author | coleenp |
Wed, 24 Jul 2019 10:22:11 -0400 | |
changeset 57511 | 00ae3b739184 |
parent 53075 | 747d29313e5a |
child 58176 | 470af058bd5f |
permissions | -rw-r--r-- |
47998
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
1 |
/* |
48628
69d65d9dcadb
8193063: Enabling narrowOop values for RawAccess accesses
eosterlund
parents:
47998
diff
changeset
|
2 |
* Copyright (c) 2017, 2018, Oracle and/or its affiliates. All rights reserved. |
47998
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
3 |
* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
4 |
* |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
5 |
* This code is free software; you can redistribute it and/or modify it |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
6 |
* under the terms of the GNU General Public License version 2 only, as |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
7 |
* published by the Free Software Foundation. |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
8 |
* |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
9 |
* This code is distributed in the hope that it will be useful, but WITHOUT |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
10 |
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
11 |
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
12 |
* version 2 for more details (a copy is included in the LICENSE file that |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
13 |
* accompanied this code). |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
14 |
* |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
15 |
* You should have received a copy of the GNU General Public License version |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
16 |
* 2 along with this work; if not, write to the Free Software Foundation, |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
17 |
* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
18 |
* |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
19 |
* Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
20 |
* or visit www.oracle.com if you need additional information or have any |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
21 |
* questions. |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
22 |
* |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
23 |
*/ |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
24 |
|
49658 | 25 |
#ifndef SHARE_OOPS_ACCESS_HPP |
26 |
#define SHARE_OOPS_ACCESS_HPP |
|
47998
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
27 |
|
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
28 |
#include "memory/allocation.hpp" |
49658 | 29 |
#include "oops/accessBackend.hpp" |
30 |
#include "oops/accessDecorators.hpp" |
|
47998
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
31 |
#include "oops/oopsHierarchy.hpp" |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
32 |
#include "utilities/debug.hpp" |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
33 |
#include "utilities/globalDefinitions.hpp" |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
34 |
|
49658 | 35 |
|
47998
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
36 |
// = GENERAL = |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
37 |
// Access is an API for performing accesses with declarative semantics. Each access can have a number of "decorators". |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
38 |
// A decorator is an attribute or property that affects the way a memory access is performed in some way. |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
39 |
// There are different groups of decorators. Some have to do with memory ordering, others to do with, |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
40 |
// e.g. strength of references, strength of GC barriers, or whether compression should be applied or not. |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
41 |
// Some decorators are set at buildtime, such as whether primitives require GC barriers or not, others |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
42 |
// at callsites such as whether an access is in the heap or not, and others are resolved at runtime |
49658 | 43 |
// such as GC-specific barriers and encoding/decoding compressed oops. For more information about what |
44 |
// decorators are available, cf. oops/accessDecorators.hpp. |
|
47998
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
45 |
// By pipelining handling of these decorators, the design of the Access API allows separation of concern |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
46 |
// over the different orthogonal concerns of decorators, while providing a powerful way of |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
47 |
// expressing these orthogonal semantic properties in a unified way. |
49658 | 48 |
// |
47998
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
49 |
// == OPERATIONS == |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
50 |
// * load: Load a value from an address. |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
51 |
// * load_at: Load a value from an internal pointer relative to a base object. |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
52 |
// * store: Store a value at an address. |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
53 |
// * store_at: Store a value in an internal pointer relative to a base object. |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
54 |
// * atomic_cmpxchg: Atomically compare-and-swap a new value at an address if previous value matched the compared value. |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
55 |
// * atomic_cmpxchg_at: Atomically compare-and-swap a new value at an internal pointer address if previous value matched the compared value. |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
56 |
// * atomic_xchg: Atomically swap a new value at an address if previous value matched the compared value. |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
57 |
// * atomic_xchg_at: Atomically swap a new value at an internal pointer address if previous value matched the compared value. |
50389
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
58 |
// * arraycopy: Copy data from one heap array to another heap array. The ArrayAccess class has convenience functions for this. |
47998
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
59 |
// * clone: Clone the contents of an object to a newly allocated object. |
49041
44122f767467
8198286: Direct memory accessors in typeArrayOop.hpp should use Access API
eosterlund
parents:
48966
diff
changeset
|
60 |
// * resolve: Resolve a stable to-space invariant oop that is guaranteed not to relocate its payload until a subsequent thread transition. |
49658 | 61 |
// * equals: Object equality, e.g. when different copies of the same objects are in use (from-space vs. to-space) |
47998
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
62 |
// |
49658 | 63 |
// == IMPLEMENTATION == |
64 |
// Each access goes through the following steps in a template pipeline. |
|
65 |
// There are essentially 5 steps for each access: |
|
66 |
// * Step 1: Set default decorators and decay types. This step gets rid of CV qualifiers |
|
67 |
// and sets default decorators to sensible values. |
|
68 |
// * Step 2: Reduce types. This step makes sure there is only a single T type and not |
|
69 |
// multiple types. The P type of the address and T type of the value must |
|
70 |
// match. |
|
71 |
// * Step 3: Pre-runtime dispatch. This step checks whether a runtime call can be |
|
72 |
// avoided, and in that case avoids it (calling raw accesses or |
|
73 |
// primitive accesses in a build that does not require primitive GC barriers) |
|
74 |
// * Step 4: Runtime-dispatch. This step performs a runtime dispatch to the corresponding |
|
75 |
// BarrierSet::AccessBarrier accessor that attaches GC-required barriers |
|
76 |
// to the access. |
|
77 |
// * Step 5.a: Barrier resolution. This step is invoked the first time a runtime-dispatch |
|
78 |
// happens for an access. The appropriate BarrierSet::AccessBarrier accessor |
|
79 |
// is resolved, then the function pointer is updated to that accessor for |
|
80 |
// future invocations. |
|
81 |
// * Step 5.b: Post-runtime dispatch. This step now casts previously unknown types such |
|
82 |
// as the address type of an oop on the heap (is it oop* or narrowOop*) to |
|
83 |
// the appropriate type. It also splits sufficiently orthogonal accesses into |
|
84 |
// different functions, such as whether the access involves oops or primitives |
|
85 |
// and whether the access is performed on the heap or outside. Then the |
|
86 |
// appropriate BarrierSet::AccessBarrier is called to perform the access. |
|
87 |
// |
|
88 |
// The implementation of step 1-4 resides in in accessBackend.hpp, to allow selected |
|
89 |
// accesses to be accessible from only access.hpp, as opposed to access.inline.hpp. |
|
90 |
// Steps 5.a and 5.b require knowledge about the GC backends, and therefore needs to |
|
91 |
// include the various GC backend .inline.hpp headers. Their implementation resides in |
|
92 |
// access.inline.hpp. The accesses that are allowed through the access.hpp file |
|
93 |
// must be instantiated in access.cpp using the INSTANTIATE_HPP_ACCESS macro. |
|
47998
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
94 |
|
53075
747d29313e5a
8215492: Rename INTERNAL_EMPTY to something less "internal"
pliden
parents:
52070
diff
changeset
|
95 |
template <DecoratorSet decorators = DECORATORS_NONE> |
47998
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
96 |
class Access: public AllStatic { |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
97 |
// This function asserts that if an access gets passed in a decorator outside |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
98 |
// of the expected_decorators, then something is wrong. It additionally checks |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
99 |
// the consistency of the decorators so that supposedly disjoint decorators are indeed |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
100 |
// disjoint. For example, an access can not be both in heap and on root at the |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
101 |
// same time. |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
102 |
template <DecoratorSet expected_decorators> |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
103 |
static void verify_decorators(); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
104 |
|
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
105 |
template <DecoratorSet expected_mo_decorators> |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
106 |
static void verify_primitive_decorators() { |
50728 | 107 |
const DecoratorSet primitive_decorators = (AS_DECORATOR_MASK ^ AS_NO_KEEPALIVE) | |
108 |
IN_HEAP | IS_ARRAY; |
|
47998
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
109 |
verify_decorators<expected_mo_decorators | primitive_decorators>(); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
110 |
} |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
111 |
|
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
112 |
template <DecoratorSet expected_mo_decorators> |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
113 |
static void verify_oop_decorators() { |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
114 |
const DecoratorSet oop_decorators = AS_DECORATOR_MASK | IN_DECORATOR_MASK | |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
115 |
(ON_DECORATOR_MASK ^ ON_UNKNOWN_OOP_REF) | // no unknown oop refs outside of the heap |
50728 | 116 |
IS_ARRAY | IS_NOT_NULL | IS_DEST_UNINITIALIZED; |
47998
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
117 |
verify_decorators<expected_mo_decorators | oop_decorators>(); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
118 |
} |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
119 |
|
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
120 |
template <DecoratorSet expected_mo_decorators> |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
121 |
static void verify_heap_oop_decorators() { |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
122 |
const DecoratorSet heap_oop_decorators = AS_DECORATOR_MASK | ON_DECORATOR_MASK | |
50728 | 123 |
IN_HEAP | IS_ARRAY | IS_NOT_NULL; |
47998
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
124 |
verify_decorators<expected_mo_decorators | heap_oop_decorators>(); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
125 |
} |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
126 |
|
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
127 |
static const DecoratorSet load_mo_decorators = MO_UNORDERED | MO_VOLATILE | MO_RELAXED | MO_ACQUIRE | MO_SEQ_CST; |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
128 |
static const DecoratorSet store_mo_decorators = MO_UNORDERED | MO_VOLATILE | MO_RELAXED | MO_RELEASE | MO_SEQ_CST; |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
129 |
static const DecoratorSet atomic_xchg_mo_decorators = MO_SEQ_CST; |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
130 |
static const DecoratorSet atomic_cmpxchg_mo_decorators = MO_RELAXED | MO_SEQ_CST; |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
131 |
|
50389
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
132 |
protected: |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
133 |
template <typename T> |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
134 |
static inline bool oop_arraycopy(arrayOop src_obj, size_t src_offset_in_bytes, const T* src_raw, |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
135 |
arrayOop dst_obj, size_t dst_offset_in_bytes, T* dst_raw, |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
136 |
size_t length) { |
50728 | 137 |
verify_decorators<ARRAYCOPY_DECORATOR_MASK | IN_HEAP | |
138 |
AS_DECORATOR_MASK | IS_ARRAY | IS_DEST_UNINITIALIZED>(); |
|
50389
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
139 |
return AccessInternal::arraycopy<decorators | INTERNAL_VALUE_IS_OOP>(src_obj, src_offset_in_bytes, src_raw, |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
140 |
dst_obj, dst_offset_in_bytes, dst_raw, |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
141 |
length); |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
142 |
} |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
143 |
|
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
144 |
template <typename T> |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
145 |
static inline void arraycopy(arrayOop src_obj, size_t src_offset_in_bytes, const T* src_raw, |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
146 |
arrayOop dst_obj, size_t dst_offset_in_bytes, T* dst_raw, |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
147 |
size_t length) { |
50728 | 148 |
verify_decorators<ARRAYCOPY_DECORATOR_MASK | IN_HEAP | |
149 |
AS_DECORATOR_MASK | IS_ARRAY>(); |
|
50389
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
150 |
AccessInternal::arraycopy<decorators>(src_obj, src_offset_in_bytes, src_raw, |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
151 |
dst_obj, dst_offset_in_bytes, dst_raw, |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
152 |
length); |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
153 |
} |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
154 |
|
47998
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
155 |
public: |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
156 |
// Primitive heap accesses |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
157 |
static inline AccessInternal::LoadAtProxy<decorators> load_at(oop base, ptrdiff_t offset) { |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
158 |
verify_primitive_decorators<load_mo_decorators>(); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
159 |
return AccessInternal::LoadAtProxy<decorators>(base, offset); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
160 |
} |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
161 |
|
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
162 |
template <typename T> |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
163 |
static inline void store_at(oop base, ptrdiff_t offset, T value) { |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
164 |
verify_primitive_decorators<store_mo_decorators>(); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
165 |
AccessInternal::store_at<decorators>(base, offset, value); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
166 |
} |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
167 |
|
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
168 |
template <typename T> |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
169 |
static inline T atomic_cmpxchg_at(T new_value, oop base, ptrdiff_t offset, T compare_value) { |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
170 |
verify_primitive_decorators<atomic_cmpxchg_mo_decorators>(); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
171 |
return AccessInternal::atomic_cmpxchg_at<decorators>(new_value, base, offset, compare_value); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
172 |
} |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
173 |
|
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
174 |
template <typename T> |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
175 |
static inline T atomic_xchg_at(T new_value, oop base, ptrdiff_t offset) { |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
176 |
verify_primitive_decorators<atomic_xchg_mo_decorators>(); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
177 |
return AccessInternal::atomic_xchg_at<decorators>(new_value, base, offset); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
178 |
} |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
179 |
|
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
180 |
// Oop heap accesses |
49591 | 181 |
static inline AccessInternal::OopLoadAtProxy<decorators> oop_load_at(oop base, ptrdiff_t offset) { |
47998
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
182 |
verify_heap_oop_decorators<load_mo_decorators>(); |
49591 | 183 |
return AccessInternal::OopLoadAtProxy<decorators>(base, offset); |
47998
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
184 |
} |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
185 |
|
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
186 |
template <typename T> |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
187 |
static inline void oop_store_at(oop base, ptrdiff_t offset, T value) { |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
188 |
verify_heap_oop_decorators<store_mo_decorators>(); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
189 |
typedef typename AccessInternal::OopOrNarrowOop<T>::type OopType; |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
190 |
OopType oop_value = value; |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
191 |
AccessInternal::store_at<decorators | INTERNAL_VALUE_IS_OOP>(base, offset, oop_value); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
192 |
} |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
193 |
|
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
194 |
template <typename T> |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
195 |
static inline T oop_atomic_cmpxchg_at(T new_value, oop base, ptrdiff_t offset, T compare_value) { |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
196 |
verify_heap_oop_decorators<atomic_cmpxchg_mo_decorators>(); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
197 |
typedef typename AccessInternal::OopOrNarrowOop<T>::type OopType; |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
198 |
OopType new_oop_value = new_value; |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
199 |
OopType compare_oop_value = compare_value; |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
200 |
return AccessInternal::atomic_cmpxchg_at<decorators | INTERNAL_VALUE_IS_OOP>(new_oop_value, base, offset, compare_oop_value); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
201 |
} |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
202 |
|
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
203 |
template <typename T> |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
204 |
static inline T oop_atomic_xchg_at(T new_value, oop base, ptrdiff_t offset) { |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
205 |
verify_heap_oop_decorators<atomic_xchg_mo_decorators>(); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
206 |
typedef typename AccessInternal::OopOrNarrowOop<T>::type OopType; |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
207 |
OopType new_oop_value = new_value; |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
208 |
return AccessInternal::atomic_xchg_at<decorators | INTERNAL_VALUE_IS_OOP>(new_oop_value, base, offset); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
209 |
} |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
210 |
|
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
211 |
// Clone an object from src to dst |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
212 |
static inline void clone(oop src, oop dst, size_t size) { |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
213 |
verify_decorators<IN_HEAP>(); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
214 |
AccessInternal::clone<decorators>(src, dst, size); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
215 |
} |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
216 |
|
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
217 |
// Primitive accesses |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
218 |
template <typename P> |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
219 |
static inline P load(P* addr) { |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
220 |
verify_primitive_decorators<load_mo_decorators>(); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
221 |
return AccessInternal::load<decorators, P, P>(addr); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
222 |
} |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
223 |
|
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
224 |
template <typename P, typename T> |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
225 |
static inline void store(P* addr, T value) { |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
226 |
verify_primitive_decorators<store_mo_decorators>(); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
227 |
AccessInternal::store<decorators>(addr, value); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
228 |
} |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
229 |
|
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
230 |
template <typename P, typename T> |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
231 |
static inline T atomic_cmpxchg(T new_value, P* addr, T compare_value) { |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
232 |
verify_primitive_decorators<atomic_cmpxchg_mo_decorators>(); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
233 |
return AccessInternal::atomic_cmpxchg<decorators>(new_value, addr, compare_value); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
234 |
} |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
235 |
|
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
236 |
template <typename P, typename T> |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
237 |
static inline T atomic_xchg(T new_value, P* addr) { |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
238 |
verify_primitive_decorators<atomic_xchg_mo_decorators>(); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
239 |
return AccessInternal::atomic_xchg<decorators>(new_value, addr); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
240 |
} |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
241 |
|
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
242 |
// Oop accesses |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
243 |
template <typename P> |
49591 | 244 |
static inline AccessInternal::OopLoadProxy<P, decorators> oop_load(P* addr) { |
47998
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
245 |
verify_oop_decorators<load_mo_decorators>(); |
49591 | 246 |
return AccessInternal::OopLoadProxy<P, decorators>(addr); |
47998
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
247 |
} |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
248 |
|
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
249 |
template <typename P, typename T> |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
250 |
static inline void oop_store(P* addr, T value) { |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
251 |
verify_oop_decorators<store_mo_decorators>(); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
252 |
typedef typename AccessInternal::OopOrNarrowOop<T>::type OopType; |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
253 |
OopType oop_value = value; |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
254 |
AccessInternal::store<decorators | INTERNAL_VALUE_IS_OOP>(addr, oop_value); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
255 |
} |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
256 |
|
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
257 |
template <typename P, typename T> |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
258 |
static inline T oop_atomic_cmpxchg(T new_value, P* addr, T compare_value) { |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
259 |
verify_oop_decorators<atomic_cmpxchg_mo_decorators>(); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
260 |
typedef typename AccessInternal::OopOrNarrowOop<T>::type OopType; |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
261 |
OopType new_oop_value = new_value; |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
262 |
OopType compare_oop_value = compare_value; |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
263 |
return AccessInternal::atomic_cmpxchg<decorators | INTERNAL_VALUE_IS_OOP>(new_oop_value, addr, compare_oop_value); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
264 |
} |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
265 |
|
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
266 |
template <typename P, typename T> |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
267 |
static inline T oop_atomic_xchg(T new_value, P* addr) { |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
268 |
verify_oop_decorators<atomic_xchg_mo_decorators>(); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
269 |
typedef typename AccessInternal::OopOrNarrowOop<T>::type OopType; |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
270 |
OopType new_oop_value = new_value; |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
271 |
return AccessInternal::atomic_xchg<decorators | INTERNAL_VALUE_IS_OOP>(new_oop_value, addr); |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
272 |
} |
49041
44122f767467
8198286: Direct memory accessors in typeArrayOop.hpp should use Access API
eosterlund
parents:
48966
diff
changeset
|
273 |
|
44122f767467
8198286: Direct memory accessors in typeArrayOop.hpp should use Access API
eosterlund
parents:
48966
diff
changeset
|
274 |
static oop resolve(oop obj) { |
53075
747d29313e5a
8215492: Rename INTERNAL_EMPTY to something less "internal"
pliden
parents:
52070
diff
changeset
|
275 |
verify_decorators<DECORATORS_NONE>(); |
49041
44122f767467
8198286: Direct memory accessors in typeArrayOop.hpp should use Access API
eosterlund
parents:
48966
diff
changeset
|
276 |
return AccessInternal::resolve<decorators>(obj); |
44122f767467
8198286: Direct memory accessors in typeArrayOop.hpp should use Access API
eosterlund
parents:
48966
diff
changeset
|
277 |
} |
49658 | 278 |
|
279 |
static bool equals(oop o1, oop o2) { |
|
52070 | 280 |
verify_decorators<AS_RAW>(); |
49658 | 281 |
return AccessInternal::equals<decorators>(o1, o2); |
282 |
} |
|
47998
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
283 |
}; |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
284 |
|
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
285 |
// Helper for performing raw accesses (knows only of memory ordering |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
286 |
// atomicity decorators as well as compressed oops) |
53075
747d29313e5a
8215492: Rename INTERNAL_EMPTY to something less "internal"
pliden
parents:
52070
diff
changeset
|
287 |
template <DecoratorSet decorators = DECORATORS_NONE> |
47998
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
288 |
class RawAccess: public Access<AS_RAW | decorators> {}; |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
289 |
|
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
290 |
// Helper for performing normal accesses on the heap. These accesses |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
291 |
// may resolve an accessor on a GC barrier set |
53075
747d29313e5a
8215492: Rename INTERNAL_EMPTY to something less "internal"
pliden
parents:
52070
diff
changeset
|
292 |
template <DecoratorSet decorators = DECORATORS_NONE> |
47998
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
293 |
class HeapAccess: public Access<IN_HEAP | decorators> {}; |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
294 |
|
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
295 |
// Helper for performing normal accesses in roots. These accesses |
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
296 |
// may resolve an accessor on a GC barrier set |
53075
747d29313e5a
8215492: Rename INTERNAL_EMPTY to something less "internal"
pliden
parents:
52070
diff
changeset
|
297 |
template <DecoratorSet decorators = DECORATORS_NONE> |
50599
ecc2af326b5f
8204939: Change Access nomenclature: root to native
kbarrett
parents:
50532
diff
changeset
|
298 |
class NativeAccess: public Access<IN_NATIVE | decorators> {}; |
47998
fb0275c320a0
8189871: Refactor GC barriers to use declarative semantics
eosterlund
parents:
diff
changeset
|
299 |
|
50389
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
300 |
// Helper for array access. |
53075
747d29313e5a
8215492: Rename INTERNAL_EMPTY to something less "internal"
pliden
parents:
52070
diff
changeset
|
301 |
template <DecoratorSet decorators = DECORATORS_NONE> |
50728 | 302 |
class ArrayAccess: public HeapAccess<IS_ARRAY | decorators> { |
303 |
typedef HeapAccess<IS_ARRAY | decorators> AccessT; |
|
50389
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
304 |
public: |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
305 |
template <typename T> |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
306 |
static inline void arraycopy(arrayOop src_obj, size_t src_offset_in_bytes, |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
307 |
arrayOop dst_obj, size_t dst_offset_in_bytes, |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
308 |
size_t length) { |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
309 |
AccessT::arraycopy(src_obj, src_offset_in_bytes, reinterpret_cast<const T*>(NULL), |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
310 |
dst_obj, dst_offset_in_bytes, reinterpret_cast<T*>(NULL), |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
311 |
length); |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
312 |
} |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
313 |
|
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
314 |
template <typename T> |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
315 |
static inline void arraycopy_to_native(arrayOop src_obj, size_t src_offset_in_bytes, |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
316 |
T* dst, |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
317 |
size_t length) { |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
318 |
AccessT::arraycopy(src_obj, src_offset_in_bytes, reinterpret_cast<const T*>(NULL), |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
319 |
NULL, 0, dst, |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
320 |
length); |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
321 |
} |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
322 |
|
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
323 |
template <typename T> |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
324 |
static inline void arraycopy_from_native(const T* src, |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
325 |
arrayOop dst_obj, size_t dst_offset_in_bytes, |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
326 |
size_t length) { |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
327 |
AccessT::arraycopy(NULL, 0, src, |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
328 |
dst_obj, dst_offset_in_bytes, reinterpret_cast<T*>(NULL), |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
329 |
length); |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
330 |
} |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
331 |
|
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
332 |
static inline bool oop_arraycopy(arrayOop src_obj, size_t src_offset_in_bytes, |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
333 |
arrayOop dst_obj, size_t dst_offset_in_bytes, |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
334 |
size_t length) { |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
335 |
return AccessT::oop_arraycopy(src_obj, src_offset_in_bytes, reinterpret_cast<const HeapWord*>(NULL), |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
336 |
dst_obj, dst_offset_in_bytes, reinterpret_cast<HeapWord*>(NULL), |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
337 |
length); |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
338 |
} |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
339 |
|
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
340 |
template <typename T> |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
341 |
static inline bool oop_arraycopy_raw(T* src, T* dst, size_t length) { |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
342 |
return AccessT::oop_arraycopy(NULL, 0, src, |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
343 |
NULL, 0, dst, |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
344 |
length); |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
345 |
} |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
346 |
|
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
347 |
}; |
7e8c0409a747
8198285: More consistent Access API for arraycopy
rkennke
parents:
49658
diff
changeset
|
348 |
|
49658 | 349 |
template <DecoratorSet decorators> |
350 |
template <DecoratorSet expected_decorators> |
|
351 |
void Access<decorators>::verify_decorators() { |
|
352 |
STATIC_ASSERT((~expected_decorators & decorators) == 0); // unexpected decorator used |
|
353 |
const DecoratorSet barrier_strength_decorators = decorators & AS_DECORATOR_MASK; |
|
354 |
STATIC_ASSERT(barrier_strength_decorators == 0 || ( // make sure barrier strength decorators are disjoint if set |
|
355 |
(barrier_strength_decorators ^ AS_NO_KEEPALIVE) == 0 || |
|
356 |
(barrier_strength_decorators ^ AS_RAW) == 0 || |
|
357 |
(barrier_strength_decorators ^ AS_NORMAL) == 0 |
|
358 |
)); |
|
359 |
const DecoratorSet ref_strength_decorators = decorators & ON_DECORATOR_MASK; |
|
360 |
STATIC_ASSERT(ref_strength_decorators == 0 || ( // make sure ref strength decorators are disjoint if set |
|
361 |
(ref_strength_decorators ^ ON_STRONG_OOP_REF) == 0 || |
|
362 |
(ref_strength_decorators ^ ON_WEAK_OOP_REF) == 0 || |
|
363 |
(ref_strength_decorators ^ ON_PHANTOM_OOP_REF) == 0 || |
|
364 |
(ref_strength_decorators ^ ON_UNKNOWN_OOP_REF) == 0 |
|
365 |
)); |
|
366 |
const DecoratorSet memory_ordering_decorators = decorators & MO_DECORATOR_MASK; |
|
367 |
STATIC_ASSERT(memory_ordering_decorators == 0 || ( // make sure memory ordering decorators are disjoint if set |
|
368 |
(memory_ordering_decorators ^ MO_UNORDERED) == 0 || |
|
369 |
(memory_ordering_decorators ^ MO_VOLATILE) == 0 || |
|
370 |
(memory_ordering_decorators ^ MO_RELAXED) == 0 || |
|
371 |
(memory_ordering_decorators ^ MO_ACQUIRE) == 0 || |
|
372 |
(memory_ordering_decorators ^ MO_RELEASE) == 0 || |
|
373 |
(memory_ordering_decorators ^ MO_SEQ_CST) == 0 |
|
374 |
)); |
|
375 |
const DecoratorSet location_decorators = decorators & IN_DECORATOR_MASK; |
|
376 |
STATIC_ASSERT(location_decorators == 0 || ( // make sure location decorators are disjoint if set |
|
50599
ecc2af326b5f
8204939: Change Access nomenclature: root to native
kbarrett
parents:
50532
diff
changeset
|
377 |
(location_decorators ^ IN_NATIVE) == 0 || |
50803
45c1fde86050
8205559: Remove IN_CONCURRENT_ROOT Access decorator
kbarrett
parents:
50728
diff
changeset
|
378 |
(location_decorators ^ IN_HEAP) == 0 |
49658 | 379 |
)); |
380 |
} |
|
381 |
||
382 |
#endif // SHARE_OOPS_ACCESS_HPP |