1 /*
   2  * Copyright (c) 2012, 2018, Oracle and/or its affiliates. All rights reserved.
   3  * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
   4  *
   5  * This code is free software; you can redistribute it and/or modify it
   6  * under the terms of the GNU General Public License version 2 only, as
   7  * published by the Free Software Foundation.
   8  *
   9  * This code is distributed in the hope that it will be useful, but WITHOUT
  10  * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  11  * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
  12  * version 2 for more details (a copy is included in the LICENSE file that
  13  * accompanied this code).
  14  *
  15  * You should have received a copy of the GNU General Public License version
  16  * 2 along with this work; if not, write to the Free Software Foundation,
  17  * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
  18  *
  19  * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
  20  * or visit www.oracle.com if you need additional information or have any
  21  * questions.
  22  *
  23  */
  24 
  25 #include "precompiled.hpp"
  26 
  27 #include "memory/metadataFactory.hpp"
  28 #include "memory/metaspaceShared.hpp"
  29 #include "memory/iterator.hpp"
  30 #include "memory/universe.hpp"
  31 #include "oops/oop.inline.hpp"
  32 
  33 #include "classfile/symbolTable.hpp"
  34 #include "classfile/classLoaderData.hpp"
  35 
  36 #include "prims/whitebox.hpp"
  37 #include "prims/wbtestmethods/parserTests.hpp"
  38 
  39 #include "runtime/arguments.hpp"
  40 #include "runtime/interfaceSupport.hpp"
  41 #include "runtime/os.hpp"
  42 #include "utilities/array.hpp"
  43 #include "utilities/debug.hpp"
  44 #include "utilities/macros.hpp"
  45 #include "utilities/exceptions.hpp"
  46 
  47 #if INCLUDE_ALL_GCS
  48 #include "gc_implementation/parallelScavenge/parallelScavengeHeap.inline.hpp"
  49 #include "gc_implementation/g1/concurrentMark.hpp"
  50 #include "gc_implementation/g1/concurrentMarkThread.hpp"
  51 #include "gc_implementation/g1/g1CollectedHeap.inline.hpp"
  52 #include "gc_implementation/g1/heapRegionRemSet.hpp"
  53 #endif // INCLUDE_ALL_GCS
  54 
  55 #if INCLUDE_NMT
  56 #include "services/mallocSiteTable.hpp"
  57 #include "services/memTracker.hpp"
  58 #include "utilities/nativeCallStack.hpp"
  59 #endif // INCLUDE_NMT
  60 
  61 #include "compiler/compileBroker.hpp"
  62 #include "jvmtifiles/jvmtiEnv.hpp"
  63 #include "runtime/compilationPolicy.hpp"
  64 
  65 PRAGMA_FORMAT_MUTE_WARNINGS_FOR_GCC
  66 
  67 #define SIZE_T_MAX_VALUE ((size_t) -1)
  68 
  69 bool WhiteBox::_used = false;
  70 
  71 WB_ENTRY(jlong, WB_GetObjectAddress(JNIEnv* env, jobject o, jobject obj))
  72   return (jlong)(void*)JNIHandles::resolve(obj);
  73 WB_END
  74 
  75 WB_ENTRY(jint, WB_GetHeapOopSize(JNIEnv* env, jobject o))
  76   return heapOopSize;
  77 WB_END
  78 
  79 WB_ENTRY(jint, WB_GetVMPageSize(JNIEnv* env, jobject o))
  80   return os::vm_page_size();
  81 WB_END
  82 
  83 WB_ENTRY(jlong, WB_GetVMLargePageSize(JNIEnv* env, jobject o))
  84   return os::large_page_size();
  85 WB_END
  86 
  87 class WBIsKlassAliveClosure : public KlassClosure {
  88     Symbol* _name;
  89     bool _found;
  90 public:
  91     WBIsKlassAliveClosure(Symbol* name) : _name(name), _found(false) {}
  92 
  93     void do_klass(Klass* k) {
  94       if (_found) return;
  95       Symbol* ksym = k->name();
  96       if (ksym->fast_compare(_name) == 0) {
  97         _found = true;
  98       }
  99     }
 100 
 101     bool found() const {
 102         return _found;
 103     }
 104 };
 105 
 106 WB_ENTRY(jboolean, WB_IsClassAlive(JNIEnv* env, jobject target, jstring name))
 107   Handle h_name = JNIHandles::resolve(name);
 108   if (h_name.is_null()) return false;
 109   Symbol* sym = java_lang_String::as_symbol(h_name, CHECK_false);
 110   TempNewSymbol tsym(sym); // Make sure to decrement reference count on sym on return
 111 
 112   WBIsKlassAliveClosure closure(sym);
 113   ClassLoaderDataGraph::classes_do(&closure);
 114 
 115   return closure.found();
 116 WB_END
 117 
 118 WB_ENTRY(jboolean, WB_ClassKnownToNotExist(JNIEnv* env, jobject o, jobject loader, jstring name))
 119   ThreadToNativeFromVM ttnfv(thread);   // can't be in VM when we call JNI
 120   const char* class_name = env->GetStringUTFChars(name, NULL);
 121   jboolean result = JVM_KnownToNotExist(env, loader, class_name);
 122   env->ReleaseStringUTFChars(name, class_name);
 123   return result;
 124 WB_END
 125 
 126 WB_ENTRY(jobjectArray, WB_GetLookupCacheURLs(JNIEnv* env, jobject o, jobject loader))
 127   ThreadToNativeFromVM ttnfv(thread);   // can't be in VM when we call JNI
 128   return JVM_GetResourceLookupCacheURLs(env, loader);
 129 WB_END
 130 
 131 WB_ENTRY(jintArray, WB_GetLookupCacheMatches(JNIEnv* env, jobject o, jobject loader, jstring name))
 132   ThreadToNativeFromVM ttnfv(thread);   // can't be in VM when we call JNI
 133   const char* resource_name = env->GetStringUTFChars(name, NULL);
 134   jintArray result = JVM_GetResourceLookupCache(env, loader, resource_name);
 135 
 136   env->ReleaseStringUTFChars(name, resource_name);
 137   return result;
 138 WB_END
 139 
 140 WB_ENTRY(void, WB_AddToBootstrapClassLoaderSearch(JNIEnv* env, jobject o, jstring segment)) {
 141 #if INCLUDE_JVMTI
 142   ResourceMark rm;
 143   const char* seg = java_lang_String::as_utf8_string(JNIHandles::resolve_non_null(segment));
 144   JvmtiEnv* jvmti_env = JvmtiEnv::create_a_jvmti(JVMTI_VERSION);
 145   jvmtiError err = jvmti_env->AddToBootstrapClassLoaderSearch(seg);
 146   assert(err == JVMTI_ERROR_NONE, "must not fail");
 147 #endif
 148 }
 149 WB_END
 150 
 151 WB_ENTRY(void, WB_AddToSystemClassLoaderSearch(JNIEnv* env, jobject o, jstring segment)) {
 152 #if INCLUDE_JVMTI
 153   ResourceMark rm;
 154   const char* seg = java_lang_String::as_utf8_string(JNIHandles::resolve_non_null(segment));
 155   JvmtiEnv* jvmti_env = JvmtiEnv::create_a_jvmti(JVMTI_VERSION);
 156   jvmtiError err = jvmti_env->AddToSystemClassLoaderSearch(seg);
 157   assert(err == JVMTI_ERROR_NONE, "must not fail");
 158 #endif
 159 }
 160 WB_END
 161 
 162 #ifdef LINUX
 163 #include "utilities/elfFile.hpp"
 164 #include "osContainer_linux.hpp"
 165 #endif
 166 
 167 WB_ENTRY(jlong, WB_GetCompressedOopsMaxHeapSize(JNIEnv* env, jobject o)) {
 168   return (jlong)Arguments::max_heap_for_compressed_oops();
 169 }
 170 WB_END
 171 
 172 WB_ENTRY(void, WB_PrintHeapSizes(JNIEnv* env, jobject o)) {
 173   CollectorPolicy * p = Universe::heap()->collector_policy();
 174   gclog_or_tty->print_cr("Minimum heap " SIZE_FORMAT " Initial heap "
 175     SIZE_FORMAT " Maximum heap " SIZE_FORMAT " Space alignment " SIZE_FORMAT " Heap alignment " SIZE_FORMAT,
 176     p->min_heap_byte_size(), p->initial_heap_byte_size(), p->max_heap_byte_size(),
 177     p->space_alignment(), p->heap_alignment());
 178 }
 179 WB_END
 180 
 181 #ifndef PRODUCT
 182 // Forward declaration
 183 void TestReservedSpace_test();
 184 void TestReserveMemorySpecial_test();
 185 void TestVirtualSpace_test();
 186 void TestMetaspaceAux_test();
 187 #endif
 188 
 189 WB_ENTRY(void, WB_RunMemoryUnitTests(JNIEnv* env, jobject o))
 190 #ifndef PRODUCT
 191   TestReservedSpace_test();
 192   TestReserveMemorySpecial_test();
 193   TestVirtualSpace_test();
 194   TestMetaspaceAux_test();
 195 #endif
 196 WB_END
 197 
 198 WB_ENTRY(void, WB_ReadFromNoaccessArea(JNIEnv* env, jobject o))
 199   size_t granularity = os::vm_allocation_granularity();
 200   ReservedHeapSpace rhs(100 * granularity, granularity, false, NULL);
 201   VirtualSpace vs;
 202   vs.initialize(rhs, 50 * granularity);
 203 
 204   //Check if constraints are complied
 205   if (!( UseCompressedOops && rhs.base() != NULL &&
 206          Universe::narrow_oop_base() != NULL &&
 207          Universe::narrow_oop_use_implicit_null_checks() )) {
 208     tty->print_cr("WB_ReadFromNoaccessArea method is useless:\n "
 209                   "\tUseCompressedOops is %d\n"
 210                   "\trhs.base() is " PTR_FORMAT "\n"
 211                   "\tUniverse::narrow_oop_base() is " PTR_FORMAT "\n"
 212                   "\tUniverse::narrow_oop_use_implicit_null_checks() is %d",
 213                   UseCompressedOops,
 214                   rhs.base(),
 215                   Universe::narrow_oop_base(),
 216                   Universe::narrow_oop_use_implicit_null_checks());
 217     return;
 218   }
 219   tty->print_cr("Reading from no access area... ");
 220   tty->print_cr("*(vs.low_boundary() - rhs.noaccess_prefix() / 2 ) = %c",
 221                 *(vs.low_boundary() - rhs.noaccess_prefix() / 2 ));
 222 WB_END
 223 
 224 static jint wb_stress_virtual_space_resize(size_t reserved_space_size,
 225                                            size_t magnitude, size_t iterations) {
 226   size_t granularity = os::vm_allocation_granularity();
 227   ReservedHeapSpace rhs(reserved_space_size * granularity, granularity, false, NULL);
 228   VirtualSpace vs;
 229   if (!vs.initialize(rhs, 0)) {
 230     tty->print_cr("Failed to initialize VirtualSpace. Can't proceed.");
 231     return 3;
 232   }
 233 
 234   long seed = os::random();
 235   tty->print_cr("Random seed is %ld", seed);
 236   os::init_random(seed);
 237 
 238   for (size_t i = 0; i < iterations; i++) {
 239 
 240     // Whether we will shrink or grow
 241     bool shrink = os::random() % 2L == 0;
 242 
 243     // Get random delta to resize virtual space
 244     size_t delta = (size_t)os::random() % magnitude;
 245 
 246     // If we are about to shrink virtual space below zero, then expand instead
 247     if (shrink && vs.committed_size() < delta) {
 248       shrink = false;
 249     }
 250 
 251     // Resizing by delta
 252     if (shrink) {
 253       vs.shrink_by(delta);
 254     } else {
 255       // If expanding fails expand_by will silently return false
 256       vs.expand_by(delta, true);
 257     }
 258   }
 259   return 0;
 260 }
 261 
 262 WB_ENTRY(jint, WB_StressVirtualSpaceResize(JNIEnv* env, jobject o,
 263         jlong reserved_space_size, jlong magnitude, jlong iterations))
 264   tty->print_cr("reservedSpaceSize=" JLONG_FORMAT ", magnitude=" JLONG_FORMAT ", "
 265                 "iterations=" JLONG_FORMAT "\n", reserved_space_size, magnitude,
 266                 iterations);
 267   if (reserved_space_size < 0 || magnitude < 0 || iterations < 0) {
 268     tty->print_cr("One of variables printed above is negative. Can't proceed.\n");
 269     return 1;
 270   }
 271 
 272   // sizeof(size_t) depends on whether OS is 32bit or 64bit. sizeof(jlong) is
 273   // always 8 byte. That's why we should avoid overflow in case of 32bit platform.
 274   if (sizeof(size_t) < sizeof(jlong)) {
 275     jlong size_t_max_value = (jlong) SIZE_T_MAX_VALUE;
 276     if (reserved_space_size > size_t_max_value || magnitude > size_t_max_value
 277         || iterations > size_t_max_value) {
 278       tty->print_cr("One of variables printed above overflows size_t. Can't proceed.\n");
 279       return 2;
 280     }
 281   }
 282 
 283   return wb_stress_virtual_space_resize((size_t) reserved_space_size,
 284                                         (size_t) magnitude, (size_t) iterations);
 285 WB_END
 286 
 287 WB_ENTRY(jboolean, WB_isObjectInOldGen(JNIEnv* env, jobject o, jobject obj))
 288   oop p = JNIHandles::resolve(obj);
 289 #if INCLUDE_ALL_GCS
 290   if (UseG1GC) {
 291     G1CollectedHeap* g1 = G1CollectedHeap::heap();
 292     const HeapRegion* hr = g1->heap_region_containing(p);
 293     if (hr == NULL) {
 294       return false;
 295     }
 296     return !(hr->is_young());
 297   } else if (UseParallelGC) {
 298     ParallelScavengeHeap* psh = ParallelScavengeHeap::heap();
 299     return !psh->is_in_young(p);
 300   }
 301 #endif // INCLUDE_ALL_GCS
 302   GenCollectedHeap* gch = GenCollectedHeap::heap();
 303   return !gch->is_in_young(p);
 304 WB_END
 305 
 306 WB_ENTRY(jlong, WB_GetObjectSize(JNIEnv* env, jobject o, jobject obj))
 307   oop p = JNIHandles::resolve(obj);
 308   return p->size() * HeapWordSize;
 309 WB_END
 310 
 311 #if INCLUDE_ALL_GCS
 312 WB_ENTRY(jboolean, WB_G1IsHumongous(JNIEnv* env, jobject o, jobject obj))
 313   G1CollectedHeap* g1 = G1CollectedHeap::heap();
 314   oop result = JNIHandles::resolve(obj);
 315   const HeapRegion* hr = g1->heap_region_containing(result);
 316   return hr->isHumongous();
 317 WB_END
 318 
 319 WB_ENTRY(jlong, WB_G1NumMaxRegions(JNIEnv* env, jobject o))
 320   G1CollectedHeap* g1 = G1CollectedHeap::heap();
 321   size_t nr = g1->max_regions();
 322   return (jlong)nr;
 323 WB_END
 324 
 325 WB_ENTRY(jlong, WB_G1NumFreeRegions(JNIEnv* env, jobject o))
 326   G1CollectedHeap* g1 = G1CollectedHeap::heap();
 327   size_t nr = g1->num_free_regions();
 328   return (jlong)nr;
 329 WB_END
 330 
 331 WB_ENTRY(jboolean, WB_G1InConcurrentMark(JNIEnv* env, jobject o))
 332   G1CollectedHeap* g1 = G1CollectedHeap::heap();
 333   return g1->concurrent_mark()->cmThread()->during_cycle();
 334 WB_END
 335 
 336 WB_ENTRY(jboolean, WB_G1StartMarkCycle(JNIEnv* env, jobject o))
 337   G1CollectedHeap* g1h = G1CollectedHeap::heap();
 338   if (!g1h->concurrent_mark()->cmThread()->during_cycle()) {
 339     g1h->collect(GCCause::_wb_conc_mark);
 340     return true;
 341   }
 342   return false;
 343 WB_END
 344 
 345 WB_ENTRY(jint, WB_G1RegionSize(JNIEnv* env, jobject o))
 346   return (jint)HeapRegion::GrainBytes;
 347 WB_END
 348 
 349 WB_ENTRY(jobject, WB_G1AuxiliaryMemoryUsage(JNIEnv* env))
 350   ResourceMark rm(THREAD);
 351   G1CollectedHeap* g1h = G1CollectedHeap::heap();
 352   MemoryUsage usage = g1h->get_auxiliary_data_memory_usage();
 353   Handle h = MemoryService::create_MemoryUsage_obj(usage, CHECK_NULL);
 354   return JNIHandles::make_local(env, h());
 355 WB_END
 356 #endif // INCLUDE_ALL_GCS
 357 
 358 #if INCLUDE_NMT
 359 // Alloc memory using the test memory type so that we can use that to see if
 360 // NMT picks it up correctly
 361 WB_ENTRY(jlong, WB_NMTMalloc(JNIEnv* env, jobject o, jlong size))
 362   jlong addr = 0;
 363   addr = (jlong)(uintptr_t)os::malloc(size, mtTest);
 364   return addr;
 365 WB_END
 366 
 367 // Alloc memory with pseudo call stack. The test can create psudo malloc
 368 // allocation site to stress the malloc tracking.
 369 WB_ENTRY(jlong, WB_NMTMallocWithPseudoStack(JNIEnv* env, jobject o, jlong size, jint pseudo_stack))
 370   address pc = (address)(size_t)pseudo_stack;
 371   NativeCallStack stack(&pc, 1);
 372   return (jlong)(uintptr_t)os::malloc(size, mtTest, stack);
 373 WB_END
 374 
 375 // Alloc memory with pseudo call stack and specific memory type.
 376 WB_ENTRY(jlong, WB_NMTMallocWithPseudoStackAndType(JNIEnv* env, jobject o, jlong size, jint pseudo_stack, jint type))
 377   address pc = (address)(size_t)pseudo_stack;
 378   NativeCallStack stack(&pc, 1);
 379   return (jlong)(uintptr_t)os::malloc(size, (MEMFLAGS)type, stack);
 380 WB_END
 381 
 382 // Free the memory allocated by NMTAllocTest
 383 WB_ENTRY(void, WB_NMTFree(JNIEnv* env, jobject o, jlong mem))
 384   os::free((void*)(uintptr_t)mem, mtTest);
 385 WB_END
 386 
 387 WB_ENTRY(jlong, WB_NMTReserveMemory(JNIEnv* env, jobject o, jlong size))
 388   jlong addr = 0;
 389 
 390     addr = (jlong)(uintptr_t)os::reserve_memory(size);
 391     MemTracker::record_virtual_memory_type((address)addr, mtTest);
 392 
 393   return addr;
 394 WB_END
 395 
 396 
 397 WB_ENTRY(void, WB_NMTCommitMemory(JNIEnv* env, jobject o, jlong addr, jlong size))
 398   os::commit_memory((char *)(uintptr_t)addr, size, !ExecMem);
 399   MemTracker::record_virtual_memory_type((address)(uintptr_t)addr, mtTest);
 400 WB_END
 401 
 402 WB_ENTRY(void, WB_NMTUncommitMemory(JNIEnv* env, jobject o, jlong addr, jlong size))
 403   os::uncommit_memory((char *)(uintptr_t)addr, size);
 404 WB_END
 405 
 406 WB_ENTRY(void, WB_NMTReleaseMemory(JNIEnv* env, jobject o, jlong addr, jlong size))
 407   os::release_memory((char *)(uintptr_t)addr, size);
 408 WB_END
 409 
 410 WB_ENTRY(jboolean, WB_NMTIsDetailSupported(JNIEnv* env))
 411   return MemTracker::tracking_level() == NMT_detail;
 412 WB_END
 413 
 414 WB_ENTRY(jboolean, WB_NMTChangeTrackingLevel(JNIEnv* env))
 415   // Test that we can downgrade NMT levels but not upgrade them.
 416   if (MemTracker::tracking_level() == NMT_off) {
 417     MemTracker::transition_to(NMT_off);
 418     return MemTracker::tracking_level() == NMT_off;
 419   } else {
 420     assert(MemTracker::tracking_level() == NMT_detail, "Should start out as detail tracking");
 421     MemTracker::transition_to(NMT_summary);
 422     assert(MemTracker::tracking_level() == NMT_summary, "Should be summary now");
 423 
 424     // Can't go to detail once NMT is set to summary.
 425     MemTracker::transition_to(NMT_detail);
 426     assert(MemTracker::tracking_level() == NMT_summary, "Should still be summary now");
 427 
 428     // Shutdown sets tracking level to minimal.
 429     MemTracker::shutdown();
 430     assert(MemTracker::tracking_level() == NMT_minimal, "Should be minimal now");
 431 
 432     // Once the tracking level is minimal, we cannot increase to summary.
 433     // The code ignores this request instead of asserting because if the malloc site
 434     // table overflows in another thread, it tries to change the code to summary.
 435     MemTracker::transition_to(NMT_summary);
 436     assert(MemTracker::tracking_level() == NMT_minimal, "Should still be minimal now");
 437 
 438     // Really can never go up to detail, verify that the code would never do this.
 439     MemTracker::transition_to(NMT_detail);
 440     assert(MemTracker::tracking_level() == NMT_minimal, "Should still be minimal now");
 441     return MemTracker::tracking_level() == NMT_minimal;
 442   }
 443 WB_END
 444 
 445 WB_ENTRY(jint, WB_NMTGetHashSize(JNIEnv* env, jobject o))
 446   int hash_size = MallocSiteTable::hash_buckets();
 447   assert(hash_size > 0, "NMT hash_size should be > 0");
 448   return (jint)hash_size;
 449 WB_END
 450 #endif // INCLUDE_NMT
 451 
 452 static jmethodID reflected_method_to_jmid(JavaThread* thread, JNIEnv* env, jobject method) {
 453   assert(method != NULL, "method should not be null");
 454   ThreadToNativeFromVM ttn(thread);
 455   return env->FromReflectedMethod(method);
 456 }
 457 
 458 WB_ENTRY(void, WB_DeoptimizeAll(JNIEnv* env, jobject o))
 459   MutexLockerEx mu(Compile_lock);
 460   CodeCache::mark_all_nmethods_for_deoptimization();
 461   VM_Deoptimize op;
 462   VMThread::execute(&op);
 463 WB_END
 464 
 465 WB_ENTRY(jint, WB_DeoptimizeMethod(JNIEnv* env, jobject o, jobject method, jboolean is_osr))
 466   jmethodID jmid = reflected_method_to_jmid(thread, env, method);
 467   int result = 0;
 468   CHECK_JNI_EXCEPTION_(env, result);
 469   MutexLockerEx mu(Compile_lock);
 470   methodHandle mh(THREAD, Method::checked_resolve_jmethod_id(jmid));
 471   if (is_osr) {
 472     result += mh->mark_osr_nmethods();
 473   } else if (mh->code() != NULL) {
 474     mh->code()->mark_for_deoptimization();
 475     ++result;
 476   }
 477   result += CodeCache::mark_for_deoptimization(mh());
 478   if (result > 0) {
 479     VM_Deoptimize op;
 480     VMThread::execute(&op);
 481   }
 482   return result;
 483 WB_END
 484 
 485 WB_ENTRY(jboolean, WB_IsMethodCompiled(JNIEnv* env, jobject o, jobject method, jboolean is_osr))
 486   jmethodID jmid = reflected_method_to_jmid(thread, env, method);
 487   CHECK_JNI_EXCEPTION_(env, JNI_FALSE);
 488   MutexLockerEx mu(Compile_lock);
 489   methodHandle mh(THREAD, Method::checked_resolve_jmethod_id(jmid));
 490   nmethod* code = is_osr ? mh->lookup_osr_nmethod_for(InvocationEntryBci, CompLevel_none, false) : mh->code();
 491   if (code == NULL) {
 492     return JNI_FALSE;
 493   }
 494   return (code->is_alive() && !code->is_marked_for_deoptimization());
 495 WB_END
 496 
 497 WB_ENTRY(jboolean, WB_IsMethodCompilable(JNIEnv* env, jobject o, jobject method, jint comp_level, jboolean is_osr))
 498   jmethodID jmid = reflected_method_to_jmid(thread, env, method);
 499   CHECK_JNI_EXCEPTION_(env, JNI_FALSE);
 500   MutexLockerEx mu(Compile_lock);
 501   methodHandle mh(THREAD, Method::checked_resolve_jmethod_id(jmid));
 502   if (is_osr) {
 503     return CompilationPolicy::can_be_osr_compiled(mh, comp_level);
 504   } else {
 505     return CompilationPolicy::can_be_compiled(mh, comp_level);
 506   }
 507 WB_END
 508 
 509 WB_ENTRY(jboolean, WB_IsMethodQueuedForCompilation(JNIEnv* env, jobject o, jobject method))
 510   jmethodID jmid = reflected_method_to_jmid(thread, env, method);
 511   CHECK_JNI_EXCEPTION_(env, JNI_FALSE);
 512   MutexLockerEx mu(Compile_lock);
 513   methodHandle mh(THREAD, Method::checked_resolve_jmethod_id(jmid));
 514   return mh->queued_for_compilation();
 515 WB_END
 516 
 517 WB_ENTRY(jint, WB_GetMethodCompilationLevel(JNIEnv* env, jobject o, jobject method, jboolean is_osr))
 518   jmethodID jmid = reflected_method_to_jmid(thread, env, method);
 519   CHECK_JNI_EXCEPTION_(env, CompLevel_none);
 520   methodHandle mh(THREAD, Method::checked_resolve_jmethod_id(jmid));
 521   nmethod* code = is_osr ? mh->lookup_osr_nmethod_for(InvocationEntryBci, CompLevel_none, false) : mh->code();
 522   return (code != NULL ? code->comp_level() : CompLevel_none);
 523 WB_END
 524 
 525 WB_ENTRY(void, WB_MakeMethodNotCompilable(JNIEnv* env, jobject o, jobject method, jint comp_level, jboolean is_osr))
 526   jmethodID jmid = reflected_method_to_jmid(thread, env, method);
 527   CHECK_JNI_EXCEPTION(env);
 528   methodHandle mh(THREAD, Method::checked_resolve_jmethod_id(jmid));
 529   if (is_osr) {
 530     mh->set_not_osr_compilable(comp_level, true /* report */, "WhiteBox");
 531   } else {
 532     mh->set_not_compilable(comp_level, true /* report */, "WhiteBox");
 533   }
 534 WB_END
 535 
 536 WB_ENTRY(jint, WB_GetMethodEntryBci(JNIEnv* env, jobject o, jobject method))
 537   jmethodID jmid = reflected_method_to_jmid(thread, env, method);
 538   CHECK_JNI_EXCEPTION_(env, InvocationEntryBci);
 539   methodHandle mh(THREAD, Method::checked_resolve_jmethod_id(jmid));
 540   nmethod* code = mh->lookup_osr_nmethod_for(InvocationEntryBci, CompLevel_none, false);
 541   return (code != NULL && code->is_osr_method() ? code->osr_entry_bci() : InvocationEntryBci);
 542 WB_END
 543 
 544 WB_ENTRY(jboolean, WB_TestSetDontInlineMethod(JNIEnv* env, jobject o, jobject method, jboolean value))
 545   jmethodID jmid = reflected_method_to_jmid(thread, env, method);
 546   CHECK_JNI_EXCEPTION_(env, JNI_FALSE);
 547   methodHandle mh(THREAD, Method::checked_resolve_jmethod_id(jmid));
 548   bool result = mh->dont_inline();
 549   mh->set_dont_inline(value == JNI_TRUE);
 550   return result;
 551 WB_END
 552 
 553 WB_ENTRY(jint, WB_GetCompileQueueSize(JNIEnv* env, jobject o, jint comp_level))
 554   if (comp_level == CompLevel_any) {
 555     return CompileBroker::queue_size(CompLevel_full_optimization) /* C2 */ +
 556         CompileBroker::queue_size(CompLevel_full_profile) /* C1 */;
 557   } else {
 558     return CompileBroker::queue_size(comp_level);
 559   }
 560 WB_END
 561 
 562 WB_ENTRY(jboolean, WB_TestSetForceInlineMethod(JNIEnv* env, jobject o, jobject method, jboolean value))
 563   jmethodID jmid = reflected_method_to_jmid(thread, env, method);
 564   CHECK_JNI_EXCEPTION_(env, JNI_FALSE);
 565   methodHandle mh(THREAD, Method::checked_resolve_jmethod_id(jmid));
 566   bool result = mh->force_inline();
 567   mh->set_force_inline(value == JNI_TRUE);
 568   return result;
 569 WB_END
 570 
 571 WB_ENTRY(jboolean, WB_EnqueueMethodForCompilation(JNIEnv* env, jobject o, jobject method, jint comp_level, jint bci))
 572   jmethodID jmid = reflected_method_to_jmid(thread, env, method);
 573   CHECK_JNI_EXCEPTION_(env, JNI_FALSE);
 574   methodHandle mh(THREAD, Method::checked_resolve_jmethod_id(jmid));
 575   nmethod* nm = CompileBroker::compile_method(mh, bci, comp_level, mh, mh->invocation_count(), "WhiteBox", THREAD);
 576   MutexLockerEx mu(Compile_lock);
 577   return (mh->queued_for_compilation() || nm != NULL);
 578 WB_END
 579 
 580 class VM_WhiteBoxOperation : public VM_Operation {
 581  public:
 582   VM_WhiteBoxOperation()                         { }
 583   VMOp_Type type()                  const        { return VMOp_WhiteBoxOperation; }
 584   bool allow_nested_vm_operations() const        { return true; }
 585 };
 586 
 587 static AlwaysFalseClosure always_false;
 588 
 589 class VM_WhiteBoxCleanMethodData : public VM_WhiteBoxOperation {
 590  public:
 591   VM_WhiteBoxCleanMethodData(MethodData* mdo) : _mdo(mdo) { }
 592   void doit() {
 593     _mdo->clean_method_data(&always_false);
 594   }
 595  private:
 596   MethodData* _mdo;
 597 };
 598 
 599 WB_ENTRY(void, WB_ClearMethodState(JNIEnv* env, jobject o, jobject method))
 600   jmethodID jmid = reflected_method_to_jmid(thread, env, method);
 601   CHECK_JNI_EXCEPTION(env);
 602   methodHandle mh(THREAD, Method::checked_resolve_jmethod_id(jmid));
 603   MutexLockerEx mu(Compile_lock);
 604   MethodData* mdo = mh->method_data();
 605   MethodCounters* mcs = mh->method_counters();
 606 
 607   if (mdo != NULL) {
 608     mdo->init();
 609     ResourceMark rm;
 610     int arg_count = mdo->method()->size_of_parameters();
 611     for (int i = 0; i < arg_count; i++) {
 612       mdo->set_arg_modified(i, 0);
 613     }
 614     VM_WhiteBoxCleanMethodData op(mdo);
 615     VMThread::execute(&op);
 616   }
 617 
 618   mh->clear_not_c1_compilable();
 619   mh->clear_not_c2_compilable();
 620   mh->clear_not_c2_osr_compilable();
 621   NOT_PRODUCT(mh->set_compiled_invocation_count(0));
 622   if (mcs != NULL) {
 623     mcs->backedge_counter()->init();
 624     mcs->invocation_counter()->init();
 625     mcs->set_interpreter_invocation_count(0);
 626     mcs->set_interpreter_throwout_count(0);
 627 
 628 #ifdef TIERED
 629     mcs->set_rate(0.0F);
 630     mh->set_prev_event_count(0);
 631     mh->set_prev_time(0);
 632 #endif
 633   }
 634 WB_END
 635 
 636 template <typename T>
 637 static bool GetVMFlag(JavaThread* thread, JNIEnv* env, jstring name, T* value, bool (*TAt)(const char*, T*)) {
 638   if (name == NULL) {
 639     return false;
 640   }
 641   ThreadToNativeFromVM ttnfv(thread);   // can't be in VM when we call JNI
 642   const char* flag_name = env->GetStringUTFChars(name, NULL);
 643   bool result = (*TAt)(flag_name, value);
 644   env->ReleaseStringUTFChars(name, flag_name);
 645   return result;
 646 }
 647 
 648 template <typename T>
 649 static bool SetVMFlag(JavaThread* thread, JNIEnv* env, jstring name, T* value, bool (*TAtPut)(const char*, T*, Flag::Flags)) {
 650   if (name == NULL) {
 651     return false;
 652   }
 653   ThreadToNativeFromVM ttnfv(thread);   // can't be in VM when we call JNI
 654   const char* flag_name = env->GetStringUTFChars(name, NULL);
 655   bool result = (*TAtPut)(flag_name, value, Flag::INTERNAL);
 656   env->ReleaseStringUTFChars(name, flag_name);
 657   return result;
 658 }
 659 
 660 template <typename T>
 661 static jobject box(JavaThread* thread, JNIEnv* env, Symbol* name, Symbol* sig, T value) {
 662   ResourceMark rm(thread);
 663   jclass clazz = env->FindClass(name->as_C_string());
 664   CHECK_JNI_EXCEPTION_(env, NULL);
 665   jmethodID methodID = env->GetStaticMethodID(clazz,
 666         vmSymbols::valueOf_name()->as_C_string(),
 667         sig->as_C_string());
 668   CHECK_JNI_EXCEPTION_(env, NULL);
 669   jobject result = env->CallStaticObjectMethod(clazz, methodID, value);
 670   CHECK_JNI_EXCEPTION_(env, NULL);
 671   return result;
 672 }
 673 
 674 static jobject booleanBox(JavaThread* thread, JNIEnv* env, jboolean value) {
 675   return box(thread, env, vmSymbols::java_lang_Boolean(), vmSymbols::Boolean_valueOf_signature(), value);
 676 }
 677 static jobject integerBox(JavaThread* thread, JNIEnv* env, jint value) {
 678   return box(thread, env, vmSymbols::java_lang_Integer(), vmSymbols::Integer_valueOf_signature(), value);
 679 }
 680 static jobject longBox(JavaThread* thread, JNIEnv* env, jlong value) {
 681   return box(thread, env, vmSymbols::java_lang_Long(), vmSymbols::Long_valueOf_signature(), value);
 682 }
 683 /* static jobject floatBox(JavaThread* thread, JNIEnv* env, jfloat value) {
 684   return box(thread, env, vmSymbols::java_lang_Float(), vmSymbols::Float_valueOf_signature(), value);
 685 }*/
 686 static jobject doubleBox(JavaThread* thread, JNIEnv* env, jdouble value) {
 687   return box(thread, env, vmSymbols::java_lang_Double(), vmSymbols::Double_valueOf_signature(), value);
 688 }
 689 
 690 WB_ENTRY(jobject, WB_GetBooleanVMFlag(JNIEnv* env, jobject o, jstring name))
 691   bool result;
 692   if (GetVMFlag <bool> (thread, env, name, &result, &CommandLineFlags::boolAt)) {
 693     ThreadToNativeFromVM ttnfv(thread);   // can't be in VM when we call JNI
 694     return booleanBox(thread, env, result);
 695   }
 696   return NULL;
 697 WB_END
 698 
 699 WB_ENTRY(jobject, WB_GetIntxVMFlag(JNIEnv* env, jobject o, jstring name))
 700   intx result;
 701   if (GetVMFlag <intx> (thread, env, name, &result, &CommandLineFlags::intxAt)) {
 702     ThreadToNativeFromVM ttnfv(thread);   // can't be in VM when we call JNI
 703     return longBox(thread, env, result);
 704   }
 705   return NULL;
 706 WB_END
 707 
 708 WB_ENTRY(jobject, WB_GetUintxVMFlag(JNIEnv* env, jobject o, jstring name))
 709   uintx result;
 710   if (GetVMFlag <uintx> (thread, env, name, &result, &CommandLineFlags::uintxAt)) {
 711     ThreadToNativeFromVM ttnfv(thread);   // can't be in VM when we call JNI
 712     return longBox(thread, env, result);
 713   }
 714   return NULL;
 715 WB_END
 716 
 717 WB_ENTRY(jobject, WB_GetUint64VMFlag(JNIEnv* env, jobject o, jstring name))
 718   uint64_t result;
 719   if (GetVMFlag <uint64_t> (thread, env, name, &result, &CommandLineFlags::uint64_tAt)) {
 720     ThreadToNativeFromVM ttnfv(thread);   // can't be in VM when we call JNI
 721     return longBox(thread, env, result);
 722   }
 723   return NULL;
 724 WB_END
 725 
 726 WB_ENTRY(jobject, WB_GetDoubleVMFlag(JNIEnv* env, jobject o, jstring name))
 727   double result;
 728   if (GetVMFlag <double> (thread, env, name, &result, &CommandLineFlags::doubleAt)) {
 729     ThreadToNativeFromVM ttnfv(thread);   // can't be in VM when we call JNI
 730     return doubleBox(thread, env, result);
 731   }
 732   return NULL;
 733 WB_END
 734 
 735 WB_ENTRY(jstring, WB_GetStringVMFlag(JNIEnv* env, jobject o, jstring name))
 736   ccstr ccstrResult;
 737   if (GetVMFlag <ccstr> (thread, env, name, &ccstrResult, &CommandLineFlags::ccstrAt)) {
 738     ThreadToNativeFromVM ttnfv(thread);   // can't be in VM when we call JNI
 739     jstring result = env->NewStringUTF(ccstrResult);
 740     CHECK_JNI_EXCEPTION_(env, NULL);
 741     return result;
 742   }
 743   return NULL;
 744 WB_END
 745 
 746 WB_ENTRY(void, WB_SetBooleanVMFlag(JNIEnv* env, jobject o, jstring name, jboolean value))
 747   bool result = value == JNI_TRUE ? true : false;
 748   SetVMFlag <bool> (thread, env, name, &result, &CommandLineFlags::boolAtPut);
 749 WB_END
 750 
 751 WB_ENTRY(void, WB_SetIntxVMFlag(JNIEnv* env, jobject o, jstring name, jlong value))
 752   intx result = value;
 753   SetVMFlag <intx> (thread, env, name, &result, &CommandLineFlags::intxAtPut);
 754 WB_END
 755 
 756 WB_ENTRY(void, WB_SetUintxVMFlag(JNIEnv* env, jobject o, jstring name, jlong value))
 757   uintx result = value;
 758   SetVMFlag <uintx> (thread, env, name, &result, &CommandLineFlags::uintxAtPut);
 759 WB_END
 760 
 761 WB_ENTRY(void, WB_SetUint64VMFlag(JNIEnv* env, jobject o, jstring name, jlong value))
 762   uint64_t result = value;
 763   SetVMFlag <uint64_t> (thread, env, name, &result, &CommandLineFlags::uint64_tAtPut);
 764 WB_END
 765 
 766 WB_ENTRY(void, WB_SetDoubleVMFlag(JNIEnv* env, jobject o, jstring name, jdouble value))
 767   double result = value;
 768   SetVMFlag <double> (thread, env, name, &result, &CommandLineFlags::doubleAtPut);
 769 WB_END
 770 
 771 WB_ENTRY(void, WB_SetStringVMFlag(JNIEnv* env, jobject o, jstring name, jstring value))
 772   ThreadToNativeFromVM ttnfv(thread);   // can't be in VM when we call JNI
 773   const char* ccstrValue = (value == NULL) ? NULL : env->GetStringUTFChars(value, NULL);
 774   ccstr ccstrResult = ccstrValue;
 775   bool needFree;
 776   {
 777     ThreadInVMfromNative ttvfn(thread); // back to VM
 778     needFree = SetVMFlag <ccstr> (thread, env, name, &ccstrResult, &CommandLineFlags::ccstrAtPut);
 779   }
 780   if (value != NULL) {
 781     env->ReleaseStringUTFChars(value, ccstrValue);
 782   }
 783   if (needFree) {
 784     FREE_C_HEAP_ARRAY(char, ccstrResult, mtInternal);
 785   }
 786 WB_END
 787 
 788 
 789 WB_ENTRY(jboolean, WB_IsInStringTable(JNIEnv* env, jobject o, jstring javaString))
 790   ResourceMark rm(THREAD);
 791   int len;
 792   jchar* name = java_lang_String::as_unicode_string(JNIHandles::resolve(javaString), len, CHECK_false);
 793   return (StringTable::lookup(name, len) != NULL);
 794 WB_END
 795 
 796 WB_ENTRY(void, WB_FullGC(JNIEnv* env, jobject o))
 797   Universe::heap()->collector_policy()->set_should_clear_all_soft_refs(true);
 798   Universe::heap()->collect(GCCause::_last_ditch_collection);
 799 #if INCLUDE_ALL_GCS
 800   if (UseG1GC) {
 801     // Needs to be cleared explicitly for G1
 802     Universe::heap()->collector_policy()->set_should_clear_all_soft_refs(false);
 803   }
 804 #endif // INCLUDE_ALL_GCS
 805 WB_END
 806 
 807 WB_ENTRY(void, WB_YoungGC(JNIEnv* env, jobject o))
 808   Universe::heap()->collect(GCCause::_wb_young_gc);
 809 WB_END
 810 
 811 WB_ENTRY(void, WB_ReadReservedMemory(JNIEnv* env, jobject o))
 812   // static+volatile in order to force the read to happen
 813   // (not be eliminated by the compiler)
 814   static char c;
 815   static volatile char* p;
 816 
 817   p = os::reserve_memory(os::vm_allocation_granularity(), NULL, 0);
 818   if (p == NULL) {
 819     THROW_MSG(vmSymbols::java_lang_OutOfMemoryError(), "Failed to reserve memory");
 820   }
 821 
 822   c = *p;
 823 WB_END
 824 
 825 WB_ENTRY(jstring, WB_GetCPUFeatures(JNIEnv* env, jobject o))
 826   const char* cpu_features = VM_Version::cpu_features();
 827   ThreadToNativeFromVM ttn(thread);
 828   jstring features_string = env->NewStringUTF(cpu_features);
 829 
 830   CHECK_JNI_EXCEPTION_(env, NULL);
 831 
 832   return features_string;
 833 WB_END
 834 
 835 
 836 WB_ENTRY(jobjectArray, WB_GetNMethod(JNIEnv* env, jobject o, jobject method, jboolean is_osr))
 837   ResourceMark rm(THREAD);
 838   jmethodID jmid = reflected_method_to_jmid(thread, env, method);
 839   CHECK_JNI_EXCEPTION_(env, NULL);
 840   methodHandle mh(THREAD, Method::checked_resolve_jmethod_id(jmid));
 841   nmethod* code = is_osr ? mh->lookup_osr_nmethod_for(InvocationEntryBci, CompLevel_none, false) : mh->code();
 842   jobjectArray result = NULL;
 843   if (code == NULL) {
 844     return result;
 845   }
 846   int insts_size = code->insts_size();
 847 
 848   ThreadToNativeFromVM ttn(thread);
 849   jclass clazz = env->FindClass(vmSymbols::java_lang_Object()->as_C_string());
 850   CHECK_JNI_EXCEPTION_(env, NULL);
 851   result = env->NewObjectArray(2, clazz, NULL);
 852   if (result == NULL) {
 853     return result;
 854   }
 855 
 856   jobject obj = integerBox(thread, env, code->comp_level());
 857   CHECK_JNI_EXCEPTION_(env, NULL);
 858   env->SetObjectArrayElement(result, 0, obj);
 859 
 860   jbyteArray insts = env->NewByteArray(insts_size);
 861   CHECK_JNI_EXCEPTION_(env, NULL);
 862   env->SetByteArrayRegion(insts, 0, insts_size, (jbyte*) code->insts_begin());
 863   env->SetObjectArrayElement(result, 1, insts);
 864 
 865   return result;
 866 WB_END
 867 
 868 
 869 int WhiteBox::array_bytes_to_length(size_t bytes) {
 870   return Array<u1>::bytes_to_length(bytes);
 871 }
 872 
 873 WB_ENTRY(jlong, WB_AllocateMetaspace(JNIEnv* env, jobject wb, jobject class_loader, jlong size))
 874   if (size < 0) {
 875     THROW_MSG_0(vmSymbols::java_lang_IllegalArgumentException(),
 876         err_msg("WB_AllocateMetaspace: size is negative: " JLONG_FORMAT, size));
 877   }
 878 
 879   oop class_loader_oop = JNIHandles::resolve(class_loader);
 880   ClassLoaderData* cld = class_loader_oop != NULL
 881       ? java_lang_ClassLoader::loader_data(class_loader_oop)
 882       : ClassLoaderData::the_null_class_loader_data();
 883 
 884   void* metadata = MetadataFactory::new_writeable_array<u1>(cld, WhiteBox::array_bytes_to_length((size_t)size), thread);
 885 
 886   return (jlong)(uintptr_t)metadata;
 887 WB_END
 888 
 889 WB_ENTRY(void, WB_FreeMetaspace(JNIEnv* env, jobject wb, jobject class_loader, jlong addr, jlong size))
 890   oop class_loader_oop = JNIHandles::resolve(class_loader);
 891   ClassLoaderData* cld = class_loader_oop != NULL
 892       ? java_lang_ClassLoader::loader_data(class_loader_oop)
 893       : ClassLoaderData::the_null_class_loader_data();
 894 
 895   MetadataFactory::free_array(cld, (Array<u1>*)(uintptr_t)addr);
 896 WB_END
 897 
 898 WB_ENTRY(jlong, WB_IncMetaspaceCapacityUntilGC(JNIEnv* env, jobject wb, jlong inc))
 899   if (inc < 0) {
 900     THROW_MSG_0(vmSymbols::java_lang_IllegalArgumentException(),
 901         err_msg("WB_IncMetaspaceCapacityUntilGC: inc is negative: " JLONG_FORMAT, inc));
 902   }
 903 
 904   jlong max_size_t = (jlong) ((size_t) -1);
 905   if (inc > max_size_t) {
 906     THROW_MSG_0(vmSymbols::java_lang_IllegalArgumentException(),
 907         err_msg("WB_IncMetaspaceCapacityUntilGC: inc does not fit in size_t: " JLONG_FORMAT, inc));
 908   }
 909 
 910   size_t new_cap_until_GC = 0;
 911   size_t aligned_inc = align_size_down((size_t) inc, Metaspace::commit_alignment());
 912   bool success = MetaspaceGC::inc_capacity_until_GC(aligned_inc, &new_cap_until_GC);
 913   if (!success) {
 914     THROW_MSG_0(vmSymbols::java_lang_IllegalStateException(),
 915                 "WB_IncMetaspaceCapacityUntilGC: could not increase capacity until GC "
 916                 "due to contention with another thread");
 917   }
 918   return (jlong) new_cap_until_GC;
 919 WB_END
 920 
 921 WB_ENTRY(jlong, WB_MetaspaceCapacityUntilGC(JNIEnv* env, jobject wb))
 922   return (jlong) MetaspaceGC::capacity_until_GC();
 923 WB_END
 924 
 925 WB_ENTRY(jboolean, WB_IsSharedClass(JNIEnv* env, jobject wb, jclass clazz))
 926   return (jboolean)MetaspaceShared::is_in_shared_space(java_lang_Class::as_Klass(JNIHandles::resolve_non_null(clazz)));
 927 WB_END
 928 
 929 WB_ENTRY(jboolean, WB_IsMonitorInflated(JNIEnv* env, jobject wb, jobject obj))
 930   oop obj_oop = JNIHandles::resolve(obj);
 931   return (jboolean) obj_oop->mark()->has_monitor();
 932 WB_END
 933 
 934 WB_ENTRY(void, WB_ForceSafepoint(JNIEnv* env, jobject wb))
 935   VM_ForceSafepoint force_safepoint_op;
 936   VMThread::execute(&force_safepoint_op);
 937 WB_END
 938 
 939 //Some convenience methods to deal with objects from java
 940 int WhiteBox::offset_for_field(const char* field_name, oop object,
 941     Symbol* signature_symbol) {
 942   assert(field_name != NULL && strlen(field_name) > 0, "Field name not valid");
 943   Thread* THREAD = Thread::current();
 944 
 945   //Get the class of our object
 946   Klass* arg_klass = object->klass();
 947   //Turn it into an instance-klass
 948   InstanceKlass* ik = InstanceKlass::cast(arg_klass);
 949 
 950   //Create symbols to look for in the class
 951   TempNewSymbol name_symbol = SymbolTable::lookup(field_name, (int) strlen(field_name),
 952       THREAD);
 953 
 954   //To be filled in with an offset of the field we're looking for
 955   fieldDescriptor fd;
 956 
 957   Klass* res = ik->find_field(name_symbol, signature_symbol, &fd);
 958   if (res == NULL) {
 959     tty->print_cr("Invalid layout of %s at %s", ik->external_name(),
 960         name_symbol->as_C_string());
 961     vm_exit_during_initialization("Invalid layout of preloaded class: use -XX:+TraceClassLoading to see the origin of the problem class");
 962   }
 963 
 964   //fetch the field at the offset we've found
 965   int dest_offset = fd.offset();
 966 
 967   return dest_offset;
 968 }
 969 
 970 
 971 const char* WhiteBox::lookup_jstring(const char* field_name, oop object) {
 972   int offset = offset_for_field(field_name, object,
 973       vmSymbols::string_signature());
 974   oop string = object->obj_field(offset);
 975   if (string == NULL) {
 976     return NULL;
 977   }
 978   const char* ret = java_lang_String::as_utf8_string(string);
 979   return ret;
 980 }
 981 
 982 bool WhiteBox::lookup_bool(const char* field_name, oop object) {
 983   int offset =
 984       offset_for_field(field_name, object, vmSymbols::bool_signature());
 985   bool ret = (object->bool_field(offset) == JNI_TRUE);
 986   return ret;
 987 }
 988 
 989 void WhiteBox::register_methods(JNIEnv* env, jclass wbclass, JavaThread* thread, JNINativeMethod* method_array, int method_count) {
 990   ResourceMark rm;
 991   ThreadToNativeFromVM ttnfv(thread); // can't be in VM when we call JNI
 992 
 993   //  one by one registration natives for exception catching
 994   jclass no_such_method_error_klass = env->FindClass(vmSymbols::java_lang_NoSuchMethodError()->as_C_string());
 995   CHECK_JNI_EXCEPTION(env);
 996   for (int i = 0, n = method_count; i < n; ++i) {
 997     // Skip dummy entries
 998     if (method_array[i].fnPtr == NULL) continue;
 999     if (env->RegisterNatives(wbclass, &method_array[i], 1) != 0) {
1000       jthrowable throwable_obj = env->ExceptionOccurred();
1001       if (throwable_obj != NULL) {
1002         env->ExceptionClear();
1003         if (env->IsInstanceOf(throwable_obj, no_such_method_error_klass)) {
1004           // NoSuchMethodError is thrown when a method can't be found or a method is not native.
1005           // Ignoring the exception since it is not preventing use of other WhiteBox methods.
1006           tty->print_cr("Warning: 'NoSuchMethodError' on register of sun.hotspot.WhiteBox::%s%s",
1007               method_array[i].name, method_array[i].signature);
1008         }
1009       } else {
1010         // Registration failed unexpectedly.
1011         tty->print_cr("Warning: unexpected error on register of sun.hotspot.WhiteBox::%s%s. All methods will be unregistered",
1012             method_array[i].name, method_array[i].signature);
1013         env->UnregisterNatives(wbclass);
1014         break;
1015       }
1016     }
1017   }
1018 }
1019 
1020 // Checks that the library libfile has the noexecstack bit set.
1021 WB_ENTRY(jboolean, WB_CheckLibSpecifiesNoexecstack(JNIEnv* env, jobject o, jstring libfile))
1022   jboolean ret = false;
1023 #ifdef LINUX
1024   // Can't be in VM when we call JNI.
1025   ThreadToNativeFromVM ttnfv(thread);
1026   const char* lf = env->GetStringUTFChars(libfile, NULL);
1027   CHECK_JNI_EXCEPTION_(env, 0);
1028   ElfFile ef(lf);
1029   ret = (jboolean) ef.specifies_noexecstack();
1030   env->ReleaseStringUTFChars(libfile, lf);
1031 #endif
1032   return ret;
1033 WB_END
1034 
1035 WB_ENTRY(jboolean, WB_IsContainerized(JNIEnv* env, jobject o))
1036   LINUX_ONLY(return OSContainer::is_containerized();)
1037   return false;
1038 WB_END
1039 
1040 WB_ENTRY(void, WB_PrintOsInfo(JNIEnv* env, jobject o))
1041   os::print_os_info(tty);
1042 WB_END
1043 
1044 #define CC (char*)
1045 
1046 static JNINativeMethod methods[] = {
1047   {CC"getObjectAddress",   CC"(Ljava/lang/Object;)J", (void*)&WB_GetObjectAddress  },
1048   {CC"getObjectSize",      CC"(Ljava/lang/Object;)J", (void*)&WB_GetObjectSize     },
1049   {CC"isObjectInOldGen",   CC"(Ljava/lang/Object;)Z", (void*)&WB_isObjectInOldGen  },
1050   {CC"getHeapOopSize",     CC"()I",                   (void*)&WB_GetHeapOopSize    },
1051   {CC"getVMPageSize",      CC"()I",                   (void*)&WB_GetVMPageSize     },
1052   {CC"getVMLargePageSize", CC"()J",                   (void*)&WB_GetVMLargePageSize},
1053   {CC"isClassAlive0",      CC"(Ljava/lang/String;)Z", (void*)&WB_IsClassAlive      },
1054   {CC"classKnownToNotExist",
1055                            CC"(Ljava/lang/ClassLoader;Ljava/lang/String;)Z",(void*)&WB_ClassKnownToNotExist},
1056   {CC"getLookupCacheURLs", CC"(Ljava/lang/ClassLoader;)[Ljava/net/URL;",    (void*)&WB_GetLookupCacheURLs},
1057   {CC"getLookupCacheMatches", CC"(Ljava/lang/ClassLoader;Ljava/lang/String;)[I",
1058                                                       (void*)&WB_GetLookupCacheMatches},
1059   {CC"parseCommandLine",
1060       CC"(Ljava/lang/String;[Lsun/hotspot/parser/DiagnosticCommand;)[Ljava/lang/Object;",
1061       (void*) &WB_ParseCommandLine
1062   },
1063   {CC"addToBootstrapClassLoaderSearch", CC"(Ljava/lang/String;)V",
1064                                                       (void*)&WB_AddToBootstrapClassLoaderSearch},
1065   {CC"addToSystemClassLoaderSearch",    CC"(Ljava/lang/String;)V",
1066                                                       (void*)&WB_AddToSystemClassLoaderSearch},
1067   {CC"getCompressedOopsMaxHeapSize", CC"()J",
1068       (void*)&WB_GetCompressedOopsMaxHeapSize},
1069   {CC"printHeapSizes",     CC"()V",                   (void*)&WB_PrintHeapSizes    },
1070   {CC"runMemoryUnitTests", CC"()V",                   (void*)&WB_RunMemoryUnitTests},
1071   {CC"readFromNoaccessArea",CC"()V",                  (void*)&WB_ReadFromNoaccessArea},
1072   {CC"stressVirtualSpaceResize",CC"(JJJ)I",           (void*)&WB_StressVirtualSpaceResize},
1073   {CC"isSharedClass", CC"(Ljava/lang/Class;)Z",       (void*)&WB_IsSharedClass },
1074 #if INCLUDE_ALL_GCS
1075   {CC"g1InConcurrentMark", CC"()Z",                   (void*)&WB_G1InConcurrentMark},
1076   {CC"g1IsHumongous",      CC"(Ljava/lang/Object;)Z", (void*)&WB_G1IsHumongous     },
1077   {CC"g1NumMaxRegions",    CC"()J",                   (void*)&WB_G1NumMaxRegions  },
1078   {CC"g1NumFreeRegions",   CC"()J",                   (void*)&WB_G1NumFreeRegions  },
1079   {CC"g1RegionSize",       CC"()I",                   (void*)&WB_G1RegionSize      },
1080   {CC"g1StartConcMarkCycle",       CC"()Z",           (void*)&WB_G1StartMarkCycle  },
1081   {CC"g1AuxiliaryMemoryUsage", CC"()Ljava/lang/management/MemoryUsage;",
1082                                                       (void*)&WB_G1AuxiliaryMemoryUsage  },
1083 #endif // INCLUDE_ALL_GCS
1084 #if INCLUDE_NMT
1085   {CC"NMTMalloc",           CC"(J)J",                 (void*)&WB_NMTMalloc          },
1086   {CC"NMTMallocWithPseudoStack", CC"(JI)J",           (void*)&WB_NMTMallocWithPseudoStack},
1087   {CC"NMTMallocWithPseudoStackAndType", CC"(JII)J",   (void*)&WB_NMTMallocWithPseudoStackAndType},
1088   {CC"NMTFree",             CC"(J)V",                 (void*)&WB_NMTFree            },
1089   {CC"NMTReserveMemory",    CC"(J)J",                 (void*)&WB_NMTReserveMemory   },
1090   {CC"NMTCommitMemory",     CC"(JJ)V",                (void*)&WB_NMTCommitMemory    },
1091   {CC"NMTUncommitMemory",   CC"(JJ)V",                (void*)&WB_NMTUncommitMemory  },
1092   {CC"NMTReleaseMemory",    CC"(JJ)V",                (void*)&WB_NMTReleaseMemory   },
1093   {CC"NMTIsDetailSupported",CC"()Z",                  (void*)&WB_NMTIsDetailSupported},
1094   {CC"NMTChangeTrackingLevel", CC"()Z",               (void*)&WB_NMTChangeTrackingLevel},
1095   {CC"NMTGetHashSize",      CC"()I",                  (void*)&WB_NMTGetHashSize     },
1096 #endif // INCLUDE_NMT
1097   {CC"deoptimizeAll",      CC"()V",                   (void*)&WB_DeoptimizeAll     },
1098   {CC"deoptimizeMethod",   CC"(Ljava/lang/reflect/Executable;Z)I",
1099                                                       (void*)&WB_DeoptimizeMethod  },
1100   {CC"isMethodCompiled",   CC"(Ljava/lang/reflect/Executable;Z)Z",
1101                                                       (void*)&WB_IsMethodCompiled  },
1102   {CC"isMethodCompilable", CC"(Ljava/lang/reflect/Executable;IZ)Z",
1103                                                       (void*)&WB_IsMethodCompilable},
1104   {CC"isMethodQueuedForCompilation",
1105       CC"(Ljava/lang/reflect/Executable;)Z",          (void*)&WB_IsMethodQueuedForCompilation},
1106   {CC"makeMethodNotCompilable",
1107       CC"(Ljava/lang/reflect/Executable;IZ)V",        (void*)&WB_MakeMethodNotCompilable},
1108   {CC"testSetDontInlineMethod",
1109       CC"(Ljava/lang/reflect/Executable;Z)Z",         (void*)&WB_TestSetDontInlineMethod},
1110   {CC"getMethodCompilationLevel",
1111       CC"(Ljava/lang/reflect/Executable;Z)I",         (void*)&WB_GetMethodCompilationLevel},
1112   {CC"getMethodEntryBci",
1113       CC"(Ljava/lang/reflect/Executable;)I",          (void*)&WB_GetMethodEntryBci},
1114   {CC"getCompileQueueSize",
1115       CC"(I)I",                                       (void*)&WB_GetCompileQueueSize},
1116   {CC"testSetForceInlineMethod",
1117       CC"(Ljava/lang/reflect/Executable;Z)Z",         (void*)&WB_TestSetForceInlineMethod},
1118   {CC"enqueueMethodForCompilation",
1119       CC"(Ljava/lang/reflect/Executable;II)Z",        (void*)&WB_EnqueueMethodForCompilation},
1120   {CC"clearMethodState",
1121       CC"(Ljava/lang/reflect/Executable;)V",          (void*)&WB_ClearMethodState},
1122   {CC"setBooleanVMFlag",   CC"(Ljava/lang/String;Z)V",(void*)&WB_SetBooleanVMFlag},
1123   {CC"setIntxVMFlag",      CC"(Ljava/lang/String;J)V",(void*)&WB_SetIntxVMFlag},
1124   {CC"setUintxVMFlag",     CC"(Ljava/lang/String;J)V",(void*)&WB_SetUintxVMFlag},
1125   {CC"setUint64VMFlag",    CC"(Ljava/lang/String;J)V",(void*)&WB_SetUint64VMFlag},
1126   {CC"setDoubleVMFlag",    CC"(Ljava/lang/String;D)V",(void*)&WB_SetDoubleVMFlag},
1127   {CC"setStringVMFlag",    CC"(Ljava/lang/String;Ljava/lang/String;)V",
1128                                                       (void*)&WB_SetStringVMFlag},
1129   {CC"getBooleanVMFlag",   CC"(Ljava/lang/String;)Ljava/lang/Boolean;",
1130                                                       (void*)&WB_GetBooleanVMFlag},
1131   {CC"getIntxVMFlag",      CC"(Ljava/lang/String;)Ljava/lang/Long;",
1132                                                       (void*)&WB_GetIntxVMFlag},
1133   {CC"getUintxVMFlag",     CC"(Ljava/lang/String;)Ljava/lang/Long;",
1134                                                       (void*)&WB_GetUintxVMFlag},
1135   {CC"getUint64VMFlag",    CC"(Ljava/lang/String;)Ljava/lang/Long;",
1136                                                       (void*)&WB_GetUint64VMFlag},
1137   {CC"getDoubleVMFlag",    CC"(Ljava/lang/String;)Ljava/lang/Double;",
1138                                                       (void*)&WB_GetDoubleVMFlag},
1139   {CC"getStringVMFlag",    CC"(Ljava/lang/String;)Ljava/lang/String;",
1140                                                       (void*)&WB_GetStringVMFlag},
1141   {CC"isInStringTable",    CC"(Ljava/lang/String;)Z", (void*)&WB_IsInStringTable  },
1142   {CC"fullGC",   CC"()V",                             (void*)&WB_FullGC },
1143   {CC"youngGC",  CC"()V",                             (void*)&WB_YoungGC },
1144   {CC"readReservedMemory", CC"()V",                   (void*)&WB_ReadReservedMemory },
1145   {CC"allocateMetaspace",
1146      CC"(Ljava/lang/ClassLoader;J)J",                 (void*)&WB_AllocateMetaspace },
1147   {CC"freeMetaspace",
1148      CC"(Ljava/lang/ClassLoader;JJ)V",                (void*)&WB_FreeMetaspace },
1149   {CC"incMetaspaceCapacityUntilGC", CC"(J)J",         (void*)&WB_IncMetaspaceCapacityUntilGC },
1150   {CC"metaspaceCapacityUntilGC", CC"()J",             (void*)&WB_MetaspaceCapacityUntilGC },
1151   {CC"getCPUFeatures",     CC"()Ljava/lang/String;",  (void*)&WB_GetCPUFeatures     },
1152   {CC"getNMethod",         CC"(Ljava/lang/reflect/Executable;Z)[Ljava/lang/Object;",
1153                                                       (void*)&WB_GetNMethod         },
1154   {CC"isMonitorInflated",  CC"(Ljava/lang/Object;)Z", (void*)&WB_IsMonitorInflated  },
1155   {CC"forceSafepoint",     CC"()V",                   (void*)&WB_ForceSafepoint     },
1156   {CC"checkLibSpecifiesNoexecstack", CC"(Ljava/lang/String;)Z",
1157                                                       (void*)&WB_CheckLibSpecifiesNoexecstack},
1158   {CC"isContainerized",           CC"()Z",            (void*)&WB_IsContainerized },
1159   {CC"printOsInfo",               CC"()V",            (void*)&WB_PrintOsInfo },
1160 };
1161 
1162 #undef CC
1163 
1164 JVM_ENTRY(void, JVM_RegisterWhiteBoxMethods(JNIEnv* env, jclass wbclass))
1165   {
1166     if (WhiteBoxAPI) {
1167       // Make sure that wbclass is loaded by the null classloader
1168       instanceKlassHandle ikh = instanceKlassHandle(JNIHandles::resolve(wbclass)->klass());
1169       Handle loader(ikh->class_loader());
1170       if (loader.is_null()) {
1171         WhiteBox::register_methods(env, wbclass, thread, methods, sizeof(methods) / sizeof(methods[0]));
1172         WhiteBox::register_extended(env, wbclass, thread);
1173         WhiteBox::set_used();
1174       }
1175     }
1176   }
1177 JVM_END