1 /*
   2  * Copyright (c) 1997, 2015, 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 #include "classfile/classLoader.hpp"
  27 #include "classfile/javaAssertions.hpp"
  28 #include "classfile/javaClasses.inline.hpp"
  29 #include "classfile/stringTable.hpp"
  30 #include "classfile/systemDictionary.hpp"
  31 #include "classfile/vmSymbols.hpp"
  32 #include "gc/shared/barrierSet.inline.hpp"
  33 #include "gc/shared/collectedHeap.inline.hpp"
  34 #include "interpreter/bytecode.hpp"
  35 #include "memory/oopFactory.hpp"
  36 #include "memory/universe.inline.hpp"
  37 #include "oops/fieldStreams.hpp"
  38 #include "oops/instanceKlass.hpp"
  39 #include "oops/method.hpp"
  40 #include "oops/objArrayKlass.hpp"
  41 #include "oops/objArrayOop.inline.hpp"
  42 #include "oops/oop.inline.hpp"
  43 #include "prims/jvm.h"
  44 #include "prims/jvm_misc.hpp"
  45 #include "prims/jvmtiExport.hpp"
  46 #include "prims/jvmtiThreadState.hpp"
  47 #include "prims/nativeLookup.hpp"
  48 #include "prims/privilegedStack.hpp"
  49 #include "runtime/arguments.hpp"
  50 #include "runtime/atomic.inline.hpp"
  51 #include "runtime/handles.inline.hpp"
  52 #include "runtime/init.hpp"
  53 #include "runtime/interfaceSupport.hpp"
  54 #include "runtime/java.hpp"
  55 #include "runtime/javaCalls.hpp"
  56 #include "runtime/jfieldIDWorkaround.hpp"
  57 #include "runtime/orderAccess.inline.hpp"
  58 #include "runtime/os.inline.hpp"
  59 #include "runtime/perfData.hpp"
  60 #include "runtime/reflection.hpp"
  61 #include "runtime/thread.inline.hpp"
  62 #include "runtime/vframe.hpp"
  63 #include "runtime/vm_operations.hpp"
  64 #include "runtime/vm_version.hpp"
  65 #include "services/attachListener.hpp"
  66 #include "services/management.hpp"
  67 #include "services/threadService.hpp"
  68 #include "trace/tracing.hpp"
  69 #include "utilities/copy.hpp"
  70 #include "utilities/defaultStream.hpp"
  71 #include "utilities/dtrace.hpp"
  72 #include "utilities/events.hpp"
  73 #include "utilities/histogram.hpp"
  74 #include "utilities/macros.hpp"
  75 #include "utilities/top.hpp"
  76 #include "utilities/utf8.hpp"
  77 #if INCLUDE_CDS
  78 #include "classfile/sharedClassUtil.hpp"
  79 #include "classfile/systemDictionaryShared.hpp"
  80 #endif
  81 #ifdef TARGET_OS_FAMILY_linux
  82 # include "jvm_linux.h"
  83 #endif
  84 #ifdef TARGET_OS_FAMILY_solaris
  85 # include "jvm_solaris.h"
  86 #endif
  87 #ifdef TARGET_OS_FAMILY_windows
  88 # include "jvm_windows.h"
  89 #endif
  90 #ifdef TARGET_OS_FAMILY_aix
  91 # include "jvm_aix.h"
  92 #endif
  93 #ifdef TARGET_OS_FAMILY_bsd
  94 # include "jvm_bsd.h"
  95 #endif
  96 
  97 #include <errno.h>
  98 
  99 /*
 100   NOTE about use of any ctor or function call that can trigger a safepoint/GC:
 101   such ctors and calls MUST NOT come between an oop declaration/init and its
 102   usage because if objects are move this may cause various memory stomps, bus
 103   errors and segfaults. Here is a cookbook for causing so called "naked oop
 104   failures":
 105 
 106       JVM_ENTRY(jobjectArray, JVM_GetClassDeclaredFields<etc> {
 107           JVMWrapper("JVM_GetClassDeclaredFields");
 108 
 109           // Object address to be held directly in mirror & not visible to GC
 110           oop mirror = JNIHandles::resolve_non_null(ofClass);
 111 
 112           // If this ctor can hit a safepoint, moving objects around, then
 113           ComplexConstructor foo;
 114 
 115           // Boom! mirror may point to JUNK instead of the intended object
 116           (some dereference of mirror)
 117 
 118           // Here's another call that may block for GC, making mirror stale
 119           MutexLocker ml(some_lock);
 120 
 121           // And here's an initializer that can result in a stale oop
 122           // all in one step.
 123           oop o = call_that_can_throw_exception(TRAPS);
 124 
 125 
 126   The solution is to keep the oop declaration BELOW the ctor or function
 127   call that might cause a GC, do another resolve to reassign the oop, or
 128   consider use of a Handle instead of an oop so there is immunity from object
 129   motion. But note that the "QUICK" entries below do not have a handlemark
 130   and thus can only support use of handles passed in.
 131 */
 132 
 133 static void trace_class_resolution_impl(Klass* to_class, TRAPS) {
 134   ResourceMark rm;
 135   int line_number = -1;
 136   const char * source_file = NULL;
 137   const char * trace = "explicit";
 138   InstanceKlass* caller = NULL;
 139   JavaThread* jthread = JavaThread::current();
 140   if (jthread->has_last_Java_frame()) {
 141     vframeStream vfst(jthread);
 142 
 143     // scan up the stack skipping ClassLoader, AccessController and PrivilegedAction frames
 144     TempNewSymbol access_controller = SymbolTable::new_symbol("java/security/AccessController", CHECK);
 145     Klass* access_controller_klass = SystemDictionary::resolve_or_fail(access_controller, false, CHECK);
 146     TempNewSymbol privileged_action = SymbolTable::new_symbol("java/security/PrivilegedAction", CHECK);
 147     Klass* privileged_action_klass = SystemDictionary::resolve_or_fail(privileged_action, false, CHECK);
 148 
 149     Method* last_caller = NULL;
 150 
 151     while (!vfst.at_end()) {
 152       Method* m = vfst.method();
 153       if (!vfst.method()->method_holder()->is_subclass_of(SystemDictionary::ClassLoader_klass())&&
 154           !vfst.method()->method_holder()->is_subclass_of(access_controller_klass) &&
 155           !vfst.method()->method_holder()->is_subclass_of(privileged_action_klass)) {
 156         break;
 157       }
 158       last_caller = m;
 159       vfst.next();
 160     }
 161     // if this is called from Class.forName0 and that is called from Class.forName,
 162     // then print the caller of Class.forName.  If this is Class.loadClass, then print
 163     // that caller, otherwise keep quiet since this should be picked up elsewhere.
 164     bool found_it = false;
 165     if (!vfst.at_end() &&
 166         vfst.method()->method_holder()->name() == vmSymbols::java_lang_Class() &&
 167         vfst.method()->name() == vmSymbols::forName0_name()) {
 168       vfst.next();
 169       if (!vfst.at_end() &&
 170           vfst.method()->method_holder()->name() == vmSymbols::java_lang_Class() &&
 171           vfst.method()->name() == vmSymbols::forName_name()) {
 172         vfst.next();
 173         found_it = true;
 174       }
 175     } else if (last_caller != NULL &&
 176                last_caller->method_holder()->name() ==
 177                vmSymbols::java_lang_ClassLoader() &&
 178                (last_caller->name() == vmSymbols::loadClassInternal_name() ||
 179                 last_caller->name() == vmSymbols::loadClass_name())) {
 180       found_it = true;
 181     } else if (!vfst.at_end()) {
 182       if (vfst.method()->is_native()) {
 183         // JNI call
 184         found_it = true;
 185       }
 186     }
 187     if (found_it && !vfst.at_end()) {
 188       // found the caller
 189       caller = vfst.method()->method_holder();
 190       line_number = vfst.method()->line_number_from_bci(vfst.bci());
 191       if (line_number == -1) {
 192         // show method name if it's a native method
 193         trace = vfst.method()->name_and_sig_as_C_string();
 194       }
 195       Symbol* s = caller->source_file_name();
 196       if (s != NULL) {
 197         source_file = s->as_C_string();
 198       }
 199     }
 200   }
 201   if (caller != NULL) {
 202     if (to_class != caller) {
 203       const char * from = caller->external_name();
 204       const char * to = to_class->external_name();
 205       // print in a single call to reduce interleaving between threads
 206       if (source_file != NULL) {
 207         tty->print("RESOLVE %s %s %s:%d (%s)\n", from, to, source_file, line_number, trace);
 208       } else {
 209         tty->print("RESOLVE %s %s (%s)\n", from, to, trace);
 210       }
 211     }
 212   }
 213 }
 214 
 215 void trace_class_resolution(Klass* to_class) {
 216   EXCEPTION_MARK;
 217   trace_class_resolution_impl(to_class, THREAD);
 218   if (HAS_PENDING_EXCEPTION) {
 219     CLEAR_PENDING_EXCEPTION;
 220   }
 221 }
 222 
 223 // Wrapper to trace JVM functions
 224 
 225 #ifdef ASSERT
 226   class JVMTraceWrapper : public StackObj {
 227    public:
 228     JVMTraceWrapper(const char* format, ...) ATTRIBUTE_PRINTF(2, 3) {
 229       if (TraceJVMCalls) {
 230         va_list ap;
 231         va_start(ap, format);
 232         tty->print("JVM ");
 233         tty->vprint_cr(format, ap);
 234         va_end(ap);
 235       }
 236     }
 237   };
 238 
 239   Histogram* JVMHistogram;
 240   volatile jint JVMHistogram_lock = 0;
 241 
 242   class JVMHistogramElement : public HistogramElement {
 243     public:
 244      JVMHistogramElement(const char* name);
 245   };
 246 
 247   JVMHistogramElement::JVMHistogramElement(const char* elementName) {
 248     _name = elementName;
 249     uintx count = 0;
 250 
 251     while (Atomic::cmpxchg(1, &JVMHistogram_lock, 0) != 0) {
 252       while (OrderAccess::load_acquire(&JVMHistogram_lock) != 0) {
 253         count +=1;
 254         if ( (WarnOnStalledSpinLock > 0)
 255           && (count % WarnOnStalledSpinLock == 0)) {
 256           warning("JVMHistogram_lock seems to be stalled");
 257         }
 258       }
 259      }
 260 
 261     if(JVMHistogram == NULL)
 262       JVMHistogram = new Histogram("JVM Call Counts",100);
 263 
 264     JVMHistogram->add_element(this);
 265     Atomic::dec(&JVMHistogram_lock);
 266   }
 267 
 268   #define JVMCountWrapper(arg) \
 269       static JVMHistogramElement* e = new JVMHistogramElement(arg); \
 270       if (e != NULL) e->increment_count();  // Due to bug in VC++, we need a NULL check here eventhough it should never happen!
 271 
 272   #define JVMWrapper(arg1)                    JVMCountWrapper(arg1); JVMTraceWrapper(arg1)
 273   #define JVMWrapper2(arg1, arg2)             JVMCountWrapper(arg1); JVMTraceWrapper(arg1, arg2)
 274   #define JVMWrapper3(arg1, arg2, arg3)       JVMCountWrapper(arg1); JVMTraceWrapper(arg1, arg2, arg3)
 275   #define JVMWrapper4(arg1, arg2, arg3, arg4) JVMCountWrapper(arg1); JVMTraceWrapper(arg1, arg2, arg3, arg4)
 276 #else
 277   #define JVMWrapper(arg1)
 278   #define JVMWrapper2(arg1, arg2)
 279   #define JVMWrapper3(arg1, arg2, arg3)
 280   #define JVMWrapper4(arg1, arg2, arg3, arg4)
 281 #endif
 282 
 283 
 284 // Interface version /////////////////////////////////////////////////////////////////////
 285 
 286 
 287 JVM_LEAF(jint, JVM_GetInterfaceVersion())
 288   return JVM_INTERFACE_VERSION;
 289 JVM_END
 290 
 291 
 292 // java.lang.System //////////////////////////////////////////////////////////////////////
 293 
 294 
 295 JVM_LEAF(jlong, JVM_CurrentTimeMillis(JNIEnv *env, jclass ignored))
 296   JVMWrapper("JVM_CurrentTimeMillis");
 297   return os::javaTimeMillis();
 298 JVM_END
 299 
 300 JVM_LEAF(jlong, JVM_NanoTime(JNIEnv *env, jclass ignored))
 301   JVMWrapper("JVM_NanoTime");
 302   return os::javaTimeNanos();
 303 JVM_END
 304 
 305 // The function below is actually exposed by sun.misc.VM and not
 306 // java.lang.System, but we choose to keep it here so that it stays next
 307 // to JVM_CurrentTimeMillis and JVM_NanoTime
 308 
 309 const jlong MAX_DIFF_SECS = CONST64(0x0100000000); //  2^32
 310 const jlong MIN_DIFF_SECS = -MAX_DIFF_SECS; // -2^32
 311 
 312 JVM_LEAF(jlong, JVM_GetNanoTimeAdjustment(JNIEnv *env, jclass ignored, jlong offset_secs))
 313   JVMWrapper("JVM_GetNanoTimeAdjustment");
 314   jlong seconds;
 315   jlong nanos;
 316 
 317   os::javaTimeSystemUTC(seconds, nanos);
 318 
 319   // We're going to verify that the result can fit in a long.
 320   // For that we need the difference in seconds between 'seconds'
 321   // and 'offset_secs' to be such that:
 322   //     |seconds - offset_secs| < (2^63/10^9)
 323   // We're going to approximate 10^9 ~< 2^30 (1000^3 ~< 1024^3)
 324   // which makes |seconds - offset_secs| < 2^33
 325   // and we will prefer +/- 2^32 as the maximum acceptable diff
 326   // as 2^32 has a more natural feel than 2^33...
 327   //
 328   // So if |seconds - offset_secs| >= 2^32 - we return a special
 329   // sentinel value (-1) which the caller should take as an
 330   // exception value indicating that the offset given to us is
 331   // too far from range of the current time - leading to too big
 332   // a nano adjustment. The caller is expected to recover by
 333   // computing a more accurate offset and calling this method
 334   // again. (For the record 2^32 secs is ~136 years, so that
 335   // should rarely happen)
 336   //
 337   jlong diff = seconds - offset_secs;
 338   if (diff >= MAX_DIFF_SECS || diff <= MIN_DIFF_SECS) {
 339      return -1; // sentinel value: the offset is too far off the target
 340   }
 341 
 342   // return the adjustment. If you compute a time by adding
 343   // this number of nanoseconds along with the number of seconds
 344   // in the offset you should get the current UTC time.
 345   return (diff * (jlong)1000000000) + nanos;
 346 JVM_END
 347 
 348 JVM_ENTRY(void, JVM_ArrayCopy(JNIEnv *env, jclass ignored, jobject src, jint src_pos,
 349                                jobject dst, jint dst_pos, jint length))
 350   JVMWrapper("JVM_ArrayCopy");
 351   // Check if we have null pointers
 352   if (src == NULL || dst == NULL) {
 353     THROW(vmSymbols::java_lang_NullPointerException());
 354   }
 355   arrayOop s = arrayOop(JNIHandles::resolve_non_null(src));
 356   arrayOop d = arrayOop(JNIHandles::resolve_non_null(dst));
 357   assert(s->is_oop(), "JVM_ArrayCopy: src not an oop");
 358   assert(d->is_oop(), "JVM_ArrayCopy: dst not an oop");
 359   // Do copy
 360   s->klass()->copy_array(s, src_pos, d, dst_pos, length, thread);
 361 JVM_END
 362 
 363 
 364 static void set_property(Handle props, const char* key, const char* value, TRAPS) {
 365   JavaValue r(T_OBJECT);
 366   // public synchronized Object put(Object key, Object value);
 367   HandleMark hm(THREAD);
 368   Handle key_str    = java_lang_String::create_from_platform_dependent_str(key, CHECK);
 369   Handle value_str  = java_lang_String::create_from_platform_dependent_str((value != NULL ? value : ""), CHECK);
 370   JavaCalls::call_virtual(&r,
 371                           props,
 372                           KlassHandle(THREAD, SystemDictionary::Properties_klass()),
 373                           vmSymbols::put_name(),
 374                           vmSymbols::object_object_object_signature(),
 375                           key_str,
 376                           value_str,
 377                           THREAD);
 378 }
 379 
 380 
 381 #define PUTPROP(props, name, value) set_property((props), (name), (value), CHECK_(properties));
 382 
 383 
 384 JVM_ENTRY(jobject, JVM_InitProperties(JNIEnv *env, jobject properties))
 385   JVMWrapper("JVM_InitProperties");
 386   ResourceMark rm;
 387 
 388   Handle props(THREAD, JNIHandles::resolve_non_null(properties));
 389 
 390   // System property list includes both user set via -D option and
 391   // jvm system specific properties.
 392   for (SystemProperty* p = Arguments::system_properties(); p != NULL; p = p->next()) {
 393     PUTPROP(props, p->key(), p->value());
 394   }
 395 
 396   // Convert the -XX:MaxDirectMemorySize= command line flag
 397   // to the sun.nio.MaxDirectMemorySize property.
 398   // Do this after setting user properties to prevent people
 399   // from setting the value with a -D option, as requested.
 400   {
 401     if (FLAG_IS_DEFAULT(MaxDirectMemorySize)) {
 402       PUTPROP(props, "sun.nio.MaxDirectMemorySize", "-1");
 403     } else {
 404       char as_chars[256];
 405       jio_snprintf(as_chars, sizeof(as_chars), SIZE_FORMAT, MaxDirectMemorySize);
 406       PUTPROP(props, "sun.nio.MaxDirectMemorySize", as_chars);
 407     }
 408   }
 409 
 410   // JVM monitoring and management support
 411   // Add the sun.management.compiler property for the compiler's name
 412   {
 413 #undef CSIZE
 414 #if defined(_LP64) || defined(_WIN64)
 415   #define CSIZE "64-Bit "
 416 #else
 417   #define CSIZE
 418 #endif // 64bit
 419 
 420 #ifdef TIERED
 421     const char* compiler_name = "HotSpot " CSIZE "Tiered Compilers";
 422 #else
 423 #if defined(COMPILER1)
 424     const char* compiler_name = "HotSpot " CSIZE "Client Compiler";
 425 #elif defined(COMPILER2)
 426     const char* compiler_name = "HotSpot " CSIZE "Server Compiler";
 427 #elif INCLUDE_JVMCI
 428     #error "INCLUDE_JVMCI should imply TIERED"
 429 #else
 430     const char* compiler_name = "";
 431 #endif // compilers
 432 #endif // TIERED
 433 
 434     if (*compiler_name != '\0' &&
 435         (Arguments::mode() != Arguments::_int)) {
 436       PUTPROP(props, "sun.management.compiler", compiler_name);
 437     }
 438   }
 439 
 440   return properties;
 441 JVM_END
 442 
 443 
 444 /*
 445  * Return the temporary directory that the VM uses for the attach
 446  * and perf data files.
 447  *
 448  * It is important that this directory is well-known and the
 449  * same for all VM instances. It cannot be affected by configuration
 450  * variables such as java.io.tmpdir.
 451  */
 452 JVM_ENTRY(jstring, JVM_GetTemporaryDirectory(JNIEnv *env))
 453   JVMWrapper("JVM_GetTemporaryDirectory");
 454   HandleMark hm(THREAD);
 455   const char* temp_dir = os::get_temp_directory();
 456   Handle h = java_lang_String::create_from_platform_dependent_str(temp_dir, CHECK_NULL);
 457   return (jstring) JNIHandles::make_local(env, h());
 458 JVM_END
 459 
 460 
 461 // java.lang.Runtime /////////////////////////////////////////////////////////////////////////
 462 
 463 extern volatile jint vm_created;
 464 
 465 JVM_ENTRY_NO_ENV(void, JVM_Halt(jint code))
 466   before_exit(thread);
 467   vm_exit(code);
 468 JVM_END
 469 
 470 
 471 JVM_ENTRY_NO_ENV(void, JVM_GC(void))
 472   JVMWrapper("JVM_GC");
 473   if (!DisableExplicitGC) {
 474     Universe::heap()->collect(GCCause::_java_lang_system_gc);
 475   }
 476 JVM_END
 477 
 478 
 479 JVM_LEAF(jlong, JVM_MaxObjectInspectionAge(void))
 480   JVMWrapper("JVM_MaxObjectInspectionAge");
 481   return Universe::heap()->millis_since_last_gc();
 482 JVM_END
 483 
 484 
 485 static inline jlong convert_size_t_to_jlong(size_t val) {
 486   // In the 64-bit vm, a size_t can overflow a jlong (which is signed).
 487   NOT_LP64 (return (jlong)val;)
 488   LP64_ONLY(return (jlong)MIN2(val, (size_t)max_jlong);)
 489 }
 490 
 491 JVM_ENTRY_NO_ENV(jlong, JVM_TotalMemory(void))
 492   JVMWrapper("JVM_TotalMemory");
 493   size_t n = Universe::heap()->capacity();
 494   return convert_size_t_to_jlong(n);
 495 JVM_END
 496 
 497 
 498 JVM_ENTRY_NO_ENV(jlong, JVM_FreeMemory(void))
 499   JVMWrapper("JVM_FreeMemory");
 500   CollectedHeap* ch = Universe::heap();
 501   size_t n;
 502   {
 503      MutexLocker x(Heap_lock);
 504      n = ch->capacity() - ch->used();
 505   }
 506   return convert_size_t_to_jlong(n);
 507 JVM_END
 508 
 509 
 510 JVM_ENTRY_NO_ENV(jlong, JVM_MaxMemory(void))
 511   JVMWrapper("JVM_MaxMemory");
 512   size_t n = Universe::heap()->max_capacity();
 513   return convert_size_t_to_jlong(n);
 514 JVM_END
 515 
 516 
 517 JVM_ENTRY_NO_ENV(jint, JVM_ActiveProcessorCount(void))
 518   JVMWrapper("JVM_ActiveProcessorCount");
 519   return os::active_processor_count();
 520 JVM_END
 521 
 522 
 523 
 524 // java.lang.Throwable //////////////////////////////////////////////////////
 525 
 526 
 527 JVM_ENTRY(void, JVM_FillInStackTrace(JNIEnv *env, jobject receiver))
 528   JVMWrapper("JVM_FillInStackTrace");
 529   Handle exception(thread, JNIHandles::resolve_non_null(receiver));
 530   java_lang_Throwable::fill_in_stack_trace(exception);
 531 JVM_END
 532 
 533 
 534 JVM_ENTRY(jint, JVM_GetStackTraceDepth(JNIEnv *env, jobject throwable))
 535   JVMWrapper("JVM_GetStackTraceDepth");
 536   oop exception = JNIHandles::resolve(throwable);
 537   return java_lang_Throwable::get_stack_trace_depth(exception, THREAD);
 538 JVM_END
 539 
 540 
 541 JVM_ENTRY(jobject, JVM_GetStackTraceElement(JNIEnv *env, jobject throwable, jint index))
 542   JVMWrapper("JVM_GetStackTraceElement");
 543   JvmtiVMObjectAllocEventCollector oam; // This ctor (throughout this module) may trigger a safepoint/GC
 544   oop exception = JNIHandles::resolve(throwable);
 545   oop element = java_lang_Throwable::get_stack_trace_element(exception, index, CHECK_NULL);
 546   return JNIHandles::make_local(env, element);
 547 JVM_END
 548 
 549 
 550 // java.lang.Object ///////////////////////////////////////////////
 551 
 552 
 553 JVM_ENTRY(jint, JVM_IHashCode(JNIEnv* env, jobject handle))
 554   JVMWrapper("JVM_IHashCode");
 555   // as implemented in the classic virtual machine; return 0 if object is NULL
 556   return handle == NULL ? 0 : ObjectSynchronizer::FastHashCode (THREAD, JNIHandles::resolve_non_null(handle)) ;
 557 JVM_END
 558 
 559 
 560 JVM_ENTRY(void, JVM_MonitorWait(JNIEnv* env, jobject handle, jlong ms))
 561   JVMWrapper("JVM_MonitorWait");
 562   Handle obj(THREAD, JNIHandles::resolve_non_null(handle));
 563   JavaThreadInObjectWaitState jtiows(thread, ms != 0);
 564   if (JvmtiExport::should_post_monitor_wait()) {
 565     JvmtiExport::post_monitor_wait((JavaThread *)THREAD, (oop)obj(), ms);
 566 
 567     // The current thread already owns the monitor and it has not yet
 568     // been added to the wait queue so the current thread cannot be
 569     // made the successor. This means that the JVMTI_EVENT_MONITOR_WAIT
 570     // event handler cannot accidentally consume an unpark() meant for
 571     // the ParkEvent associated with this ObjectMonitor.
 572   }
 573   ObjectSynchronizer::wait(obj, ms, CHECK);
 574 JVM_END
 575 
 576 
 577 JVM_ENTRY(void, JVM_MonitorNotify(JNIEnv* env, jobject handle))
 578   JVMWrapper("JVM_MonitorNotify");
 579   Handle obj(THREAD, JNIHandles::resolve_non_null(handle));
 580   ObjectSynchronizer::notify(obj, CHECK);
 581 JVM_END
 582 
 583 
 584 JVM_ENTRY(void, JVM_MonitorNotifyAll(JNIEnv* env, jobject handle))
 585   JVMWrapper("JVM_MonitorNotifyAll");
 586   Handle obj(THREAD, JNIHandles::resolve_non_null(handle));
 587   ObjectSynchronizer::notifyall(obj, CHECK);
 588 JVM_END
 589 
 590 
 591 JVM_ENTRY(jobject, JVM_Clone(JNIEnv* env, jobject handle))
 592   JVMWrapper("JVM_Clone");
 593   Handle obj(THREAD, JNIHandles::resolve_non_null(handle));
 594   const KlassHandle klass (THREAD, obj->klass());
 595   JvmtiVMObjectAllocEventCollector oam;
 596 
 597 #ifdef ASSERT
 598   // Just checking that the cloneable flag is set correct
 599   if (obj->is_array()) {
 600     guarantee(klass->is_cloneable(), "all arrays are cloneable");
 601   } else {
 602     guarantee(obj->is_instance(), "should be instanceOop");
 603     bool cloneable = klass->is_subtype_of(SystemDictionary::Cloneable_klass());
 604     guarantee(cloneable == klass->is_cloneable(), "incorrect cloneable flag");
 605   }
 606 #endif
 607 
 608   // Check if class of obj supports the Cloneable interface.
 609   // All arrays are considered to be cloneable (See JLS 20.1.5)
 610   if (!klass->is_cloneable()) {
 611     ResourceMark rm(THREAD);
 612     THROW_MSG_0(vmSymbols::java_lang_CloneNotSupportedException(), klass->external_name());
 613   }
 614 
 615   // Make shallow object copy
 616   const int size = obj->size();
 617   oop new_obj_oop = NULL;
 618   if (obj->is_array()) {
 619     const int length = ((arrayOop)obj())->length();
 620     new_obj_oop = CollectedHeap::array_allocate(klass, size, length, CHECK_NULL);
 621   } else {
 622     new_obj_oop = CollectedHeap::obj_allocate(klass, size, CHECK_NULL);
 623   }
 624 
 625   // 4839641 (4840070): We must do an oop-atomic copy, because if another thread
 626   // is modifying a reference field in the clonee, a non-oop-atomic copy might
 627   // be suspended in the middle of copying the pointer and end up with parts
 628   // of two different pointers in the field.  Subsequent dereferences will crash.
 629   // 4846409: an oop-copy of objects with long or double fields or arrays of same
 630   // won't copy the longs/doubles atomically in 32-bit vm's, so we copy jlongs instead
 631   // of oops.  We know objects are aligned on a minimum of an jlong boundary.
 632   // The same is true of StubRoutines::object_copy and the various oop_copy
 633   // variants, and of the code generated by the inline_native_clone intrinsic.
 634   assert(MinObjAlignmentInBytes >= BytesPerLong, "objects misaligned");
 635   Copy::conjoint_jlongs_atomic((jlong*)obj(), (jlong*)new_obj_oop,
 636                                (size_t)align_object_size(size) / HeapWordsPerLong);
 637   // Clear the header
 638   new_obj_oop->init_mark();
 639 
 640   // Store check (mark entire object and let gc sort it out)
 641   BarrierSet* bs = Universe::heap()->barrier_set();
 642   assert(bs->has_write_region_opt(), "Barrier set does not have write_region");
 643   bs->write_region(MemRegion((HeapWord*)new_obj_oop, size));
 644 
 645   Handle new_obj(THREAD, new_obj_oop);
 646   // Special handling for MemberNames.  Since they contain Method* metadata, they
 647   // must be registered so that RedefineClasses can fix metadata contained in them.
 648   if (java_lang_invoke_MemberName::is_instance(new_obj()) &&
 649       java_lang_invoke_MemberName::is_method(new_obj())) {
 650     Method* method = (Method*)java_lang_invoke_MemberName::vmtarget(new_obj());
 651     // MemberName may be unresolved, so doesn't need registration until resolved.
 652     if (method != NULL) {
 653       methodHandle m(THREAD, method);
 654       // This can safepoint and redefine method, so need both new_obj and method
 655       // in a handle, for two different reasons.  new_obj can move, method can be
 656       // deleted if nothing is using it on the stack.
 657       m->method_holder()->add_member_name(new_obj());
 658     }
 659   }
 660 
 661   // Caution: this involves a java upcall, so the clone should be
 662   // "gc-robust" by this stage.
 663   if (klass->has_finalizer()) {
 664     assert(obj->is_instance(), "should be instanceOop");
 665     new_obj_oop = InstanceKlass::register_finalizer(instanceOop(new_obj()), CHECK_NULL);
 666     new_obj = Handle(THREAD, new_obj_oop);
 667   }
 668 
 669   return JNIHandles::make_local(env, new_obj());
 670 JVM_END
 671 
 672 // java.io.File ///////////////////////////////////////////////////////////////
 673 
 674 JVM_LEAF(char*, JVM_NativePath(char* path))
 675   JVMWrapper2("JVM_NativePath (%s)", path);
 676   return os::native_path(path);
 677 JVM_END
 678 
 679 
 680 // Misc. class handling ///////////////////////////////////////////////////////////
 681 
 682 
 683 JVM_ENTRY(jclass, JVM_GetCallerClass(JNIEnv* env, int depth))
 684   JVMWrapper("JVM_GetCallerClass");
 685 
 686   // Pre-JDK 8 and early builds of JDK 8 don't have a CallerSensitive annotation; or
 687   // sun.reflect.Reflection.getCallerClass with a depth parameter is provided
 688   // temporarily for existing code to use until a replacement API is defined.
 689   if (SystemDictionary::reflect_CallerSensitive_klass() == NULL || depth != JVM_CALLER_DEPTH) {
 690     Klass* k = thread->security_get_caller_class(depth);
 691     return (k == NULL) ? NULL : (jclass) JNIHandles::make_local(env, k->java_mirror());
 692   }
 693 
 694   // Getting the class of the caller frame.
 695   //
 696   // The call stack at this point looks something like this:
 697   //
 698   // [0] [ @CallerSensitive public sun.reflect.Reflection.getCallerClass ]
 699   // [1] [ @CallerSensitive API.method                                   ]
 700   // [.] [ (skipped intermediate frames)                                 ]
 701   // [n] [ caller                                                        ]
 702   vframeStream vfst(thread);
 703   // Cf. LibraryCallKit::inline_native_Reflection_getCallerClass
 704   for (int n = 0; !vfst.at_end(); vfst.security_next(), n++) {
 705     Method* m = vfst.method();
 706     assert(m != NULL, "sanity");
 707     switch (n) {
 708     case 0:
 709       // This must only be called from Reflection.getCallerClass
 710       if (m->intrinsic_id() != vmIntrinsics::_getCallerClass) {
 711         THROW_MSG_NULL(vmSymbols::java_lang_InternalError(), "JVM_GetCallerClass must only be called from Reflection.getCallerClass");
 712       }
 713       // fall-through
 714     case 1:
 715       // Frame 0 and 1 must be caller sensitive.
 716       if (!m->caller_sensitive()) {
 717         THROW_MSG_NULL(vmSymbols::java_lang_InternalError(), err_msg("CallerSensitive annotation expected at frame %d", n));
 718       }
 719       break;
 720     default:
 721       if (!m->is_ignored_by_security_stack_walk()) {
 722         // We have reached the desired frame; return the holder class.
 723         return (jclass) JNIHandles::make_local(env, m->method_holder()->java_mirror());
 724       }
 725       break;
 726     }
 727   }
 728   return NULL;
 729 JVM_END
 730 
 731 
 732 JVM_ENTRY(jclass, JVM_FindPrimitiveClass(JNIEnv* env, const char* utf))
 733   JVMWrapper("JVM_FindPrimitiveClass");
 734   oop mirror = NULL;
 735   BasicType t = name2type(utf);
 736   if (t != T_ILLEGAL && t != T_OBJECT && t != T_ARRAY) {
 737     mirror = Universe::java_mirror(t);
 738   }
 739   if (mirror == NULL) {
 740     THROW_MSG_0(vmSymbols::java_lang_ClassNotFoundException(), (char*) utf);
 741   } else {
 742     return (jclass) JNIHandles::make_local(env, mirror);
 743   }
 744 JVM_END
 745 
 746 
 747 // Returns a class loaded by the bootstrap class loader; or null
 748 // if not found.  ClassNotFoundException is not thrown.
 749 // FindClassFromBootLoader is exported to the launcher for windows.
 750 JVM_ENTRY(jclass, JVM_FindClassFromBootLoader(JNIEnv* env,
 751                                               const char* name))
 752   JVMWrapper2("JVM_FindClassFromBootLoader %s", name);
 753 
 754   // Java libraries should ensure that name is never null...
 755   if (name == NULL || (int)strlen(name) > Symbol::max_length()) {
 756     // It's impossible to create this class;  the name cannot fit
 757     // into the constant pool.
 758     return NULL;
 759   }
 760 
 761   TempNewSymbol h_name = SymbolTable::new_symbol(name, CHECK_NULL);
 762   Klass* k = SystemDictionary::resolve_or_null(h_name, CHECK_NULL);
 763   if (k == NULL) {
 764     return NULL;
 765   }
 766 
 767   if (TraceClassResolution) {
 768     trace_class_resolution(k);
 769   }
 770   return (jclass) JNIHandles::make_local(env, k->java_mirror());
 771 JVM_END
 772 
 773 // Find a class with this name in this loader, using the caller's protection domain.
 774 JVM_ENTRY(jclass, JVM_FindClassFromCaller(JNIEnv* env, const char* name,
 775                                           jboolean init, jobject loader,
 776                                           jclass caller))
 777   JVMWrapper2("JVM_FindClassFromCaller %s throws ClassNotFoundException", name);
 778   // Java libraries should ensure that name is never null...
 779   if (name == NULL || (int)strlen(name) > Symbol::max_length()) {
 780     // It's impossible to create this class;  the name cannot fit
 781     // into the constant pool.
 782     THROW_MSG_0(vmSymbols::java_lang_ClassNotFoundException(), name);
 783   }
 784 
 785   TempNewSymbol h_name = SymbolTable::new_symbol(name, CHECK_NULL);
 786 
 787   oop loader_oop = JNIHandles::resolve(loader);
 788   oop from_class = JNIHandles::resolve(caller);
 789   oop protection_domain = NULL;
 790   // If loader is null, shouldn't call ClassLoader.checkPackageAccess; otherwise get
 791   // NPE. Put it in another way, the bootstrap class loader has all permission and
 792   // thus no checkPackageAccess equivalence in the VM class loader.
 793   // The caller is also passed as NULL by the java code if there is no security
 794   // manager to avoid the performance cost of getting the calling class.
 795   if (from_class != NULL && loader_oop != NULL) {
 796     protection_domain = java_lang_Class::as_Klass(from_class)->protection_domain();
 797   }
 798 
 799   Handle h_loader(THREAD, loader_oop);
 800   Handle h_prot(THREAD, protection_domain);
 801   jclass result = find_class_from_class_loader(env, h_name, init, h_loader,
 802                                                h_prot, false, THREAD);
 803 
 804   if (TraceClassResolution && result != NULL) {
 805     trace_class_resolution(java_lang_Class::as_Klass(JNIHandles::resolve_non_null(result)));
 806   }
 807   return result;
 808 JVM_END
 809 
 810 JVM_ENTRY(jclass, JVM_FindClassFromClass(JNIEnv *env, const char *name,
 811                                          jboolean init, jclass from))
 812   JVMWrapper2("JVM_FindClassFromClass %s", name);
 813   if (name == NULL || (int)strlen(name) > Symbol::max_length()) {
 814     // It's impossible to create this class;  the name cannot fit
 815     // into the constant pool.
 816     THROW_MSG_0(vmSymbols::java_lang_NoClassDefFoundError(), name);
 817   }
 818   TempNewSymbol h_name = SymbolTable::new_symbol(name, CHECK_NULL);
 819   oop from_class_oop = JNIHandles::resolve(from);
 820   Klass* from_class = (from_class_oop == NULL)
 821                            ? (Klass*)NULL
 822                            : java_lang_Class::as_Klass(from_class_oop);
 823   oop class_loader = NULL;
 824   oop protection_domain = NULL;
 825   if (from_class != NULL) {
 826     class_loader = from_class->class_loader();
 827     protection_domain = from_class->protection_domain();
 828   }
 829   Handle h_loader(THREAD, class_loader);
 830   Handle h_prot  (THREAD, protection_domain);
 831   jclass result = find_class_from_class_loader(env, h_name, init, h_loader,
 832                                                h_prot, true, thread);
 833 
 834   if (TraceClassResolution && result != NULL) {
 835     // this function is generally only used for class loading during verification.
 836     ResourceMark rm;
 837     oop from_mirror = JNIHandles::resolve_non_null(from);
 838     Klass* from_class = java_lang_Class::as_Klass(from_mirror);
 839     const char * from_name = from_class->external_name();
 840 
 841     oop mirror = JNIHandles::resolve_non_null(result);
 842     Klass* to_class = java_lang_Class::as_Klass(mirror);
 843     const char * to = to_class->external_name();
 844     tty->print("RESOLVE %s %s (verification)\n", from_name, to);
 845   }
 846 
 847   return result;
 848 JVM_END
 849 
 850 static void is_lock_held_by_thread(Handle loader, PerfCounter* counter, TRAPS) {
 851   if (loader.is_null()) {
 852     return;
 853   }
 854 
 855   // check whether the current caller thread holds the lock or not.
 856   // If not, increment the corresponding counter
 857   if (ObjectSynchronizer::query_lock_ownership((JavaThread*)THREAD, loader) !=
 858       ObjectSynchronizer::owner_self) {
 859     counter->inc();
 860   }
 861 }
 862 
 863 // common code for JVM_DefineClass() and JVM_DefineClassWithSource()
 864 // and JVM_DefineClassWithSourceCond()
 865 static jclass jvm_define_class_common(JNIEnv *env, const char *name,
 866                                       jobject loader, const jbyte *buf,
 867                                       jsize len, jobject pd, const char *source,
 868                                       jboolean verify, TRAPS) {
 869   if (source == NULL)  source = "__JVM_DefineClass__";
 870 
 871   assert(THREAD->is_Java_thread(), "must be a JavaThread");
 872   JavaThread* jt = (JavaThread*) THREAD;
 873 
 874   PerfClassTraceTime vmtimer(ClassLoader::perf_define_appclass_time(),
 875                              ClassLoader::perf_define_appclass_selftime(),
 876                              ClassLoader::perf_define_appclasses(),
 877                              jt->get_thread_stat()->perf_recursion_counts_addr(),
 878                              jt->get_thread_stat()->perf_timers_addr(),
 879                              PerfClassTraceTime::DEFINE_CLASS);
 880 
 881   if (UsePerfData) {
 882     ClassLoader::perf_app_classfile_bytes_read()->inc(len);
 883   }
 884 
 885   // Since exceptions can be thrown, class initialization can take place
 886   // if name is NULL no check for class name in .class stream has to be made.
 887   TempNewSymbol class_name = NULL;
 888   if (name != NULL) {
 889     const int str_len = (int)strlen(name);
 890     if (str_len > Symbol::max_length()) {
 891       // It's impossible to create this class;  the name cannot fit
 892       // into the constant pool.
 893       THROW_MSG_0(vmSymbols::java_lang_NoClassDefFoundError(), name);
 894     }
 895     class_name = SymbolTable::new_symbol(name, str_len, CHECK_NULL);
 896   }
 897 
 898   ResourceMark rm(THREAD);
 899   ClassFileStream st((u1*) buf, len, (char *)source);
 900   Handle class_loader (THREAD, JNIHandles::resolve(loader));
 901   if (UsePerfData) {
 902     is_lock_held_by_thread(class_loader,
 903                            ClassLoader::sync_JVMDefineClassLockFreeCounter(),
 904                            THREAD);
 905   }
 906   Handle protection_domain (THREAD, JNIHandles::resolve(pd));
 907   Klass* k = SystemDictionary::resolve_from_stream(class_name, class_loader,
 908                                                      protection_domain, &st,
 909                                                      verify != 0,
 910                                                      CHECK_NULL);
 911 
 912   if (TraceClassResolution && k != NULL) {
 913     trace_class_resolution(k);
 914   }
 915 
 916   return (jclass) JNIHandles::make_local(env, k->java_mirror());
 917 }
 918 
 919 
 920 JVM_ENTRY(jclass, JVM_DefineClass(JNIEnv *env, const char *name, jobject loader, const jbyte *buf, jsize len, jobject pd))
 921   JVMWrapper2("JVM_DefineClass %s", name);
 922 
 923   return jvm_define_class_common(env, name, loader, buf, len, pd, NULL, true, THREAD);
 924 JVM_END
 925 
 926 
 927 JVM_ENTRY(jclass, JVM_DefineClassWithSource(JNIEnv *env, const char *name, jobject loader, const jbyte *buf, jsize len, jobject pd, const char *source))
 928   JVMWrapper2("JVM_DefineClassWithSource %s", name);
 929 
 930   return jvm_define_class_common(env, name, loader, buf, len, pd, source, true, THREAD);
 931 JVM_END
 932 
 933 JVM_ENTRY(jclass, JVM_DefineClassWithSourceCond(JNIEnv *env, const char *name,
 934                                                 jobject loader, const jbyte *buf,
 935                                                 jsize len, jobject pd,
 936                                                 const char *source, jboolean verify))
 937   JVMWrapper2("JVM_DefineClassWithSourceCond %s", name);
 938 
 939   return jvm_define_class_common(env, name, loader, buf, len, pd, source, verify, THREAD);
 940 JVM_END
 941 
 942 JVM_ENTRY(jclass, JVM_FindLoadedClass(JNIEnv *env, jobject loader, jstring name))
 943   JVMWrapper("JVM_FindLoadedClass");
 944   ResourceMark rm(THREAD);
 945 
 946   Handle h_name (THREAD, JNIHandles::resolve_non_null(name));
 947   Handle string = java_lang_String::internalize_classname(h_name, CHECK_NULL);
 948 
 949   const char* str   = java_lang_String::as_utf8_string(string());
 950   // Sanity check, don't expect null
 951   if (str == NULL) return NULL;
 952 
 953   const int str_len = (int)strlen(str);
 954   if (str_len > Symbol::max_length()) {
 955     // It's impossible to create this class;  the name cannot fit
 956     // into the constant pool.
 957     return NULL;
 958   }
 959   TempNewSymbol klass_name = SymbolTable::new_symbol(str, str_len, CHECK_NULL);
 960 
 961   // Security Note:
 962   //   The Java level wrapper will perform the necessary security check allowing
 963   //   us to pass the NULL as the initiating class loader.
 964   Handle h_loader(THREAD, JNIHandles::resolve(loader));
 965   if (UsePerfData) {
 966     is_lock_held_by_thread(h_loader,
 967                            ClassLoader::sync_JVMFindLoadedClassLockFreeCounter(),
 968                            THREAD);
 969   }
 970 
 971   Klass* k = SystemDictionary::find_instance_or_array_klass(klass_name,
 972                                                               h_loader,
 973                                                               Handle(),
 974                                                               CHECK_NULL);
 975 #if INCLUDE_CDS
 976   if (k == NULL) {
 977     // If the class is not already loaded, try to see if it's in the shared
 978     // archive for the current classloader (h_loader).
 979     instanceKlassHandle ik = SystemDictionaryShared::find_or_load_shared_class(
 980         klass_name, h_loader, CHECK_NULL);
 981     k = ik();
 982   }
 983 #endif
 984   return (k == NULL) ? NULL :
 985             (jclass) JNIHandles::make_local(env, k->java_mirror());
 986 JVM_END
 987 
 988 
 989 // Reflection support //////////////////////////////////////////////////////////////////////////////
 990 
 991 JVM_ENTRY(jstring, JVM_GetClassName(JNIEnv *env, jclass cls))
 992   assert (cls != NULL, "illegal class");
 993   JVMWrapper("JVM_GetClassName");
 994   JvmtiVMObjectAllocEventCollector oam;
 995   ResourceMark rm(THREAD);
 996   const char* name;
 997   if (java_lang_Class::is_primitive(JNIHandles::resolve(cls))) {
 998     name = type2name(java_lang_Class::primitive_type(JNIHandles::resolve(cls)));
 999   } else {
1000     // Consider caching interned string in Klass
1001     Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve(cls));
1002     assert(k->is_klass(), "just checking");
1003     name = k->external_name();
1004   }
1005   oop result = StringTable::intern((char*) name, CHECK_NULL);
1006   return (jstring) JNIHandles::make_local(env, result);
1007 JVM_END
1008 
1009 
1010 JVM_ENTRY(jobjectArray, JVM_GetClassInterfaces(JNIEnv *env, jclass cls))
1011   JVMWrapper("JVM_GetClassInterfaces");
1012   JvmtiVMObjectAllocEventCollector oam;
1013   oop mirror = JNIHandles::resolve_non_null(cls);
1014 
1015   // Special handling for primitive objects
1016   if (java_lang_Class::is_primitive(mirror)) {
1017     // Primitive objects does not have any interfaces
1018     objArrayOop r = oopFactory::new_objArray(SystemDictionary::Class_klass(), 0, CHECK_NULL);
1019     return (jobjectArray) JNIHandles::make_local(env, r);
1020   }
1021 
1022   KlassHandle klass(thread, java_lang_Class::as_Klass(mirror));
1023   // Figure size of result array
1024   int size;
1025   if (klass->is_instance_klass()) {
1026     size = InstanceKlass::cast(klass())->local_interfaces()->length();
1027   } else {
1028     assert(klass->is_objArray_klass() || klass->is_typeArray_klass(), "Illegal mirror klass");
1029     size = 2;
1030   }
1031 
1032   // Allocate result array
1033   objArrayOop r = oopFactory::new_objArray(SystemDictionary::Class_klass(), size, CHECK_NULL);
1034   objArrayHandle result (THREAD, r);
1035   // Fill in result
1036   if (klass->is_instance_klass()) {
1037     // Regular instance klass, fill in all local interfaces
1038     for (int index = 0; index < size; index++) {
1039       Klass* k = InstanceKlass::cast(klass())->local_interfaces()->at(index);
1040       result->obj_at_put(index, k->java_mirror());
1041     }
1042   } else {
1043     // All arrays implement java.lang.Cloneable and java.io.Serializable
1044     result->obj_at_put(0, SystemDictionary::Cloneable_klass()->java_mirror());
1045     result->obj_at_put(1, SystemDictionary::Serializable_klass()->java_mirror());
1046   }
1047   return (jobjectArray) JNIHandles::make_local(env, result());
1048 JVM_END
1049 
1050 
1051 JVM_QUICK_ENTRY(jboolean, JVM_IsInterface(JNIEnv *env, jclass cls))
1052   JVMWrapper("JVM_IsInterface");
1053   oop mirror = JNIHandles::resolve_non_null(cls);
1054   if (java_lang_Class::is_primitive(mirror)) {
1055     return JNI_FALSE;
1056   }
1057   Klass* k = java_lang_Class::as_Klass(mirror);
1058   jboolean result = k->is_interface();
1059   assert(!result || k->is_instance_klass(),
1060          "all interfaces are instance types");
1061   // The compiler intrinsic for isInterface tests the
1062   // Klass::_access_flags bits in the same way.
1063   return result;
1064 JVM_END
1065 
1066 
1067 JVM_ENTRY(jobjectArray, JVM_GetClassSigners(JNIEnv *env, jclass cls))
1068   JVMWrapper("JVM_GetClassSigners");
1069   JvmtiVMObjectAllocEventCollector oam;
1070   if (java_lang_Class::is_primitive(JNIHandles::resolve_non_null(cls))) {
1071     // There are no signers for primitive types
1072     return NULL;
1073   }
1074 
1075   objArrayOop signers = java_lang_Class::signers(JNIHandles::resolve_non_null(cls));
1076 
1077   // If there are no signers set in the class, or if the class
1078   // is an array, return NULL.
1079   if (signers == NULL) return NULL;
1080 
1081   // copy of the signers array
1082   Klass* element = ObjArrayKlass::cast(signers->klass())->element_klass();
1083   objArrayOop signers_copy = oopFactory::new_objArray(element, signers->length(), CHECK_NULL);
1084   for (int index = 0; index < signers->length(); index++) {
1085     signers_copy->obj_at_put(index, signers->obj_at(index));
1086   }
1087 
1088   // return the copy
1089   return (jobjectArray) JNIHandles::make_local(env, signers_copy);
1090 JVM_END
1091 
1092 
1093 JVM_ENTRY(void, JVM_SetClassSigners(JNIEnv *env, jclass cls, jobjectArray signers))
1094   JVMWrapper("JVM_SetClassSigners");
1095   if (!java_lang_Class::is_primitive(JNIHandles::resolve_non_null(cls))) {
1096     // This call is ignored for primitive types and arrays.
1097     // Signers are only set once, ClassLoader.java, and thus shouldn't
1098     // be called with an array.  Only the bootstrap loader creates arrays.
1099     Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
1100     if (k->is_instance_klass()) {
1101       java_lang_Class::set_signers(k->java_mirror(), objArrayOop(JNIHandles::resolve(signers)));
1102     }
1103   }
1104 JVM_END
1105 
1106 
1107 JVM_ENTRY(jobject, JVM_GetProtectionDomain(JNIEnv *env, jclass cls))
1108   JVMWrapper("JVM_GetProtectionDomain");
1109   if (JNIHandles::resolve(cls) == NULL) {
1110     THROW_(vmSymbols::java_lang_NullPointerException(), NULL);
1111   }
1112 
1113   if (java_lang_Class::is_primitive(JNIHandles::resolve(cls))) {
1114     // Primitive types does not have a protection domain.
1115     return NULL;
1116   }
1117 
1118   oop pd = java_lang_Class::protection_domain(JNIHandles::resolve(cls));
1119   return (jobject) JNIHandles::make_local(env, pd);
1120 JVM_END
1121 
1122 
1123 static bool is_authorized(Handle context, instanceKlassHandle klass, TRAPS) {
1124   // If there is a security manager and protection domain, check the access
1125   // in the protection domain, otherwise it is authorized.
1126   if (java_lang_System::has_security_manager()) {
1127 
1128     // For bootstrapping, if pd implies method isn't in the JDK, allow
1129     // this context to revert to older behavior.
1130     // In this case the isAuthorized field in AccessControlContext is also not
1131     // present.
1132     if (Universe::protection_domain_implies_method() == NULL) {
1133       return true;
1134     }
1135 
1136     // Whitelist certain access control contexts
1137     if (java_security_AccessControlContext::is_authorized(context)) {
1138       return true;
1139     }
1140 
1141     oop prot = klass->protection_domain();
1142     if (prot != NULL) {
1143       // Call pd.implies(new SecurityPermission("createAccessControlContext"))
1144       // in the new wrapper.
1145       methodHandle m(THREAD, Universe::protection_domain_implies_method());
1146       Handle h_prot(THREAD, prot);
1147       JavaValue result(T_BOOLEAN);
1148       JavaCallArguments args(h_prot);
1149       JavaCalls::call(&result, m, &args, CHECK_false);
1150       return (result.get_jboolean() != 0);
1151     }
1152   }
1153   return true;
1154 }
1155 
1156 // Create an AccessControlContext with a protection domain with null codesource
1157 // and null permissions - which gives no permissions.
1158 oop create_dummy_access_control_context(TRAPS) {
1159   InstanceKlass* pd_klass = SystemDictionary::ProtectionDomain_klass();
1160   Handle obj = pd_klass->allocate_instance_handle(CHECK_NULL);
1161   // Call constructor ProtectionDomain(null, null);
1162   JavaValue result(T_VOID);
1163   JavaCalls::call_special(&result, obj, KlassHandle(THREAD, pd_klass),
1164                           vmSymbols::object_initializer_name(),
1165                           vmSymbols::codesource_permissioncollection_signature(),
1166                           Handle(), Handle(), CHECK_NULL);
1167 
1168   // new ProtectionDomain[] {pd};
1169   objArrayOop context = oopFactory::new_objArray(pd_klass, 1, CHECK_NULL);
1170   context->obj_at_put(0, obj());
1171 
1172   // new AccessControlContext(new ProtectionDomain[] {pd})
1173   objArrayHandle h_context(THREAD, context);
1174   oop acc = java_security_AccessControlContext::create(h_context, false, Handle(), CHECK_NULL);
1175   return acc;
1176 }
1177 
1178 JVM_ENTRY(jobject, JVM_DoPrivileged(JNIEnv *env, jclass cls, jobject action, jobject context, jboolean wrapException))
1179   JVMWrapper("JVM_DoPrivileged");
1180 
1181   if (action == NULL) {
1182     THROW_MSG_0(vmSymbols::java_lang_NullPointerException(), "Null action");
1183   }
1184 
1185   // Compute the frame initiating the do privileged operation and setup the privileged stack
1186   vframeStream vfst(thread);
1187   vfst.security_get_caller_frame(1);
1188 
1189   if (vfst.at_end()) {
1190     THROW_MSG_0(vmSymbols::java_lang_InternalError(), "no caller?");
1191   }
1192 
1193   Method* method        = vfst.method();
1194   instanceKlassHandle klass (THREAD, method->method_holder());
1195 
1196   // Check that action object understands "Object run()"
1197   Handle h_context;
1198   if (context != NULL) {
1199     h_context = Handle(THREAD, JNIHandles::resolve(context));
1200     bool authorized = is_authorized(h_context, klass, CHECK_NULL);
1201     if (!authorized) {
1202       // Create an unprivileged access control object and call it's run function
1203       // instead.
1204       oop noprivs = create_dummy_access_control_context(CHECK_NULL);
1205       h_context = Handle(THREAD, noprivs);
1206     }
1207   }
1208 
1209   // Check that action object understands "Object run()"
1210   Handle object (THREAD, JNIHandles::resolve(action));
1211 
1212   // get run() method
1213   Method* m_oop = object->klass()->uncached_lookup_method(
1214                                            vmSymbols::run_method_name(),
1215                                            vmSymbols::void_object_signature(),
1216                                            Klass::find_overpass);
1217   methodHandle m (THREAD, m_oop);
1218   if (m.is_null() || !m->is_method() || !m()->is_public() || m()->is_static()) {
1219     THROW_MSG_0(vmSymbols::java_lang_InternalError(), "No run method");
1220   }
1221 
1222   // Stack allocated list of privileged stack elements
1223   PrivilegedElement pi;
1224   if (!vfst.at_end()) {
1225     pi.initialize(&vfst, h_context(), thread->privileged_stack_top(), CHECK_NULL);
1226     thread->set_privileged_stack_top(&pi);
1227   }
1228 
1229 
1230   // invoke the Object run() in the action object. We cannot use call_interface here, since the static type
1231   // is not really known - it is either java.security.PrivilegedAction or java.security.PrivilegedExceptionAction
1232   Handle pending_exception;
1233   JavaValue result(T_OBJECT);
1234   JavaCallArguments args(object);
1235   JavaCalls::call(&result, m, &args, THREAD);
1236 
1237   // done with action, remove ourselves from the list
1238   if (!vfst.at_end()) {
1239     assert(thread->privileged_stack_top() != NULL && thread->privileged_stack_top() == &pi, "wrong top element");
1240     thread->set_privileged_stack_top(thread->privileged_stack_top()->next());
1241   }
1242 
1243   if (HAS_PENDING_EXCEPTION) {
1244     pending_exception = Handle(THREAD, PENDING_EXCEPTION);
1245     CLEAR_PENDING_EXCEPTION;
1246     // JVMTI has already reported the pending exception
1247     // JVMTI internal flag reset is needed in order to report PrivilegedActionException
1248     if (THREAD->is_Java_thread()) {
1249       JvmtiExport::clear_detected_exception((JavaThread*) THREAD);
1250     }
1251     if ( pending_exception->is_a(SystemDictionary::Exception_klass()) &&
1252         !pending_exception->is_a(SystemDictionary::RuntimeException_klass())) {
1253       // Throw a java.security.PrivilegedActionException(Exception e) exception
1254       JavaCallArguments args(pending_exception);
1255       THROW_ARG_0(vmSymbols::java_security_PrivilegedActionException(),
1256                   vmSymbols::exception_void_signature(),
1257                   &args);
1258     }
1259   }
1260 
1261   if (pending_exception.not_null()) THROW_OOP_0(pending_exception());
1262   return JNIHandles::make_local(env, (oop) result.get_jobject());
1263 JVM_END
1264 
1265 
1266 // Returns the inherited_access_control_context field of the running thread.
1267 JVM_ENTRY(jobject, JVM_GetInheritedAccessControlContext(JNIEnv *env, jclass cls))
1268   JVMWrapper("JVM_GetInheritedAccessControlContext");
1269   oop result = java_lang_Thread::inherited_access_control_context(thread->threadObj());
1270   return JNIHandles::make_local(env, result);
1271 JVM_END
1272 
1273 class RegisterArrayForGC {
1274  private:
1275   JavaThread *_thread;
1276  public:
1277   RegisterArrayForGC(JavaThread *thread, GrowableArray<oop>* array)  {
1278     _thread = thread;
1279     _thread->register_array_for_gc(array);
1280   }
1281 
1282   ~RegisterArrayForGC() {
1283     _thread->register_array_for_gc(NULL);
1284   }
1285 };
1286 
1287 
1288 JVM_ENTRY(jobject, JVM_GetStackAccessControlContext(JNIEnv *env, jclass cls))
1289   JVMWrapper("JVM_GetStackAccessControlContext");
1290   if (!UsePrivilegedStack) return NULL;
1291 
1292   ResourceMark rm(THREAD);
1293   GrowableArray<oop>* local_array = new GrowableArray<oop>(12);
1294   JvmtiVMObjectAllocEventCollector oam;
1295 
1296   // count the protection domains on the execution stack. We collapse
1297   // duplicate consecutive protection domains into a single one, as
1298   // well as stopping when we hit a privileged frame.
1299 
1300   // Use vframeStream to iterate through Java frames
1301   vframeStream vfst(thread);
1302 
1303   oop previous_protection_domain = NULL;
1304   Handle privileged_context(thread, NULL);
1305   bool is_privileged = false;
1306   oop protection_domain = NULL;
1307 
1308   for(; !vfst.at_end(); vfst.next()) {
1309     // get method of frame
1310     Method* method = vfst.method();
1311     intptr_t* frame_id   = vfst.frame_id();
1312 
1313     // check the privileged frames to see if we have a match
1314     if (thread->privileged_stack_top() && thread->privileged_stack_top()->frame_id() == frame_id) {
1315       // this frame is privileged
1316       is_privileged = true;
1317       privileged_context = Handle(thread, thread->privileged_stack_top()->privileged_context());
1318       protection_domain  = thread->privileged_stack_top()->protection_domain();
1319     } else {
1320       protection_domain = method->method_holder()->protection_domain();
1321     }
1322 
1323     if ((previous_protection_domain != protection_domain) && (protection_domain != NULL)) {
1324       local_array->push(protection_domain);
1325       previous_protection_domain = protection_domain;
1326     }
1327 
1328     if (is_privileged) break;
1329   }
1330 
1331 
1332   // either all the domains on the stack were system domains, or
1333   // we had a privileged system domain
1334   if (local_array->is_empty()) {
1335     if (is_privileged && privileged_context.is_null()) return NULL;
1336 
1337     oop result = java_security_AccessControlContext::create(objArrayHandle(), is_privileged, privileged_context, CHECK_NULL);
1338     return JNIHandles::make_local(env, result);
1339   }
1340 
1341   // the resource area must be registered in case of a gc
1342   RegisterArrayForGC ragc(thread, local_array);
1343   objArrayOop context = oopFactory::new_objArray(SystemDictionary::ProtectionDomain_klass(),
1344                                                  local_array->length(), CHECK_NULL);
1345   objArrayHandle h_context(thread, context);
1346   for (int index = 0; index < local_array->length(); index++) {
1347     h_context->obj_at_put(index, local_array->at(index));
1348   }
1349 
1350   oop result = java_security_AccessControlContext::create(h_context, is_privileged, privileged_context, CHECK_NULL);
1351 
1352   return JNIHandles::make_local(env, result);
1353 JVM_END
1354 
1355 
1356 JVM_QUICK_ENTRY(jboolean, JVM_IsArrayClass(JNIEnv *env, jclass cls))
1357   JVMWrapper("JVM_IsArrayClass");
1358   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
1359   return (k != NULL) && k->is_array_klass() ? true : false;
1360 JVM_END
1361 
1362 
1363 JVM_QUICK_ENTRY(jboolean, JVM_IsPrimitiveClass(JNIEnv *env, jclass cls))
1364   JVMWrapper("JVM_IsPrimitiveClass");
1365   oop mirror = JNIHandles::resolve_non_null(cls);
1366   return (jboolean) java_lang_Class::is_primitive(mirror);
1367 JVM_END
1368 
1369 
1370 JVM_ENTRY(jint, JVM_GetClassModifiers(JNIEnv *env, jclass cls))
1371   JVMWrapper("JVM_GetClassModifiers");
1372   if (java_lang_Class::is_primitive(JNIHandles::resolve_non_null(cls))) {
1373     // Primitive type
1374     return JVM_ACC_ABSTRACT | JVM_ACC_FINAL | JVM_ACC_PUBLIC;
1375   }
1376 
1377   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
1378   debug_only(int computed_modifiers = k->compute_modifier_flags(CHECK_0));
1379   assert(k->modifier_flags() == computed_modifiers, "modifiers cache is OK");
1380   return k->modifier_flags();
1381 JVM_END
1382 
1383 
1384 // Inner class reflection ///////////////////////////////////////////////////////////////////////////////
1385 
1386 JVM_ENTRY(jobjectArray, JVM_GetDeclaredClasses(JNIEnv *env, jclass ofClass))
1387   JvmtiVMObjectAllocEventCollector oam;
1388   // ofClass is a reference to a java_lang_Class object. The mirror object
1389   // of an InstanceKlass
1390 
1391   if (java_lang_Class::is_primitive(JNIHandles::resolve_non_null(ofClass)) ||
1392       ! java_lang_Class::as_Klass(JNIHandles::resolve_non_null(ofClass))->is_instance_klass()) {
1393     oop result = oopFactory::new_objArray(SystemDictionary::Class_klass(), 0, CHECK_NULL);
1394     return (jobjectArray)JNIHandles::make_local(env, result);
1395   }
1396 
1397   instanceKlassHandle k(thread, java_lang_Class::as_Klass(JNIHandles::resolve_non_null(ofClass)));
1398   InnerClassesIterator iter(k);
1399 
1400   if (iter.length() == 0) {
1401     // Neither an inner nor outer class
1402     oop result = oopFactory::new_objArray(SystemDictionary::Class_klass(), 0, CHECK_NULL);
1403     return (jobjectArray)JNIHandles::make_local(env, result);
1404   }
1405 
1406   // find inner class info
1407   constantPoolHandle cp(thread, k->constants());
1408   int length = iter.length();
1409 
1410   // Allocate temp. result array
1411   objArrayOop r = oopFactory::new_objArray(SystemDictionary::Class_klass(), length/4, CHECK_NULL);
1412   objArrayHandle result (THREAD, r);
1413   int members = 0;
1414 
1415   for (; !iter.done(); iter.next()) {
1416     int ioff = iter.inner_class_info_index();
1417     int ooff = iter.outer_class_info_index();
1418 
1419     if (ioff != 0 && ooff != 0) {
1420       // Check to see if the name matches the class we're looking for
1421       // before attempting to find the class.
1422       if (cp->klass_name_at_matches(k, ooff)) {
1423         Klass* outer_klass = cp->klass_at(ooff, CHECK_NULL);
1424         if (outer_klass == k()) {
1425            Klass* ik = cp->klass_at(ioff, CHECK_NULL);
1426            instanceKlassHandle inner_klass (THREAD, ik);
1427 
1428            // Throws an exception if outer klass has not declared k as
1429            // an inner klass
1430            Reflection::check_for_inner_class(k, inner_klass, true, CHECK_NULL);
1431 
1432            result->obj_at_put(members, inner_klass->java_mirror());
1433            members++;
1434         }
1435       }
1436     }
1437   }
1438 
1439   if (members != length) {
1440     // Return array of right length
1441     objArrayOop res = oopFactory::new_objArray(SystemDictionary::Class_klass(), members, CHECK_NULL);
1442     for(int i = 0; i < members; i++) {
1443       res->obj_at_put(i, result->obj_at(i));
1444     }
1445     return (jobjectArray)JNIHandles::make_local(env, res);
1446   }
1447 
1448   return (jobjectArray)JNIHandles::make_local(env, result());
1449 JVM_END
1450 
1451 
1452 JVM_ENTRY(jclass, JVM_GetDeclaringClass(JNIEnv *env, jclass ofClass))
1453 {
1454   // ofClass is a reference to a java_lang_Class object.
1455   if (java_lang_Class::is_primitive(JNIHandles::resolve_non_null(ofClass)) ||
1456       ! java_lang_Class::as_Klass(JNIHandles::resolve_non_null(ofClass))->is_instance_klass()) {
1457     return NULL;
1458   }
1459 
1460   bool inner_is_member = false;
1461   Klass* outer_klass
1462     = InstanceKlass::cast(java_lang_Class::as_Klass(JNIHandles::resolve_non_null(ofClass))
1463                           )->compute_enclosing_class(&inner_is_member, CHECK_NULL);
1464   if (outer_klass == NULL)  return NULL;  // already a top-level class
1465   if (!inner_is_member)  return NULL;     // an anonymous class (inside a method)
1466   return (jclass) JNIHandles::make_local(env, outer_klass->java_mirror());
1467 }
1468 JVM_END
1469 
1470 JVM_ENTRY(jstring, JVM_GetSimpleBinaryName(JNIEnv *env, jclass cls))
1471 {
1472   oop mirror = JNIHandles::resolve_non_null(cls);
1473   if (java_lang_Class::is_primitive(mirror) ||
1474       !java_lang_Class::as_Klass(mirror)->is_instance_klass()) {
1475     return NULL;
1476   }
1477   instanceKlassHandle k(THREAD, InstanceKlass::cast(java_lang_Class::as_Klass(mirror)));
1478   int ooff = 0, noff = 0;
1479   if (InstanceKlass::find_inner_classes_attr(k, &ooff, &noff, THREAD)) {
1480     if (noff != 0) {
1481       constantPoolHandle i_cp(thread, k->constants());
1482       Symbol* name = i_cp->symbol_at(noff);
1483       Handle str = java_lang_String::create_from_symbol(name, CHECK_NULL);
1484       return (jstring) JNIHandles::make_local(env, str());
1485     }
1486   }
1487   return NULL;
1488 }
1489 JVM_END
1490 
1491 JVM_ENTRY(jstring, JVM_GetClassSignature(JNIEnv *env, jclass cls))
1492   assert (cls != NULL, "illegal class");
1493   JVMWrapper("JVM_GetClassSignature");
1494   JvmtiVMObjectAllocEventCollector oam;
1495   ResourceMark rm(THREAD);
1496   // Return null for arrays and primatives
1497   if (!java_lang_Class::is_primitive(JNIHandles::resolve(cls))) {
1498     Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve(cls));
1499     if (k->is_instance_klass()) {
1500       Symbol* sym = InstanceKlass::cast(k)->generic_signature();
1501       if (sym == NULL) return NULL;
1502       Handle str = java_lang_String::create_from_symbol(sym, CHECK_NULL);
1503       return (jstring) JNIHandles::make_local(env, str());
1504     }
1505   }
1506   return NULL;
1507 JVM_END
1508 
1509 
1510 JVM_ENTRY(jbyteArray, JVM_GetClassAnnotations(JNIEnv *env, jclass cls))
1511   assert (cls != NULL, "illegal class");
1512   JVMWrapper("JVM_GetClassAnnotations");
1513 
1514   // Return null for arrays and primitives
1515   if (!java_lang_Class::is_primitive(JNIHandles::resolve(cls))) {
1516     Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve(cls));
1517     if (k->is_instance_klass()) {
1518       typeArrayOop a = Annotations::make_java_array(InstanceKlass::cast(k)->class_annotations(), CHECK_NULL);
1519       return (jbyteArray) JNIHandles::make_local(env, a);
1520     }
1521   }
1522   return NULL;
1523 JVM_END
1524 
1525 
1526 static bool jvm_get_field_common(jobject field, fieldDescriptor& fd, TRAPS) {
1527   // some of this code was adapted from from jni_FromReflectedField
1528 
1529   oop reflected = JNIHandles::resolve_non_null(field);
1530   oop mirror    = java_lang_reflect_Field::clazz(reflected);
1531   Klass* k    = java_lang_Class::as_Klass(mirror);
1532   int slot      = java_lang_reflect_Field::slot(reflected);
1533   int modifiers = java_lang_reflect_Field::modifiers(reflected);
1534 
1535   KlassHandle kh(THREAD, k);
1536   intptr_t offset = InstanceKlass::cast(kh())->field_offset(slot);
1537 
1538   if (modifiers & JVM_ACC_STATIC) {
1539     // for static fields we only look in the current class
1540     if (!InstanceKlass::cast(kh())->find_local_field_from_offset(offset, true, &fd)) {
1541       assert(false, "cannot find static field");
1542       return false;
1543     }
1544   } else {
1545     // for instance fields we start with the current class and work
1546     // our way up through the superclass chain
1547     if (!InstanceKlass::cast(kh())->find_field_from_offset(offset, false, &fd)) {
1548       assert(false, "cannot find instance field");
1549       return false;
1550     }
1551   }
1552   return true;
1553 }
1554 
1555 static Method* jvm_get_method_common(jobject method) {
1556   // some of this code was adapted from from jni_FromReflectedMethod
1557 
1558   oop reflected = JNIHandles::resolve_non_null(method);
1559   oop mirror    = NULL;
1560   int slot      = 0;
1561 
1562   if (reflected->klass() == SystemDictionary::reflect_Constructor_klass()) {
1563     mirror = java_lang_reflect_Constructor::clazz(reflected);
1564     slot   = java_lang_reflect_Constructor::slot(reflected);
1565   } else {
1566     assert(reflected->klass() == SystemDictionary::reflect_Method_klass(),
1567            "wrong type");
1568     mirror = java_lang_reflect_Method::clazz(reflected);
1569     slot   = java_lang_reflect_Method::slot(reflected);
1570   }
1571   Klass* k = java_lang_Class::as_Klass(mirror);
1572 
1573   Method* m = InstanceKlass::cast(k)->method_with_idnum(slot);
1574   assert(m != NULL, "cannot find method");
1575   return m;  // caller has to deal with NULL in product mode
1576 }
1577 
1578 /* Type use annotations support (JDK 1.8) */
1579 
1580 JVM_ENTRY(jbyteArray, JVM_GetClassTypeAnnotations(JNIEnv *env, jclass cls))
1581   assert (cls != NULL, "illegal class");
1582   JVMWrapper("JVM_GetClassTypeAnnotations");
1583   ResourceMark rm(THREAD);
1584   // Return null for arrays and primitives
1585   if (!java_lang_Class::is_primitive(JNIHandles::resolve(cls))) {
1586     Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve(cls));
1587     if (k->is_instance_klass()) {
1588       AnnotationArray* type_annotations = InstanceKlass::cast(k)->class_type_annotations();
1589       if (type_annotations != NULL) {
1590         typeArrayOop a = Annotations::make_java_array(type_annotations, CHECK_NULL);
1591         return (jbyteArray) JNIHandles::make_local(env, a);
1592       }
1593     }
1594   }
1595   return NULL;
1596 JVM_END
1597 
1598 JVM_ENTRY(jbyteArray, JVM_GetMethodTypeAnnotations(JNIEnv *env, jobject method))
1599   assert (method != NULL, "illegal method");
1600   JVMWrapper("JVM_GetMethodTypeAnnotations");
1601 
1602   // method is a handle to a java.lang.reflect.Method object
1603   Method* m = jvm_get_method_common(method);
1604   if (m == NULL) {
1605     return NULL;
1606   }
1607 
1608   AnnotationArray* type_annotations = m->type_annotations();
1609   if (type_annotations != NULL) {
1610     typeArrayOop a = Annotations::make_java_array(type_annotations, CHECK_NULL);
1611     return (jbyteArray) JNIHandles::make_local(env, a);
1612   }
1613 
1614   return NULL;
1615 JVM_END
1616 
1617 JVM_ENTRY(jbyteArray, JVM_GetFieldTypeAnnotations(JNIEnv *env, jobject field))
1618   assert (field != NULL, "illegal field");
1619   JVMWrapper("JVM_GetFieldTypeAnnotations");
1620 
1621   fieldDescriptor fd;
1622   bool gotFd = jvm_get_field_common(field, fd, CHECK_NULL);
1623   if (!gotFd) {
1624     return NULL;
1625   }
1626 
1627   return (jbyteArray) JNIHandles::make_local(env, Annotations::make_java_array(fd.type_annotations(), THREAD));
1628 JVM_END
1629 
1630 static void bounds_check(constantPoolHandle cp, jint index, TRAPS) {
1631   if (!cp->is_within_bounds(index)) {
1632     THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), "Constant pool index out of bounds");
1633   }
1634 }
1635 
1636 JVM_ENTRY(jobjectArray, JVM_GetMethodParameters(JNIEnv *env, jobject method))
1637 {
1638   JVMWrapper("JVM_GetMethodParameters");
1639   // method is a handle to a java.lang.reflect.Method object
1640   Method* method_ptr = jvm_get_method_common(method);
1641   methodHandle mh (THREAD, method_ptr);
1642   Handle reflected_method (THREAD, JNIHandles::resolve_non_null(method));
1643   const int num_params = mh->method_parameters_length();
1644 
1645   if (num_params < 0) {
1646     // A -1 return value from method_parameters_length means there is no
1647     // parameter data.  Return null to indicate this to the reflection
1648     // API.
1649     assert(num_params == -1, "num_params should be -1 if it is less than zero");
1650     return (jobjectArray)NULL;
1651   } else {
1652     // Otherwise, we return something up to reflection, even if it is
1653     // a zero-length array.  Why?  Because in some cases this can
1654     // trigger a MalformedParametersException.
1655 
1656     // make sure all the symbols are properly formatted
1657     for (int i = 0; i < num_params; i++) {
1658       MethodParametersElement* params = mh->method_parameters_start();
1659       int index = params[i].name_cp_index;
1660       bounds_check(mh->constants(), index, CHECK_NULL);
1661 
1662       if (0 != index && !mh->constants()->tag_at(index).is_utf8()) {
1663         THROW_MSG_0(vmSymbols::java_lang_IllegalArgumentException(),
1664                     "Wrong type at constant pool index");
1665       }
1666 
1667     }
1668 
1669     objArrayOop result_oop = oopFactory::new_objArray(SystemDictionary::reflect_Parameter_klass(), num_params, CHECK_NULL);
1670     objArrayHandle result (THREAD, result_oop);
1671 
1672     for (int i = 0; i < num_params; i++) {
1673       MethodParametersElement* params = mh->method_parameters_start();
1674       // For a 0 index, give a NULL symbol
1675       Symbol* sym = 0 != params[i].name_cp_index ?
1676         mh->constants()->symbol_at(params[i].name_cp_index) : NULL;
1677       int flags = params[i].flags;
1678       oop param = Reflection::new_parameter(reflected_method, i, sym,
1679                                             flags, CHECK_NULL);
1680       result->obj_at_put(i, param);
1681     }
1682     return (jobjectArray)JNIHandles::make_local(env, result());
1683   }
1684 }
1685 JVM_END
1686 
1687 // New (JDK 1.4) reflection implementation /////////////////////////////////////
1688 
1689 JVM_ENTRY(jobjectArray, JVM_GetClassDeclaredFields(JNIEnv *env, jclass ofClass, jboolean publicOnly))
1690 {
1691   JVMWrapper("JVM_GetClassDeclaredFields");
1692   JvmtiVMObjectAllocEventCollector oam;
1693 
1694   // Exclude primitive types and array types
1695   if (java_lang_Class::is_primitive(JNIHandles::resolve_non_null(ofClass)) ||
1696       java_lang_Class::as_Klass(JNIHandles::resolve_non_null(ofClass))->is_array_klass()) {
1697     // Return empty array
1698     oop res = oopFactory::new_objArray(SystemDictionary::reflect_Field_klass(), 0, CHECK_NULL);
1699     return (jobjectArray) JNIHandles::make_local(env, res);
1700   }
1701 
1702   instanceKlassHandle k(THREAD, java_lang_Class::as_Klass(JNIHandles::resolve_non_null(ofClass)));
1703   constantPoolHandle cp(THREAD, k->constants());
1704 
1705   // Ensure class is linked
1706   k->link_class(CHECK_NULL);
1707 
1708   // 4496456 We need to filter out java.lang.Throwable.backtrace
1709   bool skip_backtrace = false;
1710 
1711   // Allocate result
1712   int num_fields;
1713 
1714   if (publicOnly) {
1715     num_fields = 0;
1716     for (JavaFieldStream fs(k()); !fs.done(); fs.next()) {
1717       if (fs.access_flags().is_public()) ++num_fields;
1718     }
1719   } else {
1720     num_fields = k->java_fields_count();
1721 
1722     if (k() == SystemDictionary::Throwable_klass()) {
1723       num_fields--;
1724       skip_backtrace = true;
1725     }
1726   }
1727 
1728   objArrayOop r = oopFactory::new_objArray(SystemDictionary::reflect_Field_klass(), num_fields, CHECK_NULL);
1729   objArrayHandle result (THREAD, r);
1730 
1731   int out_idx = 0;
1732   fieldDescriptor fd;
1733   for (JavaFieldStream fs(k); !fs.done(); fs.next()) {
1734     if (skip_backtrace) {
1735       // 4496456 skip java.lang.Throwable.backtrace
1736       int offset = fs.offset();
1737       if (offset == java_lang_Throwable::get_backtrace_offset()) continue;
1738     }
1739 
1740     if (!publicOnly || fs.access_flags().is_public()) {
1741       fd.reinitialize(k(), fs.index());
1742       oop field = Reflection::new_field(&fd, CHECK_NULL);
1743       result->obj_at_put(out_idx, field);
1744       ++out_idx;
1745     }
1746   }
1747   assert(out_idx == num_fields, "just checking");
1748   return (jobjectArray) JNIHandles::make_local(env, result());
1749 }
1750 JVM_END
1751 
1752 static bool select_method(methodHandle method, bool want_constructor) {
1753   if (want_constructor) {
1754     return (method->is_initializer() && !method->is_static());
1755   } else {
1756     return  (!method->is_initializer() && !method->is_overpass());
1757   }
1758 }
1759 
1760 static jobjectArray get_class_declared_methods_helper(
1761                                   JNIEnv *env,
1762                                   jclass ofClass, jboolean publicOnly,
1763                                   bool want_constructor,
1764                                   Klass* klass, TRAPS) {
1765 
1766   JvmtiVMObjectAllocEventCollector oam;
1767 
1768   // Exclude primitive types and array types
1769   if (java_lang_Class::is_primitive(JNIHandles::resolve_non_null(ofClass))
1770       || java_lang_Class::as_Klass(JNIHandles::resolve_non_null(ofClass))->is_array_klass()) {
1771     // Return empty array
1772     oop res = oopFactory::new_objArray(klass, 0, CHECK_NULL);
1773     return (jobjectArray) JNIHandles::make_local(env, res);
1774   }
1775 
1776   instanceKlassHandle k(THREAD, java_lang_Class::as_Klass(JNIHandles::resolve_non_null(ofClass)));
1777 
1778   // Ensure class is linked
1779   k->link_class(CHECK_NULL);
1780 
1781   Array<Method*>* methods = k->methods();
1782   int methods_length = methods->length();
1783 
1784   // Save original method_idnum in case of redefinition, which can change
1785   // the idnum of obsolete methods.  The new method will have the same idnum
1786   // but if we refresh the methods array, the counts will be wrong.
1787   ResourceMark rm(THREAD);
1788   GrowableArray<int>* idnums = new GrowableArray<int>(methods_length);
1789   int num_methods = 0;
1790 
1791   for (int i = 0; i < methods_length; i++) {
1792     methodHandle method(THREAD, methods->at(i));
1793     if (select_method(method, want_constructor)) {
1794       if (!publicOnly || method->is_public()) {
1795         idnums->push(method->method_idnum());
1796         ++num_methods;
1797       }
1798     }
1799   }
1800 
1801   // Allocate result
1802   objArrayOop r = oopFactory::new_objArray(klass, num_methods, CHECK_NULL);
1803   objArrayHandle result (THREAD, r);
1804 
1805   // Now just put the methods that we selected above, but go by their idnum
1806   // in case of redefinition.  The methods can be redefined at any safepoint,
1807   // so above when allocating the oop array and below when creating reflect
1808   // objects.
1809   for (int i = 0; i < num_methods; i++) {
1810     methodHandle method(THREAD, k->method_with_idnum(idnums->at(i)));
1811     if (method.is_null()) {
1812       // Method may have been deleted and seems this API can handle null
1813       // Otherwise should probably put a method that throws NSME
1814       result->obj_at_put(i, NULL);
1815     } else {
1816       oop m;
1817       if (want_constructor) {
1818         m = Reflection::new_constructor(method, CHECK_NULL);
1819       } else {
1820         m = Reflection::new_method(method, false, CHECK_NULL);
1821       }
1822       result->obj_at_put(i, m);
1823     }
1824   }
1825 
1826   return (jobjectArray) JNIHandles::make_local(env, result());
1827 }
1828 
1829 JVM_ENTRY(jobjectArray, JVM_GetClassDeclaredMethods(JNIEnv *env, jclass ofClass, jboolean publicOnly))
1830 {
1831   JVMWrapper("JVM_GetClassDeclaredMethods");
1832   return get_class_declared_methods_helper(env, ofClass, publicOnly,
1833                                            /*want_constructor*/ false,
1834                                            SystemDictionary::reflect_Method_klass(), THREAD);
1835 }
1836 JVM_END
1837 
1838 JVM_ENTRY(jobjectArray, JVM_GetClassDeclaredConstructors(JNIEnv *env, jclass ofClass, jboolean publicOnly))
1839 {
1840   JVMWrapper("JVM_GetClassDeclaredConstructors");
1841   return get_class_declared_methods_helper(env, ofClass, publicOnly,
1842                                            /*want_constructor*/ true,
1843                                            SystemDictionary::reflect_Constructor_klass(), THREAD);
1844 }
1845 JVM_END
1846 
1847 JVM_ENTRY(jint, JVM_GetClassAccessFlags(JNIEnv *env, jclass cls))
1848 {
1849   JVMWrapper("JVM_GetClassAccessFlags");
1850   if (java_lang_Class::is_primitive(JNIHandles::resolve_non_null(cls))) {
1851     // Primitive type
1852     return JVM_ACC_ABSTRACT | JVM_ACC_FINAL | JVM_ACC_PUBLIC;
1853   }
1854 
1855   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
1856   return k->access_flags().as_int() & JVM_ACC_WRITTEN_FLAGS;
1857 }
1858 JVM_END
1859 
1860 
1861 // Constant pool access //////////////////////////////////////////////////////////
1862 
1863 JVM_ENTRY(jobject, JVM_GetClassConstantPool(JNIEnv *env, jclass cls))
1864 {
1865   JVMWrapper("JVM_GetClassConstantPool");
1866   JvmtiVMObjectAllocEventCollector oam;
1867 
1868   // Return null for primitives and arrays
1869   if (!java_lang_Class::is_primitive(JNIHandles::resolve_non_null(cls))) {
1870     Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
1871     if (k->is_instance_klass()) {
1872       instanceKlassHandle k_h(THREAD, k);
1873       Handle jcp = sun_reflect_ConstantPool::create(CHECK_NULL);
1874       sun_reflect_ConstantPool::set_cp(jcp(), k_h->constants());
1875       return JNIHandles::make_local(jcp());
1876     }
1877   }
1878   return NULL;
1879 }
1880 JVM_END
1881 
1882 
1883 JVM_ENTRY(jint, JVM_ConstantPoolGetSize(JNIEnv *env, jobject obj, jobject unused))
1884 {
1885   JVMWrapper("JVM_ConstantPoolGetSize");
1886   constantPoolHandle cp = constantPoolHandle(THREAD, sun_reflect_ConstantPool::get_cp(JNIHandles::resolve_non_null(obj)));
1887   return cp->length();
1888 }
1889 JVM_END
1890 
1891 
1892 JVM_ENTRY(jclass, JVM_ConstantPoolGetClassAt(JNIEnv *env, jobject obj, jobject unused, jint index))
1893 {
1894   JVMWrapper("JVM_ConstantPoolGetClassAt");
1895   constantPoolHandle cp = constantPoolHandle(THREAD, sun_reflect_ConstantPool::get_cp(JNIHandles::resolve_non_null(obj)));
1896   bounds_check(cp, index, CHECK_NULL);
1897   constantTag tag = cp->tag_at(index);
1898   if (!tag.is_klass() && !tag.is_unresolved_klass()) {
1899     THROW_MSG_0(vmSymbols::java_lang_IllegalArgumentException(), "Wrong type at constant pool index");
1900   }
1901   Klass* k = cp->klass_at(index, CHECK_NULL);
1902   return (jclass) JNIHandles::make_local(k->java_mirror());
1903 }
1904 JVM_END
1905 
1906 JVM_ENTRY(jclass, JVM_ConstantPoolGetClassAtIfLoaded(JNIEnv *env, jobject obj, jobject unused, jint index))
1907 {
1908   JVMWrapper("JVM_ConstantPoolGetClassAtIfLoaded");
1909   constantPoolHandle cp = constantPoolHandle(THREAD, sun_reflect_ConstantPool::get_cp(JNIHandles::resolve_non_null(obj)));
1910   bounds_check(cp, index, CHECK_NULL);
1911   constantTag tag = cp->tag_at(index);
1912   if (!tag.is_klass() && !tag.is_unresolved_klass()) {
1913     THROW_MSG_0(vmSymbols::java_lang_IllegalArgumentException(), "Wrong type at constant pool index");
1914   }
1915   Klass* k = ConstantPool::klass_at_if_loaded(cp, index);
1916   if (k == NULL) return NULL;
1917   return (jclass) JNIHandles::make_local(k->java_mirror());
1918 }
1919 JVM_END
1920 
1921 static jobject get_method_at_helper(constantPoolHandle cp, jint index, bool force_resolution, TRAPS) {
1922   constantTag tag = cp->tag_at(index);
1923   if (!tag.is_method() && !tag.is_interface_method()) {
1924     THROW_MSG_0(vmSymbols::java_lang_IllegalArgumentException(), "Wrong type at constant pool index");
1925   }
1926   int klass_ref  = cp->uncached_klass_ref_index_at(index);
1927   Klass* k_o;
1928   if (force_resolution) {
1929     k_o = cp->klass_at(klass_ref, CHECK_NULL);
1930   } else {
1931     k_o = ConstantPool::klass_at_if_loaded(cp, klass_ref);
1932     if (k_o == NULL) return NULL;
1933   }
1934   instanceKlassHandle k(THREAD, k_o);
1935   Symbol* name = cp->uncached_name_ref_at(index);
1936   Symbol* sig  = cp->uncached_signature_ref_at(index);
1937   methodHandle m (THREAD, k->find_method(name, sig));
1938   if (m.is_null()) {
1939     THROW_MSG_0(vmSymbols::java_lang_RuntimeException(), "Unable to look up method in target class");
1940   }
1941   oop method;
1942   if (!m->is_initializer() || m->is_static()) {
1943     method = Reflection::new_method(m, true, CHECK_NULL);
1944   } else {
1945     method = Reflection::new_constructor(m, CHECK_NULL);
1946   }
1947   return JNIHandles::make_local(method);
1948 }
1949 
1950 JVM_ENTRY(jobject, JVM_ConstantPoolGetMethodAt(JNIEnv *env, jobject obj, jobject unused, jint index))
1951 {
1952   JVMWrapper("JVM_ConstantPoolGetMethodAt");
1953   JvmtiVMObjectAllocEventCollector oam;
1954   constantPoolHandle cp = constantPoolHandle(THREAD, sun_reflect_ConstantPool::get_cp(JNIHandles::resolve_non_null(obj)));
1955   bounds_check(cp, index, CHECK_NULL);
1956   jobject res = get_method_at_helper(cp, index, true, CHECK_NULL);
1957   return res;
1958 }
1959 JVM_END
1960 
1961 JVM_ENTRY(jobject, JVM_ConstantPoolGetMethodAtIfLoaded(JNIEnv *env, jobject obj, jobject unused, jint index))
1962 {
1963   JVMWrapper("JVM_ConstantPoolGetMethodAtIfLoaded");
1964   JvmtiVMObjectAllocEventCollector oam;
1965   constantPoolHandle cp = constantPoolHandle(THREAD, sun_reflect_ConstantPool::get_cp(JNIHandles::resolve_non_null(obj)));
1966   bounds_check(cp, index, CHECK_NULL);
1967   jobject res = get_method_at_helper(cp, index, false, CHECK_NULL);
1968   return res;
1969 }
1970 JVM_END
1971 
1972 static jobject get_field_at_helper(constantPoolHandle cp, jint index, bool force_resolution, TRAPS) {
1973   constantTag tag = cp->tag_at(index);
1974   if (!tag.is_field()) {
1975     THROW_MSG_0(vmSymbols::java_lang_IllegalArgumentException(), "Wrong type at constant pool index");
1976   }
1977   int klass_ref  = cp->uncached_klass_ref_index_at(index);
1978   Klass* k_o;
1979   if (force_resolution) {
1980     k_o = cp->klass_at(klass_ref, CHECK_NULL);
1981   } else {
1982     k_o = ConstantPool::klass_at_if_loaded(cp, klass_ref);
1983     if (k_o == NULL) return NULL;
1984   }
1985   instanceKlassHandle k(THREAD, k_o);
1986   Symbol* name = cp->uncached_name_ref_at(index);
1987   Symbol* sig  = cp->uncached_signature_ref_at(index);
1988   fieldDescriptor fd;
1989   Klass* target_klass = k->find_field(name, sig, &fd);
1990   if (target_klass == NULL) {
1991     THROW_MSG_0(vmSymbols::java_lang_RuntimeException(), "Unable to look up field in target class");
1992   }
1993   oop field = Reflection::new_field(&fd, CHECK_NULL);
1994   return JNIHandles::make_local(field);
1995 }
1996 
1997 JVM_ENTRY(jobject, JVM_ConstantPoolGetFieldAt(JNIEnv *env, jobject obj, jobject unusedl, jint index))
1998 {
1999   JVMWrapper("JVM_ConstantPoolGetFieldAt");
2000   JvmtiVMObjectAllocEventCollector oam;
2001   constantPoolHandle cp = constantPoolHandle(THREAD, sun_reflect_ConstantPool::get_cp(JNIHandles::resolve_non_null(obj)));
2002   bounds_check(cp, index, CHECK_NULL);
2003   jobject res = get_field_at_helper(cp, index, true, CHECK_NULL);
2004   return res;
2005 }
2006 JVM_END
2007 
2008 JVM_ENTRY(jobject, JVM_ConstantPoolGetFieldAtIfLoaded(JNIEnv *env, jobject obj, jobject unused, jint index))
2009 {
2010   JVMWrapper("JVM_ConstantPoolGetFieldAtIfLoaded");
2011   JvmtiVMObjectAllocEventCollector oam;
2012   constantPoolHandle cp = constantPoolHandle(THREAD, sun_reflect_ConstantPool::get_cp(JNIHandles::resolve_non_null(obj)));
2013   bounds_check(cp, index, CHECK_NULL);
2014   jobject res = get_field_at_helper(cp, index, false, CHECK_NULL);
2015   return res;
2016 }
2017 JVM_END
2018 
2019 JVM_ENTRY(jobjectArray, JVM_ConstantPoolGetMemberRefInfoAt(JNIEnv *env, jobject obj, jobject unused, jint index))
2020 {
2021   JVMWrapper("JVM_ConstantPoolGetMemberRefInfoAt");
2022   JvmtiVMObjectAllocEventCollector oam;
2023   constantPoolHandle cp = constantPoolHandle(THREAD, sun_reflect_ConstantPool::get_cp(JNIHandles::resolve_non_null(obj)));
2024   bounds_check(cp, index, CHECK_NULL);
2025   constantTag tag = cp->tag_at(index);
2026   if (!tag.is_field_or_method()) {
2027     THROW_MSG_0(vmSymbols::java_lang_IllegalArgumentException(), "Wrong type at constant pool index");
2028   }
2029   int klass_ref = cp->uncached_klass_ref_index_at(index);
2030   Symbol*  klass_name  = cp->klass_name_at(klass_ref);
2031   Symbol*  member_name = cp->uncached_name_ref_at(index);
2032   Symbol*  member_sig  = cp->uncached_signature_ref_at(index);
2033   objArrayOop  dest_o = oopFactory::new_objArray(SystemDictionary::String_klass(), 3, CHECK_NULL);
2034   objArrayHandle dest(THREAD, dest_o);
2035   Handle str = java_lang_String::create_from_symbol(klass_name, CHECK_NULL);
2036   dest->obj_at_put(0, str());
2037   str = java_lang_String::create_from_symbol(member_name, CHECK_NULL);
2038   dest->obj_at_put(1, str());
2039   str = java_lang_String::create_from_symbol(member_sig, CHECK_NULL);
2040   dest->obj_at_put(2, str());
2041   return (jobjectArray) JNIHandles::make_local(dest());
2042 }
2043 JVM_END
2044 
2045 JVM_ENTRY(jint, JVM_ConstantPoolGetIntAt(JNIEnv *env, jobject obj, jobject unused, jint index))
2046 {
2047   JVMWrapper("JVM_ConstantPoolGetIntAt");
2048   constantPoolHandle cp = constantPoolHandle(THREAD, sun_reflect_ConstantPool::get_cp(JNIHandles::resolve_non_null(obj)));
2049   bounds_check(cp, index, CHECK_0);
2050   constantTag tag = cp->tag_at(index);
2051   if (!tag.is_int()) {
2052     THROW_MSG_0(vmSymbols::java_lang_IllegalArgumentException(), "Wrong type at constant pool index");
2053   }
2054   return cp->int_at(index);
2055 }
2056 JVM_END
2057 
2058 JVM_ENTRY(jlong, JVM_ConstantPoolGetLongAt(JNIEnv *env, jobject obj, jobject unused, jint index))
2059 {
2060   JVMWrapper("JVM_ConstantPoolGetLongAt");
2061   constantPoolHandle cp = constantPoolHandle(THREAD, sun_reflect_ConstantPool::get_cp(JNIHandles::resolve_non_null(obj)));
2062   bounds_check(cp, index, CHECK_(0L));
2063   constantTag tag = cp->tag_at(index);
2064   if (!tag.is_long()) {
2065     THROW_MSG_0(vmSymbols::java_lang_IllegalArgumentException(), "Wrong type at constant pool index");
2066   }
2067   return cp->long_at(index);
2068 }
2069 JVM_END
2070 
2071 JVM_ENTRY(jfloat, JVM_ConstantPoolGetFloatAt(JNIEnv *env, jobject obj, jobject unused, jint index))
2072 {
2073   JVMWrapper("JVM_ConstantPoolGetFloatAt");
2074   constantPoolHandle cp = constantPoolHandle(THREAD, sun_reflect_ConstantPool::get_cp(JNIHandles::resolve_non_null(obj)));
2075   bounds_check(cp, index, CHECK_(0.0f));
2076   constantTag tag = cp->tag_at(index);
2077   if (!tag.is_float()) {
2078     THROW_MSG_0(vmSymbols::java_lang_IllegalArgumentException(), "Wrong type at constant pool index");
2079   }
2080   return cp->float_at(index);
2081 }
2082 JVM_END
2083 
2084 JVM_ENTRY(jdouble, JVM_ConstantPoolGetDoubleAt(JNIEnv *env, jobject obj, jobject unused, jint index))
2085 {
2086   JVMWrapper("JVM_ConstantPoolGetDoubleAt");
2087   constantPoolHandle cp = constantPoolHandle(THREAD, sun_reflect_ConstantPool::get_cp(JNIHandles::resolve_non_null(obj)));
2088   bounds_check(cp, index, CHECK_(0.0));
2089   constantTag tag = cp->tag_at(index);
2090   if (!tag.is_double()) {
2091     THROW_MSG_0(vmSymbols::java_lang_IllegalArgumentException(), "Wrong type at constant pool index");
2092   }
2093   return cp->double_at(index);
2094 }
2095 JVM_END
2096 
2097 JVM_ENTRY(jstring, JVM_ConstantPoolGetStringAt(JNIEnv *env, jobject obj, jobject unused, jint index))
2098 {
2099   JVMWrapper("JVM_ConstantPoolGetStringAt");
2100   constantPoolHandle cp = constantPoolHandle(THREAD, sun_reflect_ConstantPool::get_cp(JNIHandles::resolve_non_null(obj)));
2101   bounds_check(cp, index, CHECK_NULL);
2102   constantTag tag = cp->tag_at(index);
2103   if (!tag.is_string()) {
2104     THROW_MSG_0(vmSymbols::java_lang_IllegalArgumentException(), "Wrong type at constant pool index");
2105   }
2106   oop str = cp->string_at(index, CHECK_NULL);
2107   return (jstring) JNIHandles::make_local(str);
2108 }
2109 JVM_END
2110 
2111 JVM_ENTRY(jstring, JVM_ConstantPoolGetUTF8At(JNIEnv *env, jobject obj, jobject unused, jint index))
2112 {
2113   JVMWrapper("JVM_ConstantPoolGetUTF8At");
2114   JvmtiVMObjectAllocEventCollector oam;
2115   constantPoolHandle cp = constantPoolHandle(THREAD, sun_reflect_ConstantPool::get_cp(JNIHandles::resolve_non_null(obj)));
2116   bounds_check(cp, index, CHECK_NULL);
2117   constantTag tag = cp->tag_at(index);
2118   if (!tag.is_symbol()) {
2119     THROW_MSG_0(vmSymbols::java_lang_IllegalArgumentException(), "Wrong type at constant pool index");
2120   }
2121   Symbol* sym = cp->symbol_at(index);
2122   Handle str = java_lang_String::create_from_symbol(sym, CHECK_NULL);
2123   return (jstring) JNIHandles::make_local(str());
2124 }
2125 JVM_END
2126 
2127 
2128 // Assertion support. //////////////////////////////////////////////////////////
2129 
2130 JVM_ENTRY(jboolean, JVM_DesiredAssertionStatus(JNIEnv *env, jclass unused, jclass cls))
2131   JVMWrapper("JVM_DesiredAssertionStatus");
2132   assert(cls != NULL, "bad class");
2133 
2134   oop r = JNIHandles::resolve(cls);
2135   assert(! java_lang_Class::is_primitive(r), "primitive classes not allowed");
2136   if (java_lang_Class::is_primitive(r)) return false;
2137 
2138   Klass* k = java_lang_Class::as_Klass(r);
2139   assert(k->is_instance_klass(), "must be an instance klass");
2140   if (!k->is_instance_klass()) return false;
2141 
2142   ResourceMark rm(THREAD);
2143   const char* name = k->name()->as_C_string();
2144   bool system_class = k->class_loader() == NULL;
2145   return JavaAssertions::enabled(name, system_class);
2146 
2147 JVM_END
2148 
2149 
2150 // Return a new AssertionStatusDirectives object with the fields filled in with
2151 // command-line assertion arguments (i.e., -ea, -da).
2152 JVM_ENTRY(jobject, JVM_AssertionStatusDirectives(JNIEnv *env, jclass unused))
2153   JVMWrapper("JVM_AssertionStatusDirectives");
2154   JvmtiVMObjectAllocEventCollector oam;
2155   oop asd = JavaAssertions::createAssertionStatusDirectives(CHECK_NULL);
2156   return JNIHandles::make_local(env, asd);
2157 JVM_END
2158 
2159 // Verification ////////////////////////////////////////////////////////////////////////////////
2160 
2161 // Reflection for the verifier /////////////////////////////////////////////////////////////////
2162 
2163 // RedefineClasses support: bug 6214132 caused verification to fail.
2164 // All functions from this section should call the jvmtiThreadSate function:
2165 //   Klass* class_to_verify_considering_redefinition(Klass* klass).
2166 // The function returns a Klass* of the _scratch_class if the verifier
2167 // was invoked in the middle of the class redefinition.
2168 // Otherwise it returns its argument value which is the _the_class Klass*.
2169 // Please, refer to the description in the jvmtiThreadSate.hpp.
2170 
2171 JVM_ENTRY(const char*, JVM_GetClassNameUTF(JNIEnv *env, jclass cls))
2172   JVMWrapper("JVM_GetClassNameUTF");
2173   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2174   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2175   return k->name()->as_utf8();
2176 JVM_END
2177 
2178 
2179 JVM_QUICK_ENTRY(void, JVM_GetClassCPTypes(JNIEnv *env, jclass cls, unsigned char *types))
2180   JVMWrapper("JVM_GetClassCPTypes");
2181   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2182   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2183   // types will have length zero if this is not an InstanceKlass
2184   // (length is determined by call to JVM_GetClassCPEntriesCount)
2185   if (k->is_instance_klass()) {
2186     ConstantPool* cp = InstanceKlass::cast(k)->constants();
2187     for (int index = cp->length() - 1; index >= 0; index--) {
2188       constantTag tag = cp->tag_at(index);
2189       types[index] = (tag.is_unresolved_klass()) ? JVM_CONSTANT_Class : tag.value();
2190     }
2191   }
2192 JVM_END
2193 
2194 
2195 JVM_QUICK_ENTRY(jint, JVM_GetClassCPEntriesCount(JNIEnv *env, jclass cls))
2196   JVMWrapper("JVM_GetClassCPEntriesCount");
2197   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2198   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2199   return (!k->is_instance_klass()) ? 0 : InstanceKlass::cast(k)->constants()->length();
2200 JVM_END
2201 
2202 
2203 JVM_QUICK_ENTRY(jint, JVM_GetClassFieldsCount(JNIEnv *env, jclass cls))
2204   JVMWrapper("JVM_GetClassFieldsCount");
2205   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2206   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2207   return (!k->is_instance_klass()) ? 0 : InstanceKlass::cast(k)->java_fields_count();
2208 JVM_END
2209 
2210 
2211 JVM_QUICK_ENTRY(jint, JVM_GetClassMethodsCount(JNIEnv *env, jclass cls))
2212   JVMWrapper("JVM_GetClassMethodsCount");
2213   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2214   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2215   return (!k->is_instance_klass()) ? 0 : InstanceKlass::cast(k)->methods()->length();
2216 JVM_END
2217 
2218 
2219 // The following methods, used for the verifier, are never called with
2220 // array klasses, so a direct cast to InstanceKlass is safe.
2221 // Typically, these methods are called in a loop with bounds determined
2222 // by the results of JVM_GetClass{Fields,Methods}Count, which return
2223 // zero for arrays.
2224 JVM_QUICK_ENTRY(void, JVM_GetMethodIxExceptionIndexes(JNIEnv *env, jclass cls, jint method_index, unsigned short *exceptions))
2225   JVMWrapper("JVM_GetMethodIxExceptionIndexes");
2226   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2227   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2228   Method* method = InstanceKlass::cast(k)->methods()->at(method_index);
2229   int length = method->checked_exceptions_length();
2230   if (length > 0) {
2231     CheckedExceptionElement* table= method->checked_exceptions_start();
2232     for (int i = 0; i < length; i++) {
2233       exceptions[i] = table[i].class_cp_index;
2234     }
2235   }
2236 JVM_END
2237 
2238 
2239 JVM_QUICK_ENTRY(jint, JVM_GetMethodIxExceptionsCount(JNIEnv *env, jclass cls, jint method_index))
2240   JVMWrapper("JVM_GetMethodIxExceptionsCount");
2241   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2242   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2243   Method* method = InstanceKlass::cast(k)->methods()->at(method_index);
2244   return method->checked_exceptions_length();
2245 JVM_END
2246 
2247 
2248 JVM_QUICK_ENTRY(void, JVM_GetMethodIxByteCode(JNIEnv *env, jclass cls, jint method_index, unsigned char *code))
2249   JVMWrapper("JVM_GetMethodIxByteCode");
2250   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2251   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2252   Method* method = InstanceKlass::cast(k)->methods()->at(method_index);
2253   memcpy(code, method->code_base(), method->code_size());
2254 JVM_END
2255 
2256 
2257 JVM_QUICK_ENTRY(jint, JVM_GetMethodIxByteCodeLength(JNIEnv *env, jclass cls, jint method_index))
2258   JVMWrapper("JVM_GetMethodIxByteCodeLength");
2259   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2260   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2261   Method* method = InstanceKlass::cast(k)->methods()->at(method_index);
2262   return method->code_size();
2263 JVM_END
2264 
2265 
2266 JVM_QUICK_ENTRY(void, JVM_GetMethodIxExceptionTableEntry(JNIEnv *env, jclass cls, jint method_index, jint entry_index, JVM_ExceptionTableEntryType *entry))
2267   JVMWrapper("JVM_GetMethodIxExceptionTableEntry");
2268   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2269   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2270   Method* method = InstanceKlass::cast(k)->methods()->at(method_index);
2271   ExceptionTable extable(method);
2272   entry->start_pc   = extable.start_pc(entry_index);
2273   entry->end_pc     = extable.end_pc(entry_index);
2274   entry->handler_pc = extable.handler_pc(entry_index);
2275   entry->catchType  = extable.catch_type_index(entry_index);
2276 JVM_END
2277 
2278 
2279 JVM_QUICK_ENTRY(jint, JVM_GetMethodIxExceptionTableLength(JNIEnv *env, jclass cls, int method_index))
2280   JVMWrapper("JVM_GetMethodIxExceptionTableLength");
2281   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2282   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2283   Method* method = InstanceKlass::cast(k)->methods()->at(method_index);
2284   return method->exception_table_length();
2285 JVM_END
2286 
2287 
2288 JVM_QUICK_ENTRY(jint, JVM_GetMethodIxModifiers(JNIEnv *env, jclass cls, int method_index))
2289   JVMWrapper("JVM_GetMethodIxModifiers");
2290   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2291   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2292   Method* method = InstanceKlass::cast(k)->methods()->at(method_index);
2293   return method->access_flags().as_int() & JVM_RECOGNIZED_METHOD_MODIFIERS;
2294 JVM_END
2295 
2296 
2297 JVM_QUICK_ENTRY(jint, JVM_GetFieldIxModifiers(JNIEnv *env, jclass cls, int field_index))
2298   JVMWrapper("JVM_GetFieldIxModifiers");
2299   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2300   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2301   return InstanceKlass::cast(k)->field_access_flags(field_index) & JVM_RECOGNIZED_FIELD_MODIFIERS;
2302 JVM_END
2303 
2304 
2305 JVM_QUICK_ENTRY(jint, JVM_GetMethodIxLocalsCount(JNIEnv *env, jclass cls, int method_index))
2306   JVMWrapper("JVM_GetMethodIxLocalsCount");
2307   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2308   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2309   Method* method = InstanceKlass::cast(k)->methods()->at(method_index);
2310   return method->max_locals();
2311 JVM_END
2312 
2313 
2314 JVM_QUICK_ENTRY(jint, JVM_GetMethodIxArgsSize(JNIEnv *env, jclass cls, int method_index))
2315   JVMWrapper("JVM_GetMethodIxArgsSize");
2316   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2317   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2318   Method* method = InstanceKlass::cast(k)->methods()->at(method_index);
2319   return method->size_of_parameters();
2320 JVM_END
2321 
2322 
2323 JVM_QUICK_ENTRY(jint, JVM_GetMethodIxMaxStack(JNIEnv *env, jclass cls, int method_index))
2324   JVMWrapper("JVM_GetMethodIxMaxStack");
2325   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2326   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2327   Method* method = InstanceKlass::cast(k)->methods()->at(method_index);
2328   return method->verifier_max_stack();
2329 JVM_END
2330 
2331 
2332 JVM_QUICK_ENTRY(jboolean, JVM_IsConstructorIx(JNIEnv *env, jclass cls, int method_index))
2333   JVMWrapper("JVM_IsConstructorIx");
2334   ResourceMark rm(THREAD);
2335   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2336   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2337   Method* method = InstanceKlass::cast(k)->methods()->at(method_index);
2338   return method->name() == vmSymbols::object_initializer_name();
2339 JVM_END
2340 
2341 
2342 JVM_QUICK_ENTRY(jboolean, JVM_IsVMGeneratedMethodIx(JNIEnv *env, jclass cls, int method_index))
2343   JVMWrapper("JVM_IsVMGeneratedMethodIx");
2344   ResourceMark rm(THREAD);
2345   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2346   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2347   Method* method = InstanceKlass::cast(k)->methods()->at(method_index);
2348   return method->is_overpass();
2349 JVM_END
2350 
2351 JVM_ENTRY(const char*, JVM_GetMethodIxNameUTF(JNIEnv *env, jclass cls, jint method_index))
2352   JVMWrapper("JVM_GetMethodIxIxUTF");
2353   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2354   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2355   Method* method = InstanceKlass::cast(k)->methods()->at(method_index);
2356   return method->name()->as_utf8();
2357 JVM_END
2358 
2359 
2360 JVM_ENTRY(const char*, JVM_GetMethodIxSignatureUTF(JNIEnv *env, jclass cls, jint method_index))
2361   JVMWrapper("JVM_GetMethodIxSignatureUTF");
2362   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2363   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2364   Method* method = InstanceKlass::cast(k)->methods()->at(method_index);
2365   return method->signature()->as_utf8();
2366 JVM_END
2367 
2368 /**
2369  * All of these JVM_GetCP-xxx methods are used by the old verifier to
2370  * read entries in the constant pool.  Since the old verifier always
2371  * works on a copy of the code, it will not see any rewriting that
2372  * may possibly occur in the middle of verification.  So it is important
2373  * that nothing it calls tries to use the cpCache instead of the raw
2374  * constant pool, so we must use cp->uncached_x methods when appropriate.
2375  */
2376 JVM_ENTRY(const char*, JVM_GetCPFieldNameUTF(JNIEnv *env, jclass cls, jint cp_index))
2377   JVMWrapper("JVM_GetCPFieldNameUTF");
2378   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2379   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2380   ConstantPool* cp = InstanceKlass::cast(k)->constants();
2381   switch (cp->tag_at(cp_index).value()) {
2382     case JVM_CONSTANT_Fieldref:
2383       return cp->uncached_name_ref_at(cp_index)->as_utf8();
2384     default:
2385       fatal("JVM_GetCPFieldNameUTF: illegal constant");
2386   }
2387   ShouldNotReachHere();
2388   return NULL;
2389 JVM_END
2390 
2391 
2392 JVM_ENTRY(const char*, JVM_GetCPMethodNameUTF(JNIEnv *env, jclass cls, jint cp_index))
2393   JVMWrapper("JVM_GetCPMethodNameUTF");
2394   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2395   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2396   ConstantPool* cp = InstanceKlass::cast(k)->constants();
2397   switch (cp->tag_at(cp_index).value()) {
2398     case JVM_CONSTANT_InterfaceMethodref:
2399     case JVM_CONSTANT_Methodref:
2400     case JVM_CONSTANT_NameAndType:  // for invokedynamic
2401       return cp->uncached_name_ref_at(cp_index)->as_utf8();
2402     default:
2403       fatal("JVM_GetCPMethodNameUTF: illegal constant");
2404   }
2405   ShouldNotReachHere();
2406   return NULL;
2407 JVM_END
2408 
2409 
2410 JVM_ENTRY(const char*, JVM_GetCPMethodSignatureUTF(JNIEnv *env, jclass cls, jint cp_index))
2411   JVMWrapper("JVM_GetCPMethodSignatureUTF");
2412   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2413   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2414   ConstantPool* cp = InstanceKlass::cast(k)->constants();
2415   switch (cp->tag_at(cp_index).value()) {
2416     case JVM_CONSTANT_InterfaceMethodref:
2417     case JVM_CONSTANT_Methodref:
2418     case JVM_CONSTANT_NameAndType:  // for invokedynamic
2419       return cp->uncached_signature_ref_at(cp_index)->as_utf8();
2420     default:
2421       fatal("JVM_GetCPMethodSignatureUTF: illegal constant");
2422   }
2423   ShouldNotReachHere();
2424   return NULL;
2425 JVM_END
2426 
2427 
2428 JVM_ENTRY(const char*, JVM_GetCPFieldSignatureUTF(JNIEnv *env, jclass cls, jint cp_index))
2429   JVMWrapper("JVM_GetCPFieldSignatureUTF");
2430   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2431   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2432   ConstantPool* cp = InstanceKlass::cast(k)->constants();
2433   switch (cp->tag_at(cp_index).value()) {
2434     case JVM_CONSTANT_Fieldref:
2435       return cp->uncached_signature_ref_at(cp_index)->as_utf8();
2436     default:
2437       fatal("JVM_GetCPFieldSignatureUTF: illegal constant");
2438   }
2439   ShouldNotReachHere();
2440   return NULL;
2441 JVM_END
2442 
2443 
2444 JVM_ENTRY(const char*, JVM_GetCPClassNameUTF(JNIEnv *env, jclass cls, jint cp_index))
2445   JVMWrapper("JVM_GetCPClassNameUTF");
2446   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2447   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2448   ConstantPool* cp = InstanceKlass::cast(k)->constants();
2449   Symbol* classname = cp->klass_name_at(cp_index);
2450   return classname->as_utf8();
2451 JVM_END
2452 
2453 
2454 JVM_ENTRY(const char*, JVM_GetCPFieldClassNameUTF(JNIEnv *env, jclass cls, jint cp_index))
2455   JVMWrapper("JVM_GetCPFieldClassNameUTF");
2456   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2457   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2458   ConstantPool* cp = InstanceKlass::cast(k)->constants();
2459   switch (cp->tag_at(cp_index).value()) {
2460     case JVM_CONSTANT_Fieldref: {
2461       int class_index = cp->uncached_klass_ref_index_at(cp_index);
2462       Symbol* classname = cp->klass_name_at(class_index);
2463       return classname->as_utf8();
2464     }
2465     default:
2466       fatal("JVM_GetCPFieldClassNameUTF: illegal constant");
2467   }
2468   ShouldNotReachHere();
2469   return NULL;
2470 JVM_END
2471 
2472 
2473 JVM_ENTRY(const char*, JVM_GetCPMethodClassNameUTF(JNIEnv *env, jclass cls, jint cp_index))
2474   JVMWrapper("JVM_GetCPMethodClassNameUTF");
2475   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2476   k = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2477   ConstantPool* cp = InstanceKlass::cast(k)->constants();
2478   switch (cp->tag_at(cp_index).value()) {
2479     case JVM_CONSTANT_Methodref:
2480     case JVM_CONSTANT_InterfaceMethodref: {
2481       int class_index = cp->uncached_klass_ref_index_at(cp_index);
2482       Symbol* classname = cp->klass_name_at(class_index);
2483       return classname->as_utf8();
2484     }
2485     default:
2486       fatal("JVM_GetCPMethodClassNameUTF: illegal constant");
2487   }
2488   ShouldNotReachHere();
2489   return NULL;
2490 JVM_END
2491 
2492 
2493 JVM_ENTRY(jint, JVM_GetCPFieldModifiers(JNIEnv *env, jclass cls, int cp_index, jclass called_cls))
2494   JVMWrapper("JVM_GetCPFieldModifiers");
2495   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2496   Klass* k_called = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(called_cls));
2497   k        = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2498   k_called = JvmtiThreadState::class_to_verify_considering_redefinition(k_called, thread);
2499   ConstantPool* cp = InstanceKlass::cast(k)->constants();
2500   ConstantPool* cp_called = InstanceKlass::cast(k_called)->constants();
2501   switch (cp->tag_at(cp_index).value()) {
2502     case JVM_CONSTANT_Fieldref: {
2503       Symbol* name      = cp->uncached_name_ref_at(cp_index);
2504       Symbol* signature = cp->uncached_signature_ref_at(cp_index);
2505       for (JavaFieldStream fs(k_called); !fs.done(); fs.next()) {
2506         if (fs.name() == name && fs.signature() == signature) {
2507           return fs.access_flags().as_short() & JVM_RECOGNIZED_FIELD_MODIFIERS;
2508         }
2509       }
2510       return -1;
2511     }
2512     default:
2513       fatal("JVM_GetCPFieldModifiers: illegal constant");
2514   }
2515   ShouldNotReachHere();
2516   return 0;
2517 JVM_END
2518 
2519 
2520 JVM_QUICK_ENTRY(jint, JVM_GetCPMethodModifiers(JNIEnv *env, jclass cls, int cp_index, jclass called_cls))
2521   JVMWrapper("JVM_GetCPMethodModifiers");
2522   Klass* k = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(cls));
2523   Klass* k_called = java_lang_Class::as_Klass(JNIHandles::resolve_non_null(called_cls));
2524   k        = JvmtiThreadState::class_to_verify_considering_redefinition(k, thread);
2525   k_called = JvmtiThreadState::class_to_verify_considering_redefinition(k_called, thread);
2526   ConstantPool* cp = InstanceKlass::cast(k)->constants();
2527   switch (cp->tag_at(cp_index).value()) {
2528     case JVM_CONSTANT_Methodref:
2529     case JVM_CONSTANT_InterfaceMethodref: {
2530       Symbol* name      = cp->uncached_name_ref_at(cp_index);
2531       Symbol* signature = cp->uncached_signature_ref_at(cp_index);
2532       Array<Method*>* methods = InstanceKlass::cast(k_called)->methods();
2533       int methods_count = methods->length();
2534       for (int i = 0; i < methods_count; i++) {
2535         Method* method = methods->at(i);
2536         if (method->name() == name && method->signature() == signature) {
2537             return method->access_flags().as_int() & JVM_RECOGNIZED_METHOD_MODIFIERS;
2538         }
2539       }
2540       return -1;
2541     }
2542     default:
2543       fatal("JVM_GetCPMethodModifiers: illegal constant");
2544   }
2545   ShouldNotReachHere();
2546   return 0;
2547 JVM_END
2548 
2549 
2550 // Misc //////////////////////////////////////////////////////////////////////////////////////////////
2551 
2552 JVM_LEAF(void, JVM_ReleaseUTF(const char *utf))
2553   // So long as UTF8::convert_to_utf8 returns resource strings, we don't have to do anything
2554 JVM_END
2555 
2556 
2557 JVM_ENTRY(jboolean, JVM_IsSameClassPackage(JNIEnv *env, jclass class1, jclass class2))
2558   JVMWrapper("JVM_IsSameClassPackage");
2559   oop class1_mirror = JNIHandles::resolve_non_null(class1);
2560   oop class2_mirror = JNIHandles::resolve_non_null(class2);
2561   Klass* klass1 = java_lang_Class::as_Klass(class1_mirror);
2562   Klass* klass2 = java_lang_Class::as_Klass(class2_mirror);
2563   return (jboolean) Reflection::is_same_class_package(klass1, klass2);
2564 JVM_END
2565 
2566 // Printing support //////////////////////////////////////////////////
2567 extern "C" {
2568 
2569 ATTRIBUTE_PRINTF(3, 0)
2570 int jio_vsnprintf(char *str, size_t count, const char *fmt, va_list args) {
2571   // see bug 4399518, 4417214
2572   if ((intptr_t)count <= 0) return -1;
2573 
2574   int result = vsnprintf(str, count, fmt, args);
2575   // Note: on truncation vsnprintf(3) on Unix returns numbers of
2576   // characters which would have been written had the buffer been large
2577   // enough; on Windows, it returns -1. We handle both cases here and
2578   // always return -1, and perform null termination.
2579   if ((result > 0 && (size_t)result >= count) || result == -1) {
2580     str[count - 1] = '\0';
2581     result = -1;
2582   }
2583 
2584   return result;
2585 }
2586 
2587 ATTRIBUTE_PRINTF(3, 0)
2588 int jio_snprintf(char *str, size_t count, const char *fmt, ...) {
2589   va_list args;
2590   int len;
2591   va_start(args, fmt);
2592   len = jio_vsnprintf(str, count, fmt, args);
2593   va_end(args);
2594   return len;
2595 }
2596 
2597 ATTRIBUTE_PRINTF(2,3)
2598 int jio_fprintf(FILE* f, const char *fmt, ...) {
2599   int len;
2600   va_list args;
2601   va_start(args, fmt);
2602   len = jio_vfprintf(f, fmt, args);
2603   va_end(args);
2604   return len;
2605 }
2606 
2607 ATTRIBUTE_PRINTF(2, 0)
2608 int jio_vfprintf(FILE* f, const char *fmt, va_list args) {
2609   if (Arguments::vfprintf_hook() != NULL) {
2610      return Arguments::vfprintf_hook()(f, fmt, args);
2611   } else {
2612     return vfprintf(f, fmt, args);
2613   }
2614 }
2615 
2616 ATTRIBUTE_PRINTF(1, 2)
2617 JNIEXPORT int jio_printf(const char *fmt, ...) {
2618   int len;
2619   va_list args;
2620   va_start(args, fmt);
2621   len = jio_vfprintf(defaultStream::output_stream(), fmt, args);
2622   va_end(args);
2623   return len;
2624 }
2625 
2626 
2627 // HotSpot specific jio method
2628 void jio_print(const char* s) {
2629   // Try to make this function as atomic as possible.
2630   if (Arguments::vfprintf_hook() != NULL) {
2631     jio_fprintf(defaultStream::output_stream(), "%s", s);
2632   } else {
2633     // Make an unused local variable to avoid warning from gcc 4.x compiler.
2634     size_t count = ::write(defaultStream::output_fd(), s, (int)strlen(s));
2635   }
2636 }
2637 
2638 } // Extern C
2639 
2640 // java.lang.Thread //////////////////////////////////////////////////////////////////////////////
2641 
2642 // In most of the JVM Thread support functions we need to be sure to lock the Threads_lock
2643 // to prevent the target thread from exiting after we have a pointer to the C++ Thread or
2644 // OSThread objects.  The exception to this rule is when the target object is the thread
2645 // doing the operation, in which case we know that the thread won't exit until the
2646 // operation is done (all exits being voluntary).  There are a few cases where it is
2647 // rather silly to do operations on yourself, like resuming yourself or asking whether
2648 // you are alive.  While these can still happen, they are not subject to deadlocks if
2649 // the lock is held while the operation occurs (this is not the case for suspend, for
2650 // instance), and are very unlikely.  Because IsAlive needs to be fast and its
2651 // implementation is local to this file, we always lock Threads_lock for that one.
2652 
2653 static void thread_entry(JavaThread* thread, TRAPS) {
2654   HandleMark hm(THREAD);
2655   Handle obj(THREAD, thread->threadObj());
2656   JavaValue result(T_VOID);
2657   JavaCalls::call_virtual(&result,
2658                           obj,
2659                           KlassHandle(THREAD, SystemDictionary::Thread_klass()),
2660                           vmSymbols::run_method_name(),
2661                           vmSymbols::void_method_signature(),
2662                           THREAD);
2663 }
2664 
2665 
2666 JVM_ENTRY(void, JVM_StartThread(JNIEnv* env, jobject jthread))
2667   JVMWrapper("JVM_StartThread");
2668   JavaThread *native_thread = NULL;
2669 
2670   // We cannot hold the Threads_lock when we throw an exception,
2671   // due to rank ordering issues. Example:  we might need to grab the
2672   // Heap_lock while we construct the exception.
2673   bool throw_illegal_thread_state = false;
2674 
2675   // We must release the Threads_lock before we can post a jvmti event
2676   // in Thread::start.
2677   {
2678     // Ensure that the C++ Thread and OSThread structures aren't freed before
2679     // we operate.
2680     MutexLocker mu(Threads_lock);
2681 
2682     // Since JDK 5 the java.lang.Thread threadStatus is used to prevent
2683     // re-starting an already started thread, so we should usually find
2684     // that the JavaThread is null. However for a JNI attached thread
2685     // there is a small window between the Thread object being created
2686     // (with its JavaThread set) and the update to its threadStatus, so we
2687     // have to check for this
2688     if (java_lang_Thread::thread(JNIHandles::resolve_non_null(jthread)) != NULL) {
2689       throw_illegal_thread_state = true;
2690     } else {
2691       // We could also check the stillborn flag to see if this thread was already stopped, but
2692       // for historical reasons we let the thread detect that itself when it starts running
2693 
2694       jlong size =
2695              java_lang_Thread::stackSize(JNIHandles::resolve_non_null(jthread));
2696       // Allocate the C++ Thread structure and create the native thread.  The
2697       // stack size retrieved from java is signed, but the constructor takes
2698       // size_t (an unsigned type), so avoid passing negative values which would
2699       // result in really large stacks.
2700       size_t sz = size > 0 ? (size_t) size : 0;
2701       native_thread = new JavaThread(&thread_entry, sz);
2702 
2703       // At this point it may be possible that no osthread was created for the
2704       // JavaThread due to lack of memory. Check for this situation and throw
2705       // an exception if necessary. Eventually we may want to change this so
2706       // that we only grab the lock if the thread was created successfully -
2707       // then we can also do this check and throw the exception in the
2708       // JavaThread constructor.
2709       if (native_thread->osthread() != NULL) {
2710         // Note: the current thread is not being used within "prepare".
2711         native_thread->prepare(jthread);
2712       }
2713     }
2714   }
2715 
2716   if (throw_illegal_thread_state) {
2717     THROW(vmSymbols::java_lang_IllegalThreadStateException());
2718   }
2719 
2720   assert(native_thread != NULL, "Starting null thread?");
2721 
2722   if (native_thread->osthread() == NULL) {
2723     // No one should hold a reference to the 'native_thread'.
2724     delete native_thread;
2725     if (JvmtiExport::should_post_resource_exhausted()) {
2726       JvmtiExport::post_resource_exhausted(
2727         JVMTI_RESOURCE_EXHAUSTED_OOM_ERROR | JVMTI_RESOURCE_EXHAUSTED_THREADS,
2728         os::native_thread_creation_failed_msg());
2729     }
2730     THROW_MSG(vmSymbols::java_lang_OutOfMemoryError(),
2731               os::native_thread_creation_failed_msg());
2732   }
2733 
2734   Thread::start(native_thread);
2735 
2736 JVM_END
2737 
2738 // JVM_Stop is implemented using a VM_Operation, so threads are forced to safepoints
2739 // before the quasi-asynchronous exception is delivered.  This is a little obtrusive,
2740 // but is thought to be reliable and simple. In the case, where the receiver is the
2741 // same thread as the sender, no safepoint is needed.
2742 JVM_ENTRY(void, JVM_StopThread(JNIEnv* env, jobject jthread, jobject throwable))
2743   JVMWrapper("JVM_StopThread");
2744 
2745   oop java_throwable = JNIHandles::resolve(throwable);
2746   if (java_throwable == NULL) {
2747     THROW(vmSymbols::java_lang_NullPointerException());
2748   }
2749   oop java_thread = JNIHandles::resolve_non_null(jthread);
2750   JavaThread* receiver = java_lang_Thread::thread(java_thread);
2751   Events::log_exception(JavaThread::current(),
2752                         "JVM_StopThread thread JavaThread " INTPTR_FORMAT " as oop " INTPTR_FORMAT " [exception " INTPTR_FORMAT "]",
2753                         p2i(receiver), p2i((address)java_thread), p2i(throwable));
2754   // First check if thread is alive
2755   if (receiver != NULL) {
2756     // Check if exception is getting thrown at self (use oop equality, since the
2757     // target object might exit)
2758     if (java_thread == thread->threadObj()) {
2759       THROW_OOP(java_throwable);
2760     } else {
2761       // Enques a VM_Operation to stop all threads and then deliver the exception...
2762       Thread::send_async_exception(java_thread, JNIHandles::resolve(throwable));
2763     }
2764   }
2765   else {
2766     // Either:
2767     // - target thread has not been started before being stopped, or
2768     // - target thread already terminated
2769     // We could read the threadStatus to determine which case it is
2770     // but that is overkill as it doesn't matter. We must set the
2771     // stillborn flag for the first case, and if the thread has already
2772     // exited setting this flag has no affect
2773     java_lang_Thread::set_stillborn(java_thread);
2774   }
2775 JVM_END
2776 
2777 
2778 JVM_ENTRY(jboolean, JVM_IsThreadAlive(JNIEnv* env, jobject jthread))
2779   JVMWrapper("JVM_IsThreadAlive");
2780 
2781   oop thread_oop = JNIHandles::resolve_non_null(jthread);
2782   return java_lang_Thread::is_alive(thread_oop);
2783 JVM_END
2784 
2785 
2786 JVM_ENTRY(void, JVM_SuspendThread(JNIEnv* env, jobject jthread))
2787   JVMWrapper("JVM_SuspendThread");
2788   oop java_thread = JNIHandles::resolve_non_null(jthread);
2789   JavaThread* receiver = java_lang_Thread::thread(java_thread);
2790 
2791   if (receiver != NULL) {
2792     // thread has run and has not exited (still on threads list)
2793 
2794     {
2795       MutexLockerEx ml(receiver->SR_lock(), Mutex::_no_safepoint_check_flag);
2796       if (receiver->is_external_suspend()) {
2797         // Don't allow nested external suspend requests. We can't return
2798         // an error from this interface so just ignore the problem.
2799         return;
2800       }
2801       if (receiver->is_exiting()) { // thread is in the process of exiting
2802         return;
2803       }
2804       receiver->set_external_suspend();
2805     }
2806 
2807     // java_suspend() will catch threads in the process of exiting
2808     // and will ignore them.
2809     receiver->java_suspend();
2810 
2811     // It would be nice to have the following assertion in all the
2812     // time, but it is possible for a racing resume request to have
2813     // resumed this thread right after we suspended it. Temporarily
2814     // enable this assertion if you are chasing a different kind of
2815     // bug.
2816     //
2817     // assert(java_lang_Thread::thread(receiver->threadObj()) == NULL ||
2818     //   receiver->is_being_ext_suspended(), "thread is not suspended");
2819   }
2820 JVM_END
2821 
2822 
2823 JVM_ENTRY(void, JVM_ResumeThread(JNIEnv* env, jobject jthread))
2824   JVMWrapper("JVM_ResumeThread");
2825   // Ensure that the C++ Thread and OSThread structures aren't freed before we operate.
2826   // We need to *always* get the threads lock here, since this operation cannot be allowed during
2827   // a safepoint. The safepoint code relies on suspending a thread to examine its state. If other
2828   // threads randomly resumes threads, then a thread might not be suspended when the safepoint code
2829   // looks at it.
2830   MutexLocker ml(Threads_lock);
2831   JavaThread* thr = java_lang_Thread::thread(JNIHandles::resolve_non_null(jthread));
2832   if (thr != NULL) {
2833     // the thread has run and is not in the process of exiting
2834     thr->java_resume();
2835   }
2836 JVM_END
2837 
2838 
2839 JVM_ENTRY(void, JVM_SetThreadPriority(JNIEnv* env, jobject jthread, jint prio))
2840   JVMWrapper("JVM_SetThreadPriority");
2841   // Ensure that the C++ Thread and OSThread structures aren't freed before we operate
2842   MutexLocker ml(Threads_lock);
2843   oop java_thread = JNIHandles::resolve_non_null(jthread);
2844   java_lang_Thread::set_priority(java_thread, (ThreadPriority)prio);
2845   JavaThread* thr = java_lang_Thread::thread(java_thread);
2846   if (thr != NULL) {                  // Thread not yet started; priority pushed down when it is
2847     Thread::set_priority(thr, (ThreadPriority)prio);
2848   }
2849 JVM_END
2850 
2851 
2852 JVM_ENTRY(void, JVM_Yield(JNIEnv *env, jclass threadClass))
2853   JVMWrapper("JVM_Yield");
2854   if (os::dont_yield()) return;
2855   HOTSPOT_THREAD_YIELD();
2856 
2857   // When ConvertYieldToSleep is off (default), this matches the classic VM use of yield.
2858   // Critical for similar threading behaviour
2859   if (ConvertYieldToSleep) {
2860     os::sleep(thread, MinSleepInterval, false);
2861   } else {
2862     os::naked_yield();
2863   }
2864 JVM_END
2865 
2866 
2867 JVM_ENTRY(void, JVM_Sleep(JNIEnv* env, jclass threadClass, jlong millis))
2868   JVMWrapper("JVM_Sleep");
2869 
2870   if (millis < 0) {
2871     THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), "timeout value is negative");
2872   }
2873 
2874   if (Thread::is_interrupted (THREAD, true) && !HAS_PENDING_EXCEPTION) {
2875     THROW_MSG(vmSymbols::java_lang_InterruptedException(), "sleep interrupted");
2876   }
2877 
2878   // Save current thread state and restore it at the end of this block.
2879   // And set new thread state to SLEEPING.
2880   JavaThreadSleepState jtss(thread);
2881 
2882   HOTSPOT_THREAD_SLEEP_BEGIN(millis);
2883 
2884   EventThreadSleep event;
2885 
2886   if (millis == 0) {
2887     // When ConvertSleepToYield is on, this matches the classic VM implementation of
2888     // JVM_Sleep. Critical for similar threading behaviour (Win32)
2889     // It appears that in certain GUI contexts, it may be beneficial to do a short sleep
2890     // for SOLARIS
2891     if (ConvertSleepToYield) {
2892       os::naked_yield();
2893     } else {
2894       ThreadState old_state = thread->osthread()->get_state();
2895       thread->osthread()->set_state(SLEEPING);
2896       os::sleep(thread, MinSleepInterval, false);
2897       thread->osthread()->set_state(old_state);
2898     }
2899   } else {
2900     ThreadState old_state = thread->osthread()->get_state();
2901     thread->osthread()->set_state(SLEEPING);
2902     if (os::sleep(thread, millis, true) == OS_INTRPT) {
2903       // An asynchronous exception (e.g., ThreadDeathException) could have been thrown on
2904       // us while we were sleeping. We do not overwrite those.
2905       if (!HAS_PENDING_EXCEPTION) {
2906         if (event.should_commit()) {
2907           event.set_time(millis);
2908           event.commit();
2909         }
2910         HOTSPOT_THREAD_SLEEP_END(1);
2911 
2912         // TODO-FIXME: THROW_MSG returns which means we will not call set_state()
2913         // to properly restore the thread state.  That's likely wrong.
2914         THROW_MSG(vmSymbols::java_lang_InterruptedException(), "sleep interrupted");
2915       }
2916     }
2917     thread->osthread()->set_state(old_state);
2918   }
2919   if (event.should_commit()) {
2920     event.set_time(millis);
2921     event.commit();
2922   }
2923   HOTSPOT_THREAD_SLEEP_END(0);
2924 JVM_END
2925 
2926 JVM_ENTRY(jobject, JVM_CurrentThread(JNIEnv* env, jclass threadClass))
2927   JVMWrapper("JVM_CurrentThread");
2928   oop jthread = thread->threadObj();
2929   assert (thread != NULL, "no current thread!");
2930   return JNIHandles::make_local(env, jthread);
2931 JVM_END
2932 
2933 
2934 JVM_ENTRY(jint, JVM_CountStackFrames(JNIEnv* env, jobject jthread))
2935   JVMWrapper("JVM_CountStackFrames");
2936 
2937   // Ensure that the C++ Thread and OSThread structures aren't freed before we operate
2938   oop java_thread = JNIHandles::resolve_non_null(jthread);
2939   bool throw_illegal_thread_state = false;
2940   int count = 0;
2941 
2942   {
2943     MutexLockerEx ml(thread->threadObj() == java_thread ? NULL : Threads_lock);
2944     // We need to re-resolve the java_thread, since a GC might have happened during the
2945     // acquire of the lock
2946     JavaThread* thr = java_lang_Thread::thread(JNIHandles::resolve_non_null(jthread));
2947 
2948     if (thr == NULL) {
2949       // do nothing
2950     } else if(! thr->is_external_suspend() || ! thr->frame_anchor()->walkable()) {
2951       // Check whether this java thread has been suspended already. If not, throws
2952       // IllegalThreadStateException. We defer to throw that exception until
2953       // Threads_lock is released since loading exception class has to leave VM.
2954       // The correct way to test a thread is actually suspended is
2955       // wait_for_ext_suspend_completion(), but we can't call that while holding
2956       // the Threads_lock. The above tests are sufficient for our purposes
2957       // provided the walkability of the stack is stable - which it isn't
2958       // 100% but close enough for most practical purposes.
2959       throw_illegal_thread_state = true;
2960     } else {
2961       // Count all java activation, i.e., number of vframes
2962       for(vframeStream vfst(thr); !vfst.at_end(); vfst.next()) {
2963         // Native frames are not counted
2964         if (!vfst.method()->is_native()) count++;
2965        }
2966     }
2967   }
2968 
2969   if (throw_illegal_thread_state) {
2970     THROW_MSG_0(vmSymbols::java_lang_IllegalThreadStateException(),
2971                 "this thread is not suspended");
2972   }
2973   return count;
2974 JVM_END
2975 
2976 // Consider: A better way to implement JVM_Interrupt() is to acquire
2977 // Threads_lock to resolve the jthread into a Thread pointer, fetch
2978 // Thread->platformevent, Thread->native_thr, Thread->parker, etc.,
2979 // drop Threads_lock, and the perform the unpark() and thr_kill() operations
2980 // outside the critical section.  Threads_lock is hot so we want to minimize
2981 // the hold-time.  A cleaner interface would be to decompose interrupt into
2982 // two steps.  The 1st phase, performed under Threads_lock, would return
2983 // a closure that'd be invoked after Threads_lock was dropped.
2984 // This tactic is safe as PlatformEvent and Parkers are type-stable (TSM) and
2985 // admit spurious wakeups.
2986 
2987 JVM_ENTRY(void, JVM_Interrupt(JNIEnv* env, jobject jthread))
2988   JVMWrapper("JVM_Interrupt");
2989 
2990   // Ensure that the C++ Thread and OSThread structures aren't freed before we operate
2991   oop java_thread = JNIHandles::resolve_non_null(jthread);
2992   MutexLockerEx ml(thread->threadObj() == java_thread ? NULL : Threads_lock);
2993   // We need to re-resolve the java_thread, since a GC might have happened during the
2994   // acquire of the lock
2995   JavaThread* thr = java_lang_Thread::thread(JNIHandles::resolve_non_null(jthread));
2996   if (thr != NULL) {
2997     Thread::interrupt(thr);
2998   }
2999 JVM_END
3000 
3001 
3002 JVM_QUICK_ENTRY(jboolean, JVM_IsInterrupted(JNIEnv* env, jobject jthread, jboolean clear_interrupted))
3003   JVMWrapper("JVM_IsInterrupted");
3004 
3005   // Ensure that the C++ Thread and OSThread structures aren't freed before we operate
3006   oop java_thread = JNIHandles::resolve_non_null(jthread);
3007   MutexLockerEx ml(thread->threadObj() == java_thread ? NULL : Threads_lock);
3008   // We need to re-resolve the java_thread, since a GC might have happened during the
3009   // acquire of the lock
3010   JavaThread* thr = java_lang_Thread::thread(JNIHandles::resolve_non_null(jthread));
3011   if (thr == NULL) {
3012     return JNI_FALSE;
3013   } else {
3014     return (jboolean) Thread::is_interrupted(thr, clear_interrupted != 0);
3015   }
3016 JVM_END
3017 
3018 
3019 // Return true iff the current thread has locked the object passed in
3020 
3021 JVM_ENTRY(jboolean, JVM_HoldsLock(JNIEnv* env, jclass threadClass, jobject obj))
3022   JVMWrapper("JVM_HoldsLock");
3023   assert(THREAD->is_Java_thread(), "sanity check");
3024   if (obj == NULL) {
3025     THROW_(vmSymbols::java_lang_NullPointerException(), JNI_FALSE);
3026   }
3027   Handle h_obj(THREAD, JNIHandles::resolve(obj));
3028   return ObjectSynchronizer::current_thread_holds_lock((JavaThread*)THREAD, h_obj);
3029 JVM_END
3030 
3031 
3032 JVM_ENTRY(void, JVM_DumpAllStacks(JNIEnv* env, jclass))
3033   JVMWrapper("JVM_DumpAllStacks");
3034   VM_PrintThreads op;
3035   VMThread::execute(&op);
3036   if (JvmtiExport::should_post_data_dump()) {
3037     JvmtiExport::post_data_dump();
3038   }
3039 JVM_END
3040 
3041 JVM_ENTRY(void, JVM_SetNativeThreadName(JNIEnv* env, jobject jthread, jstring name))
3042   JVMWrapper("JVM_SetNativeThreadName");
3043   ResourceMark rm(THREAD);
3044   oop java_thread = JNIHandles::resolve_non_null(jthread);
3045   JavaThread* thr = java_lang_Thread::thread(java_thread);
3046   // Thread naming only supported for the current thread, doesn't work for
3047   // target threads.
3048   if (Thread::current() == thr && !thr->has_attached_via_jni()) {
3049     // we don't set the name of an attached thread to avoid stepping
3050     // on other programs
3051     const char *thread_name = java_lang_String::as_utf8_string(JNIHandles::resolve_non_null(name));
3052     os::set_native_thread_name(thread_name);
3053   }
3054 JVM_END
3055 
3056 // java.lang.SecurityManager ///////////////////////////////////////////////////////////////////////
3057 
3058 static bool is_trusted_frame(JavaThread* jthread, vframeStream* vfst) {
3059   assert(jthread->is_Java_thread(), "must be a Java thread");
3060   if (jthread->privileged_stack_top() == NULL) return false;
3061   if (jthread->privileged_stack_top()->frame_id() == vfst->frame_id()) {
3062     oop loader = jthread->privileged_stack_top()->class_loader();
3063     if (loader == NULL) return true;
3064     bool trusted = java_lang_ClassLoader::is_trusted_loader(loader);
3065     if (trusted) return true;
3066   }
3067   return false;
3068 }
3069 
3070 JVM_ENTRY(jclass, JVM_CurrentLoadedClass(JNIEnv *env))
3071   JVMWrapper("JVM_CurrentLoadedClass");
3072   ResourceMark rm(THREAD);
3073 
3074   for (vframeStream vfst(thread); !vfst.at_end(); vfst.next()) {
3075     // if a method in a class in a trusted loader is in a doPrivileged, return NULL
3076     bool trusted = is_trusted_frame(thread, &vfst);
3077     if (trusted) return NULL;
3078 
3079     Method* m = vfst.method();
3080     if (!m->is_native()) {
3081       InstanceKlass* holder = m->method_holder();
3082       oop loader = holder->class_loader();
3083       if (loader != NULL && !java_lang_ClassLoader::is_trusted_loader(loader)) {
3084         return (jclass) JNIHandles::make_local(env, holder->java_mirror());
3085       }
3086     }
3087   }
3088   return NULL;
3089 JVM_END
3090 
3091 
3092 JVM_ENTRY(jobject, JVM_CurrentClassLoader(JNIEnv *env))
3093   JVMWrapper("JVM_CurrentClassLoader");
3094   ResourceMark rm(THREAD);
3095 
3096   for (vframeStream vfst(thread); !vfst.at_end(); vfst.next()) {
3097 
3098     // if a method in a class in a trusted loader is in a doPrivileged, return NULL
3099     bool trusted = is_trusted_frame(thread, &vfst);
3100     if (trusted) return NULL;
3101 
3102     Method* m = vfst.method();
3103     if (!m->is_native()) {
3104       InstanceKlass* holder = m->method_holder();
3105       assert(holder->is_klass(), "just checking");
3106       oop loader = holder->class_loader();
3107       if (loader != NULL && !java_lang_ClassLoader::is_trusted_loader(loader)) {
3108         return JNIHandles::make_local(env, loader);
3109       }
3110     }
3111   }
3112   return NULL;
3113 JVM_END
3114 
3115 
3116 JVM_ENTRY(jobjectArray, JVM_GetClassContext(JNIEnv *env))
3117   JVMWrapper("JVM_GetClassContext");
3118   ResourceMark rm(THREAD);
3119   JvmtiVMObjectAllocEventCollector oam;
3120   vframeStream vfst(thread);
3121 
3122   if (SystemDictionary::reflect_CallerSensitive_klass() != NULL) {
3123     // This must only be called from SecurityManager.getClassContext
3124     Method* m = vfst.method();
3125     if (!(m->method_holder() == SystemDictionary::SecurityManager_klass() &&
3126           m->name()          == vmSymbols::getClassContext_name() &&
3127           m->signature()     == vmSymbols::void_class_array_signature())) {
3128       THROW_MSG_NULL(vmSymbols::java_lang_InternalError(), "JVM_GetClassContext must only be called from SecurityManager.getClassContext");
3129     }
3130   }
3131 
3132   // Collect method holders
3133   GrowableArray<KlassHandle>* klass_array = new GrowableArray<KlassHandle>();
3134   for (; !vfst.at_end(); vfst.security_next()) {
3135     Method* m = vfst.method();
3136     // Native frames are not returned
3137     if (!m->is_ignored_by_security_stack_walk() && !m->is_native()) {
3138       Klass* holder = m->method_holder();
3139       assert(holder->is_klass(), "just checking");
3140       klass_array->append(holder);
3141     }
3142   }
3143 
3144   // Create result array of type [Ljava/lang/Class;
3145   objArrayOop result = oopFactory::new_objArray(SystemDictionary::Class_klass(), klass_array->length(), CHECK_NULL);
3146   // Fill in mirrors corresponding to method holders
3147   for (int i = 0; i < klass_array->length(); i++) {
3148     result->obj_at_put(i, klass_array->at(i)->java_mirror());
3149   }
3150 
3151   return (jobjectArray) JNIHandles::make_local(env, result);
3152 JVM_END
3153 
3154 
3155 JVM_ENTRY(jint, JVM_ClassDepth(JNIEnv *env, jstring name))
3156   JVMWrapper("JVM_ClassDepth");
3157   ResourceMark rm(THREAD);
3158   Handle h_name (THREAD, JNIHandles::resolve_non_null(name));
3159   Handle class_name_str = java_lang_String::internalize_classname(h_name, CHECK_0);
3160 
3161   const char* str = java_lang_String::as_utf8_string(class_name_str());
3162   TempNewSymbol class_name_sym = SymbolTable::probe(str, (int)strlen(str));
3163   if (class_name_sym == NULL) {
3164     return -1;
3165   }
3166 
3167   int depth = 0;
3168 
3169   for(vframeStream vfst(thread); !vfst.at_end(); vfst.next()) {
3170     if (!vfst.method()->is_native()) {
3171       InstanceKlass* holder = vfst.method()->method_holder();
3172       assert(holder->is_klass(), "just checking");
3173       if (holder->name() == class_name_sym) {
3174         return depth;
3175       }
3176       depth++;
3177     }
3178   }
3179   return -1;
3180 JVM_END
3181 
3182 
3183 JVM_ENTRY(jint, JVM_ClassLoaderDepth(JNIEnv *env))
3184   JVMWrapper("JVM_ClassLoaderDepth");
3185   ResourceMark rm(THREAD);
3186   int depth = 0;
3187   for (vframeStream vfst(thread); !vfst.at_end(); vfst.next()) {
3188     // if a method in a class in a trusted loader is in a doPrivileged, return -1
3189     bool trusted = is_trusted_frame(thread, &vfst);
3190     if (trusted) return -1;
3191 
3192     Method* m = vfst.method();
3193     if (!m->is_native()) {
3194       InstanceKlass* holder = m->method_holder();
3195       assert(holder->is_klass(), "just checking");
3196       oop loader = holder->class_loader();
3197       if (loader != NULL && !java_lang_ClassLoader::is_trusted_loader(loader)) {
3198         return depth;
3199       }
3200       depth++;
3201     }
3202   }
3203   return -1;
3204 JVM_END
3205 
3206 
3207 // java.lang.Package ////////////////////////////////////////////////////////////////
3208 
3209 
3210 JVM_ENTRY(jstring, JVM_GetSystemPackage(JNIEnv *env, jstring name))
3211   JVMWrapper("JVM_GetSystemPackage");
3212   ResourceMark rm(THREAD);
3213   JvmtiVMObjectAllocEventCollector oam;
3214   char* str = java_lang_String::as_utf8_string(JNIHandles::resolve_non_null(name));
3215   oop result = ClassLoader::get_system_package(str, CHECK_NULL);
3216   return (jstring) JNIHandles::make_local(result);
3217 JVM_END
3218 
3219 
3220 JVM_ENTRY(jobjectArray, JVM_GetSystemPackages(JNIEnv *env))
3221   JVMWrapper("JVM_GetSystemPackages");
3222   JvmtiVMObjectAllocEventCollector oam;
3223   objArrayOop result = ClassLoader::get_system_packages(CHECK_NULL);
3224   return (jobjectArray) JNIHandles::make_local(result);
3225 JVM_END
3226 
3227 
3228 // ObjectInputStream ///////////////////////////////////////////////////////////////
3229 
3230 bool force_verify_field_access(Klass* current_class, Klass* field_class, AccessFlags access, bool classloader_only) {
3231   if (current_class == NULL) {
3232     return true;
3233   }
3234   if ((current_class == field_class) || access.is_public()) {
3235     return true;
3236   }
3237 
3238   if (access.is_protected()) {
3239     // See if current_class is a subclass of field_class
3240     if (current_class->is_subclass_of(field_class)) {
3241       return true;
3242     }
3243   }
3244 
3245   return (!access.is_private() && InstanceKlass::cast(current_class)->is_same_class_package(field_class));
3246 }
3247 
3248 // Return the first non-null class loader up the execution stack, or null
3249 // if only code from the null class loader is on the stack.
3250 
3251 JVM_ENTRY(jobject, JVM_LatestUserDefinedLoader(JNIEnv *env))
3252   for (vframeStream vfst(thread); !vfst.at_end(); vfst.next()) {
3253     vfst.skip_reflection_related_frames(); // Only needed for 1.4 reflection
3254     oop loader = vfst.method()->method_holder()->class_loader();
3255     if (loader != NULL) {
3256       return JNIHandles::make_local(env, loader);
3257     }
3258   }
3259   return NULL;
3260 JVM_END
3261 
3262 
3263 // Array ///////////////////////////////////////////////////////////////////////////////////////////
3264 
3265 
3266 // resolve array handle and check arguments
3267 static inline arrayOop check_array(JNIEnv *env, jobject arr, bool type_array_only, TRAPS) {
3268   if (arr == NULL) {
3269     THROW_0(vmSymbols::java_lang_NullPointerException());
3270   }
3271   oop a = JNIHandles::resolve_non_null(arr);
3272   if (!a->is_array()) {
3273     THROW_MSG_0(vmSymbols::java_lang_IllegalArgumentException(), "Argument is not an array");
3274   } else if (type_array_only && !a->is_typeArray()) {
3275     THROW_MSG_0(vmSymbols::java_lang_IllegalArgumentException(), "Argument is not an array of primitive type");
3276   }
3277   return arrayOop(a);
3278 }
3279 
3280 
3281 JVM_ENTRY(jint, JVM_GetArrayLength(JNIEnv *env, jobject arr))
3282   JVMWrapper("JVM_GetArrayLength");
3283   arrayOop a = check_array(env, arr, false, CHECK_0);
3284   return a->length();
3285 JVM_END
3286 
3287 
3288 JVM_ENTRY(jobject, JVM_GetArrayElement(JNIEnv *env, jobject arr, jint index))
3289   JVMWrapper("JVM_Array_Get");
3290   JvmtiVMObjectAllocEventCollector oam;
3291   arrayOop a = check_array(env, arr, false, CHECK_NULL);
3292   jvalue value;
3293   BasicType type = Reflection::array_get(&value, a, index, CHECK_NULL);
3294   oop box = Reflection::box(&value, type, CHECK_NULL);
3295   return JNIHandles::make_local(env, box);
3296 JVM_END
3297 
3298 
3299 JVM_ENTRY(jvalue, JVM_GetPrimitiveArrayElement(JNIEnv *env, jobject arr, jint index, jint wCode))
3300   JVMWrapper("JVM_GetPrimitiveArrayElement");
3301   jvalue value;
3302   value.i = 0; // to initialize value before getting used in CHECK
3303   arrayOop a = check_array(env, arr, true, CHECK_(value));
3304   assert(a->is_typeArray(), "just checking");
3305   BasicType type = Reflection::array_get(&value, a, index, CHECK_(value));
3306   BasicType wide_type = (BasicType) wCode;
3307   if (type != wide_type) {
3308     Reflection::widen(&value, type, wide_type, CHECK_(value));
3309   }
3310   return value;
3311 JVM_END
3312 
3313 
3314 JVM_ENTRY(void, JVM_SetArrayElement(JNIEnv *env, jobject arr, jint index, jobject val))
3315   JVMWrapper("JVM_SetArrayElement");
3316   arrayOop a = check_array(env, arr, false, CHECK);
3317   oop box = JNIHandles::resolve(val);
3318   jvalue value;
3319   value.i = 0; // to initialize value before getting used in CHECK
3320   BasicType value_type;
3321   if (a->is_objArray()) {
3322     // Make sure we do no unbox e.g. java/lang/Integer instances when storing into an object array
3323     value_type = Reflection::unbox_for_regular_object(box, &value);
3324   } else {
3325     value_type = Reflection::unbox_for_primitive(box, &value, CHECK);
3326   }
3327   Reflection::array_set(&value, a, index, value_type, CHECK);
3328 JVM_END
3329 
3330 
3331 JVM_ENTRY(void, JVM_SetPrimitiveArrayElement(JNIEnv *env, jobject arr, jint index, jvalue v, unsigned char vCode))
3332   JVMWrapper("JVM_SetPrimitiveArrayElement");
3333   arrayOop a = check_array(env, arr, true, CHECK);
3334   assert(a->is_typeArray(), "just checking");
3335   BasicType value_type = (BasicType) vCode;
3336   Reflection::array_set(&v, a, index, value_type, CHECK);
3337 JVM_END
3338 
3339 
3340 JVM_ENTRY(jobject, JVM_NewArray(JNIEnv *env, jclass eltClass, jint length))
3341   JVMWrapper("JVM_NewArray");
3342   JvmtiVMObjectAllocEventCollector oam;
3343   oop element_mirror = JNIHandles::resolve(eltClass);
3344   oop result = Reflection::reflect_new_array(element_mirror, length, CHECK_NULL);
3345   return JNIHandles::make_local(env, result);
3346 JVM_END
3347 
3348 
3349 JVM_ENTRY(jobject, JVM_NewMultiArray(JNIEnv *env, jclass eltClass, jintArray dim))
3350   JVMWrapper("JVM_NewMultiArray");
3351   JvmtiVMObjectAllocEventCollector oam;
3352   arrayOop dim_array = check_array(env, dim, true, CHECK_NULL);
3353   oop element_mirror = JNIHandles::resolve(eltClass);
3354   assert(dim_array->is_typeArray(), "just checking");
3355   oop result = Reflection::reflect_new_multi_array(element_mirror, typeArrayOop(dim_array), CHECK_NULL);
3356   return JNIHandles::make_local(env, result);
3357 JVM_END
3358 
3359 
3360 // Library support ///////////////////////////////////////////////////////////////////////////
3361 
3362 JVM_ENTRY_NO_ENV(void*, JVM_LoadLibrary(const char* name))
3363   //%note jvm_ct
3364   JVMWrapper2("JVM_LoadLibrary (%s)", name);
3365   char ebuf[1024];
3366   void *load_result;
3367   {
3368     ThreadToNativeFromVM ttnfvm(thread);
3369     load_result = os::dll_load(name, ebuf, sizeof ebuf);
3370   }
3371   if (load_result == NULL) {
3372     char msg[1024];
3373     jio_snprintf(msg, sizeof msg, "%s: %s", name, ebuf);
3374     // Since 'ebuf' may contain a string encoded using
3375     // platform encoding scheme, we need to pass
3376     // Exceptions::unsafe_to_utf8 to the new_exception method
3377     // as the last argument. See bug 6367357.
3378     Handle h_exception =
3379       Exceptions::new_exception(thread,
3380                                 vmSymbols::java_lang_UnsatisfiedLinkError(),
3381                                 msg, Exceptions::unsafe_to_utf8);
3382 
3383     THROW_HANDLE_0(h_exception);
3384   }
3385   return load_result;
3386 JVM_END
3387 
3388 
3389 JVM_LEAF(void, JVM_UnloadLibrary(void* handle))
3390   JVMWrapper("JVM_UnloadLibrary");
3391   os::dll_unload(handle);
3392 JVM_END
3393 
3394 
3395 JVM_LEAF(void*, JVM_FindLibraryEntry(void* handle, const char* name))
3396   JVMWrapper2("JVM_FindLibraryEntry (%s)", name);
3397   return os::dll_lookup(handle, name);
3398 JVM_END
3399 
3400 
3401 // JNI version ///////////////////////////////////////////////////////////////////////////////
3402 
3403 JVM_LEAF(jboolean, JVM_IsSupportedJNIVersion(jint version))
3404   JVMWrapper2("JVM_IsSupportedJNIVersion (%d)", version);
3405   return Threads::is_supported_jni_version_including_1_1(version);
3406 JVM_END
3407 
3408 
3409 // String support ///////////////////////////////////////////////////////////////////////////
3410 
3411 JVM_ENTRY(jstring, JVM_InternString(JNIEnv *env, jstring str))
3412   JVMWrapper("JVM_InternString");
3413   JvmtiVMObjectAllocEventCollector oam;
3414   if (str == NULL) return NULL;
3415   oop string = JNIHandles::resolve_non_null(str);
3416   oop result = StringTable::intern(string, CHECK_NULL);
3417   return (jstring) JNIHandles::make_local(env, result);
3418 JVM_END
3419 
3420 
3421 // Raw monitor support //////////////////////////////////////////////////////////////////////
3422 
3423 // The lock routine below calls lock_without_safepoint_check in order to get a raw lock
3424 // without interfering with the safepoint mechanism. The routines are not JVM_LEAF because
3425 // they might be called by non-java threads. The JVM_LEAF installs a NoHandleMark check
3426 // that only works with java threads.
3427 
3428 
3429 JNIEXPORT void* JNICALL JVM_RawMonitorCreate(void) {
3430   VM_Exit::block_if_vm_exited();
3431   JVMWrapper("JVM_RawMonitorCreate");
3432   return new Mutex(Mutex::native, "JVM_RawMonitorCreate");
3433 }
3434 
3435 
3436 JNIEXPORT void JNICALL  JVM_RawMonitorDestroy(void *mon) {
3437   VM_Exit::block_if_vm_exited();
3438   JVMWrapper("JVM_RawMonitorDestroy");
3439   delete ((Mutex*) mon);
3440 }
3441 
3442 
3443 JNIEXPORT jint JNICALL JVM_RawMonitorEnter(void *mon) {
3444   VM_Exit::block_if_vm_exited();
3445   JVMWrapper("JVM_RawMonitorEnter");
3446   ((Mutex*) mon)->jvm_raw_lock();
3447   return 0;
3448 }
3449 
3450 
3451 JNIEXPORT void JNICALL JVM_RawMonitorExit(void *mon) {
3452   VM_Exit::block_if_vm_exited();
3453   JVMWrapper("JVM_RawMonitorExit");
3454   ((Mutex*) mon)->jvm_raw_unlock();
3455 }
3456 
3457 
3458 // Shared JNI/JVM entry points //////////////////////////////////////////////////////////////
3459 
3460 jclass find_class_from_class_loader(JNIEnv* env, Symbol* name, jboolean init,
3461                                     Handle loader, Handle protection_domain,
3462                                     jboolean throwError, TRAPS) {
3463   // Security Note:
3464   //   The Java level wrapper will perform the necessary security check allowing
3465   //   us to pass the NULL as the initiating class loader.  The VM is responsible for
3466   //   the checkPackageAccess relative to the initiating class loader via the
3467   //   protection_domain. The protection_domain is passed as NULL by the java code
3468   //   if there is no security manager in 3-arg Class.forName().
3469   Klass* klass = SystemDictionary::resolve_or_fail(name, loader, protection_domain, throwError != 0, CHECK_NULL);
3470 
3471   KlassHandle klass_handle(THREAD, klass);
3472   // Check if we should initialize the class
3473   if (init && klass_handle->is_instance_klass()) {
3474     klass_handle->initialize(CHECK_NULL);
3475   }
3476   return (jclass) JNIHandles::make_local(env, klass_handle->java_mirror());
3477 }
3478 
3479 
3480 // Method ///////////////////////////////////////////////////////////////////////////////////////////
3481 
3482 JVM_ENTRY(jobject, JVM_InvokeMethod(JNIEnv *env, jobject method, jobject obj, jobjectArray args0))
3483   JVMWrapper("JVM_InvokeMethod");
3484   Handle method_handle;
3485   if (thread->stack_available((address) &method_handle) >= JVMInvokeMethodSlack) {
3486     method_handle = Handle(THREAD, JNIHandles::resolve(method));
3487     Handle receiver(THREAD, JNIHandles::resolve(obj));
3488     objArrayHandle args(THREAD, objArrayOop(JNIHandles::resolve(args0)));
3489     oop result = Reflection::invoke_method(method_handle(), receiver, args, CHECK_NULL);
3490     jobject res = JNIHandles::make_local(env, result);
3491     if (JvmtiExport::should_post_vm_object_alloc()) {
3492       oop ret_type = java_lang_reflect_Method::return_type(method_handle());
3493       assert(ret_type != NULL, "sanity check: ret_type oop must not be NULL!");
3494       if (java_lang_Class::is_primitive(ret_type)) {
3495         // Only for primitive type vm allocates memory for java object.
3496         // See box() method.
3497         JvmtiExport::post_vm_object_alloc(JavaThread::current(), result);
3498       }
3499     }
3500     return res;
3501   } else {
3502     THROW_0(vmSymbols::java_lang_StackOverflowError());
3503   }
3504 JVM_END
3505 
3506 
3507 JVM_ENTRY(jobject, JVM_NewInstanceFromConstructor(JNIEnv *env, jobject c, jobjectArray args0))
3508   JVMWrapper("JVM_NewInstanceFromConstructor");
3509   oop constructor_mirror = JNIHandles::resolve(c);
3510   objArrayHandle args(THREAD, objArrayOop(JNIHandles::resolve(args0)));
3511   oop result = Reflection::invoke_constructor(constructor_mirror, args, CHECK_NULL);
3512   jobject res = JNIHandles::make_local(env, result);
3513   if (JvmtiExport::should_post_vm_object_alloc()) {
3514     JvmtiExport::post_vm_object_alloc(JavaThread::current(), result);
3515   }
3516   return res;
3517 JVM_END
3518 
3519 // Atomic ///////////////////////////////////////////////////////////////////////////////////////////
3520 
3521 JVM_LEAF(jboolean, JVM_SupportsCX8())
3522   JVMWrapper("JVM_SupportsCX8");
3523   return VM_Version::supports_cx8();
3524 JVM_END
3525 
3526 // Returns an array of all live Thread objects (VM internal JavaThreads,
3527 // jvmti agent threads, and JNI attaching threads  are skipped)
3528 // See CR 6404306 regarding JNI attaching threads
3529 JVM_ENTRY(jobjectArray, JVM_GetAllThreads(JNIEnv *env, jclass dummy))
3530   ResourceMark rm(THREAD);
3531   ThreadsListEnumerator tle(THREAD, false, false);
3532   JvmtiVMObjectAllocEventCollector oam;
3533 
3534   int num_threads = tle.num_threads();
3535   objArrayOop r = oopFactory::new_objArray(SystemDictionary::Thread_klass(), num_threads, CHECK_NULL);
3536   objArrayHandle threads_ah(THREAD, r);
3537 
3538   for (int i = 0; i < num_threads; i++) {
3539     Handle h = tle.get_threadObj(i);
3540     threads_ah->obj_at_put(i, h());
3541   }
3542 
3543   return (jobjectArray) JNIHandles::make_local(env, threads_ah());
3544 JVM_END
3545 
3546 
3547 // Support for java.lang.Thread.getStackTrace() and getAllStackTraces() methods
3548 // Return StackTraceElement[][], each element is the stack trace of a thread in
3549 // the corresponding entry in the given threads array
3550 JVM_ENTRY(jobjectArray, JVM_DumpThreads(JNIEnv *env, jclass threadClass, jobjectArray threads))
3551   JVMWrapper("JVM_DumpThreads");
3552   JvmtiVMObjectAllocEventCollector oam;
3553 
3554   // Check if threads is null
3555   if (threads == NULL) {
3556     THROW_(vmSymbols::java_lang_NullPointerException(), 0);
3557   }
3558 
3559   objArrayOop a = objArrayOop(JNIHandles::resolve_non_null(threads));
3560   objArrayHandle ah(THREAD, a);
3561   int num_threads = ah->length();
3562   // check if threads is non-empty array
3563   if (num_threads == 0) {
3564     THROW_(vmSymbols::java_lang_IllegalArgumentException(), 0);
3565   }
3566 
3567   // check if threads is not an array of objects of Thread class
3568   Klass* k = ObjArrayKlass::cast(ah->klass())->element_klass();
3569   if (k != SystemDictionary::Thread_klass()) {
3570     THROW_(vmSymbols::java_lang_IllegalArgumentException(), 0);
3571   }
3572 
3573   ResourceMark rm(THREAD);
3574 
3575   GrowableArray<instanceHandle>* thread_handle_array = new GrowableArray<instanceHandle>(num_threads);
3576   for (int i = 0; i < num_threads; i++) {
3577     oop thread_obj = ah->obj_at(i);
3578     instanceHandle h(THREAD, (instanceOop) thread_obj);
3579     thread_handle_array->append(h);
3580   }
3581 
3582   Handle stacktraces = ThreadService::dump_stack_traces(thread_handle_array, num_threads, CHECK_NULL);
3583   return (jobjectArray)JNIHandles::make_local(env, stacktraces());
3584 
3585 JVM_END
3586 
3587 // JVM monitoring and management support
3588 JVM_ENTRY_NO_ENV(void*, JVM_GetManagement(jint version))
3589   return Management::get_jmm_interface(version);
3590 JVM_END
3591 
3592 // com.sun.tools.attach.VirtualMachine agent properties support
3593 //
3594 // Initialize the agent properties with the properties maintained in the VM
3595 JVM_ENTRY(jobject, JVM_InitAgentProperties(JNIEnv *env, jobject properties))
3596   JVMWrapper("JVM_InitAgentProperties");
3597   ResourceMark rm;
3598 
3599   Handle props(THREAD, JNIHandles::resolve_non_null(properties));
3600 
3601   PUTPROP(props, "sun.java.command", Arguments::java_command());
3602   PUTPROP(props, "sun.jvm.flags", Arguments::jvm_flags());
3603   PUTPROP(props, "sun.jvm.args", Arguments::jvm_args());
3604   return properties;
3605 JVM_END
3606 
3607 JVM_ENTRY(jobjectArray, JVM_GetEnclosingMethodInfo(JNIEnv *env, jclass ofClass))
3608 {
3609   JVMWrapper("JVM_GetEnclosingMethodInfo");
3610   JvmtiVMObjectAllocEventCollector oam;
3611 
3612   if (ofClass == NULL) {
3613     return NULL;
3614   }
3615   Handle mirror(THREAD, JNIHandles::resolve_non_null(ofClass));
3616   // Special handling for primitive objects
3617   if (java_lang_Class::is_primitive(mirror())) {
3618     return NULL;
3619   }
3620   Klass* k = java_lang_Class::as_Klass(mirror());
3621   if (!k->is_instance_klass()) {
3622     return NULL;
3623   }
3624   instanceKlassHandle ik_h(THREAD, k);
3625   int encl_method_class_idx = ik_h->enclosing_method_class_index();
3626   if (encl_method_class_idx == 0) {
3627     return NULL;
3628   }
3629   objArrayOop dest_o = oopFactory::new_objArray(SystemDictionary::Object_klass(), 3, CHECK_NULL);
3630   objArrayHandle dest(THREAD, dest_o);
3631   Klass* enc_k = ik_h->constants()->klass_at(encl_method_class_idx, CHECK_NULL);
3632   dest->obj_at_put(0, enc_k->java_mirror());
3633   int encl_method_method_idx = ik_h->enclosing_method_method_index();
3634   if (encl_method_method_idx != 0) {
3635     Symbol* sym = ik_h->constants()->symbol_at(
3636                         extract_low_short_from_int(
3637                           ik_h->constants()->name_and_type_at(encl_method_method_idx)));
3638     Handle str = java_lang_String::create_from_symbol(sym, CHECK_NULL);
3639     dest->obj_at_put(1, str());
3640     sym = ik_h->constants()->symbol_at(
3641               extract_high_short_from_int(
3642                 ik_h->constants()->name_and_type_at(encl_method_method_idx)));
3643     str = java_lang_String::create_from_symbol(sym, CHECK_NULL);
3644     dest->obj_at_put(2, str());
3645   }
3646   return (jobjectArray) JNIHandles::make_local(dest());
3647 }
3648 JVM_END
3649 
3650 JVM_ENTRY(void, JVM_GetVersionInfo(JNIEnv* env, jvm_version_info* info, size_t info_size))
3651 {
3652   memset(info, 0, info_size);
3653 
3654   info->jvm_version = Abstract_VM_Version::jvm_version();
3655   info->update_version = 0;          /* 0 in HotSpot Express VM */
3656   info->special_update_version = 0;  /* 0 in HotSpot Express VM */
3657 
3658   // when we add a new capability in the jvm_version_info struct, we should also
3659   // consider to expose this new capability in the sun.rt.jvmCapabilities jvmstat
3660   // counter defined in runtimeService.cpp.
3661   info->is_attachable = AttachListener::is_attach_supported();
3662 }
3663 JVM_END