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Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +00001/*
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_x86.h"
Nicolas Geoffrayf6e206c2014-08-07 20:25:41 +010018
Mathieu Chartiere401d142015-04-22 13:56:20 -070019#include "art_method.h"
Guillaume Sanchez0f88e872015-03-30 17:55:45 +010020#include "code_generator_utils.h"
Vladimir Marko58155012015-08-19 12:49:41 +000021#include "compiled_method.h"
Nicolas Geoffrayf6e206c2014-08-07 20:25:41 +010022#include "entrypoints/quick/quick_entrypoints.h"
Nicolas Geoffraycb1b00a2015-01-28 14:50:01 +000023#include "entrypoints/quick/quick_entrypoints_enum.h"
Nicolas Geoffray1a43dd72014-07-17 15:15:34 +010024#include "gc/accounting/card_table.h"
Mark Mendell09ed1a32015-03-25 08:30:06 -040025#include "intrinsics.h"
26#include "intrinsics_x86.h"
Ian Rogers7e70b002014-10-08 11:47:24 -070027#include "mirror/array-inl.h"
Mathieu Chartiere401d142015-04-22 13:56:20 -070028#include "mirror/class-inl.h"
Vladimir Marko0f7dca42015-11-02 14:36:43 +000029#include "pc_relative_fixups_x86.h"
Nicolas Geoffrayf6e206c2014-08-07 20:25:41 +010030#include "thread.h"
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +000031#include "utils/assembler.h"
Nicolas Geoffrayf12feb82014-07-17 18:32:41 +010032#include "utils/stack_checks.h"
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +000033#include "utils/x86/assembler_x86.h"
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +010034#include "utils/x86/managed_register_x86.h"
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +000035
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +000036namespace art {
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +010037
Roland Levillain0d5a2812015-11-13 10:07:31 +000038template<class MirrorType>
39class GcRoot;
40
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +000041namespace x86 {
42
Nicolas Geoffrayf12feb82014-07-17 18:32:41 +010043static constexpr int kCurrentMethodStackOffset = 0;
Nicolas Geoffray76b1e172015-05-27 17:18:33 +010044static constexpr Register kMethodRegisterArgument = EAX;
Mark Mendell5f874182015-03-04 15:42:45 -050045static constexpr Register kCoreCalleeSaves[] = { EBP, ESI, EDI };
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +010046
Mark Mendell24f2dfa2015-01-14 19:51:45 -050047static constexpr int kC2ConditionMask = 0x400;
48
Nicolas Geoffrayd97dc402015-01-22 13:50:01 +000049static constexpr int kFakeReturnRegister = Register(8);
Nicolas Geoffrayaf07bc12014-11-12 18:08:09 +000050
Roland Levillain62a46b22015-06-01 18:24:13 +010051#define __ down_cast<X86Assembler*>(codegen->GetAssembler())->
Calin Juravle175dc732015-08-25 15:42:32 +010052#define QUICK_ENTRY_POINT(x) QUICK_ENTRYPOINT_OFFSET(kX86WordSize, x).Int32Value()
Nicolas Geoffraye5038322014-07-04 09:41:32 +010053
Andreas Gampe85b62f22015-09-09 13:15:38 -070054class NullCheckSlowPathX86 : public SlowPathCode {
Nicolas Geoffraye5038322014-07-04 09:41:32 +010055 public:
Nicolas Geoffray39468442014-09-02 15:17:15 +010056 explicit NullCheckSlowPathX86(HNullCheck* instruction) : instruction_(instruction) {}
Nicolas Geoffraye5038322014-07-04 09:41:32 +010057
Alexandre Rames2ed20af2015-03-06 13:55:35 +000058 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
Alexandre Rames8158f282015-08-07 10:26:17 +010059 CodeGeneratorX86* x86_codegen = down_cast<CodeGeneratorX86*>(codegen);
Nicolas Geoffraye5038322014-07-04 09:41:32 +010060 __ Bind(GetEntryLabel());
David Brazdil77a48ae2015-09-15 12:34:04 +000061 if (instruction_->CanThrowIntoCatchBlock()) {
62 // Live registers will be restored in the catch block if caught.
63 SaveLiveRegisters(codegen, instruction_->GetLocations());
64 }
Alexandre Rames8158f282015-08-07 10:26:17 +010065 x86_codegen->InvokeRuntime(QUICK_ENTRY_POINT(pThrowNullPointer),
66 instruction_,
67 instruction_->GetDexPc(),
68 this);
Roland Levillain888d0672015-11-23 18:53:50 +000069 CheckEntrypointTypes<kQuickThrowNullPointer, void, void>();
Nicolas Geoffraye5038322014-07-04 09:41:32 +010070 }
71
Alexandre Rames8158f282015-08-07 10:26:17 +010072 bool IsFatal() const OVERRIDE { return true; }
73
Alexandre Rames9931f312015-06-19 14:47:01 +010074 const char* GetDescription() const OVERRIDE { return "NullCheckSlowPathX86"; }
75
Nicolas Geoffraye5038322014-07-04 09:41:32 +010076 private:
Nicolas Geoffray39468442014-09-02 15:17:15 +010077 HNullCheck* const instruction_;
Nicolas Geoffraye5038322014-07-04 09:41:32 +010078 DISALLOW_COPY_AND_ASSIGN(NullCheckSlowPathX86);
79};
80
Andreas Gampe85b62f22015-09-09 13:15:38 -070081class DivZeroCheckSlowPathX86 : public SlowPathCode {
Calin Juravled0d48522014-11-04 16:40:20 +000082 public:
83 explicit DivZeroCheckSlowPathX86(HDivZeroCheck* instruction) : instruction_(instruction) {}
84
Alexandre Rames2ed20af2015-03-06 13:55:35 +000085 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
Alexandre Rames8158f282015-08-07 10:26:17 +010086 CodeGeneratorX86* x86_codegen = down_cast<CodeGeneratorX86*>(codegen);
Calin Juravled0d48522014-11-04 16:40:20 +000087 __ Bind(GetEntryLabel());
David Brazdil77a48ae2015-09-15 12:34:04 +000088 if (instruction_->CanThrowIntoCatchBlock()) {
89 // Live registers will be restored in the catch block if caught.
90 SaveLiveRegisters(codegen, instruction_->GetLocations());
91 }
Alexandre Rames8158f282015-08-07 10:26:17 +010092 x86_codegen->InvokeRuntime(QUICK_ENTRY_POINT(pThrowDivZero),
93 instruction_,
94 instruction_->GetDexPc(),
95 this);
Roland Levillain888d0672015-11-23 18:53:50 +000096 CheckEntrypointTypes<kQuickThrowDivZero, void, void>();
Calin Juravled0d48522014-11-04 16:40:20 +000097 }
98
Alexandre Rames8158f282015-08-07 10:26:17 +010099 bool IsFatal() const OVERRIDE { return true; }
100
Alexandre Rames9931f312015-06-19 14:47:01 +0100101 const char* GetDescription() const OVERRIDE { return "DivZeroCheckSlowPathX86"; }
102
Calin Juravled0d48522014-11-04 16:40:20 +0000103 private:
104 HDivZeroCheck* const instruction_;
105 DISALLOW_COPY_AND_ASSIGN(DivZeroCheckSlowPathX86);
106};
107
Andreas Gampe85b62f22015-09-09 13:15:38 -0700108class DivRemMinusOneSlowPathX86 : public SlowPathCode {
Calin Juravled0d48522014-11-04 16:40:20 +0000109 public:
Roland Levillain3887c462015-08-12 18:15:42 +0100110 DivRemMinusOneSlowPathX86(Register reg, bool is_div) : reg_(reg), is_div_(is_div) {}
Calin Juravled0d48522014-11-04 16:40:20 +0000111
Alexandre Rames2ed20af2015-03-06 13:55:35 +0000112 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
Calin Juravled0d48522014-11-04 16:40:20 +0000113 __ Bind(GetEntryLabel());
Calin Juravlebacfec32014-11-14 15:54:36 +0000114 if (is_div_) {
115 __ negl(reg_);
116 } else {
117 __ movl(reg_, Immediate(0));
118 }
Calin Juravled0d48522014-11-04 16:40:20 +0000119 __ jmp(GetExitLabel());
120 }
121
Alexandre Rames9931f312015-06-19 14:47:01 +0100122 const char* GetDescription() const OVERRIDE { return "DivRemMinusOneSlowPathX86"; }
123
Calin Juravled0d48522014-11-04 16:40:20 +0000124 private:
125 Register reg_;
Calin Juravlebacfec32014-11-14 15:54:36 +0000126 bool is_div_;
127 DISALLOW_COPY_AND_ASSIGN(DivRemMinusOneSlowPathX86);
Calin Juravled0d48522014-11-04 16:40:20 +0000128};
129
Andreas Gampe85b62f22015-09-09 13:15:38 -0700130class BoundsCheckSlowPathX86 : public SlowPathCode {
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +0100131 public:
Serban Constantinescu5a6cc492015-08-13 15:20:25 +0100132 explicit BoundsCheckSlowPathX86(HBoundsCheck* instruction) : instruction_(instruction) {}
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +0100133
Alexandre Rames2ed20af2015-03-06 13:55:35 +0000134 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
Serban Constantinescu5a6cc492015-08-13 15:20:25 +0100135 LocationSummary* locations = instruction_->GetLocations();
Nicolas Geoffray92a73ae2014-10-16 11:12:52 +0100136 CodeGeneratorX86* x86_codegen = down_cast<CodeGeneratorX86*>(codegen);
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +0100137 __ Bind(GetEntryLabel());
Nicolas Geoffrayf0e39372014-11-12 17:50:07 +0000138 // We're moving two locations to locations that could overlap, so we need a parallel
139 // move resolver.
David Brazdil77a48ae2015-09-15 12:34:04 +0000140 if (instruction_->CanThrowIntoCatchBlock()) {
141 // Live registers will be restored in the catch block if caught.
142 SaveLiveRegisters(codegen, instruction_->GetLocations());
143 }
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +0100144 InvokeRuntimeCallingConvention calling_convention;
Nicolas Geoffrayf0e39372014-11-12 17:50:07 +0000145 x86_codegen->EmitParallelMoves(
Serban Constantinescu5a6cc492015-08-13 15:20:25 +0100146 locations->InAt(0),
Nicolas Geoffrayf0e39372014-11-12 17:50:07 +0000147 Location::RegisterLocation(calling_convention.GetRegisterAt(0)),
Nicolas Geoffray90218252015-04-15 11:56:51 +0100148 Primitive::kPrimInt,
Serban Constantinescu5a6cc492015-08-13 15:20:25 +0100149 locations->InAt(1),
Nicolas Geoffray90218252015-04-15 11:56:51 +0100150 Location::RegisterLocation(calling_convention.GetRegisterAt(1)),
151 Primitive::kPrimInt);
Alexandre Rames8158f282015-08-07 10:26:17 +0100152 x86_codegen->InvokeRuntime(QUICK_ENTRY_POINT(pThrowArrayBounds),
153 instruction_,
154 instruction_->GetDexPc(),
155 this);
Roland Levillain888d0672015-11-23 18:53:50 +0000156 CheckEntrypointTypes<kQuickThrowArrayBounds, void, int32_t, int32_t>();
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +0100157 }
158
Alexandre Rames8158f282015-08-07 10:26:17 +0100159 bool IsFatal() const OVERRIDE { return true; }
160
Alexandre Rames9931f312015-06-19 14:47:01 +0100161 const char* GetDescription() const OVERRIDE { return "BoundsCheckSlowPathX86"; }
162
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +0100163 private:
Nicolas Geoffray39468442014-09-02 15:17:15 +0100164 HBoundsCheck* const instruction_;
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +0100165
166 DISALLOW_COPY_AND_ASSIGN(BoundsCheckSlowPathX86);
167};
168
Andreas Gampe85b62f22015-09-09 13:15:38 -0700169class SuspendCheckSlowPathX86 : public SlowPathCode {
Nicolas Geoffrayfbc695f2014-09-15 15:33:30 +0000170 public:
Nicolas Geoffraya8ac9132015-03-13 16:36:36 +0000171 SuspendCheckSlowPathX86(HSuspendCheck* instruction, HBasicBlock* successor)
Nicolas Geoffray3c049742014-09-24 18:10:46 +0100172 : instruction_(instruction), successor_(successor) {}
Nicolas Geoffrayfbc695f2014-09-15 15:33:30 +0000173
Alexandre Rames2ed20af2015-03-06 13:55:35 +0000174 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
Nicolas Geoffray92a73ae2014-10-16 11:12:52 +0100175 CodeGeneratorX86* x86_codegen = down_cast<CodeGeneratorX86*>(codegen);
Nicolas Geoffrayfbc695f2014-09-15 15:33:30 +0000176 __ Bind(GetEntryLabel());
Nicolas Geoffraya8ac9132015-03-13 16:36:36 +0000177 SaveLiveRegisters(codegen, instruction_->GetLocations());
Alexandre Rames8158f282015-08-07 10:26:17 +0100178 x86_codegen->InvokeRuntime(QUICK_ENTRY_POINT(pTestSuspend),
179 instruction_,
180 instruction_->GetDexPc(),
181 this);
Roland Levillain888d0672015-11-23 18:53:50 +0000182 CheckEntrypointTypes<kQuickTestSuspend, void, void>();
Nicolas Geoffraya8ac9132015-03-13 16:36:36 +0000183 RestoreLiveRegisters(codegen, instruction_->GetLocations());
Nicolas Geoffray3c049742014-09-24 18:10:46 +0100184 if (successor_ == nullptr) {
185 __ jmp(GetReturnLabel());
186 } else {
Nicolas Geoffray92a73ae2014-10-16 11:12:52 +0100187 __ jmp(x86_codegen->GetLabelOf(successor_));
Nicolas Geoffray3c049742014-09-24 18:10:46 +0100188 }
Nicolas Geoffrayfbc695f2014-09-15 15:33:30 +0000189 }
190
Nicolas Geoffray3c049742014-09-24 18:10:46 +0100191 Label* GetReturnLabel() {
192 DCHECK(successor_ == nullptr);
193 return &return_label_;
194 }
Nicolas Geoffrayfbc695f2014-09-15 15:33:30 +0000195
Nicolas Geoffraydb216f42015-05-05 17:02:20 +0100196 HBasicBlock* GetSuccessor() const {
197 return successor_;
198 }
199
Alexandre Rames9931f312015-06-19 14:47:01 +0100200 const char* GetDescription() const OVERRIDE { return "SuspendCheckSlowPathX86"; }
201
Nicolas Geoffrayfbc695f2014-09-15 15:33:30 +0000202 private:
203 HSuspendCheck* const instruction_;
Nicolas Geoffray3c049742014-09-24 18:10:46 +0100204 HBasicBlock* const successor_;
Nicolas Geoffrayfbc695f2014-09-15 15:33:30 +0000205 Label return_label_;
206
207 DISALLOW_COPY_AND_ASSIGN(SuspendCheckSlowPathX86);
208};
209
Andreas Gampe85b62f22015-09-09 13:15:38 -0700210class LoadStringSlowPathX86 : public SlowPathCode {
Nicolas Geoffrayb5f62b32014-10-30 10:58:41 +0000211 public:
212 explicit LoadStringSlowPathX86(HLoadString* instruction) : instruction_(instruction) {}
213
Alexandre Rames2ed20af2015-03-06 13:55:35 +0000214 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
Nicolas Geoffrayb5f62b32014-10-30 10:58:41 +0000215 LocationSummary* locations = instruction_->GetLocations();
216 DCHECK(!locations->GetLiveRegisters()->ContainsCoreRegister(locations->Out().reg()));
217
218 CodeGeneratorX86* x86_codegen = down_cast<CodeGeneratorX86*>(codegen);
219 __ Bind(GetEntryLabel());
Nicolas Geoffraya8ac9132015-03-13 16:36:36 +0000220 SaveLiveRegisters(codegen, locations);
Nicolas Geoffrayb5f62b32014-10-30 10:58:41 +0000221
222 InvokeRuntimeCallingConvention calling_convention;
Andreas Gampe1cc7dba2014-12-17 18:43:01 -0800223 __ movl(calling_convention.GetRegisterAt(0), Immediate(instruction_->GetStringIndex()));
Alexandre Rames8158f282015-08-07 10:26:17 +0100224 x86_codegen->InvokeRuntime(QUICK_ENTRY_POINT(pResolveString),
225 instruction_,
226 instruction_->GetDexPc(),
227 this);
Roland Levillain888d0672015-11-23 18:53:50 +0000228 CheckEntrypointTypes<kQuickResolveString, void*, uint32_t>();
Nicolas Geoffrayb5f62b32014-10-30 10:58:41 +0000229 x86_codegen->Move32(locations->Out(), Location::RegisterLocation(EAX));
Nicolas Geoffraya8ac9132015-03-13 16:36:36 +0000230 RestoreLiveRegisters(codegen, locations);
Nicolas Geoffrayb5f62b32014-10-30 10:58:41 +0000231
232 __ jmp(GetExitLabel());
233 }
234
Alexandre Rames9931f312015-06-19 14:47:01 +0100235 const char* GetDescription() const OVERRIDE { return "LoadStringSlowPathX86"; }
236
Nicolas Geoffrayb5f62b32014-10-30 10:58:41 +0000237 private:
238 HLoadString* const instruction_;
239
240 DISALLOW_COPY_AND_ASSIGN(LoadStringSlowPathX86);
241};
242
Andreas Gampe85b62f22015-09-09 13:15:38 -0700243class LoadClassSlowPathX86 : public SlowPathCode {
Nicolas Geoffray424f6762014-11-03 14:51:25 +0000244 public:
245 LoadClassSlowPathX86(HLoadClass* cls,
246 HInstruction* at,
247 uint32_t dex_pc,
248 bool do_clinit)
249 : cls_(cls), at_(at), dex_pc_(dex_pc), do_clinit_(do_clinit) {
250 DCHECK(at->IsLoadClass() || at->IsClinitCheck());
251 }
252
Alexandre Rames2ed20af2015-03-06 13:55:35 +0000253 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
Nicolas Geoffray424f6762014-11-03 14:51:25 +0000254 LocationSummary* locations = at_->GetLocations();
255 CodeGeneratorX86* x86_codegen = down_cast<CodeGeneratorX86*>(codegen);
256 __ Bind(GetEntryLabel());
Nicolas Geoffraya8ac9132015-03-13 16:36:36 +0000257 SaveLiveRegisters(codegen, locations);
Nicolas Geoffray424f6762014-11-03 14:51:25 +0000258
259 InvokeRuntimeCallingConvention calling_convention;
260 __ movl(calling_convention.GetRegisterAt(0), Immediate(cls_->GetTypeIndex()));
Alexandre Rames8158f282015-08-07 10:26:17 +0100261 x86_codegen->InvokeRuntime(do_clinit_ ? QUICK_ENTRY_POINT(pInitializeStaticStorage)
262 : QUICK_ENTRY_POINT(pInitializeType),
263 at_, dex_pc_, this);
Roland Levillain888d0672015-11-23 18:53:50 +0000264 if (do_clinit_) {
265 CheckEntrypointTypes<kQuickInitializeStaticStorage, void*, uint32_t>();
266 } else {
267 CheckEntrypointTypes<kQuickInitializeType, void*, uint32_t>();
268 }
Nicolas Geoffray424f6762014-11-03 14:51:25 +0000269
270 // Move the class to the desired location.
Nicolas Geoffray6f5c41f2014-11-06 08:59:20 +0000271 Location out = locations->Out();
272 if (out.IsValid()) {
273 DCHECK(out.IsRegister() && !locations->GetLiveRegisters()->ContainsCoreRegister(out.reg()));
274 x86_codegen->Move32(out, Location::RegisterLocation(EAX));
Nicolas Geoffray424f6762014-11-03 14:51:25 +0000275 }
Nicolas Geoffray6f5c41f2014-11-06 08:59:20 +0000276
Nicolas Geoffraya8ac9132015-03-13 16:36:36 +0000277 RestoreLiveRegisters(codegen, locations);
Nicolas Geoffray424f6762014-11-03 14:51:25 +0000278 __ jmp(GetExitLabel());
279 }
280
Alexandre Rames9931f312015-06-19 14:47:01 +0100281 const char* GetDescription() const OVERRIDE { return "LoadClassSlowPathX86"; }
282
Nicolas Geoffray424f6762014-11-03 14:51:25 +0000283 private:
284 // The class this slow path will load.
285 HLoadClass* const cls_;
286
287 // The instruction where this slow path is happening.
288 // (Might be the load class or an initialization check).
289 HInstruction* const at_;
290
291 // The dex PC of `at_`.
292 const uint32_t dex_pc_;
293
294 // Whether to initialize the class.
295 const bool do_clinit_;
296
297 DISALLOW_COPY_AND_ASSIGN(LoadClassSlowPathX86);
298};
299
Andreas Gampe85b62f22015-09-09 13:15:38 -0700300class TypeCheckSlowPathX86 : public SlowPathCode {
Nicolas Geoffray6f5c41f2014-11-06 08:59:20 +0000301 public:
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +0000302 TypeCheckSlowPathX86(HInstruction* instruction, bool is_fatal)
303 : instruction_(instruction), is_fatal_(is_fatal) {}
Nicolas Geoffray6f5c41f2014-11-06 08:59:20 +0000304
Alexandre Rames2ed20af2015-03-06 13:55:35 +0000305 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
Nicolas Geoffray6f5c41f2014-11-06 08:59:20 +0000306 LocationSummary* locations = instruction_->GetLocations();
Serban Constantinescu5a6cc492015-08-13 15:20:25 +0100307 Location object_class = instruction_->IsCheckCast() ? locations->GetTemp(0)
308 : locations->Out();
Nicolas Geoffray57a88d42014-11-10 15:09:21 +0000309 DCHECK(instruction_->IsCheckCast()
310 || !locations->GetLiveRegisters()->ContainsCoreRegister(locations->Out().reg()));
Nicolas Geoffray6f5c41f2014-11-06 08:59:20 +0000311
312 CodeGeneratorX86* x86_codegen = down_cast<CodeGeneratorX86*>(codegen);
313 __ Bind(GetEntryLabel());
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +0000314
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +0000315 if (!is_fatal_) {
316 SaveLiveRegisters(codegen, locations);
317 }
Nicolas Geoffray6f5c41f2014-11-06 08:59:20 +0000318
319 // We're moving two locations to locations that could overlap, so we need a parallel
320 // move resolver.
321 InvokeRuntimeCallingConvention calling_convention;
Nicolas Geoffrayf0e39372014-11-12 17:50:07 +0000322 x86_codegen->EmitParallelMoves(
Serban Constantinescu5a6cc492015-08-13 15:20:25 +0100323 locations->InAt(1),
Nicolas Geoffrayf0e39372014-11-12 17:50:07 +0000324 Location::RegisterLocation(calling_convention.GetRegisterAt(0)),
Nicolas Geoffray90218252015-04-15 11:56:51 +0100325 Primitive::kPrimNot,
Serban Constantinescu5a6cc492015-08-13 15:20:25 +0100326 object_class,
Nicolas Geoffray90218252015-04-15 11:56:51 +0100327 Location::RegisterLocation(calling_convention.GetRegisterAt(1)),
328 Primitive::kPrimNot);
Nicolas Geoffray6f5c41f2014-11-06 08:59:20 +0000329
Nicolas Geoffray57a88d42014-11-10 15:09:21 +0000330 if (instruction_->IsInstanceOf()) {
Alexandre Rames8158f282015-08-07 10:26:17 +0100331 x86_codegen->InvokeRuntime(QUICK_ENTRY_POINT(pInstanceofNonTrivial),
332 instruction_,
333 instruction_->GetDexPc(),
334 this);
Roland Levillain0d5a2812015-11-13 10:07:31 +0000335 CheckEntrypointTypes<
336 kQuickInstanceofNonTrivial, uint32_t, const mirror::Class*, const mirror::Class*>();
Nicolas Geoffray57a88d42014-11-10 15:09:21 +0000337 } else {
338 DCHECK(instruction_->IsCheckCast());
Alexandre Rames8158f282015-08-07 10:26:17 +0100339 x86_codegen->InvokeRuntime(QUICK_ENTRY_POINT(pCheckCast),
340 instruction_,
341 instruction_->GetDexPc(),
342 this);
Roland Levillain0d5a2812015-11-13 10:07:31 +0000343 CheckEntrypointTypes<kQuickCheckCast, void, const mirror::Class*, const mirror::Class*>();
Nicolas Geoffray57a88d42014-11-10 15:09:21 +0000344 }
345
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +0000346 if (!is_fatal_) {
347 if (instruction_->IsInstanceOf()) {
348 x86_codegen->Move32(locations->Out(), Location::RegisterLocation(EAX));
349 }
350 RestoreLiveRegisters(codegen, locations);
Nicolas Geoffray75374372015-09-17 17:12:19 +0000351
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +0000352 __ jmp(GetExitLabel());
353 }
Nicolas Geoffray6f5c41f2014-11-06 08:59:20 +0000354 }
355
Alexandre Rames9931f312015-06-19 14:47:01 +0100356 const char* GetDescription() const OVERRIDE { return "TypeCheckSlowPathX86"; }
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +0000357 bool IsFatal() const OVERRIDE { return is_fatal_; }
Alexandre Rames9931f312015-06-19 14:47:01 +0100358
Nicolas Geoffray6f5c41f2014-11-06 08:59:20 +0000359 private:
Nicolas Geoffray57a88d42014-11-10 15:09:21 +0000360 HInstruction* const instruction_;
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +0000361 const bool is_fatal_;
Nicolas Geoffray6f5c41f2014-11-06 08:59:20 +0000362
363 DISALLOW_COPY_AND_ASSIGN(TypeCheckSlowPathX86);
364};
365
Andreas Gampe85b62f22015-09-09 13:15:38 -0700366class DeoptimizationSlowPathX86 : public SlowPathCode {
Mingyao Yangd43b3ac2015-04-01 14:03:04 -0700367 public:
Aart Bik42249c32016-01-07 15:33:50 -0800368 explicit DeoptimizationSlowPathX86(HDeoptimize* instruction)
Mingyao Yangd43b3ac2015-04-01 14:03:04 -0700369 : instruction_(instruction) {}
370
371 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
Alexandre Rames8158f282015-08-07 10:26:17 +0100372 CodeGeneratorX86* x86_codegen = down_cast<CodeGeneratorX86*>(codegen);
Mingyao Yangd43b3ac2015-04-01 14:03:04 -0700373 __ Bind(GetEntryLabel());
374 SaveLiveRegisters(codegen, instruction_->GetLocations());
Alexandre Rames8158f282015-08-07 10:26:17 +0100375 x86_codegen->InvokeRuntime(QUICK_ENTRY_POINT(pDeoptimize),
376 instruction_,
377 instruction_->GetDexPc(),
378 this);
Roland Levillain888d0672015-11-23 18:53:50 +0000379 CheckEntrypointTypes<kQuickDeoptimize, void, void>();
Mingyao Yangd43b3ac2015-04-01 14:03:04 -0700380 }
381
Alexandre Rames9931f312015-06-19 14:47:01 +0100382 const char* GetDescription() const OVERRIDE { return "DeoptimizationSlowPathX86"; }
383
Mingyao Yangd43b3ac2015-04-01 14:03:04 -0700384 private:
Aart Bik42249c32016-01-07 15:33:50 -0800385 HDeoptimize* const instruction_;
Mingyao Yangd43b3ac2015-04-01 14:03:04 -0700386 DISALLOW_COPY_AND_ASSIGN(DeoptimizationSlowPathX86);
387};
388
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +0100389class ArraySetSlowPathX86 : public SlowPathCode {
390 public:
391 explicit ArraySetSlowPathX86(HInstruction* instruction) : instruction_(instruction) {}
392
393 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
394 LocationSummary* locations = instruction_->GetLocations();
395 __ Bind(GetEntryLabel());
396 SaveLiveRegisters(codegen, locations);
397
398 InvokeRuntimeCallingConvention calling_convention;
399 HParallelMove parallel_move(codegen->GetGraph()->GetArena());
400 parallel_move.AddMove(
401 locations->InAt(0),
402 Location::RegisterLocation(calling_convention.GetRegisterAt(0)),
403 Primitive::kPrimNot,
404 nullptr);
405 parallel_move.AddMove(
406 locations->InAt(1),
407 Location::RegisterLocation(calling_convention.GetRegisterAt(1)),
408 Primitive::kPrimInt,
409 nullptr);
410 parallel_move.AddMove(
411 locations->InAt(2),
412 Location::RegisterLocation(calling_convention.GetRegisterAt(2)),
413 Primitive::kPrimNot,
414 nullptr);
415 codegen->GetMoveResolver()->EmitNativeCode(&parallel_move);
416
417 CodeGeneratorX86* x86_codegen = down_cast<CodeGeneratorX86*>(codegen);
418 x86_codegen->InvokeRuntime(QUICK_ENTRY_POINT(pAputObject),
419 instruction_,
420 instruction_->GetDexPc(),
421 this);
Roland Levillain888d0672015-11-23 18:53:50 +0000422 CheckEntrypointTypes<kQuickAputObject, void, mirror::Array*, int32_t, mirror::Object*>();
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +0100423 RestoreLiveRegisters(codegen, locations);
424 __ jmp(GetExitLabel());
425 }
426
427 const char* GetDescription() const OVERRIDE { return "ArraySetSlowPathX86"; }
428
429 private:
430 HInstruction* const instruction_;
431
432 DISALLOW_COPY_AND_ASSIGN(ArraySetSlowPathX86);
433};
434
Roland Levillain7c1559a2015-12-15 10:55:36 +0000435// Slow path marking an object during a read barrier.
436class ReadBarrierMarkSlowPathX86 : public SlowPathCode {
437 public:
438 ReadBarrierMarkSlowPathX86(HInstruction* instruction, Location out, Location obj)
439 : instruction_(instruction), out_(out), obj_(obj) {
440 DCHECK(kEmitCompilerReadBarrier);
441 }
442
443 const char* GetDescription() const OVERRIDE { return "ReadBarrierMarkSlowPathX86"; }
444
445 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
446 LocationSummary* locations = instruction_->GetLocations();
447 Register reg_out = out_.AsRegister<Register>();
448 DCHECK(locations->CanCall());
449 DCHECK(!locations->GetLiveRegisters()->ContainsCoreRegister(reg_out));
450 DCHECK(instruction_->IsInstanceFieldGet() ||
451 instruction_->IsStaticFieldGet() ||
452 instruction_->IsArrayGet() ||
453 instruction_->IsLoadClass() ||
454 instruction_->IsLoadString() ||
455 instruction_->IsInstanceOf() ||
456 instruction_->IsCheckCast())
457 << "Unexpected instruction in read barrier marking slow path: "
458 << instruction_->DebugName();
459
460 __ Bind(GetEntryLabel());
461 SaveLiveRegisters(codegen, locations);
462
463 InvokeRuntimeCallingConvention calling_convention;
464 CodeGeneratorX86* x86_codegen = down_cast<CodeGeneratorX86*>(codegen);
465 x86_codegen->Move32(Location::RegisterLocation(calling_convention.GetRegisterAt(0)), obj_);
466 x86_codegen->InvokeRuntime(QUICK_ENTRY_POINT(pReadBarrierMark),
467 instruction_,
468 instruction_->GetDexPc(),
469 this);
470 CheckEntrypointTypes<kQuickReadBarrierMark, mirror::Object*, mirror::Object*>();
471 x86_codegen->Move32(out_, Location::RegisterLocation(EAX));
472
473 RestoreLiveRegisters(codegen, locations);
474 __ jmp(GetExitLabel());
475 }
476
477 private:
478 HInstruction* const instruction_;
479 const Location out_;
480 const Location obj_;
481
482 DISALLOW_COPY_AND_ASSIGN(ReadBarrierMarkSlowPathX86);
483};
484
Roland Levillain0d5a2812015-11-13 10:07:31 +0000485// Slow path generating a read barrier for a heap reference.
486class ReadBarrierForHeapReferenceSlowPathX86 : public SlowPathCode {
487 public:
488 ReadBarrierForHeapReferenceSlowPathX86(HInstruction* instruction,
489 Location out,
490 Location ref,
491 Location obj,
492 uint32_t offset,
493 Location index)
494 : instruction_(instruction),
495 out_(out),
496 ref_(ref),
497 obj_(obj),
498 offset_(offset),
499 index_(index) {
500 DCHECK(kEmitCompilerReadBarrier);
501 // If `obj` is equal to `out` or `ref`, it means the initial object
502 // has been overwritten by (or after) the heap object reference load
503 // to be instrumented, e.g.:
504 //
505 // __ movl(out, Address(out, offset));
Roland Levillain7c1559a2015-12-15 10:55:36 +0000506 // codegen_->GenerateReadBarrierSlow(instruction, out_loc, out_loc, out_loc, offset);
Roland Levillain0d5a2812015-11-13 10:07:31 +0000507 //
508 // In that case, we have lost the information about the original
509 // object, and the emitted read barrier cannot work properly.
510 DCHECK(!obj.Equals(out)) << "obj=" << obj << " out=" << out;
511 DCHECK(!obj.Equals(ref)) << "obj=" << obj << " ref=" << ref;
512 }
513
514 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
515 CodeGeneratorX86* x86_codegen = down_cast<CodeGeneratorX86*>(codegen);
516 LocationSummary* locations = instruction_->GetLocations();
517 Register reg_out = out_.AsRegister<Register>();
518 DCHECK(locations->CanCall());
519 DCHECK(!locations->GetLiveRegisters()->ContainsCoreRegister(reg_out));
520 DCHECK(!instruction_->IsInvoke() ||
521 (instruction_->IsInvokeStaticOrDirect() &&
Roland Levillain7c1559a2015-12-15 10:55:36 +0000522 instruction_->GetLocations()->Intrinsified()))
523 << "Unexpected instruction in read barrier for heap reference slow path: "
524 << instruction_->DebugName();
Roland Levillain0d5a2812015-11-13 10:07:31 +0000525
526 __ Bind(GetEntryLabel());
527 SaveLiveRegisters(codegen, locations);
528
529 // We may have to change the index's value, but as `index_` is a
530 // constant member (like other "inputs" of this slow path),
531 // introduce a copy of it, `index`.
532 Location index = index_;
533 if (index_.IsValid()) {
534 // Handle `index_` for HArrayGet and intrinsic UnsafeGetObject.
535 if (instruction_->IsArrayGet()) {
536 // Compute the actual memory offset and store it in `index`.
537 Register index_reg = index_.AsRegister<Register>();
538 DCHECK(locations->GetLiveRegisters()->ContainsCoreRegister(index_reg));
539 if (codegen->IsCoreCalleeSaveRegister(index_reg)) {
540 // We are about to change the value of `index_reg` (see the
541 // calls to art::x86::X86Assembler::shll and
542 // art::x86::X86Assembler::AddImmediate below), but it has
543 // not been saved by the previous call to
544 // art::SlowPathCode::SaveLiveRegisters, as it is a
545 // callee-save register --
546 // art::SlowPathCode::SaveLiveRegisters does not consider
547 // callee-save registers, as it has been designed with the
548 // assumption that callee-save registers are supposed to be
549 // handled by the called function. So, as a callee-save
550 // register, `index_reg` _would_ eventually be saved onto
551 // the stack, but it would be too late: we would have
552 // changed its value earlier. Therefore, we manually save
553 // it here into another freely available register,
554 // `free_reg`, chosen of course among the caller-save
555 // registers (as a callee-save `free_reg` register would
556 // exhibit the same problem).
557 //
558 // Note we could have requested a temporary register from
559 // the register allocator instead; but we prefer not to, as
560 // this is a slow path, and we know we can find a
561 // caller-save register that is available.
562 Register free_reg = FindAvailableCallerSaveRegister(codegen);
563 __ movl(free_reg, index_reg);
564 index_reg = free_reg;
565 index = Location::RegisterLocation(index_reg);
566 } else {
567 // The initial register stored in `index_` has already been
568 // saved in the call to art::SlowPathCode::SaveLiveRegisters
569 // (as it is not a callee-save register), so we can freely
570 // use it.
571 }
572 // Shifting the index value contained in `index_reg` by the scale
573 // factor (2) cannot overflow in practice, as the runtime is
574 // unable to allocate object arrays with a size larger than
575 // 2^26 - 1 (that is, 2^28 - 4 bytes).
576 __ shll(index_reg, Immediate(TIMES_4));
577 static_assert(
578 sizeof(mirror::HeapReference<mirror::Object>) == sizeof(int32_t),
579 "art::mirror::HeapReference<art::mirror::Object> and int32_t have different sizes.");
580 __ AddImmediate(index_reg, Immediate(offset_));
581 } else {
582 DCHECK(instruction_->IsInvoke());
583 DCHECK(instruction_->GetLocations()->Intrinsified());
584 DCHECK((instruction_->AsInvoke()->GetIntrinsic() == Intrinsics::kUnsafeGetObject) ||
585 (instruction_->AsInvoke()->GetIntrinsic() == Intrinsics::kUnsafeGetObjectVolatile))
586 << instruction_->AsInvoke()->GetIntrinsic();
587 DCHECK_EQ(offset_, 0U);
588 DCHECK(index_.IsRegisterPair());
589 // UnsafeGet's offset location is a register pair, the low
590 // part contains the correct offset.
591 index = index_.ToLow();
592 }
593 }
594
595 // We're moving two or three locations to locations that could
596 // overlap, so we need a parallel move resolver.
597 InvokeRuntimeCallingConvention calling_convention;
598 HParallelMove parallel_move(codegen->GetGraph()->GetArena());
599 parallel_move.AddMove(ref_,
600 Location::RegisterLocation(calling_convention.GetRegisterAt(0)),
601 Primitive::kPrimNot,
602 nullptr);
603 parallel_move.AddMove(obj_,
604 Location::RegisterLocation(calling_convention.GetRegisterAt(1)),
605 Primitive::kPrimNot,
606 nullptr);
607 if (index.IsValid()) {
608 parallel_move.AddMove(index,
609 Location::RegisterLocation(calling_convention.GetRegisterAt(2)),
610 Primitive::kPrimInt,
611 nullptr);
612 codegen->GetMoveResolver()->EmitNativeCode(&parallel_move);
613 } else {
614 codegen->GetMoveResolver()->EmitNativeCode(&parallel_move);
615 __ movl(calling_convention.GetRegisterAt(2), Immediate(offset_));
616 }
617 x86_codegen->InvokeRuntime(QUICK_ENTRY_POINT(pReadBarrierSlow),
618 instruction_,
619 instruction_->GetDexPc(),
620 this);
621 CheckEntrypointTypes<
622 kQuickReadBarrierSlow, mirror::Object*, mirror::Object*, mirror::Object*, uint32_t>();
623 x86_codegen->Move32(out_, Location::RegisterLocation(EAX));
624
625 RestoreLiveRegisters(codegen, locations);
626 __ jmp(GetExitLabel());
627 }
628
629 const char* GetDescription() const OVERRIDE { return "ReadBarrierForHeapReferenceSlowPathX86"; }
630
631 private:
632 Register FindAvailableCallerSaveRegister(CodeGenerator* codegen) {
633 size_t ref = static_cast<int>(ref_.AsRegister<Register>());
634 size_t obj = static_cast<int>(obj_.AsRegister<Register>());
635 for (size_t i = 0, e = codegen->GetNumberOfCoreRegisters(); i < e; ++i) {
636 if (i != ref && i != obj && !codegen->IsCoreCalleeSaveRegister(i)) {
637 return static_cast<Register>(i);
638 }
639 }
640 // We shall never fail to find a free caller-save register, as
641 // there are more than two core caller-save registers on x86
642 // (meaning it is possible to find one which is different from
643 // `ref` and `obj`).
644 DCHECK_GT(codegen->GetNumberOfCoreCallerSaveRegisters(), 2u);
645 LOG(FATAL) << "Could not find a free caller-save register";
646 UNREACHABLE();
647 }
648
649 HInstruction* const instruction_;
650 const Location out_;
651 const Location ref_;
652 const Location obj_;
653 const uint32_t offset_;
654 // An additional location containing an index to an array.
655 // Only used for HArrayGet and the UnsafeGetObject &
656 // UnsafeGetObjectVolatile intrinsics.
657 const Location index_;
658
659 DISALLOW_COPY_AND_ASSIGN(ReadBarrierForHeapReferenceSlowPathX86);
660};
661
662// Slow path generating a read barrier for a GC root.
663class ReadBarrierForRootSlowPathX86 : public SlowPathCode {
664 public:
665 ReadBarrierForRootSlowPathX86(HInstruction* instruction, Location out, Location root)
Roland Levillain7c1559a2015-12-15 10:55:36 +0000666 : instruction_(instruction), out_(out), root_(root) {
667 DCHECK(kEmitCompilerReadBarrier);
668 }
Roland Levillain0d5a2812015-11-13 10:07:31 +0000669
670 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
671 LocationSummary* locations = instruction_->GetLocations();
672 Register reg_out = out_.AsRegister<Register>();
673 DCHECK(locations->CanCall());
674 DCHECK(!locations->GetLiveRegisters()->ContainsCoreRegister(reg_out));
Roland Levillain7c1559a2015-12-15 10:55:36 +0000675 DCHECK(instruction_->IsLoadClass() || instruction_->IsLoadString())
676 << "Unexpected instruction in read barrier for GC root slow path: "
677 << instruction_->DebugName();
Roland Levillain0d5a2812015-11-13 10:07:31 +0000678
679 __ Bind(GetEntryLabel());
680 SaveLiveRegisters(codegen, locations);
681
682 InvokeRuntimeCallingConvention calling_convention;
683 CodeGeneratorX86* x86_codegen = down_cast<CodeGeneratorX86*>(codegen);
684 x86_codegen->Move32(Location::RegisterLocation(calling_convention.GetRegisterAt(0)), root_);
685 x86_codegen->InvokeRuntime(QUICK_ENTRY_POINT(pReadBarrierForRootSlow),
686 instruction_,
687 instruction_->GetDexPc(),
688 this);
689 CheckEntrypointTypes<kQuickReadBarrierForRootSlow, mirror::Object*, GcRoot<mirror::Object>*>();
690 x86_codegen->Move32(out_, Location::RegisterLocation(EAX));
691
692 RestoreLiveRegisters(codegen, locations);
693 __ jmp(GetExitLabel());
694 }
695
696 const char* GetDescription() const OVERRIDE { return "ReadBarrierForRootSlowPathX86"; }
697
698 private:
699 HInstruction* const instruction_;
700 const Location out_;
701 const Location root_;
702
703 DISALLOW_COPY_AND_ASSIGN(ReadBarrierForRootSlowPathX86);
704};
705
Nicolas Geoffraye5038322014-07-04 09:41:32 +0100706#undef __
Roland Levillain62a46b22015-06-01 18:24:13 +0100707#define __ down_cast<X86Assembler*>(GetAssembler())->
Nicolas Geoffraye5038322014-07-04 09:41:32 +0100708
Aart Bike9f37602015-10-09 11:15:55 -0700709inline Condition X86Condition(IfCondition cond) {
Dave Allison20dfc792014-06-16 20:44:29 -0700710 switch (cond) {
711 case kCondEQ: return kEqual;
712 case kCondNE: return kNotEqual;
713 case kCondLT: return kLess;
714 case kCondLE: return kLessEqual;
715 case kCondGT: return kGreater;
716 case kCondGE: return kGreaterEqual;
Aart Bike9f37602015-10-09 11:15:55 -0700717 case kCondB: return kBelow;
718 case kCondBE: return kBelowEqual;
719 case kCondA: return kAbove;
720 case kCondAE: return kAboveEqual;
Dave Allison20dfc792014-06-16 20:44:29 -0700721 }
Roland Levillain4fa13f62015-07-06 18:11:54 +0100722 LOG(FATAL) << "Unreachable";
723 UNREACHABLE();
724}
725
Aart Bike9f37602015-10-09 11:15:55 -0700726// Maps signed condition to unsigned condition and FP condition to x86 name.
Roland Levillain4fa13f62015-07-06 18:11:54 +0100727inline Condition X86UnsignedOrFPCondition(IfCondition cond) {
728 switch (cond) {
729 case kCondEQ: return kEqual;
730 case kCondNE: return kNotEqual;
Aart Bike9f37602015-10-09 11:15:55 -0700731 // Signed to unsigned, and FP to x86 name.
Roland Levillain4fa13f62015-07-06 18:11:54 +0100732 case kCondLT: return kBelow;
733 case kCondLE: return kBelowEqual;
734 case kCondGT: return kAbove;
735 case kCondGE: return kAboveEqual;
Aart Bike9f37602015-10-09 11:15:55 -0700736 // Unsigned remain unchanged.
737 case kCondB: return kBelow;
738 case kCondBE: return kBelowEqual;
739 case kCondA: return kAbove;
740 case kCondAE: return kAboveEqual;
Roland Levillain4fa13f62015-07-06 18:11:54 +0100741 }
742 LOG(FATAL) << "Unreachable";
743 UNREACHABLE();
Dave Allison20dfc792014-06-16 20:44:29 -0700744}
745
Nicolas Geoffraya7062e02014-05-22 12:50:17 +0100746void CodeGeneratorX86::DumpCoreRegister(std::ostream& stream, int reg) const {
David Brazdilc74652862015-05-13 17:50:09 +0100747 stream << Register(reg);
Nicolas Geoffraya7062e02014-05-22 12:50:17 +0100748}
749
750void CodeGeneratorX86::DumpFloatingPointRegister(std::ostream& stream, int reg) const {
David Brazdilc74652862015-05-13 17:50:09 +0100751 stream << XmmRegister(reg);
Nicolas Geoffraya7062e02014-05-22 12:50:17 +0100752}
753
Nicolas Geoffray102cbed2014-10-15 18:31:05 +0100754size_t CodeGeneratorX86::SaveCoreRegister(size_t stack_index, uint32_t reg_id) {
755 __ movl(Address(ESP, stack_index), static_cast<Register>(reg_id));
756 return kX86WordSize;
Nicolas Geoffray3bca0df2014-09-19 11:01:00 +0100757}
758
Nicolas Geoffray102cbed2014-10-15 18:31:05 +0100759size_t CodeGeneratorX86::RestoreCoreRegister(size_t stack_index, uint32_t reg_id) {
760 __ movl(static_cast<Register>(reg_id), Address(ESP, stack_index));
761 return kX86WordSize;
Nicolas Geoffray3bca0df2014-09-19 11:01:00 +0100762}
763
Mark Mendell7c8d0092015-01-26 11:21:33 -0500764size_t CodeGeneratorX86::SaveFloatingPointRegister(size_t stack_index, uint32_t reg_id) {
765 __ movsd(Address(ESP, stack_index), XmmRegister(reg_id));
766 return GetFloatingPointSpillSlotSize();
767}
768
769size_t CodeGeneratorX86::RestoreFloatingPointRegister(size_t stack_index, uint32_t reg_id) {
770 __ movsd(XmmRegister(reg_id), Address(ESP, stack_index));
771 return GetFloatingPointSpillSlotSize();
772}
773
Calin Juravle175dc732015-08-25 15:42:32 +0100774void CodeGeneratorX86::InvokeRuntime(QuickEntrypointEnum entrypoint,
775 HInstruction* instruction,
776 uint32_t dex_pc,
777 SlowPathCode* slow_path) {
778 InvokeRuntime(GetThreadOffset<kX86WordSize>(entrypoint).Int32Value(),
779 instruction,
780 dex_pc,
781 slow_path);
782}
783
784void CodeGeneratorX86::InvokeRuntime(int32_t entry_point_offset,
Alexandre Rames8158f282015-08-07 10:26:17 +0100785 HInstruction* instruction,
786 uint32_t dex_pc,
787 SlowPathCode* slow_path) {
Alexandre Rames78e3ef62015-08-12 13:43:29 +0100788 ValidateInvokeRuntime(instruction, slow_path);
Calin Juravle175dc732015-08-25 15:42:32 +0100789 __ fs()->call(Address::Absolute(entry_point_offset));
Alexandre Rames8158f282015-08-07 10:26:17 +0100790 RecordPcInfo(instruction, dex_pc, slow_path);
Alexandre Rames8158f282015-08-07 10:26:17 +0100791}
792
Mark Mendellfb8d2792015-03-31 22:16:59 -0400793CodeGeneratorX86::CodeGeneratorX86(HGraph* graph,
Roland Levillain0d5a2812015-11-13 10:07:31 +0000794 const X86InstructionSetFeatures& isa_features,
795 const CompilerOptions& compiler_options,
796 OptimizingCompilerStats* stats)
Mark Mendell5f874182015-03-04 15:42:45 -0500797 : CodeGenerator(graph,
798 kNumberOfCpuRegisters,
799 kNumberOfXmmRegisters,
800 kNumberOfRegisterPairs,
801 ComputeRegisterMask(reinterpret_cast<const int*>(kCoreCalleeSaves),
802 arraysize(kCoreCalleeSaves))
803 | (1 << kFakeReturnRegister),
Serban Constantinescuecc43662015-08-13 13:33:12 +0100804 0,
805 compiler_options,
806 stats),
Vladimir Marko225b6462015-09-28 12:17:40 +0100807 block_labels_(nullptr),
Nicolas Geoffraya7aca372014-04-28 17:47:12 +0100808 location_builder_(graph, this),
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +0100809 instruction_visitor_(graph, this),
Mark Mendellfb8d2792015-03-31 22:16:59 -0400810 move_resolver_(graph->GetArena(), this),
Vladimir Marko58155012015-08-19 12:49:41 +0000811 isa_features_(isa_features),
Vladimir Marko5233f932015-09-29 19:01:15 +0100812 method_patches_(graph->GetArena()->Adapter(kArenaAllocCodeGenerator)),
Mark Mendell805b3b52015-09-18 14:10:29 -0400813 relative_call_patches_(graph->GetArena()->Adapter(kArenaAllocCodeGenerator)),
Vladimir Marko0f7dca42015-11-02 14:36:43 +0000814 pc_relative_dex_cache_patches_(graph->GetArena()->Adapter(kArenaAllocCodeGenerator)),
Mark Mendell805b3b52015-09-18 14:10:29 -0400815 fixups_to_jump_tables_(graph->GetArena()->Adapter(kArenaAllocCodeGenerator)) {
Nicolas Geoffrayd97dc402015-01-22 13:50:01 +0000816 // Use a fake return address register to mimic Quick.
817 AddAllocatedRegister(Location::RegisterLocation(kFakeReturnRegister));
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +0100818}
Nicolas Geoffraya7aca372014-04-28 17:47:12 +0100819
David Brazdil58282f42016-01-14 12:45:10 +0000820void CodeGeneratorX86::SetupBlockedRegisters() const {
Nicolas Geoffraya7aca372014-04-28 17:47:12 +0100821 // Don't allocate the dalvik style register pair passing.
Nicolas Geoffray71175b72014-10-09 22:13:55 +0100822 blocked_register_pairs_[ECX_EDX] = true;
Nicolas Geoffraya7aca372014-04-28 17:47:12 +0100823
824 // Stack register is always reserved.
Nicolas Geoffray71175b72014-10-09 22:13:55 +0100825 blocked_core_registers_[ESP] = true;
Nicolas Geoffraya7aca372014-04-28 17:47:12 +0100826
Calin Juravle34bacdf2014-10-07 20:23:36 +0100827 UpdateBlockedPairRegisters();
828}
829
830void CodeGeneratorX86::UpdateBlockedPairRegisters() const {
831 for (int i = 0; i < kNumberOfRegisterPairs; i++) {
832 X86ManagedRegister current =
833 X86ManagedRegister::FromRegisterPair(static_cast<RegisterPair>(i));
834 if (blocked_core_registers_[current.AsRegisterPairLow()]
835 || blocked_core_registers_[current.AsRegisterPairHigh()]) {
836 blocked_register_pairs_[i] = true;
837 }
838 }
Nicolas Geoffraya7aca372014-04-28 17:47:12 +0100839}
840
Nicolas Geoffray4a34a422014-04-03 10:38:37 +0100841InstructionCodeGeneratorX86::InstructionCodeGeneratorX86(HGraph* graph, CodeGeneratorX86* codegen)
Aart Bik42249c32016-01-07 15:33:50 -0800842 : InstructionCodeGenerator(graph, codegen),
Nicolas Geoffray4a34a422014-04-03 10:38:37 +0100843 assembler_(codegen->GetAssembler()),
844 codegen_(codegen) {}
845
David Srbeckyc6b4dd82015-04-07 20:32:43 +0100846static dwarf::Reg DWARFReg(Register reg) {
David Srbecky9d8606d2015-04-12 09:35:32 +0100847 return dwarf::Reg::X86Core(static_cast<int>(reg));
David Srbeckyc6b4dd82015-04-07 20:32:43 +0100848}
849
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000850void CodeGeneratorX86::GenerateFrameEntry() {
David Srbeckyc6b4dd82015-04-07 20:32:43 +0100851 __ cfi().SetCurrentCFAOffset(kX86WordSize); // return address
Nicolas Geoffray1cf95282014-12-12 19:22:03 +0000852 __ Bind(&frame_entry_label_);
Roland Levillain199f3362014-11-27 17:15:16 +0000853 bool skip_overflow_check =
854 IsLeafMethod() && !FrameNeedsStackCheck(GetFrameSize(), InstructionSet::kX86);
Nicolas Geoffrayd97dc402015-01-22 13:50:01 +0000855 DCHECK(GetCompilerOptions().GetImplicitStackOverflowChecks());
Calin Juravle93edf732015-01-20 20:14:07 +0000856
Nicolas Geoffrayd97dc402015-01-22 13:50:01 +0000857 if (!skip_overflow_check) {
Nicolas Geoffray397f2e42014-07-23 12:57:19 +0100858 __ testl(EAX, Address(ESP, -static_cast<int32_t>(GetStackOverflowReservedBytes(kX86))));
Nicolas Geoffray39468442014-09-02 15:17:15 +0100859 RecordPcInfo(nullptr, 0);
Nicolas Geoffray397f2e42014-07-23 12:57:19 +0100860 }
861
Mark Mendell5f874182015-03-04 15:42:45 -0500862 if (HasEmptyFrame()) {
863 return;
Nicolas Geoffrayc0572a42015-02-06 14:35:25 +0000864 }
Mark Mendell5f874182015-03-04 15:42:45 -0500865
866 for (int i = arraysize(kCoreCalleeSaves) - 1; i >= 0; --i) {
867 Register reg = kCoreCalleeSaves[i];
868 if (allocated_registers_.ContainsCoreRegister(reg)) {
869 __ pushl(reg);
David Srbeckyc6b4dd82015-04-07 20:32:43 +0100870 __ cfi().AdjustCFAOffset(kX86WordSize);
871 __ cfi().RelOffset(DWARFReg(reg), 0);
Mark Mendell5f874182015-03-04 15:42:45 -0500872 }
873 }
874
David Srbeckyc6b4dd82015-04-07 20:32:43 +0100875 int adjust = GetFrameSize() - FrameEntrySpillSize();
876 __ subl(ESP, Immediate(adjust));
877 __ cfi().AdjustCFAOffset(adjust);
Nicolas Geoffray76b1e172015-05-27 17:18:33 +0100878 __ movl(Address(ESP, kCurrentMethodStackOffset), kMethodRegisterArgument);
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000879}
880
881void CodeGeneratorX86::GenerateFrameExit() {
David Srbeckyc34dc932015-04-12 09:27:43 +0100882 __ cfi().RememberState();
883 if (!HasEmptyFrame()) {
884 int adjust = GetFrameSize() - FrameEntrySpillSize();
885 __ addl(ESP, Immediate(adjust));
886 __ cfi().AdjustCFAOffset(-adjust);
Mark Mendell5f874182015-03-04 15:42:45 -0500887
David Srbeckyc34dc932015-04-12 09:27:43 +0100888 for (size_t i = 0; i < arraysize(kCoreCalleeSaves); ++i) {
889 Register reg = kCoreCalleeSaves[i];
890 if (allocated_registers_.ContainsCoreRegister(reg)) {
891 __ popl(reg);
892 __ cfi().AdjustCFAOffset(-static_cast<int>(kX86WordSize));
893 __ cfi().Restore(DWARFReg(reg));
894 }
Mark Mendell5f874182015-03-04 15:42:45 -0500895 }
Nicolas Geoffrayc0572a42015-02-06 14:35:25 +0000896 }
David Srbeckyc34dc932015-04-12 09:27:43 +0100897 __ ret();
898 __ cfi().RestoreState();
899 __ cfi().DefCFAOffset(GetFrameSize());
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000900}
901
Nicolas Geoffray92a73ae2014-10-16 11:12:52 +0100902void CodeGeneratorX86::Bind(HBasicBlock* block) {
903 __ Bind(GetLabelOf(block));
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000904}
905
Nicolas Geoffraya7aca372014-04-28 17:47:12 +0100906Location CodeGeneratorX86::GetStackLocation(HLoadLocal* load) const {
907 switch (load->GetType()) {
908 case Primitive::kPrimLong:
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +0100909 case Primitive::kPrimDouble:
Nicolas Geoffraya7aca372014-04-28 17:47:12 +0100910 return Location::DoubleStackSlot(GetStackSlot(load->GetLocal()));
Nicolas Geoffraya7aca372014-04-28 17:47:12 +0100911
912 case Primitive::kPrimInt:
913 case Primitive::kPrimNot:
Nicolas Geoffraya7aca372014-04-28 17:47:12 +0100914 case Primitive::kPrimFloat:
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +0100915 return Location::StackSlot(GetStackSlot(load->GetLocal()));
Nicolas Geoffraya7aca372014-04-28 17:47:12 +0100916
917 case Primitive::kPrimBoolean:
918 case Primitive::kPrimByte:
919 case Primitive::kPrimChar:
920 case Primitive::kPrimShort:
921 case Primitive::kPrimVoid:
922 LOG(FATAL) << "Unexpected type " << load->GetType();
Andreas Gampe65b798e2015-04-06 09:35:22 -0700923 UNREACHABLE();
Nicolas Geoffraya7aca372014-04-28 17:47:12 +0100924 }
925
926 LOG(FATAL) << "Unreachable";
Andreas Gampe65b798e2015-04-06 09:35:22 -0700927 UNREACHABLE();
Nicolas Geoffraya7aca372014-04-28 17:47:12 +0100928}
929
Nicolas Geoffrayfd88f162015-06-03 11:23:52 +0100930Location InvokeDexCallingConventionVisitorX86::GetReturnLocation(Primitive::Type type) const {
931 switch (type) {
932 case Primitive::kPrimBoolean:
933 case Primitive::kPrimByte:
934 case Primitive::kPrimChar:
935 case Primitive::kPrimShort:
936 case Primitive::kPrimInt:
937 case Primitive::kPrimNot:
938 return Location::RegisterLocation(EAX);
939
940 case Primitive::kPrimLong:
941 return Location::RegisterPairLocation(EAX, EDX);
942
943 case Primitive::kPrimVoid:
944 return Location::NoLocation();
945
946 case Primitive::kPrimDouble:
947 case Primitive::kPrimFloat:
948 return Location::FpuRegisterLocation(XMM0);
949 }
Nicolas Geoffray0d1652e2015-06-03 12:12:19 +0100950
951 UNREACHABLE();
Nicolas Geoffrayfd88f162015-06-03 11:23:52 +0100952}
953
954Location InvokeDexCallingConventionVisitorX86::GetMethodLocation() const {
955 return Location::RegisterLocation(kMethodRegisterArgument);
956}
957
Roland Levillain2d27c8e2015-04-28 15:48:45 +0100958Location InvokeDexCallingConventionVisitorX86::GetNextLocation(Primitive::Type type) {
Nicolas Geoffraya747a392014-04-17 14:56:23 +0100959 switch (type) {
960 case Primitive::kPrimBoolean:
961 case Primitive::kPrimByte:
962 case Primitive::kPrimChar:
963 case Primitive::kPrimShort:
964 case Primitive::kPrimInt:
965 case Primitive::kPrimNot: {
966 uint32_t index = gp_index_++;
Mark P Mendell966c3ae2015-01-27 15:45:27 +0000967 stack_index_++;
Nicolas Geoffraya747a392014-04-17 14:56:23 +0100968 if (index < calling_convention.GetNumberOfRegisters()) {
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +0100969 return Location::RegisterLocation(calling_convention.GetRegisterAt(index));
Nicolas Geoffraya747a392014-04-17 14:56:23 +0100970 } else {
Mark P Mendell966c3ae2015-01-27 15:45:27 +0000971 return Location::StackSlot(calling_convention.GetStackOffsetOf(stack_index_ - 1));
Nicolas Geoffraydb928fc2014-04-16 17:38:32 +0100972 }
Nicolas Geoffraydb928fc2014-04-16 17:38:32 +0100973 }
Nicolas Geoffraya747a392014-04-17 14:56:23 +0100974
Mark P Mendell966c3ae2015-01-27 15:45:27 +0000975 case Primitive::kPrimLong: {
Nicolas Geoffraya747a392014-04-17 14:56:23 +0100976 uint32_t index = gp_index_;
977 gp_index_ += 2;
Mark P Mendell966c3ae2015-01-27 15:45:27 +0000978 stack_index_ += 2;
Nicolas Geoffraya747a392014-04-17 14:56:23 +0100979 if (index + 1 < calling_convention.GetNumberOfRegisters()) {
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +0100980 X86ManagedRegister pair = X86ManagedRegister::FromRegisterPair(
981 calling_convention.GetRegisterPairAt(index));
982 return Location::RegisterPairLocation(pair.AsRegisterPairLow(), pair.AsRegisterPairHigh());
Nicolas Geoffraya747a392014-04-17 14:56:23 +0100983 } else {
Mark P Mendell966c3ae2015-01-27 15:45:27 +0000984 return Location::DoubleStackSlot(calling_convention.GetStackOffsetOf(stack_index_ - 2));
985 }
986 }
987
988 case Primitive::kPrimFloat: {
Roland Levillain2d27c8e2015-04-28 15:48:45 +0100989 uint32_t index = float_index_++;
Mark P Mendell966c3ae2015-01-27 15:45:27 +0000990 stack_index_++;
991 if (index < calling_convention.GetNumberOfFpuRegisters()) {
992 return Location::FpuRegisterLocation(calling_convention.GetFpuRegisterAt(index));
993 } else {
994 return Location::StackSlot(calling_convention.GetStackOffsetOf(stack_index_ - 1));
995 }
996 }
997
998 case Primitive::kPrimDouble: {
Roland Levillain2d27c8e2015-04-28 15:48:45 +0100999 uint32_t index = float_index_++;
Mark P Mendell966c3ae2015-01-27 15:45:27 +00001000 stack_index_ += 2;
1001 if (index < calling_convention.GetNumberOfFpuRegisters()) {
1002 return Location::FpuRegisterLocation(calling_convention.GetFpuRegisterAt(index));
1003 } else {
1004 return Location::DoubleStackSlot(calling_convention.GetStackOffsetOf(stack_index_ - 2));
Nicolas Geoffraya747a392014-04-17 14:56:23 +01001005 }
1006 }
1007
Nicolas Geoffraya747a392014-04-17 14:56:23 +01001008 case Primitive::kPrimVoid:
1009 LOG(FATAL) << "Unexpected parameter type " << type;
1010 break;
Nicolas Geoffraydb928fc2014-04-16 17:38:32 +01001011 }
Roland Levillain0d5a2812015-11-13 10:07:31 +00001012 return Location::NoLocation();
Nicolas Geoffraya747a392014-04-17 14:56:23 +01001013}
Nicolas Geoffraydb928fc2014-04-16 17:38:32 +01001014
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001015void CodeGeneratorX86::Move32(Location destination, Location source) {
1016 if (source.Equals(destination)) {
1017 return;
1018 }
1019 if (destination.IsRegister()) {
1020 if (source.IsRegister()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00001021 __ movl(destination.AsRegister<Register>(), source.AsRegister<Register>());
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001022 } else if (source.IsFpuRegister()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00001023 __ movd(destination.AsRegister<Register>(), source.AsFpuRegister<XmmRegister>());
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001024 } else {
1025 DCHECK(source.IsStackSlot());
Roland Levillain271ab9c2014-11-27 15:23:57 +00001026 __ movl(destination.AsRegister<Register>(), Address(ESP, source.GetStackIndex()));
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001027 }
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001028 } else if (destination.IsFpuRegister()) {
1029 if (source.IsRegister()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00001030 __ movd(destination.AsFpuRegister<XmmRegister>(), source.AsRegister<Register>());
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001031 } else if (source.IsFpuRegister()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00001032 __ movaps(destination.AsFpuRegister<XmmRegister>(), source.AsFpuRegister<XmmRegister>());
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001033 } else {
1034 DCHECK(source.IsStackSlot());
Roland Levillain271ab9c2014-11-27 15:23:57 +00001035 __ movss(destination.AsFpuRegister<XmmRegister>(), Address(ESP, source.GetStackIndex()));
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001036 }
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001037 } else {
Calin Juravled6fb6cf2014-11-11 19:07:44 +00001038 DCHECK(destination.IsStackSlot()) << destination;
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001039 if (source.IsRegister()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00001040 __ movl(Address(ESP, destination.GetStackIndex()), source.AsRegister<Register>());
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001041 } else if (source.IsFpuRegister()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00001042 __ movss(Address(ESP, destination.GetStackIndex()), source.AsFpuRegister<XmmRegister>());
Mark Mendell7c8d0092015-01-26 11:21:33 -05001043 } else if (source.IsConstant()) {
1044 HConstant* constant = source.GetConstant();
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +00001045 int32_t value = GetInt32ValueOf(constant);
Mark Mendell7c8d0092015-01-26 11:21:33 -05001046 __ movl(Address(ESP, destination.GetStackIndex()), Immediate(value));
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001047 } else {
1048 DCHECK(source.IsStackSlot());
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +01001049 __ pushl(Address(ESP, source.GetStackIndex()));
1050 __ popl(Address(ESP, destination.GetStackIndex()));
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001051 }
1052 }
1053}
1054
1055void CodeGeneratorX86::Move64(Location destination, Location source) {
1056 if (source.Equals(destination)) {
1057 return;
1058 }
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +01001059 if (destination.IsRegisterPair()) {
1060 if (source.IsRegisterPair()) {
Nicolas Geoffray32b2a522014-11-27 14:54:18 +00001061 EmitParallelMoves(
1062 Location::RegisterLocation(source.AsRegisterPairHigh<Register>()),
1063 Location::RegisterLocation(destination.AsRegisterPairHigh<Register>()),
Nicolas Geoffray90218252015-04-15 11:56:51 +01001064 Primitive::kPrimInt,
Nicolas Geoffray32b2a522014-11-27 14:54:18 +00001065 Location::RegisterLocation(source.AsRegisterPairLow<Register>()),
Nicolas Geoffray90218252015-04-15 11:56:51 +01001066 Location::RegisterLocation(destination.AsRegisterPairLow<Register>()),
1067 Primitive::kPrimInt);
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001068 } else if (source.IsFpuRegister()) {
Calin Juravlee460d1d2015-09-29 04:52:17 +01001069 XmmRegister src_reg = source.AsFpuRegister<XmmRegister>();
1070 __ movd(destination.AsRegisterPairLow<Register>(), src_reg);
1071 __ psrlq(src_reg, Immediate(32));
1072 __ movd(destination.AsRegisterPairHigh<Register>(), src_reg);
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001073 } else {
Nicolas Geoffray32b2a522014-11-27 14:54:18 +00001074 // No conflict possible, so just do the moves.
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001075 DCHECK(source.IsDoubleStackSlot());
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +01001076 __ movl(destination.AsRegisterPairLow<Register>(), Address(ESP, source.GetStackIndex()));
1077 __ movl(destination.AsRegisterPairHigh<Register>(),
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001078 Address(ESP, source.GetHighStackIndex(kX86WordSize)));
1079 }
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001080 } else if (destination.IsFpuRegister()) {
Mark Mendell7c8d0092015-01-26 11:21:33 -05001081 if (source.IsFpuRegister()) {
1082 __ movaps(destination.AsFpuRegister<XmmRegister>(), source.AsFpuRegister<XmmRegister>());
1083 } else if (source.IsDoubleStackSlot()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00001084 __ movsd(destination.AsFpuRegister<XmmRegister>(), Address(ESP, source.GetStackIndex()));
Calin Juravlee460d1d2015-09-29 04:52:17 +01001085 } else if (source.IsRegisterPair()) {
1086 size_t elem_size = Primitive::ComponentSize(Primitive::kPrimInt);
1087 // Create stack space for 2 elements.
1088 __ subl(ESP, Immediate(2 * elem_size));
1089 __ movl(Address(ESP, 0), source.AsRegisterPairLow<Register>());
1090 __ movl(Address(ESP, elem_size), source.AsRegisterPairHigh<Register>());
1091 __ movsd(destination.AsFpuRegister<XmmRegister>(), Address(ESP, 0));
1092 // And remove the temporary stack space we allocated.
1093 __ addl(ESP, Immediate(2 * elem_size));
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001094 } else {
1095 LOG(FATAL) << "Unimplemented";
1096 }
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001097 } else {
Calin Juravled6fb6cf2014-11-11 19:07:44 +00001098 DCHECK(destination.IsDoubleStackSlot()) << destination;
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +01001099 if (source.IsRegisterPair()) {
Nicolas Geoffray32b2a522014-11-27 14:54:18 +00001100 // No conflict possible, so just do the moves.
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +01001101 __ movl(Address(ESP, destination.GetStackIndex()), source.AsRegisterPairLow<Register>());
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001102 __ movl(Address(ESP, destination.GetHighStackIndex(kX86WordSize)),
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +01001103 source.AsRegisterPairHigh<Register>());
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001104 } else if (source.IsFpuRegister()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00001105 __ movsd(Address(ESP, destination.GetStackIndex()), source.AsFpuRegister<XmmRegister>());
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00001106 } else if (source.IsConstant()) {
1107 HConstant* constant = source.GetConstant();
1108 int64_t value;
1109 if (constant->IsLongConstant()) {
1110 value = constant->AsLongConstant()->GetValue();
1111 } else {
1112 DCHECK(constant->IsDoubleConstant());
Roland Levillainda4d79b2015-03-24 14:36:11 +00001113 value = bit_cast<int64_t, double>(constant->AsDoubleConstant()->GetValue());
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00001114 }
1115 __ movl(Address(ESP, destination.GetStackIndex()), Immediate(Low32Bits(value)));
1116 __ movl(Address(ESP, destination.GetHighStackIndex(kX86WordSize)), Immediate(High32Bits(value)));
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001117 } else {
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00001118 DCHECK(source.IsDoubleStackSlot()) << source;
Nicolas Geoffray32b2a522014-11-27 14:54:18 +00001119 EmitParallelMoves(
1120 Location::StackSlot(source.GetStackIndex()),
1121 Location::StackSlot(destination.GetStackIndex()),
Nicolas Geoffray90218252015-04-15 11:56:51 +01001122 Primitive::kPrimInt,
Nicolas Geoffray32b2a522014-11-27 14:54:18 +00001123 Location::StackSlot(source.GetHighStackIndex(kX86WordSize)),
Nicolas Geoffray90218252015-04-15 11:56:51 +01001124 Location::StackSlot(destination.GetHighStackIndex(kX86WordSize)),
1125 Primitive::kPrimInt);
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001126 }
1127 }
1128}
1129
Nicolas Geoffray4a34a422014-04-03 10:38:37 +01001130void CodeGeneratorX86::Move(HInstruction* instruction, Location location, HInstruction* move_for) {
Calin Juravlea21f5982014-11-13 15:53:04 +00001131 LocationSummary* locations = instruction->GetLocations();
Nicolas Geoffray76b1e172015-05-27 17:18:33 +01001132 if (instruction->IsCurrentMethod()) {
1133 Move32(location, Location::StackSlot(kCurrentMethodStackOffset));
1134 } else if (locations != nullptr && locations->Out().Equals(location)) {
Calin Juravlea21f5982014-11-13 15:53:04 +00001135 return;
Nicolas Geoffray76b1e172015-05-27 17:18:33 +01001136 } else if (locations != nullptr && locations->Out().IsConstant()) {
Calin Juravlea21f5982014-11-13 15:53:04 +00001137 HConstant* const_to_move = locations->Out().GetConstant();
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +00001138 if (const_to_move->IsIntConstant() || const_to_move->IsNullConstant()) {
1139 Immediate imm(GetInt32ValueOf(const_to_move));
Calin Juravlea21f5982014-11-13 15:53:04 +00001140 if (location.IsRegister()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00001141 __ movl(location.AsRegister<Register>(), imm);
Calin Juravlea21f5982014-11-13 15:53:04 +00001142 } else if (location.IsStackSlot()) {
1143 __ movl(Address(ESP, location.GetStackIndex()), imm);
1144 } else {
1145 DCHECK(location.IsConstant());
1146 DCHECK_EQ(location.GetConstant(), const_to_move);
1147 }
1148 } else if (const_to_move->IsLongConstant()) {
1149 int64_t value = const_to_move->AsLongConstant()->GetValue();
1150 if (location.IsRegisterPair()) {
1151 __ movl(location.AsRegisterPairLow<Register>(), Immediate(Low32Bits(value)));
1152 __ movl(location.AsRegisterPairHigh<Register>(), Immediate(High32Bits(value)));
1153 } else if (location.IsDoubleStackSlot()) {
1154 __ movl(Address(ESP, location.GetStackIndex()), Immediate(Low32Bits(value)));
Roland Levillain199f3362014-11-27 17:15:16 +00001155 __ movl(Address(ESP, location.GetHighStackIndex(kX86WordSize)),
1156 Immediate(High32Bits(value)));
Calin Juravlea21f5982014-11-13 15:53:04 +00001157 } else {
1158 DCHECK(location.IsConstant());
1159 DCHECK_EQ(location.GetConstant(), instruction);
1160 }
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001161 }
Nicolas Geoffrayf43083d2014-11-07 10:48:10 +00001162 } else if (instruction->IsTemporary()) {
1163 Location temp_location = GetTemporaryLocation(instruction->AsTemporary());
Calin Juravlef97f9fb2014-11-11 15:38:19 +00001164 if (temp_location.IsStackSlot()) {
1165 Move32(location, temp_location);
1166 } else {
1167 DCHECK(temp_location.IsDoubleStackSlot());
1168 Move64(location, temp_location);
1169 }
Roland Levillain476df552014-10-09 17:51:36 +01001170 } else if (instruction->IsLoadLocal()) {
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001171 int slot = GetStackSlot(instruction->AsLoadLocal()->GetLocal());
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001172 switch (instruction->GetType()) {
1173 case Primitive::kPrimBoolean:
1174 case Primitive::kPrimByte:
1175 case Primitive::kPrimChar:
1176 case Primitive::kPrimShort:
1177 case Primitive::kPrimInt:
1178 case Primitive::kPrimNot:
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001179 case Primitive::kPrimFloat:
1180 Move32(location, Location::StackSlot(slot));
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001181 break;
1182
1183 case Primitive::kPrimLong:
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001184 case Primitive::kPrimDouble:
1185 Move64(location, Location::DoubleStackSlot(slot));
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001186 break;
1187
1188 default:
1189 LOG(FATAL) << "Unimplemented local type " << instruction->GetType();
1190 }
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001191 } else {
Nicolas Geoffraye5038322014-07-04 09:41:32 +01001192 DCHECK((instruction->GetNext() == move_for) || instruction->GetNext()->IsTemporary());
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001193 switch (instruction->GetType()) {
1194 case Primitive::kPrimBoolean:
1195 case Primitive::kPrimByte:
1196 case Primitive::kPrimChar:
1197 case Primitive::kPrimShort:
1198 case Primitive::kPrimInt:
1199 case Primitive::kPrimNot:
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001200 case Primitive::kPrimFloat:
Calin Juravlea21f5982014-11-13 15:53:04 +00001201 Move32(location, locations->Out());
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001202 break;
1203
1204 case Primitive::kPrimLong:
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001205 case Primitive::kPrimDouble:
Calin Juravlea21f5982014-11-13 15:53:04 +00001206 Move64(location, locations->Out());
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001207 break;
1208
1209 default:
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001210 LOG(FATAL) << "Unexpected type " << instruction->GetType();
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001211 }
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001212 }
1213}
1214
Calin Juravle175dc732015-08-25 15:42:32 +01001215void CodeGeneratorX86::MoveConstant(Location location, int32_t value) {
1216 DCHECK(location.IsRegister());
1217 __ movl(location.AsRegister<Register>(), Immediate(value));
1218}
1219
Calin Juravlee460d1d2015-09-29 04:52:17 +01001220void CodeGeneratorX86::MoveLocation(Location dst, Location src, Primitive::Type dst_type) {
David Brazdil74eb1b22015-12-14 11:44:01 +00001221 HParallelMove move(GetGraph()->GetArena());
1222 if (dst_type == Primitive::kPrimLong && !src.IsConstant() && !src.IsFpuRegister()) {
1223 move.AddMove(src.ToLow(), dst.ToLow(), Primitive::kPrimInt, nullptr);
1224 move.AddMove(src.ToHigh(), dst.ToHigh(), Primitive::kPrimInt, nullptr);
Calin Juravlee460d1d2015-09-29 04:52:17 +01001225 } else {
David Brazdil74eb1b22015-12-14 11:44:01 +00001226 move.AddMove(src, dst, dst_type, nullptr);
Calin Juravlee460d1d2015-09-29 04:52:17 +01001227 }
David Brazdil74eb1b22015-12-14 11:44:01 +00001228 GetMoveResolver()->EmitNativeCode(&move);
Calin Juravlee460d1d2015-09-29 04:52:17 +01001229}
1230
1231void CodeGeneratorX86::AddLocationAsTemp(Location location, LocationSummary* locations) {
1232 if (location.IsRegister()) {
1233 locations->AddTemp(location);
1234 } else if (location.IsRegisterPair()) {
1235 locations->AddTemp(Location::RegisterLocation(location.AsRegisterPairLow<Register>()));
1236 locations->AddTemp(Location::RegisterLocation(location.AsRegisterPairHigh<Register>()));
1237 } else {
1238 UNIMPLEMENTED(FATAL) << "AddLocationAsTemp not implemented for location " << location;
1239 }
1240}
1241
David Brazdilfc6a86a2015-06-26 10:33:45 +00001242void InstructionCodeGeneratorX86::HandleGoto(HInstruction* got, HBasicBlock* successor) {
Nicolas Geoffray3c049742014-09-24 18:10:46 +01001243 DCHECK(!successor->IsExitBlock());
1244
1245 HBasicBlock* block = got->GetBlock();
1246 HInstruction* previous = got->GetPrevious();
1247
1248 HLoopInformation* info = block->GetLoopInformation();
David Brazdil46e2a392015-03-16 17:31:52 +00001249 if (info != nullptr && info->IsBackEdge(*block) && info->HasSuspendCheck()) {
Nicolas Geoffray3c049742014-09-24 18:10:46 +01001250 GenerateSuspendCheck(info->GetSuspendCheck(), successor);
1251 return;
1252 }
1253
1254 if (block->IsEntryBlock() && (previous != nullptr) && previous->IsSuspendCheck()) {
1255 GenerateSuspendCheck(previous->AsSuspendCheck(), nullptr);
1256 }
1257 if (!codegen_->GoesToNextBlock(got->GetBlock(), successor)) {
Nicolas Geoffray787c3072014-03-17 10:20:19 +00001258 __ jmp(codegen_->GetLabelOf(successor));
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +00001259 }
1260}
1261
David Brazdilfc6a86a2015-06-26 10:33:45 +00001262void LocationsBuilderX86::VisitGoto(HGoto* got) {
1263 got->SetLocations(nullptr);
1264}
1265
1266void InstructionCodeGeneratorX86::VisitGoto(HGoto* got) {
1267 HandleGoto(got, got->GetSuccessor());
1268}
1269
1270void LocationsBuilderX86::VisitTryBoundary(HTryBoundary* try_boundary) {
1271 try_boundary->SetLocations(nullptr);
1272}
1273
1274void InstructionCodeGeneratorX86::VisitTryBoundary(HTryBoundary* try_boundary) {
1275 HBasicBlock* successor = try_boundary->GetNormalFlowSuccessor();
1276 if (!successor->IsExitBlock()) {
1277 HandleGoto(try_boundary, successor);
1278 }
1279}
1280
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001281void LocationsBuilderX86::VisitExit(HExit* exit) {
Nicolas Geoffray787c3072014-03-17 10:20:19 +00001282 exit->SetLocations(nullptr);
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001283}
1284
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01001285void InstructionCodeGeneratorX86::VisitExit(HExit* exit ATTRIBUTE_UNUSED) {
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +00001286}
1287
Mark Mendell152408f2015-12-31 12:28:50 -05001288template<class LabelType>
Mark Mendellc4701932015-04-10 13:18:51 -04001289void InstructionCodeGeneratorX86::GenerateFPJumps(HCondition* cond,
Mark Mendell152408f2015-12-31 12:28:50 -05001290 LabelType* true_label,
1291 LabelType* false_label) {
Roland Levillain4fa13f62015-07-06 18:11:54 +01001292 if (cond->IsFPConditionTrueIfNaN()) {
1293 __ j(kUnordered, true_label);
1294 } else if (cond->IsFPConditionFalseIfNaN()) {
1295 __ j(kUnordered, false_label);
Mark Mendellc4701932015-04-10 13:18:51 -04001296 }
Roland Levillain4fa13f62015-07-06 18:11:54 +01001297 __ j(X86UnsignedOrFPCondition(cond->GetCondition()), true_label);
Mark Mendellc4701932015-04-10 13:18:51 -04001298}
1299
Mark Mendell152408f2015-12-31 12:28:50 -05001300template<class LabelType>
Mark Mendellc4701932015-04-10 13:18:51 -04001301void InstructionCodeGeneratorX86::GenerateLongComparesAndJumps(HCondition* cond,
Mark Mendell152408f2015-12-31 12:28:50 -05001302 LabelType* true_label,
1303 LabelType* false_label) {
Mark Mendellc4701932015-04-10 13:18:51 -04001304 LocationSummary* locations = cond->GetLocations();
1305 Location left = locations->InAt(0);
1306 Location right = locations->InAt(1);
1307 IfCondition if_cond = cond->GetCondition();
1308
Mark Mendellc4701932015-04-10 13:18:51 -04001309 Register left_high = left.AsRegisterPairHigh<Register>();
Roland Levillain4fa13f62015-07-06 18:11:54 +01001310 Register left_low = left.AsRegisterPairLow<Register>();
Mark Mendellc4701932015-04-10 13:18:51 -04001311 IfCondition true_high_cond = if_cond;
1312 IfCondition false_high_cond = cond->GetOppositeCondition();
Aart Bike9f37602015-10-09 11:15:55 -07001313 Condition final_condition = X86UnsignedOrFPCondition(if_cond); // unsigned on lower part
Mark Mendellc4701932015-04-10 13:18:51 -04001314
1315 // Set the conditions for the test, remembering that == needs to be
1316 // decided using the low words.
1317 switch (if_cond) {
1318 case kCondEQ:
Mark Mendellc4701932015-04-10 13:18:51 -04001319 case kCondNE:
Roland Levillain4fa13f62015-07-06 18:11:54 +01001320 // Nothing to do.
Mark Mendellc4701932015-04-10 13:18:51 -04001321 break;
1322 case kCondLT:
1323 false_high_cond = kCondGT;
Mark Mendellc4701932015-04-10 13:18:51 -04001324 break;
1325 case kCondLE:
1326 true_high_cond = kCondLT;
Mark Mendellc4701932015-04-10 13:18:51 -04001327 break;
1328 case kCondGT:
1329 false_high_cond = kCondLT;
Mark Mendellc4701932015-04-10 13:18:51 -04001330 break;
1331 case kCondGE:
1332 true_high_cond = kCondGT;
Mark Mendellc4701932015-04-10 13:18:51 -04001333 break;
Aart Bike9f37602015-10-09 11:15:55 -07001334 case kCondB:
1335 false_high_cond = kCondA;
1336 break;
1337 case kCondBE:
1338 true_high_cond = kCondB;
1339 break;
1340 case kCondA:
1341 false_high_cond = kCondB;
1342 break;
1343 case kCondAE:
1344 true_high_cond = kCondA;
1345 break;
Mark Mendellc4701932015-04-10 13:18:51 -04001346 }
1347
1348 if (right.IsConstant()) {
1349 int64_t value = right.GetConstant()->AsLongConstant()->GetValue();
Mark Mendellc4701932015-04-10 13:18:51 -04001350 int32_t val_high = High32Bits(value);
Roland Levillain4fa13f62015-07-06 18:11:54 +01001351 int32_t val_low = Low32Bits(value);
Mark Mendellc4701932015-04-10 13:18:51 -04001352
1353 if (val_high == 0) {
1354 __ testl(left_high, left_high);
1355 } else {
1356 __ cmpl(left_high, Immediate(val_high));
1357 }
1358 if (if_cond == kCondNE) {
Aart Bike9f37602015-10-09 11:15:55 -07001359 __ j(X86Condition(true_high_cond), true_label);
Mark Mendellc4701932015-04-10 13:18:51 -04001360 } else if (if_cond == kCondEQ) {
Aart Bike9f37602015-10-09 11:15:55 -07001361 __ j(X86Condition(false_high_cond), false_label);
Mark Mendellc4701932015-04-10 13:18:51 -04001362 } else {
Aart Bike9f37602015-10-09 11:15:55 -07001363 __ j(X86Condition(true_high_cond), true_label);
1364 __ j(X86Condition(false_high_cond), false_label);
Mark Mendellc4701932015-04-10 13:18:51 -04001365 }
1366 // Must be equal high, so compare the lows.
1367 if (val_low == 0) {
1368 __ testl(left_low, left_low);
1369 } else {
1370 __ cmpl(left_low, Immediate(val_low));
1371 }
1372 } else {
Mark Mendellc4701932015-04-10 13:18:51 -04001373 Register right_high = right.AsRegisterPairHigh<Register>();
Roland Levillain4fa13f62015-07-06 18:11:54 +01001374 Register right_low = right.AsRegisterPairLow<Register>();
Mark Mendellc4701932015-04-10 13:18:51 -04001375
1376 __ cmpl(left_high, right_high);
1377 if (if_cond == kCondNE) {
Aart Bike9f37602015-10-09 11:15:55 -07001378 __ j(X86Condition(true_high_cond), true_label);
Mark Mendellc4701932015-04-10 13:18:51 -04001379 } else if (if_cond == kCondEQ) {
Aart Bike9f37602015-10-09 11:15:55 -07001380 __ j(X86Condition(false_high_cond), false_label);
Mark Mendellc4701932015-04-10 13:18:51 -04001381 } else {
Aart Bike9f37602015-10-09 11:15:55 -07001382 __ j(X86Condition(true_high_cond), true_label);
1383 __ j(X86Condition(false_high_cond), false_label);
Mark Mendellc4701932015-04-10 13:18:51 -04001384 }
1385 // Must be equal high, so compare the lows.
1386 __ cmpl(left_low, right_low);
1387 }
1388 // The last comparison might be unsigned.
1389 __ j(final_condition, true_label);
1390}
1391
Mark P Mendell2f10a5f2016-01-25 14:47:50 +00001392void InstructionCodeGeneratorX86::GenerateFPCompare(Location lhs,
1393 Location rhs,
1394 HInstruction* insn,
1395 bool is_double) {
1396 HX86LoadFromConstantTable* const_area = insn->InputAt(1)->AsX86LoadFromConstantTable();
1397 if (is_double) {
1398 if (rhs.IsFpuRegister()) {
1399 __ ucomisd(lhs.AsFpuRegister<XmmRegister>(), rhs.AsFpuRegister<XmmRegister>());
1400 } else if (const_area != nullptr) {
1401 DCHECK(const_area->IsEmittedAtUseSite());
1402 __ ucomisd(lhs.AsFpuRegister<XmmRegister>(),
1403 codegen_->LiteralDoubleAddress(
1404 const_area->GetConstant()->AsDoubleConstant()->GetValue(),
1405 const_area->GetLocations()->InAt(0).AsRegister<Register>()));
1406 } else {
1407 DCHECK(rhs.IsDoubleStackSlot());
1408 __ ucomisd(lhs.AsFpuRegister<XmmRegister>(), Address(ESP, rhs.GetStackIndex()));
1409 }
1410 } else {
1411 if (rhs.IsFpuRegister()) {
1412 __ ucomiss(lhs.AsFpuRegister<XmmRegister>(), rhs.AsFpuRegister<XmmRegister>());
1413 } else if (const_area != nullptr) {
1414 DCHECK(const_area->IsEmittedAtUseSite());
1415 __ ucomiss(lhs.AsFpuRegister<XmmRegister>(),
1416 codegen_->LiteralFloatAddress(
1417 const_area->GetConstant()->AsFloatConstant()->GetValue(),
1418 const_area->GetLocations()->InAt(0).AsRegister<Register>()));
1419 } else {
1420 DCHECK(rhs.IsStackSlot());
1421 __ ucomiss(lhs.AsFpuRegister<XmmRegister>(), Address(ESP, rhs.GetStackIndex()));
1422 }
1423 }
1424}
1425
Mark Mendell152408f2015-12-31 12:28:50 -05001426template<class LabelType>
David Brazdil0debae72015-11-12 18:37:00 +00001427void InstructionCodeGeneratorX86::GenerateCompareTestAndBranch(HCondition* condition,
Mark Mendell152408f2015-12-31 12:28:50 -05001428 LabelType* true_target_in,
1429 LabelType* false_target_in) {
David Brazdil0debae72015-11-12 18:37:00 +00001430 // Generated branching requires both targets to be explicit. If either of the
1431 // targets is nullptr (fallthrough) use and bind `fallthrough_target` instead.
Mark Mendell152408f2015-12-31 12:28:50 -05001432 LabelType fallthrough_target;
1433 LabelType* true_target = true_target_in == nullptr ? &fallthrough_target : true_target_in;
1434 LabelType* false_target = false_target_in == nullptr ? &fallthrough_target : false_target_in;
David Brazdil0debae72015-11-12 18:37:00 +00001435
Mark Mendellc4701932015-04-10 13:18:51 -04001436 LocationSummary* locations = condition->GetLocations();
1437 Location left = locations->InAt(0);
1438 Location right = locations->InAt(1);
1439
Mark Mendellc4701932015-04-10 13:18:51 -04001440 Primitive::Type type = condition->InputAt(0)->GetType();
1441 switch (type) {
1442 case Primitive::kPrimLong:
1443 GenerateLongComparesAndJumps(condition, true_target, false_target);
1444 break;
1445 case Primitive::kPrimFloat:
Mark P Mendell2f10a5f2016-01-25 14:47:50 +00001446 GenerateFPCompare(left, right, condition, false);
Mark Mendellc4701932015-04-10 13:18:51 -04001447 GenerateFPJumps(condition, true_target, false_target);
1448 break;
1449 case Primitive::kPrimDouble:
Mark P Mendell2f10a5f2016-01-25 14:47:50 +00001450 GenerateFPCompare(left, right, condition, true);
Mark Mendellc4701932015-04-10 13:18:51 -04001451 GenerateFPJumps(condition, true_target, false_target);
1452 break;
1453 default:
1454 LOG(FATAL) << "Unexpected compare type " << type;
1455 }
1456
David Brazdil0debae72015-11-12 18:37:00 +00001457 if (false_target != &fallthrough_target) {
Mark Mendellc4701932015-04-10 13:18:51 -04001458 __ jmp(false_target);
1459 }
David Brazdil0debae72015-11-12 18:37:00 +00001460
1461 if (fallthrough_target.IsLinked()) {
1462 __ Bind(&fallthrough_target);
1463 }
Mark Mendellc4701932015-04-10 13:18:51 -04001464}
1465
David Brazdil0debae72015-11-12 18:37:00 +00001466static bool AreEflagsSetFrom(HInstruction* cond, HInstruction* branch) {
1467 // Moves may affect the eflags register (move zero uses xorl), so the EFLAGS
1468 // are set only strictly before `branch`. We can't use the eflags on long/FP
1469 // conditions if they are materialized due to the complex branching.
1470 return cond->IsCondition() &&
1471 cond->GetNext() == branch &&
1472 cond->InputAt(0)->GetType() != Primitive::kPrimLong &&
1473 !Primitive::IsFloatingPointType(cond->InputAt(0)->GetType());
1474}
1475
Mark Mendell152408f2015-12-31 12:28:50 -05001476template<class LabelType>
Mingyao Yangd43b3ac2015-04-01 14:03:04 -07001477void InstructionCodeGeneratorX86::GenerateTestAndBranch(HInstruction* instruction,
David Brazdil0debae72015-11-12 18:37:00 +00001478 size_t condition_input_index,
Mark Mendell152408f2015-12-31 12:28:50 -05001479 LabelType* true_target,
1480 LabelType* false_target) {
David Brazdil0debae72015-11-12 18:37:00 +00001481 HInstruction* cond = instruction->InputAt(condition_input_index);
1482
1483 if (true_target == nullptr && false_target == nullptr) {
1484 // Nothing to do. The code always falls through.
1485 return;
1486 } else if (cond->IsIntConstant()) {
Roland Levillain3a3fd0f2014-10-10 13:56:31 +01001487 // Constant condition, statically compared against 1.
David Brazdil0debae72015-11-12 18:37:00 +00001488 if (cond->AsIntConstant()->IsOne()) {
1489 if (true_target != nullptr) {
1490 __ jmp(true_target);
Nicolas Geoffray18efde52014-09-22 15:51:11 +01001491 }
Nicolas Geoffray360231a2014-10-08 21:07:48 +01001492 } else {
David Brazdil0debae72015-11-12 18:37:00 +00001493 DCHECK(cond->AsIntConstant()->IsZero());
1494 if (false_target != nullptr) {
1495 __ jmp(false_target);
1496 }
1497 }
1498 return;
1499 }
1500
1501 // The following code generates these patterns:
1502 // (1) true_target == nullptr && false_target != nullptr
1503 // - opposite condition true => branch to false_target
1504 // (2) true_target != nullptr && false_target == nullptr
1505 // - condition true => branch to true_target
1506 // (3) true_target != nullptr && false_target != nullptr
1507 // - condition true => branch to true_target
1508 // - branch to false_target
1509 if (IsBooleanValueOrMaterializedCondition(cond)) {
1510 if (AreEflagsSetFrom(cond, instruction)) {
1511 if (true_target == nullptr) {
1512 __ j(X86Condition(cond->AsCondition()->GetOppositeCondition()), false_target);
1513 } else {
1514 __ j(X86Condition(cond->AsCondition()->GetCondition()), true_target);
1515 }
1516 } else {
1517 // Materialized condition, compare against 0.
1518 Location lhs = instruction->GetLocations()->InAt(condition_input_index);
1519 if (lhs.IsRegister()) {
1520 __ testl(lhs.AsRegister<Register>(), lhs.AsRegister<Register>());
1521 } else {
1522 __ cmpl(Address(ESP, lhs.GetStackIndex()), Immediate(0));
1523 }
1524 if (true_target == nullptr) {
1525 __ j(kEqual, false_target);
1526 } else {
1527 __ j(kNotEqual, true_target);
1528 }
Roland Levillain3a3fd0f2014-10-10 13:56:31 +01001529 }
1530 } else {
David Brazdil0debae72015-11-12 18:37:00 +00001531 // Condition has not been materialized, use its inputs as the comparison and
1532 // its condition as the branch condition.
Mark Mendellb8b97692015-05-22 16:58:19 -04001533 HCondition* condition = cond->AsCondition();
David Brazdil0debae72015-11-12 18:37:00 +00001534
1535 // If this is a long or FP comparison that has been folded into
1536 // the HCondition, generate the comparison directly.
1537 Primitive::Type type = condition->InputAt(0)->GetType();
1538 if (type == Primitive::kPrimLong || Primitive::IsFloatingPointType(type)) {
1539 GenerateCompareTestAndBranch(condition, true_target, false_target);
1540 return;
1541 }
1542
1543 Location lhs = condition->GetLocations()->InAt(0);
1544 Location rhs = condition->GetLocations()->InAt(1);
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00001545 // LHS is guaranteed to be in a register (see LocationsBuilderX86::HandleCondition).
David Brazdil0debae72015-11-12 18:37:00 +00001546 if (rhs.IsRegister()) {
1547 __ cmpl(lhs.AsRegister<Register>(), rhs.AsRegister<Register>());
1548 } else if (rhs.IsConstant()) {
1549 int32_t constant = CodeGenerator::GetInt32ValueOf(rhs.GetConstant());
1550 if (constant == 0) {
1551 __ testl(lhs.AsRegister<Register>(), lhs.AsRegister<Register>());
Roland Levillain3a3fd0f2014-10-10 13:56:31 +01001552 } else {
David Brazdil0debae72015-11-12 18:37:00 +00001553 __ cmpl(lhs.AsRegister<Register>(), Immediate(constant));
Roland Levillain3a3fd0f2014-10-10 13:56:31 +01001554 }
1555 } else {
David Brazdil0debae72015-11-12 18:37:00 +00001556 __ cmpl(lhs.AsRegister<Register>(), Address(ESP, rhs.GetStackIndex()));
1557 }
1558 if (true_target == nullptr) {
1559 __ j(X86Condition(condition->GetOppositeCondition()), false_target);
1560 } else {
Mark Mendellb8b97692015-05-22 16:58:19 -04001561 __ j(X86Condition(condition->GetCondition()), true_target);
Dave Allison20dfc792014-06-16 20:44:29 -07001562 }
Nicolas Geoffraya7aca372014-04-28 17:47:12 +01001563 }
David Brazdil0debae72015-11-12 18:37:00 +00001564
1565 // If neither branch falls through (case 3), the conditional branch to `true_target`
1566 // was already emitted (case 2) and we need to emit a jump to `false_target`.
1567 if (true_target != nullptr && false_target != nullptr) {
Mingyao Yangd43b3ac2015-04-01 14:03:04 -07001568 __ jmp(false_target);
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001569 }
1570}
1571
Mingyao Yangd43b3ac2015-04-01 14:03:04 -07001572void LocationsBuilderX86::VisitIf(HIf* if_instr) {
David Brazdil0debae72015-11-12 18:37:00 +00001573 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(if_instr);
1574 if (IsBooleanValueOrMaterializedCondition(if_instr->InputAt(0))) {
Mingyao Yangd43b3ac2015-04-01 14:03:04 -07001575 locations->SetInAt(0, Location::Any());
1576 }
1577}
1578
1579void InstructionCodeGeneratorX86::VisitIf(HIf* if_instr) {
David Brazdil0debae72015-11-12 18:37:00 +00001580 HBasicBlock* true_successor = if_instr->IfTrueSuccessor();
1581 HBasicBlock* false_successor = if_instr->IfFalseSuccessor();
1582 Label* true_target = codegen_->GoesToNextBlock(if_instr->GetBlock(), true_successor) ?
1583 nullptr : codegen_->GetLabelOf(true_successor);
1584 Label* false_target = codegen_->GoesToNextBlock(if_instr->GetBlock(), false_successor) ?
1585 nullptr : codegen_->GetLabelOf(false_successor);
1586 GenerateTestAndBranch(if_instr, /* condition_input_index */ 0, true_target, false_target);
Mingyao Yangd43b3ac2015-04-01 14:03:04 -07001587}
1588
1589void LocationsBuilderX86::VisitDeoptimize(HDeoptimize* deoptimize) {
1590 LocationSummary* locations = new (GetGraph()->GetArena())
1591 LocationSummary(deoptimize, LocationSummary::kCallOnSlowPath);
David Brazdil0debae72015-11-12 18:37:00 +00001592 if (IsBooleanValueOrMaterializedCondition(deoptimize->InputAt(0))) {
Mingyao Yangd43b3ac2015-04-01 14:03:04 -07001593 locations->SetInAt(0, Location::Any());
1594 }
1595}
1596
1597void InstructionCodeGeneratorX86::VisitDeoptimize(HDeoptimize* deoptimize) {
Aart Bik42249c32016-01-07 15:33:50 -08001598 SlowPathCode* slow_path = deopt_slow_paths_.NewSlowPath<DeoptimizationSlowPathX86>(deoptimize);
David Brazdil74eb1b22015-12-14 11:44:01 +00001599 GenerateTestAndBranch<Label>(deoptimize,
1600 /* condition_input_index */ 0,
1601 slow_path->GetEntryLabel(),
1602 /* false_target */ nullptr);
1603}
1604
1605void LocationsBuilderX86::VisitSelect(HSelect* select) {
1606 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(select);
1607 Primitive::Type select_type = select->GetType();
1608 HInstruction* cond = select->GetCondition();
1609
1610 if (Primitive::IsFloatingPointType(select_type)) {
1611 locations->SetInAt(0, Location::RequiresFpuRegister());
1612 } else {
1613 locations->SetInAt(0, Location::RequiresRegister());
1614 }
1615 locations->SetInAt(1, Location::Any());
1616 if (IsBooleanValueOrMaterializedCondition(cond)) {
1617 locations->SetInAt(2, Location::Any());
1618 }
1619 locations->SetOut(Location::SameAsFirstInput());
1620}
1621
1622void InstructionCodeGeneratorX86::VisitSelect(HSelect* select) {
1623 LocationSummary* locations = select->GetLocations();
1624 NearLabel false_target;
1625 GenerateTestAndBranch<NearLabel>(
1626 select, /* condition_input_index */ 2, /* true_target */ nullptr, &false_target);
1627 codegen_->MoveLocation(locations->Out(), locations->InAt(1), select->GetType());
1628 __ Bind(&false_target);
Mingyao Yangd43b3ac2015-04-01 14:03:04 -07001629}
1630
David Srbecky0cf44932015-12-09 14:09:59 +00001631void LocationsBuilderX86::VisitNativeDebugInfo(HNativeDebugInfo* info) {
1632 new (GetGraph()->GetArena()) LocationSummary(info);
1633}
1634
1635void InstructionCodeGeneratorX86::VisitNativeDebugInfo(HNativeDebugInfo* info) {
David Srbeckyb7070a22016-01-08 18:13:53 +00001636 if (codegen_->HasStackMapAtCurrentPc()) {
1637 // Ensure that we do not collide with the stack map of the previous instruction.
1638 __ nop();
1639 }
David Srbecky0cf44932015-12-09 14:09:59 +00001640 codegen_->RecordPcInfo(info, info->GetDexPc());
1641}
1642
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001643void LocationsBuilderX86::VisitLocal(HLocal* local) {
Nicolas Geoffray787c3072014-03-17 10:20:19 +00001644 local->SetLocations(nullptr);
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +00001645}
1646
Nicolas Geoffray787c3072014-03-17 10:20:19 +00001647void InstructionCodeGeneratorX86::VisitLocal(HLocal* local) {
1648 DCHECK_EQ(local->GetBlock(), GetGraph()->GetEntryBlock());
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +00001649}
1650
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001651void LocationsBuilderX86::VisitLoadLocal(HLoadLocal* local) {
Nicolas Geoffray4a34a422014-04-03 10:38:37 +01001652 local->SetLocations(nullptr);
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001653}
1654
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01001655void InstructionCodeGeneratorX86::VisitLoadLocal(HLoadLocal* load ATTRIBUTE_UNUSED) {
Nicolas Geoffray4a34a422014-04-03 10:38:37 +01001656 // Nothing to do, this is driven by the code generator.
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001657}
1658
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001659void LocationsBuilderX86::VisitStoreLocal(HStoreLocal* store) {
Nicolas Geoffray39468442014-09-02 15:17:15 +01001660 LocationSummary* locations =
1661 new (GetGraph()->GetArena()) LocationSummary(store, LocationSummary::kNoCall);
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001662 switch (store->InputAt(1)->GetType()) {
1663 case Primitive::kPrimBoolean:
1664 case Primitive::kPrimByte:
1665 case Primitive::kPrimChar:
1666 case Primitive::kPrimShort:
1667 case Primitive::kPrimInt:
1668 case Primitive::kPrimNot:
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001669 case Primitive::kPrimFloat:
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001670 locations->SetInAt(1, Location::StackSlot(codegen_->GetStackSlot(store->GetLocal())));
1671 break;
1672
1673 case Primitive::kPrimLong:
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001674 case Primitive::kPrimDouble:
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001675 locations->SetInAt(1, Location::DoubleStackSlot(codegen_->GetStackSlot(store->GetLocal())));
1676 break;
1677
1678 default:
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001679 LOG(FATAL) << "Unknown local type " << store->InputAt(1)->GetType();
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001680 }
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001681}
1682
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01001683void InstructionCodeGeneratorX86::VisitStoreLocal(HStoreLocal* store ATTRIBUTE_UNUSED) {
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001684}
1685
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00001686void LocationsBuilderX86::HandleCondition(HCondition* cond) {
Nicolas Geoffray39468442014-09-02 15:17:15 +01001687 LocationSummary* locations =
Roland Levillain0d37cd02015-05-27 16:39:19 +01001688 new (GetGraph()->GetArena()) LocationSummary(cond, LocationSummary::kNoCall);
Mark Mendellc4701932015-04-10 13:18:51 -04001689 // Handle the long/FP comparisons made in instruction simplification.
1690 switch (cond->InputAt(0)->GetType()) {
1691 case Primitive::kPrimLong: {
1692 locations->SetInAt(0, Location::RequiresRegister());
1693 locations->SetInAt(1, Location::RegisterOrConstant(cond->InputAt(1)));
David Brazdilb3e773e2016-01-26 11:28:37 +00001694 if (!cond->IsEmittedAtUseSite()) {
Mark Mendellc4701932015-04-10 13:18:51 -04001695 locations->SetOut(Location::RequiresRegister());
1696 }
1697 break;
1698 }
1699 case Primitive::kPrimFloat:
1700 case Primitive::kPrimDouble: {
1701 locations->SetInAt(0, Location::RequiresFpuRegister());
Mark P Mendell2f10a5f2016-01-25 14:47:50 +00001702 if (cond->InputAt(1)->IsX86LoadFromConstantTable()) {
1703 DCHECK(cond->InputAt(1)->IsEmittedAtUseSite());
1704 } else if (cond->InputAt(1)->IsConstant()) {
1705 locations->SetInAt(1, Location::RequiresFpuRegister());
1706 } else {
1707 locations->SetInAt(1, Location::Any());
1708 }
David Brazdilb3e773e2016-01-26 11:28:37 +00001709 if (!cond->IsEmittedAtUseSite()) {
Mark Mendellc4701932015-04-10 13:18:51 -04001710 locations->SetOut(Location::RequiresRegister());
1711 }
1712 break;
1713 }
1714 default:
1715 locations->SetInAt(0, Location::RequiresRegister());
1716 locations->SetInAt(1, Location::Any());
David Brazdilb3e773e2016-01-26 11:28:37 +00001717 if (!cond->IsEmittedAtUseSite()) {
Mark Mendellc4701932015-04-10 13:18:51 -04001718 // We need a byte register.
1719 locations->SetOut(Location::RegisterLocation(ECX));
1720 }
1721 break;
Nicolas Geoffraye5038322014-07-04 09:41:32 +01001722 }
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +00001723}
1724
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00001725void InstructionCodeGeneratorX86::HandleCondition(HCondition* cond) {
David Brazdilb3e773e2016-01-26 11:28:37 +00001726 if (cond->IsEmittedAtUseSite()) {
Mark Mendellc4701932015-04-10 13:18:51 -04001727 return;
Nicolas Geoffraya7aca372014-04-28 17:47:12 +01001728 }
Mark Mendellc4701932015-04-10 13:18:51 -04001729
1730 LocationSummary* locations = cond->GetLocations();
1731 Location lhs = locations->InAt(0);
1732 Location rhs = locations->InAt(1);
1733 Register reg = locations->Out().AsRegister<Register>();
Mark Mendell152408f2015-12-31 12:28:50 -05001734 NearLabel true_label, false_label;
Mark Mendellc4701932015-04-10 13:18:51 -04001735
1736 switch (cond->InputAt(0)->GetType()) {
1737 default: {
1738 // Integer case.
1739
Nicolas Geoffrayabfcf182015-09-21 18:41:21 +01001740 // Clear output register: setb only sets the low byte.
Mark Mendellc4701932015-04-10 13:18:51 -04001741 __ xorl(reg, reg);
1742
1743 if (rhs.IsRegister()) {
1744 __ cmpl(lhs.AsRegister<Register>(), rhs.AsRegister<Register>());
1745 } else if (rhs.IsConstant()) {
1746 int32_t constant = CodeGenerator::GetInt32ValueOf(rhs.GetConstant());
1747 if (constant == 0) {
1748 __ testl(lhs.AsRegister<Register>(), lhs.AsRegister<Register>());
1749 } else {
1750 __ cmpl(lhs.AsRegister<Register>(), Immediate(constant));
1751 }
1752 } else {
1753 __ cmpl(lhs.AsRegister<Register>(), Address(ESP, rhs.GetStackIndex()));
1754 }
Aart Bike9f37602015-10-09 11:15:55 -07001755 __ setb(X86Condition(cond->GetCondition()), reg);
Mark Mendellc4701932015-04-10 13:18:51 -04001756 return;
1757 }
1758 case Primitive::kPrimLong:
1759 GenerateLongComparesAndJumps(cond, &true_label, &false_label);
1760 break;
1761 case Primitive::kPrimFloat:
Mark P Mendell2f10a5f2016-01-25 14:47:50 +00001762 GenerateFPCompare(lhs, rhs, cond, false);
Mark Mendellc4701932015-04-10 13:18:51 -04001763 GenerateFPJumps(cond, &true_label, &false_label);
1764 break;
1765 case Primitive::kPrimDouble:
Mark P Mendell2f10a5f2016-01-25 14:47:50 +00001766 GenerateFPCompare(lhs, rhs, cond, true);
Mark Mendellc4701932015-04-10 13:18:51 -04001767 GenerateFPJumps(cond, &true_label, &false_label);
1768 break;
1769 }
1770
1771 // Convert the jumps into the result.
Mark Mendell0c9497d2015-08-21 09:30:05 -04001772 NearLabel done_label;
Mark Mendellc4701932015-04-10 13:18:51 -04001773
Roland Levillain4fa13f62015-07-06 18:11:54 +01001774 // False case: result = 0.
Mark Mendellc4701932015-04-10 13:18:51 -04001775 __ Bind(&false_label);
1776 __ xorl(reg, reg);
1777 __ jmp(&done_label);
1778
Roland Levillain4fa13f62015-07-06 18:11:54 +01001779 // True case: result = 1.
Mark Mendellc4701932015-04-10 13:18:51 -04001780 __ Bind(&true_label);
1781 __ movl(reg, Immediate(1));
1782 __ Bind(&done_label);
Dave Allison20dfc792014-06-16 20:44:29 -07001783}
1784
1785void LocationsBuilderX86::VisitEqual(HEqual* comp) {
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00001786 HandleCondition(comp);
Dave Allison20dfc792014-06-16 20:44:29 -07001787}
1788
1789void InstructionCodeGeneratorX86::VisitEqual(HEqual* comp) {
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00001790 HandleCondition(comp);
Dave Allison20dfc792014-06-16 20:44:29 -07001791}
1792
1793void LocationsBuilderX86::VisitNotEqual(HNotEqual* comp) {
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00001794 HandleCondition(comp);
Dave Allison20dfc792014-06-16 20:44:29 -07001795}
1796
1797void InstructionCodeGeneratorX86::VisitNotEqual(HNotEqual* comp) {
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00001798 HandleCondition(comp);
Dave Allison20dfc792014-06-16 20:44:29 -07001799}
1800
1801void LocationsBuilderX86::VisitLessThan(HLessThan* comp) {
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00001802 HandleCondition(comp);
Dave Allison20dfc792014-06-16 20:44:29 -07001803}
1804
1805void InstructionCodeGeneratorX86::VisitLessThan(HLessThan* comp) {
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00001806 HandleCondition(comp);
Dave Allison20dfc792014-06-16 20:44:29 -07001807}
1808
1809void LocationsBuilderX86::VisitLessThanOrEqual(HLessThanOrEqual* comp) {
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00001810 HandleCondition(comp);
Dave Allison20dfc792014-06-16 20:44:29 -07001811}
1812
1813void InstructionCodeGeneratorX86::VisitLessThanOrEqual(HLessThanOrEqual* comp) {
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00001814 HandleCondition(comp);
Dave Allison20dfc792014-06-16 20:44:29 -07001815}
1816
1817void LocationsBuilderX86::VisitGreaterThan(HGreaterThan* comp) {
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00001818 HandleCondition(comp);
Dave Allison20dfc792014-06-16 20:44:29 -07001819}
1820
1821void InstructionCodeGeneratorX86::VisitGreaterThan(HGreaterThan* comp) {
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00001822 HandleCondition(comp);
Dave Allison20dfc792014-06-16 20:44:29 -07001823}
1824
1825void LocationsBuilderX86::VisitGreaterThanOrEqual(HGreaterThanOrEqual* comp) {
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00001826 HandleCondition(comp);
Dave Allison20dfc792014-06-16 20:44:29 -07001827}
1828
1829void InstructionCodeGeneratorX86::VisitGreaterThanOrEqual(HGreaterThanOrEqual* comp) {
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00001830 HandleCondition(comp);
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001831}
1832
Aart Bike9f37602015-10-09 11:15:55 -07001833void LocationsBuilderX86::VisitBelow(HBelow* comp) {
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00001834 HandleCondition(comp);
Aart Bike9f37602015-10-09 11:15:55 -07001835}
1836
1837void InstructionCodeGeneratorX86::VisitBelow(HBelow* comp) {
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00001838 HandleCondition(comp);
Aart Bike9f37602015-10-09 11:15:55 -07001839}
1840
1841void LocationsBuilderX86::VisitBelowOrEqual(HBelowOrEqual* comp) {
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00001842 HandleCondition(comp);
Aart Bike9f37602015-10-09 11:15:55 -07001843}
1844
1845void InstructionCodeGeneratorX86::VisitBelowOrEqual(HBelowOrEqual* comp) {
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00001846 HandleCondition(comp);
Aart Bike9f37602015-10-09 11:15:55 -07001847}
1848
1849void LocationsBuilderX86::VisitAbove(HAbove* comp) {
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00001850 HandleCondition(comp);
Aart Bike9f37602015-10-09 11:15:55 -07001851}
1852
1853void InstructionCodeGeneratorX86::VisitAbove(HAbove* comp) {
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00001854 HandleCondition(comp);
Aart Bike9f37602015-10-09 11:15:55 -07001855}
1856
1857void LocationsBuilderX86::VisitAboveOrEqual(HAboveOrEqual* comp) {
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00001858 HandleCondition(comp);
Aart Bike9f37602015-10-09 11:15:55 -07001859}
1860
1861void InstructionCodeGeneratorX86::VisitAboveOrEqual(HAboveOrEqual* comp) {
Vladimir Marko5f7b58e2015-11-23 19:49:34 +00001862 HandleCondition(comp);
Aart Bike9f37602015-10-09 11:15:55 -07001863}
1864
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001865void LocationsBuilderX86::VisitIntConstant(HIntConstant* constant) {
Nicolas Geoffray39468442014-09-02 15:17:15 +01001866 LocationSummary* locations =
1867 new (GetGraph()->GetArena()) LocationSummary(constant, LocationSummary::kNoCall);
Nicolas Geoffray96f89a22014-07-11 10:57:49 +01001868 locations->SetOut(Location::ConstantLocation(constant));
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +00001869}
1870
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01001871void InstructionCodeGeneratorX86::VisitIntConstant(HIntConstant* constant ATTRIBUTE_UNUSED) {
Roland Levillain3a3fd0f2014-10-10 13:56:31 +01001872 // Will be generated at use site.
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001873}
1874
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +00001875void LocationsBuilderX86::VisitNullConstant(HNullConstant* constant) {
1876 LocationSummary* locations =
1877 new (GetGraph()->GetArena()) LocationSummary(constant, LocationSummary::kNoCall);
1878 locations->SetOut(Location::ConstantLocation(constant));
1879}
1880
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01001881void InstructionCodeGeneratorX86::VisitNullConstant(HNullConstant* constant ATTRIBUTE_UNUSED) {
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +00001882 // Will be generated at use site.
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +00001883}
1884
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001885void LocationsBuilderX86::VisitLongConstant(HLongConstant* constant) {
Nicolas Geoffray39468442014-09-02 15:17:15 +01001886 LocationSummary* locations =
1887 new (GetGraph()->GetArena()) LocationSummary(constant, LocationSummary::kNoCall);
Nicolas Geoffray96f89a22014-07-11 10:57:49 +01001888 locations->SetOut(Location::ConstantLocation(constant));
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001889}
1890
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01001891void InstructionCodeGeneratorX86::VisitLongConstant(HLongConstant* constant ATTRIBUTE_UNUSED) {
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001892 // Will be generated at use site.
1893}
1894
Nicolas Geoffray102cbed2014-10-15 18:31:05 +01001895void LocationsBuilderX86::VisitFloatConstant(HFloatConstant* constant) {
1896 LocationSummary* locations =
1897 new (GetGraph()->GetArena()) LocationSummary(constant, LocationSummary::kNoCall);
1898 locations->SetOut(Location::ConstantLocation(constant));
1899}
1900
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01001901void InstructionCodeGeneratorX86::VisitFloatConstant(HFloatConstant* constant ATTRIBUTE_UNUSED) {
Nicolas Geoffray102cbed2014-10-15 18:31:05 +01001902 // Will be generated at use site.
1903}
1904
1905void LocationsBuilderX86::VisitDoubleConstant(HDoubleConstant* constant) {
1906 LocationSummary* locations =
1907 new (GetGraph()->GetArena()) LocationSummary(constant, LocationSummary::kNoCall);
1908 locations->SetOut(Location::ConstantLocation(constant));
1909}
1910
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01001911void InstructionCodeGeneratorX86::VisitDoubleConstant(HDoubleConstant* constant ATTRIBUTE_UNUSED) {
Nicolas Geoffray102cbed2014-10-15 18:31:05 +01001912 // Will be generated at use site.
1913}
1914
Calin Juravle27df7582015-04-17 19:12:31 +01001915void LocationsBuilderX86::VisitMemoryBarrier(HMemoryBarrier* memory_barrier) {
1916 memory_barrier->SetLocations(nullptr);
1917}
1918
1919void InstructionCodeGeneratorX86::VisitMemoryBarrier(HMemoryBarrier* memory_barrier) {
Roland Levillain7c1559a2015-12-15 10:55:36 +00001920 codegen_->GenerateMemoryBarrier(memory_barrier->GetBarrierKind());
Calin Juravle27df7582015-04-17 19:12:31 +01001921}
1922
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001923void LocationsBuilderX86::VisitReturnVoid(HReturnVoid* ret) {
Nicolas Geoffray787c3072014-03-17 10:20:19 +00001924 ret->SetLocations(nullptr);
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +00001925}
1926
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01001927void InstructionCodeGeneratorX86::VisitReturnVoid(HReturnVoid* ret ATTRIBUTE_UNUSED) {
Nicolas Geoffray787c3072014-03-17 10:20:19 +00001928 codegen_->GenerateFrameExit();
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +00001929}
1930
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001931void LocationsBuilderX86::VisitReturn(HReturn* ret) {
Nicolas Geoffray39468442014-09-02 15:17:15 +01001932 LocationSummary* locations =
1933 new (GetGraph()->GetArena()) LocationSummary(ret, LocationSummary::kNoCall);
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001934 switch (ret->InputAt(0)->GetType()) {
1935 case Primitive::kPrimBoolean:
1936 case Primitive::kPrimByte:
1937 case Primitive::kPrimChar:
1938 case Primitive::kPrimShort:
1939 case Primitive::kPrimInt:
1940 case Primitive::kPrimNot:
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +01001941 locations->SetInAt(0, Location::RegisterLocation(EAX));
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001942 break;
1943
1944 case Primitive::kPrimLong:
1945 locations->SetInAt(
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +01001946 0, Location::RegisterPairLocation(EAX, EDX));
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001947 break;
1948
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001949 case Primitive::kPrimFloat:
1950 case Primitive::kPrimDouble:
1951 locations->SetInAt(
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +01001952 0, Location::FpuRegisterLocation(XMM0));
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001953 break;
1954
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001955 default:
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001956 LOG(FATAL) << "Unknown return type " << ret->InputAt(0)->GetType();
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001957 }
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001958}
1959
Nicolas Geoffray787c3072014-03-17 10:20:19 +00001960void InstructionCodeGeneratorX86::VisitReturn(HReturn* ret) {
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001961 if (kIsDebugBuild) {
1962 switch (ret->InputAt(0)->GetType()) {
1963 case Primitive::kPrimBoolean:
1964 case Primitive::kPrimByte:
1965 case Primitive::kPrimChar:
1966 case Primitive::kPrimShort:
1967 case Primitive::kPrimInt:
1968 case Primitive::kPrimNot:
Roland Levillain271ab9c2014-11-27 15:23:57 +00001969 DCHECK_EQ(ret->GetLocations()->InAt(0).AsRegister<Register>(), EAX);
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001970 break;
1971
1972 case Primitive::kPrimLong:
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +01001973 DCHECK_EQ(ret->GetLocations()->InAt(0).AsRegisterPairLow<Register>(), EAX);
1974 DCHECK_EQ(ret->GetLocations()->InAt(0).AsRegisterPairHigh<Register>(), EDX);
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001975 break;
1976
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001977 case Primitive::kPrimFloat:
1978 case Primitive::kPrimDouble:
Roland Levillain271ab9c2014-11-27 15:23:57 +00001979 DCHECK_EQ(ret->GetLocations()->InAt(0).AsFpuRegister<XmmRegister>(), XMM0);
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001980 break;
1981
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001982 default:
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001983 LOG(FATAL) << "Unknown return type " << ret->InputAt(0)->GetType();
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001984 }
1985 }
Nicolas Geoffray787c3072014-03-17 10:20:19 +00001986 codegen_->GenerateFrameExit();
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001987}
1988
Calin Juravle175dc732015-08-25 15:42:32 +01001989void LocationsBuilderX86::VisitInvokeUnresolved(HInvokeUnresolved* invoke) {
1990 // The trampoline uses the same calling convention as dex calling conventions,
1991 // except instead of loading arg0/r0 with the target Method*, arg0/r0 will contain
1992 // the method_idx.
1993 HandleInvoke(invoke);
1994}
1995
1996void InstructionCodeGeneratorX86::VisitInvokeUnresolved(HInvokeUnresolved* invoke) {
1997 codegen_->GenerateInvokeUnresolvedRuntimeCall(invoke);
1998}
1999
Nicolas Geoffraye53798a2014-12-01 10:31:54 +00002000void LocationsBuilderX86::VisitInvokeStaticOrDirect(HInvokeStaticOrDirect* invoke) {
David Brazdil58282f42016-01-14 12:45:10 +00002001 // Explicit clinit checks triggered by static invokes must have been pruned by
2002 // art::PrepareForRegisterAllocation.
2003 DCHECK(!invoke->IsStaticWithExplicitClinitCheck());
Roland Levillain4c0eb422015-04-24 16:43:49 +01002004
Mark Mendellfb8d2792015-03-31 22:16:59 -04002005 IntrinsicLocationsBuilderX86 intrinsic(codegen_);
Mark Mendell09ed1a32015-03-25 08:30:06 -04002006 if (intrinsic.TryDispatch(invoke)) {
Vladimir Marko0f7dca42015-11-02 14:36:43 +00002007 if (invoke->GetLocations()->CanCall() && invoke->HasPcRelativeDexCache()) {
Vladimir Markoc53c0792015-11-19 15:48:33 +00002008 invoke->GetLocations()->SetInAt(invoke->GetSpecialInputIndex(), Location::Any());
Vladimir Marko0f7dca42015-11-02 14:36:43 +00002009 }
Mark Mendell09ed1a32015-03-25 08:30:06 -04002010 return;
2011 }
2012
Nicolas Geoffraye982f0b2014-08-13 02:11:24 +01002013 HandleInvoke(invoke);
Nicolas Geoffray94015b92015-06-04 18:21:04 +01002014
Vladimir Marko0f7dca42015-11-02 14:36:43 +00002015 // For PC-relative dex cache the invoke has an extra input, the PC-relative address base.
2016 if (invoke->HasPcRelativeDexCache()) {
Vladimir Markob4536b72015-11-24 13:45:23 +00002017 invoke->GetLocations()->SetInAt(invoke->GetSpecialInputIndex(), Location::RequiresRegister());
Vladimir Marko0f7dca42015-11-02 14:36:43 +00002018 }
Nicolas Geoffraye982f0b2014-08-13 02:11:24 +01002019}
2020
Mark Mendell09ed1a32015-03-25 08:30:06 -04002021static bool TryGenerateIntrinsicCode(HInvoke* invoke, CodeGeneratorX86* codegen) {
2022 if (invoke->GetLocations()->Intrinsified()) {
2023 IntrinsicCodeGeneratorX86 intrinsic(codegen);
2024 intrinsic.Dispatch(invoke);
2025 return true;
2026 }
2027 return false;
2028}
2029
Nicolas Geoffraye53798a2014-12-01 10:31:54 +00002030void InstructionCodeGeneratorX86::VisitInvokeStaticOrDirect(HInvokeStaticOrDirect* invoke) {
David Brazdil58282f42016-01-14 12:45:10 +00002031 // Explicit clinit checks triggered by static invokes must have been pruned by
2032 // art::PrepareForRegisterAllocation.
2033 DCHECK(!invoke->IsStaticWithExplicitClinitCheck());
Roland Levillain4c0eb422015-04-24 16:43:49 +01002034
Mark Mendell09ed1a32015-03-25 08:30:06 -04002035 if (TryGenerateIntrinsicCode(invoke, codegen_)) {
2036 return;
Nicolas Geoffray1cf95282014-12-12 19:22:03 +00002037 }
Nicolas Geoffraye982f0b2014-08-13 02:11:24 +01002038
Nicolas Geoffray94015b92015-06-04 18:21:04 +01002039 LocationSummary* locations = invoke->GetLocations();
Mark Mendell09ed1a32015-03-25 08:30:06 -04002040 codegen_->GenerateStaticOrDirectCall(
Nicolas Geoffray94015b92015-06-04 18:21:04 +01002041 invoke, locations->HasTemps() ? locations->GetTemp(0) : Location::NoLocation());
Mingyao Yang8693fe12015-04-17 16:51:08 -07002042 codegen_->RecordPcInfo(invoke, invoke->GetDexPc());
Nicolas Geoffraye982f0b2014-08-13 02:11:24 +01002043}
2044
2045void LocationsBuilderX86::VisitInvokeVirtual(HInvokeVirtual* invoke) {
Nicolas Geoffraye5234232015-12-02 09:06:11 +00002046 IntrinsicLocationsBuilderX86 intrinsic(codegen_);
2047 if (intrinsic.TryDispatch(invoke)) {
2048 return;
2049 }
2050
Nicolas Geoffraye982f0b2014-08-13 02:11:24 +01002051 HandleInvoke(invoke);
2052}
2053
2054void LocationsBuilderX86::HandleInvoke(HInvoke* invoke) {
Roland Levillain2d27c8e2015-04-28 15:48:45 +01002055 InvokeDexCallingConventionVisitorX86 calling_convention_visitor;
Nicolas Geoffrayfd88f162015-06-03 11:23:52 +01002056 CodeGenerator::CreateCommonInvokeLocationSummary(invoke, &calling_convention_visitor);
Nicolas Geoffray8ccc3f52014-03-19 10:34:11 +00002057}
2058
Nicolas Geoffraye982f0b2014-08-13 02:11:24 +01002059void InstructionCodeGeneratorX86::VisitInvokeVirtual(HInvokeVirtual* invoke) {
Andreas Gampebfb5ba92015-09-01 15:45:02 +00002060 if (TryGenerateIntrinsicCode(invoke, codegen_)) {
2061 return;
2062 }
Nicolas Geoffray8ccc3f52014-03-19 10:34:11 +00002063
Andreas Gampebfb5ba92015-09-01 15:45:02 +00002064 codegen_->GenerateVirtualCall(invoke, invoke->GetLocations()->GetTemp(0));
Nicolas Geoffrayf12feb82014-07-17 18:32:41 +01002065 DCHECK(!codegen_->IsLeafMethod());
Nicolas Geoffray39468442014-09-02 15:17:15 +01002066 codegen_->RecordPcInfo(invoke, invoke->GetDexPc());
Nicolas Geoffray8ccc3f52014-03-19 10:34:11 +00002067}
2068
Nicolas Geoffray52839d12014-11-07 17:47:25 +00002069void LocationsBuilderX86::VisitInvokeInterface(HInvokeInterface* invoke) {
Roland Levillain0d5a2812015-11-13 10:07:31 +00002070 // This call to HandleInvoke allocates a temporary (core) register
2071 // which is also used to transfer the hidden argument from FP to
2072 // core register.
Nicolas Geoffray52839d12014-11-07 17:47:25 +00002073 HandleInvoke(invoke);
2074 // Add the hidden argument.
Mark P Mendell966c3ae2015-01-27 15:45:27 +00002075 invoke->GetLocations()->AddTemp(Location::FpuRegisterLocation(XMM7));
Nicolas Geoffray52839d12014-11-07 17:47:25 +00002076}
2077
2078void InstructionCodeGeneratorX86::VisitInvokeInterface(HInvokeInterface* invoke) {
2079 // TODO: b/18116999, our IMTs can miss an IncompatibleClassChangeError.
Roland Levillain0d5a2812015-11-13 10:07:31 +00002080 LocationSummary* locations = invoke->GetLocations();
2081 Register temp = locations->GetTemp(0).AsRegister<Register>();
2082 XmmRegister hidden_reg = locations->GetTemp(1).AsFpuRegister<XmmRegister>();
Mathieu Chartiere401d142015-04-22 13:56:20 -07002083 uint32_t method_offset = mirror::Class::EmbeddedImTableEntryOffset(
2084 invoke->GetImtIndex() % mirror::Class::kImtSize, kX86PointerSize).Uint32Value();
Nicolas Geoffray52839d12014-11-07 17:47:25 +00002085 Location receiver = locations->InAt(0);
2086 uint32_t class_offset = mirror::Object::ClassOffset().Int32Value();
2087
Roland Levillain0d5a2812015-11-13 10:07:31 +00002088 // Set the hidden argument. This is safe to do this here, as XMM7
2089 // won't be modified thereafter, before the `call` instruction.
2090 DCHECK_EQ(XMM7, hidden_reg);
Nicolas Geoffray52839d12014-11-07 17:47:25 +00002091 __ movl(temp, Immediate(invoke->GetDexMethodIndex()));
Roland Levillain0d5a2812015-11-13 10:07:31 +00002092 __ movd(hidden_reg, temp);
Nicolas Geoffray52839d12014-11-07 17:47:25 +00002093
Nicolas Geoffray52839d12014-11-07 17:47:25 +00002094 if (receiver.IsStackSlot()) {
2095 __ movl(temp, Address(ESP, receiver.GetStackIndex()));
Roland Levillain0d5a2812015-11-13 10:07:31 +00002096 // /* HeapReference<Class> */ temp = temp->klass_
Nicolas Geoffray52839d12014-11-07 17:47:25 +00002097 __ movl(temp, Address(temp, class_offset));
2098 } else {
Roland Levillain0d5a2812015-11-13 10:07:31 +00002099 // /* HeapReference<Class> */ temp = receiver->klass_
Roland Levillain271ab9c2014-11-27 15:23:57 +00002100 __ movl(temp, Address(receiver.AsRegister<Register>(), class_offset));
Nicolas Geoffray52839d12014-11-07 17:47:25 +00002101 }
Roland Levillain4d027112015-07-01 15:41:14 +01002102 codegen_->MaybeRecordImplicitNullCheck(invoke);
Roland Levillain0d5a2812015-11-13 10:07:31 +00002103 // Instead of simply (possibly) unpoisoning `temp` here, we should
2104 // emit a read barrier for the previous class reference load.
2105 // However this is not required in practice, as this is an
2106 // intermediate/temporary reference and because the current
2107 // concurrent copying collector keeps the from-space memory
2108 // intact/accessible until the end of the marking phase (the
2109 // concurrent copying collector may not in the future).
Roland Levillain4d027112015-07-01 15:41:14 +01002110 __ MaybeUnpoisonHeapReference(temp);
Nicolas Geoffray52839d12014-11-07 17:47:25 +00002111 // temp = temp->GetImtEntryAt(method_offset);
2112 __ movl(temp, Address(temp, method_offset));
2113 // call temp->GetEntryPoint();
Roland Levillain0d5a2812015-11-13 10:07:31 +00002114 __ call(Address(temp,
2115 ArtMethod::EntryPointFromQuickCompiledCodeOffset(kX86WordSize).Int32Value()));
Nicolas Geoffray52839d12014-11-07 17:47:25 +00002116
2117 DCHECK(!codegen_->IsLeafMethod());
2118 codegen_->RecordPcInfo(invoke, invoke->GetDexPc());
2119}
2120
Roland Levillain88cb1752014-10-20 16:36:47 +01002121void LocationsBuilderX86::VisitNeg(HNeg* neg) {
2122 LocationSummary* locations =
2123 new (GetGraph()->GetArena()) LocationSummary(neg, LocationSummary::kNoCall);
2124 switch (neg->GetResultType()) {
2125 case Primitive::kPrimInt:
Roland Levillain2e07b4f2014-10-23 18:12:09 +01002126 case Primitive::kPrimLong:
Roland Levillain88cb1752014-10-20 16:36:47 +01002127 locations->SetInAt(0, Location::RequiresRegister());
2128 locations->SetOut(Location::SameAsFirstInput());
2129 break;
2130
Roland Levillain88cb1752014-10-20 16:36:47 +01002131 case Primitive::kPrimFloat:
Roland Levillain5368c212014-11-27 15:03:41 +00002132 locations->SetInAt(0, Location::RequiresFpuRegister());
2133 locations->SetOut(Location::SameAsFirstInput());
2134 locations->AddTemp(Location::RequiresRegister());
2135 locations->AddTemp(Location::RequiresFpuRegister());
2136 break;
2137
Roland Levillain88cb1752014-10-20 16:36:47 +01002138 case Primitive::kPrimDouble:
Roland Levillain3dbcb382014-10-28 17:30:07 +00002139 locations->SetInAt(0, Location::RequiresFpuRegister());
Roland Levillain5368c212014-11-27 15:03:41 +00002140 locations->SetOut(Location::SameAsFirstInput());
2141 locations->AddTemp(Location::RequiresFpuRegister());
Roland Levillain88cb1752014-10-20 16:36:47 +01002142 break;
2143
2144 default:
2145 LOG(FATAL) << "Unexpected neg type " << neg->GetResultType();
2146 }
2147}
2148
2149void InstructionCodeGeneratorX86::VisitNeg(HNeg* neg) {
2150 LocationSummary* locations = neg->GetLocations();
2151 Location out = locations->Out();
2152 Location in = locations->InAt(0);
2153 switch (neg->GetResultType()) {
2154 case Primitive::kPrimInt:
2155 DCHECK(in.IsRegister());
Roland Levillain3dbcb382014-10-28 17:30:07 +00002156 DCHECK(in.Equals(out));
Roland Levillain271ab9c2014-11-27 15:23:57 +00002157 __ negl(out.AsRegister<Register>());
Roland Levillain88cb1752014-10-20 16:36:47 +01002158 break;
2159
2160 case Primitive::kPrimLong:
Roland Levillain2e07b4f2014-10-23 18:12:09 +01002161 DCHECK(in.IsRegisterPair());
Roland Levillain3dbcb382014-10-28 17:30:07 +00002162 DCHECK(in.Equals(out));
Roland Levillain2e07b4f2014-10-23 18:12:09 +01002163 __ negl(out.AsRegisterPairLow<Register>());
2164 // Negation is similar to subtraction from zero. The least
2165 // significant byte triggers a borrow when it is different from
2166 // zero; to take it into account, add 1 to the most significant
2167 // byte if the carry flag (CF) is set to 1 after the first NEGL
2168 // operation.
2169 __ adcl(out.AsRegisterPairHigh<Register>(), Immediate(0));
2170 __ negl(out.AsRegisterPairHigh<Register>());
2171 break;
2172
Roland Levillain5368c212014-11-27 15:03:41 +00002173 case Primitive::kPrimFloat: {
2174 DCHECK(in.Equals(out));
Roland Levillain271ab9c2014-11-27 15:23:57 +00002175 Register constant = locations->GetTemp(0).AsRegister<Register>();
2176 XmmRegister mask = locations->GetTemp(1).AsFpuRegister<XmmRegister>();
Roland Levillain5368c212014-11-27 15:03:41 +00002177 // Implement float negation with an exclusive or with value
2178 // 0x80000000 (mask for bit 31, representing the sign of a
2179 // single-precision floating-point number).
2180 __ movl(constant, Immediate(INT32_C(0x80000000)));
2181 __ movd(mask, constant);
Roland Levillain271ab9c2014-11-27 15:23:57 +00002182 __ xorps(out.AsFpuRegister<XmmRegister>(), mask);
Roland Levillain3dbcb382014-10-28 17:30:07 +00002183 break;
Roland Levillain5368c212014-11-27 15:03:41 +00002184 }
Roland Levillain3dbcb382014-10-28 17:30:07 +00002185
Roland Levillain5368c212014-11-27 15:03:41 +00002186 case Primitive::kPrimDouble: {
2187 DCHECK(in.Equals(out));
Roland Levillain271ab9c2014-11-27 15:23:57 +00002188 XmmRegister mask = locations->GetTemp(0).AsFpuRegister<XmmRegister>();
Roland Levillain5368c212014-11-27 15:03:41 +00002189 // Implement double negation with an exclusive or with value
2190 // 0x8000000000000000 (mask for bit 63, representing the sign of
2191 // a double-precision floating-point number).
2192 __ LoadLongConstant(mask, INT64_C(0x8000000000000000));
Roland Levillain271ab9c2014-11-27 15:23:57 +00002193 __ xorpd(out.AsFpuRegister<XmmRegister>(), mask);
Roland Levillain88cb1752014-10-20 16:36:47 +01002194 break;
Roland Levillain5368c212014-11-27 15:03:41 +00002195 }
Roland Levillain88cb1752014-10-20 16:36:47 +01002196
2197 default:
2198 LOG(FATAL) << "Unexpected neg type " << neg->GetResultType();
2199 }
2200}
2201
Mark P Mendell2f10a5f2016-01-25 14:47:50 +00002202void LocationsBuilderX86::VisitX86FPNeg(HX86FPNeg* neg) {
2203 LocationSummary* locations =
2204 new (GetGraph()->GetArena()) LocationSummary(neg, LocationSummary::kNoCall);
2205 DCHECK(Primitive::IsFloatingPointType(neg->GetType()));
2206 locations->SetInAt(0, Location::RequiresFpuRegister());
2207 locations->SetInAt(1, Location::RequiresRegister());
2208 locations->SetOut(Location::SameAsFirstInput());
2209 locations->AddTemp(Location::RequiresFpuRegister());
2210}
2211
2212void InstructionCodeGeneratorX86::VisitX86FPNeg(HX86FPNeg* neg) {
2213 LocationSummary* locations = neg->GetLocations();
2214 Location out = locations->Out();
2215 DCHECK(locations->InAt(0).Equals(out));
2216
2217 Register constant_area = locations->InAt(1).AsRegister<Register>();
2218 XmmRegister mask = locations->GetTemp(0).AsFpuRegister<XmmRegister>();
2219 if (neg->GetType() == Primitive::kPrimFloat) {
2220 __ movss(mask, codegen_->LiteralInt32Address(INT32_C(0x80000000), constant_area));
2221 __ xorps(out.AsFpuRegister<XmmRegister>(), mask);
2222 } else {
2223 __ movsd(mask, codegen_->LiteralInt64Address(INT64_C(0x8000000000000000), constant_area));
2224 __ xorpd(out.AsFpuRegister<XmmRegister>(), mask);
2225 }
2226}
2227
Roland Levillaindff1f282014-11-05 14:15:05 +00002228void LocationsBuilderX86::VisitTypeConversion(HTypeConversion* conversion) {
Roland Levillaindff1f282014-11-05 14:15:05 +00002229 Primitive::Type result_type = conversion->GetResultType();
2230 Primitive::Type input_type = conversion->GetInputType();
Nicolas Geoffray01fcc9e2014-12-01 14:16:20 +00002231 DCHECK_NE(result_type, input_type);
Roland Levillain624279f2014-12-04 11:54:28 +00002232
Roland Levillain4c0b61f2014-12-05 12:06:01 +00002233 // The float-to-long and double-to-long type conversions rely on a
2234 // call to the runtime.
Roland Levillain624279f2014-12-04 11:54:28 +00002235 LocationSummary::CallKind call_kind =
Roland Levillain4c0b61f2014-12-05 12:06:01 +00002236 ((input_type == Primitive::kPrimFloat || input_type == Primitive::kPrimDouble)
2237 && result_type == Primitive::kPrimLong)
Roland Levillain624279f2014-12-04 11:54:28 +00002238 ? LocationSummary::kCall
2239 : LocationSummary::kNoCall;
2240 LocationSummary* locations =
2241 new (GetGraph()->GetArena()) LocationSummary(conversion, call_kind);
2242
David Brazdilb2bd1c52015-03-25 11:17:37 +00002243 // The Java language does not allow treating boolean as an integral type but
2244 // our bit representation makes it safe.
David Brazdil46e2a392015-03-16 17:31:52 +00002245
Roland Levillaindff1f282014-11-05 14:15:05 +00002246 switch (result_type) {
Roland Levillain51d3fc42014-11-13 14:11:42 +00002247 case Primitive::kPrimByte:
2248 switch (input_type) {
David Brazdil46e2a392015-03-16 17:31:52 +00002249 case Primitive::kPrimBoolean:
2250 // Boolean input is a result of code transformations.
Roland Levillain51d3fc42014-11-13 14:11:42 +00002251 case Primitive::kPrimShort:
2252 case Primitive::kPrimInt:
2253 case Primitive::kPrimChar:
Roland Levillain981e4542014-11-14 11:47:14 +00002254 // Processing a Dex `int-to-byte' instruction.
Mark Mendell5f874182015-03-04 15:42:45 -05002255 locations->SetInAt(0, Location::ByteRegisterOrConstant(ECX, conversion->InputAt(0)));
2256 // Make the output overlap to please the register allocator. This greatly simplifies
2257 // the validation of the linear scan implementation
2258 locations->SetOut(Location::RequiresRegister(), Location::kOutputOverlap);
Roland Levillain51d3fc42014-11-13 14:11:42 +00002259 break;
2260
2261 default:
2262 LOG(FATAL) << "Unexpected type conversion from " << input_type
2263 << " to " << result_type;
2264 }
2265 break;
2266
Roland Levillain01a8d712014-11-14 16:27:39 +00002267 case Primitive::kPrimShort:
2268 switch (input_type) {
David Brazdil46e2a392015-03-16 17:31:52 +00002269 case Primitive::kPrimBoolean:
2270 // Boolean input is a result of code transformations.
Roland Levillain01a8d712014-11-14 16:27:39 +00002271 case Primitive::kPrimByte:
2272 case Primitive::kPrimInt:
2273 case Primitive::kPrimChar:
2274 // Processing a Dex `int-to-short' instruction.
2275 locations->SetInAt(0, Location::Any());
2276 locations->SetOut(Location::RequiresRegister(), Location::kNoOutputOverlap);
2277 break;
2278
2279 default:
2280 LOG(FATAL) << "Unexpected type conversion from " << input_type
2281 << " to " << result_type;
2282 }
2283 break;
2284
Roland Levillain946e1432014-11-11 17:35:19 +00002285 case Primitive::kPrimInt:
2286 switch (input_type) {
2287 case Primitive::kPrimLong:
Roland Levillain981e4542014-11-14 11:47:14 +00002288 // Processing a Dex `long-to-int' instruction.
Roland Levillain946e1432014-11-11 17:35:19 +00002289 locations->SetInAt(0, Location::Any());
2290 locations->SetOut(Location::RequiresRegister(), Location::kNoOutputOverlap);
2291 break;
2292
2293 case Primitive::kPrimFloat:
Roland Levillain3f8f9362014-12-02 17:45:01 +00002294 // Processing a Dex `float-to-int' instruction.
2295 locations->SetInAt(0, Location::RequiresFpuRegister());
2296 locations->SetOut(Location::RequiresRegister());
2297 locations->AddTemp(Location::RequiresFpuRegister());
2298 break;
2299
Roland Levillain946e1432014-11-11 17:35:19 +00002300 case Primitive::kPrimDouble:
Roland Levillain4c0b61f2014-12-05 12:06:01 +00002301 // Processing a Dex `double-to-int' instruction.
2302 locations->SetInAt(0, Location::RequiresFpuRegister());
2303 locations->SetOut(Location::RequiresRegister());
2304 locations->AddTemp(Location::RequiresFpuRegister());
Roland Levillain946e1432014-11-11 17:35:19 +00002305 break;
2306
2307 default:
2308 LOG(FATAL) << "Unexpected type conversion from " << input_type
2309 << " to " << result_type;
2310 }
2311 break;
2312
Roland Levillaindff1f282014-11-05 14:15:05 +00002313 case Primitive::kPrimLong:
2314 switch (input_type) {
David Brazdil46e2a392015-03-16 17:31:52 +00002315 case Primitive::kPrimBoolean:
2316 // Boolean input is a result of code transformations.
Roland Levillaindff1f282014-11-05 14:15:05 +00002317 case Primitive::kPrimByte:
2318 case Primitive::kPrimShort:
2319 case Primitive::kPrimInt:
Roland Levillain666c7322014-11-10 13:39:43 +00002320 case Primitive::kPrimChar:
Roland Levillain981e4542014-11-14 11:47:14 +00002321 // Processing a Dex `int-to-long' instruction.
Roland Levillaindff1f282014-11-05 14:15:05 +00002322 locations->SetInAt(0, Location::RegisterLocation(EAX));
2323 locations->SetOut(Location::RegisterPairLocation(EAX, EDX));
2324 break;
2325
Mark P Mendell966c3ae2015-01-27 15:45:27 +00002326 case Primitive::kPrimFloat:
Vladimir Marko949c91f2015-01-27 10:48:44 +00002327 case Primitive::kPrimDouble: {
Mark P Mendell966c3ae2015-01-27 15:45:27 +00002328 // Processing a Dex `float-to-long' or 'double-to-long' instruction.
Vladimir Marko949c91f2015-01-27 10:48:44 +00002329 InvokeRuntimeCallingConvention calling_convention;
Mark P Mendell966c3ae2015-01-27 15:45:27 +00002330 XmmRegister parameter = calling_convention.GetFpuRegisterAt(0);
2331 locations->SetInAt(0, Location::FpuRegisterLocation(parameter));
2332
Vladimir Marko949c91f2015-01-27 10:48:44 +00002333 // The runtime helper puts the result in EAX, EDX.
2334 locations->SetOut(Location::RegisterPairLocation(EAX, EDX));
Vladimir Marko949c91f2015-01-27 10:48:44 +00002335 }
Mark P Mendell966c3ae2015-01-27 15:45:27 +00002336 break;
Roland Levillaindff1f282014-11-05 14:15:05 +00002337
2338 default:
2339 LOG(FATAL) << "Unexpected type conversion from " << input_type
2340 << " to " << result_type;
2341 }
2342 break;
2343
Roland Levillain981e4542014-11-14 11:47:14 +00002344 case Primitive::kPrimChar:
2345 switch (input_type) {
David Brazdil46e2a392015-03-16 17:31:52 +00002346 case Primitive::kPrimBoolean:
2347 // Boolean input is a result of code transformations.
Roland Levillain981e4542014-11-14 11:47:14 +00002348 case Primitive::kPrimByte:
2349 case Primitive::kPrimShort:
2350 case Primitive::kPrimInt:
Roland Levillain981e4542014-11-14 11:47:14 +00002351 // Processing a Dex `int-to-char' instruction.
2352 locations->SetInAt(0, Location::Any());
2353 locations->SetOut(Location::RequiresRegister(), Location::kNoOutputOverlap);
2354 break;
2355
2356 default:
2357 LOG(FATAL) << "Unexpected type conversion from " << input_type
2358 << " to " << result_type;
2359 }
2360 break;
2361
Roland Levillaindff1f282014-11-05 14:15:05 +00002362 case Primitive::kPrimFloat:
Roland Levillaincff13742014-11-17 14:32:17 +00002363 switch (input_type) {
David Brazdil46e2a392015-03-16 17:31:52 +00002364 case Primitive::kPrimBoolean:
2365 // Boolean input is a result of code transformations.
Roland Levillaincff13742014-11-17 14:32:17 +00002366 case Primitive::kPrimByte:
2367 case Primitive::kPrimShort:
2368 case Primitive::kPrimInt:
2369 case Primitive::kPrimChar:
2370 // Processing a Dex `int-to-float' instruction.
2371 locations->SetInAt(0, Location::RequiresRegister());
2372 locations->SetOut(Location::RequiresFpuRegister());
2373 break;
2374
2375 case Primitive::kPrimLong:
Roland Levillain6d0e4832014-11-27 18:31:21 +00002376 // Processing a Dex `long-to-float' instruction.
Roland Levillain232ade02015-04-20 15:14:36 +01002377 locations->SetInAt(0, Location::Any());
2378 locations->SetOut(Location::Any());
Roland Levillain6d0e4832014-11-27 18:31:21 +00002379 break;
2380
Roland Levillaincff13742014-11-17 14:32:17 +00002381 case Primitive::kPrimDouble:
Roland Levillain8964e2b2014-12-04 12:10:50 +00002382 // Processing a Dex `double-to-float' instruction.
2383 locations->SetInAt(0, Location::RequiresFpuRegister());
2384 locations->SetOut(Location::RequiresFpuRegister(), Location::kNoOutputOverlap);
Roland Levillaincff13742014-11-17 14:32:17 +00002385 break;
2386
2387 default:
2388 LOG(FATAL) << "Unexpected type conversion from " << input_type
2389 << " to " << result_type;
2390 };
2391 break;
2392
Roland Levillaindff1f282014-11-05 14:15:05 +00002393 case Primitive::kPrimDouble:
Roland Levillaincff13742014-11-17 14:32:17 +00002394 switch (input_type) {
David Brazdil46e2a392015-03-16 17:31:52 +00002395 case Primitive::kPrimBoolean:
2396 // Boolean input is a result of code transformations.
Roland Levillaincff13742014-11-17 14:32:17 +00002397 case Primitive::kPrimByte:
2398 case Primitive::kPrimShort:
2399 case Primitive::kPrimInt:
2400 case Primitive::kPrimChar:
2401 // Processing a Dex `int-to-double' instruction.
2402 locations->SetInAt(0, Location::RequiresRegister());
2403 locations->SetOut(Location::RequiresFpuRegister());
2404 break;
2405
2406 case Primitive::kPrimLong:
Roland Levillain647b9ed2014-11-27 12:06:00 +00002407 // Processing a Dex `long-to-double' instruction.
Roland Levillain232ade02015-04-20 15:14:36 +01002408 locations->SetInAt(0, Location::Any());
2409 locations->SetOut(Location::Any());
Roland Levillain647b9ed2014-11-27 12:06:00 +00002410 break;
2411
Roland Levillaincff13742014-11-17 14:32:17 +00002412 case Primitive::kPrimFloat:
Roland Levillain8964e2b2014-12-04 12:10:50 +00002413 // Processing a Dex `float-to-double' instruction.
2414 locations->SetInAt(0, Location::RequiresFpuRegister());
2415 locations->SetOut(Location::RequiresFpuRegister(), Location::kNoOutputOverlap);
Roland Levillaincff13742014-11-17 14:32:17 +00002416 break;
2417
2418 default:
2419 LOG(FATAL) << "Unexpected type conversion from " << input_type
2420 << " to " << result_type;
2421 }
Roland Levillaindff1f282014-11-05 14:15:05 +00002422 break;
2423
2424 default:
2425 LOG(FATAL) << "Unexpected type conversion from " << input_type
2426 << " to " << result_type;
2427 }
2428}
2429
2430void InstructionCodeGeneratorX86::VisitTypeConversion(HTypeConversion* conversion) {
2431 LocationSummary* locations = conversion->GetLocations();
2432 Location out = locations->Out();
2433 Location in = locations->InAt(0);
2434 Primitive::Type result_type = conversion->GetResultType();
2435 Primitive::Type input_type = conversion->GetInputType();
Nicolas Geoffray01fcc9e2014-12-01 14:16:20 +00002436 DCHECK_NE(result_type, input_type);
Roland Levillaindff1f282014-11-05 14:15:05 +00002437 switch (result_type) {
Roland Levillain51d3fc42014-11-13 14:11:42 +00002438 case Primitive::kPrimByte:
2439 switch (input_type) {
David Brazdil46e2a392015-03-16 17:31:52 +00002440 case Primitive::kPrimBoolean:
2441 // Boolean input is a result of code transformations.
Roland Levillain51d3fc42014-11-13 14:11:42 +00002442 case Primitive::kPrimShort:
2443 case Primitive::kPrimInt:
2444 case Primitive::kPrimChar:
Roland Levillain981e4542014-11-14 11:47:14 +00002445 // Processing a Dex `int-to-byte' instruction.
Nicolas Geoffray5b4b8982014-12-18 17:45:56 +00002446 if (in.IsRegister()) {
2447 __ movsxb(out.AsRegister<Register>(), in.AsRegister<ByteRegister>());
Nicolas Geoffray5b4b8982014-12-18 17:45:56 +00002448 } else {
2449 DCHECK(in.GetConstant()->IsIntConstant());
2450 int32_t value = in.GetConstant()->AsIntConstant()->GetValue();
2451 __ movl(out.AsRegister<Register>(), Immediate(static_cast<int8_t>(value)));
2452 }
Roland Levillain51d3fc42014-11-13 14:11:42 +00002453 break;
2454
2455 default:
2456 LOG(FATAL) << "Unexpected type conversion from " << input_type
2457 << " to " << result_type;
2458 }
2459 break;
2460
Roland Levillain01a8d712014-11-14 16:27:39 +00002461 case Primitive::kPrimShort:
2462 switch (input_type) {
David Brazdil46e2a392015-03-16 17:31:52 +00002463 case Primitive::kPrimBoolean:
2464 // Boolean input is a result of code transformations.
Roland Levillain01a8d712014-11-14 16:27:39 +00002465 case Primitive::kPrimByte:
2466 case Primitive::kPrimInt:
2467 case Primitive::kPrimChar:
2468 // Processing a Dex `int-to-short' instruction.
2469 if (in.IsRegister()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00002470 __ movsxw(out.AsRegister<Register>(), in.AsRegister<Register>());
Roland Levillain01a8d712014-11-14 16:27:39 +00002471 } else if (in.IsStackSlot()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00002472 __ movsxw(out.AsRegister<Register>(), Address(ESP, in.GetStackIndex()));
Roland Levillain01a8d712014-11-14 16:27:39 +00002473 } else {
2474 DCHECK(in.GetConstant()->IsIntConstant());
2475 int32_t value = in.GetConstant()->AsIntConstant()->GetValue();
Roland Levillain271ab9c2014-11-27 15:23:57 +00002476 __ movl(out.AsRegister<Register>(), Immediate(static_cast<int16_t>(value)));
Roland Levillain01a8d712014-11-14 16:27:39 +00002477 }
2478 break;
2479
2480 default:
2481 LOG(FATAL) << "Unexpected type conversion from " << input_type
2482 << " to " << result_type;
2483 }
2484 break;
2485
Roland Levillain946e1432014-11-11 17:35:19 +00002486 case Primitive::kPrimInt:
2487 switch (input_type) {
2488 case Primitive::kPrimLong:
Roland Levillain981e4542014-11-14 11:47:14 +00002489 // Processing a Dex `long-to-int' instruction.
Roland Levillain946e1432014-11-11 17:35:19 +00002490 if (in.IsRegisterPair()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00002491 __ movl(out.AsRegister<Register>(), in.AsRegisterPairLow<Register>());
Roland Levillain946e1432014-11-11 17:35:19 +00002492 } else if (in.IsDoubleStackSlot()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00002493 __ movl(out.AsRegister<Register>(), Address(ESP, in.GetStackIndex()));
Roland Levillain946e1432014-11-11 17:35:19 +00002494 } else {
2495 DCHECK(in.IsConstant());
2496 DCHECK(in.GetConstant()->IsLongConstant());
2497 int64_t value = in.GetConstant()->AsLongConstant()->GetValue();
Roland Levillain271ab9c2014-11-27 15:23:57 +00002498 __ movl(out.AsRegister<Register>(), Immediate(static_cast<int32_t>(value)));
Roland Levillain946e1432014-11-11 17:35:19 +00002499 }
2500 break;
2501
Roland Levillain3f8f9362014-12-02 17:45:01 +00002502 case Primitive::kPrimFloat: {
2503 // Processing a Dex `float-to-int' instruction.
2504 XmmRegister input = in.AsFpuRegister<XmmRegister>();
2505 Register output = out.AsRegister<Register>();
2506 XmmRegister temp = locations->GetTemp(0).AsFpuRegister<XmmRegister>();
Mark Mendell0c9497d2015-08-21 09:30:05 -04002507 NearLabel done, nan;
Roland Levillain3f8f9362014-12-02 17:45:01 +00002508
2509 __ movl(output, Immediate(kPrimIntMax));
2510 // temp = int-to-float(output)
2511 __ cvtsi2ss(temp, output);
2512 // if input >= temp goto done
2513 __ comiss(input, temp);
2514 __ j(kAboveEqual, &done);
2515 // if input == NaN goto nan
2516 __ j(kUnordered, &nan);
2517 // output = float-to-int-truncate(input)
2518 __ cvttss2si(output, input);
2519 __ jmp(&done);
2520 __ Bind(&nan);
2521 // output = 0
2522 __ xorl(output, output);
2523 __ Bind(&done);
2524 break;
2525 }
2526
Roland Levillain4c0b61f2014-12-05 12:06:01 +00002527 case Primitive::kPrimDouble: {
2528 // Processing a Dex `double-to-int' instruction.
2529 XmmRegister input = in.AsFpuRegister<XmmRegister>();
2530 Register output = out.AsRegister<Register>();
2531 XmmRegister temp = locations->GetTemp(0).AsFpuRegister<XmmRegister>();
Mark Mendell0c9497d2015-08-21 09:30:05 -04002532 NearLabel done, nan;
Roland Levillain4c0b61f2014-12-05 12:06:01 +00002533
2534 __ movl(output, Immediate(kPrimIntMax));
2535 // temp = int-to-double(output)
2536 __ cvtsi2sd(temp, output);
2537 // if input >= temp goto done
2538 __ comisd(input, temp);
2539 __ j(kAboveEqual, &done);
2540 // if input == NaN goto nan
2541 __ j(kUnordered, &nan);
2542 // output = double-to-int-truncate(input)
2543 __ cvttsd2si(output, input);
2544 __ jmp(&done);
2545 __ Bind(&nan);
2546 // output = 0
2547 __ xorl(output, output);
2548 __ Bind(&done);
Roland Levillain946e1432014-11-11 17:35:19 +00002549 break;
Roland Levillain4c0b61f2014-12-05 12:06:01 +00002550 }
Roland Levillain946e1432014-11-11 17:35:19 +00002551
2552 default:
2553 LOG(FATAL) << "Unexpected type conversion from " << input_type
2554 << " to " << result_type;
2555 }
2556 break;
2557
Roland Levillaindff1f282014-11-05 14:15:05 +00002558 case Primitive::kPrimLong:
2559 switch (input_type) {
David Brazdil46e2a392015-03-16 17:31:52 +00002560 case Primitive::kPrimBoolean:
2561 // Boolean input is a result of code transformations.
Roland Levillaindff1f282014-11-05 14:15:05 +00002562 case Primitive::kPrimByte:
2563 case Primitive::kPrimShort:
2564 case Primitive::kPrimInt:
Roland Levillain666c7322014-11-10 13:39:43 +00002565 case Primitive::kPrimChar:
Roland Levillain981e4542014-11-14 11:47:14 +00002566 // Processing a Dex `int-to-long' instruction.
Roland Levillaindff1f282014-11-05 14:15:05 +00002567 DCHECK_EQ(out.AsRegisterPairLow<Register>(), EAX);
2568 DCHECK_EQ(out.AsRegisterPairHigh<Register>(), EDX);
Roland Levillain271ab9c2014-11-27 15:23:57 +00002569 DCHECK_EQ(in.AsRegister<Register>(), EAX);
Roland Levillaindff1f282014-11-05 14:15:05 +00002570 __ cdq();
2571 break;
2572
2573 case Primitive::kPrimFloat:
Roland Levillain624279f2014-12-04 11:54:28 +00002574 // Processing a Dex `float-to-long' instruction.
Alexandre Rames8158f282015-08-07 10:26:17 +01002575 codegen_->InvokeRuntime(QUICK_ENTRY_POINT(pF2l),
2576 conversion,
2577 conversion->GetDexPc(),
2578 nullptr);
Roland Levillain888d0672015-11-23 18:53:50 +00002579 CheckEntrypointTypes<kQuickF2l, int64_t, float>();
Roland Levillain624279f2014-12-04 11:54:28 +00002580 break;
2581
Roland Levillaindff1f282014-11-05 14:15:05 +00002582 case Primitive::kPrimDouble:
Roland Levillain4c0b61f2014-12-05 12:06:01 +00002583 // Processing a Dex `double-to-long' instruction.
Alexandre Rames8158f282015-08-07 10:26:17 +01002584 codegen_->InvokeRuntime(QUICK_ENTRY_POINT(pD2l),
2585 conversion,
2586 conversion->GetDexPc(),
2587 nullptr);
Roland Levillain888d0672015-11-23 18:53:50 +00002588 CheckEntrypointTypes<kQuickD2l, int64_t, double>();
Roland Levillaindff1f282014-11-05 14:15:05 +00002589 break;
2590
2591 default:
2592 LOG(FATAL) << "Unexpected type conversion from " << input_type
2593 << " to " << result_type;
2594 }
2595 break;
2596
Roland Levillain981e4542014-11-14 11:47:14 +00002597 case Primitive::kPrimChar:
2598 switch (input_type) {
David Brazdil46e2a392015-03-16 17:31:52 +00002599 case Primitive::kPrimBoolean:
2600 // Boolean input is a result of code transformations.
Roland Levillain981e4542014-11-14 11:47:14 +00002601 case Primitive::kPrimByte:
2602 case Primitive::kPrimShort:
2603 case Primitive::kPrimInt:
Roland Levillain981e4542014-11-14 11:47:14 +00002604 // Processing a Dex `Process a Dex `int-to-char'' instruction.
2605 if (in.IsRegister()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00002606 __ movzxw(out.AsRegister<Register>(), in.AsRegister<Register>());
Roland Levillain981e4542014-11-14 11:47:14 +00002607 } else if (in.IsStackSlot()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00002608 __ movzxw(out.AsRegister<Register>(), Address(ESP, in.GetStackIndex()));
Roland Levillain981e4542014-11-14 11:47:14 +00002609 } else {
2610 DCHECK(in.GetConstant()->IsIntConstant());
2611 int32_t value = in.GetConstant()->AsIntConstant()->GetValue();
Roland Levillain271ab9c2014-11-27 15:23:57 +00002612 __ movl(out.AsRegister<Register>(), Immediate(static_cast<uint16_t>(value)));
Roland Levillain981e4542014-11-14 11:47:14 +00002613 }
2614 break;
2615
2616 default:
2617 LOG(FATAL) << "Unexpected type conversion from " << input_type
2618 << " to " << result_type;
2619 }
2620 break;
2621
Roland Levillaindff1f282014-11-05 14:15:05 +00002622 case Primitive::kPrimFloat:
Roland Levillaincff13742014-11-17 14:32:17 +00002623 switch (input_type) {
David Brazdil46e2a392015-03-16 17:31:52 +00002624 case Primitive::kPrimBoolean:
2625 // Boolean input is a result of code transformations.
Roland Levillaincff13742014-11-17 14:32:17 +00002626 case Primitive::kPrimByte:
2627 case Primitive::kPrimShort:
2628 case Primitive::kPrimInt:
2629 case Primitive::kPrimChar:
Roland Levillain6d0e4832014-11-27 18:31:21 +00002630 // Processing a Dex `int-to-float' instruction.
Roland Levillain271ab9c2014-11-27 15:23:57 +00002631 __ cvtsi2ss(out.AsFpuRegister<XmmRegister>(), in.AsRegister<Register>());
Roland Levillaincff13742014-11-17 14:32:17 +00002632 break;
2633
Roland Levillain6d0e4832014-11-27 18:31:21 +00002634 case Primitive::kPrimLong: {
2635 // Processing a Dex `long-to-float' instruction.
Roland Levillain232ade02015-04-20 15:14:36 +01002636 size_t adjustment = 0;
Roland Levillain6d0e4832014-11-27 18:31:21 +00002637
Roland Levillain232ade02015-04-20 15:14:36 +01002638 // Create stack space for the call to
2639 // InstructionCodeGeneratorX86::PushOntoFPStack and/or X86Assembler::fstps below.
2640 // TODO: enhance register allocator to ask for stack temporaries.
2641 if (!in.IsDoubleStackSlot() || !out.IsStackSlot()) {
2642 adjustment = Primitive::ComponentSize(Primitive::kPrimLong);
2643 __ subl(ESP, Immediate(adjustment));
2644 }
Roland Levillain6d0e4832014-11-27 18:31:21 +00002645
Roland Levillain232ade02015-04-20 15:14:36 +01002646 // Load the value to the FP stack, using temporaries if needed.
2647 PushOntoFPStack(in, 0, adjustment, false, true);
2648
2649 if (out.IsStackSlot()) {
2650 __ fstps(Address(ESP, out.GetStackIndex() + adjustment));
2651 } else {
2652 __ fstps(Address(ESP, 0));
2653 Location stack_temp = Location::StackSlot(0);
2654 codegen_->Move32(out, stack_temp);
2655 }
2656
2657 // Remove the temporary stack space we allocated.
2658 if (adjustment != 0) {
2659 __ addl(ESP, Immediate(adjustment));
2660 }
Roland Levillain6d0e4832014-11-27 18:31:21 +00002661 break;
2662 }
2663
Roland Levillaincff13742014-11-17 14:32:17 +00002664 case Primitive::kPrimDouble:
Roland Levillain8964e2b2014-12-04 12:10:50 +00002665 // Processing a Dex `double-to-float' instruction.
2666 __ cvtsd2ss(out.AsFpuRegister<XmmRegister>(), in.AsFpuRegister<XmmRegister>());
Roland Levillaincff13742014-11-17 14:32:17 +00002667 break;
2668
2669 default:
2670 LOG(FATAL) << "Unexpected type conversion from " << input_type
2671 << " to " << result_type;
2672 };
2673 break;
2674
Roland Levillaindff1f282014-11-05 14:15:05 +00002675 case Primitive::kPrimDouble:
Roland Levillaincff13742014-11-17 14:32:17 +00002676 switch (input_type) {
David Brazdil46e2a392015-03-16 17:31:52 +00002677 case Primitive::kPrimBoolean:
2678 // Boolean input is a result of code transformations.
Roland Levillaincff13742014-11-17 14:32:17 +00002679 case Primitive::kPrimByte:
2680 case Primitive::kPrimShort:
2681 case Primitive::kPrimInt:
2682 case Primitive::kPrimChar:
Roland Levillain6d0e4832014-11-27 18:31:21 +00002683 // Processing a Dex `int-to-double' instruction.
Roland Levillain271ab9c2014-11-27 15:23:57 +00002684 __ cvtsi2sd(out.AsFpuRegister<XmmRegister>(), in.AsRegister<Register>());
Roland Levillaincff13742014-11-17 14:32:17 +00002685 break;
2686
Roland Levillain647b9ed2014-11-27 12:06:00 +00002687 case Primitive::kPrimLong: {
2688 // Processing a Dex `long-to-double' instruction.
Roland Levillain232ade02015-04-20 15:14:36 +01002689 size_t adjustment = 0;
Roland Levillain647b9ed2014-11-27 12:06:00 +00002690
Roland Levillain232ade02015-04-20 15:14:36 +01002691 // Create stack space for the call to
2692 // InstructionCodeGeneratorX86::PushOntoFPStack and/or X86Assembler::fstpl below.
2693 // TODO: enhance register allocator to ask for stack temporaries.
2694 if (!in.IsDoubleStackSlot() || !out.IsDoubleStackSlot()) {
2695 adjustment = Primitive::ComponentSize(Primitive::kPrimLong);
2696 __ subl(ESP, Immediate(adjustment));
2697 }
2698
2699 // Load the value to the FP stack, using temporaries if needed.
2700 PushOntoFPStack(in, 0, adjustment, false, true);
2701
2702 if (out.IsDoubleStackSlot()) {
2703 __ fstpl(Address(ESP, out.GetStackIndex() + adjustment));
2704 } else {
2705 __ fstpl(Address(ESP, 0));
2706 Location stack_temp = Location::DoubleStackSlot(0);
2707 codegen_->Move64(out, stack_temp);
2708 }
2709
2710 // Remove the temporary stack space we allocated.
2711 if (adjustment != 0) {
2712 __ addl(ESP, Immediate(adjustment));
2713 }
Roland Levillain647b9ed2014-11-27 12:06:00 +00002714 break;
2715 }
2716
Roland Levillaincff13742014-11-17 14:32:17 +00002717 case Primitive::kPrimFloat:
Roland Levillain8964e2b2014-12-04 12:10:50 +00002718 // Processing a Dex `float-to-double' instruction.
2719 __ cvtss2sd(out.AsFpuRegister<XmmRegister>(), in.AsFpuRegister<XmmRegister>());
Roland Levillaincff13742014-11-17 14:32:17 +00002720 break;
2721
2722 default:
2723 LOG(FATAL) << "Unexpected type conversion from " << input_type
2724 << " to " << result_type;
2725 };
Roland Levillaindff1f282014-11-05 14:15:05 +00002726 break;
2727
2728 default:
2729 LOG(FATAL) << "Unexpected type conversion from " << input_type
2730 << " to " << result_type;
2731 }
2732}
2733
Nicolas Geoffrayd8ee7372014-03-28 15:43:40 +00002734void LocationsBuilderX86::VisitAdd(HAdd* add) {
Nicolas Geoffray39468442014-09-02 15:17:15 +01002735 LocationSummary* locations =
2736 new (GetGraph()->GetArena()) LocationSummary(add, LocationSummary::kNoCall);
Nicolas Geoffrayd8ee7372014-03-28 15:43:40 +00002737 switch (add->GetResultType()) {
Mark Mendell09b84632015-02-13 17:48:38 -05002738 case Primitive::kPrimInt: {
2739 locations->SetInAt(0, Location::RequiresRegister());
2740 locations->SetInAt(1, Location::RegisterOrConstant(add->InputAt(1)));
2741 locations->SetOut(Location::RequiresRegister(), Location::kNoOutputOverlap);
2742 break;
2743 }
2744
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002745 case Primitive::kPrimLong: {
Nicolas Geoffraya7aca372014-04-28 17:47:12 +01002746 locations->SetInAt(0, Location::RequiresRegister());
2747 locations->SetInAt(1, Location::Any());
2748 locations->SetOut(Location::SameAsFirstInput());
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002749 break;
2750 }
2751
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01002752 case Primitive::kPrimFloat:
2753 case Primitive::kPrimDouble: {
2754 locations->SetInAt(0, Location::RequiresFpuRegister());
David Brazdilb3e773e2016-01-26 11:28:37 +00002755 if (add->InputAt(1)->IsX86LoadFromConstantTable()) {
2756 DCHECK(add->InputAt(1)->IsEmittedAtUseSite());
Nicolas Geoffray7770a3e2016-02-03 10:13:41 +00002757 } else if (add->InputAt(1)->IsConstant()) {
2758 locations->SetInAt(1, Location::RequiresFpuRegister());
David Brazdilb3e773e2016-01-26 11:28:37 +00002759 } else {
2760 locations->SetInAt(1, Location::Any());
2761 }
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01002762 locations->SetOut(Location::SameAsFirstInput());
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002763 break;
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01002764 }
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002765
Nicolas Geoffrayd8ee7372014-03-28 15:43:40 +00002766 default:
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01002767 LOG(FATAL) << "Unexpected add type " << add->GetResultType();
2768 break;
Nicolas Geoffrayd8ee7372014-03-28 15:43:40 +00002769 }
Nicolas Geoffrayd8ee7372014-03-28 15:43:40 +00002770}
2771
2772void InstructionCodeGeneratorX86::VisitAdd(HAdd* add) {
2773 LocationSummary* locations = add->GetLocations();
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01002774 Location first = locations->InAt(0);
2775 Location second = locations->InAt(1);
Mark Mendell09b84632015-02-13 17:48:38 -05002776 Location out = locations->Out();
2777
Nicolas Geoffrayd8ee7372014-03-28 15:43:40 +00002778 switch (add->GetResultType()) {
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002779 case Primitive::kPrimInt: {
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01002780 if (second.IsRegister()) {
Mark Mendell09b84632015-02-13 17:48:38 -05002781 if (out.AsRegister<Register>() == first.AsRegister<Register>()) {
2782 __ addl(out.AsRegister<Register>(), second.AsRegister<Register>());
Mark Mendell33bf2452015-05-27 10:08:24 -04002783 } else if (out.AsRegister<Register>() == second.AsRegister<Register>()) {
2784 __ addl(out.AsRegister<Register>(), first.AsRegister<Register>());
Mark Mendell09b84632015-02-13 17:48:38 -05002785 } else {
2786 __ leal(out.AsRegister<Register>(), Address(
2787 first.AsRegister<Register>(), second.AsRegister<Register>(), TIMES_1, 0));
2788 }
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01002789 } else if (second.IsConstant()) {
Mark Mendell09b84632015-02-13 17:48:38 -05002790 int32_t value = second.GetConstant()->AsIntConstant()->GetValue();
2791 if (out.AsRegister<Register>() == first.AsRegister<Register>()) {
2792 __ addl(out.AsRegister<Register>(), Immediate(value));
2793 } else {
2794 __ leal(out.AsRegister<Register>(), Address(first.AsRegister<Register>(), value));
2795 }
Nicolas Geoffraya7aca372014-04-28 17:47:12 +01002796 } else {
Mark Mendell09b84632015-02-13 17:48:38 -05002797 DCHECK(first.Equals(locations->Out()));
Roland Levillain271ab9c2014-11-27 15:23:57 +00002798 __ addl(first.AsRegister<Register>(), Address(ESP, second.GetStackIndex()));
Nicolas Geoffraya7aca372014-04-28 17:47:12 +01002799 }
Nicolas Geoffrayd8ee7372014-03-28 15:43:40 +00002800 break;
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002801 }
2802
2803 case Primitive::kPrimLong: {
Nicolas Geoffray9574c4b2014-11-12 13:19:37 +00002804 if (second.IsRegisterPair()) {
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +01002805 __ addl(first.AsRegisterPairLow<Register>(), second.AsRegisterPairLow<Register>());
2806 __ adcl(first.AsRegisterPairHigh<Register>(), second.AsRegisterPairHigh<Register>());
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00002807 } else if (second.IsDoubleStackSlot()) {
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +01002808 __ addl(first.AsRegisterPairLow<Register>(), Address(ESP, second.GetStackIndex()));
2809 __ adcl(first.AsRegisterPairHigh<Register>(),
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01002810 Address(ESP, second.GetHighStackIndex(kX86WordSize)));
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00002811 } else {
2812 DCHECK(second.IsConstant()) << second;
2813 int64_t value = second.GetConstant()->AsLongConstant()->GetValue();
2814 __ addl(first.AsRegisterPairLow<Register>(), Immediate(Low32Bits(value)));
2815 __ adcl(first.AsRegisterPairHigh<Register>(), Immediate(High32Bits(value)));
Nicolas Geoffraya7aca372014-04-28 17:47:12 +01002816 }
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002817 break;
2818 }
2819
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01002820 case Primitive::kPrimFloat: {
2821 if (second.IsFpuRegister()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00002822 __ addss(first.AsFpuRegister<XmmRegister>(), second.AsFpuRegister<XmmRegister>());
Mark Mendell0616ae02015-04-17 12:49:27 -04002823 } else if (add->InputAt(1)->IsX86LoadFromConstantTable()) {
2824 HX86LoadFromConstantTable* const_area = add->InputAt(1)->AsX86LoadFromConstantTable();
David Brazdilb3e773e2016-01-26 11:28:37 +00002825 DCHECK(const_area->IsEmittedAtUseSite());
Mark Mendell0616ae02015-04-17 12:49:27 -04002826 __ addss(first.AsFpuRegister<XmmRegister>(),
2827 codegen_->LiteralFloatAddress(
2828 const_area->GetConstant()->AsFloatConstant()->GetValue(),
2829 const_area->GetLocations()->InAt(0).AsRegister<Register>()));
2830 } else {
2831 DCHECK(second.IsStackSlot());
2832 __ addss(first.AsFpuRegister<XmmRegister>(), Address(ESP, second.GetStackIndex()));
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01002833 }
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002834 break;
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01002835 }
2836
2837 case Primitive::kPrimDouble: {
2838 if (second.IsFpuRegister()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00002839 __ addsd(first.AsFpuRegister<XmmRegister>(), second.AsFpuRegister<XmmRegister>());
Mark Mendell0616ae02015-04-17 12:49:27 -04002840 } else if (add->InputAt(1)->IsX86LoadFromConstantTable()) {
2841 HX86LoadFromConstantTable* const_area = add->InputAt(1)->AsX86LoadFromConstantTable();
David Brazdilb3e773e2016-01-26 11:28:37 +00002842 DCHECK(const_area->IsEmittedAtUseSite());
Mark Mendell0616ae02015-04-17 12:49:27 -04002843 __ addsd(first.AsFpuRegister<XmmRegister>(),
2844 codegen_->LiteralDoubleAddress(
2845 const_area->GetConstant()->AsDoubleConstant()->GetValue(),
2846 const_area->GetLocations()->InAt(0).AsRegister<Register>()));
2847 } else {
2848 DCHECK(second.IsDoubleStackSlot());
2849 __ addsd(first.AsFpuRegister<XmmRegister>(), Address(ESP, second.GetStackIndex()));
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01002850 }
2851 break;
2852 }
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002853
Nicolas Geoffrayd8ee7372014-03-28 15:43:40 +00002854 default:
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01002855 LOG(FATAL) << "Unexpected add type " << add->GetResultType();
Nicolas Geoffrayd8ee7372014-03-28 15:43:40 +00002856 }
2857}
2858
Nicolas Geoffrayf583e592014-04-07 13:20:42 +01002859void LocationsBuilderX86::VisitSub(HSub* sub) {
Nicolas Geoffray39468442014-09-02 15:17:15 +01002860 LocationSummary* locations =
2861 new (GetGraph()->GetArena()) LocationSummary(sub, LocationSummary::kNoCall);
Nicolas Geoffrayf583e592014-04-07 13:20:42 +01002862 switch (sub->GetResultType()) {
Nicolas Geoffraya7aca372014-04-28 17:47:12 +01002863 case Primitive::kPrimInt:
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002864 case Primitive::kPrimLong: {
Nicolas Geoffraya7aca372014-04-28 17:47:12 +01002865 locations->SetInAt(0, Location::RequiresRegister());
2866 locations->SetInAt(1, Location::Any());
2867 locations->SetOut(Location::SameAsFirstInput());
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002868 break;
2869 }
Calin Juravle11351682014-10-23 15:38:15 +01002870 case Primitive::kPrimFloat:
2871 case Primitive::kPrimDouble: {
2872 locations->SetInAt(0, Location::RequiresFpuRegister());
David Brazdilb3e773e2016-01-26 11:28:37 +00002873 if (sub->InputAt(1)->IsX86LoadFromConstantTable()) {
2874 DCHECK(sub->InputAt(1)->IsEmittedAtUseSite());
Nicolas Geoffray7770a3e2016-02-03 10:13:41 +00002875 } else if (sub->InputAt(1)->IsConstant()) {
2876 locations->SetInAt(1, Location::RequiresFpuRegister());
David Brazdilb3e773e2016-01-26 11:28:37 +00002877 } else {
2878 locations->SetInAt(1, Location::Any());
2879 }
Calin Juravle11351682014-10-23 15:38:15 +01002880 locations->SetOut(Location::SameAsFirstInput());
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002881 break;
Calin Juravle11351682014-10-23 15:38:15 +01002882 }
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002883
Nicolas Geoffrayf583e592014-04-07 13:20:42 +01002884 default:
Calin Juravle11351682014-10-23 15:38:15 +01002885 LOG(FATAL) << "Unexpected sub type " << sub->GetResultType();
Nicolas Geoffrayf583e592014-04-07 13:20:42 +01002886 }
Nicolas Geoffrayf583e592014-04-07 13:20:42 +01002887}
2888
2889void InstructionCodeGeneratorX86::VisitSub(HSub* sub) {
2890 LocationSummary* locations = sub->GetLocations();
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +01002891 Location first = locations->InAt(0);
2892 Location second = locations->InAt(1);
Calin Juravle11351682014-10-23 15:38:15 +01002893 DCHECK(first.Equals(locations->Out()));
Nicolas Geoffrayf583e592014-04-07 13:20:42 +01002894 switch (sub->GetResultType()) {
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002895 case Primitive::kPrimInt: {
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +01002896 if (second.IsRegister()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00002897 __ subl(first.AsRegister<Register>(), second.AsRegister<Register>());
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +01002898 } else if (second.IsConstant()) {
Roland Levillain199f3362014-11-27 17:15:16 +00002899 __ subl(first.AsRegister<Register>(),
2900 Immediate(second.GetConstant()->AsIntConstant()->GetValue()));
Nicolas Geoffraya7aca372014-04-28 17:47:12 +01002901 } else {
Roland Levillain271ab9c2014-11-27 15:23:57 +00002902 __ subl(first.AsRegister<Register>(), Address(ESP, second.GetStackIndex()));
Nicolas Geoffraya7aca372014-04-28 17:47:12 +01002903 }
Nicolas Geoffrayf583e592014-04-07 13:20:42 +01002904 break;
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002905 }
2906
2907 case Primitive::kPrimLong: {
Nicolas Geoffray9574c4b2014-11-12 13:19:37 +00002908 if (second.IsRegisterPair()) {
Calin Juravle11351682014-10-23 15:38:15 +01002909 __ subl(first.AsRegisterPairLow<Register>(), second.AsRegisterPairLow<Register>());
2910 __ sbbl(first.AsRegisterPairHigh<Register>(), second.AsRegisterPairHigh<Register>());
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00002911 } else if (second.IsDoubleStackSlot()) {
Calin Juravle11351682014-10-23 15:38:15 +01002912 __ subl(first.AsRegisterPairLow<Register>(), Address(ESP, second.GetStackIndex()));
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +01002913 __ sbbl(first.AsRegisterPairHigh<Register>(),
2914 Address(ESP, second.GetHighStackIndex(kX86WordSize)));
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00002915 } else {
2916 DCHECK(second.IsConstant()) << second;
2917 int64_t value = second.GetConstant()->AsLongConstant()->GetValue();
2918 __ subl(first.AsRegisterPairLow<Register>(), Immediate(Low32Bits(value)));
2919 __ sbbl(first.AsRegisterPairHigh<Register>(), Immediate(High32Bits(value)));
Nicolas Geoffraya7aca372014-04-28 17:47:12 +01002920 }
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002921 break;
2922 }
2923
Calin Juravle11351682014-10-23 15:38:15 +01002924 case Primitive::kPrimFloat: {
Mark Mendell0616ae02015-04-17 12:49:27 -04002925 if (second.IsFpuRegister()) {
2926 __ subss(first.AsFpuRegister<XmmRegister>(), second.AsFpuRegister<XmmRegister>());
2927 } else if (sub->InputAt(1)->IsX86LoadFromConstantTable()) {
2928 HX86LoadFromConstantTable* const_area = sub->InputAt(1)->AsX86LoadFromConstantTable();
David Brazdilb3e773e2016-01-26 11:28:37 +00002929 DCHECK(const_area->IsEmittedAtUseSite());
Mark Mendell0616ae02015-04-17 12:49:27 -04002930 __ subss(first.AsFpuRegister<XmmRegister>(),
2931 codegen_->LiteralFloatAddress(
2932 const_area->GetConstant()->AsFloatConstant()->GetValue(),
2933 const_area->GetLocations()->InAt(0).AsRegister<Register>()));
2934 } else {
2935 DCHECK(second.IsStackSlot());
2936 __ subss(first.AsFpuRegister<XmmRegister>(), Address(ESP, second.GetStackIndex()));
2937 }
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002938 break;
Calin Juravle11351682014-10-23 15:38:15 +01002939 }
2940
2941 case Primitive::kPrimDouble: {
Mark Mendell0616ae02015-04-17 12:49:27 -04002942 if (second.IsFpuRegister()) {
2943 __ subsd(first.AsFpuRegister<XmmRegister>(), second.AsFpuRegister<XmmRegister>());
2944 } else if (sub->InputAt(1)->IsX86LoadFromConstantTable()) {
2945 HX86LoadFromConstantTable* const_area = sub->InputAt(1)->AsX86LoadFromConstantTable();
David Brazdilb3e773e2016-01-26 11:28:37 +00002946 DCHECK(const_area->IsEmittedAtUseSite());
Mark Mendell0616ae02015-04-17 12:49:27 -04002947 __ subsd(first.AsFpuRegister<XmmRegister>(),
2948 codegen_->LiteralDoubleAddress(
2949 const_area->GetConstant()->AsDoubleConstant()->GetValue(),
2950 const_area->GetLocations()->InAt(0).AsRegister<Register>()));
2951 } else {
2952 DCHECK(second.IsDoubleStackSlot());
2953 __ subsd(first.AsFpuRegister<XmmRegister>(), Address(ESP, second.GetStackIndex()));
2954 }
Calin Juravle11351682014-10-23 15:38:15 +01002955 break;
2956 }
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002957
Nicolas Geoffrayf583e592014-04-07 13:20:42 +01002958 default:
Calin Juravle11351682014-10-23 15:38:15 +01002959 LOG(FATAL) << "Unexpected sub type " << sub->GetResultType();
Nicolas Geoffrayf583e592014-04-07 13:20:42 +01002960 }
2961}
2962
Calin Juravle34bacdf2014-10-07 20:23:36 +01002963void LocationsBuilderX86::VisitMul(HMul* mul) {
2964 LocationSummary* locations =
2965 new (GetGraph()->GetArena()) LocationSummary(mul, LocationSummary::kNoCall);
2966 switch (mul->GetResultType()) {
2967 case Primitive::kPrimInt:
2968 locations->SetInAt(0, Location::RequiresRegister());
2969 locations->SetInAt(1, Location::Any());
Mark Mendell4a2aa4a2015-07-27 16:13:10 -04002970 if (mul->InputAt(1)->IsIntConstant()) {
2971 // Can use 3 operand multiply.
2972 locations->SetOut(Location::RequiresRegister(), Location::kNoOutputOverlap);
2973 } else {
2974 locations->SetOut(Location::SameAsFirstInput());
2975 }
Calin Juravle34bacdf2014-10-07 20:23:36 +01002976 break;
2977 case Primitive::kPrimLong: {
2978 locations->SetInAt(0, Location::RequiresRegister());
Calin Juravle34bacdf2014-10-07 20:23:36 +01002979 locations->SetInAt(1, Location::Any());
2980 locations->SetOut(Location::SameAsFirstInput());
2981 // Needed for imul on 32bits with 64bits output.
2982 locations->AddTemp(Location::RegisterLocation(EAX));
2983 locations->AddTemp(Location::RegisterLocation(EDX));
2984 break;
2985 }
Calin Juravleb5bfa962014-10-21 18:02:24 +01002986 case Primitive::kPrimFloat:
2987 case Primitive::kPrimDouble: {
2988 locations->SetInAt(0, Location::RequiresFpuRegister());
David Brazdilb3e773e2016-01-26 11:28:37 +00002989 if (mul->InputAt(1)->IsX86LoadFromConstantTable()) {
2990 DCHECK(mul->InputAt(1)->IsEmittedAtUseSite());
Nicolas Geoffray7770a3e2016-02-03 10:13:41 +00002991 } else if (mul->InputAt(1)->IsConstant()) {
2992 locations->SetInAt(1, Location::RequiresFpuRegister());
David Brazdilb3e773e2016-01-26 11:28:37 +00002993 } else {
2994 locations->SetInAt(1, Location::Any());
2995 }
Calin Juravleb5bfa962014-10-21 18:02:24 +01002996 locations->SetOut(Location::SameAsFirstInput());
Calin Juravle34bacdf2014-10-07 20:23:36 +01002997 break;
Calin Juravleb5bfa962014-10-21 18:02:24 +01002998 }
Calin Juravle34bacdf2014-10-07 20:23:36 +01002999
3000 default:
Calin Juravleb5bfa962014-10-21 18:02:24 +01003001 LOG(FATAL) << "Unexpected mul type " << mul->GetResultType();
Calin Juravle34bacdf2014-10-07 20:23:36 +01003002 }
3003}
3004
3005void InstructionCodeGeneratorX86::VisitMul(HMul* mul) {
3006 LocationSummary* locations = mul->GetLocations();
3007 Location first = locations->InAt(0);
3008 Location second = locations->InAt(1);
Mark Mendell4a2aa4a2015-07-27 16:13:10 -04003009 Location out = locations->Out();
Calin Juravle34bacdf2014-10-07 20:23:36 +01003010
3011 switch (mul->GetResultType()) {
Mark Mendell4a2aa4a2015-07-27 16:13:10 -04003012 case Primitive::kPrimInt:
3013 // The constant may have ended up in a register, so test explicitly to avoid
3014 // problems where the output may not be the same as the first operand.
3015 if (mul->InputAt(1)->IsIntConstant()) {
3016 Immediate imm(mul->InputAt(1)->AsIntConstant()->GetValue());
3017 __ imull(out.AsRegister<Register>(), first.AsRegister<Register>(), imm);
3018 } else if (second.IsRegister()) {
3019 DCHECK(first.Equals(out));
Roland Levillain271ab9c2014-11-27 15:23:57 +00003020 __ imull(first.AsRegister<Register>(), second.AsRegister<Register>());
Calin Juravle34bacdf2014-10-07 20:23:36 +01003021 } else {
3022 DCHECK(second.IsStackSlot());
Mark Mendell4a2aa4a2015-07-27 16:13:10 -04003023 DCHECK(first.Equals(out));
Roland Levillain271ab9c2014-11-27 15:23:57 +00003024 __ imull(first.AsRegister<Register>(), Address(ESP, second.GetStackIndex()));
Calin Juravle34bacdf2014-10-07 20:23:36 +01003025 }
3026 break;
Calin Juravle34bacdf2014-10-07 20:23:36 +01003027
3028 case Primitive::kPrimLong: {
Calin Juravle34bacdf2014-10-07 20:23:36 +01003029 Register in1_hi = first.AsRegisterPairHigh<Register>();
3030 Register in1_lo = first.AsRegisterPairLow<Register>();
Roland Levillain271ab9c2014-11-27 15:23:57 +00003031 Register eax = locations->GetTemp(0).AsRegister<Register>();
3032 Register edx = locations->GetTemp(1).AsRegister<Register>();
Calin Juravle34bacdf2014-10-07 20:23:36 +01003033
3034 DCHECK_EQ(EAX, eax);
3035 DCHECK_EQ(EDX, edx);
3036
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00003037 // input: in1 - 64 bits, in2 - 64 bits.
Calin Juravle34bacdf2014-10-07 20:23:36 +01003038 // output: in1
3039 // formula: in1.hi : in1.lo = (in1.lo * in2.hi + in1.hi * in2.lo)* 2^32 + in1.lo * in2.lo
3040 // parts: in1.hi = in1.lo * in2.hi + in1.hi * in2.lo + (in1.lo * in2.lo)[63:32]
3041 // parts: in1.lo = (in1.lo * in2.lo)[31:0]
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00003042 if (second.IsConstant()) {
3043 DCHECK(second.GetConstant()->IsLongConstant());
Calin Juravle34bacdf2014-10-07 20:23:36 +01003044
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00003045 int64_t value = second.GetConstant()->AsLongConstant()->GetValue();
3046 int32_t low_value = Low32Bits(value);
3047 int32_t high_value = High32Bits(value);
3048 Immediate low(low_value);
3049 Immediate high(high_value);
3050
3051 __ movl(eax, high);
3052 // eax <- in1.lo * in2.hi
3053 __ imull(eax, in1_lo);
3054 // in1.hi <- in1.hi * in2.lo
3055 __ imull(in1_hi, low);
3056 // in1.hi <- in1.lo * in2.hi + in1.hi * in2.lo
3057 __ addl(in1_hi, eax);
3058 // move in2_lo to eax to prepare for double precision
3059 __ movl(eax, low);
3060 // edx:eax <- in1.lo * in2.lo
3061 __ mull(in1_lo);
3062 // in1.hi <- in2.hi * in1.lo + in2.lo * in1.hi + (in1.lo * in2.lo)[63:32]
3063 __ addl(in1_hi, edx);
3064 // in1.lo <- (in1.lo * in2.lo)[31:0];
3065 __ movl(in1_lo, eax);
3066 } else if (second.IsRegisterPair()) {
3067 Register in2_hi = second.AsRegisterPairHigh<Register>();
3068 Register in2_lo = second.AsRegisterPairLow<Register>();
3069
3070 __ movl(eax, in2_hi);
3071 // eax <- in1.lo * in2.hi
3072 __ imull(eax, in1_lo);
3073 // in1.hi <- in1.hi * in2.lo
3074 __ imull(in1_hi, in2_lo);
3075 // in1.hi <- in1.lo * in2.hi + in1.hi * in2.lo
3076 __ addl(in1_hi, eax);
3077 // move in1_lo to eax to prepare for double precision
3078 __ movl(eax, in1_lo);
3079 // edx:eax <- in1.lo * in2.lo
3080 __ mull(in2_lo);
3081 // in1.hi <- in2.hi * in1.lo + in2.lo * in1.hi + (in1.lo * in2.lo)[63:32]
3082 __ addl(in1_hi, edx);
3083 // in1.lo <- (in1.lo * in2.lo)[31:0];
3084 __ movl(in1_lo, eax);
3085 } else {
3086 DCHECK(second.IsDoubleStackSlot()) << second;
3087 Address in2_hi(ESP, second.GetHighStackIndex(kX86WordSize));
3088 Address in2_lo(ESP, second.GetStackIndex());
3089
3090 __ movl(eax, in2_hi);
3091 // eax <- in1.lo * in2.hi
3092 __ imull(eax, in1_lo);
3093 // in1.hi <- in1.hi * in2.lo
3094 __ imull(in1_hi, in2_lo);
3095 // in1.hi <- in1.lo * in2.hi + in1.hi * in2.lo
3096 __ addl(in1_hi, eax);
3097 // move in1_lo to eax to prepare for double precision
3098 __ movl(eax, in1_lo);
3099 // edx:eax <- in1.lo * in2.lo
3100 __ mull(in2_lo);
3101 // in1.hi <- in2.hi * in1.lo + in2.lo * in1.hi + (in1.lo * in2.lo)[63:32]
3102 __ addl(in1_hi, edx);
3103 // in1.lo <- (in1.lo * in2.lo)[31:0];
3104 __ movl(in1_lo, eax);
3105 }
Calin Juravle34bacdf2014-10-07 20:23:36 +01003106
3107 break;
3108 }
3109
Calin Juravleb5bfa962014-10-21 18:02:24 +01003110 case Primitive::kPrimFloat: {
Mark Mendell0616ae02015-04-17 12:49:27 -04003111 DCHECK(first.Equals(locations->Out()));
3112 if (second.IsFpuRegister()) {
3113 __ mulss(first.AsFpuRegister<XmmRegister>(), second.AsFpuRegister<XmmRegister>());
3114 } else if (mul->InputAt(1)->IsX86LoadFromConstantTable()) {
3115 HX86LoadFromConstantTable* const_area = mul->InputAt(1)->AsX86LoadFromConstantTable();
David Brazdilb3e773e2016-01-26 11:28:37 +00003116 DCHECK(const_area->IsEmittedAtUseSite());
Mark Mendell0616ae02015-04-17 12:49:27 -04003117 __ mulss(first.AsFpuRegister<XmmRegister>(),
3118 codegen_->LiteralFloatAddress(
3119 const_area->GetConstant()->AsFloatConstant()->GetValue(),
3120 const_area->GetLocations()->InAt(0).AsRegister<Register>()));
3121 } else {
3122 DCHECK(second.IsStackSlot());
3123 __ mulss(first.AsFpuRegister<XmmRegister>(), Address(ESP, second.GetStackIndex()));
3124 }
Calin Juravle34bacdf2014-10-07 20:23:36 +01003125 break;
Calin Juravleb5bfa962014-10-21 18:02:24 +01003126 }
3127
3128 case Primitive::kPrimDouble: {
Mark Mendell0616ae02015-04-17 12:49:27 -04003129 DCHECK(first.Equals(locations->Out()));
3130 if (second.IsFpuRegister()) {
3131 __ mulsd(first.AsFpuRegister<XmmRegister>(), second.AsFpuRegister<XmmRegister>());
3132 } else if (mul->InputAt(1)->IsX86LoadFromConstantTable()) {
3133 HX86LoadFromConstantTable* const_area = mul->InputAt(1)->AsX86LoadFromConstantTable();
David Brazdilb3e773e2016-01-26 11:28:37 +00003134 DCHECK(const_area->IsEmittedAtUseSite());
Mark Mendell0616ae02015-04-17 12:49:27 -04003135 __ mulsd(first.AsFpuRegister<XmmRegister>(),
3136 codegen_->LiteralDoubleAddress(
3137 const_area->GetConstant()->AsDoubleConstant()->GetValue(),
3138 const_area->GetLocations()->InAt(0).AsRegister<Register>()));
3139 } else {
3140 DCHECK(second.IsDoubleStackSlot());
3141 __ mulsd(first.AsFpuRegister<XmmRegister>(), Address(ESP, second.GetStackIndex()));
3142 }
Calin Juravleb5bfa962014-10-21 18:02:24 +01003143 break;
3144 }
Calin Juravle34bacdf2014-10-07 20:23:36 +01003145
3146 default:
Calin Juravleb5bfa962014-10-21 18:02:24 +01003147 LOG(FATAL) << "Unexpected mul type " << mul->GetResultType();
Calin Juravle34bacdf2014-10-07 20:23:36 +01003148 }
3149}
3150
Roland Levillain232ade02015-04-20 15:14:36 +01003151void InstructionCodeGeneratorX86::PushOntoFPStack(Location source,
3152 uint32_t temp_offset,
3153 uint32_t stack_adjustment,
3154 bool is_fp,
3155 bool is_wide) {
Mark Mendell24f2dfa2015-01-14 19:51:45 -05003156 if (source.IsStackSlot()) {
Roland Levillain232ade02015-04-20 15:14:36 +01003157 DCHECK(!is_wide);
3158 if (is_fp) {
3159 __ flds(Address(ESP, source.GetStackIndex() + stack_adjustment));
3160 } else {
3161 __ filds(Address(ESP, source.GetStackIndex() + stack_adjustment));
3162 }
Mark Mendell24f2dfa2015-01-14 19:51:45 -05003163 } else if (source.IsDoubleStackSlot()) {
Roland Levillain232ade02015-04-20 15:14:36 +01003164 DCHECK(is_wide);
3165 if (is_fp) {
3166 __ fldl(Address(ESP, source.GetStackIndex() + stack_adjustment));
3167 } else {
3168 __ fildl(Address(ESP, source.GetStackIndex() + stack_adjustment));
3169 }
Mark Mendell24f2dfa2015-01-14 19:51:45 -05003170 } else {
3171 // Write the value to the temporary location on the stack and load to FP stack.
Roland Levillain232ade02015-04-20 15:14:36 +01003172 if (!is_wide) {
Mark Mendell24f2dfa2015-01-14 19:51:45 -05003173 Location stack_temp = Location::StackSlot(temp_offset);
3174 codegen_->Move32(stack_temp, source);
Roland Levillain232ade02015-04-20 15:14:36 +01003175 if (is_fp) {
3176 __ flds(Address(ESP, temp_offset));
3177 } else {
3178 __ filds(Address(ESP, temp_offset));
3179 }
Mark Mendell24f2dfa2015-01-14 19:51:45 -05003180 } else {
3181 Location stack_temp = Location::DoubleStackSlot(temp_offset);
3182 codegen_->Move64(stack_temp, source);
Roland Levillain232ade02015-04-20 15:14:36 +01003183 if (is_fp) {
3184 __ fldl(Address(ESP, temp_offset));
3185 } else {
3186 __ fildl(Address(ESP, temp_offset));
3187 }
Mark Mendell24f2dfa2015-01-14 19:51:45 -05003188 }
3189 }
3190}
3191
3192void InstructionCodeGeneratorX86::GenerateRemFP(HRem *rem) {
3193 Primitive::Type type = rem->GetResultType();
3194 bool is_float = type == Primitive::kPrimFloat;
3195 size_t elem_size = Primitive::ComponentSize(type);
3196 LocationSummary* locations = rem->GetLocations();
3197 Location first = locations->InAt(0);
3198 Location second = locations->InAt(1);
3199 Location out = locations->Out();
3200
3201 // Create stack space for 2 elements.
3202 // TODO: enhance register allocator to ask for stack temporaries.
3203 __ subl(ESP, Immediate(2 * elem_size));
3204
3205 // Load the values to the FP stack in reverse order, using temporaries if needed.
Roland Levillain232ade02015-04-20 15:14:36 +01003206 const bool is_wide = !is_float;
3207 PushOntoFPStack(second, elem_size, 2 * elem_size, /* is_fp */ true, is_wide);
3208 PushOntoFPStack(first, 0, 2 * elem_size, /* is_fp */ true, is_wide);
Mark Mendell24f2dfa2015-01-14 19:51:45 -05003209
3210 // Loop doing FPREM until we stabilize.
Mark Mendell0c9497d2015-08-21 09:30:05 -04003211 NearLabel retry;
Mark Mendell24f2dfa2015-01-14 19:51:45 -05003212 __ Bind(&retry);
3213 __ fprem();
3214
3215 // Move FP status to AX.
3216 __ fstsw();
3217
3218 // And see if the argument reduction is complete. This is signaled by the
3219 // C2 FPU flag bit set to 0.
3220 __ andl(EAX, Immediate(kC2ConditionMask));
3221 __ j(kNotEqual, &retry);
3222
3223 // We have settled on the final value. Retrieve it into an XMM register.
3224 // Store FP top of stack to real stack.
3225 if (is_float) {
3226 __ fsts(Address(ESP, 0));
3227 } else {
3228 __ fstl(Address(ESP, 0));
3229 }
3230
3231 // Pop the 2 items from the FP stack.
3232 __ fucompp();
3233
3234 // Load the value from the stack into an XMM register.
3235 DCHECK(out.IsFpuRegister()) << out;
3236 if (is_float) {
3237 __ movss(out.AsFpuRegister<XmmRegister>(), Address(ESP, 0));
3238 } else {
3239 __ movsd(out.AsFpuRegister<XmmRegister>(), Address(ESP, 0));
3240 }
3241
3242 // And remove the temporary stack space we allocated.
3243 __ addl(ESP, Immediate(2 * elem_size));
3244}
3245
Guillaume Sanchez0f88e872015-03-30 17:55:45 +01003246
3247void InstructionCodeGeneratorX86::DivRemOneOrMinusOne(HBinaryOperation* instruction) {
3248 DCHECK(instruction->IsDiv() || instruction->IsRem());
3249
3250 LocationSummary* locations = instruction->GetLocations();
3251 DCHECK(locations->InAt(1).IsConstant());
Guillaume Sanchezb19930c2015-04-09 21:12:15 +01003252 DCHECK(locations->InAt(1).GetConstant()->IsIntConstant());
Guillaume Sanchez0f88e872015-03-30 17:55:45 +01003253
3254 Register out_register = locations->Out().AsRegister<Register>();
3255 Register input_register = locations->InAt(0).AsRegister<Register>();
Guillaume Sanchezb19930c2015-04-09 21:12:15 +01003256 int32_t imm = locations->InAt(1).GetConstant()->AsIntConstant()->GetValue();
Guillaume Sanchez0f88e872015-03-30 17:55:45 +01003257
3258 DCHECK(imm == 1 || imm == -1);
3259
3260 if (instruction->IsRem()) {
3261 __ xorl(out_register, out_register);
3262 } else {
3263 __ movl(out_register, input_register);
3264 if (imm == -1) {
3265 __ negl(out_register);
3266 }
3267 }
3268}
3269
3270
Guillaume Sanchezb19930c2015-04-09 21:12:15 +01003271void InstructionCodeGeneratorX86::DivByPowerOfTwo(HDiv* instruction) {
Guillaume Sanchez0f88e872015-03-30 17:55:45 +01003272 LocationSummary* locations = instruction->GetLocations();
3273
3274 Register out_register = locations->Out().AsRegister<Register>();
3275 Register input_register = locations->InAt(0).AsRegister<Register>();
Guillaume Sanchezb19930c2015-04-09 21:12:15 +01003276 int32_t imm = locations->InAt(1).GetConstant()->AsIntConstant()->GetValue();
Nicolas Geoffray68f62892016-01-04 08:39:49 +00003277 DCHECK(IsPowerOfTwo(AbsOrMin(imm)));
3278 uint32_t abs_imm = static_cast<uint32_t>(AbsOrMin(imm));
Guillaume Sanchez0f88e872015-03-30 17:55:45 +01003279
Guillaume Sanchez0f88e872015-03-30 17:55:45 +01003280 Register num = locations->GetTemp(0).AsRegister<Register>();
3281
Nicolas Geoffray68f62892016-01-04 08:39:49 +00003282 __ leal(num, Address(input_register, abs_imm - 1));
Guillaume Sanchez0f88e872015-03-30 17:55:45 +01003283 __ testl(input_register, input_register);
3284 __ cmovl(kGreaterEqual, num, input_register);
3285 int shift = CTZ(imm);
3286 __ sarl(num, Immediate(shift));
3287
3288 if (imm < 0) {
3289 __ negl(num);
3290 }
3291
3292 __ movl(out_register, num);
3293}
3294
3295void InstructionCodeGeneratorX86::GenerateDivRemWithAnyConstant(HBinaryOperation* instruction) {
3296 DCHECK(instruction->IsDiv() || instruction->IsRem());
3297
3298 LocationSummary* locations = instruction->GetLocations();
3299 int imm = locations->InAt(1).GetConstant()->AsIntConstant()->GetValue();
3300
3301 Register eax = locations->InAt(0).AsRegister<Register>();
3302 Register out = locations->Out().AsRegister<Register>();
3303 Register num;
3304 Register edx;
3305
3306 if (instruction->IsDiv()) {
3307 edx = locations->GetTemp(0).AsRegister<Register>();
3308 num = locations->GetTemp(1).AsRegister<Register>();
3309 } else {
3310 edx = locations->Out().AsRegister<Register>();
3311 num = locations->GetTemp(0).AsRegister<Register>();
3312 }
3313
3314 DCHECK_EQ(EAX, eax);
3315 DCHECK_EQ(EDX, edx);
3316 if (instruction->IsDiv()) {
3317 DCHECK_EQ(EAX, out);
3318 } else {
3319 DCHECK_EQ(EDX, out);
3320 }
3321
3322 int64_t magic;
3323 int shift;
3324 CalculateMagicAndShiftForDivRem(imm, false /* is_long */, &magic, &shift);
3325
Mark Mendell0c9497d2015-08-21 09:30:05 -04003326 NearLabel ndiv;
3327 NearLabel end;
Guillaume Sanchez0f88e872015-03-30 17:55:45 +01003328 // If numerator is 0, the result is 0, no computation needed.
3329 __ testl(eax, eax);
3330 __ j(kNotEqual, &ndiv);
3331
3332 __ xorl(out, out);
3333 __ jmp(&end);
3334
3335 __ Bind(&ndiv);
3336
3337 // Save the numerator.
3338 __ movl(num, eax);
3339
3340 // EAX = magic
3341 __ movl(eax, Immediate(magic));
3342
3343 // EDX:EAX = magic * numerator
3344 __ imull(num);
3345
3346 if (imm > 0 && magic < 0) {
3347 // EDX += num
3348 __ addl(edx, num);
3349 } else if (imm < 0 && magic > 0) {
3350 __ subl(edx, num);
3351 }
3352
3353 // Shift if needed.
3354 if (shift != 0) {
3355 __ sarl(edx, Immediate(shift));
3356 }
3357
3358 // EDX += 1 if EDX < 0
3359 __ movl(eax, edx);
3360 __ shrl(edx, Immediate(31));
3361 __ addl(edx, eax);
3362
3363 if (instruction->IsRem()) {
3364 __ movl(eax, num);
3365 __ imull(edx, Immediate(imm));
3366 __ subl(eax, edx);
3367 __ movl(edx, eax);
3368 } else {
3369 __ movl(eax, edx);
3370 }
3371 __ Bind(&end);
3372}
3373
Calin Juravlebacfec32014-11-14 15:54:36 +00003374void InstructionCodeGeneratorX86::GenerateDivRemIntegral(HBinaryOperation* instruction) {
3375 DCHECK(instruction->IsDiv() || instruction->IsRem());
3376
3377 LocationSummary* locations = instruction->GetLocations();
3378 Location out = locations->Out();
3379 Location first = locations->InAt(0);
3380 Location second = locations->InAt(1);
3381 bool is_div = instruction->IsDiv();
3382
3383 switch (instruction->GetResultType()) {
3384 case Primitive::kPrimInt: {
Roland Levillain271ab9c2014-11-27 15:23:57 +00003385 DCHECK_EQ(EAX, first.AsRegister<Register>());
3386 DCHECK_EQ(is_div ? EAX : EDX, out.AsRegister<Register>());
Calin Juravlebacfec32014-11-14 15:54:36 +00003387
Vladimir Marko13c86fd2015-11-11 12:37:46 +00003388 if (second.IsConstant()) {
Guillaume Sanchezb19930c2015-04-09 21:12:15 +01003389 int32_t imm = second.GetConstant()->AsIntConstant()->GetValue();
Guillaume Sanchez0f88e872015-03-30 17:55:45 +01003390
3391 if (imm == 0) {
3392 // Do not generate anything for 0. DivZeroCheck would forbid any generated code.
3393 } else if (imm == 1 || imm == -1) {
3394 DivRemOneOrMinusOne(instruction);
Nicolas Geoffray68f62892016-01-04 08:39:49 +00003395 } else if (is_div && IsPowerOfTwo(AbsOrMin(imm))) {
Guillaume Sanchezb19930c2015-04-09 21:12:15 +01003396 DivByPowerOfTwo(instruction->AsDiv());
Guillaume Sanchez0f88e872015-03-30 17:55:45 +01003397 } else {
3398 DCHECK(imm <= -2 || imm >= 2);
3399 GenerateDivRemWithAnyConstant(instruction);
3400 }
3401 } else {
Andreas Gampe85b62f22015-09-09 13:15:38 -07003402 SlowPathCode* slow_path =
Roland Levillain199f3362014-11-27 17:15:16 +00003403 new (GetGraph()->GetArena()) DivRemMinusOneSlowPathX86(out.AsRegister<Register>(),
Guillaume Sanchez0f88e872015-03-30 17:55:45 +01003404 is_div);
3405 codegen_->AddSlowPath(slow_path);
Calin Juravlebacfec32014-11-14 15:54:36 +00003406
Guillaume Sanchez0f88e872015-03-30 17:55:45 +01003407 Register second_reg = second.AsRegister<Register>();
3408 // 0x80000000/-1 triggers an arithmetic exception!
3409 // Dividing by -1 is actually negation and -0x800000000 = 0x80000000 so
3410 // it's safe to just use negl instead of more complex comparisons.
Calin Juravlebacfec32014-11-14 15:54:36 +00003411
Guillaume Sanchez0f88e872015-03-30 17:55:45 +01003412 __ cmpl(second_reg, Immediate(-1));
3413 __ j(kEqual, slow_path->GetEntryLabel());
Calin Juravlebacfec32014-11-14 15:54:36 +00003414
Guillaume Sanchez0f88e872015-03-30 17:55:45 +01003415 // edx:eax <- sign-extended of eax
3416 __ cdq();
3417 // eax = quotient, edx = remainder
3418 __ idivl(second_reg);
3419 __ Bind(slow_path->GetExitLabel());
3420 }
Calin Juravlebacfec32014-11-14 15:54:36 +00003421 break;
3422 }
3423
3424 case Primitive::kPrimLong: {
3425 InvokeRuntimeCallingConvention calling_convention;
3426 DCHECK_EQ(calling_convention.GetRegisterAt(0), first.AsRegisterPairLow<Register>());
3427 DCHECK_EQ(calling_convention.GetRegisterAt(1), first.AsRegisterPairHigh<Register>());
3428 DCHECK_EQ(calling_convention.GetRegisterAt(2), second.AsRegisterPairLow<Register>());
3429 DCHECK_EQ(calling_convention.GetRegisterAt(3), second.AsRegisterPairHigh<Register>());
3430 DCHECK_EQ(EAX, out.AsRegisterPairLow<Register>());
3431 DCHECK_EQ(EDX, out.AsRegisterPairHigh<Register>());
3432
3433 if (is_div) {
Alexandre Rames8158f282015-08-07 10:26:17 +01003434 codegen_->InvokeRuntime(QUICK_ENTRY_POINT(pLdiv),
3435 instruction,
3436 instruction->GetDexPc(),
3437 nullptr);
Roland Levillain888d0672015-11-23 18:53:50 +00003438 CheckEntrypointTypes<kQuickLdiv, int64_t, int64_t, int64_t>();
Calin Juravlebacfec32014-11-14 15:54:36 +00003439 } else {
Alexandre Rames8158f282015-08-07 10:26:17 +01003440 codegen_->InvokeRuntime(QUICK_ENTRY_POINT(pLmod),
3441 instruction,
3442 instruction->GetDexPc(),
3443 nullptr);
Roland Levillain888d0672015-11-23 18:53:50 +00003444 CheckEntrypointTypes<kQuickLmod, int64_t, int64_t, int64_t>();
Calin Juravlebacfec32014-11-14 15:54:36 +00003445 }
Calin Juravlebacfec32014-11-14 15:54:36 +00003446 break;
3447 }
3448
3449 default:
3450 LOG(FATAL) << "Unexpected type for GenerateDivRemIntegral " << instruction->GetResultType();
3451 }
3452}
3453
Calin Juravle7c4954d2014-10-28 16:57:40 +00003454void LocationsBuilderX86::VisitDiv(HDiv* div) {
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00003455 LocationSummary::CallKind call_kind = (div->GetResultType() == Primitive::kPrimLong)
Calin Juravled6fb6cf2014-11-11 19:07:44 +00003456 ? LocationSummary::kCall
3457 : LocationSummary::kNoCall;
3458 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(div, call_kind);
3459
Calin Juravle7c4954d2014-10-28 16:57:40 +00003460 switch (div->GetResultType()) {
Calin Juravled0d48522014-11-04 16:40:20 +00003461 case Primitive::kPrimInt: {
3462 locations->SetInAt(0, Location::RegisterLocation(EAX));
Guillaume Sanchez0f88e872015-03-30 17:55:45 +01003463 locations->SetInAt(1, Location::RegisterOrConstant(div->InputAt(1)));
Calin Juravled0d48522014-11-04 16:40:20 +00003464 locations->SetOut(Location::SameAsFirstInput());
3465 // Intel uses edx:eax as the dividend.
3466 locations->AddTemp(Location::RegisterLocation(EDX));
Guillaume Sanchez0f88e872015-03-30 17:55:45 +01003467 // We need to save the numerator while we tweak eax and edx. As we are using imul in a way
3468 // which enforces results to be in EAX and EDX, things are simpler if we use EAX also as
3469 // output and request another temp.
Guillaume Sanchezb19930c2015-04-09 21:12:15 +01003470 if (div->InputAt(1)->IsIntConstant()) {
Guillaume Sanchez0f88e872015-03-30 17:55:45 +01003471 locations->AddTemp(Location::RequiresRegister());
3472 }
Calin Juravled0d48522014-11-04 16:40:20 +00003473 break;
3474 }
Calin Juravle7c4954d2014-10-28 16:57:40 +00003475 case Primitive::kPrimLong: {
Calin Juravled6fb6cf2014-11-11 19:07:44 +00003476 InvokeRuntimeCallingConvention calling_convention;
3477 locations->SetInAt(0, Location::RegisterPairLocation(
3478 calling_convention.GetRegisterAt(0), calling_convention.GetRegisterAt(1)));
3479 locations->SetInAt(1, Location::RegisterPairLocation(
3480 calling_convention.GetRegisterAt(2), calling_convention.GetRegisterAt(3)));
3481 // Runtime helper puts the result in EAX, EDX.
3482 locations->SetOut(Location::RegisterPairLocation(EAX, EDX));
Calin Juravle7c4954d2014-10-28 16:57:40 +00003483 break;
3484 }
3485 case Primitive::kPrimFloat:
3486 case Primitive::kPrimDouble: {
3487 locations->SetInAt(0, Location::RequiresFpuRegister());
David Brazdilb3e773e2016-01-26 11:28:37 +00003488 if (div->InputAt(1)->IsX86LoadFromConstantTable()) {
3489 DCHECK(div->InputAt(1)->IsEmittedAtUseSite());
Nicolas Geoffray7770a3e2016-02-03 10:13:41 +00003490 } else if (div->InputAt(1)->IsConstant()) {
3491 locations->SetInAt(1, Location::RequiresFpuRegister());
David Brazdilb3e773e2016-01-26 11:28:37 +00003492 } else {
3493 locations->SetInAt(1, Location::Any());
3494 }
Calin Juravle7c4954d2014-10-28 16:57:40 +00003495 locations->SetOut(Location::SameAsFirstInput());
3496 break;
3497 }
3498
3499 default:
3500 LOG(FATAL) << "Unexpected div type " << div->GetResultType();
3501 }
3502}
3503
3504void InstructionCodeGeneratorX86::VisitDiv(HDiv* div) {
3505 LocationSummary* locations = div->GetLocations();
3506 Location first = locations->InAt(0);
3507 Location second = locations->InAt(1);
Calin Juravle7c4954d2014-10-28 16:57:40 +00003508
3509 switch (div->GetResultType()) {
Calin Juravlebacfec32014-11-14 15:54:36 +00003510 case Primitive::kPrimInt:
Calin Juravle7c4954d2014-10-28 16:57:40 +00003511 case Primitive::kPrimLong: {
Calin Juravlebacfec32014-11-14 15:54:36 +00003512 GenerateDivRemIntegral(div);
Calin Juravle7c4954d2014-10-28 16:57:40 +00003513 break;
3514 }
3515
3516 case Primitive::kPrimFloat: {
Mark Mendell0616ae02015-04-17 12:49:27 -04003517 if (second.IsFpuRegister()) {
3518 __ divss(first.AsFpuRegister<XmmRegister>(), second.AsFpuRegister<XmmRegister>());
3519 } else if (div->InputAt(1)->IsX86LoadFromConstantTable()) {
3520 HX86LoadFromConstantTable* const_area = div->InputAt(1)->AsX86LoadFromConstantTable();
David Brazdilb3e773e2016-01-26 11:28:37 +00003521 DCHECK(const_area->IsEmittedAtUseSite());
Mark Mendell0616ae02015-04-17 12:49:27 -04003522 __ divss(first.AsFpuRegister<XmmRegister>(),
3523 codegen_->LiteralFloatAddress(
3524 const_area->GetConstant()->AsFloatConstant()->GetValue(),
3525 const_area->GetLocations()->InAt(0).AsRegister<Register>()));
3526 } else {
3527 DCHECK(second.IsStackSlot());
3528 __ divss(first.AsFpuRegister<XmmRegister>(), Address(ESP, second.GetStackIndex()));
3529 }
Calin Juravle7c4954d2014-10-28 16:57:40 +00003530 break;
3531 }
3532
3533 case Primitive::kPrimDouble: {
Mark Mendell0616ae02015-04-17 12:49:27 -04003534 if (second.IsFpuRegister()) {
3535 __ divsd(first.AsFpuRegister<XmmRegister>(), second.AsFpuRegister<XmmRegister>());
3536 } else if (div->InputAt(1)->IsX86LoadFromConstantTable()) {
3537 HX86LoadFromConstantTable* const_area = div->InputAt(1)->AsX86LoadFromConstantTable();
David Brazdilb3e773e2016-01-26 11:28:37 +00003538 DCHECK(const_area->IsEmittedAtUseSite());
Mark Mendell0616ae02015-04-17 12:49:27 -04003539 __ divsd(first.AsFpuRegister<XmmRegister>(),
3540 codegen_->LiteralDoubleAddress(
3541 const_area->GetConstant()->AsDoubleConstant()->GetValue(),
3542 const_area->GetLocations()->InAt(0).AsRegister<Register>()));
3543 } else {
3544 DCHECK(second.IsDoubleStackSlot());
3545 __ divsd(first.AsFpuRegister<XmmRegister>(), Address(ESP, second.GetStackIndex()));
3546 }
Calin Juravle7c4954d2014-10-28 16:57:40 +00003547 break;
3548 }
3549
3550 default:
3551 LOG(FATAL) << "Unexpected div type " << div->GetResultType();
3552 }
3553}
3554
Calin Juravlebacfec32014-11-14 15:54:36 +00003555void LocationsBuilderX86::VisitRem(HRem* rem) {
Calin Juravled2ec87d2014-12-08 14:24:46 +00003556 Primitive::Type type = rem->GetResultType();
Guillaume Sanchez0f88e872015-03-30 17:55:45 +01003557
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00003558 LocationSummary::CallKind call_kind = (rem->GetResultType() == Primitive::kPrimLong)
3559 ? LocationSummary::kCall
3560 : LocationSummary::kNoCall;
3561 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(rem, call_kind);
Calin Juravlebacfec32014-11-14 15:54:36 +00003562
Calin Juravled2ec87d2014-12-08 14:24:46 +00003563 switch (type) {
Calin Juravlebacfec32014-11-14 15:54:36 +00003564 case Primitive::kPrimInt: {
3565 locations->SetInAt(0, Location::RegisterLocation(EAX));
Guillaume Sanchez0f88e872015-03-30 17:55:45 +01003566 locations->SetInAt(1, Location::RegisterOrConstant(rem->InputAt(1)));
Calin Juravlebacfec32014-11-14 15:54:36 +00003567 locations->SetOut(Location::RegisterLocation(EDX));
Guillaume Sanchez0f88e872015-03-30 17:55:45 +01003568 // We need to save the numerator while we tweak eax and edx. As we are using imul in a way
3569 // which enforces results to be in EAX and EDX, things are simpler if we use EDX also as
3570 // output and request another temp.
Guillaume Sanchezb19930c2015-04-09 21:12:15 +01003571 if (rem->InputAt(1)->IsIntConstant()) {
Guillaume Sanchez0f88e872015-03-30 17:55:45 +01003572 locations->AddTemp(Location::RequiresRegister());
3573 }
Calin Juravlebacfec32014-11-14 15:54:36 +00003574 break;
3575 }
3576 case Primitive::kPrimLong: {
3577 InvokeRuntimeCallingConvention calling_convention;
3578 locations->SetInAt(0, Location::RegisterPairLocation(
3579 calling_convention.GetRegisterAt(0), calling_convention.GetRegisterAt(1)));
3580 locations->SetInAt(1, Location::RegisterPairLocation(
3581 calling_convention.GetRegisterAt(2), calling_convention.GetRegisterAt(3)));
3582 // Runtime helper puts the result in EAX, EDX.
3583 locations->SetOut(Location::RegisterPairLocation(EAX, EDX));
3584 break;
3585 }
Mark Mendell24f2dfa2015-01-14 19:51:45 -05003586 case Primitive::kPrimDouble:
Calin Juravled2ec87d2014-12-08 14:24:46 +00003587 case Primitive::kPrimFloat: {
Mark Mendell24f2dfa2015-01-14 19:51:45 -05003588 locations->SetInAt(0, Location::Any());
3589 locations->SetInAt(1, Location::Any());
3590 locations->SetOut(Location::RequiresFpuRegister());
3591 locations->AddTemp(Location::RegisterLocation(EAX));
Calin Juravlebacfec32014-11-14 15:54:36 +00003592 break;
3593 }
3594
3595 default:
Calin Juravled2ec87d2014-12-08 14:24:46 +00003596 LOG(FATAL) << "Unexpected rem type " << type;
Calin Juravlebacfec32014-11-14 15:54:36 +00003597 }
3598}
3599
3600void InstructionCodeGeneratorX86::VisitRem(HRem* rem) {
3601 Primitive::Type type = rem->GetResultType();
3602 switch (type) {
3603 case Primitive::kPrimInt:
3604 case Primitive::kPrimLong: {
3605 GenerateDivRemIntegral(rem);
3606 break;
3607 }
Mark Mendell24f2dfa2015-01-14 19:51:45 -05003608 case Primitive::kPrimFloat:
Calin Juravlebacfec32014-11-14 15:54:36 +00003609 case Primitive::kPrimDouble: {
Mark Mendell24f2dfa2015-01-14 19:51:45 -05003610 GenerateRemFP(rem);
Calin Juravlebacfec32014-11-14 15:54:36 +00003611 break;
3612 }
3613 default:
3614 LOG(FATAL) << "Unexpected rem type " << type;
3615 }
3616}
3617
Calin Juravled0d48522014-11-04 16:40:20 +00003618void LocationsBuilderX86::VisitDivZeroCheck(HDivZeroCheck* instruction) {
David Brazdil77a48ae2015-09-15 12:34:04 +00003619 LocationSummary::CallKind call_kind = instruction->CanThrowIntoCatchBlock()
3620 ? LocationSummary::kCallOnSlowPath
3621 : LocationSummary::kNoCall;
3622 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(instruction, call_kind);
Calin Juravled6fb6cf2014-11-11 19:07:44 +00003623 switch (instruction->GetType()) {
Serguei Katkov8c0676c2015-08-03 13:55:33 +06003624 case Primitive::kPrimByte:
3625 case Primitive::kPrimChar:
3626 case Primitive::kPrimShort:
Calin Juravled6fb6cf2014-11-11 19:07:44 +00003627 case Primitive::kPrimInt: {
3628 locations->SetInAt(0, Location::Any());
3629 break;
3630 }
3631 case Primitive::kPrimLong: {
3632 locations->SetInAt(0, Location::RegisterOrConstant(instruction->InputAt(0)));
3633 if (!instruction->IsConstant()) {
3634 locations->AddTemp(Location::RequiresRegister());
3635 }
3636 break;
3637 }
3638 default:
3639 LOG(FATAL) << "Unexpected type for HDivZeroCheck " << instruction->GetType();
3640 }
Calin Juravled0d48522014-11-04 16:40:20 +00003641 if (instruction->HasUses()) {
3642 locations->SetOut(Location::SameAsFirstInput());
3643 }
3644}
3645
3646void InstructionCodeGeneratorX86::VisitDivZeroCheck(HDivZeroCheck* instruction) {
Andreas Gampe85b62f22015-09-09 13:15:38 -07003647 SlowPathCode* slow_path = new (GetGraph()->GetArena()) DivZeroCheckSlowPathX86(instruction);
Calin Juravled0d48522014-11-04 16:40:20 +00003648 codegen_->AddSlowPath(slow_path);
3649
3650 LocationSummary* locations = instruction->GetLocations();
3651 Location value = locations->InAt(0);
3652
Calin Juravled6fb6cf2014-11-11 19:07:44 +00003653 switch (instruction->GetType()) {
Serguei Katkov8c0676c2015-08-03 13:55:33 +06003654 case Primitive::kPrimByte:
3655 case Primitive::kPrimChar:
3656 case Primitive::kPrimShort:
Calin Juravled6fb6cf2014-11-11 19:07:44 +00003657 case Primitive::kPrimInt: {
3658 if (value.IsRegister()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00003659 __ testl(value.AsRegister<Register>(), value.AsRegister<Register>());
Calin Juravled6fb6cf2014-11-11 19:07:44 +00003660 __ j(kEqual, slow_path->GetEntryLabel());
3661 } else if (value.IsStackSlot()) {
3662 __ cmpl(Address(ESP, value.GetStackIndex()), Immediate(0));
3663 __ j(kEqual, slow_path->GetEntryLabel());
3664 } else {
3665 DCHECK(value.IsConstant()) << value;
3666 if (value.GetConstant()->AsIntConstant()->GetValue() == 0) {
3667 __ jmp(slow_path->GetEntryLabel());
3668 }
3669 }
3670 break;
Calin Juravled0d48522014-11-04 16:40:20 +00003671 }
Calin Juravled6fb6cf2014-11-11 19:07:44 +00003672 case Primitive::kPrimLong: {
3673 if (value.IsRegisterPair()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00003674 Register temp = locations->GetTemp(0).AsRegister<Register>();
Calin Juravled6fb6cf2014-11-11 19:07:44 +00003675 __ movl(temp, value.AsRegisterPairLow<Register>());
3676 __ orl(temp, value.AsRegisterPairHigh<Register>());
3677 __ j(kEqual, slow_path->GetEntryLabel());
3678 } else {
3679 DCHECK(value.IsConstant()) << value;
3680 if (value.GetConstant()->AsLongConstant()->GetValue() == 0) {
3681 __ jmp(slow_path->GetEntryLabel());
3682 }
3683 }
3684 break;
3685 }
3686 default:
3687 LOG(FATAL) << "Unexpected type for HDivZeroCheck" << instruction->GetType();
Calin Juravled0d48522014-11-04 16:40:20 +00003688 }
Calin Juravled0d48522014-11-04 16:40:20 +00003689}
3690
Calin Juravle9aec02f2014-11-18 23:06:35 +00003691void LocationsBuilderX86::HandleShift(HBinaryOperation* op) {
3692 DCHECK(op->IsShl() || op->IsShr() || op->IsUShr());
3693
3694 LocationSummary* locations =
3695 new (GetGraph()->GetArena()) LocationSummary(op, LocationSummary::kNoCall);
3696
3697 switch (op->GetResultType()) {
Mark P Mendell73945692015-04-29 14:56:17 +00003698 case Primitive::kPrimInt:
Calin Juravle9aec02f2014-11-18 23:06:35 +00003699 case Primitive::kPrimLong: {
Mark P Mendell73945692015-04-29 14:56:17 +00003700 // Can't have Location::Any() and output SameAsFirstInput()
Calin Juravle9aec02f2014-11-18 23:06:35 +00003701 locations->SetInAt(0, Location::RequiresRegister());
Mark P Mendell73945692015-04-29 14:56:17 +00003702 // The shift count needs to be in CL or a constant.
3703 locations->SetInAt(1, Location::ByteRegisterOrConstant(ECX, op->InputAt(1)));
Calin Juravle9aec02f2014-11-18 23:06:35 +00003704 locations->SetOut(Location::SameAsFirstInput());
3705 break;
3706 }
3707 default:
3708 LOG(FATAL) << "Unexpected op type " << op->GetResultType();
3709 }
3710}
3711
3712void InstructionCodeGeneratorX86::HandleShift(HBinaryOperation* op) {
3713 DCHECK(op->IsShl() || op->IsShr() || op->IsUShr());
3714
3715 LocationSummary* locations = op->GetLocations();
3716 Location first = locations->InAt(0);
3717 Location second = locations->InAt(1);
3718 DCHECK(first.Equals(locations->Out()));
3719
3720 switch (op->GetResultType()) {
3721 case Primitive::kPrimInt: {
Mark P Mendell73945692015-04-29 14:56:17 +00003722 DCHECK(first.IsRegister());
Roland Levillainf9aac1e2015-04-10 18:12:48 +00003723 Register first_reg = first.AsRegister<Register>();
Calin Juravle9aec02f2014-11-18 23:06:35 +00003724 if (second.IsRegister()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00003725 Register second_reg = second.AsRegister<Register>();
Calin Juravle9aec02f2014-11-18 23:06:35 +00003726 DCHECK_EQ(ECX, second_reg);
3727 if (op->IsShl()) {
Roland Levillainf9aac1e2015-04-10 18:12:48 +00003728 __ shll(first_reg, second_reg);
Calin Juravle9aec02f2014-11-18 23:06:35 +00003729 } else if (op->IsShr()) {
Roland Levillainf9aac1e2015-04-10 18:12:48 +00003730 __ sarl(first_reg, second_reg);
Calin Juravle9aec02f2014-11-18 23:06:35 +00003731 } else {
Roland Levillainf9aac1e2015-04-10 18:12:48 +00003732 __ shrl(first_reg, second_reg);
Calin Juravle9aec02f2014-11-18 23:06:35 +00003733 }
3734 } else {
Mark P Mendell73945692015-04-29 14:56:17 +00003735 int32_t shift = second.GetConstant()->AsIntConstant()->GetValue() & kMaxIntShiftValue;
3736 if (shift == 0) {
3737 return;
3738 }
3739 Immediate imm(shift);
Roland Levillainf9aac1e2015-04-10 18:12:48 +00003740 if (op->IsShl()) {
3741 __ shll(first_reg, imm);
3742 } else if (op->IsShr()) {
3743 __ sarl(first_reg, imm);
3744 } else {
3745 __ shrl(first_reg, imm);
Calin Juravle9aec02f2014-11-18 23:06:35 +00003746 }
3747 }
3748 break;
3749 }
Roland Levillainf9aac1e2015-04-10 18:12:48 +00003750 case Primitive::kPrimLong: {
Mark P Mendell73945692015-04-29 14:56:17 +00003751 if (second.IsRegister()) {
3752 Register second_reg = second.AsRegister<Register>();
3753 DCHECK_EQ(ECX, second_reg);
3754 if (op->IsShl()) {
3755 GenerateShlLong(first, second_reg);
3756 } else if (op->IsShr()) {
3757 GenerateShrLong(first, second_reg);
3758 } else {
3759 GenerateUShrLong(first, second_reg);
3760 }
Roland Levillainf9aac1e2015-04-10 18:12:48 +00003761 } else {
Mark P Mendell73945692015-04-29 14:56:17 +00003762 // Shift by a constant.
3763 int shift = second.GetConstant()->AsIntConstant()->GetValue() & kMaxLongShiftValue;
3764 // Nothing to do if the shift is 0, as the input is already the output.
3765 if (shift != 0) {
3766 if (op->IsShl()) {
3767 GenerateShlLong(first, shift);
3768 } else if (op->IsShr()) {
3769 GenerateShrLong(first, shift);
3770 } else {
3771 GenerateUShrLong(first, shift);
3772 }
3773 }
Roland Levillainf9aac1e2015-04-10 18:12:48 +00003774 }
3775 break;
3776 }
Calin Juravle9aec02f2014-11-18 23:06:35 +00003777 default:
3778 LOG(FATAL) << "Unexpected op type " << op->GetResultType();
3779 }
3780}
3781
Mark P Mendell73945692015-04-29 14:56:17 +00003782void InstructionCodeGeneratorX86::GenerateShlLong(const Location& loc, int shift) {
3783 Register low = loc.AsRegisterPairLow<Register>();
3784 Register high = loc.AsRegisterPairHigh<Register>();
Mark Mendellba56d062015-05-05 21:34:03 -04003785 if (shift == 1) {
3786 // This is just an addition.
3787 __ addl(low, low);
3788 __ adcl(high, high);
3789 } else if (shift == 32) {
Mark P Mendell73945692015-04-29 14:56:17 +00003790 // Shift by 32 is easy. High gets low, and low gets 0.
3791 codegen_->EmitParallelMoves(
3792 loc.ToLow(),
3793 loc.ToHigh(),
3794 Primitive::kPrimInt,
3795 Location::ConstantLocation(GetGraph()->GetIntConstant(0)),
3796 loc.ToLow(),
3797 Primitive::kPrimInt);
3798 } else if (shift > 32) {
3799 // Low part becomes 0. High part is low part << (shift-32).
3800 __ movl(high, low);
3801 __ shll(high, Immediate(shift - 32));
3802 __ xorl(low, low);
3803 } else {
3804 // Between 1 and 31.
3805 __ shld(high, low, Immediate(shift));
3806 __ shll(low, Immediate(shift));
3807 }
3808}
3809
Calin Juravle9aec02f2014-11-18 23:06:35 +00003810void InstructionCodeGeneratorX86::GenerateShlLong(const Location& loc, Register shifter) {
Mark Mendell0c9497d2015-08-21 09:30:05 -04003811 NearLabel done;
Calin Juravle9aec02f2014-11-18 23:06:35 +00003812 __ shld(loc.AsRegisterPairHigh<Register>(), loc.AsRegisterPairLow<Register>(), shifter);
3813 __ shll(loc.AsRegisterPairLow<Register>(), shifter);
3814 __ testl(shifter, Immediate(32));
3815 __ j(kEqual, &done);
3816 __ movl(loc.AsRegisterPairHigh<Register>(), loc.AsRegisterPairLow<Register>());
3817 __ movl(loc.AsRegisterPairLow<Register>(), Immediate(0));
3818 __ Bind(&done);
3819}
3820
Mark P Mendell73945692015-04-29 14:56:17 +00003821void InstructionCodeGeneratorX86::GenerateShrLong(const Location& loc, int shift) {
3822 Register low = loc.AsRegisterPairLow<Register>();
3823 Register high = loc.AsRegisterPairHigh<Register>();
3824 if (shift == 32) {
3825 // Need to copy the sign.
3826 DCHECK_NE(low, high);
3827 __ movl(low, high);
3828 __ sarl(high, Immediate(31));
3829 } else if (shift > 32) {
3830 DCHECK_NE(low, high);
3831 // High part becomes sign. Low part is shifted by shift - 32.
3832 __ movl(low, high);
3833 __ sarl(high, Immediate(31));
3834 __ sarl(low, Immediate(shift - 32));
3835 } else {
3836 // Between 1 and 31.
3837 __ shrd(low, high, Immediate(shift));
3838 __ sarl(high, Immediate(shift));
3839 }
3840}
3841
Calin Juravle9aec02f2014-11-18 23:06:35 +00003842void InstructionCodeGeneratorX86::GenerateShrLong(const Location& loc, Register shifter) {
Mark Mendell0c9497d2015-08-21 09:30:05 -04003843 NearLabel done;
Calin Juravle9aec02f2014-11-18 23:06:35 +00003844 __ shrd(loc.AsRegisterPairLow<Register>(), loc.AsRegisterPairHigh<Register>(), shifter);
3845 __ sarl(loc.AsRegisterPairHigh<Register>(), shifter);
3846 __ testl(shifter, Immediate(32));
3847 __ j(kEqual, &done);
3848 __ movl(loc.AsRegisterPairLow<Register>(), loc.AsRegisterPairHigh<Register>());
3849 __ sarl(loc.AsRegisterPairHigh<Register>(), Immediate(31));
3850 __ Bind(&done);
3851}
3852
Mark P Mendell73945692015-04-29 14:56:17 +00003853void InstructionCodeGeneratorX86::GenerateUShrLong(const Location& loc, int shift) {
3854 Register low = loc.AsRegisterPairLow<Register>();
3855 Register high = loc.AsRegisterPairHigh<Register>();
3856 if (shift == 32) {
3857 // Shift by 32 is easy. Low gets high, and high gets 0.
3858 codegen_->EmitParallelMoves(
3859 loc.ToHigh(),
3860 loc.ToLow(),
3861 Primitive::kPrimInt,
3862 Location::ConstantLocation(GetGraph()->GetIntConstant(0)),
3863 loc.ToHigh(),
3864 Primitive::kPrimInt);
3865 } else if (shift > 32) {
3866 // Low part is high >> (shift - 32). High part becomes 0.
3867 __ movl(low, high);
3868 __ shrl(low, Immediate(shift - 32));
3869 __ xorl(high, high);
3870 } else {
3871 // Between 1 and 31.
3872 __ shrd(low, high, Immediate(shift));
3873 __ shrl(high, Immediate(shift));
3874 }
3875}
3876
Calin Juravle9aec02f2014-11-18 23:06:35 +00003877void InstructionCodeGeneratorX86::GenerateUShrLong(const Location& loc, Register shifter) {
Mark Mendell0c9497d2015-08-21 09:30:05 -04003878 NearLabel done;
Calin Juravle9aec02f2014-11-18 23:06:35 +00003879 __ shrd(loc.AsRegisterPairLow<Register>(), loc.AsRegisterPairHigh<Register>(), shifter);
3880 __ shrl(loc.AsRegisterPairHigh<Register>(), shifter);
3881 __ testl(shifter, Immediate(32));
3882 __ j(kEqual, &done);
3883 __ movl(loc.AsRegisterPairLow<Register>(), loc.AsRegisterPairHigh<Register>());
3884 __ movl(loc.AsRegisterPairHigh<Register>(), Immediate(0));
3885 __ Bind(&done);
3886}
3887
Scott Wakeling40a04bf2015-12-11 09:50:36 +00003888void LocationsBuilderX86::VisitRor(HRor* ror) {
3889 LocationSummary* locations =
3890 new (GetGraph()->GetArena()) LocationSummary(ror, LocationSummary::kNoCall);
3891
3892 switch (ror->GetResultType()) {
3893 case Primitive::kPrimLong:
3894 // Add the temporary needed.
3895 locations->AddTemp(Location::RequiresRegister());
3896 FALLTHROUGH_INTENDED;
3897 case Primitive::kPrimInt:
3898 locations->SetInAt(0, Location::RequiresRegister());
3899 // The shift count needs to be in CL (unless it is a constant).
3900 locations->SetInAt(1, Location::ByteRegisterOrConstant(ECX, ror->InputAt(1)));
3901 locations->SetOut(Location::SameAsFirstInput());
3902 break;
3903 default:
3904 LOG(FATAL) << "Unexpected operation type " << ror->GetResultType();
3905 UNREACHABLE();
3906 }
3907}
3908
3909void InstructionCodeGeneratorX86::VisitRor(HRor* ror) {
3910 LocationSummary* locations = ror->GetLocations();
3911 Location first = locations->InAt(0);
3912 Location second = locations->InAt(1);
3913
3914 if (ror->GetResultType() == Primitive::kPrimInt) {
3915 Register first_reg = first.AsRegister<Register>();
3916 if (second.IsRegister()) {
3917 Register second_reg = second.AsRegister<Register>();
3918 __ rorl(first_reg, second_reg);
3919 } else {
3920 Immediate imm(second.GetConstant()->AsIntConstant()->GetValue() & kMaxIntShiftValue);
3921 __ rorl(first_reg, imm);
3922 }
3923 return;
3924 }
3925
3926 DCHECK_EQ(ror->GetResultType(), Primitive::kPrimLong);
3927 Register first_reg_lo = first.AsRegisterPairLow<Register>();
3928 Register first_reg_hi = first.AsRegisterPairHigh<Register>();
3929 Register temp_reg = locations->GetTemp(0).AsRegister<Register>();
3930 if (second.IsRegister()) {
3931 Register second_reg = second.AsRegister<Register>();
3932 DCHECK_EQ(second_reg, ECX);
3933 __ movl(temp_reg, first_reg_hi);
3934 __ shrd(first_reg_hi, first_reg_lo, second_reg);
3935 __ shrd(first_reg_lo, temp_reg, second_reg);
3936 __ movl(temp_reg, first_reg_hi);
3937 __ testl(second_reg, Immediate(32));
3938 __ cmovl(kNotEqual, first_reg_hi, first_reg_lo);
3939 __ cmovl(kNotEqual, first_reg_lo, temp_reg);
3940 } else {
3941 int32_t shift_amt =
3942 CodeGenerator::GetInt64ValueOf(second.GetConstant()) & kMaxLongShiftValue;
3943 if (shift_amt == 0) {
3944 // Already fine.
3945 return;
3946 }
3947 if (shift_amt == 32) {
3948 // Just swap.
3949 __ movl(temp_reg, first_reg_lo);
3950 __ movl(first_reg_lo, first_reg_hi);
3951 __ movl(first_reg_hi, temp_reg);
3952 return;
3953 }
3954
3955 Immediate imm(shift_amt);
3956 // Save the constents of the low value.
3957 __ movl(temp_reg, first_reg_lo);
3958
3959 // Shift right into low, feeding bits from high.
3960 __ shrd(first_reg_lo, first_reg_hi, imm);
3961
3962 // Shift right into high, feeding bits from the original low.
3963 __ shrd(first_reg_hi, temp_reg, imm);
3964
3965 // Swap if needed.
3966 if (shift_amt > 32) {
3967 __ movl(temp_reg, first_reg_lo);
3968 __ movl(first_reg_lo, first_reg_hi);
3969 __ movl(first_reg_hi, temp_reg);
3970 }
3971 }
3972}
3973
Calin Juravle9aec02f2014-11-18 23:06:35 +00003974void LocationsBuilderX86::VisitShl(HShl* shl) {
3975 HandleShift(shl);
3976}
3977
3978void InstructionCodeGeneratorX86::VisitShl(HShl* shl) {
3979 HandleShift(shl);
3980}
3981
3982void LocationsBuilderX86::VisitShr(HShr* shr) {
3983 HandleShift(shr);
3984}
3985
3986void InstructionCodeGeneratorX86::VisitShr(HShr* shr) {
3987 HandleShift(shr);
3988}
3989
3990void LocationsBuilderX86::VisitUShr(HUShr* ushr) {
3991 HandleShift(ushr);
3992}
3993
3994void InstructionCodeGeneratorX86::VisitUShr(HUShr* ushr) {
3995 HandleShift(ushr);
3996}
3997
Nicolas Geoffray2e7038a2014-04-03 18:49:58 +01003998void LocationsBuilderX86::VisitNewInstance(HNewInstance* instruction) {
Nicolas Geoffray39468442014-09-02 15:17:15 +01003999 LocationSummary* locations =
4000 new (GetGraph()->GetArena()) LocationSummary(instruction, LocationSummary::kCall);
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +01004001 locations->SetOut(Location::RegisterLocation(EAX));
David Brazdil6de19382016-01-08 17:37:10 +00004002 if (instruction->IsStringAlloc()) {
4003 locations->AddTemp(Location::RegisterLocation(kMethodRegisterArgument));
4004 } else {
4005 InvokeRuntimeCallingConvention calling_convention;
4006 locations->SetInAt(0, Location::RegisterLocation(calling_convention.GetRegisterAt(0)));
4007 locations->SetInAt(1, Location::RegisterLocation(calling_convention.GetRegisterAt(1)));
4008 }
Nicolas Geoffray2e7038a2014-04-03 18:49:58 +01004009}
4010
4011void InstructionCodeGeneratorX86::VisitNewInstance(HNewInstance* instruction) {
Roland Levillain4d027112015-07-01 15:41:14 +01004012 // Note: if heap poisoning is enabled, the entry point takes cares
4013 // of poisoning the reference.
David Brazdil6de19382016-01-08 17:37:10 +00004014 if (instruction->IsStringAlloc()) {
4015 // String is allocated through StringFactory. Call NewEmptyString entry point.
4016 Register temp = instruction->GetLocations()->GetTemp(0).AsRegister<Register>();
4017 MemberOffset code_offset = ArtMethod::EntryPointFromQuickCompiledCodeOffset(kX86WordSize);
4018 __ fs()->movl(temp, Address::Absolute(QUICK_ENTRY_POINT(pNewEmptyString)));
4019 __ call(Address(temp, code_offset.Int32Value()));
4020 codegen_->RecordPcInfo(instruction, instruction->GetDexPc());
4021 } else {
4022 codegen_->InvokeRuntime(instruction->GetEntrypoint(),
4023 instruction,
4024 instruction->GetDexPc(),
4025 nullptr);
4026 CheckEntrypointTypes<kQuickAllocObjectWithAccessCheck, void*, uint32_t, ArtMethod*>();
4027 DCHECK(!codegen_->IsLeafMethod());
4028 }
Nicolas Geoffray2e7038a2014-04-03 18:49:58 +01004029}
4030
Nicolas Geoffraya3d05a42014-10-20 17:41:32 +01004031void LocationsBuilderX86::VisitNewArray(HNewArray* instruction) {
4032 LocationSummary* locations =
4033 new (GetGraph()->GetArena()) LocationSummary(instruction, LocationSummary::kCall);
4034 locations->SetOut(Location::RegisterLocation(EAX));
4035 InvokeRuntimeCallingConvention calling_convention;
4036 locations->AddTemp(Location::RegisterLocation(calling_convention.GetRegisterAt(0)));
Andreas Gampe1cc7dba2014-12-17 18:43:01 -08004037 locations->SetInAt(0, Location::RegisterLocation(calling_convention.GetRegisterAt(1)));
Nicolas Geoffray69aa6012015-06-09 10:34:25 +01004038 locations->SetInAt(1, Location::RegisterLocation(calling_convention.GetRegisterAt(2)));
Nicolas Geoffraya3d05a42014-10-20 17:41:32 +01004039}
4040
4041void InstructionCodeGeneratorX86::VisitNewArray(HNewArray* instruction) {
4042 InvokeRuntimeCallingConvention calling_convention;
Nicolas Geoffraya3d05a42014-10-20 17:41:32 +01004043 __ movl(calling_convention.GetRegisterAt(0), Immediate(instruction->GetTypeIndex()));
Roland Levillain4d027112015-07-01 15:41:14 +01004044 // Note: if heap poisoning is enabled, the entry point takes cares
4045 // of poisoning the reference.
Calin Juravle175dc732015-08-25 15:42:32 +01004046 codegen_->InvokeRuntime(instruction->GetEntrypoint(),
4047 instruction,
4048 instruction->GetDexPc(),
4049 nullptr);
Roland Levillain888d0672015-11-23 18:53:50 +00004050 CheckEntrypointTypes<kQuickAllocArrayWithAccessCheck, void*, uint32_t, int32_t, ArtMethod*>();
Nicolas Geoffraya3d05a42014-10-20 17:41:32 +01004051 DCHECK(!codegen_->IsLeafMethod());
4052}
4053
Nicolas Geoffrayf583e592014-04-07 13:20:42 +01004054void LocationsBuilderX86::VisitParameterValue(HParameterValue* instruction) {
Nicolas Geoffray39468442014-09-02 15:17:15 +01004055 LocationSummary* locations =
4056 new (GetGraph()->GetArena()) LocationSummary(instruction, LocationSummary::kNoCall);
Nicolas Geoffraya747a392014-04-17 14:56:23 +01004057 Location location = parameter_visitor_.GetNextLocation(instruction->GetType());
4058 if (location.IsStackSlot()) {
4059 location = Location::StackSlot(location.GetStackIndex() + codegen_->GetFrameSize());
4060 } else if (location.IsDoubleStackSlot()) {
4061 location = Location::DoubleStackSlot(location.GetStackIndex() + codegen_->GetFrameSize());
Nicolas Geoffrayf583e592014-04-07 13:20:42 +01004062 }
Nicolas Geoffraya747a392014-04-17 14:56:23 +01004063 locations->SetOut(location);
Nicolas Geoffrayf583e592014-04-07 13:20:42 +01004064}
4065
Nicolas Geoffray76b1e172015-05-27 17:18:33 +01004066void InstructionCodeGeneratorX86::VisitParameterValue(
4067 HParameterValue* instruction ATTRIBUTE_UNUSED) {
4068}
4069
4070void LocationsBuilderX86::VisitCurrentMethod(HCurrentMethod* instruction) {
4071 LocationSummary* locations =
4072 new (GetGraph()->GetArena()) LocationSummary(instruction, LocationSummary::kNoCall);
4073 locations->SetOut(Location::RegisterLocation(kMethodRegisterArgument));
4074}
4075
4076void InstructionCodeGeneratorX86::VisitCurrentMethod(HCurrentMethod* instruction ATTRIBUTE_UNUSED) {
Nicolas Geoffrayf583e592014-04-07 13:20:42 +01004077}
4078
Nicolas Geoffraya42363f2015-12-17 14:57:09 +00004079void LocationsBuilderX86::VisitClassTableGet(HClassTableGet* instruction) {
4080 LocationSummary* locations =
4081 new (GetGraph()->GetArena()) LocationSummary(instruction, LocationSummary::kNoCall);
4082 locations->SetInAt(0, Location::RequiresRegister());
4083 locations->SetOut(Location::RequiresRegister());
4084}
4085
4086void InstructionCodeGeneratorX86::VisitClassTableGet(HClassTableGet* instruction) {
4087 LocationSummary* locations = instruction->GetLocations();
4088 uint32_t method_offset = 0;
4089 if (instruction->GetTableKind() == HClassTableGet::kVTable) {
4090 method_offset = mirror::Class::EmbeddedVTableEntryOffset(
4091 instruction->GetIndex(), kX86PointerSize).SizeValue();
4092 } else {
4093 method_offset = mirror::Class::EmbeddedImTableEntryOffset(
4094 instruction->GetIndex() % mirror::Class::kImtSize, kX86PointerSize).Uint32Value();
4095 }
4096 __ movl(locations->Out().AsRegister<Register>(),
4097 Address(locations->InAt(0).AsRegister<Register>(), method_offset));
4098}
4099
Roland Levillain1cc5f2512014-10-22 18:06:21 +01004100void LocationsBuilderX86::VisitNot(HNot* not_) {
Nicolas Geoffray39468442014-09-02 15:17:15 +01004101 LocationSummary* locations =
Roland Levillain1cc5f2512014-10-22 18:06:21 +01004102 new (GetGraph()->GetArena()) LocationSummary(not_, LocationSummary::kNoCall);
Nicolas Geoffraya7aca372014-04-28 17:47:12 +01004103 locations->SetInAt(0, Location::RequiresRegister());
4104 locations->SetOut(Location::SameAsFirstInput());
Nicolas Geoffrayb55f8352014-04-07 15:26:35 +01004105}
4106
Roland Levillain1cc5f2512014-10-22 18:06:21 +01004107void InstructionCodeGeneratorX86::VisitNot(HNot* not_) {
4108 LocationSummary* locations = not_->GetLocations();
Roland Levillain70566432014-10-24 16:20:17 +01004109 Location in = locations->InAt(0);
Nicolas Geoffraya7aca372014-04-28 17:47:12 +01004110 Location out = locations->Out();
Roland Levillain70566432014-10-24 16:20:17 +01004111 DCHECK(in.Equals(out));
Nicolas Geoffrayd8ef2e92015-02-24 16:02:06 +00004112 switch (not_->GetResultType()) {
Roland Levillain1cc5f2512014-10-22 18:06:21 +01004113 case Primitive::kPrimInt:
Roland Levillain271ab9c2014-11-27 15:23:57 +00004114 __ notl(out.AsRegister<Register>());
Roland Levillain1cc5f2512014-10-22 18:06:21 +01004115 break;
4116
4117 case Primitive::kPrimLong:
Roland Levillain70566432014-10-24 16:20:17 +01004118 __ notl(out.AsRegisterPairLow<Register>());
4119 __ notl(out.AsRegisterPairHigh<Register>());
Roland Levillain1cc5f2512014-10-22 18:06:21 +01004120 break;
4121
4122 default:
4123 LOG(FATAL) << "Unimplemented type for not operation " << not_->GetResultType();
4124 }
Nicolas Geoffrayb55f8352014-04-07 15:26:35 +01004125}
4126
David Brazdil66d126e2015-04-03 16:02:44 +01004127void LocationsBuilderX86::VisitBooleanNot(HBooleanNot* bool_not) {
4128 LocationSummary* locations =
4129 new (GetGraph()->GetArena()) LocationSummary(bool_not, LocationSummary::kNoCall);
4130 locations->SetInAt(0, Location::RequiresRegister());
4131 locations->SetOut(Location::SameAsFirstInput());
4132}
4133
4134void InstructionCodeGeneratorX86::VisitBooleanNot(HBooleanNot* bool_not) {
David Brazdil66d126e2015-04-03 16:02:44 +01004135 LocationSummary* locations = bool_not->GetLocations();
4136 Location in = locations->InAt(0);
4137 Location out = locations->Out();
4138 DCHECK(in.Equals(out));
4139 __ xorl(out.AsRegister<Register>(), Immediate(1));
4140}
4141
Nicolas Geoffray412f10c2014-06-19 10:00:34 +01004142void LocationsBuilderX86::VisitCompare(HCompare* compare) {
Nicolas Geoffray39468442014-09-02 15:17:15 +01004143 LocationSummary* locations =
4144 new (GetGraph()->GetArena()) LocationSummary(compare, LocationSummary::kNoCall);
Calin Juravleddb7df22014-11-25 20:56:51 +00004145 switch (compare->InputAt(0)->GetType()) {
4146 case Primitive::kPrimLong: {
4147 locations->SetInAt(0, Location::RequiresRegister());
Calin Juravleddb7df22014-11-25 20:56:51 +00004148 locations->SetInAt(1, Location::Any());
4149 locations->SetOut(Location::RequiresRegister(), Location::kNoOutputOverlap);
4150 break;
4151 }
4152 case Primitive::kPrimFloat:
4153 case Primitive::kPrimDouble: {
4154 locations->SetInAt(0, Location::RequiresFpuRegister());
Mark P Mendell2f10a5f2016-01-25 14:47:50 +00004155 if (compare->InputAt(1)->IsX86LoadFromConstantTable()) {
4156 DCHECK(compare->InputAt(1)->IsEmittedAtUseSite());
4157 } else if (compare->InputAt(1)->IsConstant()) {
4158 locations->SetInAt(1, Location::RequiresFpuRegister());
4159 } else {
4160 locations->SetInAt(1, Location::Any());
4161 }
Calin Juravleddb7df22014-11-25 20:56:51 +00004162 locations->SetOut(Location::RequiresRegister());
4163 break;
4164 }
4165 default:
4166 LOG(FATAL) << "Unexpected type for compare operation " << compare->InputAt(0)->GetType();
4167 }
Nicolas Geoffray412f10c2014-06-19 10:00:34 +01004168}
4169
4170void InstructionCodeGeneratorX86::VisitCompare(HCompare* compare) {
Nicolas Geoffray412f10c2014-06-19 10:00:34 +01004171 LocationSummary* locations = compare->GetLocations();
Roland Levillain271ab9c2014-11-27 15:23:57 +00004172 Register out = locations->Out().AsRegister<Register>();
Calin Juravleddb7df22014-11-25 20:56:51 +00004173 Location left = locations->InAt(0);
4174 Location right = locations->InAt(1);
4175
Mark Mendell0c9497d2015-08-21 09:30:05 -04004176 NearLabel less, greater, done;
Nicolas Geoffray412f10c2014-06-19 10:00:34 +01004177 switch (compare->InputAt(0)->GetType()) {
4178 case Primitive::kPrimLong: {
Mark Mendell3f6c7f62015-03-13 13:47:53 -04004179 Register left_low = left.AsRegisterPairLow<Register>();
4180 Register left_high = left.AsRegisterPairHigh<Register>();
4181 int32_t val_low = 0;
4182 int32_t val_high = 0;
4183 bool right_is_const = false;
4184
4185 if (right.IsConstant()) {
4186 DCHECK(right.GetConstant()->IsLongConstant());
4187 right_is_const = true;
4188 int64_t val = right.GetConstant()->AsLongConstant()->GetValue();
4189 val_low = Low32Bits(val);
4190 val_high = High32Bits(val);
4191 }
4192
Calin Juravleddb7df22014-11-25 20:56:51 +00004193 if (right.IsRegisterPair()) {
Mark Mendell3f6c7f62015-03-13 13:47:53 -04004194 __ cmpl(left_high, right.AsRegisterPairHigh<Register>());
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00004195 } else if (right.IsDoubleStackSlot()) {
Mark Mendell3f6c7f62015-03-13 13:47:53 -04004196 __ cmpl(left_high, Address(ESP, right.GetHighStackIndex(kX86WordSize)));
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00004197 } else {
Mark Mendell3f6c7f62015-03-13 13:47:53 -04004198 DCHECK(right_is_const) << right;
4199 if (val_high == 0) {
4200 __ testl(left_high, left_high);
4201 } else {
4202 __ cmpl(left_high, Immediate(val_high));
4203 }
Nicolas Geoffraye5038322014-07-04 09:41:32 +01004204 }
Nicolas Geoffray412f10c2014-06-19 10:00:34 +01004205 __ j(kLess, &less); // Signed compare.
4206 __ j(kGreater, &greater); // Signed compare.
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +01004207 if (right.IsRegisterPair()) {
Mark Mendell3f6c7f62015-03-13 13:47:53 -04004208 __ cmpl(left_low, right.AsRegisterPairLow<Register>());
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00004209 } else if (right.IsDoubleStackSlot()) {
Mark Mendell3f6c7f62015-03-13 13:47:53 -04004210 __ cmpl(left_low, Address(ESP, right.GetStackIndex()));
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00004211 } else {
Mark Mendell3f6c7f62015-03-13 13:47:53 -04004212 DCHECK(right_is_const) << right;
4213 if (val_low == 0) {
4214 __ testl(left_low, left_low);
4215 } else {
4216 __ cmpl(left_low, Immediate(val_low));
4217 }
Nicolas Geoffraye5038322014-07-04 09:41:32 +01004218 }
Calin Juravleddb7df22014-11-25 20:56:51 +00004219 break;
4220 }
4221 case Primitive::kPrimFloat: {
Mark P Mendell2f10a5f2016-01-25 14:47:50 +00004222 GenerateFPCompare(left, right, compare, false);
Calin Juravleddb7df22014-11-25 20:56:51 +00004223 __ j(kUnordered, compare->IsGtBias() ? &greater : &less);
4224 break;
4225 }
4226 case Primitive::kPrimDouble: {
Mark P Mendell2f10a5f2016-01-25 14:47:50 +00004227 GenerateFPCompare(left, right, compare, true);
Calin Juravleddb7df22014-11-25 20:56:51 +00004228 __ j(kUnordered, compare->IsGtBias() ? &greater : &less);
Nicolas Geoffray412f10c2014-06-19 10:00:34 +01004229 break;
4230 }
4231 default:
Calin Juravleddb7df22014-11-25 20:56:51 +00004232 LOG(FATAL) << "Unexpected type for compare operation " << compare->InputAt(0)->GetType();
Nicolas Geoffray412f10c2014-06-19 10:00:34 +01004233 }
Calin Juravleddb7df22014-11-25 20:56:51 +00004234 __ movl(out, Immediate(0));
4235 __ j(kEqual, &done);
4236 __ j(kBelow, &less); // kBelow is for CF (unsigned & floats).
4237
4238 __ Bind(&greater);
4239 __ movl(out, Immediate(1));
4240 __ jmp(&done);
4241
4242 __ Bind(&less);
4243 __ movl(out, Immediate(-1));
4244
4245 __ Bind(&done);
Nicolas Geoffray412f10c2014-06-19 10:00:34 +01004246}
4247
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +01004248void LocationsBuilderX86::VisitPhi(HPhi* instruction) {
Nicolas Geoffray39468442014-09-02 15:17:15 +01004249 LocationSummary* locations =
4250 new (GetGraph()->GetArena()) LocationSummary(instruction, LocationSummary::kNoCall);
Nicolas Geoffray31d76b42014-06-09 15:02:22 +01004251 for (size_t i = 0, e = instruction->InputCount(); i < e; ++i) {
4252 locations->SetInAt(i, Location::Any());
4253 }
4254 locations->SetOut(Location::Any());
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +01004255}
4256
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01004257void InstructionCodeGeneratorX86::VisitPhi(HPhi* instruction ATTRIBUTE_UNUSED) {
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +01004258 LOG(FATAL) << "Unreachable";
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +01004259}
4260
Roland Levillain7c1559a2015-12-15 10:55:36 +00004261void CodeGeneratorX86::GenerateMemoryBarrier(MemBarrierKind kind) {
Calin Juravle52c48962014-12-16 17:02:57 +00004262 /*
4263 * According to the JSR-133 Cookbook, for x86 only StoreLoad/AnyAny barriers need memory fence.
4264 * All other barriers (LoadAny, AnyStore, StoreStore) are nops due to the x86 memory model.
4265 * For those cases, all we need to ensure is that there is a scheduling barrier in place.
4266 */
4267 switch (kind) {
4268 case MemBarrierKind::kAnyAny: {
Mark P Mendell17077d82015-12-16 19:15:59 +00004269 MemoryFence();
Calin Juravle52c48962014-12-16 17:02:57 +00004270 break;
4271 }
4272 case MemBarrierKind::kAnyStore:
4273 case MemBarrierKind::kLoadAny:
4274 case MemBarrierKind::kStoreStore: {
4275 // nop
4276 break;
4277 }
4278 default:
4279 LOG(FATAL) << "Unexpected memory barrier " << kind;
Nicolas Geoffray1a43dd72014-07-17 15:15:34 +01004280 }
Nicolas Geoffraye5038322014-07-04 09:41:32 +01004281}
4282
Vladimir Markodc151b22015-10-15 18:02:30 +01004283HInvokeStaticOrDirect::DispatchInfo CodeGeneratorX86::GetSupportedInvokeStaticOrDirectDispatch(
4284 const HInvokeStaticOrDirect::DispatchInfo& desired_dispatch_info,
4285 MethodReference target_method ATTRIBUTE_UNUSED) {
Nicolas Geoffray15bd2282016-01-05 15:55:41 +00004286 HInvokeStaticOrDirect::DispatchInfo dispatch_info = desired_dispatch_info;
4287
4288 // We disable pc-relative load when there is an irreducible loop, as the optimization
4289 // is incompatible with it.
4290 if (GetGraph()->HasIrreducibleLoops() &&
4291 (dispatch_info.method_load_kind ==
4292 HInvokeStaticOrDirect::MethodLoadKind::kDexCachePcRelative)) {
4293 dispatch_info.method_load_kind = HInvokeStaticOrDirect::MethodLoadKind::kDexCacheViaMethod;
4294 }
4295 switch (dispatch_info.code_ptr_location) {
Vladimir Markodc151b22015-10-15 18:02:30 +01004296 case HInvokeStaticOrDirect::CodePtrLocation::kCallDirectWithFixup:
4297 case HInvokeStaticOrDirect::CodePtrLocation::kCallDirect:
4298 // For direct code, we actually prefer to call via the code pointer from ArtMethod*.
4299 // (Though the direct CALL ptr16:32 is available for consideration).
4300 return HInvokeStaticOrDirect::DispatchInfo {
Nicolas Geoffray15bd2282016-01-05 15:55:41 +00004301 dispatch_info.method_load_kind,
Vladimir Markodc151b22015-10-15 18:02:30 +01004302 HInvokeStaticOrDirect::CodePtrLocation::kCallArtMethod,
Nicolas Geoffray15bd2282016-01-05 15:55:41 +00004303 dispatch_info.method_load_data,
Vladimir Markodc151b22015-10-15 18:02:30 +01004304 0u
4305 };
4306 default:
Nicolas Geoffray15bd2282016-01-05 15:55:41 +00004307 return dispatch_info;
Vladimir Markodc151b22015-10-15 18:02:30 +01004308 }
4309}
Nicolas Geoffraye5038322014-07-04 09:41:32 +01004310
Vladimir Marko0f7dca42015-11-02 14:36:43 +00004311Register CodeGeneratorX86::GetInvokeStaticOrDirectExtraParameter(HInvokeStaticOrDirect* invoke,
4312 Register temp) {
4313 DCHECK_EQ(invoke->InputCount(), invoke->GetNumberOfArguments() + 1u);
Vladimir Markoc53c0792015-11-19 15:48:33 +00004314 Location location = invoke->GetLocations()->InAt(invoke->GetSpecialInputIndex());
Vladimir Marko0f7dca42015-11-02 14:36:43 +00004315 if (!invoke->GetLocations()->Intrinsified()) {
4316 return location.AsRegister<Register>();
4317 }
4318 // For intrinsics we allow any location, so it may be on the stack.
4319 if (!location.IsRegister()) {
4320 __ movl(temp, Address(ESP, location.GetStackIndex()));
4321 return temp;
4322 }
4323 // For register locations, check if the register was saved. If so, get it from the stack.
4324 // Note: There is a chance that the register was saved but not overwritten, so we could
4325 // save one load. However, since this is just an intrinsic slow path we prefer this
4326 // simple and more robust approach rather that trying to determine if that's the case.
4327 SlowPathCode* slow_path = GetCurrentSlowPath();
4328 DCHECK(slow_path != nullptr); // For intrinsified invokes the call is emitted on the slow path.
4329 if (slow_path->IsCoreRegisterSaved(location.AsRegister<Register>())) {
4330 int stack_offset = slow_path->GetStackOffsetOfCoreRegister(location.AsRegister<Register>());
4331 __ movl(temp, Address(ESP, stack_offset));
4332 return temp;
4333 }
4334 return location.AsRegister<Register>();
4335}
4336
Vladimir Marko58155012015-08-19 12:49:41 +00004337void CodeGeneratorX86::GenerateStaticOrDirectCall(HInvokeStaticOrDirect* invoke, Location temp) {
4338 Location callee_method = temp; // For all kinds except kRecursive, callee will be in temp.
4339 switch (invoke->GetMethodLoadKind()) {
4340 case HInvokeStaticOrDirect::MethodLoadKind::kStringInit:
4341 // temp = thread->string_init_entrypoint
4342 __ fs()->movl(temp.AsRegister<Register>(), Address::Absolute(invoke->GetStringInitOffset()));
4343 break;
4344 case HInvokeStaticOrDirect::MethodLoadKind::kRecursive:
Vladimir Markoc53c0792015-11-19 15:48:33 +00004345 callee_method = invoke->GetLocations()->InAt(invoke->GetSpecialInputIndex());
Vladimir Marko58155012015-08-19 12:49:41 +00004346 break;
4347 case HInvokeStaticOrDirect::MethodLoadKind::kDirectAddress:
4348 __ movl(temp.AsRegister<Register>(), Immediate(invoke->GetMethodAddress()));
4349 break;
4350 case HInvokeStaticOrDirect::MethodLoadKind::kDirectAddressWithFixup:
4351 __ movl(temp.AsRegister<Register>(), Immediate(0)); // Placeholder.
4352 method_patches_.emplace_back(invoke->GetTargetMethod());
4353 __ Bind(&method_patches_.back().label); // Bind the label at the end of the "movl" insn.
4354 break;
Vladimir Marko0f7dca42015-11-02 14:36:43 +00004355 case HInvokeStaticOrDirect::MethodLoadKind::kDexCachePcRelative: {
4356 Register base_reg = GetInvokeStaticOrDirectExtraParameter(invoke,
4357 temp.AsRegister<Register>());
4358 uint32_t offset = invoke->GetDexCacheArrayOffset();
4359 __ movl(temp.AsRegister<Register>(), Address(base_reg, kDummy32BitOffset));
4360 // Add the patch entry and bind its label at the end of the instruction.
4361 pc_relative_dex_cache_patches_.emplace_back(*invoke->GetTargetMethod().dex_file, offset);
4362 __ Bind(&pc_relative_dex_cache_patches_.back().label);
4363 break;
4364 }
Vladimir Marko58155012015-08-19 12:49:41 +00004365 case HInvokeStaticOrDirect::MethodLoadKind::kDexCacheViaMethod: {
Vladimir Markoc53c0792015-11-19 15:48:33 +00004366 Location current_method = invoke->GetLocations()->InAt(invoke->GetSpecialInputIndex());
Vladimir Marko58155012015-08-19 12:49:41 +00004367 Register method_reg;
4368 Register reg = temp.AsRegister<Register>();
4369 if (current_method.IsRegister()) {
4370 method_reg = current_method.AsRegister<Register>();
4371 } else {
David Brazdil58282f42016-01-14 12:45:10 +00004372 DCHECK(invoke->GetLocations()->Intrinsified());
Vladimir Marko58155012015-08-19 12:49:41 +00004373 DCHECK(!current_method.IsValid());
4374 method_reg = reg;
4375 __ movl(reg, Address(ESP, kCurrentMethodStackOffset));
4376 }
Roland Levillain0d5a2812015-11-13 10:07:31 +00004377 // /* ArtMethod*[] */ temp = temp.ptr_sized_fields_->dex_cache_resolved_methods_;
Vladimir Marko05792b92015-08-03 11:56:49 +01004378 __ movl(reg, Address(method_reg,
4379 ArtMethod::DexCacheResolvedMethodsOffset(kX86PointerSize).Int32Value()));
Vladimir Marko58155012015-08-19 12:49:41 +00004380 // temp = temp[index_in_cache]
4381 uint32_t index_in_cache = invoke->GetTargetMethod().dex_method_index;
4382 __ movl(reg, Address(reg, CodeGenerator::GetCachePointerOffset(index_in_cache)));
4383 break;
Vladimir Marko9b688a02015-05-06 14:12:42 +01004384 }
Vladimir Marko58155012015-08-19 12:49:41 +00004385 }
4386
4387 switch (invoke->GetCodePtrLocation()) {
4388 case HInvokeStaticOrDirect::CodePtrLocation::kCallSelf:
4389 __ call(GetFrameEntryLabel());
4390 break;
4391 case HInvokeStaticOrDirect::CodePtrLocation::kCallPCRelative: {
4392 relative_call_patches_.emplace_back(invoke->GetTargetMethod());
4393 Label* label = &relative_call_patches_.back().label;
4394 __ call(label); // Bind to the patch label, override at link time.
4395 __ Bind(label); // Bind the label at the end of the "call" insn.
4396 break;
4397 }
4398 case HInvokeStaticOrDirect::CodePtrLocation::kCallDirectWithFixup:
4399 case HInvokeStaticOrDirect::CodePtrLocation::kCallDirect:
Vladimir Markodc151b22015-10-15 18:02:30 +01004400 // Filtered out by GetSupportedInvokeStaticOrDirectDispatch().
4401 LOG(FATAL) << "Unsupported";
4402 UNREACHABLE();
Vladimir Marko58155012015-08-19 12:49:41 +00004403 case HInvokeStaticOrDirect::CodePtrLocation::kCallArtMethod:
4404 // (callee_method + offset_of_quick_compiled_code)()
4405 __ call(Address(callee_method.AsRegister<Register>(),
4406 ArtMethod::EntryPointFromQuickCompiledCodeOffset(
4407 kX86WordSize).Int32Value()));
4408 break;
Mark Mendell09ed1a32015-03-25 08:30:06 -04004409 }
4410
4411 DCHECK(!IsLeafMethod());
Mark Mendell09ed1a32015-03-25 08:30:06 -04004412}
4413
Andreas Gampebfb5ba92015-09-01 15:45:02 +00004414void CodeGeneratorX86::GenerateVirtualCall(HInvokeVirtual* invoke, Location temp_in) {
4415 Register temp = temp_in.AsRegister<Register>();
4416 uint32_t method_offset = mirror::Class::EmbeddedVTableEntryOffset(
4417 invoke->GetVTableIndex(), kX86PointerSize).Uint32Value();
Nicolas Geoffraye5234232015-12-02 09:06:11 +00004418
4419 // Use the calling convention instead of the location of the receiver, as
4420 // intrinsics may have put the receiver in a different register. In the intrinsics
4421 // slow path, the arguments have been moved to the right place, so here we are
4422 // guaranteed that the receiver is the first register of the calling convention.
4423 InvokeDexCallingConvention calling_convention;
4424 Register receiver = calling_convention.GetRegisterAt(0);
Andreas Gampebfb5ba92015-09-01 15:45:02 +00004425 uint32_t class_offset = mirror::Object::ClassOffset().Int32Value();
Roland Levillain0d5a2812015-11-13 10:07:31 +00004426 // /* HeapReference<Class> */ temp = receiver->klass_
Nicolas Geoffraye5234232015-12-02 09:06:11 +00004427 __ movl(temp, Address(receiver, class_offset));
Andreas Gampebfb5ba92015-09-01 15:45:02 +00004428 MaybeRecordImplicitNullCheck(invoke);
Roland Levillain0d5a2812015-11-13 10:07:31 +00004429 // Instead of simply (possibly) unpoisoning `temp` here, we should
4430 // emit a read barrier for the previous class reference load.
4431 // However this is not required in practice, as this is an
4432 // intermediate/temporary reference and because the current
4433 // concurrent copying collector keeps the from-space memory
4434 // intact/accessible until the end of the marking phase (the
4435 // concurrent copying collector may not in the future).
Andreas Gampebfb5ba92015-09-01 15:45:02 +00004436 __ MaybeUnpoisonHeapReference(temp);
4437 // temp = temp->GetMethodAt(method_offset);
4438 __ movl(temp, Address(temp, method_offset));
4439 // call temp->GetEntryPoint();
4440 __ call(Address(
4441 temp, ArtMethod::EntryPointFromQuickCompiledCodeOffset(kX86WordSize).Int32Value()));
4442}
4443
Vladimir Marko58155012015-08-19 12:49:41 +00004444void CodeGeneratorX86::EmitLinkerPatches(ArenaVector<LinkerPatch>* linker_patches) {
4445 DCHECK(linker_patches->empty());
Vladimir Marko0f7dca42015-11-02 14:36:43 +00004446 size_t size =
4447 method_patches_.size() +
4448 relative_call_patches_.size() +
4449 pc_relative_dex_cache_patches_.size();
4450 linker_patches->reserve(size);
4451 // The label points to the end of the "movl" insn but the literal offset for method
4452 // patch needs to point to the embedded constant which occupies the last 4 bytes.
4453 constexpr uint32_t kLabelPositionToLiteralOffsetAdjustment = 4u;
Vladimir Marko58155012015-08-19 12:49:41 +00004454 for (const MethodPatchInfo<Label>& info : method_patches_) {
Vladimir Marko0f7dca42015-11-02 14:36:43 +00004455 uint32_t literal_offset = info.label.Position() - kLabelPositionToLiteralOffsetAdjustment;
Vladimir Marko58155012015-08-19 12:49:41 +00004456 linker_patches->push_back(LinkerPatch::MethodPatch(literal_offset,
4457 info.target_method.dex_file,
4458 info.target_method.dex_method_index));
4459 }
4460 for (const MethodPatchInfo<Label>& info : relative_call_patches_) {
Vladimir Marko0f7dca42015-11-02 14:36:43 +00004461 uint32_t literal_offset = info.label.Position() - kLabelPositionToLiteralOffsetAdjustment;
Vladimir Marko58155012015-08-19 12:49:41 +00004462 linker_patches->push_back(LinkerPatch::RelativeCodePatch(literal_offset,
4463 info.target_method.dex_file,
4464 info.target_method.dex_method_index));
4465 }
Vladimir Marko0f7dca42015-11-02 14:36:43 +00004466 for (const PcRelativeDexCacheAccessInfo& info : pc_relative_dex_cache_patches_) {
4467 uint32_t literal_offset = info.label.Position() - kLabelPositionToLiteralOffsetAdjustment;
4468 linker_patches->push_back(LinkerPatch::DexCacheArrayPatch(literal_offset,
4469 &info.target_dex_file,
4470 GetMethodAddressOffset(),
4471 info.element_offset));
4472 }
Vladimir Marko58155012015-08-19 12:49:41 +00004473}
4474
Nicolas Geoffray07276db2015-05-18 14:22:09 +01004475void CodeGeneratorX86::MarkGCCard(Register temp,
4476 Register card,
4477 Register object,
4478 Register value,
4479 bool value_can_be_null) {
Mark Mendell0c9497d2015-08-21 09:30:05 -04004480 NearLabel is_null;
Nicolas Geoffray07276db2015-05-18 14:22:09 +01004481 if (value_can_be_null) {
4482 __ testl(value, value);
4483 __ j(kEqual, &is_null);
4484 }
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01004485 __ fs()->movl(card, Address::Absolute(Thread::CardTableOffset<kX86WordSize>().Int32Value()));
4486 __ movl(temp, object);
4487 __ shrl(temp, Immediate(gc::accounting::CardTable::kCardShift));
Nicolas Geoffray5b4b8982014-12-18 17:45:56 +00004488 __ movb(Address(temp, card, TIMES_1, 0),
4489 X86ManagedRegister::FromCpuRegister(card).AsByteRegister());
Nicolas Geoffray07276db2015-05-18 14:22:09 +01004490 if (value_can_be_null) {
4491 __ Bind(&is_null);
4492 }
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01004493}
4494
Calin Juravle52c48962014-12-16 17:02:57 +00004495void LocationsBuilderX86::HandleFieldGet(HInstruction* instruction, const FieldInfo& field_info) {
4496 DCHECK(instruction->IsInstanceFieldGet() || instruction->IsStaticFieldGet());
Roland Levillain0d5a2812015-11-13 10:07:31 +00004497
4498 bool object_field_get_with_read_barrier =
4499 kEmitCompilerReadBarrier && (instruction->GetType() == Primitive::kPrimNot);
Nicolas Geoffray39468442014-09-02 15:17:15 +01004500 LocationSummary* locations =
Roland Levillain0d5a2812015-11-13 10:07:31 +00004501 new (GetGraph()->GetArena()) LocationSummary(instruction,
4502 kEmitCompilerReadBarrier ?
4503 LocationSummary::kCallOnSlowPath :
4504 LocationSummary::kNoCall);
Nicolas Geoffray8e3964b2014-10-17 11:06:38 +01004505 locations->SetInAt(0, Location::RequiresRegister());
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00004506
Alexandre Rames88c13cd2015-04-14 17:35:39 +01004507 if (Primitive::IsFloatingPointType(instruction->GetType())) {
4508 locations->SetOut(Location::RequiresFpuRegister());
4509 } else {
Roland Levillain0d5a2812015-11-13 10:07:31 +00004510 // The output overlaps in case of long: we don't want the low move
4511 // to overwrite the object's location. Likewise, in the case of
4512 // an object field get with read barriers enabled, we do not want
4513 // the move to overwrite the object's location, as we need it to emit
4514 // the read barrier.
4515 locations->SetOut(
4516 Location::RequiresRegister(),
4517 (object_field_get_with_read_barrier || instruction->GetType() == Primitive::kPrimLong) ?
4518 Location::kOutputOverlap :
4519 Location::kNoOutputOverlap);
Alexandre Rames88c13cd2015-04-14 17:35:39 +01004520 }
Calin Juravle52c48962014-12-16 17:02:57 +00004521
4522 if (field_info.IsVolatile() && (field_info.GetFieldType() == Primitive::kPrimLong)) {
4523 // Long values can be loaded atomically into an XMM using movsd.
Roland Levillain7c1559a2015-12-15 10:55:36 +00004524 // So we use an XMM register as a temp to achieve atomicity (first
4525 // load the temp into the XMM and then copy the XMM into the
4526 // output, 32 bits at a time).
Calin Juravle52c48962014-12-16 17:02:57 +00004527 locations->AddTemp(Location::RequiresFpuRegister());
Roland Levillain7c1559a2015-12-15 10:55:36 +00004528 } else if (object_field_get_with_read_barrier && kUseBakerReadBarrier) {
4529 // We need a temporary register for the read barrier marking slow
4530 // path in CodeGeneratorX86::GenerateFieldLoadWithBakerReadBarrier.
4531 locations->AddTemp(Location::RequiresRegister());
Calin Juravle52c48962014-12-16 17:02:57 +00004532 }
Nicolas Geoffraye5038322014-07-04 09:41:32 +01004533}
4534
Calin Juravle52c48962014-12-16 17:02:57 +00004535void InstructionCodeGeneratorX86::HandleFieldGet(HInstruction* instruction,
4536 const FieldInfo& field_info) {
4537 DCHECK(instruction->IsInstanceFieldGet() || instruction->IsStaticFieldGet());
Nicolas Geoffraye5038322014-07-04 09:41:32 +01004538
Calin Juravle52c48962014-12-16 17:02:57 +00004539 LocationSummary* locations = instruction->GetLocations();
Roland Levillain0d5a2812015-11-13 10:07:31 +00004540 Location base_loc = locations->InAt(0);
4541 Register base = base_loc.AsRegister<Register>();
Calin Juravle52c48962014-12-16 17:02:57 +00004542 Location out = locations->Out();
4543 bool is_volatile = field_info.IsVolatile();
4544 Primitive::Type field_type = field_info.GetFieldType();
4545 uint32_t offset = field_info.GetFieldOffset().Uint32Value();
4546
4547 switch (field_type) {
Nicolas Geoffraye5038322014-07-04 09:41:32 +01004548 case Primitive::kPrimBoolean: {
Calin Juravle52c48962014-12-16 17:02:57 +00004549 __ movzxb(out.AsRegister<Register>(), Address(base, offset));
Nicolas Geoffraye5038322014-07-04 09:41:32 +01004550 break;
4551 }
4552
4553 case Primitive::kPrimByte: {
Calin Juravle52c48962014-12-16 17:02:57 +00004554 __ movsxb(out.AsRegister<Register>(), Address(base, offset));
Nicolas Geoffraye5038322014-07-04 09:41:32 +01004555 break;
4556 }
4557
4558 case Primitive::kPrimShort: {
Calin Juravle52c48962014-12-16 17:02:57 +00004559 __ movsxw(out.AsRegister<Register>(), Address(base, offset));
Nicolas Geoffraye5038322014-07-04 09:41:32 +01004560 break;
4561 }
4562
4563 case Primitive::kPrimChar: {
Calin Juravle52c48962014-12-16 17:02:57 +00004564 __ movzxw(out.AsRegister<Register>(), Address(base, offset));
Nicolas Geoffraye5038322014-07-04 09:41:32 +01004565 break;
4566 }
4567
4568 case Primitive::kPrimInt:
Calin Juravle52c48962014-12-16 17:02:57 +00004569 __ movl(out.AsRegister<Register>(), Address(base, offset));
Nicolas Geoffraye5038322014-07-04 09:41:32 +01004570 break;
Roland Levillain7c1559a2015-12-15 10:55:36 +00004571
4572 case Primitive::kPrimNot: {
4573 // /* HeapReference<Object> */ out = *(base + offset)
4574 if (kEmitCompilerReadBarrier && kUseBakerReadBarrier) {
4575 Location temp_loc = locations->GetTemp(0);
4576 // Note that a potential implicit null check is handled in this
4577 // CodeGeneratorX86::GenerateFieldLoadWithBakerReadBarrier call.
4578 codegen_->GenerateFieldLoadWithBakerReadBarrier(
4579 instruction, out, base, offset, temp_loc, /* needs_null_check */ true);
4580 if (is_volatile) {
4581 codegen_->GenerateMemoryBarrier(MemBarrierKind::kLoadAny);
4582 }
4583 } else {
4584 __ movl(out.AsRegister<Register>(), Address(base, offset));
4585 codegen_->MaybeRecordImplicitNullCheck(instruction);
4586 if (is_volatile) {
4587 codegen_->GenerateMemoryBarrier(MemBarrierKind::kLoadAny);
4588 }
4589 // If read barriers are enabled, emit read barriers other than
4590 // Baker's using a slow path (and also unpoison the loaded
4591 // reference, if heap poisoning is enabled).
4592 codegen_->MaybeGenerateReadBarrierSlow(instruction, out, out, base_loc, offset);
4593 }
4594 break;
Nicolas Geoffraye5038322014-07-04 09:41:32 +01004595 }
4596
4597 case Primitive::kPrimLong: {
Calin Juravle52c48962014-12-16 17:02:57 +00004598 if (is_volatile) {
4599 XmmRegister temp = locations->GetTemp(0).AsFpuRegister<XmmRegister>();
4600 __ movsd(temp, Address(base, offset));
Calin Juravle77520bc2015-01-12 18:45:46 +00004601 codegen_->MaybeRecordImplicitNullCheck(instruction);
Calin Juravle52c48962014-12-16 17:02:57 +00004602 __ movd(out.AsRegisterPairLow<Register>(), temp);
4603 __ psrlq(temp, Immediate(32));
4604 __ movd(out.AsRegisterPairHigh<Register>(), temp);
4605 } else {
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00004606 DCHECK_NE(base, out.AsRegisterPairLow<Register>());
Calin Juravle52c48962014-12-16 17:02:57 +00004607 __ movl(out.AsRegisterPairLow<Register>(), Address(base, offset));
Calin Juravle77520bc2015-01-12 18:45:46 +00004608 codegen_->MaybeRecordImplicitNullCheck(instruction);
Calin Juravle52c48962014-12-16 17:02:57 +00004609 __ movl(out.AsRegisterPairHigh<Register>(), Address(base, kX86WordSize + offset));
4610 }
Nicolas Geoffraye5038322014-07-04 09:41:32 +01004611 break;
4612 }
4613
Nicolas Geoffray52e832b2014-11-06 15:15:31 +00004614 case Primitive::kPrimFloat: {
Calin Juravle52c48962014-12-16 17:02:57 +00004615 __ movss(out.AsFpuRegister<XmmRegister>(), Address(base, offset));
Nicolas Geoffray52e832b2014-11-06 15:15:31 +00004616 break;
4617 }
4618
4619 case Primitive::kPrimDouble: {
Calin Juravle52c48962014-12-16 17:02:57 +00004620 __ movsd(out.AsFpuRegister<XmmRegister>(), Address(base, offset));
Nicolas Geoffray52e832b2014-11-06 15:15:31 +00004621 break;
4622 }
4623
Nicolas Geoffraye5038322014-07-04 09:41:32 +01004624 case Primitive::kPrimVoid:
Calin Juravle52c48962014-12-16 17:02:57 +00004625 LOG(FATAL) << "Unreachable type " << field_type;
Ian Rogersfc787ec2014-10-09 21:56:44 -07004626 UNREACHABLE();
Nicolas Geoffraye5038322014-07-04 09:41:32 +01004627 }
Calin Juravle52c48962014-12-16 17:02:57 +00004628
Roland Levillain7c1559a2015-12-15 10:55:36 +00004629 if (field_type == Primitive::kPrimNot || field_type == Primitive::kPrimLong) {
4630 // Potential implicit null checks, in the case of reference or
4631 // long fields, are handled in the previous switch statement.
4632 } else {
Calin Juravle77520bc2015-01-12 18:45:46 +00004633 codegen_->MaybeRecordImplicitNullCheck(instruction);
4634 }
4635
Calin Juravle52c48962014-12-16 17:02:57 +00004636 if (is_volatile) {
Roland Levillain7c1559a2015-12-15 10:55:36 +00004637 if (field_type == Primitive::kPrimNot) {
4638 // Memory barriers, in the case of references, are also handled
4639 // in the previous switch statement.
4640 } else {
4641 codegen_->GenerateMemoryBarrier(MemBarrierKind::kLoadAny);
4642 }
Roland Levillain4d027112015-07-01 15:41:14 +01004643 }
Calin Juravle52c48962014-12-16 17:02:57 +00004644}
4645
4646void LocationsBuilderX86::HandleFieldSet(HInstruction* instruction, const FieldInfo& field_info) {
4647 DCHECK(instruction->IsInstanceFieldSet() || instruction->IsStaticFieldSet());
4648
4649 LocationSummary* locations =
4650 new (GetGraph()->GetArena()) LocationSummary(instruction, LocationSummary::kNoCall);
4651 locations->SetInAt(0, Location::RequiresRegister());
4652 bool is_volatile = field_info.IsVolatile();
4653 Primitive::Type field_type = field_info.GetFieldType();
4654 bool is_byte_type = (field_type == Primitive::kPrimBoolean)
4655 || (field_type == Primitive::kPrimByte);
4656
4657 // The register allocator does not support multiple
4658 // inputs that die at entry with one in a specific register.
4659 if (is_byte_type) {
4660 // Ensure the value is in a byte register.
4661 locations->SetInAt(1, Location::RegisterLocation(EAX));
Alexandre Rames88c13cd2015-04-14 17:35:39 +01004662 } else if (Primitive::IsFloatingPointType(field_type)) {
Mark Mendell81489372015-11-04 11:30:41 -05004663 if (is_volatile && field_type == Primitive::kPrimDouble) {
4664 // In order to satisfy the semantics of volatile, this must be a single instruction store.
4665 locations->SetInAt(1, Location::RequiresFpuRegister());
4666 } else {
4667 locations->SetInAt(1, Location::FpuRegisterOrConstant(instruction->InputAt(1)));
4668 }
4669 } else if (is_volatile && field_type == Primitive::kPrimLong) {
4670 // In order to satisfy the semantics of volatile, this must be a single instruction store.
Calin Juravle52c48962014-12-16 17:02:57 +00004671 locations->SetInAt(1, Location::RequiresRegister());
Mark Mendell81489372015-11-04 11:30:41 -05004672
Calin Juravle52c48962014-12-16 17:02:57 +00004673 // 64bits value can be atomically written to an address with movsd and an XMM register.
4674 // We need two XMM registers because there's no easier way to (bit) copy a register pair
4675 // into a single XMM register (we copy each pair part into the XMMs and then interleave them).
4676 // NB: We could make the register allocator understand fp_reg <-> core_reg moves but given the
4677 // isolated cases when we need this it isn't worth adding the extra complexity.
4678 locations->AddTemp(Location::RequiresFpuRegister());
4679 locations->AddTemp(Location::RequiresFpuRegister());
Mark Mendell81489372015-11-04 11:30:41 -05004680 } else {
4681 locations->SetInAt(1, Location::RegisterOrConstant(instruction->InputAt(1)));
4682
4683 if (CodeGenerator::StoreNeedsWriteBarrier(field_type, instruction->InputAt(1))) {
4684 // Temporary registers for the write barrier.
4685 locations->AddTemp(Location::RequiresRegister()); // May be used for reference poisoning too.
4686 // Ensure the card is in a byte register.
4687 locations->AddTemp(Location::RegisterLocation(ECX));
4688 }
Calin Juravle52c48962014-12-16 17:02:57 +00004689 }
4690}
4691
4692void InstructionCodeGeneratorX86::HandleFieldSet(HInstruction* instruction,
Nicolas Geoffray07276db2015-05-18 14:22:09 +01004693 const FieldInfo& field_info,
4694 bool value_can_be_null) {
Calin Juravle52c48962014-12-16 17:02:57 +00004695 DCHECK(instruction->IsInstanceFieldSet() || instruction->IsStaticFieldSet());
4696
4697 LocationSummary* locations = instruction->GetLocations();
4698 Register base = locations->InAt(0).AsRegister<Register>();
4699 Location value = locations->InAt(1);
4700 bool is_volatile = field_info.IsVolatile();
4701 Primitive::Type field_type = field_info.GetFieldType();
4702 uint32_t offset = field_info.GetFieldOffset().Uint32Value();
Roland Levillain4d027112015-07-01 15:41:14 +01004703 bool needs_write_barrier =
4704 CodeGenerator::StoreNeedsWriteBarrier(field_type, instruction->InputAt(1));
Calin Juravle52c48962014-12-16 17:02:57 +00004705
4706 if (is_volatile) {
Roland Levillain7c1559a2015-12-15 10:55:36 +00004707 codegen_->GenerateMemoryBarrier(MemBarrierKind::kAnyStore);
Calin Juravle52c48962014-12-16 17:02:57 +00004708 }
4709
Mark Mendell81489372015-11-04 11:30:41 -05004710 bool maybe_record_implicit_null_check_done = false;
4711
Calin Juravle52c48962014-12-16 17:02:57 +00004712 switch (field_type) {
4713 case Primitive::kPrimBoolean:
4714 case Primitive::kPrimByte: {
4715 __ movb(Address(base, offset), value.AsRegister<ByteRegister>());
4716 break;
4717 }
4718
4719 case Primitive::kPrimShort:
4720 case Primitive::kPrimChar: {
Mark Mendell81489372015-11-04 11:30:41 -05004721 if (value.IsConstant()) {
4722 int16_t v = CodeGenerator::GetInt32ValueOf(value.GetConstant());
4723 __ movw(Address(base, offset), Immediate(v));
4724 } else {
4725 __ movw(Address(base, offset), value.AsRegister<Register>());
4726 }
Calin Juravle52c48962014-12-16 17:02:57 +00004727 break;
4728 }
4729
4730 case Primitive::kPrimInt:
4731 case Primitive::kPrimNot: {
Roland Levillain4d027112015-07-01 15:41:14 +01004732 if (kPoisonHeapReferences && needs_write_barrier) {
4733 // Note that in the case where `value` is a null reference,
4734 // we do not enter this block, as the reference does not
4735 // need poisoning.
4736 DCHECK_EQ(field_type, Primitive::kPrimNot);
4737 Register temp = locations->GetTemp(0).AsRegister<Register>();
4738 __ movl(temp, value.AsRegister<Register>());
4739 __ PoisonHeapReference(temp);
4740 __ movl(Address(base, offset), temp);
Mark Mendell81489372015-11-04 11:30:41 -05004741 } else if (value.IsConstant()) {
4742 int32_t v = CodeGenerator::GetInt32ValueOf(value.GetConstant());
4743 __ movl(Address(base, offset), Immediate(v));
Roland Levillain4d027112015-07-01 15:41:14 +01004744 } else {
4745 __ movl(Address(base, offset), value.AsRegister<Register>());
4746 }
Calin Juravle52c48962014-12-16 17:02:57 +00004747 break;
4748 }
4749
4750 case Primitive::kPrimLong: {
4751 if (is_volatile) {
4752 XmmRegister temp1 = locations->GetTemp(0).AsFpuRegister<XmmRegister>();
4753 XmmRegister temp2 = locations->GetTemp(1).AsFpuRegister<XmmRegister>();
4754 __ movd(temp1, value.AsRegisterPairLow<Register>());
4755 __ movd(temp2, value.AsRegisterPairHigh<Register>());
4756 __ punpckldq(temp1, temp2);
4757 __ movsd(Address(base, offset), temp1);
Calin Juravle77520bc2015-01-12 18:45:46 +00004758 codegen_->MaybeRecordImplicitNullCheck(instruction);
Mark Mendell81489372015-11-04 11:30:41 -05004759 } else if (value.IsConstant()) {
4760 int64_t v = CodeGenerator::GetInt64ValueOf(value.GetConstant());
4761 __ movl(Address(base, offset), Immediate(Low32Bits(v)));
4762 codegen_->MaybeRecordImplicitNullCheck(instruction);
4763 __ movl(Address(base, kX86WordSize + offset), Immediate(High32Bits(v)));
Calin Juravle52c48962014-12-16 17:02:57 +00004764 } else {
4765 __ movl(Address(base, offset), value.AsRegisterPairLow<Register>());
Calin Juravle77520bc2015-01-12 18:45:46 +00004766 codegen_->MaybeRecordImplicitNullCheck(instruction);
Calin Juravle52c48962014-12-16 17:02:57 +00004767 __ movl(Address(base, kX86WordSize + offset), value.AsRegisterPairHigh<Register>());
4768 }
Mark Mendell81489372015-11-04 11:30:41 -05004769 maybe_record_implicit_null_check_done = true;
Calin Juravle52c48962014-12-16 17:02:57 +00004770 break;
4771 }
4772
4773 case Primitive::kPrimFloat: {
Mark Mendell81489372015-11-04 11:30:41 -05004774 if (value.IsConstant()) {
4775 int32_t v = CodeGenerator::GetInt32ValueOf(value.GetConstant());
4776 __ movl(Address(base, offset), Immediate(v));
4777 } else {
4778 __ movss(Address(base, offset), value.AsFpuRegister<XmmRegister>());
4779 }
Calin Juravle52c48962014-12-16 17:02:57 +00004780 break;
4781 }
4782
4783 case Primitive::kPrimDouble: {
Mark Mendell81489372015-11-04 11:30:41 -05004784 if (value.IsConstant()) {
4785 int64_t v = CodeGenerator::GetInt64ValueOf(value.GetConstant());
4786 __ movl(Address(base, offset), Immediate(Low32Bits(v)));
4787 codegen_->MaybeRecordImplicitNullCheck(instruction);
4788 __ movl(Address(base, kX86WordSize + offset), Immediate(High32Bits(v)));
4789 maybe_record_implicit_null_check_done = true;
4790 } else {
4791 __ movsd(Address(base, offset), value.AsFpuRegister<XmmRegister>());
4792 }
Calin Juravle52c48962014-12-16 17:02:57 +00004793 break;
4794 }
4795
4796 case Primitive::kPrimVoid:
4797 LOG(FATAL) << "Unreachable type " << field_type;
4798 UNREACHABLE();
4799 }
4800
Mark Mendell81489372015-11-04 11:30:41 -05004801 if (!maybe_record_implicit_null_check_done) {
Calin Juravle77520bc2015-01-12 18:45:46 +00004802 codegen_->MaybeRecordImplicitNullCheck(instruction);
4803 }
4804
Roland Levillain4d027112015-07-01 15:41:14 +01004805 if (needs_write_barrier) {
Calin Juravle77520bc2015-01-12 18:45:46 +00004806 Register temp = locations->GetTemp(0).AsRegister<Register>();
4807 Register card = locations->GetTemp(1).AsRegister<Register>();
Nicolas Geoffray07276db2015-05-18 14:22:09 +01004808 codegen_->MarkGCCard(temp, card, base, value.AsRegister<Register>(), value_can_be_null);
Calin Juravle77520bc2015-01-12 18:45:46 +00004809 }
4810
Calin Juravle52c48962014-12-16 17:02:57 +00004811 if (is_volatile) {
Roland Levillain7c1559a2015-12-15 10:55:36 +00004812 codegen_->GenerateMemoryBarrier(MemBarrierKind::kAnyAny);
Calin Juravle52c48962014-12-16 17:02:57 +00004813 }
4814}
4815
4816void LocationsBuilderX86::VisitStaticFieldGet(HStaticFieldGet* instruction) {
4817 HandleFieldGet(instruction, instruction->GetFieldInfo());
4818}
4819
4820void InstructionCodeGeneratorX86::VisitStaticFieldGet(HStaticFieldGet* instruction) {
4821 HandleFieldGet(instruction, instruction->GetFieldInfo());
4822}
4823
4824void LocationsBuilderX86::VisitStaticFieldSet(HStaticFieldSet* instruction) {
4825 HandleFieldSet(instruction, instruction->GetFieldInfo());
4826}
4827
4828void InstructionCodeGeneratorX86::VisitStaticFieldSet(HStaticFieldSet* instruction) {
Nicolas Geoffray07276db2015-05-18 14:22:09 +01004829 HandleFieldSet(instruction, instruction->GetFieldInfo(), instruction->GetValueCanBeNull());
Calin Juravle52c48962014-12-16 17:02:57 +00004830}
4831
4832void LocationsBuilderX86::VisitInstanceFieldSet(HInstanceFieldSet* instruction) {
4833 HandleFieldSet(instruction, instruction->GetFieldInfo());
4834}
4835
4836void InstructionCodeGeneratorX86::VisitInstanceFieldSet(HInstanceFieldSet* instruction) {
Nicolas Geoffray07276db2015-05-18 14:22:09 +01004837 HandleFieldSet(instruction, instruction->GetFieldInfo(), instruction->GetValueCanBeNull());
Calin Juravle52c48962014-12-16 17:02:57 +00004838}
4839
4840void LocationsBuilderX86::VisitInstanceFieldGet(HInstanceFieldGet* instruction) {
4841 HandleFieldGet(instruction, instruction->GetFieldInfo());
4842}
4843
4844void InstructionCodeGeneratorX86::VisitInstanceFieldGet(HInstanceFieldGet* instruction) {
4845 HandleFieldGet(instruction, instruction->GetFieldInfo());
Nicolas Geoffraye5038322014-07-04 09:41:32 +01004846}
4847
Calin Juravlee460d1d2015-09-29 04:52:17 +01004848void LocationsBuilderX86::VisitUnresolvedInstanceFieldGet(
4849 HUnresolvedInstanceFieldGet* instruction) {
4850 FieldAccessCallingConventionX86 calling_convention;
4851 codegen_->CreateUnresolvedFieldLocationSummary(
4852 instruction, instruction->GetFieldType(), calling_convention);
4853}
4854
4855void InstructionCodeGeneratorX86::VisitUnresolvedInstanceFieldGet(
4856 HUnresolvedInstanceFieldGet* instruction) {
4857 FieldAccessCallingConventionX86 calling_convention;
4858 codegen_->GenerateUnresolvedFieldAccess(instruction,
4859 instruction->GetFieldType(),
4860 instruction->GetFieldIndex(),
4861 instruction->GetDexPc(),
4862 calling_convention);
4863}
4864
4865void LocationsBuilderX86::VisitUnresolvedInstanceFieldSet(
4866 HUnresolvedInstanceFieldSet* instruction) {
4867 FieldAccessCallingConventionX86 calling_convention;
4868 codegen_->CreateUnresolvedFieldLocationSummary(
4869 instruction, instruction->GetFieldType(), calling_convention);
4870}
4871
4872void InstructionCodeGeneratorX86::VisitUnresolvedInstanceFieldSet(
4873 HUnresolvedInstanceFieldSet* instruction) {
4874 FieldAccessCallingConventionX86 calling_convention;
4875 codegen_->GenerateUnresolvedFieldAccess(instruction,
4876 instruction->GetFieldType(),
4877 instruction->GetFieldIndex(),
4878 instruction->GetDexPc(),
4879 calling_convention);
4880}
4881
4882void LocationsBuilderX86::VisitUnresolvedStaticFieldGet(
4883 HUnresolvedStaticFieldGet* instruction) {
4884 FieldAccessCallingConventionX86 calling_convention;
4885 codegen_->CreateUnresolvedFieldLocationSummary(
4886 instruction, instruction->GetFieldType(), calling_convention);
4887}
4888
4889void InstructionCodeGeneratorX86::VisitUnresolvedStaticFieldGet(
4890 HUnresolvedStaticFieldGet* instruction) {
4891 FieldAccessCallingConventionX86 calling_convention;
4892 codegen_->GenerateUnresolvedFieldAccess(instruction,
4893 instruction->GetFieldType(),
4894 instruction->GetFieldIndex(),
4895 instruction->GetDexPc(),
4896 calling_convention);
4897}
4898
4899void LocationsBuilderX86::VisitUnresolvedStaticFieldSet(
4900 HUnresolvedStaticFieldSet* instruction) {
4901 FieldAccessCallingConventionX86 calling_convention;
4902 codegen_->CreateUnresolvedFieldLocationSummary(
4903 instruction, instruction->GetFieldType(), calling_convention);
4904}
4905
4906void InstructionCodeGeneratorX86::VisitUnresolvedStaticFieldSet(
4907 HUnresolvedStaticFieldSet* instruction) {
4908 FieldAccessCallingConventionX86 calling_convention;
4909 codegen_->GenerateUnresolvedFieldAccess(instruction,
4910 instruction->GetFieldType(),
4911 instruction->GetFieldIndex(),
4912 instruction->GetDexPc(),
4913 calling_convention);
4914}
4915
Nicolas Geoffraye5038322014-07-04 09:41:32 +01004916void LocationsBuilderX86::VisitNullCheck(HNullCheck* instruction) {
David Brazdil77a48ae2015-09-15 12:34:04 +00004917 LocationSummary::CallKind call_kind = instruction->CanThrowIntoCatchBlock()
4918 ? LocationSummary::kCallOnSlowPath
4919 : LocationSummary::kNoCall;
4920 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(instruction, call_kind);
4921 Location loc = codegen_->IsImplicitNullCheckAllowed(instruction)
Calin Juravlecd6dffe2015-01-08 17:35:35 +00004922 ? Location::RequiresRegister()
4923 : Location::Any();
4924 locations->SetInAt(0, loc);
Nicolas Geoffray26a25ef2014-09-30 13:54:09 +01004925 if (instruction->HasUses()) {
4926 locations->SetOut(Location::SameAsFirstInput());
4927 }
Nicolas Geoffraye5038322014-07-04 09:41:32 +01004928}
4929
Calin Juravlecd6dffe2015-01-08 17:35:35 +00004930void InstructionCodeGeneratorX86::GenerateImplicitNullCheck(HNullCheck* instruction) {
Calin Juravle77520bc2015-01-12 18:45:46 +00004931 if (codegen_->CanMoveNullCheckToUser(instruction)) {
4932 return;
4933 }
Calin Juravlecd6dffe2015-01-08 17:35:35 +00004934 LocationSummary* locations = instruction->GetLocations();
4935 Location obj = locations->InAt(0);
Calin Juravle77520bc2015-01-12 18:45:46 +00004936
Calin Juravlecd6dffe2015-01-08 17:35:35 +00004937 __ testl(EAX, Address(obj.AsRegister<Register>(), 0));
4938 codegen_->RecordPcInfo(instruction, instruction->GetDexPc());
4939}
4940
4941void InstructionCodeGeneratorX86::GenerateExplicitNullCheck(HNullCheck* instruction) {
Andreas Gampe85b62f22015-09-09 13:15:38 -07004942 SlowPathCode* slow_path = new (GetGraph()->GetArena()) NullCheckSlowPathX86(instruction);
Nicolas Geoffraye5038322014-07-04 09:41:32 +01004943 codegen_->AddSlowPath(slow_path);
4944
4945 LocationSummary* locations = instruction->GetLocations();
4946 Location obj = locations->InAt(0);
Nicolas Geoffraye5038322014-07-04 09:41:32 +01004947
4948 if (obj.IsRegister()) {
Mark Mendell42514f62015-03-31 11:34:22 -04004949 __ testl(obj.AsRegister<Register>(), obj.AsRegister<Register>());
Nicolas Geoffray26a25ef2014-09-30 13:54:09 +01004950 } else if (obj.IsStackSlot()) {
Nicolas Geoffraye5038322014-07-04 09:41:32 +01004951 __ cmpl(Address(ESP, obj.GetStackIndex()), Immediate(0));
Nicolas Geoffray26a25ef2014-09-30 13:54:09 +01004952 } else {
4953 DCHECK(obj.IsConstant()) << obj;
David Brazdil77a48ae2015-09-15 12:34:04 +00004954 DCHECK(obj.GetConstant()->IsNullConstant());
Nicolas Geoffray26a25ef2014-09-30 13:54:09 +01004955 __ jmp(slow_path->GetEntryLabel());
4956 return;
Nicolas Geoffraye5038322014-07-04 09:41:32 +01004957 }
4958 __ j(kEqual, slow_path->GetEntryLabel());
4959}
4960
Calin Juravlecd6dffe2015-01-08 17:35:35 +00004961void InstructionCodeGeneratorX86::VisitNullCheck(HNullCheck* instruction) {
David Brazdil77a48ae2015-09-15 12:34:04 +00004962 if (codegen_->IsImplicitNullCheckAllowed(instruction)) {
Calin Juravlecd6dffe2015-01-08 17:35:35 +00004963 GenerateImplicitNullCheck(instruction);
4964 } else {
4965 GenerateExplicitNullCheck(instruction);
4966 }
4967}
4968
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01004969void LocationsBuilderX86::VisitArrayGet(HArrayGet* instruction) {
Roland Levillain0d5a2812015-11-13 10:07:31 +00004970 bool object_array_get_with_read_barrier =
4971 kEmitCompilerReadBarrier && (instruction->GetType() == Primitive::kPrimNot);
Nicolas Geoffray39468442014-09-02 15:17:15 +01004972 LocationSummary* locations =
Roland Levillain0d5a2812015-11-13 10:07:31 +00004973 new (GetGraph()->GetArena()) LocationSummary(instruction,
4974 object_array_get_with_read_barrier ?
4975 LocationSummary::kCallOnSlowPath :
4976 LocationSummary::kNoCall);
Nicolas Geoffray8e3964b2014-10-17 11:06:38 +01004977 locations->SetInAt(0, Location::RequiresRegister());
4978 locations->SetInAt(1, Location::RegisterOrConstant(instruction->InputAt(1)));
Alexandre Rames88c13cd2015-04-14 17:35:39 +01004979 if (Primitive::IsFloatingPointType(instruction->GetType())) {
4980 locations->SetOut(Location::RequiresFpuRegister(), Location::kNoOutputOverlap);
4981 } else {
Roland Levillain0d5a2812015-11-13 10:07:31 +00004982 // The output overlaps in case of long: we don't want the low move
4983 // to overwrite the array's location. Likewise, in the case of an
4984 // object array get with read barriers enabled, we do not want the
4985 // move to overwrite the array's location, as we need it to emit
4986 // the read barrier.
4987 locations->SetOut(
4988 Location::RequiresRegister(),
4989 (instruction->GetType() == Primitive::kPrimLong || object_array_get_with_read_barrier) ?
4990 Location::kOutputOverlap :
4991 Location::kNoOutputOverlap);
Alexandre Rames88c13cd2015-04-14 17:35:39 +01004992 }
Roland Levillain7c1559a2015-12-15 10:55:36 +00004993 // We need a temporary register for the read barrier marking slow
4994 // path in CodeGeneratorX86::GenerateArrayLoadWithBakerReadBarrier.
4995 if (object_array_get_with_read_barrier && kUseBakerReadBarrier) {
4996 locations->AddTemp(Location::RequiresRegister());
4997 }
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01004998}
4999
5000void InstructionCodeGeneratorX86::VisitArrayGet(HArrayGet* instruction) {
5001 LocationSummary* locations = instruction->GetLocations();
Roland Levillain0d5a2812015-11-13 10:07:31 +00005002 Location obj_loc = locations->InAt(0);
5003 Register obj = obj_loc.AsRegister<Register>();
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005004 Location index = locations->InAt(1);
Roland Levillain7c1559a2015-12-15 10:55:36 +00005005 Location out_loc = locations->Out();
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005006
Calin Juravle77520bc2015-01-12 18:45:46 +00005007 Primitive::Type type = instruction->GetType();
5008 switch (type) {
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005009 case Primitive::kPrimBoolean: {
5010 uint32_t data_offset = mirror::Array::DataOffset(sizeof(uint8_t)).Uint32Value();
Roland Levillain7c1559a2015-12-15 10:55:36 +00005011 Register out = out_loc.AsRegister<Register>();
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005012 if (index.IsConstant()) {
5013 __ movzxb(out, Address(obj,
5014 (index.GetConstant()->AsIntConstant()->GetValue() << TIMES_1) + data_offset));
5015 } else {
Roland Levillain271ab9c2014-11-27 15:23:57 +00005016 __ movzxb(out, Address(obj, index.AsRegister<Register>(), TIMES_1, data_offset));
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005017 }
5018 break;
5019 }
5020
5021 case Primitive::kPrimByte: {
5022 uint32_t data_offset = mirror::Array::DataOffset(sizeof(int8_t)).Uint32Value();
Roland Levillain7c1559a2015-12-15 10:55:36 +00005023 Register out = out_loc.AsRegister<Register>();
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005024 if (index.IsConstant()) {
5025 __ movsxb(out, Address(obj,
5026 (index.GetConstant()->AsIntConstant()->GetValue() << TIMES_1) + data_offset));
5027 } else {
Roland Levillain271ab9c2014-11-27 15:23:57 +00005028 __ movsxb(out, Address(obj, index.AsRegister<Register>(), TIMES_1, data_offset));
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005029 }
5030 break;
5031 }
5032
5033 case Primitive::kPrimShort: {
5034 uint32_t data_offset = mirror::Array::DataOffset(sizeof(int16_t)).Uint32Value();
Roland Levillain7c1559a2015-12-15 10:55:36 +00005035 Register out = out_loc.AsRegister<Register>();
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005036 if (index.IsConstant()) {
5037 __ movsxw(out, Address(obj,
5038 (index.GetConstant()->AsIntConstant()->GetValue() << TIMES_2) + data_offset));
5039 } else {
Roland Levillain271ab9c2014-11-27 15:23:57 +00005040 __ movsxw(out, Address(obj, index.AsRegister<Register>(), TIMES_2, data_offset));
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005041 }
5042 break;
5043 }
5044
5045 case Primitive::kPrimChar: {
5046 uint32_t data_offset = mirror::Array::DataOffset(sizeof(uint16_t)).Uint32Value();
Roland Levillain7c1559a2015-12-15 10:55:36 +00005047 Register out = out_loc.AsRegister<Register>();
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005048 if (index.IsConstant()) {
5049 __ movzxw(out, Address(obj,
5050 (index.GetConstant()->AsIntConstant()->GetValue() << TIMES_2) + data_offset));
5051 } else {
Roland Levillain271ab9c2014-11-27 15:23:57 +00005052 __ movzxw(out, Address(obj, index.AsRegister<Register>(), TIMES_2, data_offset));
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005053 }
5054 break;
5055 }
5056
Roland Levillain7c1559a2015-12-15 10:55:36 +00005057 case Primitive::kPrimInt: {
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005058 uint32_t data_offset = mirror::Array::DataOffset(sizeof(int32_t)).Uint32Value();
Roland Levillain7c1559a2015-12-15 10:55:36 +00005059 Register out = out_loc.AsRegister<Register>();
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005060 if (index.IsConstant()) {
5061 __ movl(out, Address(obj,
5062 (index.GetConstant()->AsIntConstant()->GetValue() << TIMES_4) + data_offset));
5063 } else {
Roland Levillain271ab9c2014-11-27 15:23:57 +00005064 __ movl(out, Address(obj, index.AsRegister<Register>(), TIMES_4, data_offset));
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005065 }
5066 break;
5067 }
5068
Roland Levillain7c1559a2015-12-15 10:55:36 +00005069 case Primitive::kPrimNot: {
5070 static_assert(
5071 sizeof(mirror::HeapReference<mirror::Object>) == sizeof(int32_t),
5072 "art::mirror::HeapReference<art::mirror::Object> and int32_t have different sizes.");
5073 uint32_t data_offset = mirror::Array::DataOffset(sizeof(int32_t)).Uint32Value();
5074 // /* HeapReference<Object> */ out =
5075 // *(obj + data_offset + index * sizeof(HeapReference<Object>))
5076 if (kEmitCompilerReadBarrier && kUseBakerReadBarrier) {
5077 Location temp = locations->GetTemp(0);
5078 // Note that a potential implicit null check is handled in this
5079 // CodeGeneratorX86::GenerateArrayLoadWithBakerReadBarrier call.
5080 codegen_->GenerateArrayLoadWithBakerReadBarrier(
5081 instruction, out_loc, obj, data_offset, index, temp, /* needs_null_check */ true);
5082 } else {
5083 Register out = out_loc.AsRegister<Register>();
5084 if (index.IsConstant()) {
5085 uint32_t offset =
5086 (index.GetConstant()->AsIntConstant()->GetValue() << TIMES_4) + data_offset;
5087 __ movl(out, Address(obj, offset));
5088 codegen_->MaybeRecordImplicitNullCheck(instruction);
5089 // If read barriers are enabled, emit read barriers other than
5090 // Baker's using a slow path (and also unpoison the loaded
5091 // reference, if heap poisoning is enabled).
5092 codegen_->MaybeGenerateReadBarrierSlow(instruction, out_loc, out_loc, obj_loc, offset);
5093 } else {
5094 __ movl(out, Address(obj, index.AsRegister<Register>(), TIMES_4, data_offset));
5095 codegen_->MaybeRecordImplicitNullCheck(instruction);
5096 // If read barriers are enabled, emit read barriers other than
5097 // Baker's using a slow path (and also unpoison the loaded
5098 // reference, if heap poisoning is enabled).
5099 codegen_->MaybeGenerateReadBarrierSlow(
5100 instruction, out_loc, out_loc, obj_loc, data_offset, index);
5101 }
5102 }
5103 break;
5104 }
5105
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005106 case Primitive::kPrimLong: {
5107 uint32_t data_offset = mirror::Array::DataOffset(sizeof(int64_t)).Uint32Value();
Roland Levillain7c1559a2015-12-15 10:55:36 +00005108 DCHECK_NE(obj, out_loc.AsRegisterPairLow<Register>());
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005109 if (index.IsConstant()) {
5110 size_t offset = (index.GetConstant()->AsIntConstant()->GetValue() << TIMES_8) + data_offset;
Roland Levillain7c1559a2015-12-15 10:55:36 +00005111 __ movl(out_loc.AsRegisterPairLow<Register>(), Address(obj, offset));
Calin Juravle77520bc2015-01-12 18:45:46 +00005112 codegen_->MaybeRecordImplicitNullCheck(instruction);
Roland Levillain7c1559a2015-12-15 10:55:36 +00005113 __ movl(out_loc.AsRegisterPairHigh<Register>(), Address(obj, offset + kX86WordSize));
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005114 } else {
Roland Levillain7c1559a2015-12-15 10:55:36 +00005115 __ movl(out_loc.AsRegisterPairLow<Register>(),
Roland Levillain271ab9c2014-11-27 15:23:57 +00005116 Address(obj, index.AsRegister<Register>(), TIMES_8, data_offset));
Calin Juravle77520bc2015-01-12 18:45:46 +00005117 codegen_->MaybeRecordImplicitNullCheck(instruction);
Roland Levillain7c1559a2015-12-15 10:55:36 +00005118 __ movl(out_loc.AsRegisterPairHigh<Register>(),
Roland Levillain271ab9c2014-11-27 15:23:57 +00005119 Address(obj, index.AsRegister<Register>(), TIMES_8, data_offset + kX86WordSize));
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005120 }
5121 break;
5122 }
5123
Mark Mendell7c8d0092015-01-26 11:21:33 -05005124 case Primitive::kPrimFloat: {
5125 uint32_t data_offset = mirror::Array::DataOffset(sizeof(float)).Uint32Value();
Roland Levillain7c1559a2015-12-15 10:55:36 +00005126 XmmRegister out = out_loc.AsFpuRegister<XmmRegister>();
Mark Mendell7c8d0092015-01-26 11:21:33 -05005127 if (index.IsConstant()) {
5128 __ movss(out, Address(obj,
5129 (index.GetConstant()->AsIntConstant()->GetValue() << TIMES_4) + data_offset));
5130 } else {
5131 __ movss(out, Address(obj, index.AsRegister<Register>(), TIMES_4, data_offset));
5132 }
5133 break;
5134 }
5135
5136 case Primitive::kPrimDouble: {
5137 uint32_t data_offset = mirror::Array::DataOffset(sizeof(double)).Uint32Value();
Roland Levillain7c1559a2015-12-15 10:55:36 +00005138 XmmRegister out = out_loc.AsFpuRegister<XmmRegister>();
Mark Mendell7c8d0092015-01-26 11:21:33 -05005139 if (index.IsConstant()) {
5140 __ movsd(out, Address(obj,
5141 (index.GetConstant()->AsIntConstant()->GetValue() << TIMES_8) + data_offset));
5142 } else {
5143 __ movsd(out, Address(obj, index.AsRegister<Register>(), TIMES_8, data_offset));
5144 }
5145 break;
5146 }
5147
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005148 case Primitive::kPrimVoid:
Calin Juravle77520bc2015-01-12 18:45:46 +00005149 LOG(FATAL) << "Unreachable type " << type;
Ian Rogersfc787ec2014-10-09 21:56:44 -07005150 UNREACHABLE();
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005151 }
Calin Juravle77520bc2015-01-12 18:45:46 +00005152
Roland Levillain7c1559a2015-12-15 10:55:36 +00005153 if (type == Primitive::kPrimNot || type == Primitive::kPrimLong) {
5154 // Potential implicit null checks, in the case of reference or
5155 // long arrays, are handled in the previous switch statement.
5156 } else {
Calin Juravle77520bc2015-01-12 18:45:46 +00005157 codegen_->MaybeRecordImplicitNullCheck(instruction);
5158 }
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005159}
5160
5161void LocationsBuilderX86::VisitArraySet(HArraySet* instruction) {
Nicolas Geoffray39468442014-09-02 15:17:15 +01005162 Primitive::Type value_type = instruction->GetComponentType();
Roland Levillain0d5a2812015-11-13 10:07:31 +00005163
Nicolas Geoffrayaf07bc12014-11-12 18:08:09 +00005164 bool needs_write_barrier =
5165 CodeGenerator::StoreNeedsWriteBarrier(value_type, instruction->GetValue());
Roland Levillain0d5a2812015-11-13 10:07:31 +00005166 bool may_need_runtime_call_for_type_check = instruction->NeedsTypeCheck();
5167 bool object_array_set_with_read_barrier =
5168 kEmitCompilerReadBarrier && (value_type == Primitive::kPrimNot);
Nicolas Geoffrayaf07bc12014-11-12 18:08:09 +00005169
Nicolas Geoffray39468442014-09-02 15:17:15 +01005170 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(
5171 instruction,
Roland Levillain0d5a2812015-11-13 10:07:31 +00005172 (may_need_runtime_call_for_type_check || object_array_set_with_read_barrier) ?
5173 LocationSummary::kCallOnSlowPath :
5174 LocationSummary::kNoCall);
Nicolas Geoffray39468442014-09-02 15:17:15 +01005175
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005176 bool is_byte_type = (value_type == Primitive::kPrimBoolean)
5177 || (value_type == Primitive::kPrimByte);
5178 // We need the inputs to be different than the output in case of long operation.
5179 // In case of a byte operation, the register allocator does not support multiple
5180 // inputs that die at entry with one in a specific register.
5181 locations->SetInAt(0, Location::RequiresRegister());
5182 locations->SetInAt(1, Location::RegisterOrConstant(instruction->InputAt(1)));
5183 if (is_byte_type) {
5184 // Ensure the value is in a byte register.
5185 locations->SetInAt(2, Location::ByteRegisterOrConstant(EAX, instruction->InputAt(2)));
5186 } else if (Primitive::IsFloatingPointType(value_type)) {
Mark Mendell81489372015-11-04 11:30:41 -05005187 locations->SetInAt(2, Location::FpuRegisterOrConstant(instruction->InputAt(2)));
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005188 } else {
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005189 locations->SetInAt(2, Location::RegisterOrConstant(instruction->InputAt(2)));
5190 }
5191 if (needs_write_barrier) {
5192 // Temporary registers for the write barrier.
5193 locations->AddTemp(Location::RequiresRegister()); // Possibly used for ref. poisoning too.
5194 // Ensure the card is in a byte register.
Roland Levillain4f6b0b52015-11-23 19:29:22 +00005195 locations->AddTemp(Location::RegisterLocation(ECX));
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005196 }
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005197}
5198
5199void InstructionCodeGeneratorX86::VisitArraySet(HArraySet* instruction) {
5200 LocationSummary* locations = instruction->GetLocations();
Roland Levillain0d5a2812015-11-13 10:07:31 +00005201 Location array_loc = locations->InAt(0);
5202 Register array = array_loc.AsRegister<Register>();
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005203 Location index = locations->InAt(1);
Nicolas Geoffray26a25ef2014-09-30 13:54:09 +01005204 Location value = locations->InAt(2);
Nicolas Geoffray39468442014-09-02 15:17:15 +01005205 Primitive::Type value_type = instruction->GetComponentType();
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005206 uint32_t class_offset = mirror::Object::ClassOffset().Int32Value();
5207 uint32_t super_offset = mirror::Class::SuperClassOffset().Int32Value();
5208 uint32_t component_offset = mirror::Class::ComponentTypeOffset().Int32Value();
Roland Levillain0d5a2812015-11-13 10:07:31 +00005209 bool may_need_runtime_call_for_type_check = instruction->NeedsTypeCheck();
Nicolas Geoffrayaf07bc12014-11-12 18:08:09 +00005210 bool needs_write_barrier =
5211 CodeGenerator::StoreNeedsWriteBarrier(value_type, instruction->GetValue());
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005212
5213 switch (value_type) {
5214 case Primitive::kPrimBoolean:
5215 case Primitive::kPrimByte: {
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005216 uint32_t offset = mirror::Array::DataOffset(sizeof(uint8_t)).Uint32Value();
5217 Address address = index.IsConstant()
5218 ? Address(array, (index.GetConstant()->AsIntConstant()->GetValue() << TIMES_1) + offset)
5219 : Address(array, index.AsRegister<Register>(), TIMES_1, offset);
5220 if (value.IsRegister()) {
5221 __ movb(address, value.AsRegister<ByteRegister>());
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005222 } else {
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005223 __ movb(address, Immediate(value.GetConstant()->AsIntConstant()->GetValue()));
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005224 }
Calin Juravle77520bc2015-01-12 18:45:46 +00005225 codegen_->MaybeRecordImplicitNullCheck(instruction);
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005226 break;
5227 }
5228
5229 case Primitive::kPrimShort:
5230 case Primitive::kPrimChar: {
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005231 uint32_t offset = mirror::Array::DataOffset(sizeof(uint16_t)).Uint32Value();
5232 Address address = index.IsConstant()
5233 ? Address(array, (index.GetConstant()->AsIntConstant()->GetValue() << TIMES_2) + offset)
5234 : Address(array, index.AsRegister<Register>(), TIMES_2, offset);
5235 if (value.IsRegister()) {
5236 __ movw(address, value.AsRegister<Register>());
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005237 } else {
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005238 __ movw(address, Immediate(value.GetConstant()->AsIntConstant()->GetValue()));
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005239 }
Calin Juravle77520bc2015-01-12 18:45:46 +00005240 codegen_->MaybeRecordImplicitNullCheck(instruction);
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005241 break;
5242 }
5243
Nicolas Geoffrayaf07bc12014-11-12 18:08:09 +00005244 case Primitive::kPrimNot: {
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005245 uint32_t offset = mirror::Array::DataOffset(sizeof(int32_t)).Uint32Value();
5246 Address address = index.IsConstant()
5247 ? Address(array, (index.GetConstant()->AsIntConstant()->GetValue() << TIMES_4) + offset)
5248 : Address(array, index.AsRegister<Register>(), TIMES_4, offset);
Roland Levillain0d5a2812015-11-13 10:07:31 +00005249
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005250 if (!value.IsRegister()) {
5251 // Just setting null.
5252 DCHECK(instruction->InputAt(2)->IsNullConstant());
5253 DCHECK(value.IsConstant()) << value;
5254 __ movl(address, Immediate(0));
Calin Juravle77520bc2015-01-12 18:45:46 +00005255 codegen_->MaybeRecordImplicitNullCheck(instruction);
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005256 DCHECK(!needs_write_barrier);
Roland Levillain0d5a2812015-11-13 10:07:31 +00005257 DCHECK(!may_need_runtime_call_for_type_check);
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005258 break;
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005259 }
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005260
5261 DCHECK(needs_write_barrier);
5262 Register register_value = value.AsRegister<Register>();
5263 NearLabel done, not_null, do_put;
5264 SlowPathCode* slow_path = nullptr;
5265 Register temp = locations->GetTemp(0).AsRegister<Register>();
Roland Levillain0d5a2812015-11-13 10:07:31 +00005266 if (may_need_runtime_call_for_type_check) {
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005267 slow_path = new (GetGraph()->GetArena()) ArraySetSlowPathX86(instruction);
5268 codegen_->AddSlowPath(slow_path);
5269 if (instruction->GetValueCanBeNull()) {
5270 __ testl(register_value, register_value);
5271 __ j(kNotEqual, &not_null);
5272 __ movl(address, Immediate(0));
5273 codegen_->MaybeRecordImplicitNullCheck(instruction);
5274 __ jmp(&done);
5275 __ Bind(&not_null);
5276 }
5277
Roland Levillain0d5a2812015-11-13 10:07:31 +00005278 if (kEmitCompilerReadBarrier) {
5279 // When read barriers are enabled, the type checking
5280 // instrumentation requires two read barriers:
5281 //
5282 // __ movl(temp2, temp);
5283 // // /* HeapReference<Class> */ temp = temp->component_type_
5284 // __ movl(temp, Address(temp, component_offset));
Roland Levillain7c1559a2015-12-15 10:55:36 +00005285 // codegen_->GenerateReadBarrierSlow(
Roland Levillain0d5a2812015-11-13 10:07:31 +00005286 // instruction, temp_loc, temp_loc, temp2_loc, component_offset);
5287 //
5288 // // /* HeapReference<Class> */ temp2 = register_value->klass_
5289 // __ movl(temp2, Address(register_value, class_offset));
Roland Levillain7c1559a2015-12-15 10:55:36 +00005290 // codegen_->GenerateReadBarrierSlow(
Roland Levillain0d5a2812015-11-13 10:07:31 +00005291 // instruction, temp2_loc, temp2_loc, value, class_offset, temp_loc);
5292 //
5293 // __ cmpl(temp, temp2);
5294 //
5295 // However, the second read barrier may trash `temp`, as it
5296 // is a temporary register, and as such would not be saved
5297 // along with live registers before calling the runtime (nor
5298 // restored afterwards). So in this case, we bail out and
5299 // delegate the work to the array set slow path.
5300 //
5301 // TODO: Extend the register allocator to support a new
5302 // "(locally) live temp" location so as to avoid always
5303 // going into the slow path when read barriers are enabled.
5304 __ jmp(slow_path->GetEntryLabel());
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005305 } else {
Roland Levillain0d5a2812015-11-13 10:07:31 +00005306 // /* HeapReference<Class> */ temp = array->klass_
5307 __ movl(temp, Address(array, class_offset));
5308 codegen_->MaybeRecordImplicitNullCheck(instruction);
5309 __ MaybeUnpoisonHeapReference(temp);
5310
5311 // /* HeapReference<Class> */ temp = temp->component_type_
5312 __ movl(temp, Address(temp, component_offset));
5313 // If heap poisoning is enabled, no need to unpoison `temp`
5314 // nor the object reference in `register_value->klass`, as
5315 // we are comparing two poisoned references.
5316 __ cmpl(temp, Address(register_value, class_offset));
5317
5318 if (instruction->StaticTypeOfArrayIsObjectArray()) {
5319 __ j(kEqual, &do_put);
5320 // If heap poisoning is enabled, the `temp` reference has
5321 // not been unpoisoned yet; unpoison it now.
5322 __ MaybeUnpoisonHeapReference(temp);
5323
5324 // /* HeapReference<Class> */ temp = temp->super_class_
5325 __ movl(temp, Address(temp, super_offset));
5326 // If heap poisoning is enabled, no need to unpoison
5327 // `temp`, as we are comparing against null below.
5328 __ testl(temp, temp);
5329 __ j(kNotEqual, slow_path->GetEntryLabel());
5330 __ Bind(&do_put);
5331 } else {
5332 __ j(kNotEqual, slow_path->GetEntryLabel());
5333 }
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005334 }
5335 }
5336
5337 if (kPoisonHeapReferences) {
5338 __ movl(temp, register_value);
5339 __ PoisonHeapReference(temp);
5340 __ movl(address, temp);
5341 } else {
5342 __ movl(address, register_value);
5343 }
Roland Levillain0d5a2812015-11-13 10:07:31 +00005344 if (!may_need_runtime_call_for_type_check) {
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005345 codegen_->MaybeRecordImplicitNullCheck(instruction);
5346 }
5347
5348 Register card = locations->GetTemp(1).AsRegister<Register>();
5349 codegen_->MarkGCCard(
5350 temp, card, array, value.AsRegister<Register>(), instruction->GetValueCanBeNull());
5351 __ Bind(&done);
5352
5353 if (slow_path != nullptr) {
5354 __ Bind(slow_path->GetExitLabel());
5355 }
5356
5357 break;
5358 }
Roland Levillain0d5a2812015-11-13 10:07:31 +00005359
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005360 case Primitive::kPrimInt: {
5361 uint32_t offset = mirror::Array::DataOffset(sizeof(int32_t)).Uint32Value();
5362 Address address = index.IsConstant()
5363 ? Address(array, (index.GetConstant()->AsIntConstant()->GetValue() << TIMES_4) + offset)
5364 : Address(array, index.AsRegister<Register>(), TIMES_4, offset);
5365 if (value.IsRegister()) {
5366 __ movl(address, value.AsRegister<Register>());
5367 } else {
5368 DCHECK(value.IsConstant()) << value;
5369 int32_t v = CodeGenerator::GetInt32ValueOf(value.GetConstant());
5370 __ movl(address, Immediate(v));
5371 }
5372 codegen_->MaybeRecordImplicitNullCheck(instruction);
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005373 break;
5374 }
5375
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005376 case Primitive::kPrimLong: {
5377 uint32_t data_offset = mirror::Array::DataOffset(sizeof(int64_t)).Uint32Value();
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005378 if (index.IsConstant()) {
5379 size_t offset = (index.GetConstant()->AsIntConstant()->GetValue() << TIMES_8) + data_offset;
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +01005380 if (value.IsRegisterPair()) {
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005381 __ movl(Address(array, offset), value.AsRegisterPairLow<Register>());
Calin Juravle77520bc2015-01-12 18:45:46 +00005382 codegen_->MaybeRecordImplicitNullCheck(instruction);
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005383 __ movl(Address(array, offset + kX86WordSize), value.AsRegisterPairHigh<Register>());
Nicolas Geoffray26a25ef2014-09-30 13:54:09 +01005384 } else {
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +01005385 DCHECK(value.IsConstant());
Nicolas Geoffray26a25ef2014-09-30 13:54:09 +01005386 int64_t val = value.GetConstant()->AsLongConstant()->GetValue();
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005387 __ movl(Address(array, offset), Immediate(Low32Bits(val)));
Calin Juravle77520bc2015-01-12 18:45:46 +00005388 codegen_->MaybeRecordImplicitNullCheck(instruction);
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005389 __ movl(Address(array, offset + kX86WordSize), Immediate(High32Bits(val)));
Nicolas Geoffray26a25ef2014-09-30 13:54:09 +01005390 }
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005391 } else {
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +01005392 if (value.IsRegisterPair()) {
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005393 __ movl(Address(array, index.AsRegister<Register>(), TIMES_8, data_offset),
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +01005394 value.AsRegisterPairLow<Register>());
Calin Juravle77520bc2015-01-12 18:45:46 +00005395 codegen_->MaybeRecordImplicitNullCheck(instruction);
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005396 __ movl(Address(array, index.AsRegister<Register>(), TIMES_8, data_offset + kX86WordSize),
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +01005397 value.AsRegisterPairHigh<Register>());
Nicolas Geoffray26a25ef2014-09-30 13:54:09 +01005398 } else {
Nicolas Geoffray56b9ee62014-10-09 11:47:51 +01005399 DCHECK(value.IsConstant());
Nicolas Geoffray26a25ef2014-09-30 13:54:09 +01005400 int64_t val = value.GetConstant()->AsLongConstant()->GetValue();
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005401 __ movl(Address(array, index.AsRegister<Register>(), TIMES_8, data_offset),
Nicolas Geoffray26a25ef2014-09-30 13:54:09 +01005402 Immediate(Low32Bits(val)));
Calin Juravle77520bc2015-01-12 18:45:46 +00005403 codegen_->MaybeRecordImplicitNullCheck(instruction);
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005404 __ movl(Address(array, index.AsRegister<Register>(), TIMES_8, data_offset + kX86WordSize),
Nicolas Geoffray26a25ef2014-09-30 13:54:09 +01005405 Immediate(High32Bits(val)));
5406 }
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005407 }
5408 break;
5409 }
5410
Mark Mendell7c8d0092015-01-26 11:21:33 -05005411 case Primitive::kPrimFloat: {
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005412 uint32_t offset = mirror::Array::DataOffset(sizeof(float)).Uint32Value();
5413 Address address = index.IsConstant()
5414 ? Address(array, (index.GetConstant()->AsIntConstant()->GetValue() << TIMES_4) + offset)
5415 : Address(array, index.AsRegister<Register>(), TIMES_4, offset);
Mark Mendell81489372015-11-04 11:30:41 -05005416 if (value.IsFpuRegister()) {
5417 __ movss(address, value.AsFpuRegister<XmmRegister>());
5418 } else {
5419 DCHECK(value.IsConstant());
5420 int32_t v = bit_cast<int32_t, float>(value.GetConstant()->AsFloatConstant()->GetValue());
5421 __ movl(address, Immediate(v));
5422 }
5423 codegen_->MaybeRecordImplicitNullCheck(instruction);
Mark Mendell7c8d0092015-01-26 11:21:33 -05005424 break;
5425 }
5426
5427 case Primitive::kPrimDouble: {
Nicolas Geoffraye0395dd2015-09-25 11:04:45 +01005428 uint32_t offset = mirror::Array::DataOffset(sizeof(double)).Uint32Value();
5429 Address address = index.IsConstant()
5430 ? Address(array, (index.GetConstant()->AsIntConstant()->GetValue() << TIMES_8) + offset)
5431 : Address(array, index.AsRegister<Register>(), TIMES_8, offset);
Mark Mendell81489372015-11-04 11:30:41 -05005432 if (value.IsFpuRegister()) {
5433 __ movsd(address, value.AsFpuRegister<XmmRegister>());
5434 } else {
5435 DCHECK(value.IsConstant());
5436 Address address_hi = index.IsConstant() ?
5437 Address(array, (index.GetConstant()->AsIntConstant()->GetValue() << TIMES_8) +
5438 offset + kX86WordSize) :
5439 Address(array, index.AsRegister<Register>(), TIMES_8, offset + kX86WordSize);
5440 int64_t v = bit_cast<int64_t, double>(value.GetConstant()->AsDoubleConstant()->GetValue());
5441 __ movl(address, Immediate(Low32Bits(v)));
5442 codegen_->MaybeRecordImplicitNullCheck(instruction);
5443 __ movl(address_hi, Immediate(High32Bits(v)));
5444 }
Mark Mendell7c8d0092015-01-26 11:21:33 -05005445 break;
5446 }
5447
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005448 case Primitive::kPrimVoid:
5449 LOG(FATAL) << "Unreachable type " << instruction->GetType();
Ian Rogersfc787ec2014-10-09 21:56:44 -07005450 UNREACHABLE();
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005451 }
5452}
5453
5454void LocationsBuilderX86::VisitArrayLength(HArrayLength* instruction) {
5455 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(instruction);
Nicolas Geoffray8e3964b2014-10-17 11:06:38 +01005456 locations->SetInAt(0, Location::RequiresRegister());
5457 locations->SetOut(Location::RequiresRegister(), Location::kNoOutputOverlap);
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005458}
5459
5460void InstructionCodeGeneratorX86::VisitArrayLength(HArrayLength* instruction) {
5461 LocationSummary* locations = instruction->GetLocations();
5462 uint32_t offset = mirror::Array::LengthOffset().Uint32Value();
Roland Levillain271ab9c2014-11-27 15:23:57 +00005463 Register obj = locations->InAt(0).AsRegister<Register>();
5464 Register out = locations->Out().AsRegister<Register>();
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005465 __ movl(out, Address(obj, offset));
Calin Juravle77520bc2015-01-12 18:45:46 +00005466 codegen_->MaybeRecordImplicitNullCheck(instruction);
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005467}
5468
5469void LocationsBuilderX86::VisitBoundsCheck(HBoundsCheck* instruction) {
David Brazdil77a48ae2015-09-15 12:34:04 +00005470 LocationSummary::CallKind call_kind = instruction->CanThrowIntoCatchBlock()
5471 ? LocationSummary::kCallOnSlowPath
5472 : LocationSummary::kNoCall;
5473 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(instruction, call_kind);
Mark Mendellf60c90b2015-03-04 15:12:59 -05005474 locations->SetInAt(0, Location::RegisterOrConstant(instruction->InputAt(0)));
Mark Mendell99dbd682015-04-22 16:18:52 -04005475 locations->SetInAt(1, Location::RegisterOrConstant(instruction->InputAt(1)));
Nicolas Geoffray26a25ef2014-09-30 13:54:09 +01005476 if (instruction->HasUses()) {
5477 locations->SetOut(Location::SameAsFirstInput());
5478 }
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005479}
5480
5481void InstructionCodeGeneratorX86::VisitBoundsCheck(HBoundsCheck* instruction) {
5482 LocationSummary* locations = instruction->GetLocations();
Mark Mendellf60c90b2015-03-04 15:12:59 -05005483 Location index_loc = locations->InAt(0);
5484 Location length_loc = locations->InAt(1);
Andreas Gampe85b62f22015-09-09 13:15:38 -07005485 SlowPathCode* slow_path =
Serban Constantinescu5a6cc492015-08-13 15:20:25 +01005486 new (GetGraph()->GetArena()) BoundsCheckSlowPathX86(instruction);
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005487
Mark Mendell99dbd682015-04-22 16:18:52 -04005488 if (length_loc.IsConstant()) {
5489 int32_t length = CodeGenerator::GetInt32ValueOf(length_loc.GetConstant());
5490 if (index_loc.IsConstant()) {
5491 // BCE will remove the bounds check if we are guarenteed to pass.
5492 int32_t index = CodeGenerator::GetInt32ValueOf(index_loc.GetConstant());
5493 if (index < 0 || index >= length) {
5494 codegen_->AddSlowPath(slow_path);
5495 __ jmp(slow_path->GetEntryLabel());
5496 } else {
5497 // Some optimization after BCE may have generated this, and we should not
5498 // generate a bounds check if it is a valid range.
5499 }
5500 return;
5501 }
5502
5503 // We have to reverse the jump condition because the length is the constant.
5504 Register index_reg = index_loc.AsRegister<Register>();
5505 __ cmpl(index_reg, Immediate(length));
5506 codegen_->AddSlowPath(slow_path);
5507 __ j(kAboveEqual, slow_path->GetEntryLabel());
Mark Mendellf60c90b2015-03-04 15:12:59 -05005508 } else {
Mark Mendell99dbd682015-04-22 16:18:52 -04005509 Register length = length_loc.AsRegister<Register>();
5510 if (index_loc.IsConstant()) {
5511 int32_t value = CodeGenerator::GetInt32ValueOf(index_loc.GetConstant());
5512 __ cmpl(length, Immediate(value));
5513 } else {
5514 __ cmpl(length, index_loc.AsRegister<Register>());
5515 }
5516 codegen_->AddSlowPath(slow_path);
5517 __ j(kBelowEqual, slow_path->GetEntryLabel());
Mark Mendellf60c90b2015-03-04 15:12:59 -05005518 }
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01005519}
5520
Nicolas Geoffraye5038322014-07-04 09:41:32 +01005521void LocationsBuilderX86::VisitTemporary(HTemporary* temp) {
5522 temp->SetLocations(nullptr);
5523}
5524
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01005525void InstructionCodeGeneratorX86::VisitTemporary(HTemporary* temp ATTRIBUTE_UNUSED) {
Nicolas Geoffraye5038322014-07-04 09:41:32 +01005526 // Nothing to do, this is driven by the code generator.
5527}
5528
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01005529void LocationsBuilderX86::VisitParallelMove(HParallelMove* instruction ATTRIBUTE_UNUSED) {
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +01005530 LOG(FATAL) << "Unreachable";
Nicolas Geoffray4e3d23a2014-05-22 18:32:45 +01005531}
5532
5533void InstructionCodeGeneratorX86::VisitParallelMove(HParallelMove* instruction) {
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +01005534 codegen_->GetMoveResolver()->EmitNativeCode(instruction);
5535}
5536
Nicolas Geoffrayfbc695f2014-09-15 15:33:30 +00005537void LocationsBuilderX86::VisitSuspendCheck(HSuspendCheck* instruction) {
5538 new (GetGraph()->GetArena()) LocationSummary(instruction, LocationSummary::kCallOnSlowPath);
5539}
5540
5541void InstructionCodeGeneratorX86::VisitSuspendCheck(HSuspendCheck* instruction) {
Nicolas Geoffray3c049742014-09-24 18:10:46 +01005542 HBasicBlock* block = instruction->GetBlock();
5543 if (block->GetLoopInformation() != nullptr) {
5544 DCHECK(block->GetLoopInformation()->GetSuspendCheck() == instruction);
5545 // The back edge will generate the suspend check.
5546 return;
5547 }
5548 if (block->IsEntryBlock() && instruction->GetNext()->IsGoto()) {
5549 // The goto will generate the suspend check.
5550 return;
5551 }
5552 GenerateSuspendCheck(instruction, nullptr);
5553}
5554
5555void InstructionCodeGeneratorX86::GenerateSuspendCheck(HSuspendCheck* instruction,
5556 HBasicBlock* successor) {
Nicolas Geoffrayfbc695f2014-09-15 15:33:30 +00005557 SuspendCheckSlowPathX86* slow_path =
Nicolas Geoffraydb216f42015-05-05 17:02:20 +01005558 down_cast<SuspendCheckSlowPathX86*>(instruction->GetSlowPath());
5559 if (slow_path == nullptr) {
5560 slow_path = new (GetGraph()->GetArena()) SuspendCheckSlowPathX86(instruction, successor);
5561 instruction->SetSlowPath(slow_path);
5562 codegen_->AddSlowPath(slow_path);
5563 if (successor != nullptr) {
5564 DCHECK(successor->IsLoopHeader());
5565 codegen_->ClearSpillSlotsFromLoopPhisInStackMap(instruction);
5566 }
5567 } else {
5568 DCHECK_EQ(slow_path->GetSuccessor(), successor);
5569 }
5570
Roland Levillain7c1559a2015-12-15 10:55:36 +00005571 __ fs()->cmpw(Address::Absolute(Thread::ThreadFlagsOffset<kX86WordSize>().Int32Value()),
5572 Immediate(0));
Nicolas Geoffray3c049742014-09-24 18:10:46 +01005573 if (successor == nullptr) {
5574 __ j(kNotEqual, slow_path->GetEntryLabel());
5575 __ Bind(slow_path->GetReturnLabel());
5576 } else {
5577 __ j(kEqual, codegen_->GetLabelOf(successor));
5578 __ jmp(slow_path->GetEntryLabel());
5579 }
Nicolas Geoffrayfbc695f2014-09-15 15:33:30 +00005580}
5581
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +01005582X86Assembler* ParallelMoveResolverX86::GetAssembler() const {
5583 return codegen_->GetAssembler();
5584}
5585
Mark Mendell7c8d0092015-01-26 11:21:33 -05005586void ParallelMoveResolverX86::MoveMemoryToMemory32(int dst, int src) {
Guillaume Sancheze14590b2015-04-15 18:57:27 +00005587 ScratchRegisterScope ensure_scratch(
5588 this, kNoRegister, EAX, codegen_->GetNumberOfCoreRegisters());
5589 Register temp_reg = static_cast<Register>(ensure_scratch.GetRegister());
5590 int stack_offset = ensure_scratch.IsSpilled() ? kX86WordSize : 0;
5591 __ movl(temp_reg, Address(ESP, src + stack_offset));
5592 __ movl(Address(ESP, dst + stack_offset), temp_reg);
Mark Mendell7c8d0092015-01-26 11:21:33 -05005593}
5594
5595void ParallelMoveResolverX86::MoveMemoryToMemory64(int dst, int src) {
Guillaume Sancheze14590b2015-04-15 18:57:27 +00005596 ScratchRegisterScope ensure_scratch(
5597 this, kNoRegister, EAX, codegen_->GetNumberOfCoreRegisters());
5598 Register temp_reg = static_cast<Register>(ensure_scratch.GetRegister());
5599 int stack_offset = ensure_scratch.IsSpilled() ? kX86WordSize : 0;
5600 __ movl(temp_reg, Address(ESP, src + stack_offset));
5601 __ movl(Address(ESP, dst + stack_offset), temp_reg);
5602 __ movl(temp_reg, Address(ESP, src + stack_offset + kX86WordSize));
5603 __ movl(Address(ESP, dst + stack_offset + kX86WordSize), temp_reg);
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +01005604}
5605
5606void ParallelMoveResolverX86::EmitMove(size_t index) {
Vladimir Marko225b6462015-09-28 12:17:40 +01005607 MoveOperands* move = moves_[index];
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +01005608 Location source = move->GetSource();
5609 Location destination = move->GetDestination();
5610
5611 if (source.IsRegister()) {
5612 if (destination.IsRegister()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00005613 __ movl(destination.AsRegister<Register>(), source.AsRegister<Register>());
David Brazdil74eb1b22015-12-14 11:44:01 +00005614 } else if (destination.IsFpuRegister()) {
5615 __ movd(destination.AsFpuRegister<XmmRegister>(), source.AsRegister<Register>());
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +01005616 } else {
5617 DCHECK(destination.IsStackSlot());
Roland Levillain271ab9c2014-11-27 15:23:57 +00005618 __ movl(Address(ESP, destination.GetStackIndex()), source.AsRegister<Register>());
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +01005619 }
David Brazdil74eb1b22015-12-14 11:44:01 +00005620 } else if (source.IsRegisterPair()) {
5621 size_t elem_size = Primitive::ComponentSize(Primitive::kPrimInt);
5622 // Create stack space for 2 elements.
5623 __ subl(ESP, Immediate(2 * elem_size));
5624 __ movl(Address(ESP, 0), source.AsRegisterPairLow<Register>());
5625 __ movl(Address(ESP, elem_size), source.AsRegisterPairHigh<Register>());
5626 __ movsd(destination.AsFpuRegister<XmmRegister>(), Address(ESP, 0));
5627 // And remove the temporary stack space we allocated.
5628 __ addl(ESP, Immediate(2 * elem_size));
Mark Mendell7c8d0092015-01-26 11:21:33 -05005629 } else if (source.IsFpuRegister()) {
David Brazdil74eb1b22015-12-14 11:44:01 +00005630 if (destination.IsRegister()) {
5631 __ movd(destination.AsRegister<Register>(), source.AsFpuRegister<XmmRegister>());
5632 } else if (destination.IsFpuRegister()) {
Mark Mendell7c8d0092015-01-26 11:21:33 -05005633 __ movaps(destination.AsFpuRegister<XmmRegister>(), source.AsFpuRegister<XmmRegister>());
David Brazdil74eb1b22015-12-14 11:44:01 +00005634 } else if (destination.IsRegisterPair()) {
5635 XmmRegister src_reg = source.AsFpuRegister<XmmRegister>();
5636 __ movd(destination.AsRegisterPairLow<Register>(), src_reg);
5637 __ psrlq(src_reg, Immediate(32));
5638 __ movd(destination.AsRegisterPairHigh<Register>(), src_reg);
Mark Mendell7c8d0092015-01-26 11:21:33 -05005639 } else if (destination.IsStackSlot()) {
5640 __ movss(Address(ESP, destination.GetStackIndex()), source.AsFpuRegister<XmmRegister>());
5641 } else {
5642 DCHECK(destination.IsDoubleStackSlot());
5643 __ movsd(Address(ESP, destination.GetStackIndex()), source.AsFpuRegister<XmmRegister>());
5644 }
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +01005645 } else if (source.IsStackSlot()) {
5646 if (destination.IsRegister()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00005647 __ movl(destination.AsRegister<Register>(), Address(ESP, source.GetStackIndex()));
Mark Mendell7c8d0092015-01-26 11:21:33 -05005648 } else if (destination.IsFpuRegister()) {
5649 __ movss(destination.AsFpuRegister<XmmRegister>(), Address(ESP, source.GetStackIndex()));
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +01005650 } else {
5651 DCHECK(destination.IsStackSlot());
Mark Mendell7c8d0092015-01-26 11:21:33 -05005652 MoveMemoryToMemory32(destination.GetStackIndex(), source.GetStackIndex());
5653 }
5654 } else if (source.IsDoubleStackSlot()) {
David Brazdil74eb1b22015-12-14 11:44:01 +00005655 if (destination.IsRegisterPair()) {
5656 __ movl(destination.AsRegisterPairLow<Register>(), Address(ESP, source.GetStackIndex()));
5657 __ movl(destination.AsRegisterPairHigh<Register>(),
5658 Address(ESP, source.GetHighStackIndex(kX86WordSize)));
5659 } else if (destination.IsFpuRegister()) {
Mark Mendell7c8d0092015-01-26 11:21:33 -05005660 __ movsd(destination.AsFpuRegister<XmmRegister>(), Address(ESP, source.GetStackIndex()));
5661 } else {
5662 DCHECK(destination.IsDoubleStackSlot()) << destination;
5663 MoveMemoryToMemory64(destination.GetStackIndex(), source.GetStackIndex());
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +01005664 }
Nicolas Geoffray96f89a22014-07-11 10:57:49 +01005665 } else if (source.IsConstant()) {
Mark Mendell7c8d0092015-01-26 11:21:33 -05005666 HConstant* constant = source.GetConstant();
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +00005667 if (constant->IsIntConstant() || constant->IsNullConstant()) {
Mark Mendell09b84632015-02-13 17:48:38 -05005668 int32_t value = CodeGenerator::GetInt32ValueOf(constant);
Mark Mendell7c8d0092015-01-26 11:21:33 -05005669 if (destination.IsRegister()) {
Mark Mendell09b84632015-02-13 17:48:38 -05005670 if (value == 0) {
5671 __ xorl(destination.AsRegister<Register>(), destination.AsRegister<Register>());
5672 } else {
5673 __ movl(destination.AsRegister<Register>(), Immediate(value));
5674 }
Mark Mendell7c8d0092015-01-26 11:21:33 -05005675 } else {
5676 DCHECK(destination.IsStackSlot()) << destination;
Mark Mendell09b84632015-02-13 17:48:38 -05005677 __ movl(Address(ESP, destination.GetStackIndex()), Immediate(value));
Mark Mendell7c8d0092015-01-26 11:21:33 -05005678 }
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00005679 } else if (constant->IsFloatConstant()) {
Mark Mendell3f6c7f62015-03-13 13:47:53 -04005680 float fp_value = constant->AsFloatConstant()->GetValue();
Roland Levillainda4d79b2015-03-24 14:36:11 +00005681 int32_t value = bit_cast<int32_t, float>(fp_value);
Mark Mendell3f6c7f62015-03-13 13:47:53 -04005682 Immediate imm(value);
Mark Mendell7c8d0092015-01-26 11:21:33 -05005683 if (destination.IsFpuRegister()) {
Mark Mendell3f6c7f62015-03-13 13:47:53 -04005684 XmmRegister dest = destination.AsFpuRegister<XmmRegister>();
5685 if (value == 0) {
5686 // Easy handling of 0.0.
5687 __ xorps(dest, dest);
5688 } else {
5689 ScratchRegisterScope ensure_scratch(
Guillaume Sancheze14590b2015-04-15 18:57:27 +00005690 this, kNoRegister, EAX, codegen_->GetNumberOfCoreRegisters());
5691 Register temp = static_cast<Register>(ensure_scratch.GetRegister());
5692 __ movl(temp, Immediate(value));
5693 __ movd(dest, temp);
Mark Mendell3f6c7f62015-03-13 13:47:53 -04005694 }
Mark Mendell7c8d0092015-01-26 11:21:33 -05005695 } else {
5696 DCHECK(destination.IsStackSlot()) << destination;
5697 __ movl(Address(ESP, destination.GetStackIndex()), imm);
5698 }
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00005699 } else if (constant->IsLongConstant()) {
5700 int64_t value = constant->AsLongConstant()->GetValue();
5701 int32_t low_value = Low32Bits(value);
5702 int32_t high_value = High32Bits(value);
5703 Immediate low(low_value);
5704 Immediate high(high_value);
5705 if (destination.IsDoubleStackSlot()) {
5706 __ movl(Address(ESP, destination.GetStackIndex()), low);
5707 __ movl(Address(ESP, destination.GetHighStackIndex(kX86WordSize)), high);
5708 } else {
5709 __ movl(destination.AsRegisterPairLow<Register>(), low);
5710 __ movl(destination.AsRegisterPairHigh<Register>(), high);
5711 }
5712 } else {
5713 DCHECK(constant->IsDoubleConstant());
5714 double dbl_value = constant->AsDoubleConstant()->GetValue();
Roland Levillainda4d79b2015-03-24 14:36:11 +00005715 int64_t value = bit_cast<int64_t, double>(dbl_value);
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00005716 int32_t low_value = Low32Bits(value);
5717 int32_t high_value = High32Bits(value);
5718 Immediate low(low_value);
5719 Immediate high(high_value);
5720 if (destination.IsFpuRegister()) {
5721 XmmRegister dest = destination.AsFpuRegister<XmmRegister>();
5722 if (value == 0) {
5723 // Easy handling of 0.0.
5724 __ xorpd(dest, dest);
5725 } else {
5726 __ pushl(high);
5727 __ pushl(low);
5728 __ movsd(dest, Address(ESP, 0));
5729 __ addl(ESP, Immediate(8));
5730 }
5731 } else {
5732 DCHECK(destination.IsDoubleStackSlot()) << destination;
5733 __ movl(Address(ESP, destination.GetStackIndex()), low);
5734 __ movl(Address(ESP, destination.GetHighStackIndex(kX86WordSize)), high);
5735 }
Nicolas Geoffray96f89a22014-07-11 10:57:49 +01005736 }
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +01005737 } else {
Nicolas Geoffray42d1f5f2015-01-16 09:14:18 +00005738 LOG(FATAL) << "Unimplemented move: " << destination << " <- " << source;
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +01005739 }
5740}
5741
Mark Mendella5c19ce2015-04-01 12:51:05 -04005742void ParallelMoveResolverX86::Exchange(Register reg, int mem) {
Guillaume Sancheze14590b2015-04-15 18:57:27 +00005743 Register suggested_scratch = reg == EAX ? EBX : EAX;
5744 ScratchRegisterScope ensure_scratch(
5745 this, reg, suggested_scratch, codegen_->GetNumberOfCoreRegisters());
5746
5747 int stack_offset = ensure_scratch.IsSpilled() ? kX86WordSize : 0;
5748 __ movl(static_cast<Register>(ensure_scratch.GetRegister()), Address(ESP, mem + stack_offset));
5749 __ movl(Address(ESP, mem + stack_offset), reg);
5750 __ movl(reg, static_cast<Register>(ensure_scratch.GetRegister()));
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +01005751}
5752
Mark Mendell7c8d0092015-01-26 11:21:33 -05005753void ParallelMoveResolverX86::Exchange32(XmmRegister reg, int mem) {
Guillaume Sancheze14590b2015-04-15 18:57:27 +00005754 ScratchRegisterScope ensure_scratch(
5755 this, kNoRegister, EAX, codegen_->GetNumberOfCoreRegisters());
5756
5757 Register temp_reg = static_cast<Register>(ensure_scratch.GetRegister());
5758 int stack_offset = ensure_scratch.IsSpilled() ? kX86WordSize : 0;
5759 __ movl(temp_reg, Address(ESP, mem + stack_offset));
5760 __ movss(Address(ESP, mem + stack_offset), reg);
5761 __ movd(reg, temp_reg);
Mark Mendell7c8d0092015-01-26 11:21:33 -05005762}
5763
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +01005764void ParallelMoveResolverX86::Exchange(int mem1, int mem2) {
Guillaume Sancheze14590b2015-04-15 18:57:27 +00005765 ScratchRegisterScope ensure_scratch1(
5766 this, kNoRegister, EAX, codegen_->GetNumberOfCoreRegisters());
Nicolas Geoffraye27f31a2014-06-12 17:53:14 +01005767
Guillaume Sancheze14590b2015-04-15 18:57:27 +00005768 Register suggested_scratch = ensure_scratch1.GetRegister() == EAX ? EBX : EAX;
5769 ScratchRegisterScope ensure_scratch2(
5770 this, ensure_scratch1.GetRegister(), suggested_scratch, codegen_->GetNumberOfCoreRegisters());
Nicolas Geoffraye27f31a2014-06-12 17:53:14 +01005771
Guillaume Sancheze14590b2015-04-15 18:57:27 +00005772 int stack_offset = ensure_scratch1.IsSpilled() ? kX86WordSize : 0;
5773 stack_offset += ensure_scratch2.IsSpilled() ? kX86WordSize : 0;
5774 __ movl(static_cast<Register>(ensure_scratch1.GetRegister()), Address(ESP, mem1 + stack_offset));
5775 __ movl(static_cast<Register>(ensure_scratch2.GetRegister()), Address(ESP, mem2 + stack_offset));
5776 __ movl(Address(ESP, mem2 + stack_offset), static_cast<Register>(ensure_scratch1.GetRegister()));
5777 __ movl(Address(ESP, mem1 + stack_offset), static_cast<Register>(ensure_scratch2.GetRegister()));
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +01005778}
5779
5780void ParallelMoveResolverX86::EmitSwap(size_t index) {
Vladimir Marko225b6462015-09-28 12:17:40 +01005781 MoveOperands* move = moves_[index];
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +01005782 Location source = move->GetSource();
5783 Location destination = move->GetDestination();
5784
5785 if (source.IsRegister() && destination.IsRegister()) {
Mark Mendell90979812015-07-28 16:41:21 -04005786 // Use XOR swap algorithm to avoid serializing XCHG instruction or using a temporary.
5787 DCHECK_NE(destination.AsRegister<Register>(), source.AsRegister<Register>());
5788 __ xorl(destination.AsRegister<Register>(), source.AsRegister<Register>());
5789 __ xorl(source.AsRegister<Register>(), destination.AsRegister<Register>());
5790 __ xorl(destination.AsRegister<Register>(), source.AsRegister<Register>());
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +01005791 } else if (source.IsRegister() && destination.IsStackSlot()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00005792 Exchange(source.AsRegister<Register>(), destination.GetStackIndex());
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +01005793 } else if (source.IsStackSlot() && destination.IsRegister()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00005794 Exchange(destination.AsRegister<Register>(), source.GetStackIndex());
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +01005795 } else if (source.IsStackSlot() && destination.IsStackSlot()) {
5796 Exchange(destination.GetStackIndex(), source.GetStackIndex());
Mark Mendell7c8d0092015-01-26 11:21:33 -05005797 } else if (source.IsFpuRegister() && destination.IsFpuRegister()) {
5798 // Use XOR Swap algorithm to avoid a temporary.
5799 DCHECK_NE(source.reg(), destination.reg());
5800 __ xorpd(destination.AsFpuRegister<XmmRegister>(), source.AsFpuRegister<XmmRegister>());
5801 __ xorpd(source.AsFpuRegister<XmmRegister>(), destination.AsFpuRegister<XmmRegister>());
5802 __ xorpd(destination.AsFpuRegister<XmmRegister>(), source.AsFpuRegister<XmmRegister>());
5803 } else if (source.IsFpuRegister() && destination.IsStackSlot()) {
5804 Exchange32(source.AsFpuRegister<XmmRegister>(), destination.GetStackIndex());
5805 } else if (destination.IsFpuRegister() && source.IsStackSlot()) {
5806 Exchange32(destination.AsFpuRegister<XmmRegister>(), source.GetStackIndex());
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00005807 } else if (source.IsFpuRegister() && destination.IsDoubleStackSlot()) {
5808 // Take advantage of the 16 bytes in the XMM register.
5809 XmmRegister reg = source.AsFpuRegister<XmmRegister>();
5810 Address stack(ESP, destination.GetStackIndex());
5811 // Load the double into the high doubleword.
5812 __ movhpd(reg, stack);
5813
5814 // Store the low double into the destination.
5815 __ movsd(stack, reg);
5816
5817 // Move the high double to the low double.
5818 __ psrldq(reg, Immediate(8));
5819 } else if (destination.IsFpuRegister() && source.IsDoubleStackSlot()) {
5820 // Take advantage of the 16 bytes in the XMM register.
5821 XmmRegister reg = destination.AsFpuRegister<XmmRegister>();
5822 Address stack(ESP, source.GetStackIndex());
5823 // Load the double into the high doubleword.
5824 __ movhpd(reg, stack);
5825
5826 // Store the low double into the destination.
5827 __ movsd(stack, reg);
5828
5829 // Move the high double to the low double.
5830 __ psrldq(reg, Immediate(8));
5831 } else if (destination.IsDoubleStackSlot() && source.IsDoubleStackSlot()) {
5832 Exchange(destination.GetStackIndex(), source.GetStackIndex());
5833 Exchange(destination.GetHighStackIndex(kX86WordSize), source.GetHighStackIndex(kX86WordSize));
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +01005834 } else {
Mark Mendell7c8d0092015-01-26 11:21:33 -05005835 LOG(FATAL) << "Unimplemented: source: " << source << ", destination: " << destination;
Nicolas Geoffray86dbb9a2014-06-04 11:12:39 +01005836 }
5837}
5838
5839void ParallelMoveResolverX86::SpillScratch(int reg) {
5840 __ pushl(static_cast<Register>(reg));
5841}
5842
5843void ParallelMoveResolverX86::RestoreScratch(int reg) {
5844 __ popl(static_cast<Register>(reg));
Nicolas Geoffray4e3d23a2014-05-22 18:32:45 +01005845}
5846
Nicolas Geoffray19a19cf2014-10-22 16:07:05 +01005847void LocationsBuilderX86::VisitLoadClass(HLoadClass* cls) {
Calin Juravle98893e12015-10-02 21:05:03 +01005848 InvokeRuntimeCallingConvention calling_convention;
5849 CodeGenerator::CreateLoadClassLocationSummary(
5850 cls,
5851 Location::RegisterLocation(calling_convention.GetRegisterAt(0)),
Roland Levillain0d5a2812015-11-13 10:07:31 +00005852 Location::RegisterLocation(EAX),
5853 /* code_generator_supports_read_barrier */ true);
Nicolas Geoffray19a19cf2014-10-22 16:07:05 +01005854}
5855
5856void InstructionCodeGeneratorX86::VisitLoadClass(HLoadClass* cls) {
Nicolas Geoffray76b1e172015-05-27 17:18:33 +01005857 LocationSummary* locations = cls->GetLocations();
Calin Juravle98893e12015-10-02 21:05:03 +01005858 if (cls->NeedsAccessCheck()) {
5859 codegen_->MoveConstant(locations->GetTemp(0), cls->GetTypeIndex());
5860 codegen_->InvokeRuntime(QUICK_ENTRY_POINT(pInitializeTypeAndVerifyAccess),
5861 cls,
5862 cls->GetDexPc(),
5863 nullptr);
Roland Levillain888d0672015-11-23 18:53:50 +00005864 CheckEntrypointTypes<kQuickInitializeTypeAndVerifyAccess, void*, uint32_t>();
Calin Juravle580b6092015-10-06 17:35:58 +01005865 return;
5866 }
5867
Roland Levillain0d5a2812015-11-13 10:07:31 +00005868 Location out_loc = locations->Out();
5869 Register out = out_loc.AsRegister<Register>();
Calin Juravle580b6092015-10-06 17:35:58 +01005870 Register current_method = locations->InAt(0).AsRegister<Register>();
Roland Levillain0d5a2812015-11-13 10:07:31 +00005871
Calin Juravle580b6092015-10-06 17:35:58 +01005872 if (cls->IsReferrersClass()) {
Nicolas Geoffray424f6762014-11-03 14:51:25 +00005873 DCHECK(!cls->CanCallRuntime());
5874 DCHECK(!cls->MustGenerateClinitCheck());
Roland Levillain7c1559a2015-12-15 10:55:36 +00005875 // /* GcRoot<mirror::Class> */ out = current_method->declaring_class_
5876 GenerateGcRootFieldLoad(
5877 cls, out_loc, current_method, ArtMethod::DeclaringClassOffset().Int32Value());
Nicolas Geoffray19a19cf2014-10-22 16:07:05 +01005878 } else {
Roland Levillain0d5a2812015-11-13 10:07:31 +00005879 // /* GcRoot<mirror::Class>[] */ out =
5880 // current_method.ptr_sized_fields_->dex_cache_resolved_types_
5881 __ movl(out, Address(current_method,
5882 ArtMethod::DexCacheResolvedTypesOffset(kX86PointerSize).Int32Value()));
Roland Levillain7c1559a2015-12-15 10:55:36 +00005883 // /* GcRoot<mirror::Class> */ out = out[type_index]
5884 GenerateGcRootFieldLoad(cls, out_loc, out, CodeGenerator::GetCacheOffset(cls->GetTypeIndex()));
Nicolas Geoffray424f6762014-11-03 14:51:25 +00005885
Nicolas Geoffray42e372e2015-11-24 15:48:56 +00005886 if (!cls->IsInDexCache() || cls->MustGenerateClinitCheck()) {
5887 DCHECK(cls->CanCallRuntime());
5888 SlowPathCode* slow_path = new (GetGraph()->GetArena()) LoadClassSlowPathX86(
5889 cls, cls, cls->GetDexPc(), cls->MustGenerateClinitCheck());
5890 codegen_->AddSlowPath(slow_path);
5891
5892 if (!cls->IsInDexCache()) {
5893 __ testl(out, out);
5894 __ j(kEqual, slow_path->GetEntryLabel());
5895 }
5896
5897 if (cls->MustGenerateClinitCheck()) {
5898 GenerateClassInitializationCheck(slow_path, out);
5899 } else {
5900 __ Bind(slow_path->GetExitLabel());
5901 }
Nicolas Geoffray424f6762014-11-03 14:51:25 +00005902 }
Nicolas Geoffray19a19cf2014-10-22 16:07:05 +01005903 }
5904}
5905
5906void LocationsBuilderX86::VisitClinitCheck(HClinitCheck* check) {
5907 LocationSummary* locations =
5908 new (GetGraph()->GetArena()) LocationSummary(check, LocationSummary::kCallOnSlowPath);
5909 locations->SetInAt(0, Location::RequiresRegister());
5910 if (check->HasUses()) {
5911 locations->SetOut(Location::SameAsFirstInput());
5912 }
5913}
5914
5915void InstructionCodeGeneratorX86::VisitClinitCheck(HClinitCheck* check) {
Nicolas Geoffray424f6762014-11-03 14:51:25 +00005916 // We assume the class to not be null.
Andreas Gampe85b62f22015-09-09 13:15:38 -07005917 SlowPathCode* slow_path = new (GetGraph()->GetArena()) LoadClassSlowPathX86(
Nicolas Geoffray424f6762014-11-03 14:51:25 +00005918 check->GetLoadClass(), check, check->GetDexPc(), true);
Nicolas Geoffray19a19cf2014-10-22 16:07:05 +01005919 codegen_->AddSlowPath(slow_path);
Roland Levillain199f3362014-11-27 17:15:16 +00005920 GenerateClassInitializationCheck(slow_path,
5921 check->GetLocations()->InAt(0).AsRegister<Register>());
Nicolas Geoffray424f6762014-11-03 14:51:25 +00005922}
Nicolas Geoffray19a19cf2014-10-22 16:07:05 +01005923
Nicolas Geoffray424f6762014-11-03 14:51:25 +00005924void InstructionCodeGeneratorX86::GenerateClassInitializationCheck(
Andreas Gampe85b62f22015-09-09 13:15:38 -07005925 SlowPathCode* slow_path, Register class_reg) {
Nicolas Geoffray19a19cf2014-10-22 16:07:05 +01005926 __ cmpl(Address(class_reg, mirror::Class::StatusOffset().Int32Value()),
5927 Immediate(mirror::Class::kStatusInitialized));
5928 __ j(kLess, slow_path->GetEntryLabel());
5929 __ Bind(slow_path->GetExitLabel());
5930 // No need for memory fence, thanks to the X86 memory model.
5931}
5932
Nicolas Geoffrayb5f62b32014-10-30 10:58:41 +00005933void LocationsBuilderX86::VisitLoadString(HLoadString* load) {
Nicolas Geoffray917d0162015-11-24 18:25:35 +00005934 LocationSummary::CallKind call_kind = (!load->IsInDexCache() || kEmitCompilerReadBarrier)
5935 ? LocationSummary::kCallOnSlowPath
5936 : LocationSummary::kNoCall;
5937 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(load, call_kind);
Nicolas Geoffrayfbdaa302015-05-29 12:06:56 +01005938 locations->SetInAt(0, Location::RequiresRegister());
Nicolas Geoffrayb5f62b32014-10-30 10:58:41 +00005939 locations->SetOut(Location::RequiresRegister());
5940}
5941
5942void InstructionCodeGeneratorX86::VisitLoadString(HLoadString* load) {
Nicolas Geoffrayfbdaa302015-05-29 12:06:56 +01005943 LocationSummary* locations = load->GetLocations();
Roland Levillain0d5a2812015-11-13 10:07:31 +00005944 Location out_loc = locations->Out();
5945 Register out = out_loc.AsRegister<Register>();
Nicolas Geoffrayfbdaa302015-05-29 12:06:56 +01005946 Register current_method = locations->InAt(0).AsRegister<Register>();
Roland Levillain0d5a2812015-11-13 10:07:31 +00005947
Roland Levillain7c1559a2015-12-15 10:55:36 +00005948 // /* GcRoot<mirror::Class> */ out = current_method->declaring_class_
5949 GenerateGcRootFieldLoad(
5950 load, out_loc, current_method, ArtMethod::DeclaringClassOffset().Int32Value());
Roland Levillain0d5a2812015-11-13 10:07:31 +00005951 // /* GcRoot<mirror::String>[] */ out = out->dex_cache_strings_
Mathieu Chartiereace4582014-11-24 18:29:54 -08005952 __ movl(out, Address(out, mirror::Class::DexCacheStringsOffset().Int32Value()));
Roland Levillain7c1559a2015-12-15 10:55:36 +00005953 // /* GcRoot<mirror::String> */ out = out[string_index]
5954 GenerateGcRootFieldLoad(
5955 load, out_loc, out, CodeGenerator::GetCacheOffset(load->GetStringIndex()));
Roland Levillain0d5a2812015-11-13 10:07:31 +00005956
Nicolas Geoffray917d0162015-11-24 18:25:35 +00005957 if (!load->IsInDexCache()) {
5958 SlowPathCode* slow_path = new (GetGraph()->GetArena()) LoadStringSlowPathX86(load);
5959 codegen_->AddSlowPath(slow_path);
5960 __ testl(out, out);
5961 __ j(kEqual, slow_path->GetEntryLabel());
5962 __ Bind(slow_path->GetExitLabel());
5963 }
Nicolas Geoffrayb5f62b32014-10-30 10:58:41 +00005964}
5965
David Brazdilcb1c0552015-08-04 16:22:25 +01005966static Address GetExceptionTlsAddress() {
5967 return Address::Absolute(Thread::ExceptionOffset<kX86WordSize>().Int32Value());
5968}
5969
Nicolas Geoffrayde58ab22014-11-05 12:46:03 +00005970void LocationsBuilderX86::VisitLoadException(HLoadException* load) {
5971 LocationSummary* locations =
5972 new (GetGraph()->GetArena()) LocationSummary(load, LocationSummary::kNoCall);
5973 locations->SetOut(Location::RequiresRegister());
5974}
5975
5976void InstructionCodeGeneratorX86::VisitLoadException(HLoadException* load) {
David Brazdilcb1c0552015-08-04 16:22:25 +01005977 __ fs()->movl(load->GetLocations()->Out().AsRegister<Register>(), GetExceptionTlsAddress());
5978}
5979
5980void LocationsBuilderX86::VisitClearException(HClearException* clear) {
5981 new (GetGraph()->GetArena()) LocationSummary(clear, LocationSummary::kNoCall);
5982}
5983
5984void InstructionCodeGeneratorX86::VisitClearException(HClearException* clear ATTRIBUTE_UNUSED) {
5985 __ fs()->movl(GetExceptionTlsAddress(), Immediate(0));
Nicolas Geoffrayde58ab22014-11-05 12:46:03 +00005986}
5987
5988void LocationsBuilderX86::VisitThrow(HThrow* instruction) {
5989 LocationSummary* locations =
5990 new (GetGraph()->GetArena()) LocationSummary(instruction, LocationSummary::kCall);
5991 InvokeRuntimeCallingConvention calling_convention;
5992 locations->SetInAt(0, Location::RegisterLocation(calling_convention.GetRegisterAt(0)));
5993}
5994
5995void InstructionCodeGeneratorX86::VisitThrow(HThrow* instruction) {
Alexandre Rames8158f282015-08-07 10:26:17 +01005996 codegen_->InvokeRuntime(QUICK_ENTRY_POINT(pDeliverException),
5997 instruction,
5998 instruction->GetDexPc(),
5999 nullptr);
Roland Levillain888d0672015-11-23 18:53:50 +00006000 CheckEntrypointTypes<kQuickDeliverException, void, mirror::Object*>();
Nicolas Geoffrayde58ab22014-11-05 12:46:03 +00006001}
6002
Roland Levillain7c1559a2015-12-15 10:55:36 +00006003static bool TypeCheckNeedsATemporary(TypeCheckKind type_check_kind) {
6004 return kEmitCompilerReadBarrier &&
6005 (kUseBakerReadBarrier ||
6006 type_check_kind == TypeCheckKind::kAbstractClassCheck ||
6007 type_check_kind == TypeCheckKind::kClassHierarchyCheck ||
6008 type_check_kind == TypeCheckKind::kArrayObjectCheck);
6009}
6010
Nicolas Geoffray57a88d42014-11-10 15:09:21 +00006011void LocationsBuilderX86::VisitInstanceOf(HInstanceOf* instruction) {
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006012 LocationSummary::CallKind call_kind = LocationSummary::kNoCall;
Roland Levillain0d5a2812015-11-13 10:07:31 +00006013 TypeCheckKind type_check_kind = instruction->GetTypeCheckKind();
6014 switch (type_check_kind) {
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006015 case TypeCheckKind::kExactCheck:
6016 case TypeCheckKind::kAbstractClassCheck:
6017 case TypeCheckKind::kClassHierarchyCheck:
6018 case TypeCheckKind::kArrayObjectCheck:
Roland Levillain0d5a2812015-11-13 10:07:31 +00006019 call_kind =
6020 kEmitCompilerReadBarrier ? LocationSummary::kCallOnSlowPath : LocationSummary::kNoCall;
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006021 break;
6022 case TypeCheckKind::kArrayCheck:
Roland Levillain0d5a2812015-11-13 10:07:31 +00006023 case TypeCheckKind::kUnresolvedCheck:
6024 case TypeCheckKind::kInterfaceCheck:
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006025 call_kind = LocationSummary::kCallOnSlowPath;
6026 break;
6027 }
Roland Levillain0d5a2812015-11-13 10:07:31 +00006028
Nicolas Geoffray6f5c41f2014-11-06 08:59:20 +00006029 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(instruction, call_kind);
Roland Levillain0d5a2812015-11-13 10:07:31 +00006030 locations->SetInAt(0, Location::RequiresRegister());
6031 locations->SetInAt(1, Location::Any());
6032 // Note that TypeCheckSlowPathX86 uses this "out" register too.
6033 locations->SetOut(Location::RequiresRegister());
6034 // When read barriers are enabled, we need a temporary register for
6035 // some cases.
Roland Levillain7c1559a2015-12-15 10:55:36 +00006036 if (TypeCheckNeedsATemporary(type_check_kind)) {
Roland Levillain0d5a2812015-11-13 10:07:31 +00006037 locations->AddTemp(Location::RequiresRegister());
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006038 }
Nicolas Geoffray6f5c41f2014-11-06 08:59:20 +00006039}
6040
Nicolas Geoffray57a88d42014-11-10 15:09:21 +00006041void InstructionCodeGeneratorX86::VisitInstanceOf(HInstanceOf* instruction) {
Roland Levillain7c1559a2015-12-15 10:55:36 +00006042 TypeCheckKind type_check_kind = instruction->GetTypeCheckKind();
Nicolas Geoffray6f5c41f2014-11-06 08:59:20 +00006043 LocationSummary* locations = instruction->GetLocations();
Roland Levillain0d5a2812015-11-13 10:07:31 +00006044 Location obj_loc = locations->InAt(0);
6045 Register obj = obj_loc.AsRegister<Register>();
Nicolas Geoffray6f5c41f2014-11-06 08:59:20 +00006046 Location cls = locations->InAt(1);
Roland Levillain0d5a2812015-11-13 10:07:31 +00006047 Location out_loc = locations->Out();
6048 Register out = out_loc.AsRegister<Register>();
Roland Levillain95e7ffc2016-01-22 11:57:25 +00006049 Location maybe_temp_loc = TypeCheckNeedsATemporary(type_check_kind) ?
Roland Levillain7c1559a2015-12-15 10:55:36 +00006050 locations->GetTemp(0) :
6051 Location::NoLocation();
Nicolas Geoffray6f5c41f2014-11-06 08:59:20 +00006052 uint32_t class_offset = mirror::Object::ClassOffset().Int32Value();
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006053 uint32_t super_offset = mirror::Class::SuperClassOffset().Int32Value();
6054 uint32_t component_offset = mirror::Class::ComponentTypeOffset().Int32Value();
6055 uint32_t primitive_offset = mirror::Class::PrimitiveTypeOffset().Int32Value();
Andreas Gampe85b62f22015-09-09 13:15:38 -07006056 SlowPathCode* slow_path = nullptr;
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006057 NearLabel done, zero;
Nicolas Geoffray6f5c41f2014-11-06 08:59:20 +00006058
6059 // Return 0 if `obj` is null.
Guillaume "Vermeille" Sanchezaf888352015-04-20 14:41:30 +01006060 // Avoid null check if we know obj is not null.
6061 if (instruction->MustDoNullCheck()) {
6062 __ testl(obj, obj);
6063 __ j(kEqual, &zero);
6064 }
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006065
Roland Levillain0d5a2812015-11-13 10:07:31 +00006066 // /* HeapReference<Class> */ out = obj->klass_
Roland Levillain95e7ffc2016-01-22 11:57:25 +00006067 GenerateReferenceLoadTwoRegisters(instruction, out_loc, obj_loc, class_offset, maybe_temp_loc);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006068
Roland Levillain7c1559a2015-12-15 10:55:36 +00006069 switch (type_check_kind) {
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006070 case TypeCheckKind::kExactCheck: {
6071 if (cls.IsRegister()) {
6072 __ cmpl(out, cls.AsRegister<Register>());
6073 } else {
6074 DCHECK(cls.IsStackSlot()) << cls;
6075 __ cmpl(out, Address(ESP, cls.GetStackIndex()));
6076 }
Nicolas Geoffrayabfcf182015-09-21 18:41:21 +01006077
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006078 // Classes must be equal for the instanceof to succeed.
6079 __ j(kNotEqual, &zero);
6080 __ movl(out, Immediate(1));
6081 __ jmp(&done);
6082 break;
6083 }
Roland Levillain0d5a2812015-11-13 10:07:31 +00006084
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006085 case TypeCheckKind::kAbstractClassCheck: {
6086 // If the class is abstract, we eagerly fetch the super class of the
6087 // object to avoid doing a comparison we know will fail.
6088 NearLabel loop;
6089 __ Bind(&loop);
Roland Levillain0d5a2812015-11-13 10:07:31 +00006090 // /* HeapReference<Class> */ out = out->super_class_
Roland Levillain95e7ffc2016-01-22 11:57:25 +00006091 GenerateReferenceLoadOneRegister(instruction, out_loc, super_offset, maybe_temp_loc);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006092 __ testl(out, out);
6093 // If `out` is null, we use it for the result, and jump to `done`.
6094 __ j(kEqual, &done);
6095 if (cls.IsRegister()) {
6096 __ cmpl(out, cls.AsRegister<Register>());
6097 } else {
6098 DCHECK(cls.IsStackSlot()) << cls;
6099 __ cmpl(out, Address(ESP, cls.GetStackIndex()));
6100 }
6101 __ j(kNotEqual, &loop);
6102 __ movl(out, Immediate(1));
6103 if (zero.IsLinked()) {
6104 __ jmp(&done);
6105 }
6106 break;
6107 }
Roland Levillain0d5a2812015-11-13 10:07:31 +00006108
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006109 case TypeCheckKind::kClassHierarchyCheck: {
6110 // Walk over the class hierarchy to find a match.
6111 NearLabel loop, success;
6112 __ Bind(&loop);
6113 if (cls.IsRegister()) {
6114 __ cmpl(out, cls.AsRegister<Register>());
6115 } else {
6116 DCHECK(cls.IsStackSlot()) << cls;
6117 __ cmpl(out, Address(ESP, cls.GetStackIndex()));
6118 }
6119 __ j(kEqual, &success);
Roland Levillain0d5a2812015-11-13 10:07:31 +00006120 // /* HeapReference<Class> */ out = out->super_class_
Roland Levillain95e7ffc2016-01-22 11:57:25 +00006121 GenerateReferenceLoadOneRegister(instruction, out_loc, super_offset, maybe_temp_loc);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006122 __ testl(out, out);
6123 __ j(kNotEqual, &loop);
6124 // If `out` is null, we use it for the result, and jump to `done`.
6125 __ jmp(&done);
6126 __ Bind(&success);
6127 __ movl(out, Immediate(1));
6128 if (zero.IsLinked()) {
6129 __ jmp(&done);
6130 }
6131 break;
6132 }
Roland Levillain0d5a2812015-11-13 10:07:31 +00006133
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006134 case TypeCheckKind::kArrayObjectCheck: {
Nicolas Geoffrayabfcf182015-09-21 18:41:21 +01006135 // Do an exact check.
6136 NearLabel exact_check;
6137 if (cls.IsRegister()) {
6138 __ cmpl(out, cls.AsRegister<Register>());
6139 } else {
6140 DCHECK(cls.IsStackSlot()) << cls;
6141 __ cmpl(out, Address(ESP, cls.GetStackIndex()));
6142 }
6143 __ j(kEqual, &exact_check);
Roland Levillain0d5a2812015-11-13 10:07:31 +00006144 // Otherwise, we need to check that the object's class is a non-primitive array.
Roland Levillain0d5a2812015-11-13 10:07:31 +00006145 // /* HeapReference<Class> */ out = out->component_type_
Roland Levillain95e7ffc2016-01-22 11:57:25 +00006146 GenerateReferenceLoadOneRegister(instruction, out_loc, component_offset, maybe_temp_loc);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006147 __ testl(out, out);
6148 // If `out` is null, we use it for the result, and jump to `done`.
6149 __ j(kEqual, &done);
6150 __ cmpw(Address(out, primitive_offset), Immediate(Primitive::kPrimNot));
6151 __ j(kNotEqual, &zero);
Nicolas Geoffrayabfcf182015-09-21 18:41:21 +01006152 __ Bind(&exact_check);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006153 __ movl(out, Immediate(1));
6154 __ jmp(&done);
6155 break;
6156 }
Roland Levillain0d5a2812015-11-13 10:07:31 +00006157
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006158 case TypeCheckKind::kArrayCheck: {
6159 if (cls.IsRegister()) {
6160 __ cmpl(out, cls.AsRegister<Register>());
6161 } else {
6162 DCHECK(cls.IsStackSlot()) << cls;
6163 __ cmpl(out, Address(ESP, cls.GetStackIndex()));
6164 }
6165 DCHECK(locations->OnlyCallsOnSlowPath());
Roland Levillain0d5a2812015-11-13 10:07:31 +00006166 slow_path = new (GetGraph()->GetArena()) TypeCheckSlowPathX86(instruction,
6167 /* is_fatal */ false);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006168 codegen_->AddSlowPath(slow_path);
6169 __ j(kNotEqual, slow_path->GetEntryLabel());
6170 __ movl(out, Immediate(1));
6171 if (zero.IsLinked()) {
6172 __ jmp(&done);
6173 }
6174 break;
6175 }
Roland Levillain0d5a2812015-11-13 10:07:31 +00006176
Calin Juravle98893e12015-10-02 21:05:03 +01006177 case TypeCheckKind::kUnresolvedCheck:
Roland Levillain0d5a2812015-11-13 10:07:31 +00006178 case TypeCheckKind::kInterfaceCheck: {
6179 // Note that we indeed only call on slow path, but we always go
Roland Levillaine3f43ac2016-01-19 15:07:47 +00006180 // into the slow path for the unresolved and interface check
Roland Levillain0d5a2812015-11-13 10:07:31 +00006181 // cases.
6182 //
6183 // We cannot directly call the InstanceofNonTrivial runtime
6184 // entry point without resorting to a type checking slow path
6185 // here (i.e. by calling InvokeRuntime directly), as it would
6186 // require to assign fixed registers for the inputs of this
6187 // HInstanceOf instruction (following the runtime calling
6188 // convention), which might be cluttered by the potential first
6189 // read barrier emission at the beginning of this method.
Roland Levillain7c1559a2015-12-15 10:55:36 +00006190 //
6191 // TODO: Introduce a new runtime entry point taking the object
6192 // to test (instead of its class) as argument, and let it deal
6193 // with the read barrier issues. This will let us refactor this
6194 // case of the `switch` code as it was previously (with a direct
6195 // call to the runtime not using a type checking slow path).
6196 // This should also be beneficial for the other cases above.
Roland Levillain0d5a2812015-11-13 10:07:31 +00006197 DCHECK(locations->OnlyCallsOnSlowPath());
6198 slow_path = new (GetGraph()->GetArena()) TypeCheckSlowPathX86(instruction,
6199 /* is_fatal */ false);
6200 codegen_->AddSlowPath(slow_path);
6201 __ jmp(slow_path->GetEntryLabel());
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006202 if (zero.IsLinked()) {
6203 __ jmp(&done);
6204 }
6205 break;
6206 }
Nicolas Geoffray6f5c41f2014-11-06 08:59:20 +00006207 }
6208
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006209 if (zero.IsLinked()) {
Guillaume "Vermeille" Sanchezaf888352015-04-20 14:41:30 +01006210 __ Bind(&zero);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006211 __ xorl(out, out);
6212 }
6213
6214 if (done.IsLinked()) {
6215 __ Bind(&done);
Guillaume "Vermeille" Sanchezaf888352015-04-20 14:41:30 +01006216 }
6217
Nicolas Geoffray6f5c41f2014-11-06 08:59:20 +00006218 if (slow_path != nullptr) {
6219 __ Bind(slow_path->GetExitLabel());
6220 }
Nicolas Geoffray6f5c41f2014-11-06 08:59:20 +00006221}
6222
Nicolas Geoffray57a88d42014-11-10 15:09:21 +00006223void LocationsBuilderX86::VisitCheckCast(HCheckCast* instruction) {
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006224 LocationSummary::CallKind call_kind = LocationSummary::kNoCall;
6225 bool throws_into_catch = instruction->CanThrowIntoCatchBlock();
Roland Levillain0d5a2812015-11-13 10:07:31 +00006226 TypeCheckKind type_check_kind = instruction->GetTypeCheckKind();
6227 switch (type_check_kind) {
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006228 case TypeCheckKind::kExactCheck:
6229 case TypeCheckKind::kAbstractClassCheck:
6230 case TypeCheckKind::kClassHierarchyCheck:
6231 case TypeCheckKind::kArrayObjectCheck:
Roland Levillain0d5a2812015-11-13 10:07:31 +00006232 call_kind = (throws_into_catch || kEmitCompilerReadBarrier) ?
6233 LocationSummary::kCallOnSlowPath :
6234 LocationSummary::kNoCall; // In fact, call on a fatal (non-returning) slow path.
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006235 break;
6236 case TypeCheckKind::kArrayCheck:
Roland Levillain0d5a2812015-11-13 10:07:31 +00006237 case TypeCheckKind::kUnresolvedCheck:
6238 case TypeCheckKind::kInterfaceCheck:
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006239 call_kind = LocationSummary::kCallOnSlowPath;
6240 break;
6241 }
Roland Levillain0d5a2812015-11-13 10:07:31 +00006242 LocationSummary* locations = new (GetGraph()->GetArena()) LocationSummary(instruction, call_kind);
6243 locations->SetInAt(0, Location::RequiresRegister());
6244 locations->SetInAt(1, Location::Any());
6245 // Note that TypeCheckSlowPathX86 uses this "temp" register too.
6246 locations->AddTemp(Location::RequiresRegister());
6247 // When read barriers are enabled, we need an additional temporary
6248 // register for some cases.
Roland Levillain7c1559a2015-12-15 10:55:36 +00006249 if (TypeCheckNeedsATemporary(type_check_kind)) {
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006250 locations->AddTemp(Location::RequiresRegister());
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006251 }
Nicolas Geoffray57a88d42014-11-10 15:09:21 +00006252}
6253
6254void InstructionCodeGeneratorX86::VisitCheckCast(HCheckCast* instruction) {
Roland Levillain7c1559a2015-12-15 10:55:36 +00006255 TypeCheckKind type_check_kind = instruction->GetTypeCheckKind();
Nicolas Geoffray57a88d42014-11-10 15:09:21 +00006256 LocationSummary* locations = instruction->GetLocations();
Roland Levillain0d5a2812015-11-13 10:07:31 +00006257 Location obj_loc = locations->InAt(0);
6258 Register obj = obj_loc.AsRegister<Register>();
Nicolas Geoffray57a88d42014-11-10 15:09:21 +00006259 Location cls = locations->InAt(1);
Roland Levillain0d5a2812015-11-13 10:07:31 +00006260 Location temp_loc = locations->GetTemp(0);
6261 Register temp = temp_loc.AsRegister<Register>();
Roland Levillain95e7ffc2016-01-22 11:57:25 +00006262 Location maybe_temp2_loc = TypeCheckNeedsATemporary(type_check_kind) ?
Roland Levillain7c1559a2015-12-15 10:55:36 +00006263 locations->GetTemp(1) :
6264 Location::NoLocation();
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006265 uint32_t class_offset = mirror::Object::ClassOffset().Int32Value();
6266 uint32_t super_offset = mirror::Class::SuperClassOffset().Int32Value();
6267 uint32_t component_offset = mirror::Class::ComponentTypeOffset().Int32Value();
6268 uint32_t primitive_offset = mirror::Class::PrimitiveTypeOffset().Int32Value();
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006269
Roland Levillain0d5a2812015-11-13 10:07:31 +00006270 bool is_type_check_slow_path_fatal =
6271 (type_check_kind == TypeCheckKind::kExactCheck ||
6272 type_check_kind == TypeCheckKind::kAbstractClassCheck ||
6273 type_check_kind == TypeCheckKind::kClassHierarchyCheck ||
6274 type_check_kind == TypeCheckKind::kArrayObjectCheck) &&
6275 !instruction->CanThrowIntoCatchBlock();
6276 SlowPathCode* type_check_slow_path =
6277 new (GetGraph()->GetArena()) TypeCheckSlowPathX86(instruction,
6278 is_type_check_slow_path_fatal);
6279 codegen_->AddSlowPath(type_check_slow_path);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006280
Roland Levillain0d5a2812015-11-13 10:07:31 +00006281 NearLabel done;
Guillaume "Vermeille" Sanchezaf888352015-04-20 14:41:30 +01006282 // Avoid null check if we know obj is not null.
6283 if (instruction->MustDoNullCheck()) {
6284 __ testl(obj, obj);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006285 __ j(kEqual, &done);
Guillaume "Vermeille" Sanchezaf888352015-04-20 14:41:30 +01006286 }
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006287
Roland Levillain0d5a2812015-11-13 10:07:31 +00006288 // /* HeapReference<Class> */ temp = obj->klass_
Roland Levillain95e7ffc2016-01-22 11:57:25 +00006289 GenerateReferenceLoadTwoRegisters(instruction, temp_loc, obj_loc, class_offset, maybe_temp2_loc);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006290
Roland Levillain0d5a2812015-11-13 10:07:31 +00006291 switch (type_check_kind) {
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006292 case TypeCheckKind::kExactCheck:
6293 case TypeCheckKind::kArrayCheck: {
6294 if (cls.IsRegister()) {
6295 __ cmpl(temp, cls.AsRegister<Register>());
6296 } else {
6297 DCHECK(cls.IsStackSlot()) << cls;
6298 __ cmpl(temp, Address(ESP, cls.GetStackIndex()));
6299 }
6300 // Jump to slow path for throwing the exception or doing a
6301 // more involved array check.
Roland Levillain0d5a2812015-11-13 10:07:31 +00006302 __ j(kNotEqual, type_check_slow_path->GetEntryLabel());
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006303 break;
6304 }
Roland Levillain0d5a2812015-11-13 10:07:31 +00006305
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006306 case TypeCheckKind::kAbstractClassCheck: {
6307 // If the class is abstract, we eagerly fetch the super class of the
6308 // object to avoid doing a comparison we know will fail.
Roland Levillain0d5a2812015-11-13 10:07:31 +00006309 NearLabel loop, compare_classes;
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006310 __ Bind(&loop);
Roland Levillain0d5a2812015-11-13 10:07:31 +00006311 // /* HeapReference<Class> */ temp = temp->super_class_
Roland Levillain95e7ffc2016-01-22 11:57:25 +00006312 GenerateReferenceLoadOneRegister(instruction, temp_loc, super_offset, maybe_temp2_loc);
Roland Levillain0d5a2812015-11-13 10:07:31 +00006313
6314 // If the class reference currently in `temp` is not null, jump
6315 // to the `compare_classes` label to compare it with the checked
6316 // class.
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006317 __ testl(temp, temp);
Roland Levillain0d5a2812015-11-13 10:07:31 +00006318 __ j(kNotEqual, &compare_classes);
6319 // Otherwise, jump to the slow path to throw the exception.
6320 //
6321 // But before, move back the object's class into `temp` before
6322 // going into the slow path, as it has been overwritten in the
6323 // meantime.
6324 // /* HeapReference<Class> */ temp = obj->klass_
Roland Levillain95e7ffc2016-01-22 11:57:25 +00006325 GenerateReferenceLoadTwoRegisters(
6326 instruction, temp_loc, obj_loc, class_offset, maybe_temp2_loc);
Roland Levillain0d5a2812015-11-13 10:07:31 +00006327 __ jmp(type_check_slow_path->GetEntryLabel());
6328
6329 __ Bind(&compare_classes);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006330 if (cls.IsRegister()) {
6331 __ cmpl(temp, cls.AsRegister<Register>());
6332 } else {
6333 DCHECK(cls.IsStackSlot()) << cls;
6334 __ cmpl(temp, Address(ESP, cls.GetStackIndex()));
6335 }
6336 __ j(kNotEqual, &loop);
6337 break;
6338 }
Roland Levillain0d5a2812015-11-13 10:07:31 +00006339
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006340 case TypeCheckKind::kClassHierarchyCheck: {
6341 // Walk over the class hierarchy to find a match.
Nicolas Geoffrayabfcf182015-09-21 18:41:21 +01006342 NearLabel loop;
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006343 __ Bind(&loop);
6344 if (cls.IsRegister()) {
6345 __ cmpl(temp, cls.AsRegister<Register>());
6346 } else {
6347 DCHECK(cls.IsStackSlot()) << cls;
6348 __ cmpl(temp, Address(ESP, cls.GetStackIndex()));
6349 }
Nicolas Geoffrayabfcf182015-09-21 18:41:21 +01006350 __ j(kEqual, &done);
Roland Levillain0d5a2812015-11-13 10:07:31 +00006351
Roland Levillain0d5a2812015-11-13 10:07:31 +00006352 // /* HeapReference<Class> */ temp = temp->super_class_
Roland Levillain95e7ffc2016-01-22 11:57:25 +00006353 GenerateReferenceLoadOneRegister(instruction, temp_loc, super_offset, maybe_temp2_loc);
Roland Levillain0d5a2812015-11-13 10:07:31 +00006354
6355 // If the class reference currently in `temp` is not null, jump
6356 // back at the beginning of the loop.
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006357 __ testl(temp, temp);
6358 __ j(kNotEqual, &loop);
Roland Levillain0d5a2812015-11-13 10:07:31 +00006359 // Otherwise, jump to the slow path to throw the exception.
6360 //
6361 // But before, move back the object's class into `temp` before
6362 // going into the slow path, as it has been overwritten in the
6363 // meantime.
6364 // /* HeapReference<Class> */ temp = obj->klass_
Roland Levillain95e7ffc2016-01-22 11:57:25 +00006365 GenerateReferenceLoadTwoRegisters(
6366 instruction, temp_loc, obj_loc, class_offset, maybe_temp2_loc);
Roland Levillain0d5a2812015-11-13 10:07:31 +00006367 __ jmp(type_check_slow_path->GetEntryLabel());
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006368 break;
6369 }
Roland Levillain0d5a2812015-11-13 10:07:31 +00006370
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006371 case TypeCheckKind::kArrayObjectCheck: {
Nicolas Geoffrayabfcf182015-09-21 18:41:21 +01006372 // Do an exact check.
Roland Levillain0d5a2812015-11-13 10:07:31 +00006373 NearLabel check_non_primitive_component_type;
Nicolas Geoffrayabfcf182015-09-21 18:41:21 +01006374 if (cls.IsRegister()) {
6375 __ cmpl(temp, cls.AsRegister<Register>());
6376 } else {
6377 DCHECK(cls.IsStackSlot()) << cls;
6378 __ cmpl(temp, Address(ESP, cls.GetStackIndex()));
6379 }
6380 __ j(kEqual, &done);
Roland Levillain0d5a2812015-11-13 10:07:31 +00006381
6382 // Otherwise, we need to check that the object's class is a non-primitive array.
Roland Levillain0d5a2812015-11-13 10:07:31 +00006383 // /* HeapReference<Class> */ temp = temp->component_type_
Roland Levillain95e7ffc2016-01-22 11:57:25 +00006384 GenerateReferenceLoadOneRegister(instruction, temp_loc, component_offset, maybe_temp2_loc);
Roland Levillain0d5a2812015-11-13 10:07:31 +00006385
6386 // If the component type is not null (i.e. the object is indeed
6387 // an array), jump to label `check_non_primitive_component_type`
6388 // to further check that this component type is not a primitive
6389 // type.
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006390 __ testl(temp, temp);
Roland Levillain0d5a2812015-11-13 10:07:31 +00006391 __ j(kNotEqual, &check_non_primitive_component_type);
6392 // Otherwise, jump to the slow path to throw the exception.
6393 //
6394 // But before, move back the object's class into `temp` before
6395 // going into the slow path, as it has been overwritten in the
6396 // meantime.
6397 // /* HeapReference<Class> */ temp = obj->klass_
Roland Levillain95e7ffc2016-01-22 11:57:25 +00006398 GenerateReferenceLoadTwoRegisters(
6399 instruction, temp_loc, obj_loc, class_offset, maybe_temp2_loc);
Roland Levillain0d5a2812015-11-13 10:07:31 +00006400 __ jmp(type_check_slow_path->GetEntryLabel());
6401
6402 __ Bind(&check_non_primitive_component_type);
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006403 __ cmpw(Address(temp, primitive_offset), Immediate(Primitive::kPrimNot));
Roland Levillain0d5a2812015-11-13 10:07:31 +00006404 __ j(kEqual, &done);
6405 // Same comment as above regarding `temp` and the slow path.
6406 // /* HeapReference<Class> */ temp = obj->klass_
Roland Levillain95e7ffc2016-01-22 11:57:25 +00006407 GenerateReferenceLoadTwoRegisters(
6408 instruction, temp_loc, obj_loc, class_offset, maybe_temp2_loc);
Roland Levillain0d5a2812015-11-13 10:07:31 +00006409 __ jmp(type_check_slow_path->GetEntryLabel());
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006410 break;
6411 }
Roland Levillain0d5a2812015-11-13 10:07:31 +00006412
Calin Juravle98893e12015-10-02 21:05:03 +01006413 case TypeCheckKind::kUnresolvedCheck:
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006414 case TypeCheckKind::kInterfaceCheck:
Roland Levillaine3f43ac2016-01-19 15:07:47 +00006415 // We always go into the type check slow path for the unresolved
6416 // and interface check cases.
Roland Levillain0d5a2812015-11-13 10:07:31 +00006417 //
6418 // We cannot directly call the CheckCast runtime entry point
6419 // without resorting to a type checking slow path here (i.e. by
6420 // calling InvokeRuntime directly), as it would require to
6421 // assign fixed registers for the inputs of this HInstanceOf
6422 // instruction (following the runtime calling convention), which
6423 // might be cluttered by the potential first read barrier
6424 // emission at the beginning of this method.
Roland Levillain7c1559a2015-12-15 10:55:36 +00006425 //
6426 // TODO: Introduce a new runtime entry point taking the object
6427 // to test (instead of its class) as argument, and let it deal
6428 // with the read barrier issues. This will let us refactor this
6429 // case of the `switch` code as it was previously (with a direct
6430 // call to the runtime not using a type checking slow path).
6431 // This should also be beneficial for the other cases above.
Roland Levillain0d5a2812015-11-13 10:07:31 +00006432 __ jmp(type_check_slow_path->GetEntryLabel());
Nicolas Geoffray85c7bab2015-09-18 13:40:46 +00006433 break;
6434 }
6435 __ Bind(&done);
6436
Roland Levillain0d5a2812015-11-13 10:07:31 +00006437 __ Bind(type_check_slow_path->GetExitLabel());
Nicolas Geoffray57a88d42014-11-10 15:09:21 +00006438}
6439
Nicolas Geoffrayb7baf5c2014-11-11 16:29:44 +00006440void LocationsBuilderX86::VisitMonitorOperation(HMonitorOperation* instruction) {
6441 LocationSummary* locations =
6442 new (GetGraph()->GetArena()) LocationSummary(instruction, LocationSummary::kCall);
6443 InvokeRuntimeCallingConvention calling_convention;
6444 locations->SetInAt(0, Location::RegisterLocation(calling_convention.GetRegisterAt(0)));
6445}
6446
6447void InstructionCodeGeneratorX86::VisitMonitorOperation(HMonitorOperation* instruction) {
Alexandre Rames8158f282015-08-07 10:26:17 +01006448 codegen_->InvokeRuntime(instruction->IsEnter() ? QUICK_ENTRY_POINT(pLockObject)
6449 : QUICK_ENTRY_POINT(pUnlockObject),
6450 instruction,
6451 instruction->GetDexPc(),
6452 nullptr);
Roland Levillain888d0672015-11-23 18:53:50 +00006453 if (instruction->IsEnter()) {
6454 CheckEntrypointTypes<kQuickLockObject, void, mirror::Object*>();
6455 } else {
6456 CheckEntrypointTypes<kQuickUnlockObject, void, mirror::Object*>();
6457 }
Nicolas Geoffrayb7baf5c2014-11-11 16:29:44 +00006458}
6459
Nicolas Geoffray9574c4b2014-11-12 13:19:37 +00006460void LocationsBuilderX86::VisitAnd(HAnd* instruction) { HandleBitwiseOperation(instruction); }
6461void LocationsBuilderX86::VisitOr(HOr* instruction) { HandleBitwiseOperation(instruction); }
6462void LocationsBuilderX86::VisitXor(HXor* instruction) { HandleBitwiseOperation(instruction); }
6463
6464void LocationsBuilderX86::HandleBitwiseOperation(HBinaryOperation* instruction) {
6465 LocationSummary* locations =
6466 new (GetGraph()->GetArena()) LocationSummary(instruction, LocationSummary::kNoCall);
6467 DCHECK(instruction->GetResultType() == Primitive::kPrimInt
6468 || instruction->GetResultType() == Primitive::kPrimLong);
6469 locations->SetInAt(0, Location::RequiresRegister());
6470 locations->SetInAt(1, Location::Any());
6471 locations->SetOut(Location::SameAsFirstInput());
6472}
6473
6474void InstructionCodeGeneratorX86::VisitAnd(HAnd* instruction) {
6475 HandleBitwiseOperation(instruction);
6476}
6477
6478void InstructionCodeGeneratorX86::VisitOr(HOr* instruction) {
6479 HandleBitwiseOperation(instruction);
6480}
6481
6482void InstructionCodeGeneratorX86::VisitXor(HXor* instruction) {
6483 HandleBitwiseOperation(instruction);
6484}
6485
6486void InstructionCodeGeneratorX86::HandleBitwiseOperation(HBinaryOperation* instruction) {
6487 LocationSummary* locations = instruction->GetLocations();
6488 Location first = locations->InAt(0);
6489 Location second = locations->InAt(1);
6490 DCHECK(first.Equals(locations->Out()));
6491
6492 if (instruction->GetResultType() == Primitive::kPrimInt) {
6493 if (second.IsRegister()) {
6494 if (instruction->IsAnd()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00006495 __ andl(first.AsRegister<Register>(), second.AsRegister<Register>());
Nicolas Geoffray9574c4b2014-11-12 13:19:37 +00006496 } else if (instruction->IsOr()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00006497 __ orl(first.AsRegister<Register>(), second.AsRegister<Register>());
Nicolas Geoffray9574c4b2014-11-12 13:19:37 +00006498 } else {
6499 DCHECK(instruction->IsXor());
Roland Levillain271ab9c2014-11-27 15:23:57 +00006500 __ xorl(first.AsRegister<Register>(), second.AsRegister<Register>());
Nicolas Geoffray9574c4b2014-11-12 13:19:37 +00006501 }
6502 } else if (second.IsConstant()) {
6503 if (instruction->IsAnd()) {
Roland Levillain199f3362014-11-27 17:15:16 +00006504 __ andl(first.AsRegister<Register>(),
6505 Immediate(second.GetConstant()->AsIntConstant()->GetValue()));
Nicolas Geoffray9574c4b2014-11-12 13:19:37 +00006506 } else if (instruction->IsOr()) {
Roland Levillain199f3362014-11-27 17:15:16 +00006507 __ orl(first.AsRegister<Register>(),
6508 Immediate(second.GetConstant()->AsIntConstant()->GetValue()));
Nicolas Geoffray9574c4b2014-11-12 13:19:37 +00006509 } else {
6510 DCHECK(instruction->IsXor());
Roland Levillain199f3362014-11-27 17:15:16 +00006511 __ xorl(first.AsRegister<Register>(),
6512 Immediate(second.GetConstant()->AsIntConstant()->GetValue()));
Nicolas Geoffray9574c4b2014-11-12 13:19:37 +00006513 }
6514 } else {
6515 if (instruction->IsAnd()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00006516 __ andl(first.AsRegister<Register>(), Address(ESP, second.GetStackIndex()));
Nicolas Geoffray9574c4b2014-11-12 13:19:37 +00006517 } else if (instruction->IsOr()) {
Roland Levillain271ab9c2014-11-27 15:23:57 +00006518 __ orl(first.AsRegister<Register>(), Address(ESP, second.GetStackIndex()));
Nicolas Geoffray9574c4b2014-11-12 13:19:37 +00006519 } else {
6520 DCHECK(instruction->IsXor());
Roland Levillain271ab9c2014-11-27 15:23:57 +00006521 __ xorl(first.AsRegister<Register>(), Address(ESP, second.GetStackIndex()));
Nicolas Geoffray9574c4b2014-11-12 13:19:37 +00006522 }
6523 }
6524 } else {
6525 DCHECK_EQ(instruction->GetResultType(), Primitive::kPrimLong);
6526 if (second.IsRegisterPair()) {
6527 if (instruction->IsAnd()) {
6528 __ andl(first.AsRegisterPairLow<Register>(), second.AsRegisterPairLow<Register>());
6529 __ andl(first.AsRegisterPairHigh<Register>(), second.AsRegisterPairHigh<Register>());
6530 } else if (instruction->IsOr()) {
6531 __ orl(first.AsRegisterPairLow<Register>(), second.AsRegisterPairLow<Register>());
6532 __ orl(first.AsRegisterPairHigh<Register>(), second.AsRegisterPairHigh<Register>());
6533 } else {
6534 DCHECK(instruction->IsXor());
6535 __ xorl(first.AsRegisterPairLow<Register>(), second.AsRegisterPairLow<Register>());
6536 __ xorl(first.AsRegisterPairHigh<Register>(), second.AsRegisterPairHigh<Register>());
6537 }
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00006538 } else if (second.IsDoubleStackSlot()) {
Nicolas Geoffray9574c4b2014-11-12 13:19:37 +00006539 if (instruction->IsAnd()) {
6540 __ andl(first.AsRegisterPairLow<Register>(), Address(ESP, second.GetStackIndex()));
6541 __ andl(first.AsRegisterPairHigh<Register>(),
6542 Address(ESP, second.GetHighStackIndex(kX86WordSize)));
6543 } else if (instruction->IsOr()) {
6544 __ orl(first.AsRegisterPairLow<Register>(), Address(ESP, second.GetStackIndex()));
6545 __ orl(first.AsRegisterPairHigh<Register>(),
6546 Address(ESP, second.GetHighStackIndex(kX86WordSize)));
6547 } else {
6548 DCHECK(instruction->IsXor());
6549 __ xorl(first.AsRegisterPairLow<Register>(), Address(ESP, second.GetStackIndex()));
6550 __ xorl(first.AsRegisterPairHigh<Register>(),
6551 Address(ESP, second.GetHighStackIndex(kX86WordSize)));
6552 }
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00006553 } else {
6554 DCHECK(second.IsConstant()) << second;
6555 int64_t value = second.GetConstant()->AsLongConstant()->GetValue();
Mark Mendell3f6c7f62015-03-13 13:47:53 -04006556 int32_t low_value = Low32Bits(value);
6557 int32_t high_value = High32Bits(value);
6558 Immediate low(low_value);
6559 Immediate high(high_value);
6560 Register first_low = first.AsRegisterPairLow<Register>();
6561 Register first_high = first.AsRegisterPairHigh<Register>();
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00006562 if (instruction->IsAnd()) {
Mark Mendell3f6c7f62015-03-13 13:47:53 -04006563 if (low_value == 0) {
6564 __ xorl(first_low, first_low);
6565 } else if (low_value != -1) {
6566 __ andl(first_low, low);
6567 }
6568 if (high_value == 0) {
6569 __ xorl(first_high, first_high);
6570 } else if (high_value != -1) {
6571 __ andl(first_high, high);
6572 }
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00006573 } else if (instruction->IsOr()) {
Mark Mendell3f6c7f62015-03-13 13:47:53 -04006574 if (low_value != 0) {
6575 __ orl(first_low, low);
6576 }
6577 if (high_value != 0) {
6578 __ orl(first_high, high);
6579 }
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00006580 } else {
6581 DCHECK(instruction->IsXor());
Mark Mendell3f6c7f62015-03-13 13:47:53 -04006582 if (low_value != 0) {
6583 __ xorl(first_low, low);
6584 }
6585 if (high_value != 0) {
6586 __ xorl(first_high, high);
6587 }
Nicolas Geoffray234d69d2015-03-09 10:28:50 +00006588 }
Nicolas Geoffray9574c4b2014-11-12 13:19:37 +00006589 }
6590 }
6591}
6592
Roland Levillain7c1559a2015-12-15 10:55:36 +00006593void InstructionCodeGeneratorX86::GenerateReferenceLoadOneRegister(HInstruction* instruction,
6594 Location out,
6595 uint32_t offset,
Roland Levillain95e7ffc2016-01-22 11:57:25 +00006596 Location maybe_temp) {
Roland Levillain7c1559a2015-12-15 10:55:36 +00006597 Register out_reg = out.AsRegister<Register>();
6598 if (kEmitCompilerReadBarrier) {
Roland Levillain95e7ffc2016-01-22 11:57:25 +00006599 DCHECK(maybe_temp.IsRegister()) << maybe_temp;
Roland Levillain7c1559a2015-12-15 10:55:36 +00006600 if (kUseBakerReadBarrier) {
6601 // Load with fast path based Baker's read barrier.
6602 // /* HeapReference<Object> */ out = *(out + offset)
6603 codegen_->GenerateFieldLoadWithBakerReadBarrier(
Roland Levillain95e7ffc2016-01-22 11:57:25 +00006604 instruction, out, out_reg, offset, maybe_temp, /* needs_null_check */ false);
Roland Levillain7c1559a2015-12-15 10:55:36 +00006605 } else {
6606 // Load with slow path based read barrier.
Roland Levillain95e7ffc2016-01-22 11:57:25 +00006607 // Save the value of `out` into `maybe_temp` before overwriting it
Roland Levillain7c1559a2015-12-15 10:55:36 +00006608 // in the following move operation, as we will need it for the
6609 // read barrier below.
Roland Levillain95e7ffc2016-01-22 11:57:25 +00006610 __ movl(maybe_temp.AsRegister<Register>(), out_reg);
Roland Levillain7c1559a2015-12-15 10:55:36 +00006611 // /* HeapReference<Object> */ out = *(out + offset)
6612 __ movl(out_reg, Address(out_reg, offset));
Roland Levillain95e7ffc2016-01-22 11:57:25 +00006613 codegen_->GenerateReadBarrierSlow(instruction, out, out, maybe_temp, offset);
Roland Levillain7c1559a2015-12-15 10:55:36 +00006614 }
6615 } else {
6616 // Plain load with no read barrier.
6617 // /* HeapReference<Object> */ out = *(out + offset)
6618 __ movl(out_reg, Address(out_reg, offset));
6619 __ MaybeUnpoisonHeapReference(out_reg);
6620 }
6621}
6622
6623void InstructionCodeGeneratorX86::GenerateReferenceLoadTwoRegisters(HInstruction* instruction,
6624 Location out,
6625 Location obj,
6626 uint32_t offset,
Roland Levillain95e7ffc2016-01-22 11:57:25 +00006627 Location maybe_temp) {
Roland Levillain7c1559a2015-12-15 10:55:36 +00006628 Register out_reg = out.AsRegister<Register>();
6629 Register obj_reg = obj.AsRegister<Register>();
6630 if (kEmitCompilerReadBarrier) {
6631 if (kUseBakerReadBarrier) {
Roland Levillain95e7ffc2016-01-22 11:57:25 +00006632 DCHECK(maybe_temp.IsRegister()) << maybe_temp;
Roland Levillain7c1559a2015-12-15 10:55:36 +00006633 // Load with fast path based Baker's read barrier.
6634 // /* HeapReference<Object> */ out = *(obj + offset)
6635 codegen_->GenerateFieldLoadWithBakerReadBarrier(
Roland Levillain95e7ffc2016-01-22 11:57:25 +00006636 instruction, out, obj_reg, offset, maybe_temp, /* needs_null_check */ false);
Roland Levillain7c1559a2015-12-15 10:55:36 +00006637 } else {
6638 // Load with slow path based read barrier.
6639 // /* HeapReference<Object> */ out = *(obj + offset)
6640 __ movl(out_reg, Address(obj_reg, offset));
6641 codegen_->GenerateReadBarrierSlow(instruction, out, out, obj, offset);
6642 }
6643 } else {
6644 // Plain load with no read barrier.
6645 // /* HeapReference<Object> */ out = *(obj + offset)
6646 __ movl(out_reg, Address(obj_reg, offset));
6647 __ MaybeUnpoisonHeapReference(out_reg);
6648 }
6649}
6650
6651void InstructionCodeGeneratorX86::GenerateGcRootFieldLoad(HInstruction* instruction,
6652 Location root,
6653 Register obj,
6654 uint32_t offset) {
6655 Register root_reg = root.AsRegister<Register>();
6656 if (kEmitCompilerReadBarrier) {
6657 if (kUseBakerReadBarrier) {
6658 // Fast path implementation of art::ReadBarrier::BarrierForRoot when
6659 // Baker's read barrier are used:
6660 //
6661 // root = obj.field;
6662 // if (Thread::Current()->GetIsGcMarking()) {
6663 // root = ReadBarrier::Mark(root)
6664 // }
6665
6666 // /* GcRoot<mirror::Object> */ root = *(obj + offset)
6667 __ movl(root_reg, Address(obj, offset));
6668 static_assert(
6669 sizeof(mirror::CompressedReference<mirror::Object>) == sizeof(GcRoot<mirror::Object>),
6670 "art::mirror::CompressedReference<mirror::Object> and art::GcRoot<mirror::Object> "
6671 "have different sizes.");
6672 static_assert(sizeof(mirror::CompressedReference<mirror::Object>) == sizeof(int32_t),
6673 "art::mirror::CompressedReference<mirror::Object> and int32_t "
6674 "have different sizes.");
6675
6676 // Slow path used to mark the GC root `root`.
6677 SlowPathCode* slow_path =
6678 new (GetGraph()->GetArena()) ReadBarrierMarkSlowPathX86(instruction, root, root);
6679 codegen_->AddSlowPath(slow_path);
6680
6681 __ fs()->cmpl(Address::Absolute(Thread::IsGcMarkingOffset<kX86WordSize>().Int32Value()),
6682 Immediate(0));
6683 __ j(kNotEqual, slow_path->GetEntryLabel());
6684 __ Bind(slow_path->GetExitLabel());
6685 } else {
6686 // GC root loaded through a slow path for read barriers other
6687 // than Baker's.
6688 // /* GcRoot<mirror::Object>* */ root = obj + offset
6689 __ leal(root_reg, Address(obj, offset));
6690 // /* mirror::Object* */ root = root->Read()
6691 codegen_->GenerateReadBarrierForRootSlow(instruction, root, root);
6692 }
6693 } else {
6694 // Plain GC root load with no read barrier.
6695 // /* GcRoot<mirror::Object> */ root = *(obj + offset)
6696 __ movl(root_reg, Address(obj, offset));
Roland Levillaine3f43ac2016-01-19 15:07:47 +00006697 // Note that GC roots are not affected by heap poisoning, thus we
6698 // do not have to unpoison `root_reg` here.
Roland Levillain7c1559a2015-12-15 10:55:36 +00006699 }
6700}
6701
6702void CodeGeneratorX86::GenerateFieldLoadWithBakerReadBarrier(HInstruction* instruction,
6703 Location ref,
6704 Register obj,
6705 uint32_t offset,
6706 Location temp,
6707 bool needs_null_check) {
6708 DCHECK(kEmitCompilerReadBarrier);
6709 DCHECK(kUseBakerReadBarrier);
6710
6711 // /* HeapReference<Object> */ ref = *(obj + offset)
6712 Address src(obj, offset);
6713 GenerateReferenceLoadWithBakerReadBarrier(instruction, ref, obj, src, temp, needs_null_check);
6714}
6715
6716void CodeGeneratorX86::GenerateArrayLoadWithBakerReadBarrier(HInstruction* instruction,
6717 Location ref,
6718 Register obj,
6719 uint32_t data_offset,
6720 Location index,
6721 Location temp,
6722 bool needs_null_check) {
6723 DCHECK(kEmitCompilerReadBarrier);
6724 DCHECK(kUseBakerReadBarrier);
6725
6726 // /* HeapReference<Object> */ ref =
6727 // *(obj + data_offset + index * sizeof(HeapReference<Object>))
6728 Address src = index.IsConstant() ?
6729 Address(obj, (index.GetConstant()->AsIntConstant()->GetValue() << TIMES_4) + data_offset) :
6730 Address(obj, index.AsRegister<Register>(), TIMES_4, data_offset);
6731 GenerateReferenceLoadWithBakerReadBarrier(instruction, ref, obj, src, temp, needs_null_check);
6732}
6733
6734void CodeGeneratorX86::GenerateReferenceLoadWithBakerReadBarrier(HInstruction* instruction,
6735 Location ref,
6736 Register obj,
6737 const Address& src,
6738 Location temp,
6739 bool needs_null_check) {
6740 DCHECK(kEmitCompilerReadBarrier);
6741 DCHECK(kUseBakerReadBarrier);
6742
6743 // In slow path based read barriers, the read barrier call is
6744 // inserted after the original load. However, in fast path based
6745 // Baker's read barriers, we need to perform the load of
6746 // mirror::Object::monitor_ *before* the original reference load.
6747 // This load-load ordering is required by the read barrier.
6748 // The fast path/slow path (for Baker's algorithm) should look like:
6749 //
6750 // uint32_t rb_state = Lockword(obj->monitor_).ReadBarrierState();
6751 // lfence; // Load fence or artificial data dependency to prevent load-load reordering
6752 // HeapReference<Object> ref = *src; // Original reference load.
6753 // bool is_gray = (rb_state == ReadBarrier::gray_ptr_);
6754 // if (is_gray) {
6755 // ref = ReadBarrier::Mark(ref); // Performed by runtime entrypoint slow path.
6756 // }
6757 //
6758 // Note: the original implementation in ReadBarrier::Barrier is
6759 // slightly more complex as:
6760 // - it implements the load-load fence using a data dependency on
Roland Levillaine3f43ac2016-01-19 15:07:47 +00006761 // the high-bits of rb_state, which are expected to be all zeroes
6762 // (we use CodeGeneratorX86::GenerateMemoryBarrier instead here,
6763 // which is a no-op thanks to the x86 memory model);
Roland Levillain7c1559a2015-12-15 10:55:36 +00006764 // - it performs additional checks that we do not do here for
6765 // performance reasons.
6766
6767 Register ref_reg = ref.AsRegister<Register>();
6768 Register temp_reg = temp.AsRegister<Register>();
6769 uint32_t monitor_offset = mirror::Object::MonitorOffset().Int32Value();
6770
6771 // /* int32_t */ monitor = obj->monitor_
6772 __ movl(temp_reg, Address(obj, monitor_offset));
6773 if (needs_null_check) {
6774 MaybeRecordImplicitNullCheck(instruction);
6775 }
6776 // /* LockWord */ lock_word = LockWord(monitor)
6777 static_assert(sizeof(LockWord) == sizeof(int32_t),
6778 "art::LockWord and int32_t have different sizes.");
6779 // /* uint32_t */ rb_state = lock_word.ReadBarrierState()
6780 __ shrl(temp_reg, Immediate(LockWord::kReadBarrierStateShift));
6781 __ andl(temp_reg, Immediate(LockWord::kReadBarrierStateMask));
6782 static_assert(
6783 LockWord::kReadBarrierStateMask == ReadBarrier::rb_ptr_mask_,
6784 "art::LockWord::kReadBarrierStateMask is not equal to art::ReadBarrier::rb_ptr_mask_.");
6785
6786 // Load fence to prevent load-load reordering.
6787 // Note that this is a no-op, thanks to the x86 memory model.
6788 GenerateMemoryBarrier(MemBarrierKind::kLoadAny);
6789
6790 // The actual reference load.
6791 // /* HeapReference<Object> */ ref = *src
6792 __ movl(ref_reg, src);
6793
6794 // Object* ref = ref_addr->AsMirrorPtr()
6795 __ MaybeUnpoisonHeapReference(ref_reg);
6796
6797 // Slow path used to mark the object `ref` when it is gray.
6798 SlowPathCode* slow_path =
6799 new (GetGraph()->GetArena()) ReadBarrierMarkSlowPathX86(instruction, ref, ref);
6800 AddSlowPath(slow_path);
6801
6802 // if (rb_state == ReadBarrier::gray_ptr_)
6803 // ref = ReadBarrier::Mark(ref);
6804 __ cmpl(temp_reg, Immediate(ReadBarrier::gray_ptr_));
6805 __ j(kEqual, slow_path->GetEntryLabel());
6806 __ Bind(slow_path->GetExitLabel());
6807}
6808
6809void CodeGeneratorX86::GenerateReadBarrierSlow(HInstruction* instruction,
6810 Location out,
6811 Location ref,
6812 Location obj,
6813 uint32_t offset,
6814 Location index) {
Roland Levillain0d5a2812015-11-13 10:07:31 +00006815 DCHECK(kEmitCompilerReadBarrier);
6816
Roland Levillain7c1559a2015-12-15 10:55:36 +00006817 // Insert a slow path based read barrier *after* the reference load.
6818 //
Roland Levillain0d5a2812015-11-13 10:07:31 +00006819 // If heap poisoning is enabled, the unpoisoning of the loaded
6820 // reference will be carried out by the runtime within the slow
6821 // path.
6822 //
6823 // Note that `ref` currently does not get unpoisoned (when heap
6824 // poisoning is enabled), which is alright as the `ref` argument is
6825 // not used by the artReadBarrierSlow entry point.
6826 //
6827 // TODO: Unpoison `ref` when it is used by artReadBarrierSlow.
6828 SlowPathCode* slow_path = new (GetGraph()->GetArena())
6829 ReadBarrierForHeapReferenceSlowPathX86(instruction, out, ref, obj, offset, index);
6830 AddSlowPath(slow_path);
6831
Roland Levillain0d5a2812015-11-13 10:07:31 +00006832 __ jmp(slow_path->GetEntryLabel());
6833 __ Bind(slow_path->GetExitLabel());
6834}
6835
Roland Levillain7c1559a2015-12-15 10:55:36 +00006836void CodeGeneratorX86::MaybeGenerateReadBarrierSlow(HInstruction* instruction,
6837 Location out,
6838 Location ref,
6839 Location obj,
6840 uint32_t offset,
6841 Location index) {
Roland Levillain0d5a2812015-11-13 10:07:31 +00006842 if (kEmitCompilerReadBarrier) {
Roland Levillain7c1559a2015-12-15 10:55:36 +00006843 // Baker's read barriers shall be handled by the fast path
6844 // (CodeGeneratorX86::GenerateReferenceLoadWithBakerReadBarrier).
6845 DCHECK(!kUseBakerReadBarrier);
Roland Levillain0d5a2812015-11-13 10:07:31 +00006846 // If heap poisoning is enabled, unpoisoning will be taken care of
6847 // by the runtime within the slow path.
Roland Levillain7c1559a2015-12-15 10:55:36 +00006848 GenerateReadBarrierSlow(instruction, out, ref, obj, offset, index);
Roland Levillain0d5a2812015-11-13 10:07:31 +00006849 } else if (kPoisonHeapReferences) {
6850 __ UnpoisonHeapReference(out.AsRegister<Register>());
6851 }
6852}
6853
Roland Levillain7c1559a2015-12-15 10:55:36 +00006854void CodeGeneratorX86::GenerateReadBarrierForRootSlow(HInstruction* instruction,
6855 Location out,
6856 Location root) {
Roland Levillain0d5a2812015-11-13 10:07:31 +00006857 DCHECK(kEmitCompilerReadBarrier);
6858
Roland Levillain7c1559a2015-12-15 10:55:36 +00006859 // Insert a slow path based read barrier *after* the GC root load.
6860 //
Roland Levillain0d5a2812015-11-13 10:07:31 +00006861 // Note that GC roots are not affected by heap poisoning, so we do
6862 // not need to do anything special for this here.
6863 SlowPathCode* slow_path =
6864 new (GetGraph()->GetArena()) ReadBarrierForRootSlowPathX86(instruction, out, root);
6865 AddSlowPath(slow_path);
6866
Roland Levillain0d5a2812015-11-13 10:07:31 +00006867 __ jmp(slow_path->GetEntryLabel());
6868 __ Bind(slow_path->GetExitLabel());
6869}
6870
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01006871void LocationsBuilderX86::VisitBoundType(HBoundType* instruction ATTRIBUTE_UNUSED) {
Calin Juravleb1498f62015-02-16 13:13:29 +00006872 // Nothing to do, this should be removed during prepare for register allocator.
Calin Juravleb1498f62015-02-16 13:13:29 +00006873 LOG(FATAL) << "Unreachable";
6874}
6875
Roland Levillain4b8f1ec2015-08-26 18:34:03 +01006876void InstructionCodeGeneratorX86::VisitBoundType(HBoundType* instruction ATTRIBUTE_UNUSED) {
Calin Juravleb1498f62015-02-16 13:13:29 +00006877 // Nothing to do, this should be removed during prepare for register allocator.
Calin Juravleb1498f62015-02-16 13:13:29 +00006878 LOG(FATAL) << "Unreachable";
6879}
6880
Mark Mendellfe57faa2015-09-18 09:26:15 -04006881// Simple implementation of packed switch - generate cascaded compare/jumps.
6882void LocationsBuilderX86::VisitPackedSwitch(HPackedSwitch* switch_instr) {
6883 LocationSummary* locations =
6884 new (GetGraph()->GetArena()) LocationSummary(switch_instr, LocationSummary::kNoCall);
6885 locations->SetInAt(0, Location::RequiresRegister());
6886}
6887
Vladimir Markof3e0ee22015-12-17 15:23:13 +00006888void InstructionCodeGeneratorX86::GenPackedSwitchWithCompares(Register value_reg,
6889 int32_t lower_bound,
6890 uint32_t num_entries,
6891 HBasicBlock* switch_block,
6892 HBasicBlock* default_block) {
6893 // Figure out the correct compare values and jump conditions.
6894 // Handle the first compare/branch as a special case because it might
6895 // jump to the default case.
6896 DCHECK_GT(num_entries, 2u);
6897 Condition first_condition;
6898 uint32_t index;
6899 const ArenaVector<HBasicBlock*>& successors = switch_block->GetSuccessors();
6900 if (lower_bound != 0) {
6901 first_condition = kLess;
6902 __ cmpl(value_reg, Immediate(lower_bound));
6903 __ j(first_condition, codegen_->GetLabelOf(default_block));
6904 __ j(kEqual, codegen_->GetLabelOf(successors[0]));
Mark Mendellfe57faa2015-09-18 09:26:15 -04006905
Vladimir Markof3e0ee22015-12-17 15:23:13 +00006906 index = 1;
6907 } else {
6908 // Handle all the compare/jumps below.
6909 first_condition = kBelow;
6910 index = 0;
6911 }
6912
6913 // Handle the rest of the compare/jumps.
6914 for (; index + 1 < num_entries; index += 2) {
6915 int32_t compare_to_value = lower_bound + index + 1;
6916 __ cmpl(value_reg, Immediate(compare_to_value));
6917 // Jump to successors[index] if value < case_value[index].
6918 __ j(first_condition, codegen_->GetLabelOf(successors[index]));
6919 // Jump to successors[index + 1] if value == case_value[index + 1].
6920 __ j(kEqual, codegen_->GetLabelOf(successors[index + 1]));
6921 }
6922
6923 if (index != num_entries) {
6924 // There are an odd number of entries. Handle the last one.
6925 DCHECK_EQ(index + 1, num_entries);
6926 __ cmpl(value_reg, Immediate(lower_bound + index));
6927 __ j(kEqual, codegen_->GetLabelOf(successors[index]));
Mark Mendellfe57faa2015-09-18 09:26:15 -04006928 }
6929
6930 // And the default for any other value.
Vladimir Markof3e0ee22015-12-17 15:23:13 +00006931 if (!codegen_->GoesToNextBlock(switch_block, default_block)) {
6932 __ jmp(codegen_->GetLabelOf(default_block));
Mark Mendellfe57faa2015-09-18 09:26:15 -04006933 }
6934}
6935
Vladimir Markof3e0ee22015-12-17 15:23:13 +00006936void InstructionCodeGeneratorX86::VisitPackedSwitch(HPackedSwitch* switch_instr) {
6937 int32_t lower_bound = switch_instr->GetStartValue();
6938 uint32_t num_entries = switch_instr->GetNumEntries();
6939 LocationSummary* locations = switch_instr->GetLocations();
6940 Register value_reg = locations->InAt(0).AsRegister<Register>();
6941
6942 GenPackedSwitchWithCompares(value_reg,
6943 lower_bound,
6944 num_entries,
6945 switch_instr->GetBlock(),
6946 switch_instr->GetDefaultBlock());
6947}
6948
Mark Mendell805b3b52015-09-18 14:10:29 -04006949void LocationsBuilderX86::VisitX86PackedSwitch(HX86PackedSwitch* switch_instr) {
6950 LocationSummary* locations =
6951 new (GetGraph()->GetArena()) LocationSummary(switch_instr, LocationSummary::kNoCall);
6952 locations->SetInAt(0, Location::RequiresRegister());
6953
6954 // Constant area pointer.
6955 locations->SetInAt(1, Location::RequiresRegister());
6956
6957 // And the temporary we need.
6958 locations->AddTemp(Location::RequiresRegister());
6959}
6960
6961void InstructionCodeGeneratorX86::VisitX86PackedSwitch(HX86PackedSwitch* switch_instr) {
6962 int32_t lower_bound = switch_instr->GetStartValue();
Vladimir Markof3e0ee22015-12-17 15:23:13 +00006963 uint32_t num_entries = switch_instr->GetNumEntries();
Mark Mendell805b3b52015-09-18 14:10:29 -04006964 LocationSummary* locations = switch_instr->GetLocations();
6965 Register value_reg = locations->InAt(0).AsRegister<Register>();
6966 HBasicBlock* default_block = switch_instr->GetDefaultBlock();
6967
Vladimir Markof3e0ee22015-12-17 15:23:13 +00006968 if (num_entries <= kPackedSwitchJumpTableThreshold) {
6969 GenPackedSwitchWithCompares(value_reg,
6970 lower_bound,
6971 num_entries,
6972 switch_instr->GetBlock(),
6973 default_block);
6974 return;
6975 }
6976
Mark Mendell805b3b52015-09-18 14:10:29 -04006977 // Optimizing has a jump area.
6978 Register temp_reg = locations->GetTemp(0).AsRegister<Register>();
6979 Register constant_area = locations->InAt(1).AsRegister<Register>();
6980
6981 // Remove the bias, if needed.
6982 if (lower_bound != 0) {
6983 __ leal(temp_reg, Address(value_reg, -lower_bound));
6984 value_reg = temp_reg;
6985 }
6986
6987 // Is the value in range?
Vladimir Markof3e0ee22015-12-17 15:23:13 +00006988 DCHECK_GE(num_entries, 1u);
Mark Mendell805b3b52015-09-18 14:10:29 -04006989 __ cmpl(value_reg, Immediate(num_entries - 1));
6990 __ j(kAbove, codegen_->GetLabelOf(default_block));
6991
6992 // We are in the range of the table.
6993 // Load (target-constant_area) from the jump table, indexing by the value.
6994 __ movl(temp_reg, codegen_->LiteralCaseTable(switch_instr, constant_area, value_reg));
6995
6996 // Compute the actual target address by adding in constant_area.
6997 __ addl(temp_reg, constant_area);
6998
6999 // And jump.
7000 __ jmp(temp_reg);
7001}
7002
Mark Mendell0616ae02015-04-17 12:49:27 -04007003void LocationsBuilderX86::VisitX86ComputeBaseMethodAddress(
7004 HX86ComputeBaseMethodAddress* insn) {
7005 LocationSummary* locations =
7006 new (GetGraph()->GetArena()) LocationSummary(insn, LocationSummary::kNoCall);
7007 locations->SetOut(Location::RequiresRegister());
7008}
7009
7010void InstructionCodeGeneratorX86::VisitX86ComputeBaseMethodAddress(
7011 HX86ComputeBaseMethodAddress* insn) {
7012 LocationSummary* locations = insn->GetLocations();
7013 Register reg = locations->Out().AsRegister<Register>();
7014
7015 // Generate call to next instruction.
7016 Label next_instruction;
7017 __ call(&next_instruction);
7018 __ Bind(&next_instruction);
7019
7020 // Remember this offset for later use with constant area.
7021 codegen_->SetMethodAddressOffset(GetAssembler()->CodeSize());
7022
7023 // Grab the return address off the stack.
7024 __ popl(reg);
7025}
7026
7027void LocationsBuilderX86::VisitX86LoadFromConstantTable(
7028 HX86LoadFromConstantTable* insn) {
7029 LocationSummary* locations =
7030 new (GetGraph()->GetArena()) LocationSummary(insn, LocationSummary::kNoCall);
7031
7032 locations->SetInAt(0, Location::RequiresRegister());
7033 locations->SetInAt(1, Location::ConstantLocation(insn->GetConstant()));
7034
7035 // If we don't need to be materialized, we only need the inputs to be set.
David Brazdilb3e773e2016-01-26 11:28:37 +00007036 if (insn->IsEmittedAtUseSite()) {
Mark Mendell0616ae02015-04-17 12:49:27 -04007037 return;
7038 }
7039
7040 switch (insn->GetType()) {
7041 case Primitive::kPrimFloat:
7042 case Primitive::kPrimDouble:
7043 locations->SetOut(Location::RequiresFpuRegister());
7044 break;
7045
7046 case Primitive::kPrimInt:
7047 locations->SetOut(Location::RequiresRegister());
7048 break;
7049
7050 default:
7051 LOG(FATAL) << "Unsupported x86 constant area type " << insn->GetType();
7052 }
7053}
7054
7055void InstructionCodeGeneratorX86::VisitX86LoadFromConstantTable(HX86LoadFromConstantTable* insn) {
David Brazdilb3e773e2016-01-26 11:28:37 +00007056 if (insn->IsEmittedAtUseSite()) {
Mark Mendell0616ae02015-04-17 12:49:27 -04007057 return;
7058 }
7059
7060 LocationSummary* locations = insn->GetLocations();
7061 Location out = locations->Out();
7062 Register const_area = locations->InAt(0).AsRegister<Register>();
7063 HConstant *value = insn->GetConstant();
7064
7065 switch (insn->GetType()) {
7066 case Primitive::kPrimFloat:
7067 __ movss(out.AsFpuRegister<XmmRegister>(),
7068 codegen_->LiteralFloatAddress(value->AsFloatConstant()->GetValue(), const_area));
7069 break;
7070
7071 case Primitive::kPrimDouble:
7072 __ movsd(out.AsFpuRegister<XmmRegister>(),
7073 codegen_->LiteralDoubleAddress(value->AsDoubleConstant()->GetValue(), const_area));
7074 break;
7075
7076 case Primitive::kPrimInt:
7077 __ movl(out.AsRegister<Register>(),
7078 codegen_->LiteralInt32Address(value->AsIntConstant()->GetValue(), const_area));
7079 break;
7080
7081 default:
7082 LOG(FATAL) << "Unsupported x86 constant area type " << insn->GetType();
7083 }
7084}
7085
Mark Mendell0616ae02015-04-17 12:49:27 -04007086/**
7087 * Class to handle late fixup of offsets into constant area.
7088 */
Vladimir Marko5233f932015-09-29 19:01:15 +01007089class RIPFixup : public AssemblerFixup, public ArenaObject<kArenaAllocCodeGenerator> {
Mark Mendell0616ae02015-04-17 12:49:27 -04007090 public:
Mark Mendell805b3b52015-09-18 14:10:29 -04007091 RIPFixup(CodeGeneratorX86& codegen, size_t offset)
7092 : codegen_(&codegen), offset_into_constant_area_(offset) {}
7093
7094 protected:
7095 void SetOffset(size_t offset) { offset_into_constant_area_ = offset; }
7096
7097 CodeGeneratorX86* codegen_;
Mark Mendell0616ae02015-04-17 12:49:27 -04007098
7099 private:
7100 void Process(const MemoryRegion& region, int pos) OVERRIDE {
7101 // Patch the correct offset for the instruction. The place to patch is the
7102 // last 4 bytes of the instruction.
7103 // The value to patch is the distance from the offset in the constant area
7104 // from the address computed by the HX86ComputeBaseMethodAddress instruction.
Mark Mendell805b3b52015-09-18 14:10:29 -04007105 int32_t constant_offset = codegen_->ConstantAreaStart() + offset_into_constant_area_;
7106 int32_t relative_position = constant_offset - codegen_->GetMethodAddressOffset();;
Mark Mendell0616ae02015-04-17 12:49:27 -04007107
7108 // Patch in the right value.
7109 region.StoreUnaligned<int32_t>(pos - 4, relative_position);
7110 }
7111
Mark Mendell0616ae02015-04-17 12:49:27 -04007112 // Location in constant area that the fixup refers to.
Mark Mendell805b3b52015-09-18 14:10:29 -04007113 int32_t offset_into_constant_area_;
Mark Mendell0616ae02015-04-17 12:49:27 -04007114};
7115
Mark Mendell805b3b52015-09-18 14:10:29 -04007116/**
7117 * Class to handle late fixup of offsets to a jump table that will be created in the
7118 * constant area.
7119 */
7120class JumpTableRIPFixup : public RIPFixup {
7121 public:
7122 JumpTableRIPFixup(CodeGeneratorX86& codegen, HX86PackedSwitch* switch_instr)
7123 : RIPFixup(codegen, static_cast<size_t>(-1)), switch_instr_(switch_instr) {}
7124
7125 void CreateJumpTable() {
7126 X86Assembler* assembler = codegen_->GetAssembler();
7127
7128 // Ensure that the reference to the jump table has the correct offset.
7129 const int32_t offset_in_constant_table = assembler->ConstantAreaSize();
7130 SetOffset(offset_in_constant_table);
7131
7132 // The label values in the jump table are computed relative to the
7133 // instruction addressing the constant area.
7134 const int32_t relative_offset = codegen_->GetMethodAddressOffset();
7135
7136 // Populate the jump table with the correct values for the jump table.
7137 int32_t num_entries = switch_instr_->GetNumEntries();
7138 HBasicBlock* block = switch_instr_->GetBlock();
7139 const ArenaVector<HBasicBlock*>& successors = block->GetSuccessors();
7140 // The value that we want is the target offset - the position of the table.
7141 for (int32_t i = 0; i < num_entries; i++) {
7142 HBasicBlock* b = successors[i];
7143 Label* l = codegen_->GetLabelOf(b);
7144 DCHECK(l->IsBound());
7145 int32_t offset_to_block = l->Position() - relative_offset;
7146 assembler->AppendInt32(offset_to_block);
7147 }
7148 }
7149
7150 private:
7151 const HX86PackedSwitch* switch_instr_;
7152};
7153
7154void CodeGeneratorX86::Finalize(CodeAllocator* allocator) {
7155 // Generate the constant area if needed.
7156 X86Assembler* assembler = GetAssembler();
7157 if (!assembler->IsConstantAreaEmpty() || !fixups_to_jump_tables_.empty()) {
7158 // Align to 4 byte boundary to reduce cache misses, as the data is 4 and 8
7159 // byte values.
7160 assembler->Align(4, 0);
7161 constant_area_start_ = assembler->CodeSize();
7162
7163 // Populate any jump tables.
7164 for (auto jump_table : fixups_to_jump_tables_) {
7165 jump_table->CreateJumpTable();
7166 }
7167
7168 // And now add the constant area to the generated code.
7169 assembler->AddConstantArea();
7170 }
7171
7172 // And finish up.
7173 CodeGenerator::Finalize(allocator);
7174}
7175
Mark Mendell0616ae02015-04-17 12:49:27 -04007176Address CodeGeneratorX86::LiteralDoubleAddress(double v, Register reg) {
7177 AssemblerFixup* fixup = new (GetGraph()->GetArena()) RIPFixup(*this, __ AddDouble(v));
7178 return Address(reg, kDummy32BitOffset, fixup);
7179}
7180
7181Address CodeGeneratorX86::LiteralFloatAddress(float v, Register reg) {
7182 AssemblerFixup* fixup = new (GetGraph()->GetArena()) RIPFixup(*this, __ AddFloat(v));
7183 return Address(reg, kDummy32BitOffset, fixup);
7184}
7185
7186Address CodeGeneratorX86::LiteralInt32Address(int32_t v, Register reg) {
7187 AssemblerFixup* fixup = new (GetGraph()->GetArena()) RIPFixup(*this, __ AddInt32(v));
7188 return Address(reg, kDummy32BitOffset, fixup);
7189}
7190
7191Address CodeGeneratorX86::LiteralInt64Address(int64_t v, Register reg) {
7192 AssemblerFixup* fixup = new (GetGraph()->GetArena()) RIPFixup(*this, __ AddInt64(v));
7193 return Address(reg, kDummy32BitOffset, fixup);
7194}
7195
Mark Mendell805b3b52015-09-18 14:10:29 -04007196Address CodeGeneratorX86::LiteralCaseTable(HX86PackedSwitch* switch_instr,
7197 Register reg,
7198 Register value) {
7199 // Create a fixup to be used to create and address the jump table.
7200 JumpTableRIPFixup* table_fixup =
7201 new (GetGraph()->GetArena()) JumpTableRIPFixup(*this, switch_instr);
7202
7203 // We have to populate the jump tables.
7204 fixups_to_jump_tables_.push_back(table_fixup);
7205
7206 // We want a scaled address, as we are extracting the correct offset from the table.
7207 return Address(reg, value, TIMES_4, kDummy32BitOffset, table_fixup);
7208}
7209
Andreas Gampe85b62f22015-09-09 13:15:38 -07007210// TODO: target as memory.
7211void CodeGeneratorX86::MoveFromReturnRegister(Location target, Primitive::Type type) {
7212 if (!target.IsValid()) {
Roland Levillain7c1559a2015-12-15 10:55:36 +00007213 DCHECK_EQ(type, Primitive::kPrimVoid);
Andreas Gampe85b62f22015-09-09 13:15:38 -07007214 return;
7215 }
7216
7217 DCHECK_NE(type, Primitive::kPrimVoid);
7218
7219 Location return_loc = InvokeDexCallingConventionVisitorX86().GetReturnLocation(type);
7220 if (target.Equals(return_loc)) {
7221 return;
7222 }
7223
7224 // TODO: Consider pairs in the parallel move resolver, then this could be nicely merged
7225 // with the else branch.
7226 if (type == Primitive::kPrimLong) {
7227 HParallelMove parallel_move(GetGraph()->GetArena());
7228 parallel_move.AddMove(return_loc.ToLow(), target.ToLow(), Primitive::kPrimInt, nullptr);
7229 parallel_move.AddMove(return_loc.ToHigh(), target.ToHigh(), Primitive::kPrimInt, nullptr);
7230 GetMoveResolver()->EmitNativeCode(&parallel_move);
7231 } else {
7232 // Let the parallel move resolver take care of all of this.
7233 HParallelMove parallel_move(GetGraph()->GetArena());
7234 parallel_move.AddMove(return_loc, target, type, nullptr);
7235 GetMoveResolver()->EmitNativeCode(&parallel_move);
7236 }
7237}
7238
Roland Levillain4d027112015-07-01 15:41:14 +01007239#undef __
7240
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +00007241} // namespace x86
7242} // namespace art