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Aart Bikd14c5952015-09-08 15:25:15 -07001/*
2 * Copyright (C) 2015 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
Aart Bikd14c5952015-09-08 15:25:15 -070017#include "induction_var_range.h"
18
Aart Bikcd26feb2015-09-23 17:50:50 -070019#include <limits>
20
Aart Bikd14c5952015-09-08 15:25:15 -070021namespace art {
22
Aart Bikb3365e02015-09-21 14:45:05 -070023/** Returns true if 64-bit constant fits in 32-bit constant. */
24static bool CanLongValueFitIntoInt(int64_t c) {
Aart Bikcd26feb2015-09-23 17:50:50 -070025 return std::numeric_limits<int32_t>::min() <= c && c <= std::numeric_limits<int32_t>::max();
Aart Bikd14c5952015-09-08 15:25:15 -070026}
27
Aart Bikb3365e02015-09-21 14:45:05 -070028/** Returns true if 32-bit addition can be done safely. */
Aart Bikd14c5952015-09-08 15:25:15 -070029static bool IsSafeAdd(int32_t c1, int32_t c2) {
Aart Bikb3365e02015-09-21 14:45:05 -070030 return CanLongValueFitIntoInt(static_cast<int64_t>(c1) + static_cast<int64_t>(c2));
Aart Bikd14c5952015-09-08 15:25:15 -070031}
32
Aart Bikb3365e02015-09-21 14:45:05 -070033/** Returns true if 32-bit subtraction can be done safely. */
Aart Bikd14c5952015-09-08 15:25:15 -070034static bool IsSafeSub(int32_t c1, int32_t c2) {
Aart Bikb3365e02015-09-21 14:45:05 -070035 return CanLongValueFitIntoInt(static_cast<int64_t>(c1) - static_cast<int64_t>(c2));
Aart Bikd14c5952015-09-08 15:25:15 -070036}
37
Aart Bikb3365e02015-09-21 14:45:05 -070038/** Returns true if 32-bit multiplication can be done safely. */
Aart Bikd14c5952015-09-08 15:25:15 -070039static bool IsSafeMul(int32_t c1, int32_t c2) {
Aart Bikb3365e02015-09-21 14:45:05 -070040 return CanLongValueFitIntoInt(static_cast<int64_t>(c1) * static_cast<int64_t>(c2));
Aart Bikd14c5952015-09-08 15:25:15 -070041}
42
Aart Bikb3365e02015-09-21 14:45:05 -070043/** Returns true if 32-bit division can be done safely. */
Aart Bikd14c5952015-09-08 15:25:15 -070044static bool IsSafeDiv(int32_t c1, int32_t c2) {
Aart Bikb3365e02015-09-21 14:45:05 -070045 return c2 != 0 && CanLongValueFitIntoInt(static_cast<int64_t>(c1) / static_cast<int64_t>(c2));
Aart Bikd14c5952015-09-08 15:25:15 -070046}
47
Aart Bik97412c922016-02-19 20:14:38 -080048/** Returns true for 32/64-bit constant instruction. */
49static bool IsIntAndGet(HInstruction* instruction, int64_t* value) {
Aart Bikd14c5952015-09-08 15:25:15 -070050 if (instruction->IsIntConstant()) {
Aart Bikb3365e02015-09-21 14:45:05 -070051 *value = instruction->AsIntConstant()->GetValue();
52 return true;
Aart Bikd14c5952015-09-08 15:25:15 -070053 } else if (instruction->IsLongConstant()) {
Aart Bik97412c922016-02-19 20:14:38 -080054 *value = instruction->AsLongConstant()->GetValue();
55 return true;
Aart Bikd14c5952015-09-08 15:25:15 -070056 }
57 return false;
58}
59
Aart Bikc071a012016-12-01 10:22:31 -080060/** Returns b^e for b,e >= 1. */
61static int64_t IntPow(int64_t b, int64_t e) {
62 DCHECK_GE(b, 1);
63 DCHECK_GE(e, 1);
64 int64_t pow = 1;
65 while (e) {
66 if (e & 1) {
67 pow *= b;
68 }
69 e >>= 1;
70 b *= b;
71 }
72 return pow;
73}
74
Aart Bikb3365e02015-09-21 14:45:05 -070075/**
Aart Bik40fbf742016-10-31 11:02:50 -070076 * Detects an instruction that is >= 0. As long as the value is carried by
77 * a single instruction, arithmetic wrap-around cannot occur.
Aart Bikb3365e02015-09-21 14:45:05 -070078 */
Aart Bik40fbf742016-10-31 11:02:50 -070079static bool IsGEZero(HInstruction* instruction) {
80 DCHECK(instruction != nullptr);
81 if (instruction->IsArrayLength()) {
82 return true;
83 } else if (instruction->IsInvokeStaticOrDirect()) {
84 switch (instruction->AsInvoke()->GetIntrinsic()) {
85 case Intrinsics::kMathMinIntInt:
86 case Intrinsics::kMathMinLongLong:
87 // Instruction MIN(>=0, >=0) is >= 0.
88 return IsGEZero(instruction->InputAt(0)) &&
89 IsGEZero(instruction->InputAt(1));
90 case Intrinsics::kMathAbsInt:
91 case Intrinsics::kMathAbsLong:
92 // Instruction ABS(x) is >= 0.
93 return true;
94 default:
95 break;
96 }
97 }
98 int64_t value = -1;
99 return IsIntAndGet(instruction, &value) && value >= 0;
100}
101
102/** Hunts "under the hood" for a suitable instruction at the hint. */
103static bool IsMaxAtHint(
104 HInstruction* instruction, HInstruction* hint, /*out*/HInstruction** suitable) {
105 if (instruction->IsInvokeStaticOrDirect()) {
106 switch (instruction->AsInvoke()->GetIntrinsic()) {
107 case Intrinsics::kMathMinIntInt:
108 case Intrinsics::kMathMinLongLong:
109 // For MIN(x, y), return most suitable x or y as maximum.
110 return IsMaxAtHint(instruction->InputAt(0), hint, suitable) ||
111 IsMaxAtHint(instruction->InputAt(1), hint, suitable);
112 default:
113 break;
114 }
115 } else {
116 *suitable = instruction;
117 while (instruction->IsArrayLength() ||
118 instruction->IsNullCheck() ||
119 instruction->IsNewArray()) {
120 instruction = instruction->InputAt(0);
121 }
122 return instruction == hint;
123 }
124 return false;
125}
126
127/** Post-analysis simplification of a minimum value that makes the bound more useful to clients. */
128static InductionVarRange::Value SimplifyMin(InductionVarRange::Value v) {
129 if (v.is_known && v.a_constant == 1 && v.b_constant <= 0) {
130 // If a == 1, instruction >= 0 and b <= 0, just return the constant b.
131 // No arithmetic wrap-around can occur.
132 if (IsGEZero(v.instruction)) {
133 return InductionVarRange::Value(v.b_constant);
134 }
Aart Bikb3365e02015-09-21 14:45:05 -0700135 }
136 return v;
137}
138
Aart Bik40fbf742016-10-31 11:02:50 -0700139/** Post-analysis simplification of a maximum value that makes the bound more useful to clients. */
140static InductionVarRange::Value SimplifyMax(InductionVarRange::Value v, HInstruction* hint) {
141 if (v.is_known && v.a_constant >= 1) {
142 // An upper bound a * (length / a) + b, where a >= 1, can be conservatively rewritten as
143 // length + b because length >= 0 is true.
144 int64_t value;
145 if (v.instruction->IsDiv() &&
146 v.instruction->InputAt(0)->IsArrayLength() &&
147 IsIntAndGet(v.instruction->InputAt(1), &value) && v.a_constant == value) {
148 return InductionVarRange::Value(v.instruction->InputAt(0), 1, v.b_constant);
149 }
150 // If a == 1, the most suitable one suffices as maximum value.
151 HInstruction* suitable = nullptr;
152 if (v.a_constant == 1 && IsMaxAtHint(v.instruction, hint, &suitable)) {
153 return InductionVarRange::Value(suitable, 1, v.b_constant);
154 }
155 }
156 return v;
157}
158
159/** Tests for a constant value. */
Aart Bik52be7e72016-06-23 11:20:41 -0700160static bool IsConstantValue(InductionVarRange::Value v) {
161 return v.is_known && v.a_constant == 0;
162}
163
164/** Corrects a value for type to account for arithmetic wrap-around in lower precision. */
Aart Bik0d345cf2016-03-16 10:49:38 -0700165static InductionVarRange::Value CorrectForType(InductionVarRange::Value v, Primitive::Type type) {
166 switch (type) {
167 case Primitive::kPrimShort:
168 case Primitive::kPrimChar:
169 case Primitive::kPrimByte: {
170 // Constants within range only.
171 // TODO: maybe some room for improvement, like allowing widening conversions
172 const int32_t min = Primitive::MinValueOfIntegralType(type);
173 const int32_t max = Primitive::MaxValueOfIntegralType(type);
Aart Bik52be7e72016-06-23 11:20:41 -0700174 return (IsConstantValue(v) && min <= v.b_constant && v.b_constant <= max)
Aart Bik0d345cf2016-03-16 10:49:38 -0700175 ? v
176 : InductionVarRange::Value();
177 }
178 default:
Aart Bik0d345cf2016-03-16 10:49:38 -0700179 return v;
180 }
181}
182
Aart Bik40fbf742016-10-31 11:02:50 -0700183/** Inserts an instruction. */
Aart Bik389b3db2015-10-28 14:23:40 -0700184static HInstruction* Insert(HBasicBlock* block, HInstruction* instruction) {
185 DCHECK(block != nullptr);
186 DCHECK(block->GetLastInstruction() != nullptr) << block->GetBlockId();
Aart Bikaec3cce2015-10-14 17:44:55 -0700187 DCHECK(instruction != nullptr);
Aart Bik389b3db2015-10-28 14:23:40 -0700188 block->InsertInstructionBefore(instruction, block->GetLastInstruction());
Aart Bikaec3cce2015-10-14 17:44:55 -0700189 return instruction;
190}
191
Aart Bik40fbf742016-10-31 11:02:50 -0700192/** Obtains loop's control instruction. */
Aart Bik009cace2016-09-16 10:15:19 -0700193static HInstruction* GetLoopControl(HLoopInformation* loop) {
194 DCHECK(loop != nullptr);
195 return loop->GetHeader()->GetLastInstruction();
196}
197
Aart Bikd14c5952015-09-08 15:25:15 -0700198//
199// Public class methods.
200//
201
202InductionVarRange::InductionVarRange(HInductionVarAnalysis* induction_analysis)
Aart Bik52be7e72016-06-23 11:20:41 -0700203 : induction_analysis_(induction_analysis),
204 chase_hint_(nullptr) {
Aart Bikb3365e02015-09-21 14:45:05 -0700205 DCHECK(induction_analysis != nullptr);
Aart Bikd14c5952015-09-08 15:25:15 -0700206}
207
Aart Bik1fc3afb2016-02-02 13:26:16 -0800208bool InductionVarRange::GetInductionRange(HInstruction* context,
Aart Bik389b3db2015-10-28 14:23:40 -0700209 HInstruction* instruction,
Aart Bik52be7e72016-06-23 11:20:41 -0700210 HInstruction* chase_hint,
Aart Bik389b3db2015-10-28 14:23:40 -0700211 /*out*/Value* min_val,
212 /*out*/Value* max_val,
213 /*out*/bool* needs_finite_test) {
Aart Bik52be7e72016-06-23 11:20:41 -0700214 HLoopInformation* loop = nullptr;
215 HInductionVarAnalysis::InductionInfo* info = nullptr;
216 HInductionVarAnalysis::InductionInfo* trip = nullptr;
217 if (!HasInductionInfo(context, instruction, &loop, &info, &trip)) {
218 return false;
Aart Bik97412c922016-02-19 20:14:38 -0800219 }
Aart Bik0d345cf2016-03-16 10:49:38 -0700220 // Type int or lower (this is not too restrictive since intended clients, like
221 // bounds check elimination, will have truncated higher precision induction
222 // at their use point already).
223 switch (info->type) {
224 case Primitive::kPrimInt:
225 case Primitive::kPrimShort:
226 case Primitive::kPrimChar:
227 case Primitive::kPrimByte:
228 break;
229 default:
230 return false;
231 }
Aart Bik97412c922016-02-19 20:14:38 -0800232 // Find range.
Aart Bik52be7e72016-06-23 11:20:41 -0700233 chase_hint_ = chase_hint;
234 bool in_body = context->GetBlock() != loop->GetHeader();
Aart Bik16d3a652016-09-09 10:33:50 -0700235 int64_t stride_value = 0;
Aart Bik40fbf742016-10-31 11:02:50 -0700236 *min_val = SimplifyMin(GetVal(info, trip, in_body, /* is_min */ true));
237 *max_val = SimplifyMax(GetVal(info, trip, in_body, /* is_min */ false), chase_hint);
Aart Bik16d3a652016-09-09 10:33:50 -0700238 *needs_finite_test = NeedsTripCount(info, &stride_value) && IsUnsafeTripCount(trip);
Aart Bik40fbf742016-10-31 11:02:50 -0700239 chase_hint_ = nullptr;
240 // Retry chasing constants for wrap-around (merge sensitive).
241 if (!min_val->is_known && info->induction_class == HInductionVarAnalysis::kWrapAround) {
242 *min_val = SimplifyMin(GetVal(info, trip, in_body, /* is_min */ true));
243 }
Aart Bik97412c922016-02-19 20:14:38 -0800244 return true;
Aart Bikd14c5952015-09-08 15:25:15 -0700245}
246
Aart Bik16d3a652016-09-09 10:33:50 -0700247bool InductionVarRange::CanGenerateRange(HInstruction* context,
248 HInstruction* instruction,
249 /*out*/bool* needs_finite_test,
250 /*out*/bool* needs_taken_test) {
251 bool is_last_value = false;
252 int64_t stride_value = 0;
Aart Bik9abf8942016-10-14 09:49:42 -0700253 return GenerateRangeOrLastValue(context,
254 instruction,
255 is_last_value,
256 nullptr,
257 nullptr,
258 nullptr,
259 nullptr,
260 nullptr, // nothing generated yet
261 &stride_value,
262 needs_finite_test,
263 needs_taken_test)
Aart Bik16d3a652016-09-09 10:33:50 -0700264 && (stride_value == -1 ||
265 stride_value == 0 ||
Aart Bik40fbf742016-10-31 11:02:50 -0700266 stride_value == 1); // avoid arithmetic wrap-around anomalies.
Aart Bikaec3cce2015-10-14 17:44:55 -0700267}
268
Aart Bik16d3a652016-09-09 10:33:50 -0700269void InductionVarRange::GenerateRange(HInstruction* context,
270 HInstruction* instruction,
271 HGraph* graph,
272 HBasicBlock* block,
273 /*out*/HInstruction** lower,
274 /*out*/HInstruction** upper) {
275 bool is_last_value = false;
Aart Bik009cace2016-09-16 10:15:19 -0700276 int64_t stride_value = 0;
Aart Bik389b3db2015-10-28 14:23:40 -0700277 bool b1, b2; // unused
Aart Bik9abf8942016-10-14 09:49:42 -0700278 if (!GenerateRangeOrLastValue(context,
279 instruction,
280 is_last_value,
281 graph,
282 block,
283 lower,
284 upper,
285 nullptr,
286 &stride_value,
287 &b1,
288 &b2)) {
Aart Bik16d3a652016-09-09 10:33:50 -0700289 LOG(FATAL) << "Failed precondition: CanGenerateRange()";
Aart Bik389b3db2015-10-28 14:23:40 -0700290 }
291}
292
Aart Bik16d3a652016-09-09 10:33:50 -0700293HInstruction* InductionVarRange::GenerateTakenTest(HInstruction* context,
294 HGraph* graph,
295 HBasicBlock* block) {
296 HInstruction* taken_test = nullptr;
297 bool is_last_value = false;
298 int64_t stride_value = 0;
Aart Bik389b3db2015-10-28 14:23:40 -0700299 bool b1, b2; // unused
Aart Bik9abf8942016-10-14 09:49:42 -0700300 if (!GenerateRangeOrLastValue(context,
301 context,
302 is_last_value,
303 graph,
304 block,
305 nullptr,
306 nullptr,
307 &taken_test,
308 &stride_value,
309 &b1,
310 &b2)) {
Aart Bik16d3a652016-09-09 10:33:50 -0700311 LOG(FATAL) << "Failed precondition: CanGenerateRange()";
312 }
313 return taken_test;
314}
315
316bool InductionVarRange::CanGenerateLastValue(HInstruction* instruction) {
317 bool is_last_value = true;
318 int64_t stride_value = 0;
319 bool needs_finite_test = false;
320 bool needs_taken_test = false;
Aart Bik9abf8942016-10-14 09:49:42 -0700321 return GenerateRangeOrLastValue(instruction,
322 instruction,
323 is_last_value,
324 nullptr,
325 nullptr,
326 nullptr,
327 nullptr,
328 nullptr, // nothing generated yet
329 &stride_value,
330 &needs_finite_test,
331 &needs_taken_test)
Aart Bik16d3a652016-09-09 10:33:50 -0700332 && !needs_finite_test && !needs_taken_test;
333}
334
335HInstruction* InductionVarRange::GenerateLastValue(HInstruction* instruction,
336 HGraph* graph,
337 HBasicBlock* block) {
338 HInstruction* last_value = nullptr;
339 bool is_last_value = true;
340 int64_t stride_value = 0;
341 bool b1, b2; // unused
Aart Bik9abf8942016-10-14 09:49:42 -0700342 if (!GenerateRangeOrLastValue(instruction,
343 instruction,
344 is_last_value,
345 graph,
346 block,
347 &last_value,
348 &last_value,
349 nullptr,
350 &stride_value,
351 &b1,
352 &b2)) {
Aart Bik16d3a652016-09-09 10:33:50 -0700353 LOG(FATAL) << "Failed precondition: CanGenerateLastValue()";
354 }
355 return last_value;
356}
357
358void InductionVarRange::Replace(HInstruction* instruction,
359 HInstruction* fetch,
360 HInstruction* replacement) {
361 for (HLoopInformation* lp = instruction->GetBlock()->GetLoopInformation(); // closest enveloping loop
362 lp != nullptr;
363 lp = lp->GetPreHeader()->GetLoopInformation()) {
Aart Bik009cace2016-09-16 10:15:19 -0700364 // Update instruction's information.
Aart Bik16d3a652016-09-09 10:33:50 -0700365 ReplaceInduction(induction_analysis_->LookupInfo(lp, instruction), fetch, replacement);
Aart Bik009cace2016-09-16 10:15:19 -0700366 // Update loop's trip-count information.
367 ReplaceInduction(induction_analysis_->LookupInfo(lp, GetLoopControl(lp)), fetch, replacement);
Aart Bik389b3db2015-10-28 14:23:40 -0700368 }
Aart Bikaec3cce2015-10-14 17:44:55 -0700369}
370
Aart Bik9abf8942016-10-14 09:49:42 -0700371bool InductionVarRange::IsFinite(HLoopInformation* loop) const {
372 HInductionVarAnalysis::InductionInfo *trip =
373 induction_analysis_->LookupInfo(loop, GetLoopControl(loop));
374 return trip != nullptr && !IsUnsafeTripCount(trip);
375}
376
Aart Bikd14c5952015-09-08 15:25:15 -0700377//
378// Private class methods.
379//
380
Aart Bik97412c922016-02-19 20:14:38 -0800381bool InductionVarRange::IsConstant(HInductionVarAnalysis::InductionInfo* info,
382 ConstantRequest request,
Aart Bik52be7e72016-06-23 11:20:41 -0700383 /*out*/ int64_t* value) const {
Aart Bik97412c922016-02-19 20:14:38 -0800384 if (info != nullptr) {
385 // A direct 32-bit or 64-bit constant fetch. This immediately satisfies
386 // any of the three requests (kExact, kAtMost, and KAtLeast).
387 if (info->induction_class == HInductionVarAnalysis::kInvariant &&
388 info->operation == HInductionVarAnalysis::kFetch) {
389 if (IsIntAndGet(info->fetch, value)) {
390 return true;
391 }
392 }
Aart Bik40fbf742016-10-31 11:02:50 -0700393 // Try range analysis on the invariant, only accept a proper range
394 // to avoid arithmetic wrap-around anomalies.
Aart Bik52be7e72016-06-23 11:20:41 -0700395 Value min_val = GetVal(info, nullptr, /* in_body */ true, /* is_min */ true);
396 Value max_val = GetVal(info, nullptr, /* in_body */ true, /* is_min */ false);
397 if (IsConstantValue(min_val) &&
398 IsConstantValue(max_val) && min_val.b_constant <= max_val.b_constant) {
399 if ((request == kExact && min_val.b_constant == max_val.b_constant) || request == kAtMost) {
400 *value = max_val.b_constant;
401 return true;
402 } else if (request == kAtLeast) {
403 *value = min_val.b_constant;
Aart Bik358af832016-02-24 14:17:53 -0800404 return true;
405 }
406 }
Aart Bik97412c922016-02-19 20:14:38 -0800407 }
408 return false;
409}
410
Aart Bik52be7e72016-06-23 11:20:41 -0700411bool InductionVarRange::HasInductionInfo(
412 HInstruction* context,
413 HInstruction* instruction,
414 /*out*/ HLoopInformation** loop,
415 /*out*/ HInductionVarAnalysis::InductionInfo** info,
416 /*out*/ HInductionVarAnalysis::InductionInfo** trip) const {
Aart Bikc071a012016-12-01 10:22:31 -0800417 DCHECK(context != nullptr);
418 DCHECK(context->GetBlock() != nullptr);
Aart Bik009cace2016-09-16 10:15:19 -0700419 HLoopInformation* lp = context->GetBlock()->GetLoopInformation(); // closest enveloping loop
420 if (lp != nullptr) {
421 HInductionVarAnalysis::InductionInfo* i = induction_analysis_->LookupInfo(lp, instruction);
Aart Bik52be7e72016-06-23 11:20:41 -0700422 if (i != nullptr) {
Aart Bik009cace2016-09-16 10:15:19 -0700423 *loop = lp;
Aart Bik52be7e72016-06-23 11:20:41 -0700424 *info = i;
Aart Bik009cace2016-09-16 10:15:19 -0700425 *trip = induction_analysis_->LookupInfo(lp, GetLoopControl(lp));
Aart Bik52be7e72016-06-23 11:20:41 -0700426 return true;
427 }
428 }
429 return false;
430}
431
432bool InductionVarRange::IsWellBehavedTripCount(HInductionVarAnalysis::InductionInfo* trip) const {
433 if (trip != nullptr) {
434 // Both bounds that define a trip-count are well-behaved if they either are not defined
435 // in any loop, or are contained in a proper interval. This allows finding the min/max
436 // of an expression by chasing outward.
437 InductionVarRange range(induction_analysis_);
438 HInductionVarAnalysis::InductionInfo* lower = trip->op_b->op_a;
439 HInductionVarAnalysis::InductionInfo* upper = trip->op_b->op_b;
440 int64_t not_used = 0;
441 return (!HasFetchInLoop(lower) || range.IsConstant(lower, kAtLeast, &not_used)) &&
442 (!HasFetchInLoop(upper) || range.IsConstant(upper, kAtLeast, &not_used));
443 }
444 return true;
445}
446
447bool InductionVarRange::HasFetchInLoop(HInductionVarAnalysis::InductionInfo* info) const {
448 if (info != nullptr) {
449 if (info->induction_class == HInductionVarAnalysis::kInvariant &&
450 info->operation == HInductionVarAnalysis::kFetch) {
451 return info->fetch->GetBlock()->GetLoopInformation() != nullptr;
452 }
453 return HasFetchInLoop(info->op_a) || HasFetchInLoop(info->op_b);
454 }
455 return false;
456}
457
Aart Bik16d3a652016-09-09 10:33:50 -0700458bool InductionVarRange::NeedsTripCount(HInductionVarAnalysis::InductionInfo* info,
459 int64_t* stride_value) const {
Aart Bik389b3db2015-10-28 14:23:40 -0700460 if (info != nullptr) {
461 if (info->induction_class == HInductionVarAnalysis::kLinear) {
Aart Bik16d3a652016-09-09 10:33:50 -0700462 return IsConstant(info->op_a, kExact, stride_value);
Aart Bikdf7822e2016-12-06 10:05:30 -0800463 } else if (info->induction_class == HInductionVarAnalysis::kPolynomial) {
464 return NeedsTripCount(info->op_a, stride_value);
Aart Bik389b3db2015-10-28 14:23:40 -0700465 } else if (info->induction_class == HInductionVarAnalysis::kWrapAround) {
Aart Bik16d3a652016-09-09 10:33:50 -0700466 return NeedsTripCount(info->op_b, stride_value);
Aart Bik389b3db2015-10-28 14:23:40 -0700467 }
Aart Bikd14c5952015-09-08 15:25:15 -0700468 }
Aart Bik389b3db2015-10-28 14:23:40 -0700469 return false;
470}
471
Aart Bik7d57d7f2015-12-09 14:39:48 -0800472bool InductionVarRange::IsBodyTripCount(HInductionVarAnalysis::InductionInfo* trip) const {
Aart Bik389b3db2015-10-28 14:23:40 -0700473 if (trip != nullptr) {
474 if (trip->induction_class == HInductionVarAnalysis::kInvariant) {
475 return trip->operation == HInductionVarAnalysis::kTripCountInBody ||
476 trip->operation == HInductionVarAnalysis::kTripCountInBodyUnsafe;
477 }
478 }
479 return false;
480}
481
Aart Bik7d57d7f2015-12-09 14:39:48 -0800482bool InductionVarRange::IsUnsafeTripCount(HInductionVarAnalysis::InductionInfo* trip) const {
Aart Bik389b3db2015-10-28 14:23:40 -0700483 if (trip != nullptr) {
484 if (trip->induction_class == HInductionVarAnalysis::kInvariant) {
485 return trip->operation == HInductionVarAnalysis::kTripCountInBodyUnsafe ||
486 trip->operation == HInductionVarAnalysis::kTripCountInLoopUnsafe;
487 }
488 }
489 return false;
Aart Bikd14c5952015-09-08 15:25:15 -0700490}
491
Aart Bik7d57d7f2015-12-09 14:39:48 -0800492InductionVarRange::Value InductionVarRange::GetLinear(HInductionVarAnalysis::InductionInfo* info,
493 HInductionVarAnalysis::InductionInfo* trip,
494 bool in_body,
495 bool is_min) const {
Aart Bikc071a012016-12-01 10:22:31 -0800496 DCHECK(info != nullptr);
Aart Bikdf7822e2016-12-06 10:05:30 -0800497 DCHECK_EQ(info->induction_class, HInductionVarAnalysis::kLinear);
Aart Bik52be7e72016-06-23 11:20:41 -0700498 // Detect common situation where an offset inside the trip-count cancels out during range
Aart Bik7d57d7f2015-12-09 14:39:48 -0800499 // analysis (finding max a * (TC - 1) + OFFSET for a == 1 and TC = UPPER - OFFSET or finding
500 // min a * (TC - 1) + OFFSET for a == -1 and TC = OFFSET - UPPER) to avoid losing information
501 // with intermediate results that only incorporate single instructions.
502 if (trip != nullptr) {
503 HInductionVarAnalysis::InductionInfo* trip_expr = trip->op_a;
Aart Bik52be7e72016-06-23 11:20:41 -0700504 if (trip_expr->type == info->type && trip_expr->operation == HInductionVarAnalysis::kSub) {
Aart Bik97412c922016-02-19 20:14:38 -0800505 int64_t stride_value = 0;
506 if (IsConstant(info->op_a, kExact, &stride_value)) {
Aart Bik7d57d7f2015-12-09 14:39:48 -0800507 if (!is_min && stride_value == 1) {
Aart Bik97412c922016-02-19 20:14:38 -0800508 // Test original trip's negative operand (trip_expr->op_b) against offset of induction.
Aart Bik7d57d7f2015-12-09 14:39:48 -0800509 if (HInductionVarAnalysis::InductionEqual(trip_expr->op_b, info->op_b)) {
510 // Analyze cancelled trip with just the positive operand (trip_expr->op_a).
511 HInductionVarAnalysis::InductionInfo cancelled_trip(
Aart Bik0d345cf2016-03-16 10:49:38 -0700512 trip->induction_class,
513 trip->operation,
514 trip_expr->op_a,
515 trip->op_b,
516 nullptr,
517 trip->type);
Aart Bik7d57d7f2015-12-09 14:39:48 -0800518 return GetVal(&cancelled_trip, trip, in_body, is_min);
519 }
520 } else if (is_min && stride_value == -1) {
Aart Bik97412c922016-02-19 20:14:38 -0800521 // Test original trip's positive operand (trip_expr->op_a) against offset of induction.
Aart Bik7d57d7f2015-12-09 14:39:48 -0800522 if (HInductionVarAnalysis::InductionEqual(trip_expr->op_a, info->op_b)) {
523 // Analyze cancelled trip with just the negative operand (trip_expr->op_b).
524 HInductionVarAnalysis::InductionInfo neg(
525 HInductionVarAnalysis::kInvariant,
526 HInductionVarAnalysis::kNeg,
527 nullptr,
528 trip_expr->op_b,
Aart Bik0d345cf2016-03-16 10:49:38 -0700529 nullptr,
530 trip->type);
Aart Bik7d57d7f2015-12-09 14:39:48 -0800531 HInductionVarAnalysis::InductionInfo cancelled_trip(
Aart Bik0d345cf2016-03-16 10:49:38 -0700532 trip->induction_class, trip->operation, &neg, trip->op_b, nullptr, trip->type);
Aart Bik7d57d7f2015-12-09 14:39:48 -0800533 return SubValue(Value(0), GetVal(&cancelled_trip, trip, in_body, !is_min));
534 }
535 }
536 }
537 }
538 }
539 // General rule of linear induction a * i + b, for normalized 0 <= i < TC.
540 return AddValue(GetMul(info->op_a, trip, trip, in_body, is_min),
541 GetVal(info->op_b, trip, in_body, is_min));
542}
543
Aart Bikdf7822e2016-12-06 10:05:30 -0800544InductionVarRange::Value InductionVarRange::GetPolynomial(HInductionVarAnalysis::InductionInfo* info,
545 HInductionVarAnalysis::InductionInfo* trip,
546 bool in_body,
547 bool is_min) const {
548 DCHECK(info != nullptr);
549 DCHECK_EQ(info->induction_class, HInductionVarAnalysis::kPolynomial);
550 int64_t a = 0;
551 int64_t b = 0;
552 if (IsConstant(info->op_a->op_a, kExact, &a) && CanLongValueFitIntoInt(a) && a >= 0 &&
553 IsConstant(info->op_a->op_b, kExact, &b) && CanLongValueFitIntoInt(b) && b >= 0) {
554 // Evaluate bounds on sum_i=0^m-1(a * i + b) + c with a,b >= 0 for known
555 // maximum index value m as a * (m * (m-1)) / 2 + b * m + c.
556 Value c = GetVal(info->op_b, trip, in_body, is_min);
557 if (is_min) {
558 return c;
559 } else {
560 Value m = GetVal(trip, trip, in_body, is_min);
561 Value t = DivValue(MulValue(m, SubValue(m, Value(1))), Value(2));
562 Value x = MulValue(Value(a), t);
563 Value y = MulValue(Value(b), m);
564 return AddValue(AddValue(x, y), c);
565 }
566 }
567 return Value();
568}
569
Aart Bikc071a012016-12-01 10:22:31 -0800570InductionVarRange::Value InductionVarRange::GetGeometric(HInductionVarAnalysis::InductionInfo* info,
571 HInductionVarAnalysis::InductionInfo* trip,
572 bool in_body,
573 bool is_min) const {
574 DCHECK(info != nullptr);
Aart Bikdf7822e2016-12-06 10:05:30 -0800575 DCHECK_EQ(info->induction_class, HInductionVarAnalysis::kGeometric);
Aart Bikc071a012016-12-01 10:22:31 -0800576 int64_t a = 0;
577 int64_t f = 0;
578 if (IsConstant(info->op_a, kExact, &a) &&
579 CanLongValueFitIntoInt(a) &&
Aart Bikdf7822e2016-12-06 10:05:30 -0800580 IsIntAndGet(info->fetch, &f) && f >= 1) {
581 // Conservative bounds on a * f^-i + b with f >= 1 can be computed without
582 // trip count. Other forms would require a much more elaborate evaluation.
Aart Bikc071a012016-12-01 10:22:31 -0800583 const bool is_min_a = a >= 0 ? is_min : !is_min;
584 if (info->operation == HInductionVarAnalysis::kDiv) {
Aart Bikdf7822e2016-12-06 10:05:30 -0800585 Value b = GetVal(info->op_b, trip, in_body, is_min);
586 return is_min_a ? b : AddValue(Value(a), b);
Aart Bikc071a012016-12-01 10:22:31 -0800587 }
588 }
589 return Value();
590}
591
Aart Bikd14c5952015-09-08 15:25:15 -0700592InductionVarRange::Value InductionVarRange::GetFetch(HInstruction* instruction,
Aart Bik22af3be2015-09-10 12:50:58 -0700593 HInductionVarAnalysis::InductionInfo* trip,
Aart Bik9401f532015-09-28 16:25:56 -0700594 bool in_body,
Aart Bik7d57d7f2015-12-09 14:39:48 -0800595 bool is_min) const {
Aart Bik40fbf742016-10-31 11:02:50 -0700596 // Special case when chasing constants: single instruction that denotes trip count in the
597 // loop-body is minimal 1 and maximal, with safe trip-count, max int,
598 if (chase_hint_ == nullptr && in_body && trip != nullptr && instruction == trip->op_a->fetch) {
Aart Bik52be7e72016-06-23 11:20:41 -0700599 if (is_min) {
600 return Value(1);
Aart Bikdf7822e2016-12-06 10:05:30 -0800601 } else if (!instruction->IsConstant() && !IsUnsafeTripCount(trip)) {
Aart Bik52be7e72016-06-23 11:20:41 -0700602 return Value(std::numeric_limits<int32_t>::max());
603 }
604 }
Aart Bik40fbf742016-10-31 11:02:50 -0700605 // Unless at a constant or hint, chase the instruction a bit deeper into the HIR tree, so that
606 // it becomes more likely range analysis will compare the same instructions as terminal nodes.
607 int64_t value;
608 if (IsIntAndGet(instruction, &value) && CanLongValueFitIntoInt(value)) {
609 // Proper constant reveals best information.
610 return Value(static_cast<int32_t>(value));
611 } else if (instruction == chase_hint_) {
612 // At hint, fetch is represented by itself.
613 return Value(instruction, 1, 0);
614 } else if (instruction->IsAdd()) {
615 // Incorporate suitable constants in the chased value.
Aart Bik97412c922016-02-19 20:14:38 -0800616 if (IsIntAndGet(instruction->InputAt(0), &value) && CanLongValueFitIntoInt(value)) {
617 return AddValue(Value(static_cast<int32_t>(value)),
618 GetFetch(instruction->InputAt(1), trip, in_body, is_min));
619 } else if (IsIntAndGet(instruction->InputAt(1), &value) && CanLongValueFitIntoInt(value)) {
620 return AddValue(GetFetch(instruction->InputAt(0), trip, in_body, is_min),
621 Value(static_cast<int32_t>(value)));
Aart Bik22af3be2015-09-10 12:50:58 -0700622 }
Aart Bik52be7e72016-06-23 11:20:41 -0700623 } else if (instruction->IsArrayLength()) {
Aart Bik40fbf742016-10-31 11:02:50 -0700624 // Exploit length properties when chasing constants or chase into a new array declaration.
Aart Bik52be7e72016-06-23 11:20:41 -0700625 if (chase_hint_ == nullptr) {
626 return is_min ? Value(0) : Value(std::numeric_limits<int32_t>::max());
627 } else if (instruction->InputAt(0)->IsNewArray()) {
628 return GetFetch(instruction->InputAt(0)->InputAt(0), trip, in_body, is_min);
629 }
Aart Bik0d345cf2016-03-16 10:49:38 -0700630 } else if (instruction->IsTypeConversion()) {
Aart Bik40fbf742016-10-31 11:02:50 -0700631 // Since analysis is 32-bit (or narrower), chase beyond widening along the path.
Aart Bik0d345cf2016-03-16 10:49:38 -0700632 if (instruction->AsTypeConversion()->GetInputType() == Primitive::kPrimInt &&
633 instruction->AsTypeConversion()->GetResultType() == Primitive::kPrimLong) {
634 return GetFetch(instruction->InputAt(0), trip, in_body, is_min);
635 }
Aart Bik52be7e72016-06-23 11:20:41 -0700636 }
637 // Chase an invariant fetch that is defined by an outer loop if the trip-count used
638 // so far is well-behaved in both bounds and the next trip-count is safe.
639 // Example:
640 // for (int i = 0; i <= 100; i++) // safe
641 // for (int j = 0; j <= i; j++) // well-behaved
642 // j is in range [0, i ] (if i is chase hint)
643 // or in range [0, 100] (otherwise)
644 HLoopInformation* next_loop = nullptr;
645 HInductionVarAnalysis::InductionInfo* next_info = nullptr;
646 HInductionVarAnalysis::InductionInfo* next_trip = nullptr;
647 bool next_in_body = true; // inner loop is always in body of outer loop
648 if (HasInductionInfo(instruction, instruction, &next_loop, &next_info, &next_trip) &&
649 IsWellBehavedTripCount(trip) &&
650 !IsUnsafeTripCount(next_trip)) {
651 return GetVal(next_info, next_trip, next_in_body, is_min);
Aart Bikd14c5952015-09-08 15:25:15 -0700652 }
Aart Bik40fbf742016-10-31 11:02:50 -0700653 // Fetch is represented by itself.
Aart Bikd14c5952015-09-08 15:25:15 -0700654 return Value(instruction, 1, 0);
655}
656
Aart Bikcd26feb2015-09-23 17:50:50 -0700657InductionVarRange::Value InductionVarRange::GetVal(HInductionVarAnalysis::InductionInfo* info,
658 HInductionVarAnalysis::InductionInfo* trip,
Aart Bik9401f532015-09-28 16:25:56 -0700659 bool in_body,
Aart Bik7d57d7f2015-12-09 14:39:48 -0800660 bool is_min) const {
Aart Bikd14c5952015-09-08 15:25:15 -0700661 if (info != nullptr) {
662 switch (info->induction_class) {
663 case HInductionVarAnalysis::kInvariant:
664 // Invariants.
665 switch (info->operation) {
Aart Bikd14c5952015-09-08 15:25:15 -0700666 case HInductionVarAnalysis::kAdd:
Aart Bik9401f532015-09-28 16:25:56 -0700667 return AddValue(GetVal(info->op_a, trip, in_body, is_min),
668 GetVal(info->op_b, trip, in_body, is_min));
Aart Bikcd26feb2015-09-23 17:50:50 -0700669 case HInductionVarAnalysis::kSub: // second reversed!
Aart Bik9401f532015-09-28 16:25:56 -0700670 return SubValue(GetVal(info->op_a, trip, in_body, is_min),
671 GetVal(info->op_b, trip, in_body, !is_min));
Aart Bikcd26feb2015-09-23 17:50:50 -0700672 case HInductionVarAnalysis::kNeg: // second reversed!
673 return SubValue(Value(0),
Aart Bik9401f532015-09-28 16:25:56 -0700674 GetVal(info->op_b, trip, in_body, !is_min));
Aart Bikd14c5952015-09-08 15:25:15 -0700675 case HInductionVarAnalysis::kMul:
Aart Bik9401f532015-09-28 16:25:56 -0700676 return GetMul(info->op_a, info->op_b, trip, in_body, is_min);
Aart Bikd14c5952015-09-08 15:25:15 -0700677 case HInductionVarAnalysis::kDiv:
Aart Bik9401f532015-09-28 16:25:56 -0700678 return GetDiv(info->op_a, info->op_b, trip, in_body, is_min);
Aart Bikdf7822e2016-12-06 10:05:30 -0800679 case HInductionVarAnalysis::kRem:
680 return GetRem(info->op_a, info->op_b);
Aart Bik7dc96932016-10-12 10:01:05 -0700681 case HInductionVarAnalysis::kXor:
682 return GetXor(info->op_a, info->op_b);
Aart Bikd14c5952015-09-08 15:25:15 -0700683 case HInductionVarAnalysis::kFetch:
Aart Bik9401f532015-09-28 16:25:56 -0700684 return GetFetch(info->fetch, trip, in_body, is_min);
685 case HInductionVarAnalysis::kTripCountInLoop:
Aart Bik389b3db2015-10-28 14:23:40 -0700686 case HInductionVarAnalysis::kTripCountInLoopUnsafe:
Aart Bikaec3cce2015-10-14 17:44:55 -0700687 if (!in_body && !is_min) { // one extra!
Aart Bik22f05872015-10-27 15:56:28 -0700688 return GetVal(info->op_a, trip, in_body, is_min);
Aart Bik9401f532015-09-28 16:25:56 -0700689 }
690 FALLTHROUGH_INTENDED;
691 case HInductionVarAnalysis::kTripCountInBody:
Aart Bik389b3db2015-10-28 14:23:40 -0700692 case HInductionVarAnalysis::kTripCountInBodyUnsafe:
Aart Bikaec3cce2015-10-14 17:44:55 -0700693 if (is_min) {
694 return Value(0);
695 } else if (in_body) {
Aart Bik22f05872015-10-27 15:56:28 -0700696 return SubValue(GetVal(info->op_a, trip, in_body, is_min), Value(1));
Aart Bik9401f532015-09-28 16:25:56 -0700697 }
698 break;
699 default:
700 break;
Aart Bikd14c5952015-09-08 15:25:15 -0700701 }
702 break;
Aart Bik52be7e72016-06-23 11:20:41 -0700703 case HInductionVarAnalysis::kLinear:
Aart Bik0d345cf2016-03-16 10:49:38 -0700704 return CorrectForType(GetLinear(info, trip, in_body, is_min), info->type);
Aart Bikc071a012016-12-01 10:22:31 -0800705 case HInductionVarAnalysis::kPolynomial:
Aart Bikdf7822e2016-12-06 10:05:30 -0800706 return GetPolynomial(info, trip, in_body, is_min);
Aart Bikc071a012016-12-01 10:22:31 -0800707 case HInductionVarAnalysis::kGeometric:
708 return GetGeometric(info, trip, in_body, is_min);
Aart Bikd14c5952015-09-08 15:25:15 -0700709 case HInductionVarAnalysis::kWrapAround:
710 case HInductionVarAnalysis::kPeriodic:
Aart Bik9401f532015-09-28 16:25:56 -0700711 return MergeVal(GetVal(info->op_a, trip, in_body, is_min),
712 GetVal(info->op_b, trip, in_body, is_min), is_min);
Aart Bikd14c5952015-09-08 15:25:15 -0700713 }
714 }
Aart Bikb3365e02015-09-21 14:45:05 -0700715 return Value();
Aart Bikd14c5952015-09-08 15:25:15 -0700716}
717
718InductionVarRange::Value InductionVarRange::GetMul(HInductionVarAnalysis::InductionInfo* info1,
719 HInductionVarAnalysis::InductionInfo* info2,
720 HInductionVarAnalysis::InductionInfo* trip,
Aart Bik9401f532015-09-28 16:25:56 -0700721 bool in_body,
Aart Bik7d57d7f2015-12-09 14:39:48 -0800722 bool is_min) const {
Aart Bik52be7e72016-06-23 11:20:41 -0700723 // Constant times range.
724 int64_t value = 0;
725 if (IsConstant(info1, kExact, &value)) {
726 return MulRangeAndConstant(value, info2, trip, in_body, is_min);
727 } else if (IsConstant(info2, kExact, &value)) {
728 return MulRangeAndConstant(value, info1, trip, in_body, is_min);
729 }
730 // Interval ranges.
Aart Bik9401f532015-09-28 16:25:56 -0700731 Value v1_min = GetVal(info1, trip, in_body, /* is_min */ true);
732 Value v1_max = GetVal(info1, trip, in_body, /* is_min */ false);
733 Value v2_min = GetVal(info2, trip, in_body, /* is_min */ true);
734 Value v2_max = GetVal(info2, trip, in_body, /* is_min */ false);
Aart Bik97412c922016-02-19 20:14:38 -0800735 // Positive range vs. positive or negative range.
736 if (IsConstantValue(v1_min) && v1_min.b_constant >= 0) {
737 if (IsConstantValue(v2_min) && v2_min.b_constant >= 0) {
738 return is_min ? MulValue(v1_min, v2_min) : MulValue(v1_max, v2_max);
739 } else if (IsConstantValue(v2_max) && v2_max.b_constant <= 0) {
740 return is_min ? MulValue(v1_max, v2_min) : MulValue(v1_min, v2_max);
Aart Bikd14c5952015-09-08 15:25:15 -0700741 }
Aart Bik97412c922016-02-19 20:14:38 -0800742 }
743 // Negative range vs. positive or negative range.
744 if (IsConstantValue(v1_max) && v1_max.b_constant <= 0) {
745 if (IsConstantValue(v2_min) && v2_min.b_constant >= 0) {
746 return is_min ? MulValue(v1_min, v2_max) : MulValue(v1_max, v2_min);
747 } else if (IsConstantValue(v2_max) && v2_max.b_constant <= 0) {
748 return is_min ? MulValue(v1_max, v2_max) : MulValue(v1_min, v2_min);
Aart Bikd14c5952015-09-08 15:25:15 -0700749 }
750 }
Aart Bikb3365e02015-09-21 14:45:05 -0700751 return Value();
Aart Bikd14c5952015-09-08 15:25:15 -0700752}
753
754InductionVarRange::Value InductionVarRange::GetDiv(HInductionVarAnalysis::InductionInfo* info1,
755 HInductionVarAnalysis::InductionInfo* info2,
756 HInductionVarAnalysis::InductionInfo* trip,
Aart Bik9401f532015-09-28 16:25:56 -0700757 bool in_body,
Aart Bik7d57d7f2015-12-09 14:39:48 -0800758 bool is_min) const {
Aart Bik52be7e72016-06-23 11:20:41 -0700759 // Range divided by constant.
760 int64_t value = 0;
761 if (IsConstant(info2, kExact, &value)) {
762 return DivRangeAndConstant(value, info1, trip, in_body, is_min);
763 }
764 // Interval ranges.
Aart Bik9401f532015-09-28 16:25:56 -0700765 Value v1_min = GetVal(info1, trip, in_body, /* is_min */ true);
766 Value v1_max = GetVal(info1, trip, in_body, /* is_min */ false);
767 Value v2_min = GetVal(info2, trip, in_body, /* is_min */ true);
768 Value v2_max = GetVal(info2, trip, in_body, /* is_min */ false);
Aart Bik97412c922016-02-19 20:14:38 -0800769 // Positive range vs. positive or negative range.
770 if (IsConstantValue(v1_min) && v1_min.b_constant >= 0) {
771 if (IsConstantValue(v2_min) && v2_min.b_constant >= 0) {
772 return is_min ? DivValue(v1_min, v2_max) : DivValue(v1_max, v2_min);
773 } else if (IsConstantValue(v2_max) && v2_max.b_constant <= 0) {
774 return is_min ? DivValue(v1_max, v2_max) : DivValue(v1_min, v2_min);
Aart Bikd14c5952015-09-08 15:25:15 -0700775 }
Aart Bik97412c922016-02-19 20:14:38 -0800776 }
777 // Negative range vs. positive or negative range.
778 if (IsConstantValue(v1_max) && v1_max.b_constant <= 0) {
779 if (IsConstantValue(v2_min) && v2_min.b_constant >= 0) {
780 return is_min ? DivValue(v1_min, v2_min) : DivValue(v1_max, v2_max);
781 } else if (IsConstantValue(v2_max) && v2_max.b_constant <= 0) {
782 return is_min ? DivValue(v1_max, v2_min) : DivValue(v1_min, v2_max);
Aart Bikd14c5952015-09-08 15:25:15 -0700783 }
784 }
Aart Bikb3365e02015-09-21 14:45:05 -0700785 return Value();
Aart Bikd14c5952015-09-08 15:25:15 -0700786}
787
Aart Bikdf7822e2016-12-06 10:05:30 -0800788InductionVarRange::Value InductionVarRange::GetRem(
789 HInductionVarAnalysis::InductionInfo* info1,
790 HInductionVarAnalysis::InductionInfo* info2) const {
791 int64_t v1 = 0;
792 int64_t v2 = 0;
793 // Only accept exact values.
794 if (IsConstant(info1, kExact, &v1) && IsConstant(info2, kExact, &v2) && v2 != 0) {
795 int64_t value = v1 % v2;
796 if (CanLongValueFitIntoInt(value)) {
797 return Value(static_cast<int32_t>(value));
798 }
799 }
800 return Value();
801}
802
Aart Bik7dc96932016-10-12 10:01:05 -0700803InductionVarRange::Value InductionVarRange::GetXor(
804 HInductionVarAnalysis::InductionInfo* info1,
805 HInductionVarAnalysis::InductionInfo* info2) const {
806 int64_t v1 = 0;
807 int64_t v2 = 0;
808 // Only accept exact values.
809 if (IsConstant(info1, kExact, &v1) && IsConstant(info2, kExact, &v2)) {
810 int64_t value = v1 ^ v2;
811 if (CanLongValueFitIntoInt(value)) {
812 return Value(static_cast<int32_t>(value));
813 }
814 }
815 return Value();
816}
817
Aart Bik52be7e72016-06-23 11:20:41 -0700818InductionVarRange::Value InductionVarRange::MulRangeAndConstant(
819 int64_t value,
820 HInductionVarAnalysis::InductionInfo* info,
821 HInductionVarAnalysis::InductionInfo* trip,
822 bool in_body,
823 bool is_min) const {
824 if (CanLongValueFitIntoInt(value)) {
825 Value c(static_cast<int32_t>(value));
826 return MulValue(GetVal(info, trip, in_body, is_min == value >= 0), c);
827 }
828 return Value();
Aart Bik97412c922016-02-19 20:14:38 -0800829}
830
Aart Bik52be7e72016-06-23 11:20:41 -0700831InductionVarRange::Value InductionVarRange::DivRangeAndConstant(
832 int64_t value,
833 HInductionVarAnalysis::InductionInfo* info,
834 HInductionVarAnalysis::InductionInfo* trip,
835 bool in_body,
836 bool is_min) const {
837 if (CanLongValueFitIntoInt(value)) {
838 Value c(static_cast<int32_t>(value));
839 return DivValue(GetVal(info, trip, in_body, is_min == value >= 0), c);
840 }
841 return Value();
Aart Bik9401f532015-09-28 16:25:56 -0700842}
843
Aart Bik7d57d7f2015-12-09 14:39:48 -0800844InductionVarRange::Value InductionVarRange::AddValue(Value v1, Value v2) const {
Aart Bikb3365e02015-09-21 14:45:05 -0700845 if (v1.is_known && v2.is_known && IsSafeAdd(v1.b_constant, v2.b_constant)) {
Aart Bikd14c5952015-09-08 15:25:15 -0700846 const int32_t b = v1.b_constant + v2.b_constant;
847 if (v1.a_constant == 0) {
848 return Value(v2.instruction, v2.a_constant, b);
849 } else if (v2.a_constant == 0) {
850 return Value(v1.instruction, v1.a_constant, b);
851 } else if (v1.instruction == v2.instruction && IsSafeAdd(v1.a_constant, v2.a_constant)) {
852 return Value(v1.instruction, v1.a_constant + v2.a_constant, b);
853 }
854 }
Aart Bikb3365e02015-09-21 14:45:05 -0700855 return Value();
Aart Bikd14c5952015-09-08 15:25:15 -0700856}
857
Aart Bik7d57d7f2015-12-09 14:39:48 -0800858InductionVarRange::Value InductionVarRange::SubValue(Value v1, Value v2) const {
Aart Bikb3365e02015-09-21 14:45:05 -0700859 if (v1.is_known && v2.is_known && IsSafeSub(v1.b_constant, v2.b_constant)) {
Aart Bikd14c5952015-09-08 15:25:15 -0700860 const int32_t b = v1.b_constant - v2.b_constant;
861 if (v1.a_constant == 0 && IsSafeSub(0, v2.a_constant)) {
862 return Value(v2.instruction, -v2.a_constant, b);
863 } else if (v2.a_constant == 0) {
864 return Value(v1.instruction, v1.a_constant, b);
865 } else if (v1.instruction == v2.instruction && IsSafeSub(v1.a_constant, v2.a_constant)) {
866 return Value(v1.instruction, v1.a_constant - v2.a_constant, b);
867 }
868 }
Aart Bikb3365e02015-09-21 14:45:05 -0700869 return Value();
Aart Bikd14c5952015-09-08 15:25:15 -0700870}
871
Aart Bik7d57d7f2015-12-09 14:39:48 -0800872InductionVarRange::Value InductionVarRange::MulValue(Value v1, Value v2) const {
Aart Bikb3365e02015-09-21 14:45:05 -0700873 if (v1.is_known && v2.is_known) {
874 if (v1.a_constant == 0) {
875 if (IsSafeMul(v1.b_constant, v2.a_constant) && IsSafeMul(v1.b_constant, v2.b_constant)) {
876 return Value(v2.instruction, v1.b_constant * v2.a_constant, v1.b_constant * v2.b_constant);
877 }
878 } else if (v2.a_constant == 0) {
879 if (IsSafeMul(v1.a_constant, v2.b_constant) && IsSafeMul(v1.b_constant, v2.b_constant)) {
880 return Value(v1.instruction, v1.a_constant * v2.b_constant, v1.b_constant * v2.b_constant);
881 }
Aart Bikd14c5952015-09-08 15:25:15 -0700882 }
883 }
Aart Bikb3365e02015-09-21 14:45:05 -0700884 return Value();
Aart Bikd14c5952015-09-08 15:25:15 -0700885}
886
Aart Bik7d57d7f2015-12-09 14:39:48 -0800887InductionVarRange::Value InductionVarRange::DivValue(Value v1, Value v2) const {
Aart Bikb3365e02015-09-21 14:45:05 -0700888 if (v1.is_known && v2.is_known && v1.a_constant == 0 && v2.a_constant == 0) {
Aart Bikd14c5952015-09-08 15:25:15 -0700889 if (IsSafeDiv(v1.b_constant, v2.b_constant)) {
890 return Value(v1.b_constant / v2.b_constant);
891 }
892 }
Aart Bikb3365e02015-09-21 14:45:05 -0700893 return Value();
Aart Bikd14c5952015-09-08 15:25:15 -0700894}
895
Aart Bik7d57d7f2015-12-09 14:39:48 -0800896InductionVarRange::Value InductionVarRange::MergeVal(Value v1, Value v2, bool is_min) const {
Aart Bikb3365e02015-09-21 14:45:05 -0700897 if (v1.is_known && v2.is_known) {
898 if (v1.instruction == v2.instruction && v1.a_constant == v2.a_constant) {
Aart Bikcd26feb2015-09-23 17:50:50 -0700899 return Value(v1.instruction, v1.a_constant,
900 is_min ? std::min(v1.b_constant, v2.b_constant)
901 : std::max(v1.b_constant, v2.b_constant));
Aart Bikb3365e02015-09-21 14:45:05 -0700902 }
Aart Bikd14c5952015-09-08 15:25:15 -0700903 }
Aart Bikb3365e02015-09-21 14:45:05 -0700904 return Value();
Aart Bikd14c5952015-09-08 15:25:15 -0700905}
906
Aart Bik9abf8942016-10-14 09:49:42 -0700907bool InductionVarRange::GenerateRangeOrLastValue(HInstruction* context,
908 HInstruction* instruction,
909 bool is_last_value,
910 HGraph* graph,
911 HBasicBlock* block,
912 /*out*/HInstruction** lower,
913 /*out*/HInstruction** upper,
914 /*out*/HInstruction** taken_test,
915 /*out*/int64_t* stride_value,
916 /*out*/bool* needs_finite_test,
917 /*out*/bool* needs_taken_test) const {
Aart Bik52be7e72016-06-23 11:20:41 -0700918 HLoopInformation* loop = nullptr;
919 HInductionVarAnalysis::InductionInfo* info = nullptr;
920 HInductionVarAnalysis::InductionInfo* trip = nullptr;
921 if (!HasInductionInfo(context, instruction, &loop, &info, &trip) || trip == nullptr) {
922 return false; // codegen needs all information, including tripcount
Aart Bik97412c922016-02-19 20:14:38 -0800923 }
924 // Determine what tests are needed. A finite test is needed if the evaluation code uses the
925 // trip-count and the loop maybe unsafe (because in such cases, the index could "overshoot"
926 // the computed range). A taken test is needed for any unknown trip-count, even if evaluation
927 // code does not use the trip-count explicitly (since there could be an implicit relation
928 // between e.g. an invariant subscript and a not-taken condition).
Aart Bik52be7e72016-06-23 11:20:41 -0700929 bool in_body = context->GetBlock() != loop->GetHeader();
Aart Bik16d3a652016-09-09 10:33:50 -0700930 *stride_value = 0;
931 *needs_finite_test = NeedsTripCount(info, stride_value) && IsUnsafeTripCount(trip);
Aart Bik97412c922016-02-19 20:14:38 -0800932 *needs_taken_test = IsBodyTripCount(trip);
Aart Bik16d3a652016-09-09 10:33:50 -0700933 // Handle last value request.
934 if (is_last_value) {
Aart Bikc071a012016-12-01 10:22:31 -0800935 DCHECK(!in_body);
936 switch (info->induction_class) {
937 case HInductionVarAnalysis::kLinear:
938 if (*stride_value > 0) {
939 lower = nullptr;
940 } else {
941 upper = nullptr;
942 }
943 break;
Aart Bikdf7822e2016-12-06 10:05:30 -0800944 case HInductionVarAnalysis::kPolynomial:
945 return GenerateLastValuePolynomial(info, trip, graph, block, lower);
Aart Bikc071a012016-12-01 10:22:31 -0800946 case HInductionVarAnalysis::kGeometric:
947 return GenerateLastValueGeometric(info, trip, graph, block, lower);
Aart Bikdf7822e2016-12-06 10:05:30 -0800948 case HInductionVarAnalysis::kWrapAround:
949 return GenerateLastValueWrapAround(info, trip, graph, block, lower);
Aart Bikc071a012016-12-01 10:22:31 -0800950 case HInductionVarAnalysis::kPeriodic:
951 return GenerateLastValuePeriodic(info, trip, graph, block, lower, needs_taken_test);
952 default:
953 return false;
Aart Bik16d3a652016-09-09 10:33:50 -0700954 }
955 }
Aart Bik97412c922016-02-19 20:14:38 -0800956 // Code generation for taken test: generate the code when requested or otherwise analyze
957 // if code generation is feasible when taken test is needed.
958 if (taken_test != nullptr) {
959 return GenerateCode(trip->op_b, nullptr, graph, block, taken_test, in_body, /* is_min */ false);
960 } else if (*needs_taken_test) {
961 if (!GenerateCode(
962 trip->op_b, nullptr, nullptr, nullptr, nullptr, in_body, /* is_min */ false)) {
963 return false;
964 }
965 }
966 // Code generation for lower and upper.
967 return
968 // Success on lower if invariant (not set), or code can be generated.
969 ((info->induction_class == HInductionVarAnalysis::kInvariant) ||
970 GenerateCode(info, trip, graph, block, lower, in_body, /* is_min */ true)) &&
971 // And success on upper.
972 GenerateCode(info, trip, graph, block, upper, in_body, /* is_min */ false);
Aart Bikaec3cce2015-10-14 17:44:55 -0700973}
974
Aart Bikdf7822e2016-12-06 10:05:30 -0800975bool InductionVarRange::GenerateLastValuePolynomial(HInductionVarAnalysis::InductionInfo* info,
976 HInductionVarAnalysis::InductionInfo* trip,
977 HGraph* graph,
978 HBasicBlock* block,
979 /*out*/HInstruction** result) const {
980 DCHECK(info != nullptr);
981 DCHECK_EQ(info->induction_class, HInductionVarAnalysis::kPolynomial);
982 // Detect known coefficients and trip count (always taken).
983 int64_t a = 0;
984 int64_t b = 0;
985 int64_t m = 0;
Aart Bikd0a022d2016-12-13 11:22:31 -0800986 if (IsConstant(info->op_a->op_a, kExact, &a) &&
987 IsConstant(info->op_a->op_b, kExact, &b) &&
Aart Bikdf7822e2016-12-06 10:05:30 -0800988 IsConstant(trip->op_a, kExact, &m) && m >= 1) {
Aart Bikd0a022d2016-12-13 11:22:31 -0800989 // Evaluate bounds on sum_i=0^m-1(a * i + b) + c for known
Aart Bikdf7822e2016-12-06 10:05:30 -0800990 // maximum index value m as a * (m * (m-1)) / 2 + b * m + c.
991 // TODO: generalize
992 HInstruction* c_instr = nullptr;
993 if (GenerateCode(info->op_b, nullptr, graph, block, graph ? &c_instr : nullptr, false, false)) {
994 if (graph != nullptr) {
995 int64_t sum = a * ((m * (m - 1)) / 2) + b * m;
996 *result = Insert(block, new (graph->GetArena()) HAdd(info->type,
997 graph->GetIntConstant(sum), c_instr));
998 }
999 return true;
1000 }
1001 }
1002 return false;
1003}
1004
Aart Bikc071a012016-12-01 10:22:31 -08001005bool InductionVarRange::GenerateLastValueGeometric(HInductionVarAnalysis::InductionInfo* info,
1006 HInductionVarAnalysis::InductionInfo* trip,
1007 HGraph* graph,
1008 HBasicBlock* block,
1009 /*out*/HInstruction** result) const {
1010 DCHECK(info != nullptr);
Aart Bikdf7822e2016-12-06 10:05:30 -08001011 DCHECK_EQ(info->induction_class, HInductionVarAnalysis::kGeometric);
Aart Bikc071a012016-12-01 10:22:31 -08001012 // Detect known base and trip count (always taken).
1013 int64_t f = 0;
1014 int64_t t = 0;
1015 if (IsIntAndGet(info->fetch, &f) && f >= 1 && IsConstant(trip->op_a, kExact, &t) && t >= 1) {
1016 HInstruction* opa = nullptr;
1017 HInstruction* opb = nullptr;
1018 if (GenerateCode(info->op_a, nullptr, graph, block, &opa, false, false) &&
1019 GenerateCode(info->op_b, nullptr, graph, block, &opb, false, false)) {
Aart Bikc071a012016-12-01 10:22:31 -08001020 // Compute f ^ t.
1021 int64_t fpowt = IntPow(f, t);
1022 if (graph != nullptr) {
1023 DCHECK(info->type == Primitive::kPrimInt); // due to codegen, generalize?
1024 if (fpowt == 0) {
1025 // Special case: repeated mul/div always yields zero.
1026 *result = graph->GetIntConstant(0);
1027 } else if (info->operation == HInductionVarAnalysis::kMul) {
1028 // Last value multiplication: a * f ^ t + b.
1029 HInstruction* mul = Insert(block,
1030 new (graph->GetArena()) HMul(info->type,
1031 opa,
1032 graph->GetIntConstant(fpowt)));
1033 *result = Insert(block, new (graph->GetArena()) HAdd(info->type, mul, opb));
1034 } else {
1035 // Last value multiplication: a * f ^ -t + b.
1036 DCHECK_EQ(info->operation, HInductionVarAnalysis::kDiv);
1037 HInstruction* div = Insert(block,
1038 new (graph->GetArena()) HDiv(info->type,
1039 opa,
1040 graph->GetIntConstant(fpowt),
1041 kNoDexPc));
1042 *result = Insert(block, new (graph->GetArena()) HAdd(info->type, div, opb));
1043 }
1044 }
1045 return true;
1046 }
1047 }
1048 return false;
1049}
1050
Aart Bikdf7822e2016-12-06 10:05:30 -08001051bool InductionVarRange::GenerateLastValueWrapAround(HInductionVarAnalysis::InductionInfo* info,
1052 HInductionVarAnalysis::InductionInfo* trip,
1053 HGraph* graph,
1054 HBasicBlock* block,
1055 /*out*/HInstruction** result) const {
1056 DCHECK(info != nullptr);
1057 DCHECK_EQ(info->induction_class, HInductionVarAnalysis::kWrapAround);
1058 // Count depth.
1059 int32_t depth = 0;
1060 for (; info->induction_class == HInductionVarAnalysis::kWrapAround;
1061 info = info->op_b, ++depth) {}
1062 // Handle wrap(x, wrap(.., y)) if trip count reaches an invariant at end.
1063 // TODO: generalize
1064 int64_t t = 0;
1065 if (info->induction_class == HInductionVarAnalysis::kInvariant &&
1066 IsConstant(trip->op_a, kExact, &t) && t >= depth &&
1067 GenerateCode(info, nullptr, graph, block, result, false, false)) {
1068 return true;
1069 }
1070 return false;
1071}
1072
Aart Bik9abf8942016-10-14 09:49:42 -07001073bool InductionVarRange::GenerateLastValuePeriodic(HInductionVarAnalysis::InductionInfo* info,
1074 HInductionVarAnalysis::InductionInfo* trip,
1075 HGraph* graph,
1076 HBasicBlock* block,
1077 /*out*/HInstruction** result,
1078 /*out*/bool* needs_taken_test) const {
Aart Bikc071a012016-12-01 10:22:31 -08001079 DCHECK(info != nullptr);
Aart Bikdf7822e2016-12-06 10:05:30 -08001080 DCHECK_EQ(info->induction_class, HInductionVarAnalysis::kPeriodic);
Aart Bik9abf8942016-10-14 09:49:42 -07001081 // Count period.
1082 int32_t period = 1;
1083 for (HInductionVarAnalysis::InductionInfo* p = info;
1084 p->induction_class == HInductionVarAnalysis::kPeriodic;
1085 p = p->op_b, ++period) {}
1086 // Handle periodic(x, y) case for restricted types.
Aart Bikdf7822e2016-12-06 10:05:30 -08001087 // TODO: generalize
Aart Bik9abf8942016-10-14 09:49:42 -07001088 if (period != 2 ||
1089 trip->op_a->type != Primitive::kPrimInt ||
1090 (info->type != Primitive::kPrimInt && info->type != Primitive::kPrimBoolean)) {
Aart Bikdf7822e2016-12-06 10:05:30 -08001091 return false;
Aart Bik9abf8942016-10-14 09:49:42 -07001092 }
1093 HInstruction* x_instr = nullptr;
1094 HInstruction* y_instr = nullptr;
1095 HInstruction* trip_expr = nullptr;
1096 if (GenerateCode(info->op_a, nullptr, graph, block, graph ? &x_instr : nullptr, false, false) &&
1097 GenerateCode(info->op_b, nullptr, graph, block, graph ? &y_instr : nullptr, false, false) &&
1098 GenerateCode(trip->op_a, nullptr, graph, block, graph ? &trip_expr : nullptr, false, false)) {
1099 // During actual code generation (graph != nullptr),
1100 // generate is_even ? x : y select instruction.
1101 if (graph != nullptr) {
1102 HInstruction* is_even = Insert(block, new (graph->GetArena()) HEqual(
1103 Insert(block, new (graph->GetArena()) HAnd(
1104 Primitive::kPrimInt, trip_expr, graph->GetIntConstant(1))),
1105 graph->GetIntConstant(0), kNoDexPc));
1106 *result = Insert(block, new (graph->GetArena()) HSelect(is_even, x_instr, y_instr, kNoDexPc));
1107 }
1108 // Guard select with taken test if needed.
1109 if (*needs_taken_test) {
1110 HInstruction* taken_test = nullptr;
1111 if (!GenerateCode(
1112 trip->op_b, nullptr, graph, block, graph ? &taken_test : nullptr, false, false)) {
1113 return false;
1114 } else if (graph != nullptr) {
1115 *result = Insert(block,
1116 new (graph->GetArena()) HSelect(taken_test, *result, x_instr, kNoDexPc));
1117 }
1118 *needs_taken_test = false; // taken care of
1119 }
1120 return true;
1121 }
1122 return false;
1123}
1124
Aart Bikaec3cce2015-10-14 17:44:55 -07001125bool InductionVarRange::GenerateCode(HInductionVarAnalysis::InductionInfo* info,
1126 HInductionVarAnalysis::InductionInfo* trip,
1127 HGraph* graph, // when set, code is generated
1128 HBasicBlock* block,
1129 /*out*/HInstruction** result,
1130 bool in_body,
Aart Bik7d57d7f2015-12-09 14:39:48 -08001131 bool is_min) const {
Aart Bikaec3cce2015-10-14 17:44:55 -07001132 if (info != nullptr) {
Aart Bik16d3a652016-09-09 10:33:50 -07001133 // If during codegen, the result is not needed (nullptr), simply return success.
1134 if (graph != nullptr && result == nullptr) {
1135 return true;
1136 }
Aart Bik0d345cf2016-03-16 10:49:38 -07001137 // Verify type safety.
Aart Bikc071a012016-12-01 10:22:31 -08001138 // TODO: generalize
Aart Bikaec3cce2015-10-14 17:44:55 -07001139 Primitive::Type type = Primitive::kPrimInt;
Aart Bik639cc8c2016-10-18 13:03:31 -07001140 if (info->type != Primitive::kPrimInt && info->type != Primitive::kPrimBoolean) {
Aart Bik0d345cf2016-03-16 10:49:38 -07001141 return false;
1142 }
1143 // Handle current operation.
Aart Bikaec3cce2015-10-14 17:44:55 -07001144 HInstruction* opa = nullptr;
1145 HInstruction* opb = nullptr;
Aart Bikaec3cce2015-10-14 17:44:55 -07001146 switch (info->induction_class) {
1147 case HInductionVarAnalysis::kInvariant:
Aart Bik40fbf742016-10-31 11:02:50 -07001148 // Invariants (note that even though is_min does not impact code generation for
1149 // invariants, some effort is made to keep this parameter consistent).
Aart Bikaec3cce2015-10-14 17:44:55 -07001150 switch (info->operation) {
1151 case HInductionVarAnalysis::kAdd:
Aart Bikdf7822e2016-12-06 10:05:30 -08001152 case HInductionVarAnalysis::kRem: // no proper is_min for second arg
Aart Bik40fbf742016-10-31 11:02:50 -07001153 case HInductionVarAnalysis::kXor: // no proper is_min for second arg
Aart Bik389b3db2015-10-28 14:23:40 -07001154 case HInductionVarAnalysis::kLT:
1155 case HInductionVarAnalysis::kLE:
1156 case HInductionVarAnalysis::kGT:
1157 case HInductionVarAnalysis::kGE:
Aart Bikaec3cce2015-10-14 17:44:55 -07001158 if (GenerateCode(info->op_a, trip, graph, block, &opa, in_body, is_min) &&
1159 GenerateCode(info->op_b, trip, graph, block, &opb, in_body, is_min)) {
1160 if (graph != nullptr) {
Aart Bik389b3db2015-10-28 14:23:40 -07001161 HInstruction* operation = nullptr;
1162 switch (info->operation) {
1163 case HInductionVarAnalysis::kAdd:
1164 operation = new (graph->GetArena()) HAdd(type, opa, opb); break;
Aart Bikdf7822e2016-12-06 10:05:30 -08001165 case HInductionVarAnalysis::kRem:
1166 operation = new (graph->GetArena()) HRem(type, opa, opb, kNoDexPc); break;
Aart Bik9abf8942016-10-14 09:49:42 -07001167 case HInductionVarAnalysis::kXor:
1168 operation = new (graph->GetArena()) HXor(type, opa, opb); break;
Aart Bik389b3db2015-10-28 14:23:40 -07001169 case HInductionVarAnalysis::kLT:
1170 operation = new (graph->GetArena()) HLessThan(opa, opb); break;
1171 case HInductionVarAnalysis::kLE:
1172 operation = new (graph->GetArena()) HLessThanOrEqual(opa, opb); break;
1173 case HInductionVarAnalysis::kGT:
1174 operation = new (graph->GetArena()) HGreaterThan(opa, opb); break;
1175 case HInductionVarAnalysis::kGE:
1176 operation = new (graph->GetArena()) HGreaterThanOrEqual(opa, opb); break;
1177 default:
1178 LOG(FATAL) << "unknown operation";
1179 }
1180 *result = Insert(block, operation);
Aart Bikaec3cce2015-10-14 17:44:55 -07001181 }
1182 return true;
1183 }
1184 break;
1185 case HInductionVarAnalysis::kSub: // second reversed!
1186 if (GenerateCode(info->op_a, trip, graph, block, &opa, in_body, is_min) &&
1187 GenerateCode(info->op_b, trip, graph, block, &opb, in_body, !is_min)) {
1188 if (graph != nullptr) {
1189 *result = Insert(block, new (graph->GetArena()) HSub(type, opa, opb));
1190 }
1191 return true;
1192 }
1193 break;
1194 case HInductionVarAnalysis::kNeg: // reversed!
1195 if (GenerateCode(info->op_b, trip, graph, block, &opb, in_body, !is_min)) {
1196 if (graph != nullptr) {
1197 *result = Insert(block, new (graph->GetArena()) HNeg(type, opb));
1198 }
1199 return true;
1200 }
1201 break;
1202 case HInductionVarAnalysis::kFetch:
Aart Bik0d345cf2016-03-16 10:49:38 -07001203 if (graph != nullptr) {
1204 *result = info->fetch; // already in HIR
Aart Bikaec3cce2015-10-14 17:44:55 -07001205 }
Aart Bik0d345cf2016-03-16 10:49:38 -07001206 return true;
Aart Bikaec3cce2015-10-14 17:44:55 -07001207 case HInductionVarAnalysis::kTripCountInLoop:
Aart Bik389b3db2015-10-28 14:23:40 -07001208 case HInductionVarAnalysis::kTripCountInLoopUnsafe:
Aart Bikaec3cce2015-10-14 17:44:55 -07001209 if (!in_body && !is_min) { // one extra!
Aart Bik22f05872015-10-27 15:56:28 -07001210 return GenerateCode(info->op_a, trip, graph, block, result, in_body, is_min);
Aart Bikaec3cce2015-10-14 17:44:55 -07001211 }
1212 FALLTHROUGH_INTENDED;
1213 case HInductionVarAnalysis::kTripCountInBody:
Aart Bik389b3db2015-10-28 14:23:40 -07001214 case HInductionVarAnalysis::kTripCountInBodyUnsafe:
Aart Bikaec3cce2015-10-14 17:44:55 -07001215 if (is_min) {
1216 if (graph != nullptr) {
1217 *result = graph->GetIntConstant(0);
1218 }
1219 return true;
1220 } else if (in_body) {
Aart Bik22f05872015-10-27 15:56:28 -07001221 if (GenerateCode(info->op_a, trip, graph, block, &opb, in_body, is_min)) {
Aart Bikaec3cce2015-10-14 17:44:55 -07001222 if (graph != nullptr) {
1223 *result = Insert(block,
1224 new (graph->GetArena())
1225 HSub(type, opb, graph->GetIntConstant(1)));
1226 }
1227 return true;
1228 }
1229 }
1230 break;
1231 default:
1232 break;
1233 }
1234 break;
Aart Bik389b3db2015-10-28 14:23:40 -07001235 case HInductionVarAnalysis::kLinear: {
Aart Bik16d3a652016-09-09 10:33:50 -07001236 // Linear induction a * i + b, for normalized 0 <= i < TC. For ranges, this should
1237 // be restricted to a unit stride to avoid arithmetic wrap-around situations that
1238 // are harder to guard against. For a last value, requesting min/max based on any
1239 // stride yields right value.
Aart Bik97412c922016-02-19 20:14:38 -08001240 int64_t stride_value = 0;
1241 if (IsConstant(info->op_a, kExact, &stride_value)) {
Aart Bik16d3a652016-09-09 10:33:50 -07001242 const bool is_min_a = stride_value >= 0 ? is_min : !is_min;
1243 if (GenerateCode(trip, trip, graph, block, &opa, in_body, is_min_a) &&
1244 GenerateCode(info->op_b, trip, graph, block, &opb, in_body, is_min)) {
1245 if (graph != nullptr) {
1246 HInstruction* oper;
1247 if (stride_value == 1) {
1248 oper = new (graph->GetArena()) HAdd(type, opa, opb);
1249 } else if (stride_value == -1) {
1250 oper = new (graph->GetArena()) HSub(type, opb, opa);
1251 } else {
Aart Bik009cace2016-09-16 10:15:19 -07001252 HInstruction* mul = new (graph->GetArena()) HMul(
1253 type, graph->GetIntConstant(stride_value), opa);
Aart Bik16d3a652016-09-09 10:33:50 -07001254 oper = new (graph->GetArena()) HAdd(type, Insert(block, mul), opb);
Aart Bikaec3cce2015-10-14 17:44:55 -07001255 }
Aart Bik16d3a652016-09-09 10:33:50 -07001256 *result = Insert(block, oper);
Aart Bikaec3cce2015-10-14 17:44:55 -07001257 }
Aart Bik16d3a652016-09-09 10:33:50 -07001258 return true;
Aart Bikaec3cce2015-10-14 17:44:55 -07001259 }
1260 }
1261 break;
Aart Bik4a342772015-11-30 10:17:46 -08001262 }
Aart Bikc071a012016-12-01 10:22:31 -08001263 case HInductionVarAnalysis::kPolynomial:
1264 case HInductionVarAnalysis::kGeometric:
1265 break;
Aart Bik4a342772015-11-30 10:17:46 -08001266 case HInductionVarAnalysis::kWrapAround:
1267 case HInductionVarAnalysis::kPeriodic: {
1268 // Wrap-around and periodic inductions are restricted to constants only, so that extreme
1269 // values are easy to test at runtime without complications of arithmetic wrap-around.
1270 Value extreme = GetVal(info, trip, in_body, is_min);
Aart Bik97412c922016-02-19 20:14:38 -08001271 if (IsConstantValue(extreme)) {
Aart Bik4a342772015-11-30 10:17:46 -08001272 if (graph != nullptr) {
1273 *result = graph->GetIntConstant(extreme.b_constant);
1274 }
1275 return true;
1276 }
1277 break;
1278 }
Aart Bikaec3cce2015-10-14 17:44:55 -07001279 }
1280 }
1281 return false;
1282}
1283
Aart Bik16d3a652016-09-09 10:33:50 -07001284void InductionVarRange::ReplaceInduction(HInductionVarAnalysis::InductionInfo* info,
1285 HInstruction* fetch,
1286 HInstruction* replacement) {
1287 if (info != nullptr) {
1288 if (info->induction_class == HInductionVarAnalysis::kInvariant &&
1289 info->operation == HInductionVarAnalysis::kFetch &&
1290 info->fetch == fetch) {
1291 info->fetch = replacement;
1292 }
1293 ReplaceInduction(info->op_a, fetch, replacement);
1294 ReplaceInduction(info->op_b, fetch, replacement);
1295 }
1296}
1297
Aart Bikd14c5952015-09-08 15:25:15 -07001298} // namespace art