Welcome to mirror list, hosted at ThFree Co, Russian Federation.

embedder-data-slot-inl.h « objects « src « v8 « deps - github.com/nodejs/node.git - Unnamed repository; edit this file 'description' to name the repository.
summaryrefslogtreecommitdiff
blob: 3e5276166daf7687134852e898077bc5aba42e1a (plain)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
// Copyright 2018 the V8 project authors. All rights reserved.
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.

#ifndef V8_OBJECTS_EMBEDDER_DATA_SLOT_INL_H_
#define V8_OBJECTS_EMBEDDER_DATA_SLOT_INL_H_

#include "src/objects/embedder-data-slot.h"

#include "src/base/memory.h"
#include "src/heap/heap-write-barrier-inl.h"
#include "src/objects/embedder-data-array.h"
#include "src/objects/js-objects-inl.h"
#include "src/objects/objects-inl.h"

// Has to be the last include (doesn't have include guards):
#include "src/objects/object-macros.h"

namespace v8 {
namespace internal {

EmbedderDataSlot::EmbedderDataSlot(EmbedderDataArray array, int entry_index)
    : SlotBase(FIELD_ADDR(array,
                          EmbedderDataArray::OffsetOfElementAt(entry_index))) {}

EmbedderDataSlot::EmbedderDataSlot(JSObject object, int embedder_field_index)
    : SlotBase(FIELD_ADDR(
          object, object.GetEmbedderFieldOffset(embedder_field_index))) {}

Object EmbedderDataSlot::load_tagged() const {
  return ObjectSlot(address() + kTaggedPayloadOffset).Relaxed_Load();
}

void EmbedderDataSlot::store_smi(Smi value) {
  ObjectSlot(address() + kTaggedPayloadOffset).Relaxed_Store(value);
#ifdef V8_COMPRESS_POINTERS
  // See gc_safe_store() for the reasons behind two stores.
  ObjectSlot(address() + kRawPayloadOffset).Relaxed_Store(Smi::zero());
#endif
}

// static
void EmbedderDataSlot::store_tagged(EmbedderDataArray array, int entry_index,
                                    Object value) {
  int slot_offset = EmbedderDataArray::OffsetOfElementAt(entry_index);
  ObjectSlot(FIELD_ADDR(array, slot_offset + kTaggedPayloadOffset))
      .Relaxed_Store(value);
  WRITE_BARRIER(array, slot_offset + kTaggedPayloadOffset, value);
#ifdef V8_COMPRESS_POINTERS
  // See gc_safe_store() for the reasons behind two stores.
  ObjectSlot(FIELD_ADDR(array, slot_offset + kRawPayloadOffset))
      .Relaxed_Store(Smi::zero());
#endif
}

// static
void EmbedderDataSlot::store_tagged(JSObject object, int embedder_field_index,
                                    Object value) {
  int slot_offset = object.GetEmbedderFieldOffset(embedder_field_index);
  ObjectSlot(FIELD_ADDR(object, slot_offset + kTaggedPayloadOffset))
      .Relaxed_Store(value);
  WRITE_BARRIER(object, slot_offset + kTaggedPayloadOffset, value);
#ifdef V8_COMPRESS_POINTERS
  // See gc_safe_store() for the reasons behind two stores.
  ObjectSlot(FIELD_ADDR(object, slot_offset + kRawPayloadOffset))
      .Relaxed_Store(Smi::zero());
#endif
}

bool EmbedderDataSlot::ToAlignedPointer(const Isolate* isolate,
                                        void** out_pointer) const {
  // We don't care about atomicity of access here because embedder slots
  // are accessed this way only from the main thread via API during "mutator"
  // phase which is propely synched with GC (concurrent marker may still look
  // at the tagged part of the embedder slot but read-only access is ok).
#ifdef V8_COMPRESS_POINTERS
  // TODO(ishell, v8:8875): When pointer compression is enabled 8-byte size
  // fields (external pointers, doubles and BigInt data) are only kTaggedSize
  // aligned so we have to use unaligned pointer friendly way of accessing them
  // in order to avoid undefined behavior in C++ code.
  Address raw_value = base::ReadUnalignedValue<Address>(address());
  // We currently have to treat zero as nullptr in embedder slots.
  if (raw_value) raw_value = DecodeExternalPointer(isolate, raw_value);
#else
  Address raw_value = *location();
#endif
  *out_pointer = reinterpret_cast<void*>(raw_value);
  return HAS_SMI_TAG(raw_value);
}

bool EmbedderDataSlot::store_aligned_pointer(Isolate* isolate, void* ptr) {
  Address value = reinterpret_cast<Address>(ptr);
  if (!HAS_SMI_TAG(value)) return false;
  // We currently have to treat zero as nullptr in embedder slots.
  if (value) value = EncodeExternalPointer(isolate, value);
  DCHECK(HAS_SMI_TAG(value));
  gc_safe_store(value);
  return true;
}

EmbedderDataSlot::RawData EmbedderDataSlot::load_raw(
    Isolate* isolate, const DisallowHeapAllocation& no_gc) const {
  // We don't care about atomicity of access here because embedder slots
  // are accessed this way only by serializer from the main thread when
  // GC is not active (concurrent marker may still look at the tagged part
  // of the embedder slot but read-only access is ok).
#ifdef V8_COMPRESS_POINTERS
  // TODO(ishell, v8:8875): When pointer compression is enabled 8-byte size
  // fields (external pointers, doubles and BigInt data) are only kTaggedSize
  // aligned so we have to use unaligned pointer friendly way of accessing them
  // in order to avoid undefined behavior in C++ code.
  Address value = base::ReadUnalignedValue<Address>(address());
  // We currently have to treat zero as nullptr in embedder slots.
  if (value) return DecodeExternalPointer(isolate, value);
  return value;
#else
  return *location();
#endif
}

void EmbedderDataSlot::store_raw(Isolate* isolate,
                                 EmbedderDataSlot::RawData data,
                                 const DisallowHeapAllocation& no_gc) {
  // We currently have to treat zero as nullptr in embedder slots.
  if (data) data = EncodeExternalPointer(isolate, data);
  gc_safe_store(data);
}

void EmbedderDataSlot::gc_safe_store(Address value) {
#ifdef V8_COMPRESS_POINTERS
  STATIC_ASSERT(kSmiShiftSize == 0);
  STATIC_ASSERT(SmiValuesAre31Bits());
  STATIC_ASSERT(kTaggedSize == kInt32Size);
  // We have to do two 32-bit stores here because
  // 1) tagged part modifications must be atomic to be properly synchronized
  //    with the concurrent marker.
  // 2) atomicity of full pointer store is not guaranteed for embedder slots
  //    since the address of the slot may not be kSystemPointerSize aligned
  //    (only kTaggedSize alignment is guaranteed).
  // TODO(ishell, v8:8875): revisit this once the allocation alignment
  // inconsistency is fixed.
  Address lo = static_cast<intptr_t>(static_cast<int32_t>(value));
  ObjectSlot(address() + kTaggedPayloadOffset).Relaxed_Store(Smi(lo));
  Address hi = value >> 32;
  ObjectSlot(address() + kRawPayloadOffset).Relaxed_Store(Object(hi));
#else
  ObjectSlot(address() + kTaggedPayloadOffset).Relaxed_Store(Smi(value));
#endif
}

}  // namespace internal
}  // namespace v8

#include "src/objects/object-macros-undef.h"

#endif  // V8_OBJECTS_EMBEDDER_DATA_SLOT_INL_H_