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Alexandre Rames5319def2014-10-23 10:03:10 +01001/*
2 * Copyright (C) 2014 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#include "code_generator_arm64.h"
18
Serban Constantinescu579885a2015-02-22 20:51:33 +000019#include "arch/arm64/instruction_set_features_arm64.h"
Mathieu Chartiere401d142015-04-22 13:56:20 -070020#include "art_method.h"
Zheng Xuc6667102015-05-15 16:08:45 +080021#include "code_generator_utils.h"
Vladimir Marko58155012015-08-19 12:49:41 +000022#include "compiled_method.h"
Alexandre Rames5319def2014-10-23 10:03:10 +010023#include "entrypoints/quick/quick_entrypoints.h"
Andreas Gampe1cc7dba2014-12-17 18:43:01 -080024#include "entrypoints/quick/quick_entrypoints_enum.h"
Alexandre Rames5319def2014-10-23 10:03:10 +010025#include "gc/accounting/card_table.h"
Andreas Gampe878d58c2015-01-15 23:24:00 -080026#include "intrinsics.h"
27#include "intrinsics_arm64.h"
Alexandre Rames5319def2014-10-23 10:03:10 +010028#include "mirror/array-inl.h"
Mathieu Chartiere401d142015-04-22 13:56:20 -070029#include "mirror/class-inl.h"
Calin Juravlecd6dffe2015-01-08 17:35:35 +000030#include "offsets.h"
Alexandre Rames5319def2014-10-23 10:03:10 +010031#include "thread.h"
32#include "utils/arm64/assembler_arm64.h"
33#include "utils/assembler.h"
34#include "utils/stack_checks.h"
35
36
37using namespace vixl; // NOLINT(build/namespaces)
38
39#ifdef __
40#error "ARM64 Codegen VIXL macro-assembler macro already defined."
41#endif
42
Alexandre Rames5319def2014-10-23 10:03:10 +010043namespace art {
44
Roland Levillain22ccc3a2015-11-24 13:10:05 +000045template<class MirrorType>
46class GcRoot;
47
Alexandre Rames5319def2014-10-23 10:03:10 +010048namespace arm64 {
49
Andreas Gampe878d58c2015-01-15 23:24:00 -080050using helpers::CPURegisterFrom;
51using helpers::DRegisterFrom;
52using helpers::FPRegisterFrom;
53using helpers::HeapOperand;
54using helpers::HeapOperandFrom;
55using helpers::InputCPURegisterAt;
56using helpers::InputFPRegisterAt;
57using helpers::InputRegisterAt;
58using helpers::InputOperandAt;
59using helpers::Int64ConstantFrom;
Andreas Gampe878d58c2015-01-15 23:24:00 -080060using helpers::LocationFrom;
61using helpers::OperandFromMemOperand;
62using helpers::OutputCPURegister;
63using helpers::OutputFPRegister;
64using helpers::OutputRegister;
65using helpers::RegisterFrom;
66using helpers::StackOperandFrom;
67using helpers::VIXLRegCodeFromART;
68using helpers::WRegisterFrom;
69using helpers::XRegisterFrom;
Serban Constantinescu2d35d9d2015-02-22 22:08:01 +000070using helpers::ARM64EncodableConstantOrRegister;
Zheng Xuda403092015-04-24 17:35:39 +080071using helpers::ArtVixlRegCodeCoherentForRegSet;
Andreas Gampe878d58c2015-01-15 23:24:00 -080072
Alexandre Rames5319def2014-10-23 10:03:10 +010073static constexpr int kCurrentMethodStackOffset = 0;
Vladimir Markof3e0ee22015-12-17 15:23:13 +000074// The compare/jump sequence will generate about (1.5 * num_entries + 3) instructions. While jump
Zheng Xu3927c8b2015-11-18 17:46:25 +080075// table version generates 7 instructions and num_entries literals. Compare/jump sequence will
76// generates less code/data with a small num_entries.
Vladimir Markof3e0ee22015-12-17 15:23:13 +000077static constexpr uint32_t kPackedSwitchCompareJumpThreshold = 7;
Alexandre Rames5319def2014-10-23 10:03:10 +010078
Alexandre Rames5319def2014-10-23 10:03:10 +010079inline Condition ARM64Condition(IfCondition cond) {
80 switch (cond) {
81 case kCondEQ: return eq;
82 case kCondNE: return ne;
83 case kCondLT: return lt;
84 case kCondLE: return le;
85 case kCondGT: return gt;
86 case kCondGE: return ge;
Aart Bike9f37602015-10-09 11:15:55 -070087 case kCondB: return lo;
88 case kCondBE: return ls;
89 case kCondA: return hi;
90 case kCondAE: return hs;
Alexandre Rames5319def2014-10-23 10:03:10 +010091 }
Roland Levillain7f63c522015-07-13 15:54:55 +000092 LOG(FATAL) << "Unreachable";
93 UNREACHABLE();
Alexandre Rames5319def2014-10-23 10:03:10 +010094}
95
Vladimir Markod6e069b2016-01-18 11:11:01 +000096inline Condition ARM64FPCondition(IfCondition cond, bool gt_bias) {
97 // The ARM64 condition codes can express all the necessary branches, see the
98 // "Meaning (floating-point)" column in the table C1-1 in the ARMv8 reference manual.
99 // There is no dex instruction or HIR that would need the missing conditions
100 // "equal or unordered" or "not equal".
101 switch (cond) {
102 case kCondEQ: return eq;
103 case kCondNE: return ne /* unordered */;
104 case kCondLT: return gt_bias ? cc : lt /* unordered */;
105 case kCondLE: return gt_bias ? ls : le /* unordered */;
106 case kCondGT: return gt_bias ? hi /* unordered */ : gt;
107 case kCondGE: return gt_bias ? cs /* unordered */ : ge;
108 default:
109 LOG(FATAL) << "UNREACHABLE";
110 UNREACHABLE();
111 }
112}
113
Alexandre Ramesa89086e2014-11-07 17:13:25 +0000114Location ARM64ReturnLocation(Primitive::Type return_type) {
Alexandre Ramesa89086e2014-11-07 17:13:25 +0000115 // Note that in practice, `LocationFrom(x0)` and `LocationFrom(w0)` create the
116 // same Location object, and so do `LocationFrom(d0)` and `LocationFrom(s0)`,
117 // but we use the exact registers for clarity.
118 if (return_type == Primitive::kPrimFloat) {
119 return LocationFrom(s0);
120 } else if (return_type == Primitive::kPrimDouble) {
121 return LocationFrom(d0);
122 } else if (return_type == Primitive::kPrimLong) {
123 return LocationFrom(x0);
Nicolas Geoffray925e5622015-06-03 12:23:32 +0100124 } else if (return_type == Primitive::kPrimVoid) {
125 return Location::NoLocation();
Alexandre Ramesa89086e2014-11-07 17:13:25 +0000126 } else {
127 return LocationFrom(w0);
128 }
129}
130
Alexandre Rames5319def2014-10-23 10:03:10 +0100131Location InvokeRuntimeCallingConvention::GetReturnLocation(Primitive::Type return_type) {
Alexandre Ramesa89086e2014-11-07 17:13:25 +0000132 return ARM64ReturnLocation(return_type);
Alexandre Rames5319def2014-10-23 10:03:10 +0100133}
134
Alexandre Rames67555f72014-11-18 10:55:16 +0000135#define __ down_cast<CodeGeneratorARM64*>(codegen)->GetVIXLAssembler()->
136#define QUICK_ENTRY_POINT(x) QUICK_ENTRYPOINT_OFFSET(kArm64WordSize, x).Int32Value()
Alexandre Rames5319def2014-10-23 10:03:10 +0100137
Zheng Xuda403092015-04-24 17:35:39 +0800138// Calculate memory accessing operand for save/restore live registers.
139static void SaveRestoreLiveRegistersHelper(CodeGenerator* codegen,
140 RegisterSet* register_set,
141 int64_t spill_offset,
142 bool is_save) {
143 DCHECK(ArtVixlRegCodeCoherentForRegSet(register_set->GetCoreRegisters(),
144 codegen->GetNumberOfCoreRegisters(),
145 register_set->GetFloatingPointRegisters(),
146 codegen->GetNumberOfFloatingPointRegisters()));
147
148 CPURegList core_list = CPURegList(CPURegister::kRegister, kXRegSize,
149 register_set->GetCoreRegisters() & (~callee_saved_core_registers.list()));
Nicolas Geoffray75d5b9b2015-10-05 07:40:35 +0000150 CPURegList fp_list = CPURegList(CPURegister::kFPRegister, kDRegSize,
151 register_set->GetFloatingPointRegisters() & (~callee_saved_fp_registers.list()));
Zheng Xuda403092015-04-24 17:35:39 +0800152
153 MacroAssembler* masm = down_cast<CodeGeneratorARM64*>(codegen)->GetVIXLAssembler();
154 UseScratchRegisterScope temps(masm);
155
156 Register base = masm->StackPointer();
157 int64_t core_spill_size = core_list.TotalSizeInBytes();
158 int64_t fp_spill_size = fp_list.TotalSizeInBytes();
159 int64_t reg_size = kXRegSizeInBytes;
160 int64_t max_ls_pair_offset = spill_offset + core_spill_size + fp_spill_size - 2 * reg_size;
161 uint32_t ls_access_size = WhichPowerOf2(reg_size);
162 if (((core_list.Count() > 1) || (fp_list.Count() > 1)) &&
163 !masm->IsImmLSPair(max_ls_pair_offset, ls_access_size)) {
164 // If the offset does not fit in the instruction's immediate field, use an alternate register
165 // to compute the base address(float point registers spill base address).
166 Register new_base = temps.AcquireSameSizeAs(base);
167 __ Add(new_base, base, Operand(spill_offset + core_spill_size));
168 base = new_base;
169 spill_offset = -core_spill_size;
170 int64_t new_max_ls_pair_offset = fp_spill_size - 2 * reg_size;
171 DCHECK(masm->IsImmLSPair(spill_offset, ls_access_size));
172 DCHECK(masm->IsImmLSPair(new_max_ls_pair_offset, ls_access_size));
173 }
174
175 if (is_save) {
176 __ StoreCPURegList(core_list, MemOperand(base, spill_offset));
177 __ StoreCPURegList(fp_list, MemOperand(base, spill_offset + core_spill_size));
178 } else {
179 __ LoadCPURegList(core_list, MemOperand(base, spill_offset));
180 __ LoadCPURegList(fp_list, MemOperand(base, spill_offset + core_spill_size));
181 }
182}
183
184void SlowPathCodeARM64::SaveLiveRegisters(CodeGenerator* codegen, LocationSummary* locations) {
185 RegisterSet* register_set = locations->GetLiveRegisters();
186 size_t stack_offset = codegen->GetFirstRegisterSlotInSlowPath();
187 for (size_t i = 0, e = codegen->GetNumberOfCoreRegisters(); i < e; ++i) {
188 if (!codegen->IsCoreCalleeSaveRegister(i) && register_set->ContainsCoreRegister(i)) {
189 // If the register holds an object, update the stack mask.
190 if (locations->RegisterContainsObject(i)) {
191 locations->SetStackBit(stack_offset / kVRegSize);
192 }
193 DCHECK_LT(stack_offset, codegen->GetFrameSize() - codegen->FrameEntrySpillSize());
194 DCHECK_LT(i, kMaximumNumberOfExpectedRegisters);
195 saved_core_stack_offsets_[i] = stack_offset;
196 stack_offset += kXRegSizeInBytes;
197 }
198 }
199
200 for (size_t i = 0, e = codegen->GetNumberOfFloatingPointRegisters(); i < e; ++i) {
201 if (!codegen->IsFloatingPointCalleeSaveRegister(i) &&
202 register_set->ContainsFloatingPointRegister(i)) {
203 DCHECK_LT(stack_offset, codegen->GetFrameSize() - codegen->FrameEntrySpillSize());
204 DCHECK_LT(i, kMaximumNumberOfExpectedRegisters);
205 saved_fpu_stack_offsets_[i] = stack_offset;
206 stack_offset += kDRegSizeInBytes;
207 }
208 }
209
210 SaveRestoreLiveRegistersHelper(codegen, register_set,
211 codegen->GetFirstRegisterSlotInSlowPath(), true /* is_save */);
212}
213
214void SlowPathCodeARM64::RestoreLiveRegisters(CodeGenerator* codegen, LocationSummary* locations) {
215 RegisterSet* register_set = locations->GetLiveRegisters();
216 SaveRestoreLiveRegistersHelper(codegen, register_set,
217 codegen->GetFirstRegisterSlotInSlowPath(), false /* is_save */);
218}
219
Alexandre Rames5319def2014-10-23 10:03:10 +0100220class BoundsCheckSlowPathARM64 : public SlowPathCodeARM64 {
221 public:
Serban Constantinescu5a6cc492015-08-13 15:20:25 +0100222 explicit BoundsCheckSlowPathARM64(HBoundsCheck* instruction) : instruction_(instruction) {}
Alexandre Rames5319def2014-10-23 10:03:10 +0100223
Alexandre Rames67555f72014-11-18 10:55:16 +0000224 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
Serban Constantinescu5a6cc492015-08-13 15:20:25 +0100225 LocationSummary* locations = instruction_->GetLocations();
Alexandre Rames3e69f162014-12-10 10:36:50 +0000226 CodeGeneratorARM64* arm64_codegen = down_cast<CodeGeneratorARM64*>(codegen);
Serban Constantinescu5a6cc492015-08-13 15:20:25 +0100227
Alexandre Rames5319def2014-10-23 10:03:10 +0100228 __ Bind(GetEntryLabel());
David Brazdil77a48ae2015-09-15 12:34:04 +0000229 if (instruction_->CanThrowIntoCatchBlock()) {
230 // Live registers will be restored in the catch block if caught.
231 SaveLiveRegisters(codegen, instruction_->GetLocations());
232 }
Alexandre Rames3e69f162014-12-10 10:36:50 +0000233 // We're moving two locations to locations that could overlap, so we need a parallel
234 // move resolver.
235 InvokeRuntimeCallingConvention calling_convention;
236 codegen->EmitParallelMoves(
Serban Constantinescu5a6cc492015-08-13 15:20:25 +0100237 locations->InAt(0), LocationFrom(calling_convention.GetRegisterAt(0)), Primitive::kPrimInt,
238 locations->InAt(1), LocationFrom(calling_convention.GetRegisterAt(1)), Primitive::kPrimInt);
Alexandre Rames3e69f162014-12-10 10:36:50 +0000239 arm64_codegen->InvokeRuntime(
Nicolas Geoffrayeeefa122015-03-13 18:52:59 +0000240 QUICK_ENTRY_POINT(pThrowArrayBounds), instruction_, instruction_->GetDexPc(), this);
Andreas Gampe1cc7dba2014-12-17 18:43:01 -0800241 CheckEntrypointTypes<kQuickThrowArrayBounds, void, int32_t, int32_t>();
Alexandre Rames5319def2014-10-23 10:03:10 +0100242 }
243
Alexandre Rames8158f282015-08-07 10:26:17 +0100244 bool IsFatal() const OVERRIDE { return true; }
245
Alexandre Rames9931f312015-06-19 14:47:01 +0100246 const char* GetDescription() const OVERRIDE { return "BoundsCheckSlowPathARM64"; }
247
Alexandre Rames5319def2014-10-23 10:03:10 +0100248 private:
Alexandre Rames3e69f162014-12-10 10:36:50 +0000249 HBoundsCheck* const instruction_;
Alexandre Rames3e69f162014-12-10 10:36:50 +0000250
Alexandre Rames5319def2014-10-23 10:03:10 +0100251 DISALLOW_COPY_AND_ASSIGN(BoundsCheckSlowPathARM64);
252};
253
Alexandre Rames67555f72014-11-18 10:55:16 +0000254class DivZeroCheckSlowPathARM64 : public SlowPathCodeARM64 {
255 public:
256 explicit DivZeroCheckSlowPathARM64(HDivZeroCheck* instruction) : instruction_(instruction) {}
257
258 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
259 CodeGeneratorARM64* arm64_codegen = down_cast<CodeGeneratorARM64*>(codegen);
260 __ Bind(GetEntryLabel());
David Brazdil77a48ae2015-09-15 12:34:04 +0000261 if (instruction_->CanThrowIntoCatchBlock()) {
262 // Live registers will be restored in the catch block if caught.
263 SaveLiveRegisters(codegen, instruction_->GetLocations());
264 }
Alexandre Rames67555f72014-11-18 10:55:16 +0000265 arm64_codegen->InvokeRuntime(
Nicolas Geoffrayeeefa122015-03-13 18:52:59 +0000266 QUICK_ENTRY_POINT(pThrowDivZero), instruction_, instruction_->GetDexPc(), this);
Andreas Gampe1cc7dba2014-12-17 18:43:01 -0800267 CheckEntrypointTypes<kQuickThrowDivZero, void, void>();
Alexandre Rames67555f72014-11-18 10:55:16 +0000268 }
269
Alexandre Rames8158f282015-08-07 10:26:17 +0100270 bool IsFatal() const OVERRIDE { return true; }
271
Alexandre Rames9931f312015-06-19 14:47:01 +0100272 const char* GetDescription() const OVERRIDE { return "DivZeroCheckSlowPathARM64"; }
273
Alexandre Rames67555f72014-11-18 10:55:16 +0000274 private:
275 HDivZeroCheck* const instruction_;
276 DISALLOW_COPY_AND_ASSIGN(DivZeroCheckSlowPathARM64);
277};
278
279class LoadClassSlowPathARM64 : public SlowPathCodeARM64 {
280 public:
281 LoadClassSlowPathARM64(HLoadClass* cls,
282 HInstruction* at,
283 uint32_t dex_pc,
284 bool do_clinit)
285 : cls_(cls), at_(at), dex_pc_(dex_pc), do_clinit_(do_clinit) {
286 DCHECK(at->IsLoadClass() || at->IsClinitCheck());
287 }
288
289 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
290 LocationSummary* locations = at_->GetLocations();
291 CodeGeneratorARM64* arm64_codegen = down_cast<CodeGeneratorARM64*>(codegen);
292
293 __ Bind(GetEntryLabel());
Nicolas Geoffraya8ac9132015-03-13 16:36:36 +0000294 SaveLiveRegisters(codegen, locations);
Alexandre Rames67555f72014-11-18 10:55:16 +0000295
296 InvokeRuntimeCallingConvention calling_convention;
297 __ Mov(calling_convention.GetRegisterAt(0).W(), cls_->GetTypeIndex());
Alexandre Rames67555f72014-11-18 10:55:16 +0000298 int32_t entry_point_offset = do_clinit_ ? QUICK_ENTRY_POINT(pInitializeStaticStorage)
299 : QUICK_ENTRY_POINT(pInitializeType);
Nicolas Geoffrayeeefa122015-03-13 18:52:59 +0000300 arm64_codegen->InvokeRuntime(entry_point_offset, at_, dex_pc_, this);
Andreas Gampe1cc7dba2014-12-17 18:43:01 -0800301 if (do_clinit_) {
Vladimir Marko5ea536a2015-04-20 20:11:30 +0100302 CheckEntrypointTypes<kQuickInitializeStaticStorage, void*, uint32_t>();
Andreas Gampe1cc7dba2014-12-17 18:43:01 -0800303 } else {
Vladimir Marko5ea536a2015-04-20 20:11:30 +0100304 CheckEntrypointTypes<kQuickInitializeType, void*, uint32_t>();
Andreas Gampe1cc7dba2014-12-17 18:43:01 -0800305 }
Alexandre Rames67555f72014-11-18 10:55:16 +0000306
307 // Move the class to the desired location.
308 Location out = locations->Out();
309 if (out.IsValid()) {
310 DCHECK(out.IsRegister() && !locations->GetLiveRegisters()->ContainsCoreRegister(out.reg()));
311 Primitive::Type type = at_->GetType();
Alexandre Rames3e69f162014-12-10 10:36:50 +0000312 arm64_codegen->MoveLocation(out, calling_convention.GetReturnLocation(type), type);
Alexandre Rames67555f72014-11-18 10:55:16 +0000313 }
314
Nicolas Geoffraya8ac9132015-03-13 16:36:36 +0000315 RestoreLiveRegisters(codegen, locations);
Alexandre Rames67555f72014-11-18 10:55:16 +0000316 __ B(GetExitLabel());
317 }
318
Alexandre Rames9931f312015-06-19 14:47:01 +0100319 const char* GetDescription() const OVERRIDE { return "LoadClassSlowPathARM64"; }
320
Alexandre Rames67555f72014-11-18 10:55:16 +0000321 private:
322 // The class this slow path will load.
323 HLoadClass* const cls_;
324
325 // The instruction where this slow path is happening.
326 // (Might be the load class or an initialization check).
327 HInstruction* const at_;
328
329 // The dex PC of `at_`.
330 const uint32_t dex_pc_;
331
332 // Whether to initialize the class.
333 const bool do_clinit_;
334
335 DISALLOW_COPY_AND_ASSIGN(LoadClassSlowPathARM64);
336};
337
338class LoadStringSlowPathARM64 : public SlowPathCodeARM64 {
339 public:
340 explicit LoadStringSlowPathARM64(HLoadString* instruction) : instruction_(instruction) {}
341
342 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
343 LocationSummary* locations = instruction_->GetLocations();
344 DCHECK(!locations->GetLiveRegisters()->ContainsCoreRegister(locations->Out().reg()));
345 CodeGeneratorARM64* arm64_codegen = down_cast<CodeGeneratorARM64*>(codegen);
346
347 __ Bind(GetEntryLabel());
Nicolas Geoffraya8ac9132015-03-13 16:36:36 +0000348 SaveLiveRegisters(codegen, locations);
Alexandre Rames67555f72014-11-18 10:55:16 +0000349
350 InvokeRuntimeCallingConvention calling_convention;
Andreas Gampe1cc7dba2014-12-17 18:43:01 -0800351 __ Mov(calling_convention.GetRegisterAt(0).W(), instruction_->GetStringIndex());
Alexandre Rames67555f72014-11-18 10:55:16 +0000352 arm64_codegen->InvokeRuntime(
Nicolas Geoffrayeeefa122015-03-13 18:52:59 +0000353 QUICK_ENTRY_POINT(pResolveString), instruction_, instruction_->GetDexPc(), this);
Vladimir Marko5ea536a2015-04-20 20:11:30 +0100354 CheckEntrypointTypes<kQuickResolveString, void*, uint32_t>();
Alexandre Rames67555f72014-11-18 10:55:16 +0000355 Primitive::Type type = instruction_->GetType();
Alexandre Rames3e69f162014-12-10 10:36:50 +0000356 arm64_codegen->MoveLocation(locations->Out(), calling_convention.GetReturnLocation(type), type);
Alexandre Rames67555f72014-11-18 10:55:16 +0000357
Nicolas Geoffraya8ac9132015-03-13 16:36:36 +0000358 RestoreLiveRegisters(codegen, locations);
Alexandre Rames67555f72014-11-18 10:55:16 +0000359 __ B(GetExitLabel());
360 }
361
Alexandre Rames9931f312015-06-19 14:47:01 +0100362 const char* GetDescription() const OVERRIDE { return "LoadStringSlowPathARM64"; }
363
Alexandre Rames67555f72014-11-18 10:55:16 +0000364 private:
365 HLoadString* const instruction_;
366
367 DISALLOW_COPY_AND_ASSIGN(LoadStringSlowPathARM64);
368};
369
Alexandre Rames5319def2014-10-23 10:03:10 +0100370class NullCheckSlowPathARM64 : public SlowPathCodeARM64 {
371 public:
372 explicit NullCheckSlowPathARM64(HNullCheck* instr) : instruction_(instr) {}
373
Alexandre Rames67555f72014-11-18 10:55:16 +0000374 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
375 CodeGeneratorARM64* arm64_codegen = down_cast<CodeGeneratorARM64*>(codegen);
Alexandre Rames5319def2014-10-23 10:03:10 +0100376 __ Bind(GetEntryLabel());
David Brazdil77a48ae2015-09-15 12:34:04 +0000377 if (instruction_->CanThrowIntoCatchBlock()) {
378 // Live registers will be restored in the catch block if caught.
379 SaveLiveRegisters(codegen, instruction_->GetLocations());
380 }
Alexandre Rames67555f72014-11-18 10:55:16 +0000381 arm64_codegen->InvokeRuntime(
Nicolas Geoffrayeeefa122015-03-13 18:52:59 +0000382 QUICK_ENTRY_POINT(pThrowNullPointer), instruction_, instruction_->GetDexPc(), this);
Andreas Gampe1cc7dba2014-12-17 18:43:01 -0800383 CheckEntrypointTypes<kQuickThrowNullPointer, void, void>();
Alexandre Rames5319def2014-10-23 10:03:10 +0100384 }
385
Alexandre Rames8158f282015-08-07 10:26:17 +0100386 bool IsFatal() const OVERRIDE { return true; }
387
Alexandre Rames9931f312015-06-19 14:47:01 +0100388 const char* GetDescription() const OVERRIDE { return "NullCheckSlowPathARM64"; }
389
Alexandre Rames5319def2014-10-23 10:03:10 +0100390 private:
391 HNullCheck* const instruction_;
392
393 DISALLOW_COPY_AND_ASSIGN(NullCheckSlowPathARM64);
394};
395
396class SuspendCheckSlowPathARM64 : public SlowPathCodeARM64 {
397 public:
Roland Levillain3887c462015-08-12 18:15:42 +0100398 SuspendCheckSlowPathARM64(HSuspendCheck* instruction, HBasicBlock* successor)
Alexandre Rames5319def2014-10-23 10:03:10 +0100399 : instruction_(instruction), successor_(successor) {}
400
Alexandre Rames67555f72014-11-18 10:55:16 +0000401 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
402 CodeGeneratorARM64* arm64_codegen = down_cast<CodeGeneratorARM64*>(codegen);
Alexandre Rames5319def2014-10-23 10:03:10 +0100403 __ Bind(GetEntryLabel());
Nicolas Geoffraya8ac9132015-03-13 16:36:36 +0000404 SaveLiveRegisters(codegen, instruction_->GetLocations());
Alexandre Rames67555f72014-11-18 10:55:16 +0000405 arm64_codegen->InvokeRuntime(
Nicolas Geoffrayeeefa122015-03-13 18:52:59 +0000406 QUICK_ENTRY_POINT(pTestSuspend), instruction_, instruction_->GetDexPc(), this);
Andreas Gampe1cc7dba2014-12-17 18:43:01 -0800407 CheckEntrypointTypes<kQuickTestSuspend, void, void>();
Nicolas Geoffraya8ac9132015-03-13 16:36:36 +0000408 RestoreLiveRegisters(codegen, instruction_->GetLocations());
Alexandre Rames67555f72014-11-18 10:55:16 +0000409 if (successor_ == nullptr) {
410 __ B(GetReturnLabel());
411 } else {
412 __ B(arm64_codegen->GetLabelOf(successor_));
413 }
Alexandre Rames5319def2014-10-23 10:03:10 +0100414 }
415
416 vixl::Label* GetReturnLabel() {
417 DCHECK(successor_ == nullptr);
418 return &return_label_;
419 }
420
Nicolas Geoffraydb216f42015-05-05 17:02:20 +0100421 HBasicBlock* GetSuccessor() const {
422 return successor_;
423 }
424
Alexandre Rames9931f312015-06-19 14:47:01 +0100425 const char* GetDescription() const OVERRIDE { return "SuspendCheckSlowPathARM64"; }
426
Alexandre Rames5319def2014-10-23 10:03:10 +0100427 private:
428 HSuspendCheck* const instruction_;
429 // If not null, the block to branch to after the suspend check.
430 HBasicBlock* const successor_;
431
432 // If `successor_` is null, the label to branch to after the suspend check.
433 vixl::Label return_label_;
434
435 DISALLOW_COPY_AND_ASSIGN(SuspendCheckSlowPathARM64);
436};
437
Alexandre Rames67555f72014-11-18 10:55:16 +0000438class TypeCheckSlowPathARM64 : public SlowPathCodeARM64 {
439 public:
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +0000440 TypeCheckSlowPathARM64(HInstruction* instruction, bool is_fatal)
441 : instruction_(instruction), is_fatal_(is_fatal) {}
Alexandre Rames67555f72014-11-18 10:55:16 +0000442
443 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
Alexandre Rames3e69f162014-12-10 10:36:50 +0000444 LocationSummary* locations = instruction_->GetLocations();
Serban Constantinescu5a6cc492015-08-13 15:20:25 +0100445 Location class_to_check = locations->InAt(1);
446 Location object_class = instruction_->IsCheckCast() ? locations->GetTemp(0)
447 : locations->Out();
Alexandre Rames3e69f162014-12-10 10:36:50 +0000448 DCHECK(instruction_->IsCheckCast()
449 || !locations->GetLiveRegisters()->ContainsCoreRegister(locations->Out().reg()));
450 CodeGeneratorARM64* arm64_codegen = down_cast<CodeGeneratorARM64*>(codegen);
Serban Constantinescu5a6cc492015-08-13 15:20:25 +0100451 uint32_t dex_pc = instruction_->GetDexPc();
Alexandre Rames3e69f162014-12-10 10:36:50 +0000452
Alexandre Rames67555f72014-11-18 10:55:16 +0000453 __ Bind(GetEntryLabel());
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +0000454
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +0000455 if (!is_fatal_) {
456 SaveLiveRegisters(codegen, locations);
457 }
Alexandre Rames3e69f162014-12-10 10:36:50 +0000458
459 // We're moving two locations to locations that could overlap, so we need a parallel
460 // move resolver.
461 InvokeRuntimeCallingConvention calling_convention;
462 codegen->EmitParallelMoves(
Serban Constantinescu5a6cc492015-08-13 15:20:25 +0100463 class_to_check, LocationFrom(calling_convention.GetRegisterAt(0)), Primitive::kPrimNot,
464 object_class, LocationFrom(calling_convention.GetRegisterAt(1)), Primitive::kPrimNot);
Alexandre Rames3e69f162014-12-10 10:36:50 +0000465
466 if (instruction_->IsInstanceOf()) {
Nicolas Geoffrayeeefa122015-03-13 18:52:59 +0000467 arm64_codegen->InvokeRuntime(
Serban Constantinescu5a6cc492015-08-13 15:20:25 +0100468 QUICK_ENTRY_POINT(pInstanceofNonTrivial), instruction_, dex_pc, this);
Roland Levillain888d0672015-11-23 18:53:50 +0000469 CheckEntrypointTypes<kQuickInstanceofNonTrivial, uint32_t,
470 const mirror::Class*, const mirror::Class*>();
Alexandre Rames3e69f162014-12-10 10:36:50 +0000471 Primitive::Type ret_type = instruction_->GetType();
472 Location ret_loc = calling_convention.GetReturnLocation(ret_type);
473 arm64_codegen->MoveLocation(locations->Out(), ret_loc, ret_type);
474 } else {
475 DCHECK(instruction_->IsCheckCast());
Serban Constantinescu5a6cc492015-08-13 15:20:25 +0100476 arm64_codegen->InvokeRuntime(QUICK_ENTRY_POINT(pCheckCast), instruction_, dex_pc, this);
Andreas Gampe1cc7dba2014-12-17 18:43:01 -0800477 CheckEntrypointTypes<kQuickCheckCast, void, const mirror::Class*, const mirror::Class*>();
Alexandre Rames3e69f162014-12-10 10:36:50 +0000478 }
479
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +0000480 if (!is_fatal_) {
481 RestoreLiveRegisters(codegen, locations);
482 __ B(GetExitLabel());
483 }
Alexandre Rames67555f72014-11-18 10:55:16 +0000484 }
485
Alexandre Rames9931f312015-06-19 14:47:01 +0100486 const char* GetDescription() const OVERRIDE { return "TypeCheckSlowPathARM64"; }
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +0000487 bool IsFatal() const { return is_fatal_; }
Alexandre Rames9931f312015-06-19 14:47:01 +0100488
Alexandre Rames67555f72014-11-18 10:55:16 +0000489 private:
Alexandre Rames3e69f162014-12-10 10:36:50 +0000490 HInstruction* const instruction_;
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +0000491 const bool is_fatal_;
Alexandre Rames3e69f162014-12-10 10:36:50 +0000492
Alexandre Rames67555f72014-11-18 10:55:16 +0000493 DISALLOW_COPY_AND_ASSIGN(TypeCheckSlowPathARM64);
494};
495
Mingyao Yangd43b3ac2015-04-01 14:03:04 -0700496class DeoptimizationSlowPathARM64 : public SlowPathCodeARM64 {
497 public:
Aart Bik42249c32016-01-07 15:33:50 -0800498 explicit DeoptimizationSlowPathARM64(HDeoptimize* instruction)
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +0100499 : instruction_(instruction) {}
Mingyao Yangd43b3ac2015-04-01 14:03:04 -0700500
501 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
Aart Bik42249c32016-01-07 15:33:50 -0800502 CodeGeneratorARM64* arm64_codegen = down_cast<CodeGeneratorARM64*>(codegen);
Mingyao Yangd43b3ac2015-04-01 14:03:04 -0700503 __ Bind(GetEntryLabel());
504 SaveLiveRegisters(codegen, instruction_->GetLocations());
Aart Bik42249c32016-01-07 15:33:50 -0800505 arm64_codegen->InvokeRuntime(QUICK_ENTRY_POINT(pDeoptimize),
506 instruction_,
507 instruction_->GetDexPc(),
508 this);
Roland Levillain888d0672015-11-23 18:53:50 +0000509 CheckEntrypointTypes<kQuickDeoptimize, void, void>();
Mingyao Yangd43b3ac2015-04-01 14:03:04 -0700510 }
511
Alexandre Rames9931f312015-06-19 14:47:01 +0100512 const char* GetDescription() const OVERRIDE { return "DeoptimizationSlowPathARM64"; }
513
Mingyao Yangd43b3ac2015-04-01 14:03:04 -0700514 private:
Aart Bik42249c32016-01-07 15:33:50 -0800515 HDeoptimize* const instruction_;
Mingyao Yangd43b3ac2015-04-01 14:03:04 -0700516 DISALLOW_COPY_AND_ASSIGN(DeoptimizationSlowPathARM64);
517};
518
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +0100519class ArraySetSlowPathARM64 : public SlowPathCodeARM64 {
520 public:
521 explicit ArraySetSlowPathARM64(HInstruction* instruction) : instruction_(instruction) {}
522
523 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
524 LocationSummary* locations = instruction_->GetLocations();
525 __ Bind(GetEntryLabel());
526 SaveLiveRegisters(codegen, locations);
527
528 InvokeRuntimeCallingConvention calling_convention;
529 HParallelMove parallel_move(codegen->GetGraph()->GetArena());
530 parallel_move.AddMove(
531 locations->InAt(0),
532 LocationFrom(calling_convention.GetRegisterAt(0)),
533 Primitive::kPrimNot,
534 nullptr);
535 parallel_move.AddMove(
536 locations->InAt(1),
537 LocationFrom(calling_convention.GetRegisterAt(1)),
538 Primitive::kPrimInt,
539 nullptr);
540 parallel_move.AddMove(
541 locations->InAt(2),
542 LocationFrom(calling_convention.GetRegisterAt(2)),
543 Primitive::kPrimNot,
544 nullptr);
545 codegen->GetMoveResolver()->EmitNativeCode(&parallel_move);
546
547 CodeGeneratorARM64* arm64_codegen = down_cast<CodeGeneratorARM64*>(codegen);
548 arm64_codegen->InvokeRuntime(QUICK_ENTRY_POINT(pAputObject),
549 instruction_,
550 instruction_->GetDexPc(),
551 this);
552 CheckEntrypointTypes<kQuickAputObject, void, mirror::Array*, int32_t, mirror::Object*>();
553 RestoreLiveRegisters(codegen, locations);
554 __ B(GetExitLabel());
555 }
556
557 const char* GetDescription() const OVERRIDE { return "ArraySetSlowPathARM64"; }
558
559 private:
560 HInstruction* const instruction_;
561
562 DISALLOW_COPY_AND_ASSIGN(ArraySetSlowPathARM64);
563};
564
Zheng Xu3927c8b2015-11-18 17:46:25 +0800565void JumpTableARM64::EmitTable(CodeGeneratorARM64* codegen) {
566 uint32_t num_entries = switch_instr_->GetNumEntries();
Vladimir Markof3e0ee22015-12-17 15:23:13 +0000567 DCHECK_GE(num_entries, kPackedSwitchCompareJumpThreshold);
Zheng Xu3927c8b2015-11-18 17:46:25 +0800568
569 // We are about to use the assembler to place literals directly. Make sure we have enough
570 // underlying code buffer and we have generated the jump table with right size.
571 CodeBufferCheckScope scope(codegen->GetVIXLAssembler(), num_entries * sizeof(int32_t),
572 CodeBufferCheckScope::kCheck, CodeBufferCheckScope::kExactSize);
573
574 __ Bind(&table_start_);
575 const ArenaVector<HBasicBlock*>& successors = switch_instr_->GetBlock()->GetSuccessors();
576 for (uint32_t i = 0; i < num_entries; i++) {
577 vixl::Label* target_label = codegen->GetLabelOf(successors[i]);
578 DCHECK(target_label->IsBound());
579 ptrdiff_t jump_offset = target_label->location() - table_start_.location();
580 DCHECK_GT(jump_offset, std::numeric_limits<int32_t>::min());
581 DCHECK_LE(jump_offset, std::numeric_limits<int32_t>::max());
582 Literal<int32_t> literal(jump_offset);
583 __ place(&literal);
584 }
585}
586
Roland Levillain44015862016-01-22 11:47:17 +0000587// Slow path marking an object during a read barrier.
588class ReadBarrierMarkSlowPathARM64 : public SlowPathCodeARM64 {
589 public:
590 ReadBarrierMarkSlowPathARM64(HInstruction* instruction, Location out, Location obj)
591 : instruction_(instruction), out_(out), obj_(obj) {
592 DCHECK(kEmitCompilerReadBarrier);
593 }
594
595 const char* GetDescription() const OVERRIDE { return "ReadBarrierMarkSlowPathARM64"; }
596
597 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
598 LocationSummary* locations = instruction_->GetLocations();
599 Primitive::Type type = Primitive::kPrimNot;
600 DCHECK(locations->CanCall());
601 DCHECK(!locations->GetLiveRegisters()->ContainsCoreRegister(out_.reg()));
602 DCHECK(instruction_->IsInstanceFieldGet() ||
603 instruction_->IsStaticFieldGet() ||
604 instruction_->IsArrayGet() ||
605 instruction_->IsLoadClass() ||
606 instruction_->IsLoadString() ||
607 instruction_->IsInstanceOf() ||
608 instruction_->IsCheckCast())
609 << "Unexpected instruction in read barrier marking slow path: "
610 << instruction_->DebugName();
611
612 __ Bind(GetEntryLabel());
613 SaveLiveRegisters(codegen, locations);
614
615 InvokeRuntimeCallingConvention calling_convention;
616 CodeGeneratorARM64* arm64_codegen = down_cast<CodeGeneratorARM64*>(codegen);
617 arm64_codegen->MoveLocation(LocationFrom(calling_convention.GetRegisterAt(0)), obj_, type);
618 arm64_codegen->InvokeRuntime(QUICK_ENTRY_POINT(pReadBarrierMark),
619 instruction_,
620 instruction_->GetDexPc(),
621 this);
622 CheckEntrypointTypes<kQuickReadBarrierMark, mirror::Object*, mirror::Object*>();
623 arm64_codegen->MoveLocation(out_, calling_convention.GetReturnLocation(type), type);
624
625 RestoreLiveRegisters(codegen, locations);
626 __ B(GetExitLabel());
627 }
628
629 private:
630 HInstruction* const instruction_;
631 const Location out_;
632 const Location obj_;
633
634 DISALLOW_COPY_AND_ASSIGN(ReadBarrierMarkSlowPathARM64);
635};
636
Roland Levillain22ccc3a2015-11-24 13:10:05 +0000637// Slow path generating a read barrier for a heap reference.
638class ReadBarrierForHeapReferenceSlowPathARM64 : public SlowPathCodeARM64 {
639 public:
640 ReadBarrierForHeapReferenceSlowPathARM64(HInstruction* instruction,
641 Location out,
642 Location ref,
643 Location obj,
644 uint32_t offset,
645 Location index)
646 : instruction_(instruction),
647 out_(out),
648 ref_(ref),
649 obj_(obj),
650 offset_(offset),
651 index_(index) {
652 DCHECK(kEmitCompilerReadBarrier);
653 // If `obj` is equal to `out` or `ref`, it means the initial object
654 // has been overwritten by (or after) the heap object reference load
655 // to be instrumented, e.g.:
656 //
657 // __ Ldr(out, HeapOperand(out, class_offset);
Roland Levillain44015862016-01-22 11:47:17 +0000658 // codegen_->GenerateReadBarrierSlow(instruction, out_loc, out_loc, out_loc, offset);
Roland Levillain22ccc3a2015-11-24 13:10:05 +0000659 //
660 // In that case, we have lost the information about the original
661 // object, and the emitted read barrier cannot work properly.
662 DCHECK(!obj.Equals(out)) << "obj=" << obj << " out=" << out;
663 DCHECK(!obj.Equals(ref)) << "obj=" << obj << " ref=" << ref;
664 }
665
666 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
667 CodeGeneratorARM64* arm64_codegen = down_cast<CodeGeneratorARM64*>(codegen);
668 LocationSummary* locations = instruction_->GetLocations();
669 Primitive::Type type = Primitive::kPrimNot;
670 DCHECK(locations->CanCall());
671 DCHECK(!locations->GetLiveRegisters()->ContainsCoreRegister(out_.reg()));
672 DCHECK(!instruction_->IsInvoke() ||
673 (instruction_->IsInvokeStaticOrDirect() &&
Roland Levillain44015862016-01-22 11:47:17 +0000674 instruction_->GetLocations()->Intrinsified()))
675 << "Unexpected instruction in read barrier for heap reference slow path: "
676 << instruction_->DebugName();
Roland Levillaincd3d0fb2016-01-15 19:26:48 +0000677 // The read barrier instrumentation does not support the
678 // HArm64IntermediateAddress instruction yet.
679 DCHECK(!(instruction_->IsArrayGet() &&
680 instruction_->AsArrayGet()->GetArray()->IsArm64IntermediateAddress()));
Roland Levillain22ccc3a2015-11-24 13:10:05 +0000681
682 __ Bind(GetEntryLabel());
683
Roland Levillain22ccc3a2015-11-24 13:10:05 +0000684 SaveLiveRegisters(codegen, locations);
685
686 // We may have to change the index's value, but as `index_` is a
687 // constant member (like other "inputs" of this slow path),
688 // introduce a copy of it, `index`.
689 Location index = index_;
690 if (index_.IsValid()) {
691 // Handle `index_` for HArrayGet and intrinsic UnsafeGetObject.
692 if (instruction_->IsArrayGet()) {
693 // Compute the actual memory offset and store it in `index`.
694 Register index_reg = RegisterFrom(index_, Primitive::kPrimInt);
695 DCHECK(locations->GetLiveRegisters()->ContainsCoreRegister(index_.reg()));
696 if (codegen->IsCoreCalleeSaveRegister(index_.reg())) {
697 // We are about to change the value of `index_reg` (see the
698 // calls to vixl::MacroAssembler::Lsl and
699 // vixl::MacroAssembler::Mov below), but it has
700 // not been saved by the previous call to
701 // art::SlowPathCode::SaveLiveRegisters, as it is a
702 // callee-save register --
703 // art::SlowPathCode::SaveLiveRegisters does not consider
704 // callee-save registers, as it has been designed with the
705 // assumption that callee-save registers are supposed to be
706 // handled by the called function. So, as a callee-save
707 // register, `index_reg` _would_ eventually be saved onto
708 // the stack, but it would be too late: we would have
709 // changed its value earlier. Therefore, we manually save
710 // it here into another freely available register,
711 // `free_reg`, chosen of course among the caller-save
712 // registers (as a callee-save `free_reg` register would
713 // exhibit the same problem).
714 //
715 // Note we could have requested a temporary register from
716 // the register allocator instead; but we prefer not to, as
717 // this is a slow path, and we know we can find a
718 // caller-save register that is available.
719 Register free_reg = FindAvailableCallerSaveRegister(codegen);
720 __ Mov(free_reg.W(), index_reg);
721 index_reg = free_reg;
722 index = LocationFrom(index_reg);
723 } else {
724 // The initial register stored in `index_` has already been
725 // saved in the call to art::SlowPathCode::SaveLiveRegisters
726 // (as it is not a callee-save register), so we can freely
727 // use it.
728 }
729 // Shifting the index value contained in `index_reg` by the scale
730 // factor (2) cannot overflow in practice, as the runtime is
731 // unable to allocate object arrays with a size larger than
732 // 2^26 - 1 (that is, 2^28 - 4 bytes).
733 __ Lsl(index_reg, index_reg, Primitive::ComponentSizeShift(type));
734 static_assert(
735 sizeof(mirror::HeapReference<mirror::Object>) == sizeof(int32_t),
736 "art::mirror::HeapReference<art::mirror::Object> and int32_t have different sizes.");
737 __ Add(index_reg, index_reg, Operand(offset_));
738 } else {
739 DCHECK(instruction_->IsInvoke());
740 DCHECK(instruction_->GetLocations()->Intrinsified());
741 DCHECK((instruction_->AsInvoke()->GetIntrinsic() == Intrinsics::kUnsafeGetObject) ||
742 (instruction_->AsInvoke()->GetIntrinsic() == Intrinsics::kUnsafeGetObjectVolatile))
743 << instruction_->AsInvoke()->GetIntrinsic();
744 DCHECK_EQ(offset_, 0U);
745 DCHECK(index_.IsRegisterPair());
746 // UnsafeGet's offset location is a register pair, the low
747 // part contains the correct offset.
748 index = index_.ToLow();
749 }
750 }
751
752 // We're moving two or three locations to locations that could
753 // overlap, so we need a parallel move resolver.
754 InvokeRuntimeCallingConvention calling_convention;
755 HParallelMove parallel_move(codegen->GetGraph()->GetArena());
756 parallel_move.AddMove(ref_,
757 LocationFrom(calling_convention.GetRegisterAt(0)),
758 type,
759 nullptr);
760 parallel_move.AddMove(obj_,
761 LocationFrom(calling_convention.GetRegisterAt(1)),
762 type,
763 nullptr);
764 if (index.IsValid()) {
765 parallel_move.AddMove(index,
766 LocationFrom(calling_convention.GetRegisterAt(2)),
767 Primitive::kPrimInt,
768 nullptr);
769 codegen->GetMoveResolver()->EmitNativeCode(&parallel_move);
770 } else {
771 codegen->GetMoveResolver()->EmitNativeCode(&parallel_move);
772 arm64_codegen->MoveConstant(LocationFrom(calling_convention.GetRegisterAt(2)), offset_);
773 }
774 arm64_codegen->InvokeRuntime(QUICK_ENTRY_POINT(pReadBarrierSlow),
775 instruction_,
776 instruction_->GetDexPc(),
777 this);
778 CheckEntrypointTypes<
779 kQuickReadBarrierSlow, mirror::Object*, mirror::Object*, mirror::Object*, uint32_t>();
780 arm64_codegen->MoveLocation(out_, calling_convention.GetReturnLocation(type), type);
781
782 RestoreLiveRegisters(codegen, locations);
783
Roland Levillain22ccc3a2015-11-24 13:10:05 +0000784 __ B(GetExitLabel());
785 }
786
787 const char* GetDescription() const OVERRIDE { return "ReadBarrierForHeapReferenceSlowPathARM64"; }
788
789 private:
790 Register FindAvailableCallerSaveRegister(CodeGenerator* codegen) {
791 size_t ref = static_cast<int>(XRegisterFrom(ref_).code());
792 size_t obj = static_cast<int>(XRegisterFrom(obj_).code());
793 for (size_t i = 0, e = codegen->GetNumberOfCoreRegisters(); i < e; ++i) {
794 if (i != ref && i != obj && !codegen->IsCoreCalleeSaveRegister(i)) {
795 return Register(VIXLRegCodeFromART(i), kXRegSize);
796 }
797 }
798 // We shall never fail to find a free caller-save register, as
799 // there are more than two core caller-save registers on ARM64
800 // (meaning it is possible to find one which is different from
801 // `ref` and `obj`).
802 DCHECK_GT(codegen->GetNumberOfCoreCallerSaveRegisters(), 2u);
803 LOG(FATAL) << "Could not find a free register";
804 UNREACHABLE();
805 }
806
807 HInstruction* const instruction_;
808 const Location out_;
809 const Location ref_;
810 const Location obj_;
811 const uint32_t offset_;
812 // An additional location containing an index to an array.
813 // Only used for HArrayGet and the UnsafeGetObject &
814 // UnsafeGetObjectVolatile intrinsics.
815 const Location index_;
816
817 DISALLOW_COPY_AND_ASSIGN(ReadBarrierForHeapReferenceSlowPathARM64);
818};
819
820// Slow path generating a read barrier for a GC root.
821class ReadBarrierForRootSlowPathARM64 : public SlowPathCodeARM64 {
822 public:
823 ReadBarrierForRootSlowPathARM64(HInstruction* instruction, Location out, Location root)
Roland Levillain44015862016-01-22 11:47:17 +0000824 : instruction_(instruction), out_(out), root_(root) {
825 DCHECK(kEmitCompilerReadBarrier);
826 }
Roland Levillain22ccc3a2015-11-24 13:10:05 +0000827
828 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
829 LocationSummary* locations = instruction_->GetLocations();
830 Primitive::Type type = Primitive::kPrimNot;
831 DCHECK(locations->CanCall());
832 DCHECK(!locations->GetLiveRegisters()->ContainsCoreRegister(out_.reg()));
Roland Levillain44015862016-01-22 11:47:17 +0000833 DCHECK(instruction_->IsLoadClass() || instruction_->IsLoadString())
834 << "Unexpected instruction in read barrier for GC root slow path: "
835 << instruction_->DebugName();
Roland Levillain22ccc3a2015-11-24 13:10:05 +0000836
837 __ Bind(GetEntryLabel());
838 SaveLiveRegisters(codegen, locations);
839
840 InvokeRuntimeCallingConvention calling_convention;
841 CodeGeneratorARM64* arm64_codegen = down_cast<CodeGeneratorARM64*>(codegen);
842 // The argument of the ReadBarrierForRootSlow is not a managed
843 // reference (`mirror::Object*`), but a `GcRoot<mirror::Object>*`;
844 // thus we need a 64-bit move here, and we cannot use
845 //
846 // arm64_codegen->MoveLocation(
847 // LocationFrom(calling_convention.GetRegisterAt(0)),
848 // root_,
849 // type);
850 //
851 // which would emit a 32-bit move, as `type` is a (32-bit wide)
852 // reference type (`Primitive::kPrimNot`).
853 __ Mov(calling_convention.GetRegisterAt(0), XRegisterFrom(out_));
854 arm64_codegen->InvokeRuntime(QUICK_ENTRY_POINT(pReadBarrierForRootSlow),
855 instruction_,
856 instruction_->GetDexPc(),
857 this);
858 CheckEntrypointTypes<kQuickReadBarrierForRootSlow, mirror::Object*, GcRoot<mirror::Object>*>();
859 arm64_codegen->MoveLocation(out_, calling_convention.GetReturnLocation(type), type);
860
861 RestoreLiveRegisters(codegen, locations);
862 __ B(GetExitLabel());
863 }
864
865 const char* GetDescription() const OVERRIDE { return "ReadBarrierForRootSlowPathARM64"; }
866
867 private:
868 HInstruction* const instruction_;
869 const Location out_;
870 const Location root_;
871
872 DISALLOW_COPY_AND_ASSIGN(ReadBarrierForRootSlowPathARM64);
873};
874
Alexandre Rames5319def2014-10-23 10:03:10 +0100875#undef __
876
Roland Levillain2d27c8e2015-04-28 15:48:45 +0100877Location InvokeDexCallingConventionVisitorARM64::GetNextLocation(Primitive::Type type) {
Alexandre Rames5319def2014-10-23 10:03:10 +0100878 Location next_location;
879 if (type == Primitive::kPrimVoid) {
880 LOG(FATAL) << "Unreachable type " << type;
881 }
882
Alexandre Rames542361f2015-01-29 16:57:31 +0000883 if (Primitive::IsFloatingPointType(type) &&
Roland Levillain2d27c8e2015-04-28 15:48:45 +0100884 (float_index_ < calling_convention.GetNumberOfFpuRegisters())) {
885 next_location = LocationFrom(calling_convention.GetFpuRegisterAt(float_index_++));
Alexandre Rames542361f2015-01-29 16:57:31 +0000886 } else if (!Primitive::IsFloatingPointType(type) &&
887 (gp_index_ < calling_convention.GetNumberOfRegisters())) {
Alexandre Ramesa89086e2014-11-07 17:13:25 +0000888 next_location = LocationFrom(calling_convention.GetRegisterAt(gp_index_++));
889 } else {
890 size_t stack_offset = calling_convention.GetStackOffsetOf(stack_index_);
Alexandre Rames542361f2015-01-29 16:57:31 +0000891 next_location = Primitive::Is64BitType(type) ? Location::DoubleStackSlot(stack_offset)
892 : Location::StackSlot(stack_offset);
Alexandre Rames5319def2014-10-23 10:03:10 +0100893 }
894
Alexandre Ramesa89086e2014-11-07 17:13:25 +0000895 // Space on the stack is reserved for all arguments.
Alexandre Rames542361f2015-01-29 16:57:31 +0000896 stack_index_ += Primitive::Is64BitType(type) ? 2 : 1;
Alexandre Rames5319def2014-10-23 10:03:10 +0100897 return next_location;
898}
899
Nicolas Geoffrayfd88f162015-06-03 11:23:52 +0100900Location InvokeDexCallingConventionVisitorARM64::GetMethodLocation() const {
Nicolas Geoffray38207af2015-06-01 15:46:22 +0100901 return LocationFrom(kArtMethodRegister);
Nicolas Geoffrayfd88f162015-06-03 11:23:52 +0100902}
903
Serban Constantinescu579885a2015-02-22 20:51:33 +0000904CodeGeneratorARM64::CodeGeneratorARM64(HGraph* graph,
905 const Arm64InstructionSetFeatures& isa_features,
Serban Constantinescuecc43662015-08-13 13:33:12 +0100906 const CompilerOptions& compiler_options,
907 OptimizingCompilerStats* stats)
Alexandre Rames5319def2014-10-23 10:03:10 +0100908 : CodeGenerator(graph,
909 kNumberOfAllocatableRegisters,
Alexandre Ramesa89086e2014-11-07 17:13:25 +0000910 kNumberOfAllocatableFPRegisters,
Calin Juravlecd6dffe2015-01-08 17:35:35 +0000911 kNumberOfAllocatableRegisterPairs,
Serban Constantinescu3d087de2015-01-28 11:57:05 +0000912 callee_saved_core_registers.list(),
Nicolas Geoffray75d5b9b2015-10-05 07:40:35 +0000913 callee_saved_fp_registers.list(),
Serban Constantinescuecc43662015-08-13 13:33:12 +0100914 compiler_options,
915 stats),
Alexandre Rames5319def2014-10-23 10:03:10 +0100916 block_labels_(nullptr),
Zheng Xu3927c8b2015-11-18 17:46:25 +0800917 jump_tables_(graph->GetArena()->Adapter(kArenaAllocCodeGenerator)),
Alexandre Rames5319def2014-10-23 10:03:10 +0100918 location_builder_(graph, this),
Alexandre Rames3e69f162014-12-10 10:36:50 +0000919 instruction_visitor_(graph, this),
Serban Constantinescu579885a2015-02-22 20:51:33 +0000920 move_resolver_(graph->GetArena(), this),
Vladimir Marko58155012015-08-19 12:49:41 +0000921 isa_features_(isa_features),
Vladimir Marko5233f932015-09-29 19:01:15 +0100922 uint64_literals_(std::less<uint64_t>(),
923 graph->GetArena()->Adapter(kArenaAllocCodeGenerator)),
924 method_patches_(MethodReferenceComparator(),
925 graph->GetArena()->Adapter(kArenaAllocCodeGenerator)),
926 call_patches_(MethodReferenceComparator(),
927 graph->GetArena()->Adapter(kArenaAllocCodeGenerator)),
928 relative_call_patches_(graph->GetArena()->Adapter(kArenaAllocCodeGenerator)),
Vladimir Marko0f7dca42015-11-02 14:36:43 +0000929 pc_relative_dex_cache_patches_(graph->GetArena()->Adapter(kArenaAllocCodeGenerator)) {
Nicolas Geoffrayd97dc402015-01-22 13:50:01 +0000930 // Save the link register (containing the return address) to mimic Quick.
Serban Constantinescu3d087de2015-01-28 11:57:05 +0000931 AddAllocatedRegister(LocationFrom(lr));
Nicolas Geoffrayd97dc402015-01-22 13:50:01 +0000932}
Alexandre Rames5319def2014-10-23 10:03:10 +0100933
Alexandre Rames67555f72014-11-18 10:55:16 +0000934#define __ GetVIXLAssembler()->
Alexandre Rames5319def2014-10-23 10:03:10 +0100935
Zheng Xu3927c8b2015-11-18 17:46:25 +0800936void CodeGeneratorARM64::EmitJumpTables() {
937 for (auto jump_table : jump_tables_) {
938 jump_table->EmitTable(this);
939 }
940}
941
Serban Constantinescu32f5b4d2014-11-25 20:05:46 +0000942void CodeGeneratorARM64::Finalize(CodeAllocator* allocator) {
Zheng Xu3927c8b2015-11-18 17:46:25 +0800943 EmitJumpTables();
Serban Constantinescu32f5b4d2014-11-25 20:05:46 +0000944 // Ensure we emit the literal pool.
945 __ FinalizeCode();
Vladimir Marko58155012015-08-19 12:49:41 +0000946
Serban Constantinescu32f5b4d2014-11-25 20:05:46 +0000947 CodeGenerator::Finalize(allocator);
948}
949
Zheng Xuad4450e2015-04-17 18:48:56 +0800950void ParallelMoveResolverARM64::PrepareForEmitNativeCode() {
951 // Note: There are 6 kinds of moves:
952 // 1. constant -> GPR/FPR (non-cycle)
953 // 2. constant -> stack (non-cycle)
954 // 3. GPR/FPR -> GPR/FPR
955 // 4. GPR/FPR -> stack
956 // 5. stack -> GPR/FPR
957 // 6. stack -> stack (non-cycle)
958 // Case 1, 2 and 6 should never be included in a dependency cycle on ARM64. For case 3, 4, and 5
959 // VIXL uses at most 1 GPR. VIXL has 2 GPR and 1 FPR temps, and there should be no intersecting
960 // cycles on ARM64, so we always have 1 GPR and 1 FPR available VIXL temps to resolve the
961 // dependency.
962 vixl_temps_.Open(GetVIXLAssembler());
963}
964
965void ParallelMoveResolverARM64::FinishEmitNativeCode() {
966 vixl_temps_.Close();
967}
968
969Location ParallelMoveResolverARM64::AllocateScratchLocationFor(Location::Kind kind) {
970 DCHECK(kind == Location::kRegister || kind == Location::kFpuRegister ||
971 kind == Location::kStackSlot || kind == Location::kDoubleStackSlot);
972 kind = (kind == Location::kFpuRegister) ? Location::kFpuRegister : Location::kRegister;
973 Location scratch = GetScratchLocation(kind);
974 if (!scratch.Equals(Location::NoLocation())) {
975 return scratch;
976 }
977 // Allocate from VIXL temp registers.
978 if (kind == Location::kRegister) {
979 scratch = LocationFrom(vixl_temps_.AcquireX());
980 } else {
981 DCHECK(kind == Location::kFpuRegister);
982 scratch = LocationFrom(vixl_temps_.AcquireD());
983 }
984 AddScratchLocation(scratch);
985 return scratch;
986}
987
988void ParallelMoveResolverARM64::FreeScratchLocation(Location loc) {
989 if (loc.IsRegister()) {
990 vixl_temps_.Release(XRegisterFrom(loc));
991 } else {
992 DCHECK(loc.IsFpuRegister());
993 vixl_temps_.Release(DRegisterFrom(loc));
994 }
995 RemoveScratchLocation(loc);
996}
997
Alexandre Rames3e69f162014-12-10 10:36:50 +0000998void ParallelMoveResolverARM64::EmitMove(size_t index) {
Vladimir Marko225b6462015-09-28 12:17:40 +0100999 MoveOperands* move = moves_[index];
Calin Juravlee460d1d2015-09-29 04:52:17 +01001000 codegen_->MoveLocation(move->GetDestination(), move->GetSource(), Primitive::kPrimVoid);
Alexandre Rames3e69f162014-12-10 10:36:50 +00001001}
1002
Alexandre Rames5319def2014-10-23 10:03:10 +01001003void CodeGeneratorARM64::GenerateFrameEntry() {
Alexandre Ramesd921d642015-04-16 15:07:16 +01001004 MacroAssembler* masm = GetVIXLAssembler();
1005 BlockPoolsScope block_pools(masm);
Nicolas Geoffray1cf95282014-12-12 19:22:03 +00001006 __ Bind(&frame_entry_label_);
1007
Serban Constantinescu02164b32014-11-13 14:05:07 +00001008 bool do_overflow_check = FrameNeedsStackCheck(GetFrameSize(), kArm64) || !IsLeafMethod();
1009 if (do_overflow_check) {
Alexandre Ramesd921d642015-04-16 15:07:16 +01001010 UseScratchRegisterScope temps(masm);
Serban Constantinescu02164b32014-11-13 14:05:07 +00001011 Register temp = temps.AcquireX();
Nicolas Geoffrayd97dc402015-01-22 13:50:01 +00001012 DCHECK(GetCompilerOptions().GetImplicitStackOverflowChecks());
Serban Constantinescu3d087de2015-01-28 11:57:05 +00001013 __ Sub(temp, sp, static_cast<int32_t>(GetStackOverflowReservedBytes(kArm64)));
Nicolas Geoffrayd97dc402015-01-22 13:50:01 +00001014 __ Ldr(wzr, MemOperand(temp, 0));
1015 RecordPcInfo(nullptr, 0);
Serban Constantinescu02164b32014-11-13 14:05:07 +00001016 }
Alexandre Rames5319def2014-10-23 10:03:10 +01001017
Nicolas Geoffrayc0572a42015-02-06 14:35:25 +00001018 if (!HasEmptyFrame()) {
1019 int frame_size = GetFrameSize();
1020 // Stack layout:
1021 // sp[frame_size - 8] : lr.
1022 // ... : other preserved core registers.
1023 // ... : other preserved fp registers.
1024 // ... : reserved frame space.
1025 // sp[0] : current method.
1026 __ Str(kArtMethodRegister, MemOperand(sp, -frame_size, PreIndex));
David Srbeckyc6b4dd82015-04-07 20:32:43 +01001027 GetAssembler()->cfi().AdjustCFAOffset(frame_size);
Zheng Xu69a50302015-04-14 20:04:41 +08001028 GetAssembler()->SpillRegisters(GetFramePreservedCoreRegisters(),
1029 frame_size - GetCoreSpillSize());
1030 GetAssembler()->SpillRegisters(GetFramePreservedFPRegisters(),
1031 frame_size - FrameEntrySpillSize());
Nicolas Geoffrayc0572a42015-02-06 14:35:25 +00001032 }
Alexandre Rames5319def2014-10-23 10:03:10 +01001033}
1034
1035void CodeGeneratorARM64::GenerateFrameExit() {
Alexandre Ramesd921d642015-04-16 15:07:16 +01001036 BlockPoolsScope block_pools(GetVIXLAssembler());
David Srbeckyc34dc932015-04-12 09:27:43 +01001037 GetAssembler()->cfi().RememberState();
Nicolas Geoffrayc0572a42015-02-06 14:35:25 +00001038 if (!HasEmptyFrame()) {
1039 int frame_size = GetFrameSize();
Zheng Xu69a50302015-04-14 20:04:41 +08001040 GetAssembler()->UnspillRegisters(GetFramePreservedFPRegisters(),
1041 frame_size - FrameEntrySpillSize());
1042 GetAssembler()->UnspillRegisters(GetFramePreservedCoreRegisters(),
1043 frame_size - GetCoreSpillSize());
Nicolas Geoffrayc0572a42015-02-06 14:35:25 +00001044 __ Drop(frame_size);
David Srbeckyc6b4dd82015-04-07 20:32:43 +01001045 GetAssembler()->cfi().AdjustCFAOffset(-frame_size);
Nicolas Geoffrayc0572a42015-02-06 14:35:25 +00001046 }
David Srbeckyc34dc932015-04-12 09:27:43 +01001047 __ Ret();
1048 GetAssembler()->cfi().RestoreState();
1049 GetAssembler()->cfi().DefCFAOffset(GetFrameSize());
Alexandre Rames5319def2014-10-23 10:03:10 +01001050}
1051
Zheng Xuda403092015-04-24 17:35:39 +08001052vixl::CPURegList CodeGeneratorARM64::GetFramePreservedCoreRegisters() const {
1053 DCHECK(ArtVixlRegCodeCoherentForRegSet(core_spill_mask_, GetNumberOfCoreRegisters(), 0, 0));
1054 return vixl::CPURegList(vixl::CPURegister::kRegister, vixl::kXRegSize,
1055 core_spill_mask_);
1056}
1057
1058vixl::CPURegList CodeGeneratorARM64::GetFramePreservedFPRegisters() const {
1059 DCHECK(ArtVixlRegCodeCoherentForRegSet(0, 0, fpu_spill_mask_,
1060 GetNumberOfFloatingPointRegisters()));
1061 return vixl::CPURegList(vixl::CPURegister::kFPRegister, vixl::kDRegSize,
1062 fpu_spill_mask_);
1063}
1064
Alexandre Rames5319def2014-10-23 10:03:10 +01001065void CodeGeneratorARM64::Bind(HBasicBlock* block) {
1066 __ Bind(GetLabelOf(block));
1067}
1068
Alexandre Rames5319def2014-10-23 10:03:10 +01001069void CodeGeneratorARM64::Move(HInstruction* instruction,
1070 Location location,
1071 HInstruction* move_for) {
1072 LocationSummary* locations = instruction->GetLocations();
Alexandre Rames5319def2014-10-23 10:03:10 +01001073 Primitive::Type type = instruction->GetType();
Alexandre Ramesa89086e2014-11-07 17:13:25 +00001074 DCHECK_NE(type, Primitive::kPrimVoid);
Alexandre Rames5319def2014-10-23 10:03:10 +01001075
Nicolas Geoffray76b1e172015-05-27 17:18:33 +01001076 if (instruction->IsCurrentMethod()) {
Calin Juravlee460d1d2015-09-29 04:52:17 +01001077 MoveLocation(location,
1078 Location::DoubleStackSlot(kCurrentMethodStackOffset),
1079 Primitive::kPrimVoid);
Nicolas Geoffray76b1e172015-05-27 17:18:33 +01001080 } else if (locations != nullptr && locations->Out().Equals(location)) {
1081 return;
1082 } else if (instruction->IsIntConstant()
1083 || instruction->IsLongConstant()
1084 || instruction->IsNullConstant()) {
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +00001085 int64_t value = GetInt64ValueOf(instruction->AsConstant());
Alexandre Rames5319def2014-10-23 10:03:10 +01001086 if (location.IsRegister()) {
1087 Register dst = RegisterFrom(location, type);
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +00001088 DCHECK(((instruction->IsIntConstant() || instruction->IsNullConstant()) && dst.Is32Bits()) ||
Alexandre Rames5319def2014-10-23 10:03:10 +01001089 (instruction->IsLongConstant() && dst.Is64Bits()));
1090 __ Mov(dst, value);
1091 } else {
1092 DCHECK(location.IsStackSlot() || location.IsDoubleStackSlot());
Alexandre Rames67555f72014-11-18 10:55:16 +00001093 UseScratchRegisterScope temps(GetVIXLAssembler());
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +00001094 Register temp = (instruction->IsIntConstant() || instruction->IsNullConstant())
1095 ? temps.AcquireW()
1096 : temps.AcquireX();
Alexandre Rames5319def2014-10-23 10:03:10 +01001097 __ Mov(temp, value);
1098 __ Str(temp, StackOperandFrom(location));
1099 }
Nicolas Geoffrayf43083d2014-11-07 10:48:10 +00001100 } else if (instruction->IsTemporary()) {
1101 Location temp_location = GetTemporaryLocation(instruction->AsTemporary());
Alexandre Rames3e69f162014-12-10 10:36:50 +00001102 MoveLocation(location, temp_location, type);
Alexandre Rames5319def2014-10-23 10:03:10 +01001103 } else if (instruction->IsLoadLocal()) {
1104 uint32_t stack_slot = GetStackSlot(instruction->AsLoadLocal()->GetLocal());
Alexandre Rames542361f2015-01-29 16:57:31 +00001105 if (Primitive::Is64BitType(type)) {
Alexandre Rames3e69f162014-12-10 10:36:50 +00001106 MoveLocation(location, Location::DoubleStackSlot(stack_slot), type);
Alexandre Ramesa89086e2014-11-07 17:13:25 +00001107 } else {
Alexandre Rames3e69f162014-12-10 10:36:50 +00001108 MoveLocation(location, Location::StackSlot(stack_slot), type);
Alexandre Rames5319def2014-10-23 10:03:10 +01001109 }
1110
1111 } else {
1112 DCHECK((instruction->GetNext() == move_for) || instruction->GetNext()->IsTemporary());
Alexandre Rames3e69f162014-12-10 10:36:50 +00001113 MoveLocation(location, locations->Out(), type);
Alexandre Rames5319def2014-10-23 10:03:10 +01001114 }
1115}
1116
Calin Juravle175dc732015-08-25 15:42:32 +01001117void CodeGeneratorARM64::MoveConstant(Location location, int32_t value) {
1118 DCHECK(location.IsRegister());
1119 __ Mov(RegisterFrom(location, Primitive::kPrimInt), value);
1120}
1121
Calin Juravlee460d1d2015-09-29 04:52:17 +01001122void CodeGeneratorARM64::AddLocationAsTemp(Location location, LocationSummary* locations) {
1123 if (location.IsRegister()) {
1124 locations->AddTemp(location);
1125 } else {
1126 UNIMPLEMENTED(FATAL) << "AddLocationAsTemp not implemented for location " << location;
1127 }
1128}
1129
Alexandre Rames5319def2014-10-23 10:03:10 +01001130Location CodeGeneratorARM64::GetStackLocation(HLoadLocal* load) const {
1131 Primitive::Type type = load->GetType();
Alexandre Ramesa89086e2014-11-07 17:13:25 +00001132
Alexandre Rames5319def2014-10-23 10:03:10 +01001133 switch (type) {
1134 case Primitive::kPrimNot:
Alexandre Ramesa89086e2014-11-07 17:13:25 +00001135 case Primitive::kPrimInt:
1136 case Primitive::kPrimFloat:
1137 return Location::StackSlot(GetStackSlot(load->GetLocal()));
1138
1139 case Primitive::kPrimLong:
1140 case Primitive::kPrimDouble:
1141 return Location::DoubleStackSlot(GetStackSlot(load->GetLocal()));
1142
Alexandre Rames5319def2014-10-23 10:03:10 +01001143 case Primitive::kPrimBoolean:
1144 case Primitive::kPrimByte:
1145 case Primitive::kPrimChar:
1146 case Primitive::kPrimShort:
Alexandre Rames5319def2014-10-23 10:03:10 +01001147 case Primitive::kPrimVoid:
Alexandre Rames5319def2014-10-23 10:03:10 +01001148 LOG(FATAL) << "Unexpected type " << type;
1149 }
Alexandre Ramesa89086e2014-11-07 17:13:25 +00001150
Alexandre Rames5319def2014-10-23 10:03:10 +01001151 LOG(FATAL) << "Unreachable";
1152 return Location::NoLocation();
1153}
1154
Nicolas Geoffray07276db2015-05-18 14:22:09 +01001155void CodeGeneratorARM64::MarkGCCard(Register object, Register value, bool value_can_be_null) {
Alexandre Rames67555f72014-11-18 10:55:16 +00001156 UseScratchRegisterScope temps(GetVIXLAssembler());
Alexandre Rames5319def2014-10-23 10:03:10 +01001157 Register card = temps.AcquireX();
Serban Constantinescu02164b32014-11-13 14:05:07 +00001158 Register temp = temps.AcquireW(); // Index within the CardTable - 32bit.
Alexandre Rames5319def2014-10-23 10:03:10 +01001159 vixl::Label done;
Nicolas Geoffray07276db2015-05-18 14:22:09 +01001160 if (value_can_be_null) {
1161 __ Cbz(value, &done);
1162 }
Alexandre Rames5319def2014-10-23 10:03:10 +01001163 __ Ldr(card, MemOperand(tr, Thread::CardTableOffset<kArm64WordSize>().Int32Value()));
1164 __ Lsr(temp, object, gc::accounting::CardTable::kCardShift);
Serban Constantinescu02164b32014-11-13 14:05:07 +00001165 __ Strb(card, MemOperand(card, temp.X()));
Nicolas Geoffray07276db2015-05-18 14:22:09 +01001166 if (value_can_be_null) {
1167 __ Bind(&done);
1168 }
Alexandre Rames5319def2014-10-23 10:03:10 +01001169}
1170
David Brazdil58282f42016-01-14 12:45:10 +00001171void CodeGeneratorARM64::SetupBlockedRegisters() const {
Serban Constantinescu3d087de2015-01-28 11:57:05 +00001172 // Blocked core registers:
1173 // lr : Runtime reserved.
1174 // tr : Runtime reserved.
1175 // xSuspend : Runtime reserved. TODO: Unblock this when the runtime stops using it.
1176 // ip1 : VIXL core temp.
1177 // ip0 : VIXL core temp.
1178 //
1179 // Blocked fp registers:
1180 // d31 : VIXL fp temp.
Alexandre Rames5319def2014-10-23 10:03:10 +01001181 CPURegList reserved_core_registers = vixl_reserved_core_registers;
1182 reserved_core_registers.Combine(runtime_reserved_core_registers);
Alexandre Rames5319def2014-10-23 10:03:10 +01001183 while (!reserved_core_registers.IsEmpty()) {
1184 blocked_core_registers_[reserved_core_registers.PopLowestIndex().code()] = true;
1185 }
Serban Constantinescu3d087de2015-01-28 11:57:05 +00001186
Alexandre Ramesa89086e2014-11-07 17:13:25 +00001187 CPURegList reserved_fp_registers = vixl_reserved_fp_registers;
Zheng Xua3ec3942015-02-15 18:39:46 +08001188 while (!reserved_fp_registers.IsEmpty()) {
Alexandre Ramesa89086e2014-11-07 17:13:25 +00001189 blocked_fpu_registers_[reserved_fp_registers.PopLowestIndex().code()] = true;
1190 }
Serban Constantinescu3d087de2015-01-28 11:57:05 +00001191
David Brazdil58282f42016-01-14 12:45:10 +00001192 if (GetGraph()->IsDebuggable()) {
Nicolas Geoffrayecf680d2015-10-05 11:15:37 +01001193 // Stubs do not save callee-save floating point registers. If the graph
1194 // is debuggable, we need to deal with these registers differently. For
1195 // now, just block them.
David Brazdil58282f42016-01-14 12:45:10 +00001196 CPURegList reserved_fp_registers_debuggable = callee_saved_fp_registers;
1197 while (!reserved_fp_registers_debuggable.IsEmpty()) {
1198 blocked_fpu_registers_[reserved_fp_registers_debuggable.PopLowestIndex().code()] = true;
Serban Constantinescu3d087de2015-01-28 11:57:05 +00001199 }
1200 }
Alexandre Rames5319def2014-10-23 10:03:10 +01001201}
1202
Alexandre Rames3e69f162014-12-10 10:36:50 +00001203size_t CodeGeneratorARM64::SaveCoreRegister(size_t stack_index, uint32_t reg_id) {
1204 Register reg = Register(VIXLRegCodeFromART(reg_id), kXRegSize);
1205 __ Str(reg, MemOperand(sp, stack_index));
1206 return kArm64WordSize;
1207}
1208
1209size_t CodeGeneratorARM64::RestoreCoreRegister(size_t stack_index, uint32_t reg_id) {
1210 Register reg = Register(VIXLRegCodeFromART(reg_id), kXRegSize);
1211 __ Ldr(reg, MemOperand(sp, stack_index));
1212 return kArm64WordSize;
1213}
1214
1215size_t CodeGeneratorARM64::SaveFloatingPointRegister(size_t stack_index, uint32_t reg_id) {
1216 FPRegister reg = FPRegister(reg_id, kDRegSize);
1217 __ Str(reg, MemOperand(sp, stack_index));
1218 return kArm64WordSize;
1219}
1220
1221size_t CodeGeneratorARM64::RestoreFloatingPointRegister(size_t stack_index, uint32_t reg_id) {
1222 FPRegister reg = FPRegister(reg_id, kDRegSize);
1223 __ Ldr(reg, MemOperand(sp, stack_index));
1224 return kArm64WordSize;
1225}
1226
Alexandre Rames5319def2014-10-23 10:03:10 +01001227void CodeGeneratorARM64::DumpCoreRegister(std::ostream& stream, int reg) const {
David Brazdilc74652862015-05-13 17:50:09 +01001228 stream << XRegister(reg);
Alexandre Rames5319def2014-10-23 10:03:10 +01001229}
1230
1231void CodeGeneratorARM64::DumpFloatingPointRegister(std::ostream& stream, int reg) const {
David Brazdilc74652862015-05-13 17:50:09 +01001232 stream << DRegister(reg);
Alexandre Rames5319def2014-10-23 10:03:10 +01001233}
1234
Alexandre Rames67555f72014-11-18 10:55:16 +00001235void CodeGeneratorARM64::MoveConstant(CPURegister destination, HConstant* constant) {
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +00001236 if (constant->IsIntConstant()) {
1237 __ Mov(Register(destination), constant->AsIntConstant()->GetValue());
1238 } else if (constant->IsLongConstant()) {
1239 __ Mov(Register(destination), constant->AsLongConstant()->GetValue());
1240 } else if (constant->IsNullConstant()) {
1241 __ Mov(Register(destination), 0);
Alexandre Rames67555f72014-11-18 10:55:16 +00001242 } else if (constant->IsFloatConstant()) {
1243 __ Fmov(FPRegister(destination), constant->AsFloatConstant()->GetValue());
1244 } else {
1245 DCHECK(constant->IsDoubleConstant());
1246 __ Fmov(FPRegister(destination), constant->AsDoubleConstant()->GetValue());
1247 }
1248}
1249
Alexandre Rames3e69f162014-12-10 10:36:50 +00001250
1251static bool CoherentConstantAndType(Location constant, Primitive::Type type) {
1252 DCHECK(constant.IsConstant());
1253 HConstant* cst = constant.GetConstant();
1254 return (cst->IsIntConstant() && type == Primitive::kPrimInt) ||
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +00001255 // Null is mapped to a core W register, which we associate with kPrimInt.
1256 (cst->IsNullConstant() && type == Primitive::kPrimInt) ||
Alexandre Rames3e69f162014-12-10 10:36:50 +00001257 (cst->IsLongConstant() && type == Primitive::kPrimLong) ||
1258 (cst->IsFloatConstant() && type == Primitive::kPrimFloat) ||
1259 (cst->IsDoubleConstant() && type == Primitive::kPrimDouble);
1260}
1261
Calin Juravlee460d1d2015-09-29 04:52:17 +01001262void CodeGeneratorARM64::MoveLocation(Location destination,
1263 Location source,
1264 Primitive::Type dst_type) {
Alexandre Ramesfc19de82014-11-07 17:13:31 +00001265 if (source.Equals(destination)) {
1266 return;
1267 }
Alexandre Rames3e69f162014-12-10 10:36:50 +00001268
1269 // A valid move can always be inferred from the destination and source
1270 // locations. When moving from and to a register, the argument type can be
1271 // used to generate 32bit instead of 64bit moves. In debug mode we also
1272 // checks the coherency of the locations and the type.
Calin Juravlee460d1d2015-09-29 04:52:17 +01001273 bool unspecified_type = (dst_type == Primitive::kPrimVoid);
Alexandre Rames3e69f162014-12-10 10:36:50 +00001274
1275 if (destination.IsRegister() || destination.IsFpuRegister()) {
1276 if (unspecified_type) {
1277 HConstant* src_cst = source.IsConstant() ? source.GetConstant() : nullptr;
1278 if (source.IsStackSlot() ||
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +00001279 (src_cst != nullptr && (src_cst->IsIntConstant()
1280 || src_cst->IsFloatConstant()
1281 || src_cst->IsNullConstant()))) {
Alexandre Rames3e69f162014-12-10 10:36:50 +00001282 // For stack slots and 32bit constants, a 64bit type is appropriate.
Calin Juravlee460d1d2015-09-29 04:52:17 +01001283 dst_type = destination.IsRegister() ? Primitive::kPrimInt : Primitive::kPrimFloat;
Alexandre Rames67555f72014-11-18 10:55:16 +00001284 } else {
Alexandre Rames3e69f162014-12-10 10:36:50 +00001285 // If the source is a double stack slot or a 64bit constant, a 64bit
1286 // type is appropriate. Else the source is a register, and since the
1287 // type has not been specified, we chose a 64bit type to force a 64bit
1288 // move.
Calin Juravlee460d1d2015-09-29 04:52:17 +01001289 dst_type = destination.IsRegister() ? Primitive::kPrimLong : Primitive::kPrimDouble;
Alexandre Rames67555f72014-11-18 10:55:16 +00001290 }
Alexandre Rames3e69f162014-12-10 10:36:50 +00001291 }
Calin Juravlee460d1d2015-09-29 04:52:17 +01001292 DCHECK((destination.IsFpuRegister() && Primitive::IsFloatingPointType(dst_type)) ||
1293 (destination.IsRegister() && !Primitive::IsFloatingPointType(dst_type)));
1294 CPURegister dst = CPURegisterFrom(destination, dst_type);
Alexandre Rames3e69f162014-12-10 10:36:50 +00001295 if (source.IsStackSlot() || source.IsDoubleStackSlot()) {
1296 DCHECK(dst.Is64Bits() == source.IsDoubleStackSlot());
1297 __ Ldr(dst, StackOperandFrom(source));
1298 } else if (source.IsConstant()) {
Calin Juravlee460d1d2015-09-29 04:52:17 +01001299 DCHECK(CoherentConstantAndType(source, dst_type));
Alexandre Rames3e69f162014-12-10 10:36:50 +00001300 MoveConstant(dst, source.GetConstant());
Calin Juravlee460d1d2015-09-29 04:52:17 +01001301 } else if (source.IsRegister()) {
Alexandre Rames3e69f162014-12-10 10:36:50 +00001302 if (destination.IsRegister()) {
Calin Juravlee460d1d2015-09-29 04:52:17 +01001303 __ Mov(Register(dst), RegisterFrom(source, dst_type));
Alexandre Rames3e69f162014-12-10 10:36:50 +00001304 } else {
Zheng Xuad4450e2015-04-17 18:48:56 +08001305 DCHECK(destination.IsFpuRegister());
Calin Juravlee460d1d2015-09-29 04:52:17 +01001306 Primitive::Type source_type = Primitive::Is64BitType(dst_type)
1307 ? Primitive::kPrimLong
1308 : Primitive::kPrimInt;
1309 __ Fmov(FPRegisterFrom(destination, dst_type), RegisterFrom(source, source_type));
1310 }
1311 } else {
1312 DCHECK(source.IsFpuRegister());
1313 if (destination.IsRegister()) {
1314 Primitive::Type source_type = Primitive::Is64BitType(dst_type)
1315 ? Primitive::kPrimDouble
1316 : Primitive::kPrimFloat;
1317 __ Fmov(RegisterFrom(destination, dst_type), FPRegisterFrom(source, source_type));
1318 } else {
1319 DCHECK(destination.IsFpuRegister());
1320 __ Fmov(FPRegister(dst), FPRegisterFrom(source, dst_type));
Alexandre Rames3e69f162014-12-10 10:36:50 +00001321 }
1322 }
Alexandre Rames3e69f162014-12-10 10:36:50 +00001323 } else { // The destination is not a register. It must be a stack slot.
1324 DCHECK(destination.IsStackSlot() || destination.IsDoubleStackSlot());
1325 if (source.IsRegister() || source.IsFpuRegister()) {
1326 if (unspecified_type) {
1327 if (source.IsRegister()) {
Calin Juravlee460d1d2015-09-29 04:52:17 +01001328 dst_type = destination.IsStackSlot() ? Primitive::kPrimInt : Primitive::kPrimLong;
Alexandre Rames3e69f162014-12-10 10:36:50 +00001329 } else {
Calin Juravlee460d1d2015-09-29 04:52:17 +01001330 dst_type = destination.IsStackSlot() ? Primitive::kPrimFloat : Primitive::kPrimDouble;
Alexandre Rames3e69f162014-12-10 10:36:50 +00001331 }
1332 }
Calin Juravlee460d1d2015-09-29 04:52:17 +01001333 DCHECK((destination.IsDoubleStackSlot() == Primitive::Is64BitType(dst_type)) &&
1334 (source.IsFpuRegister() == Primitive::IsFloatingPointType(dst_type)));
1335 __ Str(CPURegisterFrom(source, dst_type), StackOperandFrom(destination));
Alexandre Rames3e69f162014-12-10 10:36:50 +00001336 } else if (source.IsConstant()) {
Calin Juravlee460d1d2015-09-29 04:52:17 +01001337 DCHECK(unspecified_type || CoherentConstantAndType(source, dst_type))
1338 << source << " " << dst_type;
Alexandre Rames3e69f162014-12-10 10:36:50 +00001339 UseScratchRegisterScope temps(GetVIXLAssembler());
1340 HConstant* src_cst = source.GetConstant();
1341 CPURegister temp;
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +00001342 if (src_cst->IsIntConstant() || src_cst->IsNullConstant()) {
Alexandre Rames3e69f162014-12-10 10:36:50 +00001343 temp = temps.AcquireW();
1344 } else if (src_cst->IsLongConstant()) {
1345 temp = temps.AcquireX();
1346 } else if (src_cst->IsFloatConstant()) {
1347 temp = temps.AcquireS();
1348 } else {
1349 DCHECK(src_cst->IsDoubleConstant());
1350 temp = temps.AcquireD();
1351 }
1352 MoveConstant(temp, src_cst);
Alexandre Rames67555f72014-11-18 10:55:16 +00001353 __ Str(temp, StackOperandFrom(destination));
Alexandre Ramesfc19de82014-11-07 17:13:31 +00001354 } else {
Alexandre Rames67555f72014-11-18 10:55:16 +00001355 DCHECK(source.IsStackSlot() || source.IsDoubleStackSlot());
Alexandre Rames3e69f162014-12-10 10:36:50 +00001356 DCHECK(source.IsDoubleStackSlot() == destination.IsDoubleStackSlot());
Alexandre Rames67555f72014-11-18 10:55:16 +00001357 UseScratchRegisterScope temps(GetVIXLAssembler());
Alexandre Rames3e69f162014-12-10 10:36:50 +00001358 // There is generally less pressure on FP registers.
1359 FPRegister temp = destination.IsDoubleStackSlot() ? temps.AcquireD() : temps.AcquireS();
Alexandre Ramesfc19de82014-11-07 17:13:31 +00001360 __ Ldr(temp, StackOperandFrom(source));
1361 __ Str(temp, StackOperandFrom(destination));
1362 }
1363 }
1364}
1365
1366void CodeGeneratorARM64::Load(Primitive::Type type,
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001367 CPURegister dst,
1368 const MemOperand& src) {
Alexandre Ramesfc19de82014-11-07 17:13:31 +00001369 switch (type) {
1370 case Primitive::kPrimBoolean:
Alexandre Rames67555f72014-11-18 10:55:16 +00001371 __ Ldrb(Register(dst), src);
Alexandre Ramesfc19de82014-11-07 17:13:31 +00001372 break;
1373 case Primitive::kPrimByte:
Alexandre Rames67555f72014-11-18 10:55:16 +00001374 __ Ldrsb(Register(dst), src);
Alexandre Ramesfc19de82014-11-07 17:13:31 +00001375 break;
1376 case Primitive::kPrimShort:
Alexandre Rames67555f72014-11-18 10:55:16 +00001377 __ Ldrsh(Register(dst), src);
Alexandre Ramesfc19de82014-11-07 17:13:31 +00001378 break;
1379 case Primitive::kPrimChar:
Alexandre Rames67555f72014-11-18 10:55:16 +00001380 __ Ldrh(Register(dst), src);
Alexandre Ramesfc19de82014-11-07 17:13:31 +00001381 break;
1382 case Primitive::kPrimInt:
1383 case Primitive::kPrimNot:
1384 case Primitive::kPrimLong:
Alexandre Ramesfc19de82014-11-07 17:13:31 +00001385 case Primitive::kPrimFloat:
1386 case Primitive::kPrimDouble:
Alexandre Rames542361f2015-01-29 16:57:31 +00001387 DCHECK_EQ(dst.Is64Bits(), Primitive::Is64BitType(type));
Alexandre Rames67555f72014-11-18 10:55:16 +00001388 __ Ldr(dst, src);
1389 break;
Alexandre Ramesfc19de82014-11-07 17:13:31 +00001390 case Primitive::kPrimVoid:
1391 LOG(FATAL) << "Unreachable type " << type;
1392 }
1393}
1394
Calin Juravle77520bc2015-01-12 18:45:46 +00001395void CodeGeneratorARM64::LoadAcquire(HInstruction* instruction,
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001396 CPURegister dst,
Roland Levillain44015862016-01-22 11:47:17 +00001397 const MemOperand& src,
1398 bool needs_null_check) {
Alexandre Ramesd921d642015-04-16 15:07:16 +01001399 MacroAssembler* masm = GetVIXLAssembler();
1400 BlockPoolsScope block_pools(masm);
1401 UseScratchRegisterScope temps(masm);
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001402 Register temp_base = temps.AcquireX();
Calin Juravle77520bc2015-01-12 18:45:46 +00001403 Primitive::Type type = instruction->GetType();
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001404
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001405 DCHECK(!src.IsPreIndex());
1406 DCHECK(!src.IsPostIndex());
1407
1408 // TODO(vixl): Let the MacroAssembler handle MemOperand.
Andreas Gampe878d58c2015-01-15 23:24:00 -08001409 __ Add(temp_base, src.base(), OperandFromMemOperand(src));
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001410 MemOperand base = MemOperand(temp_base);
1411 switch (type) {
1412 case Primitive::kPrimBoolean:
1413 __ Ldarb(Register(dst), base);
Roland Levillain44015862016-01-22 11:47:17 +00001414 if (needs_null_check) {
1415 MaybeRecordImplicitNullCheck(instruction);
1416 }
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001417 break;
1418 case Primitive::kPrimByte:
1419 __ Ldarb(Register(dst), base);
Roland Levillain44015862016-01-22 11:47:17 +00001420 if (needs_null_check) {
1421 MaybeRecordImplicitNullCheck(instruction);
1422 }
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001423 __ Sbfx(Register(dst), Register(dst), 0, Primitive::ComponentSize(type) * kBitsPerByte);
1424 break;
1425 case Primitive::kPrimChar:
1426 __ Ldarh(Register(dst), base);
Roland Levillain44015862016-01-22 11:47:17 +00001427 if (needs_null_check) {
1428 MaybeRecordImplicitNullCheck(instruction);
1429 }
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001430 break;
1431 case Primitive::kPrimShort:
1432 __ Ldarh(Register(dst), base);
Roland Levillain44015862016-01-22 11:47:17 +00001433 if (needs_null_check) {
1434 MaybeRecordImplicitNullCheck(instruction);
1435 }
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001436 __ Sbfx(Register(dst), Register(dst), 0, Primitive::ComponentSize(type) * kBitsPerByte);
1437 break;
1438 case Primitive::kPrimInt:
1439 case Primitive::kPrimNot:
1440 case Primitive::kPrimLong:
Alexandre Rames542361f2015-01-29 16:57:31 +00001441 DCHECK_EQ(dst.Is64Bits(), Primitive::Is64BitType(type));
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001442 __ Ldar(Register(dst), base);
Roland Levillain44015862016-01-22 11:47:17 +00001443 if (needs_null_check) {
1444 MaybeRecordImplicitNullCheck(instruction);
1445 }
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001446 break;
1447 case Primitive::kPrimFloat:
1448 case Primitive::kPrimDouble: {
1449 DCHECK(dst.IsFPRegister());
Alexandre Rames542361f2015-01-29 16:57:31 +00001450 DCHECK_EQ(dst.Is64Bits(), Primitive::Is64BitType(type));
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001451
1452 Register temp = dst.Is64Bits() ? temps.AcquireX() : temps.AcquireW();
1453 __ Ldar(temp, base);
Roland Levillain44015862016-01-22 11:47:17 +00001454 if (needs_null_check) {
1455 MaybeRecordImplicitNullCheck(instruction);
1456 }
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001457 __ Fmov(FPRegister(dst), temp);
1458 break;
1459 }
1460 case Primitive::kPrimVoid:
1461 LOG(FATAL) << "Unreachable type " << type;
1462 }
1463}
1464
Alexandre Ramesfc19de82014-11-07 17:13:31 +00001465void CodeGeneratorARM64::Store(Primitive::Type type,
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001466 CPURegister src,
1467 const MemOperand& dst) {
Alexandre Ramesfc19de82014-11-07 17:13:31 +00001468 switch (type) {
1469 case Primitive::kPrimBoolean:
1470 case Primitive::kPrimByte:
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001471 __ Strb(Register(src), dst);
Alexandre Ramesfc19de82014-11-07 17:13:31 +00001472 break;
1473 case Primitive::kPrimChar:
1474 case Primitive::kPrimShort:
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001475 __ Strh(Register(src), dst);
Alexandre Ramesfc19de82014-11-07 17:13:31 +00001476 break;
1477 case Primitive::kPrimInt:
1478 case Primitive::kPrimNot:
1479 case Primitive::kPrimLong:
Alexandre Ramesfc19de82014-11-07 17:13:31 +00001480 case Primitive::kPrimFloat:
1481 case Primitive::kPrimDouble:
Alexandre Rames542361f2015-01-29 16:57:31 +00001482 DCHECK_EQ(src.Is64Bits(), Primitive::Is64BitType(type));
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001483 __ Str(src, dst);
Alexandre Rames67555f72014-11-18 10:55:16 +00001484 break;
Alexandre Ramesfc19de82014-11-07 17:13:31 +00001485 case Primitive::kPrimVoid:
1486 LOG(FATAL) << "Unreachable type " << type;
1487 }
1488}
1489
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001490void CodeGeneratorARM64::StoreRelease(Primitive::Type type,
1491 CPURegister src,
1492 const MemOperand& dst) {
1493 UseScratchRegisterScope temps(GetVIXLAssembler());
1494 Register temp_base = temps.AcquireX();
1495
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001496 DCHECK(!dst.IsPreIndex());
1497 DCHECK(!dst.IsPostIndex());
1498
1499 // TODO(vixl): Let the MacroAssembler handle this.
Andreas Gampe878d58c2015-01-15 23:24:00 -08001500 Operand op = OperandFromMemOperand(dst);
1501 __ Add(temp_base, dst.base(), op);
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001502 MemOperand base = MemOperand(temp_base);
1503 switch (type) {
1504 case Primitive::kPrimBoolean:
1505 case Primitive::kPrimByte:
1506 __ Stlrb(Register(src), base);
1507 break;
1508 case Primitive::kPrimChar:
1509 case Primitive::kPrimShort:
1510 __ Stlrh(Register(src), base);
1511 break;
1512 case Primitive::kPrimInt:
1513 case Primitive::kPrimNot:
1514 case Primitive::kPrimLong:
Alexandre Rames542361f2015-01-29 16:57:31 +00001515 DCHECK_EQ(src.Is64Bits(), Primitive::Is64BitType(type));
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001516 __ Stlr(Register(src), base);
1517 break;
1518 case Primitive::kPrimFloat:
1519 case Primitive::kPrimDouble: {
1520 DCHECK(src.IsFPRegister());
Alexandre Rames542361f2015-01-29 16:57:31 +00001521 DCHECK_EQ(src.Is64Bits(), Primitive::Is64BitType(type));
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001522
1523 Register temp = src.Is64Bits() ? temps.AcquireX() : temps.AcquireW();
1524 __ Fmov(temp, FPRegister(src));
1525 __ Stlr(temp, base);
1526 break;
1527 }
1528 case Primitive::kPrimVoid:
1529 LOG(FATAL) << "Unreachable type " << type;
1530 }
1531}
1532
Calin Juravle175dc732015-08-25 15:42:32 +01001533void CodeGeneratorARM64::InvokeRuntime(QuickEntrypointEnum entrypoint,
1534 HInstruction* instruction,
1535 uint32_t dex_pc,
1536 SlowPathCode* slow_path) {
1537 InvokeRuntime(GetThreadOffset<kArm64WordSize>(entrypoint).Int32Value(),
1538 instruction,
1539 dex_pc,
1540 slow_path);
1541}
1542
Alexandre Rames67555f72014-11-18 10:55:16 +00001543void CodeGeneratorARM64::InvokeRuntime(int32_t entry_point_offset,
1544 HInstruction* instruction,
Nicolas Geoffrayeeefa122015-03-13 18:52:59 +00001545 uint32_t dex_pc,
1546 SlowPathCode* slow_path) {
Alexandre Rames78e3ef62015-08-12 13:43:29 +01001547 ValidateInvokeRuntime(instruction, slow_path);
Alexandre Ramesd921d642015-04-16 15:07:16 +01001548 BlockPoolsScope block_pools(GetVIXLAssembler());
Alexandre Rames67555f72014-11-18 10:55:16 +00001549 __ Ldr(lr, MemOperand(tr, entry_point_offset));
1550 __ Blr(lr);
Roland Levillain896e32d2015-05-05 18:07:10 +01001551 RecordPcInfo(instruction, dex_pc, slow_path);
Alexandre Rames67555f72014-11-18 10:55:16 +00001552}
1553
1554void InstructionCodeGeneratorARM64::GenerateClassInitializationCheck(SlowPathCodeARM64* slow_path,
1555 vixl::Register class_reg) {
1556 UseScratchRegisterScope temps(GetVIXLAssembler());
1557 Register temp = temps.AcquireW();
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001558 size_t status_offset = mirror::Class::StatusOffset().SizeValue();
1559
Serban Constantinescu02164b32014-11-13 14:05:07 +00001560 // Even if the initialized flag is set, we need to ensure consistent memory ordering.
Serban Constantinescu4a6a67c2016-01-27 09:19:56 +00001561 // TODO(vixl): Let the MacroAssembler handle MemOperand.
1562 __ Add(temp, class_reg, status_offset);
1563 __ Ldar(temp, HeapOperand(temp));
1564 __ Cmp(temp, mirror::Class::kStatusInitialized);
1565 __ B(lt, slow_path->GetEntryLabel());
Alexandre Rames67555f72014-11-18 10:55:16 +00001566 __ Bind(slow_path->GetExitLabel());
1567}
Alexandre Rames5319def2014-10-23 10:03:10 +01001568
Roland Levillain44015862016-01-22 11:47:17 +00001569void CodeGeneratorARM64::GenerateMemoryBarrier(MemBarrierKind kind) {
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00001570 BarrierType type = BarrierAll;
1571
1572 switch (kind) {
1573 case MemBarrierKind::kAnyAny:
1574 case MemBarrierKind::kAnyStore: {
1575 type = BarrierAll;
1576 break;
1577 }
1578 case MemBarrierKind::kLoadAny: {
1579 type = BarrierReads;
1580 break;
1581 }
1582 case MemBarrierKind::kStoreStore: {
1583 type = BarrierWrites;
1584 break;
1585 }
1586 default:
1587 LOG(FATAL) << "Unexpected memory barrier " << kind;
1588 }
1589 __ Dmb(InnerShareable, type);
1590}
1591
Serban Constantinescu02164b32014-11-13 14:05:07 +00001592void InstructionCodeGeneratorARM64::GenerateSuspendCheck(HSuspendCheck* instruction,
1593 HBasicBlock* successor) {
1594 SuspendCheckSlowPathARM64* slow_path =
Nicolas Geoffraydb216f42015-05-05 17:02:20 +01001595 down_cast<SuspendCheckSlowPathARM64*>(instruction->GetSlowPath());
1596 if (slow_path == nullptr) {
1597 slow_path = new (GetGraph()->GetArena()) SuspendCheckSlowPathARM64(instruction, successor);
1598 instruction->SetSlowPath(slow_path);
1599 codegen_->AddSlowPath(slow_path);
1600 if (successor != nullptr) {
1601 DCHECK(successor->IsLoopHeader());
1602 codegen_->ClearSpillSlotsFromLoopPhisInStackMap(instruction);
1603 }
1604 } else {
1605 DCHECK_EQ(slow_path->GetSuccessor(), successor);
1606 }
1607
Serban Constantinescu02164b32014-11-13 14:05:07 +00001608 UseScratchRegisterScope temps(codegen_->GetVIXLAssembler());
1609 Register temp = temps.AcquireW();
1610
1611 __ Ldrh(temp, MemOperand(tr, Thread::ThreadFlagsOffset<kArm64WordSize>().SizeValue()));
1612 if (successor == nullptr) {
1613 __ Cbnz(temp, slow_path->GetEntryLabel());
1614 __ Bind(slow_path->GetReturnLabel());
1615 } else {
1616 __ Cbz(temp, codegen_->GetLabelOf(successor));
1617 __ B(slow_path->GetEntryLabel());
1618 // slow_path will return to GetLabelOf(successor).
1619 }
1620}
1621
Alexandre Rames5319def2014-10-23 10:03:10 +01001622InstructionCodeGeneratorARM64::InstructionCodeGeneratorARM64(HGraph* graph,
1623 CodeGeneratorARM64* codegen)
Aart Bik42249c32016-01-07 15:33:50 -08001624 : InstructionCodeGenerator(graph, codegen),
Alexandre Rames5319def2014-10-23 10:03:10 +01001625 assembler_(codegen->GetAssembler()),
1626 codegen_(codegen) {}
1627
1628#define FOR_EACH_UNIMPLEMENTED_INSTRUCTION(M) \
Alexandre Rames3e69f162014-12-10 10:36:50 +00001629 /* No unimplemented IR. */
Alexandre Rames5319def2014-10-23 10:03:10 +01001630
1631#define UNIMPLEMENTED_INSTRUCTION_BREAK_CODE(name) name##UnimplementedInstructionBreakCode
1632
1633enum UnimplementedInstructionBreakCode {
Alexandre Rames67555f72014-11-18 10:55:16 +00001634 // Using a base helps identify when we hit such breakpoints.
1635 UnimplementedInstructionBreakCodeBaseCode = 0x900,
Alexandre Rames5319def2014-10-23 10:03:10 +01001636#define ENUM_UNIMPLEMENTED_INSTRUCTION(name) UNIMPLEMENTED_INSTRUCTION_BREAK_CODE(name),
1637 FOR_EACH_UNIMPLEMENTED_INSTRUCTION(ENUM_UNIMPLEMENTED_INSTRUCTION)
1638#undef ENUM_UNIMPLEMENTED_INSTRUCTION
1639};
1640
1641#define DEFINE_UNIMPLEMENTED_INSTRUCTION_VISITORS(name) \
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01001642 void InstructionCodeGeneratorARM64::Visit##name(H##name* instr ATTRIBUTE_UNUSED) { \
Alexandre Rames5319def2014-10-23 10:03:10 +01001643 __ Brk(UNIMPLEMENTED_INSTRUCTION_BREAK_CODE(name)); \
1644 } \
1645 void LocationsBuilderARM64::Visit##name(H##name* instr) { \
1646 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(instr); \
1647 locations->SetOut(Location::Any()); \
1648 }
1649 FOR_EACH_UNIMPLEMENTED_INSTRUCTION(DEFINE_UNIMPLEMENTED_INSTRUCTION_VISITORS)
1650#undef DEFINE_UNIMPLEMENTED_INSTRUCTION_VISITORS
1651
1652#undef UNIMPLEMENTED_INSTRUCTION_BREAK_CODE
Alexandre Rames67555f72014-11-18 10:55:16 +00001653#undef FOR_EACH_UNIMPLEMENTED_INSTRUCTION
Alexandre Rames5319def2014-10-23 10:03:10 +01001654
Alexandre Rames67555f72014-11-18 10:55:16 +00001655void LocationsBuilderARM64::HandleBinaryOp(HBinaryOperation* instr) {
Alexandre Rames5319def2014-10-23 10:03:10 +01001656 DCHECK_EQ(instr->InputCount(), 2U);
1657 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(instr);
1658 Primitive::Type type = instr->GetResultType();
1659 switch (type) {
1660 case Primitive::kPrimInt:
Alexandre Ramesa89086e2014-11-07 17:13:25 +00001661 case Primitive::kPrimLong:
Alexandre Rames5319def2014-10-23 10:03:10 +01001662 locations->SetInAt(0, Location::RequiresRegister());
Serban Constantinescu2d35d9d2015-02-22 22:08:01 +00001663 locations->SetInAt(1, ARM64EncodableConstantOrRegister(instr->InputAt(1), instr));
Alexandre Ramesfb4e5fa2014-11-06 12:41:16 +00001664 locations->SetOut(Location::RequiresRegister(), Location::kNoOutputOverlap);
Alexandre Rames5319def2014-10-23 10:03:10 +01001665 break;
Alexandre Ramesa89086e2014-11-07 17:13:25 +00001666
1667 case Primitive::kPrimFloat:
1668 case Primitive::kPrimDouble:
1669 locations->SetInAt(0, Location::RequiresFpuRegister());
1670 locations->SetInAt(1, Location::RequiresFpuRegister());
Alexandre Rames67555f72014-11-18 10:55:16 +00001671 locations->SetOut(Location::RequiresFpuRegister(), Location::kNoOutputOverlap);
Alexandre Rames5319def2014-10-23 10:03:10 +01001672 break;
Alexandre Ramesa89086e2014-11-07 17:13:25 +00001673
Alexandre Rames5319def2014-10-23 10:03:10 +01001674 default:
Alexandre Ramesa89086e2014-11-07 17:13:25 +00001675 LOG(FATAL) << "Unexpected " << instr->DebugName() << " type " << type;
Alexandre Rames5319def2014-10-23 10:03:10 +01001676 }
1677}
1678
Alexandre Rames09a99962015-04-15 11:47:56 +01001679void LocationsBuilderARM64::HandleFieldGet(HInstruction* instruction) {
Roland Levillain22ccc3a2015-11-24 13:10:05 +00001680 DCHECK(instruction->IsInstanceFieldGet() || instruction->IsStaticFieldGet());
1681
1682 bool object_field_get_with_read_barrier =
1683 kEmitCompilerReadBarrier && (instruction->GetType() == Primitive::kPrimNot);
Alexandre Rames09a99962015-04-15 11:47:56 +01001684 LocationSummary* locations =
Roland Levillain22ccc3a2015-11-24 13:10:05 +00001685 new (GetGraph()->GetArena()) LocationSummary(instruction,
1686 object_field_get_with_read_barrier ?
1687 LocationSummary::kCallOnSlowPath :
1688 LocationSummary::kNoCall);
Alexandre Rames09a99962015-04-15 11:47:56 +01001689 locations->SetInAt(0, Location::RequiresRegister());
1690 if (Primitive::IsFloatingPointType(instruction->GetType())) {
1691 locations->SetOut(Location::RequiresFpuRegister());
1692 } else {
Roland Levillain22ccc3a2015-11-24 13:10:05 +00001693 // The output overlaps for an object field get when read barriers
1694 // are enabled: we do not want the load to overwrite the object's
1695 // location, as we need it to emit the read barrier.
1696 locations->SetOut(
1697 Location::RequiresRegister(),
1698 object_field_get_with_read_barrier ? Location::kOutputOverlap : Location::kNoOutputOverlap);
Alexandre Rames09a99962015-04-15 11:47:56 +01001699 }
1700}
1701
1702void InstructionCodeGeneratorARM64::HandleFieldGet(HInstruction* instruction,
1703 const FieldInfo& field_info) {
1704 DCHECK(instruction->IsInstanceFieldGet() || instruction->IsStaticFieldGet());
Roland Levillain44015862016-01-22 11:47:17 +00001705 LocationSummary* locations = instruction->GetLocations();
1706 Location base_loc = locations->InAt(0);
1707 Location out = locations->Out();
1708 uint32_t offset = field_info.GetFieldOffset().Uint32Value();
Roland Levillain4d027112015-07-01 15:41:14 +01001709 Primitive::Type field_type = field_info.GetFieldType();
Alexandre Ramesd921d642015-04-16 15:07:16 +01001710 BlockPoolsScope block_pools(GetVIXLAssembler());
Alexandre Rames09a99962015-04-15 11:47:56 +01001711 MemOperand field = HeapOperand(InputRegisterAt(instruction, 0), field_info.GetFieldOffset());
Alexandre Rames09a99962015-04-15 11:47:56 +01001712
Roland Levillain44015862016-01-22 11:47:17 +00001713 if (field_type == Primitive::kPrimNot && kEmitCompilerReadBarrier && kUseBakerReadBarrier) {
1714 // Object FieldGet with Baker's read barrier case.
1715 MacroAssembler* masm = GetVIXLAssembler();
1716 UseScratchRegisterScope temps(masm);
1717 // /* HeapReference<Object> */ out = *(base + offset)
1718 Register base = RegisterFrom(base_loc, Primitive::kPrimNot);
1719 Register temp = temps.AcquireW();
1720 // Note that potential implicit null checks are handled in this
1721 // CodeGeneratorARM64::GenerateFieldLoadWithBakerReadBarrier call.
1722 codegen_->GenerateFieldLoadWithBakerReadBarrier(
1723 instruction,
1724 out,
1725 base,
1726 offset,
1727 temp,
1728 /* needs_null_check */ true,
Serban Constantinescu4a6a67c2016-01-27 09:19:56 +00001729 field_info.IsVolatile());
Roland Levillain44015862016-01-22 11:47:17 +00001730 } else {
1731 // General case.
1732 if (field_info.IsVolatile()) {
Serban Constantinescu4a6a67c2016-01-27 09:19:56 +00001733 // Note that a potential implicit null check is handled in this
1734 // CodeGeneratorARM64::LoadAcquire call.
1735 // NB: LoadAcquire will record the pc info if needed.
1736 codegen_->LoadAcquire(
1737 instruction, OutputCPURegister(instruction), field, /* needs_null_check */ true);
Alexandre Rames09a99962015-04-15 11:47:56 +01001738 } else {
Roland Levillain4d027112015-07-01 15:41:14 +01001739 codegen_->Load(field_type, OutputCPURegister(instruction), field);
Alexandre Rames09a99962015-04-15 11:47:56 +01001740 codegen_->MaybeRecordImplicitNullCheck(instruction);
Alexandre Rames09a99962015-04-15 11:47:56 +01001741 }
Roland Levillain44015862016-01-22 11:47:17 +00001742 if (field_type == Primitive::kPrimNot) {
1743 // If read barriers are enabled, emit read barriers other than
1744 // Baker's using a slow path (and also unpoison the loaded
1745 // reference, if heap poisoning is enabled).
1746 codegen_->MaybeGenerateReadBarrierSlow(instruction, out, out, base_loc, offset);
1747 }
Roland Levillain4d027112015-07-01 15:41:14 +01001748 }
Alexandre Rames09a99962015-04-15 11:47:56 +01001749}
1750
1751void LocationsBuilderARM64::HandleFieldSet(HInstruction* instruction) {
1752 LocationSummary* locations =
1753 new (GetGraph()->GetArena()) LocationSummary(instruction, LocationSummary::kNoCall);
1754 locations->SetInAt(0, Location::RequiresRegister());
1755 if (Primitive::IsFloatingPointType(instruction->InputAt(1)->GetType())) {
1756 locations->SetInAt(1, Location::RequiresFpuRegister());
1757 } else {
1758 locations->SetInAt(1, Location::RequiresRegister());
1759 }
1760}
1761
1762void InstructionCodeGeneratorARM64::HandleFieldSet(HInstruction* instruction,
Nicolas Geoffray07276db2015-05-18 14:22:09 +01001763 const FieldInfo& field_info,
1764 bool value_can_be_null) {
Alexandre Rames09a99962015-04-15 11:47:56 +01001765 DCHECK(instruction->IsInstanceFieldSet() || instruction->IsStaticFieldSet());
Alexandre Ramesd921d642015-04-16 15:07:16 +01001766 BlockPoolsScope block_pools(GetVIXLAssembler());
Alexandre Rames09a99962015-04-15 11:47:56 +01001767
1768 Register obj = InputRegisterAt(instruction, 0);
1769 CPURegister value = InputCPURegisterAt(instruction, 1);
Roland Levillain4d027112015-07-01 15:41:14 +01001770 CPURegister source = value;
Alexandre Rames09a99962015-04-15 11:47:56 +01001771 Offset offset = field_info.GetFieldOffset();
1772 Primitive::Type field_type = field_info.GetFieldType();
Alexandre Rames09a99962015-04-15 11:47:56 +01001773
Roland Levillain4d027112015-07-01 15:41:14 +01001774 {
1775 // We use a block to end the scratch scope before the write barrier, thus
1776 // freeing the temporary registers so they can be used in `MarkGCCard`.
1777 UseScratchRegisterScope temps(GetVIXLAssembler());
1778
1779 if (kPoisonHeapReferences && field_type == Primitive::kPrimNot) {
1780 DCHECK(value.IsW());
1781 Register temp = temps.AcquireW();
1782 __ Mov(temp, value.W());
1783 GetAssembler()->PoisonHeapReference(temp.W());
1784 source = temp;
Alexandre Rames09a99962015-04-15 11:47:56 +01001785 }
Roland Levillain4d027112015-07-01 15:41:14 +01001786
1787 if (field_info.IsVolatile()) {
Serban Constantinescu4a6a67c2016-01-27 09:19:56 +00001788 codegen_->StoreRelease(field_type, source, HeapOperand(obj, offset));
1789 codegen_->MaybeRecordImplicitNullCheck(instruction);
Roland Levillain4d027112015-07-01 15:41:14 +01001790 } else {
1791 codegen_->Store(field_type, source, HeapOperand(obj, offset));
1792 codegen_->MaybeRecordImplicitNullCheck(instruction);
1793 }
Alexandre Rames09a99962015-04-15 11:47:56 +01001794 }
1795
1796 if (CodeGenerator::StoreNeedsWriteBarrier(field_type, instruction->InputAt(1))) {
Nicolas Geoffray07276db2015-05-18 14:22:09 +01001797 codegen_->MarkGCCard(obj, Register(value), value_can_be_null);
Alexandre Rames09a99962015-04-15 11:47:56 +01001798 }
1799}
1800
Alexandre Rames67555f72014-11-18 10:55:16 +00001801void InstructionCodeGeneratorARM64::HandleBinaryOp(HBinaryOperation* instr) {
Alexandre Rames5319def2014-10-23 10:03:10 +01001802 Primitive::Type type = instr->GetType();
Alexandre Rames5319def2014-10-23 10:03:10 +01001803
1804 switch (type) {
1805 case Primitive::kPrimInt:
Alexandre Ramesa89086e2014-11-07 17:13:25 +00001806 case Primitive::kPrimLong: {
1807 Register dst = OutputRegister(instr);
1808 Register lhs = InputRegisterAt(instr, 0);
1809 Operand rhs = InputOperandAt(instr, 1);
Alexandre Rames5319def2014-10-23 10:03:10 +01001810 if (instr->IsAdd()) {
1811 __ Add(dst, lhs, rhs);
Alexandre Rames67555f72014-11-18 10:55:16 +00001812 } else if (instr->IsAnd()) {
1813 __ And(dst, lhs, rhs);
1814 } else if (instr->IsOr()) {
1815 __ Orr(dst, lhs, rhs);
1816 } else if (instr->IsSub()) {
Alexandre Rames5319def2014-10-23 10:03:10 +01001817 __ Sub(dst, lhs, rhs);
Scott Wakeling40a04bf2015-12-11 09:50:36 +00001818 } else if (instr->IsRor()) {
1819 if (rhs.IsImmediate()) {
1820 uint32_t shift = rhs.immediate() & (lhs.SizeInBits() - 1);
1821 __ Ror(dst, lhs, shift);
1822 } else {
1823 // Ensure shift distance is in the same size register as the result. If
1824 // we are rotating a long and the shift comes in a w register originally,
1825 // we don't need to sxtw for use as an x since the shift distances are
1826 // all & reg_bits - 1.
1827 __ Ror(dst, lhs, RegisterFrom(instr->GetLocations()->InAt(1), type));
1828 }
Alexandre Rames67555f72014-11-18 10:55:16 +00001829 } else {
1830 DCHECK(instr->IsXor());
1831 __ Eor(dst, lhs, rhs);
Alexandre Rames5319def2014-10-23 10:03:10 +01001832 }
1833 break;
Alexandre Ramesa89086e2014-11-07 17:13:25 +00001834 }
1835 case Primitive::kPrimFloat:
1836 case Primitive::kPrimDouble: {
1837 FPRegister dst = OutputFPRegister(instr);
1838 FPRegister lhs = InputFPRegisterAt(instr, 0);
1839 FPRegister rhs = InputFPRegisterAt(instr, 1);
1840 if (instr->IsAdd()) {
1841 __ Fadd(dst, lhs, rhs);
Alexandre Rames67555f72014-11-18 10:55:16 +00001842 } else if (instr->IsSub()) {
Alexandre Ramesa89086e2014-11-07 17:13:25 +00001843 __ Fsub(dst, lhs, rhs);
Alexandre Rames67555f72014-11-18 10:55:16 +00001844 } else {
1845 LOG(FATAL) << "Unexpected floating-point binary operation";
Alexandre Ramesa89086e2014-11-07 17:13:25 +00001846 }
Alexandre Rames5319def2014-10-23 10:03:10 +01001847 break;
Alexandre Ramesa89086e2014-11-07 17:13:25 +00001848 }
Alexandre Rames5319def2014-10-23 10:03:10 +01001849 default:
Alexandre Rames67555f72014-11-18 10:55:16 +00001850 LOG(FATAL) << "Unexpected binary operation type " << type;
Alexandre Rames5319def2014-10-23 10:03:10 +01001851 }
1852}
1853
Serban Constantinescu02164b32014-11-13 14:05:07 +00001854void LocationsBuilderARM64::HandleShift(HBinaryOperation* instr) {
1855 DCHECK(instr->IsShl() || instr->IsShr() || instr->IsUShr());
1856
1857 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(instr);
1858 Primitive::Type type = instr->GetResultType();
1859 switch (type) {
1860 case Primitive::kPrimInt:
1861 case Primitive::kPrimLong: {
1862 locations->SetInAt(0, Location::RequiresRegister());
1863 locations->SetInAt(1, Location::RegisterOrConstant(instr->InputAt(1)));
1864 locations->SetOut(Location::RequiresRegister());
1865 break;
1866 }
1867 default:
1868 LOG(FATAL) << "Unexpected shift type " << type;
1869 }
1870}
1871
1872void InstructionCodeGeneratorARM64::HandleShift(HBinaryOperation* instr) {
1873 DCHECK(instr->IsShl() || instr->IsShr() || instr->IsUShr());
1874
1875 Primitive::Type type = instr->GetType();
1876 switch (type) {
1877 case Primitive::kPrimInt:
1878 case Primitive::kPrimLong: {
1879 Register dst = OutputRegister(instr);
1880 Register lhs = InputRegisterAt(instr, 0);
1881 Operand rhs = InputOperandAt(instr, 1);
1882 if (rhs.IsImmediate()) {
1883 uint32_t shift_value = (type == Primitive::kPrimInt)
1884 ? static_cast<uint32_t>(rhs.immediate() & kMaxIntShiftValue)
1885 : static_cast<uint32_t>(rhs.immediate() & kMaxLongShiftValue);
1886 if (instr->IsShl()) {
1887 __ Lsl(dst, lhs, shift_value);
1888 } else if (instr->IsShr()) {
1889 __ Asr(dst, lhs, shift_value);
1890 } else {
1891 __ Lsr(dst, lhs, shift_value);
1892 }
1893 } else {
1894 Register rhs_reg = dst.IsX() ? rhs.reg().X() : rhs.reg().W();
1895
1896 if (instr->IsShl()) {
1897 __ Lsl(dst, lhs, rhs_reg);
1898 } else if (instr->IsShr()) {
1899 __ Asr(dst, lhs, rhs_reg);
1900 } else {
1901 __ Lsr(dst, lhs, rhs_reg);
1902 }
1903 }
1904 break;
1905 }
1906 default:
1907 LOG(FATAL) << "Unexpected shift operation type " << type;
1908 }
1909}
1910
Alexandre Rames5319def2014-10-23 10:03:10 +01001911void LocationsBuilderARM64::VisitAdd(HAdd* instruction) {
Alexandre Rames67555f72014-11-18 10:55:16 +00001912 HandleBinaryOp(instruction);
Alexandre Rames5319def2014-10-23 10:03:10 +01001913}
1914
1915void InstructionCodeGeneratorARM64::VisitAdd(HAdd* instruction) {
Alexandre Rames67555f72014-11-18 10:55:16 +00001916 HandleBinaryOp(instruction);
1917}
1918
1919void LocationsBuilderARM64::VisitAnd(HAnd* instruction) {
1920 HandleBinaryOp(instruction);
1921}
1922
1923void InstructionCodeGeneratorARM64::VisitAnd(HAnd* instruction) {
1924 HandleBinaryOp(instruction);
Alexandre Rames5319def2014-10-23 10:03:10 +01001925}
1926
Alexandre Rames8626b742015-11-25 16:28:08 +00001927void LocationsBuilderARM64::VisitArm64DataProcWithShifterOp(
1928 HArm64DataProcWithShifterOp* instruction) {
1929 DCHECK(instruction->GetType() == Primitive::kPrimInt ||
1930 instruction->GetType() == Primitive::kPrimLong);
1931 LocationSummary* locations =
1932 new (GetGraph()->GetArena()) LocationSummary(instruction, LocationSummary::kNoCall);
1933 if (instruction->GetInstrKind() == HInstruction::kNeg) {
1934 locations->SetInAt(0, Location::ConstantLocation(instruction->InputAt(0)->AsConstant()));
1935 } else {
1936 locations->SetInAt(0, Location::RequiresRegister());
1937 }
1938 locations->SetInAt(1, Location::RequiresRegister());
1939 locations->SetOut(Location::RequiresRegister(), Location::kNoOutputOverlap);
1940}
1941
1942void InstructionCodeGeneratorARM64::VisitArm64DataProcWithShifterOp(
1943 HArm64DataProcWithShifterOp* instruction) {
1944 Primitive::Type type = instruction->GetType();
1945 HInstruction::InstructionKind kind = instruction->GetInstrKind();
1946 DCHECK(type == Primitive::kPrimInt || type == Primitive::kPrimLong);
1947 Register out = OutputRegister(instruction);
1948 Register left;
1949 if (kind != HInstruction::kNeg) {
1950 left = InputRegisterAt(instruction, 0);
1951 }
1952 // If this `HArm64DataProcWithShifterOp` was created by merging a type conversion as the
1953 // shifter operand operation, the IR generating `right_reg` (input to the type
1954 // conversion) can have a different type from the current instruction's type,
1955 // so we manually indicate the type.
1956 Register right_reg = RegisterFrom(instruction->GetLocations()->InAt(1), type);
1957 int64_t shift_amount = (type == Primitive::kPrimInt)
1958 ? static_cast<uint32_t>(instruction->GetShiftAmount() & kMaxIntShiftValue)
1959 : static_cast<uint32_t>(instruction->GetShiftAmount() & kMaxLongShiftValue);
1960
1961 Operand right_operand(0);
1962
1963 HArm64DataProcWithShifterOp::OpKind op_kind = instruction->GetOpKind();
1964 if (HArm64DataProcWithShifterOp::IsExtensionOp(op_kind)) {
1965 right_operand = Operand(right_reg, helpers::ExtendFromOpKind(op_kind));
1966 } else {
1967 right_operand = Operand(right_reg, helpers::ShiftFromOpKind(op_kind), shift_amount);
1968 }
1969
1970 // Logical binary operations do not support extension operations in the
1971 // operand. Note that VIXL would still manage if it was passed by generating
1972 // the extension as a separate instruction.
1973 // `HNeg` also does not support extension. See comments in `ShifterOperandSupportsExtension()`.
1974 DCHECK(!right_operand.IsExtendedRegister() ||
1975 (kind != HInstruction::kAnd && kind != HInstruction::kOr && kind != HInstruction::kXor &&
1976 kind != HInstruction::kNeg));
1977 switch (kind) {
1978 case HInstruction::kAdd:
1979 __ Add(out, left, right_operand);
1980 break;
1981 case HInstruction::kAnd:
1982 __ And(out, left, right_operand);
1983 break;
1984 case HInstruction::kNeg:
1985 DCHECK(instruction->InputAt(0)->AsConstant()->IsZero());
1986 __ Neg(out, right_operand);
1987 break;
1988 case HInstruction::kOr:
1989 __ Orr(out, left, right_operand);
1990 break;
1991 case HInstruction::kSub:
1992 __ Sub(out, left, right_operand);
1993 break;
1994 case HInstruction::kXor:
1995 __ Eor(out, left, right_operand);
1996 break;
1997 default:
1998 LOG(FATAL) << "Unexpected operation kind: " << kind;
1999 UNREACHABLE();
2000 }
2001}
2002
Alexandre Ramese6dbf482015-10-19 10:10:41 +01002003void LocationsBuilderARM64::VisitArm64IntermediateAddress(HArm64IntermediateAddress* instruction) {
Roland Levillaincd3d0fb2016-01-15 19:26:48 +00002004 // The read barrier instrumentation does not support the
2005 // HArm64IntermediateAddress instruction yet.
2006 DCHECK(!kEmitCompilerReadBarrier);
Alexandre Ramese6dbf482015-10-19 10:10:41 +01002007 LocationSummary* locations =
2008 new (GetGraph()->GetArena()) LocationSummary(instruction, LocationSummary::kNoCall);
2009 locations->SetInAt(0, Location::RequiresRegister());
2010 locations->SetInAt(1, ARM64EncodableConstantOrRegister(instruction->GetOffset(), instruction));
2011 locations->SetOut(Location::RequiresRegister());
2012}
2013
2014void InstructionCodeGeneratorARM64::VisitArm64IntermediateAddress(
2015 HArm64IntermediateAddress* instruction) {
Roland Levillaincd3d0fb2016-01-15 19:26:48 +00002016 // The read barrier instrumentation does not support the
2017 // HArm64IntermediateAddress instruction yet.
2018 DCHECK(!kEmitCompilerReadBarrier);
Alexandre Ramese6dbf482015-10-19 10:10:41 +01002019 __ Add(OutputRegister(instruction),
2020 InputRegisterAt(instruction, 0),
2021 Operand(InputOperandAt(instruction, 1)));
2022}
2023
Nicolas Geoffray6b5afdd2016-01-22 09:31:52 +00002024void LocationsBuilderARM64::VisitArm64MultiplyAccumulate(HArm64MultiplyAccumulate* instr) {
Alexandre Rames418318f2015-11-20 15:55:47 +00002025 LocationSummary* locations =
2026 new (GetGraph()->GetArena()) LocationSummary(instr, LocationSummary::kNoCall);
Nicolas Geoffray6b5afdd2016-01-22 09:31:52 +00002027 locations->SetInAt(HArm64MultiplyAccumulate::kInputAccumulatorIndex,
2028 Location::RequiresRegister());
2029 locations->SetInAt(HArm64MultiplyAccumulate::kInputMulLeftIndex, Location::RequiresRegister());
2030 locations->SetInAt(HArm64MultiplyAccumulate::kInputMulRightIndex, Location::RequiresRegister());
Alexandre Rames418318f2015-11-20 15:55:47 +00002031 locations->SetOut(Location::RequiresRegister(), Location::kNoOutputOverlap);
2032}
2033
Nicolas Geoffray6b5afdd2016-01-22 09:31:52 +00002034void InstructionCodeGeneratorARM64::VisitArm64MultiplyAccumulate(HArm64MultiplyAccumulate* instr) {
Alexandre Rames418318f2015-11-20 15:55:47 +00002035 Register res = OutputRegister(instr);
Nicolas Geoffray6b5afdd2016-01-22 09:31:52 +00002036 Register accumulator = InputRegisterAt(instr, HArm64MultiplyAccumulate::kInputAccumulatorIndex);
2037 Register mul_left = InputRegisterAt(instr, HArm64MultiplyAccumulate::kInputMulLeftIndex);
2038 Register mul_right = InputRegisterAt(instr, HArm64MultiplyAccumulate::kInputMulRightIndex);
Alexandre Rames418318f2015-11-20 15:55:47 +00002039
2040 // Avoid emitting code that could trigger Cortex A53's erratum 835769.
2041 // This fixup should be carried out for all multiply-accumulate instructions:
2042 // madd, msub, smaddl, smsubl, umaddl and umsubl.
2043 if (instr->GetType() == Primitive::kPrimLong &&
2044 codegen_->GetInstructionSetFeatures().NeedFixCortexA53_835769()) {
2045 MacroAssembler* masm = down_cast<CodeGeneratorARM64*>(codegen_)->GetVIXLAssembler();
2046 vixl::Instruction* prev = masm->GetCursorAddress<vixl::Instruction*>() - vixl::kInstructionSize;
2047 if (prev->IsLoadOrStore()) {
2048 // Make sure we emit only exactly one nop.
2049 vixl::CodeBufferCheckScope scope(masm,
2050 vixl::kInstructionSize,
2051 vixl::CodeBufferCheckScope::kCheck,
2052 vixl::CodeBufferCheckScope::kExactSize);
2053 __ nop();
2054 }
2055 }
2056
2057 if (instr->GetOpKind() == HInstruction::kAdd) {
2058 __ Madd(res, mul_left, mul_right, accumulator);
2059 } else {
2060 DCHECK(instr->GetOpKind() == HInstruction::kSub);
Nicolas Geoffray6b5afdd2016-01-22 09:31:52 +00002061 __ Msub(res, mul_left, mul_right, accumulator);
Alexandre Rames418318f2015-11-20 15:55:47 +00002062 }
2063}
2064
Alexandre Ramesfc19de82014-11-07 17:13:31 +00002065void LocationsBuilderARM64::VisitArrayGet(HArrayGet* instruction) {
Roland Levillain22ccc3a2015-11-24 13:10:05 +00002066 bool object_array_get_with_read_barrier =
2067 kEmitCompilerReadBarrier && (instruction->GetType() == Primitive::kPrimNot);
Alexandre Ramesfc19de82014-11-07 17:13:31 +00002068 LocationSummary* locations =
Roland Levillain22ccc3a2015-11-24 13:10:05 +00002069 new (GetGraph()->GetArena()) LocationSummary(instruction,
2070 object_array_get_with_read_barrier ?
2071 LocationSummary::kCallOnSlowPath :
2072 LocationSummary::kNoCall);
Alexandre Ramesfc19de82014-11-07 17:13:31 +00002073 locations->SetInAt(0, Location::RequiresRegister());
2074 locations->SetInAt(1, Location::RegisterOrConstant(instruction->InputAt(1)));
Alexandre Rames88c13cd2015-04-14 17:35:39 +01002075 if (Primitive::IsFloatingPointType(instruction->GetType())) {
2076 locations->SetOut(Location::RequiresFpuRegister(), Location::kNoOutputOverlap);
2077 } else {
Roland Levillain22ccc3a2015-11-24 13:10:05 +00002078 // The output overlaps in the case of an object array get with
2079 // read barriers enabled: we do not want the move to overwrite the
2080 // array's location, as we need it to emit the read barrier.
2081 locations->SetOut(
2082 Location::RequiresRegister(),
2083 object_array_get_with_read_barrier ? Location::kOutputOverlap : Location::kNoOutputOverlap);
Alexandre Rames88c13cd2015-04-14 17:35:39 +01002084 }
Alexandre Ramesfc19de82014-11-07 17:13:31 +00002085}
2086
2087void InstructionCodeGeneratorARM64::VisitArrayGet(HArrayGet* instruction) {
Alexandre Ramesfc19de82014-11-07 17:13:31 +00002088 Primitive::Type type = instruction->GetType();
2089 Register obj = InputRegisterAt(instruction, 0);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00002090 LocationSummary* locations = instruction->GetLocations();
2091 Location index = locations->InAt(1);
2092 uint32_t offset = mirror::Array::DataOffset(Primitive::ComponentSize(type)).Uint32Value();
Roland Levillain44015862016-01-22 11:47:17 +00002093 Location out = locations->Out();
Alexandre Ramese6dbf482015-10-19 10:10:41 +01002094
Alexandre Ramesd921d642015-04-16 15:07:16 +01002095 MacroAssembler* masm = GetVIXLAssembler();
2096 UseScratchRegisterScope temps(masm);
Alexandre Ramese6dbf482015-10-19 10:10:41 +01002097 // Block pools between `Load` and `MaybeRecordImplicitNullCheck`.
Alexandre Ramesd921d642015-04-16 15:07:16 +01002098 BlockPoolsScope block_pools(masm);
Alexandre Ramesfc19de82014-11-07 17:13:31 +00002099
Roland Levillain44015862016-01-22 11:47:17 +00002100 if (type == Primitive::kPrimNot && kEmitCompilerReadBarrier && kUseBakerReadBarrier) {
2101 // Object ArrayGet with Baker's read barrier case.
2102 Register temp = temps.AcquireW();
2103 // The read barrier instrumentation does not support the
2104 // HArm64IntermediateAddress instruction yet.
2105 DCHECK(!instruction->GetArray()->IsArm64IntermediateAddress());
2106 // Note that a potential implicit null check is handled in the
2107 // CodeGeneratorARM64::GenerateArrayLoadWithBakerReadBarrier call.
2108 codegen_->GenerateArrayLoadWithBakerReadBarrier(
2109 instruction, out, obj.W(), offset, index, temp, /* needs_null_check */ true);
Alexandre Ramesfc19de82014-11-07 17:13:31 +00002110 } else {
Roland Levillain44015862016-01-22 11:47:17 +00002111 // General case.
2112 MemOperand source = HeapOperand(obj);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00002113 if (index.IsConstant()) {
Roland Levillain44015862016-01-22 11:47:17 +00002114 offset += Int64ConstantFrom(index) << Primitive::ComponentSizeShift(type);
2115 source = HeapOperand(obj, offset);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00002116 } else {
Roland Levillain44015862016-01-22 11:47:17 +00002117 Register temp = temps.AcquireSameSizeAs(obj);
2118 if (instruction->GetArray()->IsArm64IntermediateAddress()) {
2119 // The read barrier instrumentation does not support the
2120 // HArm64IntermediateAddress instruction yet.
2121 DCHECK(!kEmitCompilerReadBarrier);
2122 // We do not need to compute the intermediate address from the array: the
2123 // input instruction has done it already. See the comment in
2124 // `InstructionSimplifierArm64::TryExtractArrayAccessAddress()`.
2125 if (kIsDebugBuild) {
2126 HArm64IntermediateAddress* tmp = instruction->GetArray()->AsArm64IntermediateAddress();
2127 DCHECK_EQ(tmp->GetOffset()->AsIntConstant()->GetValueAsUint64(), offset);
2128 }
2129 temp = obj;
2130 } else {
2131 __ Add(temp, obj, offset);
2132 }
2133 source = HeapOperand(temp, XRegisterFrom(index), LSL, Primitive::ComponentSizeShift(type));
2134 }
2135
2136 codegen_->Load(type, OutputCPURegister(instruction), source);
2137 codegen_->MaybeRecordImplicitNullCheck(instruction);
2138
2139 if (type == Primitive::kPrimNot) {
2140 static_assert(
2141 sizeof(mirror::HeapReference<mirror::Object>) == sizeof(int32_t),
2142 "art::mirror::HeapReference<art::mirror::Object> and int32_t have different sizes.");
2143 Location obj_loc = locations->InAt(0);
2144 if (index.IsConstant()) {
2145 codegen_->MaybeGenerateReadBarrierSlow(instruction, out, out, obj_loc, offset);
2146 } else {
2147 codegen_->MaybeGenerateReadBarrierSlow(instruction, out, out, obj_loc, offset, index);
2148 }
Roland Levillain22ccc3a2015-11-24 13:10:05 +00002149 }
Roland Levillain4d027112015-07-01 15:41:14 +01002150 }
Alexandre Ramesfc19de82014-11-07 17:13:31 +00002151}
2152
Alexandre Rames5319def2014-10-23 10:03:10 +01002153void LocationsBuilderARM64::VisitArrayLength(HArrayLength* instruction) {
2154 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(instruction);
2155 locations->SetInAt(0, Location::RequiresRegister());
Alexandre Ramesfb4e5fa2014-11-06 12:41:16 +00002156 locations->SetOut(Location::RequiresRegister(), Location::kNoOutputOverlap);
Alexandre Rames5319def2014-10-23 10:03:10 +01002157}
2158
2159void InstructionCodeGeneratorARM64::VisitArrayLength(HArrayLength* instruction) {
Alexandre Ramesd921d642015-04-16 15:07:16 +01002160 BlockPoolsScope block_pools(GetVIXLAssembler());
Alexandre Rames5319def2014-10-23 10:03:10 +01002161 __ Ldr(OutputRegister(instruction),
2162 HeapOperand(InputRegisterAt(instruction, 0), mirror::Array::LengthOffset()));
Calin Juravle77520bc2015-01-12 18:45:46 +00002163 codegen_->MaybeRecordImplicitNullCheck(instruction);
Alexandre Rames5319def2014-10-23 10:03:10 +01002164}
2165
Alexandre Ramesfc19de82014-11-07 17:13:31 +00002166void LocationsBuilderARM64::VisitArraySet(HArraySet* instruction) {
Roland Levillain22ccc3a2015-11-24 13:10:05 +00002167 Primitive::Type value_type = instruction->GetComponentType();
2168
2169 bool may_need_runtime_call_for_type_check = instruction->NeedsTypeCheck();
2170 bool object_array_set_with_read_barrier =
2171 kEmitCompilerReadBarrier && (value_type == Primitive::kPrimNot);
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01002172 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(
2173 instruction,
Roland Levillain22ccc3a2015-11-24 13:10:05 +00002174 (may_need_runtime_call_for_type_check || object_array_set_with_read_barrier) ?
2175 LocationSummary::kCallOnSlowPath :
2176 LocationSummary::kNoCall);
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01002177 locations->SetInAt(0, Location::RequiresRegister());
2178 locations->SetInAt(1, Location::RegisterOrConstant(instruction->InputAt(1)));
Roland Levillain22ccc3a2015-11-24 13:10:05 +00002179 if (Primitive::IsFloatingPointType(value_type)) {
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01002180 locations->SetInAt(2, Location::RequiresFpuRegister());
Alexandre Ramesfc19de82014-11-07 17:13:31 +00002181 } else {
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01002182 locations->SetInAt(2, Location::RequiresRegister());
Alexandre Ramesfc19de82014-11-07 17:13:31 +00002183 }
2184}
2185
2186void InstructionCodeGeneratorARM64::VisitArraySet(HArraySet* instruction) {
2187 Primitive::Type value_type = instruction->GetComponentType();
Alexandre Rames97833a02015-04-16 15:07:12 +01002188 LocationSummary* locations = instruction->GetLocations();
Roland Levillain22ccc3a2015-11-24 13:10:05 +00002189 bool may_need_runtime_call_for_type_check = instruction->NeedsTypeCheck();
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01002190 bool needs_write_barrier =
2191 CodeGenerator::StoreNeedsWriteBarrier(value_type, instruction->GetValue());
Alexandre Rames97833a02015-04-16 15:07:12 +01002192
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01002193 Register array = InputRegisterAt(instruction, 0);
2194 CPURegister value = InputCPURegisterAt(instruction, 2);
2195 CPURegister source = value;
2196 Location index = locations->InAt(1);
2197 size_t offset = mirror::Array::DataOffset(Primitive::ComponentSize(value_type)).Uint32Value();
2198 MemOperand destination = HeapOperand(array);
2199 MacroAssembler* masm = GetVIXLAssembler();
2200 BlockPoolsScope block_pools(masm);
2201
2202 if (!needs_write_barrier) {
Roland Levillain22ccc3a2015-11-24 13:10:05 +00002203 DCHECK(!may_need_runtime_call_for_type_check);
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01002204 if (index.IsConstant()) {
2205 offset += Int64ConstantFrom(index) << Primitive::ComponentSizeShift(value_type);
2206 destination = HeapOperand(array, offset);
2207 } else {
2208 UseScratchRegisterScope temps(masm);
2209 Register temp = temps.AcquireSameSizeAs(array);
Alexandre Ramese6dbf482015-10-19 10:10:41 +01002210 if (instruction->GetArray()->IsArm64IntermediateAddress()) {
Roland Levillaincd3d0fb2016-01-15 19:26:48 +00002211 // The read barrier instrumentation does not support the
2212 // HArm64IntermediateAddress instruction yet.
2213 DCHECK(!kEmitCompilerReadBarrier);
Alexandre Ramese6dbf482015-10-19 10:10:41 +01002214 // We do not need to compute the intermediate address from the array: the
2215 // input instruction has done it already. See the comment in
2216 // `InstructionSimplifierArm64::TryExtractArrayAccessAddress()`.
2217 if (kIsDebugBuild) {
2218 HArm64IntermediateAddress* tmp = instruction->GetArray()->AsArm64IntermediateAddress();
2219 DCHECK(tmp->GetOffset()->AsIntConstant()->GetValueAsUint64() == offset);
2220 }
2221 temp = array;
2222 } else {
2223 __ Add(temp, array, offset);
2224 }
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01002225 destination = HeapOperand(temp,
2226 XRegisterFrom(index),
2227 LSL,
2228 Primitive::ComponentSizeShift(value_type));
2229 }
2230 codegen_->Store(value_type, value, destination);
2231 codegen_->MaybeRecordImplicitNullCheck(instruction);
Alexandre Ramesfc19de82014-11-07 17:13:31 +00002232 } else {
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01002233 DCHECK(needs_write_barrier);
Alexandre Ramese6dbf482015-10-19 10:10:41 +01002234 DCHECK(!instruction->GetArray()->IsArm64IntermediateAddress());
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01002235 vixl::Label done;
2236 SlowPathCodeARM64* slow_path = nullptr;
Alexandre Rames97833a02015-04-16 15:07:12 +01002237 {
2238 // We use a block to end the scratch scope before the write barrier, thus
2239 // freeing the temporary registers so they can be used in `MarkGCCard`.
2240 UseScratchRegisterScope temps(masm);
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01002241 Register temp = temps.AcquireSameSizeAs(array);
Alexandre Rames97833a02015-04-16 15:07:12 +01002242 if (index.IsConstant()) {
2243 offset += Int64ConstantFrom(index) << Primitive::ComponentSizeShift(value_type);
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01002244 destination = HeapOperand(array, offset);
Alexandre Rames97833a02015-04-16 15:07:12 +01002245 } else {
Alexandre Rames82000b02015-07-07 11:34:16 +01002246 destination = HeapOperand(temp,
2247 XRegisterFrom(index),
2248 LSL,
2249 Primitive::ComponentSizeShift(value_type));
Alexandre Rames97833a02015-04-16 15:07:12 +01002250 }
2251
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01002252 uint32_t class_offset = mirror::Object::ClassOffset().Int32Value();
2253 uint32_t super_offset = mirror::Class::SuperClassOffset().Int32Value();
2254 uint32_t component_offset = mirror::Class::ComponentTypeOffset().Int32Value();
2255
Roland Levillain22ccc3a2015-11-24 13:10:05 +00002256 if (may_need_runtime_call_for_type_check) {
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01002257 slow_path = new (GetGraph()->GetArena()) ArraySetSlowPathARM64(instruction);
2258 codegen_->AddSlowPath(slow_path);
2259 if (instruction->GetValueCanBeNull()) {
2260 vixl::Label non_zero;
2261 __ Cbnz(Register(value), &non_zero);
2262 if (!index.IsConstant()) {
2263 __ Add(temp, array, offset);
2264 }
2265 __ Str(wzr, destination);
2266 codegen_->MaybeRecordImplicitNullCheck(instruction);
2267 __ B(&done);
2268 __ Bind(&non_zero);
2269 }
2270
Roland Levillain22ccc3a2015-11-24 13:10:05 +00002271 if (kEmitCompilerReadBarrier) {
2272 // When read barriers are enabled, the type checking
2273 // instrumentation requires two read barriers:
2274 //
2275 // __ Mov(temp2, temp);
2276 // // /* HeapReference<Class> */ temp = temp->component_type_
2277 // __ Ldr(temp, HeapOperand(temp, component_offset));
Roland Levillain44015862016-01-22 11:47:17 +00002278 // codegen_->GenerateReadBarrierSlow(
Roland Levillain22ccc3a2015-11-24 13:10:05 +00002279 // instruction, temp_loc, temp_loc, temp2_loc, component_offset);
2280 //
2281 // // /* HeapReference<Class> */ temp2 = value->klass_
2282 // __ Ldr(temp2, HeapOperand(Register(value), class_offset));
Roland Levillain44015862016-01-22 11:47:17 +00002283 // codegen_->GenerateReadBarrierSlow(
Roland Levillain22ccc3a2015-11-24 13:10:05 +00002284 // instruction, temp2_loc, temp2_loc, value_loc, class_offset, temp_loc);
2285 //
2286 // __ Cmp(temp, temp2);
2287 //
2288 // However, the second read barrier may trash `temp`, as it
2289 // is a temporary register, and as such would not be saved
2290 // along with live registers before calling the runtime (nor
2291 // restored afterwards). So in this case, we bail out and
2292 // delegate the work to the array set slow path.
2293 //
2294 // TODO: Extend the register allocator to support a new
2295 // "(locally) live temp" location so as to avoid always
2296 // going into the slow path when read barriers are enabled.
2297 __ B(slow_path->GetEntryLabel());
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01002298 } else {
Roland Levillain22ccc3a2015-11-24 13:10:05 +00002299 Register temp2 = temps.AcquireSameSizeAs(array);
2300 // /* HeapReference<Class> */ temp = array->klass_
2301 __ Ldr(temp, HeapOperand(array, class_offset));
2302 codegen_->MaybeRecordImplicitNullCheck(instruction);
2303 GetAssembler()->MaybeUnpoisonHeapReference(temp);
2304
2305 // /* HeapReference<Class> */ temp = temp->component_type_
2306 __ Ldr(temp, HeapOperand(temp, component_offset));
2307 // /* HeapReference<Class> */ temp2 = value->klass_
2308 __ Ldr(temp2, HeapOperand(Register(value), class_offset));
2309 // If heap poisoning is enabled, no need to unpoison `temp`
2310 // nor `temp2`, as we are comparing two poisoned references.
2311 __ Cmp(temp, temp2);
2312
2313 if (instruction->StaticTypeOfArrayIsObjectArray()) {
2314 vixl::Label do_put;
2315 __ B(eq, &do_put);
2316 // If heap poisoning is enabled, the `temp` reference has
2317 // not been unpoisoned yet; unpoison it now.
2318 GetAssembler()->MaybeUnpoisonHeapReference(temp);
2319
2320 // /* HeapReference<Class> */ temp = temp->super_class_
2321 __ Ldr(temp, HeapOperand(temp, super_offset));
2322 // If heap poisoning is enabled, no need to unpoison
2323 // `temp`, as we are comparing against null below.
2324 __ Cbnz(temp, slow_path->GetEntryLabel());
2325 __ Bind(&do_put);
2326 } else {
2327 __ B(ne, slow_path->GetEntryLabel());
2328 }
2329 temps.Release(temp2);
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01002330 }
2331 }
2332
2333 if (kPoisonHeapReferences) {
Nicolas Geoffraya8a0fe22015-10-01 15:50:27 +01002334 Register temp2 = temps.AcquireSameSizeAs(array);
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01002335 DCHECK(value.IsW());
Nicolas Geoffraya8a0fe22015-10-01 15:50:27 +01002336 __ Mov(temp2, value.W());
2337 GetAssembler()->PoisonHeapReference(temp2);
2338 source = temp2;
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01002339 }
2340
2341 if (!index.IsConstant()) {
2342 __ Add(temp, array, offset);
2343 }
Nicolas Geoffray61b1dbe2015-10-01 10:27:52 +01002344 __ Str(source, destination);
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01002345
Roland Levillain22ccc3a2015-11-24 13:10:05 +00002346 if (!may_need_runtime_call_for_type_check) {
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01002347 codegen_->MaybeRecordImplicitNullCheck(instruction);
2348 }
Alexandre Ramesfc19de82014-11-07 17:13:31 +00002349 }
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01002350
2351 codegen_->MarkGCCard(array, value.W(), instruction->GetValueCanBeNull());
2352
2353 if (done.IsLinked()) {
2354 __ Bind(&done);
2355 }
2356
2357 if (slow_path != nullptr) {
2358 __ Bind(slow_path->GetExitLabel());
Alexandre Rames97833a02015-04-16 15:07:12 +01002359 }
Alexandre Ramesfc19de82014-11-07 17:13:31 +00002360 }
2361}
2362
Alexandre Rames67555f72014-11-18 10:55:16 +00002363void LocationsBuilderARM64::VisitBoundsCheck(HBoundsCheck* instruction) {
David Brazdil77a48ae2015-09-15 12:34:04 +00002364 LocationSummary::CallKind call_kind = instruction->CanThrowIntoCatchBlock()
2365 ? LocationSummary::kCallOnSlowPath
2366 : LocationSummary::kNoCall;
2367 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(instruction, call_kind);
Alexandre Rames67555f72014-11-18 10:55:16 +00002368 locations->SetInAt(0, Location::RequiresRegister());
Serban Constantinescu760d8ef2015-03-28 18:09:56 +00002369 locations->SetInAt(1, ARM64EncodableConstantOrRegister(instruction->InputAt(1), instruction));
Alexandre Rames67555f72014-11-18 10:55:16 +00002370 if (instruction->HasUses()) {
2371 locations->SetOut(Location::SameAsFirstInput());
2372 }
2373}
2374
2375void InstructionCodeGeneratorARM64::VisitBoundsCheck(HBoundsCheck* instruction) {
Serban Constantinescu5a6cc492015-08-13 15:20:25 +01002376 BoundsCheckSlowPathARM64* slow_path =
2377 new (GetGraph()->GetArena()) BoundsCheckSlowPathARM64(instruction);
Alexandre Rames67555f72014-11-18 10:55:16 +00002378 codegen_->AddSlowPath(slow_path);
2379
2380 __ Cmp(InputRegisterAt(instruction, 0), InputOperandAt(instruction, 1));
2381 __ B(slow_path->GetEntryLabel(), hs);
2382}
2383
Alexandre Rames67555f72014-11-18 10:55:16 +00002384void LocationsBuilderARM64::VisitClinitCheck(HClinitCheck* check) {
2385 LocationSummary* locations =
2386 new (GetGraph()->GetArena()) LocationSummary(check, LocationSummary::kCallOnSlowPath);
2387 locations->SetInAt(0, Location::RequiresRegister());
2388 if (check->HasUses()) {
2389 locations->SetOut(Location::SameAsFirstInput());
2390 }
2391}
2392
2393void InstructionCodeGeneratorARM64::VisitClinitCheck(HClinitCheck* check) {
2394 // We assume the class is not null.
2395 SlowPathCodeARM64* slow_path = new (GetGraph()->GetArena()) LoadClassSlowPathARM64(
2396 check->GetLoadClass(), check, check->GetDexPc(), true);
2397 codegen_->AddSlowPath(slow_path);
2398 GenerateClassInitializationCheck(slow_path, InputRegisterAt(check, 0));
2399}
2400
Roland Levillain7f63c522015-07-13 15:54:55 +00002401static bool IsFloatingPointZeroConstant(HInstruction* instruction) {
2402 return (instruction->IsFloatConstant() && (instruction->AsFloatConstant()->GetValue() == 0.0f))
2403 || (instruction->IsDoubleConstant() && (instruction->AsDoubleConstant()->GetValue() == 0.0));
2404}
2405
Serban Constantinescu02164b32014-11-13 14:05:07 +00002406void LocationsBuilderARM64::VisitCompare(HCompare* compare) {
Alexandre Rames5319def2014-10-23 10:03:10 +01002407 LocationSummary* locations =
Serban Constantinescu02164b32014-11-13 14:05:07 +00002408 new (GetGraph()->GetArena()) LocationSummary(compare, LocationSummary::kNoCall);
2409 Primitive::Type in_type = compare->InputAt(0)->GetType();
Alexandre Rames5319def2014-10-23 10:03:10 +01002410 switch (in_type) {
2411 case Primitive::kPrimLong: {
Serban Constantinescu02164b32014-11-13 14:05:07 +00002412 locations->SetInAt(0, Location::RequiresRegister());
Serban Constantinescu2d35d9d2015-02-22 22:08:01 +00002413 locations->SetInAt(1, ARM64EncodableConstantOrRegister(compare->InputAt(1), compare));
Serban Constantinescu02164b32014-11-13 14:05:07 +00002414 locations->SetOut(Location::RequiresRegister(), Location::kNoOutputOverlap);
2415 break;
2416 }
2417 case Primitive::kPrimFloat:
2418 case Primitive::kPrimDouble: {
2419 locations->SetInAt(0, Location::RequiresFpuRegister());
Roland Levillain7f63c522015-07-13 15:54:55 +00002420 locations->SetInAt(1,
2421 IsFloatingPointZeroConstant(compare->InputAt(1))
2422 ? Location::ConstantLocation(compare->InputAt(1)->AsConstant())
2423 : Location::RequiresFpuRegister());
Serban Constantinescu02164b32014-11-13 14:05:07 +00002424 locations->SetOut(Location::RequiresRegister());
2425 break;
2426 }
2427 default:
2428 LOG(FATAL) << "Unexpected type for compare operation " << in_type;
2429 }
2430}
2431
2432void InstructionCodeGeneratorARM64::VisitCompare(HCompare* compare) {
2433 Primitive::Type in_type = compare->InputAt(0)->GetType();
2434
2435 // 0 if: left == right
2436 // 1 if: left > right
2437 // -1 if: left < right
2438 switch (in_type) {
2439 case Primitive::kPrimLong: {
2440 Register result = OutputRegister(compare);
2441 Register left = InputRegisterAt(compare, 0);
2442 Operand right = InputOperandAt(compare, 1);
2443
2444 __ Cmp(left, right);
2445 __ Cset(result, ne);
2446 __ Cneg(result, result, lt);
2447 break;
2448 }
2449 case Primitive::kPrimFloat:
2450 case Primitive::kPrimDouble: {
2451 Register result = OutputRegister(compare);
2452 FPRegister left = InputFPRegisterAt(compare, 0);
Alexandre Rames93415462015-02-17 15:08:20 +00002453 if (compare->GetLocations()->InAt(1).IsConstant()) {
Roland Levillain7f63c522015-07-13 15:54:55 +00002454 DCHECK(IsFloatingPointZeroConstant(compare->GetLocations()->InAt(1).GetConstant()));
2455 // 0.0 is the only immediate that can be encoded directly in an FCMP instruction.
Alexandre Rames93415462015-02-17 15:08:20 +00002456 __ Fcmp(left, 0.0);
2457 } else {
2458 __ Fcmp(left, InputFPRegisterAt(compare, 1));
2459 }
Vladimir Markod6e069b2016-01-18 11:11:01 +00002460 __ Cset(result, ne);
2461 __ Cneg(result, result, ARM64FPCondition(kCondLT, compare->IsGtBias()));
Alexandre Rames5319def2014-10-23 10:03:10 +01002462 break;
2463 }
2464 default:
2465 LOG(FATAL) << "Unimplemented compare type " << in_type;
2466 }
2467}
2468
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00002469void LocationsBuilderARM64::HandleCondition(HCondition* instruction) {
Alexandre Rames5319def2014-10-23 10:03:10 +01002470 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(instruction);
Roland Levillain7f63c522015-07-13 15:54:55 +00002471
2472 if (Primitive::IsFloatingPointType(instruction->InputAt(0)->GetType())) {
2473 locations->SetInAt(0, Location::RequiresFpuRegister());
2474 locations->SetInAt(1,
2475 IsFloatingPointZeroConstant(instruction->InputAt(1))
2476 ? Location::ConstantLocation(instruction->InputAt(1)->AsConstant())
2477 : Location::RequiresFpuRegister());
2478 } else {
2479 // Integer cases.
2480 locations->SetInAt(0, Location::RequiresRegister());
2481 locations->SetInAt(1, ARM64EncodableConstantOrRegister(instruction->InputAt(1), instruction));
2482 }
2483
Alexandre Rames5319def2014-10-23 10:03:10 +01002484 if (instruction->NeedsMaterialization()) {
Alexandre Ramesfb4e5fa2014-11-06 12:41:16 +00002485 locations->SetOut(Location::RequiresRegister(), Location::kNoOutputOverlap);
Alexandre Rames5319def2014-10-23 10:03:10 +01002486 }
2487}
2488
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00002489void InstructionCodeGeneratorARM64::HandleCondition(HCondition* instruction) {
Alexandre Rames5319def2014-10-23 10:03:10 +01002490 if (!instruction->NeedsMaterialization()) {
2491 return;
2492 }
2493
2494 LocationSummary* locations = instruction->GetLocations();
Alexandre Rames5319def2014-10-23 10:03:10 +01002495 Register res = RegisterFrom(locations->Out(), instruction->GetType());
Roland Levillain7f63c522015-07-13 15:54:55 +00002496 IfCondition if_cond = instruction->GetCondition();
Alexandre Rames5319def2014-10-23 10:03:10 +01002497
Roland Levillain7f63c522015-07-13 15:54:55 +00002498 if (Primitive::IsFloatingPointType(instruction->InputAt(0)->GetType())) {
2499 FPRegister lhs = InputFPRegisterAt(instruction, 0);
2500 if (locations->InAt(1).IsConstant()) {
2501 DCHECK(IsFloatingPointZeroConstant(locations->InAt(1).GetConstant()));
2502 // 0.0 is the only immediate that can be encoded directly in an FCMP instruction.
2503 __ Fcmp(lhs, 0.0);
2504 } else {
2505 __ Fcmp(lhs, InputFPRegisterAt(instruction, 1));
2506 }
Vladimir Markod6e069b2016-01-18 11:11:01 +00002507 __ Cset(res, ARM64FPCondition(if_cond, instruction->IsGtBias()));
Roland Levillain7f63c522015-07-13 15:54:55 +00002508 } else {
2509 // Integer cases.
2510 Register lhs = InputRegisterAt(instruction, 0);
2511 Operand rhs = InputOperandAt(instruction, 1);
2512 __ Cmp(lhs, rhs);
Vladimir Markod6e069b2016-01-18 11:11:01 +00002513 __ Cset(res, ARM64Condition(if_cond));
Roland Levillain7f63c522015-07-13 15:54:55 +00002514 }
Alexandre Rames5319def2014-10-23 10:03:10 +01002515}
2516
2517#define FOR_EACH_CONDITION_INSTRUCTION(M) \
2518 M(Equal) \
2519 M(NotEqual) \
2520 M(LessThan) \
2521 M(LessThanOrEqual) \
2522 M(GreaterThan) \
Aart Bike9f37602015-10-09 11:15:55 -07002523 M(GreaterThanOrEqual) \
2524 M(Below) \
2525 M(BelowOrEqual) \
2526 M(Above) \
2527 M(AboveOrEqual)
Alexandre Rames5319def2014-10-23 10:03:10 +01002528#define DEFINE_CONDITION_VISITORS(Name) \
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00002529void LocationsBuilderARM64::Visit##Name(H##Name* comp) { HandleCondition(comp); } \
2530void InstructionCodeGeneratorARM64::Visit##Name(H##Name* comp) { HandleCondition(comp); }
Alexandre Rames5319def2014-10-23 10:03:10 +01002531FOR_EACH_CONDITION_INSTRUCTION(DEFINE_CONDITION_VISITORS)
Alexandre Rames67555f72014-11-18 10:55:16 +00002532#undef DEFINE_CONDITION_VISITORS
Alexandre Rames5319def2014-10-23 10:03:10 +01002533#undef FOR_EACH_CONDITION_INSTRUCTION
2534
Zheng Xuc6667102015-05-15 16:08:45 +08002535void InstructionCodeGeneratorARM64::DivRemOneOrMinusOne(HBinaryOperation* instruction) {
2536 DCHECK(instruction->IsDiv() || instruction->IsRem());
2537
2538 LocationSummary* locations = instruction->GetLocations();
2539 Location second = locations->InAt(1);
2540 DCHECK(second.IsConstant());
2541
2542 Register out = OutputRegister(instruction);
2543 Register dividend = InputRegisterAt(instruction, 0);
2544 int64_t imm = Int64FromConstant(second.GetConstant());
2545 DCHECK(imm == 1 || imm == -1);
2546
2547 if (instruction->IsRem()) {
2548 __ Mov(out, 0);
2549 } else {
2550 if (imm == 1) {
2551 __ Mov(out, dividend);
2552 } else {
2553 __ Neg(out, dividend);
2554 }
2555 }
2556}
2557
2558void InstructionCodeGeneratorARM64::DivRemByPowerOfTwo(HBinaryOperation* instruction) {
2559 DCHECK(instruction->IsDiv() || instruction->IsRem());
2560
2561 LocationSummary* locations = instruction->GetLocations();
2562 Location second = locations->InAt(1);
2563 DCHECK(second.IsConstant());
2564
2565 Register out = OutputRegister(instruction);
2566 Register dividend = InputRegisterAt(instruction, 0);
2567 int64_t imm = Int64FromConstant(second.GetConstant());
Nicolas Geoffray68f62892016-01-04 08:39:49 +00002568 uint64_t abs_imm = static_cast<uint64_t>(AbsOrMin(imm));
Zheng Xuc6667102015-05-15 16:08:45 +08002569 int ctz_imm = CTZ(abs_imm);
2570
2571 UseScratchRegisterScope temps(GetVIXLAssembler());
2572 Register temp = temps.AcquireSameSizeAs(out);
2573
2574 if (instruction->IsDiv()) {
2575 __ Add(temp, dividend, abs_imm - 1);
2576 __ Cmp(dividend, 0);
2577 __ Csel(out, temp, dividend, lt);
2578 if (imm > 0) {
2579 __ Asr(out, out, ctz_imm);
2580 } else {
2581 __ Neg(out, Operand(out, ASR, ctz_imm));
2582 }
2583 } else {
2584 int bits = instruction->GetResultType() == Primitive::kPrimInt ? 32 : 64;
2585 __ Asr(temp, dividend, bits - 1);
2586 __ Lsr(temp, temp, bits - ctz_imm);
2587 __ Add(out, dividend, temp);
2588 __ And(out, out, abs_imm - 1);
2589 __ Sub(out, out, temp);
2590 }
2591}
2592
2593void InstructionCodeGeneratorARM64::GenerateDivRemWithAnyConstant(HBinaryOperation* instruction) {
2594 DCHECK(instruction->IsDiv() || instruction->IsRem());
2595
2596 LocationSummary* locations = instruction->GetLocations();
2597 Location second = locations->InAt(1);
2598 DCHECK(second.IsConstant());
2599
2600 Register out = OutputRegister(instruction);
2601 Register dividend = InputRegisterAt(instruction, 0);
2602 int64_t imm = Int64FromConstant(second.GetConstant());
2603
2604 Primitive::Type type = instruction->GetResultType();
2605 DCHECK(type == Primitive::kPrimInt || type == Primitive::kPrimLong);
2606
2607 int64_t magic;
2608 int shift;
2609 CalculateMagicAndShiftForDivRem(imm, type == Primitive::kPrimLong /* is_long */, &magic, &shift);
2610
2611 UseScratchRegisterScope temps(GetVIXLAssembler());
2612 Register temp = temps.AcquireSameSizeAs(out);
2613
2614 // temp = get_high(dividend * magic)
2615 __ Mov(temp, magic);
2616 if (type == Primitive::kPrimLong) {
2617 __ Smulh(temp, dividend, temp);
2618 } else {
2619 __ Smull(temp.X(), dividend, temp);
2620 __ Lsr(temp.X(), temp.X(), 32);
2621 }
2622
2623 if (imm > 0 && magic < 0) {
2624 __ Add(temp, temp, dividend);
2625 } else if (imm < 0 && magic > 0) {
2626 __ Sub(temp, temp, dividend);
2627 }
2628
2629 if (shift != 0) {
2630 __ Asr(temp, temp, shift);
2631 }
2632
2633 if (instruction->IsDiv()) {
2634 __ Sub(out, temp, Operand(temp, ASR, type == Primitive::kPrimLong ? 63 : 31));
2635 } else {
2636 __ Sub(temp, temp, Operand(temp, ASR, type == Primitive::kPrimLong ? 63 : 31));
2637 // TODO: Strength reduction for msub.
2638 Register temp_imm = temps.AcquireSameSizeAs(out);
2639 __ Mov(temp_imm, imm);
2640 __ Msub(out, temp, temp_imm, dividend);
2641 }
2642}
2643
2644void InstructionCodeGeneratorARM64::GenerateDivRemIntegral(HBinaryOperation* instruction) {
2645 DCHECK(instruction->IsDiv() || instruction->IsRem());
2646 Primitive::Type type = instruction->GetResultType();
2647 DCHECK(type == Primitive::kPrimInt || Primitive::kPrimLong);
2648
2649 LocationSummary* locations = instruction->GetLocations();
2650 Register out = OutputRegister(instruction);
2651 Location second = locations->InAt(1);
2652
2653 if (second.IsConstant()) {
2654 int64_t imm = Int64FromConstant(second.GetConstant());
2655
2656 if (imm == 0) {
2657 // Do not generate anything. DivZeroCheck would prevent any code to be executed.
2658 } else if (imm == 1 || imm == -1) {
2659 DivRemOneOrMinusOne(instruction);
Nicolas Geoffray68f62892016-01-04 08:39:49 +00002660 } else if (IsPowerOfTwo(AbsOrMin(imm))) {
Zheng Xuc6667102015-05-15 16:08:45 +08002661 DivRemByPowerOfTwo(instruction);
2662 } else {
2663 DCHECK(imm <= -2 || imm >= 2);
2664 GenerateDivRemWithAnyConstant(instruction);
2665 }
2666 } else {
2667 Register dividend = InputRegisterAt(instruction, 0);
2668 Register divisor = InputRegisterAt(instruction, 1);
2669 if (instruction->IsDiv()) {
2670 __ Sdiv(out, dividend, divisor);
2671 } else {
2672 UseScratchRegisterScope temps(GetVIXLAssembler());
2673 Register temp = temps.AcquireSameSizeAs(out);
2674 __ Sdiv(temp, dividend, divisor);
2675 __ Msub(out, temp, divisor, dividend);
2676 }
2677 }
2678}
2679
Alexandre Ramesfc19de82014-11-07 17:13:31 +00002680void LocationsBuilderARM64::VisitDiv(HDiv* div) {
2681 LocationSummary* locations =
2682 new (GetGraph()->GetArena()) LocationSummary(div, LocationSummary::kNoCall);
2683 switch (div->GetResultType()) {
2684 case Primitive::kPrimInt:
2685 case Primitive::kPrimLong:
2686 locations->SetInAt(0, Location::RequiresRegister());
Zheng Xuc6667102015-05-15 16:08:45 +08002687 locations->SetInAt(1, Location::RegisterOrConstant(div->InputAt(1)));
Alexandre Ramesfc19de82014-11-07 17:13:31 +00002688 locations->SetOut(Location::RequiresRegister(), Location::kNoOutputOverlap);
2689 break;
2690
2691 case Primitive::kPrimFloat:
2692 case Primitive::kPrimDouble:
2693 locations->SetInAt(0, Location::RequiresFpuRegister());
2694 locations->SetInAt(1, Location::RequiresFpuRegister());
2695 locations->SetOut(Location::RequiresFpuRegister(), Location::kNoOutputOverlap);
2696 break;
2697
2698 default:
2699 LOG(FATAL) << "Unexpected div type " << div->GetResultType();
2700 }
2701}
2702
2703void InstructionCodeGeneratorARM64::VisitDiv(HDiv* div) {
2704 Primitive::Type type = div->GetResultType();
2705 switch (type) {
2706 case Primitive::kPrimInt:
2707 case Primitive::kPrimLong:
Zheng Xuc6667102015-05-15 16:08:45 +08002708 GenerateDivRemIntegral(div);
Alexandre Ramesfc19de82014-11-07 17:13:31 +00002709 break;
2710
2711 case Primitive::kPrimFloat:
2712 case Primitive::kPrimDouble:
2713 __ Fdiv(OutputFPRegister(div), InputFPRegisterAt(div, 0), InputFPRegisterAt(div, 1));
2714 break;
2715
2716 default:
2717 LOG(FATAL) << "Unexpected div type " << type;
2718 }
2719}
2720
Alexandre Rames67555f72014-11-18 10:55:16 +00002721void LocationsBuilderARM64::VisitDivZeroCheck(HDivZeroCheck* instruction) {
David Brazdil77a48ae2015-09-15 12:34:04 +00002722 LocationSummary::CallKind call_kind = instruction->CanThrowIntoCatchBlock()
2723 ? LocationSummary::kCallOnSlowPath
2724 : LocationSummary::kNoCall;
2725 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(instruction, call_kind);
Alexandre Rames67555f72014-11-18 10:55:16 +00002726 locations->SetInAt(0, Location::RegisterOrConstant(instruction->InputAt(0)));
2727 if (instruction->HasUses()) {
2728 locations->SetOut(Location::SameAsFirstInput());
2729 }
2730}
2731
2732void InstructionCodeGeneratorARM64::VisitDivZeroCheck(HDivZeroCheck* instruction) {
2733 SlowPathCodeARM64* slow_path =
2734 new (GetGraph()->GetArena()) DivZeroCheckSlowPathARM64(instruction);
2735 codegen_->AddSlowPath(slow_path);
2736 Location value = instruction->GetLocations()->InAt(0);
2737
Alexandre Rames3e69f162014-12-10 10:36:50 +00002738 Primitive::Type type = instruction->GetType();
2739
Serguei Katkov8c0676c2015-08-03 13:55:33 +06002740 if ((type == Primitive::kPrimBoolean) || !Primitive::IsIntegralType(type)) {
2741 LOG(FATAL) << "Unexpected type " << type << " for DivZeroCheck.";
Alexandre Rames3e69f162014-12-10 10:36:50 +00002742 return;
2743 }
2744
Alexandre Rames67555f72014-11-18 10:55:16 +00002745 if (value.IsConstant()) {
2746 int64_t divisor = Int64ConstantFrom(value);
2747 if (divisor == 0) {
2748 __ B(slow_path->GetEntryLabel());
2749 } else {
Alexandre Rames3e69f162014-12-10 10:36:50 +00002750 // A division by a non-null constant is valid. We don't need to perform
2751 // any check, so simply fall through.
Alexandre Rames67555f72014-11-18 10:55:16 +00002752 }
2753 } else {
2754 __ Cbz(InputRegisterAt(instruction, 0), slow_path->GetEntryLabel());
2755 }
2756}
2757
Alexandre Ramesa89086e2014-11-07 17:13:25 +00002758void LocationsBuilderARM64::VisitDoubleConstant(HDoubleConstant* constant) {
2759 LocationSummary* locations =
2760 new (GetGraph()->GetArena()) LocationSummary(constant, LocationSummary::kNoCall);
2761 locations->SetOut(Location::ConstantLocation(constant));
2762}
2763
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01002764void InstructionCodeGeneratorARM64::VisitDoubleConstant(
2765 HDoubleConstant* constant ATTRIBUTE_UNUSED) {
Alexandre Ramesa89086e2014-11-07 17:13:25 +00002766 // Will be generated at use site.
2767}
2768
Alexandre Rames5319def2014-10-23 10:03:10 +01002769void LocationsBuilderARM64::VisitExit(HExit* exit) {
2770 exit->SetLocations(nullptr);
2771}
2772
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01002773void InstructionCodeGeneratorARM64::VisitExit(HExit* exit ATTRIBUTE_UNUSED) {
Alexandre Rames5319def2014-10-23 10:03:10 +01002774}
2775
Alexandre Ramesa89086e2014-11-07 17:13:25 +00002776void LocationsBuilderARM64::VisitFloatConstant(HFloatConstant* constant) {
2777 LocationSummary* locations =
2778 new (GetGraph()->GetArena()) LocationSummary(constant, LocationSummary::kNoCall);
2779 locations->SetOut(Location::ConstantLocation(constant));
2780}
2781
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01002782void InstructionCodeGeneratorARM64::VisitFloatConstant(HFloatConstant* constant ATTRIBUTE_UNUSED) {
Alexandre Ramesa89086e2014-11-07 17:13:25 +00002783 // Will be generated at use site.
2784}
2785
David Brazdilfc6a86a2015-06-26 10:33:45 +00002786void InstructionCodeGeneratorARM64::HandleGoto(HInstruction* got, HBasicBlock* successor) {
Serban Constantinescu02164b32014-11-13 14:05:07 +00002787 DCHECK(!successor->IsExitBlock());
2788 HBasicBlock* block = got->GetBlock();
2789 HInstruction* previous = got->GetPrevious();
2790 HLoopInformation* info = block->GetLoopInformation();
2791
David Brazdil46e2a392015-03-16 17:31:52 +00002792 if (info != nullptr && info->IsBackEdge(*block) && info->HasSuspendCheck()) {
Serban Constantinescu02164b32014-11-13 14:05:07 +00002793 codegen_->ClearSpillSlotsFromLoopPhisInStackMap(info->GetSuspendCheck());
2794 GenerateSuspendCheck(info->GetSuspendCheck(), successor);
2795 return;
2796 }
2797 if (block->IsEntryBlock() && (previous != nullptr) && previous->IsSuspendCheck()) {
2798 GenerateSuspendCheck(previous->AsSuspendCheck(), nullptr);
2799 }
2800 if (!codegen_->GoesToNextBlock(block, successor)) {
Alexandre Rames5319def2014-10-23 10:03:10 +01002801 __ B(codegen_->GetLabelOf(successor));
2802 }
2803}
2804
David Brazdilfc6a86a2015-06-26 10:33:45 +00002805void LocationsBuilderARM64::VisitGoto(HGoto* got) {
2806 got->SetLocations(nullptr);
2807}
2808
2809void InstructionCodeGeneratorARM64::VisitGoto(HGoto* got) {
2810 HandleGoto(got, got->GetSuccessor());
2811}
2812
2813void LocationsBuilderARM64::VisitTryBoundary(HTryBoundary* try_boundary) {
2814 try_boundary->SetLocations(nullptr);
2815}
2816
2817void InstructionCodeGeneratorARM64::VisitTryBoundary(HTryBoundary* try_boundary) {
2818 HBasicBlock* successor = try_boundary->GetNormalFlowSuccessor();
2819 if (!successor->IsExitBlock()) {
2820 HandleGoto(try_boundary, successor);
2821 }
2822}
2823
Mingyao Yangd43b3ac2015-04-01 14:03:04 -07002824void InstructionCodeGeneratorARM64::GenerateTestAndBranch(HInstruction* instruction,
David Brazdil0debae72015-11-12 18:37:00 +00002825 size_t condition_input_index,
Mingyao Yangd43b3ac2015-04-01 14:03:04 -07002826 vixl::Label* true_target,
David Brazdil0debae72015-11-12 18:37:00 +00002827 vixl::Label* false_target) {
2828 // FP branching requires both targets to be explicit. If either of the targets
2829 // is nullptr (fallthrough) use and bind `fallthrough_target` instead.
2830 vixl::Label fallthrough_target;
2831 HInstruction* cond = instruction->InputAt(condition_input_index);
Alexandre Rames5319def2014-10-23 10:03:10 +01002832
David Brazdil0debae72015-11-12 18:37:00 +00002833 if (true_target == nullptr && false_target == nullptr) {
2834 // Nothing to do. The code always falls through.
2835 return;
2836 } else if (cond->IsIntConstant()) {
2837 // Constant condition, statically compared against 1.
2838 if (cond->AsIntConstant()->IsOne()) {
2839 if (true_target != nullptr) {
2840 __ B(true_target);
Serban Constantinescu02164b32014-11-13 14:05:07 +00002841 }
Serban Constantinescu02164b32014-11-13 14:05:07 +00002842 } else {
David Brazdil0debae72015-11-12 18:37:00 +00002843 DCHECK(cond->AsIntConstant()->IsZero());
2844 if (false_target != nullptr) {
2845 __ B(false_target);
2846 }
Serban Constantinescu02164b32014-11-13 14:05:07 +00002847 }
David Brazdil0debae72015-11-12 18:37:00 +00002848 return;
2849 }
2850
2851 // The following code generates these patterns:
2852 // (1) true_target == nullptr && false_target != nullptr
2853 // - opposite condition true => branch to false_target
2854 // (2) true_target != nullptr && false_target == nullptr
2855 // - condition true => branch to true_target
2856 // (3) true_target != nullptr && false_target != nullptr
2857 // - condition true => branch to true_target
2858 // - branch to false_target
2859 if (IsBooleanValueOrMaterializedCondition(cond)) {
Alexandre Rames5319def2014-10-23 10:03:10 +01002860 // The condition instruction has been materialized, compare the output to 0.
David Brazdil0debae72015-11-12 18:37:00 +00002861 Location cond_val = instruction->GetLocations()->InAt(condition_input_index);
Alexandre Rames5319def2014-10-23 10:03:10 +01002862 DCHECK(cond_val.IsRegister());
David Brazdil0debae72015-11-12 18:37:00 +00002863 if (true_target == nullptr) {
2864 __ Cbz(InputRegisterAt(instruction, condition_input_index), false_target);
2865 } else {
2866 __ Cbnz(InputRegisterAt(instruction, condition_input_index), true_target);
2867 }
Alexandre Rames5319def2014-10-23 10:03:10 +01002868 } else {
2869 // The condition instruction has not been materialized, use its inputs as
2870 // the comparison and its condition as the branch condition.
David Brazdil0debae72015-11-12 18:37:00 +00002871 HCondition* condition = cond->AsCondition();
Roland Levillain7f63c522015-07-13 15:54:55 +00002872
David Brazdil0debae72015-11-12 18:37:00 +00002873 Primitive::Type type = condition->InputAt(0)->GetType();
Roland Levillain7f63c522015-07-13 15:54:55 +00002874 if (Primitive::IsFloatingPointType(type)) {
Roland Levillain7f63c522015-07-13 15:54:55 +00002875 FPRegister lhs = InputFPRegisterAt(condition, 0);
2876 if (condition->GetLocations()->InAt(1).IsConstant()) {
2877 DCHECK(IsFloatingPointZeroConstant(condition->GetLocations()->InAt(1).GetConstant()));
2878 // 0.0 is the only immediate that can be encoded directly in an FCMP instruction.
2879 __ Fcmp(lhs, 0.0);
2880 } else {
2881 __ Fcmp(lhs, InputFPRegisterAt(condition, 1));
2882 }
David Brazdil0debae72015-11-12 18:37:00 +00002883 if (true_target == nullptr) {
Vladimir Markod6e069b2016-01-18 11:11:01 +00002884 IfCondition opposite_condition = condition->GetOppositeCondition();
2885 __ B(ARM64FPCondition(opposite_condition, condition->IsGtBias()), false_target);
David Brazdil0debae72015-11-12 18:37:00 +00002886 } else {
Vladimir Markod6e069b2016-01-18 11:11:01 +00002887 __ B(ARM64FPCondition(condition->GetCondition(), condition->IsGtBias()), true_target);
David Brazdil0debae72015-11-12 18:37:00 +00002888 }
Alexandre Rames5319def2014-10-23 10:03:10 +01002889 } else {
Roland Levillain7f63c522015-07-13 15:54:55 +00002890 // Integer cases.
2891 Register lhs = InputRegisterAt(condition, 0);
2892 Operand rhs = InputOperandAt(condition, 1);
David Brazdil0debae72015-11-12 18:37:00 +00002893
2894 Condition arm64_cond;
2895 vixl::Label* non_fallthrough_target;
2896 if (true_target == nullptr) {
2897 arm64_cond = ARM64Condition(condition->GetOppositeCondition());
2898 non_fallthrough_target = false_target;
2899 } else {
2900 arm64_cond = ARM64Condition(condition->GetCondition());
2901 non_fallthrough_target = true_target;
2902 }
2903
Aart Bik086d27e2016-01-20 17:02:00 -08002904 if ((arm64_cond == eq || arm64_cond == ne || arm64_cond == lt || arm64_cond == ge) &&
2905 rhs.IsImmediate() && (rhs.immediate() == 0)) {
Roland Levillain7f63c522015-07-13 15:54:55 +00002906 switch (arm64_cond) {
2907 case eq:
David Brazdil0debae72015-11-12 18:37:00 +00002908 __ Cbz(lhs, non_fallthrough_target);
Roland Levillain7f63c522015-07-13 15:54:55 +00002909 break;
2910 case ne:
David Brazdil0debae72015-11-12 18:37:00 +00002911 __ Cbnz(lhs, non_fallthrough_target);
Roland Levillain7f63c522015-07-13 15:54:55 +00002912 break;
2913 case lt:
2914 // Test the sign bit and branch accordingly.
David Brazdil0debae72015-11-12 18:37:00 +00002915 __ Tbnz(lhs, (lhs.IsX() ? kXRegSize : kWRegSize) - 1, non_fallthrough_target);
Roland Levillain7f63c522015-07-13 15:54:55 +00002916 break;
2917 case ge:
2918 // Test the sign bit and branch accordingly.
David Brazdil0debae72015-11-12 18:37:00 +00002919 __ Tbz(lhs, (lhs.IsX() ? kXRegSize : kWRegSize) - 1, non_fallthrough_target);
Roland Levillain7f63c522015-07-13 15:54:55 +00002920 break;
2921 default:
2922 // Without the `static_cast` the compiler throws an error for
2923 // `-Werror=sign-promo`.
2924 LOG(FATAL) << "Unexpected condition: " << static_cast<int>(arm64_cond);
2925 }
2926 } else {
2927 __ Cmp(lhs, rhs);
David Brazdil0debae72015-11-12 18:37:00 +00002928 __ B(arm64_cond, non_fallthrough_target);
Roland Levillain7f63c522015-07-13 15:54:55 +00002929 }
Alexandre Rames5319def2014-10-23 10:03:10 +01002930 }
2931 }
David Brazdil0debae72015-11-12 18:37:00 +00002932
2933 // If neither branch falls through (case 3), the conditional branch to `true_target`
2934 // was already emitted (case 2) and we need to emit a jump to `false_target`.
2935 if (true_target != nullptr && false_target != nullptr) {
Alexandre Rames5319def2014-10-23 10:03:10 +01002936 __ B(false_target);
2937 }
David Brazdil0debae72015-11-12 18:37:00 +00002938
2939 if (fallthrough_target.IsLinked()) {
2940 __ Bind(&fallthrough_target);
2941 }
Alexandre Rames5319def2014-10-23 10:03:10 +01002942}
2943
Mingyao Yangd43b3ac2015-04-01 14:03:04 -07002944void LocationsBuilderARM64::VisitIf(HIf* if_instr) {
2945 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(if_instr);
David Brazdil0debae72015-11-12 18:37:00 +00002946 if (IsBooleanValueOrMaterializedCondition(if_instr->InputAt(0))) {
Mingyao Yangd43b3ac2015-04-01 14:03:04 -07002947 locations->SetInAt(0, Location::RequiresRegister());
2948 }
2949}
2950
2951void InstructionCodeGeneratorARM64::VisitIf(HIf* if_instr) {
David Brazdil0debae72015-11-12 18:37:00 +00002952 HBasicBlock* true_successor = if_instr->IfTrueSuccessor();
2953 HBasicBlock* false_successor = if_instr->IfFalseSuccessor();
2954 vixl::Label* true_target = codegen_->GoesToNextBlock(if_instr->GetBlock(), true_successor) ?
2955 nullptr : codegen_->GetLabelOf(true_successor);
2956 vixl::Label* false_target = codegen_->GoesToNextBlock(if_instr->GetBlock(), false_successor) ?
2957 nullptr : codegen_->GetLabelOf(false_successor);
2958 GenerateTestAndBranch(if_instr, /* condition_input_index */ 0, true_target, false_target);
Mingyao Yangd43b3ac2015-04-01 14:03:04 -07002959}
2960
2961void LocationsBuilderARM64::VisitDeoptimize(HDeoptimize* deoptimize) {
2962 LocationSummary* locations = new (GetGraph()->GetArena())
2963 LocationSummary(deoptimize, LocationSummary::kCallOnSlowPath);
David Brazdil0debae72015-11-12 18:37:00 +00002964 if (IsBooleanValueOrMaterializedCondition(deoptimize->InputAt(0))) {
Mingyao Yangd43b3ac2015-04-01 14:03:04 -07002965 locations->SetInAt(0, Location::RequiresRegister());
2966 }
2967}
2968
2969void InstructionCodeGeneratorARM64::VisitDeoptimize(HDeoptimize* deoptimize) {
Aart Bik42249c32016-01-07 15:33:50 -08002970 SlowPathCodeARM64* slow_path =
2971 deopt_slow_paths_.NewSlowPath<DeoptimizationSlowPathARM64>(deoptimize);
David Brazdil0debae72015-11-12 18:37:00 +00002972 GenerateTestAndBranch(deoptimize,
2973 /* condition_input_index */ 0,
2974 slow_path->GetEntryLabel(),
2975 /* false_target */ nullptr);
Mingyao Yangd43b3ac2015-04-01 14:03:04 -07002976}
2977
David Srbecky0cf44932015-12-09 14:09:59 +00002978void LocationsBuilderARM64::VisitNativeDebugInfo(HNativeDebugInfo* info) {
2979 new (GetGraph()->GetArena()) LocationSummary(info);
2980}
2981
2982void InstructionCodeGeneratorARM64::VisitNativeDebugInfo(HNativeDebugInfo* info) {
David Srbeckyb7070a22016-01-08 18:13:53 +00002983 if (codegen_->HasStackMapAtCurrentPc()) {
2984 // Ensure that we do not collide with the stack map of the previous instruction.
2985 __ Nop();
2986 }
David Srbecky0cf44932015-12-09 14:09:59 +00002987 codegen_->RecordPcInfo(info, info->GetDexPc());
2988}
2989
Alexandre Rames5319def2014-10-23 10:03:10 +01002990void LocationsBuilderARM64::VisitInstanceFieldGet(HInstanceFieldGet* instruction) {
Alexandre Rames09a99962015-04-15 11:47:56 +01002991 HandleFieldGet(instruction);
Alexandre Rames5319def2014-10-23 10:03:10 +01002992}
2993
2994void InstructionCodeGeneratorARM64::VisitInstanceFieldGet(HInstanceFieldGet* instruction) {
Alexandre Rames09a99962015-04-15 11:47:56 +01002995 HandleFieldGet(instruction, instruction->GetFieldInfo());
Alexandre Rames5319def2014-10-23 10:03:10 +01002996}
2997
2998void LocationsBuilderARM64::VisitInstanceFieldSet(HInstanceFieldSet* instruction) {
Alexandre Rames09a99962015-04-15 11:47:56 +01002999 HandleFieldSet(instruction);
Alexandre Rames5319def2014-10-23 10:03:10 +01003000}
3001
3002void InstructionCodeGeneratorARM64::VisitInstanceFieldSet(HInstanceFieldSet* instruction) {
Nicolas Geoffray07276db2015-05-18 14:22:09 +01003003 HandleFieldSet(instruction, instruction->GetFieldInfo(), instruction->GetValueCanBeNull());
Alexandre Rames5319def2014-10-23 10:03:10 +01003004}
3005
Roland Levillain44015862016-01-22 11:47:17 +00003006static bool TypeCheckNeedsATemporary(TypeCheckKind type_check_kind) {
3007 return kEmitCompilerReadBarrier &&
3008 (kUseBakerReadBarrier ||
3009 type_check_kind == TypeCheckKind::kAbstractClassCheck ||
3010 type_check_kind == TypeCheckKind::kClassHierarchyCheck ||
3011 type_check_kind == TypeCheckKind::kArrayObjectCheck);
3012}
3013
Alexandre Rames67555f72014-11-18 10:55:16 +00003014void LocationsBuilderARM64::VisitInstanceOf(HInstanceOf* instruction) {
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003015 LocationSummary::CallKind call_kind = LocationSummary::kNoCall;
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003016 TypeCheckKind type_check_kind = instruction->GetTypeCheckKind();
3017 switch (type_check_kind) {
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003018 case TypeCheckKind::kExactCheck:
3019 case TypeCheckKind::kAbstractClassCheck:
3020 case TypeCheckKind::kClassHierarchyCheck:
3021 case TypeCheckKind::kArrayObjectCheck:
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003022 call_kind =
3023 kEmitCompilerReadBarrier ? LocationSummary::kCallOnSlowPath : LocationSummary::kNoCall;
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003024 break;
3025 case TypeCheckKind::kArrayCheck:
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003026 case TypeCheckKind::kUnresolvedCheck:
3027 case TypeCheckKind::kInterfaceCheck:
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003028 call_kind = LocationSummary::kCallOnSlowPath;
3029 break;
3030 }
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003031
Alexandre Rames67555f72014-11-18 10:55:16 +00003032 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(instruction, call_kind);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003033 locations->SetInAt(0, Location::RequiresRegister());
3034 locations->SetInAt(1, Location::RequiresRegister());
3035 // The "out" register is used as a temporary, so it overlaps with the inputs.
3036 // Note that TypeCheckSlowPathARM64 uses this register too.
3037 locations->SetOut(Location::RequiresRegister(), Location::kOutputOverlap);
3038 // When read barriers are enabled, we need a temporary register for
3039 // some cases.
Roland Levillain44015862016-01-22 11:47:17 +00003040 if (TypeCheckNeedsATemporary(type_check_kind)) {
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003041 locations->AddTemp(Location::RequiresRegister());
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003042 }
Alexandre Rames67555f72014-11-18 10:55:16 +00003043}
3044
3045void InstructionCodeGeneratorARM64::VisitInstanceOf(HInstanceOf* instruction) {
Roland Levillain44015862016-01-22 11:47:17 +00003046 TypeCheckKind type_check_kind = instruction->GetTypeCheckKind();
Alexandre Rames67555f72014-11-18 10:55:16 +00003047 LocationSummary* locations = instruction->GetLocations();
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003048 Location obj_loc = locations->InAt(0);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003049 Register obj = InputRegisterAt(instruction, 0);
3050 Register cls = InputRegisterAt(instruction, 1);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003051 Location out_loc = locations->Out();
Alexandre Rames67555f72014-11-18 10:55:16 +00003052 Register out = OutputRegister(instruction);
Roland Levillain44015862016-01-22 11:47:17 +00003053 Location maybe_temp_loc = TypeCheckNeedsATemporary(type_check_kind) ?
3054 locations->GetTemp(0) :
3055 Location::NoLocation();
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003056 uint32_t class_offset = mirror::Object::ClassOffset().Int32Value();
3057 uint32_t super_offset = mirror::Class::SuperClassOffset().Int32Value();
3058 uint32_t component_offset = mirror::Class::ComponentTypeOffset().Int32Value();
3059 uint32_t primitive_offset = mirror::Class::PrimitiveTypeOffset().Int32Value();
Alexandre Rames67555f72014-11-18 10:55:16 +00003060
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003061 vixl::Label done, zero;
3062 SlowPathCodeARM64* slow_path = nullptr;
Alexandre Rames67555f72014-11-18 10:55:16 +00003063
3064 // Return 0 if `obj` is null.
Guillaume "Vermeille" Sanchezaf888352015-04-20 14:41:30 +01003065 // Avoid null check if we know `obj` is not null.
3066 if (instruction->MustDoNullCheck()) {
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003067 __ Cbz(obj, &zero);
3068 }
3069
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003070 // /* HeapReference<Class> */ out = obj->klass_
Roland Levillain44015862016-01-22 11:47:17 +00003071 GenerateReferenceLoadTwoRegisters(instruction, out_loc, obj_loc, class_offset, maybe_temp_loc);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003072
Roland Levillain44015862016-01-22 11:47:17 +00003073 switch (type_check_kind) {
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003074 case TypeCheckKind::kExactCheck: {
3075 __ Cmp(out, cls);
3076 __ Cset(out, eq);
3077 if (zero.IsLinked()) {
3078 __ B(&done);
3079 }
3080 break;
3081 }
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003082
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003083 case TypeCheckKind::kAbstractClassCheck: {
3084 // If the class is abstract, we eagerly fetch the super class of the
3085 // object to avoid doing a comparison we know will fail.
3086 vixl::Label loop, success;
3087 __ Bind(&loop);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003088 // /* HeapReference<Class> */ out = out->super_class_
Roland Levillain44015862016-01-22 11:47:17 +00003089 GenerateReferenceLoadOneRegister(instruction, out_loc, super_offset, maybe_temp_loc);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003090 // If `out` is null, we use it for the result, and jump to `done`.
3091 __ Cbz(out, &done);
3092 __ Cmp(out, cls);
3093 __ B(ne, &loop);
3094 __ Mov(out, 1);
3095 if (zero.IsLinked()) {
3096 __ B(&done);
3097 }
3098 break;
3099 }
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003100
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003101 case TypeCheckKind::kClassHierarchyCheck: {
3102 // Walk over the class hierarchy to find a match.
3103 vixl::Label loop, success;
3104 __ Bind(&loop);
3105 __ Cmp(out, cls);
3106 __ B(eq, &success);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003107 // /* HeapReference<Class> */ out = out->super_class_
Roland Levillain44015862016-01-22 11:47:17 +00003108 GenerateReferenceLoadOneRegister(instruction, out_loc, super_offset, maybe_temp_loc);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003109 __ Cbnz(out, &loop);
3110 // If `out` is null, we use it for the result, and jump to `done`.
3111 __ B(&done);
3112 __ Bind(&success);
3113 __ Mov(out, 1);
3114 if (zero.IsLinked()) {
3115 __ B(&done);
3116 }
3117 break;
3118 }
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003119
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003120 case TypeCheckKind::kArrayObjectCheck: {
Nicolas Geoffrayabfcf182015-09-21 18:41:21 +01003121 // Do an exact check.
3122 vixl::Label exact_check;
3123 __ Cmp(out, cls);
3124 __ B(eq, &exact_check);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003125 // Otherwise, we need to check that the object's class is a non-primitive array.
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003126 // /* HeapReference<Class> */ out = out->component_type_
Roland Levillain44015862016-01-22 11:47:17 +00003127 GenerateReferenceLoadOneRegister(instruction, out_loc, component_offset, maybe_temp_loc);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003128 // If `out` is null, we use it for the result, and jump to `done`.
3129 __ Cbz(out, &done);
3130 __ Ldrh(out, HeapOperand(out, primitive_offset));
3131 static_assert(Primitive::kPrimNot == 0, "Expected 0 for kPrimNot");
3132 __ Cbnz(out, &zero);
Nicolas Geoffrayabfcf182015-09-21 18:41:21 +01003133 __ Bind(&exact_check);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003134 __ Mov(out, 1);
3135 __ B(&done);
3136 break;
3137 }
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003138
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003139 case TypeCheckKind::kArrayCheck: {
3140 __ Cmp(out, cls);
3141 DCHECK(locations->OnlyCallsOnSlowPath());
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003142 slow_path = new (GetGraph()->GetArena()) TypeCheckSlowPathARM64(instruction,
3143 /* is_fatal */ false);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003144 codegen_->AddSlowPath(slow_path);
3145 __ B(ne, slow_path->GetEntryLabel());
3146 __ Mov(out, 1);
3147 if (zero.IsLinked()) {
3148 __ B(&done);
3149 }
3150 break;
3151 }
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003152
Calin Juravle98893e12015-10-02 21:05:03 +01003153 case TypeCheckKind::kUnresolvedCheck:
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003154 case TypeCheckKind::kInterfaceCheck: {
3155 // Note that we indeed only call on slow path, but we always go
3156 // into the slow path for the unresolved and interface check
3157 // cases.
3158 //
3159 // We cannot directly call the InstanceofNonTrivial runtime
3160 // entry point without resorting to a type checking slow path
3161 // here (i.e. by calling InvokeRuntime directly), as it would
3162 // require to assign fixed registers for the inputs of this
3163 // HInstanceOf instruction (following the runtime calling
3164 // convention), which might be cluttered by the potential first
3165 // read barrier emission at the beginning of this method.
Roland Levillain44015862016-01-22 11:47:17 +00003166 //
3167 // TODO: Introduce a new runtime entry point taking the object
3168 // to test (instead of its class) as argument, and let it deal
3169 // with the read barrier issues. This will let us refactor this
3170 // case of the `switch` code as it was previously (with a direct
3171 // call to the runtime not using a type checking slow path).
3172 // This should also be beneficial for the other cases above.
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003173 DCHECK(locations->OnlyCallsOnSlowPath());
3174 slow_path = new (GetGraph()->GetArena()) TypeCheckSlowPathARM64(instruction,
3175 /* is_fatal */ false);
3176 codegen_->AddSlowPath(slow_path);
3177 __ B(slow_path->GetEntryLabel());
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003178 if (zero.IsLinked()) {
3179 __ B(&done);
3180 }
3181 break;
3182 }
3183 }
3184
3185 if (zero.IsLinked()) {
3186 __ Bind(&zero);
Guillaume "Vermeille" Sanchezaf888352015-04-20 14:41:30 +01003187 __ Mov(out, 0);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003188 }
3189
3190 if (done.IsLinked()) {
3191 __ Bind(&done);
3192 }
3193
3194 if (slow_path != nullptr) {
3195 __ Bind(slow_path->GetExitLabel());
3196 }
3197}
3198
3199void LocationsBuilderARM64::VisitCheckCast(HCheckCast* instruction) {
3200 LocationSummary::CallKind call_kind = LocationSummary::kNoCall;
3201 bool throws_into_catch = instruction->CanThrowIntoCatchBlock();
3202
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003203 TypeCheckKind type_check_kind = instruction->GetTypeCheckKind();
3204 switch (type_check_kind) {
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003205 case TypeCheckKind::kExactCheck:
3206 case TypeCheckKind::kAbstractClassCheck:
3207 case TypeCheckKind::kClassHierarchyCheck:
3208 case TypeCheckKind::kArrayObjectCheck:
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003209 call_kind = (throws_into_catch || kEmitCompilerReadBarrier) ?
3210 LocationSummary::kCallOnSlowPath :
3211 LocationSummary::kNoCall; // In fact, call on a fatal (non-returning) slow path.
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003212 break;
3213 case TypeCheckKind::kArrayCheck:
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003214 case TypeCheckKind::kUnresolvedCheck:
3215 case TypeCheckKind::kInterfaceCheck:
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003216 call_kind = LocationSummary::kCallOnSlowPath;
3217 break;
3218 }
3219
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003220 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(instruction, call_kind);
3221 locations->SetInAt(0, Location::RequiresRegister());
3222 locations->SetInAt(1, Location::RequiresRegister());
3223 // Note that TypeCheckSlowPathARM64 uses this "temp" register too.
3224 locations->AddTemp(Location::RequiresRegister());
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003225 // When read barriers are enabled, we need an additional temporary
3226 // register for some cases.
Roland Levillain44015862016-01-22 11:47:17 +00003227 if (TypeCheckNeedsATemporary(type_check_kind)) {
3228 locations->AddTemp(Location::RequiresRegister());
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003229 }
3230}
3231
3232void InstructionCodeGeneratorARM64::VisitCheckCast(HCheckCast* instruction) {
Roland Levillain44015862016-01-22 11:47:17 +00003233 TypeCheckKind type_check_kind = instruction->GetTypeCheckKind();
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003234 LocationSummary* locations = instruction->GetLocations();
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003235 Location obj_loc = locations->InAt(0);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003236 Register obj = InputRegisterAt(instruction, 0);
3237 Register cls = InputRegisterAt(instruction, 1);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003238 Location temp_loc = locations->GetTemp(0);
Roland Levillain44015862016-01-22 11:47:17 +00003239 Location maybe_temp2_loc = TypeCheckNeedsATemporary(type_check_kind) ?
3240 locations->GetTemp(1) :
3241 Location::NoLocation();
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003242 Register temp = WRegisterFrom(temp_loc);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003243 uint32_t class_offset = mirror::Object::ClassOffset().Int32Value();
3244 uint32_t super_offset = mirror::Class::SuperClassOffset().Int32Value();
3245 uint32_t component_offset = mirror::Class::ComponentTypeOffset().Int32Value();
3246 uint32_t primitive_offset = mirror::Class::PrimitiveTypeOffset().Int32Value();
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003247
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003248 bool is_type_check_slow_path_fatal =
3249 (type_check_kind == TypeCheckKind::kExactCheck ||
3250 type_check_kind == TypeCheckKind::kAbstractClassCheck ||
3251 type_check_kind == TypeCheckKind::kClassHierarchyCheck ||
3252 type_check_kind == TypeCheckKind::kArrayObjectCheck) &&
3253 !instruction->CanThrowIntoCatchBlock();
3254 SlowPathCodeARM64* type_check_slow_path =
3255 new (GetGraph()->GetArena()) TypeCheckSlowPathARM64(instruction,
3256 is_type_check_slow_path_fatal);
3257 codegen_->AddSlowPath(type_check_slow_path);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003258
3259 vixl::Label done;
3260 // Avoid null check if we know obj is not null.
3261 if (instruction->MustDoNullCheck()) {
Guillaume "Vermeille" Sanchezaf888352015-04-20 14:41:30 +01003262 __ Cbz(obj, &done);
3263 }
Alexandre Rames67555f72014-11-18 10:55:16 +00003264
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003265 // /* HeapReference<Class> */ temp = obj->klass_
Roland Levillain44015862016-01-22 11:47:17 +00003266 GenerateReferenceLoadTwoRegisters(instruction, temp_loc, obj_loc, class_offset, maybe_temp2_loc);
Nicolas Geoffray75374372015-09-17 17:12:19 +00003267
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003268 switch (type_check_kind) {
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003269 case TypeCheckKind::kExactCheck:
3270 case TypeCheckKind::kArrayCheck: {
3271 __ Cmp(temp, cls);
3272 // Jump to slow path for throwing the exception or doing a
3273 // more involved array check.
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003274 __ B(ne, type_check_slow_path->GetEntryLabel());
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003275 break;
3276 }
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003277
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003278 case TypeCheckKind::kAbstractClassCheck: {
3279 // If the class is abstract, we eagerly fetch the super class of the
3280 // object to avoid doing a comparison we know will fail.
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003281 vixl::Label loop, compare_classes;
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003282 __ Bind(&loop);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003283 // /* HeapReference<Class> */ temp = temp->super_class_
Roland Levillain44015862016-01-22 11:47:17 +00003284 GenerateReferenceLoadOneRegister(instruction, temp_loc, super_offset, maybe_temp2_loc);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003285
3286 // If the class reference currently in `temp` is not null, jump
3287 // to the `compare_classes` label to compare it with the checked
3288 // class.
3289 __ Cbnz(temp, &compare_classes);
3290 // Otherwise, jump to the slow path to throw the exception.
3291 //
3292 // But before, move back the object's class into `temp` before
3293 // going into the slow path, as it has been overwritten in the
3294 // meantime.
3295 // /* HeapReference<Class> */ temp = obj->klass_
Roland Levillain44015862016-01-22 11:47:17 +00003296 GenerateReferenceLoadTwoRegisters(
3297 instruction, temp_loc, obj_loc, class_offset, maybe_temp2_loc);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003298 __ B(type_check_slow_path->GetEntryLabel());
3299
3300 __ Bind(&compare_classes);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003301 __ Cmp(temp, cls);
3302 __ B(ne, &loop);
3303 break;
3304 }
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003305
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003306 case TypeCheckKind::kClassHierarchyCheck: {
3307 // Walk over the class hierarchy to find a match.
Nicolas Geoffrayabfcf182015-09-21 18:41:21 +01003308 vixl::Label loop;
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003309 __ Bind(&loop);
3310 __ Cmp(temp, cls);
Nicolas Geoffrayabfcf182015-09-21 18:41:21 +01003311 __ B(eq, &done);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003312
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003313 // /* HeapReference<Class> */ temp = temp->super_class_
Roland Levillain44015862016-01-22 11:47:17 +00003314 GenerateReferenceLoadOneRegister(instruction, temp_loc, super_offset, maybe_temp2_loc);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003315
3316 // If the class reference currently in `temp` is not null, jump
3317 // back at the beginning of the loop.
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003318 __ Cbnz(temp, &loop);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003319 // Otherwise, jump to the slow path to throw the exception.
3320 //
3321 // But before, move back the object's class into `temp` before
3322 // going into the slow path, as it has been overwritten in the
3323 // meantime.
3324 // /* HeapReference<Class> */ temp = obj->klass_
Roland Levillain44015862016-01-22 11:47:17 +00003325 GenerateReferenceLoadTwoRegisters(
3326 instruction, temp_loc, obj_loc, class_offset, maybe_temp2_loc);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003327 __ B(type_check_slow_path->GetEntryLabel());
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003328 break;
3329 }
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003330
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003331 case TypeCheckKind::kArrayObjectCheck: {
Nicolas Geoffrayabfcf182015-09-21 18:41:21 +01003332 // Do an exact check.
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003333 vixl::Label check_non_primitive_component_type;
Nicolas Geoffrayabfcf182015-09-21 18:41:21 +01003334 __ Cmp(temp, cls);
3335 __ B(eq, &done);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003336
3337 // Otherwise, we need to check that the object's class is a non-primitive array.
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003338 // /* HeapReference<Class> */ temp = temp->component_type_
Roland Levillain44015862016-01-22 11:47:17 +00003339 GenerateReferenceLoadOneRegister(instruction, temp_loc, component_offset, maybe_temp2_loc);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003340
3341 // If the component type is not null (i.e. the object is indeed
3342 // an array), jump to label `check_non_primitive_component_type`
3343 // to further check that this component type is not a primitive
3344 // type.
3345 __ Cbnz(temp, &check_non_primitive_component_type);
3346 // Otherwise, jump to the slow path to throw the exception.
3347 //
3348 // But before, move back the object's class into `temp` before
3349 // going into the slow path, as it has been overwritten in the
3350 // meantime.
3351 // /* HeapReference<Class> */ temp = obj->klass_
Roland Levillain44015862016-01-22 11:47:17 +00003352 GenerateReferenceLoadTwoRegisters(
3353 instruction, temp_loc, obj_loc, class_offset, maybe_temp2_loc);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003354 __ B(type_check_slow_path->GetEntryLabel());
3355
3356 __ Bind(&check_non_primitive_component_type);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003357 __ Ldrh(temp, HeapOperand(temp, primitive_offset));
3358 static_assert(Primitive::kPrimNot == 0, "Expected 0 for kPrimNot");
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003359 __ Cbz(temp, &done);
3360 // Same comment as above regarding `temp` and the slow path.
3361 // /* HeapReference<Class> */ temp = obj->klass_
Roland Levillain44015862016-01-22 11:47:17 +00003362 GenerateReferenceLoadTwoRegisters(
3363 instruction, temp_loc, obj_loc, class_offset, maybe_temp2_loc);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003364 __ B(type_check_slow_path->GetEntryLabel());
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003365 break;
3366 }
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003367
Calin Juravle98893e12015-10-02 21:05:03 +01003368 case TypeCheckKind::kUnresolvedCheck:
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003369 case TypeCheckKind::kInterfaceCheck:
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003370 // We always go into the type check slow path for the unresolved
3371 // and interface check cases.
3372 //
3373 // We cannot directly call the CheckCast runtime entry point
3374 // without resorting to a type checking slow path here (i.e. by
3375 // calling InvokeRuntime directly), as it would require to
3376 // assign fixed registers for the inputs of this HInstanceOf
3377 // instruction (following the runtime calling convention), which
3378 // might be cluttered by the potential first read barrier
3379 // emission at the beginning of this method.
Roland Levillain44015862016-01-22 11:47:17 +00003380 //
3381 // TODO: Introduce a new runtime entry point taking the object
3382 // to test (instead of its class) as argument, and let it deal
3383 // with the read barrier issues. This will let us refactor this
3384 // case of the `switch` code as it was previously (with a direct
3385 // call to the runtime not using a type checking slow path).
3386 // This should also be beneficial for the other cases above.
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003387 __ B(type_check_slow_path->GetEntryLabel());
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003388 break;
3389 }
Nicolas Geoffray75374372015-09-17 17:12:19 +00003390 __ Bind(&done);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00003391
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003392 __ Bind(type_check_slow_path->GetExitLabel());
Alexandre Rames67555f72014-11-18 10:55:16 +00003393}
3394
Alexandre Rames5319def2014-10-23 10:03:10 +01003395void LocationsBuilderARM64::VisitIntConstant(HIntConstant* constant) {
3396 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(constant);
3397 locations->SetOut(Location::ConstantLocation(constant));
3398}
3399
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01003400void InstructionCodeGeneratorARM64::VisitIntConstant(HIntConstant* constant ATTRIBUTE_UNUSED) {
Alexandre Rames5319def2014-10-23 10:03:10 +01003401 // Will be generated at use site.
3402}
3403
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +00003404void LocationsBuilderARM64::VisitNullConstant(HNullConstant* constant) {
3405 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(constant);
3406 locations->SetOut(Location::ConstantLocation(constant));
3407}
3408
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01003409void InstructionCodeGeneratorARM64::VisitNullConstant(HNullConstant* constant ATTRIBUTE_UNUSED) {
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +00003410 // Will be generated at use site.
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +00003411}
3412
Calin Juravle175dc732015-08-25 15:42:32 +01003413void LocationsBuilderARM64::VisitInvokeUnresolved(HInvokeUnresolved* invoke) {
3414 // The trampoline uses the same calling convention as dex calling conventions,
3415 // except instead of loading arg0/r0 with the target Method*, arg0/r0 will contain
3416 // the method_idx.
3417 HandleInvoke(invoke);
3418}
3419
3420void InstructionCodeGeneratorARM64::VisitInvokeUnresolved(HInvokeUnresolved* invoke) {
3421 codegen_->GenerateInvokeUnresolvedRuntimeCall(invoke);
3422}
3423
Alexandre Rames5319def2014-10-23 10:03:10 +01003424void LocationsBuilderARM64::HandleInvoke(HInvoke* invoke) {
Roland Levillain2d27c8e2015-04-28 15:48:45 +01003425 InvokeDexCallingConventionVisitorARM64 calling_convention_visitor;
Nicolas Geoffrayfd88f162015-06-03 11:23:52 +01003426 CodeGenerator::CreateCommonInvokeLocationSummary(invoke, &calling_convention_visitor);
Alexandre Rames5319def2014-10-23 10:03:10 +01003427}
3428
Alexandre Rames67555f72014-11-18 10:55:16 +00003429void LocationsBuilderARM64::VisitInvokeInterface(HInvokeInterface* invoke) {
3430 HandleInvoke(invoke);
3431}
3432
3433void InstructionCodeGeneratorARM64::VisitInvokeInterface(HInvokeInterface* invoke) {
3434 // TODO: b/18116999, our IMTs can miss an IncompatibleClassChangeError.
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003435 LocationSummary* locations = invoke->GetLocations();
3436 Register temp = XRegisterFrom(locations->GetTemp(0));
Mathieu Chartiere401d142015-04-22 13:56:20 -07003437 uint32_t method_offset = mirror::Class::EmbeddedImTableEntryOffset(
3438 invoke->GetImtIndex() % mirror::Class::kImtSize, kArm64PointerSize).Uint32Value();
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003439 Location receiver = locations->InAt(0);
Alexandre Rames67555f72014-11-18 10:55:16 +00003440 Offset class_offset = mirror::Object::ClassOffset();
Mathieu Chartiere401d142015-04-22 13:56:20 -07003441 Offset entry_point = ArtMethod::EntryPointFromQuickCompiledCodeOffset(kArm64WordSize);
Alexandre Rames67555f72014-11-18 10:55:16 +00003442
3443 // The register ip1 is required to be used for the hidden argument in
3444 // art_quick_imt_conflict_trampoline, so prevent VIXL from using it.
Alexandre Ramesd921d642015-04-16 15:07:16 +01003445 MacroAssembler* masm = GetVIXLAssembler();
3446 UseScratchRegisterScope scratch_scope(masm);
3447 BlockPoolsScope block_pools(masm);
Alexandre Rames67555f72014-11-18 10:55:16 +00003448 scratch_scope.Exclude(ip1);
3449 __ Mov(ip1, invoke->GetDexMethodIndex());
3450
Alexandre Rames67555f72014-11-18 10:55:16 +00003451 if (receiver.IsStackSlot()) {
Mathieu Chartiere401d142015-04-22 13:56:20 -07003452 __ Ldr(temp.W(), StackOperandFrom(receiver));
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003453 // /* HeapReference<Class> */ temp = temp->klass_
Mathieu Chartiere401d142015-04-22 13:56:20 -07003454 __ Ldr(temp.W(), HeapOperand(temp.W(), class_offset));
Alexandre Rames67555f72014-11-18 10:55:16 +00003455 } else {
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003456 // /* HeapReference<Class> */ temp = receiver->klass_
Mathieu Chartiere401d142015-04-22 13:56:20 -07003457 __ Ldr(temp.W(), HeapOperandFrom(receiver, class_offset));
Alexandre Rames67555f72014-11-18 10:55:16 +00003458 }
Calin Juravle77520bc2015-01-12 18:45:46 +00003459 codegen_->MaybeRecordImplicitNullCheck(invoke);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003460 // Instead of simply (possibly) unpoisoning `temp` here, we should
3461 // emit a read barrier for the previous class reference load.
3462 // However this is not required in practice, as this is an
3463 // intermediate/temporary reference and because the current
3464 // concurrent copying collector keeps the from-space memory
3465 // intact/accessible until the end of the marking phase (the
3466 // concurrent copying collector may not in the future).
Roland Levillain4d027112015-07-01 15:41:14 +01003467 GetAssembler()->MaybeUnpoisonHeapReference(temp.W());
Alexandre Rames67555f72014-11-18 10:55:16 +00003468 // temp = temp->GetImtEntryAt(method_offset);
Mathieu Chartiere401d142015-04-22 13:56:20 -07003469 __ Ldr(temp, MemOperand(temp, method_offset));
Alexandre Rames67555f72014-11-18 10:55:16 +00003470 // lr = temp->GetEntryPoint();
Mathieu Chartiere401d142015-04-22 13:56:20 -07003471 __ Ldr(lr, MemOperand(temp, entry_point.Int32Value()));
Alexandre Rames67555f72014-11-18 10:55:16 +00003472 // lr();
3473 __ Blr(lr);
3474 DCHECK(!codegen_->IsLeafMethod());
3475 codegen_->RecordPcInfo(invoke, invoke->GetDexPc());
3476}
3477
3478void LocationsBuilderARM64::VisitInvokeVirtual(HInvokeVirtual* invoke) {
Andreas Gampe878d58c2015-01-15 23:24:00 -08003479 IntrinsicLocationsBuilderARM64 intrinsic(GetGraph()->GetArena());
3480 if (intrinsic.TryDispatch(invoke)) {
3481 return;
3482 }
3483
Alexandre Rames67555f72014-11-18 10:55:16 +00003484 HandleInvoke(invoke);
3485}
3486
Nicolas Geoffraye53798a2014-12-01 10:31:54 +00003487void LocationsBuilderARM64::VisitInvokeStaticOrDirect(HInvokeStaticOrDirect* invoke) {
David Brazdil58282f42016-01-14 12:45:10 +00003488 // Explicit clinit checks triggered by static invokes must have been pruned by
3489 // art::PrepareForRegisterAllocation.
3490 DCHECK(!invoke->IsStaticWithExplicitClinitCheck());
Roland Levillain4c0eb422015-04-24 16:43:49 +01003491
Andreas Gampe878d58c2015-01-15 23:24:00 -08003492 IntrinsicLocationsBuilderARM64 intrinsic(GetGraph()->GetArena());
3493 if (intrinsic.TryDispatch(invoke)) {
3494 return;
3495 }
3496
Alexandre Rames67555f72014-11-18 10:55:16 +00003497 HandleInvoke(invoke);
3498}
3499
Andreas Gampe878d58c2015-01-15 23:24:00 -08003500static bool TryGenerateIntrinsicCode(HInvoke* invoke, CodeGeneratorARM64* codegen) {
3501 if (invoke->GetLocations()->Intrinsified()) {
3502 IntrinsicCodeGeneratorARM64 intrinsic(codegen);
3503 intrinsic.Dispatch(invoke);
3504 return true;
3505 }
3506 return false;
3507}
3508
Vladimir Markodc151b22015-10-15 18:02:30 +01003509HInvokeStaticOrDirect::DispatchInfo CodeGeneratorARM64::GetSupportedInvokeStaticOrDirectDispatch(
3510 const HInvokeStaticOrDirect::DispatchInfo& desired_dispatch_info,
3511 MethodReference target_method ATTRIBUTE_UNUSED) {
Roland Levillain44015862016-01-22 11:47:17 +00003512 // On ARM64 we support all dispatch types.
Vladimir Markodc151b22015-10-15 18:02:30 +01003513 return desired_dispatch_info;
3514}
3515
Nicolas Geoffray38207af2015-06-01 15:46:22 +01003516void CodeGeneratorARM64::GenerateStaticOrDirectCall(HInvokeStaticOrDirect* invoke, Location temp) {
Vladimir Marko58155012015-08-19 12:49:41 +00003517 // For better instruction scheduling we load the direct code pointer before the method pointer.
3518 bool direct_code_loaded = false;
3519 switch (invoke->GetCodePtrLocation()) {
3520 case HInvokeStaticOrDirect::CodePtrLocation::kCallDirectWithFixup:
3521 // LR = code address from literal pool with link-time patch.
3522 __ Ldr(lr, DeduplicateMethodCodeLiteral(invoke->GetTargetMethod()));
3523 direct_code_loaded = true;
3524 break;
3525 case HInvokeStaticOrDirect::CodePtrLocation::kCallDirect:
3526 // LR = invoke->GetDirectCodePtr();
3527 __ Ldr(lr, DeduplicateUint64Literal(invoke->GetDirectCodePtr()));
3528 direct_code_loaded = true;
3529 break;
3530 default:
3531 break;
3532 }
3533
Andreas Gampe878d58c2015-01-15 23:24:00 -08003534 // Make sure that ArtMethod* is passed in kArtMethodRegister as per the calling convention.
Vladimir Marko58155012015-08-19 12:49:41 +00003535 Location callee_method = temp; // For all kinds except kRecursive, callee will be in temp.
3536 switch (invoke->GetMethodLoadKind()) {
3537 case HInvokeStaticOrDirect::MethodLoadKind::kStringInit:
3538 // temp = thread->string_init_entrypoint
Alexandre Rames6dc01742015-11-12 14:44:19 +00003539 __ Ldr(XRegisterFrom(temp), MemOperand(tr, invoke->GetStringInitOffset()));
Vladimir Marko58155012015-08-19 12:49:41 +00003540 break;
3541 case HInvokeStaticOrDirect::MethodLoadKind::kRecursive:
Vladimir Markoc53c0792015-11-19 15:48:33 +00003542 callee_method = invoke->GetLocations()->InAt(invoke->GetSpecialInputIndex());
Vladimir Marko58155012015-08-19 12:49:41 +00003543 break;
3544 case HInvokeStaticOrDirect::MethodLoadKind::kDirectAddress:
3545 // Load method address from literal pool.
Alexandre Rames6dc01742015-11-12 14:44:19 +00003546 __ Ldr(XRegisterFrom(temp), DeduplicateUint64Literal(invoke->GetMethodAddress()));
Vladimir Marko58155012015-08-19 12:49:41 +00003547 break;
3548 case HInvokeStaticOrDirect::MethodLoadKind::kDirectAddressWithFixup:
3549 // Load method address from literal pool with a link-time patch.
Alexandre Rames6dc01742015-11-12 14:44:19 +00003550 __ Ldr(XRegisterFrom(temp),
Vladimir Marko58155012015-08-19 12:49:41 +00003551 DeduplicateMethodAddressLiteral(invoke->GetTargetMethod()));
3552 break;
3553 case HInvokeStaticOrDirect::MethodLoadKind::kDexCachePcRelative: {
3554 // Add ADRP with its PC-relative DexCache access patch.
Vladimir Marko0f7dca42015-11-02 14:36:43 +00003555 pc_relative_dex_cache_patches_.emplace_back(*invoke->GetTargetMethod().dex_file,
3556 invoke->GetDexCacheArrayOffset());
3557 vixl::Label* pc_insn_label = &pc_relative_dex_cache_patches_.back().label;
Vladimir Marko58155012015-08-19 12:49:41 +00003558 {
3559 vixl::SingleEmissionCheckScope guard(GetVIXLAssembler());
Alexandre Rames6dc01742015-11-12 14:44:19 +00003560 __ Bind(pc_insn_label);
3561 __ adrp(XRegisterFrom(temp), 0);
Vladimir Marko58155012015-08-19 12:49:41 +00003562 }
Vladimir Marko0f7dca42015-11-02 14:36:43 +00003563 pc_relative_dex_cache_patches_.back().pc_insn_label = pc_insn_label;
Vladimir Marko58155012015-08-19 12:49:41 +00003564 // Add LDR with its PC-relative DexCache access patch.
Vladimir Marko0f7dca42015-11-02 14:36:43 +00003565 pc_relative_dex_cache_patches_.emplace_back(*invoke->GetTargetMethod().dex_file,
3566 invoke->GetDexCacheArrayOffset());
Alexandre Rames6dc01742015-11-12 14:44:19 +00003567 {
3568 vixl::SingleEmissionCheckScope guard(GetVIXLAssembler());
3569 __ Bind(&pc_relative_dex_cache_patches_.back().label);
3570 __ ldr(XRegisterFrom(temp), MemOperand(XRegisterFrom(temp), 0));
3571 pc_relative_dex_cache_patches_.back().pc_insn_label = pc_insn_label;
3572 }
Vladimir Marko58155012015-08-19 12:49:41 +00003573 break;
Vladimir Marko9b688a02015-05-06 14:12:42 +01003574 }
Vladimir Marko58155012015-08-19 12:49:41 +00003575 case HInvokeStaticOrDirect::MethodLoadKind::kDexCacheViaMethod: {
Vladimir Markoc53c0792015-11-19 15:48:33 +00003576 Location current_method = invoke->GetLocations()->InAt(invoke->GetSpecialInputIndex());
Vladimir Marko58155012015-08-19 12:49:41 +00003577 Register reg = XRegisterFrom(temp);
3578 Register method_reg;
3579 if (current_method.IsRegister()) {
3580 method_reg = XRegisterFrom(current_method);
3581 } else {
3582 DCHECK(invoke->GetLocations()->Intrinsified());
3583 DCHECK(!current_method.IsValid());
3584 method_reg = reg;
3585 __ Ldr(reg.X(), MemOperand(sp, kCurrentMethodStackOffset));
3586 }
Vladimir Markob2c431e2015-08-19 12:45:42 +00003587
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003588 // /* ArtMethod*[] */ temp = temp.ptr_sized_fields_->dex_cache_resolved_methods_;
Vladimir Marko05792b92015-08-03 11:56:49 +01003589 __ Ldr(reg.X(),
3590 MemOperand(method_reg.X(),
3591 ArtMethod::DexCacheResolvedMethodsOffset(kArm64WordSize).Int32Value()));
Vladimir Marko58155012015-08-19 12:49:41 +00003592 // temp = temp[index_in_cache];
3593 uint32_t index_in_cache = invoke->GetTargetMethod().dex_method_index;
3594 __ Ldr(reg.X(), MemOperand(reg.X(), GetCachePointerOffset(index_in_cache)));
3595 break;
3596 }
3597 }
3598
3599 switch (invoke->GetCodePtrLocation()) {
3600 case HInvokeStaticOrDirect::CodePtrLocation::kCallSelf:
3601 __ Bl(&frame_entry_label_);
3602 break;
3603 case HInvokeStaticOrDirect::CodePtrLocation::kCallPCRelative: {
3604 relative_call_patches_.emplace_back(invoke->GetTargetMethod());
3605 vixl::Label* label = &relative_call_patches_.back().label;
Alexandre Rames6dc01742015-11-12 14:44:19 +00003606 vixl::SingleEmissionCheckScope guard(GetVIXLAssembler());
3607 __ Bind(label);
3608 __ bl(0); // Branch and link to itself. This will be overriden at link time.
Vladimir Marko58155012015-08-19 12:49:41 +00003609 break;
3610 }
3611 case HInvokeStaticOrDirect::CodePtrLocation::kCallDirectWithFixup:
3612 case HInvokeStaticOrDirect::CodePtrLocation::kCallDirect:
3613 // LR prepared above for better instruction scheduling.
3614 DCHECK(direct_code_loaded);
3615 // lr()
3616 __ Blr(lr);
3617 break;
3618 case HInvokeStaticOrDirect::CodePtrLocation::kCallArtMethod:
3619 // LR = callee_method->entry_point_from_quick_compiled_code_;
3620 __ Ldr(lr, MemOperand(
Alexandre Rames6dc01742015-11-12 14:44:19 +00003621 XRegisterFrom(callee_method),
Vladimir Marko58155012015-08-19 12:49:41 +00003622 ArtMethod::EntryPointFromQuickCompiledCodeOffset(kArm64WordSize).Int32Value()));
3623 // lr()
3624 __ Blr(lr);
3625 break;
Nicolas Geoffray1cf95282014-12-12 19:22:03 +00003626 }
Alexandre Rames5319def2014-10-23 10:03:10 +01003627
Andreas Gampe878d58c2015-01-15 23:24:00 -08003628 DCHECK(!IsLeafMethod());
3629}
3630
Andreas Gampebfb5ba92015-09-01 15:45:02 +00003631void CodeGeneratorARM64::GenerateVirtualCall(HInvokeVirtual* invoke, Location temp_in) {
Nicolas Geoffraye5234232015-12-02 09:06:11 +00003632 // Use the calling convention instead of the location of the receiver, as
3633 // intrinsics may have put the receiver in a different register. In the intrinsics
3634 // slow path, the arguments have been moved to the right place, so here we are
3635 // guaranteed that the receiver is the first register of the calling convention.
3636 InvokeDexCallingConvention calling_convention;
3637 Register receiver = calling_convention.GetRegisterAt(0);
Andreas Gampebfb5ba92015-09-01 15:45:02 +00003638 Register temp = XRegisterFrom(temp_in);
3639 size_t method_offset = mirror::Class::EmbeddedVTableEntryOffset(
3640 invoke->GetVTableIndex(), kArm64PointerSize).SizeValue();
3641 Offset class_offset = mirror::Object::ClassOffset();
3642 Offset entry_point = ArtMethod::EntryPointFromQuickCompiledCodeOffset(kArm64WordSize);
3643
3644 BlockPoolsScope block_pools(GetVIXLAssembler());
3645
3646 DCHECK(receiver.IsRegister());
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003647 // /* HeapReference<Class> */ temp = receiver->klass_
Nicolas Geoffraye5234232015-12-02 09:06:11 +00003648 __ Ldr(temp.W(), HeapOperandFrom(LocationFrom(receiver), class_offset));
Andreas Gampebfb5ba92015-09-01 15:45:02 +00003649 MaybeRecordImplicitNullCheck(invoke);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003650 // Instead of simply (possibly) unpoisoning `temp` here, we should
3651 // emit a read barrier for the previous class reference load.
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003652 // intermediate/temporary reference and because the current
3653 // concurrent copying collector keeps the from-space memory
3654 // intact/accessible until the end of the marking phase (the
3655 // concurrent copying collector may not in the future).
Andreas Gampebfb5ba92015-09-01 15:45:02 +00003656 GetAssembler()->MaybeUnpoisonHeapReference(temp.W());
3657 // temp = temp->GetMethodAt(method_offset);
3658 __ Ldr(temp, MemOperand(temp, method_offset));
3659 // lr = temp->GetEntryPoint();
3660 __ Ldr(lr, MemOperand(temp, entry_point.SizeValue()));
3661 // lr();
3662 __ Blr(lr);
3663}
3664
Vladimir Marko58155012015-08-19 12:49:41 +00003665void CodeGeneratorARM64::EmitLinkerPatches(ArenaVector<LinkerPatch>* linker_patches) {
3666 DCHECK(linker_patches->empty());
3667 size_t size =
3668 method_patches_.size() +
3669 call_patches_.size() +
3670 relative_call_patches_.size() +
Vladimir Marko0f7dca42015-11-02 14:36:43 +00003671 pc_relative_dex_cache_patches_.size();
Vladimir Marko58155012015-08-19 12:49:41 +00003672 linker_patches->reserve(size);
3673 for (const auto& entry : method_patches_) {
3674 const MethodReference& target_method = entry.first;
3675 vixl::Literal<uint64_t>* literal = entry.second;
3676 linker_patches->push_back(LinkerPatch::MethodPatch(literal->offset(),
3677 target_method.dex_file,
3678 target_method.dex_method_index));
3679 }
3680 for (const auto& entry : call_patches_) {
3681 const MethodReference& target_method = entry.first;
3682 vixl::Literal<uint64_t>* literal = entry.second;
3683 linker_patches->push_back(LinkerPatch::CodePatch(literal->offset(),
3684 target_method.dex_file,
3685 target_method.dex_method_index));
3686 }
3687 for (const MethodPatchInfo<vixl::Label>& info : relative_call_patches_) {
Alexandre Rames6dc01742015-11-12 14:44:19 +00003688 linker_patches->push_back(LinkerPatch::RelativeCodePatch(info.label.location(),
Vladimir Marko58155012015-08-19 12:49:41 +00003689 info.target_method.dex_file,
3690 info.target_method.dex_method_index));
3691 }
Vladimir Marko0f7dca42015-11-02 14:36:43 +00003692 for (const PcRelativeDexCacheAccessInfo& info : pc_relative_dex_cache_patches_) {
Alexandre Rames6dc01742015-11-12 14:44:19 +00003693 linker_patches->push_back(LinkerPatch::DexCacheArrayPatch(info.label.location(),
Vladimir Marko58155012015-08-19 12:49:41 +00003694 &info.target_dex_file,
Alexandre Rames6dc01742015-11-12 14:44:19 +00003695 info.pc_insn_label->location(),
Vladimir Marko58155012015-08-19 12:49:41 +00003696 info.element_offset));
3697 }
3698}
3699
3700vixl::Literal<uint64_t>* CodeGeneratorARM64::DeduplicateUint64Literal(uint64_t value) {
3701 // Look up the literal for value.
3702 auto lb = uint64_literals_.lower_bound(value);
3703 if (lb != uint64_literals_.end() && !uint64_literals_.key_comp()(value, lb->first)) {
3704 return lb->second;
3705 }
3706 // We don't have a literal for this value, insert a new one.
3707 vixl::Literal<uint64_t>* literal = __ CreateLiteralDestroyedWithPool<uint64_t>(value);
3708 uint64_literals_.PutBefore(lb, value, literal);
3709 return literal;
3710}
3711
3712vixl::Literal<uint64_t>* CodeGeneratorARM64::DeduplicateMethodLiteral(
3713 MethodReference target_method,
3714 MethodToLiteralMap* map) {
3715 // Look up the literal for target_method.
3716 auto lb = map->lower_bound(target_method);
3717 if (lb != map->end() && !map->key_comp()(target_method, lb->first)) {
3718 return lb->second;
3719 }
3720 // We don't have a literal for this method yet, insert a new one.
3721 vixl::Literal<uint64_t>* literal = __ CreateLiteralDestroyedWithPool<uint64_t>(0u);
3722 map->PutBefore(lb, target_method, literal);
3723 return literal;
3724}
3725
3726vixl::Literal<uint64_t>* CodeGeneratorARM64::DeduplicateMethodAddressLiteral(
3727 MethodReference target_method) {
3728 return DeduplicateMethodLiteral(target_method, &method_patches_);
3729}
3730
3731vixl::Literal<uint64_t>* CodeGeneratorARM64::DeduplicateMethodCodeLiteral(
3732 MethodReference target_method) {
3733 return DeduplicateMethodLiteral(target_method, &call_patches_);
3734}
3735
3736
Andreas Gampe878d58c2015-01-15 23:24:00 -08003737void InstructionCodeGeneratorARM64::VisitInvokeStaticOrDirect(HInvokeStaticOrDirect* invoke) {
David Brazdil58282f42016-01-14 12:45:10 +00003738 // Explicit clinit checks triggered by static invokes must have been pruned by
3739 // art::PrepareForRegisterAllocation.
3740 DCHECK(!invoke->IsStaticWithExplicitClinitCheck());
Roland Levillain4c0eb422015-04-24 16:43:49 +01003741
Andreas Gampe878d58c2015-01-15 23:24:00 -08003742 if (TryGenerateIntrinsicCode(invoke, codegen_)) {
3743 return;
3744 }
3745
Alexandre Ramesd921d642015-04-16 15:07:16 +01003746 BlockPoolsScope block_pools(GetVIXLAssembler());
Nicolas Geoffray38207af2015-06-01 15:46:22 +01003747 LocationSummary* locations = invoke->GetLocations();
3748 codegen_->GenerateStaticOrDirectCall(
3749 invoke, locations->HasTemps() ? locations->GetTemp(0) : Location::NoLocation());
Nicolas Geoffraya8ac9132015-03-13 16:36:36 +00003750 codegen_->RecordPcInfo(invoke, invoke->GetDexPc());
Alexandre Rames5319def2014-10-23 10:03:10 +01003751}
3752
3753void InstructionCodeGeneratorARM64::VisitInvokeVirtual(HInvokeVirtual* invoke) {
Andreas Gampe878d58c2015-01-15 23:24:00 -08003754 if (TryGenerateIntrinsicCode(invoke, codegen_)) {
3755 return;
3756 }
3757
Andreas Gampebfb5ba92015-09-01 15:45:02 +00003758 codegen_->GenerateVirtualCall(invoke, invoke->GetLocations()->GetTemp(0));
Alexandre Rames5319def2014-10-23 10:03:10 +01003759 DCHECK(!codegen_->IsLeafMethod());
3760 codegen_->RecordPcInfo(invoke, invoke->GetDexPc());
3761}
3762
Alexandre Rames67555f72014-11-18 10:55:16 +00003763void LocationsBuilderARM64::VisitLoadClass(HLoadClass* cls) {
Calin Juravle98893e12015-10-02 21:05:03 +01003764 InvokeRuntimeCallingConvention calling_convention;
3765 CodeGenerator::CreateLoadClassLocationSummary(
3766 cls,
3767 LocationFrom(calling_convention.GetRegisterAt(0)),
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003768 LocationFrom(vixl::x0),
3769 /* code_generator_supports_read_barrier */ true);
Alexandre Rames67555f72014-11-18 10:55:16 +00003770}
3771
3772void InstructionCodeGeneratorARM64::VisitLoadClass(HLoadClass* cls) {
Calin Juravle98893e12015-10-02 21:05:03 +01003773 if (cls->NeedsAccessCheck()) {
3774 codegen_->MoveConstant(cls->GetLocations()->GetTemp(0), cls->GetTypeIndex());
3775 codegen_->InvokeRuntime(QUICK_ENTRY_POINT(pInitializeTypeAndVerifyAccess),
3776 cls,
3777 cls->GetDexPc(),
3778 nullptr);
Roland Levillain888d0672015-11-23 18:53:50 +00003779 CheckEntrypointTypes<kQuickInitializeTypeAndVerifyAccess, void*, uint32_t>();
Calin Juravle580b6092015-10-06 17:35:58 +01003780 return;
3781 }
3782
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003783 Location out_loc = cls->GetLocations()->Out();
Calin Juravle580b6092015-10-06 17:35:58 +01003784 Register out = OutputRegister(cls);
3785 Register current_method = InputRegisterAt(cls, 0);
3786 if (cls->IsReferrersClass()) {
Alexandre Rames67555f72014-11-18 10:55:16 +00003787 DCHECK(!cls->CanCallRuntime());
3788 DCHECK(!cls->MustGenerateClinitCheck());
Roland Levillain44015862016-01-22 11:47:17 +00003789 // /* GcRoot<mirror::Class> */ out = current_method->declaring_class_
3790 GenerateGcRootFieldLoad(
3791 cls, out_loc, current_method, ArtMethod::DeclaringClassOffset().Int32Value());
Alexandre Rames67555f72014-11-18 10:55:16 +00003792 } else {
Vladimir Marko05792b92015-08-03 11:56:49 +01003793 MemberOffset resolved_types_offset = ArtMethod::DexCacheResolvedTypesOffset(kArm64PointerSize);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003794 // /* GcRoot<mirror::Class>[] */ out =
3795 // current_method.ptr_sized_fields_->dex_cache_resolved_types_
Vladimir Marko05792b92015-08-03 11:56:49 +01003796 __ Ldr(out.X(), MemOperand(current_method, resolved_types_offset.Int32Value()));
Roland Levillain44015862016-01-22 11:47:17 +00003797 // /* GcRoot<mirror::Class> */ out = out[type_index]
3798 GenerateGcRootFieldLoad(
3799 cls, out_loc, out.X(), CodeGenerator::GetCacheOffset(cls->GetTypeIndex()));
Alexandre Rames67555f72014-11-18 10:55:16 +00003800
Nicolas Geoffray42e372e2015-11-24 15:48:56 +00003801 if (!cls->IsInDexCache() || cls->MustGenerateClinitCheck()) {
3802 DCHECK(cls->CanCallRuntime());
3803 SlowPathCodeARM64* slow_path = new (GetGraph()->GetArena()) LoadClassSlowPathARM64(
3804 cls, cls, cls->GetDexPc(), cls->MustGenerateClinitCheck());
3805 codegen_->AddSlowPath(slow_path);
3806 if (!cls->IsInDexCache()) {
3807 __ Cbz(out, slow_path->GetEntryLabel());
3808 }
3809 if (cls->MustGenerateClinitCheck()) {
3810 GenerateClassInitializationCheck(slow_path, out);
3811 } else {
3812 __ Bind(slow_path->GetExitLabel());
3813 }
Alexandre Rames67555f72014-11-18 10:55:16 +00003814 }
3815 }
3816}
3817
David Brazdilcb1c0552015-08-04 16:22:25 +01003818static MemOperand GetExceptionTlsAddress() {
3819 return MemOperand(tr, Thread::ExceptionOffset<kArm64WordSize>().Int32Value());
3820}
3821
Alexandre Rames67555f72014-11-18 10:55:16 +00003822void LocationsBuilderARM64::VisitLoadException(HLoadException* load) {
3823 LocationSummary* locations =
3824 new (GetGraph()->GetArena()) LocationSummary(load, LocationSummary::kNoCall);
3825 locations->SetOut(Location::RequiresRegister());
3826}
3827
3828void InstructionCodeGeneratorARM64::VisitLoadException(HLoadException* instruction) {
David Brazdilcb1c0552015-08-04 16:22:25 +01003829 __ Ldr(OutputRegister(instruction), GetExceptionTlsAddress());
3830}
3831
3832void LocationsBuilderARM64::VisitClearException(HClearException* clear) {
3833 new (GetGraph()->GetArena()) LocationSummary(clear, LocationSummary::kNoCall);
3834}
3835
3836void InstructionCodeGeneratorARM64::VisitClearException(HClearException* clear ATTRIBUTE_UNUSED) {
3837 __ Str(wzr, GetExceptionTlsAddress());
Alexandre Rames67555f72014-11-18 10:55:16 +00003838}
3839
Alexandre Rames5319def2014-10-23 10:03:10 +01003840void LocationsBuilderARM64::VisitLoadLocal(HLoadLocal* load) {
3841 load->SetLocations(nullptr);
3842}
3843
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01003844void InstructionCodeGeneratorARM64::VisitLoadLocal(HLoadLocal* load ATTRIBUTE_UNUSED) {
Alexandre Rames5319def2014-10-23 10:03:10 +01003845 // Nothing to do, this is driven by the code generator.
3846}
3847
Alexandre Rames67555f72014-11-18 10:55:16 +00003848void LocationsBuilderARM64::VisitLoadString(HLoadString* load) {
Nicolas Geoffray917d0162015-11-24 18:25:35 +00003849 LocationSummary::CallKind call_kind = (!load->IsInDexCache() || kEmitCompilerReadBarrier)
3850 ? LocationSummary::kCallOnSlowPath
3851 : LocationSummary::kNoCall;
3852 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(load, call_kind);
Nicolas Geoffrayfbdaa302015-05-29 12:06:56 +01003853 locations->SetInAt(0, Location::RequiresRegister());
Alexandre Rames67555f72014-11-18 10:55:16 +00003854 locations->SetOut(Location::RequiresRegister());
3855}
3856
3857void InstructionCodeGeneratorARM64::VisitLoadString(HLoadString* load) {
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003858 Location out_loc = load->GetLocations()->Out();
Alexandre Rames67555f72014-11-18 10:55:16 +00003859 Register out = OutputRegister(load);
Nicolas Geoffrayfbdaa302015-05-29 12:06:56 +01003860 Register current_method = InputRegisterAt(load, 0);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003861
Roland Levillain44015862016-01-22 11:47:17 +00003862 // /* GcRoot<mirror::Class> */ out = current_method->declaring_class_
3863 GenerateGcRootFieldLoad(
3864 load, out_loc, current_method, ArtMethod::DeclaringClassOffset().Int32Value());
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003865 // /* GcRoot<mirror::String>[] */ out = out->dex_cache_strings_
3866 __ Ldr(out.X(), HeapOperand(out, mirror::Class::DexCacheStringsOffset().Uint32Value()));
Roland Levillain44015862016-01-22 11:47:17 +00003867 // /* GcRoot<mirror::String> */ out = out[string_index]
3868 GenerateGcRootFieldLoad(
3869 load, out_loc, out.X(), CodeGenerator::GetCacheOffset(load->GetStringIndex()));
Roland Levillain22ccc3a2015-11-24 13:10:05 +00003870
Nicolas Geoffray917d0162015-11-24 18:25:35 +00003871 if (!load->IsInDexCache()) {
3872 SlowPathCodeARM64* slow_path = new (GetGraph()->GetArena()) LoadStringSlowPathARM64(load);
3873 codegen_->AddSlowPath(slow_path);
3874 __ Cbz(out, slow_path->GetEntryLabel());
3875 __ Bind(slow_path->GetExitLabel());
3876 }
Alexandre Rames67555f72014-11-18 10:55:16 +00003877}
3878
Alexandre Rames5319def2014-10-23 10:03:10 +01003879void LocationsBuilderARM64::VisitLocal(HLocal* local) {
3880 local->SetLocations(nullptr);
3881}
3882
3883void InstructionCodeGeneratorARM64::VisitLocal(HLocal* local) {
3884 DCHECK_EQ(local->GetBlock(), GetGraph()->GetEntryBlock());
3885}
3886
3887void LocationsBuilderARM64::VisitLongConstant(HLongConstant* constant) {
3888 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(constant);
3889 locations->SetOut(Location::ConstantLocation(constant));
3890}
3891
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01003892void InstructionCodeGeneratorARM64::VisitLongConstant(HLongConstant* constant ATTRIBUTE_UNUSED) {
Alexandre Rames5319def2014-10-23 10:03:10 +01003893 // Will be generated at use site.
3894}
3895
Alexandre Rames67555f72014-11-18 10:55:16 +00003896void LocationsBuilderARM64::VisitMonitorOperation(HMonitorOperation* instruction) {
3897 LocationSummary* locations =
3898 new (GetGraph()->GetArena()) LocationSummary(instruction, LocationSummary::kCall);
3899 InvokeRuntimeCallingConvention calling_convention;
3900 locations->SetInAt(0, LocationFrom(calling_convention.GetRegisterAt(0)));
3901}
3902
3903void InstructionCodeGeneratorARM64::VisitMonitorOperation(HMonitorOperation* instruction) {
3904 codegen_->InvokeRuntime(instruction->IsEnter()
3905 ? QUICK_ENTRY_POINT(pLockObject) : QUICK_ENTRY_POINT(pUnlockObject),
3906 instruction,
Nicolas Geoffrayeeefa122015-03-13 18:52:59 +00003907 instruction->GetDexPc(),
3908 nullptr);
Roland Levillain888d0672015-11-23 18:53:50 +00003909 if (instruction->IsEnter()) {
3910 CheckEntrypointTypes<kQuickLockObject, void, mirror::Object*>();
3911 } else {
3912 CheckEntrypointTypes<kQuickUnlockObject, void, mirror::Object*>();
3913 }
Alexandre Rames67555f72014-11-18 10:55:16 +00003914}
3915
Alexandre Rames42d641b2014-10-27 14:00:51 +00003916void LocationsBuilderARM64::VisitMul(HMul* mul) {
3917 LocationSummary* locations =
3918 new (GetGraph()->GetArena()) LocationSummary(mul, LocationSummary::kNoCall);
3919 switch (mul->GetResultType()) {
3920 case Primitive::kPrimInt:
3921 case Primitive::kPrimLong:
3922 locations->SetInAt(0, Location::RequiresRegister());
3923 locations->SetInAt(1, Location::RequiresRegister());
Alexandre Ramesfb4e5fa2014-11-06 12:41:16 +00003924 locations->SetOut(Location::RequiresRegister(), Location::kNoOutputOverlap);
Alexandre Rames42d641b2014-10-27 14:00:51 +00003925 break;
3926
3927 case Primitive::kPrimFloat:
3928 case Primitive::kPrimDouble:
Alexandre Ramesa89086e2014-11-07 17:13:25 +00003929 locations->SetInAt(0, Location::RequiresFpuRegister());
3930 locations->SetInAt(1, Location::RequiresFpuRegister());
Alexandre Rames67555f72014-11-18 10:55:16 +00003931 locations->SetOut(Location::RequiresFpuRegister(), Location::kNoOutputOverlap);
Alexandre Rames42d641b2014-10-27 14:00:51 +00003932 break;
3933
3934 default:
3935 LOG(FATAL) << "Unexpected mul type " << mul->GetResultType();
3936 }
3937}
3938
3939void InstructionCodeGeneratorARM64::VisitMul(HMul* mul) {
3940 switch (mul->GetResultType()) {
3941 case Primitive::kPrimInt:
3942 case Primitive::kPrimLong:
3943 __ Mul(OutputRegister(mul), InputRegisterAt(mul, 0), InputRegisterAt(mul, 1));
3944 break;
3945
3946 case Primitive::kPrimFloat:
3947 case Primitive::kPrimDouble:
Alexandre Ramesa89086e2014-11-07 17:13:25 +00003948 __ Fmul(OutputFPRegister(mul), InputFPRegisterAt(mul, 0), InputFPRegisterAt(mul, 1));
Alexandre Rames42d641b2014-10-27 14:00:51 +00003949 break;
3950
3951 default:
3952 LOG(FATAL) << "Unexpected mul type " << mul->GetResultType();
3953 }
3954}
3955
Alexandre Ramesfc19de82014-11-07 17:13:31 +00003956void LocationsBuilderARM64::VisitNeg(HNeg* neg) {
3957 LocationSummary* locations =
3958 new (GetGraph()->GetArena()) LocationSummary(neg, LocationSummary::kNoCall);
3959 switch (neg->GetResultType()) {
3960 case Primitive::kPrimInt:
Alexandre Rames67555f72014-11-18 10:55:16 +00003961 case Primitive::kPrimLong:
Serban Constantinescu2d35d9d2015-02-22 22:08:01 +00003962 locations->SetInAt(0, ARM64EncodableConstantOrRegister(neg->InputAt(0), neg));
Alexandre Rames67555f72014-11-18 10:55:16 +00003963 locations->SetOut(Location::RequiresRegister(), Location::kNoOutputOverlap);
Alexandre Ramesfc19de82014-11-07 17:13:31 +00003964 break;
Alexandre Ramesfc19de82014-11-07 17:13:31 +00003965
3966 case Primitive::kPrimFloat:
3967 case Primitive::kPrimDouble:
Alexandre Rames67555f72014-11-18 10:55:16 +00003968 locations->SetInAt(0, Location::RequiresFpuRegister());
3969 locations->SetOut(Location::RequiresFpuRegister(), Location::kNoOutputOverlap);
Alexandre Ramesfc19de82014-11-07 17:13:31 +00003970 break;
3971
3972 default:
3973 LOG(FATAL) << "Unexpected neg type " << neg->GetResultType();
3974 }
3975}
3976
3977void InstructionCodeGeneratorARM64::VisitNeg(HNeg* neg) {
3978 switch (neg->GetResultType()) {
3979 case Primitive::kPrimInt:
3980 case Primitive::kPrimLong:
3981 __ Neg(OutputRegister(neg), InputOperandAt(neg, 0));
3982 break;
3983
3984 case Primitive::kPrimFloat:
3985 case Primitive::kPrimDouble:
Alexandre Rames67555f72014-11-18 10:55:16 +00003986 __ Fneg(OutputFPRegister(neg), InputFPRegisterAt(neg, 0));
Alexandre Ramesfc19de82014-11-07 17:13:31 +00003987 break;
3988
3989 default:
3990 LOG(FATAL) << "Unexpected neg type " << neg->GetResultType();
3991 }
3992}
3993
3994void LocationsBuilderARM64::VisitNewArray(HNewArray* instruction) {
3995 LocationSummary* locations =
3996 new (GetGraph()->GetArena()) LocationSummary(instruction, LocationSummary::kCall);
3997 InvokeRuntimeCallingConvention calling_convention;
3998 locations->AddTemp(LocationFrom(calling_convention.GetRegisterAt(0)));
Alexandre Ramesfc19de82014-11-07 17:13:31 +00003999 locations->SetOut(LocationFrom(x0));
Andreas Gampe1cc7dba2014-12-17 18:43:01 -08004000 locations->SetInAt(0, LocationFrom(calling_convention.GetRegisterAt(1)));
Nicolas Geoffray69aa6012015-06-09 10:34:25 +01004001 locations->SetInAt(1, LocationFrom(calling_convention.GetRegisterAt(2)));
Alexandre Ramesfc19de82014-11-07 17:13:31 +00004002}
4003
4004void InstructionCodeGeneratorARM64::VisitNewArray(HNewArray* instruction) {
4005 LocationSummary* locations = instruction->GetLocations();
4006 InvokeRuntimeCallingConvention calling_convention;
4007 Register type_index = RegisterFrom(locations->GetTemp(0), Primitive::kPrimInt);
4008 DCHECK(type_index.Is(w0));
Alexandre Ramesfc19de82014-11-07 17:13:31 +00004009 __ Mov(type_index, instruction->GetTypeIndex());
Roland Levillain4d027112015-07-01 15:41:14 +01004010 // Note: if heap poisoning is enabled, the entry point takes cares
4011 // of poisoning the reference.
Calin Juravle175dc732015-08-25 15:42:32 +01004012 codegen_->InvokeRuntime(instruction->GetEntrypoint(),
4013 instruction,
4014 instruction->GetDexPc(),
4015 nullptr);
Mathieu Chartiere401d142015-04-22 13:56:20 -07004016 CheckEntrypointTypes<kQuickAllocArrayWithAccessCheck, void*, uint32_t, int32_t, ArtMethod*>();
Alexandre Ramesfc19de82014-11-07 17:13:31 +00004017}
4018
Alexandre Rames5319def2014-10-23 10:03:10 +01004019void LocationsBuilderARM64::VisitNewInstance(HNewInstance* instruction) {
4020 LocationSummary* locations =
4021 new (GetGraph()->GetArena()) LocationSummary(instruction, LocationSummary::kCall);
4022 InvokeRuntimeCallingConvention calling_convention;
David Brazdil6de19382016-01-08 17:37:10 +00004023 if (instruction->IsStringAlloc()) {
4024 locations->AddTemp(LocationFrom(kArtMethodRegister));
4025 } else {
4026 locations->SetInAt(0, LocationFrom(calling_convention.GetRegisterAt(0)));
4027 locations->SetInAt(1, LocationFrom(calling_convention.GetRegisterAt(1)));
4028 }
Alexandre Rames5319def2014-10-23 10:03:10 +01004029 locations->SetOut(calling_convention.GetReturnLocation(Primitive::kPrimNot));
4030}
4031
4032void InstructionCodeGeneratorARM64::VisitNewInstance(HNewInstance* instruction) {
Roland Levillain4d027112015-07-01 15:41:14 +01004033 // Note: if heap poisoning is enabled, the entry point takes cares
4034 // of poisoning the reference.
David Brazdil6de19382016-01-08 17:37:10 +00004035 if (instruction->IsStringAlloc()) {
4036 // String is allocated through StringFactory. Call NewEmptyString entry point.
4037 Location temp = instruction->GetLocations()->GetTemp(0);
4038 MemberOffset code_offset = ArtMethod::EntryPointFromQuickCompiledCodeOffset(kArm64WordSize);
4039 __ Ldr(XRegisterFrom(temp), MemOperand(tr, QUICK_ENTRY_POINT(pNewEmptyString)));
4040 __ Ldr(lr, MemOperand(XRegisterFrom(temp), code_offset.Int32Value()));
4041 __ Blr(lr);
4042 codegen_->RecordPcInfo(instruction, instruction->GetDexPc());
4043 } else {
4044 codegen_->InvokeRuntime(instruction->GetEntrypoint(),
4045 instruction,
4046 instruction->GetDexPc(),
4047 nullptr);
4048 CheckEntrypointTypes<kQuickAllocObjectWithAccessCheck, void*, uint32_t, ArtMethod*>();
4049 }
Alexandre Rames5319def2014-10-23 10:03:10 +01004050}
4051
4052void LocationsBuilderARM64::VisitNot(HNot* instruction) {
4053 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(instruction);
Alexandre Rames4e596512014-11-07 15:56:50 +00004054 locations->SetInAt(0, Location::RequiresRegister());
Alexandre Ramesfb4e5fa2014-11-06 12:41:16 +00004055 locations->SetOut(Location::RequiresRegister(), Location::kNoOutputOverlap);
Alexandre Rames5319def2014-10-23 10:03:10 +01004056}
4057
4058void InstructionCodeGeneratorARM64::VisitNot(HNot* instruction) {
Nicolas Geoffrayd8ef2e92015-02-24 16:02:06 +00004059 switch (instruction->GetResultType()) {
Alexandre Rames5319def2014-10-23 10:03:10 +01004060 case Primitive::kPrimInt:
Alexandre Rames5319def2014-10-23 10:03:10 +01004061 case Primitive::kPrimLong:
Roland Levillain55dcfb52014-10-24 18:09:09 +01004062 __ Mvn(OutputRegister(instruction), InputOperandAt(instruction, 0));
Alexandre Rames5319def2014-10-23 10:03:10 +01004063 break;
4064
4065 default:
4066 LOG(FATAL) << "Unexpected type for not operation " << instruction->GetResultType();
4067 }
4068}
4069
David Brazdil66d126e2015-04-03 16:02:44 +01004070void LocationsBuilderARM64::VisitBooleanNot(HBooleanNot* instruction) {
4071 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(instruction);
4072 locations->SetInAt(0, Location::RequiresRegister());
4073 locations->SetOut(Location::RequiresRegister(), Location::kNoOutputOverlap);
4074}
4075
4076void InstructionCodeGeneratorARM64::VisitBooleanNot(HBooleanNot* instruction) {
David Brazdil66d126e2015-04-03 16:02:44 +01004077 __ Eor(OutputRegister(instruction), InputRegisterAt(instruction, 0), vixl::Operand(1));
4078}
4079
Alexandre Rames5319def2014-10-23 10:03:10 +01004080void LocationsBuilderARM64::VisitNullCheck(HNullCheck* instruction) {
David Brazdil77a48ae2015-09-15 12:34:04 +00004081 LocationSummary::CallKind call_kind = instruction->CanThrowIntoCatchBlock()
4082 ? LocationSummary::kCallOnSlowPath
4083 : LocationSummary::kNoCall;
4084 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(instruction, call_kind);
Alexandre Rames5319def2014-10-23 10:03:10 +01004085 locations->SetInAt(0, Location::RequiresRegister());
4086 if (instruction->HasUses()) {
4087 locations->SetOut(Location::SameAsFirstInput());
4088 }
4089}
4090
Calin Juravlecd6dffe2015-01-08 17:35:35 +00004091void InstructionCodeGeneratorARM64::GenerateImplicitNullCheck(HNullCheck* instruction) {
Calin Juravle77520bc2015-01-12 18:45:46 +00004092 if (codegen_->CanMoveNullCheckToUser(instruction)) {
4093 return;
4094 }
Calin Juravlecd6dffe2015-01-08 17:35:35 +00004095
Alexandre Ramesd921d642015-04-16 15:07:16 +01004096 BlockPoolsScope block_pools(GetVIXLAssembler());
4097 Location obj = instruction->GetLocations()->InAt(0);
Calin Juravlecd6dffe2015-01-08 17:35:35 +00004098 __ Ldr(wzr, HeapOperandFrom(obj, Offset(0)));
4099 codegen_->RecordPcInfo(instruction, instruction->GetDexPc());
4100}
4101
4102void InstructionCodeGeneratorARM64::GenerateExplicitNullCheck(HNullCheck* instruction) {
Alexandre Rames5319def2014-10-23 10:03:10 +01004103 SlowPathCodeARM64* slow_path = new (GetGraph()->GetArena()) NullCheckSlowPathARM64(instruction);
4104 codegen_->AddSlowPath(slow_path);
4105
4106 LocationSummary* locations = instruction->GetLocations();
4107 Location obj = locations->InAt(0);
Calin Juravle77520bc2015-01-12 18:45:46 +00004108
4109 __ Cbz(RegisterFrom(obj, instruction->InputAt(0)->GetType()), slow_path->GetEntryLabel());
Alexandre Rames5319def2014-10-23 10:03:10 +01004110}
4111
Calin Juravlecd6dffe2015-01-08 17:35:35 +00004112void InstructionCodeGeneratorARM64::VisitNullCheck(HNullCheck* instruction) {
David Brazdil77a48ae2015-09-15 12:34:04 +00004113 if (codegen_->IsImplicitNullCheckAllowed(instruction)) {
Calin Juravlecd6dffe2015-01-08 17:35:35 +00004114 GenerateImplicitNullCheck(instruction);
4115 } else {
4116 GenerateExplicitNullCheck(instruction);
4117 }
4118}
4119
Alexandre Rames67555f72014-11-18 10:55:16 +00004120void LocationsBuilderARM64::VisitOr(HOr* instruction) {
4121 HandleBinaryOp(instruction);
4122}
4123
4124void InstructionCodeGeneratorARM64::VisitOr(HOr* instruction) {
4125 HandleBinaryOp(instruction);
4126}
4127
Alexandre Rames3e69f162014-12-10 10:36:50 +00004128void LocationsBuilderARM64::VisitParallelMove(HParallelMove* instruction ATTRIBUTE_UNUSED) {
4129 LOG(FATAL) << "Unreachable";
4130}
4131
4132void InstructionCodeGeneratorARM64::VisitParallelMove(HParallelMove* instruction) {
4133 codegen_->GetMoveResolver()->EmitNativeCode(instruction);
4134}
4135
Alexandre Rames5319def2014-10-23 10:03:10 +01004136void LocationsBuilderARM64::VisitParameterValue(HParameterValue* instruction) {
4137 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(instruction);
4138 Location location = parameter_visitor_.GetNextLocation(instruction->GetType());
4139 if (location.IsStackSlot()) {
4140 location = Location::StackSlot(location.GetStackIndex() + codegen_->GetFrameSize());
4141 } else if (location.IsDoubleStackSlot()) {
4142 location = Location::DoubleStackSlot(location.GetStackIndex() + codegen_->GetFrameSize());
4143 }
4144 locations->SetOut(location);
4145}
4146
Nicolas Geoffray76b1e172015-05-27 17:18:33 +01004147void InstructionCodeGeneratorARM64::VisitParameterValue(
4148 HParameterValue* instruction ATTRIBUTE_UNUSED) {
Alexandre Rames5319def2014-10-23 10:03:10 +01004149 // Nothing to do, the parameter is already at its location.
Nicolas Geoffray76b1e172015-05-27 17:18:33 +01004150}
4151
4152void LocationsBuilderARM64::VisitCurrentMethod(HCurrentMethod* instruction) {
4153 LocationSummary* locations =
4154 new (GetGraph()->GetArena()) LocationSummary(instruction, LocationSummary::kNoCall);
Nicolas Geoffray38207af2015-06-01 15:46:22 +01004155 locations->SetOut(LocationFrom(kArtMethodRegister));
Nicolas Geoffray76b1e172015-05-27 17:18:33 +01004156}
4157
4158void InstructionCodeGeneratorARM64::VisitCurrentMethod(
4159 HCurrentMethod* instruction ATTRIBUTE_UNUSED) {
4160 // Nothing to do, the method is already at its location.
Alexandre Rames5319def2014-10-23 10:03:10 +01004161}
4162
4163void LocationsBuilderARM64::VisitPhi(HPhi* instruction) {
4164 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(instruction);
4165 for (size_t i = 0, e = instruction->InputCount(); i < e; ++i) {
4166 locations->SetInAt(i, Location::Any());
4167 }
4168 locations->SetOut(Location::Any());
4169}
4170
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01004171void InstructionCodeGeneratorARM64::VisitPhi(HPhi* instruction ATTRIBUTE_UNUSED) {
Alexandre Rames5319def2014-10-23 10:03:10 +01004172 LOG(FATAL) << "Unreachable";
4173}
4174
Serban Constantinescu02164b32014-11-13 14:05:07 +00004175void LocationsBuilderARM64::VisitRem(HRem* rem) {
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00004176 Primitive::Type type = rem->GetResultType();
Alexandre Rames542361f2015-01-29 16:57:31 +00004177 LocationSummary::CallKind call_kind =
4178 Primitive::IsFloatingPointType(type) ? LocationSummary::kCall : LocationSummary::kNoCall;
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00004179 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(rem, call_kind);
4180
4181 switch (type) {
Serban Constantinescu02164b32014-11-13 14:05:07 +00004182 case Primitive::kPrimInt:
4183 case Primitive::kPrimLong:
4184 locations->SetInAt(0, Location::RequiresRegister());
Zheng Xuc6667102015-05-15 16:08:45 +08004185 locations->SetInAt(1, Location::RegisterOrConstant(rem->InputAt(1)));
Serban Constantinescu02164b32014-11-13 14:05:07 +00004186 locations->SetOut(Location::RequiresRegister(), Location::kNoOutputOverlap);
4187 break;
4188
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00004189 case Primitive::kPrimFloat:
4190 case Primitive::kPrimDouble: {
4191 InvokeRuntimeCallingConvention calling_convention;
4192 locations->SetInAt(0, LocationFrom(calling_convention.GetFpuRegisterAt(0)));
4193 locations->SetInAt(1, LocationFrom(calling_convention.GetFpuRegisterAt(1)));
4194 locations->SetOut(calling_convention.GetReturnLocation(type));
4195
4196 break;
4197 }
4198
Serban Constantinescu02164b32014-11-13 14:05:07 +00004199 default:
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00004200 LOG(FATAL) << "Unexpected rem type " << type;
Serban Constantinescu02164b32014-11-13 14:05:07 +00004201 }
4202}
4203
4204void InstructionCodeGeneratorARM64::VisitRem(HRem* rem) {
4205 Primitive::Type type = rem->GetResultType();
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00004206
Serban Constantinescu02164b32014-11-13 14:05:07 +00004207 switch (type) {
4208 case Primitive::kPrimInt:
4209 case Primitive::kPrimLong: {
Zheng Xuc6667102015-05-15 16:08:45 +08004210 GenerateDivRemIntegral(rem);
Serban Constantinescu02164b32014-11-13 14:05:07 +00004211 break;
4212 }
4213
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00004214 case Primitive::kPrimFloat:
4215 case Primitive::kPrimDouble: {
4216 int32_t entry_offset = (type == Primitive::kPrimFloat) ? QUICK_ENTRY_POINT(pFmodf)
4217 : QUICK_ENTRY_POINT(pFmod);
Nicolas Geoffrayeeefa122015-03-13 18:52:59 +00004218 codegen_->InvokeRuntime(entry_offset, rem, rem->GetDexPc(), nullptr);
Roland Levillain888d0672015-11-23 18:53:50 +00004219 if (type == Primitive::kPrimFloat) {
4220 CheckEntrypointTypes<kQuickFmodf, float, float, float>();
4221 } else {
4222 CheckEntrypointTypes<kQuickFmod, double, double, double>();
4223 }
Serban Constantinescu02d81cc2015-01-05 16:08:49 +00004224 break;
4225 }
4226
Serban Constantinescu02164b32014-11-13 14:05:07 +00004227 default:
4228 LOG(FATAL) << "Unexpected rem type " << type;
Vladimir Marko351dddf2015-12-11 16:34:46 +00004229 UNREACHABLE();
Serban Constantinescu02164b32014-11-13 14:05:07 +00004230 }
4231}
4232
Calin Juravle27df7582015-04-17 19:12:31 +01004233void LocationsBuilderARM64::VisitMemoryBarrier(HMemoryBarrier* memory_barrier) {
4234 memory_barrier->SetLocations(nullptr);
4235}
4236
4237void InstructionCodeGeneratorARM64::VisitMemoryBarrier(HMemoryBarrier* memory_barrier) {
Roland Levillain44015862016-01-22 11:47:17 +00004238 codegen_->GenerateMemoryBarrier(memory_barrier->GetBarrierKind());
Calin Juravle27df7582015-04-17 19:12:31 +01004239}
4240
Alexandre Rames5319def2014-10-23 10:03:10 +01004241void LocationsBuilderARM64::VisitReturn(HReturn* instruction) {
4242 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(instruction);
4243 Primitive::Type return_type = instruction->InputAt(0)->GetType();
Alexandre Ramesa89086e2014-11-07 17:13:25 +00004244 locations->SetInAt(0, ARM64ReturnLocation(return_type));
Alexandre Rames5319def2014-10-23 10:03:10 +01004245}
4246
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01004247void InstructionCodeGeneratorARM64::VisitReturn(HReturn* instruction ATTRIBUTE_UNUSED) {
Alexandre Rames5319def2014-10-23 10:03:10 +01004248 codegen_->GenerateFrameExit();
Alexandre Rames5319def2014-10-23 10:03:10 +01004249}
4250
4251void LocationsBuilderARM64::VisitReturnVoid(HReturnVoid* instruction) {
4252 instruction->SetLocations(nullptr);
4253}
4254
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01004255void InstructionCodeGeneratorARM64::VisitReturnVoid(HReturnVoid* instruction ATTRIBUTE_UNUSED) {
Alexandre Rames5319def2014-10-23 10:03:10 +01004256 codegen_->GenerateFrameExit();
Alexandre Rames5319def2014-10-23 10:03:10 +01004257}
4258
Scott Wakeling40a04bf2015-12-11 09:50:36 +00004259void LocationsBuilderARM64::VisitRor(HRor* ror) {
4260 HandleBinaryOp(ror);
4261}
4262
4263void InstructionCodeGeneratorARM64::VisitRor(HRor* ror) {
4264 HandleBinaryOp(ror);
4265}
4266
Serban Constantinescu02164b32014-11-13 14:05:07 +00004267void LocationsBuilderARM64::VisitShl(HShl* shl) {
4268 HandleShift(shl);
4269}
4270
4271void InstructionCodeGeneratorARM64::VisitShl(HShl* shl) {
4272 HandleShift(shl);
4273}
4274
4275void LocationsBuilderARM64::VisitShr(HShr* shr) {
4276 HandleShift(shr);
4277}
4278
4279void InstructionCodeGeneratorARM64::VisitShr(HShr* shr) {
4280 HandleShift(shr);
4281}
4282
Alexandre Rames5319def2014-10-23 10:03:10 +01004283void LocationsBuilderARM64::VisitStoreLocal(HStoreLocal* store) {
4284 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(store);
4285 Primitive::Type field_type = store->InputAt(1)->GetType();
4286 switch (field_type) {
Alexandre Ramesa89086e2014-11-07 17:13:25 +00004287 case Primitive::kPrimNot:
Alexandre Rames5319def2014-10-23 10:03:10 +01004288 case Primitive::kPrimBoolean:
4289 case Primitive::kPrimByte:
4290 case Primitive::kPrimChar:
4291 case Primitive::kPrimShort:
4292 case Primitive::kPrimInt:
Alexandre Ramesa89086e2014-11-07 17:13:25 +00004293 case Primitive::kPrimFloat:
Alexandre Rames5319def2014-10-23 10:03:10 +01004294 locations->SetInAt(1, Location::StackSlot(codegen_->GetStackSlot(store->GetLocal())));
4295 break;
4296
4297 case Primitive::kPrimLong:
Alexandre Ramesa89086e2014-11-07 17:13:25 +00004298 case Primitive::kPrimDouble:
Alexandre Rames5319def2014-10-23 10:03:10 +01004299 locations->SetInAt(1, Location::DoubleStackSlot(codegen_->GetStackSlot(store->GetLocal())));
4300 break;
4301
4302 default:
4303 LOG(FATAL) << "Unimplemented local type " << field_type;
Vladimir Marko351dddf2015-12-11 16:34:46 +00004304 UNREACHABLE();
Alexandre Rames5319def2014-10-23 10:03:10 +01004305 }
4306}
4307
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01004308void InstructionCodeGeneratorARM64::VisitStoreLocal(HStoreLocal* store ATTRIBUTE_UNUSED) {
Alexandre Rames5319def2014-10-23 10:03:10 +01004309}
4310
4311void LocationsBuilderARM64::VisitSub(HSub* instruction) {
Alexandre Rames67555f72014-11-18 10:55:16 +00004312 HandleBinaryOp(instruction);
Alexandre Rames5319def2014-10-23 10:03:10 +01004313}
4314
4315void InstructionCodeGeneratorARM64::VisitSub(HSub* instruction) {
Alexandre Rames67555f72014-11-18 10:55:16 +00004316 HandleBinaryOp(instruction);
Alexandre Rames5319def2014-10-23 10:03:10 +01004317}
4318
Alexandre Rames67555f72014-11-18 10:55:16 +00004319void LocationsBuilderARM64::VisitStaticFieldGet(HStaticFieldGet* instruction) {
Alexandre Rames09a99962015-04-15 11:47:56 +01004320 HandleFieldGet(instruction);
Alexandre Rames67555f72014-11-18 10:55:16 +00004321}
4322
4323void InstructionCodeGeneratorARM64::VisitStaticFieldGet(HStaticFieldGet* instruction) {
Alexandre Rames09a99962015-04-15 11:47:56 +01004324 HandleFieldGet(instruction, instruction->GetFieldInfo());
Alexandre Rames67555f72014-11-18 10:55:16 +00004325}
4326
4327void LocationsBuilderARM64::VisitStaticFieldSet(HStaticFieldSet* instruction) {
Alexandre Rames09a99962015-04-15 11:47:56 +01004328 HandleFieldSet(instruction);
Alexandre Rames5319def2014-10-23 10:03:10 +01004329}
4330
Alexandre Rames67555f72014-11-18 10:55:16 +00004331void InstructionCodeGeneratorARM64::VisitStaticFieldSet(HStaticFieldSet* instruction) {
Nicolas Geoffray07276db2015-05-18 14:22:09 +01004332 HandleFieldSet(instruction, instruction->GetFieldInfo(), instruction->GetValueCanBeNull());
Alexandre Rames5319def2014-10-23 10:03:10 +01004333}
4334
Calin Juravlee460d1d2015-09-29 04:52:17 +01004335void LocationsBuilderARM64::VisitUnresolvedInstanceFieldGet(
4336 HUnresolvedInstanceFieldGet* instruction) {
4337 FieldAccessCallingConventionARM64 calling_convention;
4338 codegen_->CreateUnresolvedFieldLocationSummary(
4339 instruction, instruction->GetFieldType(), calling_convention);
4340}
4341
4342void InstructionCodeGeneratorARM64::VisitUnresolvedInstanceFieldGet(
4343 HUnresolvedInstanceFieldGet* instruction) {
4344 FieldAccessCallingConventionARM64 calling_convention;
4345 codegen_->GenerateUnresolvedFieldAccess(instruction,
4346 instruction->GetFieldType(),
4347 instruction->GetFieldIndex(),
4348 instruction->GetDexPc(),
4349 calling_convention);
4350}
4351
4352void LocationsBuilderARM64::VisitUnresolvedInstanceFieldSet(
4353 HUnresolvedInstanceFieldSet* instruction) {
4354 FieldAccessCallingConventionARM64 calling_convention;
4355 codegen_->CreateUnresolvedFieldLocationSummary(
4356 instruction, instruction->GetFieldType(), calling_convention);
4357}
4358
4359void InstructionCodeGeneratorARM64::VisitUnresolvedInstanceFieldSet(
4360 HUnresolvedInstanceFieldSet* instruction) {
4361 FieldAccessCallingConventionARM64 calling_convention;
4362 codegen_->GenerateUnresolvedFieldAccess(instruction,
4363 instruction->GetFieldType(),
4364 instruction->GetFieldIndex(),
4365 instruction->GetDexPc(),
4366 calling_convention);
4367}
4368
4369void LocationsBuilderARM64::VisitUnresolvedStaticFieldGet(
4370 HUnresolvedStaticFieldGet* instruction) {
4371 FieldAccessCallingConventionARM64 calling_convention;
4372 codegen_->CreateUnresolvedFieldLocationSummary(
4373 instruction, instruction->GetFieldType(), calling_convention);
4374}
4375
4376void InstructionCodeGeneratorARM64::VisitUnresolvedStaticFieldGet(
4377 HUnresolvedStaticFieldGet* instruction) {
4378 FieldAccessCallingConventionARM64 calling_convention;
4379 codegen_->GenerateUnresolvedFieldAccess(instruction,
4380 instruction->GetFieldType(),
4381 instruction->GetFieldIndex(),
4382 instruction->GetDexPc(),
4383 calling_convention);
4384}
4385
4386void LocationsBuilderARM64::VisitUnresolvedStaticFieldSet(
4387 HUnresolvedStaticFieldSet* instruction) {
4388 FieldAccessCallingConventionARM64 calling_convention;
4389 codegen_->CreateUnresolvedFieldLocationSummary(
4390 instruction, instruction->GetFieldType(), calling_convention);
4391}
4392
4393void InstructionCodeGeneratorARM64::VisitUnresolvedStaticFieldSet(
4394 HUnresolvedStaticFieldSet* instruction) {
4395 FieldAccessCallingConventionARM64 calling_convention;
4396 codegen_->GenerateUnresolvedFieldAccess(instruction,
4397 instruction->GetFieldType(),
4398 instruction->GetFieldIndex(),
4399 instruction->GetDexPc(),
4400 calling_convention);
4401}
4402
Alexandre Rames5319def2014-10-23 10:03:10 +01004403void LocationsBuilderARM64::VisitSuspendCheck(HSuspendCheck* instruction) {
4404 new (GetGraph()->GetArena()) LocationSummary(instruction, LocationSummary::kCallOnSlowPath);
4405}
4406
4407void InstructionCodeGeneratorARM64::VisitSuspendCheck(HSuspendCheck* instruction) {
Serban Constantinescu02164b32014-11-13 14:05:07 +00004408 HBasicBlock* block = instruction->GetBlock();
4409 if (block->GetLoopInformation() != nullptr) {
4410 DCHECK(block->GetLoopInformation()->GetSuspendCheck() == instruction);
4411 // The back edge will generate the suspend check.
4412 return;
4413 }
4414 if (block->IsEntryBlock() && instruction->GetNext()->IsGoto()) {
4415 // The goto will generate the suspend check.
4416 return;
4417 }
4418 GenerateSuspendCheck(instruction, nullptr);
Alexandre Rames5319def2014-10-23 10:03:10 +01004419}
4420
4421void LocationsBuilderARM64::VisitTemporary(HTemporary* temp) {
4422 temp->SetLocations(nullptr);
4423}
4424
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01004425void InstructionCodeGeneratorARM64::VisitTemporary(HTemporary* temp ATTRIBUTE_UNUSED) {
Alexandre Rames5319def2014-10-23 10:03:10 +01004426 // Nothing to do, this is driven by the code generator.
Alexandre Rames5319def2014-10-23 10:03:10 +01004427}
4428
Alexandre Rames67555f72014-11-18 10:55:16 +00004429void LocationsBuilderARM64::VisitThrow(HThrow* instruction) {
4430 LocationSummary* locations =
4431 new (GetGraph()->GetArena()) LocationSummary(instruction, LocationSummary::kCall);
4432 InvokeRuntimeCallingConvention calling_convention;
4433 locations->SetInAt(0, LocationFrom(calling_convention.GetRegisterAt(0)));
4434}
4435
4436void InstructionCodeGeneratorARM64::VisitThrow(HThrow* instruction) {
4437 codegen_->InvokeRuntime(
Nicolas Geoffrayeeefa122015-03-13 18:52:59 +00004438 QUICK_ENTRY_POINT(pDeliverException), instruction, instruction->GetDexPc(), nullptr);
Andreas Gampe1cc7dba2014-12-17 18:43:01 -08004439 CheckEntrypointTypes<kQuickDeliverException, void, mirror::Object*>();
Alexandre Rames67555f72014-11-18 10:55:16 +00004440}
4441
4442void LocationsBuilderARM64::VisitTypeConversion(HTypeConversion* conversion) {
4443 LocationSummary* locations =
4444 new (GetGraph()->GetArena()) LocationSummary(conversion, LocationSummary::kNoCall);
4445 Primitive::Type input_type = conversion->GetInputType();
4446 Primitive::Type result_type = conversion->GetResultType();
Nicolas Geoffray01fcc9e2014-12-01 14:16:20 +00004447 DCHECK_NE(input_type, result_type);
Alexandre Rames67555f72014-11-18 10:55:16 +00004448 if ((input_type == Primitive::kPrimNot) || (input_type == Primitive::kPrimVoid) ||
4449 (result_type == Primitive::kPrimNot) || (result_type == Primitive::kPrimVoid)) {
4450 LOG(FATAL) << "Unexpected type conversion from " << input_type << " to " << result_type;
4451 }
4452
Alexandre Rames542361f2015-01-29 16:57:31 +00004453 if (Primitive::IsFloatingPointType(input_type)) {
Alexandre Rames67555f72014-11-18 10:55:16 +00004454 locations->SetInAt(0, Location::RequiresFpuRegister());
4455 } else {
4456 locations->SetInAt(0, Location::RequiresRegister());
4457 }
4458
Alexandre Rames542361f2015-01-29 16:57:31 +00004459 if (Primitive::IsFloatingPointType(result_type)) {
Alexandre Rames67555f72014-11-18 10:55:16 +00004460 locations->SetOut(Location::RequiresFpuRegister(), Location::kNoOutputOverlap);
4461 } else {
4462 locations->SetOut(Location::RequiresRegister(), Location::kNoOutputOverlap);
4463 }
4464}
4465
4466void InstructionCodeGeneratorARM64::VisitTypeConversion(HTypeConversion* conversion) {
4467 Primitive::Type result_type = conversion->GetResultType();
4468 Primitive::Type input_type = conversion->GetInputType();
4469
4470 DCHECK_NE(input_type, result_type);
4471
Alexandre Rames542361f2015-01-29 16:57:31 +00004472 if (Primitive::IsIntegralType(result_type) && Primitive::IsIntegralType(input_type)) {
Alexandre Rames67555f72014-11-18 10:55:16 +00004473 int result_size = Primitive::ComponentSize(result_type);
4474 int input_size = Primitive::ComponentSize(input_type);
Alexandre Rames3e69f162014-12-10 10:36:50 +00004475 int min_size = std::min(result_size, input_size);
Serban Constantinescu02164b32014-11-13 14:05:07 +00004476 Register output = OutputRegister(conversion);
4477 Register source = InputRegisterAt(conversion, 0);
Alexandre Rames8626b742015-11-25 16:28:08 +00004478 if (result_type == Primitive::kPrimInt && input_type == Primitive::kPrimLong) {
Alexandre Rames4dff2fd2015-08-20 13:36:35 +01004479 // 'int' values are used directly as W registers, discarding the top
4480 // bits, so we don't need to sign-extend and can just perform a move.
4481 // We do not pass the `kDiscardForSameWReg` argument to force clearing the
4482 // top 32 bits of the target register. We theoretically could leave those
4483 // bits unchanged, but we would have to make sure that no code uses a
4484 // 32bit input value as a 64bit value assuming that the top 32 bits are
4485 // zero.
4486 __ Mov(output.W(), source.W());
Alexandre Rames8626b742015-11-25 16:28:08 +00004487 } else if (result_type == Primitive::kPrimChar ||
4488 (input_type == Primitive::kPrimChar && input_size < result_size)) {
4489 __ Ubfx(output,
4490 output.IsX() ? source.X() : source.W(),
4491 0, Primitive::ComponentSize(Primitive::kPrimChar) * kBitsPerByte);
Alexandre Rames67555f72014-11-18 10:55:16 +00004492 } else {
Alexandre Rames3e69f162014-12-10 10:36:50 +00004493 __ Sbfx(output, output.IsX() ? source.X() : source.W(), 0, min_size * kBitsPerByte);
Alexandre Rames67555f72014-11-18 10:55:16 +00004494 }
Alexandre Rames542361f2015-01-29 16:57:31 +00004495 } else if (Primitive::IsFloatingPointType(result_type) && Primitive::IsIntegralType(input_type)) {
Serban Constantinescu02164b32014-11-13 14:05:07 +00004496 __ Scvtf(OutputFPRegister(conversion), InputRegisterAt(conversion, 0));
Alexandre Rames542361f2015-01-29 16:57:31 +00004497 } else if (Primitive::IsIntegralType(result_type) && Primitive::IsFloatingPointType(input_type)) {
Serban Constantinescu02164b32014-11-13 14:05:07 +00004498 CHECK(result_type == Primitive::kPrimInt || result_type == Primitive::kPrimLong);
4499 __ Fcvtzs(OutputRegister(conversion), InputFPRegisterAt(conversion, 0));
Alexandre Rames542361f2015-01-29 16:57:31 +00004500 } else if (Primitive::IsFloatingPointType(result_type) &&
4501 Primitive::IsFloatingPointType(input_type)) {
Serban Constantinescu02164b32014-11-13 14:05:07 +00004502 __ Fcvt(OutputFPRegister(conversion), InputFPRegisterAt(conversion, 0));
4503 } else {
4504 LOG(FATAL) << "Unexpected or unimplemented type conversion from " << input_type
4505 << " to " << result_type;
Alexandre Rames67555f72014-11-18 10:55:16 +00004506 }
Serban Constantinescu02164b32014-11-13 14:05:07 +00004507}
Alexandre Rames67555f72014-11-18 10:55:16 +00004508
Serban Constantinescu02164b32014-11-13 14:05:07 +00004509void LocationsBuilderARM64::VisitUShr(HUShr* ushr) {
4510 HandleShift(ushr);
4511}
4512
4513void InstructionCodeGeneratorARM64::VisitUShr(HUShr* ushr) {
4514 HandleShift(ushr);
Alexandre Rames67555f72014-11-18 10:55:16 +00004515}
4516
4517void LocationsBuilderARM64::VisitXor(HXor* instruction) {
4518 HandleBinaryOp(instruction);
4519}
4520
4521void InstructionCodeGeneratorARM64::VisitXor(HXor* instruction) {
4522 HandleBinaryOp(instruction);
4523}
4524
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01004525void LocationsBuilderARM64::VisitBoundType(HBoundType* instruction ATTRIBUTE_UNUSED) {
Calin Juravleb1498f62015-02-16 13:13:29 +00004526 // Nothing to do, this should be removed during prepare for register allocator.
Calin Juravleb1498f62015-02-16 13:13:29 +00004527 LOG(FATAL) << "Unreachable";
4528}
4529
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01004530void InstructionCodeGeneratorARM64::VisitBoundType(HBoundType* instruction ATTRIBUTE_UNUSED) {
Calin Juravleb1498f62015-02-16 13:13:29 +00004531 // Nothing to do, this should be removed during prepare for register allocator.
Calin Juravleb1498f62015-02-16 13:13:29 +00004532 LOG(FATAL) << "Unreachable";
4533}
4534
Mark Mendellfe57faa2015-09-18 09:26:15 -04004535// Simple implementation of packed switch - generate cascaded compare/jumps.
4536void LocationsBuilderARM64::VisitPackedSwitch(HPackedSwitch* switch_instr) {
4537 LocationSummary* locations =
4538 new (GetGraph()->GetArena()) LocationSummary(switch_instr, LocationSummary::kNoCall);
4539 locations->SetInAt(0, Location::RequiresRegister());
4540}
4541
4542void InstructionCodeGeneratorARM64::VisitPackedSwitch(HPackedSwitch* switch_instr) {
4543 int32_t lower_bound = switch_instr->GetStartValue();
Zheng Xu3927c8b2015-11-18 17:46:25 +08004544 uint32_t num_entries = switch_instr->GetNumEntries();
Mark Mendellfe57faa2015-09-18 09:26:15 -04004545 Register value_reg = InputRegisterAt(switch_instr, 0);
4546 HBasicBlock* default_block = switch_instr->GetDefaultBlock();
4547
Zheng Xu3927c8b2015-11-18 17:46:25 +08004548 // Roughly set 16 as max average assemblies generated per HIR in a graph.
4549 static constexpr int32_t kMaxExpectedSizePerHInstruction = 16 * vixl::kInstructionSize;
4550 // ADR has a limited range(+/-1MB), so we set a threshold for the number of HIRs in the graph to
4551 // make sure we don't emit it if the target may run out of range.
4552 // TODO: Instead of emitting all jump tables at the end of the code, we could keep track of ADR
4553 // ranges and emit the tables only as required.
4554 static constexpr int32_t kJumpTableInstructionThreshold = 1* MB / kMaxExpectedSizePerHInstruction;
Mark Mendellfe57faa2015-09-18 09:26:15 -04004555
Vladimir Markof3e0ee22015-12-17 15:23:13 +00004556 if (num_entries <= kPackedSwitchCompareJumpThreshold ||
Zheng Xu3927c8b2015-11-18 17:46:25 +08004557 // Current instruction id is an upper bound of the number of HIRs in the graph.
4558 GetGraph()->GetCurrentInstructionId() > kJumpTableInstructionThreshold) {
4559 // Create a series of compare/jumps.
Vladimir Markof3e0ee22015-12-17 15:23:13 +00004560 UseScratchRegisterScope temps(codegen_->GetVIXLAssembler());
4561 Register temp = temps.AcquireW();
4562 __ Subs(temp, value_reg, Operand(lower_bound));
4563
Zheng Xu3927c8b2015-11-18 17:46:25 +08004564 const ArenaVector<HBasicBlock*>& successors = switch_instr->GetBlock()->GetSuccessors();
Vladimir Markof3e0ee22015-12-17 15:23:13 +00004565 // Jump to successors[0] if value == lower_bound.
4566 __ B(eq, codegen_->GetLabelOf(successors[0]));
4567 int32_t last_index = 0;
4568 for (; num_entries - last_index > 2; last_index += 2) {
4569 __ Subs(temp, temp, Operand(2));
4570 // Jump to successors[last_index + 1] if value < case_value[last_index + 2].
4571 __ B(lo, codegen_->GetLabelOf(successors[last_index + 1]));
4572 // Jump to successors[last_index + 2] if value == case_value[last_index + 2].
4573 __ B(eq, codegen_->GetLabelOf(successors[last_index + 2]));
4574 }
4575 if (num_entries - last_index == 2) {
4576 // The last missing case_value.
4577 __ Cmp(temp, Operand(1));
4578 __ B(eq, codegen_->GetLabelOf(successors[last_index + 1]));
Zheng Xu3927c8b2015-11-18 17:46:25 +08004579 }
4580
4581 // And the default for any other value.
4582 if (!codegen_->GoesToNextBlock(switch_instr->GetBlock(), default_block)) {
4583 __ B(codegen_->GetLabelOf(default_block));
4584 }
4585 } else {
4586 JumpTableARM64* jump_table = new (GetGraph()->GetArena()) JumpTableARM64(switch_instr);
4587 codegen_->AddJumpTable(jump_table);
4588
4589 UseScratchRegisterScope temps(codegen_->GetVIXLAssembler());
4590
4591 // Below instructions should use at most one blocked register. Since there are two blocked
4592 // registers, we are free to block one.
4593 Register temp_w = temps.AcquireW();
4594 Register index;
4595 // Remove the bias.
4596 if (lower_bound != 0) {
4597 index = temp_w;
4598 __ Sub(index, value_reg, Operand(lower_bound));
4599 } else {
4600 index = value_reg;
4601 }
4602
4603 // Jump to default block if index is out of the range.
4604 __ Cmp(index, Operand(num_entries));
4605 __ B(hs, codegen_->GetLabelOf(default_block));
4606
4607 // In current VIXL implementation, it won't require any blocked registers to encode the
4608 // immediate value for Adr. So we are free to use both VIXL blocked registers to reduce the
4609 // register pressure.
4610 Register table_base = temps.AcquireX();
4611 // Load jump offset from the table.
4612 __ Adr(table_base, jump_table->GetTableStartLabel());
4613 Register jump_offset = temp_w;
4614 __ Ldr(jump_offset, MemOperand(table_base, index, UXTW, 2));
4615
4616 // Jump to target block by branching to table_base(pc related) + offset.
4617 Register target_address = table_base;
4618 __ Add(target_address, table_base, Operand(jump_offset, SXTW));
4619 __ Br(target_address);
Mark Mendellfe57faa2015-09-18 09:26:15 -04004620 }
4621}
4622
Roland Levillain44015862016-01-22 11:47:17 +00004623void InstructionCodeGeneratorARM64::GenerateReferenceLoadOneRegister(HInstruction* instruction,
4624 Location out,
4625 uint32_t offset,
4626 Location maybe_temp) {
4627 Primitive::Type type = Primitive::kPrimNot;
4628 Register out_reg = RegisterFrom(out, type);
4629 if (kEmitCompilerReadBarrier) {
4630 Register temp_reg = RegisterFrom(maybe_temp, type);
4631 if (kUseBakerReadBarrier) {
4632 // Load with fast path based Baker's read barrier.
4633 // /* HeapReference<Object> */ out = *(out + offset)
4634 codegen_->GenerateFieldLoadWithBakerReadBarrier(instruction,
4635 out,
4636 out_reg,
4637 offset,
4638 temp_reg,
4639 /* needs_null_check */ false,
4640 /* use_load_acquire */ false);
4641 } else {
4642 // Load with slow path based read barrier.
4643 // Save the value of `out` into `maybe_temp` before overwriting it
4644 // in the following move operation, as we will need it for the
4645 // read barrier below.
4646 __ Mov(temp_reg, out_reg);
4647 // /* HeapReference<Object> */ out = *(out + offset)
4648 __ Ldr(out_reg, HeapOperand(out_reg, offset));
4649 codegen_->GenerateReadBarrierSlow(instruction, out, out, maybe_temp, offset);
4650 }
4651 } else {
4652 // Plain load with no read barrier.
4653 // /* HeapReference<Object> */ out = *(out + offset)
4654 __ Ldr(out_reg, HeapOperand(out_reg, offset));
4655 GetAssembler()->MaybeUnpoisonHeapReference(out_reg);
4656 }
4657}
4658
4659void InstructionCodeGeneratorARM64::GenerateReferenceLoadTwoRegisters(HInstruction* instruction,
4660 Location out,
4661 Location obj,
4662 uint32_t offset,
4663 Location maybe_temp) {
4664 Primitive::Type type = Primitive::kPrimNot;
4665 Register out_reg = RegisterFrom(out, type);
4666 Register obj_reg = RegisterFrom(obj, type);
4667 if (kEmitCompilerReadBarrier) {
4668 if (kUseBakerReadBarrier) {
4669 // Load with fast path based Baker's read barrier.
4670 Register temp_reg = RegisterFrom(maybe_temp, type);
4671 // /* HeapReference<Object> */ out = *(obj + offset)
4672 codegen_->GenerateFieldLoadWithBakerReadBarrier(instruction,
4673 out,
4674 obj_reg,
4675 offset,
4676 temp_reg,
4677 /* needs_null_check */ false,
4678 /* use_load_acquire */ false);
4679 } else {
4680 // Load with slow path based read barrier.
4681 // /* HeapReference<Object> */ out = *(obj + offset)
4682 __ Ldr(out_reg, HeapOperand(obj_reg, offset));
4683 codegen_->GenerateReadBarrierSlow(instruction, out, out, obj, offset);
4684 }
4685 } else {
4686 // Plain load with no read barrier.
4687 // /* HeapReference<Object> */ out = *(obj + offset)
4688 __ Ldr(out_reg, HeapOperand(obj_reg, offset));
4689 GetAssembler()->MaybeUnpoisonHeapReference(out_reg);
4690 }
4691}
4692
4693void InstructionCodeGeneratorARM64::GenerateGcRootFieldLoad(HInstruction* instruction,
4694 Location root,
4695 vixl::Register obj,
4696 uint32_t offset) {
4697 Register root_reg = RegisterFrom(root, Primitive::kPrimNot);
4698 if (kEmitCompilerReadBarrier) {
4699 if (kUseBakerReadBarrier) {
4700 // Fast path implementation of art::ReadBarrier::BarrierForRoot when
4701 // Baker's read barrier are used:
4702 //
4703 // root = obj.field;
4704 // if (Thread::Current()->GetIsGcMarking()) {
4705 // root = ReadBarrier::Mark(root)
4706 // }
4707
4708 // /* GcRoot<mirror::Object> */ root = *(obj + offset)
4709 __ Ldr(root_reg, MemOperand(obj, offset));
4710 static_assert(
4711 sizeof(mirror::CompressedReference<mirror::Object>) == sizeof(GcRoot<mirror::Object>),
4712 "art::mirror::CompressedReference<mirror::Object> and art::GcRoot<mirror::Object> "
4713 "have different sizes.");
4714 static_assert(sizeof(mirror::CompressedReference<mirror::Object>) == sizeof(int32_t),
4715 "art::mirror::CompressedReference<mirror::Object> and int32_t "
4716 "have different sizes.");
4717
4718 // Slow path used to mark the GC root `root`.
4719 SlowPathCodeARM64* slow_path =
4720 new (GetGraph()->GetArena()) ReadBarrierMarkSlowPathARM64(instruction, root, root);
4721 codegen_->AddSlowPath(slow_path);
4722
4723 MacroAssembler* masm = GetVIXLAssembler();
4724 UseScratchRegisterScope temps(masm);
4725 Register temp = temps.AcquireW();
4726 // temp = Thread::Current()->GetIsGcMarking()
4727 __ Ldr(temp, MemOperand(tr, Thread::IsGcMarkingOffset<kArm64WordSize>().Int32Value()));
4728 __ Cbnz(temp, slow_path->GetEntryLabel());
4729 __ Bind(slow_path->GetExitLabel());
4730 } else {
4731 // GC root loaded through a slow path for read barriers other
4732 // than Baker's.
4733 // /* GcRoot<mirror::Object>* */ root = obj + offset
4734 __ Add(root_reg.X(), obj.X(), offset);
4735 // /* mirror::Object* */ root = root->Read()
4736 codegen_->GenerateReadBarrierForRootSlow(instruction, root, root);
4737 }
4738 } else {
4739 // Plain GC root load with no read barrier.
4740 // /* GcRoot<mirror::Object> */ root = *(obj + offset)
4741 __ Ldr(root_reg, MemOperand(obj, offset));
4742 // Note that GC roots are not affected by heap poisoning, thus we
4743 // do not have to unpoison `root_reg` here.
4744 }
4745}
4746
4747void CodeGeneratorARM64::GenerateFieldLoadWithBakerReadBarrier(HInstruction* instruction,
4748 Location ref,
4749 vixl::Register obj,
4750 uint32_t offset,
4751 Register temp,
4752 bool needs_null_check,
4753 bool use_load_acquire) {
4754 DCHECK(kEmitCompilerReadBarrier);
4755 DCHECK(kUseBakerReadBarrier);
4756
4757 // /* HeapReference<Object> */ ref = *(obj + offset)
4758 Location no_index = Location::NoLocation();
4759 GenerateReferenceLoadWithBakerReadBarrier(
4760 instruction, ref, obj, offset, no_index, temp, needs_null_check, use_load_acquire);
4761}
4762
4763void CodeGeneratorARM64::GenerateArrayLoadWithBakerReadBarrier(HInstruction* instruction,
4764 Location ref,
4765 vixl::Register obj,
4766 uint32_t data_offset,
4767 Location index,
4768 Register temp,
4769 bool needs_null_check) {
4770 DCHECK(kEmitCompilerReadBarrier);
4771 DCHECK(kUseBakerReadBarrier);
4772
4773 // Array cells are never volatile variables, therefore array loads
4774 // never use Load-Acquire instructions on ARM64.
4775 const bool use_load_acquire = false;
4776
4777 // /* HeapReference<Object> */ ref =
4778 // *(obj + data_offset + index * sizeof(HeapReference<Object>))
4779 GenerateReferenceLoadWithBakerReadBarrier(
4780 instruction, ref, obj, data_offset, index, temp, needs_null_check, use_load_acquire);
4781}
4782
4783void CodeGeneratorARM64::GenerateReferenceLoadWithBakerReadBarrier(HInstruction* instruction,
4784 Location ref,
4785 vixl::Register obj,
4786 uint32_t offset,
4787 Location index,
4788 Register temp,
4789 bool needs_null_check,
4790 bool use_load_acquire) {
4791 DCHECK(kEmitCompilerReadBarrier);
4792 DCHECK(kUseBakerReadBarrier);
4793 // If `index` is a valid location, then we are emitting an array
4794 // load, so we shouldn't be using a Load Acquire instruction.
4795 // In other words: `index.IsValid()` => `!use_load_acquire`.
4796 DCHECK(!index.IsValid() || !use_load_acquire);
4797
4798 MacroAssembler* masm = GetVIXLAssembler();
4799 UseScratchRegisterScope temps(masm);
4800
4801 // In slow path based read barriers, the read barrier call is
4802 // inserted after the original load. However, in fast path based
4803 // Baker's read barriers, we need to perform the load of
4804 // mirror::Object::monitor_ *before* the original reference load.
4805 // This load-load ordering is required by the read barrier.
4806 // The fast path/slow path (for Baker's algorithm) should look like:
4807 //
4808 // uint32_t rb_state = Lockword(obj->monitor_).ReadBarrierState();
4809 // lfence; // Load fence or artificial data dependency to prevent load-load reordering
4810 // HeapReference<Object> ref = *src; // Original reference load.
4811 // bool is_gray = (rb_state == ReadBarrier::gray_ptr_);
4812 // if (is_gray) {
4813 // ref = ReadBarrier::Mark(ref); // Performed by runtime entrypoint slow path.
4814 // }
4815 //
4816 // Note: the original implementation in ReadBarrier::Barrier is
4817 // slightly more complex as it performs additional checks that we do
4818 // not do here for performance reasons.
4819
4820 Primitive::Type type = Primitive::kPrimNot;
4821 Register ref_reg = RegisterFrom(ref, type);
4822 DCHECK(obj.IsW());
4823 uint32_t monitor_offset = mirror::Object::MonitorOffset().Int32Value();
4824
4825 // /* int32_t */ monitor = obj->monitor_
4826 __ Ldr(temp, HeapOperand(obj, monitor_offset));
4827 if (needs_null_check) {
4828 MaybeRecordImplicitNullCheck(instruction);
4829 }
4830 // /* LockWord */ lock_word = LockWord(monitor)
4831 static_assert(sizeof(LockWord) == sizeof(int32_t),
4832 "art::LockWord and int32_t have different sizes.");
4833 // /* uint32_t */ rb_state = lock_word.ReadBarrierState()
4834 __ Lsr(temp, temp, LockWord::kReadBarrierStateShift);
4835 __ And(temp, temp, Operand(LockWord::kReadBarrierStateMask));
4836 static_assert(
4837 LockWord::kReadBarrierStateMask == ReadBarrier::rb_ptr_mask_,
4838 "art::LockWord::kReadBarrierStateMask is not equal to art::ReadBarrier::rb_ptr_mask_.");
4839
4840 // Introduce a dependency on the high bits of rb_state, which shall
4841 // be all zeroes, to prevent load-load reordering, and without using
4842 // a memory barrier (which would be more expensive).
4843 // temp2 = rb_state & ~LockWord::kReadBarrierStateMask = 0
4844 Register temp2 = temps.AcquireW();
4845 __ Bic(temp2, temp, Operand(LockWord::kReadBarrierStateMask));
4846 // obj is unchanged by this operation, but its value now depends on
4847 // temp2, which depends on temp.
4848 __ Add(obj, obj, Operand(temp2));
4849 temps.Release(temp2);
4850
4851 // The actual reference load.
4852 if (index.IsValid()) {
4853 static_assert(
4854 sizeof(mirror::HeapReference<mirror::Object>) == sizeof(int32_t),
4855 "art::mirror::HeapReference<art::mirror::Object> and int32_t have different sizes.");
4856 temp2 = temps.AcquireW();
4857 // /* HeapReference<Object> */ ref =
4858 // *(obj + offset + index * sizeof(HeapReference<Object>))
4859 MemOperand source = HeapOperand(obj);
4860 if (index.IsConstant()) {
4861 uint32_t computed_offset =
4862 offset + (Int64ConstantFrom(index) << Primitive::ComponentSizeShift(type));
4863 source = HeapOperand(obj, computed_offset);
4864 } else {
4865 __ Add(temp2, obj, offset);
4866 source = HeapOperand(temp2, XRegisterFrom(index), LSL, Primitive::ComponentSizeShift(type));
4867 }
4868 Load(type, ref_reg, source);
4869 temps.Release(temp2);
4870 } else {
4871 // /* HeapReference<Object> */ ref = *(obj + offset)
4872 MemOperand field = HeapOperand(obj, offset);
4873 if (use_load_acquire) {
4874 LoadAcquire(instruction, ref_reg, field, /* needs_null_check */ false);
4875 } else {
4876 Load(type, ref_reg, field);
4877 }
4878 }
4879
4880 // Object* ref = ref_addr->AsMirrorPtr()
4881 GetAssembler()->MaybeUnpoisonHeapReference(ref_reg);
4882
4883 // Slow path used to mark the object `ref` when it is gray.
4884 SlowPathCodeARM64* slow_path =
4885 new (GetGraph()->GetArena()) ReadBarrierMarkSlowPathARM64(instruction, ref, ref);
4886 AddSlowPath(slow_path);
4887
4888 // if (rb_state == ReadBarrier::gray_ptr_)
4889 // ref = ReadBarrier::Mark(ref);
4890 __ Cmp(temp, ReadBarrier::gray_ptr_);
4891 __ B(eq, slow_path->GetEntryLabel());
4892 __ Bind(slow_path->GetExitLabel());
4893}
4894
4895void CodeGeneratorARM64::GenerateReadBarrierSlow(HInstruction* instruction,
4896 Location out,
4897 Location ref,
4898 Location obj,
4899 uint32_t offset,
4900 Location index) {
Roland Levillain22ccc3a2015-11-24 13:10:05 +00004901 DCHECK(kEmitCompilerReadBarrier);
4902
Roland Levillain44015862016-01-22 11:47:17 +00004903 // Insert a slow path based read barrier *after* the reference load.
4904 //
Roland Levillain22ccc3a2015-11-24 13:10:05 +00004905 // If heap poisoning is enabled, the unpoisoning of the loaded
4906 // reference will be carried out by the runtime within the slow
4907 // path.
4908 //
4909 // Note that `ref` currently does not get unpoisoned (when heap
4910 // poisoning is enabled), which is alright as the `ref` argument is
4911 // not used by the artReadBarrierSlow entry point.
4912 //
4913 // TODO: Unpoison `ref` when it is used by artReadBarrierSlow.
4914 SlowPathCodeARM64* slow_path = new (GetGraph()->GetArena())
4915 ReadBarrierForHeapReferenceSlowPathARM64(instruction, out, ref, obj, offset, index);
4916 AddSlowPath(slow_path);
4917
Roland Levillain22ccc3a2015-11-24 13:10:05 +00004918 __ B(slow_path->GetEntryLabel());
4919 __ Bind(slow_path->GetExitLabel());
4920}
4921
Roland Levillain44015862016-01-22 11:47:17 +00004922void CodeGeneratorARM64::MaybeGenerateReadBarrierSlow(HInstruction* instruction,
4923 Location out,
4924 Location ref,
4925 Location obj,
4926 uint32_t offset,
4927 Location index) {
Roland Levillain22ccc3a2015-11-24 13:10:05 +00004928 if (kEmitCompilerReadBarrier) {
Roland Levillain44015862016-01-22 11:47:17 +00004929 // Baker's read barriers shall be handled by the fast path
4930 // (CodeGeneratorARM64::GenerateReferenceLoadWithBakerReadBarrier).
4931 DCHECK(!kUseBakerReadBarrier);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00004932 // If heap poisoning is enabled, unpoisoning will be taken care of
4933 // by the runtime within the slow path.
Roland Levillain44015862016-01-22 11:47:17 +00004934 GenerateReadBarrierSlow(instruction, out, ref, obj, offset, index);
Roland Levillain22ccc3a2015-11-24 13:10:05 +00004935 } else if (kPoisonHeapReferences) {
4936 GetAssembler()->UnpoisonHeapReference(WRegisterFrom(out));
4937 }
4938}
4939
Roland Levillain44015862016-01-22 11:47:17 +00004940void CodeGeneratorARM64::GenerateReadBarrierForRootSlow(HInstruction* instruction,
4941 Location out,
4942 Location root) {
Roland Levillain22ccc3a2015-11-24 13:10:05 +00004943 DCHECK(kEmitCompilerReadBarrier);
4944
Roland Levillain44015862016-01-22 11:47:17 +00004945 // Insert a slow path based read barrier *after* the GC root load.
4946 //
Roland Levillain22ccc3a2015-11-24 13:10:05 +00004947 // Note that GC roots are not affected by heap poisoning, so we do
4948 // not need to do anything special for this here.
4949 SlowPathCodeARM64* slow_path =
4950 new (GetGraph()->GetArena()) ReadBarrierForRootSlowPathARM64(instruction, out, root);
4951 AddSlowPath(slow_path);
4952
Roland Levillain22ccc3a2015-11-24 13:10:05 +00004953 __ B(slow_path->GetEntryLabel());
4954 __ Bind(slow_path->GetExitLabel());
4955}
4956
Alexandre Rames67555f72014-11-18 10:55:16 +00004957#undef __
4958#undef QUICK_ENTRY_POINT
4959
Alexandre Rames5319def2014-10-23 10:03:10 +01004960} // namespace arm64
4961} // namespace art