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Mingyao Yangf384f882014-10-22 16:08:18 -07001/*
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 "bounds_check_elimination.h"
Aart Bikaab5b752015-09-23 11:18:57 -070018
19#include <limits>
20
Vladimir Marko009d1662017-10-10 13:21:15 +010021#include "base/scoped_arena_allocator.h"
22#include "base/scoped_arena_containers.h"
Aart Bik22af3be2015-09-10 12:50:58 -070023#include "induction_var_range.h"
Mingyao Yangf384f882014-10-22 16:08:18 -070024#include "nodes.h"
Andreas Gampe8cf9cb32017-07-19 09:28:38 -070025#include "side_effects_analysis.h"
Mingyao Yangf384f882014-10-22 16:08:18 -070026
27namespace art {
28
29class MonotonicValueRange;
30
31/**
32 * A value bound is represented as a pair of value and constant,
33 * e.g. array.length - 1.
34 */
35class ValueBound : public ValueObject {
36 public:
Mingyao Yang0304e182015-01-30 16:41:29 -080037 ValueBound(HInstruction* instruction, int32_t constant) {
Mingyao Yang64197522014-12-05 15:56:23 -080038 if (instruction != nullptr && instruction->IsIntConstant()) {
Mingyao Yang0304e182015-01-30 16:41:29 -080039 // Normalize ValueBound with constant instruction.
40 int32_t instr_const = instruction->AsIntConstant()->GetValue();
Mingyao Yang8c8bad82015-02-09 18:13:26 -080041 if (!WouldAddOverflowOrUnderflow(instr_const, constant)) {
Mingyao Yang64197522014-12-05 15:56:23 -080042 instruction_ = nullptr;
43 constant_ = instr_const + constant;
44 return;
45 }
Mingyao Yangf384f882014-10-22 16:08:18 -070046 }
Mingyao Yang64197522014-12-05 15:56:23 -080047 instruction_ = instruction;
48 constant_ = constant;
49 }
50
Mingyao Yang8c8bad82015-02-09 18:13:26 -080051 // Return whether (left + right) overflows or underflows.
52 static bool WouldAddOverflowOrUnderflow(int32_t left, int32_t right) {
53 if (right == 0) {
54 return false;
55 }
Aart Bikaab5b752015-09-23 11:18:57 -070056 if ((right > 0) && (left <= (std::numeric_limits<int32_t>::max() - right))) {
Mingyao Yang8c8bad82015-02-09 18:13:26 -080057 // No overflow.
58 return false;
59 }
Aart Bikaab5b752015-09-23 11:18:57 -070060 if ((right < 0) && (left >= (std::numeric_limits<int32_t>::min() - right))) {
Mingyao Yang8c8bad82015-02-09 18:13:26 -080061 // No underflow.
62 return false;
63 }
64 return true;
65 }
66
Aart Bik1d239822016-02-09 14:26:34 -080067 // Return true if instruction can be expressed as "left_instruction + right_constant".
Mingyao Yang0304e182015-01-30 16:41:29 -080068 static bool IsAddOrSubAConstant(HInstruction* instruction,
Aart Bik1d239822016-02-09 14:26:34 -080069 /* out */ HInstruction** left_instruction,
70 /* out */ int32_t* right_constant) {
Aart Bikbf3f1cf2016-02-22 16:22:33 -080071 HInstruction* left_so_far = nullptr;
72 int32_t right_so_far = 0;
73 while (instruction->IsAdd() || instruction->IsSub()) {
Mingyao Yang0304e182015-01-30 16:41:29 -080074 HBinaryOperation* bin_op = instruction->AsBinaryOperation();
75 HInstruction* left = bin_op->GetLeft();
76 HInstruction* right = bin_op->GetRight();
77 if (right->IsIntConstant()) {
Aart Bikbf3f1cf2016-02-22 16:22:33 -080078 int32_t v = right->AsIntConstant()->GetValue();
79 int32_t c = instruction->IsAdd() ? v : -v;
80 if (!WouldAddOverflowOrUnderflow(right_so_far, c)) {
81 instruction = left;
82 left_so_far = left;
83 right_so_far += c;
84 continue;
85 }
Mingyao Yang0304e182015-01-30 16:41:29 -080086 }
Aart Bikbf3f1cf2016-02-22 16:22:33 -080087 break;
Mingyao Yang0304e182015-01-30 16:41:29 -080088 }
Aart Bikbf3f1cf2016-02-22 16:22:33 -080089 // Return result: either false and "null+0" or true and "instr+constant".
90 *left_instruction = left_so_far;
91 *right_constant = right_so_far;
92 return left_so_far != nullptr;
Mingyao Yang0304e182015-01-30 16:41:29 -080093 }
94
Aart Bik1d239822016-02-09 14:26:34 -080095 // Expresses any instruction as a value bound.
96 static ValueBound AsValueBound(HInstruction* instruction) {
97 if (instruction->IsIntConstant()) {
98 return ValueBound(nullptr, instruction->AsIntConstant()->GetValue());
99 }
100 HInstruction *left;
101 int32_t right;
102 if (IsAddOrSubAConstant(instruction, &left, &right)) {
103 return ValueBound(left, right);
104 }
105 return ValueBound(instruction, 0);
106 }
107
Mingyao Yang64197522014-12-05 15:56:23 -0800108 // Try to detect useful value bound format from an instruction, e.g.
109 // a constant or array length related value.
Aart Bik1d239822016-02-09 14:26:34 -0800110 static ValueBound DetectValueBoundFromValue(HInstruction* instruction, /* out */ bool* found) {
Mingyao Yang64197522014-12-05 15:56:23 -0800111 DCHECK(instruction != nullptr);
Mingyao Yangf384f882014-10-22 16:08:18 -0700112 if (instruction->IsIntConstant()) {
Mingyao Yang64197522014-12-05 15:56:23 -0800113 *found = true;
114 return ValueBound(nullptr, instruction->AsIntConstant()->GetValue());
Mingyao Yangf384f882014-10-22 16:08:18 -0700115 }
Mingyao Yang64197522014-12-05 15:56:23 -0800116
117 if (instruction->IsArrayLength()) {
118 *found = true;
119 return ValueBound(instruction, 0);
120 }
121 // Try to detect (array.length + c) format.
Mingyao Yang0304e182015-01-30 16:41:29 -0800122 HInstruction *left;
123 int32_t right;
124 if (IsAddOrSubAConstant(instruction, &left, &right)) {
125 if (left->IsArrayLength()) {
Mingyao Yang64197522014-12-05 15:56:23 -0800126 *found = true;
Mingyao Yang0304e182015-01-30 16:41:29 -0800127 return ValueBound(left, right);
Mingyao Yang64197522014-12-05 15:56:23 -0800128 }
129 }
130
131 // No useful bound detected.
132 *found = false;
133 return ValueBound::Max();
Mingyao Yangf384f882014-10-22 16:08:18 -0700134 }
135
136 HInstruction* GetInstruction() const { return instruction_; }
Mingyao Yang0304e182015-01-30 16:41:29 -0800137 int32_t GetConstant() const { return constant_; }
Mingyao Yangf384f882014-10-22 16:08:18 -0700138
Mingyao Yang0304e182015-01-30 16:41:29 -0800139 bool IsRelatedToArrayLength() const {
140 // Some bounds are created with HNewArray* as the instruction instead
141 // of HArrayLength*. They are treated the same.
142 return (instruction_ != nullptr) &&
143 (instruction_->IsArrayLength() || instruction_->IsNewArray());
Mingyao Yangf384f882014-10-22 16:08:18 -0700144 }
145
146 bool IsConstant() const {
147 return instruction_ == nullptr;
148 }
149
Aart Bikaab5b752015-09-23 11:18:57 -0700150 static ValueBound Min() { return ValueBound(nullptr, std::numeric_limits<int32_t>::min()); }
151 static ValueBound Max() { return ValueBound(nullptr, std::numeric_limits<int32_t>::max()); }
Mingyao Yangf384f882014-10-22 16:08:18 -0700152
153 bool Equals(ValueBound bound) const {
154 return instruction_ == bound.instruction_ && constant_ == bound.constant_;
155 }
156
Mingyao Yang0304e182015-01-30 16:41:29 -0800157 static bool Equal(HInstruction* instruction1, HInstruction* instruction2) {
158 if (instruction1 == instruction2) {
159 return true;
160 }
Mingyao Yang0304e182015-01-30 16:41:29 -0800161 if (instruction1 == nullptr || instruction2 == nullptr) {
Mingyao Yangf384f882014-10-22 16:08:18 -0700162 return false;
163 }
Aart Bik22af3be2015-09-10 12:50:58 -0700164 instruction1 = HuntForDeclaration(instruction1);
165 instruction2 = HuntForDeclaration(instruction2);
Mingyao Yang0304e182015-01-30 16:41:29 -0800166 return instruction1 == instruction2;
167 }
168
169 // Returns if it's certain this->bound >= `bound`.
170 bool GreaterThanOrEqualTo(ValueBound bound) const {
171 if (Equal(instruction_, bound.instruction_)) {
172 return constant_ >= bound.constant_;
173 }
Mingyao Yangf384f882014-10-22 16:08:18 -0700174 // Not comparable. Just return false.
175 return false;
176 }
177
Mingyao Yang0304e182015-01-30 16:41:29 -0800178 // Returns if it's certain this->bound <= `bound`.
179 bool LessThanOrEqualTo(ValueBound bound) const {
180 if (Equal(instruction_, bound.instruction_)) {
181 return constant_ <= bound.constant_;
Mingyao Yangf384f882014-10-22 16:08:18 -0700182 }
Mingyao Yangf384f882014-10-22 16:08:18 -0700183 // Not comparable. Just return false.
184 return false;
185 }
186
Aart Bik4a342772015-11-30 10:17:46 -0800187 // Returns if it's certain this->bound > `bound`.
188 bool GreaterThan(ValueBound bound) const {
189 if (Equal(instruction_, bound.instruction_)) {
190 return constant_ > bound.constant_;
191 }
192 // Not comparable. Just return false.
193 return false;
194 }
195
196 // Returns if it's certain this->bound < `bound`.
197 bool LessThan(ValueBound bound) const {
198 if (Equal(instruction_, bound.instruction_)) {
199 return constant_ < bound.constant_;
200 }
201 // Not comparable. Just return false.
202 return false;
203 }
204
Mingyao Yangf384f882014-10-22 16:08:18 -0700205 // Try to narrow lower bound. Returns the greatest of the two if possible.
206 // Pick one if they are not comparable.
207 static ValueBound NarrowLowerBound(ValueBound bound1, ValueBound bound2) {
Mingyao Yang0304e182015-01-30 16:41:29 -0800208 if (bound1.GreaterThanOrEqualTo(bound2)) {
209 return bound1;
210 }
211 if (bound2.GreaterThanOrEqualTo(bound1)) {
212 return bound2;
Mingyao Yangf384f882014-10-22 16:08:18 -0700213 }
214
215 // Not comparable. Just pick one. We may lose some info, but that's ok.
216 // Favor constant as lower bound.
217 return bound1.IsConstant() ? bound1 : bound2;
218 }
219
220 // Try to narrow upper bound. Returns the lowest of the two if possible.
221 // Pick one if they are not comparable.
222 static ValueBound NarrowUpperBound(ValueBound bound1, ValueBound bound2) {
Mingyao Yang0304e182015-01-30 16:41:29 -0800223 if (bound1.LessThanOrEqualTo(bound2)) {
224 return bound1;
225 }
226 if (bound2.LessThanOrEqualTo(bound1)) {
227 return bound2;
Mingyao Yangf384f882014-10-22 16:08:18 -0700228 }
229
230 // Not comparable. Just pick one. We may lose some info, but that's ok.
231 // Favor array length as upper bound.
Mingyao Yang0304e182015-01-30 16:41:29 -0800232 return bound1.IsRelatedToArrayLength() ? bound1 : bound2;
Mingyao Yangf384f882014-10-22 16:08:18 -0700233 }
234
Mingyao Yang0304e182015-01-30 16:41:29 -0800235 // Add a constant to a ValueBound.
236 // `overflow` or `underflow` will return whether the resulting bound may
237 // overflow or underflow an int.
Aart Bik1d239822016-02-09 14:26:34 -0800238 ValueBound Add(int32_t c, /* out */ bool* overflow, /* out */ bool* underflow) const {
Mingyao Yang0304e182015-01-30 16:41:29 -0800239 *overflow = *underflow = false;
Mingyao Yangf384f882014-10-22 16:08:18 -0700240 if (c == 0) {
241 return *this;
242 }
243
Mingyao Yang0304e182015-01-30 16:41:29 -0800244 int32_t new_constant;
Mingyao Yangf384f882014-10-22 16:08:18 -0700245 if (c > 0) {
Aart Bikaab5b752015-09-23 11:18:57 -0700246 if (constant_ > (std::numeric_limits<int32_t>::max() - c)) {
Mingyao Yang0304e182015-01-30 16:41:29 -0800247 *overflow = true;
Mingyao Yang64197522014-12-05 15:56:23 -0800248 return Max();
Mingyao Yangf384f882014-10-22 16:08:18 -0700249 }
Mingyao Yang0304e182015-01-30 16:41:29 -0800250
251 new_constant = constant_ + c;
252 // (array.length + non-positive-constant) won't overflow an int.
253 if (IsConstant() || (IsRelatedToArrayLength() && new_constant <= 0)) {
254 return ValueBound(instruction_, new_constant);
255 }
256 // Be conservative.
257 *overflow = true;
258 return Max();
Mingyao Yangf384f882014-10-22 16:08:18 -0700259 } else {
Aart Bikaab5b752015-09-23 11:18:57 -0700260 if (constant_ < (std::numeric_limits<int32_t>::min() - c)) {
Mingyao Yang0304e182015-01-30 16:41:29 -0800261 *underflow = true;
262 return Min();
Mingyao Yangf384f882014-10-22 16:08:18 -0700263 }
Mingyao Yang0304e182015-01-30 16:41:29 -0800264
265 new_constant = constant_ + c;
266 // Regardless of the value new_constant, (array.length+new_constant) will
267 // never underflow since array.length is no less than 0.
268 if (IsConstant() || IsRelatedToArrayLength()) {
269 return ValueBound(instruction_, new_constant);
270 }
271 // Be conservative.
272 *underflow = true;
273 return Min();
Mingyao Yangf384f882014-10-22 16:08:18 -0700274 }
Mingyao Yangf384f882014-10-22 16:08:18 -0700275 }
276
277 private:
Mingyao Yangf384f882014-10-22 16:08:18 -0700278 HInstruction* instruction_;
Mingyao Yang0304e182015-01-30 16:41:29 -0800279 int32_t constant_;
Mingyao Yangf384f882014-10-22 16:08:18 -0700280};
281
282/**
283 * Represent a range of lower bound and upper bound, both being inclusive.
284 * Currently a ValueRange may be generated as a result of the following:
285 * comparisons related to array bounds, array bounds check, add/sub on top
Mingyao Yang0304e182015-01-30 16:41:29 -0800286 * of an existing value range, NewArray or a loop phi corresponding to an
Mingyao Yangf384f882014-10-22 16:08:18 -0700287 * incrementing/decrementing array index (MonotonicValueRange).
288 */
Vladimir Marko5233f932015-09-29 19:01:15 +0100289class ValueRange : public ArenaObject<kArenaAllocBoundsCheckElimination> {
Mingyao Yangf384f882014-10-22 16:08:18 -0700290 public:
Vladimir Marko009d1662017-10-10 13:21:15 +0100291 ValueRange(ScopedArenaAllocator* allocator, ValueBound lower, ValueBound upper)
Mingyao Yangf384f882014-10-22 16:08:18 -0700292 : allocator_(allocator), lower_(lower), upper_(upper) {}
293
294 virtual ~ValueRange() {}
295
Mingyao Yang57e04752015-02-09 18:13:26 -0800296 virtual MonotonicValueRange* AsMonotonicValueRange() { return nullptr; }
297 bool IsMonotonicValueRange() {
Mingyao Yangf384f882014-10-22 16:08:18 -0700298 return AsMonotonicValueRange() != nullptr;
299 }
300
Vladimir Marko009d1662017-10-10 13:21:15 +0100301 ScopedArenaAllocator* GetAllocator() const { return allocator_; }
Mingyao Yangf384f882014-10-22 16:08:18 -0700302 ValueBound GetLower() const { return lower_; }
303 ValueBound GetUpper() const { return upper_; }
304
Mingyao Yang3584bce2015-05-19 16:01:59 -0700305 bool IsConstantValueRange() { return lower_.IsConstant() && upper_.IsConstant(); }
306
Mingyao Yangf384f882014-10-22 16:08:18 -0700307 // If it's certain that this value range fits in other_range.
308 virtual bool FitsIn(ValueRange* other_range) const {
309 if (other_range == nullptr) {
310 return true;
311 }
312 DCHECK(!other_range->IsMonotonicValueRange());
Mingyao Yang0304e182015-01-30 16:41:29 -0800313 return lower_.GreaterThanOrEqualTo(other_range->lower_) &&
314 upper_.LessThanOrEqualTo(other_range->upper_);
Mingyao Yangf384f882014-10-22 16:08:18 -0700315 }
316
317 // Returns the intersection of this and range.
318 // If it's not possible to do intersection because some
319 // bounds are not comparable, it's ok to pick either bound.
320 virtual ValueRange* Narrow(ValueRange* range) {
321 if (range == nullptr) {
322 return this;
323 }
324
325 if (range->IsMonotonicValueRange()) {
326 return this;
327 }
328
329 return new (allocator_) ValueRange(
330 allocator_,
331 ValueBound::NarrowLowerBound(lower_, range->lower_),
332 ValueBound::NarrowUpperBound(upper_, range->upper_));
333 }
334
Mingyao Yang0304e182015-01-30 16:41:29 -0800335 // Shift a range by a constant.
336 ValueRange* Add(int32_t constant) const {
337 bool overflow, underflow;
338 ValueBound lower = lower_.Add(constant, &overflow, &underflow);
339 if (underflow) {
340 // Lower bound underflow will wrap around to positive values
341 // and invalidate the upper bound.
342 return nullptr;
Mingyao Yangf384f882014-10-22 16:08:18 -0700343 }
Mingyao Yang0304e182015-01-30 16:41:29 -0800344 ValueBound upper = upper_.Add(constant, &overflow, &underflow);
345 if (overflow) {
346 // Upper bound overflow will wrap around to negative values
347 // and invalidate the lower bound.
348 return nullptr;
Mingyao Yangf384f882014-10-22 16:08:18 -0700349 }
350 return new (allocator_) ValueRange(allocator_, lower, upper);
351 }
352
Mingyao Yangf384f882014-10-22 16:08:18 -0700353 private:
Vladimir Marko009d1662017-10-10 13:21:15 +0100354 ScopedArenaAllocator* const allocator_;
Mingyao Yangf384f882014-10-22 16:08:18 -0700355 const ValueBound lower_; // inclusive
356 const ValueBound upper_; // inclusive
357
358 DISALLOW_COPY_AND_ASSIGN(ValueRange);
359};
360
361/**
362 * A monotonically incrementing/decrementing value range, e.g.
363 * the variable i in "for (int i=0; i<array.length; i++)".
364 * Special care needs to be taken to account for overflow/underflow
365 * of such value ranges.
366 */
367class MonotonicValueRange : public ValueRange {
368 public:
Vladimir Marko009d1662017-10-10 13:21:15 +0100369 MonotonicValueRange(ScopedArenaAllocator* allocator,
Mingyao Yang206d6fd2015-04-13 16:46:28 -0700370 HPhi* induction_variable,
Mingyao Yang64197522014-12-05 15:56:23 -0800371 HInstruction* initial,
Mingyao Yang0304e182015-01-30 16:41:29 -0800372 int32_t increment,
Mingyao Yang64197522014-12-05 15:56:23 -0800373 ValueBound bound)
Aart Bikaab5b752015-09-23 11:18:57 -0700374 // To be conservative, give it full range [Min(), Max()] in case it's
Mingyao Yang64197522014-12-05 15:56:23 -0800375 // used as a regular value range, due to possible overflow/underflow.
376 : ValueRange(allocator, ValueBound::Min(), ValueBound::Max()),
Mingyao Yang206d6fd2015-04-13 16:46:28 -0700377 induction_variable_(induction_variable),
Mingyao Yang64197522014-12-05 15:56:23 -0800378 initial_(initial),
379 increment_(increment),
380 bound_(bound) {}
Mingyao Yangf384f882014-10-22 16:08:18 -0700381
382 virtual ~MonotonicValueRange() {}
383
Mingyao Yang57e04752015-02-09 18:13:26 -0800384 int32_t GetIncrement() const { return increment_; }
Mingyao Yang57e04752015-02-09 18:13:26 -0800385 ValueBound GetBound() const { return bound_; }
Mingyao Yang3584bce2015-05-19 16:01:59 -0700386 HBasicBlock* GetLoopHeader() const {
Mingyao Yang206d6fd2015-04-13 16:46:28 -0700387 DCHECK(induction_variable_->GetBlock()->IsLoopHeader());
388 return induction_variable_->GetBlock();
389 }
Mingyao Yang57e04752015-02-09 18:13:26 -0800390
391 MonotonicValueRange* AsMonotonicValueRange() OVERRIDE { return this; }
Mingyao Yangf384f882014-10-22 16:08:18 -0700392
393 // If it's certain that this value range fits in other_range.
394 bool FitsIn(ValueRange* other_range) const OVERRIDE {
395 if (other_range == nullptr) {
396 return true;
397 }
398 DCHECK(!other_range->IsMonotonicValueRange());
399 return false;
400 }
401
402 // Try to narrow this MonotonicValueRange given another range.
403 // Ideally it will return a normal ValueRange. But due to
404 // possible overflow/underflow, that may not be possible.
405 ValueRange* Narrow(ValueRange* range) OVERRIDE {
406 if (range == nullptr) {
407 return this;
408 }
409 DCHECK(!range->IsMonotonicValueRange());
410
411 if (increment_ > 0) {
412 // Monotonically increasing.
Mingyao Yang64197522014-12-05 15:56:23 -0800413 ValueBound lower = ValueBound::NarrowLowerBound(bound_, range->GetLower());
Aart Bikaab5b752015-09-23 11:18:57 -0700414 if (!lower.IsConstant() || lower.GetConstant() == std::numeric_limits<int32_t>::min()) {
Mingyao Yang206d6fd2015-04-13 16:46:28 -0700415 // Lower bound isn't useful. Leave it to deoptimization.
416 return this;
417 }
Mingyao Yangf384f882014-10-22 16:08:18 -0700418
Aart Bikaab5b752015-09-23 11:18:57 -0700419 // We currently conservatively assume max array length is Max().
420 // If we can make assumptions about the max array length, e.g. due to the max heap size,
Mingyao Yangf384f882014-10-22 16:08:18 -0700421 // divided by the element size (such as 4 bytes for each integer array), we can
422 // lower this number and rule out some possible overflows.
Aart Bikaab5b752015-09-23 11:18:57 -0700423 int32_t max_array_len = std::numeric_limits<int32_t>::max();
Mingyao Yangf384f882014-10-22 16:08:18 -0700424
Mingyao Yang0304e182015-01-30 16:41:29 -0800425 // max possible integer value of range's upper value.
Aart Bikaab5b752015-09-23 11:18:57 -0700426 int32_t upper = std::numeric_limits<int32_t>::max();
Mingyao Yang0304e182015-01-30 16:41:29 -0800427 // Try to lower upper.
428 ValueBound upper_bound = range->GetUpper();
429 if (upper_bound.IsConstant()) {
430 upper = upper_bound.GetConstant();
431 } else if (upper_bound.IsRelatedToArrayLength() && upper_bound.GetConstant() <= 0) {
432 // Normal case. e.g. <= array.length - 1.
433 upper = max_array_len + upper_bound.GetConstant();
Mingyao Yangf384f882014-10-22 16:08:18 -0700434 }
435
436 // If we can prove for the last number in sequence of initial_,
437 // initial_ + increment_, initial_ + 2 x increment_, ...
438 // that's <= upper, (last_num_in_sequence + increment_) doesn't trigger overflow,
439 // then this MonoticValueRange is narrowed to a normal value range.
440
441 // Be conservative first, assume last number in the sequence hits upper.
Mingyao Yang0304e182015-01-30 16:41:29 -0800442 int32_t last_num_in_sequence = upper;
Mingyao Yangf384f882014-10-22 16:08:18 -0700443 if (initial_->IsIntConstant()) {
Mingyao Yang0304e182015-01-30 16:41:29 -0800444 int32_t initial_constant = initial_->AsIntConstant()->GetValue();
Mingyao Yangf384f882014-10-22 16:08:18 -0700445 if (upper <= initial_constant) {
446 last_num_in_sequence = upper;
447 } else {
Mingyao Yang0304e182015-01-30 16:41:29 -0800448 // Cast to int64_t for the substraction part to avoid int32_t overflow.
Mingyao Yangf384f882014-10-22 16:08:18 -0700449 last_num_in_sequence = initial_constant +
450 ((int64_t)upper - (int64_t)initial_constant) / increment_ * increment_;
451 }
452 }
Aart Bikaab5b752015-09-23 11:18:57 -0700453 if (last_num_in_sequence <= (std::numeric_limits<int32_t>::max() - increment_)) {
Mingyao Yangf384f882014-10-22 16:08:18 -0700454 // No overflow. The sequence will be stopped by the upper bound test as expected.
455 return new (GetAllocator()) ValueRange(GetAllocator(), lower, range->GetUpper());
456 }
457
458 // There might be overflow. Give up narrowing.
459 return this;
460 } else {
461 DCHECK_NE(increment_, 0);
462 // Monotonically decreasing.
Mingyao Yang64197522014-12-05 15:56:23 -0800463 ValueBound upper = ValueBound::NarrowUpperBound(bound_, range->GetUpper());
Aart Bikaab5b752015-09-23 11:18:57 -0700464 if ((!upper.IsConstant() || upper.GetConstant() == std::numeric_limits<int32_t>::max()) &&
Mingyao Yang206d6fd2015-04-13 16:46:28 -0700465 !upper.IsRelatedToArrayLength()) {
466 // Upper bound isn't useful. Leave it to deoptimization.
467 return this;
468 }
Mingyao Yangf384f882014-10-22 16:08:18 -0700469
470 // Need to take care of underflow. Try to prove underflow won't happen
Mingyao Yang0304e182015-01-30 16:41:29 -0800471 // for common cases.
Mingyao Yangf384f882014-10-22 16:08:18 -0700472 if (range->GetLower().IsConstant()) {
Mingyao Yang0304e182015-01-30 16:41:29 -0800473 int32_t constant = range->GetLower().GetConstant();
Aart Bikaab5b752015-09-23 11:18:57 -0700474 if (constant >= (std::numeric_limits<int32_t>::min() - increment_)) {
Mingyao Yangf384f882014-10-22 16:08:18 -0700475 return new (GetAllocator()) ValueRange(GetAllocator(), range->GetLower(), upper);
476 }
477 }
478
Mingyao Yang0304e182015-01-30 16:41:29 -0800479 // For non-constant lower bound, just assume might be underflow. Give up narrowing.
Mingyao Yangf384f882014-10-22 16:08:18 -0700480 return this;
481 }
482 }
483
484 private:
Mingyao Yang206d6fd2015-04-13 16:46:28 -0700485 HPhi* const induction_variable_; // Induction variable for this monotonic value range.
486 HInstruction* const initial_; // Initial value.
Mingyao Yang206d6fd2015-04-13 16:46:28 -0700487 const int32_t increment_; // Increment for each loop iteration.
488 const ValueBound bound_; // Additional value bound info for initial_.
Mingyao Yangf384f882014-10-22 16:08:18 -0700489
490 DISALLOW_COPY_AND_ASSIGN(MonotonicValueRange);
491};
492
493class BCEVisitor : public HGraphVisitor {
494 public:
Mingyao Yangd43b3ac2015-04-01 14:03:04 -0700495 // The least number of bounds checks that should be eliminated by triggering
496 // the deoptimization technique.
497 static constexpr size_t kThresholdForAddingDeoptimize = 2;
498
Aart Bik1d239822016-02-09 14:26:34 -0800499 // Very large lengths are considered an anomaly. This is a threshold beyond which we don't
500 // bother to apply the deoptimization technique since it's likely, or sometimes certain,
501 // an AIOOBE will be thrown.
502 static constexpr uint32_t kMaxLengthForAddingDeoptimize =
Aart Bikaab5b752015-09-23 11:18:57 -0700503 std::numeric_limits<int32_t>::max() - 1024 * 1024;
Mingyao Yangd43b3ac2015-04-01 14:03:04 -0700504
Mingyao Yang3584bce2015-05-19 16:01:59 -0700505 // Added blocks for loop body entry test.
506 bool IsAddedBlock(HBasicBlock* block) const {
507 return block->GetBlockId() >= initial_block_size_;
508 }
509
Aart Bik4a342772015-11-30 10:17:46 -0800510 BCEVisitor(HGraph* graph,
511 const SideEffectsAnalysis& side_effects,
512 HInductionVarAnalysis* induction_analysis)
Aart Bik22af3be2015-09-10 12:50:58 -0700513 : HGraphVisitor(graph),
Vladimir Marko009d1662017-10-10 13:21:15 +0100514 allocator_(graph->GetArenaStack()),
Vladimir Marko5233f932015-09-29 19:01:15 +0100515 maps_(graph->GetBlocks().size(),
Vladimir Marko009d1662017-10-10 13:21:15 +0100516 ScopedArenaSafeMap<int, ValueRange*>(
Vladimir Marko5233f932015-09-29 19:01:15 +0100517 std::less<int>(),
Vladimir Marko009d1662017-10-10 13:21:15 +0100518 allocator_.Adapter(kArenaAllocBoundsCheckElimination)),
519 allocator_.Adapter(kArenaAllocBoundsCheckElimination)),
520 first_index_bounds_check_map_(std::less<int>(),
521 allocator_.Adapter(kArenaAllocBoundsCheckElimination)),
522 early_exit_loop_(std::less<uint32_t>(),
523 allocator_.Adapter(kArenaAllocBoundsCheckElimination)),
524 taken_test_loop_(std::less<uint32_t>(),
525 allocator_.Adapter(kArenaAllocBoundsCheckElimination)),
526 finite_loop_(allocator_.Adapter(kArenaAllocBoundsCheckElimination)),
Aart Bik1d239822016-02-09 14:26:34 -0800527 has_dom_based_dynamic_bce_(false),
Vladimir Markofa6b93c2015-09-15 10:15:55 +0100528 initial_block_size_(graph->GetBlocks().size()),
Aart Bik4a342772015-11-30 10:17:46 -0800529 side_effects_(side_effects),
Andreas Gamped9911ee2017-03-27 13:27:24 -0700530 induction_range_(induction_analysis),
531 next_(nullptr) {}
Mingyao Yangd43b3ac2015-04-01 14:03:04 -0700532
533 void VisitBasicBlock(HBasicBlock* block) OVERRIDE {
Mingyao Yang3584bce2015-05-19 16:01:59 -0700534 DCHECK(!IsAddedBlock(block));
Aart Bik1d239822016-02-09 14:26:34 -0800535 first_index_bounds_check_map_.clear();
Aart Bik1e677482016-11-01 14:23:58 -0700536 // Visit phis and instructions using a safe iterator. The iteration protects
537 // against deleting the current instruction during iteration. However, it
538 // must advance next_ if that instruction is deleted during iteration.
539 for (HInstruction* instruction = block->GetFirstPhi(); instruction != nullptr;) {
540 DCHECK(instruction->IsInBlock());
541 next_ = instruction->GetNext();
542 instruction->Accept(this);
543 instruction = next_;
544 }
545 for (HInstruction* instruction = block->GetFirstInstruction(); instruction != nullptr;) {
546 DCHECK(instruction->IsInBlock());
547 next_ = instruction->GetNext();
548 instruction->Accept(this);
549 instruction = next_;
550 }
Nicolas Geoffray93a18c52016-04-22 13:16:14 +0100551 // We should never deoptimize from an osr method, otherwise we might wrongly optimize
552 // code dominated by the deoptimization.
553 if (!GetGraph()->IsCompilingOsr()) {
554 AddComparesWithDeoptimization(block);
555 }
Mingyao Yangd43b3ac2015-04-01 14:03:04 -0700556 }
Mingyao Yangf384f882014-10-22 16:08:18 -0700557
Aart Bik4a342772015-11-30 10:17:46 -0800558 void Finish() {
559 // Preserve SSA structure which may have been broken by adding one or more
560 // new taken-test structures (see TransformLoopForDeoptimizationIfNeeded()).
561 InsertPhiNodes();
562
563 // Clear the loop data structures.
564 early_exit_loop_.clear();
565 taken_test_loop_.clear();
566 finite_loop_.clear();
567 }
568
Mingyao Yangf384f882014-10-22 16:08:18 -0700569 private:
570 // Return the map of proven value ranges at the beginning of a basic block.
Vladimir Marko009d1662017-10-10 13:21:15 +0100571 ScopedArenaSafeMap<int, ValueRange*>* GetValueRangeMap(HBasicBlock* basic_block) {
Mingyao Yang3584bce2015-05-19 16:01:59 -0700572 if (IsAddedBlock(basic_block)) {
573 // Added blocks don't keep value ranges.
574 return nullptr;
575 }
Aart Bik1d239822016-02-09 14:26:34 -0800576 return &maps_[basic_block->GetBlockId()];
Mingyao Yangf384f882014-10-22 16:08:18 -0700577 }
578
579 // Traverse up the dominator tree to look for value range info.
580 ValueRange* LookupValueRange(HInstruction* instruction, HBasicBlock* basic_block) {
581 while (basic_block != nullptr) {
Vladimir Marko009d1662017-10-10 13:21:15 +0100582 ScopedArenaSafeMap<int, ValueRange*>* map = GetValueRangeMap(basic_block);
Mingyao Yang3584bce2015-05-19 16:01:59 -0700583 if (map != nullptr) {
584 if (map->find(instruction->GetId()) != map->end()) {
585 return map->Get(instruction->GetId());
586 }
587 } else {
588 DCHECK(IsAddedBlock(basic_block));
Mingyao Yangf384f882014-10-22 16:08:18 -0700589 }
590 basic_block = basic_block->GetDominator();
591 }
592 // Didn't find any.
593 return nullptr;
594 }
595
Aart Bik1d239822016-02-09 14:26:34 -0800596 // Helper method to assign a new range to an instruction in given basic block.
597 void AssignRange(HBasicBlock* basic_block, HInstruction* instruction, ValueRange* range) {
Mingyao Yang73b326e2017-09-12 14:42:29 -0700598 DCHECK(!range->IsMonotonicValueRange() || instruction->IsLoopHeaderPhi());
Aart Bik1d239822016-02-09 14:26:34 -0800599 GetValueRangeMap(basic_block)->Overwrite(instruction->GetId(), range);
600 }
601
Mingyao Yang0304e182015-01-30 16:41:29 -0800602 // Narrow the value range of `instruction` at the end of `basic_block` with `range`,
603 // and push the narrowed value range to `successor`.
Mingyao Yangf384f882014-10-22 16:08:18 -0700604 void ApplyRangeFromComparison(HInstruction* instruction, HBasicBlock* basic_block,
Mingyao Yang8c8bad82015-02-09 18:13:26 -0800605 HBasicBlock* successor, ValueRange* range) {
Mingyao Yangf384f882014-10-22 16:08:18 -0700606 ValueRange* existing_range = LookupValueRange(instruction, basic_block);
Mingyao Yang8c8bad82015-02-09 18:13:26 -0800607 if (existing_range == nullptr) {
608 if (range != nullptr) {
Aart Bik1d239822016-02-09 14:26:34 -0800609 AssignRange(successor, instruction, range);
Mingyao Yang8c8bad82015-02-09 18:13:26 -0800610 }
611 return;
612 }
613 if (existing_range->IsMonotonicValueRange()) {
614 DCHECK(instruction->IsLoopHeaderPhi());
615 // Make sure the comparison is in the loop header so each increment is
616 // checked with a comparison.
617 if (instruction->GetBlock() != basic_block) {
618 return;
619 }
620 }
Aart Bik1d239822016-02-09 14:26:34 -0800621 AssignRange(successor, instruction, existing_range->Narrow(range));
Mingyao Yangf384f882014-10-22 16:08:18 -0700622 }
623
Mingyao Yang57e04752015-02-09 18:13:26 -0800624 // Special case that we may simultaneously narrow two MonotonicValueRange's to
625 // regular value ranges.
626 void HandleIfBetweenTwoMonotonicValueRanges(HIf* instruction,
627 HInstruction* left,
628 HInstruction* right,
629 IfCondition cond,
630 MonotonicValueRange* left_range,
631 MonotonicValueRange* right_range) {
632 DCHECK(left->IsLoopHeaderPhi());
633 DCHECK(right->IsLoopHeaderPhi());
634 if (instruction->GetBlock() != left->GetBlock()) {
635 // Comparison needs to be in loop header to make sure it's done after each
636 // increment/decrement.
637 return;
638 }
639
640 // Handle common cases which also don't have overflow/underflow concerns.
641 if (left_range->GetIncrement() == 1 &&
642 left_range->GetBound().IsConstant() &&
643 right_range->GetIncrement() == -1 &&
644 right_range->GetBound().IsRelatedToArrayLength() &&
645 right_range->GetBound().GetConstant() < 0) {
Mingyao Yang57e04752015-02-09 18:13:26 -0800646 HBasicBlock* successor = nullptr;
647 int32_t left_compensation = 0;
648 int32_t right_compensation = 0;
649 if (cond == kCondLT) {
650 left_compensation = -1;
651 right_compensation = 1;
652 successor = instruction->IfTrueSuccessor();
653 } else if (cond == kCondLE) {
654 successor = instruction->IfTrueSuccessor();
655 } else if (cond == kCondGT) {
656 successor = instruction->IfFalseSuccessor();
657 } else if (cond == kCondGE) {
658 left_compensation = -1;
659 right_compensation = 1;
660 successor = instruction->IfFalseSuccessor();
661 } else {
662 // We don't handle '=='/'!=' test in case left and right can cross and
663 // miss each other.
664 return;
665 }
666
667 if (successor != nullptr) {
668 bool overflow;
669 bool underflow;
Vladimir Marko009d1662017-10-10 13:21:15 +0100670 ValueRange* new_left_range = new (&allocator_) ValueRange(
671 &allocator_,
Mingyao Yang57e04752015-02-09 18:13:26 -0800672 left_range->GetBound(),
673 right_range->GetBound().Add(left_compensation, &overflow, &underflow));
674 if (!overflow && !underflow) {
675 ApplyRangeFromComparison(left, instruction->GetBlock(), successor,
676 new_left_range);
677 }
678
Vladimir Marko009d1662017-10-10 13:21:15 +0100679 ValueRange* new_right_range = new (&allocator_) ValueRange(
680 &allocator_,
Mingyao Yang57e04752015-02-09 18:13:26 -0800681 left_range->GetBound().Add(right_compensation, &overflow, &underflow),
682 right_range->GetBound());
683 if (!overflow && !underflow) {
684 ApplyRangeFromComparison(right, instruction->GetBlock(), successor,
685 new_right_range);
686 }
687 }
688 }
689 }
690
Mingyao Yangf384f882014-10-22 16:08:18 -0700691 // Handle "if (left cmp_cond right)".
692 void HandleIf(HIf* instruction, HInstruction* left, HInstruction* right, IfCondition cond) {
693 HBasicBlock* block = instruction->GetBlock();
694
695 HBasicBlock* true_successor = instruction->IfTrueSuccessor();
696 // There should be no critical edge at this point.
Vladimir Marko60584552015-09-03 13:35:12 +0000697 DCHECK_EQ(true_successor->GetPredecessors().size(), 1u);
Mingyao Yangf384f882014-10-22 16:08:18 -0700698
699 HBasicBlock* false_successor = instruction->IfFalseSuccessor();
700 // There should be no critical edge at this point.
Vladimir Marko60584552015-09-03 13:35:12 +0000701 DCHECK_EQ(false_successor->GetPredecessors().size(), 1u);
Mingyao Yangf384f882014-10-22 16:08:18 -0700702
Mingyao Yang206d6fd2015-04-13 16:46:28 -0700703 ValueRange* left_range = LookupValueRange(left, block);
704 MonotonicValueRange* left_monotonic_range = nullptr;
705 if (left_range != nullptr) {
706 left_monotonic_range = left_range->AsMonotonicValueRange();
707 if (left_monotonic_range != nullptr) {
Mingyao Yang3584bce2015-05-19 16:01:59 -0700708 HBasicBlock* loop_head = left_monotonic_range->GetLoopHeader();
Mingyao Yang206d6fd2015-04-13 16:46:28 -0700709 if (instruction->GetBlock() != loop_head) {
710 // For monotonic value range, don't handle `instruction`
711 // if it's not defined in the loop header.
712 return;
713 }
714 }
715 }
716
Mingyao Yang64197522014-12-05 15:56:23 -0800717 bool found;
718 ValueBound bound = ValueBound::DetectValueBoundFromValue(right, &found);
Mingyao Yang0304e182015-01-30 16:41:29 -0800719 // Each comparison can establish a lower bound and an upper bound
720 // for the left hand side.
Mingyao Yangf384f882014-10-22 16:08:18 -0700721 ValueBound lower = bound;
722 ValueBound upper = bound;
723 if (!found) {
Mingyao Yang0304e182015-01-30 16:41:29 -0800724 // No constant or array.length+c format bound found.
Mingyao Yangf384f882014-10-22 16:08:18 -0700725 // For i<j, we can still use j's upper bound as i's upper bound. Same for lower.
Mingyao Yang57e04752015-02-09 18:13:26 -0800726 ValueRange* right_range = LookupValueRange(right, block);
727 if (right_range != nullptr) {
728 if (right_range->IsMonotonicValueRange()) {
Mingyao Yang57e04752015-02-09 18:13:26 -0800729 if (left_range != nullptr && left_range->IsMonotonicValueRange()) {
730 HandleIfBetweenTwoMonotonicValueRanges(instruction, left, right, cond,
731 left_range->AsMonotonicValueRange(),
732 right_range->AsMonotonicValueRange());
733 return;
734 }
735 }
736 lower = right_range->GetLower();
737 upper = right_range->GetUpper();
Mingyao Yangf384f882014-10-22 16:08:18 -0700738 } else {
739 lower = ValueBound::Min();
740 upper = ValueBound::Max();
741 }
742 }
743
Mingyao Yang0304e182015-01-30 16:41:29 -0800744 bool overflow, underflow;
Mingyao Yangf384f882014-10-22 16:08:18 -0700745 if (cond == kCondLT || cond == kCondLE) {
746 if (!upper.Equals(ValueBound::Max())) {
Mingyao Yang0304e182015-01-30 16:41:29 -0800747 int32_t compensation = (cond == kCondLT) ? -1 : 0; // upper bound is inclusive
748 ValueBound new_upper = upper.Add(compensation, &overflow, &underflow);
749 if (overflow || underflow) {
750 return;
Mingyao Yang64197522014-12-05 15:56:23 -0800751 }
Vladimir Marko009d1662017-10-10 13:21:15 +0100752 ValueRange* new_range = new (&allocator_) ValueRange(
753 &allocator_, ValueBound::Min(), new_upper);
Mingyao Yangf384f882014-10-22 16:08:18 -0700754 ApplyRangeFromComparison(left, block, true_successor, new_range);
755 }
756
757 // array.length as a lower bound isn't considered useful.
Mingyao Yang0304e182015-01-30 16:41:29 -0800758 if (!lower.Equals(ValueBound::Min()) && !lower.IsRelatedToArrayLength()) {
759 int32_t compensation = (cond == kCondLE) ? 1 : 0; // lower bound is inclusive
760 ValueBound new_lower = lower.Add(compensation, &overflow, &underflow);
761 if (overflow || underflow) {
762 return;
Mingyao Yang64197522014-12-05 15:56:23 -0800763 }
Vladimir Marko009d1662017-10-10 13:21:15 +0100764 ValueRange* new_range = new (&allocator_) ValueRange(
765 &allocator_, new_lower, ValueBound::Max());
Mingyao Yangf384f882014-10-22 16:08:18 -0700766 ApplyRangeFromComparison(left, block, false_successor, new_range);
767 }
768 } else if (cond == kCondGT || cond == kCondGE) {
769 // array.length as a lower bound isn't considered useful.
Mingyao Yang0304e182015-01-30 16:41:29 -0800770 if (!lower.Equals(ValueBound::Min()) && !lower.IsRelatedToArrayLength()) {
771 int32_t compensation = (cond == kCondGT) ? 1 : 0; // lower bound is inclusive
772 ValueBound new_lower = lower.Add(compensation, &overflow, &underflow);
773 if (overflow || underflow) {
774 return;
Mingyao Yang64197522014-12-05 15:56:23 -0800775 }
Vladimir Marko009d1662017-10-10 13:21:15 +0100776 ValueRange* new_range = new (&allocator_) ValueRange(
777 &allocator_, new_lower, ValueBound::Max());
Mingyao Yangf384f882014-10-22 16:08:18 -0700778 ApplyRangeFromComparison(left, block, true_successor, new_range);
779 }
780
781 if (!upper.Equals(ValueBound::Max())) {
Mingyao Yang0304e182015-01-30 16:41:29 -0800782 int32_t compensation = (cond == kCondGE) ? -1 : 0; // upper bound is inclusive
783 ValueBound new_upper = upper.Add(compensation, &overflow, &underflow);
784 if (overflow || underflow) {
785 return;
Mingyao Yang64197522014-12-05 15:56:23 -0800786 }
Vladimir Marko009d1662017-10-10 13:21:15 +0100787 ValueRange* new_range = new (&allocator_) ValueRange(
788 &allocator_, ValueBound::Min(), new_upper);
Mingyao Yangf384f882014-10-22 16:08:18 -0700789 ApplyRangeFromComparison(left, block, false_successor, new_range);
790 }
Aart Bika2106892016-05-04 14:00:55 -0700791 } else if (cond == kCondNE || cond == kCondEQ) {
792 if (left->IsArrayLength() && lower.IsConstant() && upper.IsConstant()) {
793 // Special case:
794 // length == [c,d] yields [c, d] along true
795 // length != [c,d] yields [c, d] along false
796 if (!lower.Equals(ValueBound::Min()) || !upper.Equals(ValueBound::Max())) {
Vladimir Marko009d1662017-10-10 13:21:15 +0100797 ValueRange* new_range = new (&allocator_) ValueRange(&allocator_, lower, upper);
Aart Bika2106892016-05-04 14:00:55 -0700798 ApplyRangeFromComparison(
799 left, block, cond == kCondEQ ? true_successor : false_successor, new_range);
800 }
801 // In addition:
802 // length == 0 yields [1, max] along false
803 // length != 0 yields [1, max] along true
804 if (lower.GetConstant() == 0 && upper.GetConstant() == 0) {
Vladimir Marko009d1662017-10-10 13:21:15 +0100805 ValueRange* new_range = new (&allocator_) ValueRange(
806 &allocator_, ValueBound(nullptr, 1), ValueBound::Max());
Aart Bika2106892016-05-04 14:00:55 -0700807 ApplyRangeFromComparison(
808 left, block, cond == kCondEQ ? false_successor : true_successor, new_range);
809 }
810 }
Mingyao Yangf384f882014-10-22 16:08:18 -0700811 }
812 }
813
Aart Bik4a342772015-11-30 10:17:46 -0800814 void VisitBoundsCheck(HBoundsCheck* bounds_check) OVERRIDE {
Mingyao Yangf384f882014-10-22 16:08:18 -0700815 HBasicBlock* block = bounds_check->GetBlock();
816 HInstruction* index = bounds_check->InputAt(0);
817 HInstruction* array_length = bounds_check->InputAt(1);
Mingyao Yang3584bce2015-05-19 16:01:59 -0700818 DCHECK(array_length->IsIntConstant() ||
819 array_length->IsArrayLength() ||
820 array_length->IsPhi());
Aart Bik4a342772015-11-30 10:17:46 -0800821 bool try_dynamic_bce = true;
Aart Bik1d239822016-02-09 14:26:34 -0800822 // Analyze index range.
Mingyao Yang0304e182015-01-30 16:41:29 -0800823 if (!index->IsIntConstant()) {
Aart Bik1d239822016-02-09 14:26:34 -0800824 // Non-constant index.
Aart Bik22af3be2015-09-10 12:50:58 -0700825 ValueBound lower = ValueBound(nullptr, 0); // constant 0
826 ValueBound upper = ValueBound(array_length, -1); // array_length - 1
Vladimir Marko009d1662017-10-10 13:21:15 +0100827 ValueRange array_range(&allocator_, lower, upper);
Aart Bik1d239822016-02-09 14:26:34 -0800828 // Try index range obtained by dominator-based analysis.
Mingyao Yang0304e182015-01-30 16:41:29 -0800829 ValueRange* index_range = LookupValueRange(index, block);
Aart Bik22af3be2015-09-10 12:50:58 -0700830 if (index_range != nullptr && index_range->FitsIn(&array_range)) {
Aart Bik4a342772015-11-30 10:17:46 -0800831 ReplaceInstruction(bounds_check, index);
Aart Bik22af3be2015-09-10 12:50:58 -0700832 return;
833 }
Aart Bik1d239822016-02-09 14:26:34 -0800834 // Try index range obtained by induction variable analysis.
Aart Bik4a342772015-11-30 10:17:46 -0800835 // Disables dynamic bce if OOB is certain.
Aart Bik52be7e72016-06-23 11:20:41 -0700836 if (InductionRangeFitsIn(&array_range, bounds_check, &try_dynamic_bce)) {
Aart Bik4a342772015-11-30 10:17:46 -0800837 ReplaceInstruction(bounds_check, index);
Aart Bik22af3be2015-09-10 12:50:58 -0700838 return;
Mingyao Yangf384f882014-10-22 16:08:18 -0700839 }
Mingyao Yang0304e182015-01-30 16:41:29 -0800840 } else {
Aart Bik1d239822016-02-09 14:26:34 -0800841 // Constant index.
Mingyao Yang0304e182015-01-30 16:41:29 -0800842 int32_t constant = index->AsIntConstant()->GetValue();
843 if (constant < 0) {
844 // Will always throw exception.
845 return;
Aart Bik1d239822016-02-09 14:26:34 -0800846 } else if (array_length->IsIntConstant()) {
Mingyao Yang0304e182015-01-30 16:41:29 -0800847 if (constant < array_length->AsIntConstant()->GetValue()) {
Aart Bik4a342772015-11-30 10:17:46 -0800848 ReplaceInstruction(bounds_check, index);
Mingyao Yang0304e182015-01-30 16:41:29 -0800849 }
850 return;
851 }
Aart Bik1d239822016-02-09 14:26:34 -0800852 // Analyze array length range.
Mingyao Yang0304e182015-01-30 16:41:29 -0800853 DCHECK(array_length->IsArrayLength());
854 ValueRange* existing_range = LookupValueRange(array_length, block);
855 if (existing_range != nullptr) {
856 ValueBound lower = existing_range->GetLower();
857 DCHECK(lower.IsConstant());
858 if (constant < lower.GetConstant()) {
Aart Bik4a342772015-11-30 10:17:46 -0800859 ReplaceInstruction(bounds_check, index);
Mingyao Yang0304e182015-01-30 16:41:29 -0800860 return;
861 } else {
862 // Existing range isn't strong enough to eliminate the bounds check.
863 // Fall through to update the array_length range with info from this
864 // bounds check.
865 }
866 }
Mingyao Yangf384f882014-10-22 16:08:18 -0700867 // Once we have an array access like 'array[5] = 1', we record array.length >= 6.
Mingyao Yang0304e182015-01-30 16:41:29 -0800868 // We currently don't do it for non-constant index since a valid array[i] can't prove
869 // a valid array[i-1] yet due to the lower bound side.
Aart Bikaab5b752015-09-23 11:18:57 -0700870 if (constant == std::numeric_limits<int32_t>::max()) {
871 // Max() as an index will definitely throw AIOOBE.
Mingyao Yangd43b3ac2015-04-01 14:03:04 -0700872 return;
Aart Bik1d239822016-02-09 14:26:34 -0800873 } else {
874 ValueBound lower = ValueBound(nullptr, constant + 1);
875 ValueBound upper = ValueBound::Max();
Vladimir Marko009d1662017-10-10 13:21:15 +0100876 ValueRange* range = new (&allocator_) ValueRange(&allocator_, lower, upper);
Aart Bik1d239822016-02-09 14:26:34 -0800877 AssignRange(block, array_length, range);
Mingyao Yangd43b3ac2015-04-01 14:03:04 -0700878 }
Mingyao Yangf384f882014-10-22 16:08:18 -0700879 }
Mingyao Yangf384f882014-10-22 16:08:18 -0700880
Aart Bik4a342772015-11-30 10:17:46 -0800881 // If static analysis fails, and OOB is not certain, try dynamic elimination.
882 if (try_dynamic_bce) {
Aart Bik1d239822016-02-09 14:26:34 -0800883 // Try loop-based dynamic elimination.
Aart Bik67def592016-07-14 17:19:43 -0700884 HLoopInformation* loop = bounds_check->GetBlock()->GetLoopInformation();
885 bool needs_finite_test = false;
886 bool needs_taken_test = false;
887 if (DynamicBCESeemsProfitable(loop, bounds_check->GetBlock()) &&
Aart Bik16d3a652016-09-09 10:33:50 -0700888 induction_range_.CanGenerateRange(
Aart Bik67def592016-07-14 17:19:43 -0700889 bounds_check, index, &needs_finite_test, &needs_taken_test) &&
890 CanHandleInfiniteLoop(loop, index, needs_finite_test) &&
891 // Do this test last, since it may generate code.
892 CanHandleLength(loop, array_length, needs_taken_test)) {
893 TransformLoopForDeoptimizationIfNeeded(loop, needs_taken_test);
894 TransformLoopForDynamicBCE(loop, bounds_check);
Aart Bik1d239822016-02-09 14:26:34 -0800895 return;
896 }
Aart Bik67def592016-07-14 17:19:43 -0700897 // Otherwise, prepare dominator-based dynamic elimination.
Aart Bik1d239822016-02-09 14:26:34 -0800898 if (first_index_bounds_check_map_.find(array_length->GetId()) ==
899 first_index_bounds_check_map_.end()) {
900 // Remember the first bounds check against each array_length. That bounds check
901 // instruction has an associated HEnvironment where we may add an HDeoptimize
902 // to eliminate subsequent bounds checks against the same array_length.
903 first_index_bounds_check_map_.Put(array_length->GetId(), bounds_check);
904 }
Aart Bik4a342772015-11-30 10:17:46 -0800905 }
Mingyao Yangf384f882014-10-22 16:08:18 -0700906 }
907
Nicolas Geoffraydb216f42015-05-05 17:02:20 +0100908 static bool HasSameInputAtBackEdges(HPhi* phi) {
909 DCHECK(phi->IsLoopHeaderPhi());
Vladimir Markoe9004912016-06-16 16:50:52 +0100910 HConstInputsRef inputs = phi->GetInputs();
Nicolas Geoffraydb216f42015-05-05 17:02:20 +0100911 // Start with input 1. Input 0 is from the incoming block.
Vladimir Markoe9004912016-06-16 16:50:52 +0100912 const HInstruction* input1 = inputs[1];
Nicolas Geoffraydb216f42015-05-05 17:02:20 +0100913 DCHECK(phi->GetBlock()->GetLoopInformation()->IsBackEdge(
Vladimir Markoec7802a2015-10-01 20:57:57 +0100914 *phi->GetBlock()->GetPredecessors()[1]));
Vladimir Marko372f10e2016-05-17 16:30:10 +0100915 for (size_t i = 2; i < inputs.size(); ++i) {
Nicolas Geoffraydb216f42015-05-05 17:02:20 +0100916 DCHECK(phi->GetBlock()->GetLoopInformation()->IsBackEdge(
Vladimir Markoec7802a2015-10-01 20:57:57 +0100917 *phi->GetBlock()->GetPredecessors()[i]));
Vladimir Marko372f10e2016-05-17 16:30:10 +0100918 if (input1 != inputs[i]) {
Nicolas Geoffraydb216f42015-05-05 17:02:20 +0100919 return false;
920 }
921 }
922 return true;
923 }
924
Aart Bik4a342772015-11-30 10:17:46 -0800925 void VisitPhi(HPhi* phi) OVERRIDE {
Nicolas Geoffraydb216f42015-05-05 17:02:20 +0100926 if (phi->IsLoopHeaderPhi()
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100927 && (phi->GetType() == DataType::Type::kInt32)
Nicolas Geoffraydb216f42015-05-05 17:02:20 +0100928 && HasSameInputAtBackEdges(phi)) {
Mingyao Yangf384f882014-10-22 16:08:18 -0700929 HInstruction* instruction = phi->InputAt(1);
Mingyao Yang0304e182015-01-30 16:41:29 -0800930 HInstruction *left;
931 int32_t increment;
932 if (ValueBound::IsAddOrSubAConstant(instruction, &left, &increment)) {
933 if (left == phi) {
Mingyao Yangf384f882014-10-22 16:08:18 -0700934 HInstruction* initial_value = phi->InputAt(0);
935 ValueRange* range = nullptr;
Mingyao Yang64197522014-12-05 15:56:23 -0800936 if (increment == 0) {
Mingyao Yangf384f882014-10-22 16:08:18 -0700937 // Add constant 0. It's really a fixed value.
Vladimir Marko009d1662017-10-10 13:21:15 +0100938 range = new (&allocator_) ValueRange(
939 &allocator_,
Mingyao Yang64197522014-12-05 15:56:23 -0800940 ValueBound(initial_value, 0),
941 ValueBound(initial_value, 0));
Mingyao Yangf384f882014-10-22 16:08:18 -0700942 } else {
943 // Monotonically increasing/decreasing.
Mingyao Yang64197522014-12-05 15:56:23 -0800944 bool found;
945 ValueBound bound = ValueBound::DetectValueBoundFromValue(
946 initial_value, &found);
947 if (!found) {
948 // No constant or array.length+c bound found.
949 // For i=j, we can still use j's upper bound as i's upper bound.
950 // Same for lower.
951 ValueRange* initial_range = LookupValueRange(initial_value, phi->GetBlock());
952 if (initial_range != nullptr) {
953 bound = increment > 0 ? initial_range->GetLower() :
954 initial_range->GetUpper();
955 } else {
956 bound = increment > 0 ? ValueBound::Min() : ValueBound::Max();
957 }
958 }
Vladimir Marko009d1662017-10-10 13:21:15 +0100959 range = new (&allocator_) MonotonicValueRange(
960 &allocator_,
Mingyao Yang206d6fd2015-04-13 16:46:28 -0700961 phi,
Mingyao Yangf384f882014-10-22 16:08:18 -0700962 initial_value,
Mingyao Yang64197522014-12-05 15:56:23 -0800963 increment,
964 bound);
Mingyao Yangf384f882014-10-22 16:08:18 -0700965 }
Aart Bik1d239822016-02-09 14:26:34 -0800966 AssignRange(phi->GetBlock(), phi, range);
Mingyao Yangf384f882014-10-22 16:08:18 -0700967 }
968 }
969 }
970 }
971
Aart Bik4a342772015-11-30 10:17:46 -0800972 void VisitIf(HIf* instruction) OVERRIDE {
Mingyao Yangf384f882014-10-22 16:08:18 -0700973 if (instruction->InputAt(0)->IsCondition()) {
974 HCondition* cond = instruction->InputAt(0)->AsCondition();
Aart Bika2106892016-05-04 14:00:55 -0700975 HandleIf(instruction, cond->GetLeft(), cond->GetRight(), cond->GetCondition());
Mingyao Yangf384f882014-10-22 16:08:18 -0700976 }
977 }
978
Aart Bik4a342772015-11-30 10:17:46 -0800979 void VisitAdd(HAdd* add) OVERRIDE {
Mingyao Yangf384f882014-10-22 16:08:18 -0700980 HInstruction* right = add->GetRight();
981 if (right->IsIntConstant()) {
982 ValueRange* left_range = LookupValueRange(add->GetLeft(), add->GetBlock());
983 if (left_range == nullptr) {
984 return;
985 }
986 ValueRange* range = left_range->Add(right->AsIntConstant()->GetValue());
987 if (range != nullptr) {
Aart Bik1d239822016-02-09 14:26:34 -0800988 AssignRange(add->GetBlock(), add, range);
Mingyao Yangf384f882014-10-22 16:08:18 -0700989 }
990 }
991 }
992
Aart Bik4a342772015-11-30 10:17:46 -0800993 void VisitSub(HSub* sub) OVERRIDE {
Mingyao Yangf384f882014-10-22 16:08:18 -0700994 HInstruction* left = sub->GetLeft();
995 HInstruction* right = sub->GetRight();
996 if (right->IsIntConstant()) {
997 ValueRange* left_range = LookupValueRange(left, sub->GetBlock());
998 if (left_range == nullptr) {
999 return;
1000 }
1001 ValueRange* range = left_range->Add(-right->AsIntConstant()->GetValue());
1002 if (range != nullptr) {
Aart Bik1d239822016-02-09 14:26:34 -08001003 AssignRange(sub->GetBlock(), sub, range);
Mingyao Yangf384f882014-10-22 16:08:18 -07001004 return;
1005 }
1006 }
1007
1008 // Here we are interested in the typical triangular case of nested loops,
1009 // such as the inner loop 'for (int j=0; j<array.length-i; j++)' where i
1010 // is the index for outer loop. In this case, we know j is bounded by array.length-1.
Mingyao Yang8c8bad82015-02-09 18:13:26 -08001011
1012 // Try to handle (array.length - i) or (array.length + c - i) format.
1013 HInstruction* left_of_left; // left input of left.
1014 int32_t right_const = 0;
1015 if (ValueBound::IsAddOrSubAConstant(left, &left_of_left, &right_const)) {
1016 left = left_of_left;
1017 }
1018 // The value of left input of the sub equals (left + right_const).
1019
Mingyao Yangf384f882014-10-22 16:08:18 -07001020 if (left->IsArrayLength()) {
1021 HInstruction* array_length = left->AsArrayLength();
1022 ValueRange* right_range = LookupValueRange(right, sub->GetBlock());
1023 if (right_range != nullptr) {
1024 ValueBound lower = right_range->GetLower();
1025 ValueBound upper = right_range->GetUpper();
Mingyao Yang0304e182015-01-30 16:41:29 -08001026 if (lower.IsConstant() && upper.IsRelatedToArrayLength()) {
Mingyao Yangf384f882014-10-22 16:08:18 -07001027 HInstruction* upper_inst = upper.GetInstruction();
Mingyao Yang0304e182015-01-30 16:41:29 -08001028 // Make sure it's the same array.
1029 if (ValueBound::Equal(array_length, upper_inst)) {
Mingyao Yang8c8bad82015-02-09 18:13:26 -08001030 int32_t c0 = right_const;
1031 int32_t c1 = lower.GetConstant();
1032 int32_t c2 = upper.GetConstant();
1033 // (array.length + c0 - v) where v is in [c1, array.length + c2]
1034 // gets [c0 - c2, array.length + c0 - c1] as its value range.
1035 if (!ValueBound::WouldAddOverflowOrUnderflow(c0, -c2) &&
1036 !ValueBound::WouldAddOverflowOrUnderflow(c0, -c1)) {
1037 if ((c0 - c1) <= 0) {
1038 // array.length + (c0 - c1) won't overflow/underflow.
Vladimir Marko009d1662017-10-10 13:21:15 +01001039 ValueRange* range = new (&allocator_) ValueRange(
1040 &allocator_,
Mingyao Yang8c8bad82015-02-09 18:13:26 -08001041 ValueBound(nullptr, right_const - upper.GetConstant()),
1042 ValueBound(array_length, right_const - lower.GetConstant()));
Aart Bik1d239822016-02-09 14:26:34 -08001043 AssignRange(sub->GetBlock(), sub, range);
Mingyao Yang8c8bad82015-02-09 18:13:26 -08001044 }
1045 }
Mingyao Yangf384f882014-10-22 16:08:18 -07001046 }
1047 }
1048 }
1049 }
1050 }
1051
Mingyao Yang8c8bad82015-02-09 18:13:26 -08001052 void FindAndHandlePartialArrayLength(HBinaryOperation* instruction) {
1053 DCHECK(instruction->IsDiv() || instruction->IsShr() || instruction->IsUShr());
1054 HInstruction* right = instruction->GetRight();
1055 int32_t right_const;
1056 if (right->IsIntConstant()) {
1057 right_const = right->AsIntConstant()->GetValue();
1058 // Detect division by two or more.
1059 if ((instruction->IsDiv() && right_const <= 1) ||
1060 (instruction->IsShr() && right_const < 1) ||
1061 (instruction->IsUShr() && right_const < 1)) {
1062 return;
1063 }
1064 } else {
1065 return;
1066 }
1067
1068 // Try to handle array.length/2 or (array.length-1)/2 format.
1069 HInstruction* left = instruction->GetLeft();
1070 HInstruction* left_of_left; // left input of left.
1071 int32_t c = 0;
1072 if (ValueBound::IsAddOrSubAConstant(left, &left_of_left, &c)) {
1073 left = left_of_left;
1074 }
1075 // The value of left input of instruction equals (left + c).
1076
1077 // (array_length + 1) or smaller divided by two or more
Aart Bikaab5b752015-09-23 11:18:57 -07001078 // always generate a value in [Min(), array_length].
1079 // This is true even if array_length is Max().
Mingyao Yang8c8bad82015-02-09 18:13:26 -08001080 if (left->IsArrayLength() && c <= 1) {
1081 if (instruction->IsUShr() && c < 0) {
1082 // Make sure for unsigned shift, left side is not negative.
1083 // e.g. if array_length is 2, ((array_length - 3) >>> 2) is way bigger
1084 // than array_length.
1085 return;
1086 }
Vladimir Marko009d1662017-10-10 13:21:15 +01001087 ValueRange* range = new (&allocator_) ValueRange(
1088 &allocator_,
Aart Bikaab5b752015-09-23 11:18:57 -07001089 ValueBound(nullptr, std::numeric_limits<int32_t>::min()),
Mingyao Yang8c8bad82015-02-09 18:13:26 -08001090 ValueBound(left, 0));
Aart Bik1d239822016-02-09 14:26:34 -08001091 AssignRange(instruction->GetBlock(), instruction, range);
Mingyao Yang8c8bad82015-02-09 18:13:26 -08001092 }
1093 }
1094
Aart Bik4a342772015-11-30 10:17:46 -08001095 void VisitDiv(HDiv* div) OVERRIDE {
Mingyao Yang8c8bad82015-02-09 18:13:26 -08001096 FindAndHandlePartialArrayLength(div);
1097 }
1098
Aart Bik4a342772015-11-30 10:17:46 -08001099 void VisitShr(HShr* shr) OVERRIDE {
Mingyao Yang8c8bad82015-02-09 18:13:26 -08001100 FindAndHandlePartialArrayLength(shr);
1101 }
1102
Aart Bik4a342772015-11-30 10:17:46 -08001103 void VisitUShr(HUShr* ushr) OVERRIDE {
Mingyao Yang8c8bad82015-02-09 18:13:26 -08001104 FindAndHandlePartialArrayLength(ushr);
1105 }
1106
Aart Bik4a342772015-11-30 10:17:46 -08001107 void VisitAnd(HAnd* instruction) OVERRIDE {
Mingyao Yang4559f002015-02-27 14:43:53 -08001108 if (instruction->GetRight()->IsIntConstant()) {
1109 int32_t constant = instruction->GetRight()->AsIntConstant()->GetValue();
1110 if (constant > 0) {
1111 // constant serves as a mask so any number masked with it
1112 // gets a [0, constant] value range.
Vladimir Marko009d1662017-10-10 13:21:15 +01001113 ValueRange* range = new (&allocator_) ValueRange(
1114 &allocator_,
Mingyao Yang4559f002015-02-27 14:43:53 -08001115 ValueBound(nullptr, 0),
1116 ValueBound(nullptr, constant));
Aart Bik1d239822016-02-09 14:26:34 -08001117 AssignRange(instruction->GetBlock(), instruction, range);
Mingyao Yang4559f002015-02-27 14:43:53 -08001118 }
1119 }
1120 }
1121
xueliang.zhonga22cae72017-06-26 17:49:48 +01001122 void VisitRem(HRem* instruction) OVERRIDE {
1123 HInstruction* left = instruction->GetLeft();
1124 HInstruction* right = instruction->GetRight();
1125
1126 // Handle 'i % CONST' format expression in array index, e.g:
1127 // array[i % 20];
1128 if (right->IsIntConstant()) {
1129 int32_t right_const = std::abs(right->AsIntConstant()->GetValue());
1130 if (right_const == 0) {
1131 return;
1132 }
1133 // The sign of divisor CONST doesn't affect the sign final value range.
1134 // For example:
1135 // if (i > 0) {
1136 // array[i % 10]; // index value range [0, 9]
1137 // array[i % -10]; // index value range [0, 9]
1138 // }
Vladimir Marko009d1662017-10-10 13:21:15 +01001139 ValueRange* right_range = new (&allocator_) ValueRange(
1140 &allocator_,
xueliang.zhonga22cae72017-06-26 17:49:48 +01001141 ValueBound(nullptr, 1 - right_const),
1142 ValueBound(nullptr, right_const - 1));
1143
Aart Bikbae9c9a2017-09-11 14:51:54 -07001144 ValueRange* left_range = LookupValueRange(left, instruction->GetBlock());
xueliang.zhonga22cae72017-06-26 17:49:48 +01001145 if (left_range != nullptr) {
Aart Bikbae9c9a2017-09-11 14:51:54 -07001146 right_range = right_range->Narrow(left_range);
xueliang.zhonga22cae72017-06-26 17:49:48 +01001147 }
1148 AssignRange(instruction->GetBlock(), instruction, right_range);
1149 return;
1150 }
1151
1152 // Handle following pattern:
1153 // i0 NullCheck
1154 // i1 ArrayLength[i0]
1155 // i2 DivByZeroCheck [i1] <-- right
1156 // i3 Rem [i5, i2] <-- we are here.
1157 // i4 BoundsCheck [i3,i1]
1158 if (right->IsDivZeroCheck()) {
1159 // if array_length can pass div-by-zero check,
1160 // array_length must be > 0.
1161 right = right->AsDivZeroCheck()->InputAt(0);
1162 }
1163
1164 // Handle 'i % array.length' format expression in array index, e.g:
1165 // array[(i+7) % array.length];
1166 if (right->IsArrayLength()) {
1167 ValueBound lower = ValueBound::Min(); // ideally, lower should be '1-array_length'.
1168 ValueBound upper = ValueBound(right, -1); // array_length - 1
Vladimir Marko009d1662017-10-10 13:21:15 +01001169 ValueRange* right_range = new (&allocator_) ValueRange(
1170 &allocator_,
xueliang.zhonga22cae72017-06-26 17:49:48 +01001171 lower,
1172 upper);
Aart Bikbae9c9a2017-09-11 14:51:54 -07001173 ValueRange* left_range = LookupValueRange(left, instruction->GetBlock());
xueliang.zhonga22cae72017-06-26 17:49:48 +01001174 if (left_range != nullptr) {
Aart Bikbae9c9a2017-09-11 14:51:54 -07001175 right_range = right_range->Narrow(left_range);
xueliang.zhonga22cae72017-06-26 17:49:48 +01001176 }
1177 AssignRange(instruction->GetBlock(), instruction, right_range);
1178 return;
1179 }
1180 }
1181
Aart Bik4a342772015-11-30 10:17:46 -08001182 void VisitNewArray(HNewArray* new_array) OVERRIDE {
Nicolas Geoffraye761bcc2017-01-19 08:59:37 +00001183 HInstruction* len = new_array->GetLength();
Mingyao Yang0304e182015-01-30 16:41:29 -08001184 if (!len->IsIntConstant()) {
1185 HInstruction *left;
1186 int32_t right_const;
1187 if (ValueBound::IsAddOrSubAConstant(len, &left, &right_const)) {
1188 // (left + right_const) is used as size to new the array.
1189 // We record "-right_const <= left <= new_array - right_const";
1190 ValueBound lower = ValueBound(nullptr, -right_const);
1191 // We use new_array for the bound instead of new_array.length,
1192 // which isn't available as an instruction yet. new_array will
1193 // be treated the same as new_array.length when it's used in a ValueBound.
1194 ValueBound upper = ValueBound(new_array, -right_const);
Vladimir Marko009d1662017-10-10 13:21:15 +01001195 ValueRange* range = new (&allocator_) ValueRange(&allocator_, lower, upper);
Nicolas Geoffraya09ff9c2015-06-24 10:38:27 +01001196 ValueRange* existing_range = LookupValueRange(left, new_array->GetBlock());
1197 if (existing_range != nullptr) {
1198 range = existing_range->Narrow(range);
1199 }
Aart Bik1d239822016-02-09 14:26:34 -08001200 AssignRange(new_array->GetBlock(), left, range);
Mingyao Yang0304e182015-01-30 16:41:29 -08001201 }
1202 }
1203 }
1204
Aart Bik4a342772015-11-30 10:17:46 -08001205 /**
1206 * After null/bounds checks are eliminated, some invariant array references
1207 * may be exposed underneath which can be hoisted out of the loop to the
1208 * preheader or, in combination with dynamic bce, the deoptimization block.
1209 *
1210 * for (int i = 0; i < n; i++) {
1211 * <-------+
1212 * for (int j = 0; j < n; j++) |
1213 * a[i][j] = 0; --a[i]--+
1214 * }
1215 *
Aart Bik1d239822016-02-09 14:26:34 -08001216 * Note: this optimization is no longer applied after dominator-based dynamic deoptimization
1217 * has occurred (see AddCompareWithDeoptimization()), since in those cases it would be
1218 * unsafe to hoist array references across their deoptimization instruction inside a loop.
Aart Bik4a342772015-11-30 10:17:46 -08001219 */
1220 void VisitArrayGet(HArrayGet* array_get) OVERRIDE {
Aart Bik1d239822016-02-09 14:26:34 -08001221 if (!has_dom_based_dynamic_bce_ && array_get->IsInLoop()) {
Aart Bik4a342772015-11-30 10:17:46 -08001222 HLoopInformation* loop = array_get->GetBlock()->GetLoopInformation();
Mingyao Yang4b467ed2015-11-19 17:04:22 -08001223 if (loop->IsDefinedOutOfTheLoop(array_get->InputAt(0)) &&
1224 loop->IsDefinedOutOfTheLoop(array_get->InputAt(1))) {
Aart Bik4a342772015-11-30 10:17:46 -08001225 SideEffects loop_effects = side_effects_.GetLoopEffects(loop->GetHeader());
1226 if (!array_get->GetSideEffects().MayDependOn(loop_effects)) {
Anton Shaminf89381f2016-05-16 16:44:13 +06001227 // We can hoist ArrayGet only if its execution is guaranteed on every iteration.
1228 // In other words only if array_get_bb dominates all back branches.
1229 if (loop->DominatesAllBackEdges(array_get->GetBlock())) {
1230 HoistToPreHeaderOrDeoptBlock(loop, array_get);
1231 }
Aart Bik4a342772015-11-30 10:17:46 -08001232 }
1233 }
1234 }
1235 }
1236
Aart Bik67def592016-07-14 17:19:43 -07001237 /** Performs dominator-based dynamic elimination on suitable set of bounds checks. */
Aart Bik1d239822016-02-09 14:26:34 -08001238 void AddCompareWithDeoptimization(HBasicBlock* block,
1239 HInstruction* array_length,
1240 HInstruction* base,
1241 int32_t min_c, int32_t max_c) {
1242 HBoundsCheck* bounds_check =
1243 first_index_bounds_check_map_.Get(array_length->GetId())->AsBoundsCheck();
1244 // Construct deoptimization on single or double bounds on range [base-min_c,base+max_c],
1245 // for example either for a[0]..a[3] just 3 or for a[base-1]..a[base+3] both base-1
1246 // and base+3, since we made the assumption any in between value may occur too.
Aart Bik67def592016-07-14 17:19:43 -07001247 // In code, using unsigned comparisons:
1248 // (1) constants only
1249 // if (max_c >= a.length) deoptimize;
1250 // (2) general case
1251 // if (base-min_c > base+max_c) deoptimize;
1252 // if (base+max_c >= a.length ) deoptimize;
Aart Bik1d239822016-02-09 14:26:34 -08001253 static_assert(kMaxLengthForAddingDeoptimize < std::numeric_limits<int32_t>::max(),
1254 "Incorrect max length may be subject to arithmetic wrap-around");
1255 HInstruction* upper = GetGraph()->GetIntConstant(max_c);
1256 if (base == nullptr) {
1257 DCHECK_GE(min_c, 0);
1258 } else {
Vladimir Markoca6fff82017-10-03 14:49:14 +01001259 HInstruction* lower = new (GetGraph()->GetAllocator())
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001260 HAdd(DataType::Type::kInt32, base, GetGraph()->GetIntConstant(min_c));
Vladimir Markoca6fff82017-10-03 14:49:14 +01001261 upper = new (GetGraph()->GetAllocator()) HAdd(DataType::Type::kInt32, base, upper);
Aart Bik1d239822016-02-09 14:26:34 -08001262 block->InsertInstructionBefore(lower, bounds_check);
1263 block->InsertInstructionBefore(upper, bounds_check);
Vladimir Markoca6fff82017-10-03 14:49:14 +01001264 InsertDeoptInBlock(bounds_check, new (GetGraph()->GetAllocator()) HAbove(lower, upper));
Aart Bik1d239822016-02-09 14:26:34 -08001265 }
Vladimir Markoca6fff82017-10-03 14:49:14 +01001266 InsertDeoptInBlock(
1267 bounds_check, new (GetGraph()->GetAllocator()) HAboveOrEqual(upper, array_length));
Aart Bik1d239822016-02-09 14:26:34 -08001268 // Flag that this kind of deoptimization has occurred.
1269 has_dom_based_dynamic_bce_ = true;
Mingyao Yangd43b3ac2015-04-01 14:03:04 -07001270 }
1271
Aart Bik67def592016-07-14 17:19:43 -07001272 /** Attempts dominator-based dynamic elimination on remaining candidates. */
Mingyao Yangd43b3ac2015-04-01 14:03:04 -07001273 void AddComparesWithDeoptimization(HBasicBlock* block) {
Vladimir Markoda571cb2016-02-15 17:54:56 +00001274 for (const auto& entry : first_index_bounds_check_map_) {
1275 HBoundsCheck* bounds_check = entry.second;
Aart Bik1d239822016-02-09 14:26:34 -08001276 HInstruction* index = bounds_check->InputAt(0);
Nicolas Geoffray8df886b2015-06-24 14:57:44 +01001277 HInstruction* array_length = bounds_check->InputAt(1);
1278 if (!array_length->IsArrayLength()) {
Aart Bik1d239822016-02-09 14:26:34 -08001279 continue; // disregard phis and constants
Nicolas Geoffray8df886b2015-06-24 14:57:44 +01001280 }
Aart Bik1ae88742016-03-14 14:11:26 -07001281 // Collect all bounds checks that are still there and that are related as "a[base + constant]"
Aart Bik1d239822016-02-09 14:26:34 -08001282 // for a base instruction (possibly absent) and various constants. Note that no attempt
1283 // is made to partition the set into matching subsets (viz. a[0], a[1] and a[base+1] and
1284 // a[base+2] are considered as one set).
1285 // TODO: would such a partitioning be worthwhile?
1286 ValueBound value = ValueBound::AsValueBound(index);
1287 HInstruction* base = value.GetInstruction();
1288 int32_t min_c = base == nullptr ? 0 : value.GetConstant();
1289 int32_t max_c = value.GetConstant();
Vladimir Marko009d1662017-10-10 13:21:15 +01001290 ScopedArenaVector<HBoundsCheck*> candidates(
1291 allocator_.Adapter(kArenaAllocBoundsCheckElimination));
1292 ScopedArenaVector<HBoundsCheck*> standby(
1293 allocator_.Adapter(kArenaAllocBoundsCheckElimination));
Vladimir Marko46817b82016-03-29 12:21:58 +01001294 for (const HUseListNode<HInstruction*>& use : array_length->GetUses()) {
Aart Bik1d239822016-02-09 14:26:34 -08001295 // Another bounds check in same or dominated block?
Vladimir Marko46817b82016-03-29 12:21:58 +01001296 HInstruction* user = use.GetUser();
Aart Bik1d239822016-02-09 14:26:34 -08001297 HBasicBlock* other_block = user->GetBlock();
1298 if (user->IsBoundsCheck() && block->Dominates(other_block)) {
1299 HBoundsCheck* other_bounds_check = user->AsBoundsCheck();
1300 HInstruction* other_index = other_bounds_check->InputAt(0);
1301 HInstruction* other_array_length = other_bounds_check->InputAt(1);
1302 ValueBound other_value = ValueBound::AsValueBound(other_index);
1303 if (array_length == other_array_length && base == other_value.GetInstruction()) {
Aart Bik1ae88742016-03-14 14:11:26 -07001304 // Reject certain OOB if BoundsCheck(l, l) occurs on considered subset.
1305 if (array_length == other_index) {
1306 candidates.clear();
1307 standby.clear();
1308 break;
1309 }
Aart Bik1d239822016-02-09 14:26:34 -08001310 // Since a subsequent dominated block could be under a conditional, only accept
1311 // the other bounds check if it is in same block or both blocks dominate the exit.
1312 // TODO: we could improve this by testing proper post-dominance, or even if this
1313 // constant is seen along *all* conditional paths that follow.
1314 HBasicBlock* exit = GetGraph()->GetExitBlock();
1315 if (block == user->GetBlock() ||
1316 (block->Dominates(exit) && other_block->Dominates(exit))) {
Aart Bik1ae88742016-03-14 14:11:26 -07001317 int32_t other_c = other_value.GetConstant();
Aart Bik1d239822016-02-09 14:26:34 -08001318 min_c = std::min(min_c, other_c);
1319 max_c = std::max(max_c, other_c);
1320 candidates.push_back(other_bounds_check);
1321 } else {
1322 // Add this candidate later only if it falls into the range.
1323 standby.push_back(other_bounds_check);
1324 }
Mingyao Yangd43b3ac2015-04-01 14:03:04 -07001325 }
Mingyao Yangd43b3ac2015-04-01 14:03:04 -07001326 }
1327 }
Aart Bik1d239822016-02-09 14:26:34 -08001328 // Add standby candidates that fall in selected range.
Vladimir Markoda571cb2016-02-15 17:54:56 +00001329 for (HBoundsCheck* other_bounds_check : standby) {
Aart Bik1d239822016-02-09 14:26:34 -08001330 HInstruction* other_index = other_bounds_check->InputAt(0);
1331 int32_t other_c = ValueBound::AsValueBound(other_index).GetConstant();
1332 if (min_c <= other_c && other_c <= max_c) {
1333 candidates.push_back(other_bounds_check);
1334 }
1335 }
Aart Bik67def592016-07-14 17:19:43 -07001336 // Perform dominator-based deoptimization if it seems profitable, where we eliminate
1337 // bounds checks and replace these with deopt checks that guard against any possible
1338 // OOB. Note that we reject cases where the distance min_c:max_c range gets close to
1339 // the maximum possible array length, since those cases are likely to always deopt
1340 // (such situations do not necessarily go OOB, though, since the array could be really
1341 // large, or the programmer could rely on arithmetic wrap-around from max to min).
Aart Bik1d239822016-02-09 14:26:34 -08001342 size_t threshold = kThresholdForAddingDeoptimize + (base == nullptr ? 0 : 1); // extra test?
1343 uint32_t distance = static_cast<uint32_t>(max_c) - static_cast<uint32_t>(min_c);
1344 if (candidates.size() >= threshold &&
1345 (base != nullptr || min_c >= 0) && // reject certain OOB
1346 distance <= kMaxLengthForAddingDeoptimize) { // reject likely/certain deopt
1347 AddCompareWithDeoptimization(block, array_length, base, min_c, max_c);
Aart Bik67def592016-07-14 17:19:43 -07001348 for (HBoundsCheck* other_bounds_check : candidates) {
Aart Bik1ae88742016-03-14 14:11:26 -07001349 // Only replace if still in the graph. This avoids visiting the same
1350 // bounds check twice if it occurred multiple times in the use list.
1351 if (other_bounds_check->IsInBlock()) {
1352 ReplaceInstruction(other_bounds_check, other_bounds_check->InputAt(0));
1353 }
Aart Bik1d239822016-02-09 14:26:34 -08001354 }
Mingyao Yangd43b3ac2015-04-01 14:03:04 -07001355 }
1356 }
1357 }
1358
Aart Bik4a342772015-11-30 10:17:46 -08001359 /**
1360 * Returns true if static range analysis based on induction variables can determine the bounds
1361 * check on the given array range is always satisfied with the computed index range. The output
1362 * parameter try_dynamic_bce is set to false if OOB is certain.
1363 */
1364 bool InductionRangeFitsIn(ValueRange* array_range,
Aart Bik52be7e72016-06-23 11:20:41 -07001365 HBoundsCheck* context,
Aart Bik4a342772015-11-30 10:17:46 -08001366 bool* try_dynamic_bce) {
1367 InductionVarRange::Value v1;
1368 InductionVarRange::Value v2;
1369 bool needs_finite_test = false;
Aart Bik52be7e72016-06-23 11:20:41 -07001370 HInstruction* index = context->InputAt(0);
Nicolas Geoffraye761bcc2017-01-19 08:59:37 +00001371 HInstruction* hint = HuntForDeclaration(context->InputAt(1));
Aart Bik52be7e72016-06-23 11:20:41 -07001372 if (induction_range_.GetInductionRange(context, index, hint, &v1, &v2, &needs_finite_test)) {
1373 if (v1.is_known && (v1.a_constant == 0 || v1.a_constant == 1) &&
1374 v2.is_known && (v2.a_constant == 0 || v2.a_constant == 1)) {
1375 DCHECK(v1.a_constant == 1 || v1.instruction == nullptr);
1376 DCHECK(v2.a_constant == 1 || v2.instruction == nullptr);
Vladimir Marko009d1662017-10-10 13:21:15 +01001377 ValueRange index_range(&allocator_,
Aart Bik52be7e72016-06-23 11:20:41 -07001378 ValueBound(v1.instruction, v1.b_constant),
1379 ValueBound(v2.instruction, v2.b_constant));
1380 // If analysis reveals a certain OOB, disable dynamic BCE. Otherwise,
1381 // use analysis for static bce only if loop is finite.
1382 if (index_range.GetLower().LessThan(array_range->GetLower()) ||
1383 index_range.GetUpper().GreaterThan(array_range->GetUpper())) {
1384 *try_dynamic_bce = false;
1385 } else if (!needs_finite_test && index_range.FitsIn(array_range)) {
1386 return true;
Aart Bikb738d4f2015-12-03 11:23:35 -08001387 }
Aart Bik52be7e72016-06-23 11:20:41 -07001388 }
Aart Bik1fc3afb2016-02-02 13:26:16 -08001389 }
Aart Bik4a342772015-11-30 10:17:46 -08001390 return false;
1391 }
1392
1393 /**
Aart Bik67def592016-07-14 17:19:43 -07001394 * Performs loop-based dynamic elimination on a bounds check. In order to minimize the
1395 * number of eventually generated tests, related bounds checks with tests that can be
1396 * combined with tests for the given bounds check are collected first.
Aart Bik4a342772015-11-30 10:17:46 -08001397 */
Aart Bik67def592016-07-14 17:19:43 -07001398 void TransformLoopForDynamicBCE(HLoopInformation* loop, HBoundsCheck* bounds_check) {
1399 HInstruction* index = bounds_check->InputAt(0);
1400 HInstruction* array_length = bounds_check->InputAt(1);
1401 DCHECK(loop->IsDefinedOutOfTheLoop(array_length)); // pre-checked
1402 DCHECK(loop->DominatesAllBackEdges(bounds_check->GetBlock()));
1403 // Collect all bounds checks in the same loop that are related as "a[base + constant]"
1404 // for a base instruction (possibly absent) and various constants.
1405 ValueBound value = ValueBound::AsValueBound(index);
1406 HInstruction* base = value.GetInstruction();
1407 int32_t min_c = base == nullptr ? 0 : value.GetConstant();
1408 int32_t max_c = value.GetConstant();
Vladimir Marko009d1662017-10-10 13:21:15 +01001409 ScopedArenaVector<HBoundsCheck*> candidates(
1410 allocator_.Adapter(kArenaAllocBoundsCheckElimination));
1411 ScopedArenaVector<HBoundsCheck*> standby(
1412 allocator_.Adapter(kArenaAllocBoundsCheckElimination));
Aart Bik67def592016-07-14 17:19:43 -07001413 for (const HUseListNode<HInstruction*>& use : array_length->GetUses()) {
1414 HInstruction* user = use.GetUser();
1415 if (user->IsBoundsCheck() && loop == user->GetBlock()->GetLoopInformation()) {
1416 HBoundsCheck* other_bounds_check = user->AsBoundsCheck();
1417 HInstruction* other_index = other_bounds_check->InputAt(0);
1418 HInstruction* other_array_length = other_bounds_check->InputAt(1);
1419 ValueBound other_value = ValueBound::AsValueBound(other_index);
1420 int32_t other_c = other_value.GetConstant();
1421 if (array_length == other_array_length && base == other_value.GetInstruction()) {
Aart Bik12a10602016-10-18 11:35:22 -07001422 // Ensure every candidate could be picked for code generation.
1423 bool b1 = false, b2 = false;
1424 if (!induction_range_.CanGenerateRange(other_bounds_check, other_index, &b1, &b2)) {
1425 continue;
1426 }
Aart Bik67def592016-07-14 17:19:43 -07001427 // Does the current basic block dominate all back edges? If not,
1428 // add this candidate later only if it falls into the range.
1429 if (!loop->DominatesAllBackEdges(user->GetBlock())) {
1430 standby.push_back(other_bounds_check);
1431 continue;
1432 }
1433 min_c = std::min(min_c, other_c);
1434 max_c = std::max(max_c, other_c);
1435 candidates.push_back(other_bounds_check);
1436 }
Aart Bik4a342772015-11-30 10:17:46 -08001437 }
Aart Bik4a342772015-11-30 10:17:46 -08001438 }
Aart Bik67def592016-07-14 17:19:43 -07001439 // Add standby candidates that fall in selected range.
1440 for (HBoundsCheck* other_bounds_check : standby) {
1441 HInstruction* other_index = other_bounds_check->InputAt(0);
1442 int32_t other_c = ValueBound::AsValueBound(other_index).GetConstant();
1443 if (min_c <= other_c && other_c <= max_c) {
1444 candidates.push_back(other_bounds_check);
1445 }
1446 }
1447 // Perform loop-based deoptimization if it seems profitable, where we eliminate bounds
1448 // checks and replace these with deopt checks that guard against any possible OOB.
1449 DCHECK_LT(0u, candidates.size());
1450 uint32_t distance = static_cast<uint32_t>(max_c) - static_cast<uint32_t>(min_c);
1451 if ((base != nullptr || min_c >= 0) && // reject certain OOB
1452 distance <= kMaxLengthForAddingDeoptimize) { // reject likely/certain deopt
1453 HBasicBlock* block = GetPreHeader(loop, bounds_check);
1454 HInstruction* min_lower = nullptr;
1455 HInstruction* min_upper = nullptr;
1456 HInstruction* max_lower = nullptr;
1457 HInstruction* max_upper = nullptr;
1458 // Iterate over all bounds checks.
1459 for (HBoundsCheck* other_bounds_check : candidates) {
1460 // Only handle if still in the graph. This avoids visiting the same
1461 // bounds check twice if it occurred multiple times in the use list.
1462 if (other_bounds_check->IsInBlock()) {
1463 HInstruction* other_index = other_bounds_check->InputAt(0);
1464 int32_t other_c = ValueBound::AsValueBound(other_index).GetConstant();
1465 // Generate code for either the maximum or minimum. Range analysis already was queried
1466 // whether code generation on the original and, thus, related bounds check was possible.
1467 // It handles either loop invariants (lower is not set) or unit strides.
1468 if (other_c == max_c) {
Aart Bik16d3a652016-09-09 10:33:50 -07001469 induction_range_.GenerateRange(
Aart Bik67def592016-07-14 17:19:43 -07001470 other_bounds_check, other_index, GetGraph(), block, &max_lower, &max_upper);
1471 } else if (other_c == min_c && base != nullptr) {
Aart Bik16d3a652016-09-09 10:33:50 -07001472 induction_range_.GenerateRange(
Aart Bik67def592016-07-14 17:19:43 -07001473 other_bounds_check, other_index, GetGraph(), block, &min_lower, &min_upper);
1474 }
1475 ReplaceInstruction(other_bounds_check, other_index);
1476 }
1477 }
1478 // In code, using unsigned comparisons:
1479 // (1) constants only
1480 // if (max_upper >= a.length ) deoptimize;
1481 // (2) two symbolic invariants
1482 // if (min_upper > max_upper) deoptimize; unless min_c == max_c
1483 // if (max_upper >= a.length ) deoptimize;
1484 // (3) general case, unit strides (where lower would exceed upper for arithmetic wrap-around)
1485 // if (min_lower > max_lower) deoptimize; unless min_c == max_c
1486 // if (max_lower > max_upper) deoptimize;
1487 // if (max_upper >= a.length ) deoptimize;
1488 if (base == nullptr) {
1489 // Constants only.
1490 DCHECK_GE(min_c, 0);
1491 DCHECK(min_lower == nullptr && min_upper == nullptr &&
1492 max_lower == nullptr && max_upper != nullptr);
1493 } else if (max_lower == nullptr) {
1494 // Two symbolic invariants.
1495 if (min_c != max_c) {
1496 DCHECK(min_lower == nullptr && min_upper != nullptr &&
1497 max_lower == nullptr && max_upper != nullptr);
Vladimir Markoca6fff82017-10-03 14:49:14 +01001498 InsertDeoptInLoop(
1499 loop, block, new (GetGraph()->GetAllocator()) HAbove(min_upper, max_upper));
Aart Bik67def592016-07-14 17:19:43 -07001500 } else {
1501 DCHECK(min_lower == nullptr && min_upper == nullptr &&
1502 max_lower == nullptr && max_upper != nullptr);
1503 }
1504 } else {
1505 // General case, unit strides.
1506 if (min_c != max_c) {
1507 DCHECK(min_lower != nullptr && min_upper != nullptr &&
1508 max_lower != nullptr && max_upper != nullptr);
Vladimir Markoca6fff82017-10-03 14:49:14 +01001509 InsertDeoptInLoop(
1510 loop, block, new (GetGraph()->GetAllocator()) HAbove(min_lower, max_lower));
Aart Bik67def592016-07-14 17:19:43 -07001511 } else {
1512 DCHECK(min_lower == nullptr && min_upper == nullptr &&
1513 max_lower != nullptr && max_upper != nullptr);
1514 }
Vladimir Markoca6fff82017-10-03 14:49:14 +01001515 InsertDeoptInLoop(
1516 loop, block, new (GetGraph()->GetAllocator()) HAbove(max_lower, max_upper));
Aart Bik67def592016-07-14 17:19:43 -07001517 }
1518 InsertDeoptInLoop(
Vladimir Markoca6fff82017-10-03 14:49:14 +01001519 loop, block, new (GetGraph()->GetAllocator()) HAboveOrEqual(max_upper, array_length));
Aart Bik67def592016-07-14 17:19:43 -07001520 } else {
1521 // TODO: if rejected, avoid doing this again for subsequent instructions in this set?
1522 }
Aart Bik4a342772015-11-30 10:17:46 -08001523 }
1524
1525 /**
1526 * Returns true if heuristics indicate that dynamic bce may be profitable.
1527 */
1528 bool DynamicBCESeemsProfitable(HLoopInformation* loop, HBasicBlock* block) {
1529 if (loop != nullptr) {
Nicolas Geoffray15bd2282016-01-05 15:55:41 +00001530 // The loop preheader of an irreducible loop does not dominate all the blocks in
1531 // the loop. We would need to find the common dominator of all blocks in the loop.
1532 if (loop->IsIrreducible()) {
1533 return false;
1534 }
Nicolas Geoffray93a18c52016-04-22 13:16:14 +01001535 // We should never deoptimize from an osr method, otherwise we might wrongly optimize
1536 // code dominated by the deoptimization.
1537 if (GetGraph()->IsCompilingOsr()) {
1538 return false;
1539 }
Aart Bik4a342772015-11-30 10:17:46 -08001540 // A try boundary preheader is hard to handle.
Nicolas Geoffray15bd2282016-01-05 15:55:41 +00001541 // TODO: remove this restriction.
Aart Bik4a342772015-11-30 10:17:46 -08001542 if (loop->GetPreHeader()->GetLastInstruction()->IsTryBoundary()) {
1543 return false;
1544 }
1545 // Does loop have early-exits? If so, the full range may not be covered by the loop
1546 // at runtime and testing the range may apply deoptimization unnecessarily.
1547 if (IsEarlyExitLoop(loop)) {
1548 return false;
1549 }
1550 // Does the current basic block dominate all back edges? If not,
1551 // don't apply dynamic bce to something that may not be executed.
Anton Shaminf89381f2016-05-16 16:44:13 +06001552 return loop->DominatesAllBackEdges(block);
Aart Bik4a342772015-11-30 10:17:46 -08001553 }
1554 return false;
1555 }
1556
1557 /**
1558 * Returns true if the loop has early exits, which implies it may not cover
1559 * the full range computed by range analysis based on induction variables.
1560 */
1561 bool IsEarlyExitLoop(HLoopInformation* loop) {
1562 const uint32_t loop_id = loop->GetHeader()->GetBlockId();
1563 // If loop has been analyzed earlier for early-exit, don't repeat the analysis.
1564 auto it = early_exit_loop_.find(loop_id);
1565 if (it != early_exit_loop_.end()) {
1566 return it->second;
1567 }
1568 // First time early-exit analysis for this loop. Since analysis requires scanning
1569 // the full loop-body, results of the analysis is stored for subsequent queries.
1570 HBlocksInLoopReversePostOrderIterator it_loop(*loop);
1571 for (it_loop.Advance(); !it_loop.Done(); it_loop.Advance()) {
1572 for (HBasicBlock* successor : it_loop.Current()->GetSuccessors()) {
1573 if (!loop->Contains(*successor)) {
1574 early_exit_loop_.Put(loop_id, true);
1575 return true;
1576 }
1577 }
1578 }
1579 early_exit_loop_.Put(loop_id, false);
1580 return false;
1581 }
1582
1583 /**
1584 * Returns true if the array length is already loop invariant, or can be made so
1585 * by handling the null check under the hood of the array length operation.
1586 */
1587 bool CanHandleLength(HLoopInformation* loop, HInstruction* length, bool needs_taken_test) {
Mingyao Yang4b467ed2015-11-19 17:04:22 -08001588 if (loop->IsDefinedOutOfTheLoop(length)) {
Aart Bik4a342772015-11-30 10:17:46 -08001589 return true;
1590 } else if (length->IsArrayLength() && length->GetBlock()->GetLoopInformation() == loop) {
1591 if (CanHandleNullCheck(loop, length->InputAt(0), needs_taken_test)) {
Aart Bik55b14df2016-01-12 14:12:47 -08001592 HoistToPreHeaderOrDeoptBlock(loop, length);
Aart Bik4a342772015-11-30 10:17:46 -08001593 return true;
1594 }
1595 }
1596 return false;
1597 }
1598
1599 /**
1600 * Returns true if the null check is already loop invariant, or can be made so
1601 * by generating a deoptimization test.
1602 */
1603 bool CanHandleNullCheck(HLoopInformation* loop, HInstruction* check, bool needs_taken_test) {
Mingyao Yang4b467ed2015-11-19 17:04:22 -08001604 if (loop->IsDefinedOutOfTheLoop(check)) {
Aart Bik4a342772015-11-30 10:17:46 -08001605 return true;
1606 } else if (check->IsNullCheck() && check->GetBlock()->GetLoopInformation() == loop) {
1607 HInstruction* array = check->InputAt(0);
Mingyao Yang4b467ed2015-11-19 17:04:22 -08001608 if (loop->IsDefinedOutOfTheLoop(array)) {
Aart Bik4a342772015-11-30 10:17:46 -08001609 // Generate: if (array == null) deoptimize;
Aart Bik55b14df2016-01-12 14:12:47 -08001610 TransformLoopForDeoptimizationIfNeeded(loop, needs_taken_test);
1611 HBasicBlock* block = GetPreHeader(loop, check);
Aart Bik4a342772015-11-30 10:17:46 -08001612 HInstruction* cond =
Vladimir Markoca6fff82017-10-03 14:49:14 +01001613 new (GetGraph()->GetAllocator()) HEqual(array, GetGraph()->GetNullConstant());
Nicolas Geoffray4e92c3c2017-05-08 09:34:26 +01001614 InsertDeoptInLoop(loop, block, cond, /* is_null_check */ true);
Aart Bik4a342772015-11-30 10:17:46 -08001615 ReplaceInstruction(check, array);
1616 return true;
1617 }
1618 }
1619 return false;
1620 }
1621
1622 /**
1623 * Returns true if compiler can apply dynamic bce to loops that may be infinite
1624 * (e.g. for (int i = 0; i <= U; i++) with U = MAX_INT), which would invalidate
1625 * the range analysis evaluation code by "overshooting" the computed range.
1626 * Since deoptimization would be a bad choice, and there is no other version
1627 * of the loop to use, dynamic bce in such cases is only allowed if other tests
1628 * ensure the loop is finite.
1629 */
Aart Bik67def592016-07-14 17:19:43 -07001630 bool CanHandleInfiniteLoop(HLoopInformation* loop, HInstruction* index, bool needs_infinite_test) {
Aart Bik4a342772015-11-30 10:17:46 -08001631 if (needs_infinite_test) {
1632 // If we already forced the loop to be finite, allow directly.
1633 const uint32_t loop_id = loop->GetHeader()->GetBlockId();
1634 if (finite_loop_.find(loop_id) != finite_loop_.end()) {
1635 return true;
1636 }
1637 // Otherwise, allow dynamic bce if the index (which is necessarily an induction at
1638 // this point) is the direct loop index (viz. a[i]), since then the runtime tests
1639 // ensure upper bound cannot cause an infinite loop.
1640 HInstruction* control = loop->GetHeader()->GetLastInstruction();
1641 if (control->IsIf()) {
1642 HInstruction* if_expr = control->AsIf()->InputAt(0);
1643 if (if_expr->IsCondition()) {
1644 HCondition* condition = if_expr->AsCondition();
1645 if (index == condition->InputAt(0) ||
1646 index == condition->InputAt(1)) {
1647 finite_loop_.insert(loop_id);
1648 return true;
1649 }
1650 }
1651 }
1652 return false;
1653 }
1654 return true;
1655 }
1656
Aart Bik55b14df2016-01-12 14:12:47 -08001657 /**
1658 * Returns appropriate preheader for the loop, depending on whether the
1659 * instruction appears in the loop header or proper loop-body.
1660 */
1661 HBasicBlock* GetPreHeader(HLoopInformation* loop, HInstruction* instruction) {
1662 // Use preheader unless there is an earlier generated deoptimization block since
1663 // hoisted expressions may depend on and/or used by the deoptimization tests.
1664 HBasicBlock* header = loop->GetHeader();
1665 const uint32_t loop_id = header->GetBlockId();
1666 auto it = taken_test_loop_.find(loop_id);
1667 if (it != taken_test_loop_.end()) {
1668 HBasicBlock* block = it->second;
1669 // If always taken, keep it that way by returning the original preheader,
1670 // which can be found by following the predecessor of the true-block twice.
1671 if (instruction->GetBlock() == header) {
1672 return block->GetSinglePredecessor()->GetSinglePredecessor();
1673 }
1674 return block;
1675 }
1676 return loop->GetPreHeader();
1677 }
1678
Aart Bik1d239822016-02-09 14:26:34 -08001679 /** Inserts a deoptimization test in a loop preheader. */
Nicolas Geoffray4e92c3c2017-05-08 09:34:26 +01001680 void InsertDeoptInLoop(HLoopInformation* loop,
1681 HBasicBlock* block,
1682 HInstruction* condition,
1683 bool is_null_check = false) {
Aart Bik4a342772015-11-30 10:17:46 -08001684 HInstruction* suspend = loop->GetSuspendCheck();
1685 block->InsertInstructionBefore(condition, block->GetLastInstruction());
Nicolas Geoffray4e92c3c2017-05-08 09:34:26 +01001686 DeoptimizationKind kind =
1687 is_null_check ? DeoptimizationKind::kLoopNullBCE : DeoptimizationKind::kLoopBoundsBCE;
Vladimir Markoca6fff82017-10-03 14:49:14 +01001688 HDeoptimize* deoptimize = new (GetGraph()->GetAllocator()) HDeoptimize(
1689 GetGraph()->GetAllocator(), condition, kind, suspend->GetDexPc());
Aart Bik4a342772015-11-30 10:17:46 -08001690 block->InsertInstructionBefore(deoptimize, block->GetLastInstruction());
1691 if (suspend->HasEnvironment()) {
1692 deoptimize->CopyEnvironmentFromWithLoopPhiAdjustment(
1693 suspend->GetEnvironment(), loop->GetHeader());
1694 }
1695 }
1696
Aart Bik1d239822016-02-09 14:26:34 -08001697 /** Inserts a deoptimization test right before a bounds check. */
1698 void InsertDeoptInBlock(HBoundsCheck* bounds_check, HInstruction* condition) {
1699 HBasicBlock* block = bounds_check->GetBlock();
1700 block->InsertInstructionBefore(condition, bounds_check);
Vladimir Markoca6fff82017-10-03 14:49:14 +01001701 HDeoptimize* deoptimize = new (GetGraph()->GetAllocator()) HDeoptimize(
1702 GetGraph()->GetAllocator(),
1703 condition,
1704 DeoptimizationKind::kBlockBCE,
1705 bounds_check->GetDexPc());
Aart Bik1d239822016-02-09 14:26:34 -08001706 block->InsertInstructionBefore(deoptimize, bounds_check);
1707 deoptimize->CopyEnvironmentFrom(bounds_check->GetEnvironment());
1708 }
1709
Aart Bik4a342772015-11-30 10:17:46 -08001710 /** Hoists instruction out of the loop to preheader or deoptimization block. */
Aart Bik55b14df2016-01-12 14:12:47 -08001711 void HoistToPreHeaderOrDeoptBlock(HLoopInformation* loop, HInstruction* instruction) {
1712 HBasicBlock* block = GetPreHeader(loop, instruction);
Aart Bik4a342772015-11-30 10:17:46 -08001713 DCHECK(!instruction->HasEnvironment());
1714 instruction->MoveBefore(block->GetLastInstruction());
1715 }
1716
1717 /**
Aart Bik55b14df2016-01-12 14:12:47 -08001718 * Adds a new taken-test structure to a loop if needed and not already done.
Aart Bik4a342772015-11-30 10:17:46 -08001719 * The taken-test protects range analysis evaluation code to avoid any
1720 * deoptimization caused by incorrect trip-count evaluation in non-taken loops.
1721 *
Aart Bik4a342772015-11-30 10:17:46 -08001722 * old_preheader
1723 * |
1724 * if_block <- taken-test protects deoptimization block
1725 * / \
1726 * true_block false_block <- deoptimizations/invariants are placed in true_block
1727 * \ /
1728 * new_preheader <- may require phi nodes to preserve SSA structure
1729 * |
1730 * header
1731 *
1732 * For example, this loop:
1733 *
1734 * for (int i = lower; i < upper; i++) {
1735 * array[i] = 0;
1736 * }
1737 *
1738 * will be transformed to:
1739 *
1740 * if (lower < upper) {
1741 * if (array == null) deoptimize;
1742 * array_length = array.length;
1743 * if (lower > upper) deoptimize; // unsigned
1744 * if (upper >= array_length) deoptimize; // unsigned
1745 * } else {
1746 * array_length = 0;
1747 * }
1748 * for (int i = lower; i < upper; i++) {
1749 * // Loop without null check and bounds check, and any array.length replaced with array_length.
1750 * array[i] = 0;
1751 * }
1752 */
Aart Bik55b14df2016-01-12 14:12:47 -08001753 void TransformLoopForDeoptimizationIfNeeded(HLoopInformation* loop, bool needs_taken_test) {
1754 // Not needed (can use preheader) or already done (can reuse)?
Aart Bik4a342772015-11-30 10:17:46 -08001755 const uint32_t loop_id = loop->GetHeader()->GetBlockId();
Aart Bik55b14df2016-01-12 14:12:47 -08001756 if (!needs_taken_test || taken_test_loop_.find(loop_id) != taken_test_loop_.end()) {
1757 return;
Aart Bik4a342772015-11-30 10:17:46 -08001758 }
1759
1760 // Generate top test structure.
1761 HBasicBlock* header = loop->GetHeader();
1762 GetGraph()->TransformLoopHeaderForBCE(header);
1763 HBasicBlock* new_preheader = loop->GetPreHeader();
1764 HBasicBlock* if_block = new_preheader->GetDominator();
1765 HBasicBlock* true_block = if_block->GetSuccessors()[0]; // True successor.
1766 HBasicBlock* false_block = if_block->GetSuccessors()[1]; // False successor.
1767
1768 // Goto instructions.
Vladimir Markoca6fff82017-10-03 14:49:14 +01001769 true_block->AddInstruction(new (GetGraph()->GetAllocator()) HGoto());
1770 false_block->AddInstruction(new (GetGraph()->GetAllocator()) HGoto());
1771 new_preheader->AddInstruction(new (GetGraph()->GetAllocator()) HGoto());
Aart Bik4a342772015-11-30 10:17:46 -08001772
1773 // Insert the taken-test to see if the loop body is entered. If the
1774 // loop isn't entered at all, it jumps around the deoptimization block.
Vladimir Markoca6fff82017-10-03 14:49:14 +01001775 if_block->AddInstruction(new (GetGraph()->GetAllocator()) HGoto()); // placeholder
Aart Bik16d3a652016-09-09 10:33:50 -07001776 HInstruction* condition = induction_range_.GenerateTakenTest(
1777 header->GetLastInstruction(), GetGraph(), if_block);
Aart Bik4a342772015-11-30 10:17:46 -08001778 DCHECK(condition != nullptr);
1779 if_block->RemoveInstruction(if_block->GetLastInstruction());
Vladimir Markoca6fff82017-10-03 14:49:14 +01001780 if_block->AddInstruction(new (GetGraph()->GetAllocator()) HIf(condition));
Aart Bik4a342772015-11-30 10:17:46 -08001781
1782 taken_test_loop_.Put(loop_id, true_block);
Aart Bik4a342772015-11-30 10:17:46 -08001783 }
1784
1785 /**
1786 * Inserts phi nodes that preserve SSA structure in generated top test structures.
1787 * All uses of instructions in the deoptimization block that reach the loop need
1788 * a phi node in the new loop preheader to fix the dominance relation.
1789 *
1790 * Example:
1791 * if_block
1792 * / \
1793 * x_0 = .. false_block
1794 * \ /
1795 * x_1 = phi(x_0, null) <- synthetic phi
1796 * |
Aart Bik55b14df2016-01-12 14:12:47 -08001797 * new_preheader
Aart Bik4a342772015-11-30 10:17:46 -08001798 */
1799 void InsertPhiNodes() {
1800 // Scan all new deoptimization blocks.
Vladimir Marko7d157fc2017-05-10 16:29:23 +01001801 for (const auto& entry : taken_test_loop_) {
1802 HBasicBlock* true_block = entry.second;
Aart Bik4a342772015-11-30 10:17:46 -08001803 HBasicBlock* new_preheader = true_block->GetSingleSuccessor();
1804 // Scan all instructions in a new deoptimization block.
1805 for (HInstructionIterator it(true_block->GetInstructions()); !it.Done(); it.Advance()) {
1806 HInstruction* instruction = it.Current();
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001807 DataType::Type type = instruction->GetType();
Aart Bik4a342772015-11-30 10:17:46 -08001808 HPhi* phi = nullptr;
1809 // Scan all uses of an instruction and replace each later use with a phi node.
Vladimir Marko46817b82016-03-29 12:21:58 +01001810 const HUseList<HInstruction*>& uses = instruction->GetUses();
1811 for (auto it2 = uses.begin(), end2 = uses.end(); it2 != end2; /* ++it2 below */) {
1812 HInstruction* user = it2->GetUser();
1813 size_t index = it2->GetIndex();
1814 // Increment `it2` now because `*it2` may disappear thanks to user->ReplaceInput().
1815 ++it2;
Aart Bik4a342772015-11-30 10:17:46 -08001816 if (user->GetBlock() != true_block) {
1817 if (phi == nullptr) {
1818 phi = NewPhi(new_preheader, instruction, type);
1819 }
Vladimir Marko46817b82016-03-29 12:21:58 +01001820 user->ReplaceInput(phi, index); // Removes the use node from the list.
Aart Bike22445f2017-05-03 14:29:20 -07001821 induction_range_.Replace(user, instruction, phi); // update induction
Aart Bik4a342772015-11-30 10:17:46 -08001822 }
1823 }
1824 // Scan all environment uses of an instruction and replace each later use with a phi node.
Vladimir Marko46817b82016-03-29 12:21:58 +01001825 const HUseList<HEnvironment*>& env_uses = instruction->GetEnvUses();
1826 for (auto it2 = env_uses.begin(), end2 = env_uses.end(); it2 != end2; /* ++it2 below */) {
1827 HEnvironment* user = it2->GetUser();
1828 size_t index = it2->GetIndex();
1829 // Increment `it2` now because `*it2` may disappear thanks to user->RemoveAsUserOfInput().
1830 ++it2;
Aart Bik4a342772015-11-30 10:17:46 -08001831 if (user->GetHolder()->GetBlock() != true_block) {
1832 if (phi == nullptr) {
1833 phi = NewPhi(new_preheader, instruction, type);
1834 }
Vladimir Marko46817b82016-03-29 12:21:58 +01001835 user->RemoveAsUserOfInput(index);
1836 user->SetRawEnvAt(index, phi);
1837 phi->AddEnvUseAt(user, index);
Aart Bik4a342772015-11-30 10:17:46 -08001838 }
1839 }
1840 }
1841 }
1842 }
1843
1844 /**
1845 * Construct a phi(instruction, 0) in the new preheader to fix the dominance relation.
1846 * These are synthetic phi nodes without a virtual register.
1847 */
1848 HPhi* NewPhi(HBasicBlock* new_preheader,
1849 HInstruction* instruction,
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001850 DataType::Type type) {
Aart Bik4a342772015-11-30 10:17:46 -08001851 HGraph* graph = GetGraph();
1852 HInstruction* zero;
1853 switch (type) {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001854 case DataType::Type::kReference: zero = graph->GetNullConstant(); break;
1855 case DataType::Type::kFloat32: zero = graph->GetFloatConstant(0); break;
1856 case DataType::Type::kFloat64: zero = graph->GetDoubleConstant(0); break;
Aart Bik4a342772015-11-30 10:17:46 -08001857 default: zero = graph->GetConstant(type, 0); break;
1858 }
Vladimir Markoca6fff82017-10-03 14:49:14 +01001859 HPhi* phi = new (graph->GetAllocator())
1860 HPhi(graph->GetAllocator(), kNoRegNumber, /*number_of_inputs*/ 2, HPhi::ToPhiType(type));
Aart Bik4a342772015-11-30 10:17:46 -08001861 phi->SetRawInputAt(0, instruction);
1862 phi->SetRawInputAt(1, zero);
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001863 if (type == DataType::Type::kReference) {
David Brazdil4833f5a2015-12-16 10:37:39 +00001864 phi->SetReferenceTypeInfo(instruction->GetReferenceTypeInfo());
1865 }
Aart Bik4a342772015-11-30 10:17:46 -08001866 new_preheader->AddPhi(phi);
1867 return phi;
1868 }
1869
1870 /** Helper method to replace an instruction with another instruction. */
Aart Bik1e677482016-11-01 14:23:58 -07001871 void ReplaceInstruction(HInstruction* instruction, HInstruction* replacement) {
1872 // Safe iteration.
1873 if (instruction == next_) {
1874 next_ = next_->GetNext();
1875 }
1876 // Replace and remove.
Aart Bik4a342772015-11-30 10:17:46 -08001877 instruction->ReplaceWith(replacement);
1878 instruction->GetBlock()->RemoveInstruction(instruction);
1879 }
1880
Vladimir Marko009d1662017-10-10 13:21:15 +01001881 // Use local allocator for allocating memory.
1882 ScopedArenaAllocator allocator_;
1883
Aart Bik4a342772015-11-30 10:17:46 -08001884 // A set of maps, one per basic block, from instruction to range.
Vladimir Marko009d1662017-10-10 13:21:15 +01001885 ScopedArenaVector<ScopedArenaSafeMap<int, ValueRange*>> maps_;
Mingyao Yangf384f882014-10-22 16:08:18 -07001886
Aart Bik1d239822016-02-09 14:26:34 -08001887 // Map an HArrayLength instruction's id to the first HBoundsCheck instruction
1888 // in a block that checks an index against that HArrayLength.
Vladimir Marko009d1662017-10-10 13:21:15 +01001889 ScopedArenaSafeMap<int, HBoundsCheck*> first_index_bounds_check_map_;
Mingyao Yangd43b3ac2015-04-01 14:03:04 -07001890
Aart Bik4a342772015-11-30 10:17:46 -08001891 // Early-exit loop bookkeeping.
Vladimir Marko009d1662017-10-10 13:21:15 +01001892 ScopedArenaSafeMap<uint32_t, bool> early_exit_loop_;
Aart Bik4a342772015-11-30 10:17:46 -08001893
1894 // Taken-test loop bookkeeping.
Vladimir Marko009d1662017-10-10 13:21:15 +01001895 ScopedArenaSafeMap<uint32_t, HBasicBlock*> taken_test_loop_;
Aart Bik4a342772015-11-30 10:17:46 -08001896
1897 // Finite loop bookkeeping.
Vladimir Marko009d1662017-10-10 13:21:15 +01001898 ScopedArenaSet<uint32_t> finite_loop_;
Aart Bik4a342772015-11-30 10:17:46 -08001899
Aart Bik1d239822016-02-09 14:26:34 -08001900 // Flag that denotes whether dominator-based dynamic elimination has occurred.
1901 bool has_dom_based_dynamic_bce_;
Aart Bik4a342772015-11-30 10:17:46 -08001902
Mingyao Yang3584bce2015-05-19 16:01:59 -07001903 // Initial number of blocks.
Vladimir Markofa6b93c2015-09-15 10:15:55 +01001904 uint32_t initial_block_size_;
Mingyao Yang3584bce2015-05-19 16:01:59 -07001905
Aart Bik4a342772015-11-30 10:17:46 -08001906 // Side effects.
1907 const SideEffectsAnalysis& side_effects_;
1908
Aart Bik22af3be2015-09-10 12:50:58 -07001909 // Range analysis based on induction variables.
1910 InductionVarRange induction_range_;
1911
Aart Bik1e677482016-11-01 14:23:58 -07001912 // Safe iteration.
1913 HInstruction* next_;
1914
Mingyao Yangf384f882014-10-22 16:08:18 -07001915 DISALLOW_COPY_AND_ASSIGN(BCEVisitor);
1916};
1917
1918void BoundsCheckElimination::Run() {
Mark Mendell1152c922015-04-24 17:06:35 -04001919 if (!graph_->HasBoundsChecks()) {
Mingyao Yange4335eb2015-03-02 15:14:13 -08001920 return;
1921 }
1922
Mingyao Yangf384f882014-10-22 16:08:18 -07001923 // Reverse post order guarantees a node's dominators are visited first.
1924 // We want to visit in the dominator-based order since if a value is known to
1925 // be bounded by a range at one instruction, it must be true that all uses of
1926 // that value dominated by that instruction fits in that range. Range of that
1927 // value can be narrowed further down in the dominator tree.
Aart Bik4a342772015-11-30 10:17:46 -08001928 BCEVisitor visitor(graph_, side_effects_, induction_analysis_);
Vladimir Marko2c45bc92016-10-25 16:54:12 +01001929 for (size_t i = 0, size = graph_->GetReversePostOrder().size(); i != size; ++i) {
1930 HBasicBlock* current = graph_->GetReversePostOrder()[i];
Mingyao Yang3584bce2015-05-19 16:01:59 -07001931 if (visitor.IsAddedBlock(current)) {
1932 // Skip added blocks. Their effects are already taken care of.
1933 continue;
1934 }
1935 visitor.VisitBasicBlock(current);
Aart Bikb6347b72016-02-29 13:56:44 -08001936 // Skip forward to the current block in case new basic blocks were inserted
1937 // (which always appear earlier in reverse post order) to avoid visiting the
1938 // same basic block twice.
Vladimir Marko2c45bc92016-10-25 16:54:12 +01001939 size_t new_size = graph_->GetReversePostOrder().size();
1940 DCHECK_GE(new_size, size);
1941 i += new_size - size;
1942 DCHECK_EQ(current, graph_->GetReversePostOrder()[i]);
1943 size = new_size;
Mingyao Yang3584bce2015-05-19 16:01:59 -07001944 }
Aart Bik4a342772015-11-30 10:17:46 -08001945
1946 // Perform cleanup.
1947 visitor.Finish();
Mingyao Yangf384f882014-10-22 16:08:18 -07001948}
1949
1950} // namespace art