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Andreas Gampe3b165bc2016-08-01 22:07:04 -07001/*
2 * Copyright (C) 2011 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#ifndef ART_COMPILER_UTILS_JNI_MACRO_ASSEMBLER_H_
18#define ART_COMPILER_UTILS_JNI_MACRO_ASSEMBLER_H_
19
20#include <vector>
21
22#include "arch/instruction_set.h"
23#include "base/arena_allocator.h"
24#include "base/arena_object.h"
David Brazdild9c90372016-09-14 16:53:55 +010025#include "base/array_ref.h"
Andreas Gampe3b165bc2016-08-01 22:07:04 -070026#include "base/enums.h"
27#include "base/logging.h"
28#include "base/macros.h"
29#include "managed_register.h"
30#include "offsets.h"
Andreas Gampe3b165bc2016-08-01 22:07:04 -070031
32namespace art {
33
34class ArenaAllocator;
35class DebugFrameOpCodeWriterForAssembler;
36class InstructionSetFeatures;
37class MemoryRegion;
38
39template <PointerSize kPointerSize>
40class JNIMacroAssembler : public DeletableArenaObject<kArenaAllocAssembler> {
41 public:
42 static std::unique_ptr<JNIMacroAssembler<kPointerSize>> Create(
43 ArenaAllocator* arena,
44 InstructionSet instruction_set,
45 const InstructionSetFeatures* instruction_set_features = nullptr);
46
47 // Finalize the code; emit slow paths, fixup branches, add literal pool, etc.
48 virtual void FinalizeCode() = 0;
49
50 // Size of generated code
51 virtual size_t CodeSize() const = 0;
52
53 // Copy instructions out of assembly buffer into the given region of memory
54 virtual void FinalizeInstructions(const MemoryRegion& region) = 0;
55
56 // Emit code that will create an activation on the stack
57 virtual void BuildFrame(size_t frame_size,
58 ManagedRegister method_reg,
59 ArrayRef<const ManagedRegister> callee_save_regs,
60 const ManagedRegisterEntrySpills& entry_spills) = 0;
61
62 // Emit code that will remove an activation from the stack
63 virtual void RemoveFrame(size_t frame_size, ArrayRef<const ManagedRegister> callee_save_regs) = 0;
64
65 virtual void IncreaseFrameSize(size_t adjust) = 0;
66 virtual void DecreaseFrameSize(size_t adjust) = 0;
67
68 // Store routines
69 virtual void Store(FrameOffset offs, ManagedRegister src, size_t size) = 0;
70 virtual void StoreRef(FrameOffset dest, ManagedRegister src) = 0;
71 virtual void StoreRawPtr(FrameOffset dest, ManagedRegister src) = 0;
72
73 virtual void StoreImmediateToFrame(FrameOffset dest, uint32_t imm, ManagedRegister scratch) = 0;
74
75 virtual void StoreStackOffsetToThread(ThreadOffset<kPointerSize> thr_offs,
76 FrameOffset fr_offs,
77 ManagedRegister scratch) = 0;
78
79 virtual void StoreStackPointerToThread(ThreadOffset<kPointerSize> thr_offs) = 0;
80
81 virtual void StoreSpanning(FrameOffset dest,
82 ManagedRegister src,
83 FrameOffset in_off,
84 ManagedRegister scratch) = 0;
85
86 // Load routines
87 virtual void Load(ManagedRegister dest, FrameOffset src, size_t size) = 0;
88
89 virtual void LoadFromThread(ManagedRegister dest,
90 ThreadOffset<kPointerSize> src,
91 size_t size) = 0;
92
93 virtual void LoadRef(ManagedRegister dest, FrameOffset src) = 0;
94 // If unpoison_reference is true and kPoisonReference is true, then we negate the read reference.
95 virtual void LoadRef(ManagedRegister dest,
96 ManagedRegister base,
97 MemberOffset offs,
98 bool unpoison_reference) = 0;
99
100 virtual void LoadRawPtr(ManagedRegister dest, ManagedRegister base, Offset offs) = 0;
101
102 virtual void LoadRawPtrFromThread(ManagedRegister dest, ThreadOffset<kPointerSize> offs) = 0;
103
104 // Copying routines
105 virtual void Move(ManagedRegister dest, ManagedRegister src, size_t size) = 0;
106
107 virtual void CopyRawPtrFromThread(FrameOffset fr_offs,
108 ThreadOffset<kPointerSize> thr_offs,
109 ManagedRegister scratch) = 0;
110
111 virtual void CopyRawPtrToThread(ThreadOffset<kPointerSize> thr_offs,
112 FrameOffset fr_offs,
113 ManagedRegister scratch) = 0;
114
115 virtual void CopyRef(FrameOffset dest, FrameOffset src, ManagedRegister scratch) = 0;
116
117 virtual void Copy(FrameOffset dest, FrameOffset src, ManagedRegister scratch, size_t size) = 0;
118
119 virtual void Copy(FrameOffset dest,
120 ManagedRegister src_base,
121 Offset src_offset,
122 ManagedRegister scratch,
123 size_t size) = 0;
124
125 virtual void Copy(ManagedRegister dest_base,
126 Offset dest_offset,
127 FrameOffset src,
128 ManagedRegister scratch,
129 size_t size) = 0;
130
131 virtual void Copy(FrameOffset dest,
132 FrameOffset src_base,
133 Offset src_offset,
134 ManagedRegister scratch,
135 size_t size) = 0;
136
137 virtual void Copy(ManagedRegister dest,
138 Offset dest_offset,
139 ManagedRegister src,
140 Offset src_offset,
141 ManagedRegister scratch,
142 size_t size) = 0;
143
144 virtual void Copy(FrameOffset dest,
145 Offset dest_offset,
146 FrameOffset src,
147 Offset src_offset,
148 ManagedRegister scratch,
149 size_t size) = 0;
150
151 virtual void MemoryBarrier(ManagedRegister scratch) = 0;
152
153 // Sign extension
154 virtual void SignExtend(ManagedRegister mreg, size_t size) = 0;
155
156 // Zero extension
157 virtual void ZeroExtend(ManagedRegister mreg, size_t size) = 0;
158
159 // Exploit fast access in managed code to Thread::Current()
160 virtual void GetCurrentThread(ManagedRegister tr) = 0;
161 virtual void GetCurrentThread(FrameOffset dest_offset, ManagedRegister scratch) = 0;
162
163 // Set up out_reg to hold a Object** into the handle scope, or to be null if the
164 // value is null and null_allowed. in_reg holds a possibly stale reference
165 // that can be used to avoid loading the handle scope entry to see if the value is
166 // null.
167 virtual void CreateHandleScopeEntry(ManagedRegister out_reg,
168 FrameOffset handlescope_offset,
169 ManagedRegister in_reg,
170 bool null_allowed) = 0;
171
172 // Set up out_off to hold a Object** into the handle scope, or to be null if the
173 // value is null and null_allowed.
174 virtual void CreateHandleScopeEntry(FrameOffset out_off,
175 FrameOffset handlescope_offset,
176 ManagedRegister scratch,
177 bool null_allowed) = 0;
178
179 // src holds a handle scope entry (Object**) load this into dst
180 virtual void LoadReferenceFromHandleScope(ManagedRegister dst, ManagedRegister src) = 0;
181
182 // Heap::VerifyObject on src. In some cases (such as a reference to this) we
183 // know that src may not be null.
184 virtual void VerifyObject(ManagedRegister src, bool could_be_null) = 0;
185 virtual void VerifyObject(FrameOffset src, bool could_be_null) = 0;
186
187 // Call to address held at [base+offset]
188 virtual void Call(ManagedRegister base, Offset offset, ManagedRegister scratch) = 0;
189 virtual void Call(FrameOffset base, Offset offset, ManagedRegister scratch) = 0;
190 virtual void CallFromThread(ThreadOffset<kPointerSize> offset, ManagedRegister scratch) = 0;
191
192 // Generate code to check if Thread::Current()->exception_ is non-null
193 // and branch to a ExceptionSlowPath if it is.
194 virtual void ExceptionPoll(ManagedRegister scratch, size_t stack_adjust) = 0;
195
196 virtual ~JNIMacroAssembler() {}
197
198 /**
199 * @brief Buffer of DWARF's Call Frame Information opcodes.
200 * @details It is used by debuggers and other tools to unwind the call stack.
201 */
202 virtual DebugFrameOpCodeWriterForAssembler& cfi() = 0;
203
204 protected:
205 explicit JNIMacroAssembler() {}
206};
207
208template <typename T, PointerSize kPointerSize>
209class JNIMacroAssemblerFwd : public JNIMacroAssembler<kPointerSize> {
210 public:
211 void FinalizeCode() OVERRIDE {
212 asm_.FinalizeCode();
213 }
214
215 size_t CodeSize() const OVERRIDE {
216 return asm_.CodeSize();
217 }
218
219 void FinalizeInstructions(const MemoryRegion& region) OVERRIDE {
220 asm_.FinalizeInstructions(region);
221 }
222
223 DebugFrameOpCodeWriterForAssembler& cfi() OVERRIDE {
224 return asm_.cfi();
225 }
226
227 protected:
228 explicit JNIMacroAssemblerFwd(ArenaAllocator* arena) : asm_(arena) {}
229
230 T asm_;
231};
232
233} // namespace art
234
235#endif // ART_COMPILER_UTILS_JNI_MACRO_ASSEMBLER_H_