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src/hotspot/share/oops/oop.hpp
369 строк
13 KB
David Simms
8389219: Implement JEP 401: Value Objects (Preview)
31 июл 2026, 03:45
31 июл 2026, 03:45
cc278db
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/* * Copyright (c) 1997, 2026, Oracle and/or its affiliates. All rights reserved. * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. * * This code is free software; you can redistribute it and/or modify it * under the terms of the GNU General Public License version 2 only, as * published by the Free Software Foundation. * * This code is distributed in the hope that it will be useful, but WITHOUT * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License * version 2 for more details (a copy is included in the LICENSE file that * accompanied this code). * * You should have received a copy of the GNU General Public License version * 2 along with this work; if not, write to the Free Software Foundation, * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. * * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA * or visit www.oracle.com if you need additional information or have any * questions. * */ #ifndef SHARE_OOPS_OOP_HPP #define SHARE_OOPS_OOP_HPP #include "cppstdlib/type_traits.hpp" #include "memory/iterator.hpp" #include "memory/memRegion.hpp" #include "oops/accessDecorators.hpp" #include "oops/compressedKlass.hpp" #include "oops/markWord.hpp" #include "oops/metadata.hpp" #include "oops/objLayout.hpp" #include "runtime/atomicAccess.hpp" #include "utilities/globalDefinitions.hpp" #include "utilities/macros.hpp" // oopDesc is the top baseclass for objects classes. The {name}Desc classes describe // the format of Java objects so the fields can be accessed from C++. // oopDesc is abstract. // (see oopHierarchy for complete oop class hierarchy) // // no virtual functions allowed class oopDesc { friend class VMStructs; private: volatile markWord _mark; narrowKlass _compressed_klass; // There may be ordering constraints on the initialization of fields that // make use of the C++ copy/assign incorrect. NONCOPYABLE(oopDesc); inline oop cas_set_forwardee(markWord new_mark, markWord old_mark, atomic_memory_order order); public: // Must be trivial; see verifying static assert after the class. oopDesc() = default; inline void* base_addr(); inline const void* base_addr() const; inline markWord mark() const; inline markWord mark_acquire() const; inline void set_mark(markWord m); static inline void set_mark(HeapWord* mem, markWord m); static inline void release_set_mark(HeapWord* mem, markWord m); inline void release_set_mark(markWord m); inline markWord cas_set_mark(markWord new_mark, markWord old_mark); inline markWord cas_set_mark(markWord new_mark, markWord old_mark, atomic_memory_order order); // Returns the prototype mark that should be used for this object. inline markWord prototype_mark() const; // Used only to re-initialize the mark word (e.g., of promoted // objects during a GC) -- requires a valid klass pointer inline void init_mark(); inline Klass* klass() const; inline Klass* klass_or_null() const; inline Klass* klass_or_null_acquire() const; // Get the klass without running any asserts. inline Klass* klass_without_asserts() const; void set_narrow_klass(narrowKlass nk) NOT_CDS_JAVA_HEAP_RETURN; inline narrowKlass narrow_klass() const; inline narrowKlass narrow_klass_acquire() const; inline void set_klass(Klass* k); static inline void release_set_klass(HeapWord* mem, Klass* k); // For klass field compression static inline void set_klass_gap(HeapWord* mem, int z); // Size of object header, aligned to platform wordSize static int header_size() { if (UseCompactObjectHeaders) { return sizeof(markWord) / HeapWordSize; } else { return sizeof(oopDesc) / HeapWordSize; } } // Returns whether this is an instance of k or an instance of a subclass of k inline bool is_a(Klass* k) const; // Returns the actual oop size of the object in machine words inline size_t size(); // Sometimes (for complicated concurrency-related reasons), it is useful // to be able to figure out the size of an object knowing its klass. inline size_t size_given_klass(Klass* klass); // type test operations (inlined in oop.inline.hpp) inline bool is_instance() const; inline bool is_inline() const; inline bool is_instanceRef() const; inline bool is_stackChunk() const; inline bool is_array() const; inline bool is_objArray() const; inline bool is_typeArray() const; inline bool is_flatArray() const; inline bool is_refArray() const; inline bool is_refined_objArray() const; inline bool is_array_with_oops() const; inline bool is_inline_type() const; // type test operations that don't require inclusion of oop.inline.hpp. bool is_instance_noinline() const; bool is_instanceRef_noinline() const; bool is_stackChunk_noinline() const; bool is_array_noinline() const; bool is_objArray_noinline() const; bool is_refArray_noinline() const; bool is_typeArray_noinline() const; bool is_flatArray_noinline() const; protected: inline oop as_oop() const { return const_cast<oopDesc*>(this); } public: template<typename T> inline T* field_addr(int offset) const; template <typename T> inline size_t field_offset(T* p) const; // Standard compare function returns negative value if o1 < o2 // 0 if o1 == o2 // positive value if o1 > o2 inline static int compare(oop o1, oop o2) { void* o1_addr = (void*)o1; void* o2_addr = (void*)o2; if (o1_addr < o2_addr) { return -1; } else if (o1_addr > o2_addr) { return 1; } else { return 0; } } // Access to fields in a instanceOop through these methods. template<DecoratorSet decorators> oop obj_field_access(int offset) const; oop obj_field(int offset) const; void obj_field_put(int offset, oop value); void obj_field_put_raw(int offset, oop value); void obj_field_put_volatile(int offset, oop value); template<DecoratorSet decorators> void obj_field_put_access(int offset, oop value); Metadata* metadata_field(int offset) const; void metadata_field_put(int offset, Metadata* value); Metadata* metadata_field_acquire(int offset) const; void release_metadata_field_put(int offset, Metadata* value); jbyte byte_field(int offset) const; void byte_field_put(int offset, jbyte contents); jchar char_field(int offset) const; void char_field_put(int offset, jchar contents); jboolean bool_field(int offset) const; void bool_field_put(int offset, jboolean contents); jboolean bool_field_volatile(int offset) const; void bool_field_put_volatile(int offset, jboolean contents); jint int_field(int offset) const; void int_field_put(int offset, jint contents); jshort short_field(int offset) const; void short_field_put(int offset, jshort contents); jlong long_field(int offset) const; void long_field_put(int offset, jlong contents); jfloat float_field(int offset) const; void float_field_put(int offset, jfloat contents); jdouble double_field(int offset) const; void double_field_put(int offset, jdouble contents); address address_field(int offset) const; void address_field_put(int offset, address contents); oop obj_field_acquire(int offset) const; void release_obj_field_put(int offset, oop value); jbyte byte_field_acquire(int offset) const; void release_byte_field_put(int offset, jbyte contents); jchar char_field_acquire(int offset) const; void release_char_field_put(int offset, jchar contents); jboolean bool_field_acquire(int offset) const; void release_bool_field_put(int offset, jboolean contents); jint int_field_relaxed(int offset) const; void int_field_put_relaxed(int offset, jint contents); jint int_field_acquire(int offset) const; void release_int_field_put(int offset, jint contents); jshort short_field_acquire(int offset) const; void release_short_field_put(int offset, jshort contents); jlong long_field_acquire(int offset) const; void release_long_field_put(int offset, jlong contents); jfloat float_field_acquire(int offset) const; void release_float_field_put(int offset, jfloat contents); jdouble double_field_acquire(int offset) const; void release_double_field_put(int offset, jdouble contents); address address_field_acquire(int offset) const; void release_address_field_put(int offset, address contents); // printing functions for VM debugging void print_on(outputStream* st) const; // First level print void print_value_on(outputStream* st) const; // Second level print. void print_address_on(outputStream* st) const; // Address printing void print_name_on(outputStream* st) const; // External name printing. // printing on default output stream void print(); void print_value(); void print_address(); // return the print strings char* print_string(); char* print_value_string(); // verification operations static void verify_on(outputStream* st, oopDesc* oop_desc); static void verify(oopDesc* oopDesc); // locking operations inline bool is_locked() const; inline bool is_unlocked() const; // asserts and guarantees static bool is_oop(oop obj); static bool is_oop_or_null(oop obj); // garbage collection inline bool is_gc_marked() const; // Forward pointer operations for scavenge inline bool is_forwarded() const; inline bool is_self_forwarded() const; inline void forward_to(oop p); inline void forward_to_self(); // Like "forward_to", but inserts the forwarding pointer atomically. // Exactly one thread succeeds in inserting the forwarding pointer, and // this call returns null for that thread; any other thread has the // value of the forwarding pointer returned and does not modify "this". inline oop forward_to_atomic(oop p, markWord compare, atomic_memory_order order = memory_order_conservative); inline oop forward_to_self_atomic(markWord compare, atomic_memory_order order = memory_order_conservative); inline oop forwardee() const; inline oop forwardee(markWord header) const; inline void unset_self_forwarded(); // Age of object during scavenge inline uint age() const; inline void incr_age(); template <typename OopClosureType> inline void oop_iterate(OopClosureType* cl); template <typename OopClosureType> inline void oop_iterate(OopClosureType* cl, MemRegion mr); template <typename OopClosureType> inline size_t oop_iterate_size(OopClosureType* cl); template <typename OopClosureType> inline size_t oop_iterate_size(OopClosureType* cl, MemRegion mr); template <typename OopClosureType> inline void oop_iterate_backwards(OopClosureType* cl); template <typename OopClosureType> inline void oop_iterate_backwards(OopClosureType* cl, Klass* klass); inline static bool is_instanceof_or_null(oop obj, Klass* klass); // identity hash; returns the identity hash key (computes it if necessary) inline intptr_t identity_hash(); intptr_t slow_identity_hash(); inline bool fast_no_hash_check(); // marks are forwarded to stack when object is locked inline bool has_displaced_mark() const; inline markWord displaced_mark() const; inline void set_displaced_mark(markWord m); // Checks if the mark word needs to be preserved inline bool mark_must_be_preserved() const; inline bool mark_must_be_preserved(markWord m) const; inline static bool has_klass_gap() { return ObjLayout::oop_has_klass_gap(); } // for code generation static int mark_offset_in_bytes() { return (int)offset_of(oopDesc, _mark); } static int klass_offset_in_bytes() { #ifdef _LP64 if (UseCompactObjectHeaders) { // NOTE: The only place where this is used with compact headers is C2. return mark_offset_in_bytes() + markWord::klass_offset_in_bytes; } else #endif { return (int)offset_of(oopDesc, _compressed_klass); } } static int klass_gap_offset_in_bytes() { assert(has_klass_gap(), "only applicable to compressed klass pointers"); return klass_offset_in_bytes() + sizeof(narrowKlass); } static int base_offset_in_bytes() { return ObjLayout::oop_base_offset_in_bytes(); } // for error reporting static void* load_oop_raw(oop obj, int offset); }; // An oopDesc is not initialized via a constructor. Space is allocated in // the Java heap, and static functions provided here on HeapWord* are used // to fill in certain parts of that memory. The allocated memory is then // treated as referring to an oopDesc. For that to be valid, the oopDesc // class must have a trivial default constructor (C++14 3.8/1). static_assert(std::is_trivially_default_constructible<oopDesc>::value, "required"); #endif // SHARE_OOPS_OOP_HPP