blob: fd2da1004bb05c7e0205f334a16b1eb495f7b223 [file] [log] [blame]
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -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_arm.h"
18
19#include "arch/arm/instruction_set_features_arm.h"
Mathieu Chartiere401d142015-04-22 13:56:20 -070020#include "art_method.h"
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -080021#include "code_generator_arm.h"
22#include "entrypoints/quick/quick_entrypoints.h"
23#include "intrinsics.h"
Andreas Gampe85b62f22015-09-09 13:15:38 -070024#include "intrinsics_utils.h"
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -080025#include "mirror/array-inl.h"
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -080026#include "mirror/string.h"
27#include "thread.h"
28#include "utils/arm/assembler_arm.h"
29
30namespace art {
31
32namespace arm {
33
34ArmAssembler* IntrinsicCodeGeneratorARM::GetAssembler() {
35 return codegen_->GetAssembler();
36}
37
38ArenaAllocator* IntrinsicCodeGeneratorARM::GetAllocator() {
39 return codegen_->GetGraph()->GetArena();
40}
41
Andreas Gampe85b62f22015-09-09 13:15:38 -070042using IntrinsicSlowPathARM = IntrinsicSlowPath<InvokeDexCallingConventionVisitorARM>;
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -080043
Roland Levillain0b671c02016-08-19 12:02:34 +010044// NOLINT on __ macro to suppress wrong warning/fix (misc-macro-parentheses) from clang-tidy.
45#define __ down_cast<ArmAssembler*>(codegen->GetAssembler())-> // NOLINT
46
47// Slow path implementing the SystemArrayCopy intrinsic copy loop with read barriers.
48class ReadBarrierSystemArrayCopySlowPathARM : public SlowPathCode {
49 public:
50 explicit ReadBarrierSystemArrayCopySlowPathARM(HInstruction* instruction)
51 : SlowPathCode(instruction) {
52 DCHECK(kEmitCompilerReadBarrier);
53 DCHECK(kUseBakerReadBarrier);
54 }
55
56 void EmitNativeCode(CodeGenerator* codegen) OVERRIDE {
57 CodeGeneratorARM* arm_codegen = down_cast<CodeGeneratorARM*>(codegen);
58 LocationSummary* locations = instruction_->GetLocations();
59 DCHECK(locations->CanCall());
60 DCHECK(instruction_->IsInvokeStaticOrDirect())
61 << "Unexpected instruction in read barrier arraycopy slow path: "
62 << instruction_->DebugName();
63 DCHECK(instruction_->GetLocations()->Intrinsified());
64 DCHECK_EQ(instruction_->AsInvoke()->GetIntrinsic(), Intrinsics::kSystemArrayCopy);
65
66 int32_t element_size = Primitive::ComponentSize(Primitive::kPrimNot);
67 uint32_t element_size_shift = Primitive::ComponentSizeShift(Primitive::kPrimNot);
68 uint32_t offset = mirror::Array::DataOffset(element_size).Uint32Value();
69
70 Register dest = locations->InAt(2).AsRegister<Register>();
71 Location dest_pos = locations->InAt(3);
72 Register src_curr_addr = locations->GetTemp(0).AsRegister<Register>();
73 Register dst_curr_addr = locations->GetTemp(1).AsRegister<Register>();
74 Register src_stop_addr = locations->GetTemp(2).AsRegister<Register>();
75 Register tmp = locations->GetTemp(3).AsRegister<Register>();
76
77 __ Bind(GetEntryLabel());
78 // Compute the base destination address in `dst_curr_addr`.
79 if (dest_pos.IsConstant()) {
80 int32_t constant = dest_pos.GetConstant()->AsIntConstant()->GetValue();
81 __ AddConstant(dst_curr_addr, dest, element_size * constant + offset);
82 } else {
83 __ add(dst_curr_addr,
84 dest,
85 ShifterOperand(dest_pos.AsRegister<Register>(), LSL, element_size_shift));
86 __ AddConstant(dst_curr_addr, offset);
87 }
88
89 Label loop;
90 __ Bind(&loop);
91 __ ldr(tmp, Address(src_curr_addr, element_size, Address::PostIndex));
92 __ MaybeUnpoisonHeapReference(tmp);
93 // TODO: Inline the mark bit check before calling the runtime?
94 // tmp = ReadBarrier::Mark(tmp);
95 // No need to save live registers; it's taken care of by the
96 // entrypoint. Also, there is no need to update the stack mask,
97 // as this runtime call will not trigger a garbage collection.
98 // (See ReadBarrierMarkSlowPathARM::EmitNativeCode for more
99 // explanations.)
100 DCHECK_NE(tmp, SP);
101 DCHECK_NE(tmp, LR);
102 DCHECK_NE(tmp, PC);
103 // IP is used internally by the ReadBarrierMarkRegX entry point
104 // as a temporary (and not preserved). It thus cannot be used by
105 // any live register in this slow path.
106 DCHECK_NE(src_curr_addr, IP);
107 DCHECK_NE(dst_curr_addr, IP);
108 DCHECK_NE(src_stop_addr, IP);
109 DCHECK_NE(tmp, IP);
110 DCHECK(0 <= tmp && tmp < kNumberOfCoreRegisters) << tmp;
111 int32_t entry_point_offset =
112 CodeGenerator::GetReadBarrierMarkEntryPointsOffset<kArmPointerSize>(tmp);
113 // This runtime call does not require a stack map.
114 arm_codegen->InvokeRuntimeWithoutRecordingPcInfo(entry_point_offset, instruction_, this);
115 __ MaybePoisonHeapReference(tmp);
116 __ str(tmp, Address(dst_curr_addr, element_size, Address::PostIndex));
117 __ cmp(src_curr_addr, ShifterOperand(src_stop_addr));
118 __ b(&loop, NE);
119 __ b(GetExitLabel());
120 }
121
122 const char* GetDescription() const OVERRIDE { return "ReadBarrierSystemArrayCopySlowPathARM"; }
123
124 private:
125 DISALLOW_COPY_AND_ASSIGN(ReadBarrierSystemArrayCopySlowPathARM);
126};
127
128#undef __
129
Vladimir Marko68c981f2016-08-26 13:13:33 +0100130IntrinsicLocationsBuilderARM::IntrinsicLocationsBuilderARM(CodeGeneratorARM* codegen)
131 : arena_(codegen->GetGraph()->GetArena()),
132 assembler_(codegen->GetAssembler()),
133 features_(codegen->GetInstructionSetFeatures()) {}
134
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800135bool IntrinsicLocationsBuilderARM::TryDispatch(HInvoke* invoke) {
136 Dispatch(invoke);
137 LocationSummary* res = invoke->GetLocations();
Roland Levillain3b359c72015-11-17 19:35:12 +0000138 if (res == nullptr) {
139 return false;
140 }
Roland Levillain3b359c72015-11-17 19:35:12 +0000141 return res->Intrinsified();
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800142}
143
144#define __ assembler->
145
146static void CreateFPToIntLocations(ArenaAllocator* arena, HInvoke* invoke) {
147 LocationSummary* locations = new (arena) LocationSummary(invoke,
148 LocationSummary::kNoCall,
149 kIntrinsified);
150 locations->SetInAt(0, Location::RequiresFpuRegister());
151 locations->SetOut(Location::RequiresRegister());
152}
153
154static void CreateIntToFPLocations(ArenaAllocator* arena, HInvoke* invoke) {
155 LocationSummary* locations = new (arena) LocationSummary(invoke,
156 LocationSummary::kNoCall,
157 kIntrinsified);
158 locations->SetInAt(0, Location::RequiresRegister());
159 locations->SetOut(Location::RequiresFpuRegister());
160}
161
162static void MoveFPToInt(LocationSummary* locations, bool is64bit, ArmAssembler* assembler) {
163 Location input = locations->InAt(0);
164 Location output = locations->Out();
165 if (is64bit) {
166 __ vmovrrd(output.AsRegisterPairLow<Register>(),
167 output.AsRegisterPairHigh<Register>(),
168 FromLowSToD(input.AsFpuRegisterPairLow<SRegister>()));
169 } else {
170 __ vmovrs(output.AsRegister<Register>(), input.AsFpuRegister<SRegister>());
171 }
172}
173
174static void MoveIntToFP(LocationSummary* locations, bool is64bit, ArmAssembler* assembler) {
175 Location input = locations->InAt(0);
176 Location output = locations->Out();
177 if (is64bit) {
178 __ vmovdrr(FromLowSToD(output.AsFpuRegisterPairLow<SRegister>()),
179 input.AsRegisterPairLow<Register>(),
180 input.AsRegisterPairHigh<Register>());
181 } else {
182 __ vmovsr(output.AsFpuRegister<SRegister>(), input.AsRegister<Register>());
183 }
184}
185
186void IntrinsicLocationsBuilderARM::VisitDoubleDoubleToRawLongBits(HInvoke* invoke) {
187 CreateFPToIntLocations(arena_, invoke);
188}
189void IntrinsicLocationsBuilderARM::VisitDoubleLongBitsToDouble(HInvoke* invoke) {
190 CreateIntToFPLocations(arena_, invoke);
191}
192
193void IntrinsicCodeGeneratorARM::VisitDoubleDoubleToRawLongBits(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000194 MoveFPToInt(invoke->GetLocations(), /* is64bit */ true, GetAssembler());
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800195}
196void IntrinsicCodeGeneratorARM::VisitDoubleLongBitsToDouble(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000197 MoveIntToFP(invoke->GetLocations(), /* is64bit */ true, GetAssembler());
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800198}
199
200void IntrinsicLocationsBuilderARM::VisitFloatFloatToRawIntBits(HInvoke* invoke) {
201 CreateFPToIntLocations(arena_, invoke);
202}
203void IntrinsicLocationsBuilderARM::VisitFloatIntBitsToFloat(HInvoke* invoke) {
204 CreateIntToFPLocations(arena_, invoke);
205}
206
207void IntrinsicCodeGeneratorARM::VisitFloatFloatToRawIntBits(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000208 MoveFPToInt(invoke->GetLocations(), /* is64bit */ false, GetAssembler());
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800209}
210void IntrinsicCodeGeneratorARM::VisitFloatIntBitsToFloat(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000211 MoveIntToFP(invoke->GetLocations(), /* is64bit */ false, GetAssembler());
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800212}
213
214static void CreateIntToIntLocations(ArenaAllocator* arena, HInvoke* invoke) {
215 LocationSummary* locations = new (arena) LocationSummary(invoke,
216 LocationSummary::kNoCall,
217 kIntrinsified);
218 locations->SetInAt(0, Location::RequiresRegister());
219 locations->SetOut(Location::RequiresRegister(), Location::kNoOutputOverlap);
220}
221
222static void CreateFPToFPLocations(ArenaAllocator* arena, HInvoke* invoke) {
223 LocationSummary* locations = new (arena) LocationSummary(invoke,
224 LocationSummary::kNoCall,
225 kIntrinsified);
226 locations->SetInAt(0, Location::RequiresFpuRegister());
227 locations->SetOut(Location::RequiresFpuRegister(), Location::kNoOutputOverlap);
228}
229
Scott Wakeling611d3392015-07-10 11:42:06 +0100230static void GenNumberOfLeadingZeros(LocationSummary* locations,
231 Primitive::Type type,
232 ArmAssembler* assembler) {
233 Location in = locations->InAt(0);
234 Register out = locations->Out().AsRegister<Register>();
235
236 DCHECK((type == Primitive::kPrimInt) || (type == Primitive::kPrimLong));
237
238 if (type == Primitive::kPrimLong) {
239 Register in_reg_lo = in.AsRegisterPairLow<Register>();
240 Register in_reg_hi = in.AsRegisterPairHigh<Register>();
241 Label end;
242 __ clz(out, in_reg_hi);
243 __ CompareAndBranchIfNonZero(in_reg_hi, &end);
244 __ clz(out, in_reg_lo);
245 __ AddConstant(out, 32);
246 __ Bind(&end);
247 } else {
248 __ clz(out, in.AsRegister<Register>());
249 }
250}
251
252void IntrinsicLocationsBuilderARM::VisitIntegerNumberOfLeadingZeros(HInvoke* invoke) {
253 CreateIntToIntLocations(arena_, invoke);
254}
255
256void IntrinsicCodeGeneratorARM::VisitIntegerNumberOfLeadingZeros(HInvoke* invoke) {
257 GenNumberOfLeadingZeros(invoke->GetLocations(), Primitive::kPrimInt, GetAssembler());
258}
259
260void IntrinsicLocationsBuilderARM::VisitLongNumberOfLeadingZeros(HInvoke* invoke) {
261 LocationSummary* locations = new (arena_) LocationSummary(invoke,
262 LocationSummary::kNoCall,
263 kIntrinsified);
264 locations->SetInAt(0, Location::RequiresRegister());
265 locations->SetOut(Location::RequiresRegister(), Location::kOutputOverlap);
266}
267
268void IntrinsicCodeGeneratorARM::VisitLongNumberOfLeadingZeros(HInvoke* invoke) {
269 GenNumberOfLeadingZeros(invoke->GetLocations(), Primitive::kPrimLong, GetAssembler());
270}
271
Scott Wakeling9ee23f42015-07-23 10:44:35 +0100272static void GenNumberOfTrailingZeros(LocationSummary* locations,
273 Primitive::Type type,
274 ArmAssembler* assembler) {
275 DCHECK((type == Primitive::kPrimInt) || (type == Primitive::kPrimLong));
276
277 Register out = locations->Out().AsRegister<Register>();
278
279 if (type == Primitive::kPrimLong) {
280 Register in_reg_lo = locations->InAt(0).AsRegisterPairLow<Register>();
281 Register in_reg_hi = locations->InAt(0).AsRegisterPairHigh<Register>();
282 Label end;
283 __ rbit(out, in_reg_lo);
284 __ clz(out, out);
285 __ CompareAndBranchIfNonZero(in_reg_lo, &end);
286 __ rbit(out, in_reg_hi);
287 __ clz(out, out);
288 __ AddConstant(out, 32);
289 __ Bind(&end);
290 } else {
291 Register in = locations->InAt(0).AsRegister<Register>();
292 __ rbit(out, in);
293 __ clz(out, out);
294 }
295}
296
297void IntrinsicLocationsBuilderARM::VisitIntegerNumberOfTrailingZeros(HInvoke* invoke) {
298 LocationSummary* locations = new (arena_) LocationSummary(invoke,
299 LocationSummary::kNoCall,
300 kIntrinsified);
301 locations->SetInAt(0, Location::RequiresRegister());
302 locations->SetOut(Location::RequiresRegister(), Location::kNoOutputOverlap);
303}
304
305void IntrinsicCodeGeneratorARM::VisitIntegerNumberOfTrailingZeros(HInvoke* invoke) {
306 GenNumberOfTrailingZeros(invoke->GetLocations(), Primitive::kPrimInt, GetAssembler());
307}
308
309void IntrinsicLocationsBuilderARM::VisitLongNumberOfTrailingZeros(HInvoke* invoke) {
310 LocationSummary* locations = new (arena_) LocationSummary(invoke,
311 LocationSummary::kNoCall,
312 kIntrinsified);
313 locations->SetInAt(0, Location::RequiresRegister());
314 locations->SetOut(Location::RequiresRegister(), Location::kOutputOverlap);
315}
316
317void IntrinsicCodeGeneratorARM::VisitLongNumberOfTrailingZeros(HInvoke* invoke) {
318 GenNumberOfTrailingZeros(invoke->GetLocations(), Primitive::kPrimLong, GetAssembler());
319}
320
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800321static void MathAbsFP(LocationSummary* locations, bool is64bit, ArmAssembler* assembler) {
322 Location in = locations->InAt(0);
323 Location out = locations->Out();
324
325 if (is64bit) {
326 __ vabsd(FromLowSToD(out.AsFpuRegisterPairLow<SRegister>()),
327 FromLowSToD(in.AsFpuRegisterPairLow<SRegister>()));
328 } else {
329 __ vabss(out.AsFpuRegister<SRegister>(), in.AsFpuRegister<SRegister>());
330 }
331}
332
333void IntrinsicLocationsBuilderARM::VisitMathAbsDouble(HInvoke* invoke) {
334 CreateFPToFPLocations(arena_, invoke);
335}
336
337void IntrinsicCodeGeneratorARM::VisitMathAbsDouble(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000338 MathAbsFP(invoke->GetLocations(), /* is64bit */ true, GetAssembler());
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800339}
340
341void IntrinsicLocationsBuilderARM::VisitMathAbsFloat(HInvoke* invoke) {
342 CreateFPToFPLocations(arena_, invoke);
343}
344
345void IntrinsicCodeGeneratorARM::VisitMathAbsFloat(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000346 MathAbsFP(invoke->GetLocations(), /* is64bit */ false, GetAssembler());
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800347}
348
349static void CreateIntToIntPlusTemp(ArenaAllocator* arena, HInvoke* invoke) {
350 LocationSummary* locations = new (arena) LocationSummary(invoke,
351 LocationSummary::kNoCall,
352 kIntrinsified);
353 locations->SetInAt(0, Location::RequiresRegister());
354 locations->SetOut(Location::RequiresRegister(), Location::kNoOutputOverlap);
355
356 locations->AddTemp(Location::RequiresRegister());
357}
358
359static void GenAbsInteger(LocationSummary* locations,
360 bool is64bit,
361 ArmAssembler* assembler) {
362 Location in = locations->InAt(0);
363 Location output = locations->Out();
364
365 Register mask = locations->GetTemp(0).AsRegister<Register>();
366
367 if (is64bit) {
368 Register in_reg_lo = in.AsRegisterPairLow<Register>();
369 Register in_reg_hi = in.AsRegisterPairHigh<Register>();
370 Register out_reg_lo = output.AsRegisterPairLow<Register>();
371 Register out_reg_hi = output.AsRegisterPairHigh<Register>();
372
373 DCHECK_NE(out_reg_lo, in_reg_hi) << "Diagonal overlap unexpected.";
374
375 __ Asr(mask, in_reg_hi, 31);
376 __ adds(out_reg_lo, in_reg_lo, ShifterOperand(mask));
377 __ adc(out_reg_hi, in_reg_hi, ShifterOperand(mask));
378 __ eor(out_reg_lo, mask, ShifterOperand(out_reg_lo));
379 __ eor(out_reg_hi, mask, ShifterOperand(out_reg_hi));
380 } else {
381 Register in_reg = in.AsRegister<Register>();
382 Register out_reg = output.AsRegister<Register>();
383
384 __ Asr(mask, in_reg, 31);
385 __ add(out_reg, in_reg, ShifterOperand(mask));
386 __ eor(out_reg, mask, ShifterOperand(out_reg));
387 }
388}
389
390void IntrinsicLocationsBuilderARM::VisitMathAbsInt(HInvoke* invoke) {
391 CreateIntToIntPlusTemp(arena_, invoke);
392}
393
394void IntrinsicCodeGeneratorARM::VisitMathAbsInt(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000395 GenAbsInteger(invoke->GetLocations(), /* is64bit */ false, GetAssembler());
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800396}
397
398
399void IntrinsicLocationsBuilderARM::VisitMathAbsLong(HInvoke* invoke) {
400 CreateIntToIntPlusTemp(arena_, invoke);
401}
402
403void IntrinsicCodeGeneratorARM::VisitMathAbsLong(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000404 GenAbsInteger(invoke->GetLocations(), /* is64bit */ true, GetAssembler());
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800405}
406
407static void GenMinMax(LocationSummary* locations,
408 bool is_min,
409 ArmAssembler* assembler) {
410 Register op1 = locations->InAt(0).AsRegister<Register>();
411 Register op2 = locations->InAt(1).AsRegister<Register>();
412 Register out = locations->Out().AsRegister<Register>();
413
414 __ cmp(op1, ShifterOperand(op2));
415
416 __ it((is_min) ? Condition::LT : Condition::GT, kItElse);
417 __ mov(out, ShifterOperand(op1), is_min ? Condition::LT : Condition::GT);
418 __ mov(out, ShifterOperand(op2), is_min ? Condition::GE : Condition::LE);
419}
420
421static void CreateIntIntToIntLocations(ArenaAllocator* arena, HInvoke* invoke) {
422 LocationSummary* locations = new (arena) LocationSummary(invoke,
423 LocationSummary::kNoCall,
424 kIntrinsified);
425 locations->SetInAt(0, Location::RequiresRegister());
426 locations->SetInAt(1, Location::RequiresRegister());
427 locations->SetOut(Location::RequiresRegister(), Location::kNoOutputOverlap);
428}
429
430void IntrinsicLocationsBuilderARM::VisitMathMinIntInt(HInvoke* invoke) {
431 CreateIntIntToIntLocations(arena_, invoke);
432}
433
434void IntrinsicCodeGeneratorARM::VisitMathMinIntInt(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000435 GenMinMax(invoke->GetLocations(), /* is_min */ true, GetAssembler());
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800436}
437
438void IntrinsicLocationsBuilderARM::VisitMathMaxIntInt(HInvoke* invoke) {
439 CreateIntIntToIntLocations(arena_, invoke);
440}
441
442void IntrinsicCodeGeneratorARM::VisitMathMaxIntInt(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000443 GenMinMax(invoke->GetLocations(), /* is_min */ false, GetAssembler());
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800444}
445
446void IntrinsicLocationsBuilderARM::VisitMathSqrt(HInvoke* invoke) {
447 CreateFPToFPLocations(arena_, invoke);
448}
449
450void IntrinsicCodeGeneratorARM::VisitMathSqrt(HInvoke* invoke) {
451 LocationSummary* locations = invoke->GetLocations();
452 ArmAssembler* assembler = GetAssembler();
453 __ vsqrtd(FromLowSToD(locations->Out().AsFpuRegisterPairLow<SRegister>()),
454 FromLowSToD(locations->InAt(0).AsFpuRegisterPairLow<SRegister>()));
455}
456
457void IntrinsicLocationsBuilderARM::VisitMemoryPeekByte(HInvoke* invoke) {
458 CreateIntToIntLocations(arena_, invoke);
459}
460
461void IntrinsicCodeGeneratorARM::VisitMemoryPeekByte(HInvoke* invoke) {
462 ArmAssembler* assembler = GetAssembler();
463 // Ignore upper 4B of long address.
464 __ ldrsb(invoke->GetLocations()->Out().AsRegister<Register>(),
465 Address(invoke->GetLocations()->InAt(0).AsRegisterPairLow<Register>()));
466}
467
468void IntrinsicLocationsBuilderARM::VisitMemoryPeekIntNative(HInvoke* invoke) {
469 CreateIntToIntLocations(arena_, invoke);
470}
471
472void IntrinsicCodeGeneratorARM::VisitMemoryPeekIntNative(HInvoke* invoke) {
473 ArmAssembler* assembler = GetAssembler();
474 // Ignore upper 4B of long address.
475 __ ldr(invoke->GetLocations()->Out().AsRegister<Register>(),
476 Address(invoke->GetLocations()->InAt(0).AsRegisterPairLow<Register>()));
477}
478
479void IntrinsicLocationsBuilderARM::VisitMemoryPeekLongNative(HInvoke* invoke) {
480 CreateIntToIntLocations(arena_, invoke);
481}
482
483void IntrinsicCodeGeneratorARM::VisitMemoryPeekLongNative(HInvoke* invoke) {
484 ArmAssembler* assembler = GetAssembler();
485 // Ignore upper 4B of long address.
486 Register addr = invoke->GetLocations()->InAt(0).AsRegisterPairLow<Register>();
487 // Worst case: Control register bit SCTLR.A = 0. Then unaligned accesses throw a processor
488 // exception. So we can't use ldrd as addr may be unaligned.
489 Register lo = invoke->GetLocations()->Out().AsRegisterPairLow<Register>();
490 Register hi = invoke->GetLocations()->Out().AsRegisterPairHigh<Register>();
491 if (addr == lo) {
492 __ ldr(hi, Address(addr, 4));
493 __ ldr(lo, Address(addr, 0));
494 } else {
495 __ ldr(lo, Address(addr, 0));
496 __ ldr(hi, Address(addr, 4));
497 }
498}
499
500void IntrinsicLocationsBuilderARM::VisitMemoryPeekShortNative(HInvoke* invoke) {
501 CreateIntToIntLocations(arena_, invoke);
502}
503
504void IntrinsicCodeGeneratorARM::VisitMemoryPeekShortNative(HInvoke* invoke) {
505 ArmAssembler* assembler = GetAssembler();
506 // Ignore upper 4B of long address.
507 __ ldrsh(invoke->GetLocations()->Out().AsRegister<Register>(),
508 Address(invoke->GetLocations()->InAt(0).AsRegisterPairLow<Register>()));
509}
510
511static void CreateIntIntToVoidLocations(ArenaAllocator* arena, HInvoke* invoke) {
512 LocationSummary* locations = new (arena) LocationSummary(invoke,
513 LocationSummary::kNoCall,
514 kIntrinsified);
515 locations->SetInAt(0, Location::RequiresRegister());
516 locations->SetInAt(1, Location::RequiresRegister());
517}
518
519void IntrinsicLocationsBuilderARM::VisitMemoryPokeByte(HInvoke* invoke) {
520 CreateIntIntToVoidLocations(arena_, invoke);
521}
522
523void IntrinsicCodeGeneratorARM::VisitMemoryPokeByte(HInvoke* invoke) {
524 ArmAssembler* assembler = GetAssembler();
525 __ strb(invoke->GetLocations()->InAt(1).AsRegister<Register>(),
526 Address(invoke->GetLocations()->InAt(0).AsRegisterPairLow<Register>()));
527}
528
529void IntrinsicLocationsBuilderARM::VisitMemoryPokeIntNative(HInvoke* invoke) {
530 CreateIntIntToVoidLocations(arena_, invoke);
531}
532
533void IntrinsicCodeGeneratorARM::VisitMemoryPokeIntNative(HInvoke* invoke) {
534 ArmAssembler* assembler = GetAssembler();
535 __ str(invoke->GetLocations()->InAt(1).AsRegister<Register>(),
536 Address(invoke->GetLocations()->InAt(0).AsRegisterPairLow<Register>()));
537}
538
539void IntrinsicLocationsBuilderARM::VisitMemoryPokeLongNative(HInvoke* invoke) {
540 CreateIntIntToVoidLocations(arena_, invoke);
541}
542
543void IntrinsicCodeGeneratorARM::VisitMemoryPokeLongNative(HInvoke* invoke) {
544 ArmAssembler* assembler = GetAssembler();
545 // Ignore upper 4B of long address.
546 Register addr = invoke->GetLocations()->InAt(0).AsRegisterPairLow<Register>();
547 // Worst case: Control register bit SCTLR.A = 0. Then unaligned accesses throw a processor
548 // exception. So we can't use ldrd as addr may be unaligned.
549 __ str(invoke->GetLocations()->InAt(1).AsRegisterPairLow<Register>(), Address(addr, 0));
550 __ str(invoke->GetLocations()->InAt(1).AsRegisterPairHigh<Register>(), Address(addr, 4));
551}
552
553void IntrinsicLocationsBuilderARM::VisitMemoryPokeShortNative(HInvoke* invoke) {
554 CreateIntIntToVoidLocations(arena_, invoke);
555}
556
557void IntrinsicCodeGeneratorARM::VisitMemoryPokeShortNative(HInvoke* invoke) {
558 ArmAssembler* assembler = GetAssembler();
559 __ strh(invoke->GetLocations()->InAt(1).AsRegister<Register>(),
560 Address(invoke->GetLocations()->InAt(0).AsRegisterPairLow<Register>()));
561}
562
563void IntrinsicLocationsBuilderARM::VisitThreadCurrentThread(HInvoke* invoke) {
564 LocationSummary* locations = new (arena_) LocationSummary(invoke,
565 LocationSummary::kNoCall,
566 kIntrinsified);
567 locations->SetOut(Location::RequiresRegister());
568}
569
570void IntrinsicCodeGeneratorARM::VisitThreadCurrentThread(HInvoke* invoke) {
571 ArmAssembler* assembler = GetAssembler();
572 __ LoadFromOffset(kLoadWord,
573 invoke->GetLocations()->Out().AsRegister<Register>(),
574 TR,
575 Thread::PeerOffset<kArmPointerSize>().Int32Value());
576}
577
578static void GenUnsafeGet(HInvoke* invoke,
579 Primitive::Type type,
580 bool is_volatile,
581 CodeGeneratorARM* codegen) {
582 LocationSummary* locations = invoke->GetLocations();
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800583 ArmAssembler* assembler = codegen->GetAssembler();
Roland Levillain3b359c72015-11-17 19:35:12 +0000584 Location base_loc = locations->InAt(1);
585 Register base = base_loc.AsRegister<Register>(); // Object pointer.
586 Location offset_loc = locations->InAt(2);
587 Register offset = offset_loc.AsRegisterPairLow<Register>(); // Long offset, lo part only.
588 Location trg_loc = locations->Out();
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800589
Roland Levillainc9285912015-12-18 10:38:42 +0000590 switch (type) {
591 case Primitive::kPrimInt: {
592 Register trg = trg_loc.AsRegister<Register>();
593 __ ldr(trg, Address(base, offset));
594 if (is_volatile) {
595 __ dmb(ISH);
596 }
597 break;
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800598 }
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800599
Roland Levillainc9285912015-12-18 10:38:42 +0000600 case Primitive::kPrimNot: {
601 Register trg = trg_loc.AsRegister<Register>();
602 if (kEmitCompilerReadBarrier) {
603 if (kUseBakerReadBarrier) {
604 Location temp = locations->GetTemp(0);
Roland Levillainbfea3352016-06-23 13:48:47 +0100605 codegen->GenerateReferenceLoadWithBakerReadBarrier(
606 invoke, trg_loc, base, 0U, offset_loc, TIMES_1, temp, /* needs_null_check */ false);
Roland Levillainc9285912015-12-18 10:38:42 +0000607 if (is_volatile) {
608 __ dmb(ISH);
609 }
610 } else {
611 __ ldr(trg, Address(base, offset));
612 if (is_volatile) {
613 __ dmb(ISH);
614 }
615 codegen->GenerateReadBarrierSlow(invoke, trg_loc, trg_loc, base_loc, 0U, offset_loc);
616 }
617 } else {
618 __ ldr(trg, Address(base, offset));
619 if (is_volatile) {
620 __ dmb(ISH);
621 }
622 __ MaybeUnpoisonHeapReference(trg);
623 }
624 break;
625 }
Roland Levillain4d027112015-07-01 15:41:14 +0100626
Roland Levillainc9285912015-12-18 10:38:42 +0000627 case Primitive::kPrimLong: {
628 Register trg_lo = trg_loc.AsRegisterPairLow<Register>();
629 __ add(IP, base, ShifterOperand(offset));
630 if (is_volatile && !codegen->GetInstructionSetFeatures().HasAtomicLdrdAndStrd()) {
631 Register trg_hi = trg_loc.AsRegisterPairHigh<Register>();
632 __ ldrexd(trg_lo, trg_hi, IP);
633 } else {
634 __ ldrd(trg_lo, Address(IP));
635 }
636 if (is_volatile) {
637 __ dmb(ISH);
638 }
639 break;
640 }
641
642 default:
643 LOG(FATAL) << "Unexpected type " << type;
644 UNREACHABLE();
Roland Levillain4d027112015-07-01 15:41:14 +0100645 }
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800646}
647
Roland Levillainc9285912015-12-18 10:38:42 +0000648static void CreateIntIntIntToIntLocations(ArenaAllocator* arena,
649 HInvoke* invoke,
650 Primitive::Type type) {
Roland Levillain3b359c72015-11-17 19:35:12 +0000651 bool can_call = kEmitCompilerReadBarrier &&
652 (invoke->GetIntrinsic() == Intrinsics::kUnsafeGetObject ||
653 invoke->GetIntrinsic() == Intrinsics::kUnsafeGetObjectVolatile);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800654 LocationSummary* locations = new (arena) LocationSummary(invoke,
Roland Levillain3b359c72015-11-17 19:35:12 +0000655 can_call ?
656 LocationSummary::kCallOnSlowPath :
657 LocationSummary::kNoCall,
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800658 kIntrinsified);
Vladimir Marko70e97462016-08-09 11:04:26 +0100659 if (can_call && kUseBakerReadBarrier) {
Vladimir Marko804b03f2016-09-14 16:26:36 +0100660 locations->SetCustomSlowPathCallerSaves(RegisterSet::Empty()); // No caller-save registers.
Vladimir Marko70e97462016-08-09 11:04:26 +0100661 }
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800662 locations->SetInAt(0, Location::NoLocation()); // Unused receiver.
663 locations->SetInAt(1, Location::RequiresRegister());
664 locations->SetInAt(2, Location::RequiresRegister());
Roland Levillainbfea3352016-06-23 13:48:47 +0100665 locations->SetOut(Location::RequiresRegister(),
666 can_call ? Location::kOutputOverlap : Location::kNoOutputOverlap);
Roland Levillainc9285912015-12-18 10:38:42 +0000667 if (type == Primitive::kPrimNot && kEmitCompilerReadBarrier && kUseBakerReadBarrier) {
668 // We need a temporary register for the read barrier marking slow
Roland Levillainbfea3352016-06-23 13:48:47 +0100669 // path in InstructionCodeGeneratorARM::GenerateReferenceLoadWithBakerReadBarrier.
Roland Levillainc9285912015-12-18 10:38:42 +0000670 locations->AddTemp(Location::RequiresRegister());
671 }
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800672}
673
674void IntrinsicLocationsBuilderARM::VisitUnsafeGet(HInvoke* invoke) {
Roland Levillainc9285912015-12-18 10:38:42 +0000675 CreateIntIntIntToIntLocations(arena_, invoke, Primitive::kPrimInt);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800676}
677void IntrinsicLocationsBuilderARM::VisitUnsafeGetVolatile(HInvoke* invoke) {
Roland Levillainc9285912015-12-18 10:38:42 +0000678 CreateIntIntIntToIntLocations(arena_, invoke, Primitive::kPrimInt);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800679}
680void IntrinsicLocationsBuilderARM::VisitUnsafeGetLong(HInvoke* invoke) {
Roland Levillainc9285912015-12-18 10:38:42 +0000681 CreateIntIntIntToIntLocations(arena_, invoke, Primitive::kPrimLong);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800682}
683void IntrinsicLocationsBuilderARM::VisitUnsafeGetLongVolatile(HInvoke* invoke) {
Roland Levillainc9285912015-12-18 10:38:42 +0000684 CreateIntIntIntToIntLocations(arena_, invoke, Primitive::kPrimLong);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800685}
686void IntrinsicLocationsBuilderARM::VisitUnsafeGetObject(HInvoke* invoke) {
Roland Levillainc9285912015-12-18 10:38:42 +0000687 CreateIntIntIntToIntLocations(arena_, invoke, Primitive::kPrimNot);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800688}
689void IntrinsicLocationsBuilderARM::VisitUnsafeGetObjectVolatile(HInvoke* invoke) {
Roland Levillainc9285912015-12-18 10:38:42 +0000690 CreateIntIntIntToIntLocations(arena_, invoke, Primitive::kPrimNot);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800691}
692
693void IntrinsicCodeGeneratorARM::VisitUnsafeGet(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000694 GenUnsafeGet(invoke, Primitive::kPrimInt, /* is_volatile */ false, codegen_);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800695}
696void IntrinsicCodeGeneratorARM::VisitUnsafeGetVolatile(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000697 GenUnsafeGet(invoke, Primitive::kPrimInt, /* is_volatile */ true, codegen_);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800698}
699void IntrinsicCodeGeneratorARM::VisitUnsafeGetLong(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000700 GenUnsafeGet(invoke, Primitive::kPrimLong, /* is_volatile */ false, codegen_);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800701}
702void IntrinsicCodeGeneratorARM::VisitUnsafeGetLongVolatile(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000703 GenUnsafeGet(invoke, Primitive::kPrimLong, /* is_volatile */ true, codegen_);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800704}
705void IntrinsicCodeGeneratorARM::VisitUnsafeGetObject(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000706 GenUnsafeGet(invoke, Primitive::kPrimNot, /* is_volatile */ false, codegen_);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800707}
708void IntrinsicCodeGeneratorARM::VisitUnsafeGetObjectVolatile(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000709 GenUnsafeGet(invoke, Primitive::kPrimNot, /* is_volatile */ true, codegen_);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800710}
711
712static void CreateIntIntIntIntToVoid(ArenaAllocator* arena,
713 const ArmInstructionSetFeatures& features,
714 Primitive::Type type,
715 bool is_volatile,
716 HInvoke* invoke) {
717 LocationSummary* locations = new (arena) LocationSummary(invoke,
718 LocationSummary::kNoCall,
719 kIntrinsified);
720 locations->SetInAt(0, Location::NoLocation()); // Unused receiver.
721 locations->SetInAt(1, Location::RequiresRegister());
722 locations->SetInAt(2, Location::RequiresRegister());
723 locations->SetInAt(3, Location::RequiresRegister());
724
725 if (type == Primitive::kPrimLong) {
726 // Potentially need temps for ldrexd-strexd loop.
727 if (is_volatile && !features.HasAtomicLdrdAndStrd()) {
728 locations->AddTemp(Location::RequiresRegister()); // Temp_lo.
729 locations->AddTemp(Location::RequiresRegister()); // Temp_hi.
730 }
731 } else if (type == Primitive::kPrimNot) {
732 // Temps for card-marking.
733 locations->AddTemp(Location::RequiresRegister()); // Temp.
734 locations->AddTemp(Location::RequiresRegister()); // Card.
735 }
736}
737
738void IntrinsicLocationsBuilderARM::VisitUnsafePut(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000739 CreateIntIntIntIntToVoid(arena_, features_, Primitive::kPrimInt, /* is_volatile */ false, invoke);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800740}
741void IntrinsicLocationsBuilderARM::VisitUnsafePutOrdered(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000742 CreateIntIntIntIntToVoid(arena_, features_, Primitive::kPrimInt, /* is_volatile */ false, invoke);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800743}
744void IntrinsicLocationsBuilderARM::VisitUnsafePutVolatile(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000745 CreateIntIntIntIntToVoid(arena_, features_, Primitive::kPrimInt, /* is_volatile */ true, invoke);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800746}
747void IntrinsicLocationsBuilderARM::VisitUnsafePutObject(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000748 CreateIntIntIntIntToVoid(arena_, features_, Primitive::kPrimNot, /* is_volatile */ false, invoke);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800749}
750void IntrinsicLocationsBuilderARM::VisitUnsafePutObjectOrdered(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000751 CreateIntIntIntIntToVoid(arena_, features_, Primitive::kPrimNot, /* is_volatile */ false, invoke);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800752}
753void IntrinsicLocationsBuilderARM::VisitUnsafePutObjectVolatile(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000754 CreateIntIntIntIntToVoid(arena_, features_, Primitive::kPrimNot, /* is_volatile */ true, invoke);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800755}
756void IntrinsicLocationsBuilderARM::VisitUnsafePutLong(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000757 CreateIntIntIntIntToVoid(
758 arena_, features_, Primitive::kPrimLong, /* is_volatile */ false, invoke);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800759}
760void IntrinsicLocationsBuilderARM::VisitUnsafePutLongOrdered(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000761 CreateIntIntIntIntToVoid(
762 arena_, features_, Primitive::kPrimLong, /* is_volatile */ false, invoke);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800763}
764void IntrinsicLocationsBuilderARM::VisitUnsafePutLongVolatile(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000765 CreateIntIntIntIntToVoid(
766 arena_, features_, Primitive::kPrimLong, /* is_volatile */ true, invoke);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800767}
768
769static void GenUnsafePut(LocationSummary* locations,
770 Primitive::Type type,
771 bool is_volatile,
772 bool is_ordered,
773 CodeGeneratorARM* codegen) {
774 ArmAssembler* assembler = codegen->GetAssembler();
775
776 Register base = locations->InAt(1).AsRegister<Register>(); // Object pointer.
777 Register offset = locations->InAt(2).AsRegisterPairLow<Register>(); // Long offset, lo part only.
778 Register value;
779
780 if (is_volatile || is_ordered) {
781 __ dmb(ISH);
782 }
783
784 if (type == Primitive::kPrimLong) {
785 Register value_lo = locations->InAt(3).AsRegisterPairLow<Register>();
786 value = value_lo;
787 if (is_volatile && !codegen->GetInstructionSetFeatures().HasAtomicLdrdAndStrd()) {
788 Register temp_lo = locations->GetTemp(0).AsRegister<Register>();
789 Register temp_hi = locations->GetTemp(1).AsRegister<Register>();
790 Register value_hi = locations->InAt(3).AsRegisterPairHigh<Register>();
791
792 __ add(IP, base, ShifterOperand(offset));
793 Label loop_head;
794 __ Bind(&loop_head);
795 __ ldrexd(temp_lo, temp_hi, IP);
796 __ strexd(temp_lo, value_lo, value_hi, IP);
797 __ cmp(temp_lo, ShifterOperand(0));
798 __ b(&loop_head, NE);
799 } else {
800 __ add(IP, base, ShifterOperand(offset));
801 __ strd(value_lo, Address(IP));
802 }
803 } else {
Roland Levillain4d027112015-07-01 15:41:14 +0100804 value = locations->InAt(3).AsRegister<Register>();
805 Register source = value;
806 if (kPoisonHeapReferences && type == Primitive::kPrimNot) {
807 Register temp = locations->GetTemp(0).AsRegister<Register>();
808 __ Mov(temp, value);
809 __ PoisonHeapReference(temp);
810 source = temp;
811 }
812 __ str(source, Address(base, offset));
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800813 }
814
815 if (is_volatile) {
816 __ dmb(ISH);
817 }
818
819 if (type == Primitive::kPrimNot) {
820 Register temp = locations->GetTemp(0).AsRegister<Register>();
821 Register card = locations->GetTemp(1).AsRegister<Register>();
Nicolas Geoffray07276db2015-05-18 14:22:09 +0100822 bool value_can_be_null = true; // TODO: Worth finding out this information?
823 codegen->MarkGCCard(temp, card, base, value, value_can_be_null);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800824 }
825}
826
827void IntrinsicCodeGeneratorARM::VisitUnsafePut(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000828 GenUnsafePut(invoke->GetLocations(),
829 Primitive::kPrimInt,
830 /* is_volatile */ false,
831 /* is_ordered */ false,
832 codegen_);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800833}
834void IntrinsicCodeGeneratorARM::VisitUnsafePutOrdered(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000835 GenUnsafePut(invoke->GetLocations(),
836 Primitive::kPrimInt,
837 /* is_volatile */ false,
838 /* is_ordered */ true,
839 codegen_);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800840}
841void IntrinsicCodeGeneratorARM::VisitUnsafePutVolatile(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000842 GenUnsafePut(invoke->GetLocations(),
843 Primitive::kPrimInt,
844 /* is_volatile */ true,
845 /* is_ordered */ false,
846 codegen_);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800847}
848void IntrinsicCodeGeneratorARM::VisitUnsafePutObject(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000849 GenUnsafePut(invoke->GetLocations(),
850 Primitive::kPrimNot,
851 /* is_volatile */ false,
852 /* is_ordered */ false,
853 codegen_);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800854}
855void IntrinsicCodeGeneratorARM::VisitUnsafePutObjectOrdered(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000856 GenUnsafePut(invoke->GetLocations(),
857 Primitive::kPrimNot,
858 /* is_volatile */ false,
859 /* is_ordered */ true,
860 codegen_);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800861}
862void IntrinsicCodeGeneratorARM::VisitUnsafePutObjectVolatile(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000863 GenUnsafePut(invoke->GetLocations(),
864 Primitive::kPrimNot,
865 /* is_volatile */ true,
866 /* is_ordered */ false,
867 codegen_);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800868}
869void IntrinsicCodeGeneratorARM::VisitUnsafePutLong(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000870 GenUnsafePut(invoke->GetLocations(),
871 Primitive::kPrimLong,
872 /* is_volatile */ false,
873 /* is_ordered */ false,
874 codegen_);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800875}
876void IntrinsicCodeGeneratorARM::VisitUnsafePutLongOrdered(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000877 GenUnsafePut(invoke->GetLocations(),
878 Primitive::kPrimLong,
879 /* is_volatile */ false,
880 /* is_ordered */ true,
881 codegen_);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800882}
883void IntrinsicCodeGeneratorARM::VisitUnsafePutLongVolatile(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +0000884 GenUnsafePut(invoke->GetLocations(),
885 Primitive::kPrimLong,
886 /* is_volatile */ true,
887 /* is_ordered */ false,
888 codegen_);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800889}
890
891static void CreateIntIntIntIntIntToIntPlusTemps(ArenaAllocator* arena,
Roland Levillain2e50ecb2016-01-27 14:08:33 +0000892 HInvoke* invoke,
893 Primitive::Type type) {
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800894 LocationSummary* locations = new (arena) LocationSummary(invoke,
895 LocationSummary::kNoCall,
896 kIntrinsified);
897 locations->SetInAt(0, Location::NoLocation()); // Unused receiver.
898 locations->SetInAt(1, Location::RequiresRegister());
899 locations->SetInAt(2, Location::RequiresRegister());
900 locations->SetInAt(3, Location::RequiresRegister());
901 locations->SetInAt(4, Location::RequiresRegister());
902
Roland Levillain2e50ecb2016-01-27 14:08:33 +0000903 // If heap poisoning is enabled, we don't want the unpoisoning
904 // operations to potentially clobber the output.
905 Location::OutputOverlap overlaps = (kPoisonHeapReferences && type == Primitive::kPrimNot)
906 ? Location::kOutputOverlap
907 : Location::kNoOutputOverlap;
908 locations->SetOut(Location::RequiresRegister(), overlaps);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800909
910 locations->AddTemp(Location::RequiresRegister()); // Pointer.
911 locations->AddTemp(Location::RequiresRegister()); // Temp 1.
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800912}
913
914static void GenCas(LocationSummary* locations, Primitive::Type type, CodeGeneratorARM* codegen) {
915 DCHECK_NE(type, Primitive::kPrimLong);
916
917 ArmAssembler* assembler = codegen->GetAssembler();
918
919 Register out = locations->Out().AsRegister<Register>(); // Boolean result.
920
921 Register base = locations->InAt(1).AsRegister<Register>(); // Object pointer.
922 Register offset = locations->InAt(2).AsRegisterPairLow<Register>(); // Offset (discard high 4B).
923 Register expected_lo = locations->InAt(3).AsRegister<Register>(); // Expected.
924 Register value_lo = locations->InAt(4).AsRegister<Register>(); // Value.
925
926 Register tmp_ptr = locations->GetTemp(0).AsRegister<Register>(); // Pointer to actual memory.
927 Register tmp_lo = locations->GetTemp(1).AsRegister<Register>(); // Value in memory.
928
929 if (type == Primitive::kPrimNot) {
930 // Mark card for object assuming new value is stored. Worst case we will mark an unchanged
931 // object and scan the receiver at the next GC for nothing.
Nicolas Geoffray07276db2015-05-18 14:22:09 +0100932 bool value_can_be_null = true; // TODO: Worth finding out this information?
933 codegen->MarkGCCard(tmp_ptr, tmp_lo, base, value_lo, value_can_be_null);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800934 }
935
936 // Prevent reordering with prior memory operations.
Roland Levillain4bedb382016-01-12 12:01:04 +0000937 // Emit a DMB ISH instruction instead of an DMB ISHST one, as the
938 // latter allows a preceding load to be delayed past the STXR
939 // instruction below.
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800940 __ dmb(ISH);
941
942 __ add(tmp_ptr, base, ShifterOperand(offset));
943
Roland Levillain4d027112015-07-01 15:41:14 +0100944 if (kPoisonHeapReferences && type == Primitive::kPrimNot) {
945 codegen->GetAssembler()->PoisonHeapReference(expected_lo);
Roland Levillain2e50ecb2016-01-27 14:08:33 +0000946 if (value_lo == expected_lo) {
947 // Do not poison `value_lo`, as it is the same register as
948 // `expected_lo`, which has just been poisoned.
949 } else {
950 codegen->GetAssembler()->PoisonHeapReference(value_lo);
951 }
Roland Levillain4d027112015-07-01 15:41:14 +0100952 }
953
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800954 // do {
955 // tmp = [r_ptr] - expected;
956 // } while (tmp == 0 && failure([r_ptr] <- r_new_value));
957 // result = tmp != 0;
958
959 Label loop_head;
960 __ Bind(&loop_head);
961
Roland Levillain391b8662015-12-18 11:43:38 +0000962 // TODO: When `type == Primitive::kPrimNot`, add a read barrier for
963 // the reference stored in the object before attempting the CAS,
964 // similar to the one in the art::Unsafe_compareAndSwapObject JNI
965 // implementation.
966 //
967 // Note that this code is not (yet) used when read barriers are
968 // enabled (see IntrinsicLocationsBuilderARM::VisitUnsafeCASObject).
969 DCHECK(!(type == Primitive::kPrimNot && kEmitCompilerReadBarrier));
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800970 __ ldrex(tmp_lo, tmp_ptr);
971
972 __ subs(tmp_lo, tmp_lo, ShifterOperand(expected_lo));
973
974 __ it(EQ, ItState::kItT);
975 __ strex(tmp_lo, value_lo, tmp_ptr, EQ);
976 __ cmp(tmp_lo, ShifterOperand(1), EQ);
977
978 __ b(&loop_head, EQ);
979
980 __ dmb(ISH);
981
982 __ rsbs(out, tmp_lo, ShifterOperand(1));
983 __ it(CC);
984 __ mov(out, ShifterOperand(0), CC);
Roland Levillain4d027112015-07-01 15:41:14 +0100985
986 if (kPoisonHeapReferences && type == Primitive::kPrimNot) {
Roland Levillain4d027112015-07-01 15:41:14 +0100987 codegen->GetAssembler()->UnpoisonHeapReference(expected_lo);
Roland Levillain2e50ecb2016-01-27 14:08:33 +0000988 if (value_lo == expected_lo) {
989 // Do not unpoison `value_lo`, as it is the same register as
990 // `expected_lo`, which has just been unpoisoned.
991 } else {
992 codegen->GetAssembler()->UnpoisonHeapReference(value_lo);
993 }
Roland Levillain4d027112015-07-01 15:41:14 +0100994 }
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800995}
996
Andreas Gampeca714582015-04-03 19:41:34 -0700997void IntrinsicLocationsBuilderARM::VisitUnsafeCASInt(HInvoke* invoke) {
Roland Levillain2e50ecb2016-01-27 14:08:33 +0000998 CreateIntIntIntIntIntToIntPlusTemps(arena_, invoke, Primitive::kPrimInt);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -0800999}
Andreas Gampeca714582015-04-03 19:41:34 -07001000void IntrinsicLocationsBuilderARM::VisitUnsafeCASObject(HInvoke* invoke) {
Roland Levillain391b8662015-12-18 11:43:38 +00001001 // The UnsafeCASObject intrinsic is missing a read barrier, and
1002 // therefore sometimes does not work as expected (b/25883050).
1003 // Turn it off temporarily as a quick fix, until the read barrier is
Roland Levillain3d312422016-06-23 13:53:42 +01001004 // implemented (see TODO in GenCAS).
Roland Levillain391b8662015-12-18 11:43:38 +00001005 //
Roland Levillain3d312422016-06-23 13:53:42 +01001006 // TODO(rpl): Implement read barrier support in GenCAS and re-enable
1007 // this intrinsic.
Roland Levillain2e50ecb2016-01-27 14:08:33 +00001008 if (kEmitCompilerReadBarrier) {
Roland Levillain985ff702015-10-23 13:25:35 +01001009 return;
1010 }
1011
Roland Levillain2e50ecb2016-01-27 14:08:33 +00001012 CreateIntIntIntIntIntToIntPlusTemps(arena_, invoke, Primitive::kPrimNot);
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -08001013}
1014void IntrinsicCodeGeneratorARM::VisitUnsafeCASInt(HInvoke* invoke) {
1015 GenCas(invoke->GetLocations(), Primitive::kPrimInt, codegen_);
1016}
1017void IntrinsicCodeGeneratorARM::VisitUnsafeCASObject(HInvoke* invoke) {
Roland Levillain3d312422016-06-23 13:53:42 +01001018 // The UnsafeCASObject intrinsic is missing a read barrier, and
1019 // therefore sometimes does not work as expected (b/25883050).
1020 // Turn it off temporarily as a quick fix, until the read barrier is
1021 // implemented (see TODO in GenCAS).
1022 //
1023 // TODO(rpl): Implement read barrier support in GenCAS and re-enable
1024 // this intrinsic.
1025 DCHECK(!kEmitCompilerReadBarrier);
1026
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -08001027 GenCas(invoke->GetLocations(), Primitive::kPrimNot, codegen_);
1028}
1029
Nicolas Geoffrayd75948a2015-03-27 09:53:16 +00001030void IntrinsicLocationsBuilderARM::VisitStringCompareTo(HInvoke* invoke) {
1031 // The inputs plus one temp.
1032 LocationSummary* locations = new (arena_) LocationSummary(invoke,
Scott Wakelingc25cbf12016-04-18 09:00:11 +01001033 invoke->InputAt(1)->CanBeNull()
1034 ? LocationSummary::kCallOnSlowPath
1035 : LocationSummary::kNoCall,
Nicolas Geoffrayd75948a2015-03-27 09:53:16 +00001036 kIntrinsified);
Scott Wakelingc25cbf12016-04-18 09:00:11 +01001037 locations->SetInAt(0, Location::RequiresRegister());
1038 locations->SetInAt(1, Location::RequiresRegister());
1039 locations->AddTemp(Location::RequiresRegister());
1040 locations->AddTemp(Location::RequiresRegister());
1041 locations->AddTemp(Location::RequiresRegister());
1042 locations->SetOut(Location::RequiresRegister(), Location::kOutputOverlap);
Nicolas Geoffrayd75948a2015-03-27 09:53:16 +00001043}
1044
1045void IntrinsicCodeGeneratorARM::VisitStringCompareTo(HInvoke* invoke) {
1046 ArmAssembler* assembler = GetAssembler();
1047 LocationSummary* locations = invoke->GetLocations();
1048
Scott Wakelingc25cbf12016-04-18 09:00:11 +01001049 Register str = locations->InAt(0).AsRegister<Register>();
1050 Register arg = locations->InAt(1).AsRegister<Register>();
1051 Register out = locations->Out().AsRegister<Register>();
1052
1053 Register temp0 = locations->GetTemp(0).AsRegister<Register>();
1054 Register temp1 = locations->GetTemp(1).AsRegister<Register>();
1055 Register temp2 = locations->GetTemp(2).AsRegister<Register>();
1056
1057 Label loop;
1058 Label find_char_diff;
1059 Label end;
1060
1061 // Get offsets of count and value fields within a string object.
1062 const int32_t count_offset = mirror::String::CountOffset().Int32Value();
1063 const int32_t value_offset = mirror::String::ValueOffset().Int32Value();
1064
Nicolas Geoffray512e04d2015-03-27 17:21:24 +00001065 // Note that the null check must have been done earlier.
Calin Juravle641547a2015-04-21 22:08:51 +01001066 DCHECK(!invoke->CanDoImplicitNullCheckOn(invoke->InputAt(0)));
Nicolas Geoffrayd75948a2015-03-27 09:53:16 +00001067
Scott Wakelingc25cbf12016-04-18 09:00:11 +01001068 // Take slow path and throw if input can be and is null.
1069 SlowPathCode* slow_path = nullptr;
1070 const bool can_slow_path = invoke->InputAt(1)->CanBeNull();
1071 if (can_slow_path) {
1072 slow_path = new (GetAllocator()) IntrinsicSlowPathARM(invoke);
1073 codegen_->AddSlowPath(slow_path);
1074 __ CompareAndBranchIfZero(arg, slow_path->GetEntryLabel());
1075 }
Nicolas Geoffrayd75948a2015-03-27 09:53:16 +00001076
Scott Wakelingc25cbf12016-04-18 09:00:11 +01001077 // Reference equality check, return 0 if same reference.
1078 __ subs(out, str, ShifterOperand(arg));
1079 __ b(&end, EQ);
1080 // Load lengths of this and argument strings.
1081 __ ldr(temp2, Address(str, count_offset));
1082 __ ldr(temp1, Address(arg, count_offset));
1083 // out = length diff.
1084 __ subs(out, temp2, ShifterOperand(temp1));
1085 // temp0 = min(len(str), len(arg)).
1086 __ it(Condition::LT, kItElse);
1087 __ mov(temp0, ShifterOperand(temp2), Condition::LT);
1088 __ mov(temp0, ShifterOperand(temp1), Condition::GE);
1089 // Shorter string is empty?
1090 __ CompareAndBranchIfZero(temp0, &end);
1091
1092 // Store offset of string value in preparation for comparison loop.
1093 __ mov(temp1, ShifterOperand(value_offset));
1094
1095 // Assertions that must hold in order to compare multiple characters at a time.
1096 CHECK_ALIGNED(value_offset, 8);
1097 static_assert(IsAligned<8>(kObjectAlignment),
1098 "String data must be 8-byte aligned for unrolled CompareTo loop.");
1099
1100 const size_t char_size = Primitive::ComponentSize(Primitive::kPrimChar);
1101 DCHECK_EQ(char_size, 2u);
1102
1103 // Unrolled loop comparing 4x16-bit chars per iteration (ok because of string data alignment).
1104 __ Bind(&loop);
1105 __ ldr(IP, Address(str, temp1));
1106 __ ldr(temp2, Address(arg, temp1));
1107 __ cmp(IP, ShifterOperand(temp2));
1108 __ b(&find_char_diff, NE);
1109 __ add(temp1, temp1, ShifterOperand(char_size * 2));
1110 __ sub(temp0, temp0, ShifterOperand(2));
1111
1112 __ ldr(IP, Address(str, temp1));
1113 __ ldr(temp2, Address(arg, temp1));
1114 __ cmp(IP, ShifterOperand(temp2));
1115 __ b(&find_char_diff, NE);
1116 __ add(temp1, temp1, ShifterOperand(char_size * 2));
1117 __ subs(temp0, temp0, ShifterOperand(2));
1118
1119 __ b(&loop, GT);
1120 __ b(&end);
1121
1122 // Find the single 16-bit character difference.
1123 __ Bind(&find_char_diff);
1124 // Get the bit position of the first character that differs.
1125 __ eor(temp1, temp2, ShifterOperand(IP));
1126 __ rbit(temp1, temp1);
1127 __ clz(temp1, temp1);
1128
1129 // temp0 = number of 16-bit characters remaining to compare.
1130 // (it could be < 1 if a difference is found after the first SUB in the comparison loop, and
1131 // after the end of the shorter string data).
1132
1133 // (temp1 >> 4) = character where difference occurs between the last two words compared, on the
1134 // interval [0,1] (0 for low half-word different, 1 for high half-word different).
1135
1136 // If temp0 <= (temp1 >> 4), the difference occurs outside the remaining string data, so just
1137 // return length diff (out).
1138 __ cmp(temp0, ShifterOperand(temp1, LSR, 4));
1139 __ b(&end, LE);
1140 // Extract the characters and calculate the difference.
1141 __ bic(temp1, temp1, ShifterOperand(0xf));
1142 __ Lsr(temp2, temp2, temp1);
1143 __ Lsr(IP, IP, temp1);
1144 __ movt(temp2, 0);
1145 __ movt(IP, 0);
1146 __ sub(out, IP, ShifterOperand(temp2));
1147
1148 __ Bind(&end);
1149
1150 if (can_slow_path) {
1151 __ Bind(slow_path->GetExitLabel());
1152 }
Nicolas Geoffrayd75948a2015-03-27 09:53:16 +00001153}
1154
Agi Csaki289cd552015-08-18 17:10:38 -07001155void IntrinsicLocationsBuilderARM::VisitStringEquals(HInvoke* invoke) {
1156 LocationSummary* locations = new (arena_) LocationSummary(invoke,
1157 LocationSummary::kNoCall,
1158 kIntrinsified);
1159 InvokeRuntimeCallingConvention calling_convention;
1160 locations->SetInAt(0, Location::RequiresRegister());
1161 locations->SetInAt(1, Location::RequiresRegister());
1162 // Temporary registers to store lengths of strings and for calculations.
1163 // Using instruction cbz requires a low register, so explicitly set a temp to be R0.
1164 locations->AddTemp(Location::RegisterLocation(R0));
1165 locations->AddTemp(Location::RequiresRegister());
1166 locations->AddTemp(Location::RequiresRegister());
1167
1168 locations->SetOut(Location::RequiresRegister());
1169}
1170
1171void IntrinsicCodeGeneratorARM::VisitStringEquals(HInvoke* invoke) {
1172 ArmAssembler* assembler = GetAssembler();
1173 LocationSummary* locations = invoke->GetLocations();
1174
1175 Register str = locations->InAt(0).AsRegister<Register>();
1176 Register arg = locations->InAt(1).AsRegister<Register>();
1177 Register out = locations->Out().AsRegister<Register>();
1178
1179 Register temp = locations->GetTemp(0).AsRegister<Register>();
1180 Register temp1 = locations->GetTemp(1).AsRegister<Register>();
1181 Register temp2 = locations->GetTemp(2).AsRegister<Register>();
1182
1183 Label loop;
1184 Label end;
1185 Label return_true;
1186 Label return_false;
1187
1188 // Get offsets of count, value, and class fields within a string object.
1189 const uint32_t count_offset = mirror::String::CountOffset().Uint32Value();
1190 const uint32_t value_offset = mirror::String::ValueOffset().Uint32Value();
1191 const uint32_t class_offset = mirror::Object::ClassOffset().Uint32Value();
1192
1193 // Note that the null check must have been done earlier.
1194 DCHECK(!invoke->CanDoImplicitNullCheckOn(invoke->InputAt(0)));
1195
Vladimir Marko53b52002016-05-24 19:30:45 +01001196 StringEqualsOptimizations optimizations(invoke);
1197 if (!optimizations.GetArgumentNotNull()) {
1198 // Check if input is null, return false if it is.
1199 __ CompareAndBranchIfZero(arg, &return_false);
1200 }
Agi Csaki289cd552015-08-18 17:10:38 -07001201
Vladimir Marko53b52002016-05-24 19:30:45 +01001202 if (!optimizations.GetArgumentIsString()) {
1203 // Instanceof check for the argument by comparing class fields.
1204 // All string objects must have the same type since String cannot be subclassed.
1205 // Receiver must be a string object, so its class field is equal to all strings' class fields.
1206 // If the argument is a string object, its class field must be equal to receiver's class field.
1207 __ ldr(temp, Address(str, class_offset));
1208 __ ldr(temp1, Address(arg, class_offset));
1209 __ cmp(temp, ShifterOperand(temp1));
1210 __ b(&return_false, NE);
1211 }
Agi Csaki289cd552015-08-18 17:10:38 -07001212
1213 // Load lengths of this and argument strings.
1214 __ ldr(temp, Address(str, count_offset));
1215 __ ldr(temp1, Address(arg, count_offset));
1216 // Check if lengths are equal, return false if they're not.
1217 __ cmp(temp, ShifterOperand(temp1));
1218 __ b(&return_false, NE);
1219 // Return true if both strings are empty.
1220 __ cbz(temp, &return_true);
1221
1222 // Reference equality check, return true if same reference.
1223 __ cmp(str, ShifterOperand(arg));
1224 __ b(&return_true, EQ);
1225
1226 // Assertions that must hold in order to compare strings 2 characters at a time.
1227 DCHECK_ALIGNED(value_offset, 4);
Scott Wakelingc25cbf12016-04-18 09:00:11 +01001228 static_assert(IsAligned<4>(kObjectAlignment), "String data must be aligned for fast compare.");
Agi Csaki289cd552015-08-18 17:10:38 -07001229
Agi Csaki289cd552015-08-18 17:10:38 -07001230 __ LoadImmediate(temp1, value_offset);
Agi Csaki289cd552015-08-18 17:10:38 -07001231
1232 // Loop to compare strings 2 characters at a time starting at the front of the string.
1233 // Ok to do this because strings with an odd length are zero-padded.
1234 __ Bind(&loop);
1235 __ ldr(out, Address(str, temp1));
1236 __ ldr(temp2, Address(arg, temp1));
1237 __ cmp(out, ShifterOperand(temp2));
1238 __ b(&return_false, NE);
1239 __ add(temp1, temp1, ShifterOperand(sizeof(uint32_t)));
Vladimir Markoa63f0d42015-09-01 13:36:35 +01001240 __ subs(temp, temp, ShifterOperand(sizeof(uint32_t) / sizeof(uint16_t)));
1241 __ b(&loop, GT);
Agi Csaki289cd552015-08-18 17:10:38 -07001242
1243 // Return true and exit the function.
1244 // If loop does not result in returning false, we return true.
1245 __ Bind(&return_true);
1246 __ LoadImmediate(out, 1);
1247 __ b(&end);
1248
1249 // Return false and exit the function.
1250 __ Bind(&return_false);
1251 __ LoadImmediate(out, 0);
1252 __ Bind(&end);
1253}
1254
Andreas Gampeba6fdbc2015-05-07 22:31:55 -07001255static void GenerateVisitStringIndexOf(HInvoke* invoke,
1256 ArmAssembler* assembler,
1257 CodeGeneratorARM* codegen,
1258 ArenaAllocator* allocator,
1259 bool start_at_zero) {
1260 LocationSummary* locations = invoke->GetLocations();
Andreas Gampeba6fdbc2015-05-07 22:31:55 -07001261
1262 // Note that the null check must have been done earlier.
1263 DCHECK(!invoke->CanDoImplicitNullCheckOn(invoke->InputAt(0)));
1264
1265 // Check for code points > 0xFFFF. Either a slow-path check when we don't know statically,
Vladimir Markofb6c90a2016-05-06 15:52:12 +01001266 // or directly dispatch for a large constant, or omit slow-path for a small constant or a char.
Andreas Gampe85b62f22015-09-09 13:15:38 -07001267 SlowPathCode* slow_path = nullptr;
Vladimir Markofb6c90a2016-05-06 15:52:12 +01001268 HInstruction* code_point = invoke->InputAt(1);
1269 if (code_point->IsIntConstant()) {
Vladimir Markoda051082016-05-17 16:10:20 +01001270 if (static_cast<uint32_t>(code_point->AsIntConstant()->GetValue()) >
Andreas Gampeba6fdbc2015-05-07 22:31:55 -07001271 std::numeric_limits<uint16_t>::max()) {
1272 // Always needs the slow-path. We could directly dispatch to it, but this case should be
1273 // rare, so for simplicity just put the full slow-path down and branch unconditionally.
1274 slow_path = new (allocator) IntrinsicSlowPathARM(invoke);
1275 codegen->AddSlowPath(slow_path);
1276 __ b(slow_path->GetEntryLabel());
1277 __ Bind(slow_path->GetExitLabel());
1278 return;
1279 }
Vladimir Markofb6c90a2016-05-06 15:52:12 +01001280 } else if (code_point->GetType() != Primitive::kPrimChar) {
Andreas Gampeba6fdbc2015-05-07 22:31:55 -07001281 Register char_reg = locations->InAt(1).AsRegister<Register>();
Vladimir Markofb6c90a2016-05-06 15:52:12 +01001282 // 0xffff is not modified immediate but 0x10000 is, so use `>= 0x10000` instead of `> 0xffff`.
1283 __ cmp(char_reg,
1284 ShifterOperand(static_cast<uint32_t>(std::numeric_limits<uint16_t>::max()) + 1));
Andreas Gampeba6fdbc2015-05-07 22:31:55 -07001285 slow_path = new (allocator) IntrinsicSlowPathARM(invoke);
1286 codegen->AddSlowPath(slow_path);
Vladimir Markofb6c90a2016-05-06 15:52:12 +01001287 __ b(slow_path->GetEntryLabel(), HS);
Andreas Gampeba6fdbc2015-05-07 22:31:55 -07001288 }
1289
1290 if (start_at_zero) {
Vladimir Markofb6c90a2016-05-06 15:52:12 +01001291 Register tmp_reg = locations->GetTemp(0).AsRegister<Register>();
Andreas Gampeba6fdbc2015-05-07 22:31:55 -07001292 DCHECK_EQ(tmp_reg, R2);
1293 // Start-index = 0.
1294 __ LoadImmediate(tmp_reg, 0);
1295 }
1296
Serban Constantinescu4bb30ac2016-06-22 17:04:45 +01001297 codegen->InvokeRuntime(kQuickIndexOf, invoke, invoke->GetDexPc(), slow_path);
Roland Levillain42ad2882016-02-29 18:26:54 +00001298 CheckEntrypointTypes<kQuickIndexOf, int32_t, void*, uint32_t, uint32_t>();
Andreas Gampeba6fdbc2015-05-07 22:31:55 -07001299
1300 if (slow_path != nullptr) {
1301 __ Bind(slow_path->GetExitLabel());
1302 }
1303}
1304
1305void IntrinsicLocationsBuilderARM::VisitStringIndexOf(HInvoke* invoke) {
1306 LocationSummary* locations = new (arena_) LocationSummary(invoke,
Serban Constantinescu806f0122016-03-09 11:10:16 +00001307 LocationSummary::kCallOnMainAndSlowPath,
Andreas Gampeba6fdbc2015-05-07 22:31:55 -07001308 kIntrinsified);
1309 // We have a hand-crafted assembly stub that follows the runtime calling convention. So it's
1310 // best to align the inputs accordingly.
1311 InvokeRuntimeCallingConvention calling_convention;
1312 locations->SetInAt(0, Location::RegisterLocation(calling_convention.GetRegisterAt(0)));
1313 locations->SetInAt(1, Location::RegisterLocation(calling_convention.GetRegisterAt(1)));
1314 locations->SetOut(Location::RegisterLocation(R0));
1315
Vladimir Markofb6c90a2016-05-06 15:52:12 +01001316 // Need to send start-index=0.
Andreas Gampeba6fdbc2015-05-07 22:31:55 -07001317 locations->AddTemp(Location::RegisterLocation(calling_convention.GetRegisterAt(2)));
1318}
1319
1320void IntrinsicCodeGeneratorARM::VisitStringIndexOf(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +00001321 GenerateVisitStringIndexOf(
1322 invoke, GetAssembler(), codegen_, GetAllocator(), /* start_at_zero */ true);
Andreas Gampeba6fdbc2015-05-07 22:31:55 -07001323}
1324
1325void IntrinsicLocationsBuilderARM::VisitStringIndexOfAfter(HInvoke* invoke) {
1326 LocationSummary* locations = new (arena_) LocationSummary(invoke,
Serban Constantinescu806f0122016-03-09 11:10:16 +00001327 LocationSummary::kCallOnMainAndSlowPath,
Andreas Gampeba6fdbc2015-05-07 22:31:55 -07001328 kIntrinsified);
1329 // We have a hand-crafted assembly stub that follows the runtime calling convention. So it's
1330 // best to align the inputs accordingly.
1331 InvokeRuntimeCallingConvention calling_convention;
1332 locations->SetInAt(0, Location::RegisterLocation(calling_convention.GetRegisterAt(0)));
1333 locations->SetInAt(1, Location::RegisterLocation(calling_convention.GetRegisterAt(1)));
1334 locations->SetInAt(2, Location::RegisterLocation(calling_convention.GetRegisterAt(2)));
1335 locations->SetOut(Location::RegisterLocation(R0));
Andreas Gampeba6fdbc2015-05-07 22:31:55 -07001336}
1337
1338void IntrinsicCodeGeneratorARM::VisitStringIndexOfAfter(HInvoke* invoke) {
Roland Levillainbf84a3d2015-12-04 14:33:02 +00001339 GenerateVisitStringIndexOf(
1340 invoke, GetAssembler(), codegen_, GetAllocator(), /* start_at_zero */ false);
Andreas Gampeba6fdbc2015-05-07 22:31:55 -07001341}
1342
Jeff Hao848f70a2014-01-15 13:49:50 -08001343void IntrinsicLocationsBuilderARM::VisitStringNewStringFromBytes(HInvoke* invoke) {
1344 LocationSummary* locations = new (arena_) LocationSummary(invoke,
Serban Constantinescu806f0122016-03-09 11:10:16 +00001345 LocationSummary::kCallOnMainAndSlowPath,
Jeff Hao848f70a2014-01-15 13:49:50 -08001346 kIntrinsified);
1347 InvokeRuntimeCallingConvention calling_convention;
1348 locations->SetInAt(0, Location::RegisterLocation(calling_convention.GetRegisterAt(0)));
1349 locations->SetInAt(1, Location::RegisterLocation(calling_convention.GetRegisterAt(1)));
1350 locations->SetInAt(2, Location::RegisterLocation(calling_convention.GetRegisterAt(2)));
1351 locations->SetInAt(3, Location::RegisterLocation(calling_convention.GetRegisterAt(3)));
1352 locations->SetOut(Location::RegisterLocation(R0));
1353}
1354
1355void IntrinsicCodeGeneratorARM::VisitStringNewStringFromBytes(HInvoke* invoke) {
1356 ArmAssembler* assembler = GetAssembler();
1357 LocationSummary* locations = invoke->GetLocations();
1358
1359 Register byte_array = locations->InAt(0).AsRegister<Register>();
1360 __ cmp(byte_array, ShifterOperand(0));
Andreas Gampe85b62f22015-09-09 13:15:38 -07001361 SlowPathCode* slow_path = new (GetAllocator()) IntrinsicSlowPathARM(invoke);
Jeff Hao848f70a2014-01-15 13:49:50 -08001362 codegen_->AddSlowPath(slow_path);
1363 __ b(slow_path->GetEntryLabel(), EQ);
1364
Serban Constantinescu4bb30ac2016-06-22 17:04:45 +01001365 codegen_->InvokeRuntime(kQuickAllocStringFromBytes, invoke, invoke->GetDexPc(), slow_path);
Roland Levillainf969a202016-03-09 16:14:00 +00001366 CheckEntrypointTypes<kQuickAllocStringFromBytes, void*, void*, int32_t, int32_t, int32_t>();
Jeff Hao848f70a2014-01-15 13:49:50 -08001367 __ Bind(slow_path->GetExitLabel());
1368}
1369
1370void IntrinsicLocationsBuilderARM::VisitStringNewStringFromChars(HInvoke* invoke) {
1371 LocationSummary* locations = new (arena_) LocationSummary(invoke,
Serban Constantinescu54ff4822016-07-07 18:03:19 +01001372 LocationSummary::kCallOnMainOnly,
Jeff Hao848f70a2014-01-15 13:49:50 -08001373 kIntrinsified);
1374 InvokeRuntimeCallingConvention calling_convention;
1375 locations->SetInAt(0, Location::RegisterLocation(calling_convention.GetRegisterAt(0)));
1376 locations->SetInAt(1, Location::RegisterLocation(calling_convention.GetRegisterAt(1)));
1377 locations->SetInAt(2, Location::RegisterLocation(calling_convention.GetRegisterAt(2)));
1378 locations->SetOut(Location::RegisterLocation(R0));
1379}
1380
1381void IntrinsicCodeGeneratorARM::VisitStringNewStringFromChars(HInvoke* invoke) {
Roland Levillaincc3839c2016-02-29 16:23:48 +00001382 // No need to emit code checking whether `locations->InAt(2)` is a null
1383 // pointer, as callers of the native method
1384 //
1385 // java.lang.StringFactory.newStringFromChars(int offset, int charCount, char[] data)
1386 //
1387 // all include a null check on `data` before calling that method.
Serban Constantinescu4bb30ac2016-06-22 17:04:45 +01001388 codegen_->InvokeRuntime(kQuickAllocStringFromChars, invoke, invoke->GetDexPc());
Roland Levillainf969a202016-03-09 16:14:00 +00001389 CheckEntrypointTypes<kQuickAllocStringFromChars, void*, int32_t, int32_t, void*>();
Jeff Hao848f70a2014-01-15 13:49:50 -08001390}
1391
1392void IntrinsicLocationsBuilderARM::VisitStringNewStringFromString(HInvoke* invoke) {
1393 LocationSummary* locations = new (arena_) LocationSummary(invoke,
Serban Constantinescu806f0122016-03-09 11:10:16 +00001394 LocationSummary::kCallOnMainAndSlowPath,
Jeff Hao848f70a2014-01-15 13:49:50 -08001395 kIntrinsified);
1396 InvokeRuntimeCallingConvention calling_convention;
1397 locations->SetInAt(0, Location::RegisterLocation(calling_convention.GetRegisterAt(0)));
1398 locations->SetOut(Location::RegisterLocation(R0));
1399}
1400
1401void IntrinsicCodeGeneratorARM::VisitStringNewStringFromString(HInvoke* invoke) {
1402 ArmAssembler* assembler = GetAssembler();
1403 LocationSummary* locations = invoke->GetLocations();
1404
1405 Register string_to_copy = locations->InAt(0).AsRegister<Register>();
1406 __ cmp(string_to_copy, ShifterOperand(0));
Andreas Gampe85b62f22015-09-09 13:15:38 -07001407 SlowPathCode* slow_path = new (GetAllocator()) IntrinsicSlowPathARM(invoke);
Jeff Hao848f70a2014-01-15 13:49:50 -08001408 codegen_->AddSlowPath(slow_path);
1409 __ b(slow_path->GetEntryLabel(), EQ);
1410
Serban Constantinescu4bb30ac2016-06-22 17:04:45 +01001411 codegen_->InvokeRuntime(kQuickAllocStringFromString, invoke, invoke->GetDexPc(), slow_path);
Roland Levillainf969a202016-03-09 16:14:00 +00001412 CheckEntrypointTypes<kQuickAllocStringFromString, void*, void*>();
Serban Constantinescu4bb30ac2016-06-22 17:04:45 +01001413
Jeff Hao848f70a2014-01-15 13:49:50 -08001414 __ Bind(slow_path->GetExitLabel());
1415}
1416
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001417void IntrinsicLocationsBuilderARM::VisitSystemArrayCopy(HInvoke* invoke) {
Roland Levillain0b671c02016-08-19 12:02:34 +01001418 // The only read barrier implementation supporting the
1419 // SystemArrayCopy intrinsic is the Baker-style read barriers.
1420 if (kEmitCompilerReadBarrier && !kUseBakerReadBarrier) {
Roland Levillain3d312422016-06-23 13:53:42 +01001421 return;
1422 }
1423
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001424 CodeGenerator::CreateSystemArrayCopyLocationSummary(invoke);
1425 LocationSummary* locations = invoke->GetLocations();
1426 if (locations == nullptr) {
1427 return;
1428 }
1429
1430 HIntConstant* src_pos = invoke->InputAt(1)->AsIntConstant();
1431 HIntConstant* dest_pos = invoke->InputAt(3)->AsIntConstant();
1432 HIntConstant* length = invoke->InputAt(4)->AsIntConstant();
1433
1434 if (src_pos != nullptr && !assembler_->ShifterOperandCanAlwaysHold(src_pos->GetValue())) {
1435 locations->SetInAt(1, Location::RequiresRegister());
1436 }
1437 if (dest_pos != nullptr && !assembler_->ShifterOperandCanAlwaysHold(dest_pos->GetValue())) {
1438 locations->SetInAt(3, Location::RequiresRegister());
1439 }
1440 if (length != nullptr && !assembler_->ShifterOperandCanAlwaysHold(length->GetValue())) {
1441 locations->SetInAt(4, Location::RequiresRegister());
1442 }
Roland Levillain0b671c02016-08-19 12:02:34 +01001443 if (kEmitCompilerReadBarrier && kUseBakerReadBarrier) {
1444 // Temporary register IP cannot be used in
Roland Levillain16d9f942016-08-25 17:27:56 +01001445 // ReadBarrierSystemArrayCopySlowPathARM (because that register
Roland Levillain0b671c02016-08-19 12:02:34 +01001446 // is clobbered by ReadBarrierMarkRegX entry points). Get an extra
1447 // temporary register from the register allocator.
1448 locations->AddTemp(Location::RequiresRegister());
1449 }
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001450}
1451
1452static void CheckPosition(ArmAssembler* assembler,
1453 Location pos,
1454 Register input,
1455 Location length,
1456 SlowPathCode* slow_path,
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001457 Register temp,
1458 bool length_is_input_length = false) {
1459 // Where is the length in the Array?
1460 const uint32_t length_offset = mirror::Array::LengthOffset().Uint32Value();
1461
1462 if (pos.IsConstant()) {
1463 int32_t pos_const = pos.GetConstant()->AsIntConstant()->GetValue();
1464 if (pos_const == 0) {
1465 if (!length_is_input_length) {
1466 // Check that length(input) >= length.
1467 __ LoadFromOffset(kLoadWord, temp, input, length_offset);
1468 if (length.IsConstant()) {
1469 __ cmp(temp, ShifterOperand(length.GetConstant()->AsIntConstant()->GetValue()));
1470 } else {
1471 __ cmp(temp, ShifterOperand(length.AsRegister<Register>()));
1472 }
1473 __ b(slow_path->GetEntryLabel(), LT);
1474 }
1475 } else {
1476 // Check that length(input) >= pos.
Nicolas Geoffrayfea1abd2016-07-06 12:09:12 +01001477 __ LoadFromOffset(kLoadWord, temp, input, length_offset);
1478 __ subs(temp, temp, ShifterOperand(pos_const));
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001479 __ b(slow_path->GetEntryLabel(), LT);
1480
1481 // Check that (length(input) - pos) >= length.
1482 if (length.IsConstant()) {
1483 __ cmp(temp, ShifterOperand(length.GetConstant()->AsIntConstant()->GetValue()));
1484 } else {
1485 __ cmp(temp, ShifterOperand(length.AsRegister<Register>()));
1486 }
1487 __ b(slow_path->GetEntryLabel(), LT);
1488 }
1489 } else if (length_is_input_length) {
1490 // The only way the copy can succeed is if pos is zero.
1491 Register pos_reg = pos.AsRegister<Register>();
1492 __ CompareAndBranchIfNonZero(pos_reg, slow_path->GetEntryLabel());
1493 } else {
1494 // Check that pos >= 0.
1495 Register pos_reg = pos.AsRegister<Register>();
1496 __ cmp(pos_reg, ShifterOperand(0));
1497 __ b(slow_path->GetEntryLabel(), LT);
1498
1499 // Check that pos <= length(input).
1500 __ LoadFromOffset(kLoadWord, temp, input, length_offset);
1501 __ subs(temp, temp, ShifterOperand(pos_reg));
1502 __ b(slow_path->GetEntryLabel(), LT);
1503
1504 // Check that (length(input) - pos) >= length.
1505 if (length.IsConstant()) {
1506 __ cmp(temp, ShifterOperand(length.GetConstant()->AsIntConstant()->GetValue()));
1507 } else {
1508 __ cmp(temp, ShifterOperand(length.AsRegister<Register>()));
1509 }
1510 __ b(slow_path->GetEntryLabel(), LT);
1511 }
1512}
1513
1514void IntrinsicCodeGeneratorARM::VisitSystemArrayCopy(HInvoke* invoke) {
Roland Levillain0b671c02016-08-19 12:02:34 +01001515 // The only read barrier implementation supporting the
1516 // SystemArrayCopy intrinsic is the Baker-style read barriers.
1517 DCHECK(!kEmitCompilerReadBarrier || kUseBakerReadBarrier);
Roland Levillain3d312422016-06-23 13:53:42 +01001518
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001519 ArmAssembler* assembler = GetAssembler();
1520 LocationSummary* locations = invoke->GetLocations();
1521
1522 uint32_t class_offset = mirror::Object::ClassOffset().Int32Value();
1523 uint32_t super_offset = mirror::Class::SuperClassOffset().Int32Value();
1524 uint32_t component_offset = mirror::Class::ComponentTypeOffset().Int32Value();
1525 uint32_t primitive_offset = mirror::Class::PrimitiveTypeOffset().Int32Value();
Roland Levillain0b671c02016-08-19 12:02:34 +01001526 uint32_t monitor_offset = mirror::Object::MonitorOffset().Int32Value();
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001527
1528 Register src = locations->InAt(0).AsRegister<Register>();
1529 Location src_pos = locations->InAt(1);
1530 Register dest = locations->InAt(2).AsRegister<Register>();
1531 Location dest_pos = locations->InAt(3);
1532 Location length = locations->InAt(4);
Roland Levillain0b671c02016-08-19 12:02:34 +01001533 Location temp1_loc = locations->GetTemp(0);
1534 Register temp1 = temp1_loc.AsRegister<Register>();
1535 Location temp2_loc = locations->GetTemp(1);
1536 Register temp2 = temp2_loc.AsRegister<Register>();
1537 Location temp3_loc = locations->GetTemp(2);
1538 Register temp3 = temp3_loc.AsRegister<Register>();
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001539
Roland Levillain0b671c02016-08-19 12:02:34 +01001540 SlowPathCode* intrinsic_slow_path = new (GetAllocator()) IntrinsicSlowPathARM(invoke);
1541 codegen_->AddSlowPath(intrinsic_slow_path);
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001542
Roland Levillainebea3d22016-04-12 15:42:57 +01001543 Label conditions_on_positions_validated;
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001544 SystemArrayCopyOptimizations optimizations(invoke);
1545
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001546 // If source and destination are the same, we go to slow path if we need to do
1547 // forward copying.
1548 if (src_pos.IsConstant()) {
1549 int32_t src_pos_constant = src_pos.GetConstant()->AsIntConstant()->GetValue();
1550 if (dest_pos.IsConstant()) {
Nicolas Geoffray9f65db82016-07-07 12:07:42 +01001551 int32_t dest_pos_constant = dest_pos.GetConstant()->AsIntConstant()->GetValue();
1552 if (optimizations.GetDestinationIsSource()) {
1553 // Checked when building locations.
1554 DCHECK_GE(src_pos_constant, dest_pos_constant);
1555 } else if (src_pos_constant < dest_pos_constant) {
1556 __ cmp(src, ShifterOperand(dest));
Roland Levillain0b671c02016-08-19 12:02:34 +01001557 __ b(intrinsic_slow_path->GetEntryLabel(), EQ);
Nicolas Geoffray9f65db82016-07-07 12:07:42 +01001558 }
1559
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001560 // Checked when building locations.
1561 DCHECK(!optimizations.GetDestinationIsSource()
1562 || (src_pos_constant >= dest_pos.GetConstant()->AsIntConstant()->GetValue()));
1563 } else {
1564 if (!optimizations.GetDestinationIsSource()) {
Nicolas Geoffray9f65db82016-07-07 12:07:42 +01001565 __ cmp(src, ShifterOperand(dest));
Roland Levillainebea3d22016-04-12 15:42:57 +01001566 __ b(&conditions_on_positions_validated, NE);
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001567 }
1568 __ cmp(dest_pos.AsRegister<Register>(), ShifterOperand(src_pos_constant));
Roland Levillain0b671c02016-08-19 12:02:34 +01001569 __ b(intrinsic_slow_path->GetEntryLabel(), GT);
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001570 }
1571 } else {
1572 if (!optimizations.GetDestinationIsSource()) {
Nicolas Geoffray9f65db82016-07-07 12:07:42 +01001573 __ cmp(src, ShifterOperand(dest));
Roland Levillainebea3d22016-04-12 15:42:57 +01001574 __ b(&conditions_on_positions_validated, NE);
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001575 }
1576 if (dest_pos.IsConstant()) {
1577 int32_t dest_pos_constant = dest_pos.GetConstant()->AsIntConstant()->GetValue();
1578 __ cmp(src_pos.AsRegister<Register>(), ShifterOperand(dest_pos_constant));
1579 } else {
1580 __ cmp(src_pos.AsRegister<Register>(), ShifterOperand(dest_pos.AsRegister<Register>()));
1581 }
Roland Levillain0b671c02016-08-19 12:02:34 +01001582 __ b(intrinsic_slow_path->GetEntryLabel(), LT);
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001583 }
1584
Roland Levillainebea3d22016-04-12 15:42:57 +01001585 __ Bind(&conditions_on_positions_validated);
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001586
1587 if (!optimizations.GetSourceIsNotNull()) {
1588 // Bail out if the source is null.
Roland Levillain0b671c02016-08-19 12:02:34 +01001589 __ CompareAndBranchIfZero(src, intrinsic_slow_path->GetEntryLabel());
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001590 }
1591
1592 if (!optimizations.GetDestinationIsNotNull() && !optimizations.GetDestinationIsSource()) {
1593 // Bail out if the destination is null.
Roland Levillain0b671c02016-08-19 12:02:34 +01001594 __ CompareAndBranchIfZero(dest, intrinsic_slow_path->GetEntryLabel());
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001595 }
1596
1597 // If the length is negative, bail out.
1598 // We have already checked in the LocationsBuilder for the constant case.
1599 if (!length.IsConstant() &&
1600 !optimizations.GetCountIsSourceLength() &&
1601 !optimizations.GetCountIsDestinationLength()) {
1602 __ cmp(length.AsRegister<Register>(), ShifterOperand(0));
Roland Levillain0b671c02016-08-19 12:02:34 +01001603 __ b(intrinsic_slow_path->GetEntryLabel(), LT);
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001604 }
1605
1606 // Validity checks: source.
1607 CheckPosition(assembler,
1608 src_pos,
1609 src,
1610 length,
Roland Levillain0b671c02016-08-19 12:02:34 +01001611 intrinsic_slow_path,
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001612 temp1,
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001613 optimizations.GetCountIsSourceLength());
1614
1615 // Validity checks: dest.
1616 CheckPosition(assembler,
1617 dest_pos,
1618 dest,
1619 length,
Roland Levillain0b671c02016-08-19 12:02:34 +01001620 intrinsic_slow_path,
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001621 temp1,
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001622 optimizations.GetCountIsDestinationLength());
1623
1624 if (!optimizations.GetDoesNotNeedTypeCheck()) {
1625 // Check whether all elements of the source array are assignable to the component
1626 // type of the destination array. We do two checks: the classes are the same,
1627 // or the destination is Object[]. If none of these checks succeed, we go to the
1628 // slow path.
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001629
Roland Levillain0b671c02016-08-19 12:02:34 +01001630 if (kEmitCompilerReadBarrier && kUseBakerReadBarrier) {
1631 if (!optimizations.GetSourceIsNonPrimitiveArray()) {
1632 // /* HeapReference<Class> */ temp1 = src->klass_
1633 codegen_->GenerateFieldLoadWithBakerReadBarrier(
1634 invoke, temp1_loc, src, class_offset, temp2_loc, /* needs_null_check */ false);
1635 // Bail out if the source is not a non primitive array.
1636 // /* HeapReference<Class> */ temp1 = temp1->component_type_
1637 codegen_->GenerateFieldLoadWithBakerReadBarrier(
1638 invoke, temp1_loc, temp1, component_offset, temp2_loc, /* needs_null_check */ false);
1639 __ CompareAndBranchIfZero(temp1, intrinsic_slow_path->GetEntryLabel());
1640 // If heap poisoning is enabled, `temp1` has been unpoisoned
1641 // by the the previous call to GenerateFieldLoadWithBakerReadBarrier.
1642 // /* uint16_t */ temp1 = static_cast<uint16>(temp1->primitive_type_);
1643 __ LoadFromOffset(kLoadUnsignedHalfword, temp1, temp1, primitive_offset);
1644 static_assert(Primitive::kPrimNot == 0, "Expected 0 for kPrimNot");
1645 __ CompareAndBranchIfNonZero(temp1, intrinsic_slow_path->GetEntryLabel());
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001646 }
Roland Levillain0b671c02016-08-19 12:02:34 +01001647
1648 // /* HeapReference<Class> */ temp1 = dest->klass_
1649 codegen_->GenerateFieldLoadWithBakerReadBarrier(
1650 invoke, temp1_loc, dest, class_offset, temp2_loc, /* needs_null_check */ false);
1651
1652 if (!optimizations.GetDestinationIsNonPrimitiveArray()) {
1653 // Bail out if the destination is not a non primitive array.
1654 //
1655 // Register `temp1` is not trashed by the read barrier emitted
1656 // by GenerateFieldLoadWithBakerReadBarrier below, as that
1657 // method produces a call to a ReadBarrierMarkRegX entry point,
1658 // which saves all potentially live registers, including
1659 // temporaries such a `temp1`.
1660 // /* HeapReference<Class> */ temp2 = temp1->component_type_
1661 codegen_->GenerateFieldLoadWithBakerReadBarrier(
1662 invoke, temp2_loc, temp1, component_offset, temp3_loc, /* needs_null_check */ false);
1663 __ CompareAndBranchIfZero(temp2, intrinsic_slow_path->GetEntryLabel());
1664 // If heap poisoning is enabled, `temp2` has been unpoisoned
1665 // by the the previous call to GenerateFieldLoadWithBakerReadBarrier.
1666 // /* uint16_t */ temp2 = static_cast<uint16>(temp2->primitive_type_);
1667 __ LoadFromOffset(kLoadUnsignedHalfword, temp2, temp2, primitive_offset);
1668 static_assert(Primitive::kPrimNot == 0, "Expected 0 for kPrimNot");
1669 __ CompareAndBranchIfNonZero(temp2, intrinsic_slow_path->GetEntryLabel());
1670 }
1671
1672 // For the same reason given earlier, `temp1` is not trashed by the
1673 // read barrier emitted by GenerateFieldLoadWithBakerReadBarrier below.
1674 // /* HeapReference<Class> */ temp2 = src->klass_
1675 codegen_->GenerateFieldLoadWithBakerReadBarrier(
1676 invoke, temp2_loc, src, class_offset, temp3_loc, /* needs_null_check */ false);
1677 // Note: if heap poisoning is on, we are comparing two unpoisoned references here.
1678 __ cmp(temp1, ShifterOperand(temp2));
1679
1680 if (optimizations.GetDestinationIsTypedObjectArray()) {
1681 Label do_copy;
1682 __ b(&do_copy, EQ);
1683 // /* HeapReference<Class> */ temp1 = temp1->component_type_
1684 codegen_->GenerateFieldLoadWithBakerReadBarrier(
1685 invoke, temp1_loc, temp1, component_offset, temp2_loc, /* needs_null_check */ false);
1686 // /* HeapReference<Class> */ temp1 = temp1->super_class_
1687 // We do not need to emit a read barrier for the following
1688 // heap reference load, as `temp1` is only used in a
1689 // comparison with null below, and this reference is not
1690 // kept afterwards.
1691 __ LoadFromOffset(kLoadWord, temp1, temp1, super_offset);
1692 __ CompareAndBranchIfNonZero(temp1, intrinsic_slow_path->GetEntryLabel());
1693 __ Bind(&do_copy);
1694 } else {
1695 __ b(intrinsic_slow_path->GetEntryLabel(), NE);
1696 }
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001697 } else {
Roland Levillain0b671c02016-08-19 12:02:34 +01001698 // Non read barrier code.
1699
1700 // /* HeapReference<Class> */ temp1 = dest->klass_
1701 __ LoadFromOffset(kLoadWord, temp1, dest, class_offset);
1702 // /* HeapReference<Class> */ temp2 = src->klass_
1703 __ LoadFromOffset(kLoadWord, temp2, src, class_offset);
1704 bool did_unpoison = false;
1705 if (!optimizations.GetDestinationIsNonPrimitiveArray() ||
1706 !optimizations.GetSourceIsNonPrimitiveArray()) {
1707 // One or two of the references need to be unpoisoned. Unpoison them
1708 // both to make the identity check valid.
1709 __ MaybeUnpoisonHeapReference(temp1);
1710 __ MaybeUnpoisonHeapReference(temp2);
1711 did_unpoison = true;
1712 }
1713
1714 if (!optimizations.GetDestinationIsNonPrimitiveArray()) {
1715 // Bail out if the destination is not a non primitive array.
1716 // /* HeapReference<Class> */ temp3 = temp1->component_type_
1717 __ LoadFromOffset(kLoadWord, temp3, temp1, component_offset);
1718 __ CompareAndBranchIfZero(temp3, intrinsic_slow_path->GetEntryLabel());
1719 __ MaybeUnpoisonHeapReference(temp3);
1720 // /* uint16_t */ temp3 = static_cast<uint16>(temp3->primitive_type_);
1721 __ LoadFromOffset(kLoadUnsignedHalfword, temp3, temp3, primitive_offset);
1722 static_assert(Primitive::kPrimNot == 0, "Expected 0 for kPrimNot");
1723 __ CompareAndBranchIfNonZero(temp3, intrinsic_slow_path->GetEntryLabel());
1724 }
1725
1726 if (!optimizations.GetSourceIsNonPrimitiveArray()) {
1727 // Bail out if the source is not a non primitive array.
1728 // /* HeapReference<Class> */ temp3 = temp2->component_type_
1729 __ LoadFromOffset(kLoadWord, temp3, temp2, component_offset);
1730 __ CompareAndBranchIfZero(temp3, intrinsic_slow_path->GetEntryLabel());
1731 __ MaybeUnpoisonHeapReference(temp3);
1732 // /* uint16_t */ temp3 = static_cast<uint16>(temp3->primitive_type_);
1733 __ LoadFromOffset(kLoadUnsignedHalfword, temp3, temp3, primitive_offset);
1734 static_assert(Primitive::kPrimNot == 0, "Expected 0 for kPrimNot");
1735 __ CompareAndBranchIfNonZero(temp3, intrinsic_slow_path->GetEntryLabel());
1736 }
1737
1738 __ cmp(temp1, ShifterOperand(temp2));
1739
1740 if (optimizations.GetDestinationIsTypedObjectArray()) {
1741 Label do_copy;
1742 __ b(&do_copy, EQ);
1743 if (!did_unpoison) {
1744 __ MaybeUnpoisonHeapReference(temp1);
1745 }
1746 // /* HeapReference<Class> */ temp1 = temp1->component_type_
1747 __ LoadFromOffset(kLoadWord, temp1, temp1, component_offset);
1748 __ MaybeUnpoisonHeapReference(temp1);
1749 // /* HeapReference<Class> */ temp1 = temp1->super_class_
1750 __ LoadFromOffset(kLoadWord, temp1, temp1, super_offset);
1751 // No need to unpoison the result, we're comparing against null.
1752 __ CompareAndBranchIfNonZero(temp1, intrinsic_slow_path->GetEntryLabel());
1753 __ Bind(&do_copy);
1754 } else {
1755 __ b(intrinsic_slow_path->GetEntryLabel(), NE);
1756 }
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001757 }
1758 } else if (!optimizations.GetSourceIsNonPrimitiveArray()) {
1759 DCHECK(optimizations.GetDestinationIsNonPrimitiveArray());
1760 // Bail out if the source is not a non primitive array.
Roland Levillain0b671c02016-08-19 12:02:34 +01001761 if (kEmitCompilerReadBarrier && kUseBakerReadBarrier) {
1762 // /* HeapReference<Class> */ temp1 = src->klass_
1763 codegen_->GenerateFieldLoadWithBakerReadBarrier(
1764 invoke, temp1_loc, src, class_offset, temp2_loc, /* needs_null_check */ false);
1765 // /* HeapReference<Class> */ temp3 = temp1->component_type_
1766 codegen_->GenerateFieldLoadWithBakerReadBarrier(
1767 invoke, temp3_loc, temp1, component_offset, temp2_loc, /* needs_null_check */ false);
1768 __ CompareAndBranchIfZero(temp3, intrinsic_slow_path->GetEntryLabel());
1769 // If heap poisoning is enabled, `temp3` has been unpoisoned
1770 // by the the previous call to GenerateFieldLoadWithBakerReadBarrier.
1771 } else {
1772 // /* HeapReference<Class> */ temp1 = src->klass_
1773 __ LoadFromOffset(kLoadWord, temp1, src, class_offset);
1774 __ MaybeUnpoisonHeapReference(temp1);
1775 // /* HeapReference<Class> */ temp3 = temp1->component_type_
1776 __ LoadFromOffset(kLoadWord, temp3, temp1, component_offset);
1777 __ CompareAndBranchIfZero(temp3, intrinsic_slow_path->GetEntryLabel());
1778 __ MaybeUnpoisonHeapReference(temp3);
1779 }
1780 // /* uint16_t */ temp3 = static_cast<uint16>(temp3->primitive_type_);
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001781 __ LoadFromOffset(kLoadUnsignedHalfword, temp3, temp3, primitive_offset);
1782 static_assert(Primitive::kPrimNot == 0, "Expected 0 for kPrimNot");
Roland Levillain0b671c02016-08-19 12:02:34 +01001783 __ CompareAndBranchIfNonZero(temp3, intrinsic_slow_path->GetEntryLabel());
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001784 }
1785
Nicolas Geoffrayfea1abd2016-07-06 12:09:12 +01001786 int32_t element_size = Primitive::ComponentSize(Primitive::kPrimNot);
Roland Levillain0b671c02016-08-19 12:02:34 +01001787 uint32_t element_size_shift = Primitive::ComponentSizeShift(Primitive::kPrimNot);
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001788 uint32_t offset = mirror::Array::DataOffset(element_size).Uint32Value();
Roland Levillain0b671c02016-08-19 12:02:34 +01001789
1790 // Compute the base source address in `temp1`.
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001791 if (src_pos.IsConstant()) {
1792 int32_t constant = src_pos.GetConstant()->AsIntConstant()->GetValue();
1793 __ AddConstant(temp1, src, element_size * constant + offset);
1794 } else {
Roland Levillain0b671c02016-08-19 12:02:34 +01001795 __ add(temp1, src, ShifterOperand(src_pos.AsRegister<Register>(), LSL, element_size_shift));
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001796 __ AddConstant(temp1, offset);
1797 }
1798
Roland Levillain0b671c02016-08-19 12:02:34 +01001799 // Compute the end source address in `temp3`.
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001800 if (length.IsConstant()) {
1801 int32_t constant = length.GetConstant()->AsIntConstant()->GetValue();
1802 __ AddConstant(temp3, temp1, element_size * constant);
1803 } else {
Roland Levillain0b671c02016-08-19 12:02:34 +01001804 __ add(temp3, temp1, ShifterOperand(length.AsRegister<Register>(), LSL, element_size_shift));
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001805 }
1806
Roland Levillain0b671c02016-08-19 12:02:34 +01001807 if (kEmitCompilerReadBarrier && kUseBakerReadBarrier) {
1808 // The base destination address is computed later, as `temp2` is
1809 // used for intermediate computations.
1810
1811 // SystemArrayCopy implementation for Baker read barriers (see
1812 // also CodeGeneratorARM::GenerateReferenceLoadWithBakerReadBarrier):
1813 //
1814 // if (src_ptr != end_ptr) {
1815 // uint32_t rb_state = Lockword(src->monitor_).ReadBarrierState();
1816 // lfence; // Load fence or artificial data dependency to prevent load-load reordering
1817 // bool is_gray = (rb_state == ReadBarrier::gray_ptr_);
1818 // if (is_gray) {
1819 // // Slow-path copy.
1820 // do {
1821 // *dest_ptr++ = MaybePoison(ReadBarrier::Mark(MaybeUnpoison(*src_ptr++)));
1822 // } while (src_ptr != end_ptr)
1823 // } else {
1824 // // Fast-path copy.
1825 // do {
1826 // *dest_ptr++ = *src_ptr++;
1827 // } while (src_ptr != end_ptr)
1828 // }
1829 // }
1830
1831 Label loop, done;
1832
1833 // Don't enter copy loop if `length == 0`.
1834 __ cmp(temp1, ShifterOperand(temp3));
1835 __ b(&done, EQ);
1836
1837 // /* int32_t */ monitor = src->monitor_
1838 __ LoadFromOffset(kLoadWord, temp2, src, monitor_offset);
1839 // /* LockWord */ lock_word = LockWord(monitor)
1840 static_assert(sizeof(LockWord) == sizeof(int32_t),
1841 "art::LockWord and int32_t have different sizes.");
1842
1843 // Introduce a dependency on the lock_word including the rb_state,
1844 // which shall prevent load-load reordering without using
1845 // a memory barrier (which would be more expensive).
1846 // `src` is unchanged by this operation, but its value now depends
1847 // on `temp2`.
1848 __ add(src, src, ShifterOperand(temp2, LSR, 32));
1849
1850 // Slow path used to copy array when `src` is gray.
1851 SlowPathCode* read_barrier_slow_path =
1852 new (GetAllocator()) ReadBarrierSystemArrayCopySlowPathARM(invoke);
1853 codegen_->AddSlowPath(read_barrier_slow_path);
1854
1855 // Given the numeric representation, it's enough to check the low bit of the
1856 // rb_state. We do that by shifting the bit out of the lock word with LSRS
1857 // which can be a 16-bit instruction unlike the TST immediate.
1858 static_assert(ReadBarrier::white_ptr_ == 0, "Expecting white to have value 0");
1859 static_assert(ReadBarrier::gray_ptr_ == 1, "Expecting gray to have value 1");
1860 static_assert(ReadBarrier::black_ptr_ == 2, "Expecting black to have value 2");
1861 __ Lsrs(temp2, temp2, LockWord::kReadBarrierStateShift + 1);
1862 // Carry flag is the last bit shifted out by LSRS.
1863 __ b(read_barrier_slow_path->GetEntryLabel(), CS);
1864
1865 // Fast-path copy.
1866
1867 // Compute the base destination address in `temp2`.
1868 if (dest_pos.IsConstant()) {
1869 int32_t constant = dest_pos.GetConstant()->AsIntConstant()->GetValue();
1870 __ AddConstant(temp2, dest, element_size * constant + offset);
1871 } else {
1872 __ add(temp2, dest, ShifterOperand(dest_pos.AsRegister<Register>(), LSL, element_size_shift));
1873 __ AddConstant(temp2, offset);
1874 }
1875
1876 // Iterate over the arrays and do a raw copy of the objects. We don't need to
1877 // poison/unpoison.
1878 __ Bind(&loop);
1879 __ ldr(IP, Address(temp1, element_size, Address::PostIndex));
1880 __ str(IP, Address(temp2, element_size, Address::PostIndex));
1881 __ cmp(temp1, ShifterOperand(temp3));
1882 __ b(&loop, NE);
1883
1884 __ Bind(read_barrier_slow_path->GetExitLabel());
1885 __ Bind(&done);
1886 } else {
1887 // Non read barrier code.
1888
1889 // Compute the base destination address in `temp2`.
1890 if (dest_pos.IsConstant()) {
1891 int32_t constant = dest_pos.GetConstant()->AsIntConstant()->GetValue();
1892 __ AddConstant(temp2, dest, element_size * constant + offset);
1893 } else {
1894 __ add(temp2, dest, ShifterOperand(dest_pos.AsRegister<Register>(), LSL, element_size_shift));
1895 __ AddConstant(temp2, offset);
1896 }
1897
1898 // Iterate over the arrays and do a raw copy of the objects. We don't need to
1899 // poison/unpoison.
1900 Label loop, done;
1901 __ cmp(temp1, ShifterOperand(temp3));
1902 __ b(&done, EQ);
1903 __ Bind(&loop);
1904 __ ldr(IP, Address(temp1, element_size, Address::PostIndex));
1905 __ str(IP, Address(temp2, element_size, Address::PostIndex));
1906 __ cmp(temp1, ShifterOperand(temp3));
1907 __ b(&loop, NE);
1908 __ Bind(&done);
1909 }
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001910
1911 // We only need one card marking on the destination array.
1912 codegen_->MarkGCCard(temp1,
1913 temp2,
1914 dest,
1915 Register(kNoRegister),
Roland Levillainebea3d22016-04-12 15:42:57 +01001916 /* value_can_be_null */ false);
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001917
Roland Levillain0b671c02016-08-19 12:02:34 +01001918 __ Bind(intrinsic_slow_path->GetExitLabel());
Nicolas Geoffray5bd05a52015-10-13 09:48:30 +01001919}
1920
Anton Kirilovd70dc9d2016-02-04 14:59:04 +00001921static void CreateFPToFPCallLocations(ArenaAllocator* arena, HInvoke* invoke) {
1922 // If the graph is debuggable, all callee-saved floating-point registers are blocked by
1923 // the code generator. Furthermore, the register allocator creates fixed live intervals
1924 // for all caller-saved registers because we are doing a function call. As a result, if
1925 // the input and output locations are unallocated, the register allocator runs out of
1926 // registers and fails; however, a debuggable graph is not the common case.
1927 if (invoke->GetBlock()->GetGraph()->IsDebuggable()) {
1928 return;
1929 }
1930
1931 DCHECK_EQ(invoke->GetNumberOfArguments(), 1U);
1932 DCHECK_EQ(invoke->InputAt(0)->GetType(), Primitive::kPrimDouble);
1933 DCHECK_EQ(invoke->GetType(), Primitive::kPrimDouble);
1934
1935 LocationSummary* const locations = new (arena) LocationSummary(invoke,
Serban Constantinescu54ff4822016-07-07 18:03:19 +01001936 LocationSummary::kCallOnMainOnly,
Anton Kirilovd70dc9d2016-02-04 14:59:04 +00001937 kIntrinsified);
1938 const InvokeRuntimeCallingConvention calling_convention;
1939
1940 locations->SetInAt(0, Location::RequiresFpuRegister());
1941 locations->SetOut(Location::RequiresFpuRegister());
1942 // Native code uses the soft float ABI.
1943 locations->AddTemp(Location::RegisterLocation(calling_convention.GetRegisterAt(0)));
1944 locations->AddTemp(Location::RegisterLocation(calling_convention.GetRegisterAt(1)));
1945}
1946
1947static void CreateFPFPToFPCallLocations(ArenaAllocator* arena, HInvoke* invoke) {
1948 // If the graph is debuggable, all callee-saved floating-point registers are blocked by
1949 // the code generator. Furthermore, the register allocator creates fixed live intervals
1950 // for all caller-saved registers because we are doing a function call. As a result, if
1951 // the input and output locations are unallocated, the register allocator runs out of
1952 // registers and fails; however, a debuggable graph is not the common case.
1953 if (invoke->GetBlock()->GetGraph()->IsDebuggable()) {
1954 return;
1955 }
1956
1957 DCHECK_EQ(invoke->GetNumberOfArguments(), 2U);
1958 DCHECK_EQ(invoke->InputAt(0)->GetType(), Primitive::kPrimDouble);
1959 DCHECK_EQ(invoke->InputAt(1)->GetType(), Primitive::kPrimDouble);
1960 DCHECK_EQ(invoke->GetType(), Primitive::kPrimDouble);
1961
1962 LocationSummary* const locations = new (arena) LocationSummary(invoke,
Serban Constantinescu54ff4822016-07-07 18:03:19 +01001963 LocationSummary::kCallOnMainOnly,
Anton Kirilovd70dc9d2016-02-04 14:59:04 +00001964 kIntrinsified);
1965 const InvokeRuntimeCallingConvention calling_convention;
1966
1967 locations->SetInAt(0, Location::RequiresFpuRegister());
1968 locations->SetInAt(1, Location::RequiresFpuRegister());
1969 locations->SetOut(Location::RequiresFpuRegister());
1970 // Native code uses the soft float ABI.
1971 locations->AddTemp(Location::RegisterLocation(calling_convention.GetRegisterAt(0)));
1972 locations->AddTemp(Location::RegisterLocation(calling_convention.GetRegisterAt(1)));
1973 locations->AddTemp(Location::RegisterLocation(calling_convention.GetRegisterAt(2)));
1974 locations->AddTemp(Location::RegisterLocation(calling_convention.GetRegisterAt(3)));
1975}
1976
1977static void GenFPToFPCall(HInvoke* invoke,
1978 ArmAssembler* assembler,
1979 CodeGeneratorARM* codegen,
1980 QuickEntrypointEnum entry) {
1981 LocationSummary* const locations = invoke->GetLocations();
1982 const InvokeRuntimeCallingConvention calling_convention;
1983
1984 DCHECK_EQ(invoke->GetNumberOfArguments(), 1U);
1985 DCHECK(locations->WillCall() && locations->Intrinsified());
1986 DCHECK(!locations->GetLiveRegisters()->ContainsCoreRegister(calling_convention.GetRegisterAt(0)));
1987 DCHECK(!locations->GetLiveRegisters()->ContainsCoreRegister(calling_convention.GetRegisterAt(1)));
1988
Anton Kirilovd70dc9d2016-02-04 14:59:04 +00001989 // Native code uses the soft float ABI.
1990 __ vmovrrd(calling_convention.GetRegisterAt(0),
1991 calling_convention.GetRegisterAt(1),
1992 FromLowSToD(locations->InAt(0).AsFpuRegisterPairLow<SRegister>()));
Serban Constantinescu4bb30ac2016-06-22 17:04:45 +01001993 codegen->InvokeRuntime(entry, invoke, invoke->GetDexPc());
Anton Kirilovd70dc9d2016-02-04 14:59:04 +00001994 __ vmovdrr(FromLowSToD(locations->Out().AsFpuRegisterPairLow<SRegister>()),
1995 calling_convention.GetRegisterAt(0),
1996 calling_convention.GetRegisterAt(1));
1997}
1998
1999static void GenFPFPToFPCall(HInvoke* invoke,
2000 ArmAssembler* assembler,
2001 CodeGeneratorARM* codegen,
2002 QuickEntrypointEnum entry) {
2003 LocationSummary* const locations = invoke->GetLocations();
2004 const InvokeRuntimeCallingConvention calling_convention;
2005
2006 DCHECK_EQ(invoke->GetNumberOfArguments(), 2U);
2007 DCHECK(locations->WillCall() && locations->Intrinsified());
2008 DCHECK(!locations->GetLiveRegisters()->ContainsCoreRegister(calling_convention.GetRegisterAt(0)));
2009 DCHECK(!locations->GetLiveRegisters()->ContainsCoreRegister(calling_convention.GetRegisterAt(1)));
2010 DCHECK(!locations->GetLiveRegisters()->ContainsCoreRegister(calling_convention.GetRegisterAt(2)));
2011 DCHECK(!locations->GetLiveRegisters()->ContainsCoreRegister(calling_convention.GetRegisterAt(3)));
2012
Anton Kirilovd70dc9d2016-02-04 14:59:04 +00002013 // Native code uses the soft float ABI.
2014 __ vmovrrd(calling_convention.GetRegisterAt(0),
2015 calling_convention.GetRegisterAt(1),
2016 FromLowSToD(locations->InAt(0).AsFpuRegisterPairLow<SRegister>()));
2017 __ vmovrrd(calling_convention.GetRegisterAt(2),
2018 calling_convention.GetRegisterAt(3),
2019 FromLowSToD(locations->InAt(1).AsFpuRegisterPairLow<SRegister>()));
Serban Constantinescu4bb30ac2016-06-22 17:04:45 +01002020 codegen->InvokeRuntime(entry, invoke, invoke->GetDexPc());
Anton Kirilovd70dc9d2016-02-04 14:59:04 +00002021 __ vmovdrr(FromLowSToD(locations->Out().AsFpuRegisterPairLow<SRegister>()),
2022 calling_convention.GetRegisterAt(0),
2023 calling_convention.GetRegisterAt(1));
2024}
2025
2026void IntrinsicLocationsBuilderARM::VisitMathCos(HInvoke* invoke) {
2027 CreateFPToFPCallLocations(arena_, invoke);
2028}
2029
2030void IntrinsicCodeGeneratorARM::VisitMathCos(HInvoke* invoke) {
2031 GenFPToFPCall(invoke, GetAssembler(), codegen_, kQuickCos);
2032}
2033
2034void IntrinsicLocationsBuilderARM::VisitMathSin(HInvoke* invoke) {
2035 CreateFPToFPCallLocations(arena_, invoke);
2036}
2037
2038void IntrinsicCodeGeneratorARM::VisitMathSin(HInvoke* invoke) {
2039 GenFPToFPCall(invoke, GetAssembler(), codegen_, kQuickSin);
2040}
2041
2042void IntrinsicLocationsBuilderARM::VisitMathAcos(HInvoke* invoke) {
2043 CreateFPToFPCallLocations(arena_, invoke);
2044}
2045
2046void IntrinsicCodeGeneratorARM::VisitMathAcos(HInvoke* invoke) {
2047 GenFPToFPCall(invoke, GetAssembler(), codegen_, kQuickAcos);
2048}
2049
2050void IntrinsicLocationsBuilderARM::VisitMathAsin(HInvoke* invoke) {
2051 CreateFPToFPCallLocations(arena_, invoke);
2052}
2053
2054void IntrinsicCodeGeneratorARM::VisitMathAsin(HInvoke* invoke) {
2055 GenFPToFPCall(invoke, GetAssembler(), codegen_, kQuickAsin);
2056}
2057
2058void IntrinsicLocationsBuilderARM::VisitMathAtan(HInvoke* invoke) {
2059 CreateFPToFPCallLocations(arena_, invoke);
2060}
2061
2062void IntrinsicCodeGeneratorARM::VisitMathAtan(HInvoke* invoke) {
2063 GenFPToFPCall(invoke, GetAssembler(), codegen_, kQuickAtan);
2064}
2065
2066void IntrinsicLocationsBuilderARM::VisitMathCbrt(HInvoke* invoke) {
2067 CreateFPToFPCallLocations(arena_, invoke);
2068}
2069
2070void IntrinsicCodeGeneratorARM::VisitMathCbrt(HInvoke* invoke) {
2071 GenFPToFPCall(invoke, GetAssembler(), codegen_, kQuickCbrt);
2072}
2073
2074void IntrinsicLocationsBuilderARM::VisitMathCosh(HInvoke* invoke) {
2075 CreateFPToFPCallLocations(arena_, invoke);
2076}
2077
2078void IntrinsicCodeGeneratorARM::VisitMathCosh(HInvoke* invoke) {
2079 GenFPToFPCall(invoke, GetAssembler(), codegen_, kQuickCosh);
2080}
2081
2082void IntrinsicLocationsBuilderARM::VisitMathExp(HInvoke* invoke) {
2083 CreateFPToFPCallLocations(arena_, invoke);
2084}
2085
2086void IntrinsicCodeGeneratorARM::VisitMathExp(HInvoke* invoke) {
2087 GenFPToFPCall(invoke, GetAssembler(), codegen_, kQuickExp);
2088}
2089
2090void IntrinsicLocationsBuilderARM::VisitMathExpm1(HInvoke* invoke) {
2091 CreateFPToFPCallLocations(arena_, invoke);
2092}
2093
2094void IntrinsicCodeGeneratorARM::VisitMathExpm1(HInvoke* invoke) {
2095 GenFPToFPCall(invoke, GetAssembler(), codegen_, kQuickExpm1);
2096}
2097
2098void IntrinsicLocationsBuilderARM::VisitMathLog(HInvoke* invoke) {
2099 CreateFPToFPCallLocations(arena_, invoke);
2100}
2101
2102void IntrinsicCodeGeneratorARM::VisitMathLog(HInvoke* invoke) {
2103 GenFPToFPCall(invoke, GetAssembler(), codegen_, kQuickLog);
2104}
2105
2106void IntrinsicLocationsBuilderARM::VisitMathLog10(HInvoke* invoke) {
2107 CreateFPToFPCallLocations(arena_, invoke);
2108}
2109
2110void IntrinsicCodeGeneratorARM::VisitMathLog10(HInvoke* invoke) {
2111 GenFPToFPCall(invoke, GetAssembler(), codegen_, kQuickLog10);
2112}
2113
2114void IntrinsicLocationsBuilderARM::VisitMathSinh(HInvoke* invoke) {
2115 CreateFPToFPCallLocations(arena_, invoke);
2116}
2117
2118void IntrinsicCodeGeneratorARM::VisitMathSinh(HInvoke* invoke) {
2119 GenFPToFPCall(invoke, GetAssembler(), codegen_, kQuickSinh);
2120}
2121
2122void IntrinsicLocationsBuilderARM::VisitMathTan(HInvoke* invoke) {
2123 CreateFPToFPCallLocations(arena_, invoke);
2124}
2125
2126void IntrinsicCodeGeneratorARM::VisitMathTan(HInvoke* invoke) {
2127 GenFPToFPCall(invoke, GetAssembler(), codegen_, kQuickTan);
2128}
2129
2130void IntrinsicLocationsBuilderARM::VisitMathTanh(HInvoke* invoke) {
2131 CreateFPToFPCallLocations(arena_, invoke);
2132}
2133
2134void IntrinsicCodeGeneratorARM::VisitMathTanh(HInvoke* invoke) {
2135 GenFPToFPCall(invoke, GetAssembler(), codegen_, kQuickTanh);
2136}
2137
2138void IntrinsicLocationsBuilderARM::VisitMathAtan2(HInvoke* invoke) {
2139 CreateFPFPToFPCallLocations(arena_, invoke);
2140}
2141
2142void IntrinsicCodeGeneratorARM::VisitMathAtan2(HInvoke* invoke) {
2143 GenFPFPToFPCall(invoke, GetAssembler(), codegen_, kQuickAtan2);
2144}
2145
2146void IntrinsicLocationsBuilderARM::VisitMathHypot(HInvoke* invoke) {
2147 CreateFPFPToFPCallLocations(arena_, invoke);
2148}
2149
2150void IntrinsicCodeGeneratorARM::VisitMathHypot(HInvoke* invoke) {
2151 GenFPFPToFPCall(invoke, GetAssembler(), codegen_, kQuickHypot);
2152}
2153
2154void IntrinsicLocationsBuilderARM::VisitMathNextAfter(HInvoke* invoke) {
2155 CreateFPFPToFPCallLocations(arena_, invoke);
2156}
2157
2158void IntrinsicCodeGeneratorARM::VisitMathNextAfter(HInvoke* invoke) {
2159 GenFPFPToFPCall(invoke, GetAssembler(), codegen_, kQuickNextAfter);
2160}
2161
Artem Serovc257da72016-02-02 13:49:43 +00002162void IntrinsicLocationsBuilderARM::VisitIntegerReverse(HInvoke* invoke) {
2163 CreateIntToIntLocations(arena_, invoke);
2164}
2165
2166void IntrinsicCodeGeneratorARM::VisitIntegerReverse(HInvoke* invoke) {
2167 ArmAssembler* assembler = GetAssembler();
2168 LocationSummary* locations = invoke->GetLocations();
2169
2170 Register out = locations->Out().AsRegister<Register>();
2171 Register in = locations->InAt(0).AsRegister<Register>();
2172
2173 __ rbit(out, in);
2174}
2175
2176void IntrinsicLocationsBuilderARM::VisitLongReverse(HInvoke* invoke) {
2177 LocationSummary* locations = new (arena_) LocationSummary(invoke,
2178 LocationSummary::kNoCall,
2179 kIntrinsified);
2180 locations->SetInAt(0, Location::RequiresRegister());
2181 locations->SetOut(Location::RequiresRegister(), Location::kOutputOverlap);
2182}
2183
2184void IntrinsicCodeGeneratorARM::VisitLongReverse(HInvoke* invoke) {
2185 ArmAssembler* assembler = GetAssembler();
2186 LocationSummary* locations = invoke->GetLocations();
2187
2188 Register in_reg_lo = locations->InAt(0).AsRegisterPairLow<Register>();
2189 Register in_reg_hi = locations->InAt(0).AsRegisterPairHigh<Register>();
2190 Register out_reg_lo = locations->Out().AsRegisterPairLow<Register>();
2191 Register out_reg_hi = locations->Out().AsRegisterPairHigh<Register>();
2192
2193 __ rbit(out_reg_lo, in_reg_hi);
2194 __ rbit(out_reg_hi, in_reg_lo);
2195}
2196
2197void IntrinsicLocationsBuilderARM::VisitIntegerReverseBytes(HInvoke* invoke) {
2198 CreateIntToIntLocations(arena_, invoke);
2199}
2200
2201void IntrinsicCodeGeneratorARM::VisitIntegerReverseBytes(HInvoke* invoke) {
2202 ArmAssembler* assembler = GetAssembler();
2203 LocationSummary* locations = invoke->GetLocations();
2204
2205 Register out = locations->Out().AsRegister<Register>();
2206 Register in = locations->InAt(0).AsRegister<Register>();
2207
2208 __ rev(out, in);
2209}
2210
2211void IntrinsicLocationsBuilderARM::VisitLongReverseBytes(HInvoke* invoke) {
2212 LocationSummary* locations = new (arena_) LocationSummary(invoke,
2213 LocationSummary::kNoCall,
2214 kIntrinsified);
2215 locations->SetInAt(0, Location::RequiresRegister());
2216 locations->SetOut(Location::RequiresRegister(), Location::kOutputOverlap);
2217}
2218
2219void IntrinsicCodeGeneratorARM::VisitLongReverseBytes(HInvoke* invoke) {
2220 ArmAssembler* assembler = GetAssembler();
2221 LocationSummary* locations = invoke->GetLocations();
2222
2223 Register in_reg_lo = locations->InAt(0).AsRegisterPairLow<Register>();
2224 Register in_reg_hi = locations->InAt(0).AsRegisterPairHigh<Register>();
2225 Register out_reg_lo = locations->Out().AsRegisterPairLow<Register>();
2226 Register out_reg_hi = locations->Out().AsRegisterPairHigh<Register>();
2227
2228 __ rev(out_reg_lo, in_reg_hi);
2229 __ rev(out_reg_hi, in_reg_lo);
2230}
2231
2232void IntrinsicLocationsBuilderARM::VisitShortReverseBytes(HInvoke* invoke) {
2233 CreateIntToIntLocations(arena_, invoke);
2234}
2235
2236void IntrinsicCodeGeneratorARM::VisitShortReverseBytes(HInvoke* invoke) {
2237 ArmAssembler* assembler = GetAssembler();
2238 LocationSummary* locations = invoke->GetLocations();
2239
2240 Register out = locations->Out().AsRegister<Register>();
2241 Register in = locations->InAt(0).AsRegister<Register>();
2242
2243 __ revsh(out, in);
2244}
2245
xueliang.zhongf1073c82016-07-05 15:28:19 +01002246static void GenBitCount(HInvoke* instr, Primitive::Type type, ArmAssembler* assembler) {
2247 DCHECK(Primitive::IsIntOrLongType(type)) << type;
2248 DCHECK_EQ(instr->GetType(), Primitive::kPrimInt);
2249 DCHECK_EQ(Primitive::PrimitiveKind(instr->InputAt(0)->GetType()), type);
2250
2251 bool is_long = type == Primitive::kPrimLong;
2252 LocationSummary* locations = instr->GetLocations();
2253 Location in = locations->InAt(0);
2254 Register src_0 = is_long ? in.AsRegisterPairLow<Register>() : in.AsRegister<Register>();
2255 Register src_1 = is_long ? in.AsRegisterPairHigh<Register>() : src_0;
2256 SRegister tmp_s = locations->GetTemp(0).AsFpuRegisterPairLow<SRegister>();
2257 DRegister tmp_d = FromLowSToD(tmp_s);
2258 Register out_r = locations->Out().AsRegister<Register>();
2259
2260 // Move data from core register(s) to temp D-reg for bit count calculation, then move back.
2261 // According to Cortex A57 and A72 optimization guides, compared to transferring to full D-reg,
2262 // transferring data from core reg to upper or lower half of vfp D-reg requires extra latency,
2263 // That's why for integer bit count, we use 'vmov d0, r0, r0' instead of 'vmov d0[0], r0'.
2264 __ vmovdrr(tmp_d, src_1, src_0); // Temp DReg |--src_1|--src_0|
2265 __ vcntd(tmp_d, tmp_d); // Temp DReg |c|c|c|c|c|c|c|c|
2266 __ vpaddld(tmp_d, tmp_d, 8, /* is_unsigned */ true); // Temp DReg |--c|--c|--c|--c|
2267 __ vpaddld(tmp_d, tmp_d, 16, /* is_unsigned */ true); // Temp DReg |------c|------c|
2268 if (is_long) {
2269 __ vpaddld(tmp_d, tmp_d, 32, /* is_unsigned */ true); // Temp DReg |--------------c|
2270 }
2271 __ vmovrs(out_r, tmp_s);
2272}
2273
2274void IntrinsicLocationsBuilderARM::VisitIntegerBitCount(HInvoke* invoke) {
2275 CreateIntToIntLocations(arena_, invoke);
2276 invoke->GetLocations()->AddTemp(Location::RequiresFpuRegister());
2277}
2278
2279void IntrinsicCodeGeneratorARM::VisitIntegerBitCount(HInvoke* invoke) {
2280 GenBitCount(invoke, Primitive::kPrimInt, GetAssembler());
2281}
2282
2283void IntrinsicLocationsBuilderARM::VisitLongBitCount(HInvoke* invoke) {
2284 VisitIntegerBitCount(invoke);
2285}
2286
2287void IntrinsicCodeGeneratorARM::VisitLongBitCount(HInvoke* invoke) {
2288 GenBitCount(invoke, Primitive::kPrimLong, GetAssembler());
2289}
2290
Tim Zhang25abd6c2016-01-19 23:39:24 +08002291void IntrinsicLocationsBuilderARM::VisitStringGetCharsNoCheck(HInvoke* invoke) {
2292 LocationSummary* locations = new (arena_) LocationSummary(invoke,
2293 LocationSummary::kNoCall,
2294 kIntrinsified);
2295 locations->SetInAt(0, Location::RequiresRegister());
2296 locations->SetInAt(1, Location::RequiresRegister());
2297 locations->SetInAt(2, Location::RequiresRegister());
2298 locations->SetInAt(3, Location::RequiresRegister());
2299 locations->SetInAt(4, Location::RequiresRegister());
2300
Scott Wakeling3fdab772016-04-25 11:32:37 +01002301 // Temporary registers to store lengths of strings and for calculations.
Tim Zhang25abd6c2016-01-19 23:39:24 +08002302 locations->AddTemp(Location::RequiresRegister());
2303 locations->AddTemp(Location::RequiresRegister());
2304 locations->AddTemp(Location::RequiresRegister());
2305}
2306
2307void IntrinsicCodeGeneratorARM::VisitStringGetCharsNoCheck(HInvoke* invoke) {
2308 ArmAssembler* assembler = GetAssembler();
2309 LocationSummary* locations = invoke->GetLocations();
2310
2311 // Check assumption that sizeof(Char) is 2 (used in scaling below).
2312 const size_t char_size = Primitive::ComponentSize(Primitive::kPrimChar);
2313 DCHECK_EQ(char_size, 2u);
2314
2315 // Location of data in char array buffer.
2316 const uint32_t data_offset = mirror::Array::DataOffset(char_size).Uint32Value();
2317
2318 // Location of char array data in string.
2319 const uint32_t value_offset = mirror::String::ValueOffset().Uint32Value();
2320
2321 // void getCharsNoCheck(int srcBegin, int srcEnd, char[] dst, int dstBegin);
2322 // Since getChars() calls getCharsNoCheck() - we use registers rather than constants.
2323 Register srcObj = locations->InAt(0).AsRegister<Register>();
2324 Register srcBegin = locations->InAt(1).AsRegister<Register>();
2325 Register srcEnd = locations->InAt(2).AsRegister<Register>();
2326 Register dstObj = locations->InAt(3).AsRegister<Register>();
2327 Register dstBegin = locations->InAt(4).AsRegister<Register>();
2328
Scott Wakeling3fdab772016-04-25 11:32:37 +01002329 Register num_chr = locations->GetTemp(0).AsRegister<Register>();
2330 Register src_ptr = locations->GetTemp(1).AsRegister<Register>();
Tim Zhang25abd6c2016-01-19 23:39:24 +08002331 Register dst_ptr = locations->GetTemp(2).AsRegister<Register>();
Tim Zhang25abd6c2016-01-19 23:39:24 +08002332
2333 // src range to copy.
2334 __ add(src_ptr, srcObj, ShifterOperand(value_offset));
Tim Zhang25abd6c2016-01-19 23:39:24 +08002335 __ add(src_ptr, src_ptr, ShifterOperand(srcBegin, LSL, 1));
2336
2337 // dst to be copied.
2338 __ add(dst_ptr, dstObj, ShifterOperand(data_offset));
2339 __ add(dst_ptr, dst_ptr, ShifterOperand(dstBegin, LSL, 1));
2340
Scott Wakeling3fdab772016-04-25 11:32:37 +01002341 __ subs(num_chr, srcEnd, ShifterOperand(srcBegin));
2342
Tim Zhang25abd6c2016-01-19 23:39:24 +08002343 // Do the copy.
Scott Wakeling3fdab772016-04-25 11:32:37 +01002344 Label loop, remainder, done;
2345
2346 // Early out for valid zero-length retrievals.
Tim Zhang25abd6c2016-01-19 23:39:24 +08002347 __ b(&done, EQ);
Scott Wakeling3fdab772016-04-25 11:32:37 +01002348
2349 // Save repairing the value of num_chr on the < 4 character path.
2350 __ subs(IP, num_chr, ShifterOperand(4));
2351 __ b(&remainder, LT);
2352
2353 // Keep the result of the earlier subs, we are going to fetch at least 4 characters.
2354 __ mov(num_chr, ShifterOperand(IP));
2355
2356 // Main loop used for longer fetches loads and stores 4x16-bit characters at a time.
2357 // (LDRD/STRD fault on unaligned addresses and it's not worth inlining extra code
2358 // to rectify these everywhere this intrinsic applies.)
2359 __ Bind(&loop);
2360 __ ldr(IP, Address(src_ptr, char_size * 2));
2361 __ subs(num_chr, num_chr, ShifterOperand(4));
2362 __ str(IP, Address(dst_ptr, char_size * 2));
2363 __ ldr(IP, Address(src_ptr, char_size * 4, Address::PostIndex));
2364 __ str(IP, Address(dst_ptr, char_size * 4, Address::PostIndex));
2365 __ b(&loop, GE);
2366
2367 __ adds(num_chr, num_chr, ShifterOperand(4));
2368 __ b(&done, EQ);
2369
2370 // Main loop for < 4 character case and remainder handling. Loads and stores one
2371 // 16-bit Java character at a time.
2372 __ Bind(&remainder);
2373 __ ldrh(IP, Address(src_ptr, char_size, Address::PostIndex));
2374 __ subs(num_chr, num_chr, ShifterOperand(1));
2375 __ strh(IP, Address(dst_ptr, char_size, Address::PostIndex));
2376 __ b(&remainder, GT);
2377
Tim Zhang25abd6c2016-01-19 23:39:24 +08002378 __ Bind(&done);
2379}
2380
Anton Kirilova3ffea22016-04-07 17:02:37 +01002381void IntrinsicLocationsBuilderARM::VisitFloatIsInfinite(HInvoke* invoke) {
2382 CreateFPToIntLocations(arena_, invoke);
2383}
2384
2385void IntrinsicCodeGeneratorARM::VisitFloatIsInfinite(HInvoke* invoke) {
2386 ArmAssembler* const assembler = GetAssembler();
2387 LocationSummary* const locations = invoke->GetLocations();
2388 const Register out = locations->Out().AsRegister<Register>();
2389 // Shifting left by 1 bit makes the value encodable as an immediate operand;
2390 // we don't care about the sign bit anyway.
2391 constexpr uint32_t infinity = kPositiveInfinityFloat << 1U;
2392
2393 __ vmovrs(out, locations->InAt(0).AsFpuRegister<SRegister>());
2394 // We don't care about the sign bit, so shift left.
2395 __ Lsl(out, out, 1);
2396 __ eor(out, out, ShifterOperand(infinity));
2397 // If the result is 0, then it has 32 leading zeros, and less than that otherwise.
2398 __ clz(out, out);
2399 // Any number less than 32 logically shifted right by 5 bits results in 0;
2400 // the same operation on 32 yields 1.
2401 __ Lsr(out, out, 5);
2402}
2403
2404void IntrinsicLocationsBuilderARM::VisitDoubleIsInfinite(HInvoke* invoke) {
2405 CreateFPToIntLocations(arena_, invoke);
2406}
2407
2408void IntrinsicCodeGeneratorARM::VisitDoubleIsInfinite(HInvoke* invoke) {
2409 ArmAssembler* const assembler = GetAssembler();
2410 LocationSummary* const locations = invoke->GetLocations();
2411 const Register out = locations->Out().AsRegister<Register>();
2412 // The highest 32 bits of double precision positive infinity separated into
2413 // two constants encodable as immediate operands.
2414 constexpr uint32_t infinity_high = 0x7f000000U;
2415 constexpr uint32_t infinity_high2 = 0x00f00000U;
2416
2417 static_assert((infinity_high | infinity_high2) == static_cast<uint32_t>(kPositiveInfinityDouble >> 32U),
2418 "The constants do not add up to the high 32 bits of double precision positive infinity.");
2419 __ vmovrrd(IP, out, FromLowSToD(locations->InAt(0).AsFpuRegisterPairLow<SRegister>()));
2420 __ eor(out, out, ShifterOperand(infinity_high));
2421 __ eor(out, out, ShifterOperand(infinity_high2));
2422 // We don't care about the sign bit, so shift left.
2423 __ orr(out, IP, ShifterOperand(out, LSL, 1));
2424 // If the result is 0, then it has 32 leading zeros, and less than that otherwise.
2425 __ clz(out, out);
2426 // Any number less than 32 logically shifted right by 5 bits results in 0;
2427 // the same operation on 32 yields 1.
2428 __ Lsr(out, out, 5);
2429}
2430
Aart Bik2f9fcc92016-03-01 15:16:54 -08002431UNIMPLEMENTED_INTRINSIC(ARM, MathMinDoubleDouble)
2432UNIMPLEMENTED_INTRINSIC(ARM, MathMinFloatFloat)
2433UNIMPLEMENTED_INTRINSIC(ARM, MathMaxDoubleDouble)
2434UNIMPLEMENTED_INTRINSIC(ARM, MathMaxFloatFloat)
2435UNIMPLEMENTED_INTRINSIC(ARM, MathMinLongLong)
2436UNIMPLEMENTED_INTRINSIC(ARM, MathMaxLongLong)
2437UNIMPLEMENTED_INTRINSIC(ARM, MathCeil) // Could be done by changing rounding mode, maybe?
2438UNIMPLEMENTED_INTRINSIC(ARM, MathFloor) // Could be done by changing rounding mode, maybe?
2439UNIMPLEMENTED_INTRINSIC(ARM, MathRint)
2440UNIMPLEMENTED_INTRINSIC(ARM, MathRoundDouble) // Could be done by changing rounding mode, maybe?
2441UNIMPLEMENTED_INTRINSIC(ARM, MathRoundFloat) // Could be done by changing rounding mode, maybe?
2442UNIMPLEMENTED_INTRINSIC(ARM, UnsafeCASLong) // High register pressure.
2443UNIMPLEMENTED_INTRINSIC(ARM, SystemArrayCopyChar)
2444UNIMPLEMENTED_INTRINSIC(ARM, ReferenceGetReferent)
Aart Bik2f9fcc92016-03-01 15:16:54 -08002445UNIMPLEMENTED_INTRINSIC(ARM, IntegerHighestOneBit)
2446UNIMPLEMENTED_INTRINSIC(ARM, LongHighestOneBit)
2447UNIMPLEMENTED_INTRINSIC(ARM, IntegerLowestOneBit)
2448UNIMPLEMENTED_INTRINSIC(ARM, LongLowestOneBit)
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -08002449
Aart Bik0e54c012016-03-04 12:08:31 -08002450// 1.8.
2451UNIMPLEMENTED_INTRINSIC(ARM, UnsafeGetAndAddInt)
2452UNIMPLEMENTED_INTRINSIC(ARM, UnsafeGetAndAddLong)
2453UNIMPLEMENTED_INTRINSIC(ARM, UnsafeGetAndSetInt)
2454UNIMPLEMENTED_INTRINSIC(ARM, UnsafeGetAndSetLong)
2455UNIMPLEMENTED_INTRINSIC(ARM, UnsafeGetAndSetObject)
Aart Bik0e54c012016-03-04 12:08:31 -08002456
Aart Bik2f9fcc92016-03-01 15:16:54 -08002457UNREACHABLE_INTRINSICS(ARM)
Roland Levillain4d027112015-07-01 15:41:14 +01002458
2459#undef __
2460
Andreas Gampe2bcf9bf2015-01-29 09:56:07 -08002461} // namespace arm
2462} // namespace art