src/share/vm/opto/parseHelper.cpp

Wed, 24 Apr 2013 20:55:28 -0400

author
dlong
date
Wed, 24 Apr 2013 20:55:28 -0400
changeset 5000
a6e09d6dd8e5
parent 4936
aeaca88565e6
child 5110
6f3fd5150b67
permissions
-rw-r--r--

8003853: specify offset of IC load in java_to_interp stub
Summary: refactored code to allow platform-specific differences
Reviewed-by: dlong, twisti
Contributed-by: Goetz Lindenmaier <goetz.lindenmaier@sap.com>

     1 /*
     2  * Copyright (c) 1998, 2013, 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 "classfile/systemDictionary.hpp"
    27 #include "compiler/compileLog.hpp"
    28 #include "oops/objArrayKlass.hpp"
    29 #include "opto/addnode.hpp"
    30 #include "opto/memnode.hpp"
    31 #include "opto/mulnode.hpp"
    32 #include "opto/parse.hpp"
    33 #include "opto/rootnode.hpp"
    34 #include "opto/runtime.hpp"
    35 #include "runtime/sharedRuntime.hpp"
    37 //------------------------------make_dtrace_method_entry_exit ----------------
    38 // Dtrace -- record entry or exit of a method if compiled with dtrace support
    39 void GraphKit::make_dtrace_method_entry_exit(ciMethod* method, bool is_entry) {
    40   const TypeFunc *call_type    = OptoRuntime::dtrace_method_entry_exit_Type();
    41   address         call_address = is_entry ? CAST_FROM_FN_PTR(address, SharedRuntime::dtrace_method_entry) :
    42                                             CAST_FROM_FN_PTR(address, SharedRuntime::dtrace_method_exit);
    43   const char     *call_name    = is_entry ? "dtrace_method_entry" : "dtrace_method_exit";
    45   // Get base of thread-local storage area
    46   Node* thread = _gvn.transform( new (C) ThreadLocalNode() );
    48   // Get method
    49   const TypePtr* method_type = TypeMetadataPtr::make(method);
    50   Node *method_node = _gvn.transform( ConNode::make(C, method_type) );
    52   kill_dead_locals();
    54   // For some reason, this call reads only raw memory.
    55   const TypePtr* raw_adr_type = TypeRawPtr::BOTTOM;
    56   make_runtime_call(RC_LEAF | RC_NARROW_MEM,
    57                     call_type, call_address,
    58                     call_name, raw_adr_type,
    59                     thread, method_node);
    60 }
    63 //=============================================================================
    64 //------------------------------do_checkcast-----------------------------------
    65 void Parse::do_checkcast() {
    66   bool will_link;
    67   ciKlass* klass = iter().get_klass(will_link);
    69   Node *obj = peek();
    71   // Throw uncommon trap if class is not loaded or the value we are casting
    72   // _from_ is not loaded, and value is not null.  If the value _is_ NULL,
    73   // then the checkcast does nothing.
    74   const TypeOopPtr *tp = _gvn.type(obj)->isa_oopptr();
    75   if (!will_link || (tp && tp->klass() && !tp->klass()->is_loaded())) {
    76     if (C->log() != NULL) {
    77       if (!will_link) {
    78         C->log()->elem("assert_null reason='checkcast' klass='%d'",
    79                        C->log()->identify(klass));
    80       }
    81       if (tp && tp->klass() && !tp->klass()->is_loaded()) {
    82         // %%% Cannot happen?
    83         C->log()->elem("assert_null reason='checkcast source' klass='%d'",
    84                        C->log()->identify(tp->klass()));
    85       }
    86     }
    87     null_assert(obj);
    88     assert( stopped() || _gvn.type(peek())->higher_equal(TypePtr::NULL_PTR), "what's left behind is null" );
    89     if (!stopped()) {
    90       profile_null_checkcast();
    91     }
    92     return;
    93   }
    95   Node *res = gen_checkcast(obj, makecon(TypeKlassPtr::make(klass)) );
    97   // Pop from stack AFTER gen_checkcast because it can uncommon trap and
    98   // the debug info has to be correct.
    99   pop();
   100   push(res);
   101 }
   104 //------------------------------do_instanceof----------------------------------
   105 void Parse::do_instanceof() {
   106   if (stopped())  return;
   107   // We would like to return false if class is not loaded, emitting a
   108   // dependency, but Java requires instanceof to load its operand.
   110   // Throw uncommon trap if class is not loaded
   111   bool will_link;
   112   ciKlass* klass = iter().get_klass(will_link);
   114   if (!will_link) {
   115     if (C->log() != NULL) {
   116       C->log()->elem("assert_null reason='instanceof' klass='%d'",
   117                      C->log()->identify(klass));
   118     }
   119     null_assert(peek());
   120     assert( stopped() || _gvn.type(peek())->higher_equal(TypePtr::NULL_PTR), "what's left behind is null" );
   121     if (!stopped()) {
   122       // The object is now known to be null.
   123       // Shortcut the effect of gen_instanceof and return "false" directly.
   124       pop();                   // pop the null
   125       push(_gvn.intcon(0));    // push false answer
   126     }
   127     return;
   128   }
   130   // Push the bool result back on stack
   131   Node* res = gen_instanceof(peek(), makecon(TypeKlassPtr::make(klass)));
   133   // Pop from stack AFTER gen_instanceof because it can uncommon trap.
   134   pop();
   135   push(res);
   136 }
   138 //------------------------------array_store_check------------------------------
   139 // pull array from stack and check that the store is valid
   140 void Parse::array_store_check() {
   142   // Shorthand access to array store elements without popping them.
   143   Node *obj = peek(0);
   144   Node *idx = peek(1);
   145   Node *ary = peek(2);
   147   if (_gvn.type(obj) == TypePtr::NULL_PTR) {
   148     // There's never a type check on null values.
   149     // This cutout lets us avoid the uncommon_trap(Reason_array_check)
   150     // below, which turns into a performance liability if the
   151     // gen_checkcast folds up completely.
   152     return;
   153   }
   155   // Extract the array klass type
   156   int klass_offset = oopDesc::klass_offset_in_bytes();
   157   Node* p = basic_plus_adr( ary, ary, klass_offset );
   158   // p's type is array-of-OOPS plus klass_offset
   159   Node* array_klass = _gvn.transform( LoadKlassNode::make(_gvn, immutable_memory(), p, TypeInstPtr::KLASS) );
   160   // Get the array klass
   161   const TypeKlassPtr *tak = _gvn.type(array_klass)->is_klassptr();
   163   // array_klass's type is generally INexact array-of-oop.  Heroically
   164   // cast the array klass to EXACT array and uncommon-trap if the cast
   165   // fails.
   166   bool always_see_exact_class = false;
   167   if (MonomorphicArrayCheck
   168       && !too_many_traps(Deoptimization::Reason_array_check)) {
   169     always_see_exact_class = true;
   170     // (If no MDO at all, hope for the best, until a trap actually occurs.)
   171   }
   173   // Is the array klass is exactly its defined type?
   174   if (always_see_exact_class && !tak->klass_is_exact()) {
   175     // Make a constant out of the inexact array klass
   176     const TypeKlassPtr *extak = tak->cast_to_exactness(true)->is_klassptr();
   177     Node* con = makecon(extak);
   178     Node* cmp = _gvn.transform(new (C) CmpPNode( array_klass, con ));
   179     Node* bol = _gvn.transform(new (C) BoolNode( cmp, BoolTest::eq ));
   180     Node* ctrl= control();
   181     { BuildCutout unless(this, bol, PROB_MAX);
   182       uncommon_trap(Deoptimization::Reason_array_check,
   183                     Deoptimization::Action_maybe_recompile,
   184                     tak->klass());
   185     }
   186     if (stopped()) {          // MUST uncommon-trap?
   187       set_control(ctrl);      // Then Don't Do It, just fall into the normal checking
   188     } else {                  // Cast array klass to exactness:
   189       // Use the exact constant value we know it is.
   190       replace_in_map(array_klass,con);
   191       CompileLog* log = C->log();
   192       if (log != NULL) {
   193         log->elem("cast_up reason='monomorphic_array' from='%d' to='(exact)'",
   194                   log->identify(tak->klass()));
   195       }
   196       array_klass = con;      // Use cast value moving forward
   197     }
   198   }
   200   // Come here for polymorphic array klasses
   202   // Extract the array element class
   203   int element_klass_offset = in_bytes(ObjArrayKlass::element_klass_offset());
   204   Node *p2 = basic_plus_adr(array_klass, array_klass, element_klass_offset);
   205   Node *a_e_klass = _gvn.transform( LoadKlassNode::make(_gvn, immutable_memory(), p2, tak) );
   207   // Check (the hard way) and throw if not a subklass.
   208   // Result is ignored, we just need the CFG effects.
   209   gen_checkcast( obj, a_e_klass );
   210 }
   213 void Parse::emit_guard_for_new(ciInstanceKlass* klass) {
   214   // Emit guarded new
   215   //   if (klass->_init_thread != current_thread ||
   216   //       klass->_init_state != being_initialized)
   217   //      uncommon_trap
   218   Node* cur_thread = _gvn.transform( new (C) ThreadLocalNode() );
   219   Node* merge = new (C) RegionNode(3);
   220   _gvn.set_type(merge, Type::CONTROL);
   221   Node* kls = makecon(TypeKlassPtr::make(klass));
   223   Node* init_thread_offset = _gvn.MakeConX(in_bytes(InstanceKlass::init_thread_offset()));
   224   Node* adr_node = basic_plus_adr(kls, kls, init_thread_offset);
   225   Node* init_thread = make_load(NULL, adr_node, TypeRawPtr::BOTTOM, T_ADDRESS);
   226   Node *tst   = Bool( CmpP( init_thread, cur_thread), BoolTest::eq);
   227   IfNode* iff = create_and_map_if(control(), tst, PROB_ALWAYS, COUNT_UNKNOWN);
   228   set_control(IfTrue(iff));
   229   merge->set_req(1, IfFalse(iff));
   231   Node* init_state_offset = _gvn.MakeConX(in_bytes(InstanceKlass::init_state_offset()));
   232   adr_node = basic_plus_adr(kls, kls, init_state_offset);
   233   // Use T_BOOLEAN for InstanceKlass::_init_state so the compiler
   234   // can generate code to load it as unsigned byte.
   235   Node* init_state = make_load(NULL, adr_node, TypeInt::UBYTE, T_BOOLEAN);
   236   Node* being_init = _gvn.intcon(InstanceKlass::being_initialized);
   237   tst   = Bool( CmpI( init_state, being_init), BoolTest::eq);
   238   iff = create_and_map_if(control(), tst, PROB_ALWAYS, COUNT_UNKNOWN);
   239   set_control(IfTrue(iff));
   240   merge->set_req(2, IfFalse(iff));
   242   PreserveJVMState pjvms(this);
   243   record_for_igvn(merge);
   244   set_control(merge);
   246   uncommon_trap(Deoptimization::Reason_uninitialized,
   247                 Deoptimization::Action_reinterpret,
   248                 klass);
   249 }
   252 //------------------------------do_new-----------------------------------------
   253 void Parse::do_new() {
   254   kill_dead_locals();
   256   bool will_link;
   257   ciInstanceKlass* klass = iter().get_klass(will_link)->as_instance_klass();
   258   assert(will_link, "_new: typeflow responsibility");
   260   // Should initialize, or throw an InstantiationError?
   261   if (!klass->is_initialized() && !klass->is_being_initialized() ||
   262       klass->is_abstract() || klass->is_interface() ||
   263       klass->name() == ciSymbol::java_lang_Class() ||
   264       iter().is_unresolved_klass()) {
   265     uncommon_trap(Deoptimization::Reason_uninitialized,
   266                   Deoptimization::Action_reinterpret,
   267                   klass);
   268     return;
   269   }
   270   if (klass->is_being_initialized()) {
   271     emit_guard_for_new(klass);
   272   }
   274   Node* kls = makecon(TypeKlassPtr::make(klass));
   275   Node* obj = new_instance(kls);
   277   // Push resultant oop onto stack
   278   push(obj);
   280   // Keep track of whether opportunities exist for StringBuilder
   281   // optimizations.
   282   if (OptimizeStringConcat &&
   283       (klass == C->env()->StringBuilder_klass() ||
   284        klass == C->env()->StringBuffer_klass())) {
   285     C->set_has_stringbuilder(true);
   286   }
   287 }
   289 #ifndef PRODUCT
   290 //------------------------------dump_map_adr_mem-------------------------------
   291 // Debug dump of the mapping from address types to MergeMemNode indices.
   292 void Parse::dump_map_adr_mem() const {
   293   tty->print_cr("--- Mapping from address types to memory Nodes ---");
   294   MergeMemNode *mem = map() == NULL ? NULL : (map()->memory()->is_MergeMem() ?
   295                                       map()->memory()->as_MergeMem() : NULL);
   296   for (uint i = 0; i < (uint)C->num_alias_types(); i++) {
   297     C->alias_type(i)->print_on(tty);
   298     tty->print("\t");
   299     // Node mapping, if any
   300     if (mem && i < mem->req() && mem->in(i) && mem->in(i) != mem->empty_memory()) {
   301       mem->in(i)->dump();
   302     } else {
   303       tty->cr();
   304     }
   305   }
   306 }
   308 #endif
   311 //=============================================================================
   312 //
   313 // parser methods for profiling
   316 //----------------------test_counter_against_threshold ------------------------
   317 void Parse::test_counter_against_threshold(Node* cnt, int limit) {
   318   // Test the counter against the limit and uncommon trap if greater.
   320   // This code is largely copied from the range check code in
   321   // array_addressing()
   323   // Test invocation count vs threshold
   324   Node *threshold = makecon(TypeInt::make(limit));
   325   Node *chk   = _gvn.transform( new (C) CmpUNode( cnt, threshold) );
   326   BoolTest::mask btest = BoolTest::lt;
   327   Node *tst   = _gvn.transform( new (C) BoolNode( chk, btest) );
   328   // Branch to failure if threshold exceeded
   329   { BuildCutout unless(this, tst, PROB_ALWAYS);
   330     uncommon_trap(Deoptimization::Reason_age,
   331                   Deoptimization::Action_maybe_recompile);
   332   }
   333 }
   335 //----------------------increment_and_test_invocation_counter-------------------
   336 void Parse::increment_and_test_invocation_counter(int limit) {
   337   if (!count_invocations()) return;
   339   // Get the Method* node.
   340   ciMethod* m = method();
   341   address counters_adr = m->ensure_method_counters();
   343   Node* ctrl = control();
   344   const TypePtr* adr_type = TypeRawPtr::make(counters_adr);
   345   Node *counters_node = makecon(adr_type);
   346   Node* adr_iic_node = basic_plus_adr(counters_node, counters_node,
   347     MethodCounters::interpreter_invocation_counter_offset_in_bytes());
   348   Node* cnt = make_load(ctrl, adr_iic_node, TypeInt::INT, T_INT, adr_type);
   350   test_counter_against_threshold(cnt, limit);
   352   // Add one to the counter and store
   353   Node* incr = _gvn.transform(new (C) AddINode(cnt, _gvn.intcon(1)));
   354   store_to_memory( ctrl, adr_iic_node, incr, T_INT, adr_type );
   355 }
   357 //----------------------------method_data_addressing---------------------------
   358 Node* Parse::method_data_addressing(ciMethodData* md, ciProfileData* data, ByteSize counter_offset, Node* idx, uint stride) {
   359   // Get offset within MethodData* of the data array
   360   ByteSize data_offset = MethodData::data_offset();
   362   // Get cell offset of the ProfileData within data array
   363   int cell_offset = md->dp_to_di(data->dp());
   365   // Add in counter_offset, the # of bytes into the ProfileData of counter or flag
   366   int offset = in_bytes(data_offset) + cell_offset + in_bytes(counter_offset);
   368   const TypePtr* adr_type = TypeMetadataPtr::make(md);
   369   Node* mdo = makecon(adr_type);
   370   Node* ptr = basic_plus_adr(mdo, mdo, offset);
   372   if (stride != 0) {
   373     Node* str = _gvn.MakeConX(stride);
   374     Node* scale = _gvn.transform( new (C) MulXNode( idx, str ) );
   375     ptr   = _gvn.transform( new (C) AddPNode( mdo, ptr, scale ) );
   376   }
   378   return ptr;
   379 }
   381 //--------------------------increment_md_counter_at----------------------------
   382 void Parse::increment_md_counter_at(ciMethodData* md, ciProfileData* data, ByteSize counter_offset, Node* idx, uint stride) {
   383   Node* adr_node = method_data_addressing(md, data, counter_offset, idx, stride);
   385   const TypePtr* adr_type = _gvn.type(adr_node)->is_ptr();
   386   Node* cnt  = make_load(NULL, adr_node, TypeInt::INT, T_INT, adr_type);
   387   Node* incr = _gvn.transform(new (C) AddINode(cnt, _gvn.intcon(DataLayout::counter_increment)));
   388   store_to_memory(NULL, adr_node, incr, T_INT, adr_type );
   389 }
   391 //--------------------------test_for_osr_md_counter_at-------------------------
   392 void Parse::test_for_osr_md_counter_at(ciMethodData* md, ciProfileData* data, ByteSize counter_offset, int limit) {
   393   Node* adr_node = method_data_addressing(md, data, counter_offset);
   395   const TypePtr* adr_type = _gvn.type(adr_node)->is_ptr();
   396   Node* cnt  = make_load(NULL, adr_node, TypeInt::INT, T_INT, adr_type);
   398   test_counter_against_threshold(cnt, limit);
   399 }
   401 //-------------------------------set_md_flag_at--------------------------------
   402 void Parse::set_md_flag_at(ciMethodData* md, ciProfileData* data, int flag_constant) {
   403   Node* adr_node = method_data_addressing(md, data, DataLayout::flags_offset());
   405   const TypePtr* adr_type = _gvn.type(adr_node)->is_ptr();
   406   Node* flags = make_load(NULL, adr_node, TypeInt::BYTE, T_BYTE, adr_type);
   407   Node* incr = _gvn.transform(new (C) OrINode(flags, _gvn.intcon(flag_constant)));
   408   store_to_memory(NULL, adr_node, incr, T_BYTE, adr_type);
   409 }
   411 //----------------------------profile_taken_branch-----------------------------
   412 void Parse::profile_taken_branch(int target_bci, bool force_update) {
   413   // This is a potential osr_site if we have a backedge.
   414   int cur_bci = bci();
   415   bool osr_site =
   416     (target_bci <= cur_bci) && count_invocations() && UseOnStackReplacement;
   418   // If we are going to OSR, restart at the target bytecode.
   419   set_bci(target_bci);
   421   // To do: factor out the the limit calculations below. These duplicate
   422   // the similar limit calculations in the interpreter.
   424   if (method_data_update() || force_update) {
   425     ciMethodData* md = method()->method_data();
   426     assert(md != NULL, "expected valid ciMethodData");
   427     ciProfileData* data = md->bci_to_data(cur_bci);
   428     assert(data->is_JumpData(), "need JumpData for taken branch");
   429     increment_md_counter_at(md, data, JumpData::taken_offset());
   430   }
   432   // In the new tiered system this is all we need to do. In the old
   433   // (c2 based) tiered sytem we must do the code below.
   434 #ifndef TIERED
   435   if (method_data_update()) {
   436     ciMethodData* md = method()->method_data();
   437     if (osr_site) {
   438       ciProfileData* data = md->bci_to_data(cur_bci);
   439       int limit = (CompileThreshold
   440                    * (OnStackReplacePercentage - InterpreterProfilePercentage)) / 100;
   441       test_for_osr_md_counter_at(md, data, JumpData::taken_offset(), limit);
   442     }
   443   } else {
   444     // With method data update off, use the invocation counter to trigger an
   445     // OSR compilation, as done in the interpreter.
   446     if (osr_site) {
   447       int limit = (CompileThreshold * OnStackReplacePercentage) / 100;
   448       increment_and_test_invocation_counter(limit);
   449     }
   450   }
   451 #endif // TIERED
   453   // Restore the original bytecode.
   454   set_bci(cur_bci);
   455 }
   457 //--------------------------profile_not_taken_branch---------------------------
   458 void Parse::profile_not_taken_branch(bool force_update) {
   460   if (method_data_update() || force_update) {
   461     ciMethodData* md = method()->method_data();
   462     assert(md != NULL, "expected valid ciMethodData");
   463     ciProfileData* data = md->bci_to_data(bci());
   464     assert(data->is_BranchData(), "need BranchData for not taken branch");
   465     increment_md_counter_at(md, data, BranchData::not_taken_offset());
   466   }
   468 }
   470 //---------------------------------profile_call--------------------------------
   471 void Parse::profile_call(Node* receiver) {
   472   if (!method_data_update()) return;
   474   switch (bc()) {
   475   case Bytecodes::_invokevirtual:
   476   case Bytecodes::_invokeinterface:
   477     profile_receiver_type(receiver);
   478     break;
   479   case Bytecodes::_invokestatic:
   480   case Bytecodes::_invokedynamic:
   481   case Bytecodes::_invokespecial:
   482     profile_generic_call();
   483     break;
   484   default: fatal("unexpected call bytecode");
   485   }
   486 }
   488 //------------------------------profile_generic_call---------------------------
   489 void Parse::profile_generic_call() {
   490   assert(method_data_update(), "must be generating profile code");
   492   ciMethodData* md = method()->method_data();
   493   assert(md != NULL, "expected valid ciMethodData");
   494   ciProfileData* data = md->bci_to_data(bci());
   495   assert(data->is_CounterData(), "need CounterData for not taken branch");
   496   increment_md_counter_at(md, data, CounterData::count_offset());
   497 }
   499 //-----------------------------profile_receiver_type---------------------------
   500 void Parse::profile_receiver_type(Node* receiver) {
   501   assert(method_data_update(), "must be generating profile code");
   503   ciMethodData* md = method()->method_data();
   504   assert(md != NULL, "expected valid ciMethodData");
   505   ciProfileData* data = md->bci_to_data(bci());
   506   assert(data->is_ReceiverTypeData(), "need ReceiverTypeData here");
   508   // Skip if we aren't tracking receivers
   509   if (TypeProfileWidth < 1) {
   510     increment_md_counter_at(md, data, CounterData::count_offset());
   511     return;
   512   }
   513   ciReceiverTypeData* rdata = (ciReceiverTypeData*)data->as_ReceiverTypeData();
   515   Node* method_data = method_data_addressing(md, rdata, in_ByteSize(0));
   517   // Using an adr_type of TypePtr::BOTTOM to work around anti-dep problems.
   518   // A better solution might be to use TypeRawPtr::BOTTOM with RC_NARROW_MEM.
   519   make_runtime_call(RC_LEAF, OptoRuntime::profile_receiver_type_Type(),
   520                     CAST_FROM_FN_PTR(address,
   521                                      OptoRuntime::profile_receiver_type_C),
   522                     "profile_receiver_type_C",
   523                     TypePtr::BOTTOM,
   524                     method_data, receiver);
   525 }
   527 //---------------------------------profile_ret---------------------------------
   528 void Parse::profile_ret(int target_bci) {
   529   if (!method_data_update()) return;
   531   // Skip if we aren't tracking ret targets
   532   if (TypeProfileWidth < 1) return;
   534   ciMethodData* md = method()->method_data();
   535   assert(md != NULL, "expected valid ciMethodData");
   536   ciProfileData* data = md->bci_to_data(bci());
   537   assert(data->is_RetData(), "need RetData for ret");
   538   ciRetData* ret_data = (ciRetData*)data->as_RetData();
   540   // Look for the target_bci is already in the table
   541   uint row;
   542   bool table_full = true;
   543   for (row = 0; row < ret_data->row_limit(); row++) {
   544     int key = ret_data->bci(row);
   545     table_full &= (key != RetData::no_bci);
   546     if (key == target_bci) break;
   547   }
   549   if (row >= ret_data->row_limit()) {
   550     // The target_bci was not found in the table.
   551     if (!table_full) {
   552       // XXX: Make slow call to update RetData
   553     }
   554     return;
   555   }
   557   // the target_bci is already in the table
   558   increment_md_counter_at(md, data, RetData::bci_count_offset(row));
   559 }
   561 //--------------------------profile_null_checkcast----------------------------
   562 void Parse::profile_null_checkcast() {
   563   // Set the null-seen flag, done in conjunction with the usual null check. We
   564   // never unset the flag, so this is a one-way switch.
   565   if (!method_data_update()) return;
   567   ciMethodData* md = method()->method_data();
   568   assert(md != NULL, "expected valid ciMethodData");
   569   ciProfileData* data = md->bci_to_data(bci());
   570   assert(data->is_BitData(), "need BitData for checkcast");
   571   set_md_flag_at(md, data, BitData::null_seen_byte_constant());
   572 }
   574 //-----------------------------profile_switch_case-----------------------------
   575 void Parse::profile_switch_case(int table_index) {
   576   if (!method_data_update()) return;
   578   ciMethodData* md = method()->method_data();
   579   assert(md != NULL, "expected valid ciMethodData");
   581   ciProfileData* data = md->bci_to_data(bci());
   582   assert(data->is_MultiBranchData(), "need MultiBranchData for switch case");
   583   if (table_index >= 0) {
   584     increment_md_counter_at(md, data, MultiBranchData::case_count_offset(table_index));
   585   } else {
   586     increment_md_counter_at(md, data, MultiBranchData::default_count_offset());
   587   }
   588 }

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