blob: 9ca4ef049a6758010c1fe43dddf1be8e6cc3a610 [file] [log] [blame]
Andreas Gampe71fb52f2014-12-29 17:43:08 -08001/*
2 * Copyright (C) 2015 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 "intrinsics_x86_64.h"
18
Andreas Gampe21030dd2015-05-07 14:46:15 -070019#include <limits>
20
Mark Mendellfb8d2792015-03-31 22:16:59 -040021#include "arch/x86_64/instruction_set_features_x86_64.h"
Mathieu Chartiere401d142015-04-22 13:56:20 -070022#include "art_method-inl.h"
Mark Mendelld5897672015-08-12 21:16:41 -040023#include "base/bit_utils.h"
Andreas Gampe71fb52f2014-12-29 17:43:08 -080024#include "code_generator_x86_64.h"
25#include "entrypoints/quick/quick_entrypoints.h"
26#include "intrinsics.h"
Andreas Gampe85b62f22015-09-09 13:15:38 -070027#include "intrinsics_utils.h"
Andreas Gampe71fb52f2014-12-29 17:43:08 -080028#include "mirror/array-inl.h"
Andreas Gampe71fb52f2014-12-29 17:43:08 -080029#include "mirror/string.h"
30#include "thread.h"
31#include "utils/x86_64/assembler_x86_64.h"
32#include "utils/x86_64/constants_x86_64.h"
33
34namespace art {
35
36namespace x86_64 {
37
Mark Mendellfb8d2792015-03-31 22:16:59 -040038IntrinsicLocationsBuilderX86_64::IntrinsicLocationsBuilderX86_64(CodeGeneratorX86_64* codegen)
39 : arena_(codegen->GetGraph()->GetArena()), codegen_(codegen) {
40}
41
42
Andreas Gampe71fb52f2014-12-29 17:43:08 -080043X86_64Assembler* IntrinsicCodeGeneratorX86_64::GetAssembler() {
Roland Levillainb488b782015-10-22 11:38:49 +010044 return down_cast<X86_64Assembler*>(codegen_->GetAssembler());
Andreas Gampe71fb52f2014-12-29 17:43:08 -080045}
46
Andreas Gampe878d58c2015-01-15 23:24:00 -080047ArenaAllocator* IntrinsicCodeGeneratorX86_64::GetAllocator() {
Andreas Gampe71fb52f2014-12-29 17:43:08 -080048 return codegen_->GetGraph()->GetArena();
49}
50
51bool IntrinsicLocationsBuilderX86_64::TryDispatch(HInvoke* invoke) {
52 Dispatch(invoke);
Roland Levillain0d5a2812015-11-13 10:07:31 +000053 LocationSummary* res = invoke->GetLocations();
54 if (res == nullptr) {
55 return false;
56 }
57 if (kEmitCompilerReadBarrier && res->CanCall()) {
58 // Generating an intrinsic for this HInvoke may produce an
59 // IntrinsicSlowPathX86_64 slow path. Currently this approach
60 // does not work when using read barriers, as the emitted
61 // calling sequence will make use of another slow path
62 // (ReadBarrierForRootSlowPathX86_64 for HInvokeStaticOrDirect,
63 // ReadBarrierSlowPathX86_64 for HInvokeVirtual). So we bail
64 // out in this case.
65 //
66 // TODO: Find a way to have intrinsics work with read barriers.
67 invoke->SetLocations(nullptr);
68 return false;
69 }
70 return res->Intrinsified();
Andreas Gampe71fb52f2014-12-29 17:43:08 -080071}
72
Roland Levillainec525fc2015-04-28 15:50:20 +010073static void MoveArguments(HInvoke* invoke, CodeGeneratorX86_64* codegen) {
Roland Levillain2d27c8e2015-04-28 15:48:45 +010074 InvokeDexCallingConventionVisitorX86_64 calling_convention_visitor;
Roland Levillainec525fc2015-04-28 15:50:20 +010075 IntrinsicVisitor::MoveArguments(invoke, codegen, &calling_convention_visitor);
Andreas Gampe71fb52f2014-12-29 17:43:08 -080076}
77
Andreas Gampe85b62f22015-09-09 13:15:38 -070078using IntrinsicSlowPathX86_64 = IntrinsicSlowPath<InvokeDexCallingConventionVisitorX86_64>;
Andreas Gampe71fb52f2014-12-29 17:43:08 -080079
Andreas Gampe71fb52f2014-12-29 17:43:08 -080080#define __ assembler->
81
82static void CreateFPToIntLocations(ArenaAllocator* arena, HInvoke* invoke) {
83 LocationSummary* locations = new (arena) LocationSummary(invoke,
84 LocationSummary::kNoCall,
85 kIntrinsified);
86 locations->SetInAt(0, Location::RequiresFpuRegister());
87 locations->SetOut(Location::RequiresRegister());
88}
89
90static void CreateIntToFPLocations(ArenaAllocator* arena, HInvoke* invoke) {
91 LocationSummary* locations = new (arena) LocationSummary(invoke,
92 LocationSummary::kNoCall,
93 kIntrinsified);
94 locations->SetInAt(0, Location::RequiresRegister());
95 locations->SetOut(Location::RequiresFpuRegister());
96}
97
98static void MoveFPToInt(LocationSummary* locations, bool is64bit, X86_64Assembler* assembler) {
99 Location input = locations->InAt(0);
100 Location output = locations->Out();
101 __ movd(output.AsRegister<CpuRegister>(), input.AsFpuRegister<XmmRegister>(), is64bit);
102}
103
104static void MoveIntToFP(LocationSummary* locations, bool is64bit, X86_64Assembler* assembler) {
105 Location input = locations->InAt(0);
106 Location output = locations->Out();
107 __ movd(output.AsFpuRegister<XmmRegister>(), input.AsRegister<CpuRegister>(), is64bit);
108}
109
110void IntrinsicLocationsBuilderX86_64::VisitDoubleDoubleToRawLongBits(HInvoke* invoke) {
111 CreateFPToIntLocations(arena_, invoke);
112}
113void IntrinsicLocationsBuilderX86_64::VisitDoubleLongBitsToDouble(HInvoke* invoke) {
114 CreateIntToFPLocations(arena_, invoke);
115}
116
117void IntrinsicCodeGeneratorX86_64::VisitDoubleDoubleToRawLongBits(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000118 MoveFPToInt(invoke->GetLocations(), /* is64bit */ true, GetAssembler());
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800119}
120void IntrinsicCodeGeneratorX86_64::VisitDoubleLongBitsToDouble(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000121 MoveIntToFP(invoke->GetLocations(), /* is64bit */ true, GetAssembler());
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800122}
123
124void IntrinsicLocationsBuilderX86_64::VisitFloatFloatToRawIntBits(HInvoke* invoke) {
125 CreateFPToIntLocations(arena_, invoke);
126}
127void IntrinsicLocationsBuilderX86_64::VisitFloatIntBitsToFloat(HInvoke* invoke) {
128 CreateIntToFPLocations(arena_, invoke);
129}
130
131void IntrinsicCodeGeneratorX86_64::VisitFloatFloatToRawIntBits(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000132 MoveFPToInt(invoke->GetLocations(), /* is64bit */ false, GetAssembler());
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800133}
134void IntrinsicCodeGeneratorX86_64::VisitFloatIntBitsToFloat(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000135 MoveIntToFP(invoke->GetLocations(), /* is64bit */ false, GetAssembler());
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800136}
137
138static void CreateIntToIntLocations(ArenaAllocator* arena, HInvoke* invoke) {
139 LocationSummary* locations = new (arena) LocationSummary(invoke,
140 LocationSummary::kNoCall,
141 kIntrinsified);
142 locations->SetInAt(0, Location::RequiresRegister());
143 locations->SetOut(Location::SameAsFirstInput());
144}
145
146static void GenReverseBytes(LocationSummary* locations,
147 Primitive::Type size,
148 X86_64Assembler* assembler) {
149 CpuRegister out = locations->Out().AsRegister<CpuRegister>();
150
151 switch (size) {
152 case Primitive::kPrimShort:
153 // TODO: Can be done with an xchg of 8b registers. This is straight from Quick.
154 __ bswapl(out);
155 __ sarl(out, Immediate(16));
156 break;
157 case Primitive::kPrimInt:
158 __ bswapl(out);
159 break;
160 case Primitive::kPrimLong:
161 __ bswapq(out);
162 break;
163 default:
164 LOG(FATAL) << "Unexpected size for reverse-bytes: " << size;
165 UNREACHABLE();
166 }
167}
168
169void IntrinsicLocationsBuilderX86_64::VisitIntegerReverseBytes(HInvoke* invoke) {
170 CreateIntToIntLocations(arena_, invoke);
171}
172
173void IntrinsicCodeGeneratorX86_64::VisitIntegerReverseBytes(HInvoke* invoke) {
174 GenReverseBytes(invoke->GetLocations(), Primitive::kPrimInt, GetAssembler());
175}
176
177void IntrinsicLocationsBuilderX86_64::VisitLongReverseBytes(HInvoke* invoke) {
178 CreateIntToIntLocations(arena_, invoke);
179}
180
181void IntrinsicCodeGeneratorX86_64::VisitLongReverseBytes(HInvoke* invoke) {
182 GenReverseBytes(invoke->GetLocations(), Primitive::kPrimLong, GetAssembler());
183}
184
185void IntrinsicLocationsBuilderX86_64::VisitShortReverseBytes(HInvoke* invoke) {
186 CreateIntToIntLocations(arena_, invoke);
187}
188
189void IntrinsicCodeGeneratorX86_64::VisitShortReverseBytes(HInvoke* invoke) {
190 GenReverseBytes(invoke->GetLocations(), Primitive::kPrimShort, GetAssembler());
191}
192
193
194// TODO: Consider Quick's way of doing Double abs through integer operations, as the immediate we
195// need is 64b.
196
197static void CreateFloatToFloatPlusTemps(ArenaAllocator* arena, HInvoke* invoke) {
198 // TODO: Enable memory operations when the assembler supports them.
199 LocationSummary* locations = new (arena) LocationSummary(invoke,
200 LocationSummary::kNoCall,
201 kIntrinsified);
202 locations->SetInAt(0, Location::RequiresFpuRegister());
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800203 locations->SetOut(Location::SameAsFirstInput());
Mark Mendellf55c3e02015-03-26 21:07:46 -0400204 locations->AddTemp(Location::RequiresFpuRegister()); // FP reg to hold mask.
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800205}
206
Mark Mendell39dcf552015-04-09 20:42:42 -0400207static void MathAbsFP(LocationSummary* locations,
208 bool is64bit,
209 X86_64Assembler* assembler,
210 CodeGeneratorX86_64* codegen) {
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800211 Location output = locations->Out();
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800212
Mark Mendellcfa410b2015-05-25 16:02:44 -0400213 DCHECK(output.IsFpuRegister());
214 XmmRegister xmm_temp = locations->GetTemp(0).AsFpuRegister<XmmRegister>();
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800215
Mark Mendellcfa410b2015-05-25 16:02:44 -0400216 // TODO: Can mask directly with constant area using pand if we can guarantee
217 // that the literal is aligned on a 16 byte boundary. This will avoid a
218 // temporary.
219 if (is64bit) {
220 __ movsd(xmm_temp, codegen->LiteralInt64Address(INT64_C(0x7FFFFFFFFFFFFFFF)));
221 __ andpd(output.AsFpuRegister<XmmRegister>(), xmm_temp);
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800222 } else {
Mark Mendellcfa410b2015-05-25 16:02:44 -0400223 __ movss(xmm_temp, codegen->LiteralInt32Address(INT32_C(0x7FFFFFFF)));
224 __ andps(output.AsFpuRegister<XmmRegister>(), xmm_temp);
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800225 }
226}
227
228void IntrinsicLocationsBuilderX86_64::VisitMathAbsDouble(HInvoke* invoke) {
229 CreateFloatToFloatPlusTemps(arena_, invoke);
230}
231
232void IntrinsicCodeGeneratorX86_64::VisitMathAbsDouble(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000233 MathAbsFP(invoke->GetLocations(), /* is64bit */ true, GetAssembler(), codegen_);
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800234}
235
236void IntrinsicLocationsBuilderX86_64::VisitMathAbsFloat(HInvoke* invoke) {
237 CreateFloatToFloatPlusTemps(arena_, invoke);
238}
239
240void IntrinsicCodeGeneratorX86_64::VisitMathAbsFloat(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000241 MathAbsFP(invoke->GetLocations(), /* is64bit */ false, GetAssembler(), codegen_);
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800242}
243
244static void CreateIntToIntPlusTemp(ArenaAllocator* arena, HInvoke* invoke) {
245 LocationSummary* locations = new (arena) LocationSummary(invoke,
246 LocationSummary::kNoCall,
247 kIntrinsified);
248 locations->SetInAt(0, Location::RequiresRegister());
249 locations->SetOut(Location::SameAsFirstInput());
250 locations->AddTemp(Location::RequiresRegister());
251}
252
253static void GenAbsInteger(LocationSummary* locations, bool is64bit, X86_64Assembler* assembler) {
254 Location output = locations->Out();
255 CpuRegister out = output.AsRegister<CpuRegister>();
256 CpuRegister mask = locations->GetTemp(0).AsRegister<CpuRegister>();
257
258 if (is64bit) {
259 // Create mask.
260 __ movq(mask, out);
261 __ sarq(mask, Immediate(63));
262 // Add mask.
263 __ addq(out, mask);
264 __ xorq(out, mask);
265 } else {
266 // Create mask.
267 __ movl(mask, out);
268 __ sarl(mask, Immediate(31));
269 // Add mask.
270 __ addl(out, mask);
271 __ xorl(out, mask);
272 }
273}
274
275void IntrinsicLocationsBuilderX86_64::VisitMathAbsInt(HInvoke* invoke) {
276 CreateIntToIntPlusTemp(arena_, invoke);
277}
278
279void IntrinsicCodeGeneratorX86_64::VisitMathAbsInt(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000280 GenAbsInteger(invoke->GetLocations(), /* is64bit */ false, GetAssembler());
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800281}
282
283void IntrinsicLocationsBuilderX86_64::VisitMathAbsLong(HInvoke* invoke) {
284 CreateIntToIntPlusTemp(arena_, invoke);
285}
286
287void IntrinsicCodeGeneratorX86_64::VisitMathAbsLong(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000288 GenAbsInteger(invoke->GetLocations(), /* is64bit */ true, GetAssembler());
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800289}
290
Mark Mendell39dcf552015-04-09 20:42:42 -0400291static void GenMinMaxFP(LocationSummary* locations,
292 bool is_min,
293 bool is_double,
294 X86_64Assembler* assembler,
295 CodeGeneratorX86_64* codegen) {
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800296 Location op1_loc = locations->InAt(0);
297 Location op2_loc = locations->InAt(1);
298 Location out_loc = locations->Out();
299 XmmRegister out = out_loc.AsFpuRegister<XmmRegister>();
300
301 // Shortcut for same input locations.
302 if (op1_loc.Equals(op2_loc)) {
303 DCHECK(out_loc.Equals(op1_loc));
304 return;
305 }
306
307 // (out := op1)
308 // out <=? op2
309 // if Nan jmp Nan_label
310 // if out is min jmp done
311 // if op2 is min jmp op2_label
312 // handle -0/+0
313 // jmp done
314 // Nan_label:
315 // out := NaN
316 // op2_label:
317 // out := op2
318 // done:
319 //
320 // This removes one jmp, but needs to copy one input (op1) to out.
321 //
Mark Mendellf55c3e02015-03-26 21:07:46 -0400322 // TODO: This is straight from Quick. Make NaN an out-of-line slowpath?
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800323
324 XmmRegister op2 = op2_loc.AsFpuRegister<XmmRegister>();
325
Mark Mendell0c9497d2015-08-21 09:30:05 -0400326 NearLabel nan, done, op2_label;
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800327 if (is_double) {
328 __ ucomisd(out, op2);
329 } else {
330 __ ucomiss(out, op2);
331 }
332
333 __ j(Condition::kParityEven, &nan);
334
335 __ j(is_min ? Condition::kAbove : Condition::kBelow, &op2_label);
336 __ j(is_min ? Condition::kBelow : Condition::kAbove, &done);
337
338 // Handle 0.0/-0.0.
339 if (is_min) {
340 if (is_double) {
341 __ orpd(out, op2);
342 } else {
343 __ orps(out, op2);
344 }
345 } else {
346 if (is_double) {
347 __ andpd(out, op2);
348 } else {
349 __ andps(out, op2);
350 }
351 }
352 __ jmp(&done);
353
354 // NaN handling.
355 __ Bind(&nan);
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800356 if (is_double) {
Mark Mendellf55c3e02015-03-26 21:07:46 -0400357 __ movsd(out, codegen->LiteralInt64Address(INT64_C(0x7FF8000000000000)));
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800358 } else {
Mark Mendellf55c3e02015-03-26 21:07:46 -0400359 __ movss(out, codegen->LiteralInt32Address(INT32_C(0x7FC00000)));
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800360 }
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800361 __ jmp(&done);
362
363 // out := op2;
364 __ Bind(&op2_label);
365 if (is_double) {
366 __ movsd(out, op2);
367 } else {
368 __ movss(out, op2);
369 }
370
371 // Done.
372 __ Bind(&done);
373}
374
Mark Mendellf55c3e02015-03-26 21:07:46 -0400375static void CreateFPFPToFP(ArenaAllocator* arena, HInvoke* invoke) {
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800376 LocationSummary* locations = new (arena) LocationSummary(invoke,
377 LocationSummary::kNoCall,
378 kIntrinsified);
379 locations->SetInAt(0, Location::RequiresFpuRegister());
380 locations->SetInAt(1, Location::RequiresFpuRegister());
381 // The following is sub-optimal, but all we can do for now. It would be fine to also accept
382 // the second input to be the output (we can simply swap inputs).
383 locations->SetOut(Location::SameAsFirstInput());
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800384}
385
386void IntrinsicLocationsBuilderX86_64::VisitMathMinDoubleDouble(HInvoke* invoke) {
Mark Mendellf55c3e02015-03-26 21:07:46 -0400387 CreateFPFPToFP(arena_, invoke);
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800388}
389
390void IntrinsicCodeGeneratorX86_64::VisitMathMinDoubleDouble(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000391 GenMinMaxFP(
392 invoke->GetLocations(), /* is_min */ true, /* is_double */ true, GetAssembler(), codegen_);
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800393}
394
395void IntrinsicLocationsBuilderX86_64::VisitMathMinFloatFloat(HInvoke* invoke) {
Mark Mendellf55c3e02015-03-26 21:07:46 -0400396 CreateFPFPToFP(arena_, invoke);
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800397}
398
399void IntrinsicCodeGeneratorX86_64::VisitMathMinFloatFloat(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000400 GenMinMaxFP(
401 invoke->GetLocations(), /* is_min */ true, /* is_double */ false, GetAssembler(), codegen_);
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800402}
403
404void IntrinsicLocationsBuilderX86_64::VisitMathMaxDoubleDouble(HInvoke* invoke) {
Mark Mendellf55c3e02015-03-26 21:07:46 -0400405 CreateFPFPToFP(arena_, invoke);
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800406}
407
408void IntrinsicCodeGeneratorX86_64::VisitMathMaxDoubleDouble(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000409 GenMinMaxFP(
410 invoke->GetLocations(), /* is_min */ false, /* is_double */ true, GetAssembler(), codegen_);
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800411}
412
413void IntrinsicLocationsBuilderX86_64::VisitMathMaxFloatFloat(HInvoke* invoke) {
Mark Mendellf55c3e02015-03-26 21:07:46 -0400414 CreateFPFPToFP(arena_, invoke);
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800415}
416
417void IntrinsicCodeGeneratorX86_64::VisitMathMaxFloatFloat(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000418 GenMinMaxFP(
419 invoke->GetLocations(), /* is_min */ false, /* is_double */ false, GetAssembler(), codegen_);
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800420}
421
422static void GenMinMax(LocationSummary* locations, bool is_min, bool is_long,
423 X86_64Assembler* assembler) {
424 Location op1_loc = locations->InAt(0);
425 Location op2_loc = locations->InAt(1);
426
427 // Shortcut for same input locations.
428 if (op1_loc.Equals(op2_loc)) {
429 // Can return immediately, as op1_loc == out_loc.
430 // Note: if we ever support separate registers, e.g., output into memory, we need to check for
431 // a copy here.
432 DCHECK(locations->Out().Equals(op1_loc));
433 return;
434 }
435
436 CpuRegister out = locations->Out().AsRegister<CpuRegister>();
437 CpuRegister op2 = op2_loc.AsRegister<CpuRegister>();
438
439 // (out := op1)
440 // out <=? op2
441 // if out is min jmp done
442 // out := op2
443 // done:
444
445 if (is_long) {
446 __ cmpq(out, op2);
447 } else {
448 __ cmpl(out, op2);
449 }
450
451 __ cmov(is_min ? Condition::kGreater : Condition::kLess, out, op2, is_long);
452}
453
454static void CreateIntIntToIntLocations(ArenaAllocator* arena, HInvoke* invoke) {
455 LocationSummary* locations = new (arena) LocationSummary(invoke,
456 LocationSummary::kNoCall,
457 kIntrinsified);
458 locations->SetInAt(0, Location::RequiresRegister());
459 locations->SetInAt(1, Location::RequiresRegister());
460 locations->SetOut(Location::SameAsFirstInput());
461}
462
463void IntrinsicLocationsBuilderX86_64::VisitMathMinIntInt(HInvoke* invoke) {
464 CreateIntIntToIntLocations(arena_, invoke);
465}
466
467void IntrinsicCodeGeneratorX86_64::VisitMathMinIntInt(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000468 GenMinMax(invoke->GetLocations(), /* is_min */ true, /* is_long */ false, GetAssembler());
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800469}
470
471void IntrinsicLocationsBuilderX86_64::VisitMathMinLongLong(HInvoke* invoke) {
472 CreateIntIntToIntLocations(arena_, invoke);
473}
474
475void IntrinsicCodeGeneratorX86_64::VisitMathMinLongLong(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000476 GenMinMax(invoke->GetLocations(), /* is_min */ true, /* is_long */ true, GetAssembler());
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800477}
478
479void IntrinsicLocationsBuilderX86_64::VisitMathMaxIntInt(HInvoke* invoke) {
480 CreateIntIntToIntLocations(arena_, invoke);
481}
482
483void IntrinsicCodeGeneratorX86_64::VisitMathMaxIntInt(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000484 GenMinMax(invoke->GetLocations(), /* is_min */ false, /* is_long */ false, GetAssembler());
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800485}
486
487void IntrinsicLocationsBuilderX86_64::VisitMathMaxLongLong(HInvoke* invoke) {
488 CreateIntIntToIntLocations(arena_, invoke);
489}
490
491void IntrinsicCodeGeneratorX86_64::VisitMathMaxLongLong(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000492 GenMinMax(invoke->GetLocations(), /* is_min */ false, /* is_long */ true, GetAssembler());
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800493}
494
495static void CreateFPToFPLocations(ArenaAllocator* arena, HInvoke* invoke) {
496 LocationSummary* locations = new (arena) LocationSummary(invoke,
497 LocationSummary::kNoCall,
498 kIntrinsified);
499 locations->SetInAt(0, Location::RequiresFpuRegister());
500 locations->SetOut(Location::RequiresFpuRegister());
501}
502
503void IntrinsicLocationsBuilderX86_64::VisitMathSqrt(HInvoke* invoke) {
504 CreateFPToFPLocations(arena_, invoke);
505}
506
507void IntrinsicCodeGeneratorX86_64::VisitMathSqrt(HInvoke* invoke) {
508 LocationSummary* locations = invoke->GetLocations();
509 XmmRegister in = locations->InAt(0).AsFpuRegister<XmmRegister>();
510 XmmRegister out = locations->Out().AsFpuRegister<XmmRegister>();
511
512 GetAssembler()->sqrtsd(out, in);
513}
514
Mark Mendellfb8d2792015-03-31 22:16:59 -0400515static void InvokeOutOfLineIntrinsic(CodeGeneratorX86_64* codegen, HInvoke* invoke) {
Roland Levillainec525fc2015-04-28 15:50:20 +0100516 MoveArguments(invoke, codegen);
Mark Mendellfb8d2792015-03-31 22:16:59 -0400517
518 DCHECK(invoke->IsInvokeStaticOrDirect());
Nicolas Geoffray94015b92015-06-04 18:21:04 +0100519 codegen->GenerateStaticOrDirectCall(
520 invoke->AsInvokeStaticOrDirect(), Location::RegisterLocation(RDI));
Mark Mendellfb8d2792015-03-31 22:16:59 -0400521 codegen->RecordPcInfo(invoke, invoke->GetDexPc());
522
523 // Copy the result back to the expected output.
524 Location out = invoke->GetLocations()->Out();
525 if (out.IsValid()) {
526 DCHECK(out.IsRegister());
Andreas Gampe85b62f22015-09-09 13:15:38 -0700527 codegen->MoveFromReturnRegister(out, invoke->GetType());
Mark Mendellfb8d2792015-03-31 22:16:59 -0400528 }
529}
530
531static void CreateSSE41FPToFPLocations(ArenaAllocator* arena,
532 HInvoke* invoke,
533 CodeGeneratorX86_64* codegen) {
534 // Do we have instruction support?
535 if (codegen->GetInstructionSetFeatures().HasSSE4_1()) {
536 CreateFPToFPLocations(arena, invoke);
537 return;
538 }
539
540 // We have to fall back to a call to the intrinsic.
541 LocationSummary* locations = new (arena) LocationSummary(invoke,
542 LocationSummary::kCall);
543 InvokeRuntimeCallingConvention calling_convention;
544 locations->SetInAt(0, Location::RegisterLocation(calling_convention.GetFpuRegisterAt(0)));
545 locations->SetOut(Location::FpuRegisterLocation(XMM0));
546 // Needs to be RDI for the invoke.
547 locations->AddTemp(Location::RegisterLocation(RDI));
548}
549
550static void GenSSE41FPToFPIntrinsic(CodeGeneratorX86_64* codegen,
551 HInvoke* invoke,
552 X86_64Assembler* assembler,
553 int round_mode) {
554 LocationSummary* locations = invoke->GetLocations();
555 if (locations->WillCall()) {
556 InvokeOutOfLineIntrinsic(codegen, invoke);
557 } else {
558 XmmRegister in = locations->InAt(0).AsFpuRegister<XmmRegister>();
559 XmmRegister out = locations->Out().AsFpuRegister<XmmRegister>();
560 __ roundsd(out, in, Immediate(round_mode));
561 }
562}
563
564void IntrinsicLocationsBuilderX86_64::VisitMathCeil(HInvoke* invoke) {
565 CreateSSE41FPToFPLocations(arena_, invoke, codegen_);
566}
567
568void IntrinsicCodeGeneratorX86_64::VisitMathCeil(HInvoke* invoke) {
569 GenSSE41FPToFPIntrinsic(codegen_, invoke, GetAssembler(), 2);
570}
571
572void IntrinsicLocationsBuilderX86_64::VisitMathFloor(HInvoke* invoke) {
573 CreateSSE41FPToFPLocations(arena_, invoke, codegen_);
574}
575
576void IntrinsicCodeGeneratorX86_64::VisitMathFloor(HInvoke* invoke) {
577 GenSSE41FPToFPIntrinsic(codegen_, invoke, GetAssembler(), 1);
578}
579
580void IntrinsicLocationsBuilderX86_64::VisitMathRint(HInvoke* invoke) {
581 CreateSSE41FPToFPLocations(arena_, invoke, codegen_);
582}
583
584void IntrinsicCodeGeneratorX86_64::VisitMathRint(HInvoke* invoke) {
585 GenSSE41FPToFPIntrinsic(codegen_, invoke, GetAssembler(), 0);
586}
587
588static void CreateSSE41FPToIntLocations(ArenaAllocator* arena,
589 HInvoke* invoke,
590 CodeGeneratorX86_64* codegen) {
591 // Do we have instruction support?
592 if (codegen->GetInstructionSetFeatures().HasSSE4_1()) {
593 LocationSummary* locations = new (arena) LocationSummary(invoke,
594 LocationSummary::kNoCall,
595 kIntrinsified);
596 locations->SetInAt(0, Location::RequiresFpuRegister());
Pavel Vyssotski9ca25712015-07-31 13:03:17 +0600597 locations->SetOut(Location::RequiresRegister());
Mark Mendellfb8d2792015-03-31 22:16:59 -0400598 locations->AddTemp(Location::RequiresFpuRegister());
Mark Mendellfb8d2792015-03-31 22:16:59 -0400599 return;
600 }
601
602 // We have to fall back to a call to the intrinsic.
603 LocationSummary* locations = new (arena) LocationSummary(invoke,
604 LocationSummary::kCall);
605 InvokeRuntimeCallingConvention calling_convention;
606 locations->SetInAt(0, Location::RegisterLocation(calling_convention.GetFpuRegisterAt(0)));
607 locations->SetOut(Location::RegisterLocation(RAX));
608 // Needs to be RDI for the invoke.
609 locations->AddTemp(Location::RegisterLocation(RDI));
610}
611
612void IntrinsicLocationsBuilderX86_64::VisitMathRoundFloat(HInvoke* invoke) {
Andreas Gampee6d0d8d2015-12-28 09:54:29 -0800613 // See intrinsics.h.
614 if (kRoundIsPlusPointFive) {
615 CreateSSE41FPToIntLocations(arena_, invoke, codegen_);
616 }
Mark Mendellfb8d2792015-03-31 22:16:59 -0400617}
618
619void IntrinsicCodeGeneratorX86_64::VisitMathRoundFloat(HInvoke* invoke) {
620 LocationSummary* locations = invoke->GetLocations();
621 if (locations->WillCall()) {
622 InvokeOutOfLineIntrinsic(codegen_, invoke);
623 return;
624 }
625
626 // Implement RoundFloat as t1 = floor(input + 0.5f); convert to int.
627 XmmRegister in = locations->InAt(0).AsFpuRegister<XmmRegister>();
628 CpuRegister out = locations->Out().AsRegister<CpuRegister>();
Mark Mendell40741f32015-04-20 22:10:34 -0400629 XmmRegister inPlusPointFive = locations->GetTemp(0).AsFpuRegister<XmmRegister>();
Mark Mendell0c9497d2015-08-21 09:30:05 -0400630 NearLabel done, nan;
Mark Mendellfb8d2792015-03-31 22:16:59 -0400631 X86_64Assembler* assembler = GetAssembler();
632
Mark Mendell40741f32015-04-20 22:10:34 -0400633 // Load 0.5 into inPlusPointFive.
634 __ movss(inPlusPointFive, codegen_->LiteralFloatAddress(0.5f));
Mark Mendellfb8d2792015-03-31 22:16:59 -0400635
636 // Add in the input.
637 __ addss(inPlusPointFive, in);
638
639 // And truncate to an integer.
640 __ roundss(inPlusPointFive, inPlusPointFive, Immediate(1));
641
Pavel Vyssotski9ca25712015-07-31 13:03:17 +0600642 // Load maxInt into out.
643 codegen_->Load64BitValue(out, kPrimIntMax);
644
Mark Mendellfb8d2792015-03-31 22:16:59 -0400645 // if inPlusPointFive >= maxInt goto done
Mark Mendell40741f32015-04-20 22:10:34 -0400646 __ comiss(inPlusPointFive, codegen_->LiteralFloatAddress(static_cast<float>(kPrimIntMax)));
Mark Mendellfb8d2792015-03-31 22:16:59 -0400647 __ j(kAboveEqual, &done);
648
649 // if input == NaN goto nan
650 __ j(kUnordered, &nan);
651
652 // output = float-to-int-truncate(input)
653 __ cvttss2si(out, inPlusPointFive);
654 __ jmp(&done);
655 __ Bind(&nan);
656
657 // output = 0
658 __ xorl(out, out);
659 __ Bind(&done);
660}
661
662void IntrinsicLocationsBuilderX86_64::VisitMathRoundDouble(HInvoke* invoke) {
Andreas Gampee6d0d8d2015-12-28 09:54:29 -0800663 // See intrinsics.h.
664 if (kRoundIsPlusPointFive) {
665 CreateSSE41FPToIntLocations(arena_, invoke, codegen_);
666 }
Mark Mendellfb8d2792015-03-31 22:16:59 -0400667}
668
669void IntrinsicCodeGeneratorX86_64::VisitMathRoundDouble(HInvoke* invoke) {
670 LocationSummary* locations = invoke->GetLocations();
671 if (locations->WillCall()) {
672 InvokeOutOfLineIntrinsic(codegen_, invoke);
673 return;
674 }
675
676 // Implement RoundDouble as t1 = floor(input + 0.5); convert to long.
677 XmmRegister in = locations->InAt(0).AsFpuRegister<XmmRegister>();
678 CpuRegister out = locations->Out().AsRegister<CpuRegister>();
Mark Mendell40741f32015-04-20 22:10:34 -0400679 XmmRegister inPlusPointFive = locations->GetTemp(0).AsFpuRegister<XmmRegister>();
Mark Mendell0c9497d2015-08-21 09:30:05 -0400680 NearLabel done, nan;
Mark Mendellfb8d2792015-03-31 22:16:59 -0400681 X86_64Assembler* assembler = GetAssembler();
682
Mark Mendell40741f32015-04-20 22:10:34 -0400683 // Load 0.5 into inPlusPointFive.
684 __ movsd(inPlusPointFive, codegen_->LiteralDoubleAddress(0.5));
Mark Mendellfb8d2792015-03-31 22:16:59 -0400685
686 // Add in the input.
687 __ addsd(inPlusPointFive, in);
688
689 // And truncate to an integer.
690 __ roundsd(inPlusPointFive, inPlusPointFive, Immediate(1));
691
Pavel Vyssotski9ca25712015-07-31 13:03:17 +0600692 // Load maxLong into out.
693 codegen_->Load64BitValue(out, kPrimLongMax);
694
Mark Mendellfb8d2792015-03-31 22:16:59 -0400695 // if inPlusPointFive >= maxLong goto done
Mark Mendell40741f32015-04-20 22:10:34 -0400696 __ comisd(inPlusPointFive, codegen_->LiteralDoubleAddress(static_cast<double>(kPrimLongMax)));
Mark Mendellfb8d2792015-03-31 22:16:59 -0400697 __ j(kAboveEqual, &done);
698
699 // if input == NaN goto nan
700 __ j(kUnordered, &nan);
701
702 // output = double-to-long-truncate(input)
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000703 __ cvttsd2si(out, inPlusPointFive, /* is64bit */ true);
Mark Mendellfb8d2792015-03-31 22:16:59 -0400704 __ jmp(&done);
705 __ Bind(&nan);
706
707 // output = 0
Mark Mendell92e83bf2015-05-07 11:25:03 -0400708 __ xorl(out, out);
Mark Mendellfb8d2792015-03-31 22:16:59 -0400709 __ Bind(&done);
710}
711
Mark Mendella4f12202015-08-06 15:23:34 -0400712static void CreateFPToFPCallLocations(ArenaAllocator* arena,
713 HInvoke* invoke) {
714 LocationSummary* locations = new (arena) LocationSummary(invoke,
715 LocationSummary::kCall,
716 kIntrinsified);
717 InvokeRuntimeCallingConvention calling_convention;
718 locations->SetInAt(0, Location::FpuRegisterLocation(calling_convention.GetFpuRegisterAt(0)));
719 locations->SetOut(Location::FpuRegisterLocation(XMM0));
720
721 // We have to ensure that the native code doesn't clobber the XMM registers which are
722 // non-volatile for ART, but volatile for Native calls. This will ensure that they are
723 // saved in the prologue and properly restored.
724 for (auto fp_reg : non_volatile_xmm_regs) {
725 locations->AddTemp(Location::FpuRegisterLocation(fp_reg));
726 }
727}
728
729static void GenFPToFPCall(HInvoke* invoke, CodeGeneratorX86_64* codegen,
730 QuickEntrypointEnum entry) {
731 LocationSummary* locations = invoke->GetLocations();
732 DCHECK(locations->WillCall());
733 DCHECK(invoke->IsInvokeStaticOrDirect());
734 X86_64Assembler* assembler = codegen->GetAssembler();
735
736 __ gs()->call(Address::Absolute(GetThreadOffset<kX86_64WordSize>(entry), true));
737 codegen->RecordPcInfo(invoke, invoke->GetDexPc());
738}
739
740void IntrinsicLocationsBuilderX86_64::VisitMathCos(HInvoke* invoke) {
741 CreateFPToFPCallLocations(arena_, invoke);
742}
743
744void IntrinsicCodeGeneratorX86_64::VisitMathCos(HInvoke* invoke) {
745 GenFPToFPCall(invoke, codegen_, kQuickCos);
746}
747
748void IntrinsicLocationsBuilderX86_64::VisitMathSin(HInvoke* invoke) {
749 CreateFPToFPCallLocations(arena_, invoke);
750}
751
752void IntrinsicCodeGeneratorX86_64::VisitMathSin(HInvoke* invoke) {
753 GenFPToFPCall(invoke, codegen_, kQuickSin);
754}
755
756void IntrinsicLocationsBuilderX86_64::VisitMathAcos(HInvoke* invoke) {
757 CreateFPToFPCallLocations(arena_, invoke);
758}
759
760void IntrinsicCodeGeneratorX86_64::VisitMathAcos(HInvoke* invoke) {
761 GenFPToFPCall(invoke, codegen_, kQuickAcos);
762}
763
764void IntrinsicLocationsBuilderX86_64::VisitMathAsin(HInvoke* invoke) {
765 CreateFPToFPCallLocations(arena_, invoke);
766}
767
768void IntrinsicCodeGeneratorX86_64::VisitMathAsin(HInvoke* invoke) {
769 GenFPToFPCall(invoke, codegen_, kQuickAsin);
770}
771
772void IntrinsicLocationsBuilderX86_64::VisitMathAtan(HInvoke* invoke) {
773 CreateFPToFPCallLocations(arena_, invoke);
774}
775
776void IntrinsicCodeGeneratorX86_64::VisitMathAtan(HInvoke* invoke) {
777 GenFPToFPCall(invoke, codegen_, kQuickAtan);
778}
779
780void IntrinsicLocationsBuilderX86_64::VisitMathCbrt(HInvoke* invoke) {
781 CreateFPToFPCallLocations(arena_, invoke);
782}
783
784void IntrinsicCodeGeneratorX86_64::VisitMathCbrt(HInvoke* invoke) {
785 GenFPToFPCall(invoke, codegen_, kQuickCbrt);
786}
787
788void IntrinsicLocationsBuilderX86_64::VisitMathCosh(HInvoke* invoke) {
789 CreateFPToFPCallLocations(arena_, invoke);
790}
791
792void IntrinsicCodeGeneratorX86_64::VisitMathCosh(HInvoke* invoke) {
793 GenFPToFPCall(invoke, codegen_, kQuickCosh);
794}
795
796void IntrinsicLocationsBuilderX86_64::VisitMathExp(HInvoke* invoke) {
797 CreateFPToFPCallLocations(arena_, invoke);
798}
799
800void IntrinsicCodeGeneratorX86_64::VisitMathExp(HInvoke* invoke) {
801 GenFPToFPCall(invoke, codegen_, kQuickExp);
802}
803
804void IntrinsicLocationsBuilderX86_64::VisitMathExpm1(HInvoke* invoke) {
805 CreateFPToFPCallLocations(arena_, invoke);
806}
807
808void IntrinsicCodeGeneratorX86_64::VisitMathExpm1(HInvoke* invoke) {
809 GenFPToFPCall(invoke, codegen_, kQuickExpm1);
810}
811
812void IntrinsicLocationsBuilderX86_64::VisitMathLog(HInvoke* invoke) {
813 CreateFPToFPCallLocations(arena_, invoke);
814}
815
816void IntrinsicCodeGeneratorX86_64::VisitMathLog(HInvoke* invoke) {
817 GenFPToFPCall(invoke, codegen_, kQuickLog);
818}
819
820void IntrinsicLocationsBuilderX86_64::VisitMathLog10(HInvoke* invoke) {
821 CreateFPToFPCallLocations(arena_, invoke);
822}
823
824void IntrinsicCodeGeneratorX86_64::VisitMathLog10(HInvoke* invoke) {
825 GenFPToFPCall(invoke, codegen_, kQuickLog10);
826}
827
828void IntrinsicLocationsBuilderX86_64::VisitMathSinh(HInvoke* invoke) {
829 CreateFPToFPCallLocations(arena_, invoke);
830}
831
832void IntrinsicCodeGeneratorX86_64::VisitMathSinh(HInvoke* invoke) {
833 GenFPToFPCall(invoke, codegen_, kQuickSinh);
834}
835
836void IntrinsicLocationsBuilderX86_64::VisitMathTan(HInvoke* invoke) {
837 CreateFPToFPCallLocations(arena_, invoke);
838}
839
840void IntrinsicCodeGeneratorX86_64::VisitMathTan(HInvoke* invoke) {
841 GenFPToFPCall(invoke, codegen_, kQuickTan);
842}
843
844void IntrinsicLocationsBuilderX86_64::VisitMathTanh(HInvoke* invoke) {
845 CreateFPToFPCallLocations(arena_, invoke);
846}
847
848void IntrinsicCodeGeneratorX86_64::VisitMathTanh(HInvoke* invoke) {
849 GenFPToFPCall(invoke, codegen_, kQuickTanh);
850}
851
852static void CreateFPFPToFPCallLocations(ArenaAllocator* arena,
853 HInvoke* invoke) {
854 LocationSummary* locations = new (arena) LocationSummary(invoke,
855 LocationSummary::kCall,
856 kIntrinsified);
857 InvokeRuntimeCallingConvention calling_convention;
858 locations->SetInAt(0, Location::FpuRegisterLocation(calling_convention.GetFpuRegisterAt(0)));
859 locations->SetInAt(1, Location::FpuRegisterLocation(calling_convention.GetFpuRegisterAt(1)));
860 locations->SetOut(Location::FpuRegisterLocation(XMM0));
861
862 // We have to ensure that the native code doesn't clobber the XMM registers which are
863 // non-volatile for ART, but volatile for Native calls. This will ensure that they are
864 // saved in the prologue and properly restored.
865 for (auto fp_reg : non_volatile_xmm_regs) {
866 locations->AddTemp(Location::FpuRegisterLocation(fp_reg));
867 }
868}
869
870void IntrinsicLocationsBuilderX86_64::VisitMathAtan2(HInvoke* invoke) {
871 CreateFPFPToFPCallLocations(arena_, invoke);
872}
873
874void IntrinsicCodeGeneratorX86_64::VisitMathAtan2(HInvoke* invoke) {
875 GenFPToFPCall(invoke, codegen_, kQuickAtan2);
876}
877
878void IntrinsicLocationsBuilderX86_64::VisitMathHypot(HInvoke* invoke) {
879 CreateFPFPToFPCallLocations(arena_, invoke);
880}
881
882void IntrinsicCodeGeneratorX86_64::VisitMathHypot(HInvoke* invoke) {
883 GenFPToFPCall(invoke, codegen_, kQuickHypot);
884}
885
886void IntrinsicLocationsBuilderX86_64::VisitMathNextAfter(HInvoke* invoke) {
887 CreateFPFPToFPCallLocations(arena_, invoke);
888}
889
890void IntrinsicCodeGeneratorX86_64::VisitMathNextAfter(HInvoke* invoke) {
891 GenFPToFPCall(invoke, codegen_, kQuickNextAfter);
892}
893
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800894void IntrinsicLocationsBuilderX86_64::VisitStringCharAt(HInvoke* invoke) {
895 // The inputs plus one temp.
896 LocationSummary* locations = new (arena_) LocationSummary(invoke,
897 LocationSummary::kCallOnSlowPath,
898 kIntrinsified);
899 locations->SetInAt(0, Location::RequiresRegister());
900 locations->SetInAt(1, Location::RequiresRegister());
901 locations->SetOut(Location::SameAsFirstInput());
902 locations->AddTemp(Location::RequiresRegister());
903}
904
905void IntrinsicCodeGeneratorX86_64::VisitStringCharAt(HInvoke* invoke) {
906 LocationSummary* locations = invoke->GetLocations();
907
Mark Mendell6bc53a92015-07-01 14:26:52 -0400908 // Location of reference to data array.
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800909 const int32_t value_offset = mirror::String::ValueOffset().Int32Value();
Mark Mendell6bc53a92015-07-01 14:26:52 -0400910 // Location of count.
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800911 const int32_t count_offset = mirror::String::CountOffset().Int32Value();
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800912
913 CpuRegister obj = locations->InAt(0).AsRegister<CpuRegister>();
914 CpuRegister idx = locations->InAt(1).AsRegister<CpuRegister>();
915 CpuRegister out = locations->Out().AsRegister<CpuRegister>();
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800916
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800917 // TODO: Maybe we can support range check elimination. Overall, though, I think it's not worth
918 // the cost.
919 // TODO: For simplicity, the index parameter is requested in a register, so different from Quick
920 // we will not optimize the code for constants (which would save a register).
921
Andreas Gampe85b62f22015-09-09 13:15:38 -0700922 SlowPathCode* slow_path = new (GetAllocator()) IntrinsicSlowPathX86_64(invoke);
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800923 codegen_->AddSlowPath(slow_path);
924
925 X86_64Assembler* assembler = GetAssembler();
926
927 __ cmpl(idx, Address(obj, count_offset));
Andreas Gampe878d58c2015-01-15 23:24:00 -0800928 codegen_->MaybeRecordImplicitNullCheck(invoke);
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800929 __ j(kAboveEqual, slow_path->GetEntryLabel());
930
Jeff Hao848f70a2014-01-15 13:49:50 -0800931 // out = out[2*idx].
932 __ movzxw(out, Address(out, idx, ScaleFactor::TIMES_2, value_offset));
Andreas Gampe71fb52f2014-12-29 17:43:08 -0800933
934 __ Bind(slow_path->GetExitLabel());
935}
936
Mark Mendell6bc53a92015-07-01 14:26:52 -0400937void IntrinsicLocationsBuilderX86_64::VisitSystemArrayCopyChar(HInvoke* invoke) {
938 // Check to see if we have known failures that will cause us to have to bail out
939 // to the runtime, and just generate the runtime call directly.
940 HIntConstant* src_pos = invoke->InputAt(1)->AsIntConstant();
941 HIntConstant* dest_pos = invoke->InputAt(3)->AsIntConstant();
942
943 // The positions must be non-negative.
944 if ((src_pos != nullptr && src_pos->GetValue() < 0) ||
945 (dest_pos != nullptr && dest_pos->GetValue() < 0)) {
946 // We will have to fail anyways.
947 return;
948 }
949
950 // The length must be > 0.
951 HIntConstant* length = invoke->InputAt(4)->AsIntConstant();
952 if (length != nullptr) {
953 int32_t len = length->GetValue();
954 if (len < 0) {
955 // Just call as normal.
956 return;
957 }
958 }
959
960 LocationSummary* locations = new (arena_) LocationSummary(invoke,
961 LocationSummary::kCallOnSlowPath,
962 kIntrinsified);
Nicolas Geoffrayee3cf072015-10-06 11:45:02 +0100963 // arraycopy(Object src, int src_pos, Object dest, int dest_pos, int length).
Mark Mendell6bc53a92015-07-01 14:26:52 -0400964 locations->SetInAt(0, Location::RequiresRegister());
965 locations->SetInAt(1, Location::RegisterOrConstant(invoke->InputAt(1)));
966 locations->SetInAt(2, Location::RequiresRegister());
967 locations->SetInAt(3, Location::RegisterOrConstant(invoke->InputAt(3)));
968 locations->SetInAt(4, Location::RegisterOrConstant(invoke->InputAt(4)));
969
970 // And we need some temporaries. We will use REP MOVSW, so we need fixed registers.
971 locations->AddTemp(Location::RegisterLocation(RSI));
972 locations->AddTemp(Location::RegisterLocation(RDI));
973 locations->AddTemp(Location::RegisterLocation(RCX));
974}
975
976static void CheckPosition(X86_64Assembler* assembler,
977 Location pos,
978 CpuRegister input,
Nicolas Geoffrayee3cf072015-10-06 11:45:02 +0100979 Location length,
Andreas Gampe85b62f22015-09-09 13:15:38 -0700980 SlowPathCode* slow_path,
Mark Mendell6bc53a92015-07-01 14:26:52 -0400981 CpuRegister input_len,
Nicolas Geoffrayee3cf072015-10-06 11:45:02 +0100982 CpuRegister temp,
983 bool length_is_input_length = false) {
984 // Where is the length in the Array?
Mark Mendell6bc53a92015-07-01 14:26:52 -0400985 const uint32_t length_offset = mirror::Array::LengthOffset().Uint32Value();
986
987 if (pos.IsConstant()) {
988 int32_t pos_const = pos.GetConstant()->AsIntConstant()->GetValue();
989 if (pos_const == 0) {
Nicolas Geoffrayee3cf072015-10-06 11:45:02 +0100990 if (!length_is_input_length) {
991 // Check that length(input) >= length.
992 if (length.IsConstant()) {
993 __ cmpl(Address(input, length_offset),
994 Immediate(length.GetConstant()->AsIntConstant()->GetValue()));
995 } else {
996 __ cmpl(Address(input, length_offset), length.AsRegister<CpuRegister>());
997 }
998 __ j(kLess, slow_path->GetEntryLabel());
999 }
Mark Mendell6bc53a92015-07-01 14:26:52 -04001000 } else {
1001 // Check that length(input) >= pos.
1002 __ movl(input_len, Address(input, length_offset));
1003 __ cmpl(input_len, Immediate(pos_const));
1004 __ j(kLess, slow_path->GetEntryLabel());
1005
1006 // Check that (length(input) - pos) >= length.
1007 __ leal(temp, Address(input_len, -pos_const));
Nicolas Geoffrayee3cf072015-10-06 11:45:02 +01001008 if (length.IsConstant()) {
1009 __ cmpl(temp, Immediate(length.GetConstant()->AsIntConstant()->GetValue()));
1010 } else {
1011 __ cmpl(temp, length.AsRegister<CpuRegister>());
1012 }
Mark Mendell6bc53a92015-07-01 14:26:52 -04001013 __ j(kLess, slow_path->GetEntryLabel());
1014 }
Nicolas Geoffrayee3cf072015-10-06 11:45:02 +01001015 } else if (length_is_input_length) {
1016 // The only way the copy can succeed is if pos is zero.
1017 CpuRegister pos_reg = pos.AsRegister<CpuRegister>();
1018 __ testl(pos_reg, pos_reg);
1019 __ j(kNotEqual, slow_path->GetEntryLabel());
Mark Mendell6bc53a92015-07-01 14:26:52 -04001020 } else {
1021 // Check that pos >= 0.
1022 CpuRegister pos_reg = pos.AsRegister<CpuRegister>();
1023 __ testl(pos_reg, pos_reg);
1024 __ j(kLess, slow_path->GetEntryLabel());
1025
1026 // Check that pos <= length(input).
1027 __ cmpl(Address(input, length_offset), pos_reg);
1028 __ j(kLess, slow_path->GetEntryLabel());
1029
1030 // Check that (length(input) - pos) >= length.
1031 __ movl(temp, Address(input, length_offset));
1032 __ subl(temp, pos_reg);
Nicolas Geoffrayee3cf072015-10-06 11:45:02 +01001033 if (length.IsConstant()) {
1034 __ cmpl(temp, Immediate(length.GetConstant()->AsIntConstant()->GetValue()));
1035 } else {
1036 __ cmpl(temp, length.AsRegister<CpuRegister>());
1037 }
Mark Mendell6bc53a92015-07-01 14:26:52 -04001038 __ j(kLess, slow_path->GetEntryLabel());
1039 }
1040}
1041
1042void IntrinsicCodeGeneratorX86_64::VisitSystemArrayCopyChar(HInvoke* invoke) {
1043 X86_64Assembler* assembler = GetAssembler();
1044 LocationSummary* locations = invoke->GetLocations();
1045
1046 CpuRegister src = locations->InAt(0).AsRegister<CpuRegister>();
Nicolas Geoffrayee3cf072015-10-06 11:45:02 +01001047 Location src_pos = locations->InAt(1);
Mark Mendell6bc53a92015-07-01 14:26:52 -04001048 CpuRegister dest = locations->InAt(2).AsRegister<CpuRegister>();
Nicolas Geoffrayee3cf072015-10-06 11:45:02 +01001049 Location dest_pos = locations->InAt(3);
Mark Mendell6bc53a92015-07-01 14:26:52 -04001050 Location length = locations->InAt(4);
1051
1052 // Temporaries that we need for MOVSW.
1053 CpuRegister src_base = locations->GetTemp(0).AsRegister<CpuRegister>();
1054 DCHECK_EQ(src_base.AsRegister(), RSI);
1055 CpuRegister dest_base = locations->GetTemp(1).AsRegister<CpuRegister>();
1056 DCHECK_EQ(dest_base.AsRegister(), RDI);
1057 CpuRegister count = locations->GetTemp(2).AsRegister<CpuRegister>();
1058 DCHECK_EQ(count.AsRegister(), RCX);
1059
Andreas Gampe85b62f22015-09-09 13:15:38 -07001060 SlowPathCode* slow_path = new (GetAllocator()) IntrinsicSlowPathX86_64(invoke);
Mark Mendell6bc53a92015-07-01 14:26:52 -04001061 codegen_->AddSlowPath(slow_path);
1062
1063 // Bail out if the source and destination are the same.
1064 __ cmpl(src, dest);
1065 __ j(kEqual, slow_path->GetEntryLabel());
1066
1067 // Bail out if the source is null.
1068 __ testl(src, src);
1069 __ j(kEqual, slow_path->GetEntryLabel());
1070
1071 // Bail out if the destination is null.
1072 __ testl(dest, dest);
1073 __ j(kEqual, slow_path->GetEntryLabel());
1074
1075 // If the length is negative, bail out.
1076 // We have already checked in the LocationsBuilder for the constant case.
1077 if (!length.IsConstant()) {
1078 __ testl(length.AsRegister<CpuRegister>(), length.AsRegister<CpuRegister>());
1079 __ j(kLess, slow_path->GetEntryLabel());
1080 }
1081
Nicolas Geoffrayee3cf072015-10-06 11:45:02 +01001082 // Validity checks: source.
1083 CheckPosition(assembler, src_pos, src, length, slow_path, src_base, dest_base);
1084
1085 // Validity checks: dest.
1086 CheckPosition(assembler, dest_pos, dest, length, slow_path, src_base, dest_base);
1087
Mark Mendell6bc53a92015-07-01 14:26:52 -04001088 // We need the count in RCX.
1089 if (length.IsConstant()) {
1090 __ movl(count, Immediate(length.GetConstant()->AsIntConstant()->GetValue()));
1091 } else {
1092 __ movl(count, length.AsRegister<CpuRegister>());
1093 }
1094
Mark Mendell6bc53a92015-07-01 14:26:52 -04001095 // Okay, everything checks out. Finally time to do the copy.
1096 // Check assumption that sizeof(Char) is 2 (used in scaling below).
1097 const size_t char_size = Primitive::ComponentSize(Primitive::kPrimChar);
1098 DCHECK_EQ(char_size, 2u);
1099
1100 const uint32_t data_offset = mirror::Array::DataOffset(char_size).Uint32Value();
1101
Nicolas Geoffrayee3cf072015-10-06 11:45:02 +01001102 if (src_pos.IsConstant()) {
1103 int32_t src_pos_const = src_pos.GetConstant()->AsIntConstant()->GetValue();
1104 __ leal(src_base, Address(src, char_size * src_pos_const + data_offset));
Mark Mendell6bc53a92015-07-01 14:26:52 -04001105 } else {
Nicolas Geoffrayee3cf072015-10-06 11:45:02 +01001106 __ leal(src_base, Address(src, src_pos.AsRegister<CpuRegister>(),
Mark Mendell6bc53a92015-07-01 14:26:52 -04001107 ScaleFactor::TIMES_2, data_offset));
1108 }
Nicolas Geoffrayee3cf072015-10-06 11:45:02 +01001109 if (dest_pos.IsConstant()) {
1110 int32_t dest_pos_const = dest_pos.GetConstant()->AsIntConstant()->GetValue();
1111 __ leal(dest_base, Address(dest, char_size * dest_pos_const + data_offset));
Mark Mendell6bc53a92015-07-01 14:26:52 -04001112 } else {
Nicolas Geoffrayee3cf072015-10-06 11:45:02 +01001113 __ leal(dest_base, Address(dest, dest_pos.AsRegister<CpuRegister>(),
Mark Mendell6bc53a92015-07-01 14:26:52 -04001114 ScaleFactor::TIMES_2, data_offset));
1115 }
1116
1117 // Do the move.
1118 __ rep_movsw();
1119
1120 __ Bind(slow_path->GetExitLabel());
1121}
1122
Nicolas Geoffrayee3cf072015-10-06 11:45:02 +01001123
1124void IntrinsicLocationsBuilderX86_64::VisitSystemArrayCopy(HInvoke* invoke) {
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001125 CodeGenerator::CreateSystemArrayCopyLocationSummary(invoke);
Nicolas Geoffrayee3cf072015-10-06 11:45:02 +01001126}
1127
Roland Levillain0d5a2812015-11-13 10:07:31 +00001128// TODO: Implement read barriers in the SystemArrayCopy intrinsic.
1129// Note that this code path is not used (yet) because we do not
1130// intrinsify methods that can go into the IntrinsicSlowPathX86_64
1131// slow path.
Nicolas Geoffrayee3cf072015-10-06 11:45:02 +01001132void IntrinsicCodeGeneratorX86_64::VisitSystemArrayCopy(HInvoke* invoke) {
1133 X86_64Assembler* assembler = GetAssembler();
1134 LocationSummary* locations = invoke->GetLocations();
1135
1136 uint32_t class_offset = mirror::Object::ClassOffset().Int32Value();
1137 uint32_t super_offset = mirror::Class::SuperClassOffset().Int32Value();
1138 uint32_t component_offset = mirror::Class::ComponentTypeOffset().Int32Value();
1139 uint32_t primitive_offset = mirror::Class::PrimitiveTypeOffset().Int32Value();
1140
1141 CpuRegister src = locations->InAt(0).AsRegister<CpuRegister>();
1142 Location src_pos = locations->InAt(1);
1143 CpuRegister dest = locations->InAt(2).AsRegister<CpuRegister>();
1144 Location dest_pos = locations->InAt(3);
1145 Location length = locations->InAt(4);
1146 CpuRegister temp1 = locations->GetTemp(0).AsRegister<CpuRegister>();
1147 CpuRegister temp2 = locations->GetTemp(1).AsRegister<CpuRegister>();
1148 CpuRegister temp3 = locations->GetTemp(2).AsRegister<CpuRegister>();
1149
1150 SlowPathCode* slow_path = new (GetAllocator()) IntrinsicSlowPathX86_64(invoke);
1151 codegen_->AddSlowPath(slow_path);
1152
1153 NearLabel ok;
1154 SystemArrayCopyOptimizations optimizations(invoke);
1155
1156 if (!optimizations.GetDestinationIsSource()) {
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001157 if (!src_pos.IsConstant() || !dest_pos.IsConstant()) {
1158 __ cmpl(src, dest);
1159 }
Nicolas Geoffrayee3cf072015-10-06 11:45:02 +01001160 }
1161
1162 // If source and destination are the same, we go to slow path if we need to do
1163 // forward copying.
1164 if (src_pos.IsConstant()) {
1165 int32_t src_pos_constant = src_pos.GetConstant()->AsIntConstant()->GetValue();
1166 if (dest_pos.IsConstant()) {
1167 // Checked when building locations.
1168 DCHECK(!optimizations.GetDestinationIsSource()
1169 || (src_pos_constant >= dest_pos.GetConstant()->AsIntConstant()->GetValue()));
1170 } else {
1171 if (!optimizations.GetDestinationIsSource()) {
1172 __ j(kNotEqual, &ok);
1173 }
1174 __ cmpl(dest_pos.AsRegister<CpuRegister>(), Immediate(src_pos_constant));
1175 __ j(kGreater, slow_path->GetEntryLabel());
1176 }
1177 } else {
1178 if (!optimizations.GetDestinationIsSource()) {
1179 __ j(kNotEqual, &ok);
1180 }
1181 if (dest_pos.IsConstant()) {
1182 int32_t dest_pos_constant = dest_pos.GetConstant()->AsIntConstant()->GetValue();
1183 __ cmpl(src_pos.AsRegister<CpuRegister>(), Immediate(dest_pos_constant));
1184 __ j(kLess, slow_path->GetEntryLabel());
1185 } else {
1186 __ cmpl(src_pos.AsRegister<CpuRegister>(), dest_pos.AsRegister<CpuRegister>());
1187 __ j(kLess, slow_path->GetEntryLabel());
1188 }
1189 }
1190
1191 __ Bind(&ok);
1192
1193 if (!optimizations.GetSourceIsNotNull()) {
1194 // Bail out if the source is null.
1195 __ testl(src, src);
1196 __ j(kEqual, slow_path->GetEntryLabel());
1197 }
1198
1199 if (!optimizations.GetDestinationIsNotNull() && !optimizations.GetDestinationIsSource()) {
1200 // Bail out if the destination is null.
1201 __ testl(dest, dest);
1202 __ j(kEqual, slow_path->GetEntryLabel());
1203 }
1204
1205 // If the length is negative, bail out.
1206 // We have already checked in the LocationsBuilder for the constant case.
1207 if (!length.IsConstant() &&
1208 !optimizations.GetCountIsSourceLength() &&
1209 !optimizations.GetCountIsDestinationLength()) {
1210 __ testl(length.AsRegister<CpuRegister>(), length.AsRegister<CpuRegister>());
1211 __ j(kLess, slow_path->GetEntryLabel());
1212 }
1213
1214 // Validity checks: source.
1215 CheckPosition(assembler,
1216 src_pos,
1217 src,
1218 length,
1219 slow_path,
1220 temp1,
1221 temp2,
1222 optimizations.GetCountIsSourceLength());
1223
1224 // Validity checks: dest.
1225 CheckPosition(assembler,
1226 dest_pos,
1227 dest,
1228 length,
1229 slow_path,
1230 temp1,
1231 temp2,
1232 optimizations.GetCountIsDestinationLength());
1233
1234 if (!optimizations.GetDoesNotNeedTypeCheck()) {
1235 // Check whether all elements of the source array are assignable to the component
1236 // type of the destination array. We do two checks: the classes are the same,
1237 // or the destination is Object[]. If none of these checks succeed, we go to the
1238 // slow path.
1239 __ movl(temp1, Address(dest, class_offset));
1240 __ movl(temp2, Address(src, class_offset));
1241 bool did_unpoison = false;
1242 if (!optimizations.GetDestinationIsNonPrimitiveArray() ||
1243 !optimizations.GetSourceIsNonPrimitiveArray()) {
1244 // One or two of the references need to be unpoisoned. Unpoisoned them
1245 // both to make the identity check valid.
1246 __ MaybeUnpoisonHeapReference(temp1);
1247 __ MaybeUnpoisonHeapReference(temp2);
1248 did_unpoison = true;
1249 }
1250
1251 if (!optimizations.GetDestinationIsNonPrimitiveArray()) {
1252 // Bail out if the destination is not a non primitive array.
1253 __ movl(CpuRegister(TMP), Address(temp1, component_offset));
1254 __ testl(CpuRegister(TMP), CpuRegister(TMP));
1255 __ j(kEqual, slow_path->GetEntryLabel());
1256 __ MaybeUnpoisonHeapReference(CpuRegister(TMP));
1257 __ cmpw(Address(CpuRegister(TMP), primitive_offset), Immediate(Primitive::kPrimNot));
1258 __ j(kNotEqual, slow_path->GetEntryLabel());
1259 }
1260
1261 if (!optimizations.GetSourceIsNonPrimitiveArray()) {
1262 // Bail out if the source is not a non primitive array.
1263 __ movl(CpuRegister(TMP), Address(temp2, component_offset));
1264 __ testl(CpuRegister(TMP), CpuRegister(TMP));
1265 __ j(kEqual, slow_path->GetEntryLabel());
1266 __ MaybeUnpoisonHeapReference(CpuRegister(TMP));
1267 __ cmpw(Address(CpuRegister(TMP), primitive_offset), Immediate(Primitive::kPrimNot));
1268 __ j(kNotEqual, slow_path->GetEntryLabel());
1269 }
1270
1271 __ cmpl(temp1, temp2);
1272
1273 if (optimizations.GetDestinationIsTypedObjectArray()) {
1274 NearLabel do_copy;
1275 __ j(kEqual, &do_copy);
1276 if (!did_unpoison) {
1277 __ MaybeUnpoisonHeapReference(temp1);
1278 }
1279 __ movl(temp1, Address(temp1, component_offset));
1280 __ MaybeUnpoisonHeapReference(temp1);
1281 __ movl(temp1, Address(temp1, super_offset));
1282 // No need to unpoison the result, we're comparing against null.
1283 __ testl(temp1, temp1);
1284 __ j(kNotEqual, slow_path->GetEntryLabel());
1285 __ Bind(&do_copy);
1286 } else {
1287 __ j(kNotEqual, slow_path->GetEntryLabel());
1288 }
1289 } else if (!optimizations.GetSourceIsNonPrimitiveArray()) {
1290 DCHECK(optimizations.GetDestinationIsNonPrimitiveArray());
1291 // Bail out if the source is not a non primitive array.
1292 __ movl(temp1, Address(src, class_offset));
1293 __ MaybeUnpoisonHeapReference(temp1);
1294 __ movl(CpuRegister(TMP), Address(temp1, component_offset));
1295 __ testl(CpuRegister(TMP), CpuRegister(TMP));
1296 __ j(kEqual, slow_path->GetEntryLabel());
1297 __ MaybeUnpoisonHeapReference(CpuRegister(TMP));
1298 __ cmpw(Address(CpuRegister(TMP), primitive_offset), Immediate(Primitive::kPrimNot));
1299 __ j(kNotEqual, slow_path->GetEntryLabel());
1300 }
1301
1302 // Compute base source address, base destination address, and end source address.
1303
1304 uint32_t element_size = sizeof(int32_t);
1305 uint32_t offset = mirror::Array::DataOffset(element_size).Uint32Value();
1306 if (src_pos.IsConstant()) {
1307 int32_t constant = src_pos.GetConstant()->AsIntConstant()->GetValue();
1308 __ leal(temp1, Address(src, element_size * constant + offset));
1309 } else {
1310 __ leal(temp1, Address(src, src_pos.AsRegister<CpuRegister>(), ScaleFactor::TIMES_4, offset));
1311 }
1312
1313 if (dest_pos.IsConstant()) {
1314 int32_t constant = dest_pos.GetConstant()->AsIntConstant()->GetValue();
1315 __ leal(temp2, Address(dest, element_size * constant + offset));
1316 } else {
1317 __ leal(temp2, Address(dest, dest_pos.AsRegister<CpuRegister>(), ScaleFactor::TIMES_4, offset));
1318 }
1319
1320 if (length.IsConstant()) {
1321 int32_t constant = length.GetConstant()->AsIntConstant()->GetValue();
1322 __ leal(temp3, Address(temp1, element_size * constant));
1323 } else {
1324 __ leal(temp3, Address(temp1, length.AsRegister<CpuRegister>(), ScaleFactor::TIMES_4, 0));
1325 }
1326
1327 // Iterate over the arrays and do a raw copy of the objects. We don't need to
1328 // poison/unpoison, nor do any read barrier as the next uses of the destination
1329 // array will do it.
1330 NearLabel loop, done;
1331 __ cmpl(temp1, temp3);
1332 __ j(kEqual, &done);
1333 __ Bind(&loop);
1334 __ movl(CpuRegister(TMP), Address(temp1, 0));
1335 __ movl(Address(temp2, 0), CpuRegister(TMP));
1336 __ addl(temp1, Immediate(element_size));
1337 __ addl(temp2, Immediate(element_size));
1338 __ cmpl(temp1, temp3);
1339 __ j(kNotEqual, &loop);
1340 __ Bind(&done);
1341
1342 // We only need one card marking on the destination array.
1343 codegen_->MarkGCCard(temp1,
1344 temp2,
1345 dest,
1346 CpuRegister(kNoRegister),
Roland Levillainbf84a3d2015-12-04 14:33:02 +00001347 /* value_can_be_null */ false);
Nicolas Geoffrayee3cf072015-10-06 11:45:02 +01001348
1349 __ Bind(slow_path->GetExitLabel());
1350}
1351
Nicolas Geoffrayd75948a2015-03-27 09:53:16 +00001352void IntrinsicLocationsBuilderX86_64::VisitStringCompareTo(HInvoke* invoke) {
1353 LocationSummary* locations = new (arena_) LocationSummary(invoke,
1354 LocationSummary::kCall,
1355 kIntrinsified);
1356 InvokeRuntimeCallingConvention calling_convention;
1357 locations->SetInAt(0, Location::RegisterLocation(calling_convention.GetRegisterAt(0)));
1358 locations->SetInAt(1, Location::RegisterLocation(calling_convention.GetRegisterAt(1)));
1359 locations->SetOut(Location::RegisterLocation(RAX));
1360}
1361
1362void IntrinsicCodeGeneratorX86_64::VisitStringCompareTo(HInvoke* invoke) {
1363 X86_64Assembler* assembler = GetAssembler();
1364 LocationSummary* locations = invoke->GetLocations();
1365
Nicolas Geoffray512e04d2015-03-27 17:21:24 +00001366 // Note that the null check must have been done earlier.
Calin Juravle641547a2015-04-21 22:08:51 +01001367 DCHECK(!invoke->CanDoImplicitNullCheckOn(invoke->InputAt(0)));
Nicolas Geoffrayd75948a2015-03-27 09:53:16 +00001368
1369 CpuRegister argument = locations->InAt(1).AsRegister<CpuRegister>();
1370 __ testl(argument, argument);
Andreas Gampe85b62f22015-09-09 13:15:38 -07001371 SlowPathCode* slow_path = new (GetAllocator()) IntrinsicSlowPathX86_64(invoke);
Nicolas Geoffrayd75948a2015-03-27 09:53:16 +00001372 codegen_->AddSlowPath(slow_path);
1373 __ j(kEqual, slow_path->GetEntryLabel());
1374
Roland Levillainbf84a3d2015-12-04 14:33:02 +00001375 __ gs()->call(Address::Absolute(QUICK_ENTRYPOINT_OFFSET(kX86_64WordSize, pStringCompareTo),
1376 /* no_rip */ true));
Nicolas Geoffrayd75948a2015-03-27 09:53:16 +00001377 __ Bind(slow_path->GetExitLabel());
1378}
1379
Agi Csakif8cfb202015-08-13 17:54:54 -07001380void IntrinsicLocationsBuilderX86_64::VisitStringEquals(HInvoke* invoke) {
1381 LocationSummary* locations = new (arena_) LocationSummary(invoke,
1382 LocationSummary::kNoCall,
1383 kIntrinsified);
1384 locations->SetInAt(0, Location::RequiresRegister());
1385 locations->SetInAt(1, Location::RequiresRegister());
1386
1387 // Request temporary registers, RCX and RDI needed for repe_cmpsq instruction.
1388 locations->AddTemp(Location::RegisterLocation(RCX));
1389 locations->AddTemp(Location::RegisterLocation(RDI));
1390
1391 // Set output, RSI needed for repe_cmpsq instruction anyways.
1392 locations->SetOut(Location::RegisterLocation(RSI), Location::kOutputOverlap);
1393}
1394
1395void IntrinsicCodeGeneratorX86_64::VisitStringEquals(HInvoke* invoke) {
1396 X86_64Assembler* assembler = GetAssembler();
1397 LocationSummary* locations = invoke->GetLocations();
1398
1399 CpuRegister str = locations->InAt(0).AsRegister<CpuRegister>();
1400 CpuRegister arg = locations->InAt(1).AsRegister<CpuRegister>();
1401 CpuRegister rcx = locations->GetTemp(0).AsRegister<CpuRegister>();
1402 CpuRegister rdi = locations->GetTemp(1).AsRegister<CpuRegister>();
1403 CpuRegister rsi = locations->Out().AsRegister<CpuRegister>();
1404
Mark Mendell0c9497d2015-08-21 09:30:05 -04001405 NearLabel end, return_true, return_false;
Agi Csakif8cfb202015-08-13 17:54:54 -07001406
1407 // Get offsets of count, value, and class fields within a string object.
1408 const uint32_t count_offset = mirror::String::CountOffset().Uint32Value();
1409 const uint32_t value_offset = mirror::String::ValueOffset().Uint32Value();
1410 const uint32_t class_offset = mirror::Object::ClassOffset().Uint32Value();
1411
1412 // Note that the null check must have been done earlier.
1413 DCHECK(!invoke->CanDoImplicitNullCheckOn(invoke->InputAt(0)));
1414
1415 // Check if input is null, return false if it is.
1416 __ testl(arg, arg);
1417 __ j(kEqual, &return_false);
1418
1419 // Instanceof check for the argument by comparing class fields.
1420 // All string objects must have the same type since String cannot be subclassed.
1421 // Receiver must be a string object, so its class field is equal to all strings' class fields.
1422 // If the argument is a string object, its class field must be equal to receiver's class field.
1423 __ movl(rcx, Address(str, class_offset));
1424 __ cmpl(rcx, Address(arg, class_offset));
1425 __ j(kNotEqual, &return_false);
1426
1427 // Reference equality check, return true if same reference.
1428 __ cmpl(str, arg);
1429 __ j(kEqual, &return_true);
1430
1431 // Load length of receiver string.
1432 __ movl(rcx, Address(str, count_offset));
1433 // Check if lengths are equal, return false if they're not.
1434 __ cmpl(rcx, Address(arg, count_offset));
1435 __ j(kNotEqual, &return_false);
1436 // Return true if both strings are empty.
Mark Mendell0c9497d2015-08-21 09:30:05 -04001437 __ jrcxz(&return_true);
Agi Csakif8cfb202015-08-13 17:54:54 -07001438
1439 // Load starting addresses of string values into RSI/RDI as required for repe_cmpsq instruction.
1440 __ leal(rsi, Address(str, value_offset));
1441 __ leal(rdi, Address(arg, value_offset));
1442
1443 // Divide string length by 4 and adjust for lengths not divisible by 4.
1444 __ addl(rcx, Immediate(3));
1445 __ shrl(rcx, Immediate(2));
1446
1447 // Assertions that must hold in order to compare strings 4 characters at a time.
1448 DCHECK_ALIGNED(value_offset, 8);
1449 static_assert(IsAligned<8>(kObjectAlignment), "String is not zero padded");
1450
1451 // Loop to compare strings four characters at a time starting at the beginning of the string.
1452 __ repe_cmpsq();
1453 // If strings are not equal, zero flag will be cleared.
1454 __ j(kNotEqual, &return_false);
1455
1456 // Return true and exit the function.
1457 // If loop does not result in returning false, we return true.
1458 __ Bind(&return_true);
1459 __ movl(rsi, Immediate(1));
1460 __ jmp(&end);
1461
1462 // Return false and exit the function.
1463 __ Bind(&return_false);
1464 __ xorl(rsi, rsi);
1465 __ Bind(&end);
1466}
1467
Andreas Gampe21030dd2015-05-07 14:46:15 -07001468static void CreateStringIndexOfLocations(HInvoke* invoke,
1469 ArenaAllocator* allocator,
1470 bool start_at_zero) {
1471 LocationSummary* locations = new (allocator) LocationSummary(invoke,
1472 LocationSummary::kCallOnSlowPath,
1473 kIntrinsified);
1474 // The data needs to be in RDI for scasw. So request that the string is there, anyways.
1475 locations->SetInAt(0, Location::RegisterLocation(RDI));
1476 // If we look for a constant char, we'll still have to copy it into RAX. So just request the
1477 // allocator to do that, anyways. We can still do the constant check by checking the parameter
1478 // of the instruction explicitly.
1479 // Note: This works as we don't clobber RAX anywhere.
1480 locations->SetInAt(1, Location::RegisterLocation(RAX));
1481 if (!start_at_zero) {
1482 locations->SetInAt(2, Location::RequiresRegister()); // The starting index.
1483 }
1484 // As we clobber RDI during execution anyways, also use it as the output.
1485 locations->SetOut(Location::SameAsFirstInput());
1486
1487 // repne scasw uses RCX as the counter.
1488 locations->AddTemp(Location::RegisterLocation(RCX));
1489 // Need another temporary to be able to compute the result.
1490 locations->AddTemp(Location::RequiresRegister());
1491}
1492
1493static void GenerateStringIndexOf(HInvoke* invoke,
1494 X86_64Assembler* assembler,
1495 CodeGeneratorX86_64* codegen,
1496 ArenaAllocator* allocator,
1497 bool start_at_zero) {
1498 LocationSummary* locations = invoke->GetLocations();
1499
1500 // Note that the null check must have been done earlier.
1501 DCHECK(!invoke->CanDoImplicitNullCheckOn(invoke->InputAt(0)));
1502
1503 CpuRegister string_obj = locations->InAt(0).AsRegister<CpuRegister>();
1504 CpuRegister search_value = locations->InAt(1).AsRegister<CpuRegister>();
1505 CpuRegister counter = locations->GetTemp(0).AsRegister<CpuRegister>();
1506 CpuRegister string_length = locations->GetTemp(1).AsRegister<CpuRegister>();
1507 CpuRegister out = locations->Out().AsRegister<CpuRegister>();
1508
1509 // Check our assumptions for registers.
1510 DCHECK_EQ(string_obj.AsRegister(), RDI);
1511 DCHECK_EQ(search_value.AsRegister(), RAX);
1512 DCHECK_EQ(counter.AsRegister(), RCX);
1513 DCHECK_EQ(out.AsRegister(), RDI);
1514
1515 // Check for code points > 0xFFFF. Either a slow-path check when we don't know statically,
1516 // or directly dispatch if we have a constant.
Andreas Gampe85b62f22015-09-09 13:15:38 -07001517 SlowPathCode* slow_path = nullptr;
Andreas Gampe21030dd2015-05-07 14:46:15 -07001518 if (invoke->InputAt(1)->IsIntConstant()) {
1519 if (static_cast<uint32_t>(invoke->InputAt(1)->AsIntConstant()->GetValue()) >
1520 std::numeric_limits<uint16_t>::max()) {
1521 // Always needs the slow-path. We could directly dispatch to it, but this case should be
1522 // rare, so for simplicity just put the full slow-path down and branch unconditionally.
1523 slow_path = new (allocator) IntrinsicSlowPathX86_64(invoke);
1524 codegen->AddSlowPath(slow_path);
1525 __ jmp(slow_path->GetEntryLabel());
1526 __ Bind(slow_path->GetExitLabel());
1527 return;
1528 }
1529 } else {
1530 __ cmpl(search_value, Immediate(std::numeric_limits<uint16_t>::max()));
1531 slow_path = new (allocator) IntrinsicSlowPathX86_64(invoke);
1532 codegen->AddSlowPath(slow_path);
1533 __ j(kAbove, slow_path->GetEntryLabel());
1534 }
1535
1536 // From here down, we know that we are looking for a char that fits in 16 bits.
1537 // Location of reference to data array within the String object.
1538 int32_t value_offset = mirror::String::ValueOffset().Int32Value();
1539 // Location of count within the String object.
1540 int32_t count_offset = mirror::String::CountOffset().Int32Value();
1541
1542 // Load string length, i.e., the count field of the string.
1543 __ movl(string_length, Address(string_obj, count_offset));
1544
1545 // Do a length check.
1546 // TODO: Support jecxz.
Mark Mendell0c9497d2015-08-21 09:30:05 -04001547 NearLabel not_found_label;
Andreas Gampe21030dd2015-05-07 14:46:15 -07001548 __ testl(string_length, string_length);
1549 __ j(kEqual, &not_found_label);
1550
1551 if (start_at_zero) {
1552 // Number of chars to scan is the same as the string length.
1553 __ movl(counter, string_length);
1554
1555 // Move to the start of the string.
1556 __ addq(string_obj, Immediate(value_offset));
1557 } else {
1558 CpuRegister start_index = locations->InAt(2).AsRegister<CpuRegister>();
1559
1560 // Do a start_index check.
1561 __ cmpl(start_index, string_length);
1562 __ j(kGreaterEqual, &not_found_label);
1563
1564 // Ensure we have a start index >= 0;
1565 __ xorl(counter, counter);
1566 __ cmpl(start_index, Immediate(0));
Roland Levillainbf84a3d2015-12-04 14:33:02 +00001567 __ cmov(kGreater, counter, start_index, /* is64bit */ false); // 32-bit copy is enough.
Andreas Gampe21030dd2015-05-07 14:46:15 -07001568
1569 // Move to the start of the string: string_obj + value_offset + 2 * start_index.
1570 __ leaq(string_obj, Address(string_obj, counter, ScaleFactor::TIMES_2, value_offset));
1571
1572 // Now update ecx, the work counter: it's gonna be string.length - start_index.
1573 __ negq(counter); // Needs to be 64-bit negation, as the address computation is 64-bit.
1574 __ leaq(counter, Address(string_length, counter, ScaleFactor::TIMES_1, 0));
1575 }
1576
1577 // Everything is set up for repne scasw:
1578 // * Comparison address in RDI.
1579 // * Counter in ECX.
1580 __ repne_scasw();
1581
1582 // Did we find a match?
1583 __ j(kNotEqual, &not_found_label);
1584
1585 // Yes, we matched. Compute the index of the result.
1586 __ subl(string_length, counter);
1587 __ leal(out, Address(string_length, -1));
1588
Mark Mendell0c9497d2015-08-21 09:30:05 -04001589 NearLabel done;
Andreas Gampe21030dd2015-05-07 14:46:15 -07001590 __ jmp(&done);
1591
1592 // Failed to match; return -1.
1593 __ Bind(&not_found_label);
1594 __ movl(out, Immediate(-1));
1595
1596 // And join up at the end.
1597 __ Bind(&done);
1598 if (slow_path != nullptr) {
1599 __ Bind(slow_path->GetExitLabel());
1600 }
1601}
1602
1603void IntrinsicLocationsBuilderX86_64::VisitStringIndexOf(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +00001604 CreateStringIndexOfLocations(invoke, arena_, /* start_at_zero */ true);
Andreas Gampe21030dd2015-05-07 14:46:15 -07001605}
1606
1607void IntrinsicCodeGeneratorX86_64::VisitStringIndexOf(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +00001608 GenerateStringIndexOf(invoke, GetAssembler(), codegen_, GetAllocator(), /* start_at_zero */ true);
Andreas Gampe21030dd2015-05-07 14:46:15 -07001609}
1610
1611void IntrinsicLocationsBuilderX86_64::VisitStringIndexOfAfter(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +00001612 CreateStringIndexOfLocations(invoke, arena_, /* start_at_zero */ false);
Andreas Gampe21030dd2015-05-07 14:46:15 -07001613}
1614
1615void IntrinsicCodeGeneratorX86_64::VisitStringIndexOfAfter(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +00001616 GenerateStringIndexOf(
1617 invoke, GetAssembler(), codegen_, GetAllocator(), /* start_at_zero */ false);
Andreas Gampe21030dd2015-05-07 14:46:15 -07001618}
1619
Jeff Hao848f70a2014-01-15 13:49:50 -08001620void IntrinsicLocationsBuilderX86_64::VisitStringNewStringFromBytes(HInvoke* invoke) {
1621 LocationSummary* locations = new (arena_) LocationSummary(invoke,
1622 LocationSummary::kCall,
1623 kIntrinsified);
1624 InvokeRuntimeCallingConvention calling_convention;
1625 locations->SetInAt(0, Location::RegisterLocation(calling_convention.GetRegisterAt(0)));
1626 locations->SetInAt(1, Location::RegisterLocation(calling_convention.GetRegisterAt(1)));
1627 locations->SetInAt(2, Location::RegisterLocation(calling_convention.GetRegisterAt(2)));
1628 locations->SetInAt(3, Location::RegisterLocation(calling_convention.GetRegisterAt(3)));
1629 locations->SetOut(Location::RegisterLocation(RAX));
1630}
1631
1632void IntrinsicCodeGeneratorX86_64::VisitStringNewStringFromBytes(HInvoke* invoke) {
1633 X86_64Assembler* assembler = GetAssembler();
1634 LocationSummary* locations = invoke->GetLocations();
1635
1636 CpuRegister byte_array = locations->InAt(0).AsRegister<CpuRegister>();
1637 __ testl(byte_array, byte_array);
Andreas Gampe85b62f22015-09-09 13:15:38 -07001638 SlowPathCode* slow_path = new (GetAllocator()) IntrinsicSlowPathX86_64(invoke);
Jeff Hao848f70a2014-01-15 13:49:50 -08001639 codegen_->AddSlowPath(slow_path);
1640 __ j(kEqual, slow_path->GetEntryLabel());
1641
Roland Levillainbf84a3d2015-12-04 14:33:02 +00001642 __ gs()->call(Address::Absolute(QUICK_ENTRYPOINT_OFFSET(kX86_64WordSize, pAllocStringFromBytes),
1643 /* no_rip */ true));
Roland Levillainf969a202016-03-09 16:14:00 +00001644 CheckEntrypointTypes<kQuickAllocStringFromBytes, void*, void*, int32_t, int32_t, int32_t>();
Jeff Hao848f70a2014-01-15 13:49:50 -08001645 codegen_->RecordPcInfo(invoke, invoke->GetDexPc());
1646 __ Bind(slow_path->GetExitLabel());
1647}
1648
1649void IntrinsicLocationsBuilderX86_64::VisitStringNewStringFromChars(HInvoke* invoke) {
1650 LocationSummary* locations = new (arena_) LocationSummary(invoke,
1651 LocationSummary::kCall,
1652 kIntrinsified);
1653 InvokeRuntimeCallingConvention calling_convention;
1654 locations->SetInAt(0, Location::RegisterLocation(calling_convention.GetRegisterAt(0)));
1655 locations->SetInAt(1, Location::RegisterLocation(calling_convention.GetRegisterAt(1)));
1656 locations->SetInAt(2, Location::RegisterLocation(calling_convention.GetRegisterAt(2)));
1657 locations->SetOut(Location::RegisterLocation(RAX));
1658}
1659
1660void IntrinsicCodeGeneratorX86_64::VisitStringNewStringFromChars(HInvoke* invoke) {
1661 X86_64Assembler* assembler = GetAssembler();
1662
Roland Levillaincc3839c2016-02-29 16:23:48 +00001663 // No need to emit code checking whether `locations->InAt(2)` is a null
1664 // pointer, as callers of the native method
1665 //
1666 // java.lang.StringFactory.newStringFromChars(int offset, int charCount, char[] data)
1667 //
1668 // all include a null check on `data` before calling that method.
Roland Levillainbf84a3d2015-12-04 14:33:02 +00001669 __ gs()->call(Address::Absolute(QUICK_ENTRYPOINT_OFFSET(kX86_64WordSize, pAllocStringFromChars),
1670 /* no_rip */ true));
Roland Levillainf969a202016-03-09 16:14:00 +00001671 CheckEntrypointTypes<kQuickAllocStringFromChars, void*, int32_t, int32_t, void*>();
Jeff Hao848f70a2014-01-15 13:49:50 -08001672 codegen_->RecordPcInfo(invoke, invoke->GetDexPc());
1673}
1674
1675void IntrinsicLocationsBuilderX86_64::VisitStringNewStringFromString(HInvoke* invoke) {
1676 LocationSummary* locations = new (arena_) LocationSummary(invoke,
1677 LocationSummary::kCall,
1678 kIntrinsified);
1679 InvokeRuntimeCallingConvention calling_convention;
1680 locations->SetInAt(0, Location::RegisterLocation(calling_convention.GetRegisterAt(0)));
1681 locations->SetOut(Location::RegisterLocation(RAX));
1682}
1683
1684void IntrinsicCodeGeneratorX86_64::VisitStringNewStringFromString(HInvoke* invoke) {
1685 X86_64Assembler* assembler = GetAssembler();
1686 LocationSummary* locations = invoke->GetLocations();
1687
1688 CpuRegister string_to_copy = locations->InAt(0).AsRegister<CpuRegister>();
1689 __ testl(string_to_copy, string_to_copy);
Andreas Gampe85b62f22015-09-09 13:15:38 -07001690 SlowPathCode* slow_path = new (GetAllocator()) IntrinsicSlowPathX86_64(invoke);
Jeff Hao848f70a2014-01-15 13:49:50 -08001691 codegen_->AddSlowPath(slow_path);
1692 __ j(kEqual, slow_path->GetEntryLabel());
1693
Roland Levillainbf84a3d2015-12-04 14:33:02 +00001694 __ gs()->call(Address::Absolute(QUICK_ENTRYPOINT_OFFSET(kX86_64WordSize, pAllocStringFromString),
1695 /* no_rip */ true));
Roland Levillainf969a202016-03-09 16:14:00 +00001696 CheckEntrypointTypes<kQuickAllocStringFromString, void*, void*>();
Jeff Hao848f70a2014-01-15 13:49:50 -08001697 codegen_->RecordPcInfo(invoke, invoke->GetDexPc());
1698 __ Bind(slow_path->GetExitLabel());
1699}
1700
Mark Mendell8f8926a2015-08-17 11:39:06 -04001701void IntrinsicLocationsBuilderX86_64::VisitStringGetCharsNoCheck(HInvoke* invoke) {
1702 // public void getChars(int srcBegin, int srcEnd, char[] dst, int dstBegin);
1703 LocationSummary* locations = new (arena_) LocationSummary(invoke,
1704 LocationSummary::kNoCall,
1705 kIntrinsified);
1706 locations->SetInAt(0, Location::RequiresRegister());
1707 locations->SetInAt(1, Location::RegisterOrConstant(invoke->InputAt(1)));
1708 locations->SetInAt(2, Location::RequiresRegister());
1709 locations->SetInAt(3, Location::RequiresRegister());
1710 locations->SetInAt(4, Location::RequiresRegister());
1711
1712 // And we need some temporaries. We will use REP MOVSW, so we need fixed registers.
1713 locations->AddTemp(Location::RegisterLocation(RSI));
1714 locations->AddTemp(Location::RegisterLocation(RDI));
1715 locations->AddTemp(Location::RegisterLocation(RCX));
1716}
1717
1718void IntrinsicCodeGeneratorX86_64::VisitStringGetCharsNoCheck(HInvoke* invoke) {
1719 X86_64Assembler* assembler = GetAssembler();
1720 LocationSummary* locations = invoke->GetLocations();
1721
1722 size_t char_component_size = Primitive::ComponentSize(Primitive::kPrimChar);
1723 // Location of data in char array buffer.
1724 const uint32_t data_offset = mirror::Array::DataOffset(char_component_size).Uint32Value();
1725 // Location of char array data in string.
1726 const uint32_t value_offset = mirror::String::ValueOffset().Uint32Value();
1727
1728 // public void getChars(int srcBegin, int srcEnd, char[] dst, int dstBegin);
1729 CpuRegister obj = locations->InAt(0).AsRegister<CpuRegister>();
1730 Location srcBegin = locations->InAt(1);
1731 int srcBegin_value =
1732 srcBegin.IsConstant() ? srcBegin.GetConstant()->AsIntConstant()->GetValue() : 0;
1733 CpuRegister srcEnd = locations->InAt(2).AsRegister<CpuRegister>();
1734 CpuRegister dst = locations->InAt(3).AsRegister<CpuRegister>();
1735 CpuRegister dstBegin = locations->InAt(4).AsRegister<CpuRegister>();
1736
1737 // Check assumption that sizeof(Char) is 2 (used in scaling below).
1738 const size_t char_size = Primitive::ComponentSize(Primitive::kPrimChar);
1739 DCHECK_EQ(char_size, 2u);
1740
1741 // Compute the address of the destination buffer.
1742 __ leaq(CpuRegister(RDI), Address(dst, dstBegin, ScaleFactor::TIMES_2, data_offset));
1743
1744 // Compute the address of the source string.
1745 if (srcBegin.IsConstant()) {
1746 // Compute the address of the source string by adding the number of chars from
1747 // the source beginning to the value offset of a string.
1748 __ leaq(CpuRegister(RSI), Address(obj, srcBegin_value * char_size + value_offset));
1749 } else {
1750 __ leaq(CpuRegister(RSI), Address(obj, srcBegin.AsRegister<CpuRegister>(),
1751 ScaleFactor::TIMES_2, value_offset));
1752 }
1753
1754 // Compute the number of chars (words) to move.
1755 __ movl(CpuRegister(RCX), srcEnd);
1756 if (srcBegin.IsConstant()) {
1757 if (srcBegin_value != 0) {
1758 __ subl(CpuRegister(RCX), Immediate(srcBegin_value));
1759 }
1760 } else {
1761 DCHECK(srcBegin.IsRegister());
1762 __ subl(CpuRegister(RCX), srcBegin.AsRegister<CpuRegister>());
1763 }
1764
1765 // Do the move.
1766 __ rep_movsw();
1767}
1768
Andreas Gampe71fb52f2014-12-29 17:43:08 -08001769static void GenPeek(LocationSummary* locations, Primitive::Type size, X86_64Assembler* assembler) {
1770 CpuRegister address = locations->InAt(0).AsRegister<CpuRegister>();
1771 CpuRegister out = locations->Out().AsRegister<CpuRegister>(); // == address, here for clarity.
1772 // x86 allows unaligned access. We do not have to check the input or use specific instructions
1773 // to avoid a SIGBUS.
1774 switch (size) {
1775 case Primitive::kPrimByte:
1776 __ movsxb(out, Address(address, 0));
1777 break;
1778 case Primitive::kPrimShort:
1779 __ movsxw(out, Address(address, 0));
1780 break;
1781 case Primitive::kPrimInt:
1782 __ movl(out, Address(address, 0));
1783 break;
1784 case Primitive::kPrimLong:
1785 __ movq(out, Address(address, 0));
1786 break;
1787 default:
1788 LOG(FATAL) << "Type not recognized for peek: " << size;
1789 UNREACHABLE();
1790 }
1791}
1792
1793void IntrinsicLocationsBuilderX86_64::VisitMemoryPeekByte(HInvoke* invoke) {
1794 CreateIntToIntLocations(arena_, invoke);
1795}
1796
1797void IntrinsicCodeGeneratorX86_64::VisitMemoryPeekByte(HInvoke* invoke) {
1798 GenPeek(invoke->GetLocations(), Primitive::kPrimByte, GetAssembler());
1799}
1800
1801void IntrinsicLocationsBuilderX86_64::VisitMemoryPeekIntNative(HInvoke* invoke) {
1802 CreateIntToIntLocations(arena_, invoke);
1803}
1804
1805void IntrinsicCodeGeneratorX86_64::VisitMemoryPeekIntNative(HInvoke* invoke) {
1806 GenPeek(invoke->GetLocations(), Primitive::kPrimInt, GetAssembler());
1807}
1808
1809void IntrinsicLocationsBuilderX86_64::VisitMemoryPeekLongNative(HInvoke* invoke) {
1810 CreateIntToIntLocations(arena_, invoke);
1811}
1812
1813void IntrinsicCodeGeneratorX86_64::VisitMemoryPeekLongNative(HInvoke* invoke) {
1814 GenPeek(invoke->GetLocations(), Primitive::kPrimLong, GetAssembler());
1815}
1816
1817void IntrinsicLocationsBuilderX86_64::VisitMemoryPeekShortNative(HInvoke* invoke) {
1818 CreateIntToIntLocations(arena_, invoke);
1819}
1820
1821void IntrinsicCodeGeneratorX86_64::VisitMemoryPeekShortNative(HInvoke* invoke) {
1822 GenPeek(invoke->GetLocations(), Primitive::kPrimShort, GetAssembler());
1823}
1824
1825static void CreateIntIntToVoidLocations(ArenaAllocator* arena, HInvoke* invoke) {
1826 LocationSummary* locations = new (arena) LocationSummary(invoke,
1827 LocationSummary::kNoCall,
1828 kIntrinsified);
1829 locations->SetInAt(0, Location::RequiresRegister());
Mark Mendellea5af682015-10-22 17:35:49 -04001830 locations->SetInAt(1, Location::RegisterOrInt32Constant(invoke->InputAt(1)));
Andreas Gampe71fb52f2014-12-29 17:43:08 -08001831}
1832
1833static void GenPoke(LocationSummary* locations, Primitive::Type size, X86_64Assembler* assembler) {
1834 CpuRegister address = locations->InAt(0).AsRegister<CpuRegister>();
Mark Mendell40741f32015-04-20 22:10:34 -04001835 Location value = locations->InAt(1);
Andreas Gampe71fb52f2014-12-29 17:43:08 -08001836 // x86 allows unaligned access. We do not have to check the input or use specific instructions
1837 // to avoid a SIGBUS.
1838 switch (size) {
1839 case Primitive::kPrimByte:
Mark Mendell40741f32015-04-20 22:10:34 -04001840 if (value.IsConstant()) {
1841 __ movb(Address(address, 0),
1842 Immediate(CodeGenerator::GetInt32ValueOf(value.GetConstant())));
1843 } else {
1844 __ movb(Address(address, 0), value.AsRegister<CpuRegister>());
1845 }
Andreas Gampe71fb52f2014-12-29 17:43:08 -08001846 break;
1847 case Primitive::kPrimShort:
Mark Mendell40741f32015-04-20 22:10:34 -04001848 if (value.IsConstant()) {
1849 __ movw(Address(address, 0),
1850 Immediate(CodeGenerator::GetInt32ValueOf(value.GetConstant())));
1851 } else {
1852 __ movw(Address(address, 0), value.AsRegister<CpuRegister>());
1853 }
Andreas Gampe71fb52f2014-12-29 17:43:08 -08001854 break;
1855 case Primitive::kPrimInt:
Mark Mendell40741f32015-04-20 22:10:34 -04001856 if (value.IsConstant()) {
1857 __ movl(Address(address, 0),
1858 Immediate(CodeGenerator::GetInt32ValueOf(value.GetConstant())));
1859 } else {
1860 __ movl(Address(address, 0), value.AsRegister<CpuRegister>());
1861 }
Andreas Gampe71fb52f2014-12-29 17:43:08 -08001862 break;
1863 case Primitive::kPrimLong:
Mark Mendell40741f32015-04-20 22:10:34 -04001864 if (value.IsConstant()) {
1865 int64_t v = value.GetConstant()->AsLongConstant()->GetValue();
1866 DCHECK(IsInt<32>(v));
1867 int32_t v_32 = v;
1868 __ movq(Address(address, 0), Immediate(v_32));
1869 } else {
1870 __ movq(Address(address, 0), value.AsRegister<CpuRegister>());
1871 }
Andreas Gampe71fb52f2014-12-29 17:43:08 -08001872 break;
1873 default:
1874 LOG(FATAL) << "Type not recognized for poke: " << size;
1875 UNREACHABLE();
1876 }
1877}
1878
1879void IntrinsicLocationsBuilderX86_64::VisitMemoryPokeByte(HInvoke* invoke) {
1880 CreateIntIntToVoidLocations(arena_, invoke);
1881}
1882
1883void IntrinsicCodeGeneratorX86_64::VisitMemoryPokeByte(HInvoke* invoke) {
1884 GenPoke(invoke->GetLocations(), Primitive::kPrimByte, GetAssembler());
1885}
1886
1887void IntrinsicLocationsBuilderX86_64::VisitMemoryPokeIntNative(HInvoke* invoke) {
1888 CreateIntIntToVoidLocations(arena_, invoke);
1889}
1890
1891void IntrinsicCodeGeneratorX86_64::VisitMemoryPokeIntNative(HInvoke* invoke) {
1892 GenPoke(invoke->GetLocations(), Primitive::kPrimInt, GetAssembler());
1893}
1894
1895void IntrinsicLocationsBuilderX86_64::VisitMemoryPokeLongNative(HInvoke* invoke) {
1896 CreateIntIntToVoidLocations(arena_, invoke);
1897}
1898
1899void IntrinsicCodeGeneratorX86_64::VisitMemoryPokeLongNative(HInvoke* invoke) {
1900 GenPoke(invoke->GetLocations(), Primitive::kPrimLong, GetAssembler());
1901}
1902
1903void IntrinsicLocationsBuilderX86_64::VisitMemoryPokeShortNative(HInvoke* invoke) {
1904 CreateIntIntToVoidLocations(arena_, invoke);
1905}
1906
1907void IntrinsicCodeGeneratorX86_64::VisitMemoryPokeShortNative(HInvoke* invoke) {
1908 GenPoke(invoke->GetLocations(), Primitive::kPrimShort, GetAssembler());
1909}
1910
1911void IntrinsicLocationsBuilderX86_64::VisitThreadCurrentThread(HInvoke* invoke) {
1912 LocationSummary* locations = new (arena_) LocationSummary(invoke,
1913 LocationSummary::kNoCall,
1914 kIntrinsified);
1915 locations->SetOut(Location::RequiresRegister());
1916}
1917
1918void IntrinsicCodeGeneratorX86_64::VisitThreadCurrentThread(HInvoke* invoke) {
1919 CpuRegister out = invoke->GetLocations()->Out().AsRegister<CpuRegister>();
Roland Levillainbf84a3d2015-12-04 14:33:02 +00001920 GetAssembler()->gs()->movl(out, Address::Absolute(Thread::PeerOffset<kX86_64WordSize>(),
1921 /* no_rip */ true));
Andreas Gampe71fb52f2014-12-29 17:43:08 -08001922}
1923
Roland Levillain0d5a2812015-11-13 10:07:31 +00001924static void GenUnsafeGet(HInvoke* invoke,
1925 Primitive::Type type,
1926 bool is_volatile ATTRIBUTE_UNUSED,
1927 CodeGeneratorX86_64* codegen) {
1928 X86_64Assembler* assembler = down_cast<X86_64Assembler*>(codegen->GetAssembler());
1929 LocationSummary* locations = invoke->GetLocations();
1930 Location base_loc = locations->InAt(1);
1931 CpuRegister base = base_loc.AsRegister<CpuRegister>();
1932 Location offset_loc = locations->InAt(2);
1933 CpuRegister offset = offset_loc.AsRegister<CpuRegister>();
1934 Location output_loc = locations->Out();
Roland Levillain1e7f8db2015-12-15 10:54:19 +00001935 CpuRegister output = output_loc.AsRegister<CpuRegister>();
Andreas Gampe71fb52f2014-12-29 17:43:08 -08001936
Andreas Gampe878d58c2015-01-15 23:24:00 -08001937 switch (type) {
1938 case Primitive::kPrimInt:
Roland Levillain0d5a2812015-11-13 10:07:31 +00001939 __ movl(output, Address(base, offset, ScaleFactor::TIMES_1, 0));
Roland Levillain1e7f8db2015-12-15 10:54:19 +00001940 break;
1941
1942 case Primitive::kPrimNot: {
1943 if (kEmitCompilerReadBarrier) {
1944 if (kUseBakerReadBarrier) {
1945 Location temp = locations->GetTemp(0);
1946 codegen->GenerateArrayLoadWithBakerReadBarrier(
1947 invoke, output_loc, base, 0U, offset_loc, temp, /* needs_null_check */ false);
1948 } else {
1949 __ movl(output, Address(base, offset, ScaleFactor::TIMES_1, 0));
1950 codegen->GenerateReadBarrierSlow(
1951 invoke, output_loc, output_loc, base_loc, 0U, offset_loc);
1952 }
1953 } else {
1954 __ movl(output, Address(base, offset, ScaleFactor::TIMES_1, 0));
1955 __ MaybeUnpoisonHeapReference(output);
Roland Levillain4d027112015-07-01 15:41:14 +01001956 }
Andreas Gampe878d58c2015-01-15 23:24:00 -08001957 break;
Roland Levillain1e7f8db2015-12-15 10:54:19 +00001958 }
Andreas Gampe878d58c2015-01-15 23:24:00 -08001959
1960 case Primitive::kPrimLong:
Roland Levillain0d5a2812015-11-13 10:07:31 +00001961 __ movq(output, Address(base, offset, ScaleFactor::TIMES_1, 0));
Andreas Gampe878d58c2015-01-15 23:24:00 -08001962 break;
1963
1964 default:
1965 LOG(FATAL) << "Unsupported op size " << type;
1966 UNREACHABLE();
Andreas Gampe71fb52f2014-12-29 17:43:08 -08001967 }
1968}
1969
Roland Levillain1e7f8db2015-12-15 10:54:19 +00001970static void CreateIntIntIntToIntLocations(ArenaAllocator* arena,
1971 HInvoke* invoke,
1972 Primitive::Type type) {
Roland Levillain0d5a2812015-11-13 10:07:31 +00001973 bool can_call = kEmitCompilerReadBarrier &&
1974 (invoke->GetIntrinsic() == Intrinsics::kUnsafeGetObject ||
1975 invoke->GetIntrinsic() == Intrinsics::kUnsafeGetObjectVolatile);
Andreas Gampe71fb52f2014-12-29 17:43:08 -08001976 LocationSummary* locations = new (arena) LocationSummary(invoke,
Roland Levillain0d5a2812015-11-13 10:07:31 +00001977 can_call ?
1978 LocationSummary::kCallOnSlowPath :
1979 LocationSummary::kNoCall,
Andreas Gampe71fb52f2014-12-29 17:43:08 -08001980 kIntrinsified);
Andreas Gampe878d58c2015-01-15 23:24:00 -08001981 locations->SetInAt(0, Location::NoLocation()); // Unused receiver.
Andreas Gampe71fb52f2014-12-29 17:43:08 -08001982 locations->SetInAt(1, Location::RequiresRegister());
1983 locations->SetInAt(2, Location::RequiresRegister());
Andreas Gampe878d58c2015-01-15 23:24:00 -08001984 locations->SetOut(Location::RequiresRegister());
Roland Levillain1e7f8db2015-12-15 10:54:19 +00001985 if (type == Primitive::kPrimNot && kEmitCompilerReadBarrier && kUseBakerReadBarrier) {
1986 // We need a temporary register for the read barrier marking slow
1987 // path in InstructionCodeGeneratorX86_64::GenerateArrayLoadWithBakerReadBarrier.
1988 locations->AddTemp(Location::RequiresRegister());
1989 }
Andreas Gampe71fb52f2014-12-29 17:43:08 -08001990}
1991
1992void IntrinsicLocationsBuilderX86_64::VisitUnsafeGet(HInvoke* invoke) {
Roland Levillain1e7f8db2015-12-15 10:54:19 +00001993 CreateIntIntIntToIntLocations(arena_, invoke, Primitive::kPrimInt);
Andreas Gampe71fb52f2014-12-29 17:43:08 -08001994}
1995void IntrinsicLocationsBuilderX86_64::VisitUnsafeGetVolatile(HInvoke* invoke) {
Roland Levillain1e7f8db2015-12-15 10:54:19 +00001996 CreateIntIntIntToIntLocations(arena_, invoke, Primitive::kPrimInt);
Andreas Gampe71fb52f2014-12-29 17:43:08 -08001997}
1998void IntrinsicLocationsBuilderX86_64::VisitUnsafeGetLong(HInvoke* invoke) {
Roland Levillain1e7f8db2015-12-15 10:54:19 +00001999 CreateIntIntIntToIntLocations(arena_, invoke, Primitive::kPrimLong);
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002000}
2001void IntrinsicLocationsBuilderX86_64::VisitUnsafeGetLongVolatile(HInvoke* invoke) {
Roland Levillain1e7f8db2015-12-15 10:54:19 +00002002 CreateIntIntIntToIntLocations(arena_, invoke, Primitive::kPrimLong);
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002003}
Andreas Gampe878d58c2015-01-15 23:24:00 -08002004void IntrinsicLocationsBuilderX86_64::VisitUnsafeGetObject(HInvoke* invoke) {
Roland Levillain1e7f8db2015-12-15 10:54:19 +00002005 CreateIntIntIntToIntLocations(arena_, invoke, Primitive::kPrimNot);
Andreas Gampe878d58c2015-01-15 23:24:00 -08002006}
2007void IntrinsicLocationsBuilderX86_64::VisitUnsafeGetObjectVolatile(HInvoke* invoke) {
Roland Levillain1e7f8db2015-12-15 10:54:19 +00002008 CreateIntIntIntToIntLocations(arena_, invoke, Primitive::kPrimNot);
Andreas Gampe878d58c2015-01-15 23:24:00 -08002009}
2010
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002011
2012void IntrinsicCodeGeneratorX86_64::VisitUnsafeGet(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +00002013 GenUnsafeGet(invoke, Primitive::kPrimInt, /* is_volatile */ false, codegen_);
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002014}
2015void IntrinsicCodeGeneratorX86_64::VisitUnsafeGetVolatile(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +00002016 GenUnsafeGet(invoke, Primitive::kPrimInt, /* is_volatile */ true, codegen_);
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002017}
2018void IntrinsicCodeGeneratorX86_64::VisitUnsafeGetLong(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +00002019 GenUnsafeGet(invoke, Primitive::kPrimLong, /* is_volatile */ false, codegen_);
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002020}
2021void IntrinsicCodeGeneratorX86_64::VisitUnsafeGetLongVolatile(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +00002022 GenUnsafeGet(invoke, Primitive::kPrimLong, /* is_volatile */ true, codegen_);
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002023}
Andreas Gampe878d58c2015-01-15 23:24:00 -08002024void IntrinsicCodeGeneratorX86_64::VisitUnsafeGetObject(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +00002025 GenUnsafeGet(invoke, Primitive::kPrimNot, /* is_volatile */ false, codegen_);
Andreas Gampe878d58c2015-01-15 23:24:00 -08002026}
2027void IntrinsicCodeGeneratorX86_64::VisitUnsafeGetObjectVolatile(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +00002028 GenUnsafeGet(invoke, Primitive::kPrimNot, /* is_volatile */ true, codegen_);
Andreas Gampe878d58c2015-01-15 23:24:00 -08002029}
2030
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002031
2032static void CreateIntIntIntIntToVoidPlusTempsLocations(ArenaAllocator* arena,
2033 Primitive::Type type,
2034 HInvoke* invoke) {
2035 LocationSummary* locations = new (arena) LocationSummary(invoke,
2036 LocationSummary::kNoCall,
2037 kIntrinsified);
Andreas Gampe878d58c2015-01-15 23:24:00 -08002038 locations->SetInAt(0, Location::NoLocation()); // Unused receiver.
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002039 locations->SetInAt(1, Location::RequiresRegister());
2040 locations->SetInAt(2, Location::RequiresRegister());
2041 locations->SetInAt(3, Location::RequiresRegister());
2042 if (type == Primitive::kPrimNot) {
2043 // Need temp registers for card-marking.
Roland Levillain4d027112015-07-01 15:41:14 +01002044 locations->AddTemp(Location::RequiresRegister()); // Possibly used for reference poisoning too.
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002045 locations->AddTemp(Location::RequiresRegister());
2046 }
2047}
2048
2049void IntrinsicLocationsBuilderX86_64::VisitUnsafePut(HInvoke* invoke) {
2050 CreateIntIntIntIntToVoidPlusTempsLocations(arena_, Primitive::kPrimInt, invoke);
2051}
2052void IntrinsicLocationsBuilderX86_64::VisitUnsafePutOrdered(HInvoke* invoke) {
2053 CreateIntIntIntIntToVoidPlusTempsLocations(arena_, Primitive::kPrimInt, invoke);
2054}
2055void IntrinsicLocationsBuilderX86_64::VisitUnsafePutVolatile(HInvoke* invoke) {
2056 CreateIntIntIntIntToVoidPlusTempsLocations(arena_, Primitive::kPrimInt, invoke);
2057}
2058void IntrinsicLocationsBuilderX86_64::VisitUnsafePutObject(HInvoke* invoke) {
2059 CreateIntIntIntIntToVoidPlusTempsLocations(arena_, Primitive::kPrimNot, invoke);
2060}
2061void IntrinsicLocationsBuilderX86_64::VisitUnsafePutObjectOrdered(HInvoke* invoke) {
2062 CreateIntIntIntIntToVoidPlusTempsLocations(arena_, Primitive::kPrimNot, invoke);
2063}
2064void IntrinsicLocationsBuilderX86_64::VisitUnsafePutObjectVolatile(HInvoke* invoke) {
2065 CreateIntIntIntIntToVoidPlusTempsLocations(arena_, Primitive::kPrimNot, invoke);
2066}
2067void IntrinsicLocationsBuilderX86_64::VisitUnsafePutLong(HInvoke* invoke) {
2068 CreateIntIntIntIntToVoidPlusTempsLocations(arena_, Primitive::kPrimLong, invoke);
2069}
2070void IntrinsicLocationsBuilderX86_64::VisitUnsafePutLongOrdered(HInvoke* invoke) {
2071 CreateIntIntIntIntToVoidPlusTempsLocations(arena_, Primitive::kPrimLong, invoke);
2072}
2073void IntrinsicLocationsBuilderX86_64::VisitUnsafePutLongVolatile(HInvoke* invoke) {
2074 CreateIntIntIntIntToVoidPlusTempsLocations(arena_, Primitive::kPrimLong, invoke);
2075}
2076
2077// We don't care for ordered: it requires an AnyStore barrier, which is already given by the x86
2078// memory model.
2079static void GenUnsafePut(LocationSummary* locations, Primitive::Type type, bool is_volatile,
2080 CodeGeneratorX86_64* codegen) {
Roland Levillainb488b782015-10-22 11:38:49 +01002081 X86_64Assembler* assembler = down_cast<X86_64Assembler*>(codegen->GetAssembler());
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002082 CpuRegister base = locations->InAt(1).AsRegister<CpuRegister>();
2083 CpuRegister offset = locations->InAt(2).AsRegister<CpuRegister>();
2084 CpuRegister value = locations->InAt(3).AsRegister<CpuRegister>();
2085
2086 if (type == Primitive::kPrimLong) {
2087 __ movq(Address(base, offset, ScaleFactor::TIMES_1, 0), value);
Roland Levillain4d027112015-07-01 15:41:14 +01002088 } else if (kPoisonHeapReferences && type == Primitive::kPrimNot) {
2089 CpuRegister temp = locations->GetTemp(0).AsRegister<CpuRegister>();
2090 __ movl(temp, value);
2091 __ PoisonHeapReference(temp);
2092 __ movl(Address(base, offset, ScaleFactor::TIMES_1, 0), temp);
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002093 } else {
2094 __ movl(Address(base, offset, ScaleFactor::TIMES_1, 0), value);
2095 }
2096
2097 if (is_volatile) {
Mark P Mendell17077d82015-12-16 19:15:59 +00002098 codegen->MemoryFence();
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002099 }
2100
2101 if (type == Primitive::kPrimNot) {
Nicolas Geoffray07276db2015-05-18 14:22:09 +01002102 bool value_can_be_null = true; // TODO: Worth finding out this information?
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002103 codegen->MarkGCCard(locations->GetTemp(0).AsRegister<CpuRegister>(),
2104 locations->GetTemp(1).AsRegister<CpuRegister>(),
2105 base,
Nicolas Geoffray07276db2015-05-18 14:22:09 +01002106 value,
2107 value_can_be_null);
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002108 }
2109}
2110
2111void IntrinsicCodeGeneratorX86_64::VisitUnsafePut(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +00002112 GenUnsafePut(invoke->GetLocations(), Primitive::kPrimInt, /* is_volatile */ false, codegen_);
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002113}
2114void IntrinsicCodeGeneratorX86_64::VisitUnsafePutOrdered(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +00002115 GenUnsafePut(invoke->GetLocations(), Primitive::kPrimInt, /* is_volatile */ false, codegen_);
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002116}
2117void IntrinsicCodeGeneratorX86_64::VisitUnsafePutVolatile(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +00002118 GenUnsafePut(invoke->GetLocations(), Primitive::kPrimInt, /* is_volatile */ true, codegen_);
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002119}
2120void IntrinsicCodeGeneratorX86_64::VisitUnsafePutObject(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +00002121 GenUnsafePut(invoke->GetLocations(), Primitive::kPrimNot, /* is_volatile */ false, codegen_);
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002122}
2123void IntrinsicCodeGeneratorX86_64::VisitUnsafePutObjectOrdered(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +00002124 GenUnsafePut(invoke->GetLocations(), Primitive::kPrimNot, /* is_volatile */ false, codegen_);
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002125}
2126void IntrinsicCodeGeneratorX86_64::VisitUnsafePutObjectVolatile(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +00002127 GenUnsafePut(invoke->GetLocations(), Primitive::kPrimNot, /* is_volatile */ true, codegen_);
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002128}
2129void IntrinsicCodeGeneratorX86_64::VisitUnsafePutLong(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +00002130 GenUnsafePut(invoke->GetLocations(), Primitive::kPrimLong, /* is_volatile */ false, codegen_);
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002131}
2132void IntrinsicCodeGeneratorX86_64::VisitUnsafePutLongOrdered(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +00002133 GenUnsafePut(invoke->GetLocations(), Primitive::kPrimLong, /* is_volatile */ false, codegen_);
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002134}
2135void IntrinsicCodeGeneratorX86_64::VisitUnsafePutLongVolatile(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +00002136 GenUnsafePut(invoke->GetLocations(), Primitive::kPrimLong, /* is_volatile */ true, codegen_);
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002137}
2138
Mark Mendell58d25fd2015-04-03 14:52:31 -04002139static void CreateIntIntIntIntIntToInt(ArenaAllocator* arena, Primitive::Type type,
2140 HInvoke* invoke) {
2141 LocationSummary* locations = new (arena) LocationSummary(invoke,
2142 LocationSummary::kNoCall,
2143 kIntrinsified);
2144 locations->SetInAt(0, Location::NoLocation()); // Unused receiver.
2145 locations->SetInAt(1, Location::RequiresRegister());
2146 locations->SetInAt(2, Location::RequiresRegister());
2147 // expected value must be in EAX/RAX.
2148 locations->SetInAt(3, Location::RegisterLocation(RAX));
2149 locations->SetInAt(4, Location::RequiresRegister());
2150
2151 locations->SetOut(Location::RequiresRegister());
2152 if (type == Primitive::kPrimNot) {
2153 // Need temp registers for card-marking.
Roland Levillainb488b782015-10-22 11:38:49 +01002154 locations->AddTemp(Location::RequiresRegister()); // Possibly used for reference poisoning too.
Mark Mendell58d25fd2015-04-03 14:52:31 -04002155 locations->AddTemp(Location::RequiresRegister());
2156 }
2157}
2158
2159void IntrinsicLocationsBuilderX86_64::VisitUnsafeCASInt(HInvoke* invoke) {
2160 CreateIntIntIntIntIntToInt(arena_, Primitive::kPrimInt, invoke);
2161}
2162
2163void IntrinsicLocationsBuilderX86_64::VisitUnsafeCASLong(HInvoke* invoke) {
2164 CreateIntIntIntIntIntToInt(arena_, Primitive::kPrimLong, invoke);
2165}
2166
2167void IntrinsicLocationsBuilderX86_64::VisitUnsafeCASObject(HInvoke* invoke) {
Roland Levillain391b8662015-12-18 11:43:38 +00002168 // The UnsafeCASObject intrinsic is missing a read barrier, and
2169 // therefore sometimes does not work as expected (b/25883050).
2170 // Turn it off temporarily as a quick fix, until the read barrier is
2171 // implemented.
2172 //
2173 // TODO(rpl): Implement a read barrier in GenCAS below and re-enable
2174 // this intrinsic.
2175 if (kEmitCompilerReadBarrier) {
2176 return;
2177 }
2178
Mark Mendell58d25fd2015-04-03 14:52:31 -04002179 CreateIntIntIntIntIntToInt(arena_, Primitive::kPrimNot, invoke);
2180}
2181
2182static void GenCAS(Primitive::Type type, HInvoke* invoke, CodeGeneratorX86_64* codegen) {
Roland Levillainb488b782015-10-22 11:38:49 +01002183 X86_64Assembler* assembler = down_cast<X86_64Assembler*>(codegen->GetAssembler());
Mark Mendell58d25fd2015-04-03 14:52:31 -04002184 LocationSummary* locations = invoke->GetLocations();
2185
2186 CpuRegister base = locations->InAt(1).AsRegister<CpuRegister>();
2187 CpuRegister offset = locations->InAt(2).AsRegister<CpuRegister>();
2188 CpuRegister expected = locations->InAt(3).AsRegister<CpuRegister>();
Roland Levillainb488b782015-10-22 11:38:49 +01002189 // Ensure `expected` is in RAX (required by the CMPXCHG instruction).
Mark Mendell58d25fd2015-04-03 14:52:31 -04002190 DCHECK_EQ(expected.AsRegister(), RAX);
2191 CpuRegister value = locations->InAt(4).AsRegister<CpuRegister>();
2192 CpuRegister out = locations->Out().AsRegister<CpuRegister>();
2193
Roland Levillainb488b782015-10-22 11:38:49 +01002194 if (type == Primitive::kPrimNot) {
2195 // Mark card for object assuming new value is stored.
2196 bool value_can_be_null = true; // TODO: Worth finding out this information?
2197 codegen->MarkGCCard(locations->GetTemp(0).AsRegister<CpuRegister>(),
2198 locations->GetTemp(1).AsRegister<CpuRegister>(),
2199 base,
2200 value,
2201 value_can_be_null);
Roland Levillain4d027112015-07-01 15:41:14 +01002202
Roland Levillainb488b782015-10-22 11:38:49 +01002203 bool base_equals_value = (base.AsRegister() == value.AsRegister());
2204 Register value_reg = value.AsRegister();
2205 if (kPoisonHeapReferences) {
2206 if (base_equals_value) {
2207 // If `base` and `value` are the same register location, move
2208 // `value_reg` to a temporary register. This way, poisoning
2209 // `value_reg` won't invalidate `base`.
2210 value_reg = locations->GetTemp(0).AsRegister<CpuRegister>().AsRegister();
2211 __ movl(CpuRegister(value_reg), base);
Roland Levillain4d027112015-07-01 15:41:14 +01002212 }
Roland Levillainb488b782015-10-22 11:38:49 +01002213
2214 // Check that the register allocator did not assign the location
2215 // of `expected` (RAX) to `value` nor to `base`, so that heap
2216 // poisoning (when enabled) works as intended below.
2217 // - If `value` were equal to `expected`, both references would
2218 // be poisoned twice, meaning they would not be poisoned at
2219 // all, as heap poisoning uses address negation.
2220 // - If `base` were equal to `expected`, poisoning `expected`
2221 // would invalidate `base`.
2222 DCHECK_NE(value_reg, expected.AsRegister());
2223 DCHECK_NE(base.AsRegister(), expected.AsRegister());
2224
2225 __ PoisonHeapReference(expected);
2226 __ PoisonHeapReference(CpuRegister(value_reg));
Mark Mendell58d25fd2015-04-03 14:52:31 -04002227 }
2228
Roland Levillain391b8662015-12-18 11:43:38 +00002229 // TODO: Add a read barrier for the reference stored in the object
2230 // before attempting the CAS, similar to the one in the
2231 // art::Unsafe_compareAndSwapObject JNI implementation.
2232 //
2233 // Note that this code is not (yet) used when read barriers are
2234 // enabled (see IntrinsicLocationsBuilderX86_64::VisitUnsafeCASObject).
2235 DCHECK(!kEmitCompilerReadBarrier);
Roland Levillainb488b782015-10-22 11:38:49 +01002236 __ LockCmpxchgl(Address(base, offset, TIMES_1, 0), CpuRegister(value_reg));
Mark Mendell58d25fd2015-04-03 14:52:31 -04002237
Roland Levillain0d5a2812015-11-13 10:07:31 +00002238 // LOCK CMPXCHG has full barrier semantics, and we don't need
Roland Levillainb488b782015-10-22 11:38:49 +01002239 // scheduling barriers at this time.
Mark Mendell58d25fd2015-04-03 14:52:31 -04002240
Roland Levillainb488b782015-10-22 11:38:49 +01002241 // Convert ZF into the boolean result.
2242 __ setcc(kZero, out);
2243 __ movzxb(out, out);
Roland Levillain4d027112015-07-01 15:41:14 +01002244
Roland Levillain391b8662015-12-18 11:43:38 +00002245 // If heap poisoning is enabled, we need to unpoison the values
2246 // that were poisoned earlier.
Roland Levillainb488b782015-10-22 11:38:49 +01002247 if (kPoisonHeapReferences) {
2248 if (base_equals_value) {
2249 // `value_reg` has been moved to a temporary register, no need
2250 // to unpoison it.
2251 } else {
2252 // Ensure `value` is different from `out`, so that unpoisoning
2253 // the former does not invalidate the latter.
2254 DCHECK_NE(value_reg, out.AsRegister());
2255 __ UnpoisonHeapReference(CpuRegister(value_reg));
2256 }
2257 // Ensure `expected` is different from `out`, so that unpoisoning
2258 // the former does not invalidate the latter.
2259 DCHECK_NE(expected.AsRegister(), out.AsRegister());
2260 __ UnpoisonHeapReference(expected);
2261 }
2262 } else {
2263 if (type == Primitive::kPrimInt) {
2264 __ LockCmpxchgl(Address(base, offset, TIMES_1, 0), value);
2265 } else if (type == Primitive::kPrimLong) {
2266 __ LockCmpxchgq(Address(base, offset, TIMES_1, 0), value);
2267 } else {
2268 LOG(FATAL) << "Unexpected CAS type " << type;
2269 }
2270
Roland Levillain0d5a2812015-11-13 10:07:31 +00002271 // LOCK CMPXCHG has full barrier semantics, and we don't need
Roland Levillainb488b782015-10-22 11:38:49 +01002272 // scheduling barriers at this time.
2273
2274 // Convert ZF into the boolean result.
2275 __ setcc(kZero, out);
2276 __ movzxb(out, out);
Roland Levillain4d027112015-07-01 15:41:14 +01002277 }
Mark Mendell58d25fd2015-04-03 14:52:31 -04002278}
2279
2280void IntrinsicCodeGeneratorX86_64::VisitUnsafeCASInt(HInvoke* invoke) {
2281 GenCAS(Primitive::kPrimInt, invoke, codegen_);
2282}
2283
2284void IntrinsicCodeGeneratorX86_64::VisitUnsafeCASLong(HInvoke* invoke) {
2285 GenCAS(Primitive::kPrimLong, invoke, codegen_);
2286}
2287
2288void IntrinsicCodeGeneratorX86_64::VisitUnsafeCASObject(HInvoke* invoke) {
2289 GenCAS(Primitive::kPrimNot, invoke, codegen_);
2290}
2291
2292void IntrinsicLocationsBuilderX86_64::VisitIntegerReverse(HInvoke* invoke) {
2293 LocationSummary* locations = new (arena_) LocationSummary(invoke,
2294 LocationSummary::kNoCall,
2295 kIntrinsified);
2296 locations->SetInAt(0, Location::RequiresRegister());
2297 locations->SetOut(Location::SameAsFirstInput());
2298 locations->AddTemp(Location::RequiresRegister());
2299}
2300
2301static void SwapBits(CpuRegister reg, CpuRegister temp, int32_t shift, int32_t mask,
2302 X86_64Assembler* assembler) {
2303 Immediate imm_shift(shift);
2304 Immediate imm_mask(mask);
2305 __ movl(temp, reg);
2306 __ shrl(reg, imm_shift);
2307 __ andl(temp, imm_mask);
2308 __ andl(reg, imm_mask);
2309 __ shll(temp, imm_shift);
2310 __ orl(reg, temp);
2311}
2312
2313void IntrinsicCodeGeneratorX86_64::VisitIntegerReverse(HInvoke* invoke) {
Aart Bikc5d47542016-01-27 17:00:35 -08002314 X86_64Assembler* assembler = GetAssembler();
Mark Mendell58d25fd2015-04-03 14:52:31 -04002315 LocationSummary* locations = invoke->GetLocations();
2316
2317 CpuRegister reg = locations->InAt(0).AsRegister<CpuRegister>();
2318 CpuRegister temp = locations->GetTemp(0).AsRegister<CpuRegister>();
2319
2320 /*
2321 * Use one bswap instruction to reverse byte order first and then use 3 rounds of
2322 * swapping bits to reverse bits in a number x. Using bswap to save instructions
2323 * compared to generic luni implementation which has 5 rounds of swapping bits.
2324 * x = bswap x
2325 * x = (x & 0x55555555) << 1 | (x >> 1) & 0x55555555;
2326 * x = (x & 0x33333333) << 2 | (x >> 2) & 0x33333333;
2327 * x = (x & 0x0F0F0F0F) << 4 | (x >> 4) & 0x0F0F0F0F;
2328 */
2329 __ bswapl(reg);
2330 SwapBits(reg, temp, 1, 0x55555555, assembler);
2331 SwapBits(reg, temp, 2, 0x33333333, assembler);
2332 SwapBits(reg, temp, 4, 0x0f0f0f0f, assembler);
2333}
2334
2335void IntrinsicLocationsBuilderX86_64::VisitLongReverse(HInvoke* invoke) {
2336 LocationSummary* locations = new (arena_) LocationSummary(invoke,
2337 LocationSummary::kNoCall,
2338 kIntrinsified);
2339 locations->SetInAt(0, Location::RequiresRegister());
2340 locations->SetOut(Location::SameAsFirstInput());
2341 locations->AddTemp(Location::RequiresRegister());
2342 locations->AddTemp(Location::RequiresRegister());
2343}
2344
2345static void SwapBits64(CpuRegister reg, CpuRegister temp, CpuRegister temp_mask,
2346 int32_t shift, int64_t mask, X86_64Assembler* assembler) {
2347 Immediate imm_shift(shift);
2348 __ movq(temp_mask, Immediate(mask));
2349 __ movq(temp, reg);
2350 __ shrq(reg, imm_shift);
2351 __ andq(temp, temp_mask);
2352 __ andq(reg, temp_mask);
2353 __ shlq(temp, imm_shift);
2354 __ orq(reg, temp);
2355}
2356
2357void IntrinsicCodeGeneratorX86_64::VisitLongReverse(HInvoke* invoke) {
Aart Bikc5d47542016-01-27 17:00:35 -08002358 X86_64Assembler* assembler = GetAssembler();
Mark Mendell58d25fd2015-04-03 14:52:31 -04002359 LocationSummary* locations = invoke->GetLocations();
2360
2361 CpuRegister reg = locations->InAt(0).AsRegister<CpuRegister>();
2362 CpuRegister temp1 = locations->GetTemp(0).AsRegister<CpuRegister>();
2363 CpuRegister temp2 = locations->GetTemp(1).AsRegister<CpuRegister>();
2364
2365 /*
2366 * Use one bswap instruction to reverse byte order first and then use 3 rounds of
2367 * swapping bits to reverse bits in a long number x. Using bswap to save instructions
2368 * compared to generic luni implementation which has 5 rounds of swapping bits.
2369 * x = bswap x
2370 * x = (x & 0x5555555555555555) << 1 | (x >> 1) & 0x5555555555555555;
2371 * x = (x & 0x3333333333333333) << 2 | (x >> 2) & 0x3333333333333333;
2372 * x = (x & 0x0F0F0F0F0F0F0F0F) << 4 | (x >> 4) & 0x0F0F0F0F0F0F0F0F;
2373 */
2374 __ bswapq(reg);
2375 SwapBits64(reg, temp1, temp2, 1, INT64_C(0x5555555555555555), assembler);
2376 SwapBits64(reg, temp1, temp2, 2, INT64_C(0x3333333333333333), assembler);
2377 SwapBits64(reg, temp1, temp2, 4, INT64_C(0x0f0f0f0f0f0f0f0f), assembler);
2378}
2379
Aart Bik3f67e692016-01-15 14:35:12 -08002380static void CreateBitCountLocations(
2381 ArenaAllocator* arena, CodeGeneratorX86_64* codegen, HInvoke* invoke) {
2382 if (!codegen->GetInstructionSetFeatures().HasPopCnt()) {
2383 // Do nothing if there is no popcnt support. This results in generating
2384 // a call for the intrinsic rather than direct code.
2385 return;
2386 }
2387 LocationSummary* locations = new (arena) LocationSummary(invoke,
2388 LocationSummary::kNoCall,
2389 kIntrinsified);
2390 locations->SetInAt(0, Location::Any());
2391 locations->SetOut(Location::RequiresRegister());
2392}
2393
Aart Bikc5d47542016-01-27 17:00:35 -08002394static void GenBitCount(X86_64Assembler* assembler,
2395 CodeGeneratorX86_64* codegen,
2396 HInvoke* invoke,
2397 bool is_long) {
Aart Bik3f67e692016-01-15 14:35:12 -08002398 LocationSummary* locations = invoke->GetLocations();
2399 Location src = locations->InAt(0);
2400 CpuRegister out = locations->Out().AsRegister<CpuRegister>();
2401
2402 if (invoke->InputAt(0)->IsConstant()) {
2403 // Evaluate this at compile time.
2404 int64_t value = Int64FromConstant(invoke->InputAt(0)->AsConstant());
Roland Levillainfa3912e2016-04-01 18:21:55 +01002405 int32_t result = is_long
Aart Bik3f67e692016-01-15 14:35:12 -08002406 ? POPCOUNT(static_cast<uint64_t>(value))
2407 : POPCOUNT(static_cast<uint32_t>(value));
Roland Levillainfa3912e2016-04-01 18:21:55 +01002408 codegen->Load32BitValue(out, result);
Aart Bik3f67e692016-01-15 14:35:12 -08002409 return;
2410 }
2411
2412 if (src.IsRegister()) {
2413 if (is_long) {
2414 __ popcntq(out, src.AsRegister<CpuRegister>());
2415 } else {
2416 __ popcntl(out, src.AsRegister<CpuRegister>());
2417 }
2418 } else if (is_long) {
2419 DCHECK(src.IsDoubleStackSlot());
2420 __ popcntq(out, Address(CpuRegister(RSP), src.GetStackIndex()));
2421 } else {
2422 DCHECK(src.IsStackSlot());
2423 __ popcntl(out, Address(CpuRegister(RSP), src.GetStackIndex()));
2424 }
2425}
2426
2427void IntrinsicLocationsBuilderX86_64::VisitIntegerBitCount(HInvoke* invoke) {
2428 CreateBitCountLocations(arena_, codegen_, invoke);
2429}
2430
2431void IntrinsicCodeGeneratorX86_64::VisitIntegerBitCount(HInvoke* invoke) {
Aart Bikc5d47542016-01-27 17:00:35 -08002432 GenBitCount(GetAssembler(), codegen_, invoke, /* is_long */ false);
Aart Bik3f67e692016-01-15 14:35:12 -08002433}
2434
2435void IntrinsicLocationsBuilderX86_64::VisitLongBitCount(HInvoke* invoke) {
2436 CreateBitCountLocations(arena_, codegen_, invoke);
2437}
2438
2439void IntrinsicCodeGeneratorX86_64::VisitLongBitCount(HInvoke* invoke) {
Aart Bikc5d47542016-01-27 17:00:35 -08002440 GenBitCount(GetAssembler(), codegen_, invoke, /* is_long */ true);
2441}
2442
Aart Bikc5d47542016-01-27 17:00:35 -08002443static void CreateOneBitLocations(ArenaAllocator* arena, HInvoke* invoke, bool is_high) {
2444 LocationSummary* locations = new (arena) LocationSummary(invoke,
2445 LocationSummary::kNoCall,
2446 kIntrinsified);
2447 locations->SetInAt(0, Location::Any());
2448 locations->SetOut(Location::RequiresRegister());
2449 locations->AddTemp(is_high ? Location::RegisterLocation(RCX) // needs CL
2450 : Location::RequiresRegister()); // any will do
2451}
2452
2453static void GenOneBit(X86_64Assembler* assembler,
2454 CodeGeneratorX86_64* codegen,
2455 HInvoke* invoke,
2456 bool is_high, bool is_long) {
2457 LocationSummary* locations = invoke->GetLocations();
2458 Location src = locations->InAt(0);
2459 CpuRegister out = locations->Out().AsRegister<CpuRegister>();
2460
2461 if (invoke->InputAt(0)->IsConstant()) {
2462 // Evaluate this at compile time.
2463 int64_t value = Int64FromConstant(invoke->InputAt(0)->AsConstant());
2464 if (value == 0) {
2465 __ xorl(out, out); // Clears upper bits too.
2466 return;
2467 }
2468 // Nonzero value.
2469 if (is_high) {
2470 value = is_long ? 63 - CLZ(static_cast<uint64_t>(value))
2471 : 31 - CLZ(static_cast<uint32_t>(value));
2472 } else {
2473 value = is_long ? CTZ(static_cast<uint64_t>(value))
2474 : CTZ(static_cast<uint32_t>(value));
2475 }
2476 if (is_long) {
2477 codegen->Load64BitValue(out, 1L << value);
2478 } else {
2479 codegen->Load32BitValue(out, 1 << value);
2480 }
2481 return;
2482 }
2483
2484 // Handle the non-constant cases.
2485 CpuRegister tmp = locations->GetTemp(0).AsRegister<CpuRegister>();
2486 if (is_high) {
2487 // Use architectural support: basically 1 << bsr.
2488 if (src.IsRegister()) {
2489 if (is_long) {
2490 __ bsrq(tmp, src.AsRegister<CpuRegister>());
2491 } else {
2492 __ bsrl(tmp, src.AsRegister<CpuRegister>());
2493 }
2494 } else if (is_long) {
2495 DCHECK(src.IsDoubleStackSlot());
2496 __ bsrq(tmp, Address(CpuRegister(RSP), src.GetStackIndex()));
2497 } else {
2498 DCHECK(src.IsStackSlot());
2499 __ bsrl(tmp, Address(CpuRegister(RSP), src.GetStackIndex()));
2500 }
2501 // BSR sets ZF if the input was zero.
2502 NearLabel is_zero, done;
2503 __ j(kEqual, &is_zero);
2504 __ movl(out, Immediate(1)); // Clears upper bits too.
2505 if (is_long) {
2506 __ shlq(out, tmp);
2507 } else {
2508 __ shll(out, tmp);
2509 }
2510 __ jmp(&done);
2511 __ Bind(&is_zero);
2512 __ xorl(out, out); // Clears upper bits too.
2513 __ Bind(&done);
2514 } else {
2515 // Copy input into temporary.
2516 if (src.IsRegister()) {
2517 if (is_long) {
2518 __ movq(tmp, src.AsRegister<CpuRegister>());
2519 } else {
2520 __ movl(tmp, src.AsRegister<CpuRegister>());
2521 }
2522 } else if (is_long) {
2523 DCHECK(src.IsDoubleStackSlot());
2524 __ movq(tmp, Address(CpuRegister(RSP), src.GetStackIndex()));
2525 } else {
2526 DCHECK(src.IsStackSlot());
2527 __ movl(tmp, Address(CpuRegister(RSP), src.GetStackIndex()));
2528 }
2529 // Do the bit twiddling: basically tmp & -tmp;
2530 if (is_long) {
2531 __ movq(out, tmp);
2532 __ negq(tmp);
2533 __ andq(out, tmp);
2534 } else {
2535 __ movl(out, tmp);
2536 __ negl(tmp);
2537 __ andl(out, tmp);
2538 }
2539 }
2540}
2541
2542void IntrinsicLocationsBuilderX86_64::VisitIntegerHighestOneBit(HInvoke* invoke) {
2543 CreateOneBitLocations(arena_, invoke, /* is_high */ true);
2544}
2545
2546void IntrinsicCodeGeneratorX86_64::VisitIntegerHighestOneBit(HInvoke* invoke) {
2547 GenOneBit(GetAssembler(), codegen_, invoke, /* is_high */ true, /* is_long */ false);
2548}
2549
2550void IntrinsicLocationsBuilderX86_64::VisitLongHighestOneBit(HInvoke* invoke) {
2551 CreateOneBitLocations(arena_, invoke, /* is_high */ true);
2552}
2553
2554void IntrinsicCodeGeneratorX86_64::VisitLongHighestOneBit(HInvoke* invoke) {
2555 GenOneBit(GetAssembler(), codegen_, invoke, /* is_high */ true, /* is_long */ true);
2556}
2557
2558void IntrinsicLocationsBuilderX86_64::VisitIntegerLowestOneBit(HInvoke* invoke) {
2559 CreateOneBitLocations(arena_, invoke, /* is_high */ false);
2560}
2561
2562void IntrinsicCodeGeneratorX86_64::VisitIntegerLowestOneBit(HInvoke* invoke) {
2563 GenOneBit(GetAssembler(), codegen_, invoke, /* is_high */ false, /* is_long */ false);
2564}
2565
2566void IntrinsicLocationsBuilderX86_64::VisitLongLowestOneBit(HInvoke* invoke) {
2567 CreateOneBitLocations(arena_, invoke, /* is_high */ false);
2568}
2569
2570void IntrinsicCodeGeneratorX86_64::VisitLongLowestOneBit(HInvoke* invoke) {
2571 GenOneBit(GetAssembler(), codegen_, invoke, /* is_high */ false, /* is_long */ true);
Aart Bik3f67e692016-01-15 14:35:12 -08002572}
2573
Mark Mendelld5897672015-08-12 21:16:41 -04002574static void CreateLeadingZeroLocations(ArenaAllocator* arena, HInvoke* invoke) {
2575 LocationSummary* locations = new (arena) LocationSummary(invoke,
2576 LocationSummary::kNoCall,
2577 kIntrinsified);
2578 locations->SetInAt(0, Location::Any());
2579 locations->SetOut(Location::RequiresRegister());
2580}
2581
Aart Bikc5d47542016-01-27 17:00:35 -08002582static void GenLeadingZeros(X86_64Assembler* assembler,
2583 CodeGeneratorX86_64* codegen,
2584 HInvoke* invoke, bool is_long) {
Mark Mendelld5897672015-08-12 21:16:41 -04002585 LocationSummary* locations = invoke->GetLocations();
2586 Location src = locations->InAt(0);
2587 CpuRegister out = locations->Out().AsRegister<CpuRegister>();
2588
2589 int zero_value_result = is_long ? 64 : 32;
2590 if (invoke->InputAt(0)->IsConstant()) {
2591 // Evaluate this at compile time.
2592 int64_t value = Int64FromConstant(invoke->InputAt(0)->AsConstant());
2593 if (value == 0) {
2594 value = zero_value_result;
2595 } else {
2596 value = is_long ? CLZ(static_cast<uint64_t>(value)) : CLZ(static_cast<uint32_t>(value));
2597 }
Aart Bikc5d47542016-01-27 17:00:35 -08002598 codegen->Load32BitValue(out, value);
Mark Mendelld5897672015-08-12 21:16:41 -04002599 return;
2600 }
2601
2602 // Handle the non-constant cases.
2603 if (src.IsRegister()) {
2604 if (is_long) {
2605 __ bsrq(out, src.AsRegister<CpuRegister>());
2606 } else {
2607 __ bsrl(out, src.AsRegister<CpuRegister>());
2608 }
2609 } else if (is_long) {
2610 DCHECK(src.IsDoubleStackSlot());
2611 __ bsrq(out, Address(CpuRegister(RSP), src.GetStackIndex()));
2612 } else {
2613 DCHECK(src.IsStackSlot());
2614 __ bsrl(out, Address(CpuRegister(RSP), src.GetStackIndex()));
2615 }
2616
2617 // BSR sets ZF if the input was zero, and the output is undefined.
Mark Mendell0c9497d2015-08-21 09:30:05 -04002618 NearLabel is_zero, done;
Mark Mendelld5897672015-08-12 21:16:41 -04002619 __ j(kEqual, &is_zero);
2620
2621 // Correct the result from BSR to get the CLZ result.
2622 __ xorl(out, Immediate(zero_value_result - 1));
2623 __ jmp(&done);
2624
2625 // Fix the zero case with the expected result.
2626 __ Bind(&is_zero);
2627 __ movl(out, Immediate(zero_value_result));
2628
2629 __ Bind(&done);
2630}
2631
2632void IntrinsicLocationsBuilderX86_64::VisitIntegerNumberOfLeadingZeros(HInvoke* invoke) {
2633 CreateLeadingZeroLocations(arena_, invoke);
2634}
2635
2636void IntrinsicCodeGeneratorX86_64::VisitIntegerNumberOfLeadingZeros(HInvoke* invoke) {
Aart Bikc5d47542016-01-27 17:00:35 -08002637 GenLeadingZeros(GetAssembler(), codegen_, invoke, /* is_long */ false);
Mark Mendelld5897672015-08-12 21:16:41 -04002638}
2639
2640void IntrinsicLocationsBuilderX86_64::VisitLongNumberOfLeadingZeros(HInvoke* invoke) {
2641 CreateLeadingZeroLocations(arena_, invoke);
2642}
2643
2644void IntrinsicCodeGeneratorX86_64::VisitLongNumberOfLeadingZeros(HInvoke* invoke) {
Aart Bikc5d47542016-01-27 17:00:35 -08002645 GenLeadingZeros(GetAssembler(), codegen_, invoke, /* is_long */ true);
Mark Mendelld5897672015-08-12 21:16:41 -04002646}
2647
Mark Mendell2d554792015-09-15 21:45:18 -04002648static void CreateTrailingZeroLocations(ArenaAllocator* arena, HInvoke* invoke) {
2649 LocationSummary* locations = new (arena) LocationSummary(invoke,
2650 LocationSummary::kNoCall,
2651 kIntrinsified);
2652 locations->SetInAt(0, Location::Any());
2653 locations->SetOut(Location::RequiresRegister());
2654}
2655
Aart Bikc5d47542016-01-27 17:00:35 -08002656static void GenTrailingZeros(X86_64Assembler* assembler,
2657 CodeGeneratorX86_64* codegen,
2658 HInvoke* invoke, bool is_long) {
Mark Mendell2d554792015-09-15 21:45:18 -04002659 LocationSummary* locations = invoke->GetLocations();
2660 Location src = locations->InAt(0);
2661 CpuRegister out = locations->Out().AsRegister<CpuRegister>();
2662
2663 int zero_value_result = is_long ? 64 : 32;
2664 if (invoke->InputAt(0)->IsConstant()) {
2665 // Evaluate this at compile time.
2666 int64_t value = Int64FromConstant(invoke->InputAt(0)->AsConstant());
2667 if (value == 0) {
2668 value = zero_value_result;
2669 } else {
2670 value = is_long ? CTZ(static_cast<uint64_t>(value)) : CTZ(static_cast<uint32_t>(value));
2671 }
Aart Bikc5d47542016-01-27 17:00:35 -08002672 codegen->Load32BitValue(out, value);
Mark Mendell2d554792015-09-15 21:45:18 -04002673 return;
2674 }
2675
2676 // Handle the non-constant cases.
2677 if (src.IsRegister()) {
2678 if (is_long) {
2679 __ bsfq(out, src.AsRegister<CpuRegister>());
2680 } else {
2681 __ bsfl(out, src.AsRegister<CpuRegister>());
2682 }
2683 } else if (is_long) {
2684 DCHECK(src.IsDoubleStackSlot());
2685 __ bsfq(out, Address(CpuRegister(RSP), src.GetStackIndex()));
2686 } else {
2687 DCHECK(src.IsStackSlot());
2688 __ bsfl(out, Address(CpuRegister(RSP), src.GetStackIndex()));
2689 }
2690
2691 // BSF sets ZF if the input was zero, and the output is undefined.
2692 NearLabel done;
2693 __ j(kNotEqual, &done);
2694
2695 // Fix the zero case with the expected result.
2696 __ movl(out, Immediate(zero_value_result));
2697
2698 __ Bind(&done);
2699}
2700
2701void IntrinsicLocationsBuilderX86_64::VisitIntegerNumberOfTrailingZeros(HInvoke* invoke) {
2702 CreateTrailingZeroLocations(arena_, invoke);
2703}
2704
2705void IntrinsicCodeGeneratorX86_64::VisitIntegerNumberOfTrailingZeros(HInvoke* invoke) {
Aart Bikc5d47542016-01-27 17:00:35 -08002706 GenTrailingZeros(GetAssembler(), codegen_, invoke, /* is_long */ false);
Mark Mendell2d554792015-09-15 21:45:18 -04002707}
2708
2709void IntrinsicLocationsBuilderX86_64::VisitLongNumberOfTrailingZeros(HInvoke* invoke) {
2710 CreateTrailingZeroLocations(arena_, invoke);
2711}
2712
2713void IntrinsicCodeGeneratorX86_64::VisitLongNumberOfTrailingZeros(HInvoke* invoke) {
Aart Bikc5d47542016-01-27 17:00:35 -08002714 GenTrailingZeros(GetAssembler(), codegen_, invoke, /* is_long */ true);
2715}
2716
Aart Bik2f9fcc92016-03-01 15:16:54 -08002717UNIMPLEMENTED_INTRINSIC(X86_64, ReferenceGetReferent)
2718UNIMPLEMENTED_INTRINSIC(X86_64, FloatIsInfinite)
2719UNIMPLEMENTED_INTRINSIC(X86_64, DoubleIsInfinite)
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002720
Aart Bik0e54c012016-03-04 12:08:31 -08002721// 1.8.
2722UNIMPLEMENTED_INTRINSIC(X86_64, UnsafeGetAndAddInt)
2723UNIMPLEMENTED_INTRINSIC(X86_64, UnsafeGetAndAddLong)
2724UNIMPLEMENTED_INTRINSIC(X86_64, UnsafeGetAndSetInt)
2725UNIMPLEMENTED_INTRINSIC(X86_64, UnsafeGetAndSetLong)
2726UNIMPLEMENTED_INTRINSIC(X86_64, UnsafeGetAndSetObject)
Aart Bik0e54c012016-03-04 12:08:31 -08002727
Aart Bik2f9fcc92016-03-01 15:16:54 -08002728UNREACHABLE_INTRINSICS(X86_64)
Roland Levillain4d027112015-07-01 15:41:14 +01002729
2730#undef __
2731
Andreas Gampe71fb52f2014-12-29 17:43:08 -08002732} // namespace x86_64
2733} // namespace art