------------------------ | |
1817 // CompileBroker::maybe_block | |
1818 // | |
1819 // Call this from the compiler at convenient points, to poll for _should_block. | |
1820 void CompileBroker::maybe_block() { | |
1821 if (_should_block) { | |
1822 #ifndef PRODUCT | |
1823 if (PrintCompilation && (Verbose || WizardMode)) | |
1824 tty->print_cr("compiler thread " INTPTR_FORMAT " poll detects block request", Thread::current()); | |
1825 #endif | |
1826 ThreadInVMfromNative tivfn(JavaThread::current()); | |
1827 } | |
1828 } | |
1829 | |
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1830 // wrapper for CodeCache::print_summary() |
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1831 static void codecache_print(bool detailed) |
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1832 { |
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1833 ResourceMark rm; |
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1834 stringStream s; |
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1835 // Dump code cache into a buffer before locking the tty, |
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1836 { |
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1837 MutexLockerEx mu(CodeCache_lock, Mutex::_no_safepoint_check_flag); |
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1838 CodeCache::print_summary(&s, detailed); |
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1839 } |
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1840 ttyLocker ttyl; |
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1841 tty->print(s.as_string()); |
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1842 } |
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1843 |
0 | 1844 // ------------------------------------------------------------------ |
1845 // CompileBroker::invoke_compiler_on_method | |
1846 // | |
1847 // Compile a method. | |
1848 // | |
1849 void CompileBroker::invoke_compiler_on_method(CompileTask* task) { | |
1850 if (PrintCompilation) { | |
1851 ResourceMark rm; | |
1852 task->print_line(); | |
1853 } | |
1854 elapsedTimer time; | |
1855 | |
1856 CompilerThread* thread = CompilerThread::current(); | |
1857 ResourceMark rm(thread); | |
1858 | |
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1859 if (LogEvents) { |
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1860 _compilation_log->log_compile(thread, task); |
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1861 } |
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1862 |
0 | 1863 // Common flags. |
1864 uint compile_id = task->compile_id(); | |
1865 int osr_bci = task->osr_bci(); | |
1866 bool is_osr = (osr_bci != standard_entry_bci); | |
1867 bool should_log = (thread->log() != NULL); | |
1868 bool should_break = false; | |
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1869 int task_level = task->comp_level(); |
0 | 1870 { |
1871 // create the handle inside it's own block so it can't | |
1872 // accidentally be referenced once the thread transitions to | |
1873 // native. The NoHandleMark before the transition should catch | |
1874 // any cases where this occurs in the future. | |
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1875 methodHandle method(thread, task->method()); |
0 | 1876 should_break = check_break_at(method, compile_id, is_osr); |
1877 if (should_log && !CompilerOracle::should_log(method)) { | |
1878 should_log = false; | |
1879 } | |
1880 assert(!method->is_native(), "no longer compile natives"); | |
1881 | |
1882 // Save information about this method in case of failure. | |
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1883 set_last_compile(thread, method, is_osr, task_level); |
0 | 1884 |
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1885 DTRACE_METHOD_COMPILE_BEGIN_PROBE(method, compiler_name(task_level)); |
0 | 1886 } |
1887 | |
1888 // Allocate a new set of JNI handles. | |
1889 push_jni_handle_block(); | |
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1890 Method* target_handle = task->method(); |
0 | 1891 int compilable = ciEnv::MethodCompilable; |
1892 { | |
1893 int system_dictionary_modification_counter; | |
1894 { | |
1895 MutexLocker locker(Compile_lock, thread); | |
1896 system_dictionary_modification_counter = SystemDictionary::number_of_modifications(); | |
1897 } | |
1898 | |
1899 NoHandleMark nhm; | |
1900 ThreadToNativeFromVM ttn(thread); | |
1901 | |
1902 ciEnv ci_env(task, system_dictionary_modification_counter); | |
1903 if (should_break) { | |
1904 ci_env.set_break_at_compile(true); | |
1905 } | |
1906 if (should_log) { | |
1907 ci_env.set_log(thread->log()); | |
1908 } | |
1909 assert(thread->env() == &ci_env, "set by ci_env"); | |
1910 // The thread-env() field is cleared in ~CompileTaskWrapper. | |
1911 | |
780
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1912 // Cache Jvmti state |
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1913 ci_env.cache_jvmti_state(); |
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1914 |
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1915 // Cache DTrace flags |
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1916 ci_env.cache_dtrace_flags(); |
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1917 |
0 | 1918 ciMethod* target = ci_env.get_method_from_handle(target_handle); |
1919 | |
1920 TraceTime t1("compilation", &time); | |
10405 | 1921 EventCompilation event; |
0 | 1922 |
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1923 AbstractCompiler *comp = compiler(task_level); |
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1924 if (comp == NULL) { |
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1925 ci_env.record_method_not_compilable("no compiler", !TieredCompilation); |
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1926 } else { |
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1927 comp->compile_method(&ci_env, target, osr_bci); |
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1928 } |
0 | 1929 |
1930 if (!ci_env.failing() && task->code() == NULL) { | |
1931 //assert(false, "compiler should always document failure"); | |
1932 // The compiler elected, without comment, not to register a result. | |
1933 // Do not attempt further compilations of this method. | |
1964
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1934 ci_env.record_method_not_compilable("compile failed", !TieredCompilation); |
0 | 1935 } |
1936 | |
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1937 // Copy this bit to the enclosing block: |
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1938 compilable = ci_env.compilable(); |
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1939 |
0 | 1940 if (ci_env.failing()) { |
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1941 const char* retry_message = ci_env.retry_message(); |
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1942 if (_compilation_log != NULL) { |
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1943 _compilation_log->log_failure(thread, task, ci_env.failure_reason(), retry_message); |
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1944 } |
0 | 1945 if (PrintCompilation) { |
6800
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1946 FormatBufferResource msg = retry_message != NULL ? |
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1947 err_msg_res("COMPILE SKIPPED: %s (%s)", ci_env.failure_reason(), retry_message) : |
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1948 err_msg_res("COMPILE SKIPPED: %s", ci_env.failure_reason()); |
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1949 task->print_compilation(tty, msg); |
0 | 1950 } |
1951 } else { | |
1952 task->mark_success(); | |
1953 task->set_num_inlined_bytecodes(ci_env.num_inlined_bytecodes()); | |
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1954 if (_compilation_log != NULL) { |
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1955 nmethod* code = task->code(); |
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1956 if (code != NULL) { |
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1957 _compilation_log->log_nmethod(thread, code); |
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1958 } |
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1959 } |
0 | 1960 } |
10197
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1961 // simulate crash during compilation |
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1962 assert(task->compile_id() != CICrashAt, "just as planned"); |
10405 | 1963 if (event.should_commit()) { |
1964 event.set_method(target->get_Method()); | |
1965 event.set_compileID(compile_id); | |
1966 event.set_compileLevel(task->comp_level()); | |
1967 event.set_succeded(task->is_success()); | |
1968 event.set_isOsr(is_osr); | |
1969 event.set_codeSize((task->code() == NULL) ? 0 : task->code()->total_size()); | |
1970 event.set_inlinedBytes(task->num_inlined_bytecodes()); | |
1971 event.commit(); | |
1972 } | |
0 | 1973 } |
1974 pop_jni_handle_block(); | |
1975 | |
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1976 methodHandle method(thread, task->method()); |
0 | 1977 |
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1978 DTRACE_METHOD_COMPILE_END_PROBE(method, compiler_name(task_level), task->is_success()); |
0 | 1979 |
1980 collect_statistics(thread, time, task); | |
1981 | |
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1982 if (PrintCompilation && PrintCompilation2) { |
4047 | 1983 tty->print("%7d ", (int) tty->time_stamp().milliseconds()); // print timestamp |
1984 tty->print("%4d ", compile_id); // print compilation number | |
1985 tty->print("%s ", (is_osr ? "%" : " ")); | |
10278 | 1986 if (task->code() != NULL) { |
1987 tty->print("size: %d(%d) ", task->code()->total_size(), task->code()->insts_size()); | |
1988 } | |
1989 tty->print_cr("time: %d inlined: %d bytes", (int)time.milliseconds(), task->num_inlined_bytecodes()); | |
4047 | 1990 } |
1991 | |
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1992 if (PrintCodeCacheOnCompilation) |
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1993 codecache_print(/* detailed= */ false); |
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|
1994 |
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1995 // Disable compilation, if required. |
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1996 switch (compilable) { |
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1997 case ciEnv::MethodCompilable_never: |
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1998 if (is_osr) |
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1999 method->set_not_osr_compilable_quietly(); |
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2000 else |
1208
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2001 method->set_not_compilable_quietly(); |
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2002 break; |
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2003 case ciEnv::MethodCompilable_not_at_tier: |
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2004 if (is_osr) |
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2005 method->set_not_osr_compilable_quietly(task_level); |
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2006 else |
8771
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2007 method->set_not_compilable_quietly(task_level); |
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2008 break; |
0 | 2009 } |
2010 | |
2011 // Note that the queued_for_compilation bits are cleared without | |
2012 // protection of a mutex. [They were set by the requester thread, | |
2013 // when adding the task to the complie queue -- at which time the | |
2014 // compile queue lock was held. Subsequently, we acquired the compile | |
2015 // queue lock to get this task off the compile queue; thus (to belabour | |
2016 // the point somewhat) our clearing of the bits must be occurring | |
2017 // only after the setting of the bits. See also 14012000 above. | |
2018 method->clear_queued_for_compilation(); | |
2019 | |
2020 #ifdef ASSERT | |
2021 if (CollectedHeap::fired_fake_oom()) { | |
2022 // The current compile received a fake OOM during compilation so | |
2023 // go ahead and exit the VM since the test apparently succeeded | |
2024 tty->print_cr("*** Shutting down VM after successful fake OOM"); | |
2025 vm_exit(0); | |
2026 } | |
2027 #endif | |
2028 } | |
2029 | |
2030 // ------------------------------------------------------------------ | |
1202 | 2031 // CompileBroker::handle_full_code_cache |
2032 // | |
2033 // The CodeCache is full. Print out warning and disable compilation or | |
2034 // try code cache cleaning so compilation can continue later. | |
2035 void CompileBroker::handle_full_code_cache() { | |
2036 UseInterpreter = true; | |
2037 if (UseCompiler || AlwaysCompileLoopMethods ) { | |
1728
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2038 if (xtty != NULL) { |
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|
2039 ResourceMark rm; |
2482
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|
2040 stringStream s; |
dbccacb79c63
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|
2041 // Dump code cache state into a buffer before locking the tty, |
dbccacb79c63
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|
2042 // because log_state() will use locks causing lock conflicts. |
dbccacb79c63
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|
2043 CodeCache::log_state(&s); |
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|
2044 // Lock to prevent tearing |
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|
2045 ttyLocker ttyl; |
1728
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1692
diff
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|
2046 xtty->begin_elem("code_cache_full"); |
2482
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|
2047 xtty->print(s.as_string()); |
1728
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|
2048 xtty->stamp(); |
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diff
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|
2049 xtty->end_elem(); |
1202 | 2050 } |
1578
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1538
diff
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|
2051 warning("CodeCache is full. Compiler has been disabled."); |
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parents:
1538
diff
changeset
|
2052 warning("Try increasing the code cache size using -XX:ReservedCodeCacheSize="); |
10405 | 2053 |
2054 CodeCache::report_codemem_full(); | |
2055 | |
2056 | |
1578
ca3dceda776c
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|
2057 #ifndef PRODUCT |
1202 | 2058 if (CompileTheWorld || ExitOnFullCodeCache) { |
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|
2059 codecache_print(/* detailed= */ true); |
1202 | 2060 before_exit(JavaThread::current()); |
2061 exit_globals(); // will delete tty | |
2062 vm_direct_exit(CompileTheWorld ? 0 : 1); | |
2063 } | |
1578
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|
2064 #endif |
1202 | 2065 if (UseCodeCacheFlushing) { |
12324
510fbd28919c
8020151: PSR:PERF Large performance regressions when code cache is filled
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|
2066 // Since code cache is full, immediately stop new compiles |
510fbd28919c
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diff
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|
2067 if (CompileBroker::set_should_compile_new_jobs(CompileBroker::stop_compilation)) { |
510fbd28919c
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|
2068 NMethodSweeper::log_sweep("disable_compiler"); |
12861
1e814e391ee8
8025656: compiler/8013496/Test8013496.sh fails on assert
anoll
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diff
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|
2069 |
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8025656: compiler/8013496/Test8013496.sh fails on assert
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diff
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|
2070 // Switch to 'vm_state'. This ensures that possibly_sweep() can be called |
1e814e391ee8
8025656: compiler/8013496/Test8013496.sh fails on assert
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|
2071 // without having to consider the state in which the current thread is. |
1e814e391ee8
8025656: compiler/8013496/Test8013496.sh fails on assert
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diff
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|
2072 ThreadInVMfromUnknown in_vm; |
12324
510fbd28919c
8020151: PSR:PERF Large performance regressions when code cache is filled
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diff
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|
2073 NMethodSweeper::possibly_sweep(); |
510fbd28919c
8020151: PSR:PERF Large performance regressions when code cache is filled
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|
2074 } |
1202 | 2075 } else { |
12880
469216acdb28
8023014: CodeSweeperSweepNoFlushTest.java fails with HS crash
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12861
diff
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|
2076 disable_compilation_forever(); |
1202 | 2077 } |
2078 } | |
7595
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|
2079 codecache_print(/* detailed= */ true); |
1202 | 2080 } |
2081 | |
2082 // ------------------------------------------------------------------ | |
0 | 2083 // CompileBroker::set_last_compile |
2084 // | |
2085 // Record this compilation for debugging purposes. | |
2086 void CompileBroker::set_last_compile(CompilerThread* thread, methodHandle method, bool is_osr, int comp_level) { | |
2087 ResourceMark rm; | |
2088 char* method_name = method->name()->as_C_string(); | |
2089 strncpy(_last_method_compiled, method_name, CompileBroker::name_buffer_length); | |
2090 char current_method[CompilerCounters::cmname_buffer_length]; | |
2091 size_t maxLen = CompilerCounters::cmname_buffer_length; | |
2092 | |
2093 if (UsePerfData) { | |
6725
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|
2094 const char* class_name = method->method_holder()->name()->as_C_string(); |
0 | 2095 |
2096 size_t s1len = strlen(class_name); | |
2097 size_t s2len = strlen(method_name); | |
2098 | |
2099 // check if we need to truncate the string | |
2100 if (s1len + s2len + 2 > maxLen) { | |
2101 | |
2102 // the strategy is to lop off the leading characters of the | |
2103 // class name and the trailing characters of the method name. | |
2104 | |
2105 if (s2len + 2 > maxLen) { | |
2106 // lop of the entire class name string, let snprintf handle | |
2107 // truncation of the method name. | |
2108 class_name += s1len; // null string | |
2109 } | |
2110 else { | |
2111 // lop off the extra characters from the front of the class name | |
2112 class_name += ((s1len + s2len + 2) - maxLen); | |
2113 } | |
2114 } | |
2115 | |
2116 jio_snprintf(current_method, maxLen, "%s %s", class_name, method_name); | |
2117 } | |
2118 | |
2119 if (CICountOSR && is_osr) { | |
2120 _last_compile_type = osr_compile; | |
2121 } else { | |
2122 _last_compile_type = normal_compile; | |
2123 } | |
2124 _last_compile_level = comp_level; | |
2125 | |
2126 if (UsePerfData) { | |
2127 CompilerCounters* counters = thread->counters(); | |
2128 counters->set_current_method(current_method); | |
2129 counters->set_compile_type((jlong)_last_compile_type); | |
2130 } | |
2131 } | |
2132 | |
2133 | |
2134 // ------------------------------------------------------------------ | |
2135 // CompileBroker::push_jni_handle_block | |
2136 // | |
2137 // Push on a new block of JNI handles. | |
2138 void CompileBroker::push_jni_handle_block() { | |
2139 JavaThread* thread = JavaThread::current(); | |
2140 | |
2141 // Allocate a new block for JNI handles. | |
2142 // Inlined code from jni_PushLocalFrame() | |
2143 JNIHandleBlock* java_handles = thread->active_handles(); | |
2144 JNIHandleBlock* compile_handles = JNIHandleBlock::allocate_block(thread); | |
2145 assert(compile_handles != NULL && java_handles != NULL, "should not be NULL"); | |
2146 compile_handles->set_pop_frame_link(java_handles); // make sure java handles get gc'd. | |
2147 thread->set_active_handles(compile_handles); | |
2148 } | |
2149 | |
2150 | |
2151 // ------------------------------------------------------------------ | |
2152 // CompileBroker::pop_jni_handle_block | |
2153 // | |
2154 // Pop off the current block of JNI handles. | |
2155 void CompileBroker::pop_jni_handle_block() { | |
2156 JavaThread* thread = JavaThread::current(); | |
2157 | |
2158 // Release our JNI handle block | |
2159 JNIHandleBlock* compile_handles = thread->active_handles(); | |
2160 JNIHandleBlock* java_handles = compile_handles->pop_frame_link(); | |
2161 thread->set_active_handles(java_handles); | |
2162 compile_handles->set_pop_frame_link(NULL); | |
2163 JNIHandleBlock::release_block(compile_handles, thread); // may block | |
2164 } | |
2165 | |
2166 | |
2167 // ------------------------------------------------------------------ | |
2168 // CompileBroker::check_break_at | |
2169 // | |
2170 // Should the compilation break at the current compilation. | |
2171 bool CompileBroker::check_break_at(methodHandle method, int compile_id, bool is_osr) { | |
2172 if (CICountOSR && is_osr && (compile_id == CIBreakAtOSR)) { | |
2173 return true; | |
2174 } else if( CompilerOracle::should_break_at(method) ) { // break when compiling | |
2175 return true; | |
2176 } else { | |
2177 return (compile_id == CIBreakAt); | |
2178 } | |
2179 } | |
2180 | |
2181 // ------------------------------------------------------------------ | |
2182 // CompileBroker::collect_statistics | |
2183 // | |
2184 // Collect statistics about the compilation. | |
2185 | |
2186 void CompileBroker::collect_statistics(CompilerThread* thread, elapsedTimer time, CompileTask* task) { | |
2187 bool success = task->is_success(); | |
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2188 methodHandle method (thread, task->method()); |
0 | 2189 uint compile_id = task->compile_id(); |
2190 bool is_osr = (task->osr_bci() != standard_entry_bci); | |
2191 nmethod* code = task->code(); | |
2192 CompilerCounters* counters = thread->counters(); | |
2193 | |
2194 assert(code == NULL || code->is_locked_by_vm(), "will survive the MutexLocker"); | |
2195 MutexLocker locker(CompileStatistics_lock); | |
2196 | |
2197 // _perf variables are production performance counters which are | |
2198 // updated regardless of the setting of the CITime and CITimeEach flags | |
2199 // | |
2200 if (!success) { | |
2201 _total_bailout_count++; | |
2202 if (UsePerfData) { | |
2203 _perf_last_failed_method->set_value(counters->current_method()); | |
2204 _perf_last_failed_type->set_value(counters->compile_type()); | |
2205 _perf_total_bailout_count->inc(); | |
2206 } | |
2207 } else if (code == NULL) { | |
2208 if (UsePerfData) { | |
2209 _perf_last_invalidated_method->set_value(counters->current_method()); | |
2210 _perf_last_invalidated_type->set_value(counters->compile_type()); | |
2211 _perf_total_invalidated_count->inc(); | |
2212 } | |
2213 _total_invalidated_count++; | |
2214 } else { | |
2215 // Compilation succeeded | |
2216 | |
2217 // update compilation ticks - used by the implementation of | |
2218 // java.lang.management.CompilationMBean | |
2219 _perf_total_compilation->inc(time.ticks()); | |
2220 | |
10405 | 2221 _t_total_compilation.add(time); |
2222 _peak_compilation_time = time.milliseconds() > _peak_compilation_time ? time.milliseconds() : _peak_compilation_time; | |
2223 | |
0 | 2224 if (CITime) { |
2225 if (is_osr) { | |
2226 _t_osr_compilation.add(time); | |
2227 _sum_osr_bytes_compiled += method->code_size() + task->num_inlined_bytecodes(); | |
2228 } else { | |
2229 _t_standard_compilation.add(time); | |
2230 _sum_standard_bytes_compiled += method->code_size() + task->num_inlined_bytecodes(); | |
2231 } | |
2232 } | |
2233 | |
2234 if (UsePerfData) { | |
2235 // save the name of the last method compiled | |
2236 _perf_last_method->set_value(counters->current_method()); | |
2237 _perf_last_compile_type->set_value(counters->compile_type()); | |
2238 _perf_last_compile_size->set_value(method->code_size() + | |
2239 task->num_inlined_bytecodes()); | |
2240 if (is_osr) { | |
2241 _perf_osr_compilation->inc(time.ticks()); | |
2242 _perf_sum_osr_bytes_compiled->inc(method->code_size() + task->num_inlined_bytecodes()); | |
2243 } else { | |
2244 _perf_standard_compilation->inc(time.ticks()); | |
2245 _perf_sum_standard_bytes_compiled->inc(method->code_size() + task->num_inlined_bytecodes()); | |
2246 } | |
2247 } | |
2248 | |
2249 if (CITimeEach) { | |
2250 float bytes_per_sec = 1.0 * (method->code_size() + task->num_inlined_bytecodes()) / time.seconds(); | |
2251 tty->print_cr("%3d seconds: %f bytes/sec : %f (bytes %d + %d inlined)", | |
2252 compile_id, time.seconds(), bytes_per_sec, method->code_size(), task->num_inlined_bytecodes()); | |
2253 } | |
2254 | |
2255 // Collect counts of successful compilations | |
1748 | 2256 _sum_nmethod_size += code->total_size(); |
2257 _sum_nmethod_code_size += code->insts_size(); | |
0 | 2258 _total_compile_count++; |
2259 | |
2260 if (UsePerfData) { | |
1748 | 2261 _perf_sum_nmethod_size->inc( code->total_size()); |
2262 _perf_sum_nmethod_code_size->inc(code->insts_size()); | |
0 | 2263 _perf_total_compile_count->inc(); |
2264 } | |
2265 | |
2266 if (is_osr) { | |
2267 if (UsePerfData) _perf_total_osr_compile_count->inc(); | |
2268 _total_osr_compile_count++; | |
2269 } else { | |
2270 if (UsePerfData) _perf_total_standard_compile_count->inc(); | |
2271 _total_standard_compile_count++; | |
2272 } | |
2273 } | |
2274 // set the current method for the thread to null | |
2275 if (UsePerfData) counters->set_current_method(""); | |
2276 } | |
2277 | |
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2278 const char* CompileBroker::compiler_name(int comp_level) { |
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2279 AbstractCompiler *comp = CompileBroker::compiler(comp_level); |
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2280 if (comp == NULL) { |
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2281 return "no compiler"; |
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2282 } else { |
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2283 return (comp->name()); |
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2284 } |
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2285 } |
0 | 2286 |
2287 void CompileBroker::print_times() { | |
2288 tty->cr(); | |
2289 tty->print_cr("Accumulated compiler times (for compiled methods only)"); | |
2290 tty->print_cr("------------------------------------------------"); | |
2291 //0000000000111111111122222222223333333333444444444455555555556666666666 | |
2292 //0123456789012345678901234567890123456789012345678901234567890123456789 | |
2293 tty->print_cr(" Total compilation time : %6.3f s", CompileBroker::_t_total_compilation.seconds()); | |
2294 tty->print_cr(" Standard compilation : %6.3f s, Average : %2.3f", | |
2295 CompileBroker::_t_standard_compilation.seconds(), | |
2296 CompileBroker::_t_standard_compilation.seconds() / CompileBroker::_total_standard_compile_count); | |
2297 tty->print_cr(" On stack replacement : %6.3f s, Average : %2.3f", CompileBroker::_t_osr_compilation.seconds(), CompileBroker::_t_osr_compilation.seconds() / CompileBroker::_total_osr_compile_count); | |
1131 | 2298 |
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2299 AbstractCompiler *comp = compiler(CompLevel_simple); |
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2300 if (comp != NULL) { |
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2301 comp->print_timers(); |
0 | 2302 } |
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2303 comp = compiler(CompLevel_full_optimization); |
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2304 if (comp != NULL) { |
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2305 comp->print_timers(); |
1783 | 2306 } |
0 | 2307 tty->cr(); |
8860 | 2308 tty->print_cr(" Total compiled methods : %6d methods", CompileBroker::_total_compile_count); |
2309 tty->print_cr(" Standard compilation : %6d methods", CompileBroker::_total_standard_compile_count); | |
2310 tty->print_cr(" On stack replacement : %6d methods", CompileBroker::_total_osr_compile_count); | |
0 | 2311 int tcb = CompileBroker::_sum_osr_bytes_compiled + CompileBroker::_sum_standard_bytes_compiled; |
2312 tty->print_cr(" Total compiled bytecodes : %6d bytes", tcb); | |
2313 tty->print_cr(" Standard compilation : %6d bytes", CompileBroker::_sum_standard_bytes_compiled); | |
2314 tty->print_cr(" On stack replacement : %6d bytes", CompileBroker::_sum_osr_bytes_compiled); | |
2315 int bps = (int)(tcb / CompileBroker::_t_total_compilation.seconds()); | |
2316 tty->print_cr(" Average compilation speed: %6d bytes/s", bps); | |
2317 tty->cr(); | |
2318 tty->print_cr(" nmethod code size : %6d bytes", CompileBroker::_sum_nmethod_code_size); | |
2319 tty->print_cr(" nmethod total size : %6d bytes", CompileBroker::_sum_nmethod_size); | |
2320 } | |
2321 | |
2322 // Debugging output for failure | |
2323 void CompileBroker::print_last_compile() { | |
2324 if ( _last_compile_level != CompLevel_none && | |
2325 compiler(_last_compile_level) != NULL && | |
2326 _last_method_compiled != NULL && | |
2327 _last_compile_type != no_compile) { | |
2328 if (_last_compile_type == osr_compile) { | |
2329 tty->print_cr("Last parse: [osr]%d+++(%d) %s", | |
2330 _osr_compilation_id, _last_compile_level, _last_method_compiled); | |
2331 } else { | |
2332 tty->print_cr("Last parse: %d+++(%d) %s", | |
2333 _compilation_id, _last_compile_level, _last_method_compiled); | |
2334 } | |
2335 } | |
2336 } | |
2337 | |
2338 | |
2339 void CompileBroker::print_compiler_threads_on(outputStream* st) { | |
2340 #ifndef PRODUCT | |
2341 st->print_cr("Compiler thread printing unimplemented."); | |
2342 st->cr(); | |
2343 #endif | |
2344 } |