src/share/vm/opto/callGenerator.cpp

Tue, 09 Mar 2010 20:16:19 +0100

author
twisti
date
Tue, 09 Mar 2010 20:16:19 +0100
changeset 1730
3cf667df43ef
parent 1700
b4b440360f1e
child 1907
c18cbe5936b8
permissions
-rw-r--r--

6919934: JSR 292 needs to support x86 C1
Summary: This implements JSR 292 support for C1 x86.
Reviewed-by: never, jrose, kvn

duke@435 1 /*
twisti@1700 2 * Copyright 2000-2010 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/_callGenerator.cpp.incl"
duke@435 27
duke@435 28 CallGenerator::CallGenerator(ciMethod* method) {
duke@435 29 _method = method;
duke@435 30 }
duke@435 31
duke@435 32 // Utility function.
duke@435 33 const TypeFunc* CallGenerator::tf() const {
duke@435 34 return TypeFunc::make(method());
duke@435 35 }
duke@435 36
duke@435 37 //-----------------------------ParseGenerator---------------------------------
duke@435 38 // Internal class which handles all direct bytecode traversal.
duke@435 39 class ParseGenerator : public InlineCallGenerator {
duke@435 40 private:
duke@435 41 bool _is_osr;
duke@435 42 float _expected_uses;
duke@435 43
duke@435 44 public:
duke@435 45 ParseGenerator(ciMethod* method, float expected_uses, bool is_osr = false)
duke@435 46 : InlineCallGenerator(method)
duke@435 47 {
duke@435 48 _is_osr = is_osr;
duke@435 49 _expected_uses = expected_uses;
duke@435 50 assert(can_parse(method, is_osr), "parse must be possible");
duke@435 51 }
duke@435 52
duke@435 53 // Can we build either an OSR or a regular parser for this method?
duke@435 54 static bool can_parse(ciMethod* method, int is_osr = false);
duke@435 55
duke@435 56 virtual bool is_parse() const { return true; }
duke@435 57 virtual JVMState* generate(JVMState* jvms);
duke@435 58 int is_osr() { return _is_osr; }
duke@435 59
duke@435 60 };
duke@435 61
duke@435 62 JVMState* ParseGenerator::generate(JVMState* jvms) {
duke@435 63 Compile* C = Compile::current();
duke@435 64
duke@435 65 if (is_osr()) {
duke@435 66 // The JVMS for a OSR has a single argument (see its TypeFunc).
duke@435 67 assert(jvms->depth() == 1, "no inline OSR");
duke@435 68 }
duke@435 69
duke@435 70 if (C->failing()) {
duke@435 71 return NULL; // bailing out of the compile; do not try to parse
duke@435 72 }
duke@435 73
duke@435 74 Parse parser(jvms, method(), _expected_uses);
duke@435 75 // Grab signature for matching/allocation
duke@435 76 #ifdef ASSERT
duke@435 77 if (parser.tf() != (parser.depth() == 1 ? C->tf() : tf())) {
duke@435 78 MutexLockerEx ml(Compile_lock, Mutex::_no_safepoint_check_flag);
duke@435 79 assert(C->env()->system_dictionary_modification_counter_changed(),
duke@435 80 "Must invalidate if TypeFuncs differ");
duke@435 81 }
duke@435 82 #endif
duke@435 83
duke@435 84 GraphKit& exits = parser.exits();
duke@435 85
duke@435 86 if (C->failing()) {
duke@435 87 while (exits.pop_exception_state() != NULL) ;
duke@435 88 return NULL;
duke@435 89 }
duke@435 90
duke@435 91 assert(exits.jvms()->same_calls_as(jvms), "sanity");
duke@435 92
duke@435 93 // Simply return the exit state of the parser,
duke@435 94 // augmented by any exceptional states.
duke@435 95 return exits.transfer_exceptions_into_jvms();
duke@435 96 }
duke@435 97
duke@435 98 //---------------------------DirectCallGenerator------------------------------
duke@435 99 // Internal class which handles all out-of-line calls w/o receiver type checks.
duke@435 100 class DirectCallGenerator : public CallGenerator {
never@1515 101 private:
never@1515 102 CallStaticJavaNode* _call_node;
never@1515 103 // Force separate memory and I/O projections for the exceptional
never@1515 104 // paths to facilitate late inlinig.
never@1515 105 bool _separate_io_proj;
never@1515 106
never@1515 107 public:
never@1515 108 DirectCallGenerator(ciMethod* method, bool separate_io_proj)
never@1515 109 : CallGenerator(method),
never@1515 110 _separate_io_proj(separate_io_proj)
duke@435 111 {
duke@435 112 }
duke@435 113 virtual JVMState* generate(JVMState* jvms);
never@1515 114
never@1515 115 CallStaticJavaNode* call_node() const { return _call_node; }
duke@435 116 };
duke@435 117
duke@435 118 JVMState* DirectCallGenerator::generate(JVMState* jvms) {
duke@435 119 GraphKit kit(jvms);
duke@435 120 bool is_static = method()->is_static();
duke@435 121 address target = is_static ? SharedRuntime::get_resolve_static_call_stub()
duke@435 122 : SharedRuntime::get_resolve_opt_virtual_call_stub();
duke@435 123
duke@435 124 if (kit.C->log() != NULL) {
duke@435 125 kit.C->log()->elem("direct_call bci='%d'", jvms->bci());
duke@435 126 }
duke@435 127
duke@435 128 CallStaticJavaNode *call = new (kit.C, tf()->domain()->cnt()) CallStaticJavaNode(tf(), target, method(), kit.bci());
duke@435 129 if (!is_static) {
duke@435 130 // Make an explicit receiver null_check as part of this call.
duke@435 131 // Since we share a map with the caller, his JVMS gets adjusted.
duke@435 132 kit.null_check_receiver(method());
duke@435 133 if (kit.stopped()) {
duke@435 134 // And dump it back to the caller, decorated with any exceptions:
duke@435 135 return kit.transfer_exceptions_into_jvms();
duke@435 136 }
duke@435 137 // Mark the call node as virtual, sort of:
duke@435 138 call->set_optimized_virtual(true);
twisti@1700 139 if (method()->is_method_handle_invoke()) {
twisti@1572 140 call->set_method_handle_invoke(true);
twisti@1700 141 kit.C->set_has_method_handle_invokes(true);
twisti@1700 142 }
duke@435 143 }
duke@435 144 kit.set_arguments_for_java_call(call);
never@1515 145 kit.set_edges_for_java_call(call, false, _separate_io_proj);
never@1515 146 Node* ret = kit.set_results_for_java_call(call, _separate_io_proj);
duke@435 147 kit.push_node(method()->return_type()->basic_type(), ret);
never@1515 148 _call_node = call; // Save the call node in case we need it later
duke@435 149 return kit.transfer_exceptions_into_jvms();
duke@435 150 }
duke@435 151
twisti@1572 152 //---------------------------DynamicCallGenerator-----------------------------
twisti@1573 153 // Internal class which handles all out-of-line invokedynamic calls.
twisti@1572 154 class DynamicCallGenerator : public CallGenerator {
twisti@1572 155 public:
twisti@1572 156 DynamicCallGenerator(ciMethod* method)
twisti@1572 157 : CallGenerator(method)
twisti@1572 158 {
twisti@1572 159 }
twisti@1572 160 virtual JVMState* generate(JVMState* jvms);
twisti@1572 161 };
twisti@1572 162
twisti@1572 163 JVMState* DynamicCallGenerator::generate(JVMState* jvms) {
twisti@1572 164 GraphKit kit(jvms);
twisti@1572 165
twisti@1572 166 if (kit.C->log() != NULL) {
twisti@1572 167 kit.C->log()->elem("dynamic_call bci='%d'", jvms->bci());
twisti@1572 168 }
twisti@1572 169
twisti@1572 170 // Get the constant pool cache from the caller class.
twisti@1572 171 ciMethod* caller_method = jvms->method();
twisti@1572 172 ciBytecodeStream str(caller_method);
twisti@1572 173 str.force_bci(jvms->bci()); // Set the stream to the invokedynamic bci.
twisti@1572 174 assert(str.cur_bc() == Bytecodes::_invokedynamic, "wrong place to issue a dynamic call!");
twisti@1572 175 ciCPCache* cpcache = str.get_cpcache();
twisti@1572 176
twisti@1572 177 // Get the offset of the CallSite from the constant pool cache
twisti@1572 178 // pointer.
twisti@1572 179 int index = str.get_method_index();
twisti@1572 180 size_t call_site_offset = cpcache->get_f1_offset(index);
twisti@1572 181
twisti@1572 182 // Load the CallSite object from the constant pool cache.
twisti@1572 183 const TypeOopPtr* cpcache_ptr = TypeOopPtr::make_from_constant(cpcache);
twisti@1573 184 Node* cpcache_adr = kit.makecon(cpcache_ptr);
twisti@1573 185 Node* call_site_adr = kit.basic_plus_adr(cpcache_adr, cpcache_adr, call_site_offset);
twisti@1573 186 Node* call_site = kit.make_load(kit.control(), call_site_adr, TypeInstPtr::BOTTOM, T_OBJECT, Compile::AliasIdxRaw);
twisti@1572 187
twisti@1573 188 // Load the target MethodHandle from the CallSite object.
twisti@1573 189 Node* target_mh_adr = kit.basic_plus_adr(call_site, call_site, java_dyn_CallSite::target_offset_in_bytes());
twisti@1573 190 Node* target_mh = kit.make_load(kit.control(), target_mh_adr, TypeInstPtr::BOTTOM, T_OBJECT);
twisti@1572 191
twisti@1573 192 address resolve_stub = SharedRuntime::get_resolve_opt_virtual_call_stub();
twisti@1572 193
twisti@1573 194 CallStaticJavaNode *call = new (kit.C, tf()->domain()->cnt()) CallStaticJavaNode(tf(), resolve_stub, method(), kit.bci());
twisti@1572 195 // invokedynamic is treated as an optimized invokevirtual.
twisti@1572 196 call->set_optimized_virtual(true);
twisti@1572 197 // Take extra care (in the presence of argument motion) not to trash the SP:
twisti@1572 198 call->set_method_handle_invoke(true);
twisti@1700 199 kit.C->set_has_method_handle_invokes(true);
twisti@1572 200
twisti@1573 201 // Pass the target MethodHandle as first argument and shift the
twisti@1573 202 // other arguments.
twisti@1573 203 call->init_req(0 + TypeFunc::Parms, target_mh);
twisti@1572 204 uint nargs = call->method()->arg_size();
twisti@1572 205 for (uint i = 1; i < nargs; i++) {
twisti@1572 206 Node* arg = kit.argument(i - 1);
twisti@1572 207 call->init_req(i + TypeFunc::Parms, arg);
twisti@1572 208 }
twisti@1572 209
twisti@1572 210 kit.set_edges_for_java_call(call);
twisti@1572 211 Node* ret = kit.set_results_for_java_call(call);
twisti@1572 212 kit.push_node(method()->return_type()->basic_type(), ret);
twisti@1572 213 return kit.transfer_exceptions_into_jvms();
twisti@1572 214 }
twisti@1572 215
twisti@1572 216 //--------------------------VirtualCallGenerator------------------------------
twisti@1572 217 // Internal class which handles all out-of-line calls checking receiver type.
duke@435 218 class VirtualCallGenerator : public CallGenerator {
duke@435 219 private:
duke@435 220 int _vtable_index;
duke@435 221 public:
duke@435 222 VirtualCallGenerator(ciMethod* method, int vtable_index)
duke@435 223 : CallGenerator(method), _vtable_index(vtable_index)
duke@435 224 {
duke@435 225 assert(vtable_index == methodOopDesc::invalid_vtable_index ||
duke@435 226 vtable_index >= 0, "either invalid or usable");
duke@435 227 }
duke@435 228 virtual bool is_virtual() const { return true; }
duke@435 229 virtual JVMState* generate(JVMState* jvms);
duke@435 230 };
duke@435 231
duke@435 232 JVMState* VirtualCallGenerator::generate(JVMState* jvms) {
duke@435 233 GraphKit kit(jvms);
duke@435 234 Node* receiver = kit.argument(0);
duke@435 235
duke@435 236 if (kit.C->log() != NULL) {
duke@435 237 kit.C->log()->elem("virtual_call bci='%d'", jvms->bci());
duke@435 238 }
duke@435 239
duke@435 240 // If the receiver is a constant null, do not torture the system
duke@435 241 // by attempting to call through it. The compile will proceed
duke@435 242 // correctly, but may bail out in final_graph_reshaping, because
duke@435 243 // the call instruction will have a seemingly deficient out-count.
duke@435 244 // (The bailout says something misleading about an "infinite loop".)
duke@435 245 if (kit.gvn().type(receiver)->higher_equal(TypePtr::NULL_PTR)) {
duke@435 246 kit.inc_sp(method()->arg_size()); // restore arguments
duke@435 247 kit.uncommon_trap(Deoptimization::Reason_null_check,
duke@435 248 Deoptimization::Action_none,
duke@435 249 NULL, "null receiver");
duke@435 250 return kit.transfer_exceptions_into_jvms();
duke@435 251 }
duke@435 252
duke@435 253 // Ideally we would unconditionally do a null check here and let it
duke@435 254 // be converted to an implicit check based on profile information.
duke@435 255 // However currently the conversion to implicit null checks in
duke@435 256 // Block::implicit_null_check() only looks for loads and stores, not calls.
duke@435 257 ciMethod *caller = kit.method();
duke@435 258 ciMethodData *caller_md = (caller == NULL) ? NULL : caller->method_data();
duke@435 259 if (!UseInlineCaches || !ImplicitNullChecks ||
duke@435 260 ((ImplicitNullCheckThreshold > 0) && caller_md &&
duke@435 261 (caller_md->trap_count(Deoptimization::Reason_null_check)
duke@435 262 >= (uint)ImplicitNullCheckThreshold))) {
duke@435 263 // Make an explicit receiver null_check as part of this call.
duke@435 264 // Since we share a map with the caller, his JVMS gets adjusted.
duke@435 265 receiver = kit.null_check_receiver(method());
duke@435 266 if (kit.stopped()) {
duke@435 267 // And dump it back to the caller, decorated with any exceptions:
duke@435 268 return kit.transfer_exceptions_into_jvms();
duke@435 269 }
duke@435 270 }
duke@435 271
duke@435 272 assert(!method()->is_static(), "virtual call must not be to static");
duke@435 273 assert(!method()->is_final(), "virtual call should not be to final");
duke@435 274 assert(!method()->is_private(), "virtual call should not be to private");
duke@435 275 assert(_vtable_index == methodOopDesc::invalid_vtable_index || !UseInlineCaches,
duke@435 276 "no vtable calls if +UseInlineCaches ");
duke@435 277 address target = SharedRuntime::get_resolve_virtual_call_stub();
duke@435 278 // Normal inline cache used for call
duke@435 279 CallDynamicJavaNode *call = new (kit.C, tf()->domain()->cnt()) CallDynamicJavaNode(tf(), target, method(), _vtable_index, kit.bci());
duke@435 280 kit.set_arguments_for_java_call(call);
duke@435 281 kit.set_edges_for_java_call(call);
duke@435 282 Node* ret = kit.set_results_for_java_call(call);
duke@435 283 kit.push_node(method()->return_type()->basic_type(), ret);
duke@435 284
duke@435 285 // Represent the effect of an implicit receiver null_check
duke@435 286 // as part of this call. Since we share a map with the caller,
duke@435 287 // his JVMS gets adjusted.
duke@435 288 kit.cast_not_null(receiver);
duke@435 289 return kit.transfer_exceptions_into_jvms();
duke@435 290 }
duke@435 291
duke@435 292 bool ParseGenerator::can_parse(ciMethod* m, int entry_bci) {
duke@435 293 // Certain methods cannot be parsed at all:
duke@435 294 if (!m->can_be_compiled()) return false;
duke@435 295 if (!m->has_balanced_monitors()) return false;
duke@435 296 if (m->get_flow_analysis()->failing()) return false;
duke@435 297
duke@435 298 // (Methods may bail out for other reasons, after the parser is run.
duke@435 299 // We try to avoid this, but if forced, we must return (Node*)NULL.
duke@435 300 // The user of the CallGenerator must check for this condition.)
duke@435 301 return true;
duke@435 302 }
duke@435 303
duke@435 304 CallGenerator* CallGenerator::for_inline(ciMethod* m, float expected_uses) {
duke@435 305 if (!ParseGenerator::can_parse(m)) return NULL;
duke@435 306 return new ParseGenerator(m, expected_uses);
duke@435 307 }
duke@435 308
duke@435 309 // As a special case, the JVMS passed to this CallGenerator is
duke@435 310 // for the method execution already in progress, not just the JVMS
duke@435 311 // of the caller. Thus, this CallGenerator cannot be mixed with others!
duke@435 312 CallGenerator* CallGenerator::for_osr(ciMethod* m, int osr_bci) {
duke@435 313 if (!ParseGenerator::can_parse(m, true)) return NULL;
duke@435 314 float past_uses = m->interpreter_invocation_count();
duke@435 315 float expected_uses = past_uses;
duke@435 316 return new ParseGenerator(m, expected_uses, true);
duke@435 317 }
duke@435 318
never@1515 319 CallGenerator* CallGenerator::for_direct_call(ciMethod* m, bool separate_io_proj) {
duke@435 320 assert(!m->is_abstract(), "for_direct_call mismatch");
never@1515 321 return new DirectCallGenerator(m, separate_io_proj);
duke@435 322 }
duke@435 323
twisti@1572 324 CallGenerator* CallGenerator::for_dynamic_call(ciMethod* m) {
twisti@1572 325 assert(m->is_method_handle_invoke(), "for_dynamic_call mismatch");
twisti@1572 326 return new DynamicCallGenerator(m);
twisti@1572 327 }
twisti@1572 328
duke@435 329 CallGenerator* CallGenerator::for_virtual_call(ciMethod* m, int vtable_index) {
duke@435 330 assert(!m->is_static(), "for_virtual_call mismatch");
twisti@1572 331 assert(!m->is_method_handle_invoke(), "should be a direct call");
duke@435 332 return new VirtualCallGenerator(m, vtable_index);
duke@435 333 }
duke@435 334
never@1515 335 // Allow inlining decisions to be delayed
never@1515 336 class LateInlineCallGenerator : public DirectCallGenerator {
never@1515 337 CallGenerator* _inline_cg;
never@1515 338
never@1515 339 public:
never@1515 340 LateInlineCallGenerator(ciMethod* method, CallGenerator* inline_cg) :
never@1515 341 DirectCallGenerator(method, true), _inline_cg(inline_cg) {}
never@1515 342
never@1515 343 virtual bool is_late_inline() const { return true; }
never@1515 344
never@1515 345 // Convert the CallStaticJava into an inline
never@1515 346 virtual void do_late_inline();
never@1515 347
never@1515 348 JVMState* generate(JVMState* jvms) {
never@1515 349 // Record that this call site should be revisited once the main
never@1515 350 // parse is finished.
never@1515 351 Compile::current()->add_late_inline(this);
never@1515 352
never@1515 353 // Emit the CallStaticJava and request separate projections so
never@1515 354 // that the late inlining logic can distinguish between fall
never@1515 355 // through and exceptional uses of the memory and io projections
never@1515 356 // as is done for allocations and macro expansion.
never@1515 357 return DirectCallGenerator::generate(jvms);
never@1515 358 }
never@1515 359
never@1515 360 };
never@1515 361
never@1515 362
never@1515 363 void LateInlineCallGenerator::do_late_inline() {
never@1515 364 // Can't inline it
never@1515 365 if (call_node() == NULL || call_node()->outcnt() == 0 ||
never@1515 366 call_node()->in(0) == NULL || call_node()->in(0)->is_top())
never@1515 367 return;
never@1515 368
never@1515 369 CallStaticJavaNode* call = call_node();
never@1515 370
never@1515 371 // Make a clone of the JVMState that appropriate to use for driving a parse
never@1515 372 Compile* C = Compile::current();
never@1515 373 JVMState* jvms = call->jvms()->clone_shallow(C);
never@1515 374 uint size = call->req();
never@1515 375 SafePointNode* map = new (C, size) SafePointNode(size, jvms);
never@1515 376 for (uint i1 = 0; i1 < size; i1++) {
never@1515 377 map->init_req(i1, call->in(i1));
never@1515 378 }
never@1515 379
never@1515 380 // Make sure the state is a MergeMem for parsing.
never@1515 381 if (!map->in(TypeFunc::Memory)->is_MergeMem()) {
never@1515 382 map->set_req(TypeFunc::Memory, MergeMemNode::make(C, map->in(TypeFunc::Memory)));
never@1515 383 }
never@1515 384
never@1515 385 // Make enough space for the expression stack and transfer the incoming arguments
never@1515 386 int nargs = method()->arg_size();
never@1515 387 jvms->set_map(map);
never@1515 388 map->ensure_stack(jvms, jvms->method()->max_stack());
never@1515 389 if (nargs > 0) {
never@1515 390 for (int i1 = 0; i1 < nargs; i1++) {
never@1515 391 map->set_req(i1 + jvms->argoff(), call->in(TypeFunc::Parms + i1));
never@1515 392 }
never@1515 393 }
never@1515 394
never@1515 395 CompileLog* log = C->log();
never@1515 396 if (log != NULL) {
never@1515 397 log->head("late_inline method='%d'", log->identify(method()));
never@1515 398 JVMState* p = jvms;
never@1515 399 while (p != NULL) {
never@1515 400 log->elem("jvms bci='%d' method='%d'", p->bci(), log->identify(p->method()));
never@1515 401 p = p->caller();
never@1515 402 }
never@1515 403 log->tail("late_inline");
never@1515 404 }
never@1515 405
never@1515 406 // Setup default node notes to be picked up by the inlining
never@1515 407 Node_Notes* old_nn = C->default_node_notes();
never@1515 408 if (old_nn != NULL) {
never@1515 409 Node_Notes* entry_nn = old_nn->clone(C);
never@1515 410 entry_nn->set_jvms(jvms);
never@1515 411 C->set_default_node_notes(entry_nn);
never@1515 412 }
never@1515 413
never@1515 414 // Now perform the inling using the synthesized JVMState
never@1515 415 JVMState* new_jvms = _inline_cg->generate(jvms);
never@1515 416 if (new_jvms == NULL) return; // no change
never@1515 417 if (C->failing()) return;
never@1515 418
never@1515 419 // Capture any exceptional control flow
never@1515 420 GraphKit kit(new_jvms);
never@1515 421
never@1515 422 // Find the result object
never@1515 423 Node* result = C->top();
never@1515 424 int result_size = method()->return_type()->size();
never@1515 425 if (result_size != 0 && !kit.stopped()) {
never@1515 426 result = (result_size == 1) ? kit.pop() : kit.pop_pair();
never@1515 427 }
never@1515 428
never@1515 429 kit.replace_call(call, result);
never@1515 430 }
never@1515 431
never@1515 432
never@1515 433 CallGenerator* CallGenerator::for_late_inline(ciMethod* method, CallGenerator* inline_cg) {
never@1515 434 return new LateInlineCallGenerator(method, inline_cg);
never@1515 435 }
never@1515 436
duke@435 437
duke@435 438 //---------------------------WarmCallGenerator--------------------------------
duke@435 439 // Internal class which handles initial deferral of inlining decisions.
duke@435 440 class WarmCallGenerator : public CallGenerator {
duke@435 441 WarmCallInfo* _call_info;
duke@435 442 CallGenerator* _if_cold;
duke@435 443 CallGenerator* _if_hot;
duke@435 444 bool _is_virtual; // caches virtuality of if_cold
duke@435 445 bool _is_inline; // caches inline-ness of if_hot
duke@435 446
duke@435 447 public:
duke@435 448 WarmCallGenerator(WarmCallInfo* ci,
duke@435 449 CallGenerator* if_cold,
duke@435 450 CallGenerator* if_hot)
duke@435 451 : CallGenerator(if_cold->method())
duke@435 452 {
duke@435 453 assert(method() == if_hot->method(), "consistent choices");
duke@435 454 _call_info = ci;
duke@435 455 _if_cold = if_cold;
duke@435 456 _if_hot = if_hot;
duke@435 457 _is_virtual = if_cold->is_virtual();
duke@435 458 _is_inline = if_hot->is_inline();
duke@435 459 }
duke@435 460
duke@435 461 virtual bool is_inline() const { return _is_inline; }
duke@435 462 virtual bool is_virtual() const { return _is_virtual; }
duke@435 463 virtual bool is_deferred() const { return true; }
duke@435 464
duke@435 465 virtual JVMState* generate(JVMState* jvms);
duke@435 466 };
duke@435 467
duke@435 468
duke@435 469 CallGenerator* CallGenerator::for_warm_call(WarmCallInfo* ci,
duke@435 470 CallGenerator* if_cold,
duke@435 471 CallGenerator* if_hot) {
duke@435 472 return new WarmCallGenerator(ci, if_cold, if_hot);
duke@435 473 }
duke@435 474
duke@435 475 JVMState* WarmCallGenerator::generate(JVMState* jvms) {
duke@435 476 Compile* C = Compile::current();
duke@435 477 if (C->log() != NULL) {
duke@435 478 C->log()->elem("warm_call bci='%d'", jvms->bci());
duke@435 479 }
duke@435 480 jvms = _if_cold->generate(jvms);
duke@435 481 if (jvms != NULL) {
duke@435 482 Node* m = jvms->map()->control();
duke@435 483 if (m->is_CatchProj()) m = m->in(0); else m = C->top();
duke@435 484 if (m->is_Catch()) m = m->in(0); else m = C->top();
duke@435 485 if (m->is_Proj()) m = m->in(0); else m = C->top();
duke@435 486 if (m->is_CallJava()) {
duke@435 487 _call_info->set_call(m->as_Call());
duke@435 488 _call_info->set_hot_cg(_if_hot);
duke@435 489 #ifndef PRODUCT
duke@435 490 if (PrintOpto || PrintOptoInlining) {
duke@435 491 tty->print_cr("Queueing for warm inlining at bci %d:", jvms->bci());
duke@435 492 tty->print("WCI: ");
duke@435 493 _call_info->print();
duke@435 494 }
duke@435 495 #endif
duke@435 496 _call_info->set_heat(_call_info->compute_heat());
duke@435 497 C->set_warm_calls(_call_info->insert_into(C->warm_calls()));
duke@435 498 }
duke@435 499 }
duke@435 500 return jvms;
duke@435 501 }
duke@435 502
duke@435 503 void WarmCallInfo::make_hot() {
never@1515 504 Unimplemented();
duke@435 505 }
duke@435 506
duke@435 507 void WarmCallInfo::make_cold() {
duke@435 508 // No action: Just dequeue.
duke@435 509 }
duke@435 510
duke@435 511
duke@435 512 //------------------------PredictedCallGenerator------------------------------
duke@435 513 // Internal class which handles all out-of-line calls checking receiver type.
duke@435 514 class PredictedCallGenerator : public CallGenerator {
duke@435 515 ciKlass* _predicted_receiver;
duke@435 516 CallGenerator* _if_missed;
duke@435 517 CallGenerator* _if_hit;
duke@435 518 float _hit_prob;
duke@435 519
duke@435 520 public:
duke@435 521 PredictedCallGenerator(ciKlass* predicted_receiver,
duke@435 522 CallGenerator* if_missed,
duke@435 523 CallGenerator* if_hit, float hit_prob)
duke@435 524 : CallGenerator(if_missed->method())
duke@435 525 {
duke@435 526 // The call profile data may predict the hit_prob as extreme as 0 or 1.
duke@435 527 // Remove the extremes values from the range.
duke@435 528 if (hit_prob > PROB_MAX) hit_prob = PROB_MAX;
duke@435 529 if (hit_prob < PROB_MIN) hit_prob = PROB_MIN;
duke@435 530
duke@435 531 _predicted_receiver = predicted_receiver;
duke@435 532 _if_missed = if_missed;
duke@435 533 _if_hit = if_hit;
duke@435 534 _hit_prob = hit_prob;
duke@435 535 }
duke@435 536
duke@435 537 virtual bool is_virtual() const { return true; }
duke@435 538 virtual bool is_inline() const { return _if_hit->is_inline(); }
duke@435 539 virtual bool is_deferred() const { return _if_hit->is_deferred(); }
duke@435 540
duke@435 541 virtual JVMState* generate(JVMState* jvms);
duke@435 542 };
duke@435 543
duke@435 544
duke@435 545 CallGenerator* CallGenerator::for_predicted_call(ciKlass* predicted_receiver,
duke@435 546 CallGenerator* if_missed,
duke@435 547 CallGenerator* if_hit,
duke@435 548 float hit_prob) {
duke@435 549 return new PredictedCallGenerator(predicted_receiver, if_missed, if_hit, hit_prob);
duke@435 550 }
duke@435 551
duke@435 552
duke@435 553 JVMState* PredictedCallGenerator::generate(JVMState* jvms) {
duke@435 554 GraphKit kit(jvms);
duke@435 555 PhaseGVN& gvn = kit.gvn();
duke@435 556 // We need an explicit receiver null_check before checking its type.
duke@435 557 // We share a map with the caller, so his JVMS gets adjusted.
duke@435 558 Node* receiver = kit.argument(0);
duke@435 559
duke@435 560 CompileLog* log = kit.C->log();
duke@435 561 if (log != NULL) {
duke@435 562 log->elem("predicted_call bci='%d' klass='%d'",
duke@435 563 jvms->bci(), log->identify(_predicted_receiver));
duke@435 564 }
duke@435 565
duke@435 566 receiver = kit.null_check_receiver(method());
duke@435 567 if (kit.stopped()) {
duke@435 568 return kit.transfer_exceptions_into_jvms();
duke@435 569 }
duke@435 570
duke@435 571 Node* exact_receiver = receiver; // will get updated in place...
duke@435 572 Node* slow_ctl = kit.type_check_receiver(receiver,
duke@435 573 _predicted_receiver, _hit_prob,
duke@435 574 &exact_receiver);
duke@435 575
duke@435 576 SafePointNode* slow_map = NULL;
duke@435 577 JVMState* slow_jvms;
duke@435 578 { PreserveJVMState pjvms(&kit);
duke@435 579 kit.set_control(slow_ctl);
duke@435 580 if (!kit.stopped()) {
duke@435 581 slow_jvms = _if_missed->generate(kit.sync_jvms());
duke@435 582 assert(slow_jvms != NULL, "miss path must not fail to generate");
duke@435 583 kit.add_exception_states_from(slow_jvms);
duke@435 584 kit.set_map(slow_jvms->map());
duke@435 585 if (!kit.stopped())
duke@435 586 slow_map = kit.stop();
duke@435 587 }
duke@435 588 }
duke@435 589
kvn@728 590 if (kit.stopped()) {
kvn@728 591 // Instance exactly does not matches the desired type.
kvn@728 592 kit.set_jvms(slow_jvms);
kvn@728 593 return kit.transfer_exceptions_into_jvms();
kvn@728 594 }
kvn@728 595
duke@435 596 // fall through if the instance exactly matches the desired type
duke@435 597 kit.replace_in_map(receiver, exact_receiver);
duke@435 598
duke@435 599 // Make the hot call:
duke@435 600 JVMState* new_jvms = _if_hit->generate(kit.sync_jvms());
duke@435 601 if (new_jvms == NULL) {
duke@435 602 // Inline failed, so make a direct call.
duke@435 603 assert(_if_hit->is_inline(), "must have been a failed inline");
duke@435 604 CallGenerator* cg = CallGenerator::for_direct_call(_if_hit->method());
duke@435 605 new_jvms = cg->generate(kit.sync_jvms());
duke@435 606 }
duke@435 607 kit.add_exception_states_from(new_jvms);
duke@435 608 kit.set_jvms(new_jvms);
duke@435 609
duke@435 610 // Need to merge slow and fast?
duke@435 611 if (slow_map == NULL) {
duke@435 612 // The fast path is the only path remaining.
duke@435 613 return kit.transfer_exceptions_into_jvms();
duke@435 614 }
duke@435 615
duke@435 616 if (kit.stopped()) {
duke@435 617 // Inlined method threw an exception, so it's just the slow path after all.
duke@435 618 kit.set_jvms(slow_jvms);
duke@435 619 return kit.transfer_exceptions_into_jvms();
duke@435 620 }
duke@435 621
duke@435 622 // Finish the diamond.
duke@435 623 kit.C->set_has_split_ifs(true); // Has chance for split-if optimization
duke@435 624 RegionNode* region = new (kit.C, 3) RegionNode(3);
duke@435 625 region->init_req(1, kit.control());
duke@435 626 region->init_req(2, slow_map->control());
duke@435 627 kit.set_control(gvn.transform(region));
duke@435 628 Node* iophi = PhiNode::make(region, kit.i_o(), Type::ABIO);
duke@435 629 iophi->set_req(2, slow_map->i_o());
duke@435 630 kit.set_i_o(gvn.transform(iophi));
duke@435 631 kit.merge_memory(slow_map->merged_memory(), region, 2);
duke@435 632 uint tos = kit.jvms()->stkoff() + kit.sp();
duke@435 633 uint limit = slow_map->req();
duke@435 634 for (uint i = TypeFunc::Parms; i < limit; i++) {
duke@435 635 // Skip unused stack slots; fast forward to monoff();
duke@435 636 if (i == tos) {
duke@435 637 i = kit.jvms()->monoff();
duke@435 638 if( i >= limit ) break;
duke@435 639 }
duke@435 640 Node* m = kit.map()->in(i);
duke@435 641 Node* n = slow_map->in(i);
duke@435 642 if (m != n) {
duke@435 643 const Type* t = gvn.type(m)->meet(gvn.type(n));
duke@435 644 Node* phi = PhiNode::make(region, m, t);
duke@435 645 phi->set_req(2, n);
duke@435 646 kit.map()->set_req(i, gvn.transform(phi));
duke@435 647 }
duke@435 648 }
duke@435 649 return kit.transfer_exceptions_into_jvms();
duke@435 650 }
duke@435 651
duke@435 652
twisti@1573 653 //------------------------PredictedDynamicCallGenerator-----------------------
twisti@1573 654 // Internal class which handles all out-of-line calls checking receiver type.
twisti@1573 655 class PredictedDynamicCallGenerator : public CallGenerator {
twisti@1573 656 ciMethodHandle* _predicted_method_handle;
twisti@1573 657 CallGenerator* _if_missed;
twisti@1573 658 CallGenerator* _if_hit;
twisti@1573 659 float _hit_prob;
twisti@1573 660
twisti@1573 661 public:
twisti@1573 662 PredictedDynamicCallGenerator(ciMethodHandle* predicted_method_handle,
twisti@1573 663 CallGenerator* if_missed,
twisti@1573 664 CallGenerator* if_hit,
twisti@1573 665 float hit_prob)
twisti@1573 666 : CallGenerator(if_missed->method()),
twisti@1573 667 _predicted_method_handle(predicted_method_handle),
twisti@1573 668 _if_missed(if_missed),
twisti@1573 669 _if_hit(if_hit),
twisti@1573 670 _hit_prob(hit_prob)
twisti@1573 671 {}
twisti@1573 672
twisti@1573 673 virtual bool is_inline() const { return _if_hit->is_inline(); }
twisti@1573 674 virtual bool is_deferred() const { return _if_hit->is_deferred(); }
twisti@1573 675
twisti@1573 676 virtual JVMState* generate(JVMState* jvms);
twisti@1573 677 };
twisti@1573 678
twisti@1573 679
twisti@1573 680 CallGenerator* CallGenerator::for_predicted_dynamic_call(ciMethodHandle* predicted_method_handle,
twisti@1573 681 CallGenerator* if_missed,
twisti@1573 682 CallGenerator* if_hit,
twisti@1573 683 float hit_prob) {
twisti@1573 684 return new PredictedDynamicCallGenerator(predicted_method_handle, if_missed, if_hit, hit_prob);
twisti@1573 685 }
twisti@1573 686
twisti@1573 687
twisti@1573 688 JVMState* PredictedDynamicCallGenerator::generate(JVMState* jvms) {
twisti@1573 689 GraphKit kit(jvms);
twisti@1573 690 PhaseGVN& gvn = kit.gvn();
twisti@1573 691
twisti@1573 692 CompileLog* log = kit.C->log();
twisti@1573 693 if (log != NULL) {
twisti@1573 694 log->elem("predicted_dynamic_call bci='%d'", jvms->bci());
twisti@1573 695 }
twisti@1573 696
twisti@1573 697 // Get the constant pool cache from the caller class.
twisti@1573 698 ciMethod* caller_method = jvms->method();
twisti@1573 699 ciBytecodeStream str(caller_method);
twisti@1573 700 str.force_bci(jvms->bci()); // Set the stream to the invokedynamic bci.
twisti@1573 701 ciCPCache* cpcache = str.get_cpcache();
twisti@1573 702
twisti@1573 703 // Get the offset of the CallSite from the constant pool cache
twisti@1573 704 // pointer.
twisti@1573 705 int index = str.get_method_index();
twisti@1573 706 size_t call_site_offset = cpcache->get_f1_offset(index);
twisti@1573 707
twisti@1573 708 // Load the CallSite object from the constant pool cache.
twisti@1573 709 const TypeOopPtr* cpcache_ptr = TypeOopPtr::make_from_constant(cpcache);
twisti@1573 710 Node* cpcache_adr = kit.makecon(cpcache_ptr);
twisti@1573 711 Node* call_site_adr = kit.basic_plus_adr(cpcache_adr, cpcache_adr, call_site_offset);
twisti@1573 712 Node* call_site = kit.make_load(kit.control(), call_site_adr, TypeInstPtr::BOTTOM, T_OBJECT, Compile::AliasIdxRaw);
twisti@1573 713
twisti@1573 714 // Load the target MethodHandle from the CallSite object.
twisti@1573 715 Node* target_adr = kit.basic_plus_adr(call_site, call_site, java_dyn_CallSite::target_offset_in_bytes());
twisti@1573 716 Node* target_mh = kit.make_load(kit.control(), target_adr, TypeInstPtr::BOTTOM, T_OBJECT);
twisti@1573 717
twisti@1573 718 // Check if the MethodHandle is still the same.
twisti@1573 719 const TypeOopPtr* predicted_mh_ptr = TypeOopPtr::make_from_constant(_predicted_method_handle, true);
twisti@1573 720 Node* predicted_mh = kit.makecon(predicted_mh_ptr);
twisti@1573 721
twisti@1573 722 Node* cmp = gvn.transform(new(kit.C, 3) CmpPNode(target_mh, predicted_mh));
twisti@1573 723 Node* bol = gvn.transform(new(kit.C, 2) BoolNode(cmp, BoolTest::eq) );
twisti@1573 724 IfNode* iff = kit.create_and_xform_if(kit.control(), bol, _hit_prob, COUNT_UNKNOWN);
twisti@1573 725 kit.set_control( gvn.transform(new(kit.C, 1) IfTrueNode (iff)));
twisti@1573 726 Node* slow_ctl = gvn.transform(new(kit.C, 1) IfFalseNode(iff));
twisti@1573 727
twisti@1573 728 SafePointNode* slow_map = NULL;
twisti@1573 729 JVMState* slow_jvms;
twisti@1573 730 { PreserveJVMState pjvms(&kit);
twisti@1573 731 kit.set_control(slow_ctl);
twisti@1573 732 if (!kit.stopped()) {
twisti@1573 733 slow_jvms = _if_missed->generate(kit.sync_jvms());
twisti@1573 734 assert(slow_jvms != NULL, "miss path must not fail to generate");
twisti@1573 735 kit.add_exception_states_from(slow_jvms);
twisti@1573 736 kit.set_map(slow_jvms->map());
twisti@1573 737 if (!kit.stopped())
twisti@1573 738 slow_map = kit.stop();
twisti@1573 739 }
twisti@1573 740 }
twisti@1573 741
twisti@1573 742 if (kit.stopped()) {
twisti@1573 743 // Instance exactly does not matches the desired type.
twisti@1573 744 kit.set_jvms(slow_jvms);
twisti@1573 745 return kit.transfer_exceptions_into_jvms();
twisti@1573 746 }
twisti@1573 747
twisti@1573 748 // Make the hot call:
twisti@1573 749 JVMState* new_jvms = _if_hit->generate(kit.sync_jvms());
twisti@1573 750 if (new_jvms == NULL) {
twisti@1573 751 // Inline failed, so make a direct call.
twisti@1573 752 assert(_if_hit->is_inline(), "must have been a failed inline");
twisti@1573 753 CallGenerator* cg = CallGenerator::for_direct_call(_if_hit->method());
twisti@1573 754 new_jvms = cg->generate(kit.sync_jvms());
twisti@1573 755 }
twisti@1573 756 kit.add_exception_states_from(new_jvms);
twisti@1573 757 kit.set_jvms(new_jvms);
twisti@1573 758
twisti@1573 759 // Need to merge slow and fast?
twisti@1573 760 if (slow_map == NULL) {
twisti@1573 761 // The fast path is the only path remaining.
twisti@1573 762 return kit.transfer_exceptions_into_jvms();
twisti@1573 763 }
twisti@1573 764
twisti@1573 765 if (kit.stopped()) {
twisti@1573 766 // Inlined method threw an exception, so it's just the slow path after all.
twisti@1573 767 kit.set_jvms(slow_jvms);
twisti@1573 768 return kit.transfer_exceptions_into_jvms();
twisti@1573 769 }
twisti@1573 770
twisti@1573 771 // Finish the diamond.
twisti@1573 772 kit.C->set_has_split_ifs(true); // Has chance for split-if optimization
twisti@1573 773 RegionNode* region = new (kit.C, 3) RegionNode(3);
twisti@1573 774 region->init_req(1, kit.control());
twisti@1573 775 region->init_req(2, slow_map->control());
twisti@1573 776 kit.set_control(gvn.transform(region));
twisti@1573 777 Node* iophi = PhiNode::make(region, kit.i_o(), Type::ABIO);
twisti@1573 778 iophi->set_req(2, slow_map->i_o());
twisti@1573 779 kit.set_i_o(gvn.transform(iophi));
twisti@1573 780 kit.merge_memory(slow_map->merged_memory(), region, 2);
twisti@1573 781 uint tos = kit.jvms()->stkoff() + kit.sp();
twisti@1573 782 uint limit = slow_map->req();
twisti@1573 783 for (uint i = TypeFunc::Parms; i < limit; i++) {
twisti@1573 784 // Skip unused stack slots; fast forward to monoff();
twisti@1573 785 if (i == tos) {
twisti@1573 786 i = kit.jvms()->monoff();
twisti@1573 787 if( i >= limit ) break;
twisti@1573 788 }
twisti@1573 789 Node* m = kit.map()->in(i);
twisti@1573 790 Node* n = slow_map->in(i);
twisti@1573 791 if (m != n) {
twisti@1573 792 const Type* t = gvn.type(m)->meet(gvn.type(n));
twisti@1573 793 Node* phi = PhiNode::make(region, m, t);
twisti@1573 794 phi->set_req(2, n);
twisti@1573 795 kit.map()->set_req(i, gvn.transform(phi));
twisti@1573 796 }
twisti@1573 797 }
twisti@1573 798 return kit.transfer_exceptions_into_jvms();
twisti@1573 799 }
twisti@1573 800
twisti@1573 801
duke@435 802 //-------------------------UncommonTrapCallGenerator-----------------------------
duke@435 803 // Internal class which handles all out-of-line calls checking receiver type.
duke@435 804 class UncommonTrapCallGenerator : public CallGenerator {
duke@435 805 Deoptimization::DeoptReason _reason;
duke@435 806 Deoptimization::DeoptAction _action;
duke@435 807
duke@435 808 public:
duke@435 809 UncommonTrapCallGenerator(ciMethod* m,
duke@435 810 Deoptimization::DeoptReason reason,
duke@435 811 Deoptimization::DeoptAction action)
duke@435 812 : CallGenerator(m)
duke@435 813 {
duke@435 814 _reason = reason;
duke@435 815 _action = action;
duke@435 816 }
duke@435 817
duke@435 818 virtual bool is_virtual() const { ShouldNotReachHere(); return false; }
duke@435 819 virtual bool is_trap() const { return true; }
duke@435 820
duke@435 821 virtual JVMState* generate(JVMState* jvms);
duke@435 822 };
duke@435 823
duke@435 824
duke@435 825 CallGenerator*
duke@435 826 CallGenerator::for_uncommon_trap(ciMethod* m,
duke@435 827 Deoptimization::DeoptReason reason,
duke@435 828 Deoptimization::DeoptAction action) {
duke@435 829 return new UncommonTrapCallGenerator(m, reason, action);
duke@435 830 }
duke@435 831
duke@435 832
duke@435 833 JVMState* UncommonTrapCallGenerator::generate(JVMState* jvms) {
duke@435 834 GraphKit kit(jvms);
duke@435 835 // Take the trap with arguments pushed on the stack. (Cf. null_check_receiver).
duke@435 836 int nargs = method()->arg_size();
duke@435 837 kit.inc_sp(nargs);
duke@435 838 assert(nargs <= kit.sp() && kit.sp() <= jvms->stk_size(), "sane sp w/ args pushed");
duke@435 839 if (_reason == Deoptimization::Reason_class_check &&
duke@435 840 _action == Deoptimization::Action_maybe_recompile) {
duke@435 841 // Temp fix for 6529811
duke@435 842 // Don't allow uncommon_trap to override our decision to recompile in the event
duke@435 843 // of a class cast failure for a monomorphic call as it will never let us convert
duke@435 844 // the call to either bi-morphic or megamorphic and can lead to unc-trap loops
duke@435 845 bool keep_exact_action = true;
duke@435 846 kit.uncommon_trap(_reason, _action, NULL, "monomorphic vcall checkcast", false, keep_exact_action);
duke@435 847 } else {
duke@435 848 kit.uncommon_trap(_reason, _action);
duke@435 849 }
duke@435 850 return kit.transfer_exceptions_into_jvms();
duke@435 851 }
duke@435 852
duke@435 853 // (Note: Moved hook_up_call to GraphKit::set_edges_for_java_call.)
duke@435 854
duke@435 855 // (Node: Merged hook_up_exits into ParseGenerator::generate.)
duke@435 856
duke@435 857 #define NODES_OVERHEAD_PER_METHOD (30.0)
duke@435 858 #define NODES_PER_BYTECODE (9.5)
duke@435 859
duke@435 860 void WarmCallInfo::init(JVMState* call_site, ciMethod* call_method, ciCallProfile& profile, float prof_factor) {
duke@435 861 int call_count = profile.count();
duke@435 862 int code_size = call_method->code_size();
duke@435 863
duke@435 864 // Expected execution count is based on the historical count:
duke@435 865 _count = call_count < 0 ? 1 : call_site->method()->scale_count(call_count, prof_factor);
duke@435 866
duke@435 867 // Expected profit from inlining, in units of simple call-overheads.
duke@435 868 _profit = 1.0;
duke@435 869
duke@435 870 // Expected work performed by the call in units of call-overheads.
duke@435 871 // %%% need an empirical curve fit for "work" (time in call)
duke@435 872 float bytecodes_per_call = 3;
duke@435 873 _work = 1.0 + code_size / bytecodes_per_call;
duke@435 874
duke@435 875 // Expected size of compilation graph:
duke@435 876 // -XX:+PrintParseStatistics once reported:
duke@435 877 // Methods seen: 9184 Methods parsed: 9184 Nodes created: 1582391
duke@435 878 // Histogram of 144298 parsed bytecodes:
duke@435 879 // %%% Need an better predictor for graph size.
duke@435 880 _size = NODES_OVERHEAD_PER_METHOD + (NODES_PER_BYTECODE * code_size);
duke@435 881 }
duke@435 882
duke@435 883 // is_cold: Return true if the node should never be inlined.
duke@435 884 // This is true if any of the key metrics are extreme.
duke@435 885 bool WarmCallInfo::is_cold() const {
duke@435 886 if (count() < WarmCallMinCount) return true;
duke@435 887 if (profit() < WarmCallMinProfit) return true;
duke@435 888 if (work() > WarmCallMaxWork) return true;
duke@435 889 if (size() > WarmCallMaxSize) return true;
duke@435 890 return false;
duke@435 891 }
duke@435 892
duke@435 893 // is_hot: Return true if the node should be inlined immediately.
duke@435 894 // This is true if any of the key metrics are extreme.
duke@435 895 bool WarmCallInfo::is_hot() const {
duke@435 896 assert(!is_cold(), "eliminate is_cold cases before testing is_hot");
duke@435 897 if (count() >= HotCallCountThreshold) return true;
duke@435 898 if (profit() >= HotCallProfitThreshold) return true;
duke@435 899 if (work() <= HotCallTrivialWork) return true;
duke@435 900 if (size() <= HotCallTrivialSize) return true;
duke@435 901 return false;
duke@435 902 }
duke@435 903
duke@435 904 // compute_heat:
duke@435 905 float WarmCallInfo::compute_heat() const {
duke@435 906 assert(!is_cold(), "compute heat only on warm nodes");
duke@435 907 assert(!is_hot(), "compute heat only on warm nodes");
duke@435 908 int min_size = MAX2(0, (int)HotCallTrivialSize);
duke@435 909 int max_size = MIN2(500, (int)WarmCallMaxSize);
duke@435 910 float method_size = (size() - min_size) / MAX2(1, max_size - min_size);
duke@435 911 float size_factor;
duke@435 912 if (method_size < 0.05) size_factor = 4; // 2 sigmas better than avg.
duke@435 913 else if (method_size < 0.15) size_factor = 2; // 1 sigma better than avg.
duke@435 914 else if (method_size < 0.5) size_factor = 1; // better than avg.
duke@435 915 else size_factor = 0.5; // worse than avg.
duke@435 916 return (count() * profit() * size_factor);
duke@435 917 }
duke@435 918
duke@435 919 bool WarmCallInfo::warmer_than(WarmCallInfo* that) {
duke@435 920 assert(this != that, "compare only different WCIs");
duke@435 921 assert(this->heat() != 0 && that->heat() != 0, "call compute_heat 1st");
duke@435 922 if (this->heat() > that->heat()) return true;
duke@435 923 if (this->heat() < that->heat()) return false;
duke@435 924 assert(this->heat() == that->heat(), "no NaN heat allowed");
duke@435 925 // Equal heat. Break the tie some other way.
duke@435 926 if (!this->call() || !that->call()) return (address)this > (address)that;
duke@435 927 return this->call()->_idx > that->call()->_idx;
duke@435 928 }
duke@435 929
duke@435 930 //#define UNINIT_NEXT ((WarmCallInfo*)badAddress)
duke@435 931 #define UNINIT_NEXT ((WarmCallInfo*)NULL)
duke@435 932
duke@435 933 WarmCallInfo* WarmCallInfo::insert_into(WarmCallInfo* head) {
duke@435 934 assert(next() == UNINIT_NEXT, "not yet on any list");
duke@435 935 WarmCallInfo* prev_p = NULL;
duke@435 936 WarmCallInfo* next_p = head;
duke@435 937 while (next_p != NULL && next_p->warmer_than(this)) {
duke@435 938 prev_p = next_p;
duke@435 939 next_p = prev_p->next();
duke@435 940 }
duke@435 941 // Install this between prev_p and next_p.
duke@435 942 this->set_next(next_p);
duke@435 943 if (prev_p == NULL)
duke@435 944 head = this;
duke@435 945 else
duke@435 946 prev_p->set_next(this);
duke@435 947 return head;
duke@435 948 }
duke@435 949
duke@435 950 WarmCallInfo* WarmCallInfo::remove_from(WarmCallInfo* head) {
duke@435 951 WarmCallInfo* prev_p = NULL;
duke@435 952 WarmCallInfo* next_p = head;
duke@435 953 while (next_p != this) {
duke@435 954 assert(next_p != NULL, "this must be in the list somewhere");
duke@435 955 prev_p = next_p;
duke@435 956 next_p = prev_p->next();
duke@435 957 }
duke@435 958 next_p = this->next();
duke@435 959 debug_only(this->set_next(UNINIT_NEXT));
duke@435 960 // Remove this from between prev_p and next_p.
duke@435 961 if (prev_p == NULL)
duke@435 962 head = next_p;
duke@435 963 else
duke@435 964 prev_p->set_next(next_p);
duke@435 965 return head;
duke@435 966 }
duke@435 967
duke@435 968 WarmCallInfo* WarmCallInfo::_always_hot = NULL;
duke@435 969 WarmCallInfo* WarmCallInfo::_always_cold = NULL;
duke@435 970
duke@435 971 WarmCallInfo* WarmCallInfo::always_hot() {
duke@435 972 if (_always_hot == NULL) {
duke@435 973 static double bits[sizeof(WarmCallInfo) / sizeof(double) + 1] = {0};
duke@435 974 WarmCallInfo* ci = (WarmCallInfo*) bits;
duke@435 975 ci->_profit = ci->_count = MAX_VALUE();
duke@435 976 ci->_work = ci->_size = MIN_VALUE();
duke@435 977 _always_hot = ci;
duke@435 978 }
duke@435 979 assert(_always_hot->is_hot(), "must always be hot");
duke@435 980 return _always_hot;
duke@435 981 }
duke@435 982
duke@435 983 WarmCallInfo* WarmCallInfo::always_cold() {
duke@435 984 if (_always_cold == NULL) {
duke@435 985 static double bits[sizeof(WarmCallInfo) / sizeof(double) + 1] = {0};
duke@435 986 WarmCallInfo* ci = (WarmCallInfo*) bits;
duke@435 987 ci->_profit = ci->_count = MIN_VALUE();
duke@435 988 ci->_work = ci->_size = MAX_VALUE();
duke@435 989 _always_cold = ci;
duke@435 990 }
duke@435 991 assert(_always_cold->is_cold(), "must always be cold");
duke@435 992 return _always_cold;
duke@435 993 }
duke@435 994
duke@435 995
duke@435 996 #ifndef PRODUCT
duke@435 997
duke@435 998 void WarmCallInfo::print() const {
duke@435 999 tty->print("%s : C=%6.1f P=%6.1f W=%6.1f S=%6.1f H=%6.1f -> %p",
duke@435 1000 is_cold() ? "cold" : is_hot() ? "hot " : "warm",
duke@435 1001 count(), profit(), work(), size(), compute_heat(), next());
duke@435 1002 tty->cr();
duke@435 1003 if (call() != NULL) call()->dump();
duke@435 1004 }
duke@435 1005
duke@435 1006 void print_wci(WarmCallInfo* ci) {
duke@435 1007 ci->print();
duke@435 1008 }
duke@435 1009
duke@435 1010 void WarmCallInfo::print_all() const {
duke@435 1011 for (const WarmCallInfo* p = this; p != NULL; p = p->next())
duke@435 1012 p->print();
duke@435 1013 }
duke@435 1014
duke@435 1015 int WarmCallInfo::count_all() const {
duke@435 1016 int cnt = 0;
duke@435 1017 for (const WarmCallInfo* p = this; p != NULL; p = p->next())
duke@435 1018 cnt++;
duke@435 1019 return cnt;
duke@435 1020 }
duke@435 1021
duke@435 1022 #endif //PRODUCT

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