src/share/vm/runtime/simpleThresholdPolicy.cpp

Mon, 24 Sep 2012 17:59:24 -0700

author
twisti
date
Mon, 24 Sep 2012 17:59:24 -0700
changeset 4111
9191895df19d
parent 4037
da91efe96a93
child 4936
aeaca88565e6
permissions
-rw-r--r--

7200001: failed C1 OSR compile doesn't get recompiled with C2
Reviewed-by: kvn

     1 /*
     2  * Copyright (c) 2010, 2012, Oracle and/or its affiliates. All rights reserved.
     3  * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
     4  *
     5  * This code is free software; you can redistribute it and/or modify it
     6  * under the terms of the GNU General Public License version 2 only, as
     7  * published by the Free Software Foundation.
     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  *
    19  * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
    20  * or visit www.oracle.com if you need additional information or have any
    21  * questions.
    22  *
    23  */
    25 #include "precompiled.hpp"
    26 #include "compiler/compileBroker.hpp"
    27 #include "memory/resourceArea.hpp"
    28 #include "runtime/arguments.hpp"
    29 #include "runtime/simpleThresholdPolicy.hpp"
    30 #include "runtime/simpleThresholdPolicy.inline.hpp"
    31 #include "code/scopeDesc.hpp"
    34 void SimpleThresholdPolicy::print_counters(const char* prefix, methodHandle mh) {
    35   int invocation_count = mh->invocation_count();
    36   int backedge_count = mh->backedge_count();
    37   MethodData* mdh = mh->method_data();
    38   int mdo_invocations = 0, mdo_backedges = 0;
    39   int mdo_invocations_start = 0, mdo_backedges_start = 0;
    40   if (mdh != NULL) {
    41     mdo_invocations = mdh->invocation_count();
    42     mdo_backedges = mdh->backedge_count();
    43     mdo_invocations_start = mdh->invocation_count_start();
    44     mdo_backedges_start = mdh->backedge_count_start();
    45   }
    46   tty->print(" %stotal=%d,%d %smdo=%d(%d),%d(%d)", prefix,
    47       invocation_count, backedge_count, prefix,
    48       mdo_invocations, mdo_invocations_start,
    49       mdo_backedges, mdo_backedges_start);
    50   tty->print(" %smax levels=%d,%d", prefix,
    51       mh->highest_comp_level(), mh->highest_osr_comp_level());
    52 }
    54 // Print an event.
    55 void SimpleThresholdPolicy::print_event(EventType type, methodHandle mh, methodHandle imh,
    56                                         int bci, CompLevel level) {
    57   bool inlinee_event = mh() != imh();
    59   ttyLocker tty_lock;
    60   tty->print("%lf: [", os::elapsedTime());
    62   switch(type) {
    63   case CALL:
    64     tty->print("call");
    65     break;
    66   case LOOP:
    67     tty->print("loop");
    68     break;
    69   case COMPILE:
    70     tty->print("compile");
    71     break;
    72   case REMOVE_FROM_QUEUE:
    73     tty->print("remove-from-queue");
    74     break;
    75   case UPDATE_IN_QUEUE:
    76     tty->print("update-in-queue");
    77     break;
    78   case REPROFILE:
    79     tty->print("reprofile");
    80     break;
    81   case MAKE_NOT_ENTRANT:
    82     tty->print("make-not-entrant");
    83     break;
    84   default:
    85     tty->print("unknown");
    86   }
    88   tty->print(" level=%d ", level);
    90   ResourceMark rm;
    91   char *method_name = mh->name_and_sig_as_C_string();
    92   tty->print("[%s", method_name);
    93   if (inlinee_event) {
    94     char *inlinee_name = imh->name_and_sig_as_C_string();
    95     tty->print(" [%s]] ", inlinee_name);
    96   }
    97   else tty->print("] ");
    98   tty->print("@%d queues=%d,%d", bci, CompileBroker::queue_size(CompLevel_full_profile),
    99                                       CompileBroker::queue_size(CompLevel_full_optimization));
   101   print_specific(type, mh, imh, bci, level);
   103   if (type != COMPILE) {
   104     print_counters("", mh);
   105     if (inlinee_event) {
   106       print_counters("inlinee ", imh);
   107     }
   108     tty->print(" compilable=");
   109     bool need_comma = false;
   110     if (!mh->is_not_compilable(CompLevel_full_profile)) {
   111       tty->print("c1");
   112       need_comma = true;
   113     }
   114     if (!mh->is_not_osr_compilable(CompLevel_full_profile)) {
   115       if (need_comma) tty->print(",");
   116       tty->print("c1-osr");
   117       need_comma = true;
   118     }
   119     if (!mh->is_not_compilable(CompLevel_full_optimization)) {
   120       if (need_comma) tty->print(",");
   121       tty->print("c2");
   122       need_comma = true;
   123     }
   124     if (!mh->is_not_osr_compilable(CompLevel_full_optimization)) {
   125       if (need_comma) tty->print(",");
   126       tty->print("c2-osr");
   127     }
   128     tty->print(" status=");
   129     if (mh->queued_for_compilation()) {
   130       tty->print("in-queue");
   131     } else tty->print("idle");
   132   }
   133   tty->print_cr("]");
   134 }
   136 void SimpleThresholdPolicy::initialize() {
   137   if (FLAG_IS_DEFAULT(CICompilerCount)) {
   138     FLAG_SET_DEFAULT(CICompilerCount, 3);
   139   }
   140   int count = CICompilerCount;
   141   if (CICompilerCountPerCPU) {
   142     count = MAX2(log2_intptr(os::active_processor_count()), 1) * 3 / 2;
   143   }
   144   set_c1_count(MAX2(count / 3, 1));
   145   set_c2_count(MAX2(count - count / 3, 1));
   146 }
   148 void SimpleThresholdPolicy::set_carry_if_necessary(InvocationCounter *counter) {
   149   if (!counter->carry() && counter->count() > InvocationCounter::count_limit / 2) {
   150     counter->set_carry_flag();
   151   }
   152 }
   154 // Set carry flags on the counters if necessary
   155 void SimpleThresholdPolicy::handle_counter_overflow(Method* method) {
   156   set_carry_if_necessary(method->invocation_counter());
   157   set_carry_if_necessary(method->backedge_counter());
   158   MethodData* mdo = method->method_data();
   159   if (mdo != NULL) {
   160     set_carry_if_necessary(mdo->invocation_counter());
   161     set_carry_if_necessary(mdo->backedge_counter());
   162   }
   163 }
   165 // Called with the queue locked and with at least one element
   166 CompileTask* SimpleThresholdPolicy::select_task(CompileQueue* compile_queue) {
   167   return compile_queue->first();
   168 }
   170 void SimpleThresholdPolicy::reprofile(ScopeDesc* trap_scope, bool is_osr) {
   171   for (ScopeDesc* sd = trap_scope;; sd = sd->sender()) {
   172     if (PrintTieredEvents) {
   173       methodHandle mh(sd->method());
   174       print_event(REPROFILE, mh, mh, InvocationEntryBci, CompLevel_none);
   175     }
   176     MethodData* mdo = sd->method()->method_data();
   177     if (mdo != NULL) {
   178       mdo->reset_start_counters();
   179     }
   180     if (sd->is_top()) break;
   181   }
   182 }
   184 nmethod* SimpleThresholdPolicy::event(methodHandle method, methodHandle inlinee,
   185                                       int branch_bci, int bci, CompLevel comp_level, nmethod* nm, JavaThread* thread) {
   186   if (comp_level == CompLevel_none &&
   187       JvmtiExport::can_post_interpreter_events() &&
   188       thread->is_interp_only_mode()) {
   189     return NULL;
   190   }
   191   nmethod *osr_nm = NULL;
   193   handle_counter_overflow(method());
   194   if (method() != inlinee()) {
   195     handle_counter_overflow(inlinee());
   196   }
   198   if (PrintTieredEvents) {
   199     print_event(bci == InvocationEntryBci ? CALL : LOOP, method, inlinee, bci, comp_level);
   200   }
   202   if (bci == InvocationEntryBci) {
   203     method_invocation_event(method, inlinee, comp_level, nm, thread);
   204   } else {
   205     method_back_branch_event(method, inlinee, bci, comp_level, nm, thread);
   206     // method == inlinee if the event originated in the main method
   207     int highest_level = inlinee->highest_osr_comp_level();
   208     if (highest_level > comp_level) {
   209       osr_nm = inlinee->lookup_osr_nmethod_for(bci, highest_level, false);
   210     }
   211   }
   212   return osr_nm;
   213 }
   215 // Check if the method can be compiled, change level if necessary
   216 void SimpleThresholdPolicy::compile(methodHandle mh, int bci, CompLevel level, JavaThread* thread) {
   217   assert(level <= TieredStopAtLevel, "Invalid compilation level");
   218   if (level == CompLevel_none) {
   219     return;
   220   }
   221   // Check if the method can be compiled. If it cannot be compiled with C1, continue profiling
   222   // in the interpreter and then compile with C2 (the transition function will request that,
   223   // see common() ). If the method cannot be compiled with C2 but still can with C1, compile it with
   224   // pure C1.
   225   if (!can_be_compiled(mh, level)) {
   226     if (level == CompLevel_full_optimization && can_be_compiled(mh, CompLevel_simple)) {
   227         compile(mh, bci, CompLevel_simple, thread);
   228     }
   229     return;
   230   }
   231   if (bci != InvocationEntryBci && mh->is_not_osr_compilable(level)) {
   232     return;
   233   }
   234   if (!CompileBroker::compilation_is_in_queue(mh, bci)) {
   235     if (PrintTieredEvents) {
   236       print_event(COMPILE, mh, mh, bci, level);
   237     }
   238     submit_compile(mh, bci, level, thread);
   239   }
   240 }
   242 // Tell the broker to compile the method
   243 void SimpleThresholdPolicy::submit_compile(methodHandle mh, int bci, CompLevel level, JavaThread* thread) {
   244   int hot_count = (bci == InvocationEntryBci) ? mh->invocation_count() : mh->backedge_count();
   245   CompileBroker::compile_method(mh, bci, level, mh, hot_count, "tiered", thread);
   246 }
   248 // Call and loop predicates determine whether a transition to a higher
   249 // compilation level should be performed (pointers to predicate functions
   250 // are passed to common() transition function).
   251 bool SimpleThresholdPolicy::loop_predicate(int i, int b, CompLevel cur_level) {
   252   switch(cur_level) {
   253   case CompLevel_none:
   254   case CompLevel_limited_profile: {
   255     return loop_predicate_helper<CompLevel_none>(i, b, 1.0);
   256   }
   257   case CompLevel_full_profile: {
   258     return loop_predicate_helper<CompLevel_full_profile>(i, b, 1.0);
   259   }
   260   default:
   261     return true;
   262   }
   263 }
   265 bool SimpleThresholdPolicy::call_predicate(int i, int b, CompLevel cur_level) {
   266   switch(cur_level) {
   267   case CompLevel_none:
   268   case CompLevel_limited_profile: {
   269     return call_predicate_helper<CompLevel_none>(i, b, 1.0);
   270   }
   271   case CompLevel_full_profile: {
   272     return call_predicate_helper<CompLevel_full_profile>(i, b, 1.0);
   273   }
   274   default:
   275     return true;
   276   }
   277 }
   279 // Determine is a method is mature.
   280 bool SimpleThresholdPolicy::is_mature(Method* method) {
   281   if (is_trivial(method)) return true;
   282   MethodData* mdo = method->method_data();
   283   if (mdo != NULL) {
   284     int i = mdo->invocation_count();
   285     int b = mdo->backedge_count();
   286     double k = ProfileMaturityPercentage / 100.0;
   287     return call_predicate_helper<CompLevel_full_profile>(i, b, k) ||
   288            loop_predicate_helper<CompLevel_full_profile>(i, b, k);
   289   }
   290   return false;
   291 }
   293 // Common transition function. Given a predicate determines if a method should transition to another level.
   294 CompLevel SimpleThresholdPolicy::common(Predicate p, Method* method, CompLevel cur_level) {
   295   CompLevel next_level = cur_level;
   296   int i = method->invocation_count();
   297   int b = method->backedge_count();
   299   if (is_trivial(method)) {
   300     next_level = CompLevel_simple;
   301   } else {
   302     switch(cur_level) {
   303     case CompLevel_none:
   304       // If we were at full profile level, would we switch to full opt?
   305       if (common(p, method, CompLevel_full_profile) == CompLevel_full_optimization) {
   306         next_level = CompLevel_full_optimization;
   307       } else if ((this->*p)(i, b, cur_level)) {
   308         next_level = CompLevel_full_profile;
   309       }
   310       break;
   311     case CompLevel_limited_profile:
   312     case CompLevel_full_profile:
   313       {
   314         MethodData* mdo = method->method_data();
   315         if (mdo != NULL) {
   316           if (mdo->would_profile()) {
   317             int mdo_i = mdo->invocation_count_delta();
   318             int mdo_b = mdo->backedge_count_delta();
   319             if ((this->*p)(mdo_i, mdo_b, cur_level)) {
   320               next_level = CompLevel_full_optimization;
   321             }
   322           } else {
   323             next_level = CompLevel_full_optimization;
   324           }
   325         }
   326       }
   327       break;
   328     }
   329   }
   330   return MIN2(next_level, (CompLevel)TieredStopAtLevel);
   331 }
   333 // Determine if a method should be compiled with a normal entry point at a different level.
   334 CompLevel SimpleThresholdPolicy::call_event(Method* method,  CompLevel cur_level) {
   335   CompLevel osr_level = MIN2((CompLevel) method->highest_osr_comp_level(),
   336                              common(&SimpleThresholdPolicy::loop_predicate, method, cur_level));
   337   CompLevel next_level = common(&SimpleThresholdPolicy::call_predicate, method, cur_level);
   339   // If OSR method level is greater than the regular method level, the levels should be
   340   // equalized by raising the regular method level in order to avoid OSRs during each
   341   // invocation of the method.
   342   if (osr_level == CompLevel_full_optimization && cur_level == CompLevel_full_profile) {
   343     MethodData* mdo = method->method_data();
   344     guarantee(mdo != NULL, "MDO should not be NULL");
   345     if (mdo->invocation_count() >= 1) {
   346       next_level = CompLevel_full_optimization;
   347     }
   348   } else {
   349     next_level = MAX2(osr_level, next_level);
   350   }
   352   return next_level;
   353 }
   355 // Determine if we should do an OSR compilation of a given method.
   356 CompLevel SimpleThresholdPolicy::loop_event(Method* method, CompLevel cur_level) {
   357   CompLevel next_level = common(&SimpleThresholdPolicy::loop_predicate, method, cur_level);
   358   if (cur_level == CompLevel_none) {
   359     // If there is a live OSR method that means that we deopted to the interpreter
   360     // for the transition.
   361     CompLevel osr_level = MIN2((CompLevel)method->highest_osr_comp_level(), next_level);
   362     if (osr_level > CompLevel_none) {
   363       return osr_level;
   364     }
   365   }
   366   return next_level;
   367 }
   370 // Handle the invocation event.
   371 void SimpleThresholdPolicy::method_invocation_event(methodHandle mh, methodHandle imh,
   372                                               CompLevel level, nmethod* nm, JavaThread* thread) {
   373   if (is_compilation_enabled() && !CompileBroker::compilation_is_in_queue(mh, InvocationEntryBci)) {
   374     CompLevel next_level = call_event(mh(), level);
   375     if (next_level != level) {
   376       compile(mh, InvocationEntryBci, next_level, thread);
   377     }
   378   }
   379 }
   381 // Handle the back branch event. Notice that we can compile the method
   382 // with a regular entry from here.
   383 void SimpleThresholdPolicy::method_back_branch_event(methodHandle mh, methodHandle imh,
   384                                                      int bci, CompLevel level, nmethod* nm, JavaThread* thread) {
   385   // If the method is already compiling, quickly bail out.
   386   if (is_compilation_enabled() && !CompileBroker::compilation_is_in_queue(mh, bci)) {
   387     // Use loop event as an opportinity to also check there's been
   388     // enough calls.
   389     CompLevel cur_level = comp_level(mh());
   390     CompLevel next_level = call_event(mh(), cur_level);
   391     CompLevel next_osr_level = loop_event(mh(), level);
   393     next_level = MAX2(next_level,
   394                       next_osr_level < CompLevel_full_optimization ? next_osr_level : cur_level);
   395     bool is_compiling = false;
   396     if (next_level != cur_level) {
   397       compile(mh, InvocationEntryBci, next_level, thread);
   398       is_compiling = true;
   399     }
   401     // Do the OSR version
   402     if (!is_compiling && next_osr_level != level) {
   403       compile(mh, bci, next_osr_level, thread);
   404     }
   405   }
   406 }

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