src/share/vm/prims/unsafe.cpp

Fri, 02 Sep 2011 00:36:18 -0700

author
twisti
date
Fri, 02 Sep 2011 00:36:18 -0700
changeset 3101
aa67216400d3
parent 3095
19241ae0d839
child 3137
e6b1331a51d2
permissions
-rw-r--r--

7085404: JSR 292: VolatileCallSites should have push notification too
Reviewed-by: never, kvn

duke@435 1 /*
kvn@2434 2 * Copyright (c) 2000, 2011, Oracle and/or its affiliates. All rights reserved.
duke@435 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
duke@435 4 *
duke@435 5 * This code is free software; you can redistribute it and/or modify it
duke@435 6 * under the terms of the GNU General Public License version 2 only, as
duke@435 7 * published by the Free Software Foundation.
duke@435 8 *
duke@435 9 * This code is distributed in the hope that it will be useful, but WITHOUT
duke@435 10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
duke@435 11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
duke@435 12 * version 2 for more details (a copy is included in the LICENSE file that
duke@435 13 * accompanied this code).
duke@435 14 *
duke@435 15 * You should have received a copy of the GNU General Public License version
duke@435 16 * 2 along with this work; if not, write to the Free Software Foundation,
duke@435 17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
duke@435 18 *
trims@1907 19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
trims@1907 20 * or visit www.oracle.com if you need additional information or have any
trims@1907 21 * questions.
duke@435 22 *
duke@435 23 */
duke@435 24
stefank@2314 25 #include "precompiled.hpp"
stefank@2314 26 #include "classfile/vmSymbols.hpp"
johnc@2781 27 #ifndef SERIALGC
johnc@2781 28 #include "gc_implementation/g1/g1SATBCardTableModRefBS.hpp"
johnc@2781 29 #endif // SERIALGC
stefank@2314 30 #include "memory/allocation.inline.hpp"
stefank@2314 31 #include "prims/jni.h"
stefank@2314 32 #include "prims/jvm.h"
stefank@2314 33 #include "runtime/globals.hpp"
stefank@2314 34 #include "runtime/interfaceSupport.hpp"
stefank@2314 35 #include "runtime/reflection.hpp"
stefank@2314 36 #include "runtime/synchronizer.hpp"
stefank@2314 37 #include "services/threadService.hpp"
stefank@2314 38 #include "utilities/copy.hpp"
stefank@2314 39 #include "utilities/dtrace.hpp"
stefank@2314 40
duke@435 41 /*
duke@435 42 * Implementation of class sun.misc.Unsafe
duke@435 43 */
duke@435 44
fparain@1759 45 HS_DTRACE_PROBE_DECL3(hotspot, thread__park__begin, uintptr_t, int, long long);
fparain@1759 46 HS_DTRACE_PROBE_DECL1(hotspot, thread__park__end, uintptr_t);
fparain@1759 47 HS_DTRACE_PROBE_DECL1(hotspot, thread__unpark, uintptr_t);
fparain@1759 48
duke@435 49 #define MAX_OBJECT_SIZE \
duke@435 50 ( arrayOopDesc::header_size(T_DOUBLE) * HeapWordSize \
duke@435 51 + ((julong)max_jint * sizeof(double)) )
duke@435 52
duke@435 53
duke@435 54 #define UNSAFE_ENTRY(result_type, header) \
duke@435 55 JVM_ENTRY(result_type, header)
duke@435 56
duke@435 57 // Can't use UNSAFE_LEAF because it has the signature of a straight
duke@435 58 // call into the runtime (just like JVM_LEAF, funny that) but it's
duke@435 59 // called like a Java Native and thus the wrapper built for it passes
duke@435 60 // arguments like a JNI call. It expects those arguments to be popped
duke@435 61 // from the stack on Intel like all good JNI args are, and adjusts the
duke@435 62 // stack according. Since the JVM_LEAF call expects no extra
duke@435 63 // arguments the stack isn't popped in the C code, is pushed by the
duke@435 64 // wrapper and we get sick.
duke@435 65 //#define UNSAFE_LEAF(result_type, header) \
duke@435 66 // JVM_LEAF(result_type, header)
duke@435 67
duke@435 68 #define UNSAFE_END JVM_END
duke@435 69
duke@435 70 #define UnsafeWrapper(arg) /*nothing, for the present*/
duke@435 71
duke@435 72
duke@435 73 inline void* addr_from_java(jlong addr) {
duke@435 74 // This assert fails in a variety of ways on 32-bit systems.
duke@435 75 // It is impossible to predict whether native code that converts
duke@435 76 // pointers to longs will sign-extend or zero-extend the addresses.
duke@435 77 //assert(addr == (uintptr_t)addr, "must not be odd high bits");
duke@435 78 return (void*)(uintptr_t)addr;
duke@435 79 }
duke@435 80
duke@435 81 inline jlong addr_to_java(void* p) {
duke@435 82 assert(p == (void*)(uintptr_t)p, "must not be odd high bits");
duke@435 83 return (uintptr_t)p;
duke@435 84 }
duke@435 85
duke@435 86
duke@435 87 // Note: The VM's obj_field and related accessors use byte-scaled
duke@435 88 // ("unscaled") offsets, just as the unsafe methods do.
duke@435 89
duke@435 90 // However, the method Unsafe.fieldOffset explicitly declines to
duke@435 91 // guarantee this. The field offset values manipulated by the Java user
duke@435 92 // through the Unsafe API are opaque cookies that just happen to be byte
duke@435 93 // offsets. We represent this state of affairs by passing the cookies
duke@435 94 // through conversion functions when going between the VM and the Unsafe API.
duke@435 95 // The conversion functions just happen to be no-ops at present.
duke@435 96
duke@435 97 inline jlong field_offset_to_byte_offset(jlong field_offset) {
duke@435 98 return field_offset;
duke@435 99 }
duke@435 100
duke@435 101 inline jlong field_offset_from_byte_offset(jlong byte_offset) {
duke@435 102 return byte_offset;
duke@435 103 }
duke@435 104
duke@435 105 inline jint invocation_key_from_method_slot(jint slot) {
duke@435 106 return slot;
duke@435 107 }
duke@435 108
duke@435 109 inline jint invocation_key_to_method_slot(jint key) {
duke@435 110 return key;
duke@435 111 }
duke@435 112
duke@435 113 inline void* index_oop_from_field_offset_long(oop p, jlong field_offset) {
duke@435 114 jlong byte_offset = field_offset_to_byte_offset(field_offset);
never@2598 115 // Don't allow unsafe to be used to read or write the header word of oops
never@2598 116 assert(p == NULL || field_offset >= oopDesc::header_size(), "offset must be outside of header");
duke@435 117 #ifdef ASSERT
duke@435 118 if (p != NULL) {
duke@435 119 assert(byte_offset >= 0 && byte_offset <= (jlong)MAX_OBJECT_SIZE, "sane offset");
duke@435 120 if (byte_offset == (jint)byte_offset) {
duke@435 121 void* ptr_plus_disp = (address)p + byte_offset;
coleenp@548 122 assert((void*)p->obj_field_addr<oop>((jint)byte_offset) == ptr_plus_disp,
duke@435 123 "raw [ptr+disp] must be consistent with oop::field_base");
duke@435 124 }
duke@435 125 }
duke@435 126 #endif
duke@435 127 if (sizeof(char*) == sizeof(jint)) // (this constant folds!)
duke@435 128 return (address)p + (jint) byte_offset;
duke@435 129 else
duke@435 130 return (address)p + byte_offset;
duke@435 131 }
duke@435 132
duke@435 133 // Externally callable versions:
duke@435 134 // (Use these in compiler intrinsics which emulate unsafe primitives.)
duke@435 135 jlong Unsafe_field_offset_to_byte_offset(jlong field_offset) {
duke@435 136 return field_offset;
duke@435 137 }
duke@435 138 jlong Unsafe_field_offset_from_byte_offset(jlong byte_offset) {
duke@435 139 return byte_offset;
duke@435 140 }
duke@435 141 jint Unsafe_invocation_key_from_method_slot(jint slot) {
duke@435 142 return invocation_key_from_method_slot(slot);
duke@435 143 }
duke@435 144 jint Unsafe_invocation_key_to_method_slot(jint key) {
duke@435 145 return invocation_key_to_method_slot(key);
duke@435 146 }
duke@435 147
duke@435 148
duke@435 149 ///// Data in the Java heap.
duke@435 150
duke@435 151 #define GET_FIELD(obj, offset, type_name, v) \
duke@435 152 oop p = JNIHandles::resolve(obj); \
duke@435 153 type_name v = *(type_name*)index_oop_from_field_offset_long(p, offset)
duke@435 154
duke@435 155 #define SET_FIELD(obj, offset, type_name, x) \
duke@435 156 oop p = JNIHandles::resolve(obj); \
duke@435 157 *(type_name*)index_oop_from_field_offset_long(p, offset) = x
duke@435 158
duke@435 159 #define GET_FIELD_VOLATILE(obj, offset, type_name, v) \
duke@435 160 oop p = JNIHandles::resolve(obj); \
kvn@2434 161 volatile type_name v = OrderAccess::load_acquire((volatile type_name*)index_oop_from_field_offset_long(p, offset));
duke@435 162
duke@435 163 #define SET_FIELD_VOLATILE(obj, offset, type_name, x) \
duke@435 164 oop p = JNIHandles::resolve(obj); \
kvn@2434 165 OrderAccess::release_store_fence((volatile type_name*)index_oop_from_field_offset_long(p, offset), x);
duke@435 166
coleenp@548 167 // Macros for oops that check UseCompressedOops
coleenp@548 168
coleenp@548 169 #define GET_OOP_FIELD(obj, offset, v) \
coleenp@548 170 oop p = JNIHandles::resolve(obj); \
coleenp@548 171 oop v; \
coleenp@548 172 if (UseCompressedOops) { \
coleenp@548 173 narrowOop n = *(narrowOop*)index_oop_from_field_offset_long(p, offset); \
coleenp@548 174 v = oopDesc::decode_heap_oop(n); \
coleenp@548 175 } else { \
coleenp@548 176 v = *(oop*)index_oop_from_field_offset_long(p, offset); \
coleenp@548 177 }
coleenp@548 178
coleenp@548 179 #define GET_OOP_FIELD_VOLATILE(obj, offset, v) \
coleenp@548 180 oop p = JNIHandles::resolve(obj); \
coleenp@548 181 volatile oop v; \
coleenp@548 182 if (UseCompressedOops) { \
coleenp@548 183 volatile narrowOop n = *(volatile narrowOop*)index_oop_from_field_offset_long(p, offset); \
coleenp@548 184 v = oopDesc::decode_heap_oop(n); \
coleenp@548 185 } else { \
coleenp@548 186 v = *(volatile oop*)index_oop_from_field_offset_long(p, offset); \
kvn@2434 187 } \
kvn@2434 188 OrderAccess::acquire();
coleenp@548 189
coleenp@548 190
duke@435 191 // Get/SetObject must be special-cased, since it works with handles.
duke@435 192
duke@435 193 // The xxx140 variants for backward compatibility do not allow a full-width offset.
duke@435 194 UNSAFE_ENTRY(jobject, Unsafe_GetObject140(JNIEnv *env, jobject unsafe, jobject obj, jint offset))
duke@435 195 UnsafeWrapper("Unsafe_GetObject");
duke@435 196 if (obj == NULL) THROW_0(vmSymbols::java_lang_NullPointerException());
coleenp@548 197 GET_OOP_FIELD(obj, offset, v)
johnc@2781 198 jobject ret = JNIHandles::make_local(env, v);
johnc@2781 199 #ifndef SERIALGC
johnc@2781 200 // We could be accessing the referent field in a reference
johnc@2781 201 // object. If G1 is enabled then we need to register a non-null
johnc@2781 202 // referent with the SATB barrier.
johnc@2781 203 if (UseG1GC) {
johnc@2781 204 bool needs_barrier = false;
johnc@2781 205
johnc@2781 206 if (ret != NULL) {
johnc@2781 207 if (offset == java_lang_ref_Reference::referent_offset) {
johnc@2781 208 oop o = JNIHandles::resolve_non_null(obj);
johnc@2781 209 klassOop k = o->klass();
johnc@2781 210 if (instanceKlass::cast(k)->reference_type() != REF_NONE) {
johnc@2781 211 assert(instanceKlass::cast(k)->is_subclass_of(SystemDictionary::Reference_klass()), "sanity");
johnc@2781 212 needs_barrier = true;
johnc@2781 213 }
johnc@2781 214 }
johnc@2781 215 }
johnc@2781 216
johnc@2781 217 if (needs_barrier) {
johnc@2781 218 oop referent = JNIHandles::resolve(ret);
johnc@2781 219 G1SATBCardTableModRefBS::enqueue(referent);
johnc@2781 220 }
johnc@2781 221 }
johnc@2781 222 #endif // SERIALGC
johnc@2781 223 return ret;
duke@435 224 UNSAFE_END
duke@435 225
duke@435 226 UNSAFE_ENTRY(void, Unsafe_SetObject140(JNIEnv *env, jobject unsafe, jobject obj, jint offset, jobject x_h))
duke@435 227 UnsafeWrapper("Unsafe_SetObject");
duke@435 228 if (obj == NULL) THROW(vmSymbols::java_lang_NullPointerException());
duke@435 229 oop x = JNIHandles::resolve(x_h);
duke@435 230 //SET_FIELD(obj, offset, oop, x);
duke@435 231 oop p = JNIHandles::resolve(obj);
coleenp@548 232 if (UseCompressedOops) {
coleenp@548 233 if (x != NULL) {
coleenp@548 234 // If there is a heap base pointer, we are obliged to emit a store barrier.
coleenp@548 235 oop_store((narrowOop*)index_oop_from_field_offset_long(p, offset), x);
coleenp@548 236 } else {
coleenp@548 237 narrowOop n = oopDesc::encode_heap_oop_not_null(x);
coleenp@548 238 *(narrowOop*)index_oop_from_field_offset_long(p, offset) = n;
coleenp@548 239 }
duke@435 240 } else {
coleenp@548 241 if (x != NULL) {
coleenp@548 242 // If there is a heap base pointer, we are obliged to emit a store barrier.
coleenp@548 243 oop_store((oop*)index_oop_from_field_offset_long(p, offset), x);
coleenp@548 244 } else {
coleenp@548 245 *(oop*)index_oop_from_field_offset_long(p, offset) = x;
coleenp@548 246 }
duke@435 247 }
duke@435 248 UNSAFE_END
duke@435 249
duke@435 250 // The normal variants allow a null base pointer with an arbitrary address.
duke@435 251 // But if the base pointer is non-null, the offset should make some sense.
duke@435 252 // That is, it should be in the range [0, MAX_OBJECT_SIZE].
duke@435 253 UNSAFE_ENTRY(jobject, Unsafe_GetObject(JNIEnv *env, jobject unsafe, jobject obj, jlong offset))
duke@435 254 UnsafeWrapper("Unsafe_GetObject");
coleenp@548 255 GET_OOP_FIELD(obj, offset, v)
johnc@2781 256 jobject ret = JNIHandles::make_local(env, v);
johnc@2781 257 #ifndef SERIALGC
johnc@2781 258 // We could be accessing the referent field in a reference
johnc@2781 259 // object. If G1 is enabled then we need to register non-null
johnc@2781 260 // referent with the SATB barrier.
johnc@2781 261 if (UseG1GC) {
johnc@2781 262 bool needs_barrier = false;
johnc@2781 263
johnc@2781 264 if (ret != NULL) {
johnc@2781 265 if (offset == java_lang_ref_Reference::referent_offset && obj != NULL) {
johnc@2781 266 oop o = JNIHandles::resolve(obj);
johnc@2781 267 klassOop k = o->klass();
johnc@2781 268 if (instanceKlass::cast(k)->reference_type() != REF_NONE) {
johnc@2781 269 assert(instanceKlass::cast(k)->is_subclass_of(SystemDictionary::Reference_klass()), "sanity");
johnc@2781 270 needs_barrier = true;
johnc@2781 271 }
johnc@2781 272 }
johnc@2781 273 }
johnc@2781 274
johnc@2781 275 if (needs_barrier) {
johnc@2781 276 oop referent = JNIHandles::resolve(ret);
johnc@2781 277 G1SATBCardTableModRefBS::enqueue(referent);
johnc@2781 278 }
johnc@2781 279 }
johnc@2781 280 #endif // SERIALGC
johnc@2781 281 return ret;
duke@435 282 UNSAFE_END
duke@435 283
duke@435 284 UNSAFE_ENTRY(void, Unsafe_SetObject(JNIEnv *env, jobject unsafe, jobject obj, jlong offset, jobject x_h))
duke@435 285 UnsafeWrapper("Unsafe_SetObject");
duke@435 286 oop x = JNIHandles::resolve(x_h);
duke@435 287 oop p = JNIHandles::resolve(obj);
coleenp@548 288 if (UseCompressedOops) {
coleenp@548 289 oop_store((narrowOop*)index_oop_from_field_offset_long(p, offset), x);
coleenp@548 290 } else {
coleenp@548 291 oop_store((oop*)index_oop_from_field_offset_long(p, offset), x);
coleenp@548 292 }
duke@435 293 UNSAFE_END
duke@435 294
duke@435 295 UNSAFE_ENTRY(jobject, Unsafe_GetObjectVolatile(JNIEnv *env, jobject unsafe, jobject obj, jlong offset))
duke@435 296 UnsafeWrapper("Unsafe_GetObjectVolatile");
coleenp@548 297 GET_OOP_FIELD_VOLATILE(obj, offset, v)
duke@435 298 return JNIHandles::make_local(env, v);
duke@435 299 UNSAFE_END
duke@435 300
duke@435 301 UNSAFE_ENTRY(void, Unsafe_SetObjectVolatile(JNIEnv *env, jobject unsafe, jobject obj, jlong offset, jobject x_h))
duke@435 302 UnsafeWrapper("Unsafe_SetObjectVolatile");
duke@435 303 oop x = JNIHandles::resolve(x_h);
duke@435 304 oop p = JNIHandles::resolve(obj);
twisti@3101 305 // Catch VolatileCallSite.target stores (via
twisti@3101 306 // CallSite.setTargetVolatile) and check call site dependencies.
twisti@3101 307 if ((offset == java_lang_invoke_CallSite::target_offset_in_bytes()) && p->is_a(SystemDictionary::CallSite_klass())) {
twisti@3101 308 oop call_site = p;
twisti@3101 309 oop method_handle = x;
twisti@3101 310 assert(call_site ->is_a(SystemDictionary::CallSite_klass()), "must be");
twisti@3101 311 assert(method_handle->is_a(SystemDictionary::MethodHandle_klass()), "must be");
twisti@3101 312 {
twisti@3101 313 // Walk all nmethods depending on this call site.
twisti@3101 314 MutexLocker mu(Compile_lock, thread);
twisti@3101 315 Universe::flush_dependents_on(call_site, method_handle);
twisti@3101 316 }
twisti@3101 317 }
kvn@2434 318 void* addr = index_oop_from_field_offset_long(p, offset);
kvn@2434 319 OrderAccess::release();
coleenp@548 320 if (UseCompressedOops) {
kvn@2434 321 oop_store((narrowOop*)addr, x);
coleenp@548 322 } else {
kvn@2434 323 oop_store((oop*)addr, x);
coleenp@548 324 }
duke@435 325 OrderAccess::fence();
duke@435 326 UNSAFE_END
duke@435 327
kvn@2434 328 #if defined(SPARC) || defined(X86)
kvn@2434 329 // Sparc and X86 have atomic jlong (8 bytes) instructions
kvn@2434 330
kvn@2434 331 #else
kvn@2434 332 // Keep old code for platforms which may not have atomic jlong (8 bytes) instructions
kvn@2434 333
duke@435 334 // Volatile long versions must use locks if !VM_Version::supports_cx8().
duke@435 335 // support_cx8 is a surrogate for 'supports atomic long memory ops'.
duke@435 336
duke@435 337 UNSAFE_ENTRY(jlong, Unsafe_GetLongVolatile(JNIEnv *env, jobject unsafe, jobject obj, jlong offset))
duke@435 338 UnsafeWrapper("Unsafe_GetLongVolatile");
duke@435 339 {
duke@435 340 if (VM_Version::supports_cx8()) {
duke@435 341 GET_FIELD_VOLATILE(obj, offset, jlong, v);
duke@435 342 return v;
duke@435 343 }
duke@435 344 else {
duke@435 345 Handle p (THREAD, JNIHandles::resolve(obj));
duke@435 346 jlong* addr = (jlong*)(index_oop_from_field_offset_long(p(), offset));
duke@435 347 ObjectLocker ol(p, THREAD);
duke@435 348 jlong value = *addr;
duke@435 349 return value;
duke@435 350 }
duke@435 351 }
duke@435 352 UNSAFE_END
duke@435 353
duke@435 354 UNSAFE_ENTRY(void, Unsafe_SetLongVolatile(JNIEnv *env, jobject unsafe, jobject obj, jlong offset, jlong x))
duke@435 355 UnsafeWrapper("Unsafe_SetLongVolatile");
duke@435 356 {
duke@435 357 if (VM_Version::supports_cx8()) {
duke@435 358 SET_FIELD_VOLATILE(obj, offset, jlong, x);
duke@435 359 }
duke@435 360 else {
duke@435 361 Handle p (THREAD, JNIHandles::resolve(obj));
duke@435 362 jlong* addr = (jlong*)(index_oop_from_field_offset_long(p(), offset));
duke@435 363 ObjectLocker ol(p, THREAD);
duke@435 364 *addr = x;
duke@435 365 }
duke@435 366 }
duke@435 367 UNSAFE_END
duke@435 368
kvn@2434 369 #endif // not SPARC and not X86
duke@435 370
duke@435 371 #define DEFINE_GETSETOOP(jboolean, Boolean) \
duke@435 372 \
duke@435 373 UNSAFE_ENTRY(jboolean, Unsafe_Get##Boolean##140(JNIEnv *env, jobject unsafe, jobject obj, jint offset)) \
duke@435 374 UnsafeWrapper("Unsafe_Get"#Boolean); \
duke@435 375 if (obj == NULL) THROW_0(vmSymbols::java_lang_NullPointerException()); \
duke@435 376 GET_FIELD(obj, offset, jboolean, v); \
duke@435 377 return v; \
duke@435 378 UNSAFE_END \
duke@435 379 \
duke@435 380 UNSAFE_ENTRY(void, Unsafe_Set##Boolean##140(JNIEnv *env, jobject unsafe, jobject obj, jint offset, jboolean x)) \
duke@435 381 UnsafeWrapper("Unsafe_Set"#Boolean); \
duke@435 382 if (obj == NULL) THROW(vmSymbols::java_lang_NullPointerException()); \
duke@435 383 SET_FIELD(obj, offset, jboolean, x); \
duke@435 384 UNSAFE_END \
duke@435 385 \
duke@435 386 UNSAFE_ENTRY(jboolean, Unsafe_Get##Boolean(JNIEnv *env, jobject unsafe, jobject obj, jlong offset)) \
duke@435 387 UnsafeWrapper("Unsafe_Get"#Boolean); \
duke@435 388 GET_FIELD(obj, offset, jboolean, v); \
duke@435 389 return v; \
duke@435 390 UNSAFE_END \
duke@435 391 \
duke@435 392 UNSAFE_ENTRY(void, Unsafe_Set##Boolean(JNIEnv *env, jobject unsafe, jobject obj, jlong offset, jboolean x)) \
duke@435 393 UnsafeWrapper("Unsafe_Set"#Boolean); \
duke@435 394 SET_FIELD(obj, offset, jboolean, x); \
duke@435 395 UNSAFE_END \
duke@435 396 \
duke@435 397 // END DEFINE_GETSETOOP.
duke@435 398
kvn@2434 399 DEFINE_GETSETOOP(jboolean, Boolean)
kvn@2434 400 DEFINE_GETSETOOP(jbyte, Byte)
kvn@2434 401 DEFINE_GETSETOOP(jshort, Short);
kvn@2434 402 DEFINE_GETSETOOP(jchar, Char);
kvn@2434 403 DEFINE_GETSETOOP(jint, Int);
kvn@2434 404 DEFINE_GETSETOOP(jlong, Long);
kvn@2434 405 DEFINE_GETSETOOP(jfloat, Float);
kvn@2434 406 DEFINE_GETSETOOP(jdouble, Double);
kvn@2434 407
kvn@2434 408 #undef DEFINE_GETSETOOP
duke@435 409
duke@435 410 #define DEFINE_GETSETOOP_VOLATILE(jboolean, Boolean) \
duke@435 411 \
duke@435 412 UNSAFE_ENTRY(jboolean, Unsafe_Get##Boolean##Volatile(JNIEnv *env, jobject unsafe, jobject obj, jlong offset)) \
duke@435 413 UnsafeWrapper("Unsafe_Get"#Boolean); \
duke@435 414 GET_FIELD_VOLATILE(obj, offset, jboolean, v); \
duke@435 415 return v; \
duke@435 416 UNSAFE_END \
duke@435 417 \
duke@435 418 UNSAFE_ENTRY(void, Unsafe_Set##Boolean##Volatile(JNIEnv *env, jobject unsafe, jobject obj, jlong offset, jboolean x)) \
duke@435 419 UnsafeWrapper("Unsafe_Set"#Boolean); \
duke@435 420 SET_FIELD_VOLATILE(obj, offset, jboolean, x); \
duke@435 421 UNSAFE_END \
duke@435 422 \
duke@435 423 // END DEFINE_GETSETOOP_VOLATILE.
duke@435 424
duke@435 425 DEFINE_GETSETOOP_VOLATILE(jboolean, Boolean)
duke@435 426 DEFINE_GETSETOOP_VOLATILE(jbyte, Byte)
duke@435 427 DEFINE_GETSETOOP_VOLATILE(jshort, Short);
duke@435 428 DEFINE_GETSETOOP_VOLATILE(jchar, Char);
duke@435 429 DEFINE_GETSETOOP_VOLATILE(jint, Int);
duke@435 430 DEFINE_GETSETOOP_VOLATILE(jfloat, Float);
duke@435 431 DEFINE_GETSETOOP_VOLATILE(jdouble, Double);
duke@435 432
kvn@2434 433 #if defined(SPARC) || defined(X86)
kvn@2434 434 // Sparc and X86 have atomic jlong (8 bytes) instructions
kvn@2434 435 DEFINE_GETSETOOP_VOLATILE(jlong, Long);
kvn@2434 436 #endif
kvn@2434 437
kvn@2434 438 #undef DEFINE_GETSETOOP_VOLATILE
duke@435 439
duke@435 440 // The non-intrinsified versions of setOrdered just use setVolatile
duke@435 441
kvn@2434 442 UNSAFE_ENTRY(void, Unsafe_SetOrderedInt(JNIEnv *env, jobject unsafe, jobject obj, jlong offset, jint x))
kvn@2434 443 UnsafeWrapper("Unsafe_SetOrderedInt");
kvn@2434 444 SET_FIELD_VOLATILE(obj, offset, jint, x);
duke@435 445 UNSAFE_END
duke@435 446
duke@435 447 UNSAFE_ENTRY(void, Unsafe_SetOrderedObject(JNIEnv *env, jobject unsafe, jobject obj, jlong offset, jobject x_h))
duke@435 448 UnsafeWrapper("Unsafe_SetOrderedObject");
duke@435 449 oop x = JNIHandles::resolve(x_h);
duke@435 450 oop p = JNIHandles::resolve(obj);
kvn@2434 451 void* addr = index_oop_from_field_offset_long(p, offset);
kvn@2434 452 OrderAccess::release();
coleenp@548 453 if (UseCompressedOops) {
kvn@2434 454 oop_store((narrowOop*)addr, x);
coleenp@548 455 } else {
kvn@2434 456 oop_store((oop*)addr, x);
coleenp@548 457 }
duke@435 458 OrderAccess::fence();
duke@435 459 UNSAFE_END
duke@435 460
duke@435 461 UNSAFE_ENTRY(void, Unsafe_SetOrderedLong(JNIEnv *env, jobject unsafe, jobject obj, jlong offset, jlong x))
duke@435 462 UnsafeWrapper("Unsafe_SetOrderedLong");
kvn@2434 463 #if defined(SPARC) || defined(X86)
kvn@2434 464 // Sparc and X86 have atomic jlong (8 bytes) instructions
kvn@2434 465 SET_FIELD_VOLATILE(obj, offset, jlong, x);
kvn@2434 466 #else
kvn@2434 467 // Keep old code for platforms which may not have atomic long (8 bytes) instructions
duke@435 468 {
duke@435 469 if (VM_Version::supports_cx8()) {
duke@435 470 SET_FIELD_VOLATILE(obj, offset, jlong, x);
duke@435 471 }
duke@435 472 else {
duke@435 473 Handle p (THREAD, JNIHandles::resolve(obj));
duke@435 474 jlong* addr = (jlong*)(index_oop_from_field_offset_long(p(), offset));
duke@435 475 ObjectLocker ol(p, THREAD);
duke@435 476 *addr = x;
duke@435 477 }
duke@435 478 }
kvn@2434 479 #endif
duke@435 480 UNSAFE_END
duke@435 481
duke@435 482 ////// Data in the C heap.
duke@435 483
duke@435 484 // Note: These do not throw NullPointerException for bad pointers.
duke@435 485 // They just crash. Only a oop base pointer can generate a NullPointerException.
duke@435 486 //
duke@435 487 #define DEFINE_GETSETNATIVE(java_type, Type, native_type) \
duke@435 488 \
duke@435 489 UNSAFE_ENTRY(java_type, Unsafe_GetNative##Type(JNIEnv *env, jobject unsafe, jlong addr)) \
duke@435 490 UnsafeWrapper("Unsafe_GetNative"#Type); \
duke@435 491 void* p = addr_from_java(addr); \
duke@435 492 JavaThread* t = JavaThread::current(); \
duke@435 493 t->set_doing_unsafe_access(true); \
duke@435 494 java_type x = *(volatile native_type*)p; \
duke@435 495 t->set_doing_unsafe_access(false); \
duke@435 496 return x; \
duke@435 497 UNSAFE_END \
duke@435 498 \
duke@435 499 UNSAFE_ENTRY(void, Unsafe_SetNative##Type(JNIEnv *env, jobject unsafe, jlong addr, java_type x)) \
duke@435 500 UnsafeWrapper("Unsafe_SetNative"#Type); \
duke@435 501 JavaThread* t = JavaThread::current(); \
duke@435 502 t->set_doing_unsafe_access(true); \
duke@435 503 void* p = addr_from_java(addr); \
duke@435 504 *(volatile native_type*)p = x; \
duke@435 505 t->set_doing_unsafe_access(false); \
duke@435 506 UNSAFE_END \
duke@435 507 \
duke@435 508 // END DEFINE_GETSETNATIVE.
duke@435 509
duke@435 510 DEFINE_GETSETNATIVE(jbyte, Byte, signed char)
duke@435 511 DEFINE_GETSETNATIVE(jshort, Short, signed short);
duke@435 512 DEFINE_GETSETNATIVE(jchar, Char, unsigned short);
duke@435 513 DEFINE_GETSETNATIVE(jint, Int, jint);
duke@435 514 // no long -- handled specially
duke@435 515 DEFINE_GETSETNATIVE(jfloat, Float, float);
duke@435 516 DEFINE_GETSETNATIVE(jdouble, Double, double);
duke@435 517
duke@435 518 #undef DEFINE_GETSETNATIVE
duke@435 519
duke@435 520 UNSAFE_ENTRY(jlong, Unsafe_GetNativeLong(JNIEnv *env, jobject unsafe, jlong addr))
duke@435 521 UnsafeWrapper("Unsafe_GetNativeLong");
duke@435 522 JavaThread* t = JavaThread::current();
duke@435 523 // We do it this way to avoid problems with access to heap using 64
duke@435 524 // bit loads, as jlong in heap could be not 64-bit aligned, and on
duke@435 525 // some CPUs (SPARC) it leads to SIGBUS.
duke@435 526 t->set_doing_unsafe_access(true);
duke@435 527 void* p = addr_from_java(addr);
duke@435 528 jlong x;
duke@435 529 if (((intptr_t)p & 7) == 0) {
duke@435 530 // jlong is aligned, do a volatile access
duke@435 531 x = *(volatile jlong*)p;
duke@435 532 } else {
duke@435 533 jlong_accessor acc;
duke@435 534 acc.words[0] = ((volatile jint*)p)[0];
duke@435 535 acc.words[1] = ((volatile jint*)p)[1];
duke@435 536 x = acc.long_value;
duke@435 537 }
duke@435 538 t->set_doing_unsafe_access(false);
duke@435 539 return x;
duke@435 540 UNSAFE_END
duke@435 541
duke@435 542 UNSAFE_ENTRY(void, Unsafe_SetNativeLong(JNIEnv *env, jobject unsafe, jlong addr, jlong x))
duke@435 543 UnsafeWrapper("Unsafe_SetNativeLong");
duke@435 544 JavaThread* t = JavaThread::current();
duke@435 545 // see comment for Unsafe_GetNativeLong
duke@435 546 t->set_doing_unsafe_access(true);
duke@435 547 void* p = addr_from_java(addr);
duke@435 548 if (((intptr_t)p & 7) == 0) {
duke@435 549 // jlong is aligned, do a volatile access
duke@435 550 *(volatile jlong*)p = x;
duke@435 551 } else {
duke@435 552 jlong_accessor acc;
duke@435 553 acc.long_value = x;
duke@435 554 ((volatile jint*)p)[0] = acc.words[0];
duke@435 555 ((volatile jint*)p)[1] = acc.words[1];
duke@435 556 }
duke@435 557 t->set_doing_unsafe_access(false);
duke@435 558 UNSAFE_END
duke@435 559
duke@435 560
duke@435 561 UNSAFE_ENTRY(jlong, Unsafe_GetNativeAddress(JNIEnv *env, jobject unsafe, jlong addr))
duke@435 562 UnsafeWrapper("Unsafe_GetNativeAddress");
duke@435 563 void* p = addr_from_java(addr);
duke@435 564 return addr_to_java(*(void**)p);
duke@435 565 UNSAFE_END
duke@435 566
duke@435 567 UNSAFE_ENTRY(void, Unsafe_SetNativeAddress(JNIEnv *env, jobject unsafe, jlong addr, jlong x))
duke@435 568 UnsafeWrapper("Unsafe_SetNativeAddress");
duke@435 569 void* p = addr_from_java(addr);
duke@435 570 *(void**)p = addr_from_java(x);
duke@435 571 UNSAFE_END
duke@435 572
duke@435 573
duke@435 574 ////// Allocation requests
duke@435 575
duke@435 576 UNSAFE_ENTRY(jobject, Unsafe_AllocateInstance(JNIEnv *env, jobject unsafe, jclass cls))
duke@435 577 UnsafeWrapper("Unsafe_AllocateInstance");
duke@435 578 {
duke@435 579 ThreadToNativeFromVM ttnfv(thread);
duke@435 580 return env->AllocObject(cls);
duke@435 581 }
duke@435 582 UNSAFE_END
duke@435 583
duke@435 584 UNSAFE_ENTRY(jlong, Unsafe_AllocateMemory(JNIEnv *env, jobject unsafe, jlong size))
duke@435 585 UnsafeWrapper("Unsafe_AllocateMemory");
duke@435 586 size_t sz = (size_t)size;
duke@435 587 if (sz != (julong)size || size < 0) {
duke@435 588 THROW_0(vmSymbols::java_lang_IllegalArgumentException());
duke@435 589 }
duke@435 590 if (sz == 0) {
duke@435 591 return 0;
duke@435 592 }
duke@435 593 sz = round_to(sz, HeapWordSize);
duke@435 594 void* x = os::malloc(sz);
duke@435 595 if (x == NULL) {
duke@435 596 THROW_0(vmSymbols::java_lang_OutOfMemoryError());
duke@435 597 }
duke@435 598 //Copy::fill_to_words((HeapWord*)x, sz / HeapWordSize);
duke@435 599 return addr_to_java(x);
duke@435 600 UNSAFE_END
duke@435 601
duke@435 602 UNSAFE_ENTRY(jlong, Unsafe_ReallocateMemory(JNIEnv *env, jobject unsafe, jlong addr, jlong size))
duke@435 603 UnsafeWrapper("Unsafe_ReallocateMemory");
duke@435 604 void* p = addr_from_java(addr);
duke@435 605 size_t sz = (size_t)size;
duke@435 606 if (sz != (julong)size || size < 0) {
duke@435 607 THROW_0(vmSymbols::java_lang_IllegalArgumentException());
duke@435 608 }
duke@435 609 if (sz == 0) {
duke@435 610 os::free(p);
duke@435 611 return 0;
duke@435 612 }
duke@435 613 sz = round_to(sz, HeapWordSize);
duke@435 614 void* x = (p == NULL) ? os::malloc(sz) : os::realloc(p, sz);
duke@435 615 if (x == NULL) {
duke@435 616 THROW_0(vmSymbols::java_lang_OutOfMemoryError());
duke@435 617 }
duke@435 618 return addr_to_java(x);
duke@435 619 UNSAFE_END
duke@435 620
duke@435 621 UNSAFE_ENTRY(void, Unsafe_FreeMemory(JNIEnv *env, jobject unsafe, jlong addr))
duke@435 622 UnsafeWrapper("Unsafe_FreeMemory");
duke@435 623 void* p = addr_from_java(addr);
duke@435 624 if (p == NULL) {
duke@435 625 return;
duke@435 626 }
duke@435 627 os::free(p);
duke@435 628 UNSAFE_END
duke@435 629
duke@435 630 UNSAFE_ENTRY(void, Unsafe_SetMemory(JNIEnv *env, jobject unsafe, jlong addr, jlong size, jbyte value))
duke@435 631 UnsafeWrapper("Unsafe_SetMemory");
duke@435 632 size_t sz = (size_t)size;
duke@435 633 if (sz != (julong)size || size < 0) {
duke@435 634 THROW(vmSymbols::java_lang_IllegalArgumentException());
duke@435 635 }
duke@435 636 char* p = (char*) addr_from_java(addr);
duke@435 637 Copy::fill_to_memory_atomic(p, sz, value);
duke@435 638 UNSAFE_END
duke@435 639
duke@435 640 UNSAFE_ENTRY(void, Unsafe_SetMemory2(JNIEnv *env, jobject unsafe, jobject obj, jlong offset, jlong size, jbyte value))
duke@435 641 UnsafeWrapper("Unsafe_SetMemory");
duke@435 642 size_t sz = (size_t)size;
duke@435 643 if (sz != (julong)size || size < 0) {
duke@435 644 THROW(vmSymbols::java_lang_IllegalArgumentException());
duke@435 645 }
duke@435 646 oop base = JNIHandles::resolve(obj);
duke@435 647 void* p = index_oop_from_field_offset_long(base, offset);
duke@435 648 Copy::fill_to_memory_atomic(p, sz, value);
duke@435 649 UNSAFE_END
duke@435 650
duke@435 651 UNSAFE_ENTRY(void, Unsafe_CopyMemory(JNIEnv *env, jobject unsafe, jlong srcAddr, jlong dstAddr, jlong size))
duke@435 652 UnsafeWrapper("Unsafe_CopyMemory");
duke@435 653 if (size == 0) {
duke@435 654 return;
duke@435 655 }
duke@435 656 size_t sz = (size_t)size;
duke@435 657 if (sz != (julong)size || size < 0) {
duke@435 658 THROW(vmSymbols::java_lang_IllegalArgumentException());
duke@435 659 }
duke@435 660 void* src = addr_from_java(srcAddr);
duke@435 661 void* dst = addr_from_java(dstAddr);
duke@435 662 Copy::conjoint_memory_atomic(src, dst, sz);
duke@435 663 UNSAFE_END
duke@435 664
duke@435 665 UNSAFE_ENTRY(void, Unsafe_CopyMemory2(JNIEnv *env, jobject unsafe, jobject srcObj, jlong srcOffset, jobject dstObj, jlong dstOffset, jlong size))
duke@435 666 UnsafeWrapper("Unsafe_CopyMemory");
duke@435 667 if (size == 0) {
duke@435 668 return;
duke@435 669 }
duke@435 670 size_t sz = (size_t)size;
duke@435 671 if (sz != (julong)size || size < 0) {
duke@435 672 THROW(vmSymbols::java_lang_IllegalArgumentException());
duke@435 673 }
duke@435 674 oop srcp = JNIHandles::resolve(srcObj);
duke@435 675 oop dstp = JNIHandles::resolve(dstObj);
duke@435 676 if (dstp != NULL && !dstp->is_typeArray()) {
duke@435 677 // NYI: This works only for non-oop arrays at present.
duke@435 678 // Generalizing it would be reasonable, but requires card marking.
duke@435 679 // Also, autoboxing a Long from 0L in copyMemory(x,y, 0L,z, n) would be bad.
duke@435 680 THROW(vmSymbols::java_lang_IllegalArgumentException());
duke@435 681 }
duke@435 682 void* src = index_oop_from_field_offset_long(srcp, srcOffset);
duke@435 683 void* dst = index_oop_from_field_offset_long(dstp, dstOffset);
duke@435 684 Copy::conjoint_memory_atomic(src, dst, sz);
duke@435 685 UNSAFE_END
duke@435 686
duke@435 687
duke@435 688 ////// Random queries
duke@435 689
duke@435 690 // See comment at file start about UNSAFE_LEAF
duke@435 691 //UNSAFE_LEAF(jint, Unsafe_AddressSize())
duke@435 692 UNSAFE_ENTRY(jint, Unsafe_AddressSize(JNIEnv *env, jobject unsafe))
duke@435 693 UnsafeWrapper("Unsafe_AddressSize");
duke@435 694 return sizeof(void*);
duke@435 695 UNSAFE_END
duke@435 696
duke@435 697 // See comment at file start about UNSAFE_LEAF
duke@435 698 //UNSAFE_LEAF(jint, Unsafe_PageSize())
duke@435 699 UNSAFE_ENTRY(jint, Unsafe_PageSize(JNIEnv *env, jobject unsafe))
duke@435 700 UnsafeWrapper("Unsafe_PageSize");
duke@435 701 return os::vm_page_size();
duke@435 702 UNSAFE_END
duke@435 703
duke@435 704 jint find_field_offset(jobject field, int must_be_static, TRAPS) {
duke@435 705 if (field == NULL) {
duke@435 706 THROW_0(vmSymbols::java_lang_NullPointerException());
duke@435 707 }
duke@435 708
duke@435 709 oop reflected = JNIHandles::resolve_non_null(field);
duke@435 710 oop mirror = java_lang_reflect_Field::clazz(reflected);
duke@435 711 klassOop k = java_lang_Class::as_klassOop(mirror);
duke@435 712 int slot = java_lang_reflect_Field::slot(reflected);
duke@435 713 int modifiers = java_lang_reflect_Field::modifiers(reflected);
duke@435 714
duke@435 715 if (must_be_static >= 0) {
duke@435 716 int really_is_static = ((modifiers & JVM_ACC_STATIC) != 0);
duke@435 717 if (must_be_static != really_is_static) {
duke@435 718 THROW_0(vmSymbols::java_lang_IllegalArgumentException());
duke@435 719 }
duke@435 720 }
duke@435 721
duke@435 722 int offset = instanceKlass::cast(k)->offset_from_fields(slot);
duke@435 723 return field_offset_from_byte_offset(offset);
duke@435 724 }
duke@435 725
duke@435 726 UNSAFE_ENTRY(jlong, Unsafe_ObjectFieldOffset(JNIEnv *env, jobject unsafe, jobject field))
duke@435 727 UnsafeWrapper("Unsafe_ObjectFieldOffset");
duke@435 728 return find_field_offset(field, 0, THREAD);
duke@435 729 UNSAFE_END
duke@435 730
duke@435 731 UNSAFE_ENTRY(jlong, Unsafe_StaticFieldOffset(JNIEnv *env, jobject unsafe, jobject field))
duke@435 732 UnsafeWrapper("Unsafe_StaticFieldOffset");
duke@435 733 return find_field_offset(field, 1, THREAD);
duke@435 734 UNSAFE_END
duke@435 735
duke@435 736 UNSAFE_ENTRY(jobject, Unsafe_StaticFieldBaseFromField(JNIEnv *env, jobject unsafe, jobject field))
duke@435 737 UnsafeWrapper("Unsafe_StaticFieldBase");
duke@435 738 // Note: In this VM implementation, a field address is always a short
duke@435 739 // offset from the base of a a klass metaobject. Thus, the full dynamic
duke@435 740 // range of the return type is never used. However, some implementations
duke@435 741 // might put the static field inside an array shared by many classes,
duke@435 742 // or even at a fixed address, in which case the address could be quite
duke@435 743 // large. In that last case, this function would return NULL, since
duke@435 744 // the address would operate alone, without any base pointer.
duke@435 745
duke@435 746 if (field == NULL) THROW_0(vmSymbols::java_lang_NullPointerException());
duke@435 747
duke@435 748 oop reflected = JNIHandles::resolve_non_null(field);
duke@435 749 oop mirror = java_lang_reflect_Field::clazz(reflected);
duke@435 750 int modifiers = java_lang_reflect_Field::modifiers(reflected);
duke@435 751
duke@435 752 if ((modifiers & JVM_ACC_STATIC) == 0) {
duke@435 753 THROW_0(vmSymbols::java_lang_IllegalArgumentException());
duke@435 754 }
duke@435 755
never@2658 756 return JNIHandles::make_local(env, mirror);
duke@435 757 UNSAFE_END
duke@435 758
duke@435 759 //@deprecated
duke@435 760 UNSAFE_ENTRY(jint, Unsafe_FieldOffset(JNIEnv *env, jobject unsafe, jobject field))
duke@435 761 UnsafeWrapper("Unsafe_FieldOffset");
duke@435 762 // tries (but fails) to be polymorphic between static and non-static:
duke@435 763 jlong offset = find_field_offset(field, -1, THREAD);
duke@435 764 guarantee(offset == (jint)offset, "offset fits in 32 bits");
duke@435 765 return (jint)offset;
duke@435 766 UNSAFE_END
duke@435 767
duke@435 768 //@deprecated
duke@435 769 UNSAFE_ENTRY(jobject, Unsafe_StaticFieldBaseFromClass(JNIEnv *env, jobject unsafe, jobject clazz))
duke@435 770 UnsafeWrapper("Unsafe_StaticFieldBase");
duke@435 771 if (clazz == NULL) {
duke@435 772 THROW_0(vmSymbols::java_lang_NullPointerException());
duke@435 773 }
never@2658 774 return JNIHandles::make_local(env, JNIHandles::resolve_non_null(clazz));
duke@435 775 UNSAFE_END
duke@435 776
duke@435 777 UNSAFE_ENTRY(void, Unsafe_EnsureClassInitialized(JNIEnv *env, jobject unsafe, jobject clazz))
duke@435 778 UnsafeWrapper("Unsafe_EnsureClassInitialized");
duke@435 779 if (clazz == NULL) {
duke@435 780 THROW(vmSymbols::java_lang_NullPointerException());
duke@435 781 }
duke@435 782 oop mirror = JNIHandles::resolve_non_null(clazz);
duke@435 783 instanceKlass* k = instanceKlass::cast(java_lang_Class::as_klassOop(mirror));
duke@435 784 if (k != NULL) {
duke@435 785 k->initialize(CHECK);
duke@435 786 }
duke@435 787 UNSAFE_END
duke@435 788
duke@435 789 static void getBaseAndScale(int& base, int& scale, jclass acls, TRAPS) {
duke@435 790 if (acls == NULL) {
duke@435 791 THROW(vmSymbols::java_lang_NullPointerException());
duke@435 792 }
duke@435 793 oop mirror = JNIHandles::resolve_non_null(acls);
duke@435 794 klassOop k = java_lang_Class::as_klassOop(mirror);
duke@435 795 if (k == NULL || !k->klass_part()->oop_is_array()) {
duke@435 796 THROW(vmSymbols::java_lang_InvalidClassException());
duke@435 797 } else if (k->klass_part()->oop_is_objArray()) {
duke@435 798 base = arrayOopDesc::base_offset_in_bytes(T_OBJECT);
coleenp@548 799 scale = heapOopSize;
duke@435 800 } else if (k->klass_part()->oop_is_typeArray()) {
duke@435 801 typeArrayKlass* tak = typeArrayKlass::cast(k);
duke@435 802 base = tak->array_header_in_bytes();
duke@435 803 assert(base == arrayOopDesc::base_offset_in_bytes(tak->element_type()), "array_header_size semantics ok");
duke@435 804 scale = (1 << tak->log2_element_size());
duke@435 805 } else {
duke@435 806 ShouldNotReachHere();
duke@435 807 }
duke@435 808 }
duke@435 809
duke@435 810 UNSAFE_ENTRY(jint, Unsafe_ArrayBaseOffset(JNIEnv *env, jobject unsafe, jclass acls))
duke@435 811 UnsafeWrapper("Unsafe_ArrayBaseOffset");
duke@435 812 int base, scale;
duke@435 813 getBaseAndScale(base, scale, acls, CHECK_0);
duke@435 814 return field_offset_from_byte_offset(base);
duke@435 815 UNSAFE_END
duke@435 816
duke@435 817
duke@435 818 UNSAFE_ENTRY(jint, Unsafe_ArrayIndexScale(JNIEnv *env, jobject unsafe, jclass acls))
duke@435 819 UnsafeWrapper("Unsafe_ArrayIndexScale");
duke@435 820 int base, scale;
duke@435 821 getBaseAndScale(base, scale, acls, CHECK_0);
duke@435 822 // This VM packs both fields and array elements down to the byte.
duke@435 823 // But watch out: If this changes, so that array references for
duke@435 824 // a given primitive type (say, T_BOOLEAN) use different memory units
duke@435 825 // than fields, this method MUST return zero for such arrays.
duke@435 826 // For example, the VM used to store sub-word sized fields in full
duke@435 827 // words in the object layout, so that accessors like getByte(Object,int)
duke@435 828 // did not really do what one might expect for arrays. Therefore,
duke@435 829 // this function used to report a zero scale factor, so that the user
duke@435 830 // would know not to attempt to access sub-word array elements.
duke@435 831 // // Code for unpacked fields:
duke@435 832 // if (scale < wordSize) return 0;
duke@435 833
duke@435 834 // The following allows for a pretty general fieldOffset cookie scheme,
duke@435 835 // but requires it to be linear in byte offset.
duke@435 836 return field_offset_from_byte_offset(scale) - field_offset_from_byte_offset(0);
duke@435 837 UNSAFE_END
duke@435 838
duke@435 839
duke@435 840 static inline void throw_new(JNIEnv *env, const char *ename) {
duke@435 841 char buf[100];
duke@435 842 strcpy(buf, "java/lang/");
duke@435 843 strcat(buf, ename);
duke@435 844 jclass cls = env->FindClass(buf);
duke@435 845 char* msg = NULL;
duke@435 846 env->ThrowNew(cls, msg);
duke@435 847 }
duke@435 848
duke@435 849 static jclass Unsafe_DefineClass(JNIEnv *env, jstring name, jbyteArray data, int offset, int length, jobject loader, jobject pd) {
duke@435 850 {
duke@435 851 // Code lifted from JDK 1.3 ClassLoader.c
duke@435 852
duke@435 853 jbyte *body;
duke@435 854 char *utfName;
duke@435 855 jclass result = 0;
duke@435 856 char buf[128];
duke@435 857
duke@435 858 if (UsePerfData) {
duke@435 859 ClassLoader::unsafe_defineClassCallCounter()->inc();
duke@435 860 }
duke@435 861
duke@435 862 if (data == NULL) {
duke@435 863 throw_new(env, "NullPointerException");
duke@435 864 return 0;
duke@435 865 }
duke@435 866
duke@435 867 /* Work around 4153825. malloc crashes on Solaris when passed a
duke@435 868 * negative size.
duke@435 869 */
duke@435 870 if (length < 0) {
duke@435 871 throw_new(env, "ArrayIndexOutOfBoundsException");
duke@435 872 return 0;
duke@435 873 }
duke@435 874
duke@435 875 body = NEW_C_HEAP_ARRAY(jbyte, length);
duke@435 876
duke@435 877 if (body == 0) {
duke@435 878 throw_new(env, "OutOfMemoryError");
duke@435 879 return 0;
duke@435 880 }
duke@435 881
duke@435 882 env->GetByteArrayRegion(data, offset, length, body);
duke@435 883
duke@435 884 if (env->ExceptionOccurred())
duke@435 885 goto free_body;
duke@435 886
duke@435 887 if (name != NULL) {
duke@435 888 uint len = env->GetStringUTFLength(name);
duke@435 889 int unicode_len = env->GetStringLength(name);
duke@435 890 if (len >= sizeof(buf)) {
duke@435 891 utfName = NEW_C_HEAP_ARRAY(char, len + 1);
duke@435 892 if (utfName == NULL) {
duke@435 893 throw_new(env, "OutOfMemoryError");
duke@435 894 goto free_body;
duke@435 895 }
duke@435 896 } else {
duke@435 897 utfName = buf;
duke@435 898 }
duke@435 899 env->GetStringUTFRegion(name, 0, unicode_len, utfName);
duke@435 900 //VerifyFixClassname(utfName);
duke@435 901 for (uint i = 0; i < len; i++) {
duke@435 902 if (utfName[i] == '.') utfName[i] = '/';
duke@435 903 }
duke@435 904 } else {
duke@435 905 utfName = NULL;
duke@435 906 }
duke@435 907
duke@435 908 result = JVM_DefineClass(env, utfName, loader, body, length, pd);
duke@435 909
duke@435 910 if (utfName && utfName != buf)
duke@435 911 FREE_C_HEAP_ARRAY(char, utfName);
duke@435 912
duke@435 913 free_body:
duke@435 914 FREE_C_HEAP_ARRAY(jbyte, body);
duke@435 915 return result;
duke@435 916 }
duke@435 917 }
duke@435 918
duke@435 919
duke@435 920 UNSAFE_ENTRY(jclass, Unsafe_DefineClass0(JNIEnv *env, jobject unsafe, jstring name, jbyteArray data, int offset, int length))
duke@435 921 UnsafeWrapper("Unsafe_DefineClass");
duke@435 922 {
duke@435 923 ThreadToNativeFromVM ttnfv(thread);
duke@435 924
duke@435 925 int depthFromDefineClass0 = 1;
duke@435 926 jclass caller = JVM_GetCallerClass(env, depthFromDefineClass0);
duke@435 927 jobject loader = (caller == NULL) ? NULL : JVM_GetClassLoader(env, caller);
duke@435 928 jobject pd = (caller == NULL) ? NULL : JVM_GetProtectionDomain(env, caller);
duke@435 929
duke@435 930 return Unsafe_DefineClass(env, name, data, offset, length, loader, pd);
duke@435 931 }
duke@435 932 UNSAFE_END
duke@435 933
duke@435 934
duke@435 935 UNSAFE_ENTRY(jclass, Unsafe_DefineClass1(JNIEnv *env, jobject unsafe, jstring name, jbyteArray data, int offset, int length, jobject loader, jobject pd))
duke@435 936 UnsafeWrapper("Unsafe_DefineClass");
duke@435 937 {
duke@435 938 ThreadToNativeFromVM ttnfv(thread);
duke@435 939
duke@435 940 return Unsafe_DefineClass(env, name, data, offset, length, loader, pd);
duke@435 941 }
duke@435 942 UNSAFE_END
duke@435 943
jrose@866 944 #define DAC_Args CLS"[B["OBJ
jrose@866 945 // define a class but do not make it known to the class loader or system dictionary
jrose@866 946 // - host_class: supplies context for linkage, access control, protection domain, and class loader
jrose@866 947 // - data: bytes of a class file, a raw memory address (length gives the number of bytes)
jrose@866 948 // - cp_patches: where non-null entries exist, they replace corresponding CP entries in data
jrose@866 949
jrose@866 950 // When you load an anonymous class U, it works as if you changed its name just before loading,
jrose@866 951 // to a name that you will never use again. Since the name is lost, no other class can directly
jrose@866 952 // link to any member of U. Just after U is loaded, the only way to use it is reflectively,
jrose@866 953 // through java.lang.Class methods like Class.newInstance.
jrose@866 954
jrose@866 955 // Access checks for linkage sites within U continue to follow the same rules as for named classes.
jrose@866 956 // The package of an anonymous class is given by the package qualifier on the name under which it was loaded.
jrose@866 957 // An anonymous class also has special privileges to access any member of its host class.
jrose@866 958 // This is the main reason why this loading operation is unsafe. The purpose of this is to
jrose@866 959 // allow language implementations to simulate "open classes"; a host class in effect gets
jrose@866 960 // new code when an anonymous class is loaded alongside it. A less convenient but more
jrose@866 961 // standard way to do this is with reflection, which can also be set to ignore access
jrose@866 962 // restrictions.
jrose@866 963
jrose@866 964 // Access into an anonymous class is possible only through reflection. Therefore, there
jrose@866 965 // are no special access rules for calling into an anonymous class. The relaxed access
jrose@866 966 // rule for the host class is applied in the opposite direction: A host class reflectively
jrose@866 967 // access one of its anonymous classes.
jrose@866 968
jrose@866 969 // If you load the same bytecodes twice, you get two different classes. You can reload
jrose@866 970 // the same bytecodes with or without varying CP patches.
jrose@866 971
jrose@866 972 // By using the CP patching array, you can have a new anonymous class U2 refer to an older one U1.
jrose@866 973 // The bytecodes for U2 should refer to U1 by a symbolic name (doesn't matter what the name is).
jrose@866 974 // The CONSTANT_Class entry for that name can be patched to refer directly to U1.
jrose@866 975
jrose@866 976 // This allows, for example, U2 to use U1 as a superclass or super-interface, or as
jrose@866 977 // an outer class (so that U2 is an anonymous inner class of anonymous U1).
jrose@866 978 // It is not possible for a named class, or an older anonymous class, to refer by
jrose@866 979 // name (via its CP) to a newer anonymous class.
jrose@866 980
jrose@866 981 // CP patching may also be used to modify (i.e., hack) the names of methods, classes,
jrose@866 982 // or type descriptors used in the loaded anonymous class.
jrose@866 983
jrose@866 984 // Finally, CP patching may be used to introduce "live" objects into the constant pool,
jrose@866 985 // instead of "dead" strings. A compiled statement like println((Object)"hello") can
jrose@866 986 // be changed to println(greeting), where greeting is an arbitrary object created before
jrose@866 987 // the anonymous class is loaded. This is useful in dynamic languages, in which
jrose@866 988 // various kinds of metaobjects must be introduced as constants into bytecode.
jrose@866 989 // Note the cast (Object), which tells the verifier to expect an arbitrary object,
jrose@866 990 // not just a literal string. For such ldc instructions, the verifier uses the
jrose@866 991 // type Object instead of String, if the loaded constant is not in fact a String.
jrose@866 992
jrose@866 993 static oop
jrose@866 994 Unsafe_DefineAnonymousClass_impl(JNIEnv *env,
jrose@866 995 jclass host_class, jbyteArray data, jobjectArray cp_patches_jh,
jrose@866 996 HeapWord* *temp_alloc,
jrose@866 997 TRAPS) {
jrose@866 998
jrose@866 999 if (UsePerfData) {
jrose@866 1000 ClassLoader::unsafe_defineClassCallCounter()->inc();
jrose@866 1001 }
jrose@866 1002
jrose@866 1003 if (data == NULL) {
jrose@866 1004 THROW_0(vmSymbols::java_lang_NullPointerException());
jrose@866 1005 }
jrose@866 1006
jrose@866 1007 jint length = typeArrayOop(JNIHandles::resolve_non_null(data))->length();
jrose@866 1008 jint word_length = (length + sizeof(HeapWord)-1) / sizeof(HeapWord);
jrose@866 1009 HeapWord* body = NEW_C_HEAP_ARRAY(HeapWord, word_length);
jrose@866 1010 if (body == NULL) {
jrose@866 1011 THROW_0(vmSymbols::java_lang_OutOfMemoryError());
jrose@866 1012 }
jrose@866 1013
jrose@866 1014 // caller responsible to free it:
jrose@866 1015 (*temp_alloc) = body;
jrose@866 1016
jrose@866 1017 {
jrose@866 1018 jbyte* array_base = typeArrayOop(JNIHandles::resolve_non_null(data))->byte_at_addr(0);
jrose@866 1019 Copy::conjoint_words((HeapWord*) array_base, body, word_length);
jrose@866 1020 }
jrose@866 1021
jrose@866 1022 u1* class_bytes = (u1*) body;
jrose@866 1023 int class_bytes_length = (int) length;
jrose@866 1024 if (class_bytes_length < 0) class_bytes_length = 0;
jrose@866 1025 if (class_bytes == NULL
jrose@866 1026 || host_class == NULL
jrose@866 1027 || length != class_bytes_length)
jrose@866 1028 THROW_0(vmSymbols::java_lang_IllegalArgumentException());
jrose@866 1029
jrose@866 1030 objArrayHandle cp_patches_h;
jrose@866 1031 if (cp_patches_jh != NULL) {
jrose@866 1032 oop p = JNIHandles::resolve_non_null(cp_patches_jh);
jrose@866 1033 if (!p->is_objArray())
jrose@866 1034 THROW_0(vmSymbols::java_lang_IllegalArgumentException());
jrose@866 1035 cp_patches_h = objArrayHandle(THREAD, (objArrayOop)p);
jrose@866 1036 }
jrose@866 1037
jrose@866 1038 KlassHandle host_klass(THREAD, java_lang_Class::as_klassOop(JNIHandles::resolve_non_null(host_class)));
jrose@866 1039 const char* host_source = host_klass->external_name();
jrose@866 1040 Handle host_loader(THREAD, host_klass->class_loader());
jrose@866 1041 Handle host_domain(THREAD, host_klass->protection_domain());
jrose@866 1042
jrose@866 1043 GrowableArray<Handle>* cp_patches = NULL;
jrose@866 1044 if (cp_patches_h.not_null()) {
jrose@866 1045 int alen = cp_patches_h->length();
jrose@866 1046 for (int i = alen-1; i >= 0; i--) {
jrose@866 1047 oop p = cp_patches_h->obj_at(i);
jrose@866 1048 if (p != NULL) {
jrose@866 1049 Handle patch(THREAD, p);
jrose@866 1050 if (cp_patches == NULL)
jrose@866 1051 cp_patches = new GrowableArray<Handle>(i+1, i+1, Handle());
jrose@866 1052 cp_patches->at_put(i, patch);
jrose@866 1053 }
jrose@866 1054 }
jrose@866 1055 }
jrose@866 1056
jrose@866 1057 ClassFileStream st(class_bytes, class_bytes_length, (char*) host_source);
jrose@866 1058
jrose@866 1059 instanceKlassHandle anon_klass;
jrose@866 1060 {
coleenp@2497 1061 Symbol* no_class_name = NULL;
jrose@866 1062 klassOop anonk = SystemDictionary::parse_stream(no_class_name,
jrose@866 1063 host_loader, host_domain,
jrose@866 1064 &st, host_klass, cp_patches,
jrose@866 1065 CHECK_NULL);
jrose@866 1066 if (anonk == NULL) return NULL;
jrose@866 1067 anon_klass = instanceKlassHandle(THREAD, anonk);
jrose@866 1068 }
jrose@866 1069
jrose@866 1070 // let caller initialize it as needed...
jrose@866 1071
jrose@866 1072 return anon_klass->java_mirror();
jrose@866 1073 }
jrose@866 1074
jrose@866 1075 UNSAFE_ENTRY(jclass, Unsafe_DefineAnonymousClass(JNIEnv *env, jobject unsafe, jclass host_class, jbyteArray data, jobjectArray cp_patches_jh))
jrose@866 1076 {
jrose@866 1077 UnsafeWrapper("Unsafe_DefineAnonymousClass");
jrose@866 1078 ResourceMark rm(THREAD);
jrose@866 1079
jrose@866 1080 HeapWord* temp_alloc = NULL;
jrose@866 1081
jrose@866 1082 jobject res_jh = NULL;
jrose@866 1083
jrose@866 1084 { oop res_oop = Unsafe_DefineAnonymousClass_impl(env,
jrose@866 1085 host_class, data, cp_patches_jh,
jrose@866 1086 &temp_alloc, THREAD);
jrose@866 1087 if (res_oop != NULL)
jrose@866 1088 res_jh = JNIHandles::make_local(env, res_oop);
jrose@866 1089 }
jrose@866 1090
jrose@866 1091 // try/finally clause:
jrose@866 1092 if (temp_alloc != NULL) {
jrose@866 1093 FREE_C_HEAP_ARRAY(HeapWord, temp_alloc);
jrose@866 1094 }
jrose@866 1095
jrose@866 1096 return (jclass) res_jh;
jrose@866 1097 }
jrose@866 1098 UNSAFE_END
jrose@866 1099
jrose@866 1100
duke@435 1101
duke@435 1102 UNSAFE_ENTRY(void, Unsafe_MonitorEnter(JNIEnv *env, jobject unsafe, jobject jobj))
duke@435 1103 UnsafeWrapper("Unsafe_MonitorEnter");
duke@435 1104 {
duke@435 1105 if (jobj == NULL) {
duke@435 1106 THROW(vmSymbols::java_lang_NullPointerException());
duke@435 1107 }
duke@435 1108 Handle obj(thread, JNIHandles::resolve_non_null(jobj));
duke@435 1109 ObjectSynchronizer::jni_enter(obj, CHECK);
duke@435 1110 }
duke@435 1111 UNSAFE_END
duke@435 1112
duke@435 1113
duke@435 1114 UNSAFE_ENTRY(jboolean, Unsafe_TryMonitorEnter(JNIEnv *env, jobject unsafe, jobject jobj))
duke@435 1115 UnsafeWrapper("Unsafe_TryMonitorEnter");
duke@435 1116 {
duke@435 1117 if (jobj == NULL) {
duke@435 1118 THROW_(vmSymbols::java_lang_NullPointerException(), JNI_FALSE);
duke@435 1119 }
duke@435 1120 Handle obj(thread, JNIHandles::resolve_non_null(jobj));
duke@435 1121 bool res = ObjectSynchronizer::jni_try_enter(obj, CHECK_0);
duke@435 1122 return (res ? JNI_TRUE : JNI_FALSE);
duke@435 1123 }
duke@435 1124 UNSAFE_END
duke@435 1125
duke@435 1126
duke@435 1127 UNSAFE_ENTRY(void, Unsafe_MonitorExit(JNIEnv *env, jobject unsafe, jobject jobj))
duke@435 1128 UnsafeWrapper("Unsafe_MonitorExit");
duke@435 1129 {
duke@435 1130 if (jobj == NULL) {
duke@435 1131 THROW(vmSymbols::java_lang_NullPointerException());
duke@435 1132 }
duke@435 1133 Handle obj(THREAD, JNIHandles::resolve_non_null(jobj));
duke@435 1134 ObjectSynchronizer::jni_exit(obj(), CHECK);
duke@435 1135 }
duke@435 1136 UNSAFE_END
duke@435 1137
duke@435 1138
duke@435 1139 UNSAFE_ENTRY(void, Unsafe_ThrowException(JNIEnv *env, jobject unsafe, jthrowable thr))
duke@435 1140 UnsafeWrapper("Unsafe_ThrowException");
duke@435 1141 {
duke@435 1142 ThreadToNativeFromVM ttnfv(thread);
duke@435 1143 env->Throw(thr);
duke@435 1144 }
duke@435 1145 UNSAFE_END
duke@435 1146
duke@435 1147 // JSR166 ------------------------------------------------------------------
duke@435 1148
duke@435 1149 UNSAFE_ENTRY(jboolean, Unsafe_CompareAndSwapObject(JNIEnv *env, jobject unsafe, jobject obj, jlong offset, jobject e_h, jobject x_h))
duke@435 1150 UnsafeWrapper("Unsafe_CompareAndSwapObject");
duke@435 1151 oop x = JNIHandles::resolve(x_h);
duke@435 1152 oop e = JNIHandles::resolve(e_h);
duke@435 1153 oop p = JNIHandles::resolve(obj);
coleenp@548 1154 HeapWord* addr = (HeapWord *)index_oop_from_field_offset_long(p, offset);
ysr@1280 1155 if (UseCompressedOops) {
ysr@1280 1156 update_barrier_set_pre((narrowOop*)addr, e);
ysr@1280 1157 } else {
ysr@1280 1158 update_barrier_set_pre((oop*)addr, e);
ysr@1280 1159 }
coleenp@548 1160 oop res = oopDesc::atomic_compare_exchange_oop(x, addr, e);
coleenp@548 1161 jboolean success = (res == e);
duke@435 1162 if (success)
coleenp@548 1163 update_barrier_set((void*)addr, x);
duke@435 1164 return success;
duke@435 1165 UNSAFE_END
duke@435 1166
duke@435 1167 UNSAFE_ENTRY(jboolean, Unsafe_CompareAndSwapInt(JNIEnv *env, jobject unsafe, jobject obj, jlong offset, jint e, jint x))
duke@435 1168 UnsafeWrapper("Unsafe_CompareAndSwapInt");
duke@435 1169 oop p = JNIHandles::resolve(obj);
duke@435 1170 jint* addr = (jint *) index_oop_from_field_offset_long(p, offset);
duke@435 1171 return (jint)(Atomic::cmpxchg(x, addr, e)) == e;
duke@435 1172 UNSAFE_END
duke@435 1173
duke@435 1174 UNSAFE_ENTRY(jboolean, Unsafe_CompareAndSwapLong(JNIEnv *env, jobject unsafe, jobject obj, jlong offset, jlong e, jlong x))
duke@435 1175 UnsafeWrapper("Unsafe_CompareAndSwapLong");
duke@435 1176 Handle p (THREAD, JNIHandles::resolve(obj));
duke@435 1177 jlong* addr = (jlong*)(index_oop_from_field_offset_long(p(), offset));
duke@435 1178 if (VM_Version::supports_cx8())
duke@435 1179 return (jlong)(Atomic::cmpxchg(x, addr, e)) == e;
duke@435 1180 else {
duke@435 1181 jboolean success = false;
duke@435 1182 ObjectLocker ol(p, THREAD);
duke@435 1183 if (*addr == e) { *addr = x; success = true; }
duke@435 1184 return success;
duke@435 1185 }
duke@435 1186 UNSAFE_END
duke@435 1187
duke@435 1188 UNSAFE_ENTRY(void, Unsafe_Park(JNIEnv *env, jobject unsafe, jboolean isAbsolute, jlong time))
duke@435 1189 UnsafeWrapper("Unsafe_Park");
fparain@1759 1190 HS_DTRACE_PROBE3(hotspot, thread__park__begin, thread->parker(), (int) isAbsolute, time);
duke@435 1191 JavaThreadParkedState jtps(thread, time != 0);
duke@435 1192 thread->parker()->park(isAbsolute != 0, time);
fparain@1759 1193 HS_DTRACE_PROBE1(hotspot, thread__park__end, thread->parker());
duke@435 1194 UNSAFE_END
duke@435 1195
duke@435 1196 UNSAFE_ENTRY(void, Unsafe_Unpark(JNIEnv *env, jobject unsafe, jobject jthread))
duke@435 1197 UnsafeWrapper("Unsafe_Unpark");
duke@435 1198 Parker* p = NULL;
duke@435 1199 if (jthread != NULL) {
duke@435 1200 oop java_thread = JNIHandles::resolve_non_null(jthread);
duke@435 1201 if (java_thread != NULL) {
duke@435 1202 jlong lp = java_lang_Thread::park_event(java_thread);
duke@435 1203 if (lp != 0) {
duke@435 1204 // This cast is OK even though the jlong might have been read
duke@435 1205 // non-atomically on 32bit systems, since there, one word will
duke@435 1206 // always be zero anyway and the value set is always the same
duke@435 1207 p = (Parker*)addr_from_java(lp);
duke@435 1208 } else {
duke@435 1209 // Grab lock if apparently null or using older version of library
duke@435 1210 MutexLocker mu(Threads_lock);
duke@435 1211 java_thread = JNIHandles::resolve_non_null(jthread);
duke@435 1212 if (java_thread != NULL) {
duke@435 1213 JavaThread* thr = java_lang_Thread::thread(java_thread);
duke@435 1214 if (thr != NULL) {
duke@435 1215 p = thr->parker();
duke@435 1216 if (p != NULL) { // Bind to Java thread for next time.
duke@435 1217 java_lang_Thread::set_park_event(java_thread, addr_to_java(p));
duke@435 1218 }
duke@435 1219 }
duke@435 1220 }
duke@435 1221 }
duke@435 1222 }
duke@435 1223 }
duke@435 1224 if (p != NULL) {
fparain@1759 1225 HS_DTRACE_PROBE1(hotspot, thread__unpark, p);
duke@435 1226 p->unpark();
duke@435 1227 }
duke@435 1228 UNSAFE_END
duke@435 1229
duke@435 1230 UNSAFE_ENTRY(jint, Unsafe_Loadavg(JNIEnv *env, jobject unsafe, jdoubleArray loadavg, jint nelem))
duke@435 1231 UnsafeWrapper("Unsafe_Loadavg");
duke@435 1232 const int max_nelem = 3;
duke@435 1233 double la[max_nelem];
duke@435 1234 jint ret;
duke@435 1235
duke@435 1236 typeArrayOop a = typeArrayOop(JNIHandles::resolve_non_null(loadavg));
duke@435 1237 assert(a->is_typeArray(), "must be type array");
duke@435 1238
duke@435 1239 if (nelem < 0 || nelem > max_nelem || a->length() < nelem) {
duke@435 1240 ThreadToNativeFromVM ttnfv(thread);
duke@435 1241 throw_new(env, "ArrayIndexOutOfBoundsException");
duke@435 1242 return -1;
duke@435 1243 }
duke@435 1244
duke@435 1245 ret = os::loadavg(la, nelem);
duke@435 1246 if (ret == -1) return -1;
duke@435 1247
duke@435 1248 // if successful, ret is the number of samples actually retrieved.
duke@435 1249 assert(ret >= 0 && ret <= max_nelem, "Unexpected loadavg return value");
duke@435 1250 switch(ret) {
duke@435 1251 case 3: a->double_at_put(2, (jdouble)la[2]); // fall through
duke@435 1252 case 2: a->double_at_put(1, (jdouble)la[1]); // fall through
duke@435 1253 case 1: a->double_at_put(0, (jdouble)la[0]); break;
duke@435 1254 }
duke@435 1255 return ret;
duke@435 1256 UNSAFE_END
duke@435 1257
duke@435 1258 UNSAFE_ENTRY(void, Unsafe_PrefetchRead(JNIEnv* env, jclass ignored, jobject obj, jlong offset))
duke@435 1259 UnsafeWrapper("Unsafe_PrefetchRead");
duke@435 1260 oop p = JNIHandles::resolve(obj);
duke@435 1261 void* addr = index_oop_from_field_offset_long(p, 0);
duke@435 1262 Prefetch::read(addr, (intx)offset);
duke@435 1263 UNSAFE_END
duke@435 1264
duke@435 1265 UNSAFE_ENTRY(void, Unsafe_PrefetchWrite(JNIEnv* env, jclass ignored, jobject obj, jlong offset))
duke@435 1266 UnsafeWrapper("Unsafe_PrefetchWrite");
duke@435 1267 oop p = JNIHandles::resolve(obj);
duke@435 1268 void* addr = index_oop_from_field_offset_long(p, 0);
duke@435 1269 Prefetch::write(addr, (intx)offset);
duke@435 1270 UNSAFE_END
duke@435 1271
duke@435 1272
duke@435 1273 /// JVM_RegisterUnsafeMethods
duke@435 1274
duke@435 1275 #define ADR "J"
duke@435 1276
duke@435 1277 #define LANG "Ljava/lang/"
duke@435 1278
duke@435 1279 #define OBJ LANG"Object;"
duke@435 1280 #define CLS LANG"Class;"
duke@435 1281 #define CTR LANG"reflect/Constructor;"
duke@435 1282 #define FLD LANG"reflect/Field;"
duke@435 1283 #define MTH LANG"reflect/Method;"
duke@435 1284 #define THR LANG"Throwable;"
duke@435 1285
duke@435 1286 #define DC0_Args LANG"String;[BII"
duke@435 1287 #define DC1_Args DC0_Args LANG"ClassLoader;" "Ljava/security/ProtectionDomain;"
duke@435 1288
duke@435 1289 #define CC (char*) /*cast a literal from (const char*)*/
duke@435 1290 #define FN_PTR(f) CAST_FROM_FN_PTR(void*, &f)
duke@435 1291
duke@435 1292 // define deprecated accessors for compabitility with 1.4.0
duke@435 1293 #define DECLARE_GETSETOOP_140(Boolean, Z) \
duke@435 1294 {CC"get"#Boolean, CC"("OBJ"I)"#Z, FN_PTR(Unsafe_Get##Boolean##140)}, \
duke@435 1295 {CC"put"#Boolean, CC"("OBJ"I"#Z")V", FN_PTR(Unsafe_Set##Boolean##140)}
duke@435 1296
duke@435 1297 // Note: In 1.4.1, getObject and kin take both int and long offsets.
duke@435 1298 #define DECLARE_GETSETOOP_141(Boolean, Z) \
duke@435 1299 {CC"get"#Boolean, CC"("OBJ"J)"#Z, FN_PTR(Unsafe_Get##Boolean)}, \
duke@435 1300 {CC"put"#Boolean, CC"("OBJ"J"#Z")V", FN_PTR(Unsafe_Set##Boolean)}
duke@435 1301
duke@435 1302 // Note: In 1.5.0, there are volatile versions too
duke@435 1303 #define DECLARE_GETSETOOP(Boolean, Z) \
duke@435 1304 {CC"get"#Boolean, CC"("OBJ"J)"#Z, FN_PTR(Unsafe_Get##Boolean)}, \
duke@435 1305 {CC"put"#Boolean, CC"("OBJ"J"#Z")V", FN_PTR(Unsafe_Set##Boolean)}, \
duke@435 1306 {CC"get"#Boolean"Volatile", CC"("OBJ"J)"#Z, FN_PTR(Unsafe_Get##Boolean##Volatile)}, \
duke@435 1307 {CC"put"#Boolean"Volatile", CC"("OBJ"J"#Z")V", FN_PTR(Unsafe_Set##Boolean##Volatile)}
duke@435 1308
duke@435 1309
duke@435 1310 #define DECLARE_GETSETNATIVE(Byte, B) \
duke@435 1311 {CC"get"#Byte, CC"("ADR")"#B, FN_PTR(Unsafe_GetNative##Byte)}, \
duke@435 1312 {CC"put"#Byte, CC"("ADR#B")V", FN_PTR(Unsafe_SetNative##Byte)}
duke@435 1313
duke@435 1314
duke@435 1315
duke@435 1316 // %%% These are temporarily supported until the SDK sources
duke@435 1317 // contain the necessarily updated Unsafe.java.
duke@435 1318 static JNINativeMethod methods_140[] = {
duke@435 1319
duke@435 1320 {CC"getObject", CC"("OBJ"I)"OBJ"", FN_PTR(Unsafe_GetObject140)},
duke@435 1321 {CC"putObject", CC"("OBJ"I"OBJ")V", FN_PTR(Unsafe_SetObject140)},
duke@435 1322
duke@435 1323 DECLARE_GETSETOOP_140(Boolean, Z),
duke@435 1324 DECLARE_GETSETOOP_140(Byte, B),
duke@435 1325 DECLARE_GETSETOOP_140(Short, S),
duke@435 1326 DECLARE_GETSETOOP_140(Char, C),
duke@435 1327 DECLARE_GETSETOOP_140(Int, I),
duke@435 1328 DECLARE_GETSETOOP_140(Long, J),
duke@435 1329 DECLARE_GETSETOOP_140(Float, F),
duke@435 1330 DECLARE_GETSETOOP_140(Double, D),
duke@435 1331
duke@435 1332 DECLARE_GETSETNATIVE(Byte, B),
duke@435 1333 DECLARE_GETSETNATIVE(Short, S),
duke@435 1334 DECLARE_GETSETNATIVE(Char, C),
duke@435 1335 DECLARE_GETSETNATIVE(Int, I),
duke@435 1336 DECLARE_GETSETNATIVE(Long, J),
duke@435 1337 DECLARE_GETSETNATIVE(Float, F),
duke@435 1338 DECLARE_GETSETNATIVE(Double, D),
duke@435 1339
duke@435 1340 {CC"getAddress", CC"("ADR")"ADR, FN_PTR(Unsafe_GetNativeAddress)},
duke@435 1341 {CC"putAddress", CC"("ADR""ADR")V", FN_PTR(Unsafe_SetNativeAddress)},
duke@435 1342
duke@435 1343 {CC"allocateMemory", CC"(J)"ADR, FN_PTR(Unsafe_AllocateMemory)},
duke@435 1344 {CC"reallocateMemory", CC"("ADR"J)"ADR, FN_PTR(Unsafe_ReallocateMemory)},
duke@435 1345 // {CC"setMemory", CC"("ADR"JB)V", FN_PTR(Unsafe_SetMemory)},
duke@435 1346 // {CC"copyMemory", CC"("ADR ADR"J)V", FN_PTR(Unsafe_CopyMemory)},
duke@435 1347 {CC"freeMemory", CC"("ADR")V", FN_PTR(Unsafe_FreeMemory)},
duke@435 1348
duke@435 1349 {CC"fieldOffset", CC"("FLD")I", FN_PTR(Unsafe_FieldOffset)}, //deprecated
duke@435 1350 {CC"staticFieldBase", CC"("CLS")"OBJ, FN_PTR(Unsafe_StaticFieldBaseFromClass)}, //deprecated
duke@435 1351 {CC"ensureClassInitialized",CC"("CLS")V", FN_PTR(Unsafe_EnsureClassInitialized)},
duke@435 1352 {CC"arrayBaseOffset", CC"("CLS")I", FN_PTR(Unsafe_ArrayBaseOffset)},
duke@435 1353 {CC"arrayIndexScale", CC"("CLS")I", FN_PTR(Unsafe_ArrayIndexScale)},
duke@435 1354 {CC"addressSize", CC"()I", FN_PTR(Unsafe_AddressSize)},
duke@435 1355 {CC"pageSize", CC"()I", FN_PTR(Unsafe_PageSize)},
duke@435 1356
duke@435 1357 {CC"defineClass", CC"("DC0_Args")"CLS, FN_PTR(Unsafe_DefineClass0)},
duke@435 1358 {CC"defineClass", CC"("DC1_Args")"CLS, FN_PTR(Unsafe_DefineClass1)},
duke@435 1359 {CC"allocateInstance", CC"("CLS")"OBJ, FN_PTR(Unsafe_AllocateInstance)},
duke@435 1360 {CC"monitorEnter", CC"("OBJ")V", FN_PTR(Unsafe_MonitorEnter)},
duke@435 1361 {CC"monitorExit", CC"("OBJ")V", FN_PTR(Unsafe_MonitorExit)},
duke@435 1362 {CC"throwException", CC"("THR")V", FN_PTR(Unsafe_ThrowException)}
duke@435 1363 };
duke@435 1364
duke@435 1365 // These are the old methods prior to the JSR 166 changes in 1.5.0
duke@435 1366 static JNINativeMethod methods_141[] = {
duke@435 1367
duke@435 1368 {CC"getObject", CC"("OBJ"J)"OBJ"", FN_PTR(Unsafe_GetObject)},
duke@435 1369 {CC"putObject", CC"("OBJ"J"OBJ")V", FN_PTR(Unsafe_SetObject)},
duke@435 1370
duke@435 1371 DECLARE_GETSETOOP_141(Boolean, Z),
duke@435 1372 DECLARE_GETSETOOP_141(Byte, B),
duke@435 1373 DECLARE_GETSETOOP_141(Short, S),
duke@435 1374 DECLARE_GETSETOOP_141(Char, C),
duke@435 1375 DECLARE_GETSETOOP_141(Int, I),
duke@435 1376 DECLARE_GETSETOOP_141(Long, J),
duke@435 1377 DECLARE_GETSETOOP_141(Float, F),
duke@435 1378 DECLARE_GETSETOOP_141(Double, D),
duke@435 1379
duke@435 1380 DECLARE_GETSETNATIVE(Byte, B),
duke@435 1381 DECLARE_GETSETNATIVE(Short, S),
duke@435 1382 DECLARE_GETSETNATIVE(Char, C),
duke@435 1383 DECLARE_GETSETNATIVE(Int, I),
duke@435 1384 DECLARE_GETSETNATIVE(Long, J),
duke@435 1385 DECLARE_GETSETNATIVE(Float, F),
duke@435 1386 DECLARE_GETSETNATIVE(Double, D),
duke@435 1387
duke@435 1388 {CC"getAddress", CC"("ADR")"ADR, FN_PTR(Unsafe_GetNativeAddress)},
duke@435 1389 {CC"putAddress", CC"("ADR""ADR")V", FN_PTR(Unsafe_SetNativeAddress)},
duke@435 1390
duke@435 1391 {CC"allocateMemory", CC"(J)"ADR, FN_PTR(Unsafe_AllocateMemory)},
duke@435 1392 {CC"reallocateMemory", CC"("ADR"J)"ADR, FN_PTR(Unsafe_ReallocateMemory)},
duke@435 1393 // {CC"setMemory", CC"("ADR"JB)V", FN_PTR(Unsafe_SetMemory)},
duke@435 1394 // {CC"copyMemory", CC"("ADR ADR"J)V", FN_PTR(Unsafe_CopyMemory)},
duke@435 1395 {CC"freeMemory", CC"("ADR")V", FN_PTR(Unsafe_FreeMemory)},
duke@435 1396
duke@435 1397 {CC"objectFieldOffset", CC"("FLD")J", FN_PTR(Unsafe_ObjectFieldOffset)},
duke@435 1398 {CC"staticFieldOffset", CC"("FLD")J", FN_PTR(Unsafe_StaticFieldOffset)},
duke@435 1399 {CC"staticFieldBase", CC"("FLD")"OBJ, FN_PTR(Unsafe_StaticFieldBaseFromField)},
duke@435 1400 {CC"ensureClassInitialized",CC"("CLS")V", FN_PTR(Unsafe_EnsureClassInitialized)},
duke@435 1401 {CC"arrayBaseOffset", CC"("CLS")I", FN_PTR(Unsafe_ArrayBaseOffset)},
duke@435 1402 {CC"arrayIndexScale", CC"("CLS")I", FN_PTR(Unsafe_ArrayIndexScale)},
duke@435 1403 {CC"addressSize", CC"()I", FN_PTR(Unsafe_AddressSize)},
duke@435 1404 {CC"pageSize", CC"()I", FN_PTR(Unsafe_PageSize)},
duke@435 1405
duke@435 1406 {CC"defineClass", CC"("DC0_Args")"CLS, FN_PTR(Unsafe_DefineClass0)},
duke@435 1407 {CC"defineClass", CC"("DC1_Args")"CLS, FN_PTR(Unsafe_DefineClass1)},
duke@435 1408 {CC"allocateInstance", CC"("CLS")"OBJ, FN_PTR(Unsafe_AllocateInstance)},
duke@435 1409 {CC"monitorEnter", CC"("OBJ")V", FN_PTR(Unsafe_MonitorEnter)},
duke@435 1410 {CC"monitorExit", CC"("OBJ")V", FN_PTR(Unsafe_MonitorExit)},
duke@435 1411 {CC"throwException", CC"("THR")V", FN_PTR(Unsafe_ThrowException)}
duke@435 1412
duke@435 1413 };
duke@435 1414
duke@435 1415 // These are the old methods prior to the JSR 166 changes in 1.6.0
duke@435 1416 static JNINativeMethod methods_15[] = {
duke@435 1417
duke@435 1418 {CC"getObject", CC"("OBJ"J)"OBJ"", FN_PTR(Unsafe_GetObject)},
duke@435 1419 {CC"putObject", CC"("OBJ"J"OBJ")V", FN_PTR(Unsafe_SetObject)},
duke@435 1420 {CC"getObjectVolatile",CC"("OBJ"J)"OBJ"", FN_PTR(Unsafe_GetObjectVolatile)},
duke@435 1421 {CC"putObjectVolatile",CC"("OBJ"J"OBJ")V", FN_PTR(Unsafe_SetObjectVolatile)},
duke@435 1422
duke@435 1423
duke@435 1424 DECLARE_GETSETOOP(Boolean, Z),
duke@435 1425 DECLARE_GETSETOOP(Byte, B),
duke@435 1426 DECLARE_GETSETOOP(Short, S),
duke@435 1427 DECLARE_GETSETOOP(Char, C),
duke@435 1428 DECLARE_GETSETOOP(Int, I),
duke@435 1429 DECLARE_GETSETOOP(Long, J),
duke@435 1430 DECLARE_GETSETOOP(Float, F),
duke@435 1431 DECLARE_GETSETOOP(Double, D),
duke@435 1432
duke@435 1433 DECLARE_GETSETNATIVE(Byte, B),
duke@435 1434 DECLARE_GETSETNATIVE(Short, S),
duke@435 1435 DECLARE_GETSETNATIVE(Char, C),
duke@435 1436 DECLARE_GETSETNATIVE(Int, I),
duke@435 1437 DECLARE_GETSETNATIVE(Long, J),
duke@435 1438 DECLARE_GETSETNATIVE(Float, F),
duke@435 1439 DECLARE_GETSETNATIVE(Double, D),
duke@435 1440
duke@435 1441 {CC"getAddress", CC"("ADR")"ADR, FN_PTR(Unsafe_GetNativeAddress)},
duke@435 1442 {CC"putAddress", CC"("ADR""ADR")V", FN_PTR(Unsafe_SetNativeAddress)},
duke@435 1443
duke@435 1444 {CC"allocateMemory", CC"(J)"ADR, FN_PTR(Unsafe_AllocateMemory)},
duke@435 1445 {CC"reallocateMemory", CC"("ADR"J)"ADR, FN_PTR(Unsafe_ReallocateMemory)},
duke@435 1446 // {CC"setMemory", CC"("ADR"JB)V", FN_PTR(Unsafe_SetMemory)},
duke@435 1447 // {CC"copyMemory", CC"("ADR ADR"J)V", FN_PTR(Unsafe_CopyMemory)},
duke@435 1448 {CC"freeMemory", CC"("ADR")V", FN_PTR(Unsafe_FreeMemory)},
duke@435 1449
duke@435 1450 {CC"objectFieldOffset", CC"("FLD")J", FN_PTR(Unsafe_ObjectFieldOffset)},
duke@435 1451 {CC"staticFieldOffset", CC"("FLD")J", FN_PTR(Unsafe_StaticFieldOffset)},
duke@435 1452 {CC"staticFieldBase", CC"("FLD")"OBJ, FN_PTR(Unsafe_StaticFieldBaseFromField)},
duke@435 1453 {CC"ensureClassInitialized",CC"("CLS")V", FN_PTR(Unsafe_EnsureClassInitialized)},
duke@435 1454 {CC"arrayBaseOffset", CC"("CLS")I", FN_PTR(Unsafe_ArrayBaseOffset)},
duke@435 1455 {CC"arrayIndexScale", CC"("CLS")I", FN_PTR(Unsafe_ArrayIndexScale)},
duke@435 1456 {CC"addressSize", CC"()I", FN_PTR(Unsafe_AddressSize)},
duke@435 1457 {CC"pageSize", CC"()I", FN_PTR(Unsafe_PageSize)},
duke@435 1458
duke@435 1459 {CC"defineClass", CC"("DC0_Args")"CLS, FN_PTR(Unsafe_DefineClass0)},
duke@435 1460 {CC"defineClass", CC"("DC1_Args")"CLS, FN_PTR(Unsafe_DefineClass1)},
duke@435 1461 {CC"allocateInstance", CC"("CLS")"OBJ, FN_PTR(Unsafe_AllocateInstance)},
duke@435 1462 {CC"monitorEnter", CC"("OBJ")V", FN_PTR(Unsafe_MonitorEnter)},
duke@435 1463 {CC"monitorExit", CC"("OBJ")V", FN_PTR(Unsafe_MonitorExit)},
duke@435 1464 {CC"throwException", CC"("THR")V", FN_PTR(Unsafe_ThrowException)},
duke@435 1465 {CC"compareAndSwapObject", CC"("OBJ"J"OBJ""OBJ")Z", FN_PTR(Unsafe_CompareAndSwapObject)},
duke@435 1466 {CC"compareAndSwapInt", CC"("OBJ"J""I""I"")Z", FN_PTR(Unsafe_CompareAndSwapInt)},
duke@435 1467 {CC"compareAndSwapLong", CC"("OBJ"J""J""J"")Z", FN_PTR(Unsafe_CompareAndSwapLong)},
duke@435 1468 {CC"park", CC"(ZJ)V", FN_PTR(Unsafe_Park)},
duke@435 1469 {CC"unpark", CC"("OBJ")V", FN_PTR(Unsafe_Unpark)}
duke@435 1470
duke@435 1471 };
duke@435 1472
duke@435 1473 // These are the correct methods, moving forward:
duke@435 1474 static JNINativeMethod methods[] = {
duke@435 1475
duke@435 1476 {CC"getObject", CC"("OBJ"J)"OBJ"", FN_PTR(Unsafe_GetObject)},
duke@435 1477 {CC"putObject", CC"("OBJ"J"OBJ")V", FN_PTR(Unsafe_SetObject)},
duke@435 1478 {CC"getObjectVolatile",CC"("OBJ"J)"OBJ"", FN_PTR(Unsafe_GetObjectVolatile)},
duke@435 1479 {CC"putObjectVolatile",CC"("OBJ"J"OBJ")V", FN_PTR(Unsafe_SetObjectVolatile)},
duke@435 1480
duke@435 1481
duke@435 1482 DECLARE_GETSETOOP(Boolean, Z),
duke@435 1483 DECLARE_GETSETOOP(Byte, B),
duke@435 1484 DECLARE_GETSETOOP(Short, S),
duke@435 1485 DECLARE_GETSETOOP(Char, C),
duke@435 1486 DECLARE_GETSETOOP(Int, I),
duke@435 1487 DECLARE_GETSETOOP(Long, J),
duke@435 1488 DECLARE_GETSETOOP(Float, F),
duke@435 1489 DECLARE_GETSETOOP(Double, D),
duke@435 1490
duke@435 1491 DECLARE_GETSETNATIVE(Byte, B),
duke@435 1492 DECLARE_GETSETNATIVE(Short, S),
duke@435 1493 DECLARE_GETSETNATIVE(Char, C),
duke@435 1494 DECLARE_GETSETNATIVE(Int, I),
duke@435 1495 DECLARE_GETSETNATIVE(Long, J),
duke@435 1496 DECLARE_GETSETNATIVE(Float, F),
duke@435 1497 DECLARE_GETSETNATIVE(Double, D),
duke@435 1498
duke@435 1499 {CC"getAddress", CC"("ADR")"ADR, FN_PTR(Unsafe_GetNativeAddress)},
duke@435 1500 {CC"putAddress", CC"("ADR""ADR")V", FN_PTR(Unsafe_SetNativeAddress)},
duke@435 1501
duke@435 1502 {CC"allocateMemory", CC"(J)"ADR, FN_PTR(Unsafe_AllocateMemory)},
duke@435 1503 {CC"reallocateMemory", CC"("ADR"J)"ADR, FN_PTR(Unsafe_ReallocateMemory)},
duke@435 1504 // {CC"setMemory", CC"("ADR"JB)V", FN_PTR(Unsafe_SetMemory)},
duke@435 1505 // {CC"copyMemory", CC"("ADR ADR"J)V", FN_PTR(Unsafe_CopyMemory)},
duke@435 1506 {CC"freeMemory", CC"("ADR")V", FN_PTR(Unsafe_FreeMemory)},
duke@435 1507
duke@435 1508 {CC"objectFieldOffset", CC"("FLD")J", FN_PTR(Unsafe_ObjectFieldOffset)},
duke@435 1509 {CC"staticFieldOffset", CC"("FLD")J", FN_PTR(Unsafe_StaticFieldOffset)},
duke@435 1510 {CC"staticFieldBase", CC"("FLD")"OBJ, FN_PTR(Unsafe_StaticFieldBaseFromField)},
duke@435 1511 {CC"ensureClassInitialized",CC"("CLS")V", FN_PTR(Unsafe_EnsureClassInitialized)},
duke@435 1512 {CC"arrayBaseOffset", CC"("CLS")I", FN_PTR(Unsafe_ArrayBaseOffset)},
duke@435 1513 {CC"arrayIndexScale", CC"("CLS")I", FN_PTR(Unsafe_ArrayIndexScale)},
duke@435 1514 {CC"addressSize", CC"()I", FN_PTR(Unsafe_AddressSize)},
duke@435 1515 {CC"pageSize", CC"()I", FN_PTR(Unsafe_PageSize)},
duke@435 1516
duke@435 1517 {CC"defineClass", CC"("DC0_Args")"CLS, FN_PTR(Unsafe_DefineClass0)},
duke@435 1518 {CC"defineClass", CC"("DC1_Args")"CLS, FN_PTR(Unsafe_DefineClass1)},
duke@435 1519 {CC"allocateInstance", CC"("CLS")"OBJ, FN_PTR(Unsafe_AllocateInstance)},
duke@435 1520 {CC"monitorEnter", CC"("OBJ")V", FN_PTR(Unsafe_MonitorEnter)},
duke@435 1521 {CC"monitorExit", CC"("OBJ")V", FN_PTR(Unsafe_MonitorExit)},
duke@435 1522 {CC"tryMonitorEnter", CC"("OBJ")Z", FN_PTR(Unsafe_TryMonitorEnter)},
duke@435 1523 {CC"throwException", CC"("THR")V", FN_PTR(Unsafe_ThrowException)},
duke@435 1524 {CC"compareAndSwapObject", CC"("OBJ"J"OBJ""OBJ")Z", FN_PTR(Unsafe_CompareAndSwapObject)},
duke@435 1525 {CC"compareAndSwapInt", CC"("OBJ"J""I""I"")Z", FN_PTR(Unsafe_CompareAndSwapInt)},
duke@435 1526 {CC"compareAndSwapLong", CC"("OBJ"J""J""J"")Z", FN_PTR(Unsafe_CompareAndSwapLong)},
duke@435 1527 {CC"putOrderedObject", CC"("OBJ"J"OBJ")V", FN_PTR(Unsafe_SetOrderedObject)},
duke@435 1528 {CC"putOrderedInt", CC"("OBJ"JI)V", FN_PTR(Unsafe_SetOrderedInt)},
duke@435 1529 {CC"putOrderedLong", CC"("OBJ"JJ)V", FN_PTR(Unsafe_SetOrderedLong)},
duke@435 1530 {CC"park", CC"(ZJ)V", FN_PTR(Unsafe_Park)},
duke@435 1531 {CC"unpark", CC"("OBJ")V", FN_PTR(Unsafe_Unpark)}
duke@435 1532
duke@435 1533 // {CC"getLoadAverage", CC"([DI)I", FN_PTR(Unsafe_Loadavg)},
duke@435 1534
duke@435 1535 // {CC"prefetchRead", CC"("OBJ"J)V", FN_PTR(Unsafe_PrefetchRead)},
duke@435 1536 // {CC"prefetchWrite", CC"("OBJ"J)V", FN_PTR(Unsafe_PrefetchWrite)}
duke@435 1537 // {CC"prefetchReadStatic", CC"("OBJ"J)V", FN_PTR(Unsafe_PrefetchRead)},
duke@435 1538 // {CC"prefetchWriteStatic",CC"("OBJ"J)V", FN_PTR(Unsafe_PrefetchWrite)}
duke@435 1539
duke@435 1540 };
duke@435 1541
duke@435 1542 JNINativeMethod loadavg_method[] = {
duke@435 1543 {CC"getLoadAverage", CC"([DI)I", FN_PTR(Unsafe_Loadavg)}
duke@435 1544 };
duke@435 1545
duke@435 1546 JNINativeMethod prefetch_methods[] = {
duke@435 1547 {CC"prefetchRead", CC"("OBJ"J)V", FN_PTR(Unsafe_PrefetchRead)},
duke@435 1548 {CC"prefetchWrite", CC"("OBJ"J)V", FN_PTR(Unsafe_PrefetchWrite)},
duke@435 1549 {CC"prefetchReadStatic", CC"("OBJ"J)V", FN_PTR(Unsafe_PrefetchRead)},
duke@435 1550 {CC"prefetchWriteStatic",CC"("OBJ"J)V", FN_PTR(Unsafe_PrefetchWrite)}
duke@435 1551 };
duke@435 1552
duke@435 1553 JNINativeMethod memcopy_methods[] = {
duke@435 1554 {CC"copyMemory", CC"("OBJ"J"OBJ"JJ)V", FN_PTR(Unsafe_CopyMemory2)},
duke@435 1555 {CC"setMemory", CC"("OBJ"JJB)V", FN_PTR(Unsafe_SetMemory2)}
duke@435 1556 };
duke@435 1557
duke@435 1558 JNINativeMethod memcopy_methods_15[] = {
duke@435 1559 {CC"setMemory", CC"("ADR"JB)V", FN_PTR(Unsafe_SetMemory)},
duke@435 1560 {CC"copyMemory", CC"("ADR ADR"J)V", FN_PTR(Unsafe_CopyMemory)}
duke@435 1561 };
duke@435 1562
jrose@866 1563 JNINativeMethod anonk_methods[] = {
jrose@866 1564 {CC"defineAnonymousClass", CC"("DAC_Args")"CLS, FN_PTR(Unsafe_DefineAnonymousClass)},
jrose@866 1565 };
duke@435 1566
duke@435 1567 #undef CC
duke@435 1568 #undef FN_PTR
duke@435 1569
duke@435 1570 #undef ADR
duke@435 1571 #undef LANG
duke@435 1572 #undef OBJ
duke@435 1573 #undef CLS
duke@435 1574 #undef CTR
duke@435 1575 #undef FLD
duke@435 1576 #undef MTH
duke@435 1577 #undef THR
duke@435 1578 #undef DC0_Args
duke@435 1579 #undef DC1_Args
duke@435 1580
duke@435 1581 #undef DECLARE_GETSETOOP
duke@435 1582 #undef DECLARE_GETSETNATIVE
duke@435 1583
duke@435 1584
duke@435 1585 // This one function is exported, used by NativeLookup.
duke@435 1586 // The Unsafe_xxx functions above are called only from the interpreter.
duke@435 1587 // The optimizer looks at names and signatures to recognize
duke@435 1588 // individual functions.
duke@435 1589
duke@435 1590 JVM_ENTRY(void, JVM_RegisterUnsafeMethods(JNIEnv *env, jclass unsafecls))
duke@435 1591 UnsafeWrapper("JVM_RegisterUnsafeMethods");
duke@435 1592 {
duke@435 1593 ThreadToNativeFromVM ttnfv(thread);
duke@435 1594 {
duke@435 1595 env->RegisterNatives(unsafecls, loadavg_method, sizeof(loadavg_method)/sizeof(JNINativeMethod));
duke@435 1596 if (env->ExceptionOccurred()) {
duke@435 1597 if (PrintMiscellaneous && (Verbose || WizardMode)) {
duke@435 1598 tty->print_cr("Warning: SDK 1.6 Unsafe.loadavg not found.");
duke@435 1599 }
duke@435 1600 env->ExceptionClear();
duke@435 1601 }
duke@435 1602 }
duke@435 1603 {
duke@435 1604 env->RegisterNatives(unsafecls, prefetch_methods, sizeof(prefetch_methods)/sizeof(JNINativeMethod));
duke@435 1605 if (env->ExceptionOccurred()) {
duke@435 1606 if (PrintMiscellaneous && (Verbose || WizardMode)) {
duke@435 1607 tty->print_cr("Warning: SDK 1.6 Unsafe.prefetchRead/Write not found.");
duke@435 1608 }
duke@435 1609 env->ExceptionClear();
duke@435 1610 }
duke@435 1611 }
duke@435 1612 {
duke@435 1613 env->RegisterNatives(unsafecls, memcopy_methods, sizeof(memcopy_methods)/sizeof(JNINativeMethod));
duke@435 1614 if (env->ExceptionOccurred()) {
duke@435 1615 if (PrintMiscellaneous && (Verbose || WizardMode)) {
duke@435 1616 tty->print_cr("Warning: SDK 1.7 Unsafe.copyMemory not found.");
duke@435 1617 }
duke@435 1618 env->ExceptionClear();
duke@435 1619 env->RegisterNatives(unsafecls, memcopy_methods_15, sizeof(memcopy_methods_15)/sizeof(JNINativeMethod));
duke@435 1620 if (env->ExceptionOccurred()) {
duke@435 1621 if (PrintMiscellaneous && (Verbose || WizardMode)) {
duke@435 1622 tty->print_cr("Warning: SDK 1.5 Unsafe.copyMemory not found.");
duke@435 1623 }
duke@435 1624 env->ExceptionClear();
duke@435 1625 }
duke@435 1626 }
duke@435 1627 }
twisti@2698 1628 if (EnableInvokeDynamic) {
jrose@866 1629 env->RegisterNatives(unsafecls, anonk_methods, sizeof(anonk_methods)/sizeof(JNINativeMethod));
jrose@866 1630 if (env->ExceptionOccurred()) {
jrose@866 1631 if (PrintMiscellaneous && (Verbose || WizardMode)) {
jrose@866 1632 tty->print_cr("Warning: SDK 1.7 Unsafe.defineClass (anonymous version) not found.");
jrose@866 1633 }
jrose@866 1634 env->ExceptionClear();
jrose@866 1635 }
jrose@866 1636 }
duke@435 1637 int status = env->RegisterNatives(unsafecls, methods, sizeof(methods)/sizeof(JNINativeMethod));
duke@435 1638 if (env->ExceptionOccurred()) {
duke@435 1639 if (PrintMiscellaneous && (Verbose || WizardMode)) {
duke@435 1640 tty->print_cr("Warning: SDK 1.6 version of Unsafe not found.");
duke@435 1641 }
duke@435 1642 env->ExceptionClear();
duke@435 1643 // %%% For now, be backward compatible with an older class:
duke@435 1644 status = env->RegisterNatives(unsafecls, methods_15, sizeof(methods_15)/sizeof(JNINativeMethod));
duke@435 1645 }
duke@435 1646 if (env->ExceptionOccurred()) {
duke@435 1647 if (PrintMiscellaneous && (Verbose || WizardMode)) {
duke@435 1648 tty->print_cr("Warning: SDK 1.5 version of Unsafe not found.");
duke@435 1649 }
duke@435 1650 env->ExceptionClear();
duke@435 1651 // %%% For now, be backward compatible with an older class:
duke@435 1652 status = env->RegisterNatives(unsafecls, methods_141, sizeof(methods_141)/sizeof(JNINativeMethod));
duke@435 1653 }
duke@435 1654 if (env->ExceptionOccurred()) {
duke@435 1655 if (PrintMiscellaneous && (Verbose || WizardMode)) {
duke@435 1656 tty->print_cr("Warning: SDK 1.4.1 version of Unsafe not found.");
duke@435 1657 }
duke@435 1658 env->ExceptionClear();
duke@435 1659 // %%% For now, be backward compatible with an older class:
duke@435 1660 status = env->RegisterNatives(unsafecls, methods_140, sizeof(methods_140)/sizeof(JNINativeMethod));
duke@435 1661 }
duke@435 1662 guarantee(status == 0, "register unsafe natives");
duke@435 1663 }
duke@435 1664 JVM_END

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