src/share/vm/opto/parse1.cpp

Fri, 16 Oct 2009 02:05:46 -0700

author
ysr
date
Fri, 16 Oct 2009 02:05:46 -0700
changeset 1462
39b01ab7035a
parent 1426
3a2aa26bdc58
child 1505
87b2fdd4bf98
permissions
-rw-r--r--

6888898: CMS: ReduceInitialCardMarks unsafe in the presence of cms precleaning
6889757: G1: enable card mark elision for initializing writes from compiled code (ReduceInitialCardMarks)
Summary: Defer the (compiler-elided) card-mark upon a slow-path allocation until after the store and before the next subsequent safepoint; G1 now answers yes to can_elide_tlab_write_barriers().
Reviewed-by: jcoomes, kvn, never

duke@435 1 /*
xdono@1279 2 * Copyright 1997-2009 Sun Microsystems, Inc. All Rights Reserved.
duke@435 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
duke@435 4 *
duke@435 5 * This code is free software; you can redistribute it and/or modify it
duke@435 6 * under the terms of the GNU General Public License version 2 only, as
duke@435 7 * published by the Free Software Foundation.
duke@435 8 *
duke@435 9 * This code is distributed in the hope that it will be useful, but WITHOUT
duke@435 10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
duke@435 11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
duke@435 12 * version 2 for more details (a copy is included in the LICENSE file that
duke@435 13 * accompanied this code).
duke@435 14 *
duke@435 15 * You should have received a copy of the GNU General Public License version
duke@435 16 * 2 along with this work; if not, write to the Free Software Foundation,
duke@435 17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
duke@435 18 *
duke@435 19 * Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
duke@435 20 * CA 95054 USA or visit www.sun.com if you need additional information or
duke@435 21 * have any questions.
duke@435 22 *
duke@435 23 */
duke@435 24
duke@435 25 #include "incls/_precompiled.incl"
duke@435 26 #include "incls/_parse1.cpp.incl"
duke@435 27
duke@435 28 // Static array so we can figure out which bytecodes stop us from compiling
duke@435 29 // the most. Some of the non-static variables are needed in bytecodeInfo.cpp
duke@435 30 // and eventually should be encapsulated in a proper class (gri 8/18/98).
duke@435 31
never@802 32 int nodes_created = 0;
never@802 33 int methods_parsed = 0;
never@802 34 int methods_seen = 0;
never@802 35 int blocks_parsed = 0;
never@802 36 int blocks_seen = 0;
duke@435 37
never@802 38 int explicit_null_checks_inserted = 0;
never@802 39 int explicit_null_checks_elided = 0;
duke@435 40 int all_null_checks_found = 0, implicit_null_checks = 0;
duke@435 41 int implicit_null_throws = 0;
duke@435 42
duke@435 43 int reclaim_idx = 0;
duke@435 44 int reclaim_in = 0;
duke@435 45 int reclaim_node = 0;
duke@435 46
duke@435 47 #ifndef PRODUCT
duke@435 48 bool Parse::BytecodeParseHistogram::_initialized = false;
duke@435 49 uint Parse::BytecodeParseHistogram::_bytecodes_parsed [Bytecodes::number_of_codes];
duke@435 50 uint Parse::BytecodeParseHistogram::_nodes_constructed[Bytecodes::number_of_codes];
duke@435 51 uint Parse::BytecodeParseHistogram::_nodes_transformed[Bytecodes::number_of_codes];
duke@435 52 uint Parse::BytecodeParseHistogram::_new_values [Bytecodes::number_of_codes];
duke@435 53 #endif
duke@435 54
duke@435 55 //------------------------------print_statistics-------------------------------
duke@435 56 #ifndef PRODUCT
duke@435 57 void Parse::print_statistics() {
duke@435 58 tty->print_cr("--- Compiler Statistics ---");
duke@435 59 tty->print("Methods seen: %d Methods parsed: %d", methods_seen, methods_parsed);
duke@435 60 tty->print(" Nodes created: %d", nodes_created);
duke@435 61 tty->cr();
duke@435 62 if (methods_seen != methods_parsed)
duke@435 63 tty->print_cr("Reasons for parse failures (NOT cumulative):");
never@802 64 tty->print_cr("Blocks parsed: %d Blocks seen: %d", blocks_parsed, blocks_seen);
duke@435 65
duke@435 66 if( explicit_null_checks_inserted )
duke@435 67 tty->print_cr("%d original NULL checks - %d elided (%2d%%); optimizer leaves %d,", explicit_null_checks_inserted, explicit_null_checks_elided, (100*explicit_null_checks_elided)/explicit_null_checks_inserted, all_null_checks_found);
duke@435 68 if( all_null_checks_found )
duke@435 69 tty->print_cr("%d made implicit (%2d%%)", implicit_null_checks,
duke@435 70 (100*implicit_null_checks)/all_null_checks_found);
duke@435 71 if( implicit_null_throws )
duke@435 72 tty->print_cr("%d implicit null exceptions at runtime",
duke@435 73 implicit_null_throws);
duke@435 74
duke@435 75 if( PrintParseStatistics && BytecodeParseHistogram::initialized() ) {
duke@435 76 BytecodeParseHistogram::print();
duke@435 77 }
duke@435 78 }
duke@435 79 #endif
duke@435 80
duke@435 81 //------------------------------ON STACK REPLACEMENT---------------------------
duke@435 82
duke@435 83 // Construct a node which can be used to get incoming state for
duke@435 84 // on stack replacement.
duke@435 85 Node *Parse::fetch_interpreter_state(int index,
duke@435 86 BasicType bt,
duke@435 87 Node *local_addrs,
duke@435 88 Node *local_addrs_base) {
duke@435 89 Node *mem = memory(Compile::AliasIdxRaw);
duke@435 90 Node *adr = basic_plus_adr( local_addrs_base, local_addrs, -index*wordSize );
duke@435 91
duke@435 92 // Very similar to LoadNode::make, except we handle un-aligned longs and
duke@435 93 // doubles on Sparc. Intel can handle them just fine directly.
duke@435 94 Node *l;
duke@435 95 switch( bt ) { // Signature is flattened
duke@435 96 case T_INT: l = new (C, 3) LoadINode( 0, mem, adr, TypeRawPtr::BOTTOM ); break;
duke@435 97 case T_FLOAT: l = new (C, 3) LoadFNode( 0, mem, adr, TypeRawPtr::BOTTOM ); break;
never@1119 98 case T_ADDRESS: l = new (C, 3) LoadPNode( 0, mem, adr, TypeRawPtr::BOTTOM, TypeRawPtr::BOTTOM ); break;
duke@435 99 case T_OBJECT: l = new (C, 3) LoadPNode( 0, mem, adr, TypeRawPtr::BOTTOM, TypeInstPtr::BOTTOM ); break;
duke@435 100 case T_LONG:
duke@435 101 case T_DOUBLE: {
duke@435 102 // Since arguments are in reverse order, the argument address 'adr'
duke@435 103 // refers to the back half of the long/double. Recompute adr.
duke@435 104 adr = basic_plus_adr( local_addrs_base, local_addrs, -(index+1)*wordSize );
duke@435 105 if( Matcher::misaligned_doubles_ok ) {
duke@435 106 l = (bt == T_DOUBLE)
duke@435 107 ? (Node*)new (C, 3) LoadDNode( 0, mem, adr, TypeRawPtr::BOTTOM )
duke@435 108 : (Node*)new (C, 3) LoadLNode( 0, mem, adr, TypeRawPtr::BOTTOM );
duke@435 109 } else {
duke@435 110 l = (bt == T_DOUBLE)
duke@435 111 ? (Node*)new (C, 3) LoadD_unalignedNode( 0, mem, adr, TypeRawPtr::BOTTOM )
duke@435 112 : (Node*)new (C, 3) LoadL_unalignedNode( 0, mem, adr, TypeRawPtr::BOTTOM );
duke@435 113 }
duke@435 114 break;
duke@435 115 }
duke@435 116 default: ShouldNotReachHere();
duke@435 117 }
duke@435 118 return _gvn.transform(l);
duke@435 119 }
duke@435 120
duke@435 121 // Helper routine to prevent the interpreter from handing
duke@435 122 // unexpected typestate to an OSR method.
duke@435 123 // The Node l is a value newly dug out of the interpreter frame.
duke@435 124 // The type is the type predicted by ciTypeFlow. Note that it is
duke@435 125 // not a general type, but can only come from Type::get_typeflow_type.
duke@435 126 // The safepoint is a map which will feed an uncommon trap.
duke@435 127 Node* Parse::check_interpreter_type(Node* l, const Type* type,
duke@435 128 SafePointNode* &bad_type_exit) {
duke@435 129
duke@435 130 const TypeOopPtr* tp = type->isa_oopptr();
duke@435 131
duke@435 132 // TypeFlow may assert null-ness if a type appears unloaded.
duke@435 133 if (type == TypePtr::NULL_PTR ||
duke@435 134 (tp != NULL && !tp->klass()->is_loaded())) {
duke@435 135 // Value must be null, not a real oop.
duke@435 136 Node* chk = _gvn.transform( new (C, 3) CmpPNode(l, null()) );
duke@435 137 Node* tst = _gvn.transform( new (C, 2) BoolNode(chk, BoolTest::eq) );
duke@435 138 IfNode* iff = create_and_map_if(control(), tst, PROB_MAX, COUNT_UNKNOWN);
duke@435 139 set_control(_gvn.transform( new (C, 1) IfTrueNode(iff) ));
duke@435 140 Node* bad_type = _gvn.transform( new (C, 1) IfFalseNode(iff) );
duke@435 141 bad_type_exit->control()->add_req(bad_type);
duke@435 142 l = null();
duke@435 143 }
duke@435 144
duke@435 145 // Typeflow can also cut off paths from the CFG, based on
duke@435 146 // types which appear unloaded, or call sites which appear unlinked.
duke@435 147 // When paths are cut off, values at later merge points can rise
duke@435 148 // toward more specific classes. Make sure these specific classes
duke@435 149 // are still in effect.
duke@435 150 if (tp != NULL && tp->klass() != C->env()->Object_klass()) {
duke@435 151 // TypeFlow asserted a specific object type. Value must have that type.
duke@435 152 Node* bad_type_ctrl = NULL;
duke@435 153 l = gen_checkcast(l, makecon(TypeKlassPtr::make(tp->klass())), &bad_type_ctrl);
duke@435 154 bad_type_exit->control()->add_req(bad_type_ctrl);
duke@435 155 }
duke@435 156
duke@435 157 BasicType bt_l = _gvn.type(l)->basic_type();
duke@435 158 BasicType bt_t = type->basic_type();
duke@435 159 assert(_gvn.type(l)->higher_equal(type), "must constrain OSR typestate");
duke@435 160 return l;
duke@435 161 }
duke@435 162
duke@435 163 // Helper routine which sets up elements of the initial parser map when
duke@435 164 // performing a parse for on stack replacement. Add values into map.
duke@435 165 // The only parameter contains the address of a interpreter arguments.
duke@435 166 void Parse::load_interpreter_state(Node* osr_buf) {
duke@435 167 int index;
duke@435 168 int max_locals = jvms()->loc_size();
duke@435 169 int max_stack = jvms()->stk_size();
duke@435 170
duke@435 171
duke@435 172 // Mismatch between method and jvms can occur since map briefly held
duke@435 173 // an OSR entry state (which takes up one RawPtr word).
duke@435 174 assert(max_locals == method()->max_locals(), "sanity");
duke@435 175 assert(max_stack >= method()->max_stack(), "sanity");
duke@435 176 assert((int)jvms()->endoff() == TypeFunc::Parms + max_locals + max_stack, "sanity");
duke@435 177 assert((int)jvms()->endoff() == (int)map()->req(), "sanity");
duke@435 178
duke@435 179 // Find the start block.
duke@435 180 Block* osr_block = start_block();
duke@435 181 assert(osr_block->start() == osr_bci(), "sanity");
duke@435 182
duke@435 183 // Set initial BCI.
duke@435 184 set_parse_bci(osr_block->start());
duke@435 185
duke@435 186 // Set initial stack depth.
duke@435 187 set_sp(osr_block->start_sp());
duke@435 188
duke@435 189 // Check bailouts. We currently do not perform on stack replacement
duke@435 190 // of loops in catch blocks or loops which branch with a non-empty stack.
duke@435 191 if (sp() != 0) {
duke@435 192 C->record_method_not_compilable("OSR starts with non-empty stack");
duke@435 193 return;
duke@435 194 }
duke@435 195 // Do not OSR inside finally clauses:
duke@435 196 if (osr_block->has_trap_at(osr_block->start())) {
duke@435 197 C->record_method_not_compilable("OSR starts with an immediate trap");
duke@435 198 return;
duke@435 199 }
duke@435 200
duke@435 201 // Commute monitors from interpreter frame to compiler frame.
duke@435 202 assert(jvms()->monitor_depth() == 0, "should be no active locks at beginning of osr");
duke@435 203 int mcnt = osr_block->flow()->monitor_count();
duke@435 204 Node *monitors_addr = basic_plus_adr(osr_buf, osr_buf, (max_locals+mcnt*2-1)*wordSize);
duke@435 205 for (index = 0; index < mcnt; index++) {
duke@435 206 // Make a BoxLockNode for the monitor.
duke@435 207 Node *box = _gvn.transform(new (C, 1) BoxLockNode(next_monitor()));
duke@435 208
duke@435 209
duke@435 210 // Displaced headers and locked objects are interleaved in the
duke@435 211 // temp OSR buffer. We only copy the locked objects out here.
duke@435 212 // Fetch the locked object from the OSR temp buffer and copy to our fastlock node.
duke@435 213 Node *lock_object = fetch_interpreter_state(index*2, T_OBJECT, monitors_addr, osr_buf);
duke@435 214 // Try and copy the displaced header to the BoxNode
duke@435 215 Node *displaced_hdr = fetch_interpreter_state((index*2) + 1, T_ADDRESS, monitors_addr, osr_buf);
duke@435 216
duke@435 217
duke@435 218 store_to_memory(control(), box, displaced_hdr, T_ADDRESS, Compile::AliasIdxRaw);
duke@435 219
duke@435 220 // Build a bogus FastLockNode (no code will be generated) and push the
duke@435 221 // monitor into our debug info.
duke@435 222 const FastLockNode *flock = _gvn.transform(new (C, 3) FastLockNode( 0, lock_object, box ))->as_FastLock();
duke@435 223 map()->push_monitor(flock);
duke@435 224
duke@435 225 // If the lock is our method synchronization lock, tuck it away in
duke@435 226 // _sync_lock for return and rethrow exit paths.
duke@435 227 if (index == 0 && method()->is_synchronized()) {
duke@435 228 _synch_lock = flock;
duke@435 229 }
duke@435 230 }
duke@435 231
never@1426 232 // Use the raw liveness computation to make sure that unexpected
never@1426 233 // values don't propagate into the OSR frame.
never@1426 234 MethodLivenessResult live_locals = method()->raw_liveness_at_bci(osr_bci());
duke@435 235 if (!live_locals.is_valid()) {
duke@435 236 // Degenerate or breakpointed method.
duke@435 237 C->record_method_not_compilable("OSR in empty or breakpointed method");
duke@435 238 return;
duke@435 239 }
duke@435 240
duke@435 241 // Extract the needed locals from the interpreter frame.
duke@435 242 Node *locals_addr = basic_plus_adr(osr_buf, osr_buf, (max_locals-1)*wordSize);
duke@435 243
duke@435 244 // find all the locals that the interpreter thinks contain live oops
duke@435 245 const BitMap live_oops = method()->live_local_oops_at_bci(osr_bci());
duke@435 246 for (index = 0; index < max_locals; index++) {
duke@435 247
duke@435 248 if (!live_locals.at(index)) {
duke@435 249 continue;
duke@435 250 }
duke@435 251
duke@435 252 const Type *type = osr_block->local_type_at(index);
duke@435 253
duke@435 254 if (type->isa_oopptr() != NULL) {
duke@435 255
duke@435 256 // 6403625: Verify that the interpreter oopMap thinks that the oop is live
duke@435 257 // else we might load a stale oop if the MethodLiveness disagrees with the
duke@435 258 // result of the interpreter. If the interpreter says it is dead we agree
duke@435 259 // by making the value go to top.
duke@435 260 //
duke@435 261
duke@435 262 if (!live_oops.at(index)) {
duke@435 263 if (C->log() != NULL) {
duke@435 264 C->log()->elem("OSR_mismatch local_index='%d'",index);
duke@435 265 }
duke@435 266 set_local(index, null());
duke@435 267 // and ignore it for the loads
duke@435 268 continue;
duke@435 269 }
duke@435 270 }
duke@435 271
duke@435 272 // Filter out TOP, HALF, and BOTTOM. (Cf. ensure_phi.)
duke@435 273 if (type == Type::TOP || type == Type::HALF) {
duke@435 274 continue;
duke@435 275 }
duke@435 276 // If the type falls to bottom, then this must be a local that
duke@435 277 // is mixing ints and oops or some such. Forcing it to top
duke@435 278 // makes it go dead.
duke@435 279 if (type == Type::BOTTOM) {
duke@435 280 continue;
duke@435 281 }
duke@435 282 // Construct code to access the appropriate local.
duke@435 283 Node *value = fetch_interpreter_state(index, type->basic_type(), locals_addr, osr_buf);
duke@435 284 set_local(index, value);
duke@435 285 }
duke@435 286
duke@435 287 // Extract the needed stack entries from the interpreter frame.
duke@435 288 for (index = 0; index < sp(); index++) {
duke@435 289 const Type *type = osr_block->stack_type_at(index);
duke@435 290 if (type != Type::TOP) {
duke@435 291 // Currently the compiler bails out when attempting to on stack replace
duke@435 292 // at a bci with a non-empty stack. We should not reach here.
duke@435 293 ShouldNotReachHere();
duke@435 294 }
duke@435 295 }
duke@435 296
duke@435 297 // End the OSR migration
duke@435 298 make_runtime_call(RC_LEAF, OptoRuntime::osr_end_Type(),
duke@435 299 CAST_FROM_FN_PTR(address, SharedRuntime::OSR_migration_end),
duke@435 300 "OSR_migration_end", TypeRawPtr::BOTTOM,
duke@435 301 osr_buf);
duke@435 302
duke@435 303 // Now that the interpreter state is loaded, make sure it will match
duke@435 304 // at execution time what the compiler is expecting now:
duke@435 305 SafePointNode* bad_type_exit = clone_map();
duke@435 306 bad_type_exit->set_control(new (C, 1) RegionNode(1));
duke@435 307
duke@435 308 for (index = 0; index < max_locals; index++) {
duke@435 309 if (stopped()) break;
duke@435 310 Node* l = local(index);
duke@435 311 if (l->is_top()) continue; // nothing here
duke@435 312 const Type *type = osr_block->local_type_at(index);
duke@435 313 if (type->isa_oopptr() != NULL) {
duke@435 314 if (!live_oops.at(index)) {
duke@435 315 // skip type check for dead oops
duke@435 316 continue;
duke@435 317 }
duke@435 318 }
duke@435 319 set_local(index, check_interpreter_type(l, type, bad_type_exit));
duke@435 320 }
duke@435 321
duke@435 322 for (index = 0; index < sp(); index++) {
duke@435 323 if (stopped()) break;
duke@435 324 Node* l = stack(index);
duke@435 325 if (l->is_top()) continue; // nothing here
duke@435 326 const Type *type = osr_block->stack_type_at(index);
duke@435 327 set_stack(index, check_interpreter_type(l, type, bad_type_exit));
duke@435 328 }
duke@435 329
duke@435 330 if (bad_type_exit->control()->req() > 1) {
duke@435 331 // Build an uncommon trap here, if any inputs can be unexpected.
duke@435 332 bad_type_exit->set_control(_gvn.transform( bad_type_exit->control() ));
duke@435 333 record_for_igvn(bad_type_exit->control());
duke@435 334 SafePointNode* types_are_good = map();
duke@435 335 set_map(bad_type_exit);
duke@435 336 // The unexpected type happens because a new edge is active
duke@435 337 // in the CFG, which typeflow had previously ignored.
duke@435 338 // E.g., Object x = coldAtFirst() && notReached()? "str": new Integer(123).
duke@435 339 // This x will be typed as Integer if notReached is not yet linked.
duke@435 340 uncommon_trap(Deoptimization::Reason_unreached,
duke@435 341 Deoptimization::Action_reinterpret);
duke@435 342 set_map(types_are_good);
duke@435 343 }
duke@435 344 }
duke@435 345
duke@435 346 //------------------------------Parse------------------------------------------
duke@435 347 // Main parser constructor.
duke@435 348 Parse::Parse(JVMState* caller, ciMethod* parse_method, float expected_uses)
duke@435 349 : _exits(caller)
duke@435 350 {
duke@435 351 // Init some variables
duke@435 352 _caller = caller;
duke@435 353 _method = parse_method;
duke@435 354 _expected_uses = expected_uses;
duke@435 355 _depth = 1 + (caller->has_method() ? caller->depth() : 0);
duke@435 356 _wrote_final = false;
duke@435 357 _entry_bci = InvocationEntryBci;
duke@435 358 _tf = NULL;
duke@435 359 _block = NULL;
duke@435 360 debug_only(_block_count = -1);
duke@435 361 debug_only(_blocks = (Block*)-1);
duke@435 362 #ifndef PRODUCT
duke@435 363 if (PrintCompilation || PrintOpto) {
duke@435 364 // Make sure I have an inline tree, so I can print messages about it.
duke@435 365 JVMState* ilt_caller = is_osr_parse() ? caller->caller() : caller;
duke@435 366 InlineTree::find_subtree_from_root(C->ilt(), ilt_caller, parse_method, true);
duke@435 367 }
duke@435 368 _max_switch_depth = 0;
duke@435 369 _est_switch_depth = 0;
duke@435 370 #endif
duke@435 371
duke@435 372 _tf = TypeFunc::make(method());
duke@435 373 _iter.reset_to_method(method());
duke@435 374 _flow = method()->get_flow_analysis();
duke@435 375 if (_flow->failing()) {
duke@435 376 C->record_method_not_compilable_all_tiers(_flow->failure_reason());
duke@435 377 }
duke@435 378
never@802 379 #ifndef PRODUCT
never@802 380 if (_flow->has_irreducible_entry()) {
never@802 381 C->set_parsed_irreducible_loop(true);
never@802 382 }
never@802 383 #endif
never@802 384
duke@435 385 if (_expected_uses <= 0) {
duke@435 386 _prof_factor = 1;
duke@435 387 } else {
duke@435 388 float prof_total = parse_method->interpreter_invocation_count();
duke@435 389 if (prof_total <= _expected_uses) {
duke@435 390 _prof_factor = 1;
duke@435 391 } else {
duke@435 392 _prof_factor = _expected_uses / prof_total;
duke@435 393 }
duke@435 394 }
duke@435 395
duke@435 396 CompileLog* log = C->log();
duke@435 397 if (log != NULL) {
duke@435 398 log->begin_head("parse method='%d' uses='%g'",
duke@435 399 log->identify(parse_method), expected_uses);
duke@435 400 if (depth() == 1 && C->is_osr_compilation()) {
duke@435 401 log->print(" osr_bci='%d'", C->entry_bci());
duke@435 402 }
duke@435 403 log->stamp();
duke@435 404 log->end_head();
duke@435 405 }
duke@435 406
duke@435 407 // Accumulate deoptimization counts.
duke@435 408 // (The range_check and store_check counts are checked elsewhere.)
duke@435 409 ciMethodData* md = method()->method_data();
duke@435 410 for (uint reason = 0; reason < md->trap_reason_limit(); reason++) {
duke@435 411 uint md_count = md->trap_count(reason);
duke@435 412 if (md_count != 0) {
duke@435 413 if (md_count == md->trap_count_limit())
duke@435 414 md_count += md->overflow_trap_count();
duke@435 415 uint total_count = C->trap_count(reason);
duke@435 416 uint old_count = total_count;
duke@435 417 total_count += md_count;
duke@435 418 // Saturate the add if it overflows.
duke@435 419 if (total_count < old_count || total_count < md_count)
duke@435 420 total_count = (uint)-1;
duke@435 421 C->set_trap_count(reason, total_count);
duke@435 422 if (log != NULL)
duke@435 423 log->elem("observe trap='%s' count='%d' total='%d'",
duke@435 424 Deoptimization::trap_reason_name(reason),
duke@435 425 md_count, total_count);
duke@435 426 }
duke@435 427 }
duke@435 428 // Accumulate total sum of decompilations, also.
duke@435 429 C->set_decompile_count(C->decompile_count() + md->decompile_count());
duke@435 430
duke@435 431 _count_invocations = C->do_count_invocations();
duke@435 432 _method_data_update = C->do_method_data_update();
duke@435 433
duke@435 434 if (log != NULL && method()->has_exception_handlers()) {
duke@435 435 log->elem("observe that='has_exception_handlers'");
duke@435 436 }
duke@435 437
duke@435 438 assert(method()->can_be_compiled(), "Can not parse this method, cutout earlier");
duke@435 439 assert(method()->has_balanced_monitors(), "Can not parse unbalanced monitors, cutout earlier");
duke@435 440
duke@435 441 // Always register dependence if JVMTI is enabled, because
duke@435 442 // either breakpoint setting or hotswapping of methods may
duke@435 443 // cause deoptimization.
kvn@1215 444 if (C->env()->jvmti_can_hotswap_or_post_breakpoint()) {
duke@435 445 C->dependencies()->assert_evol_method(method());
duke@435 446 }
duke@435 447
duke@435 448 methods_seen++;
duke@435 449
duke@435 450 // Do some special top-level things.
duke@435 451 if (depth() == 1 && C->is_osr_compilation()) {
duke@435 452 _entry_bci = C->entry_bci();
duke@435 453 _flow = method()->get_osr_flow_analysis(osr_bci());
duke@435 454 if (_flow->failing()) {
duke@435 455 C->record_method_not_compilable(_flow->failure_reason());
duke@435 456 #ifndef PRODUCT
duke@435 457 if (PrintOpto && (Verbose || WizardMode)) {
duke@435 458 tty->print_cr("OSR @%d type flow bailout: %s", _entry_bci, _flow->failure_reason());
duke@435 459 if (Verbose) {
duke@435 460 method()->print_oop();
duke@435 461 method()->print_codes();
duke@435 462 _flow->print();
duke@435 463 }
duke@435 464 }
duke@435 465 #endif
duke@435 466 }
duke@435 467 _tf = C->tf(); // the OSR entry type is different
duke@435 468 }
duke@435 469
duke@435 470 #ifdef ASSERT
duke@435 471 if (depth() == 1) {
duke@435 472 assert(C->is_osr_compilation() == this->is_osr_parse(), "OSR in sync");
duke@435 473 if (C->tf() != tf()) {
duke@435 474 MutexLockerEx ml(Compile_lock, Mutex::_no_safepoint_check_flag);
duke@435 475 assert(C->env()->system_dictionary_modification_counter_changed(),
duke@435 476 "Must invalidate if TypeFuncs differ");
duke@435 477 }
duke@435 478 } else {
duke@435 479 assert(!this->is_osr_parse(), "no recursive OSR");
duke@435 480 }
duke@435 481 #endif
duke@435 482
duke@435 483 methods_parsed++;
duke@435 484 #ifndef PRODUCT
duke@435 485 // add method size here to guarantee that inlined methods are added too
duke@435 486 if (TimeCompiler)
duke@435 487 _total_bytes_compiled += method()->code_size();
duke@435 488
duke@435 489 show_parse_info();
duke@435 490 #endif
duke@435 491
duke@435 492 if (failing()) {
duke@435 493 if (log) log->done("parse");
duke@435 494 return;
duke@435 495 }
duke@435 496
duke@435 497 gvn().set_type(root(), root()->bottom_type());
duke@435 498 gvn().transform(top());
duke@435 499
duke@435 500 // Import the results of the ciTypeFlow.
duke@435 501 init_blocks();
duke@435 502
duke@435 503 // Merge point for all normal exits
duke@435 504 build_exits();
duke@435 505
duke@435 506 // Setup the initial JVM state map.
duke@435 507 SafePointNode* entry_map = create_entry_map();
duke@435 508
duke@435 509 // Check for bailouts during map initialization
duke@435 510 if (failing() || entry_map == NULL) {
duke@435 511 if (log) log->done("parse");
duke@435 512 return;
duke@435 513 }
duke@435 514
duke@435 515 Node_Notes* caller_nn = C->default_node_notes();
duke@435 516 // Collect debug info for inlined calls unless -XX:-DebugInlinedCalls.
duke@435 517 if (DebugInlinedCalls || depth() == 1) {
duke@435 518 C->set_default_node_notes(make_node_notes(caller_nn));
duke@435 519 }
duke@435 520
duke@435 521 if (is_osr_parse()) {
duke@435 522 Node* osr_buf = entry_map->in(TypeFunc::Parms+0);
duke@435 523 entry_map->set_req(TypeFunc::Parms+0, top());
duke@435 524 set_map(entry_map);
duke@435 525 load_interpreter_state(osr_buf);
duke@435 526 } else {
duke@435 527 set_map(entry_map);
duke@435 528 do_method_entry();
duke@435 529 }
duke@435 530
duke@435 531 // Check for bailouts during method entry.
duke@435 532 if (failing()) {
duke@435 533 if (log) log->done("parse");
duke@435 534 C->set_default_node_notes(caller_nn);
duke@435 535 return;
duke@435 536 }
duke@435 537
duke@435 538 entry_map = map(); // capture any changes performed by method setup code
duke@435 539 assert(jvms()->endoff() == map()->req(), "map matches JVMS layout");
duke@435 540
duke@435 541 // We begin parsing as if we have just encountered a jump to the
duke@435 542 // method entry.
duke@435 543 Block* entry_block = start_block();
duke@435 544 assert(entry_block->start() == (is_osr_parse() ? osr_bci() : 0), "");
duke@435 545 set_map_clone(entry_map);
duke@435 546 merge_common(entry_block, entry_block->next_path_num());
duke@435 547
duke@435 548 #ifndef PRODUCT
duke@435 549 BytecodeParseHistogram *parse_histogram_obj = new (C->env()->arena()) BytecodeParseHistogram(this, C);
duke@435 550 set_parse_histogram( parse_histogram_obj );
duke@435 551 #endif
duke@435 552
duke@435 553 // Parse all the basic blocks.
duke@435 554 do_all_blocks();
duke@435 555
duke@435 556 C->set_default_node_notes(caller_nn);
duke@435 557
duke@435 558 // Check for bailouts during conversion to graph
duke@435 559 if (failing()) {
duke@435 560 if (log) log->done("parse");
duke@435 561 return;
duke@435 562 }
duke@435 563
duke@435 564 // Fix up all exiting control flow.
duke@435 565 set_map(entry_map);
duke@435 566 do_exits();
duke@435 567
duke@435 568 if (log) log->done("parse nodes='%d' memory='%d'",
duke@435 569 C->unique(), C->node_arena()->used());
duke@435 570 }
duke@435 571
duke@435 572 //---------------------------do_all_blocks-------------------------------------
duke@435 573 void Parse::do_all_blocks() {
never@802 574 bool has_irreducible = flow()->has_irreducible_entry();
duke@435 575
never@802 576 // Walk over all blocks in Reverse Post-Order.
never@802 577 while (true) {
never@802 578 bool progress = false;
never@802 579 for (int rpo = 0; rpo < block_count(); rpo++) {
never@802 580 Block* block = rpo_at(rpo);
duke@435 581
never@802 582 if (block->is_parsed()) continue;
duke@435 583
never@802 584 if (!block->is_merged()) {
never@802 585 // Dead block, no state reaches this block
never@802 586 continue;
never@802 587 }
duke@435 588
never@802 589 // Prepare to parse this block.
never@802 590 load_state_from(block);
duke@435 591
never@802 592 if (stopped()) {
never@802 593 // Block is dead.
never@802 594 continue;
duke@435 595 }
never@802 596
never@802 597 blocks_parsed++;
never@802 598
never@802 599 progress = true;
never@802 600 if (block->is_loop_head() || block->is_handler() || has_irreducible && !block->is_ready()) {
never@802 601 // Not all preds have been parsed. We must build phis everywhere.
never@802 602 // (Note that dead locals do not get phis built, ever.)
never@802 603 ensure_phis_everywhere();
never@802 604
never@802 605 // Leave behind an undisturbed copy of the map, for future merges.
never@802 606 set_map(clone_map());
never@802 607 }
never@802 608
never@802 609 if (control()->is_Region() && !block->is_loop_head() && !has_irreducible && !block->is_handler()) {
never@802 610 // In the absence of irreducible loops, the Region and Phis
never@802 611 // associated with a merge that doesn't involve a backedge can
twisti@1040 612 // be simplified now since the RPO parsing order guarantees
never@802 613 // that any path which was supposed to reach here has already
never@802 614 // been parsed or must be dead.
never@802 615 Node* c = control();
never@802 616 Node* result = _gvn.transform_no_reclaim(control());
never@802 617 if (c != result && TraceOptoParse) {
never@802 618 tty->print_cr("Block #%d replace %d with %d", block->rpo(), c->_idx, result->_idx);
never@802 619 }
never@802 620 if (result != top()) {
never@802 621 record_for_igvn(result);
never@802 622 }
never@802 623 }
never@802 624
never@802 625 // Parse the block.
never@802 626 do_one_block();
never@802 627
never@802 628 // Check for bailouts.
never@802 629 if (failing()) return;
never@802 630 }
never@802 631
never@802 632 // with irreducible loops multiple passes might be necessary to parse everything
never@802 633 if (!has_irreducible || !progress) {
duke@435 634 break;
duke@435 635 }
never@802 636 }
duke@435 637
never@802 638 blocks_seen += block_count();
duke@435 639
duke@435 640 #ifndef PRODUCT
duke@435 641 // Make sure there are no half-processed blocks remaining.
duke@435 642 // Every remaining unprocessed block is dead and may be ignored now.
never@802 643 for (int rpo = 0; rpo < block_count(); rpo++) {
never@802 644 Block* block = rpo_at(rpo);
duke@435 645 if (!block->is_parsed()) {
duke@435 646 if (TraceOptoParse) {
never@802 647 tty->print_cr("Skipped dead block %d at bci:%d", rpo, block->start());
duke@435 648 }
never@802 649 assert(!block->is_merged(), "no half-processed blocks");
duke@435 650 }
duke@435 651 }
duke@435 652 #endif
duke@435 653 }
duke@435 654
duke@435 655 //-------------------------------build_exits----------------------------------
duke@435 656 // Build normal and exceptional exit merge points.
duke@435 657 void Parse::build_exits() {
duke@435 658 // make a clone of caller to prevent sharing of side-effects
duke@435 659 _exits.set_map(_exits.clone_map());
duke@435 660 _exits.clean_stack(_exits.sp());
duke@435 661 _exits.sync_jvms();
duke@435 662
duke@435 663 RegionNode* region = new (C, 1) RegionNode(1);
duke@435 664 record_for_igvn(region);
duke@435 665 gvn().set_type_bottom(region);
duke@435 666 _exits.set_control(region);
duke@435 667
duke@435 668 // Note: iophi and memphi are not transformed until do_exits.
duke@435 669 Node* iophi = new (C, region->req()) PhiNode(region, Type::ABIO);
duke@435 670 Node* memphi = new (C, region->req()) PhiNode(region, Type::MEMORY, TypePtr::BOTTOM);
duke@435 671 _exits.set_i_o(iophi);
duke@435 672 _exits.set_all_memory(memphi);
duke@435 673
duke@435 674 // Add a return value to the exit state. (Do not push it yet.)
duke@435 675 if (tf()->range()->cnt() > TypeFunc::Parms) {
duke@435 676 const Type* ret_type = tf()->range()->field_at(TypeFunc::Parms);
duke@435 677 // Don't "bind" an unloaded return klass to the ret_phi. If the klass
duke@435 678 // becomes loaded during the subsequent parsing, the loaded and unloaded
duke@435 679 // types will not join when we transform and push in do_exits().
duke@435 680 const TypeOopPtr* ret_oop_type = ret_type->isa_oopptr();
duke@435 681 if (ret_oop_type && !ret_oop_type->klass()->is_loaded()) {
duke@435 682 ret_type = TypeOopPtr::BOTTOM;
duke@435 683 }
duke@435 684 int ret_size = type2size[ret_type->basic_type()];
duke@435 685 Node* ret_phi = new (C, region->req()) PhiNode(region, ret_type);
duke@435 686 _exits.ensure_stack(ret_size);
duke@435 687 assert((int)(tf()->range()->cnt() - TypeFunc::Parms) == ret_size, "good tf range");
duke@435 688 assert(method()->return_type()->size() == ret_size, "tf agrees w/ method");
duke@435 689 _exits.set_argument(0, ret_phi); // here is where the parser finds it
duke@435 690 // Note: ret_phi is not yet pushed, until do_exits.
duke@435 691 }
duke@435 692 }
duke@435 693
duke@435 694
duke@435 695 //----------------------------build_start_state-------------------------------
duke@435 696 // Construct a state which contains only the incoming arguments from an
duke@435 697 // unknown caller. The method & bci will be NULL & InvocationEntryBci.
duke@435 698 JVMState* Compile::build_start_state(StartNode* start, const TypeFunc* tf) {
duke@435 699 int arg_size = tf->domain()->cnt();
duke@435 700 int max_size = MAX2(arg_size, (int)tf->range()->cnt());
duke@435 701 JVMState* jvms = new (this) JVMState(max_size - TypeFunc::Parms);
duke@435 702 SafePointNode* map = new (this, max_size) SafePointNode(max_size, NULL);
duke@435 703 record_for_igvn(map);
duke@435 704 assert(arg_size == TypeFunc::Parms + (is_osr_compilation() ? 1 : method()->arg_size()), "correct arg_size");
duke@435 705 Node_Notes* old_nn = default_node_notes();
duke@435 706 if (old_nn != NULL && has_method()) {
duke@435 707 Node_Notes* entry_nn = old_nn->clone(this);
duke@435 708 JVMState* entry_jvms = new(this) JVMState(method(), old_nn->jvms());
duke@435 709 entry_jvms->set_offsets(0);
duke@435 710 entry_jvms->set_bci(entry_bci());
duke@435 711 entry_nn->set_jvms(entry_jvms);
duke@435 712 set_default_node_notes(entry_nn);
duke@435 713 }
duke@435 714 uint i;
duke@435 715 for (i = 0; i < (uint)arg_size; i++) {
duke@435 716 Node* parm = initial_gvn()->transform(new (this, 1) ParmNode(start, i));
duke@435 717 map->init_req(i, parm);
duke@435 718 // Record all these guys for later GVN.
duke@435 719 record_for_igvn(parm);
duke@435 720 }
duke@435 721 for (; i < map->req(); i++) {
duke@435 722 map->init_req(i, top());
duke@435 723 }
duke@435 724 assert(jvms->argoff() == TypeFunc::Parms, "parser gets arguments here");
duke@435 725 set_default_node_notes(old_nn);
duke@435 726 map->set_jvms(jvms);
duke@435 727 jvms->set_map(map);
duke@435 728 return jvms;
duke@435 729 }
duke@435 730
duke@435 731 //-----------------------------make_node_notes---------------------------------
duke@435 732 Node_Notes* Parse::make_node_notes(Node_Notes* caller_nn) {
duke@435 733 if (caller_nn == NULL) return NULL;
duke@435 734 Node_Notes* nn = caller_nn->clone(C);
duke@435 735 JVMState* caller_jvms = nn->jvms();
duke@435 736 JVMState* jvms = new (C) JVMState(method(), caller_jvms);
duke@435 737 jvms->set_offsets(0);
duke@435 738 jvms->set_bci(_entry_bci);
duke@435 739 nn->set_jvms(jvms);
duke@435 740 return nn;
duke@435 741 }
duke@435 742
duke@435 743
duke@435 744 //--------------------------return_values--------------------------------------
duke@435 745 void Compile::return_values(JVMState* jvms) {
duke@435 746 GraphKit kit(jvms);
duke@435 747 Node* ret = new (this, TypeFunc::Parms) ReturnNode(TypeFunc::Parms,
duke@435 748 kit.control(),
duke@435 749 kit.i_o(),
duke@435 750 kit.reset_memory(),
duke@435 751 kit.frameptr(),
duke@435 752 kit.returnadr());
duke@435 753 // Add zero or 1 return values
duke@435 754 int ret_size = tf()->range()->cnt() - TypeFunc::Parms;
duke@435 755 if (ret_size > 0) {
duke@435 756 kit.inc_sp(-ret_size); // pop the return value(s)
duke@435 757 kit.sync_jvms();
duke@435 758 ret->add_req(kit.argument(0));
duke@435 759 // Note: The second dummy edge is not needed by a ReturnNode.
duke@435 760 }
duke@435 761 // bind it to root
duke@435 762 root()->add_req(ret);
duke@435 763 record_for_igvn(ret);
duke@435 764 initial_gvn()->transform_no_reclaim(ret);
duke@435 765 }
duke@435 766
duke@435 767 //------------------------rethrow_exceptions-----------------------------------
duke@435 768 // Bind all exception states in the list into a single RethrowNode.
duke@435 769 void Compile::rethrow_exceptions(JVMState* jvms) {
duke@435 770 GraphKit kit(jvms);
duke@435 771 if (!kit.has_exceptions()) return; // nothing to generate
duke@435 772 // Load my combined exception state into the kit, with all phis transformed:
duke@435 773 SafePointNode* ex_map = kit.combine_and_pop_all_exception_states();
duke@435 774 Node* ex_oop = kit.use_exception_state(ex_map);
duke@435 775 RethrowNode* exit = new (this, TypeFunc::Parms + 1) RethrowNode(kit.control(),
duke@435 776 kit.i_o(), kit.reset_memory(),
duke@435 777 kit.frameptr(), kit.returnadr(),
duke@435 778 // like a return but with exception input
duke@435 779 ex_oop);
duke@435 780 // bind to root
duke@435 781 root()->add_req(exit);
duke@435 782 record_for_igvn(exit);
duke@435 783 initial_gvn()->transform_no_reclaim(exit);
duke@435 784 }
duke@435 785
duke@435 786 bool Parse::can_rerun_bytecode() {
duke@435 787 switch (bc()) {
duke@435 788 case Bytecodes::_ldc:
duke@435 789 case Bytecodes::_ldc_w:
duke@435 790 case Bytecodes::_ldc2_w:
duke@435 791 case Bytecodes::_getfield:
duke@435 792 case Bytecodes::_putfield:
duke@435 793 case Bytecodes::_getstatic:
duke@435 794 case Bytecodes::_putstatic:
duke@435 795 case Bytecodes::_arraylength:
duke@435 796 case Bytecodes::_baload:
duke@435 797 case Bytecodes::_caload:
duke@435 798 case Bytecodes::_iaload:
duke@435 799 case Bytecodes::_saload:
duke@435 800 case Bytecodes::_faload:
duke@435 801 case Bytecodes::_aaload:
duke@435 802 case Bytecodes::_laload:
duke@435 803 case Bytecodes::_daload:
duke@435 804 case Bytecodes::_bastore:
duke@435 805 case Bytecodes::_castore:
duke@435 806 case Bytecodes::_iastore:
duke@435 807 case Bytecodes::_sastore:
duke@435 808 case Bytecodes::_fastore:
duke@435 809 case Bytecodes::_aastore:
duke@435 810 case Bytecodes::_lastore:
duke@435 811 case Bytecodes::_dastore:
duke@435 812 case Bytecodes::_irem:
duke@435 813 case Bytecodes::_idiv:
duke@435 814 case Bytecodes::_lrem:
duke@435 815 case Bytecodes::_ldiv:
duke@435 816 case Bytecodes::_frem:
duke@435 817 case Bytecodes::_fdiv:
duke@435 818 case Bytecodes::_drem:
duke@435 819 case Bytecodes::_ddiv:
duke@435 820 case Bytecodes::_checkcast:
duke@435 821 case Bytecodes::_instanceof:
duke@435 822 case Bytecodes::_athrow:
duke@435 823 case Bytecodes::_anewarray:
duke@435 824 case Bytecodes::_newarray:
duke@435 825 case Bytecodes::_multianewarray:
duke@435 826 case Bytecodes::_new:
duke@435 827 case Bytecodes::_monitorenter: // can re-run initial null check, only
duke@435 828 case Bytecodes::_return:
duke@435 829 return true;
duke@435 830 break;
duke@435 831
duke@435 832 case Bytecodes::_invokestatic:
jrose@1161 833 case Bytecodes::_invokedynamic:
duke@435 834 case Bytecodes::_invokespecial:
duke@435 835 case Bytecodes::_invokevirtual:
duke@435 836 case Bytecodes::_invokeinterface:
duke@435 837 return false;
duke@435 838 break;
duke@435 839
duke@435 840 default:
duke@435 841 assert(false, "unexpected bytecode produced an exception");
duke@435 842 return true;
duke@435 843 }
duke@435 844 }
duke@435 845
duke@435 846 //---------------------------do_exceptions-------------------------------------
duke@435 847 // Process exceptions arising from the current bytecode.
duke@435 848 // Send caught exceptions to the proper handler within this method.
duke@435 849 // Unhandled exceptions feed into _exit.
duke@435 850 void Parse::do_exceptions() {
duke@435 851 if (!has_exceptions()) return;
duke@435 852
duke@435 853 if (failing()) {
duke@435 854 // Pop them all off and throw them away.
duke@435 855 while (pop_exception_state() != NULL) ;
duke@435 856 return;
duke@435 857 }
duke@435 858
duke@435 859 // Make sure we can classify this bytecode if we need to.
duke@435 860 debug_only(can_rerun_bytecode());
duke@435 861
duke@435 862 PreserveJVMState pjvms(this, false);
duke@435 863
duke@435 864 SafePointNode* ex_map;
duke@435 865 while ((ex_map = pop_exception_state()) != NULL) {
duke@435 866 if (!method()->has_exception_handlers()) {
duke@435 867 // Common case: Transfer control outward.
duke@435 868 // Doing it this early allows the exceptions to common up
duke@435 869 // even between adjacent method calls.
duke@435 870 throw_to_exit(ex_map);
duke@435 871 } else {
duke@435 872 // Have to look at the exception first.
duke@435 873 assert(stopped(), "catch_inline_exceptions trashes the map");
duke@435 874 catch_inline_exceptions(ex_map);
duke@435 875 stop_and_kill_map(); // we used up this exception state; kill it
duke@435 876 }
duke@435 877 }
duke@435 878
duke@435 879 // We now return to our regularly scheduled program:
duke@435 880 }
duke@435 881
duke@435 882 //---------------------------throw_to_exit-------------------------------------
duke@435 883 // Merge the given map into an exception exit from this method.
duke@435 884 // The exception exit will handle any unlocking of receiver.
duke@435 885 // The ex_oop must be saved within the ex_map, unlike merge_exception.
duke@435 886 void Parse::throw_to_exit(SafePointNode* ex_map) {
duke@435 887 // Pop the JVMS to (a copy of) the caller.
duke@435 888 GraphKit caller;
duke@435 889 caller.set_map_clone(_caller->map());
duke@435 890 caller.set_bci(_caller->bci());
duke@435 891 caller.set_sp(_caller->sp());
duke@435 892 // Copy out the standard machine state:
duke@435 893 for (uint i = 0; i < TypeFunc::Parms; i++) {
duke@435 894 caller.map()->set_req(i, ex_map->in(i));
duke@435 895 }
duke@435 896 // ...and the exception:
duke@435 897 Node* ex_oop = saved_ex_oop(ex_map);
duke@435 898 SafePointNode* caller_ex_map = caller.make_exception_state(ex_oop);
duke@435 899 // Finally, collect the new exception state in my exits:
duke@435 900 _exits.add_exception_state(caller_ex_map);
duke@435 901 }
duke@435 902
duke@435 903 //------------------------------do_exits---------------------------------------
duke@435 904 void Parse::do_exits() {
duke@435 905 set_parse_bci(InvocationEntryBci);
duke@435 906
duke@435 907 // Now peephole on the return bits
duke@435 908 Node* region = _exits.control();
duke@435 909 _exits.set_control(gvn().transform(region));
duke@435 910
duke@435 911 Node* iophi = _exits.i_o();
duke@435 912 _exits.set_i_o(gvn().transform(iophi));
duke@435 913
duke@435 914 if (wrote_final()) {
duke@435 915 // This method (which must be a constructor by the rules of Java)
duke@435 916 // wrote a final. The effects of all initializations must be
duke@435 917 // committed to memory before any code after the constructor
duke@435 918 // publishes the reference to the newly constructor object.
duke@435 919 // Rather than wait for the publication, we simply block the
duke@435 920 // writes here. Rather than put a barrier on only those writes
duke@435 921 // which are required to complete, we force all writes to complete.
duke@435 922 //
duke@435 923 // "All bets are off" unless the first publication occurs after a
duke@435 924 // normal return from the constructor. We do not attempt to detect
duke@435 925 // such unusual early publications. But no barrier is needed on
duke@435 926 // exceptional returns, since they cannot publish normally.
duke@435 927 //
duke@435 928 _exits.insert_mem_bar(Op_MemBarRelease);
duke@435 929 #ifndef PRODUCT
duke@435 930 if (PrintOpto && (Verbose || WizardMode)) {
duke@435 931 method()->print_name();
duke@435 932 tty->print_cr(" writes finals and needs a memory barrier");
duke@435 933 }
duke@435 934 #endif
duke@435 935 }
duke@435 936
duke@435 937 for (MergeMemStream mms(_exits.merged_memory()); mms.next_non_empty(); ) {
duke@435 938 // transform each slice of the original memphi:
duke@435 939 mms.set_memory(_gvn.transform(mms.memory()));
duke@435 940 }
duke@435 941
duke@435 942 if (tf()->range()->cnt() > TypeFunc::Parms) {
duke@435 943 const Type* ret_type = tf()->range()->field_at(TypeFunc::Parms);
duke@435 944 Node* ret_phi = _gvn.transform( _exits.argument(0) );
duke@435 945 assert(_exits.control()->is_top() || !_gvn.type(ret_phi)->empty(), "return value must be well defined");
duke@435 946 _exits.push_node(ret_type->basic_type(), ret_phi);
duke@435 947 }
duke@435 948
duke@435 949 // Note: Logic for creating and optimizing the ReturnNode is in Compile.
duke@435 950
duke@435 951 // Unlock along the exceptional paths.
duke@435 952 // This is done late so that we can common up equivalent exceptions
duke@435 953 // (e.g., null checks) arising from multiple points within this method.
duke@435 954 // See GraphKit::add_exception_state, which performs the commoning.
duke@435 955 bool do_synch = method()->is_synchronized() && GenerateSynchronizationCode;
duke@435 956
duke@435 957 // record exit from a method if compiled while Dtrace is turned on.
kvn@1215 958 if (do_synch || C->env()->dtrace_method_probes()) {
duke@435 959 // First move the exception list out of _exits:
duke@435 960 GraphKit kit(_exits.transfer_exceptions_into_jvms());
duke@435 961 SafePointNode* normal_map = kit.map(); // keep this guy safe
duke@435 962 // Now re-collect the exceptions into _exits:
duke@435 963 SafePointNode* ex_map;
duke@435 964 while ((ex_map = kit.pop_exception_state()) != NULL) {
duke@435 965 Node* ex_oop = kit.use_exception_state(ex_map);
duke@435 966 // Force the exiting JVM state to have this method at InvocationEntryBci.
duke@435 967 // The exiting JVM state is otherwise a copy of the calling JVMS.
duke@435 968 JVMState* caller = kit.jvms();
duke@435 969 JVMState* ex_jvms = caller->clone_shallow(C);
duke@435 970 ex_jvms->set_map(kit.clone_map());
duke@435 971 ex_jvms->map()->set_jvms(ex_jvms);
duke@435 972 ex_jvms->set_bci( InvocationEntryBci);
duke@435 973 kit.set_jvms(ex_jvms);
duke@435 974 if (do_synch) {
duke@435 975 // Add on the synchronized-method box/object combo
duke@435 976 kit.map()->push_monitor(_synch_lock);
duke@435 977 // Unlock!
duke@435 978 kit.shared_unlock(_synch_lock->box_node(), _synch_lock->obj_node());
duke@435 979 }
kvn@1215 980 if (C->env()->dtrace_method_probes()) {
duke@435 981 kit.make_dtrace_method_exit(method());
duke@435 982 }
duke@435 983 // Done with exception-path processing.
duke@435 984 ex_map = kit.make_exception_state(ex_oop);
duke@435 985 assert(ex_jvms->same_calls_as(ex_map->jvms()), "sanity");
duke@435 986 // Pop the last vestige of this method:
duke@435 987 ex_map->set_jvms(caller->clone_shallow(C));
duke@435 988 ex_map->jvms()->set_map(ex_map);
duke@435 989 _exits.push_exception_state(ex_map);
duke@435 990 }
duke@435 991 assert(_exits.map() == normal_map, "keep the same return state");
duke@435 992 }
duke@435 993
duke@435 994 {
duke@435 995 // Capture very early exceptions (receiver null checks) from caller JVMS
duke@435 996 GraphKit caller(_caller);
duke@435 997 SafePointNode* ex_map;
duke@435 998 while ((ex_map = caller.pop_exception_state()) != NULL) {
duke@435 999 _exits.add_exception_state(ex_map);
duke@435 1000 }
duke@435 1001 }
duke@435 1002 }
duke@435 1003
duke@435 1004 //-----------------------------create_entry_map-------------------------------
duke@435 1005 // Initialize our parser map to contain the types at method entry.
duke@435 1006 // For OSR, the map contains a single RawPtr parameter.
duke@435 1007 // Initial monitor locking for sync. methods is performed by do_method_entry.
duke@435 1008 SafePointNode* Parse::create_entry_map() {
duke@435 1009 // Check for really stupid bail-out cases.
duke@435 1010 uint len = TypeFunc::Parms + method()->max_locals() + method()->max_stack();
duke@435 1011 if (len >= 32760) {
duke@435 1012 C->record_method_not_compilable_all_tiers("too many local variables");
duke@435 1013 return NULL;
duke@435 1014 }
duke@435 1015
duke@435 1016 // If this is an inlined method, we may have to do a receiver null check.
duke@435 1017 if (_caller->has_method() && is_normal_parse() && !method()->is_static()) {
duke@435 1018 GraphKit kit(_caller);
duke@435 1019 kit.null_check_receiver(method());
duke@435 1020 _caller = kit.transfer_exceptions_into_jvms();
duke@435 1021 if (kit.stopped()) {
duke@435 1022 _exits.add_exception_states_from(_caller);
duke@435 1023 _exits.set_jvms(_caller);
duke@435 1024 return NULL;
duke@435 1025 }
duke@435 1026 }
duke@435 1027
duke@435 1028 assert(method() != NULL, "parser must have a method");
duke@435 1029
duke@435 1030 // Create an initial safepoint to hold JVM state during parsing
duke@435 1031 JVMState* jvms = new (C) JVMState(method(), _caller->has_method() ? _caller : NULL);
duke@435 1032 set_map(new (C, len) SafePointNode(len, jvms));
duke@435 1033 jvms->set_map(map());
duke@435 1034 record_for_igvn(map());
duke@435 1035 assert(jvms->endoff() == len, "correct jvms sizing");
duke@435 1036
duke@435 1037 SafePointNode* inmap = _caller->map();
duke@435 1038 assert(inmap != NULL, "must have inmap");
duke@435 1039
duke@435 1040 uint i;
duke@435 1041
duke@435 1042 // Pass thru the predefined input parameters.
duke@435 1043 for (i = 0; i < TypeFunc::Parms; i++) {
duke@435 1044 map()->init_req(i, inmap->in(i));
duke@435 1045 }
duke@435 1046
duke@435 1047 if (depth() == 1) {
duke@435 1048 assert(map()->memory()->Opcode() == Op_Parm, "");
duke@435 1049 // Insert the memory aliasing node
duke@435 1050 set_all_memory(reset_memory());
duke@435 1051 }
duke@435 1052 assert(merged_memory(), "");
duke@435 1053
duke@435 1054 // Now add the locals which are initially bound to arguments:
duke@435 1055 uint arg_size = tf()->domain()->cnt();
duke@435 1056 ensure_stack(arg_size - TypeFunc::Parms); // OSR methods have funny args
duke@435 1057 for (i = TypeFunc::Parms; i < arg_size; i++) {
duke@435 1058 map()->init_req(i, inmap->argument(_caller, i - TypeFunc::Parms));
duke@435 1059 }
duke@435 1060
duke@435 1061 // Clear out the rest of the map (locals and stack)
duke@435 1062 for (i = arg_size; i < len; i++) {
duke@435 1063 map()->init_req(i, top());
duke@435 1064 }
duke@435 1065
duke@435 1066 SafePointNode* entry_map = stop();
duke@435 1067 return entry_map;
duke@435 1068 }
duke@435 1069
duke@435 1070 //-----------------------------do_method_entry--------------------------------
duke@435 1071 // Emit any code needed in the pseudo-block before BCI zero.
duke@435 1072 // The main thing to do is lock the receiver of a synchronized method.
duke@435 1073 void Parse::do_method_entry() {
duke@435 1074 set_parse_bci(InvocationEntryBci); // Pseudo-BCP
duke@435 1075 set_sp(0); // Java Stack Pointer
duke@435 1076
duke@435 1077 NOT_PRODUCT( count_compiled_calls(true/*at_method_entry*/, false/*is_inline*/); )
duke@435 1078
kvn@1215 1079 if (C->env()->dtrace_method_probes()) {
duke@435 1080 make_dtrace_method_entry(method());
duke@435 1081 }
duke@435 1082
duke@435 1083 // If the method is synchronized, we need to construct a lock node, attach
duke@435 1084 // it to the Start node, and pin it there.
duke@435 1085 if (method()->is_synchronized()) {
duke@435 1086 // Insert a FastLockNode right after the Start which takes as arguments
duke@435 1087 // the current thread pointer, the "this" pointer & the address of the
duke@435 1088 // stack slot pair used for the lock. The "this" pointer is a projection
duke@435 1089 // off the start node, but the locking spot has to be constructed by
duke@435 1090 // creating a ConLNode of 0, and boxing it with a BoxLockNode. The BoxLockNode
duke@435 1091 // becomes the second argument to the FastLockNode call. The
duke@435 1092 // FastLockNode becomes the new control parent to pin it to the start.
duke@435 1093
duke@435 1094 // Setup Object Pointer
duke@435 1095 Node *lock_obj = NULL;
duke@435 1096 if(method()->is_static()) {
duke@435 1097 ciInstance* mirror = _method->holder()->java_mirror();
duke@435 1098 const TypeInstPtr *t_lock = TypeInstPtr::make(mirror);
duke@435 1099 lock_obj = makecon(t_lock);
duke@435 1100 } else { // Else pass the "this" pointer,
duke@435 1101 lock_obj = local(0); // which is Parm0 from StartNode
duke@435 1102 }
duke@435 1103 // Clear out dead values from the debug info.
duke@435 1104 kill_dead_locals();
duke@435 1105 // Build the FastLockNode
duke@435 1106 _synch_lock = shared_lock(lock_obj);
duke@435 1107 }
duke@435 1108
duke@435 1109 if (depth() == 1) {
duke@435 1110 increment_and_test_invocation_counter(Tier2CompileThreshold);
duke@435 1111 }
duke@435 1112 }
duke@435 1113
duke@435 1114 //------------------------------init_blocks------------------------------------
duke@435 1115 // Initialize our parser map to contain the types/monitors at method entry.
duke@435 1116 void Parse::init_blocks() {
duke@435 1117 // Create the blocks.
duke@435 1118 _block_count = flow()->block_count();
duke@435 1119 _blocks = NEW_RESOURCE_ARRAY(Block, _block_count);
duke@435 1120 Copy::zero_to_bytes(_blocks, sizeof(Block)*_block_count);
duke@435 1121
never@802 1122 int rpo;
duke@435 1123
duke@435 1124 // Initialize the structs.
never@802 1125 for (rpo = 0; rpo < block_count(); rpo++) {
never@802 1126 Block* block = rpo_at(rpo);
never@802 1127 block->init_node(this, rpo);
duke@435 1128 }
duke@435 1129
duke@435 1130 // Collect predecessor and successor information.
never@802 1131 for (rpo = 0; rpo < block_count(); rpo++) {
never@802 1132 Block* block = rpo_at(rpo);
duke@435 1133 block->init_graph(this);
duke@435 1134 }
duke@435 1135 }
duke@435 1136
duke@435 1137 //-------------------------------init_node-------------------------------------
never@802 1138 void Parse::Block::init_node(Parse* outer, int rpo) {
never@802 1139 _flow = outer->flow()->rpo_at(rpo);
duke@435 1140 _pred_count = 0;
duke@435 1141 _preds_parsed = 0;
duke@435 1142 _count = 0;
duke@435 1143 assert(pred_count() == 0 && preds_parsed() == 0, "sanity");
duke@435 1144 assert(!(is_merged() || is_parsed() || is_handler()), "sanity");
duke@435 1145 assert(_live_locals.size() == 0, "sanity");
duke@435 1146
duke@435 1147 // entry point has additional predecessor
duke@435 1148 if (flow()->is_start()) _pred_count++;
duke@435 1149 assert(flow()->is_start() == (this == outer->start_block()), "");
duke@435 1150 }
duke@435 1151
duke@435 1152 //-------------------------------init_graph------------------------------------
duke@435 1153 void Parse::Block::init_graph(Parse* outer) {
duke@435 1154 // Create the successor list for this parser block.
duke@435 1155 GrowableArray<ciTypeFlow::Block*>* tfs = flow()->successors();
duke@435 1156 GrowableArray<ciTypeFlow::Block*>* tfe = flow()->exceptions();
duke@435 1157 int ns = tfs->length();
duke@435 1158 int ne = tfe->length();
duke@435 1159 _num_successors = ns;
duke@435 1160 _all_successors = ns+ne;
duke@435 1161 _successors = (ns+ne == 0) ? NULL : NEW_RESOURCE_ARRAY(Block*, ns+ne);
duke@435 1162 int p = 0;
duke@435 1163 for (int i = 0; i < ns+ne; i++) {
duke@435 1164 ciTypeFlow::Block* tf2 = (i < ns) ? tfs->at(i) : tfe->at(i-ns);
never@802 1165 Block* block2 = outer->rpo_at(tf2->rpo());
duke@435 1166 _successors[i] = block2;
duke@435 1167
duke@435 1168 // Accumulate pred info for the other block, too.
duke@435 1169 if (i < ns) {
duke@435 1170 block2->_pred_count++;
duke@435 1171 } else {
duke@435 1172 block2->_is_handler = true;
duke@435 1173 }
duke@435 1174
duke@435 1175 #ifdef ASSERT
duke@435 1176 // A block's successors must be distinguishable by BCI.
duke@435 1177 // That is, no bytecode is allowed to branch to two different
duke@435 1178 // clones of the same code location.
duke@435 1179 for (int j = 0; j < i; j++) {
duke@435 1180 Block* block1 = _successors[j];
duke@435 1181 if (block1 == block2) continue; // duplicates are OK
duke@435 1182 assert(block1->start() != block2->start(), "successors have unique bcis");
duke@435 1183 }
duke@435 1184 #endif
duke@435 1185 }
duke@435 1186
duke@435 1187 // Note: We never call next_path_num along exception paths, so they
duke@435 1188 // never get processed as "ready". Also, the input phis of exception
duke@435 1189 // handlers get specially processed, so that
duke@435 1190 }
duke@435 1191
duke@435 1192 //---------------------------successor_for_bci---------------------------------
duke@435 1193 Parse::Block* Parse::Block::successor_for_bci(int bci) {
duke@435 1194 for (int i = 0; i < all_successors(); i++) {
duke@435 1195 Block* block2 = successor_at(i);
duke@435 1196 if (block2->start() == bci) return block2;
duke@435 1197 }
duke@435 1198 // We can actually reach here if ciTypeFlow traps out a block
duke@435 1199 // due to an unloaded class, and concurrently with compilation the
duke@435 1200 // class is then loaded, so that a later phase of the parser is
duke@435 1201 // able to see more of the bytecode CFG. Or, the flow pass and
duke@435 1202 // the parser can have a minor difference of opinion about executability
duke@435 1203 // of bytecodes. For example, "obj.field = null" is executable even
duke@435 1204 // if the field's type is an unloaded class; the flow pass used to
duke@435 1205 // make a trap for such code.
duke@435 1206 return NULL;
duke@435 1207 }
duke@435 1208
duke@435 1209
duke@435 1210 //-----------------------------stack_type_at-----------------------------------
duke@435 1211 const Type* Parse::Block::stack_type_at(int i) const {
duke@435 1212 return get_type(flow()->stack_type_at(i));
duke@435 1213 }
duke@435 1214
duke@435 1215
duke@435 1216 //-----------------------------local_type_at-----------------------------------
duke@435 1217 const Type* Parse::Block::local_type_at(int i) const {
duke@435 1218 // Make dead locals fall to bottom.
duke@435 1219 if (_live_locals.size() == 0) {
duke@435 1220 MethodLivenessResult live_locals = flow()->outer()->method()->liveness_at_bci(start());
duke@435 1221 // This bitmap can be zero length if we saw a breakpoint.
duke@435 1222 // In such cases, pretend they are all live.
duke@435 1223 ((Block*)this)->_live_locals = live_locals;
duke@435 1224 }
duke@435 1225 if (_live_locals.size() > 0 && !_live_locals.at(i))
duke@435 1226 return Type::BOTTOM;
duke@435 1227
duke@435 1228 return get_type(flow()->local_type_at(i));
duke@435 1229 }
duke@435 1230
duke@435 1231
duke@435 1232 #ifndef PRODUCT
duke@435 1233
duke@435 1234 //----------------------------name_for_bc--------------------------------------
duke@435 1235 // helper method for BytecodeParseHistogram
duke@435 1236 static const char* name_for_bc(int i) {
duke@435 1237 return Bytecodes::is_defined(i) ? Bytecodes::name(Bytecodes::cast(i)) : "xxxunusedxxx";
duke@435 1238 }
duke@435 1239
duke@435 1240 //----------------------------BytecodeParseHistogram------------------------------------
duke@435 1241 Parse::BytecodeParseHistogram::BytecodeParseHistogram(Parse *p, Compile *c) {
duke@435 1242 _parser = p;
duke@435 1243 _compiler = c;
duke@435 1244 if( ! _initialized ) { _initialized = true; reset(); }
duke@435 1245 }
duke@435 1246
duke@435 1247 //----------------------------current_count------------------------------------
duke@435 1248 int Parse::BytecodeParseHistogram::current_count(BPHType bph_type) {
duke@435 1249 switch( bph_type ) {
duke@435 1250 case BPH_transforms: { return _parser->gvn().made_progress(); }
duke@435 1251 case BPH_values: { return _parser->gvn().made_new_values(); }
duke@435 1252 default: { ShouldNotReachHere(); return 0; }
duke@435 1253 }
duke@435 1254 }
duke@435 1255
duke@435 1256 //----------------------------initialized--------------------------------------
duke@435 1257 bool Parse::BytecodeParseHistogram::initialized() { return _initialized; }
duke@435 1258
duke@435 1259 //----------------------------reset--------------------------------------------
duke@435 1260 void Parse::BytecodeParseHistogram::reset() {
duke@435 1261 int i = Bytecodes::number_of_codes;
duke@435 1262 while (i-- > 0) { _bytecodes_parsed[i] = 0; _nodes_constructed[i] = 0; _nodes_transformed[i] = 0; _new_values[i] = 0; }
duke@435 1263 }
duke@435 1264
duke@435 1265 //----------------------------set_initial_state--------------------------------
duke@435 1266 // Record info when starting to parse one bytecode
duke@435 1267 void Parse::BytecodeParseHistogram::set_initial_state( Bytecodes::Code bc ) {
duke@435 1268 if( PrintParseStatistics && !_parser->is_osr_parse() ) {
duke@435 1269 _initial_bytecode = bc;
duke@435 1270 _initial_node_count = _compiler->unique();
duke@435 1271 _initial_transforms = current_count(BPH_transforms);
duke@435 1272 _initial_values = current_count(BPH_values);
duke@435 1273 }
duke@435 1274 }
duke@435 1275
duke@435 1276 //----------------------------record_change--------------------------------
duke@435 1277 // Record results of parsing one bytecode
duke@435 1278 void Parse::BytecodeParseHistogram::record_change() {
duke@435 1279 if( PrintParseStatistics && !_parser->is_osr_parse() ) {
duke@435 1280 ++_bytecodes_parsed[_initial_bytecode];
duke@435 1281 _nodes_constructed [_initial_bytecode] += (_compiler->unique() - _initial_node_count);
duke@435 1282 _nodes_transformed [_initial_bytecode] += (current_count(BPH_transforms) - _initial_transforms);
duke@435 1283 _new_values [_initial_bytecode] += (current_count(BPH_values) - _initial_values);
duke@435 1284 }
duke@435 1285 }
duke@435 1286
duke@435 1287
duke@435 1288 //----------------------------print--------------------------------------------
duke@435 1289 void Parse::BytecodeParseHistogram::print(float cutoff) {
duke@435 1290 ResourceMark rm;
duke@435 1291 // print profile
duke@435 1292 int total = 0;
duke@435 1293 int i = 0;
duke@435 1294 for( i = 0; i < Bytecodes::number_of_codes; ++i ) { total += _bytecodes_parsed[i]; }
duke@435 1295 int abs_sum = 0;
duke@435 1296 tty->cr(); //0123456789012345678901234567890123456789012345678901234567890123456789
duke@435 1297 tty->print_cr("Histogram of %d parsed bytecodes:", total);
duke@435 1298 if( total == 0 ) { return; }
duke@435 1299 tty->cr();
duke@435 1300 tty->print_cr("absolute: count of compiled bytecodes of this type");
duke@435 1301 tty->print_cr("relative: percentage contribution to compiled nodes");
duke@435 1302 tty->print_cr("nodes : Average number of nodes constructed per bytecode");
duke@435 1303 tty->print_cr("rnodes : Significance towards total nodes constructed, (nodes*relative)");
duke@435 1304 tty->print_cr("transforms: Average amount of tranform progress per bytecode compiled");
duke@435 1305 tty->print_cr("values : Average number of node values improved per bytecode");
duke@435 1306 tty->print_cr("name : Bytecode name");
duke@435 1307 tty->cr();
duke@435 1308 tty->print_cr(" absolute relative nodes rnodes transforms values name");
duke@435 1309 tty->print_cr("----------------------------------------------------------------------");
duke@435 1310 while (--i > 0) {
duke@435 1311 int abs = _bytecodes_parsed[i];
duke@435 1312 float rel = abs * 100.0F / total;
duke@435 1313 float nodes = _bytecodes_parsed[i] == 0 ? 0 : (1.0F * _nodes_constructed[i])/_bytecodes_parsed[i];
duke@435 1314 float rnodes = _bytecodes_parsed[i] == 0 ? 0 : rel * nodes;
duke@435 1315 float xforms = _bytecodes_parsed[i] == 0 ? 0 : (1.0F * _nodes_transformed[i])/_bytecodes_parsed[i];
duke@435 1316 float values = _bytecodes_parsed[i] == 0 ? 0 : (1.0F * _new_values [i])/_bytecodes_parsed[i];
duke@435 1317 if (cutoff <= rel) {
duke@435 1318 tty->print_cr("%10d %7.2f%% %6.1f %6.2f %6.1f %6.1f %s", abs, rel, nodes, rnodes, xforms, values, name_for_bc(i));
duke@435 1319 abs_sum += abs;
duke@435 1320 }
duke@435 1321 }
duke@435 1322 tty->print_cr("----------------------------------------------------------------------");
duke@435 1323 float rel_sum = abs_sum * 100.0F / total;
duke@435 1324 tty->print_cr("%10d %7.2f%% (cutoff = %.2f%%)", abs_sum, rel_sum, cutoff);
duke@435 1325 tty->print_cr("----------------------------------------------------------------------");
duke@435 1326 tty->cr();
duke@435 1327 }
duke@435 1328 #endif
duke@435 1329
duke@435 1330 //----------------------------load_state_from----------------------------------
duke@435 1331 // Load block/map/sp. But not do not touch iter/bci.
duke@435 1332 void Parse::load_state_from(Block* block) {
duke@435 1333 set_block(block);
duke@435 1334 // load the block's JVM state:
duke@435 1335 set_map(block->start_map());
duke@435 1336 set_sp( block->start_sp());
duke@435 1337 }
duke@435 1338
duke@435 1339
duke@435 1340 //-----------------------------record_state------------------------------------
duke@435 1341 void Parse::Block::record_state(Parse* p) {
duke@435 1342 assert(!is_merged(), "can only record state once, on 1st inflow");
duke@435 1343 assert(start_sp() == p->sp(), "stack pointer must agree with ciTypeFlow");
duke@435 1344 set_start_map(p->stop());
duke@435 1345 }
duke@435 1346
duke@435 1347
duke@435 1348 //------------------------------do_one_block-----------------------------------
duke@435 1349 void Parse::do_one_block() {
duke@435 1350 if (TraceOptoParse) {
duke@435 1351 Block *b = block();
duke@435 1352 int ns = b->num_successors();
duke@435 1353 int nt = b->all_successors();
duke@435 1354
duke@435 1355 tty->print("Parsing block #%d at bci [%d,%d), successors: ",
never@802 1356 block()->rpo(), block()->start(), block()->limit());
duke@435 1357 for (int i = 0; i < nt; i++) {
never@802 1358 tty->print((( i < ns) ? " %d" : " %d(e)"), b->successor_at(i)->rpo());
duke@435 1359 }
never@802 1360 if (b->is_loop_head()) tty->print(" lphd");
duke@435 1361 tty->print_cr("");
duke@435 1362 }
duke@435 1363
duke@435 1364 assert(block()->is_merged(), "must be merged before being parsed");
duke@435 1365 block()->mark_parsed();
duke@435 1366 ++_blocks_parsed;
duke@435 1367
duke@435 1368 // Set iterator to start of block.
duke@435 1369 iter().reset_to_bci(block()->start());
duke@435 1370
duke@435 1371 CompileLog* log = C->log();
duke@435 1372
duke@435 1373 // Parse bytecodes
duke@435 1374 while (!stopped() && !failing()) {
duke@435 1375 iter().next();
duke@435 1376
duke@435 1377 // Learn the current bci from the iterator:
duke@435 1378 set_parse_bci(iter().cur_bci());
duke@435 1379
duke@435 1380 if (bci() == block()->limit()) {
duke@435 1381 // Do not walk into the next block until directed by do_all_blocks.
duke@435 1382 merge(bci());
duke@435 1383 break;
duke@435 1384 }
duke@435 1385 assert(bci() < block()->limit(), "bci still in block");
duke@435 1386
duke@435 1387 if (log != NULL) {
duke@435 1388 // Output an optional context marker, to help place actions
duke@435 1389 // that occur during parsing of this BC. If there is no log
duke@435 1390 // output until the next context string, this context string
duke@435 1391 // will be silently ignored.
duke@435 1392 log->context()->reset();
duke@435 1393 log->context()->print_cr("<bc code='%d' bci='%d'/>", (int)bc(), bci());
duke@435 1394 }
duke@435 1395
duke@435 1396 if (block()->has_trap_at(bci())) {
duke@435 1397 // We must respect the flow pass's traps, because it will refuse
duke@435 1398 // to produce successors for trapping blocks.
duke@435 1399 int trap_index = block()->flow()->trap_index();
duke@435 1400 assert(trap_index != 0, "trap index must be valid");
duke@435 1401 uncommon_trap(trap_index);
duke@435 1402 break;
duke@435 1403 }
duke@435 1404
duke@435 1405 NOT_PRODUCT( parse_histogram()->set_initial_state(bc()); );
duke@435 1406
duke@435 1407 #ifdef ASSERT
duke@435 1408 int pre_bc_sp = sp();
duke@435 1409 int inputs, depth;
duke@435 1410 bool have_se = !stopped() && compute_stack_effects(inputs, depth);
duke@435 1411 assert(!have_se || pre_bc_sp >= inputs, "have enough stack to execute this BC");
duke@435 1412 #endif //ASSERT
duke@435 1413
duke@435 1414 do_one_bytecode();
duke@435 1415
duke@435 1416 assert(!have_se || stopped() || failing() || (sp() - pre_bc_sp) == depth, "correct depth prediction");
duke@435 1417
duke@435 1418 do_exceptions();
duke@435 1419
duke@435 1420 NOT_PRODUCT( parse_histogram()->record_change(); );
duke@435 1421
duke@435 1422 if (log != NULL) log->context()->reset(); // done w/ this one
duke@435 1423
duke@435 1424 // Fall into next bytecode. Each bytecode normally has 1 sequential
duke@435 1425 // successor which is typically made ready by visiting this bytecode.
duke@435 1426 // If the successor has several predecessors, then it is a merge
duke@435 1427 // point, starts a new basic block, and is handled like other basic blocks.
duke@435 1428 }
duke@435 1429 }
duke@435 1430
duke@435 1431
duke@435 1432 //------------------------------merge------------------------------------------
duke@435 1433 void Parse::set_parse_bci(int bci) {
duke@435 1434 set_bci(bci);
duke@435 1435 Node_Notes* nn = C->default_node_notes();
duke@435 1436 if (nn == NULL) return;
duke@435 1437
duke@435 1438 // Collect debug info for inlined calls unless -XX:-DebugInlinedCalls.
duke@435 1439 if (!DebugInlinedCalls && depth() > 1) {
duke@435 1440 return;
duke@435 1441 }
duke@435 1442
duke@435 1443 // Update the JVMS annotation, if present.
duke@435 1444 JVMState* jvms = nn->jvms();
duke@435 1445 if (jvms != NULL && jvms->bci() != bci) {
duke@435 1446 // Update the JVMS.
duke@435 1447 jvms = jvms->clone_shallow(C);
duke@435 1448 jvms->set_bci(bci);
duke@435 1449 nn->set_jvms(jvms);
duke@435 1450 }
duke@435 1451 }
duke@435 1452
duke@435 1453 //------------------------------merge------------------------------------------
duke@435 1454 // Merge the current mapping into the basic block starting at bci
duke@435 1455 void Parse::merge(int target_bci) {
duke@435 1456 Block* target = successor_for_bci(target_bci);
duke@435 1457 if (target == NULL) { handle_missing_successor(target_bci); return; }
duke@435 1458 assert(!target->is_ready(), "our arrival must be expected");
duke@435 1459 int pnum = target->next_path_num();
duke@435 1460 merge_common(target, pnum);
duke@435 1461 }
duke@435 1462
duke@435 1463 //-------------------------merge_new_path--------------------------------------
duke@435 1464 // Merge the current mapping into the basic block, using a new path
duke@435 1465 void Parse::merge_new_path(int target_bci) {
duke@435 1466 Block* target = successor_for_bci(target_bci);
duke@435 1467 if (target == NULL) { handle_missing_successor(target_bci); return; }
duke@435 1468 assert(!target->is_ready(), "new path into frozen graph");
duke@435 1469 int pnum = target->add_new_path();
duke@435 1470 merge_common(target, pnum);
duke@435 1471 }
duke@435 1472
duke@435 1473 //-------------------------merge_exception-------------------------------------
duke@435 1474 // Merge the current mapping into the basic block starting at bci
duke@435 1475 // The ex_oop must be pushed on the stack, unlike throw_to_exit.
duke@435 1476 void Parse::merge_exception(int target_bci) {
duke@435 1477 assert(sp() == 1, "must have only the throw exception on the stack");
duke@435 1478 Block* target = successor_for_bci(target_bci);
duke@435 1479 if (target == NULL) { handle_missing_successor(target_bci); return; }
duke@435 1480 assert(target->is_handler(), "exceptions are handled by special blocks");
duke@435 1481 int pnum = target->add_new_path();
duke@435 1482 merge_common(target, pnum);
duke@435 1483 }
duke@435 1484
duke@435 1485 //--------------------handle_missing_successor---------------------------------
duke@435 1486 void Parse::handle_missing_successor(int target_bci) {
duke@435 1487 #ifndef PRODUCT
duke@435 1488 Block* b = block();
duke@435 1489 int trap_bci = b->flow()->has_trap()? b->flow()->trap_bci(): -1;
never@802 1490 tty->print_cr("### Missing successor at bci:%d for block #%d (trap_bci:%d)", target_bci, b->rpo(), trap_bci);
duke@435 1491 #endif
duke@435 1492 ShouldNotReachHere();
duke@435 1493 }
duke@435 1494
duke@435 1495 //--------------------------merge_common---------------------------------------
duke@435 1496 void Parse::merge_common(Parse::Block* target, int pnum) {
duke@435 1497 if (TraceOptoParse) {
never@802 1498 tty->print("Merging state at block #%d bci:%d", target->rpo(), target->start());
duke@435 1499 }
duke@435 1500
duke@435 1501 // Zap extra stack slots to top
duke@435 1502 assert(sp() == target->start_sp(), "");
duke@435 1503 clean_stack(sp());
duke@435 1504
duke@435 1505 if (!target->is_merged()) { // No prior mapping at this bci
duke@435 1506 if (TraceOptoParse) { tty->print(" with empty state"); }
duke@435 1507
duke@435 1508 // If this path is dead, do not bother capturing it as a merge.
duke@435 1509 // It is "as if" we had 1 fewer predecessors from the beginning.
duke@435 1510 if (stopped()) {
duke@435 1511 if (TraceOptoParse) tty->print_cr(", but path is dead and doesn't count");
duke@435 1512 return;
duke@435 1513 }
duke@435 1514
duke@435 1515 // Record that a new block has been merged.
duke@435 1516 ++_blocks_merged;
duke@435 1517
duke@435 1518 // Make a region if we know there are multiple or unpredictable inputs.
duke@435 1519 // (Also, if this is a plain fall-through, we might see another region,
duke@435 1520 // which must not be allowed into this block's map.)
duke@435 1521 if (pnum > PhiNode::Input // Known multiple inputs.
duke@435 1522 || target->is_handler() // These have unpredictable inputs.
never@802 1523 || target->is_loop_head() // Known multiple inputs
duke@435 1524 || control()->is_Region()) { // We must hide this guy.
duke@435 1525 // Add a Region to start the new basic block. Phis will be added
duke@435 1526 // later lazily.
duke@435 1527 int edges = target->pred_count();
duke@435 1528 if (edges < pnum) edges = pnum; // might be a new path!
duke@435 1529 Node *r = new (C, edges+1) RegionNode(edges+1);
duke@435 1530 gvn().set_type(r, Type::CONTROL);
duke@435 1531 record_for_igvn(r);
duke@435 1532 // zap all inputs to NULL for debugging (done in Node(uint) constructor)
duke@435 1533 // for (int j = 1; j < edges+1; j++) { r->init_req(j, NULL); }
duke@435 1534 r->init_req(pnum, control());
duke@435 1535 set_control(r);
duke@435 1536 }
duke@435 1537
duke@435 1538 // Convert the existing Parser mapping into a mapping at this bci.
duke@435 1539 store_state_to(target);
duke@435 1540 assert(target->is_merged(), "do not come here twice");
duke@435 1541
duke@435 1542 } else { // Prior mapping at this bci
duke@435 1543 if (TraceOptoParse) { tty->print(" with previous state"); }
duke@435 1544
duke@435 1545 // We must not manufacture more phis if the target is already parsed.
duke@435 1546 bool nophi = target->is_parsed();
duke@435 1547
duke@435 1548 SafePointNode* newin = map();// Hang on to incoming mapping
duke@435 1549 Block* save_block = block(); // Hang on to incoming block;
duke@435 1550 load_state_from(target); // Get prior mapping
duke@435 1551
duke@435 1552 assert(newin->jvms()->locoff() == jvms()->locoff(), "JVMS layouts agree");
duke@435 1553 assert(newin->jvms()->stkoff() == jvms()->stkoff(), "JVMS layouts agree");
duke@435 1554 assert(newin->jvms()->monoff() == jvms()->monoff(), "JVMS layouts agree");
duke@435 1555 assert(newin->jvms()->endoff() == jvms()->endoff(), "JVMS layouts agree");
duke@435 1556
duke@435 1557 // Iterate over my current mapping and the old mapping.
duke@435 1558 // Where different, insert Phi functions.
duke@435 1559 // Use any existing Phi functions.
duke@435 1560 assert(control()->is_Region(), "must be merging to a region");
duke@435 1561 RegionNode* r = control()->as_Region();
duke@435 1562
duke@435 1563 // Compute where to merge into
duke@435 1564 // Merge incoming control path
never@802 1565 r->init_req(pnum, newin->control());
duke@435 1566
duke@435 1567 if (pnum == 1) { // Last merge for this Region?
never@802 1568 if (!block()->flow()->is_irreducible_entry()) {
never@802 1569 Node* result = _gvn.transform_no_reclaim(r);
never@802 1570 if (r != result && TraceOptoParse) {
never@802 1571 tty->print_cr("Block #%d replace %d with %d", block()->rpo(), r->_idx, result->_idx);
never@802 1572 }
never@802 1573 }
duke@435 1574 record_for_igvn(r);
duke@435 1575 }
duke@435 1576
duke@435 1577 // Update all the non-control inputs to map:
duke@435 1578 assert(TypeFunc::Parms == newin->jvms()->locoff(), "parser map should contain only youngest jvms");
never@802 1579 bool check_elide_phi = target->is_SEL_backedge(save_block);
duke@435 1580 for (uint j = 1; j < newin->req(); j++) {
duke@435 1581 Node* m = map()->in(j); // Current state of target.
duke@435 1582 Node* n = newin->in(j); // Incoming change to target state.
duke@435 1583 PhiNode* phi;
duke@435 1584 if (m->is_Phi() && m->as_Phi()->region() == r)
duke@435 1585 phi = m->as_Phi();
duke@435 1586 else
duke@435 1587 phi = NULL;
duke@435 1588 if (m != n) { // Different; must merge
duke@435 1589 switch (j) {
duke@435 1590 // Frame pointer and Return Address never changes
duke@435 1591 case TypeFunc::FramePtr:// Drop m, use the original value
duke@435 1592 case TypeFunc::ReturnAdr:
duke@435 1593 break;
duke@435 1594 case TypeFunc::Memory: // Merge inputs to the MergeMem node
duke@435 1595 assert(phi == NULL, "the merge contains phis, not vice versa");
duke@435 1596 merge_memory_edges(n->as_MergeMem(), pnum, nophi);
duke@435 1597 continue;
duke@435 1598 default: // All normal stuff
never@802 1599 if (phi == NULL) {
never@802 1600 if (!check_elide_phi || !target->can_elide_SEL_phi(j)) {
never@802 1601 phi = ensure_phi(j, nophi);
never@802 1602 }
never@802 1603 }
duke@435 1604 break;
duke@435 1605 }
duke@435 1606 }
duke@435 1607 // At this point, n might be top if:
duke@435 1608 // - there is no phi (because TypeFlow detected a conflict), or
duke@435 1609 // - the corresponding control edges is top (a dead incoming path)
duke@435 1610 // It is a bug if we create a phi which sees a garbage value on a live path.
duke@435 1611
duke@435 1612 if (phi != NULL) {
duke@435 1613 assert(n != top() || r->in(pnum) == top(), "live value must not be garbage");
duke@435 1614 assert(phi->region() == r, "");
duke@435 1615 phi->set_req(pnum, n); // Then add 'n' to the merge
duke@435 1616 if (pnum == PhiNode::Input) {
duke@435 1617 // Last merge for this Phi.
duke@435 1618 // So far, Phis have had a reasonable type from ciTypeFlow.
duke@435 1619 // Now _gvn will join that with the meet of current inputs.
duke@435 1620 // BOTTOM is never permissible here, 'cause pessimistically
duke@435 1621 // Phis of pointers cannot lose the basic pointer type.
duke@435 1622 debug_only(const Type* bt1 = phi->bottom_type());
duke@435 1623 assert(bt1 != Type::BOTTOM, "should not be building conflict phis");
duke@435 1624 map()->set_req(j, _gvn.transform_no_reclaim(phi));
duke@435 1625 debug_only(const Type* bt2 = phi->bottom_type());
duke@435 1626 assert(bt2->higher_equal(bt1), "must be consistent with type-flow");
duke@435 1627 record_for_igvn(phi);
duke@435 1628 }
duke@435 1629 }
duke@435 1630 } // End of for all values to be merged
duke@435 1631
duke@435 1632 if (pnum == PhiNode::Input &&
duke@435 1633 !r->in(0)) { // The occasional useless Region
duke@435 1634 assert(control() == r, "");
duke@435 1635 set_control(r->nonnull_req());
duke@435 1636 }
duke@435 1637
duke@435 1638 // newin has been subsumed into the lazy merge, and is now dead.
duke@435 1639 set_block(save_block);
duke@435 1640
duke@435 1641 stop(); // done with this guy, for now
duke@435 1642 }
duke@435 1643
duke@435 1644 if (TraceOptoParse) {
duke@435 1645 tty->print_cr(" on path %d", pnum);
duke@435 1646 }
duke@435 1647
duke@435 1648 // Done with this parser state.
duke@435 1649 assert(stopped(), "");
duke@435 1650 }
duke@435 1651
duke@435 1652
duke@435 1653 //--------------------------merge_memory_edges---------------------------------
duke@435 1654 void Parse::merge_memory_edges(MergeMemNode* n, int pnum, bool nophi) {
duke@435 1655 // (nophi means we must not create phis, because we already parsed here)
duke@435 1656 assert(n != NULL, "");
duke@435 1657 // Merge the inputs to the MergeMems
duke@435 1658 MergeMemNode* m = merged_memory();
duke@435 1659
duke@435 1660 assert(control()->is_Region(), "must be merging to a region");
duke@435 1661 RegionNode* r = control()->as_Region();
duke@435 1662
duke@435 1663 PhiNode* base = NULL;
duke@435 1664 MergeMemNode* remerge = NULL;
duke@435 1665 for (MergeMemStream mms(m, n); mms.next_non_empty2(); ) {
duke@435 1666 Node *p = mms.force_memory();
duke@435 1667 Node *q = mms.memory2();
duke@435 1668 if (mms.is_empty() && nophi) {
duke@435 1669 // Trouble: No new splits allowed after a loop body is parsed.
duke@435 1670 // Instead, wire the new split into a MergeMem on the backedge.
duke@435 1671 // The optimizer will sort it out, slicing the phi.
duke@435 1672 if (remerge == NULL) {
duke@435 1673 assert(base != NULL, "");
duke@435 1674 assert(base->in(0) != NULL, "should not be xformed away");
duke@435 1675 remerge = MergeMemNode::make(C, base->in(pnum));
duke@435 1676 gvn().set_type(remerge, Type::MEMORY);
duke@435 1677 base->set_req(pnum, remerge);
duke@435 1678 }
duke@435 1679 remerge->set_memory_at(mms.alias_idx(), q);
duke@435 1680 continue;
duke@435 1681 }
duke@435 1682 assert(!q->is_MergeMem(), "");
duke@435 1683 PhiNode* phi;
duke@435 1684 if (p != q) {
duke@435 1685 phi = ensure_memory_phi(mms.alias_idx(), nophi);
duke@435 1686 } else {
duke@435 1687 if (p->is_Phi() && p->as_Phi()->region() == r)
duke@435 1688 phi = p->as_Phi();
duke@435 1689 else
duke@435 1690 phi = NULL;
duke@435 1691 }
duke@435 1692 // Insert q into local phi
duke@435 1693 if (phi != NULL) {
duke@435 1694 assert(phi->region() == r, "");
duke@435 1695 p = phi;
duke@435 1696 phi->set_req(pnum, q);
duke@435 1697 if (mms.at_base_memory()) {
duke@435 1698 base = phi; // delay transforming it
duke@435 1699 } else if (pnum == 1) {
duke@435 1700 record_for_igvn(phi);
duke@435 1701 p = _gvn.transform_no_reclaim(phi);
duke@435 1702 }
duke@435 1703 mms.set_memory(p);// store back through the iterator
duke@435 1704 }
duke@435 1705 }
duke@435 1706 // Transform base last, in case we must fiddle with remerging.
duke@435 1707 if (base != NULL && pnum == 1) {
duke@435 1708 record_for_igvn(base);
duke@435 1709 m->set_base_memory( _gvn.transform_no_reclaim(base) );
duke@435 1710 }
duke@435 1711 }
duke@435 1712
duke@435 1713
duke@435 1714 //------------------------ensure_phis_everywhere-------------------------------
duke@435 1715 void Parse::ensure_phis_everywhere() {
duke@435 1716 ensure_phi(TypeFunc::I_O);
duke@435 1717
duke@435 1718 // Ensure a phi on all currently known memories.
duke@435 1719 for (MergeMemStream mms(merged_memory()); mms.next_non_empty(); ) {
duke@435 1720 ensure_memory_phi(mms.alias_idx());
duke@435 1721 debug_only(mms.set_memory()); // keep the iterator happy
duke@435 1722 }
duke@435 1723
duke@435 1724 // Note: This is our only chance to create phis for memory slices.
duke@435 1725 // If we miss a slice that crops up later, it will have to be
duke@435 1726 // merged into the base-memory phi that we are building here.
duke@435 1727 // Later, the optimizer will comb out the knot, and build separate
duke@435 1728 // phi-loops for each memory slice that matters.
duke@435 1729
duke@435 1730 // Monitors must nest nicely and not get confused amongst themselves.
duke@435 1731 // Phi-ify everything up to the monitors, though.
duke@435 1732 uint monoff = map()->jvms()->monoff();
duke@435 1733 uint nof_monitors = map()->jvms()->nof_monitors();
duke@435 1734
duke@435 1735 assert(TypeFunc::Parms == map()->jvms()->locoff(), "parser map should contain only youngest jvms");
never@802 1736 bool check_elide_phi = block()->is_SEL_head();
duke@435 1737 for (uint i = TypeFunc::Parms; i < monoff; i++) {
never@802 1738 if (!check_elide_phi || !block()->can_elide_SEL_phi(i)) {
never@802 1739 ensure_phi(i);
never@802 1740 }
duke@435 1741 }
never@802 1742
duke@435 1743 // Even monitors need Phis, though they are well-structured.
duke@435 1744 // This is true for OSR methods, and also for the rare cases where
duke@435 1745 // a monitor object is the subject of a replace_in_map operation.
duke@435 1746 // See bugs 4426707 and 5043395.
duke@435 1747 for (uint m = 0; m < nof_monitors; m++) {
duke@435 1748 ensure_phi(map()->jvms()->monitor_obj_offset(m));
duke@435 1749 }
duke@435 1750 }
duke@435 1751
duke@435 1752
duke@435 1753 //-----------------------------add_new_path------------------------------------
duke@435 1754 // Add a previously unaccounted predecessor to this block.
duke@435 1755 int Parse::Block::add_new_path() {
duke@435 1756 // If there is no map, return the lowest unused path number.
duke@435 1757 if (!is_merged()) return pred_count()+1; // there will be a map shortly
duke@435 1758
duke@435 1759 SafePointNode* map = start_map();
duke@435 1760 if (!map->control()->is_Region())
duke@435 1761 return pred_count()+1; // there may be a region some day
duke@435 1762 RegionNode* r = map->control()->as_Region();
duke@435 1763
duke@435 1764 // Add new path to the region.
duke@435 1765 uint pnum = r->req();
duke@435 1766 r->add_req(NULL);
duke@435 1767
duke@435 1768 for (uint i = 1; i < map->req(); i++) {
duke@435 1769 Node* n = map->in(i);
duke@435 1770 if (i == TypeFunc::Memory) {
duke@435 1771 // Ensure a phi on all currently known memories.
duke@435 1772 for (MergeMemStream mms(n->as_MergeMem()); mms.next_non_empty(); ) {
duke@435 1773 Node* phi = mms.memory();
duke@435 1774 if (phi->is_Phi() && phi->as_Phi()->region() == r) {
duke@435 1775 assert(phi->req() == pnum, "must be same size as region");
duke@435 1776 phi->add_req(NULL);
duke@435 1777 }
duke@435 1778 }
duke@435 1779 } else {
duke@435 1780 if (n->is_Phi() && n->as_Phi()->region() == r) {
duke@435 1781 assert(n->req() == pnum, "must be same size as region");
duke@435 1782 n->add_req(NULL);
duke@435 1783 }
duke@435 1784 }
duke@435 1785 }
duke@435 1786
duke@435 1787 return pnum;
duke@435 1788 }
duke@435 1789
duke@435 1790 //------------------------------ensure_phi-------------------------------------
duke@435 1791 // Turn the idx'th entry of the current map into a Phi
duke@435 1792 PhiNode *Parse::ensure_phi(int idx, bool nocreate) {
duke@435 1793 SafePointNode* map = this->map();
duke@435 1794 Node* region = map->control();
duke@435 1795 assert(region->is_Region(), "");
duke@435 1796
duke@435 1797 Node* o = map->in(idx);
duke@435 1798 assert(o != NULL, "");
duke@435 1799
duke@435 1800 if (o == top()) return NULL; // TOP always merges into TOP
duke@435 1801
duke@435 1802 if (o->is_Phi() && o->as_Phi()->region() == region) {
duke@435 1803 return o->as_Phi();
duke@435 1804 }
duke@435 1805
duke@435 1806 // Now use a Phi here for merging
duke@435 1807 assert(!nocreate, "Cannot build a phi for a block already parsed.");
duke@435 1808 const JVMState* jvms = map->jvms();
duke@435 1809 const Type* t;
duke@435 1810 if (jvms->is_loc(idx)) {
duke@435 1811 t = block()->local_type_at(idx - jvms->locoff());
duke@435 1812 } else if (jvms->is_stk(idx)) {
duke@435 1813 t = block()->stack_type_at(idx - jvms->stkoff());
duke@435 1814 } else if (jvms->is_mon(idx)) {
duke@435 1815 assert(!jvms->is_monitor_box(idx), "no phis for boxes");
duke@435 1816 t = TypeInstPtr::BOTTOM; // this is sufficient for a lock object
duke@435 1817 } else if ((uint)idx < TypeFunc::Parms) {
duke@435 1818 t = o->bottom_type(); // Type::RETURN_ADDRESS or such-like.
duke@435 1819 } else {
duke@435 1820 assert(false, "no type information for this phi");
duke@435 1821 }
duke@435 1822
duke@435 1823 // If the type falls to bottom, then this must be a local that
duke@435 1824 // is mixing ints and oops or some such. Forcing it to top
duke@435 1825 // makes it go dead.
duke@435 1826 if (t == Type::BOTTOM) {
duke@435 1827 map->set_req(idx, top());
duke@435 1828 return NULL;
duke@435 1829 }
duke@435 1830
duke@435 1831 // Do not create phis for top either.
duke@435 1832 // A top on a non-null control flow must be an unused even after the.phi.
duke@435 1833 if (t == Type::TOP || t == Type::HALF) {
duke@435 1834 map->set_req(idx, top());
duke@435 1835 return NULL;
duke@435 1836 }
duke@435 1837
duke@435 1838 PhiNode* phi = PhiNode::make(region, o, t);
duke@435 1839 gvn().set_type(phi, t);
kvn@473 1840 if (C->do_escape_analysis()) record_for_igvn(phi);
duke@435 1841 map->set_req(idx, phi);
duke@435 1842 return phi;
duke@435 1843 }
duke@435 1844
duke@435 1845 //--------------------------ensure_memory_phi----------------------------------
duke@435 1846 // Turn the idx'th slice of the current memory into a Phi
duke@435 1847 PhiNode *Parse::ensure_memory_phi(int idx, bool nocreate) {
duke@435 1848 MergeMemNode* mem = merged_memory();
duke@435 1849 Node* region = control();
duke@435 1850 assert(region->is_Region(), "");
duke@435 1851
duke@435 1852 Node *o = (idx == Compile::AliasIdxBot)? mem->base_memory(): mem->memory_at(idx);
duke@435 1853 assert(o != NULL && o != top(), "");
duke@435 1854
duke@435 1855 PhiNode* phi;
duke@435 1856 if (o->is_Phi() && o->as_Phi()->region() == region) {
duke@435 1857 phi = o->as_Phi();
duke@435 1858 if (phi == mem->base_memory() && idx >= Compile::AliasIdxRaw) {
duke@435 1859 // clone the shared base memory phi to make a new memory split
duke@435 1860 assert(!nocreate, "Cannot build a phi for a block already parsed.");
duke@435 1861 const Type* t = phi->bottom_type();
duke@435 1862 const TypePtr* adr_type = C->get_adr_type(idx);
duke@435 1863 phi = phi->slice_memory(adr_type);
duke@435 1864 gvn().set_type(phi, t);
duke@435 1865 }
duke@435 1866 return phi;
duke@435 1867 }
duke@435 1868
duke@435 1869 // Now use a Phi here for merging
duke@435 1870 assert(!nocreate, "Cannot build a phi for a block already parsed.");
duke@435 1871 const Type* t = o->bottom_type();
duke@435 1872 const TypePtr* adr_type = C->get_adr_type(idx);
duke@435 1873 phi = PhiNode::make(region, o, t, adr_type);
duke@435 1874 gvn().set_type(phi, t);
duke@435 1875 if (idx == Compile::AliasIdxBot)
duke@435 1876 mem->set_base_memory(phi);
duke@435 1877 else
duke@435 1878 mem->set_memory_at(idx, phi);
duke@435 1879 return phi;
duke@435 1880 }
duke@435 1881
duke@435 1882 //------------------------------call_register_finalizer-----------------------
duke@435 1883 // Check the klass of the receiver and call register_finalizer if the
duke@435 1884 // class need finalization.
duke@435 1885 void Parse::call_register_finalizer() {
duke@435 1886 Node* receiver = local(0);
duke@435 1887 assert(receiver != NULL && receiver->bottom_type()->isa_instptr() != NULL,
duke@435 1888 "must have non-null instance type");
duke@435 1889
duke@435 1890 const TypeInstPtr *tinst = receiver->bottom_type()->isa_instptr();
duke@435 1891 if (tinst != NULL && tinst->klass()->is_loaded() && !tinst->klass_is_exact()) {
duke@435 1892 // The type isn't known exactly so see if CHA tells us anything.
duke@435 1893 ciInstanceKlass* ik = tinst->klass()->as_instance_klass();
duke@435 1894 if (!Dependencies::has_finalizable_subclass(ik)) {
duke@435 1895 // No finalizable subclasses so skip the dynamic check.
duke@435 1896 C->dependencies()->assert_has_no_finalizable_subclasses(ik);
duke@435 1897 return;
duke@435 1898 }
duke@435 1899 }
duke@435 1900
duke@435 1901 // Insert a dynamic test for whether the instance needs
duke@435 1902 // finalization. In general this will fold up since the concrete
duke@435 1903 // class is often visible so the access flags are constant.
duke@435 1904 Node* klass_addr = basic_plus_adr( receiver, receiver, oopDesc::klass_offset_in_bytes() );
kvn@599 1905 Node* klass = _gvn.transform( LoadKlassNode::make(_gvn, immutable_memory(), klass_addr, TypeInstPtr::KLASS) );
duke@435 1906
duke@435 1907 Node* access_flags_addr = basic_plus_adr(klass, klass, Klass::access_flags_offset_in_bytes() + sizeof(oopDesc));
duke@435 1908 Node* access_flags = make_load(NULL, access_flags_addr, TypeInt::INT, T_INT);
duke@435 1909
duke@435 1910 Node* mask = _gvn.transform(new (C, 3) AndINode(access_flags, intcon(JVM_ACC_HAS_FINALIZER)));
duke@435 1911 Node* check = _gvn.transform(new (C, 3) CmpINode(mask, intcon(0)));
duke@435 1912 Node* test = _gvn.transform(new (C, 2) BoolNode(check, BoolTest::ne));
duke@435 1913
duke@435 1914 IfNode* iff = create_and_map_if(control(), test, PROB_MAX, COUNT_UNKNOWN);
duke@435 1915
duke@435 1916 RegionNode* result_rgn = new (C, 3) RegionNode(3);
duke@435 1917 record_for_igvn(result_rgn);
duke@435 1918
duke@435 1919 Node *skip_register = _gvn.transform(new (C, 1) IfFalseNode(iff));
duke@435 1920 result_rgn->init_req(1, skip_register);
duke@435 1921
duke@435 1922 Node *needs_register = _gvn.transform(new (C, 1) IfTrueNode(iff));
duke@435 1923 set_control(needs_register);
duke@435 1924 if (stopped()) {
duke@435 1925 // There is no slow path.
duke@435 1926 result_rgn->init_req(2, top());
duke@435 1927 } else {
duke@435 1928 Node *call = make_runtime_call(RC_NO_LEAF,
duke@435 1929 OptoRuntime::register_finalizer_Type(),
duke@435 1930 OptoRuntime::register_finalizer_Java(),
duke@435 1931 NULL, TypePtr::BOTTOM,
duke@435 1932 receiver);
duke@435 1933 make_slow_call_ex(call, env()->Throwable_klass(), true);
duke@435 1934
duke@435 1935 Node* fast_io = call->in(TypeFunc::I_O);
duke@435 1936 Node* fast_mem = call->in(TypeFunc::Memory);
duke@435 1937 // These two phis are pre-filled with copies of of the fast IO and Memory
duke@435 1938 Node* io_phi = PhiNode::make(result_rgn, fast_io, Type::ABIO);
duke@435 1939 Node* mem_phi = PhiNode::make(result_rgn, fast_mem, Type::MEMORY, TypePtr::BOTTOM);
duke@435 1940
duke@435 1941 result_rgn->init_req(2, control());
duke@435 1942 io_phi ->init_req(2, i_o());
duke@435 1943 mem_phi ->init_req(2, reset_memory());
duke@435 1944
duke@435 1945 set_all_memory( _gvn.transform(mem_phi) );
duke@435 1946 set_i_o( _gvn.transform(io_phi) );
duke@435 1947 }
duke@435 1948
duke@435 1949 set_control( _gvn.transform(result_rgn) );
duke@435 1950 }
duke@435 1951
duke@435 1952 //------------------------------return_current---------------------------------
duke@435 1953 // Append current _map to _exit_return
duke@435 1954 void Parse::return_current(Node* value) {
duke@435 1955 if (RegisterFinalizersAtInit &&
duke@435 1956 method()->intrinsic_id() == vmIntrinsics::_Object_init) {
duke@435 1957 call_register_finalizer();
duke@435 1958 }
duke@435 1959
duke@435 1960 // Do not set_parse_bci, so that return goo is credited to the return insn.
duke@435 1961 set_bci(InvocationEntryBci);
duke@435 1962 if (method()->is_synchronized() && GenerateSynchronizationCode) {
duke@435 1963 shared_unlock(_synch_lock->box_node(), _synch_lock->obj_node());
duke@435 1964 }
kvn@1215 1965 if (C->env()->dtrace_method_probes()) {
duke@435 1966 make_dtrace_method_exit(method());
duke@435 1967 }
duke@435 1968 SafePointNode* exit_return = _exits.map();
duke@435 1969 exit_return->in( TypeFunc::Control )->add_req( control() );
duke@435 1970 exit_return->in( TypeFunc::I_O )->add_req( i_o () );
duke@435 1971 Node *mem = exit_return->in( TypeFunc::Memory );
duke@435 1972 for (MergeMemStream mms(mem->as_MergeMem(), merged_memory()); mms.next_non_empty2(); ) {
duke@435 1973 if (mms.is_empty()) {
duke@435 1974 // get a copy of the base memory, and patch just this one input
duke@435 1975 const TypePtr* adr_type = mms.adr_type(C);
duke@435 1976 Node* phi = mms.force_memory()->as_Phi()->slice_memory(adr_type);
duke@435 1977 assert(phi->as_Phi()->region() == mms.base_memory()->in(0), "");
duke@435 1978 gvn().set_type_bottom(phi);
duke@435 1979 phi->del_req(phi->req()-1); // prepare to re-patch
duke@435 1980 mms.set_memory(phi);
duke@435 1981 }
duke@435 1982 mms.memory()->add_req(mms.memory2());
duke@435 1983 }
duke@435 1984
duke@435 1985 // frame pointer is always same, already captured
duke@435 1986 if (value != NULL) {
duke@435 1987 // If returning oops to an interface-return, there is a silent free
duke@435 1988 // cast from oop to interface allowed by the Verifier. Make it explicit
duke@435 1989 // here.
duke@435 1990 Node* phi = _exits.argument(0);
duke@435 1991 const TypeInstPtr *tr = phi->bottom_type()->isa_instptr();
duke@435 1992 if( tr && tr->klass()->is_loaded() &&
duke@435 1993 tr->klass()->is_interface() ) {
duke@435 1994 const TypeInstPtr *tp = value->bottom_type()->isa_instptr();
duke@435 1995 if (tp && tp->klass()->is_loaded() &&
duke@435 1996 !tp->klass()->is_interface()) {
duke@435 1997 // sharpen the type eagerly; this eases certain assert checking
duke@435 1998 if (tp->higher_equal(TypeInstPtr::NOTNULL))
duke@435 1999 tr = tr->join(TypeInstPtr::NOTNULL)->is_instptr();
duke@435 2000 value = _gvn.transform(new (C, 2) CheckCastPPNode(0,value,tr));
duke@435 2001 }
duke@435 2002 }
duke@435 2003 phi->add_req(value);
duke@435 2004 }
duke@435 2005
duke@435 2006 stop_and_kill_map(); // This CFG path dies here
duke@435 2007 }
duke@435 2008
duke@435 2009
duke@435 2010 //------------------------------add_safepoint----------------------------------
duke@435 2011 void Parse::add_safepoint() {
duke@435 2012 // See if we can avoid this safepoint. No need for a SafePoint immediately
duke@435 2013 // after a Call (except Leaf Call) or another SafePoint.
duke@435 2014 Node *proj = control();
duke@435 2015 bool add_poll_param = SafePointNode::needs_polling_address_input();
duke@435 2016 uint parms = add_poll_param ? TypeFunc::Parms+1 : TypeFunc::Parms;
duke@435 2017 if( proj->is_Proj() ) {
duke@435 2018 Node *n0 = proj->in(0);
duke@435 2019 if( n0->is_Catch() ) {
duke@435 2020 n0 = n0->in(0)->in(0);
duke@435 2021 assert( n0->is_Call(), "expect a call here" );
duke@435 2022 }
duke@435 2023 if( n0->is_Call() ) {
duke@435 2024 if( n0->as_Call()->guaranteed_safepoint() )
duke@435 2025 return;
duke@435 2026 } else if( n0->is_SafePoint() && n0->req() >= parms ) {
duke@435 2027 return;
duke@435 2028 }
duke@435 2029 }
duke@435 2030
duke@435 2031 // Clear out dead values from the debug info.
duke@435 2032 kill_dead_locals();
duke@435 2033
duke@435 2034 // Clone the JVM State
duke@435 2035 SafePointNode *sfpnt = new (C, parms) SafePointNode(parms, NULL);
duke@435 2036
duke@435 2037 // Capture memory state BEFORE a SafePoint. Since we can block at a
duke@435 2038 // SafePoint we need our GC state to be safe; i.e. we need all our current
duke@435 2039 // write barriers (card marks) to not float down after the SafePoint so we
duke@435 2040 // must read raw memory. Likewise we need all oop stores to match the card
duke@435 2041 // marks. If deopt can happen, we need ALL stores (we need the correct JVM
duke@435 2042 // state on a deopt).
duke@435 2043
duke@435 2044 // We do not need to WRITE the memory state after a SafePoint. The control
duke@435 2045 // edge will keep card-marks and oop-stores from floating up from below a
duke@435 2046 // SafePoint and our true dependency added here will keep them from floating
duke@435 2047 // down below a SafePoint.
duke@435 2048
duke@435 2049 // Clone the current memory state
duke@435 2050 Node* mem = MergeMemNode::make(C, map()->memory());
duke@435 2051
duke@435 2052 mem = _gvn.transform(mem);
duke@435 2053
duke@435 2054 // Pass control through the safepoint
duke@435 2055 sfpnt->init_req(TypeFunc::Control , control());
duke@435 2056 // Fix edges normally used by a call
duke@435 2057 sfpnt->init_req(TypeFunc::I_O , top() );
duke@435 2058 sfpnt->init_req(TypeFunc::Memory , mem );
duke@435 2059 sfpnt->init_req(TypeFunc::ReturnAdr, top() );
duke@435 2060 sfpnt->init_req(TypeFunc::FramePtr , top() );
duke@435 2061
duke@435 2062 // Create a node for the polling address
duke@435 2063 if( add_poll_param ) {
duke@435 2064 Node *polladr = ConPNode::make(C, (address)os::get_polling_page());
duke@435 2065 sfpnt->init_req(TypeFunc::Parms+0, _gvn.transform(polladr));
duke@435 2066 }
duke@435 2067
duke@435 2068 // Fix up the JVM State edges
duke@435 2069 add_safepoint_edges(sfpnt);
duke@435 2070 Node *transformed_sfpnt = _gvn.transform(sfpnt);
duke@435 2071 set_control(transformed_sfpnt);
duke@435 2072
duke@435 2073 // Provide an edge from root to safepoint. This makes the safepoint
duke@435 2074 // appear useful until the parse has completed.
duke@435 2075 if( OptoRemoveUseless && transformed_sfpnt->is_SafePoint() ) {
duke@435 2076 assert(C->root() != NULL, "Expect parse is still valid");
duke@435 2077 C->root()->add_prec(transformed_sfpnt);
duke@435 2078 }
duke@435 2079 }
duke@435 2080
duke@435 2081 #ifndef PRODUCT
duke@435 2082 //------------------------show_parse_info--------------------------------------
duke@435 2083 void Parse::show_parse_info() {
duke@435 2084 InlineTree* ilt = NULL;
duke@435 2085 if (C->ilt() != NULL) {
duke@435 2086 JVMState* caller_jvms = is_osr_parse() ? caller()->caller() : caller();
duke@435 2087 ilt = InlineTree::find_subtree_from_root(C->ilt(), caller_jvms, method());
duke@435 2088 }
duke@435 2089 if (PrintCompilation && Verbose) {
duke@435 2090 if (depth() == 1) {
duke@435 2091 if( ilt->count_inlines() ) {
duke@435 2092 tty->print(" __inlined %d (%d bytes)", ilt->count_inlines(),
duke@435 2093 ilt->count_inline_bcs());
duke@435 2094 tty->cr();
duke@435 2095 }
duke@435 2096 } else {
duke@435 2097 if (method()->is_synchronized()) tty->print("s");
duke@435 2098 if (method()->has_exception_handlers()) tty->print("!");
duke@435 2099 // Check this is not the final compiled version
duke@435 2100 if (C->trap_can_recompile()) {
duke@435 2101 tty->print("-");
duke@435 2102 } else {
duke@435 2103 tty->print(" ");
duke@435 2104 }
duke@435 2105 method()->print_short_name();
duke@435 2106 if (is_osr_parse()) {
duke@435 2107 tty->print(" @ %d", osr_bci());
duke@435 2108 }
duke@435 2109 tty->print(" (%d bytes)",method()->code_size());
duke@435 2110 if (ilt->count_inlines()) {
duke@435 2111 tty->print(" __inlined %d (%d bytes)", ilt->count_inlines(),
duke@435 2112 ilt->count_inline_bcs());
duke@435 2113 }
duke@435 2114 tty->cr();
duke@435 2115 }
duke@435 2116 }
duke@435 2117 if (PrintOpto && (depth() == 1 || PrintOptoInlining)) {
duke@435 2118 // Print that we succeeded; suppress this message on the first osr parse.
duke@435 2119
duke@435 2120 if (method()->is_synchronized()) tty->print("s");
duke@435 2121 if (method()->has_exception_handlers()) tty->print("!");
duke@435 2122 // Check this is not the final compiled version
duke@435 2123 if (C->trap_can_recompile() && depth() == 1) {
duke@435 2124 tty->print("-");
duke@435 2125 } else {
duke@435 2126 tty->print(" ");
duke@435 2127 }
duke@435 2128 if( depth() != 1 ) { tty->print(" "); } // missing compile count
duke@435 2129 for (int i = 1; i < depth(); ++i) { tty->print(" "); }
duke@435 2130 method()->print_short_name();
duke@435 2131 if (is_osr_parse()) {
duke@435 2132 tty->print(" @ %d", osr_bci());
duke@435 2133 }
duke@435 2134 if (ilt->caller_bci() != -1) {
duke@435 2135 tty->print(" @ %d", ilt->caller_bci());
duke@435 2136 }
duke@435 2137 tty->print(" (%d bytes)",method()->code_size());
duke@435 2138 if (ilt->count_inlines()) {
duke@435 2139 tty->print(" __inlined %d (%d bytes)", ilt->count_inlines(),
duke@435 2140 ilt->count_inline_bcs());
duke@435 2141 }
duke@435 2142 tty->cr();
duke@435 2143 }
duke@435 2144 }
duke@435 2145
duke@435 2146
duke@435 2147 //------------------------------dump-------------------------------------------
duke@435 2148 // Dump information associated with the bytecodes of current _method
duke@435 2149 void Parse::dump() {
duke@435 2150 if( method() != NULL ) {
duke@435 2151 // Iterate over bytecodes
duke@435 2152 ciBytecodeStream iter(method());
duke@435 2153 for( Bytecodes::Code bc = iter.next(); bc != ciBytecodeStream::EOBC() ; bc = iter.next() ) {
duke@435 2154 dump_bci( iter.cur_bci() );
duke@435 2155 tty->cr();
duke@435 2156 }
duke@435 2157 }
duke@435 2158 }
duke@435 2159
duke@435 2160 // Dump information associated with a byte code index, 'bci'
duke@435 2161 void Parse::dump_bci(int bci) {
duke@435 2162 // Output info on merge-points, cloning, and within _jsr..._ret
duke@435 2163 // NYI
duke@435 2164 tty->print(" bci:%d", bci);
duke@435 2165 }
duke@435 2166
duke@435 2167 #endif

mercurial