blob: 134dda4b2c876c52d7839e92216f115cb0c07261 [file] [log] [blame]
Elliott Hughes2faa5f12012-01-30 14:42:07 -08001/*
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 */
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -070016
Ian Rogers166db042013-07-26 12:05:57 -070017#ifndef ART_COMPILER_UTILS_ASSEMBLER_H_
18#define ART_COMPILER_UTILS_ASSEMBLER_H_
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -070019
Ian Rogers2c8f6532011-09-02 17:16:34 -070020#include <vector>
21
Ian Rogersd582fa42014-11-05 23:46:43 -080022#include "arch/instruction_set.h"
Elliott Hughes07ed66b2012-12-12 18:34:25 -080023#include "base/logging.h"
Elliott Hughes76160052012-12-12 16:31:20 -080024#include "base/macros.h"
Ian Rogers166db042013-07-26 12:05:57 -070025#include "arm/constants_arm.h"
Brian Carlstrom578bbdc2011-07-21 14:07:47 -070026#include "managed_register.h"
27#include "memory_region.h"
Ian Rogersd582fa42014-11-05 23:46:43 -080028#include "mips/constants_mips.h"
Brian Carlstrom578bbdc2011-07-21 14:07:47 -070029#include "offsets.h"
Ian Rogersd582fa42014-11-05 23:46:43 -080030#include "x86/constants_x86.h"
31#include "x86_64/constants_x86_64.h"
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -070032
Carl Shapiro6b6b5f02011-06-21 15:05:09 -070033namespace art {
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -070034
35class Assembler;
36class AssemblerBuffer;
37class AssemblerFixup;
38
Ian Rogers2c8f6532011-09-02 17:16:34 -070039namespace arm {
40 class ArmAssembler;
Dave Allison65fcc2c2014-04-28 13:45:27 -070041 class Arm32Assembler;
42 class Thumb2Assembler;
Ian Rogers2c8f6532011-09-02 17:16:34 -070043}
Stuart Monteithb95a5342014-03-12 13:32:32 +000044namespace arm64 {
45 class Arm64Assembler;
46}
jeffhao7fbee072012-08-24 17:56:54 -070047namespace mips {
48 class MipsAssembler;
49}
Ian Rogers2c8f6532011-09-02 17:16:34 -070050namespace x86 {
51 class X86Assembler;
52}
Dmitry Petrochenkofca82202014-03-21 11:21:37 +070053namespace x86_64 {
54 class X86_64Assembler;
55}
Ian Rogers2c8f6532011-09-02 17:16:34 -070056
Nicolas Geoffray8ccc3f52014-03-19 10:34:11 +000057class ExternalLabel {
58 public:
Andreas Gampe277ccbd2014-11-03 21:36:10 -080059 ExternalLabel(const char* name_in, uintptr_t address_in)
60 : name_(name_in), address_(address_in) {
61 DCHECK(name_in != nullptr);
Nicolas Geoffray8ccc3f52014-03-19 10:34:11 +000062 }
63
64 const char* name() const { return name_; }
Ian Rogers13735952014-10-08 12:43:28 -070065 uintptr_t address() const {
Nicolas Geoffray8ccc3f52014-03-19 10:34:11 +000066 return address_;
67 }
68
69 private:
70 const char* name_;
Ian Rogers13735952014-10-08 12:43:28 -070071 const uintptr_t address_;
Nicolas Geoffray8ccc3f52014-03-19 10:34:11 +000072};
73
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -070074class Label {
75 public:
76 Label() : position_(0) {}
77
78 ~Label() {
79 // Assert if label is being destroyed with unresolved branches pending.
80 CHECK(!IsLinked());
81 }
82
83 // Returns the position for bound and linked labels. Cannot be used
84 // for unused labels.
85 int Position() const {
86 CHECK(!IsUnused());
Ian Rogers13735952014-10-08 12:43:28 -070087 return IsBound() ? -position_ - sizeof(void*) : position_ - sizeof(void*);
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -070088 }
89
90 int LinkPosition() const {
91 CHECK(IsLinked());
Ian Rogers13735952014-10-08 12:43:28 -070092 return position_ - sizeof(void*);
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -070093 }
94
95 bool IsBound() const { return position_ < 0; }
96 bool IsUnused() const { return position_ == 0; }
97 bool IsLinked() const { return position_ > 0; }
98
99 private:
100 int position_;
101
102 void Reinitialize() {
103 position_ = 0;
104 }
105
106 void BindTo(int position) {
107 CHECK(!IsBound());
Ian Rogers13735952014-10-08 12:43:28 -0700108 position_ = -position - sizeof(void*);
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -0700109 CHECK(IsBound());
110 }
111
112 void LinkTo(int position) {
113 CHECK(!IsBound());
Ian Rogers13735952014-10-08 12:43:28 -0700114 position_ = position + sizeof(void*);
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -0700115 CHECK(IsLinked());
116 }
117
Ian Rogers2c8f6532011-09-02 17:16:34 -0700118 friend class arm::ArmAssembler;
Dave Allison65fcc2c2014-04-28 13:45:27 -0700119 friend class arm::Arm32Assembler;
120 friend class arm::Thumb2Assembler;
Alexandre Rames5319def2014-10-23 10:03:10 +0100121 friend class arm64::Arm64Assembler;
jeffhao7fbee072012-08-24 17:56:54 -0700122 friend class mips::MipsAssembler;
Ian Rogers2c8f6532011-09-02 17:16:34 -0700123 friend class x86::X86Assembler;
Dmitry Petrochenkofca82202014-03-21 11:21:37 +0700124 friend class x86_64::X86_64Assembler;
Ian Rogers2c8f6532011-09-02 17:16:34 -0700125
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -0700126 DISALLOW_COPY_AND_ASSIGN(Label);
127};
128
129
130// Assembler fixups are positions in generated code that require processing
131// after the code has been copied to executable memory. This includes building
132// relocation information.
133class AssemblerFixup {
134 public:
135 virtual void Process(const MemoryRegion& region, int position) = 0;
136 virtual ~AssemblerFixup() {}
137
138 private:
139 AssemblerFixup* previous_;
140 int position_;
141
142 AssemblerFixup* previous() const { return previous_; }
Andreas Gampe277ccbd2014-11-03 21:36:10 -0800143 void set_previous(AssemblerFixup* previous_in) { previous_ = previous_in; }
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -0700144
145 int position() const { return position_; }
Andreas Gampe277ccbd2014-11-03 21:36:10 -0800146 void set_position(int position_in) { position_ = position_in; }
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -0700147
148 friend class AssemblerBuffer;
149};
150
Ian Rogers45a76cb2011-07-21 22:00:15 -0700151// Parent of all queued slow paths, emitted during finalization
152class SlowPath {
153 public:
154 SlowPath() : next_(NULL) {}
155 virtual ~SlowPath() {}
156
157 Label* Continuation() { return &continuation_; }
158 Label* Entry() { return &entry_; }
159 // Generate code for slow path
160 virtual void Emit(Assembler *sp_asm) = 0;
161
162 protected:
163 // Entry branched to by fast path
164 Label entry_;
165 // Optional continuation that is branched to at the end of the slow path
166 Label continuation_;
167 // Next in linked list of slow paths
168 SlowPath *next_;
169
Mathieu Chartier02e25112013-08-14 16:14:24 -0700170 private:
Ian Rogers45a76cb2011-07-21 22:00:15 -0700171 friend class AssemblerBuffer;
172 DISALLOW_COPY_AND_ASSIGN(SlowPath);
173};
174
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -0700175class AssemblerBuffer {
176 public:
177 AssemblerBuffer();
178 ~AssemblerBuffer();
179
180 // Basic support for emitting, loading, and storing.
181 template<typename T> void Emit(T value) {
182 CHECK(HasEnsuredCapacity());
183 *reinterpret_cast<T*>(cursor_) = value;
184 cursor_ += sizeof(T);
185 }
186
187 template<typename T> T Load(size_t position) {
188 CHECK_LE(position, Size() - static_cast<int>(sizeof(T)));
189 return *reinterpret_cast<T*>(contents_ + position);
190 }
191
192 template<typename T> void Store(size_t position, T value) {
193 CHECK_LE(position, Size() - static_cast<int>(sizeof(T)));
194 *reinterpret_cast<T*>(contents_ + position) = value;
195 }
196
Dave Allison65fcc2c2014-04-28 13:45:27 -0700197 void Move(size_t newposition, size_t oldposition) {
198 CHECK(HasEnsuredCapacity());
199 // Move the contents of the buffer from oldposition to
200 // newposition by nbytes.
201 size_t nbytes = Size() - oldposition;
202 memmove(contents_ + newposition, contents_ + oldposition, nbytes);
203 cursor_ += newposition - oldposition;
204 }
205
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -0700206 // Emit a fixup at the current location.
207 void EmitFixup(AssemblerFixup* fixup) {
208 fixup->set_previous(fixup_);
209 fixup->set_position(Size());
210 fixup_ = fixup;
211 }
212
Ian Rogers45a76cb2011-07-21 22:00:15 -0700213 void EnqueueSlowPath(SlowPath* slowpath) {
214 if (slow_path_ == NULL) {
215 slow_path_ = slowpath;
216 } else {
217 SlowPath* cur = slow_path_;
218 for ( ; cur->next_ != NULL ; cur = cur->next_) {}
219 cur->next_ = slowpath;
220 }
221 }
222
223 void EmitSlowPaths(Assembler* sp_asm) {
224 SlowPath* cur = slow_path_;
225 SlowPath* next = NULL;
226 slow_path_ = NULL;
227 for ( ; cur != NULL ; cur = next) {
228 cur->Emit(sp_asm);
229 next = cur->next_;
230 delete cur;
231 }
232 }
233
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -0700234 // Get the size of the emitted code.
235 size_t Size() const {
236 CHECK_GE(cursor_, contents_);
237 return cursor_ - contents_;
238 }
239
Ian Rogers13735952014-10-08 12:43:28 -0700240 uint8_t* contents() const { return contents_; }
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -0700241
242 // Copy the assembled instructions into the specified memory block
243 // and apply all fixups.
244 void FinalizeInstructions(const MemoryRegion& region);
245
246 // To emit an instruction to the assembler buffer, the EnsureCapacity helper
247 // must be used to guarantee that the underlying data area is big enough to
248 // hold the emitted instruction. Usage:
249 //
250 // AssemblerBuffer buffer;
251 // AssemblerBuffer::EnsureCapacity ensured(&buffer);
252 // ... emit bytes for single instruction ...
253
Elliott Hughes31f1f4f2012-03-12 13:57:36 -0700254#ifndef NDEBUG
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -0700255
256 class EnsureCapacity {
257 public:
258 explicit EnsureCapacity(AssemblerBuffer* buffer) {
Elliott Hughes31f1f4f2012-03-12 13:57:36 -0700259 if (buffer->cursor() >= buffer->limit()) {
260 buffer->ExtendCapacity();
261 }
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -0700262 // In debug mode, we save the assembler buffer along with the gap
263 // size before we start emitting to the buffer. This allows us to
264 // check that any single generated instruction doesn't overflow the
265 // limit implied by the minimum gap size.
266 buffer_ = buffer;
267 gap_ = ComputeGap();
268 // Make sure that extending the capacity leaves a big enough gap
269 // for any kind of instruction.
270 CHECK_GE(gap_, kMinimumGap);
271 // Mark the buffer as having ensured the capacity.
272 CHECK(!buffer->HasEnsuredCapacity()); // Cannot nest.
273 buffer->has_ensured_capacity_ = true;
274 }
275
276 ~EnsureCapacity() {
277 // Unmark the buffer, so we cannot emit after this.
278 buffer_->has_ensured_capacity_ = false;
279 // Make sure the generated instruction doesn't take up more
280 // space than the minimum gap.
281 int delta = gap_ - ComputeGap();
Ian Rogersb033c752011-07-20 12:22:35 -0700282 CHECK_LE(delta, kMinimumGap);
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -0700283 }
284
285 private:
286 AssemblerBuffer* buffer_;
287 int gap_;
288
289 int ComputeGap() { return buffer_->Capacity() - buffer_->Size(); }
290 };
291
292 bool has_ensured_capacity_;
293 bool HasEnsuredCapacity() const { return has_ensured_capacity_; }
294
295#else
296
297 class EnsureCapacity {
298 public:
299 explicit EnsureCapacity(AssemblerBuffer* buffer) {
300 if (buffer->cursor() >= buffer->limit()) buffer->ExtendCapacity();
301 }
302 };
303
304 // When building the C++ tests, assertion code is enabled. To allow
305 // asserting that the user of the assembler buffer has ensured the
306 // capacity needed for emitting, we add a dummy method in non-debug mode.
307 bool HasEnsuredCapacity() const { return true; }
308
309#endif
310
311 // Returns the position in the instruction stream.
312 int GetPosition() { return cursor_ - contents_; }
313
314 private:
315 // The limit is set to kMinimumGap bytes before the end of the data area.
316 // This leaves enough space for the longest possible instruction and allows
317 // for a single, fast space check per instruction.
318 static const int kMinimumGap = 32;
319
Ian Rogers13735952014-10-08 12:43:28 -0700320 uint8_t* contents_;
321 uint8_t* cursor_;
322 uint8_t* limit_;
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -0700323 AssemblerFixup* fixup_;
Ian Rogersb48b9eb2014-02-28 16:20:21 -0800324#ifndef NDEBUG
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -0700325 bool fixups_processed_;
Ian Rogersb48b9eb2014-02-28 16:20:21 -0800326#endif
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -0700327
Ian Rogers45a76cb2011-07-21 22:00:15 -0700328 // Head of linked list of slow paths
329 SlowPath* slow_path_;
330
Ian Rogers13735952014-10-08 12:43:28 -0700331 uint8_t* cursor() const { return cursor_; }
332 uint8_t* limit() const { return limit_; }
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -0700333 size_t Capacity() const {
334 CHECK_GE(limit_, contents_);
335 return (limit_ - contents_) + kMinimumGap;
336 }
337
338 // Process the fixup chain starting at the given fixup. The offset is
339 // non-zero for fixups in the body if the preamble is non-empty.
340 void ProcessFixups(const MemoryRegion& region);
341
342 // Compute the limit based on the data area and the capacity. See
343 // description of kMinimumGap for the reasoning behind the value.
Ian Rogers13735952014-10-08 12:43:28 -0700344 static uint8_t* ComputeLimit(uint8_t* data, size_t capacity) {
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -0700345 return data + capacity - kMinimumGap;
346 }
347
348 void ExtendCapacity();
349
350 friend class AssemblerFixup;
351};
352
Ian Rogers2c8f6532011-09-02 17:16:34 -0700353class Assembler {
354 public:
355 static Assembler* Create(InstructionSet instruction_set);
356
357 // Emit slow paths queued during assembly
Serban Constantinescued8dd492014-02-11 14:15:10 +0000358 virtual void EmitSlowPaths() { buffer_.EmitSlowPaths(this); }
Ian Rogers2c8f6532011-09-02 17:16:34 -0700359
360 // Size of generated code
Serban Constantinescued8dd492014-02-11 14:15:10 +0000361 virtual size_t CodeSize() const { return buffer_.Size(); }
Ian Rogers2c8f6532011-09-02 17:16:34 -0700362
363 // Copy instructions out of assembly buffer into the given region of memory
Serban Constantinescued8dd492014-02-11 14:15:10 +0000364 virtual void FinalizeInstructions(const MemoryRegion& region) {
Ian Rogers2c8f6532011-09-02 17:16:34 -0700365 buffer_.FinalizeInstructions(region);
366 }
367
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000368 // TODO: Implement with disassembler.
Ian Rogers6a3c1fc2014-10-31 00:33:20 -0700369 virtual void Comment(const char* format, ...) { UNUSED(format); }
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000370
Ian Rogers2c8f6532011-09-02 17:16:34 -0700371 // Emit code that will create an activation on the stack
372 virtual void BuildFrame(size_t frame_size, ManagedRegister method_reg,
Ian Rogersb5d09b22012-03-06 22:14:17 -0800373 const std::vector<ManagedRegister>& callee_save_regs,
Dmitry Petrochenkofca82202014-03-21 11:21:37 +0700374 const ManagedRegisterEntrySpills& entry_spills) = 0;
Ian Rogers2c8f6532011-09-02 17:16:34 -0700375
376 // Emit code that will remove an activation from the stack
377 virtual void RemoveFrame(size_t frame_size,
Ian Rogersbdb03912011-09-14 00:55:44 -0700378 const std::vector<ManagedRegister>& callee_save_regs) = 0;
Ian Rogers2c8f6532011-09-02 17:16:34 -0700379
380 virtual void IncreaseFrameSize(size_t adjust) = 0;
381 virtual void DecreaseFrameSize(size_t adjust) = 0;
382
383 // Store routines
384 virtual void Store(FrameOffset offs, ManagedRegister src, size_t size) = 0;
385 virtual void StoreRef(FrameOffset dest, ManagedRegister src) = 0;
386 virtual void StoreRawPtr(FrameOffset dest, ManagedRegister src) = 0;
387
388 virtual void StoreImmediateToFrame(FrameOffset dest, uint32_t imm,
389 ManagedRegister scratch) = 0;
390
Ian Rogersdd7624d2014-03-14 17:43:00 -0700391 virtual void StoreImmediateToThread32(ThreadOffset<4> dest, uint32_t imm,
392 ManagedRegister scratch);
393 virtual void StoreImmediateToThread64(ThreadOffset<8> dest, uint32_t imm,
394 ManagedRegister scratch);
Ian Rogers2c8f6532011-09-02 17:16:34 -0700395
Ian Rogersdd7624d2014-03-14 17:43:00 -0700396 virtual void StoreStackOffsetToThread32(ThreadOffset<4> thr_offs,
397 FrameOffset fr_offs,
398 ManagedRegister scratch);
399 virtual void StoreStackOffsetToThread64(ThreadOffset<8> thr_offs,
400 FrameOffset fr_offs,
401 ManagedRegister scratch);
Ian Rogers2c8f6532011-09-02 17:16:34 -0700402
Ian Rogersdd7624d2014-03-14 17:43:00 -0700403 virtual void StoreStackPointerToThread32(ThreadOffset<4> thr_offs);
404 virtual void StoreStackPointerToThread64(ThreadOffset<8> thr_offs);
Ian Rogers2c8f6532011-09-02 17:16:34 -0700405
406 virtual void StoreSpanning(FrameOffset dest, ManagedRegister src,
407 FrameOffset in_off, ManagedRegister scratch) = 0;
408
409 // Load routines
410 virtual void Load(ManagedRegister dest, FrameOffset src, size_t size) = 0;
411
Ian Rogersdd7624d2014-03-14 17:43:00 -0700412 virtual void LoadFromThread32(ManagedRegister dest, ThreadOffset<4> src, size_t size);
413 virtual void LoadFromThread64(ManagedRegister dest, ThreadOffset<8> src, size_t size);
Ian Rogers5a7a74a2011-09-26 16:32:29 -0700414
Ian Rogers2c8f6532011-09-02 17:16:34 -0700415 virtual void LoadRef(ManagedRegister dest, FrameOffset src) = 0;
Ian Rogersdd7624d2014-03-14 17:43:00 -0700416 virtual void LoadRef(ManagedRegister dest, ManagedRegister base, MemberOffset offs) = 0;
Ian Rogers2c8f6532011-09-02 17:16:34 -0700417
Ian Rogersdd7624d2014-03-14 17:43:00 -0700418 virtual void LoadRawPtr(ManagedRegister dest, ManagedRegister base, Offset offs) = 0;
Ian Rogers2c8f6532011-09-02 17:16:34 -0700419
Ian Rogersdd7624d2014-03-14 17:43:00 -0700420 virtual void LoadRawPtrFromThread32(ManagedRegister dest, ThreadOffset<4> offs);
421 virtual void LoadRawPtrFromThread64(ManagedRegister dest, ThreadOffset<8> offs);
Ian Rogers2c8f6532011-09-02 17:16:34 -0700422
423 // Copying routines
Ian Rogersb5d09b22012-03-06 22:14:17 -0800424 virtual void Move(ManagedRegister dest, ManagedRegister src, size_t size) = 0;
Ian Rogers2c8f6532011-09-02 17:16:34 -0700425
Ian Rogersdd7624d2014-03-14 17:43:00 -0700426 virtual void CopyRawPtrFromThread32(FrameOffset fr_offs, ThreadOffset<4> thr_offs,
427 ManagedRegister scratch);
428 virtual void CopyRawPtrFromThread64(FrameOffset fr_offs, ThreadOffset<8> thr_offs,
429 ManagedRegister scratch);
Ian Rogers2c8f6532011-09-02 17:16:34 -0700430
Ian Rogersdd7624d2014-03-14 17:43:00 -0700431 virtual void CopyRawPtrToThread32(ThreadOffset<4> thr_offs, FrameOffset fr_offs,
432 ManagedRegister scratch);
433 virtual void CopyRawPtrToThread64(ThreadOffset<8> thr_offs, FrameOffset fr_offs,
434 ManagedRegister scratch);
Ian Rogers2c8f6532011-09-02 17:16:34 -0700435
436 virtual void CopyRef(FrameOffset dest, FrameOffset src,
437 ManagedRegister scratch) = 0;
438
Elliott Hughesa09aea22012-01-06 18:58:27 -0800439 virtual void Copy(FrameOffset dest, FrameOffset src, ManagedRegister scratch, size_t size) = 0;
Ian Rogers2c8f6532011-09-02 17:16:34 -0700440
Ian Rogersdc51b792011-09-22 20:41:37 -0700441 virtual void Copy(FrameOffset dest, ManagedRegister src_base, Offset src_offset,
442 ManagedRegister scratch, size_t size) = 0;
443
Ian Rogers5a7a74a2011-09-26 16:32:29 -0700444 virtual void Copy(ManagedRegister dest_base, Offset dest_offset, FrameOffset src,
445 ManagedRegister scratch, size_t size) = 0;
446
Ian Rogersdc51b792011-09-22 20:41:37 -0700447 virtual void Copy(FrameOffset dest, FrameOffset src_base, Offset src_offset,
448 ManagedRegister scratch, size_t size) = 0;
449
Ian Rogers5a7a74a2011-09-26 16:32:29 -0700450 virtual void Copy(ManagedRegister dest, Offset dest_offset,
451 ManagedRegister src, Offset src_offset,
452 ManagedRegister scratch, size_t size) = 0;
453
454 virtual void Copy(FrameOffset dest, Offset dest_offset, FrameOffset src, Offset src_offset,
455 ManagedRegister scratch, size_t size) = 0;
Ian Rogersdc51b792011-09-22 20:41:37 -0700456
Ian Rogerse5de95b2011-09-18 20:31:38 -0700457 virtual void MemoryBarrier(ManagedRegister scratch) = 0;
458
jeffhao58136ca2012-05-24 13:40:11 -0700459 // Sign extension
460 virtual void SignExtend(ManagedRegister mreg, size_t size) = 0;
461
jeffhaocee4d0c2012-06-15 14:42:01 -0700462 // Zero extension
463 virtual void ZeroExtend(ManagedRegister mreg, size_t size) = 0;
464
Ian Rogers2c8f6532011-09-02 17:16:34 -0700465 // Exploit fast access in managed code to Thread::Current()
466 virtual void GetCurrentThread(ManagedRegister tr) = 0;
467 virtual void GetCurrentThread(FrameOffset dest_offset,
468 ManagedRegister scratch) = 0;
469
Mathieu Chartiereb8167a2014-05-07 15:43:14 -0700470 // Set up out_reg to hold a Object** into the handle scope, or to be NULL if the
Ian Rogers2c8f6532011-09-02 17:16:34 -0700471 // value is null and null_allowed. in_reg holds a possibly stale reference
Mathieu Chartiereb8167a2014-05-07 15:43:14 -0700472 // that can be used to avoid loading the handle scope entry to see if the value is
Ian Rogers2c8f6532011-09-02 17:16:34 -0700473 // NULL.
Mathieu Chartiereb8167a2014-05-07 15:43:14 -0700474 virtual void CreateHandleScopeEntry(ManagedRegister out_reg, FrameOffset handlescope_offset,
Ian Rogers2c8f6532011-09-02 17:16:34 -0700475 ManagedRegister in_reg, bool null_allowed) = 0;
476
Mathieu Chartiereb8167a2014-05-07 15:43:14 -0700477 // Set up out_off to hold a Object** into the handle scope, or to be NULL if the
Ian Rogers2c8f6532011-09-02 17:16:34 -0700478 // value is null and null_allowed.
Mathieu Chartiereb8167a2014-05-07 15:43:14 -0700479 virtual void CreateHandleScopeEntry(FrameOffset out_off, FrameOffset handlescope_offset,
Ian Rogers2c8f6532011-09-02 17:16:34 -0700480 ManagedRegister scratch, bool null_allowed) = 0;
481
Mathieu Chartiereb8167a2014-05-07 15:43:14 -0700482 // src holds a handle scope entry (Object**) load this into dst
483 virtual void LoadReferenceFromHandleScope(ManagedRegister dst,
Ian Rogers2c8f6532011-09-02 17:16:34 -0700484 ManagedRegister src) = 0;
485
486 // Heap::VerifyObject on src. In some cases (such as a reference to this) we
487 // know that src may not be null.
488 virtual void VerifyObject(ManagedRegister src, bool could_be_null) = 0;
489 virtual void VerifyObject(FrameOffset src, bool could_be_null) = 0;
490
491 // Call to address held at [base+offset]
492 virtual void Call(ManagedRegister base, Offset offset,
493 ManagedRegister scratch) = 0;
494 virtual void Call(FrameOffset base, Offset offset,
495 ManagedRegister scratch) = 0;
Ian Rogersdd7624d2014-03-14 17:43:00 -0700496 virtual void CallFromThread32(ThreadOffset<4> offset, ManagedRegister scratch);
497 virtual void CallFromThread64(ThreadOffset<8> offset, ManagedRegister scratch);
Ian Rogers2c8f6532011-09-02 17:16:34 -0700498
Ian Rogers2c8f6532011-09-02 17:16:34 -0700499 // Generate code to check if Thread::Current()->exception_ is non-null
500 // and branch to a ExceptionSlowPath if it is.
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700501 virtual void ExceptionPoll(ManagedRegister scratch, size_t stack_adjust) = 0;
Ian Rogers2c8f6532011-09-02 17:16:34 -0700502
Tong Shen547cdfd2014-08-05 01:54:19 -0700503 virtual void InitializeFrameDescriptionEntry() {}
504 virtual void FinalizeFrameDescriptionEntry() {}
Andreas Gampee21dc3d2014-12-08 16:59:43 -0800505 // Give a vector containing FDE data, or null if not used. Note: the assembler must take care
506 // of handling the lifecycle.
Tong Shen547cdfd2014-08-05 01:54:19 -0700507 virtual std::vector<uint8_t>* GetFrameDescriptionEntry() { return nullptr; }
508
Ian Rogers2c8f6532011-09-02 17:16:34 -0700509 virtual ~Assembler() {}
510
511 protected:
512 Assembler() : buffer_() {}
513
514 AssemblerBuffer buffer_;
515};
516
Carl Shapiro6b6b5f02011-06-21 15:05:09 -0700517} // namespace art
Carl Shapiroa5d5cfd2011-06-21 12:46:59 -0700518
Ian Rogers166db042013-07-26 12:05:57 -0700519#endif // ART_COMPILER_UTILS_ASSEMBLER_H_