src/share/vm/c1/c1_Compilation.cpp

Wed, 09 Feb 2011 16:34:34 -0800

author
iveresov
date
Wed, 09 Feb 2011 16:34:34 -0800
changeset 2559
72d6c57d0658
parent 2421
2f9d59b0fa5c
child 3099
c124e2e7463e
permissions
-rw-r--r--

7017434: Tiered needs to support reprofiling
Summary: Tiered needs to support proper method reprofiling after deopts.
Reviewed-by: kvn

duke@435 1 /*
iveresov@2559 2 * Copyright (c) 1999, 2011, Oracle and/or its affiliates. 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 *
trims@1907 19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
trims@1907 20 * or visit www.oracle.com if you need additional information or have any
trims@1907 21 * questions.
duke@435 22 *
duke@435 23 */
duke@435 24
stefank@2314 25 #include "precompiled.hpp"
stefank@2314 26 #include "c1/c1_CFGPrinter.hpp"
stefank@2314 27 #include "c1/c1_Compilation.hpp"
stefank@2314 28 #include "c1/c1_IR.hpp"
stefank@2314 29 #include "c1/c1_LIRAssembler.hpp"
stefank@2314 30 #include "c1/c1_LinearScan.hpp"
stefank@2314 31 #include "c1/c1_MacroAssembler.hpp"
stefank@2314 32 #include "c1/c1_ValueMap.hpp"
stefank@2314 33 #include "c1/c1_ValueStack.hpp"
stefank@2314 34 #include "code/debugInfoRec.hpp"
duke@435 35
duke@435 36
duke@435 37 typedef enum {
duke@435 38 _t_compile,
duke@435 39 _t_setup,
duke@435 40 _t_optimizeIR,
duke@435 41 _t_buildIR,
duke@435 42 _t_emit_lir,
duke@435 43 _t_linearScan,
duke@435 44 _t_lirGeneration,
duke@435 45 _t_lir_schedule,
duke@435 46 _t_codeemit,
duke@435 47 _t_codeinstall,
duke@435 48 max_phase_timers
duke@435 49 } TimerName;
duke@435 50
duke@435 51 static const char * timer_name[] = {
duke@435 52 "compile",
duke@435 53 "setup",
duke@435 54 "optimizeIR",
duke@435 55 "buildIR",
duke@435 56 "emit_lir",
duke@435 57 "linearScan",
duke@435 58 "lirGeneration",
duke@435 59 "lir_schedule",
duke@435 60 "codeemit",
duke@435 61 "codeinstall"
duke@435 62 };
duke@435 63
duke@435 64 static elapsedTimer timers[max_phase_timers];
duke@435 65 static int totalInstructionNodes = 0;
duke@435 66
duke@435 67 class PhaseTraceTime: public TraceTime {
duke@435 68 private:
duke@435 69 JavaThread* _thread;
duke@435 70
duke@435 71 public:
duke@435 72 PhaseTraceTime(TimerName timer):
duke@435 73 TraceTime("", &timers[timer], CITime || CITimeEach, Verbose) {
duke@435 74 }
duke@435 75 };
duke@435 76
duke@435 77 // Implementation of Compilation
duke@435 78
duke@435 79
duke@435 80 #ifndef PRODUCT
duke@435 81
duke@435 82 void Compilation::maybe_print_current_instruction() {
duke@435 83 if (_current_instruction != NULL && _last_instruction_printed != _current_instruction) {
duke@435 84 _last_instruction_printed = _current_instruction;
duke@435 85 _current_instruction->print_line();
duke@435 86 }
duke@435 87 }
duke@435 88 #endif // PRODUCT
duke@435 89
duke@435 90
duke@435 91 DebugInformationRecorder* Compilation::debug_info_recorder() const {
duke@435 92 return _env->debug_info();
duke@435 93 }
duke@435 94
duke@435 95
duke@435 96 Dependencies* Compilation::dependency_recorder() const {
duke@435 97 return _env->dependencies();
duke@435 98 }
duke@435 99
duke@435 100
duke@435 101 void Compilation::initialize() {
duke@435 102 // Use an oop recorder bound to the CI environment.
duke@435 103 // (The default oop recorder is ignorant of the CI.)
duke@435 104 OopRecorder* ooprec = new OopRecorder(_env->arena());
duke@435 105 _env->set_oop_recorder(ooprec);
duke@435 106 _env->set_debug_info(new DebugInformationRecorder(ooprec));
duke@435 107 debug_info_recorder()->set_oopmaps(new OopMapSet());
duke@435 108 _env->set_dependencies(new Dependencies(_env));
duke@435 109 }
duke@435 110
duke@435 111
duke@435 112 void Compilation::build_hir() {
duke@435 113 CHECK_BAILOUT();
duke@435 114
duke@435 115 // setup ir
duke@435 116 _hir = new IR(this, method(), osr_bci());
duke@435 117 if (!_hir->is_valid()) {
duke@435 118 bailout("invalid parsing");
duke@435 119 return;
duke@435 120 }
duke@435 121
duke@435 122 #ifndef PRODUCT
duke@435 123 if (PrintCFGToFile) {
duke@435 124 CFGPrinter::print_cfg(_hir, "After Generation of HIR", true, false);
duke@435 125 }
duke@435 126 #endif
duke@435 127
duke@435 128 #ifndef PRODUCT
duke@435 129 if (PrintCFG || PrintCFG0) { tty->print_cr("CFG after parsing"); _hir->print(true); }
duke@435 130 if (PrintIR || PrintIR0 ) { tty->print_cr("IR after parsing"); _hir->print(false); }
duke@435 131 #endif
duke@435 132
duke@435 133 _hir->verify();
duke@435 134
duke@435 135 if (UseC1Optimizations) {
duke@435 136 NEEDS_CLEANUP
duke@435 137 // optimization
duke@435 138 PhaseTraceTime timeit(_t_optimizeIR);
duke@435 139
duke@435 140 _hir->optimize();
duke@435 141 }
duke@435 142
duke@435 143 _hir->verify();
duke@435 144
duke@435 145 _hir->split_critical_edges();
duke@435 146
duke@435 147 #ifndef PRODUCT
duke@435 148 if (PrintCFG || PrintCFG1) { tty->print_cr("CFG after optimizations"); _hir->print(true); }
duke@435 149 if (PrintIR || PrintIR1 ) { tty->print_cr("IR after optimizations"); _hir->print(false); }
duke@435 150 #endif
duke@435 151
duke@435 152 _hir->verify();
duke@435 153
duke@435 154 // compute block ordering for code generation
duke@435 155 // the control flow must not be changed from here on
duke@435 156 _hir->compute_code();
duke@435 157
duke@435 158 if (UseGlobalValueNumbering) {
duke@435 159 ResourceMark rm;
duke@435 160 int instructions = Instruction::number_of_instructions();
duke@435 161 GlobalValueNumbering gvn(_hir);
duke@435 162 assert(instructions == Instruction::number_of_instructions(),
duke@435 163 "shouldn't have created an instructions");
duke@435 164 }
duke@435 165
duke@435 166 // compute use counts after global value numbering
duke@435 167 _hir->compute_use_counts();
duke@435 168
duke@435 169 #ifndef PRODUCT
duke@435 170 if (PrintCFG || PrintCFG2) { tty->print_cr("CFG before code generation"); _hir->code()->print(true); }
duke@435 171 if (PrintIR || PrintIR2 ) { tty->print_cr("IR before code generation"); _hir->code()->print(false, true); }
duke@435 172 #endif
duke@435 173
duke@435 174 _hir->verify();
duke@435 175 }
duke@435 176
duke@435 177
duke@435 178 void Compilation::emit_lir() {
duke@435 179 CHECK_BAILOUT();
duke@435 180
duke@435 181 LIRGenerator gen(this, method());
duke@435 182 {
duke@435 183 PhaseTraceTime timeit(_t_lirGeneration);
duke@435 184 hir()->iterate_linear_scan_order(&gen);
duke@435 185 }
duke@435 186
duke@435 187 CHECK_BAILOUT();
duke@435 188
duke@435 189 {
duke@435 190 PhaseTraceTime timeit(_t_linearScan);
duke@435 191
duke@435 192 LinearScan* allocator = new LinearScan(hir(), &gen, frame_map());
duke@435 193 set_allocator(allocator);
duke@435 194 // Assign physical registers to LIR operands using a linear scan algorithm.
duke@435 195 allocator->do_linear_scan();
duke@435 196 CHECK_BAILOUT();
duke@435 197
duke@435 198 _max_spills = allocator->max_spills();
duke@435 199 }
duke@435 200
duke@435 201 if (BailoutAfterLIR) {
duke@435 202 if (PrintLIR && !bailed_out()) {
duke@435 203 print_LIR(hir()->code());
duke@435 204 }
duke@435 205 bailout("Bailing out because of -XX:+BailoutAfterLIR");
duke@435 206 }
duke@435 207 }
duke@435 208
duke@435 209
duke@435 210 void Compilation::emit_code_epilog(LIR_Assembler* assembler) {
duke@435 211 CHECK_BAILOUT();
duke@435 212
twisti@1639 213 CodeOffsets* code_offsets = assembler->offsets();
twisti@1639 214
duke@435 215 // generate code or slow cases
duke@435 216 assembler->emit_slow_case_stubs();
duke@435 217 CHECK_BAILOUT();
duke@435 218
duke@435 219 // generate exception adapters
duke@435 220 assembler->emit_exception_entries(exception_info_list());
duke@435 221 CHECK_BAILOUT();
duke@435 222
twisti@1639 223 // Generate code for exception handler.
twisti@1639 224 code_offsets->set_value(CodeOffsets::Exceptions, assembler->emit_exception_handler());
duke@435 225 CHECK_BAILOUT();
twisti@1639 226
twisti@1639 227 // Generate code for deopt handler.
twisti@1639 228 code_offsets->set_value(CodeOffsets::Deopt, assembler->emit_deopt_handler());
twisti@1639 229 CHECK_BAILOUT();
twisti@1639 230
twisti@2046 231 // Emit the MethodHandle deopt handler code (if required).
twisti@2046 232 if (has_method_handle_invokes()) {
twisti@2046 233 // We can use the same code as for the normal deopt handler, we
twisti@2046 234 // just need a different entry point address.
twisti@2046 235 code_offsets->set_value(CodeOffsets::DeoptMH, assembler->emit_deopt_handler());
twisti@2046 236 CHECK_BAILOUT();
twisti@2046 237 }
duke@435 238
never@1813 239 // Emit the handler to remove the activation from the stack and
never@1813 240 // dispatch to the caller.
never@1813 241 offsets()->set_value(CodeOffsets::UnwindHandler, assembler->emit_unwind_handler());
never@1813 242
duke@435 243 // done
duke@435 244 masm()->flush();
duke@435 245 }
duke@435 246
duke@435 247
bobv@2421 248 bool Compilation::setup_code_buffer(CodeBuffer* code, int call_stub_estimate) {
iveresov@1939 249 // Preinitialize the consts section to some large size:
iveresov@1939 250 int locs_buffer_size = 20 * (relocInfo::length_limit + sizeof(relocInfo));
iveresov@1939 251 char* locs_buffer = NEW_RESOURCE_ARRAY(char, locs_buffer_size);
iveresov@1939 252 code->insts()->initialize_shared_locs((relocInfo*)locs_buffer,
iveresov@1939 253 locs_buffer_size / sizeof(relocInfo));
iveresov@1939 254 code->initialize_consts_size(Compilation::desired_max_constant_size());
iveresov@1972 255 // Call stubs + two deopt handlers (regular and MH) + exception handler
bobv@2421 256 int stub_size = (call_stub_estimate * LIR_Assembler::call_stub_size) +
bobv@2421 257 LIR_Assembler::exception_handler_size +
bobv@2421 258 (2 * LIR_Assembler::deopt_handler_size);
bobv@2421 259 if (stub_size >= code->insts_capacity()) return false;
bobv@2421 260 code->initialize_stubs_size(stub_size);
bobv@2421 261 return true;
iveresov@1939 262 }
iveresov@1939 263
iveresov@1939 264
duke@435 265 int Compilation::emit_code_body() {
duke@435 266 // emit code
bobv@2421 267 if (!setup_code_buffer(code(), allocator()->num_calls())) {
bobv@2421 268 BAILOUT_("size requested greater than avail code buffer size", 0);
bobv@2421 269 }
duke@435 270 code()->initialize_oop_recorder(env()->oop_recorder());
duke@435 271
duke@435 272 _masm = new C1_MacroAssembler(code());
duke@435 273 _masm->set_oop_recorder(env()->oop_recorder());
duke@435 274
duke@435 275 LIR_Assembler lir_asm(this);
duke@435 276
duke@435 277 lir_asm.emit_code(hir()->code());
duke@435 278 CHECK_BAILOUT_(0);
duke@435 279
duke@435 280 emit_code_epilog(&lir_asm);
duke@435 281 CHECK_BAILOUT_(0);
duke@435 282
duke@435 283 generate_exception_handler_table();
duke@435 284
duke@435 285 #ifndef PRODUCT
duke@435 286 if (PrintExceptionHandlers && Verbose) {
duke@435 287 exception_handler_table()->print();
duke@435 288 }
duke@435 289 #endif /* PRODUCT */
duke@435 290
duke@435 291 return frame_map()->framesize();
duke@435 292 }
duke@435 293
duke@435 294
duke@435 295 int Compilation::compile_java_method() {
duke@435 296 assert(!method()->is_native(), "should not reach here");
duke@435 297
duke@435 298 if (BailoutOnExceptionHandlers) {
duke@435 299 if (method()->has_exception_handlers()) {
duke@435 300 bailout("linear scan can't handle exception handlers");
duke@435 301 }
duke@435 302 }
duke@435 303
duke@435 304 CHECK_BAILOUT_(no_frame_size);
duke@435 305
iveresov@2349 306 if (is_profiling() && !method()->ensure_method_data()) {
iveresov@2349 307 BAILOUT_("mdo allocation failed", no_frame_size);
iveresov@2138 308 }
iveresov@2138 309
duke@435 310 {
duke@435 311 PhaseTraceTime timeit(_t_buildIR);
iveresov@2138 312 build_hir();
duke@435 313 }
duke@435 314 if (BailoutAfterHIR) {
duke@435 315 BAILOUT_("Bailing out because of -XX:+BailoutAfterHIR", no_frame_size);
duke@435 316 }
duke@435 317
duke@435 318
duke@435 319 {
duke@435 320 PhaseTraceTime timeit(_t_emit_lir);
duke@435 321
duke@435 322 _frame_map = new FrameMap(method(), hir()->number_of_locks(), MAX2(4, hir()->max_stack()));
duke@435 323 emit_lir();
duke@435 324 }
duke@435 325 CHECK_BAILOUT_(no_frame_size);
duke@435 326
duke@435 327 {
duke@435 328 PhaseTraceTime timeit(_t_codeemit);
duke@435 329 return emit_code_body();
duke@435 330 }
duke@435 331 }
duke@435 332
duke@435 333 void Compilation::install_code(int frame_size) {
duke@435 334 // frame_size is in 32-bit words so adjust it intptr_t words
duke@435 335 assert(frame_size == frame_map()->framesize(), "must match");
duke@435 336 assert(in_bytes(frame_map()->framesize_in_bytes()) % sizeof(intptr_t) == 0, "must be at least pointer aligned");
duke@435 337 _env->register_method(
duke@435 338 method(),
duke@435 339 osr_bci(),
duke@435 340 &_offsets,
duke@435 341 in_bytes(_frame_map->sp_offset_for_orig_pc()),
duke@435 342 code(),
duke@435 343 in_bytes(frame_map()->framesize_in_bytes()) / sizeof(intptr_t),
duke@435 344 debug_info_recorder()->_oopmaps,
duke@435 345 exception_handler_table(),
duke@435 346 implicit_exception_table(),
duke@435 347 compiler(),
duke@435 348 _env->comp_level(),
never@1832 349 true,
duke@435 350 has_unsafe_access()
duke@435 351 );
duke@435 352 }
duke@435 353
duke@435 354
duke@435 355 void Compilation::compile_method() {
duke@435 356 // setup compilation
duke@435 357 initialize();
duke@435 358
duke@435 359 if (!method()->can_be_compiled()) {
duke@435 360 // Prevent race condition 6328518.
duke@435 361 // This can happen if the method is obsolete or breakpointed.
duke@435 362 bailout("Bailing out because method is not compilable");
duke@435 363 return;
duke@435 364 }
duke@435 365
kvn@1215 366 if (_env->jvmti_can_hotswap_or_post_breakpoint()) {
duke@435 367 // We can assert evol_method because method->can_be_compiled is true.
duke@435 368 dependency_recorder()->assert_evol_method(method());
duke@435 369 }
duke@435 370
duke@435 371 if (method()->break_at_execute()) {
duke@435 372 BREAKPOINT;
duke@435 373 }
duke@435 374
duke@435 375 #ifndef PRODUCT
duke@435 376 if (PrintCFGToFile) {
duke@435 377 CFGPrinter::print_compilation(this);
duke@435 378 }
duke@435 379 #endif
duke@435 380
duke@435 381 // compile method
duke@435 382 int frame_size = compile_java_method();
duke@435 383
duke@435 384 // bailout if method couldn't be compiled
duke@435 385 // Note: make sure we mark the method as not compilable!
duke@435 386 CHECK_BAILOUT();
duke@435 387
duke@435 388 if (InstallMethods) {
duke@435 389 // install code
duke@435 390 PhaseTraceTime timeit(_t_codeinstall);
duke@435 391 install_code(frame_size);
duke@435 392 }
duke@435 393 totalInstructionNodes += Instruction::number_of_instructions();
duke@435 394 }
duke@435 395
duke@435 396
duke@435 397 void Compilation::generate_exception_handler_table() {
duke@435 398 // Generate an ExceptionHandlerTable from the exception handler
duke@435 399 // information accumulated during the compilation.
duke@435 400 ExceptionInfoList* info_list = exception_info_list();
duke@435 401
duke@435 402 if (info_list->length() == 0) {
duke@435 403 return;
duke@435 404 }
duke@435 405
duke@435 406 // allocate some arrays for use by the collection code.
duke@435 407 const int num_handlers = 5;
duke@435 408 GrowableArray<intptr_t>* bcis = new GrowableArray<intptr_t>(num_handlers);
duke@435 409 GrowableArray<intptr_t>* scope_depths = new GrowableArray<intptr_t>(num_handlers);
duke@435 410 GrowableArray<intptr_t>* pcos = new GrowableArray<intptr_t>(num_handlers);
duke@435 411
duke@435 412 for (int i = 0; i < info_list->length(); i++) {
duke@435 413 ExceptionInfo* info = info_list->at(i);
duke@435 414 XHandlers* handlers = info->exception_handlers();
duke@435 415
duke@435 416 // empty the arrays
duke@435 417 bcis->trunc_to(0);
duke@435 418 scope_depths->trunc_to(0);
duke@435 419 pcos->trunc_to(0);
duke@435 420
duke@435 421 for (int i = 0; i < handlers->length(); i++) {
duke@435 422 XHandler* handler = handlers->handler_at(i);
duke@435 423 assert(handler->entry_pco() != -1, "must have been generated");
duke@435 424
duke@435 425 int e = bcis->find(handler->handler_bci());
duke@435 426 if (e >= 0 && scope_depths->at(e) == handler->scope_count()) {
duke@435 427 // two different handlers are declared to dispatch to the same
duke@435 428 // catch bci. During parsing we created edges for each
duke@435 429 // handler but we really only need one. The exception handler
duke@435 430 // table will also get unhappy if we try to declare both since
duke@435 431 // it's nonsensical. Just skip this handler.
duke@435 432 continue;
duke@435 433 }
duke@435 434
duke@435 435 bcis->append(handler->handler_bci());
duke@435 436 if (handler->handler_bci() == -1) {
duke@435 437 // insert a wildcard handler at scope depth 0 so that the
duke@435 438 // exception lookup logic with find it.
duke@435 439 scope_depths->append(0);
duke@435 440 } else {
duke@435 441 scope_depths->append(handler->scope_count());
duke@435 442 }
duke@435 443 pcos->append(handler->entry_pco());
duke@435 444
duke@435 445 // stop processing once we hit a catch any
duke@435 446 if (handler->is_catch_all()) {
duke@435 447 assert(i == handlers->length() - 1, "catch all must be last handler");
duke@435 448 }
duke@435 449 }
duke@435 450 exception_handler_table()->add_subtable(info->pco(), bcis, scope_depths, pcos);
duke@435 451 }
duke@435 452 }
duke@435 453
duke@435 454
iveresov@1939 455 Compilation::Compilation(AbstractCompiler* compiler, ciEnv* env, ciMethod* method,
iveresov@1939 456 int osr_bci, BufferBlob* buffer_blob)
duke@435 457 : _compiler(compiler)
duke@435 458 , _env(env)
duke@435 459 , _method(method)
duke@435 460 , _osr_bci(osr_bci)
duke@435 461 , _hir(NULL)
duke@435 462 , _max_spills(-1)
duke@435 463 , _frame_map(NULL)
duke@435 464 , _masm(NULL)
duke@435 465 , _has_exception_handlers(false)
duke@435 466 , _has_fpu_code(true) // pessimistic assumption
iveresov@2138 467 , _would_profile(false)
duke@435 468 , _has_unsafe_access(false)
twisti@2046 469 , _has_method_handle_invokes(false)
duke@435 470 , _bailout_msg(NULL)
duke@435 471 , _exception_info_list(NULL)
duke@435 472 , _allocator(NULL)
iveresov@1939 473 , _next_id(0)
iveresov@1939 474 , _next_block_id(0)
twisti@2103 475 , _code(buffer_blob)
duke@435 476 , _current_instruction(NULL)
duke@435 477 #ifndef PRODUCT
duke@435 478 , _last_instruction_printed(NULL)
duke@435 479 #endif // PRODUCT
duke@435 480 {
duke@435 481 PhaseTraceTime timeit(_t_compile);
duke@435 482 _arena = Thread::current()->resource_area();
iveresov@1939 483 _env->set_compiler_data(this);
duke@435 484 _exception_info_list = new ExceptionInfoList();
duke@435 485 _implicit_exception_table.set_size(0);
duke@435 486 compile_method();
iveresov@2306 487 if (bailed_out()) {
iveresov@2306 488 _env->record_method_not_compilable(bailout_msg(), !TieredCompilation);
iveresov@2306 489 if (is_profiling()) {
iveresov@2306 490 // Compilation failed, create MDO, which would signal the interpreter
iveresov@2306 491 // to start profiling on its own.
iveresov@2349 492 _method->ensure_method_data();
iveresov@2306 493 }
iveresov@2559 494 } else if (is_profiling()) {
iveresov@2349 495 ciMethodData *md = method->method_data_or_null();
iveresov@2559 496 if (md != NULL) {
iveresov@2559 497 md->set_would_profile(_would_profile);
iveresov@2559 498 }
iveresov@2138 499 }
duke@435 500 }
duke@435 501
duke@435 502 Compilation::~Compilation() {
iveresov@1939 503 _env->set_compiler_data(NULL);
duke@435 504 }
duke@435 505
duke@435 506
duke@435 507 void Compilation::add_exception_handlers_for_pco(int pco, XHandlers* exception_handlers) {
duke@435 508 #ifndef PRODUCT
duke@435 509 if (PrintExceptionHandlers && Verbose) {
duke@435 510 tty->print_cr(" added exception scope for pco %d", pco);
duke@435 511 }
duke@435 512 #endif
duke@435 513 // Note: we do not have program counters for these exception handlers yet
duke@435 514 exception_info_list()->push(new ExceptionInfo(pco, exception_handlers));
duke@435 515 }
duke@435 516
duke@435 517
duke@435 518 void Compilation::notice_inlined_method(ciMethod* method) {
duke@435 519 _env->notice_inlined_method(method);
duke@435 520 }
duke@435 521
duke@435 522
duke@435 523 void Compilation::bailout(const char* msg) {
duke@435 524 assert(msg != NULL, "bailout message must exist");
duke@435 525 if (!bailed_out()) {
duke@435 526 // keep first bailout message
duke@435 527 if (PrintBailouts) tty->print_cr("compilation bailout: %s", msg);
duke@435 528 _bailout_msg = msg;
duke@435 529 }
duke@435 530 }
duke@435 531
duke@435 532
duke@435 533 void Compilation::print_timers() {
duke@435 534 // tty->print_cr(" Native methods : %6.3f s, Average : %2.3f", CompileBroker::_t_native_compilation.seconds(), CompileBroker::_t_native_compilation.seconds() / CompileBroker::_total_native_compile_count);
duke@435 535 float total = timers[_t_setup].seconds() + timers[_t_buildIR].seconds() + timers[_t_emit_lir].seconds() + timers[_t_lir_schedule].seconds() + timers[_t_codeemit].seconds() + timers[_t_codeinstall].seconds();
duke@435 536
duke@435 537
duke@435 538 tty->print_cr(" Detailed C1 Timings");
duke@435 539 tty->print_cr(" Setup time: %6.3f s (%4.1f%%)", timers[_t_setup].seconds(), (timers[_t_setup].seconds() / total) * 100.0);
duke@435 540 tty->print_cr(" Build IR: %6.3f s (%4.1f%%)", timers[_t_buildIR].seconds(), (timers[_t_buildIR].seconds() / total) * 100.0);
duke@435 541 tty->print_cr(" Optimize: %6.3f s (%4.1f%%)", timers[_t_optimizeIR].seconds(), (timers[_t_optimizeIR].seconds() / total) * 100.0);
duke@435 542 tty->print_cr(" Emit LIR: %6.3f s (%4.1f%%)", timers[_t_emit_lir].seconds(), (timers[_t_emit_lir].seconds() / total) * 100.0);
duke@435 543 tty->print_cr(" LIR Gen: %6.3f s (%4.1f%%)", timers[_t_lirGeneration].seconds(), (timers[_t_lirGeneration].seconds() / total) * 100.0);
duke@435 544 tty->print_cr(" Linear Scan: %6.3f s (%4.1f%%)", timers[_t_linearScan].seconds(), (timers[_t_linearScan].seconds() / total) * 100.0);
duke@435 545 NOT_PRODUCT(LinearScan::print_timers(timers[_t_linearScan].seconds()));
duke@435 546 tty->print_cr(" LIR Schedule: %6.3f s (%4.1f%%)", timers[_t_lir_schedule].seconds(), (timers[_t_lir_schedule].seconds() / total) * 100.0);
duke@435 547 tty->print_cr(" Code Emission: %6.3f s (%4.1f%%)", timers[_t_codeemit].seconds(), (timers[_t_codeemit].seconds() / total) * 100.0);
duke@435 548 tty->print_cr(" Code Installation: %6.3f s (%4.1f%%)", timers[_t_codeinstall].seconds(), (timers[_t_codeinstall].seconds() / total) * 100.0);
duke@435 549 tty->print_cr(" Instruction Nodes: %6d nodes", totalInstructionNodes);
duke@435 550
duke@435 551 NOT_PRODUCT(LinearScan::print_statistics());
duke@435 552 }
duke@435 553
duke@435 554
duke@435 555 #ifndef PRODUCT
duke@435 556 void Compilation::compile_only_this_method() {
duke@435 557 ResourceMark rm;
duke@435 558 fileStream stream(fopen("c1_compile_only", "wt"));
duke@435 559 stream.print_cr("# c1 compile only directives");
duke@435 560 compile_only_this_scope(&stream, hir()->top_scope());
duke@435 561 }
duke@435 562
duke@435 563
duke@435 564 void Compilation::compile_only_this_scope(outputStream* st, IRScope* scope) {
duke@435 565 st->print("CompileOnly=");
duke@435 566 scope->method()->holder()->name()->print_symbol_on(st);
duke@435 567 st->print(".");
duke@435 568 scope->method()->name()->print_symbol_on(st);
duke@435 569 st->cr();
duke@435 570 }
duke@435 571
duke@435 572
duke@435 573 void Compilation::exclude_this_method() {
duke@435 574 fileStream stream(fopen(".hotspot_compiler", "at"));
duke@435 575 stream.print("exclude ");
duke@435 576 method()->holder()->name()->print_symbol_on(&stream);
duke@435 577 stream.print(" ");
duke@435 578 method()->name()->print_symbol_on(&stream);
duke@435 579 stream.cr();
duke@435 580 stream.cr();
duke@435 581 }
duke@435 582 #endif

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