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Nicolas Geoffrayc32e7702014-04-24 12:43:16 +01001/*
2 * Copyright (C) 2014 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#include "ssa_builder.h"
Nicolas Geoffray184d6402014-06-09 14:06:02 +010018
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +010019#include "nodes.h"
Calin Juravle10e244f2015-01-26 18:54:32 +000020#include "primitive_type_propagation.h"
Nicolas Geoffray31596742014-11-24 15:28:45 +000021#include "ssa_phi_elimination.h"
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +010022
23namespace art {
24
Nicolas Geoffraye0fe7ae2015-03-09 10:02:49 +000025/**
26 * A debuggable application may require to reviving phis, to ensure their
27 * associated DEX register is available to a debugger. This class implements
28 * the logic for statement (c) of the SsaBuilder (see ssa_builder.h). It
29 * also makes sure that phis with incompatible input types are not revived
30 * (statement (b) of the SsaBuilder).
31 *
32 * This phase must be run after detecting dead phis through the
33 * DeadPhiElimination phase, and before deleting the dead phis.
34 */
35class DeadPhiHandling : public ValueObject {
36 public:
37 explicit DeadPhiHandling(HGraph* graph)
38 : graph_(graph), worklist_(graph->GetArena(), kDefaultWorklistSize) {}
39
40 void Run();
41
42 private:
43 void VisitBasicBlock(HBasicBlock* block);
44 void ProcessWorklist();
45 void AddToWorklist(HPhi* phi);
46 void AddDependentInstructionsToWorklist(HPhi* phi);
47 bool UpdateType(HPhi* phi);
48
49 HGraph* const graph_;
50 GrowableArray<HPhi*> worklist_;
51
52 static constexpr size_t kDefaultWorklistSize = 8;
53
54 DISALLOW_COPY_AND_ASSIGN(DeadPhiHandling);
55};
56
57bool DeadPhiHandling::UpdateType(HPhi* phi) {
58 Primitive::Type existing = phi->GetType();
59 DCHECK(phi->IsLive());
60
61 bool conflict = false;
62 Primitive::Type new_type = existing;
63 for (size_t i = 0, e = phi->InputCount(); i < e; ++i) {
64 HInstruction* input = phi->InputAt(i);
65 if (input->IsPhi() && input->AsPhi()->IsDead()) {
66 // We are doing a reverse post order visit of the graph, reviving
67 // phis that have environment uses and updating their types. If an
68 // input is a phi, and it is dead (because its input types are
69 // conflicting), this phi must be marked dead as well.
70 conflict = true;
71 break;
72 }
73 Primitive::Type input_type = HPhi::ToPhiType(input->GetType());
74
75 // The only acceptable transitions are:
76 // - From void to typed: first time we update the type of this phi.
77 // - From int to reference (or reference to int): the phi has to change
78 // to reference type. If the integer input cannot be converted to a
79 // reference input, the phi will remain dead.
80 if (new_type == Primitive::kPrimVoid) {
81 new_type = input_type;
82 } else if (new_type == Primitive::kPrimNot && input_type == Primitive::kPrimInt) {
83 HInstruction* equivalent = SsaBuilder::GetReferenceTypeEquivalent(input);
84 if (equivalent == nullptr) {
85 conflict = true;
86 break;
87 } else {
88 phi->ReplaceInput(equivalent, i);
89 if (equivalent->IsPhi()) {
90 DCHECK_EQ(equivalent->GetType(), Primitive::kPrimNot);
91 // We created a new phi, but that phi has the same inputs as the old phi. We
92 // add it to the worklist to ensure its inputs can also be converted to reference.
93 // If not, it will remain dead, and the algorithm will make the current phi dead
94 // as well.
95 equivalent->AsPhi()->SetLive();
96 AddToWorklist(equivalent->AsPhi());
97 }
98 }
99 } else if (new_type == Primitive::kPrimInt && input_type == Primitive::kPrimNot) {
100 new_type = Primitive::kPrimNot;
101 // Start over, we may request reference equivalents for the inputs of the phi.
102 i = -1;
103 } else if (new_type != input_type) {
104 conflict = true;
105 break;
106 }
107 }
108
109 if (conflict) {
110 phi->SetType(Primitive::kPrimVoid);
111 phi->SetDead();
112 return true;
113 } else {
114 DCHECK(phi->IsLive());
115 phi->SetType(new_type);
116 return existing != new_type;
117 }
118}
119
120void DeadPhiHandling::VisitBasicBlock(HBasicBlock* block) {
121 for (HInstructionIterator it(block->GetPhis()); !it.Done(); it.Advance()) {
122 HPhi* phi = it.Current()->AsPhi();
123 if (phi->IsDead() && phi->HasEnvironmentUses()) {
124 phi->SetLive();
125 if (block->IsLoopHeader()) {
126 // Give a type to the loop phi, to guarantee convergence of the algorithm.
127 phi->SetType(phi->InputAt(0)->GetType());
128 AddToWorklist(phi);
129 } else {
130 // Because we are doing a reverse post order visit, all inputs of
131 // this phi have been visited and therefore had their (initial) type set.
132 UpdateType(phi);
133 }
134 }
135 }
136}
137
138void DeadPhiHandling::ProcessWorklist() {
139 while (!worklist_.IsEmpty()) {
140 HPhi* instruction = worklist_.Pop();
141 // Note that the same equivalent phi can be added multiple times in the work list, if
142 // used by multiple phis. The first call to `UpdateType` will know whether the phi is
143 // dead or live.
144 if (instruction->IsLive() && UpdateType(instruction)) {
145 AddDependentInstructionsToWorklist(instruction);
146 }
147 }
148}
149
150void DeadPhiHandling::AddToWorklist(HPhi* instruction) {
151 DCHECK(instruction->IsLive());
152 worklist_.Add(instruction);
153}
154
155void DeadPhiHandling::AddDependentInstructionsToWorklist(HPhi* instruction) {
156 for (HUseIterator<HInstruction*> it(instruction->GetUses()); !it.Done(); it.Advance()) {
157 HPhi* phi = it.Current()->GetUser()->AsPhi();
158 if (phi != nullptr && !phi->IsDead()) {
159 AddToWorklist(phi);
160 }
161 }
162}
163
164void DeadPhiHandling::Run() {
165 for (HReversePostOrderIterator it(*graph_); !it.Done(); it.Advance()) {
166 VisitBasicBlock(it.Current());
167 }
168 ProcessWorklist();
169}
170
171static bool IsPhiEquivalentOf(HInstruction* instruction, HPhi* phi) {
172 return instruction != nullptr
173 && instruction->IsPhi()
174 && instruction->AsPhi()->GetRegNumber() == phi->GetRegNumber();
175}
176
Calin Juravlea4f88312015-04-16 12:57:19 +0100177void SsaBuilder::FixNullConstantType() {
178 // The order doesn't matter here.
179 for (HReversePostOrderIterator itb(*GetGraph()); !itb.Done(); itb.Advance()) {
180 for (HInstructionIterator it(itb.Current()->GetInstructions()); !it.Done(); it.Advance()) {
181 HInstruction* equality_instr = it.Current();
182 if (!equality_instr->IsEqual() && !equality_instr->IsNotEqual()) {
183 continue;
184 }
185 HInstruction* left = equality_instr->InputAt(0);
186 HInstruction* right = equality_instr->InputAt(1);
Nicolas Geoffray51d400d2015-06-15 09:01:08 +0100187 HInstruction* int_operand = nullptr;
Calin Juravlea4f88312015-04-16 12:57:19 +0100188
Nicolas Geoffray51d400d2015-06-15 09:01:08 +0100189 if ((left->GetType() == Primitive::kPrimNot) && (right->GetType() == Primitive::kPrimInt)) {
190 int_operand = right;
191 } else if ((right->GetType() == Primitive::kPrimNot)
192 && (left->GetType() == Primitive::kPrimInt)) {
193 int_operand = left;
Calin Juravlea4f88312015-04-16 12:57:19 +0100194 } else {
195 continue;
196 }
197
198 // If we got here, we are comparing against a reference and the int constant
199 // should be replaced with a null constant.
Nicolas Geoffray51d400d2015-06-15 09:01:08 +0100200 // Both type propagation and redundant phi elimination ensure `int_operand`
201 // can only be the 0 constant.
202 DCHECK(int_operand->IsIntConstant());
203 DCHECK_EQ(0, int_operand->AsIntConstant()->GetValue());
204 equality_instr->ReplaceInput(GetGraph()->GetNullConstant(), int_operand == right ? 1 : 0);
Calin Juravlea4f88312015-04-16 12:57:19 +0100205 }
206 }
207}
208
209void SsaBuilder::EquivalentPhisCleanup() {
210 // The order doesn't matter here.
211 for (HReversePostOrderIterator itb(*GetGraph()); !itb.Done(); itb.Advance()) {
212 for (HInstructionIterator it(itb.Current()->GetPhis()); !it.Done(); it.Advance()) {
213 HPhi* phi = it.Current()->AsPhi();
214 HPhi* next = phi->GetNextEquivalentPhiWithSameType();
215 if (next != nullptr) {
216 phi->ReplaceWith(next);
217 DCHECK(next->GetNextEquivalentPhiWithSameType() == nullptr)
218 << "More then one phi equivalent with type " << phi->GetType()
219 << " found for phi" << phi->GetId();
220 }
221 }
222 }
223}
224
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100225void SsaBuilder::BuildSsa() {
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100226 // 1) Visit in reverse post order. We need to have all predecessors of a block visited
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100227 // (with the exception of loops) in order to create the right environment for that
228 // block. For loops, we create phis whose inputs will be set in 2).
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100229 for (HReversePostOrderIterator it(*GetGraph()); !it.Done(); it.Advance()) {
230 VisitBasicBlock(it.Current());
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100231 }
232
233 // 2) Set inputs of loop phis.
234 for (size_t i = 0; i < loop_headers_.Size(); i++) {
235 HBasicBlock* block = loop_headers_.Get(i);
Nicolas Geoffrayf635e632014-05-14 09:43:38 +0100236 for (HInstructionIterator it(block->GetPhis()); !it.Done(); it.Advance()) {
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100237 HPhi* phi = it.Current()->AsPhi();
Nicolas Geoffray622d9c32014-05-12 16:11:02 +0100238 for (size_t pred = 0; pred < block->GetPredecessors().Size(); pred++) {
Nicolas Geoffraya7062e02014-05-22 12:50:17 +0100239 HInstruction* input = ValueOfLocal(block->GetPredecessors().Get(pred), phi->GetRegNumber());
240 phi->AddInput(input);
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100241 }
242 }
243 }
244
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +0000245 // 3) Mark dead phis. This will mark phis that are only used by environments:
Nicolas Geoffray31596742014-11-24 15:28:45 +0000246 // at the DEX level, the type of these phis does not need to be consistent, but
247 // our code generator will complain if the inputs of a phi do not have the same
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +0000248 // type. The marking allows the type propagation to know which phis it needs
249 // to handle. We mark but do not eliminate: the elimination will be done in
Nicolas Geoffrayb59dba02015-03-11 18:13:21 +0000250 // step 9).
251 SsaDeadPhiElimination dead_phis_for_type_propagation(GetGraph());
252 dead_phis_for_type_propagation.MarkDeadPhis();
Nicolas Geoffray31596742014-11-24 15:28:45 +0000253
254 // 4) Propagate types of phis. At this point, phis are typed void in the general
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +0000255 // case, or float/double/reference when we created an equivalent phi. So we
Nicolas Geoffray31596742014-11-24 15:28:45 +0000256 // need to propagate the types across phis to give them a correct type.
Calin Juravle10e244f2015-01-26 18:54:32 +0000257 PrimitiveTypePropagation type_propagation(GetGraph());
Nicolas Geoffray184d6402014-06-09 14:06:02 +0100258 type_propagation.Run();
259
Nicolas Geoffray51d400d2015-06-15 09:01:08 +0100260 // 5) When creating equivalent phis we copy the inputs of the original phi which
261 // may be improperly typed. This was fixed during the type propagation in 4) but
Calin Juravlea4f88312015-04-16 12:57:19 +0100262 // as a result we may end up with two equivalent phis with the same type for
263 // the same dex register. This pass cleans them up.
264 EquivalentPhisCleanup();
265
Nicolas Geoffray51d400d2015-06-15 09:01:08 +0100266 // 6) Mark dead phis again. Step 4) may have introduced new phis.
267 // Step 5) might enable the death of new phis.
Nicolas Geoffrayb59dba02015-03-11 18:13:21 +0000268 SsaDeadPhiElimination dead_phis(GetGraph());
269 dead_phis.MarkDeadPhis();
270
Nicolas Geoffray51d400d2015-06-15 09:01:08 +0100271 // 7) Now that the graph is correctly typed, we can get rid of redundant phis.
Nicolas Geoffraye0fe7ae2015-03-09 10:02:49 +0000272 // Note that we cannot do this phase before type propagation, otherwise
273 // we could get rid of phi equivalents, whose presence is a requirement for the
274 // type propagation phase. Note that this is to satisfy statement (a) of the
275 // SsaBuilder (see ssa_builder.h).
276 SsaRedundantPhiElimination redundant_phi(GetGraph());
277 redundant_phi.Run();
278
Nicolas Geoffray51d400d2015-06-15 09:01:08 +0100279 // 8) Fix the type for null constants which are part of an equality comparison.
280 // We need to do this after redundant phi elimination, to ensure the only cases
281 // that we can see are reference comparison against 0. The redundant phi
282 // elimination ensures we do not see a phi taking two 0 constants in a HEqual
283 // or HNotEqual.
284 FixNullConstantType();
285
Calin Juravlea4f88312015-04-16 12:57:19 +0100286 // 9) Make sure environments use the right phi "equivalent": a phi marked dead
Nicolas Geoffraye0fe7ae2015-03-09 10:02:49 +0000287 // can have a phi equivalent that is not dead. We must therefore update
288 // all environment uses of the dead phi to use its equivalent. Note that there
289 // can be multiple phis for the same Dex register that are live (for example
290 // when merging constants), in which case it is OK for the environments
291 // to just reference one.
292 for (HReversePostOrderIterator it(*GetGraph()); !it.Done(); it.Advance()) {
293 HBasicBlock* block = it.Current();
294 for (HInstructionIterator it_phis(block->GetPhis()); !it_phis.Done(); it_phis.Advance()) {
295 HPhi* phi = it_phis.Current()->AsPhi();
296 // If the phi is not dead, or has no environment uses, there is nothing to do.
297 if (!phi->IsDead() || !phi->HasEnvironmentUses()) continue;
298 HInstruction* next = phi->GetNext();
299 if (!IsPhiEquivalentOf(next, phi)) continue;
300 if (next->AsPhi()->IsDead()) {
301 // If the phi equivalent is dead, check if there is another one.
302 next = next->GetNext();
303 if (!IsPhiEquivalentOf(next, phi)) continue;
304 // There can be at most two phi equivalents.
305 DCHECK(!IsPhiEquivalentOf(next->GetNext(), phi));
306 if (next->AsPhi()->IsDead()) continue;
307 }
308 // We found a live phi equivalent. Update the environment uses of `phi` with it.
309 phi->ReplaceWith(next);
310 }
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +0000311 }
312
Calin Juravlea4f88312015-04-16 12:57:19 +0100313 // 10) Deal with phis to guarantee liveness of phis in case of a debuggable
Nicolas Geoffraye0fe7ae2015-03-09 10:02:49 +0000314 // application. This is for satisfying statement (c) of the SsaBuilder
315 // (see ssa_builder.h).
316 if (GetGraph()->IsDebuggable()) {
317 DeadPhiHandling dead_phi_handler(GetGraph());
318 dead_phi_handler.Run();
319 }
320
Calin Juravlea4f88312015-04-16 12:57:19 +0100321 // 11) Now that the right phis are used for the environments, and we
Nicolas Geoffraye0fe7ae2015-03-09 10:02:49 +0000322 // have potentially revive dead phis in case of a debuggable application,
323 // we can eliminate phis we do not need. Regardless of the debuggable status,
324 // this phase is necessary for statement (b) of the SsaBuilder (see ssa_builder.h),
325 // as well as for the code generation, which does not deal with phis of conflicting
326 // input types.
327 dead_phis.EliminateDeadPhis();
328
Calin Juravlea4f88312015-04-16 12:57:19 +0100329 // 12) Clear locals.
Nicolas Geoffrayf635e632014-05-14 09:43:38 +0100330 for (HInstructionIterator it(GetGraph()->GetEntryBlock()->GetInstructions());
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100331 !it.Done();
332 it.Advance()) {
333 HInstruction* current = it.Current();
Roland Levillain476df552014-10-09 17:51:36 +0100334 if (current->IsLocal()) {
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100335 current->GetBlock()->RemoveInstruction(current);
336 }
337 }
338}
339
340HInstruction* SsaBuilder::ValueOfLocal(HBasicBlock* block, size_t local) {
Nicolas Geoffray8c0c91a2015-05-07 11:46:05 +0100341 return GetLocalsFor(block)->Get(local);
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100342}
343
344void SsaBuilder::VisitBasicBlock(HBasicBlock* block) {
345 current_locals_ = GetLocalsFor(block);
346
347 if (block->IsLoopHeader()) {
348 // If the block is a loop header, we know we only have visited the pre header
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100349 // because we are visiting in reverse post order. We create phis for all initialized
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100350 // locals from the pre header. Their inputs will be populated at the end of
351 // the analysis.
352 for (size_t local = 0; local < current_locals_->Size(); local++) {
353 HInstruction* incoming = ValueOfLocal(block->GetLoopInformation()->GetPreHeader(), local);
354 if (incoming != nullptr) {
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100355 HPhi* phi = new (GetGraph()->GetArena()) HPhi(
356 GetGraph()->GetArena(), local, 0, Primitive::kPrimVoid);
357 block->AddPhi(phi);
Nicolas Geoffray8c0c91a2015-05-07 11:46:05 +0100358 current_locals_->Put(local, phi);
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100359 }
360 }
361 // Save the loop header so that the last phase of the analysis knows which
362 // blocks need to be updated.
363 loop_headers_.Add(block);
Nicolas Geoffray622d9c32014-05-12 16:11:02 +0100364 } else if (block->GetPredecessors().Size() > 0) {
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100365 // All predecessors have already been visited because we are visiting in reverse post order.
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100366 // We merge the values of all locals, creating phis if those values differ.
367 for (size_t local = 0; local < current_locals_->Size(); local++) {
Nicolas Geoffray7c3560f2014-06-04 12:12:08 +0100368 bool one_predecessor_has_no_value = false;
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100369 bool is_different = false;
Nicolas Geoffray622d9c32014-05-12 16:11:02 +0100370 HInstruction* value = ValueOfLocal(block->GetPredecessors().Get(0), local);
Nicolas Geoffray7c3560f2014-06-04 12:12:08 +0100371
372 for (size_t i = 0, e = block->GetPredecessors().Size(); i < e; ++i) {
373 HInstruction* current = ValueOfLocal(block->GetPredecessors().Get(i), local);
374 if (current == nullptr) {
Nicolas Geoffrayec7e4722014-06-06 11:24:33 +0100375 one_predecessor_has_no_value = true;
376 break;
Nicolas Geoffray7c3560f2014-06-04 12:12:08 +0100377 } else if (current != value) {
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100378 is_different = true;
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100379 }
380 }
Nicolas Geoffray7c3560f2014-06-04 12:12:08 +0100381
382 if (one_predecessor_has_no_value) {
383 // If one predecessor has no value for this local, we trust the verifier has
384 // successfully checked that there is a store dominating any read after this block.
385 continue;
386 }
387
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100388 if (is_different) {
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100389 HPhi* phi = new (GetGraph()->GetArena()) HPhi(
Nicolas Geoffray622d9c32014-05-12 16:11:02 +0100390 GetGraph()->GetArena(), local, block->GetPredecessors().Size(), Primitive::kPrimVoid);
391 for (size_t i = 0; i < block->GetPredecessors().Size(); i++) {
Andreas Gampe277ccbd2014-11-03 21:36:10 -0800392 HInstruction* pred_value = ValueOfLocal(block->GetPredecessors().Get(i), local);
393 phi->SetRawInputAt(i, pred_value);
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100394 }
395 block->AddPhi(phi);
396 value = phi;
397 }
Nicolas Geoffray8c0c91a2015-05-07 11:46:05 +0100398 current_locals_->Put(local, value);
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100399 }
400 }
401
402 // Visit all instructions. The instructions of interest are:
403 // - HLoadLocal: replace them with the current value of the local.
404 // - HStoreLocal: update current value of the local and remove the instruction.
405 // - Instructions that require an environment: populate their environment
406 // with the current values of the locals.
Nicolas Geoffrayf635e632014-05-14 09:43:38 +0100407 for (HInstructionIterator it(block->GetInstructions()); !it.Done(); it.Advance()) {
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100408 it.Current()->Accept(this);
409 }
410}
411
Nicolas Geoffray102cbed2014-10-15 18:31:05 +0100412/**
413 * Constants in the Dex format are not typed. So the builder types them as
414 * integers, but when doing the SSA form, we might realize the constant
415 * is used for floating point operations. We create a floating-point equivalent
416 * constant to make the operations correctly typed.
417 */
David Brazdil8d5b8b22015-03-24 10:51:52 +0000418HFloatConstant* SsaBuilder::GetFloatEquivalent(HIntConstant* constant) {
Nicolas Geoffray102cbed2014-10-15 18:31:05 +0100419 // We place the floating point constant next to this constant.
420 HFloatConstant* result = constant->GetNext()->AsFloatConstant();
421 if (result == nullptr) {
422 HGraph* graph = constant->GetBlock()->GetGraph();
423 ArenaAllocator* allocator = graph->GetArena();
Roland Levillainda4d79b2015-03-24 14:36:11 +0000424 result = new (allocator) HFloatConstant(bit_cast<float, int32_t>(constant->GetValue()));
Nicolas Geoffray102cbed2014-10-15 18:31:05 +0100425 constant->GetBlock()->InsertInstructionBefore(result, constant->GetNext());
Nicolas Geoffrayf213e052015-04-27 08:53:46 +0000426 graph->CacheFloatConstant(result);
Nicolas Geoffray102cbed2014-10-15 18:31:05 +0100427 } else {
428 // If there is already a constant with the expected type, we know it is
429 // the floating point equivalent of this constant.
Roland Levillainda4d79b2015-03-24 14:36:11 +0000430 DCHECK_EQ((bit_cast<int32_t, float>(result->GetValue())), constant->GetValue());
Nicolas Geoffray102cbed2014-10-15 18:31:05 +0100431 }
432 return result;
433}
434
435/**
436 * Wide constants in the Dex format are not typed. So the builder types them as
437 * longs, but when doing the SSA form, we might realize the constant
438 * is used for floating point operations. We create a floating-point equivalent
439 * constant to make the operations correctly typed.
440 */
David Brazdil8d5b8b22015-03-24 10:51:52 +0000441HDoubleConstant* SsaBuilder::GetDoubleEquivalent(HLongConstant* constant) {
Nicolas Geoffray102cbed2014-10-15 18:31:05 +0100442 // We place the floating point constant next to this constant.
443 HDoubleConstant* result = constant->GetNext()->AsDoubleConstant();
444 if (result == nullptr) {
445 HGraph* graph = constant->GetBlock()->GetGraph();
446 ArenaAllocator* allocator = graph->GetArena();
Roland Levillainda4d79b2015-03-24 14:36:11 +0000447 result = new (allocator) HDoubleConstant(bit_cast<double, int64_t>(constant->GetValue()));
Nicolas Geoffray102cbed2014-10-15 18:31:05 +0100448 constant->GetBlock()->InsertInstructionBefore(result, constant->GetNext());
Nicolas Geoffrayf213e052015-04-27 08:53:46 +0000449 graph->CacheDoubleConstant(result);
Nicolas Geoffray102cbed2014-10-15 18:31:05 +0100450 } else {
451 // If there is already a constant with the expected type, we know it is
452 // the floating point equivalent of this constant.
Roland Levillainda4d79b2015-03-24 14:36:11 +0000453 DCHECK_EQ((bit_cast<int64_t, double>(result->GetValue())), constant->GetValue());
Nicolas Geoffray102cbed2014-10-15 18:31:05 +0100454 }
455 return result;
456}
457
458/**
459 * Because of Dex format, we might end up having the same phi being
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +0000460 * used for non floating point operations and floating point / reference operations.
461 * Because we want the graph to be correctly typed (and thereafter avoid moves between
Nicolas Geoffray102cbed2014-10-15 18:31:05 +0100462 * floating point registers and core registers), we need to create a copy of the
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +0000463 * phi with a floating point / reference type.
Nicolas Geoffray102cbed2014-10-15 18:31:05 +0100464 */
David Brazdil8d5b8b22015-03-24 10:51:52 +0000465HPhi* SsaBuilder::GetFloatDoubleOrReferenceEquivalentOfPhi(HPhi* phi, Primitive::Type type) {
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +0000466 // We place the floating point /reference phi next to this phi.
Nicolas Geoffray102cbed2014-10-15 18:31:05 +0100467 HInstruction* next = phi->GetNext();
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +0000468 if (next != nullptr
469 && next->AsPhi()->GetRegNumber() == phi->GetRegNumber()
470 && next->GetType() != type) {
471 // Move to the next phi to see if it is the one we are looking for.
472 next = next->GetNext();
473 }
474
475 if (next == nullptr
476 || (next->AsPhi()->GetRegNumber() != phi->GetRegNumber())
477 || (next->GetType() != type)) {
Nicolas Geoffray102cbed2014-10-15 18:31:05 +0100478 ArenaAllocator* allocator = phi->GetBlock()->GetGraph()->GetArena();
479 HPhi* new_phi = new (allocator) HPhi(allocator, phi->GetRegNumber(), phi->InputCount(), type);
480 for (size_t i = 0, e = phi->InputCount(); i < e; ++i) {
481 // Copy the inputs. Note that the graph may not be correctly typed by doing this copy,
482 // but the type propagation phase will fix it.
483 new_phi->SetRawInputAt(i, phi->InputAt(i));
484 }
485 phi->GetBlock()->InsertPhiAfter(new_phi, phi);
486 return new_phi;
487 } else {
Nicolas Geoffray21cc7982014-11-17 17:50:33 +0000488 DCHECK_EQ(next->GetType(), type);
Nicolas Geoffray102cbed2014-10-15 18:31:05 +0100489 return next->AsPhi();
490 }
491}
492
493HInstruction* SsaBuilder::GetFloatOrDoubleEquivalent(HInstruction* user,
494 HInstruction* value,
495 Primitive::Type type) {
496 if (value->IsArrayGet()) {
497 // The verifier has checked that values in arrays cannot be used for both
498 // floating point and non-floating point operations. It is therefore safe to just
499 // change the type of the operation.
500 value->AsArrayGet()->SetType(type);
501 return value;
502 } else if (value->IsLongConstant()) {
503 return GetDoubleEquivalent(value->AsLongConstant());
504 } else if (value->IsIntConstant()) {
505 return GetFloatEquivalent(value->AsIntConstant());
506 } else if (value->IsPhi()) {
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +0000507 return GetFloatDoubleOrReferenceEquivalentOfPhi(value->AsPhi(), type);
Nicolas Geoffray102cbed2014-10-15 18:31:05 +0100508 } else {
509 // For other instructions, we assume the verifier has checked that the dex format is correctly
510 // typed and the value in a dex register will not be used for both floating point and
511 // non-floating point operations. So the only reason an instruction would want a floating
512 // point equivalent is for an unused phi that will be removed by the dead phi elimination phase.
Guillaume "Vermeille" Sanchez8909baf2015-04-23 21:35:11 +0100513 DCHECK(user->IsPhi()) << "is actually " << user->DebugName() << " (" << user->GetId() << ")";
Nicolas Geoffray102cbed2014-10-15 18:31:05 +0100514 return value;
515 }
516}
517
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +0000518HInstruction* SsaBuilder::GetReferenceTypeEquivalent(HInstruction* value) {
Nicolas Geoffraye0fe7ae2015-03-09 10:02:49 +0000519 if (value->IsIntConstant() && value->AsIntConstant()->GetValue() == 0) {
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +0000520 return value->GetBlock()->GetGraph()->GetNullConstant();
Nicolas Geoffraye0fe7ae2015-03-09 10:02:49 +0000521 } else if (value->IsPhi()) {
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +0000522 return GetFloatDoubleOrReferenceEquivalentOfPhi(value->AsPhi(), Primitive::kPrimNot);
Nicolas Geoffraye0fe7ae2015-03-09 10:02:49 +0000523 } else {
524 return nullptr;
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +0000525 }
526}
527
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100528void SsaBuilder::VisitLoadLocal(HLoadLocal* load) {
Nicolas Geoffray8c0c91a2015-05-07 11:46:05 +0100529 HInstruction* value = current_locals_->Get(load->GetLocal()->GetRegNumber());
Nicolas Geoffrayd6138ef2015-02-18 14:48:53 +0000530 // If the operation requests a specific type, we make sure its input is of that type.
531 if (load->GetType() != value->GetType()) {
532 if (load->GetType() == Primitive::kPrimFloat || load->GetType() == Primitive::kPrimDouble) {
533 value = GetFloatOrDoubleEquivalent(load, value, load->GetType());
534 } else if (load->GetType() == Primitive::kPrimNot) {
535 value = GetReferenceTypeEquivalent(value);
536 }
Nicolas Geoffray102cbed2014-10-15 18:31:05 +0100537 }
538 load->ReplaceWith(value);
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100539 load->GetBlock()->RemoveInstruction(load);
540}
541
542void SsaBuilder::VisitStoreLocal(HStoreLocal* store) {
Nicolas Geoffray8c0c91a2015-05-07 11:46:05 +0100543 current_locals_->Put(store->GetLocal()->GetRegNumber(), store->InputAt(1));
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100544 store->GetBlock()->RemoveInstruction(store);
545}
546
547void SsaBuilder::VisitInstruction(HInstruction* instruction) {
548 if (!instruction->NeedsEnvironment()) {
549 return;
550 }
551 HEnvironment* environment = new (GetGraph()->GetArena()) HEnvironment(
Nicolas Geoffray0a23d742015-05-07 11:57:35 +0100552 GetGraph()->GetArena(),
553 current_locals_->Size(),
554 GetGraph()->GetDexFile(),
555 GetGraph()->GetMethodIdx(),
Nicolas Geoffrayb176d7c2015-05-20 18:48:31 +0100556 instruction->GetDexPc(),
Nicolas Geoffrayd23eeef2015-05-18 22:31:29 +0100557 GetGraph()->GetInvokeType(),
558 instruction);
Nicolas Geoffray8c0c91a2015-05-07 11:46:05 +0100559 environment->CopyFrom(*current_locals_);
Nicolas Geoffray3dcd58c2015-04-03 11:02:38 +0100560 instruction->SetRawEnvironment(environment);
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100561}
562
Nicolas Geoffray421e9f92014-11-11 18:21:53 +0000563void SsaBuilder::VisitTemporary(HTemporary* temp) {
564 // Temporaries are only used by the baseline register allocator.
565 temp->GetBlock()->RemoveInstruction(temp);
566}
567
Nicolas Geoffrayc32e7702014-04-24 12:43:16 +0100568} // namespace art