author | pliden |
Fri, 11 Apr 2014 12:29:24 +0200 | |
changeset 24094 | 5dbf1f44de18 |
parent 22551 | 9bf46d16dcc6 |
child 24013 | 1d16b0f1060d |
permissions | -rw-r--r-- |
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/* |
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* Copyright (c) 2010, 2013, Oracle and/or its affiliates. All rights reserved. |
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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. |
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* |
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* This code is free software; you can redistribute it and/or modify it |
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* under the terms of the GNU General Public License version 2 only, as |
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* published by the Free Software Foundation. |
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* |
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* This code is distributed in the hope that it will be useful, but WITHOUT |
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or |
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License |
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* version 2 for more details (a copy is included in the LICENSE file that |
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* accompanied this code). |
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* |
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* You should have received a copy of the GNU General Public License version |
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* 2 along with this work; if not, write to the Free Software Foundation, |
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* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. |
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* |
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* Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA |
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* or visit www.oracle.com if you need additional information or have any |
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* questions. |
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* |
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*/ |
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||
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#include "precompiled.hpp" |
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#include "compiler/compileBroker.hpp" |
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#include "memory/resourceArea.hpp" |
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#include "runtime/arguments.hpp" |
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#include "runtime/simpleThresholdPolicy.hpp" |
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#include "runtime/simpleThresholdPolicy.inline.hpp" |
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#include "code/scopeDesc.hpp" |
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void SimpleThresholdPolicy::print_counters(const char* prefix, methodHandle mh) { |
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int invocation_count = mh->invocation_count(); |
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int backedge_count = mh->backedge_count(); |
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MethodData* mdh = mh->method_data(); |
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int mdo_invocations = 0, mdo_backedges = 0; |
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int mdo_invocations_start = 0, mdo_backedges_start = 0; |
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if (mdh != NULL) { |
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mdo_invocations = mdh->invocation_count(); |
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mdo_backedges = mdh->backedge_count(); |
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mdo_invocations_start = mdh->invocation_count_start(); |
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mdo_backedges_start = mdh->backedge_count_start(); |
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} |
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tty->print(" %stotal=%d,%d %smdo=%d(%d),%d(%d)", prefix, |
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invocation_count, backedge_count, prefix, |
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mdo_invocations, mdo_invocations_start, |
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mdo_backedges, mdo_backedges_start); |
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tty->print(" %smax levels=%d,%d", prefix, |
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mh->highest_comp_level(), mh->highest_osr_comp_level()); |
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} |
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// Print an event. |
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void SimpleThresholdPolicy::print_event(EventType type, methodHandle mh, methodHandle imh, |
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int bci, CompLevel level) { |
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bool inlinee_event = mh() != imh(); |
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||
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ttyLocker tty_lock; |
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tty->print("%lf: [", os::elapsedTime()); |
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switch(type) { |
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case CALL: |
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tty->print("call"); |
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break; |
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case LOOP: |
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tty->print("loop"); |
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break; |
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case COMPILE: |
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tty->print("compile"); |
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break; |
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case REMOVE_FROM_QUEUE: |
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tty->print("remove-from-queue"); |
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break; |
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case UPDATE_IN_QUEUE: |
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tty->print("update-in-queue"); |
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break; |
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case REPROFILE: |
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tty->print("reprofile"); |
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break; |
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case MAKE_NOT_ENTRANT: |
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tty->print("make-not-entrant"); |
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break; |
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default: |
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tty->print("unknown"); |
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} |
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tty->print(" level=%d ", level); |
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ResourceMark rm; |
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char *method_name = mh->name_and_sig_as_C_string(); |
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tty->print("[%s", method_name); |
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if (inlinee_event) { |
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char *inlinee_name = imh->name_and_sig_as_C_string(); |
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tty->print(" [%s]] ", inlinee_name); |
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} |
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else tty->print("] "); |
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tty->print("@%d queues=%d,%d", bci, CompileBroker::queue_size(CompLevel_full_profile), |
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CompileBroker::queue_size(CompLevel_full_optimization)); |
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print_specific(type, mh, imh, bci, level); |
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||
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if (type != COMPILE) { |
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print_counters("", mh); |
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if (inlinee_event) { |
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print_counters("inlinee ", imh); |
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} |
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tty->print(" compilable="); |
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bool need_comma = false; |
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if (!mh->is_not_compilable(CompLevel_full_profile)) { |
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tty->print("c1"); |
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need_comma = true; |
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} |
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if (!mh->is_not_osr_compilable(CompLevel_full_profile)) { |
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if (need_comma) tty->print(","); |
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tty->print("c1-osr"); |
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need_comma = true; |
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} |
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if (!mh->is_not_compilable(CompLevel_full_optimization)) { |
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if (need_comma) tty->print(","); |
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tty->print("c2"); |
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need_comma = true; |
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} |
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if (!mh->is_not_osr_compilable(CompLevel_full_optimization)) { |
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if (need_comma) tty->print(","); |
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tty->print("c2-osr"); |
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} |
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tty->print(" status="); |
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if (mh->queued_for_compilation()) { |
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tty->print("in-queue"); |
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} else tty->print("idle"); |
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} |
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tty->print_cr("]"); |
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} |
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void SimpleThresholdPolicy::initialize() { |
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if (FLAG_IS_DEFAULT(CICompilerCount)) { |
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FLAG_SET_DEFAULT(CICompilerCount, 3); |
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} |
|
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int count = CICompilerCount; |
|
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if (CICompilerCountPerCPU) { |
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count = MAX2(log2_intptr(os::active_processor_count()), 1) * 3 / 2; |
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} |
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set_c1_count(MAX2(count / 3, 1)); |
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set_c2_count(MAX2(count - count / 3, 1)); |
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} |
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||
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void SimpleThresholdPolicy::set_carry_if_necessary(InvocationCounter *counter) { |
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if (!counter->carry() && counter->count() > InvocationCounter::count_limit / 2) { |
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counter->set_carry_flag(); |
|
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} |
|
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} |
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||
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// Set carry flags on the counters if necessary |
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void SimpleThresholdPolicy::handle_counter_overflow(Method* method) { |
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MethodCounters *mcs = method->method_counters(); |
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if (mcs != NULL) { |
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set_carry_if_necessary(mcs->invocation_counter()); |
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set_carry_if_necessary(mcs->backedge_counter()); |
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} |
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MethodData* mdo = method->method_data(); |
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if (mdo != NULL) { |
163 |
set_carry_if_necessary(mdo->invocation_counter()); |
|
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set_carry_if_necessary(mdo->backedge_counter()); |
|
165 |
} |
|
166 |
} |
|
167 |
||
168 |
// Called with the queue locked and with at least one element |
|
169 |
CompileTask* SimpleThresholdPolicy::select_task(CompileQueue* compile_queue) { |
|
170 |
return compile_queue->first(); |
|
171 |
} |
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172 |
||
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void SimpleThresholdPolicy::reprofile(ScopeDesc* trap_scope, bool is_osr) { |
174 |
for (ScopeDesc* sd = trap_scope;; sd = sd->sender()) { |
|
175 |
if (PrintTieredEvents) { |
|
176 |
methodHandle mh(sd->method()); |
|
177 |
print_event(REPROFILE, mh, mh, InvocationEntryBci, CompLevel_none); |
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} |
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MethodData* mdo = sd->method()->method_data(); |
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if (mdo != NULL) { |
181 |
mdo->reset_start_counters(); |
|
182 |
} |
|
183 |
if (sd->is_top()) break; |
|
184 |
} |
|
185 |
} |
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186 |
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nmethod* SimpleThresholdPolicy::event(methodHandle method, methodHandle inlinee, |
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int branch_bci, int bci, CompLevel comp_level, nmethod* nm, JavaThread* thread) { |
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if (comp_level == CompLevel_none && |
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JvmtiExport::can_post_interpreter_events() && |
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thread->is_interp_only_mode()) { |
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192 |
return NULL; |
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} |
194 |
nmethod *osr_nm = NULL; |
|
195 |
||
196 |
handle_counter_overflow(method()); |
|
197 |
if (method() != inlinee()) { |
|
198 |
handle_counter_overflow(inlinee()); |
|
199 |
} |
|
200 |
||
201 |
if (PrintTieredEvents) { |
|
202 |
print_event(bci == InvocationEntryBci ? CALL : LOOP, method, inlinee, bci, comp_level); |
|
203 |
} |
|
204 |
||
205 |
if (bci == InvocationEntryBci) { |
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method_invocation_event(method, inlinee, comp_level, nm, thread); |
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} else { |
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method_back_branch_event(method, inlinee, bci, comp_level, nm, thread); |
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// method == inlinee if the event originated in the main method |
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int highest_level = inlinee->highest_osr_comp_level(); |
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if (highest_level > comp_level) { |
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212 |
osr_nm = inlinee->lookup_osr_nmethod_for(bci, highest_level, false); |
6453 | 213 |
} |
214 |
} |
|
215 |
return osr_nm; |
|
216 |
} |
|
217 |
||
218 |
// Check if the method can be compiled, change level if necessary |
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void SimpleThresholdPolicy::compile(methodHandle mh, int bci, CompLevel level, JavaThread* thread) { |
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220 |
assert(level <= TieredStopAtLevel, "Invalid compilation level"); |
6453 | 221 |
if (level == CompLevel_none) { |
222 |
return; |
|
223 |
} |
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// Check if the method can be compiled. If it cannot be compiled with C1, continue profiling |
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// in the interpreter and then compile with C2 (the transition function will request that, |
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226 |
// see common() ). If the method cannot be compiled with C2 but still can with C1, compile it with |
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227 |
// pure C1. |
6453 | 228 |
if (!can_be_compiled(mh, level)) { |
229 |
if (level == CompLevel_full_optimization && can_be_compiled(mh, CompLevel_simple)) { |
|
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230 |
compile(mh, bci, CompLevel_simple, thread); |
6453 | 231 |
} |
232 |
return; |
|
233 |
} |
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234 |
if (bci != InvocationEntryBci && mh->is_not_osr_compilable(level)) { |
6453 | 235 |
return; |
236 |
} |
|
237 |
if (!CompileBroker::compilation_is_in_queue(mh, bci)) { |
|
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if (PrintTieredEvents) { |
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print_event(COMPILE, mh, mh, bci, level); |
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240 |
} |
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241 |
submit_compile(mh, bci, level, thread); |
6453 | 242 |
} |
243 |
} |
|
244 |
||
245 |
// Tell the broker to compile the method |
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246 |
void SimpleThresholdPolicy::submit_compile(methodHandle mh, int bci, CompLevel level, JavaThread* thread) { |
6453 | 247 |
int hot_count = (bci == InvocationEntryBci) ? mh->invocation_count() : mh->backedge_count(); |
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CompileBroker::compile_method(mh, bci, level, mh, hot_count, "tiered", thread); |
6453 | 249 |
} |
250 |
||
251 |
// Call and loop predicates determine whether a transition to a higher |
|
252 |
// compilation level should be performed (pointers to predicate functions |
|
253 |
// are passed to common() transition function). |
|
254 |
bool SimpleThresholdPolicy::loop_predicate(int i, int b, CompLevel cur_level) { |
|
255 |
switch(cur_level) { |
|
256 |
case CompLevel_none: |
|
257 |
case CompLevel_limited_profile: { |
|
258 |
return loop_predicate_helper<CompLevel_none>(i, b, 1.0); |
|
259 |
} |
|
260 |
case CompLevel_full_profile: { |
|
261 |
return loop_predicate_helper<CompLevel_full_profile>(i, b, 1.0); |
|
262 |
} |
|
263 |
default: |
|
264 |
return true; |
|
265 |
} |
|
266 |
} |
|
267 |
||
268 |
bool SimpleThresholdPolicy::call_predicate(int i, int b, CompLevel cur_level) { |
|
269 |
switch(cur_level) { |
|
270 |
case CompLevel_none: |
|
271 |
case CompLevel_limited_profile: { |
|
272 |
return call_predicate_helper<CompLevel_none>(i, b, 1.0); |
|
273 |
} |
|
274 |
case CompLevel_full_profile: { |
|
275 |
return call_predicate_helper<CompLevel_full_profile>(i, b, 1.0); |
|
276 |
} |
|
277 |
default: |
|
278 |
return true; |
|
279 |
} |
|
280 |
} |
|
281 |
||
282 |
// Determine is a method is mature. |
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bool SimpleThresholdPolicy::is_mature(Method* method) { |
6453 | 284 |
if (is_trivial(method)) return true; |
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MethodData* mdo = method->method_data(); |
6453 | 286 |
if (mdo != NULL) { |
287 |
int i = mdo->invocation_count(); |
|
288 |
int b = mdo->backedge_count(); |
|
289 |
double k = ProfileMaturityPercentage / 100.0; |
|
290 |
return call_predicate_helper<CompLevel_full_profile>(i, b, k) || |
|
291 |
loop_predicate_helper<CompLevel_full_profile>(i, b, k); |
|
292 |
} |
|
293 |
return false; |
|
294 |
} |
|
295 |
||
296 |
// Common transition function. Given a predicate determines if a method should transition to another level. |
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297 |
CompLevel SimpleThresholdPolicy::common(Predicate p, Method* method, CompLevel cur_level) { |
6453 | 298 |
CompLevel next_level = cur_level; |
299 |
int i = method->invocation_count(); |
|
300 |
int b = method->backedge_count(); |
|
301 |
||
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if (is_trivial(method)) { |
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next_level = CompLevel_simple; |
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304 |
} else { |
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305 |
switch(cur_level) { |
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306 |
case CompLevel_none: |
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307 |
// If we were at full profile level, would we switch to full opt? |
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308 |
if (common(p, method, CompLevel_full_profile) == CompLevel_full_optimization) { |
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309 |
next_level = CompLevel_full_optimization; |
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310 |
} else if ((this->*p)(i, b, cur_level)) { |
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311 |
next_level = CompLevel_full_profile; |
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312 |
} |
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|
313 |
break; |
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|
314 |
case CompLevel_limited_profile: |
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315 |
case CompLevel_full_profile: |
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316 |
{ |
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317 |
MethodData* mdo = method->method_data(); |
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318 |
if (mdo != NULL) { |
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319 |
if (mdo->would_profile()) { |
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320 |
int mdo_i = mdo->invocation_count_delta(); |
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321 |
int mdo_b = mdo->backedge_count_delta(); |
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|
322 |
if ((this->*p)(mdo_i, mdo_b, cur_level)) { |
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323 |
next_level = CompLevel_full_optimization; |
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|
324 |
} |
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|
325 |
} else { |
8322 | 326 |
next_level = CompLevel_full_optimization; |
327 |
} |
|
6453 | 328 |
} |
329 |
} |
|
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|
330 |
break; |
6453 | 331 |
} |
332 |
} |
|
10250
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|
333 |
return MIN2(next_level, (CompLevel)TieredStopAtLevel); |
6453 | 334 |
} |
335 |
||
336 |
// Determine if a method should be compiled with a normal entry point at a different level. |
|
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|
337 |
CompLevel SimpleThresholdPolicy::call_event(Method* method, CompLevel cur_level) { |
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|
338 |
CompLevel osr_level = MIN2((CompLevel) method->highest_osr_comp_level(), |
714ad59b56cb
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|
339 |
common(&SimpleThresholdPolicy::loop_predicate, method, cur_level)); |
6453 | 340 |
CompLevel next_level = common(&SimpleThresholdPolicy::call_predicate, method, cur_level); |
341 |
||
342 |
// If OSR method level is greater than the regular method level, the levels should be |
|
343 |
// equalized by raising the regular method level in order to avoid OSRs during each |
|
344 |
// invocation of the method. |
|
345 |
if (osr_level == CompLevel_full_optimization && cur_level == CompLevel_full_profile) { |
|
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|
346 |
MethodData* mdo = method->method_data(); |
6453 | 347 |
guarantee(mdo != NULL, "MDO should not be NULL"); |
348 |
if (mdo->invocation_count() >= 1) { |
|
349 |
next_level = CompLevel_full_optimization; |
|
350 |
} |
|
351 |
} else { |
|
352 |
next_level = MAX2(osr_level, next_level); |
|
353 |
} |
|
354 |
||
355 |
return next_level; |
|
356 |
} |
|
357 |
||
358 |
// Determine if we should do an OSR compilation of a given method. |
|
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changeset
|
359 |
CompLevel SimpleThresholdPolicy::loop_event(Method* method, CompLevel cur_level) { |
10013
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|
360 |
CompLevel next_level = common(&SimpleThresholdPolicy::loop_predicate, method, cur_level); |
6453 | 361 |
if (cur_level == CompLevel_none) { |
362 |
// If there is a live OSR method that means that we deopted to the interpreter |
|
363 |
// for the transition. |
|
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|
364 |
CompLevel osr_level = MIN2((CompLevel)method->highest_osr_comp_level(), next_level); |
6453 | 365 |
if (osr_level > CompLevel_none) { |
366 |
return osr_level; |
|
367 |
} |
|
368 |
} |
|
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|
369 |
return next_level; |
6453 | 370 |
} |
371 |
||
372 |
||
373 |
// Handle the invocation event. |
|
374 |
void SimpleThresholdPolicy::method_invocation_event(methodHandle mh, methodHandle imh, |
|
11572
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|
375 |
CompLevel level, nmethod* nm, JavaThread* thread) { |
6453 | 376 |
if (is_compilation_enabled() && !CompileBroker::compilation_is_in_queue(mh, InvocationEntryBci)) { |
377 |
CompLevel next_level = call_event(mh(), level); |
|
378 |
if (next_level != level) { |
|
11572
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|
379 |
compile(mh, InvocationEntryBci, next_level, thread); |
6453 | 380 |
} |
381 |
} |
|
382 |
} |
|
383 |
||
384 |
// Handle the back branch event. Notice that we can compile the method |
|
385 |
// with a regular entry from here. |
|
386 |
void SimpleThresholdPolicy::method_back_branch_event(methodHandle mh, methodHandle imh, |
|
11572
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changeset
|
387 |
int bci, CompLevel level, nmethod* nm, JavaThread* thread) { |
6453 | 388 |
// If the method is already compiling, quickly bail out. |
389 |
if (is_compilation_enabled() && !CompileBroker::compilation_is_in_queue(mh, bci)) { |
|
22551 | 390 |
// Use loop event as an opportunity to also check there's been |
6453 | 391 |
// enough calls. |
392 |
CompLevel cur_level = comp_level(mh()); |
|
393 |
CompLevel next_level = call_event(mh(), cur_level); |
|
394 |
CompLevel next_osr_level = loop_event(mh(), level); |
|
395 |
||
396 |
next_level = MAX2(next_level, |
|
397 |
next_osr_level < CompLevel_full_optimization ? next_osr_level : cur_level); |
|
398 |
bool is_compiling = false; |
|
399 |
if (next_level != cur_level) { |
|
11572
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7131259: compile_method and CompilationPolicy::event shouldn't be declared TRAPS
iveresov
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11192
diff
changeset
|
400 |
compile(mh, InvocationEntryBci, next_level, thread); |
6453 | 401 |
is_compiling = true; |
402 |
} |
|
403 |
||
404 |
// Do the OSR version |
|
405 |
if (!is_compiling && next_osr_level != level) { |
|
11572
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7131259: compile_method and CompilationPolicy::event shouldn't be declared TRAPS
iveresov
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11192
diff
changeset
|
406 |
compile(mh, bci, next_osr_level, thread); |
6453 | 407 |
} |
408 |
} |
|
409 |
} |