runtime.cpp 52.3 KB
Newer Older
D
duke 已提交
1
/*
2
 * Copyright (c) 1998, 2012, Oracle and/or its affiliates. All rights reserved.
D
duke 已提交
3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18
 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
 *
 * This code is free software; you can redistribute it and/or modify it
 * under the terms of the GNU General Public License version 2 only, as
 * published by the Free Software Foundation.
 *
 * This code is distributed in the hope that it will be useful, but WITHOUT
 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
 * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
 * version 2 for more details (a copy is included in the LICENSE file that
 * accompanied this code).
 *
 * You should have received a copy of the GNU General Public License version
 * 2 along with this work; if not, write to the Free Software Foundation,
 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
 *
19 20 21
 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
 * or visit www.oracle.com if you need additional information or have any
 * questions.
D
duke 已提交
22 23 24
 *
 */

25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82
#include "precompiled.hpp"
#include "classfile/systemDictionary.hpp"
#include "classfile/vmSymbols.hpp"
#include "code/compiledIC.hpp"
#include "code/icBuffer.hpp"
#include "code/nmethod.hpp"
#include "code/pcDesc.hpp"
#include "code/scopeDesc.hpp"
#include "code/vtableStubs.hpp"
#include "compiler/compileBroker.hpp"
#include "compiler/compilerOracle.hpp"
#include "compiler/oopMap.hpp"
#include "gc_implementation/g1/g1SATBCardTableModRefBS.hpp"
#include "gc_implementation/g1/heapRegion.hpp"
#include "gc_interface/collectedHeap.hpp"
#include "interpreter/bytecode.hpp"
#include "interpreter/interpreter.hpp"
#include "interpreter/linkResolver.hpp"
#include "memory/barrierSet.hpp"
#include "memory/gcLocker.inline.hpp"
#include "memory/oopFactory.hpp"
#include "oops/objArrayKlass.hpp"
#include "oops/oop.inline.hpp"
#include "opto/addnode.hpp"
#include "opto/callnode.hpp"
#include "opto/cfgnode.hpp"
#include "opto/connode.hpp"
#include "opto/graphKit.hpp"
#include "opto/machnode.hpp"
#include "opto/matcher.hpp"
#include "opto/memnode.hpp"
#include "opto/mulnode.hpp"
#include "opto/runtime.hpp"
#include "opto/subnode.hpp"
#include "runtime/fprofiler.hpp"
#include "runtime/handles.inline.hpp"
#include "runtime/interfaceSupport.hpp"
#include "runtime/javaCalls.hpp"
#include "runtime/sharedRuntime.hpp"
#include "runtime/signature.hpp"
#include "runtime/threadCritical.hpp"
#include "runtime/vframe.hpp"
#include "runtime/vframeArray.hpp"
#include "runtime/vframe_hp.hpp"
#include "utilities/copy.hpp"
#include "utilities/preserveException.hpp"
#ifdef TARGET_ARCH_MODEL_x86_32
# include "adfiles/ad_x86_32.hpp"
#endif
#ifdef TARGET_ARCH_MODEL_x86_64
# include "adfiles/ad_x86_64.hpp"
#endif
#ifdef TARGET_ARCH_MODEL_sparc
# include "adfiles/ad_sparc.hpp"
#endif
#ifdef TARGET_ARCH_MODEL_zero
# include "adfiles/ad_zero.hpp"
#endif
83 84 85
#ifdef TARGET_ARCH_MODEL_arm
# include "adfiles/ad_arm.hpp"
#endif
86 87 88 89 90
#ifdef TARGET_ARCH_MODEL_ppc_32
# include "adfiles/ad_ppc_32.hpp"
#endif
#ifdef TARGET_ARCH_MODEL_ppc_64
# include "adfiles/ad_ppc_64.hpp"
91
#endif
D
duke 已提交
92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107


// For debugging purposes:
//  To force FullGCALot inside a runtime function, add the following two lines
//
//  Universe::release_fullgc_alot_dummy();
//  MarkSweep::invoke(0, "Debugging");
//
// At command line specify the parameters: -XX:+FullGCALot -XX:FullGCALotStart=100000000




// Compiled code entry points
address OptoRuntime::_new_instance_Java                           = NULL;
address OptoRuntime::_new_array_Java                              = NULL;
108
address OptoRuntime::_new_array_nozero_Java                       = NULL;
D
duke 已提交
109 110 111 112
address OptoRuntime::_multianewarray2_Java                        = NULL;
address OptoRuntime::_multianewarray3_Java                        = NULL;
address OptoRuntime::_multianewarray4_Java                        = NULL;
address OptoRuntime::_multianewarray5_Java                        = NULL;
113
address OptoRuntime::_multianewarrayN_Java                        = NULL;
114 115
address OptoRuntime::_g1_wb_pre_Java                              = NULL;
address OptoRuntime::_g1_wb_post_Java                             = NULL;
D
duke 已提交
116 117 118 119 120 121 122 123 124 125 126 127
address OptoRuntime::_vtable_must_compile_Java                    = NULL;
address OptoRuntime::_complete_monitor_locking_Java               = NULL;
address OptoRuntime::_rethrow_Java                                = NULL;

address OptoRuntime::_slow_arraycopy_Java                         = NULL;
address OptoRuntime::_register_finalizer_Java                     = NULL;

# ifdef ENABLE_ZAP_DEAD_LOCALS
address OptoRuntime::_zap_dead_Java_locals_Java                   = NULL;
address OptoRuntime::_zap_dead_native_locals_Java                 = NULL;
# endif

128
ExceptionBlob* OptoRuntime::_exception_blob;
D
duke 已提交
129 130 131

// This should be called in an assertion at the start of OptoRuntime routines
// which are entered from compiled code (all of them)
132
#ifdef ASSERT
D
duke 已提交
133 134 135 136 137 138 139
static bool check_compiled_frame(JavaThread* thread) {
  assert(thread->last_frame().is_runtime_frame(), "cannot call runtime directly from compiled code");
  RegisterMap map(thread, false);
  frame caller = thread->last_frame().sender(&map);
  assert(caller.is_compiled_frame(), "not being called from compiled like code");
  return true;
}
140
#endif // ASSERT
D
duke 已提交
141 142 143 144 145 146 147 148 149 150 151 152 153 154 155


#define gen(env, var, type_func_gen, c_func, fancy_jump, pass_tls, save_arg_regs, return_pc) \
  var = generate_stub(env, type_func_gen, CAST_FROM_FN_PTR(address, c_func), #var, fancy_jump, pass_tls, save_arg_regs, return_pc)

void OptoRuntime::generate(ciEnv* env) {

  generate_exception_blob();

  // Note: tls: Means fetching the return oop out of the thread-local storage
  //
  //   variable/name                       type-function-gen              , runtime method                  ,fncy_jp, tls,save_args,retpc
  // -------------------------------------------------------------------------------------------------------------------------------
  gen(env, _new_instance_Java              , new_instance_Type            , new_instance_C                  ,    0 , true , false, false);
  gen(env, _new_array_Java                 , new_array_Type               , new_array_C                     ,    0 , true , false, false);
156
  gen(env, _new_array_nozero_Java          , new_array_Type               , new_array_nozero_C              ,    0 , true , false, false);
D
duke 已提交
157 158 159 160
  gen(env, _multianewarray2_Java           , multianewarray2_Type         , multianewarray2_C               ,    0 , true , false, false);
  gen(env, _multianewarray3_Java           , multianewarray3_Type         , multianewarray3_C               ,    0 , true , false, false);
  gen(env, _multianewarray4_Java           , multianewarray4_Type         , multianewarray4_C               ,    0 , true , false, false);
  gen(env, _multianewarray5_Java           , multianewarray5_Type         , multianewarray5_C               ,    0 , true , false, false);
161
  gen(env, _multianewarrayN_Java           , multianewarrayN_Type         , multianewarrayN_C               ,    0 , true , false, false);
162 163
  gen(env, _g1_wb_pre_Java                 , g1_wb_pre_Type               , SharedRuntime::g1_wb_pre        ,    0 , false, false, false);
  gen(env, _g1_wb_post_Java                , g1_wb_post_Type              , SharedRuntime::g1_wb_post       ,    0 , false, false, false);
D
duke 已提交
164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213
  gen(env, _complete_monitor_locking_Java  , complete_monitor_enter_Type  , SharedRuntime::complete_monitor_locking_C      ,    0 , false, false, false);
  gen(env, _rethrow_Java                   , rethrow_Type                 , rethrow_C                       ,    2 , true , false, true );

  gen(env, _slow_arraycopy_Java            , slow_arraycopy_Type          , SharedRuntime::slow_arraycopy_C ,    0 , false, false, false);
  gen(env, _register_finalizer_Java        , register_finalizer_Type      , register_finalizer              ,    0 , false, false, false);

# ifdef ENABLE_ZAP_DEAD_LOCALS
  gen(env, _zap_dead_Java_locals_Java      , zap_dead_locals_Type         , zap_dead_Java_locals_C          ,    0 , false, true , false );
  gen(env, _zap_dead_native_locals_Java    , zap_dead_locals_Type         , zap_dead_native_locals_C        ,    0 , false, true , false );
# endif

}

#undef gen


// Helper method to do generation of RunTimeStub's
address OptoRuntime::generate_stub( ciEnv* env,
                                    TypeFunc_generator gen, address C_function,
                                    const char *name, int is_fancy_jump,
                                    bool pass_tls,
                                    bool save_argument_registers,
                                    bool return_pc ) {
  ResourceMark rm;
  Compile C( env, gen, C_function, name, is_fancy_jump, pass_tls, save_argument_registers, return_pc );
  return  C.stub_entry_point();
}

const char* OptoRuntime::stub_name(address entry) {
#ifndef PRODUCT
  CodeBlob* cb = CodeCache::find_blob(entry);
  RuntimeStub* rs =(RuntimeStub *)cb;
  assert(rs != NULL && rs->is_runtime_stub(), "not a runtime stub");
  return rs->name();
#else
  // Fast implementation for product mode (maybe it should be inlined too)
  return "runtime stub";
#endif
}


//=============================================================================
// Opto compiler runtime routines
//=============================================================================


//=============================allocation======================================
// We failed the fast-path allocation.  Now we need to do a scavenge or GC
// and try allocation again.

214
void OptoRuntime::new_store_pre_barrier(JavaThread* thread) {
D
duke 已提交
215
  // After any safepoint, just before going back to compiled code,
216 217 218 219
  // we inform the GC that we will be doing initializing writes to
  // this object in the future without emitting card-marks, so
  // GC may take any compensating steps.
  // NOTE: Keep this code consistent with GraphKit::store_barrier.
D
duke 已提交
220 221 222 223 224 225

  oop new_obj = thread->vm_result();
  if (new_obj == NULL)  return;

  assert(Universe::heap()->can_elide_tlab_store_barriers(),
         "compiler must check this first");
226
  // GC may decide to give back a safer copy of new_obj.
227
  new_obj = Universe::heap()->new_store_pre_barrier(thread, new_obj);
D
duke 已提交
228 229 230 231
  thread->set_vm_result(new_obj);
}

// object allocation
232
JRT_BLOCK_ENTRY(void, OptoRuntime::new_instance_C(Klass* klass, JavaThread* thread))
D
duke 已提交
233 234 235 236 237 238 239
  JRT_BLOCK;
#ifndef PRODUCT
  SharedRuntime::_new_instance_ctr++;         // new instance requires GC
#endif
  assert(check_compiled_frame(thread), "incorrect caller");

  // These checks are cheap to make and support reflective allocation.
H
hseigel 已提交
240
  int lh = klass->layout_helper();
D
duke 已提交
241
  if (Klass::layout_helper_needs_slow_path(lh)
242
      || !InstanceKlass::cast(klass)->is_initialized()) {
D
duke 已提交
243 244 245
    KlassHandle kh(THREAD, klass);
    kh->check_valid_for_instantiation(false, THREAD);
    if (!HAS_PENDING_EXCEPTION) {
246
      InstanceKlass::cast(kh())->initialize(THREAD);
D
duke 已提交
247 248 249 250 251 252 253 254 255 256
    }
    if (!HAS_PENDING_EXCEPTION) {
      klass = kh();
    } else {
      klass = NULL;
    }
  }

  if (klass != NULL) {
    // Scavenge and allocate an instance.
257
    oop result = InstanceKlass::cast(klass)->allocate_instance(THREAD);
D
duke 已提交
258 259 260 261 262 263 264 265 266 267 268 269
    thread->set_vm_result(result);

    // Pass oops back through thread local storage.  Our apparent type to Java
    // is that we return an oop, but we can block on exit from this routine and
    // a GC can trash the oop in C's return register.  The generated stub will
    // fetch the oop from TLS after any possible GC.
  }

  deoptimize_caller_frame(thread, HAS_PENDING_EXCEPTION);
  JRT_BLOCK_END;

  if (GraphKit::use_ReduceInitialCardMarks()) {
270
    // inform GC that we won't do card marks for initializing writes.
271
    new_store_pre_barrier(thread);
D
duke 已提交
272 273 274 275 276
  }
JRT_END


// array allocation
277
JRT_BLOCK_ENTRY(void, OptoRuntime::new_array_C(Klass* array_type, int len, JavaThread *thread))
D
duke 已提交
278 279 280 281 282 283 284 285 286
  JRT_BLOCK;
#ifndef PRODUCT
  SharedRuntime::_new_array_ctr++;            // new array requires GC
#endif
  assert(check_compiled_frame(thread), "incorrect caller");

  // Scavenge and allocate an instance.
  oop result;

H
hseigel 已提交
287
  if (array_type->oop_is_typeArray()) {
D
duke 已提交
288 289
    // The oopFactory likes to work with the element type.
    // (We could bypass the oopFactory, since it doesn't add much value.)
290
    BasicType elem_type = TypeArrayKlass::cast(array_type)->element_type();
D
duke 已提交
291 292 293 294 295
    result = oopFactory::new_typeArray(elem_type, len, THREAD);
  } else {
    // Although the oopFactory likes to work with the elem_type,
    // the compiler prefers the array_type, since it must already have
    // that latter value in hand for the fast path.
296
    Klass* elem_type = ObjArrayKlass::cast(array_type)->element_klass();
D
duke 已提交
297 298 299 300 301 302
    result = oopFactory::new_objArray(elem_type, len, THREAD);
  }

  // Pass oops back through thread local storage.  Our apparent type to Java
  // is that we return an oop, but we can block on exit from this routine and
  // a GC can trash the oop in C's return register.  The generated stub will
303 304 305 306 307 308 309 310 311 312 313 314
  // fetch the oop from TLS after any possible GC.
  deoptimize_caller_frame(thread, HAS_PENDING_EXCEPTION);
  thread->set_vm_result(result);
  JRT_BLOCK_END;

  if (GraphKit::use_ReduceInitialCardMarks()) {
    // inform GC that we won't do card marks for initializing writes.
    new_store_pre_barrier(thread);
  }
JRT_END

// array allocation without zeroing
315
JRT_BLOCK_ENTRY(void, OptoRuntime::new_array_nozero_C(Klass* array_type, int len, JavaThread *thread))
316 317 318 319 320 321 322 323 324
  JRT_BLOCK;
#ifndef PRODUCT
  SharedRuntime::_new_array_ctr++;            // new array requires GC
#endif
  assert(check_compiled_frame(thread), "incorrect caller");

  // Scavenge and allocate an instance.
  oop result;

H
hseigel 已提交
325
  assert(array_type->oop_is_typeArray(), "should be called only for type array");
326
  // The oopFactory likes to work with the element type.
327
  BasicType elem_type = TypeArrayKlass::cast(array_type)->element_type();
328 329 330 331 332
  result = oopFactory::new_typeArray_nozero(elem_type, len, THREAD);

  // Pass oops back through thread local storage.  Our apparent type to Java
  // is that we return an oop, but we can block on exit from this routine and
  // a GC can trash the oop in C's return register.  The generated stub will
D
duke 已提交
333 334 335 336 337 338
  // fetch the oop from TLS after any possible GC.
  deoptimize_caller_frame(thread, HAS_PENDING_EXCEPTION);
  thread->set_vm_result(result);
  JRT_BLOCK_END;

  if (GraphKit::use_ReduceInitialCardMarks()) {
339
    // inform GC that we won't do card marks for initializing writes.
340
    new_store_pre_barrier(thread);
D
duke 已提交
341
  }
342 343 344 345 346 347

  oop result = thread->vm_result();
  if ((len > 0) && (result != NULL) &&
      is_deoptimized_caller_frame(thread)) {
    // Zero array here if the caller is deoptimized.
    int size = ((typeArrayOop)result)->object_size();
348
    BasicType elem_type = TypeArrayKlass::cast(array_type)->element_type();
349 350 351 352 353 354 355 356 357 358 359
    const size_t hs = arrayOopDesc::header_size(elem_type);
    // Align to next 8 bytes to avoid trashing arrays's length.
    const size_t aligned_hs = align_object_offset(hs);
    HeapWord* obj = (HeapWord*)result;
    if (aligned_hs > hs) {
      Copy::zero_to_words(obj+hs, aligned_hs-hs);
    }
    // Optimized zeroing.
    Copy::fill_to_aligned_words(obj+aligned_hs, size-aligned_hs);
  }

D
duke 已提交
360 361 362 363 364
JRT_END

// Note: multianewarray for one dimension is handled inline by GraphKit::new_array.

// multianewarray for 2 dimensions
365
JRT_ENTRY(void, OptoRuntime::multianewarray2_C(Klass* elem_type, int len1, int len2, JavaThread *thread))
D
duke 已提交
366 367 368 369
#ifndef PRODUCT
  SharedRuntime::_multi2_ctr++;                // multianewarray for 1 dimension
#endif
  assert(check_compiled_frame(thread), "incorrect caller");
370
  assert(elem_type->is_klass(), "not a class");
D
duke 已提交
371 372 373
  jint dims[2];
  dims[0] = len1;
  dims[1] = len2;
374
  oop obj = ArrayKlass::cast(elem_type)->multi_allocate(2, dims, THREAD);
D
duke 已提交
375 376 377 378 379
  deoptimize_caller_frame(thread, HAS_PENDING_EXCEPTION);
  thread->set_vm_result(obj);
JRT_END

// multianewarray for 3 dimensions
380
JRT_ENTRY(void, OptoRuntime::multianewarray3_C(Klass* elem_type, int len1, int len2, int len3, JavaThread *thread))
D
duke 已提交
381 382 383 384
#ifndef PRODUCT
  SharedRuntime::_multi3_ctr++;                // multianewarray for 1 dimension
#endif
  assert(check_compiled_frame(thread), "incorrect caller");
385
  assert(elem_type->is_klass(), "not a class");
D
duke 已提交
386 387 388 389
  jint dims[3];
  dims[0] = len1;
  dims[1] = len2;
  dims[2] = len3;
390
  oop obj = ArrayKlass::cast(elem_type)->multi_allocate(3, dims, THREAD);
D
duke 已提交
391 392 393 394 395
  deoptimize_caller_frame(thread, HAS_PENDING_EXCEPTION);
  thread->set_vm_result(obj);
JRT_END

// multianewarray for 4 dimensions
396
JRT_ENTRY(void, OptoRuntime::multianewarray4_C(Klass* elem_type, int len1, int len2, int len3, int len4, JavaThread *thread))
D
duke 已提交
397 398 399 400
#ifndef PRODUCT
  SharedRuntime::_multi4_ctr++;                // multianewarray for 1 dimension
#endif
  assert(check_compiled_frame(thread), "incorrect caller");
401
  assert(elem_type->is_klass(), "not a class");
D
duke 已提交
402 403 404 405 406
  jint dims[4];
  dims[0] = len1;
  dims[1] = len2;
  dims[2] = len3;
  dims[3] = len4;
407
  oop obj = ArrayKlass::cast(elem_type)->multi_allocate(4, dims, THREAD);
D
duke 已提交
408 409 410 411 412
  deoptimize_caller_frame(thread, HAS_PENDING_EXCEPTION);
  thread->set_vm_result(obj);
JRT_END

// multianewarray for 5 dimensions
413
JRT_ENTRY(void, OptoRuntime::multianewarray5_C(Klass* elem_type, int len1, int len2, int len3, int len4, int len5, JavaThread *thread))
D
duke 已提交
414 415 416 417
#ifndef PRODUCT
  SharedRuntime::_multi5_ctr++;                // multianewarray for 1 dimension
#endif
  assert(check_compiled_frame(thread), "incorrect caller");
418
  assert(elem_type->is_klass(), "not a class");
D
duke 已提交
419 420 421 422 423 424
  jint dims[5];
  dims[0] = len1;
  dims[1] = len2;
  dims[2] = len3;
  dims[3] = len4;
  dims[4] = len5;
425
  oop obj = ArrayKlass::cast(elem_type)->multi_allocate(5, dims, THREAD);
D
duke 已提交
426 427 428 429
  deoptimize_caller_frame(thread, HAS_PENDING_EXCEPTION);
  thread->set_vm_result(obj);
JRT_END

430
JRT_ENTRY(void, OptoRuntime::multianewarrayN_C(Klass* elem_type, arrayOopDesc* dims, JavaThread *thread))
431
  assert(check_compiled_frame(thread), "incorrect caller");
432
  assert(elem_type->is_klass(), "not a class");
433 434 435 436 437 438 439 440 441
  assert(oop(dims)->is_typeArray(), "not an array");

  ResourceMark rm;
  jint len = dims->length();
  assert(len > 0, "Dimensions array should contain data");
  jint *j_dims = typeArrayOop(dims)->int_at_addr(0);
  jint *c_dims = NEW_RESOURCE_ARRAY(jint, len);
  Copy::conjoint_jints_atomic(j_dims, c_dims, len);

442
  oop obj = ArrayKlass::cast(elem_type)->multi_allocate(len, c_dims, THREAD);
443 444 445 446 447
  deoptimize_caller_frame(thread, HAS_PENDING_EXCEPTION);
  thread->set_vm_result(obj);
JRT_END


D
duke 已提交
448 449 450 451 452 453 454 455 456 457 458 459 460 461 462 463 464 465 466 467 468 469 470 471 472 473 474 475 476 477 478 479 480 481 482 483 484 485 486 487 488 489 490 491 492 493 494 495 496 497 498 499 500 501 502 503 504 505 506 507 508 509 510 511 512 513 514 515 516 517 518 519 520 521 522 523 524 525 526 527
const TypeFunc *OptoRuntime::new_instance_Type() {
  // create input type (domain)
  const Type **fields = TypeTuple::fields(1);
  fields[TypeFunc::Parms+0] = TypeInstPtr::NOTNULL; // Klass to be allocated
  const TypeTuple *domain = TypeTuple::make(TypeFunc::Parms+1, fields);

  // create result type (range)
  fields = TypeTuple::fields(1);
  fields[TypeFunc::Parms+0] = TypeRawPtr::NOTNULL; // Returned oop

  const TypeTuple *range = TypeTuple::make(TypeFunc::Parms+1, fields);

  return TypeFunc::make(domain, range);
}


const TypeFunc *OptoRuntime::athrow_Type() {
  // create input type (domain)
  const Type **fields = TypeTuple::fields(1);
  fields[TypeFunc::Parms+0] = TypeInstPtr::NOTNULL; // Klass to be allocated
  const TypeTuple *domain = TypeTuple::make(TypeFunc::Parms+1, fields);

  // create result type (range)
  fields = TypeTuple::fields(0);

  const TypeTuple *range = TypeTuple::make(TypeFunc::Parms+0, fields);

  return TypeFunc::make(domain, range);
}


const TypeFunc *OptoRuntime::new_array_Type() {
  // create input type (domain)
  const Type **fields = TypeTuple::fields(2);
  fields[TypeFunc::Parms+0] = TypeInstPtr::NOTNULL;   // element klass
  fields[TypeFunc::Parms+1] = TypeInt::INT;       // array size
  const TypeTuple *domain = TypeTuple::make(TypeFunc::Parms+2, fields);

  // create result type (range)
  fields = TypeTuple::fields(1);
  fields[TypeFunc::Parms+0] = TypeRawPtr::NOTNULL; // Returned oop

  const TypeTuple *range = TypeTuple::make(TypeFunc::Parms+1, fields);

  return TypeFunc::make(domain, range);
}

const TypeFunc *OptoRuntime::multianewarray_Type(int ndim) {
  // create input type (domain)
  const int nargs = ndim + 1;
  const Type **fields = TypeTuple::fields(nargs);
  fields[TypeFunc::Parms+0] = TypeInstPtr::NOTNULL;   // element klass
  for( int i = 1; i < nargs; i++ )
    fields[TypeFunc::Parms + i] = TypeInt::INT;       // array size
  const TypeTuple *domain = TypeTuple::make(TypeFunc::Parms+nargs, fields);

  // create result type (range)
  fields = TypeTuple::fields(1);
  fields[TypeFunc::Parms+0] = TypeRawPtr::NOTNULL; // Returned oop
  const TypeTuple *range = TypeTuple::make(TypeFunc::Parms+1, fields);

  return TypeFunc::make(domain, range);
}

const TypeFunc *OptoRuntime::multianewarray2_Type() {
  return multianewarray_Type(2);
}

const TypeFunc *OptoRuntime::multianewarray3_Type() {
  return multianewarray_Type(3);
}

const TypeFunc *OptoRuntime::multianewarray4_Type() {
  return multianewarray_Type(4);
}

const TypeFunc *OptoRuntime::multianewarray5_Type() {
  return multianewarray_Type(5);
}

528 529 530 531 532 533 534 535 536 537 538 539 540 541 542
const TypeFunc *OptoRuntime::multianewarrayN_Type() {
  // create input type (domain)
  const Type **fields = TypeTuple::fields(2);
  fields[TypeFunc::Parms+0] = TypeInstPtr::NOTNULL;   // element klass
  fields[TypeFunc::Parms+1] = TypeInstPtr::NOTNULL;   // array of dim sizes
  const TypeTuple *domain = TypeTuple::make(TypeFunc::Parms+2, fields);

  // create result type (range)
  fields = TypeTuple::fields(1);
  fields[TypeFunc::Parms+0] = TypeRawPtr::NOTNULL; // Returned oop
  const TypeTuple *range = TypeTuple::make(TypeFunc::Parms+1, fields);

  return TypeFunc::make(domain, range);
}

543 544 545 546 547 548 549 550 551 552 553 554 555 556 557 558 559 560 561 562 563 564 565 566 567 568 569
const TypeFunc *OptoRuntime::g1_wb_pre_Type() {
  const Type **fields = TypeTuple::fields(2);
  fields[TypeFunc::Parms+0] = TypeInstPtr::NOTNULL; // original field value
  fields[TypeFunc::Parms+1] = TypeRawPtr::NOTNULL; // thread
  const TypeTuple *domain = TypeTuple::make(TypeFunc::Parms+2, fields);

  // create result type (range)
  fields = TypeTuple::fields(0);
  const TypeTuple *range = TypeTuple::make(TypeFunc::Parms+0, fields);

  return TypeFunc::make(domain, range);
}

const TypeFunc *OptoRuntime::g1_wb_post_Type() {

  const Type **fields = TypeTuple::fields(2);
  fields[TypeFunc::Parms+0] = TypeRawPtr::NOTNULL;  // Card addr
  fields[TypeFunc::Parms+1] = TypeRawPtr::NOTNULL;  // thread
  const TypeTuple *domain = TypeTuple::make(TypeFunc::Parms+2, fields);

  // create result type (range)
  fields = TypeTuple::fields(0);
  const TypeTuple *range = TypeTuple::make(TypeFunc::Parms, fields);

  return TypeFunc::make(domain, range);
}

D
duke 已提交
570 571 572
const TypeFunc *OptoRuntime::uncommon_trap_Type() {
  // create input type (domain)
  const Type **fields = TypeTuple::fields(1);
573
  // Symbol* name of class to be loaded
D
duke 已提交
574 575 576 577 578 579 580 581 582 583 584 585 586 587 588 589 590 591 592 593 594 595 596 597 598 599 600 601 602 603 604 605 606 607 608 609 610 611 612 613 614 615 616 617 618 619 620 621 622 623 624 625 626 627 628 629 630 631 632 633 634 635 636 637 638 639 640 641 642 643 644 645 646 647 648 649 650 651 652 653 654 655 656 657 658 659 660 661 662 663 664 665 666 667 668 669 670 671 672 673 674 675 676 677 678 679 680 681
  fields[TypeFunc::Parms+0] = TypeInt::INT;
  const TypeTuple *domain = TypeTuple::make(TypeFunc::Parms+1, fields);

  // create result type (range)
  fields = TypeTuple::fields(0);
  const TypeTuple *range = TypeTuple::make(TypeFunc::Parms+0, fields);

  return TypeFunc::make(domain, range);
}

# ifdef ENABLE_ZAP_DEAD_LOCALS
// Type used for stub generation for zap_dead_locals.
// No inputs or outputs
const TypeFunc *OptoRuntime::zap_dead_locals_Type() {
  // create input type (domain)
  const Type **fields = TypeTuple::fields(0);
  const TypeTuple *domain = TypeTuple::make(TypeFunc::Parms,fields);

  // create result type (range)
  fields = TypeTuple::fields(0);
  const TypeTuple *range = TypeTuple::make(TypeFunc::Parms,fields);

  return TypeFunc::make(domain,range);
}
# endif


//-----------------------------------------------------------------------------
// Monitor Handling
const TypeFunc *OptoRuntime::complete_monitor_enter_Type() {
  // create input type (domain)
  const Type **fields = TypeTuple::fields(2);
  fields[TypeFunc::Parms+0] = TypeInstPtr::NOTNULL;  // Object to be Locked
  fields[TypeFunc::Parms+1] = TypeRawPtr::BOTTOM;   // Address of stack location for lock
  const TypeTuple *domain = TypeTuple::make(TypeFunc::Parms+2,fields);

  // create result type (range)
  fields = TypeTuple::fields(0);

  const TypeTuple *range = TypeTuple::make(TypeFunc::Parms+0,fields);

  return TypeFunc::make(domain,range);
}


//-----------------------------------------------------------------------------
const TypeFunc *OptoRuntime::complete_monitor_exit_Type() {
  // create input type (domain)
  const Type **fields = TypeTuple::fields(2);
  fields[TypeFunc::Parms+0] = TypeInstPtr::NOTNULL;  // Object to be Locked
  fields[TypeFunc::Parms+1] = TypeRawPtr::BOTTOM;   // Address of stack location for lock
  const TypeTuple *domain = TypeTuple::make(TypeFunc::Parms+2,fields);

  // create result type (range)
  fields = TypeTuple::fields(0);

  const TypeTuple *range = TypeTuple::make(TypeFunc::Parms+0,fields);

  return TypeFunc::make(domain,range);
}

const TypeFunc* OptoRuntime::flush_windows_Type() {
  // create input type (domain)
  const Type** fields = TypeTuple::fields(1);
  fields[TypeFunc::Parms+0] = NULL; // void
  const TypeTuple *domain = TypeTuple::make(TypeFunc::Parms, fields);

  // create result type
  fields = TypeTuple::fields(1);
  fields[TypeFunc::Parms+0] = NULL; // void
  const TypeTuple *range = TypeTuple::make(TypeFunc::Parms, fields);

  return TypeFunc::make(domain, range);
}

const TypeFunc* OptoRuntime::l2f_Type() {
  // create input type (domain)
  const Type **fields = TypeTuple::fields(2);
  fields[TypeFunc::Parms+0] = TypeLong::LONG;
  fields[TypeFunc::Parms+1] = Type::HALF;
  const TypeTuple *domain = TypeTuple::make(TypeFunc::Parms+2, fields);

  // create result type (range)
  fields = TypeTuple::fields(1);
  fields[TypeFunc::Parms+0] = Type::FLOAT;
  const TypeTuple *range = TypeTuple::make(TypeFunc::Parms+1, fields);

  return TypeFunc::make(domain, range);
}

const TypeFunc* OptoRuntime::modf_Type() {
  const Type **fields = TypeTuple::fields(2);
  fields[TypeFunc::Parms+0] = Type::FLOAT;
  fields[TypeFunc::Parms+1] = Type::FLOAT;
  const TypeTuple *domain = TypeTuple::make(TypeFunc::Parms+2, fields);

  // create result type (range)
  fields = TypeTuple::fields(1);
  fields[TypeFunc::Parms+0] = Type::FLOAT;

  const TypeTuple *range = TypeTuple::make(TypeFunc::Parms+1, fields);

  return TypeFunc::make(domain, range);
}

const TypeFunc *OptoRuntime::Math_D_D_Type() {
  // create input type (domain)
  const Type **fields = TypeTuple::fields(2);
682
  // Symbol* name of class to be loaded
D
duke 已提交
683 684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710 711 712
  fields[TypeFunc::Parms+0] = Type::DOUBLE;
  fields[TypeFunc::Parms+1] = Type::HALF;
  const TypeTuple *domain = TypeTuple::make(TypeFunc::Parms+2, fields);

  // create result type (range)
  fields = TypeTuple::fields(2);
  fields[TypeFunc::Parms+0] = Type::DOUBLE;
  fields[TypeFunc::Parms+1] = Type::HALF;
  const TypeTuple *range = TypeTuple::make(TypeFunc::Parms+2, fields);

  return TypeFunc::make(domain, range);
}

const TypeFunc* OptoRuntime::Math_DD_D_Type() {
  const Type **fields = TypeTuple::fields(4);
  fields[TypeFunc::Parms+0] = Type::DOUBLE;
  fields[TypeFunc::Parms+1] = Type::HALF;
  fields[TypeFunc::Parms+2] = Type::DOUBLE;
  fields[TypeFunc::Parms+3] = Type::HALF;
  const TypeTuple *domain = TypeTuple::make(TypeFunc::Parms+4, fields);

  // create result type (range)
  fields = TypeTuple::fields(2);
  fields[TypeFunc::Parms+0] = Type::DOUBLE;
  fields[TypeFunc::Parms+1] = Type::HALF;
  const TypeTuple *range = TypeTuple::make(TypeFunc::Parms+2, fields);

  return TypeFunc::make(domain, range);
}

713
//-------------- currentTimeMillis, currentTimeNanos, etc
D
duke 已提交
714

715
const TypeFunc* OptoRuntime::void_long_Type() {
D
duke 已提交
716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795 796
  // create input type (domain)
  const Type **fields = TypeTuple::fields(0);
  const TypeTuple *domain = TypeTuple::make(TypeFunc::Parms+0, fields);

  // create result type (range)
  fields = TypeTuple::fields(2);
  fields[TypeFunc::Parms+0] = TypeLong::LONG;
  fields[TypeFunc::Parms+1] = Type::HALF;
  const TypeTuple *range = TypeTuple::make(TypeFunc::Parms+2, fields);

  return TypeFunc::make(domain, range);
}

// arraycopy stub variations:
enum ArrayCopyType {
  ac_fast,                      // void(ptr, ptr, size_t)
  ac_checkcast,                 //  int(ptr, ptr, size_t, size_t, ptr)
  ac_slow,                      // void(ptr, int, ptr, int, int)
  ac_generic                    //  int(ptr, int, ptr, int, int)
};

static const TypeFunc* make_arraycopy_Type(ArrayCopyType act) {
  // create input type (domain)
  int num_args      = (act == ac_fast ? 3 : 5);
  int num_size_args = (act == ac_fast ? 1 : act == ac_checkcast ? 2 : 0);
  int argcnt = num_args;
  LP64_ONLY(argcnt += num_size_args); // halfwords for lengths
  const Type** fields = TypeTuple::fields(argcnt);
  int argp = TypeFunc::Parms;
  fields[argp++] = TypePtr::NOTNULL;    // src
  if (num_size_args == 0) {
    fields[argp++] = TypeInt::INT;      // src_pos
  }
  fields[argp++] = TypePtr::NOTNULL;    // dest
  if (num_size_args == 0) {
    fields[argp++] = TypeInt::INT;      // dest_pos
    fields[argp++] = TypeInt::INT;      // length
  }
  while (num_size_args-- > 0) {
    fields[argp++] = TypeX_X;               // size in whatevers (size_t)
    LP64_ONLY(fields[argp++] = Type::HALF); // other half of long length
  }
  if (act == ac_checkcast) {
    fields[argp++] = TypePtr::NOTNULL;  // super_klass
  }
  assert(argp == TypeFunc::Parms+argcnt, "correct decoding of act");
  const TypeTuple* domain = TypeTuple::make(TypeFunc::Parms+argcnt, fields);

  // create result type if needed
  int retcnt = (act == ac_checkcast || act == ac_generic ? 1 : 0);
  fields = TypeTuple::fields(1);
  if (retcnt == 0)
    fields[TypeFunc::Parms+0] = NULL; // void
  else
    fields[TypeFunc::Parms+0] = TypeInt::INT; // status result, if needed
  const TypeTuple* range = TypeTuple::make(TypeFunc::Parms+retcnt, fields);
  return TypeFunc::make(domain, range);
}

const TypeFunc* OptoRuntime::fast_arraycopy_Type() {
  // This signature is simple:  Two base pointers and a size_t.
  return make_arraycopy_Type(ac_fast);
}

const TypeFunc* OptoRuntime::checkcast_arraycopy_Type() {
  // An extension of fast_arraycopy_Type which adds type checking.
  return make_arraycopy_Type(ac_checkcast);
}

const TypeFunc* OptoRuntime::slow_arraycopy_Type() {
  // This signature is exactly the same as System.arraycopy.
  // There are no intptr_t (int/long) arguments.
  return make_arraycopy_Type(ac_slow);
}

const TypeFunc* OptoRuntime::generic_arraycopy_Type() {
  // This signature is like System.arraycopy, except that it returns status.
  return make_arraycopy_Type(ac_generic);
}


N
never 已提交
797
const TypeFunc* OptoRuntime::array_fill_Type() {
798 799 800 801 802 803 804 805
  // create input type (domain): pointer, int, size_t
  const Type** fields = TypeTuple::fields(3 LP64_ONLY( + 1));
  int argp = TypeFunc::Parms;
  fields[argp++] = TypePtr::NOTNULL;
  fields[argp++] = TypeInt::INT;
  fields[argp++] = TypeX_X;               // size in whatevers (size_t)
  LP64_ONLY(fields[argp++] = Type::HALF); // other half of long length
  const TypeTuple *domain = TypeTuple::make(argp, fields);
N
never 已提交
806 807 808 809 810 811 812 813 814

  // create result type
  fields = TypeTuple::fields(1);
  fields[TypeFunc::Parms+0] = NULL; // void
  const TypeTuple *range = TypeTuple::make(TypeFunc::Parms, fields);

  return TypeFunc::make(domain, range);
}

815 816 817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851 852 853 854 855 856
// for aescrypt encrypt/decrypt operations, just three pointers returning void (length is constant)
const TypeFunc* OptoRuntime::aescrypt_block_Type() {
  // create input type (domain)
  int num_args      = 3;
  int argcnt = num_args;
  const Type** fields = TypeTuple::fields(argcnt);
  int argp = TypeFunc::Parms;
  fields[argp++] = TypePtr::NOTNULL;    // src
  fields[argp++] = TypePtr::NOTNULL;    // dest
  fields[argp++] = TypePtr::NOTNULL;    // k array
  assert(argp == TypeFunc::Parms+argcnt, "correct decoding");
  const TypeTuple* domain = TypeTuple::make(TypeFunc::Parms+argcnt, fields);

  // no result type needed
  fields = TypeTuple::fields(1);
  fields[TypeFunc::Parms+0] = NULL; // void
  const TypeTuple* range = TypeTuple::make(TypeFunc::Parms, fields);
  return TypeFunc::make(domain, range);
}

// for cipherBlockChaining calls of aescrypt encrypt/decrypt, four pointers and a length, returning void
const TypeFunc* OptoRuntime::cipherBlockChaining_aescrypt_Type() {
  // create input type (domain)
  int num_args      = 5;
  int argcnt = num_args;
  const Type** fields = TypeTuple::fields(argcnt);
  int argp = TypeFunc::Parms;
  fields[argp++] = TypePtr::NOTNULL;    // src
  fields[argp++] = TypePtr::NOTNULL;    // dest
  fields[argp++] = TypePtr::NOTNULL;    // k array
  fields[argp++] = TypePtr::NOTNULL;    // r array
  fields[argp++] = TypeInt::INT;        // src len
  assert(argp == TypeFunc::Parms+argcnt, "correct decoding");
  const TypeTuple* domain = TypeTuple::make(TypeFunc::Parms+argcnt, fields);

  // no result type needed
  fields = TypeTuple::fields(1);
  fields[TypeFunc::Parms+0] = NULL; // void
  const TypeTuple* range = TypeTuple::make(TypeFunc::Parms, fields);
  return TypeFunc::make(domain, range);
}

D
duke 已提交
857 858 859 860 861 862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889
//------------- Interpreter state access for on stack replacement
const TypeFunc* OptoRuntime::osr_end_Type() {
  // create input type (domain)
  const Type **fields = TypeTuple::fields(1);
  fields[TypeFunc::Parms+0] = TypeRawPtr::BOTTOM; // OSR temp buf
  const TypeTuple *domain = TypeTuple::make(TypeFunc::Parms+1, fields);

  // create result type
  fields = TypeTuple::fields(1);
  // fields[TypeFunc::Parms+0] = TypeInstPtr::NOTNULL; // locked oop
  fields[TypeFunc::Parms+0] = NULL; // void
  const TypeTuple *range = TypeTuple::make(TypeFunc::Parms, fields);
  return TypeFunc::make(domain, range);
}

//-------------- methodData update helpers

const TypeFunc* OptoRuntime::profile_receiver_type_Type() {
  // create input type (domain)
  const Type **fields = TypeTuple::fields(2);
  fields[TypeFunc::Parms+0] = TypeAryPtr::NOTNULL;    // methodData pointer
  fields[TypeFunc::Parms+1] = TypeInstPtr::BOTTOM;    // receiver oop
  const TypeTuple *domain = TypeTuple::make(TypeFunc::Parms+2, fields);

  // create result type
  fields = TypeTuple::fields(1);
  fields[TypeFunc::Parms+0] = NULL; // void
  const TypeTuple *range = TypeTuple::make(TypeFunc::Parms, fields);
  return TypeFunc::make(domain,range);
}

JRT_LEAF(void, OptoRuntime::profile_receiver_type_C(DataLayout* data, oopDesc* receiver))
  if (receiver == NULL) return;
890
  Klass* receiver_klass = receiver->klass();
D
duke 已提交
891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914 915 916 917

  intptr_t* mdp = ((intptr_t*)(data)) + DataLayout::header_size_in_cells();
  int empty_row = -1;           // free row, if any is encountered

  // ReceiverTypeData* vc = new ReceiverTypeData(mdp);
  for (uint row = 0; row < ReceiverTypeData::row_limit(); row++) {
    // if (vc->receiver(row) == receiver_klass)
    int receiver_off = ReceiverTypeData::receiver_cell_index(row);
    intptr_t row_recv = *(mdp + receiver_off);
    if (row_recv == (intptr_t) receiver_klass) {
      // vc->set_receiver_count(row, vc->receiver_count(row) + DataLayout::counter_increment);
      int count_off = ReceiverTypeData::receiver_count_cell_index(row);
      *(mdp + count_off) += DataLayout::counter_increment;
      return;
    } else if (row_recv == 0) {
      // else if (vc->receiver(row) == NULL)
      empty_row = (int) row;
    }
  }

  if (empty_row != -1) {
    int receiver_off = ReceiverTypeData::receiver_cell_index(empty_row);
    // vc->set_receiver(empty_row, receiver_klass);
    *(mdp + receiver_off) = (intptr_t) receiver_klass;
    // vc->set_receiver_count(empty_row, DataLayout::counter_increment);
    int count_off = ReceiverTypeData::receiver_count_cell_index(empty_row);
    *(mdp + count_off) = DataLayout::counter_increment;
918 919
  } else {
    // Receiver did not match any saved receiver and there is no empty row for it.
920
    // Increment total counter to indicate polymorphic case.
921 922
    intptr_t* count_p = (intptr_t*)(((byte*)(data)) + in_bytes(CounterData::count_offset()));
    *count_p += DataLayout::counter_increment;
D
duke 已提交
923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967
  }
JRT_END

//-------------------------------------------------------------------------------------
// register policy

bool OptoRuntime::is_callee_saved_register(MachRegisterNumbers reg) {
  assert(reg >= 0 && reg < _last_Mach_Reg, "must be a machine register");
  switch (register_save_policy[reg]) {
    case 'C': return false; //SOC
    case 'E': return true ; //SOE
    case 'N': return false; //NS
    case 'A': return false; //AS
  }
  ShouldNotReachHere();
  return false;
}

//-----------------------------------------------------------------------
// Exceptions
//

static void trace_exception(oop exception_oop, address exception_pc, const char* msg) PRODUCT_RETURN;

// The method is an entry that is always called by a C++ method not
// directly from compiled code. Compiled code will call the C++ method following.
// We can't allow async exception to be installed during  exception processing.
JRT_ENTRY_NO_ASYNC(address, OptoRuntime::handle_exception_C_helper(JavaThread* thread, nmethod* &nm))

  // Do not confuse exception_oop with pending_exception. The exception_oop
  // is only used to pass arguments into the method. Not for general
  // exception handling.  DO NOT CHANGE IT to use pending_exception, since
  // the runtime stubs checks this on exit.
  assert(thread->exception_oop() != NULL, "exception oop is found");
  address handler_address = NULL;

  Handle exception(thread, thread->exception_oop());

  if (TraceExceptions) {
    trace_exception(exception(), thread->exception_pc(), "");
  }
  // for AbortVMOnException flag
  NOT_PRODUCT(Exceptions::debug_check_abort(exception));

  #ifdef ASSERT
968
    if (!(exception->is_a(SystemDictionary::Throwable_klass()))) {
D
duke 已提交
969 970 971 972 973 974 975 976 977 978 979 980 981 982
      // should throw an exception here
      ShouldNotReachHere();
    }
  #endif


  // new exception handling: this method is entered only from adapters
  // exceptions from compiled java methods are handled in compiled code
  // using rethrow node

  address pc = thread->exception_pc();
  nm = CodeCache::find_nmethod(pc);
  assert(nm != NULL, "No NMethod found");
  if (nm->is_native_method()) {
983
    fatal("Native method should not have path to exception handling");
D
duke 已提交
984 985 986 987
  } else {
    // we are switching to old paradigm: search for exception handler in caller_frame
    // instead in exception handler of caller_frame.sender()

988
    if (JvmtiExport::can_post_on_exceptions()) {
D
duke 已提交
989 990 991 992
      // "Full-speed catching" is not necessary here,
      // since we're notifying the VM on every catch.
      // Force deoptimization and the rest of the lookup
      // will be fine.
993
      deoptimize_caller_frame(thread);
D
duke 已提交
994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011
    }

    // Check the stack guard pages.  If enabled, look for handler in this frame;
    // otherwise, forcibly unwind the frame.
    //
    // 4826555: use default current sp for reguard_stack instead of &nm: it's more accurate.
    bool force_unwind = !thread->reguard_stack();
    bool deopting = false;
    if (nm->is_deopt_pc(pc)) {
      deopting = true;
      RegisterMap map(thread, false);
      frame deoptee = thread->last_frame().sender(&map);
      assert(deoptee.is_deoptimized_frame(), "must be deopted");
      // Adjust the pc back to the original throwing pc
      pc = deoptee.pc();
    }

    // If we are forcing an unwind because of stack overflow then deopt is
1012
    // irrelevant since we are throwing the frame away anyway.
D
duke 已提交
1013 1014 1015 1016 1017 1018 1019 1020 1021

    if (deopting && !force_unwind) {
      handler_address = SharedRuntime::deopt_blob()->unpack_with_exception();
    } else {

      handler_address =
        force_unwind ? NULL : nm->handler_for_exception_and_pc(exception, pc);

      if (handler_address == NULL) {
1022
        Handle original_exception(thread, exception());
D
duke 已提交
1023 1024
        handler_address = SharedRuntime::compute_compiled_exc_handler(nm, pc, exception, force_unwind, true);
        assert (handler_address != NULL, "must have compiled handler");
1025 1026 1027 1028
        // Update the exception cache only when the unwind was not forced
        // and there didn't happen another exception during the computation of the
        // compiled exception handler.
        if (!force_unwind && original_exception() == exception()) {
D
duke 已提交
1029 1030 1031 1032 1033 1034 1035 1036 1037
          nm->add_handler_for_exception_and_pc(exception,pc,handler_address);
        }
      } else {
        assert(handler_address == SharedRuntime::compute_compiled_exc_handler(nm, pc, exception, force_unwind, true), "Must be the same");
      }
    }

    thread->set_exception_pc(pc);
    thread->set_exception_handler_pc(handler_address);
1038

1039
    // Check if the exception PC is a MethodHandle call site.
1040
    thread->set_is_method_handle_return(nm->is_method_handle_return(pc));
D
duke 已提交
1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054
  }

  // Restore correct return pc.  Was saved above.
  thread->set_exception_oop(exception());
  return handler_address;

JRT_END

// We are entering here from exception_blob
// If there is a compiled exception handler in this method, we will continue there;
// otherwise we will unwind the stack and continue at the caller of top frame method
// Note we enter without the usual JRT wrapper. We will call a helper routine that
// will do the normal VM entry. We do it this way so that we can see if the nmethod
// we looked up the handler for has been deoptimized in the meantime. If it has been
1055
// we must not use the handler and instead return the deopt blob.
D
duke 已提交
1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118
address OptoRuntime::handle_exception_C(JavaThread* thread) {
//
// We are in Java not VM and in debug mode we have a NoHandleMark
//
#ifndef PRODUCT
  SharedRuntime::_find_handler_ctr++;          // find exception handler
#endif
  debug_only(NoHandleMark __hm;)
  nmethod* nm = NULL;
  address handler_address = NULL;
  {
    // Enter the VM

    ResetNoHandleMark rnhm;
    handler_address = handle_exception_C_helper(thread, nm);
  }

  // Back in java: Use no oops, DON'T safepoint

  // Now check to see if the handler we are returning is in a now
  // deoptimized frame

  if (nm != NULL) {
    RegisterMap map(thread, false);
    frame caller = thread->last_frame().sender(&map);
#ifdef ASSERT
    assert(caller.is_compiled_frame(), "must be");
#endif // ASSERT
    if (caller.is_deoptimized_frame()) {
      handler_address = SharedRuntime::deopt_blob()->unpack_with_exception();
    }
  }
  return handler_address;
}

//------------------------------rethrow----------------------------------------
// We get here after compiled code has executed a 'RethrowNode'.  The callee
// is either throwing or rethrowing an exception.  The callee-save registers
// have been restored, synchronized objects have been unlocked and the callee
// stack frame has been removed.  The return address was passed in.
// Exception oop is passed as the 1st argument.  This routine is then called
// from the stub.  On exit, we know where to jump in the caller's code.
// After this C code exits, the stub will pop his frame and end in a jump
// (instead of a return).  We enter the caller's default handler.
//
// This must be JRT_LEAF:
//     - caller will not change its state as we cannot block on exit,
//       therefore raw_exception_handler_for_return_address is all it takes
//       to handle deoptimized blobs
//
// However, there needs to be a safepoint check in the middle!  So compiled
// safepoints are completely watertight.
//
// Thus, it cannot be a leaf since it contains the No_GC_Verifier.
//
// *THIS IS NOT RECOMMENDED PROGRAMMING STYLE*
//
address OptoRuntime::rethrow_C(oopDesc* exception, JavaThread* thread, address ret_pc) {
#ifndef PRODUCT
  SharedRuntime::_rethrow_ctr++;               // count rethrows
#endif
  assert (exception != NULL, "should have thrown a NULLPointerException");
#ifdef ASSERT
1119
  if (!(exception->is_a(SystemDictionary::Throwable_klass()))) {
D
duke 已提交
1120 1121 1122 1123 1124 1125 1126
    // should throw an exception here
    ShouldNotReachHere();
  }
#endif

  thread->set_vm_result(exception);
  // Frame not compiled (handles deoptimization blob)
1127
  return SharedRuntime::raw_exception_handler_for_return_address(thread, ret_pc);
D
duke 已提交
1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146
}


const TypeFunc *OptoRuntime::rethrow_Type() {
  // create input type (domain)
  const Type **fields = TypeTuple::fields(1);
  fields[TypeFunc::Parms+0] = TypeInstPtr::NOTNULL; // Exception oop
  const TypeTuple *domain = TypeTuple::make(TypeFunc::Parms+1,fields);

  // create result type (range)
  fields = TypeTuple::fields(1);
  fields[TypeFunc::Parms+0] = TypeInstPtr::NOTNULL; // Exception oop
  const TypeTuple *range = TypeTuple::make(TypeFunc::Parms+1, fields);

  return TypeFunc::make(domain, range);
}


void OptoRuntime::deoptimize_caller_frame(JavaThread *thread, bool doit) {
1147 1148 1149 1150
  // Deoptimize the caller before continuing, as the compiled
  // exception handler table may not be valid.
  if (!StressCompiledExceptionHandlers && doit) {
    deoptimize_caller_frame(thread);
D
duke 已提交
1151 1152 1153
  }
}

1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164
void OptoRuntime::deoptimize_caller_frame(JavaThread *thread) {
  // Called from within the owner thread, so no need for safepoint
  RegisterMap reg_map(thread);
  frame stub_frame = thread->last_frame();
  assert(stub_frame.is_runtime_frame() || exception_blob()->contains(stub_frame.pc()), "sanity check");
  frame caller_frame = stub_frame.sender(&reg_map);

  // Deoptimize the caller frame.
  Deoptimization::deoptimize_frame(thread, caller_frame.id());
}

D
duke 已提交
1165

1166 1167 1168 1169 1170 1171 1172 1173 1174 1175
bool OptoRuntime::is_deoptimized_caller_frame(JavaThread *thread) {
  // Called from within the owner thread, so no need for safepoint
  RegisterMap reg_map(thread);
  frame stub_frame = thread->last_frame();
  assert(stub_frame.is_runtime_frame() || exception_blob()->contains(stub_frame.pc()), "sanity check");
  frame caller_frame = stub_frame.sender(&reg_map);
  return caller_frame.is_deoptimized_frame();
}


D
duke 已提交
1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198
const TypeFunc *OptoRuntime::register_finalizer_Type() {
  // create input type (domain)
  const Type **fields = TypeTuple::fields(1);
  fields[TypeFunc::Parms+0] = TypeInstPtr::NOTNULL;  // oop;          Receiver
  // // The JavaThread* is passed to each routine as the last argument
  // fields[TypeFunc::Parms+1] = TypeRawPtr::NOTNULL;  // JavaThread *; Executing thread
  const TypeTuple *domain = TypeTuple::make(TypeFunc::Parms+1,fields);

  // create result type (range)
  fields = TypeTuple::fields(0);

  const TypeTuple *range = TypeTuple::make(TypeFunc::Parms+0,fields);

  return TypeFunc::make(domain,range);
}


//-----------------------------------------------------------------------------
// Dtrace support.  entry and exit probes have the same signature
const TypeFunc *OptoRuntime::dtrace_method_entry_exit_Type() {
  // create input type (domain)
  const Type **fields = TypeTuple::fields(2);
  fields[TypeFunc::Parms+0] = TypeRawPtr::BOTTOM; // Thread-local storage
1199
  fields[TypeFunc::Parms+1] = TypeMetadataPtr::BOTTOM;  // Method*;    Method we are entering
D
duke 已提交
1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228
  const TypeTuple *domain = TypeTuple::make(TypeFunc::Parms+2,fields);

  // create result type (range)
  fields = TypeTuple::fields(0);

  const TypeTuple *range = TypeTuple::make(TypeFunc::Parms+0,fields);

  return TypeFunc::make(domain,range);
}

const TypeFunc *OptoRuntime::dtrace_object_alloc_Type() {
  // create input type (domain)
  const Type **fields = TypeTuple::fields(2);
  fields[TypeFunc::Parms+0] = TypeRawPtr::BOTTOM; // Thread-local storage
  fields[TypeFunc::Parms+1] = TypeInstPtr::NOTNULL;  // oop;    newly allocated object

  const TypeTuple *domain = TypeTuple::make(TypeFunc::Parms+2,fields);

  // create result type (range)
  fields = TypeTuple::fields(0);

  const TypeTuple *range = TypeTuple::make(TypeFunc::Parms+0,fields);

  return TypeFunc::make(domain,range);
}


JRT_ENTRY_NO_ASYNC(void, OptoRuntime::register_finalizer(oopDesc* obj, JavaThread* thread))
  assert(obj->is_oop(), "must be a valid oop");
1229 1230
  assert(obj->klass()->has_finalizer(), "shouldn't be here otherwise");
  InstanceKlass::register_finalizer(instanceOop(obj), CHECK);
D
duke 已提交
1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395
JRT_END

//-----------------------------------------------------------------------------

NamedCounter * volatile OptoRuntime::_named_counters = NULL;

//
// dump the collected NamedCounters.
//
void OptoRuntime::print_named_counters() {
  int total_lock_count = 0;
  int eliminated_lock_count = 0;

  NamedCounter* c = _named_counters;
  while (c) {
    if (c->tag() == NamedCounter::LockCounter || c->tag() == NamedCounter::EliminatedLockCounter) {
      int count = c->count();
      if (count > 0) {
        bool eliminated = c->tag() == NamedCounter::EliminatedLockCounter;
        if (Verbose) {
          tty->print_cr("%d %s%s", count, c->name(), eliminated ? " (eliminated)" : "");
        }
        total_lock_count += count;
        if (eliminated) {
          eliminated_lock_count += count;
        }
      }
    } else if (c->tag() == NamedCounter::BiasedLockingCounter) {
      BiasedLockingCounters* blc = ((BiasedLockingNamedCounter*)c)->counters();
      if (blc->nonzero()) {
        tty->print_cr("%s", c->name());
        blc->print_on(tty);
      }
    }
    c = c->next();
  }
  if (total_lock_count > 0) {
    tty->print_cr("dynamic locks: %d", total_lock_count);
    if (eliminated_lock_count) {
      tty->print_cr("eliminated locks: %d (%d%%)", eliminated_lock_count,
                    (int)(eliminated_lock_count * 100.0 / total_lock_count));
    }
  }
}

//
//  Allocate a new NamedCounter.  The JVMState is used to generate the
//  name which consists of method@line for the inlining tree.
//

NamedCounter* OptoRuntime::new_named_counter(JVMState* youngest_jvms, NamedCounter::CounterTag tag) {
  int max_depth = youngest_jvms->depth();

  // Visit scopes from youngest to oldest.
  bool first = true;
  stringStream st;
  for (int depth = max_depth; depth >= 1; depth--) {
    JVMState* jvms = youngest_jvms->of_depth(depth);
    ciMethod* m = jvms->has_method() ? jvms->method() : NULL;
    if (!first) {
      st.print(" ");
    } else {
      first = false;
    }
    int bci = jvms->bci();
    if (bci < 0) bci = 0;
    st.print("%s.%s@%d", m->holder()->name()->as_utf8(), m->name()->as_utf8(), bci);
    // To print linenumbers instead of bci use: m->line_number_from_bci(bci)
  }
  NamedCounter* c;
  if (tag == NamedCounter::BiasedLockingCounter) {
    c = new BiasedLockingNamedCounter(strdup(st.as_string()));
  } else {
    c = new NamedCounter(strdup(st.as_string()), tag);
  }

  // atomically add the new counter to the head of the list.  We only
  // add counters so this is safe.
  NamedCounter* head;
  do {
    head = _named_counters;
    c->set_next(head);
  } while (Atomic::cmpxchg_ptr(c, &_named_counters, head) != head);
  return c;
}

//-----------------------------------------------------------------------------
// Non-product code
#ifndef PRODUCT

int trace_exception_counter = 0;
static void trace_exception(oop exception_oop, address exception_pc, const char* msg) {
  ttyLocker ttyl;
  trace_exception_counter++;
  tty->print("%d [Exception (%s): ", trace_exception_counter, msg);
  exception_oop->print_value();
  tty->print(" in ");
  CodeBlob* blob = CodeCache::find_blob(exception_pc);
  if (blob->is_nmethod()) {
    ((nmethod*)blob)->method()->print_value();
  } else if (blob->is_runtime_stub()) {
    tty->print("<runtime-stub>");
  } else {
    tty->print("<unknown>");
  }
  tty->print(" at " INTPTR_FORMAT,  exception_pc);
  tty->print_cr("]");
}

#endif  // PRODUCT


# ifdef ENABLE_ZAP_DEAD_LOCALS
// Called from call sites in compiled code with oop maps (actually safepoints)
// Zaps dead locals in first java frame.
// Is entry because may need to lock to generate oop maps
// Currently, only used for compiler frames, but someday may be used
// for interpreter frames, too.

int OptoRuntime::ZapDeadCompiledLocals_count = 0;

// avoid pointers to member funcs with these helpers
static bool is_java_frame(  frame* f) { return f->is_java_frame();   }
static bool is_native_frame(frame* f) { return f->is_native_frame(); }


void OptoRuntime::zap_dead_java_or_native_locals(JavaThread* thread,
                                                bool (*is_this_the_right_frame_to_zap)(frame*)) {
  assert(JavaThread::current() == thread, "is this needed?");

  if ( !ZapDeadCompiledLocals )  return;

  bool skip = false;

       if ( ZapDeadCompiledLocalsFirst  ==  0  ) ; // nothing special
  else if ( ZapDeadCompiledLocalsFirst  >  ZapDeadCompiledLocals_count )  skip = true;
  else if ( ZapDeadCompiledLocalsFirst  == ZapDeadCompiledLocals_count )
    warning("starting zapping after skipping");

       if ( ZapDeadCompiledLocalsLast  ==  -1  ) ; // nothing special
  else if ( ZapDeadCompiledLocalsLast  <   ZapDeadCompiledLocals_count )  skip = true;
  else if ( ZapDeadCompiledLocalsLast  ==  ZapDeadCompiledLocals_count )
    warning("about to zap last zap");

  ++ZapDeadCompiledLocals_count; // counts skipped zaps, too

  if ( skip )  return;

  // find java frame and zap it

  for (StackFrameStream sfs(thread);  !sfs.is_done();  sfs.next()) {
    if (is_this_the_right_frame_to_zap(sfs.current()) ) {
      sfs.current()->zap_dead_locals(thread, sfs.register_map());
      return;
    }
  }
  warning("no frame found to zap in zap_dead_Java_locals_C");
}

JRT_LEAF(void, OptoRuntime::zap_dead_Java_locals_C(JavaThread* thread))
  zap_dead_java_or_native_locals(thread, is_java_frame);
JRT_END

// The following does not work because for one thing, the
// thread state is wrong; it expects java, but it is native.
T
twisti 已提交
1396
// Also, the invariants in a native stub are different and
D
duke 已提交
1397 1398 1399 1400 1401 1402 1403 1404 1405
// I'm not sure it is safe to have a MachCalRuntimeDirectNode
// in there.
// So for now, we do not zap in native stubs.

JRT_LEAF(void, OptoRuntime::zap_dead_native_locals_C(JavaThread* thread))
  zap_dead_java_or_native_locals(thread, is_native_frame);
JRT_END

# endif