src/share/vm/oops/oop.inline.hpp

Thu, 13 Jan 2011 22:15:41 -0800

author
never
date
Thu, 13 Jan 2011 22:15:41 -0800
changeset 2462
8012aa3ccede
parent 2314
f95d63e2154a
child 2497
3582bf76420e
permissions
-rw-r--r--

4926272: methodOopDesc::method_from_bcp is unsafe
Reviewed-by: coleenp, jrose, kvn, dcubed

duke@435 1 /*
stefank@2314 2 * Copyright (c) 1997, 2010, 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 #ifndef SHARE_VM_OOPS_OOP_INLINE_HPP
stefank@2314 26 #define SHARE_VM_OOPS_OOP_INLINE_HPP
stefank@2314 27
stefank@2314 28 #include "gc_implementation/shared/ageTable.hpp"
stefank@2314 29 #include "gc_implementation/shared/markSweep.inline.hpp"
stefank@2314 30 #include "gc_interface/collectedHeap.inline.hpp"
stefank@2314 31 #include "memory/barrierSet.inline.hpp"
stefank@2314 32 #include "memory/cardTableModRefBS.hpp"
stefank@2314 33 #include "memory/compactingPermGenGen.hpp"
stefank@2314 34 #include "memory/genCollectedHeap.hpp"
stefank@2314 35 #include "memory/generation.hpp"
stefank@2314 36 #include "memory/permGen.hpp"
stefank@2314 37 #include "memory/specialized_oop_closures.hpp"
stefank@2314 38 #include "oops/arrayKlass.hpp"
stefank@2314 39 #include "oops/arrayOop.hpp"
stefank@2314 40 #include "oops/klass.hpp"
stefank@2314 41 #include "oops/klassOop.hpp"
stefank@2314 42 #include "oops/markOop.inline.hpp"
stefank@2314 43 #include "oops/oop.hpp"
stefank@2314 44 #include "runtime/atomic.hpp"
stefank@2314 45 #include "runtime/os.hpp"
stefank@2314 46 #ifdef TARGET_ARCH_x86
stefank@2314 47 # include "bytes_x86.hpp"
stefank@2314 48 #endif
stefank@2314 49 #ifdef TARGET_ARCH_sparc
stefank@2314 50 # include "bytes_sparc.hpp"
stefank@2314 51 #endif
stefank@2314 52 #ifdef TARGET_ARCH_zero
stefank@2314 53 # include "bytes_zero.hpp"
stefank@2314 54 #endif
stefank@2314 55
duke@435 56 // Implementation of all inlined member functions defined in oop.hpp
duke@435 57 // We need a separate file to avoid circular references
duke@435 58
duke@435 59 inline void oopDesc::release_set_mark(markOop m) {
duke@435 60 OrderAccess::release_store_ptr(&_mark, m);
duke@435 61 }
duke@435 62
duke@435 63 inline markOop oopDesc::cas_set_mark(markOop new_mark, markOop old_mark) {
duke@435 64 return (markOop) Atomic::cmpxchg_ptr(new_mark, &_mark, old_mark);
duke@435 65 }
duke@435 66
coleenp@548 67 inline klassOop oopDesc::klass() const {
coleenp@548 68 if (UseCompressedOops) {
coleenp@548 69 return (klassOop)decode_heap_oop_not_null(_metadata._compressed_klass);
coleenp@602 70 } else {
coleenp@602 71 return _metadata._klass;
coleenp@602 72 }
coleenp@602 73 }
coleenp@602 74
coleenp@602 75 inline klassOop oopDesc::klass_or_null() const volatile {
coleenp@602 76 // can be NULL in CMS
coleenp@602 77 if (UseCompressedOops) {
coleenp@602 78 return (klassOop)decode_heap_oop(_metadata._compressed_klass);
coleenp@548 79 } else {
coleenp@548 80 return _metadata._klass;
coleenp@548 81 }
coleenp@548 82 }
coleenp@548 83
coleenp@548 84 inline int oopDesc::klass_gap_offset_in_bytes() {
coleenp@548 85 assert(UseCompressedOops, "only applicable to compressed headers");
coleenp@548 86 return oopDesc::klass_offset_in_bytes() + sizeof(narrowOop);
coleenp@548 87 }
coleenp@548 88
coleenp@548 89 inline oop* oopDesc::klass_addr() {
coleenp@548 90 // Only used internally and with CMS and will not work with
coleenp@548 91 // UseCompressedOops
coleenp@548 92 assert(!UseCompressedOops, "only supported with uncompressed oops");
coleenp@548 93 return (oop*) &_metadata._klass;
coleenp@548 94 }
coleenp@548 95
coleenp@548 96 inline narrowOop* oopDesc::compressed_klass_addr() {
coleenp@548 97 assert(UseCompressedOops, "only called by compressed oops");
coleenp@548 98 return (narrowOop*) &_metadata._compressed_klass;
coleenp@548 99 }
coleenp@548 100
duke@435 101 inline void oopDesc::set_klass(klassOop k) {
duke@435 102 // since klasses are promoted no store check is needed
duke@435 103 assert(Universe::is_bootstrapping() || k != NULL, "must be a real klassOop");
duke@435 104 assert(Universe::is_bootstrapping() || k->is_klass(), "not a klassOop");
coleenp@548 105 if (UseCompressedOops) {
coleenp@548 106 oop_store_without_check(compressed_klass_addr(), (oop)k);
coleenp@548 107 } else {
coleenp@548 108 oop_store_without_check(klass_addr(), (oop) k);
coleenp@548 109 }
duke@435 110 }
duke@435 111
coleenp@602 112 inline int oopDesc::klass_gap() const {
coleenp@602 113 return *(int*)(((intptr_t)this) + klass_gap_offset_in_bytes());
coleenp@602 114 }
coleenp@602 115
coleenp@602 116 inline void oopDesc::set_klass_gap(int v) {
coleenp@602 117 if (UseCompressedOops) {
coleenp@602 118 *(int*)(((intptr_t)this) + klass_gap_offset_in_bytes()) = v;
coleenp@602 119 }
coleenp@602 120 }
coleenp@602 121
duke@435 122 inline void oopDesc::set_klass_to_list_ptr(oop k) {
duke@435 123 // This is only to be used during GC, for from-space objects, so no
duke@435 124 // barrier is needed.
coleenp@548 125 if (UseCompressedOops) {
ysr@889 126 _metadata._compressed_klass = encode_heap_oop(k); // may be null (parnew overflow handling)
coleenp@548 127 } else {
coleenp@548 128 _metadata._klass = (klassOop)k;
coleenp@548 129 }
duke@435 130 }
duke@435 131
duke@435 132 inline void oopDesc::init_mark() { set_mark(markOopDesc::prototype_for_object(this)); }
duke@435 133 inline Klass* oopDesc::blueprint() const { return klass()->klass_part(); }
duke@435 134
duke@435 135 inline bool oopDesc::is_a(klassOop k) const { return blueprint()->is_subtype_of(k); }
duke@435 136
duke@435 137 inline bool oopDesc::is_instance() const { return blueprint()->oop_is_instance(); }
duke@435 138 inline bool oopDesc::is_instanceRef() const { return blueprint()->oop_is_instanceRef(); }
duke@435 139 inline bool oopDesc::is_array() const { return blueprint()->oop_is_array(); }
duke@435 140 inline bool oopDesc::is_objArray() const { return blueprint()->oop_is_objArray(); }
duke@435 141 inline bool oopDesc::is_typeArray() const { return blueprint()->oop_is_typeArray(); }
duke@435 142 inline bool oopDesc::is_javaArray() const { return blueprint()->oop_is_javaArray(); }
duke@435 143 inline bool oopDesc::is_symbol() const { return blueprint()->oop_is_symbol(); }
duke@435 144 inline bool oopDesc::is_klass() const { return blueprint()->oop_is_klass(); }
duke@435 145 inline bool oopDesc::is_thread() const { return blueprint()->oop_is_thread(); }
duke@435 146 inline bool oopDesc::is_method() const { return blueprint()->oop_is_method(); }
duke@435 147 inline bool oopDesc::is_constMethod() const { return blueprint()->oop_is_constMethod(); }
duke@435 148 inline bool oopDesc::is_methodData() const { return blueprint()->oop_is_methodData(); }
duke@435 149 inline bool oopDesc::is_constantPool() const { return blueprint()->oop_is_constantPool(); }
duke@435 150 inline bool oopDesc::is_constantPoolCache() const { return blueprint()->oop_is_constantPoolCache(); }
duke@435 151 inline bool oopDesc::is_compiledICHolder() const { return blueprint()->oop_is_compiledICHolder(); }
duke@435 152
duke@435 153 inline void* oopDesc::field_base(int offset) const { return (void*)&((char*)this)[offset]; }
duke@435 154
coleenp@548 155 template <class T> inline T* oopDesc::obj_field_addr(int offset) const { return (T*)field_base(offset); }
duke@435 156 inline jbyte* oopDesc::byte_field_addr(int offset) const { return (jbyte*) field_base(offset); }
duke@435 157 inline jchar* oopDesc::char_field_addr(int offset) const { return (jchar*) field_base(offset); }
duke@435 158 inline jboolean* oopDesc::bool_field_addr(int offset) const { return (jboolean*)field_base(offset); }
duke@435 159 inline jint* oopDesc::int_field_addr(int offset) const { return (jint*) field_base(offset); }
duke@435 160 inline jshort* oopDesc::short_field_addr(int offset) const { return (jshort*) field_base(offset); }
duke@435 161 inline jlong* oopDesc::long_field_addr(int offset) const { return (jlong*) field_base(offset); }
duke@435 162 inline jfloat* oopDesc::float_field_addr(int offset) const { return (jfloat*) field_base(offset); }
duke@435 163 inline jdouble* oopDesc::double_field_addr(int offset) const { return (jdouble*) field_base(offset); }
coleenp@548 164 inline address* oopDesc::address_field_addr(int offset) const { return (address*) field_base(offset); }
duke@435 165
coleenp@548 166
coleenp@548 167 // Functions for getting and setting oops within instance objects.
coleenp@548 168 // If the oops are compressed, the type passed to these overloaded functions
coleenp@548 169 // is narrowOop. All functions are overloaded so they can be called by
coleenp@548 170 // template functions without conditionals (the compiler instantiates via
coleenp@548 171 // the right type and inlines the appopriate code).
coleenp@548 172
coleenp@548 173 inline bool oopDesc::is_null(oop obj) { return obj == NULL; }
coleenp@548 174 inline bool oopDesc::is_null(narrowOop obj) { return obj == 0; }
coleenp@548 175
coleenp@548 176 // Algorithm for encoding and decoding oops from 64 bit pointers to 32 bit
coleenp@548 177 // offset from the heap base. Saving the check for null can save instructions
coleenp@548 178 // in inner GC loops so these are separated.
coleenp@548 179
kvn@1926 180 inline bool check_obj_alignment(oop obj) {
kvn@1926 181 return (intptr_t)obj % MinObjAlignmentInBytes == 0;
kvn@1926 182 }
kvn@1926 183
coleenp@548 184 inline narrowOop oopDesc::encode_heap_oop_not_null(oop v) {
coleenp@548 185 assert(!is_null(v), "oop value can never be zero");
kvn@1926 186 assert(check_obj_alignment(v), "Address not aligned");
ysr@1280 187 assert(Universe::heap()->is_in_reserved(v), "Address not in heap");
kvn@1077 188 address base = Universe::narrow_oop_base();
kvn@1077 189 int shift = Universe::narrow_oop_shift();
kvn@1077 190 uint64_t pd = (uint64_t)(pointer_delta((void*)v, (void*)base, 1));
coleenp@570 191 assert(OopEncodingHeapMax > pd, "change encoding max if new encoding");
kvn@1077 192 uint64_t result = pd >> shift;
coleenp@570 193 assert((result & CONST64(0xffffffff00000000)) == 0, "narrow oop overflow");
ysr@1280 194 assert(decode_heap_oop(result) == v, "reversibility");
coleenp@548 195 return (narrowOop)result;
coleenp@548 196 }
coleenp@548 197
coleenp@548 198 inline narrowOop oopDesc::encode_heap_oop(oop v) {
coleenp@548 199 return (is_null(v)) ? (narrowOop)0 : encode_heap_oop_not_null(v);
coleenp@548 200 }
coleenp@548 201
coleenp@548 202 inline oop oopDesc::decode_heap_oop_not_null(narrowOop v) {
coleenp@548 203 assert(!is_null(v), "narrow oop value can never be zero");
kvn@1077 204 address base = Universe::narrow_oop_base();
kvn@1077 205 int shift = Universe::narrow_oop_shift();
kvn@1926 206 oop result = (oop)(void*)((uintptr_t)base + ((uintptr_t)v << shift));
twisti@2201 207 assert(check_obj_alignment(result), err_msg("address not aligned: " PTR_FORMAT, (void*) result));
kvn@1926 208 return result;
coleenp@548 209 }
coleenp@548 210
coleenp@548 211 inline oop oopDesc::decode_heap_oop(narrowOop v) {
coleenp@548 212 return is_null(v) ? (oop)NULL : decode_heap_oop_not_null(v);
coleenp@548 213 }
coleenp@548 214
coleenp@548 215 inline oop oopDesc::decode_heap_oop_not_null(oop v) { return v; }
coleenp@548 216 inline oop oopDesc::decode_heap_oop(oop v) { return v; }
coleenp@548 217
coleenp@548 218 // Load an oop out of the Java heap as is without decoding.
coleenp@548 219 // Called by GC to check for null before decoding.
coleenp@548 220 inline oop oopDesc::load_heap_oop(oop* p) { return *p; }
coleenp@548 221 inline narrowOop oopDesc::load_heap_oop(narrowOop* p) { return *p; }
coleenp@548 222
coleenp@548 223 // Load and decode an oop out of the Java heap into a wide oop.
coleenp@548 224 inline oop oopDesc::load_decode_heap_oop_not_null(oop* p) { return *p; }
coleenp@548 225 inline oop oopDesc::load_decode_heap_oop_not_null(narrowOop* p) {
coleenp@548 226 return decode_heap_oop_not_null(*p);
coleenp@548 227 }
coleenp@548 228
coleenp@548 229 // Load and decode an oop out of the heap accepting null
coleenp@548 230 inline oop oopDesc::load_decode_heap_oop(oop* p) { return *p; }
coleenp@548 231 inline oop oopDesc::load_decode_heap_oop(narrowOop* p) {
coleenp@548 232 return decode_heap_oop(*p);
coleenp@548 233 }
coleenp@548 234
coleenp@548 235 // Store already encoded heap oop into the heap.
coleenp@548 236 inline void oopDesc::store_heap_oop(oop* p, oop v) { *p = v; }
coleenp@548 237 inline void oopDesc::store_heap_oop(narrowOop* p, narrowOop v) { *p = v; }
coleenp@548 238
coleenp@548 239 // Encode and store a heap oop.
coleenp@548 240 inline void oopDesc::encode_store_heap_oop_not_null(narrowOop* p, oop v) {
coleenp@548 241 *p = encode_heap_oop_not_null(v);
coleenp@548 242 }
coleenp@548 243 inline void oopDesc::encode_store_heap_oop_not_null(oop* p, oop v) { *p = v; }
coleenp@548 244
coleenp@548 245 // Encode and store a heap oop allowing for null.
coleenp@548 246 inline void oopDesc::encode_store_heap_oop(narrowOop* p, oop v) {
coleenp@548 247 *p = encode_heap_oop(v);
coleenp@548 248 }
coleenp@548 249 inline void oopDesc::encode_store_heap_oop(oop* p, oop v) { *p = v; }
coleenp@548 250
coleenp@548 251 // Store heap oop as is for volatile fields.
coleenp@548 252 inline void oopDesc::release_store_heap_oop(volatile oop* p, oop v) {
coleenp@548 253 OrderAccess::release_store_ptr(p, v);
coleenp@548 254 }
coleenp@548 255 inline void oopDesc::release_store_heap_oop(volatile narrowOop* p,
coleenp@548 256 narrowOop v) {
coleenp@548 257 OrderAccess::release_store(p, v);
coleenp@548 258 }
coleenp@548 259
coleenp@548 260 inline void oopDesc::release_encode_store_heap_oop_not_null(
coleenp@548 261 volatile narrowOop* p, oop v) {
coleenp@548 262 // heap oop is not pointer sized.
coleenp@548 263 OrderAccess::release_store(p, encode_heap_oop_not_null(v));
coleenp@548 264 }
coleenp@548 265
coleenp@548 266 inline void oopDesc::release_encode_store_heap_oop_not_null(
coleenp@548 267 volatile oop* p, oop v) {
coleenp@548 268 OrderAccess::release_store_ptr(p, v);
coleenp@548 269 }
coleenp@548 270
coleenp@548 271 inline void oopDesc::release_encode_store_heap_oop(volatile oop* p,
coleenp@548 272 oop v) {
coleenp@548 273 OrderAccess::release_store_ptr(p, v);
coleenp@548 274 }
coleenp@548 275 inline void oopDesc::release_encode_store_heap_oop(
coleenp@548 276 volatile narrowOop* p, oop v) {
coleenp@548 277 OrderAccess::release_store(p, encode_heap_oop(v));
coleenp@548 278 }
coleenp@548 279
coleenp@548 280
coleenp@548 281 // These functions are only used to exchange oop fields in instances,
coleenp@548 282 // not headers.
coleenp@548 283 inline oop oopDesc::atomic_exchange_oop(oop exchange_value, volatile HeapWord *dest) {
coleenp@548 284 if (UseCompressedOops) {
coleenp@548 285 // encode exchange value from oop to T
coleenp@548 286 narrowOop val = encode_heap_oop(exchange_value);
coleenp@548 287 narrowOop old = (narrowOop)Atomic::xchg(val, (narrowOop*)dest);
coleenp@548 288 // decode old from T to oop
coleenp@548 289 return decode_heap_oop(old);
coleenp@548 290 } else {
coleenp@548 291 return (oop)Atomic::xchg_ptr(exchange_value, (oop*)dest);
coleenp@548 292 }
coleenp@548 293 }
coleenp@548 294
coleenp@548 295 inline oop oopDesc::atomic_compare_exchange_oop(oop exchange_value,
coleenp@548 296 volatile HeapWord *dest,
coleenp@548 297 oop compare_value) {
coleenp@548 298 if (UseCompressedOops) {
coleenp@548 299 // encode exchange and compare value from oop to T
coleenp@548 300 narrowOop val = encode_heap_oop(exchange_value);
coleenp@548 301 narrowOop cmp = encode_heap_oop(compare_value);
coleenp@548 302
coleenp@548 303 narrowOop old = (narrowOop) Atomic::cmpxchg(val, (narrowOop*)dest, cmp);
coleenp@548 304 // decode old from T to oop
coleenp@548 305 return decode_heap_oop(old);
coleenp@548 306 } else {
coleenp@548 307 return (oop)Atomic::cmpxchg_ptr(exchange_value, (oop*)dest, compare_value);
coleenp@548 308 }
coleenp@548 309 }
coleenp@548 310
coleenp@548 311 // In order to put or get a field out of an instance, must first check
coleenp@548 312 // if the field has been compressed and uncompress it.
coleenp@548 313 inline oop oopDesc::obj_field(int offset) const {
coleenp@548 314 return UseCompressedOops ?
coleenp@548 315 load_decode_heap_oop(obj_field_addr<narrowOop>(offset)) :
coleenp@548 316 load_decode_heap_oop(obj_field_addr<oop>(offset));
coleenp@548 317 }
coleenp@548 318 inline void oopDesc::obj_field_put(int offset, oop value) {
coleenp@548 319 UseCompressedOops ? oop_store(obj_field_addr<narrowOop>(offset), value) :
coleenp@548 320 oop_store(obj_field_addr<oop>(offset), value);
coleenp@548 321 }
coleenp@548 322 inline void oopDesc::obj_field_raw_put(int offset, oop value) {
coleenp@548 323 UseCompressedOops ?
coleenp@548 324 encode_store_heap_oop(obj_field_addr<narrowOop>(offset), value) :
coleenp@548 325 encode_store_heap_oop(obj_field_addr<oop>(offset), value);
coleenp@548 326 }
duke@435 327
duke@435 328 inline jbyte oopDesc::byte_field(int offset) const { return (jbyte) *byte_field_addr(offset); }
duke@435 329 inline void oopDesc::byte_field_put(int offset, jbyte contents) { *byte_field_addr(offset) = (jint) contents; }
duke@435 330
duke@435 331 inline jboolean oopDesc::bool_field(int offset) const { return (jboolean) *bool_field_addr(offset); }
duke@435 332 inline void oopDesc::bool_field_put(int offset, jboolean contents) { *bool_field_addr(offset) = (jint) contents; }
duke@435 333
duke@435 334 inline jchar oopDesc::char_field(int offset) const { return (jchar) *char_field_addr(offset); }
duke@435 335 inline void oopDesc::char_field_put(int offset, jchar contents) { *char_field_addr(offset) = (jint) contents; }
duke@435 336
duke@435 337 inline jint oopDesc::int_field(int offset) const { return *int_field_addr(offset); }
duke@435 338 inline void oopDesc::int_field_put(int offset, jint contents) { *int_field_addr(offset) = contents; }
duke@435 339
duke@435 340 inline jshort oopDesc::short_field(int offset) const { return (jshort) *short_field_addr(offset); }
duke@435 341 inline void oopDesc::short_field_put(int offset, jshort contents) { *short_field_addr(offset) = (jint) contents;}
duke@435 342
duke@435 343 inline jlong oopDesc::long_field(int offset) const { return *long_field_addr(offset); }
duke@435 344 inline void oopDesc::long_field_put(int offset, jlong contents) { *long_field_addr(offset) = contents; }
duke@435 345
duke@435 346 inline jfloat oopDesc::float_field(int offset) const { return *float_field_addr(offset); }
duke@435 347 inline void oopDesc::float_field_put(int offset, jfloat contents) { *float_field_addr(offset) = contents; }
duke@435 348
duke@435 349 inline jdouble oopDesc::double_field(int offset) const { return *double_field_addr(offset); }
duke@435 350 inline void oopDesc::double_field_put(int offset, jdouble contents) { *double_field_addr(offset) = contents; }
duke@435 351
coleenp@548 352 inline address oopDesc::address_field(int offset) const { return *address_field_addr(offset); }
coleenp@548 353 inline void oopDesc::address_field_put(int offset, address contents) { *address_field_addr(offset) = contents; }
coleenp@548 354
coleenp@548 355 inline oop oopDesc::obj_field_acquire(int offset) const {
coleenp@548 356 return UseCompressedOops ?
coleenp@548 357 decode_heap_oop((narrowOop)
coleenp@548 358 OrderAccess::load_acquire(obj_field_addr<narrowOop>(offset)))
coleenp@548 359 : decode_heap_oop((oop)
coleenp@548 360 OrderAccess::load_ptr_acquire(obj_field_addr<oop>(offset)));
coleenp@548 361 }
coleenp@548 362 inline void oopDesc::release_obj_field_put(int offset, oop value) {
coleenp@548 363 UseCompressedOops ?
coleenp@548 364 oop_store((volatile narrowOop*)obj_field_addr<narrowOop>(offset), value) :
coleenp@548 365 oop_store((volatile oop*) obj_field_addr<oop>(offset), value);
coleenp@548 366 }
duke@435 367
duke@435 368 inline jbyte oopDesc::byte_field_acquire(int offset) const { return OrderAccess::load_acquire(byte_field_addr(offset)); }
duke@435 369 inline void oopDesc::release_byte_field_put(int offset, jbyte contents) { OrderAccess::release_store(byte_field_addr(offset), contents); }
duke@435 370
duke@435 371 inline jboolean oopDesc::bool_field_acquire(int offset) const { return OrderAccess::load_acquire(bool_field_addr(offset)); }
duke@435 372 inline void oopDesc::release_bool_field_put(int offset, jboolean contents) { OrderAccess::release_store(bool_field_addr(offset), contents); }
duke@435 373
duke@435 374 inline jchar oopDesc::char_field_acquire(int offset) const { return OrderAccess::load_acquire(char_field_addr(offset)); }
duke@435 375 inline void oopDesc::release_char_field_put(int offset, jchar contents) { OrderAccess::release_store(char_field_addr(offset), contents); }
duke@435 376
duke@435 377 inline jint oopDesc::int_field_acquire(int offset) const { return OrderAccess::load_acquire(int_field_addr(offset)); }
duke@435 378 inline void oopDesc::release_int_field_put(int offset, jint contents) { OrderAccess::release_store(int_field_addr(offset), contents); }
duke@435 379
duke@435 380 inline jshort oopDesc::short_field_acquire(int offset) const { return (jshort)OrderAccess::load_acquire(short_field_addr(offset)); }
duke@435 381 inline void oopDesc::release_short_field_put(int offset, jshort contents) { OrderAccess::release_store(short_field_addr(offset), contents); }
duke@435 382
duke@435 383 inline jlong oopDesc::long_field_acquire(int offset) const { return OrderAccess::load_acquire(long_field_addr(offset)); }
duke@435 384 inline void oopDesc::release_long_field_put(int offset, jlong contents) { OrderAccess::release_store(long_field_addr(offset), contents); }
duke@435 385
duke@435 386 inline jfloat oopDesc::float_field_acquire(int offset) const { return OrderAccess::load_acquire(float_field_addr(offset)); }
duke@435 387 inline void oopDesc::release_float_field_put(int offset, jfloat contents) { OrderAccess::release_store(float_field_addr(offset), contents); }
duke@435 388
duke@435 389 inline jdouble oopDesc::double_field_acquire(int offset) const { return OrderAccess::load_acquire(double_field_addr(offset)); }
duke@435 390 inline void oopDesc::release_double_field_put(int offset, jdouble contents) { OrderAccess::release_store(double_field_addr(offset), contents); }
duke@435 391
jrose@1145 392 inline address oopDesc::address_field_acquire(int offset) const { return (address) OrderAccess::load_ptr_acquire(address_field_addr(offset)); }
jrose@1145 393 inline void oopDesc::release_address_field_put(int offset, address contents) { OrderAccess::release_store_ptr(address_field_addr(offset), contents); }
jrose@1145 394
duke@435 395 inline int oopDesc::size_given_klass(Klass* klass) {
duke@435 396 int lh = klass->layout_helper();
duke@435 397 int s = lh >> LogHeapWordSize; // deliver size scaled by wordSize
duke@435 398
duke@435 399 // lh is now a value computed at class initialization that may hint
duke@435 400 // at the size. For instances, this is positive and equal to the
duke@435 401 // size. For arrays, this is negative and provides log2 of the
duke@435 402 // array element size. For other oops, it is zero and thus requires
duke@435 403 // a virtual call.
duke@435 404 //
duke@435 405 // We go to all this trouble because the size computation is at the
duke@435 406 // heart of phase 2 of mark-compaction, and called for every object,
duke@435 407 // alive or dead. So the speed here is equal in importance to the
duke@435 408 // speed of allocation.
duke@435 409
duke@435 410 if (lh <= Klass::_lh_neutral_value) {
duke@435 411 // The most common case is instances; fall through if so.
duke@435 412 if (lh < Klass::_lh_neutral_value) {
duke@435 413 // Second most common case is arrays. We have to fetch the
duke@435 414 // length of the array, shift (multiply) it appropriately,
duke@435 415 // up to wordSize, add the header, and align to object size.
duke@435 416 size_t size_in_bytes;
duke@435 417 #ifdef _M_IA64
duke@435 418 // The Windows Itanium Aug 2002 SDK hoists this load above
duke@435 419 // the check for s < 0. An oop at the end of the heap will
duke@435 420 // cause an access violation if this load is performed on a non
duke@435 421 // array oop. Making the reference volatile prohibits this.
duke@435 422 // (%%% please explain by what magic the length is actually fetched!)
duke@435 423 volatile int *array_length;
duke@435 424 array_length = (volatile int *)( (intptr_t)this +
duke@435 425 arrayOopDesc::length_offset_in_bytes() );
duke@435 426 assert(array_length > 0, "Integer arithmetic problem somewhere");
duke@435 427 // Put into size_t to avoid overflow.
duke@435 428 size_in_bytes = (size_t) array_length;
duke@435 429 size_in_bytes = size_in_bytes << Klass::layout_helper_log2_element_size(lh);
duke@435 430 #else
duke@435 431 size_t array_length = (size_t) ((arrayOop)this)->length();
duke@435 432 size_in_bytes = array_length << Klass::layout_helper_log2_element_size(lh);
duke@435 433 #endif
duke@435 434 size_in_bytes += Klass::layout_helper_header_size(lh);
duke@435 435
duke@435 436 // This code could be simplified, but by keeping array_header_in_bytes
duke@435 437 // in units of bytes and doing it this way we can round up just once,
duke@435 438 // skipping the intermediate round to HeapWordSize. Cast the result
duke@435 439 // of round_to to size_t to guarantee unsigned division == right shift.
duke@435 440 s = (int)((size_t)round_to(size_in_bytes, MinObjAlignmentInBytes) /
duke@435 441 HeapWordSize);
duke@435 442
ysr@777 443 // UseParNewGC, UseParallelGC and UseG1GC can change the length field
ysr@777 444 // of an "old copy" of an object array in the young gen so it indicates
ysr@777 445 // the grey portion of an already copied array. This will cause the first
ysr@777 446 // disjunct below to fail if the two comparands are computed across such
ysr@777 447 // a concurrent change.
duke@435 448 // UseParNewGC also runs with promotion labs (which look like int
duke@435 449 // filler arrays) which are subject to changing their declared size
duke@435 450 // when finally retiring a PLAB; this also can cause the first disjunct
duke@435 451 // to fail for another worker thread that is concurrently walking the block
duke@435 452 // offset table. Both these invariant failures are benign for their
duke@435 453 // current uses; we relax the assertion checking to cover these two cases below:
duke@435 454 // is_objArray() && is_forwarded() // covers first scenario above
duke@435 455 // || is_typeArray() // covers second scenario above
duke@435 456 // If and when UseParallelGC uses the same obj array oop stealing/chunking
ysr@777 457 // technique, we will need to suitably modify the assertion.
duke@435 458 assert((s == klass->oop_size(this)) ||
ysr@777 459 (Universe::heap()->is_gc_active() &&
ysr@777 460 ((is_typeArray() && UseParNewGC) ||
ysr@777 461 (is_objArray() && is_forwarded() && (UseParNewGC || UseParallelGC || UseG1GC)))),
duke@435 462 "wrong array object size");
duke@435 463 } else {
duke@435 464 // Must be zero, so bite the bullet and take the virtual call.
duke@435 465 s = klass->oop_size(this);
duke@435 466 }
duke@435 467 }
duke@435 468
duke@435 469 assert(s % MinObjAlignment == 0, "alignment check");
duke@435 470 assert(s > 0, "Bad size calculated");
duke@435 471 return s;
duke@435 472 }
duke@435 473
duke@435 474
duke@435 475 inline int oopDesc::size() {
duke@435 476 return size_given_klass(blueprint());
duke@435 477 }
duke@435 478
duke@435 479 inline bool oopDesc::is_parsable() {
duke@435 480 return blueprint()->oop_is_parsable(this);
duke@435 481 }
duke@435 482
jmasa@953 483 inline bool oopDesc::is_conc_safe() {
jmasa@953 484 return blueprint()->oop_is_conc_safe(this);
jmasa@953 485 }
jmasa@953 486
coleenp@548 487 inline void update_barrier_set(void* p, oop v) {
duke@435 488 assert(oopDesc::bs() != NULL, "Uninitialized bs in oop!");
duke@435 489 oopDesc::bs()->write_ref_field(p, v);
duke@435 490 }
duke@435 491
ysr@1280 492 template <class T> inline void update_barrier_set_pre(T* p, oop v) {
ysr@777 493 oopDesc::bs()->write_ref_field_pre(p, v);
ysr@777 494 }
ysr@777 495
coleenp@548 496 template <class T> inline void oop_store(T* p, oop v) {
duke@435 497 if (always_do_update_barrier) {
coleenp@548 498 oop_store((volatile T*)p, v);
duke@435 499 } else {
ysr@777 500 update_barrier_set_pre(p, v);
coleenp@548 501 oopDesc::encode_store_heap_oop(p, v);
ysr@1280 502 update_barrier_set((void*)p, v); // cast away type
duke@435 503 }
duke@435 504 }
duke@435 505
coleenp@548 506 template <class T> inline void oop_store(volatile T* p, oop v) {
ysr@1280 507 update_barrier_set_pre((T*)p, v); // cast away volatile
duke@435 508 // Used by release_obj_field_put, so use release_store_ptr.
coleenp@548 509 oopDesc::release_encode_store_heap_oop(p, v);
ysr@1280 510 update_barrier_set((void*)p, v); // cast away type
duke@435 511 }
duke@435 512
coleenp@548 513 template <class T> inline void oop_store_without_check(T* p, oop v) {
duke@435 514 // XXX YSR FIX ME!!!
duke@435 515 if (always_do_update_barrier) {
coleenp@548 516 oop_store(p, v);
duke@435 517 } else {
duke@435 518 assert(!Universe::heap()->barrier_set()->write_ref_needs_barrier(p, v),
duke@435 519 "oop store without store check failed");
coleenp@548 520 oopDesc::encode_store_heap_oop(p, v);
duke@435 521 }
duke@435 522 }
duke@435 523
duke@435 524 // When it absolutely has to get there.
coleenp@548 525 template <class T> inline void oop_store_without_check(volatile T* p, oop v) {
duke@435 526 // XXX YSR FIX ME!!!
duke@435 527 if (always_do_update_barrier) {
duke@435 528 oop_store(p, v);
duke@435 529 } else {
coleenp@548 530 assert(!Universe::heap()->barrier_set()->write_ref_needs_barrier((T*)p, v),
duke@435 531 "oop store without store check failed");
coleenp@548 532 oopDesc::release_encode_store_heap_oop(p, v);
duke@435 533 }
duke@435 534 }
duke@435 535
coleenp@548 536 // Should replace *addr = oop assignments where addr type depends on UseCompressedOops
coleenp@548 537 // (without having to remember the function name this calls).
coleenp@548 538 inline void oop_store_raw(HeapWord* addr, oop value) {
coleenp@548 539 if (UseCompressedOops) {
coleenp@548 540 oopDesc::encode_store_heap_oop((narrowOop*)addr, value);
coleenp@548 541 } else {
coleenp@548 542 oopDesc::encode_store_heap_oop((oop*)addr, value);
coleenp@548 543 }
coleenp@548 544 }
duke@435 545
duke@435 546 // Used only for markSweep, scavenging
duke@435 547 inline bool oopDesc::is_gc_marked() const {
duke@435 548 return mark()->is_marked();
duke@435 549 }
duke@435 550
duke@435 551 inline bool oopDesc::is_locked() const {
duke@435 552 return mark()->is_locked();
duke@435 553 }
duke@435 554
duke@435 555 inline bool oopDesc::is_unlocked() const {
duke@435 556 return mark()->is_unlocked();
duke@435 557 }
duke@435 558
duke@435 559 inline bool oopDesc::has_bias_pattern() const {
duke@435 560 return mark()->has_bias_pattern();
duke@435 561 }
duke@435 562
duke@435 563
duke@435 564 // used only for asserts
duke@435 565 inline bool oopDesc::is_oop(bool ignore_mark_word) const {
duke@435 566 oop obj = (oop) this;
duke@435 567 if (!check_obj_alignment(obj)) return false;
duke@435 568 if (!Universe::heap()->is_in_reserved(obj)) return false;
duke@435 569 // obj is aligned and accessible in heap
duke@435 570 // try to find metaclass cycle safely without seg faulting on bad input
duke@435 571 // we should reach klassKlassObj by following klass link at most 3 times
duke@435 572 for (int i = 0; i < 3; i++) {
coleenp@602 573 obj = obj->klass_or_null();
duke@435 574 // klass should be aligned and in permspace
duke@435 575 if (!check_obj_alignment(obj)) return false;
duke@435 576 if (!Universe::heap()->is_in_permanent(obj)) return false;
duke@435 577 }
duke@435 578 if (obj != Universe::klassKlassObj()) {
duke@435 579 // During a dump, the _klassKlassObj moved to a shared space.
duke@435 580 if (DumpSharedSpaces && Universe::klassKlassObj()->is_shared()) {
duke@435 581 return true;
duke@435 582 }
duke@435 583 return false;
duke@435 584 }
duke@435 585
duke@435 586 // Header verification: the mark is typically non-NULL. If we're
duke@435 587 // at a safepoint, it must not be null.
duke@435 588 // Outside of a safepoint, the header could be changing (for example,
duke@435 589 // another thread could be inflating a lock on this object).
duke@435 590 if (ignore_mark_word) {
duke@435 591 return true;
duke@435 592 }
duke@435 593 if (mark() != NULL) {
duke@435 594 return true;
duke@435 595 }
duke@435 596 return !SafepointSynchronize::is_at_safepoint();
duke@435 597 }
duke@435 598
duke@435 599
duke@435 600 // used only for asserts
duke@435 601 inline bool oopDesc::is_oop_or_null(bool ignore_mark_word) const {
duke@435 602 return this == NULL ? true : is_oop(ignore_mark_word);
duke@435 603 }
duke@435 604
duke@435 605 #ifndef PRODUCT
duke@435 606 // used only for asserts
duke@435 607 inline bool oopDesc::is_unlocked_oop() const {
duke@435 608 if (!Universe::heap()->is_in_reserved(this)) return false;
duke@435 609 return mark()->is_unlocked();
duke@435 610 }
duke@435 611 #endif // PRODUCT
duke@435 612
duke@435 613 inline void oopDesc::follow_header() {
coleenp@548 614 if (UseCompressedOops) {
coleenp@548 615 MarkSweep::mark_and_push(compressed_klass_addr());
coleenp@548 616 } else {
coleenp@548 617 MarkSweep::mark_and_push(klass_addr());
coleenp@548 618 }
duke@435 619 }
duke@435 620
coleenp@548 621 inline void oopDesc::follow_contents(void) {
duke@435 622 assert (is_gc_marked(), "should be marked");
duke@435 623 blueprint()->oop_follow_contents(this);
duke@435 624 }
duke@435 625
duke@435 626
duke@435 627 // Used by scavengers
duke@435 628
duke@435 629 inline bool oopDesc::is_forwarded() const {
duke@435 630 // The extra heap check is needed since the obj might be locked, in which case the
duke@435 631 // mark would point to a stack location and have the sentinel bit cleared
duke@435 632 return mark()->is_marked();
duke@435 633 }
duke@435 634
duke@435 635 // Used by scavengers
duke@435 636 inline void oopDesc::forward_to(oop p) {
kvn@1926 637 assert(check_obj_alignment(p),
kvn@1926 638 "forwarding to something not aligned");
duke@435 639 assert(Universe::heap()->is_in_reserved(p),
duke@435 640 "forwarding to something not in heap");
duke@435 641 markOop m = markOopDesc::encode_pointer_as_mark(p);
duke@435 642 assert(m->decode_pointer() == p, "encoding must be reversable");
duke@435 643 set_mark(m);
duke@435 644 }
duke@435 645
duke@435 646 // Used by parallel scavengers
duke@435 647 inline bool oopDesc::cas_forward_to(oop p, markOop compare) {
kvn@1926 648 assert(check_obj_alignment(p),
kvn@1926 649 "forwarding to something not aligned");
duke@435 650 assert(Universe::heap()->is_in_reserved(p),
duke@435 651 "forwarding to something not in heap");
duke@435 652 markOop m = markOopDesc::encode_pointer_as_mark(p);
duke@435 653 assert(m->decode_pointer() == p, "encoding must be reversable");
duke@435 654 return cas_set_mark(m, compare) == compare;
duke@435 655 }
duke@435 656
duke@435 657 // Note that the forwardee is not the same thing as the displaced_mark.
duke@435 658 // The forwardee is used when copying during scavenge and mark-sweep.
duke@435 659 // It does need to clear the low two locking- and GC-related bits.
coleenp@548 660 inline oop oopDesc::forwardee() const {
coleenp@548 661 return (oop) mark()->decode_pointer();
coleenp@548 662 }
duke@435 663
duke@435 664 inline bool oopDesc::has_displaced_mark() const {
duke@435 665 return mark()->has_displaced_mark_helper();
duke@435 666 }
duke@435 667
duke@435 668 inline markOop oopDesc::displaced_mark() const {
duke@435 669 return mark()->displaced_mark_helper();
duke@435 670 }
duke@435 671
duke@435 672 inline void oopDesc::set_displaced_mark(markOop m) {
duke@435 673 mark()->set_displaced_mark_helper(m);
duke@435 674 }
duke@435 675
duke@435 676 // The following method needs to be MT safe.
duke@435 677 inline int oopDesc::age() const {
duke@435 678 assert(!is_forwarded(), "Attempt to read age from forwarded mark");
duke@435 679 if (has_displaced_mark()) {
duke@435 680 return displaced_mark()->age();
duke@435 681 } else {
duke@435 682 return mark()->age();
duke@435 683 }
duke@435 684 }
duke@435 685
duke@435 686 inline void oopDesc::incr_age() {
duke@435 687 assert(!is_forwarded(), "Attempt to increment age of forwarded mark");
duke@435 688 if (has_displaced_mark()) {
duke@435 689 set_displaced_mark(displaced_mark()->incr_age());
duke@435 690 } else {
duke@435 691 set_mark(mark()->incr_age());
duke@435 692 }
duke@435 693 }
duke@435 694
duke@435 695
duke@435 696 inline intptr_t oopDesc::identity_hash() {
duke@435 697 // Fast case; if the object is unlocked and the hash value is set, no locking is needed
duke@435 698 // Note: The mark must be read into local variable to avoid concurrent updates.
duke@435 699 markOop mrk = mark();
duke@435 700 if (mrk->is_unlocked() && !mrk->has_no_hash()) {
duke@435 701 return mrk->hash();
duke@435 702 } else if (mrk->is_marked()) {
duke@435 703 return mrk->hash();
duke@435 704 } else {
duke@435 705 return slow_identity_hash();
duke@435 706 }
duke@435 707 }
duke@435 708
duke@435 709 inline void oopDesc::oop_iterate_header(OopClosure* blk) {
coleenp@548 710 if (UseCompressedOops) {
coleenp@548 711 blk->do_oop(compressed_klass_addr());
coleenp@548 712 } else {
coleenp@548 713 blk->do_oop(klass_addr());
coleenp@548 714 }
duke@435 715 }
duke@435 716
duke@435 717 inline void oopDesc::oop_iterate_header(OopClosure* blk, MemRegion mr) {
coleenp@548 718 if (UseCompressedOops) {
coleenp@548 719 if (mr.contains(compressed_klass_addr())) {
coleenp@548 720 blk->do_oop(compressed_klass_addr());
coleenp@548 721 }
coleenp@548 722 } else {
coleenp@548 723 if (mr.contains(klass_addr())) blk->do_oop(klass_addr());
coleenp@548 724 }
duke@435 725 }
duke@435 726
duke@435 727 inline int oopDesc::adjust_pointers() {
duke@435 728 debug_only(int check_size = size());
duke@435 729 int s = blueprint()->oop_adjust_pointers(this);
duke@435 730 assert(s == check_size, "should be the same");
duke@435 731 return s;
duke@435 732 }
duke@435 733
duke@435 734 inline void oopDesc::adjust_header() {
coleenp@548 735 if (UseCompressedOops) {
coleenp@548 736 MarkSweep::adjust_pointer(compressed_klass_addr());
coleenp@548 737 } else {
coleenp@548 738 MarkSweep::adjust_pointer(klass_addr());
coleenp@548 739 }
duke@435 740 }
duke@435 741
duke@435 742 #define OOP_ITERATE_DEFN(OopClosureType, nv_suffix) \
duke@435 743 \
duke@435 744 inline int oopDesc::oop_iterate(OopClosureType* blk) { \
duke@435 745 SpecializationStats::record_call(); \
duke@435 746 return blueprint()->oop_oop_iterate##nv_suffix(this, blk); \
duke@435 747 } \
duke@435 748 \
duke@435 749 inline int oopDesc::oop_iterate(OopClosureType* blk, MemRegion mr) { \
duke@435 750 SpecializationStats::record_call(); \
duke@435 751 return blueprint()->oop_oop_iterate##nv_suffix##_m(this, blk, mr); \
duke@435 752 }
duke@435 753
duke@435 754 ALL_OOP_OOP_ITERATE_CLOSURES_1(OOP_ITERATE_DEFN)
ysr@777 755 ALL_OOP_OOP_ITERATE_CLOSURES_2(OOP_ITERATE_DEFN)
duke@435 756
ysr@777 757 #ifndef SERIALGC
ysr@777 758 #define OOP_ITERATE_BACKWARDS_DEFN(OopClosureType, nv_suffix) \
ysr@777 759 \
ysr@777 760 inline int oopDesc::oop_iterate_backwards(OopClosureType* blk) { \
ysr@777 761 SpecializationStats::record_call(); \
ysr@777 762 return blueprint()->oop_oop_iterate_backwards##nv_suffix(this, blk); \
ysr@777 763 }
ysr@777 764
ysr@777 765 ALL_OOP_OOP_ITERATE_CLOSURES_1(OOP_ITERATE_BACKWARDS_DEFN)
ysr@777 766 ALL_OOP_OOP_ITERATE_CLOSURES_2(OOP_ITERATE_BACKWARDS_DEFN)
ysr@777 767 #endif // !SERIALGC
duke@435 768
duke@435 769 inline bool oopDesc::is_shared() const {
duke@435 770 return CompactingPermGenGen::is_shared(this);
duke@435 771 }
duke@435 772
duke@435 773 inline bool oopDesc::is_shared_readonly() const {
duke@435 774 return CompactingPermGenGen::is_shared_readonly(this);
duke@435 775 }
duke@435 776
duke@435 777 inline bool oopDesc::is_shared_readwrite() const {
duke@435 778 return CompactingPermGenGen::is_shared_readwrite(this);
duke@435 779 }
stefank@2314 780
stefank@2314 781 #endif // SHARE_VM_OOPS_OOP_INLINE_HPP

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