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Chandler Carruth8cd041e2014-03-04 12:24:34 +00001//===- ConstantRangeTest.cpp - ConstantRange tests ------------------------===//
Dan Gohman5035fbf2009-07-09 22:07:27 +00002//
Chandler Carruth2946cd72019-01-19 08:50:56 +00003// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4// See https://llvm.org/LICENSE.txt for license information.
5// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
Dan Gohman5035fbf2009-07-09 22:07:27 +00006//
7//===----------------------------------------------------------------------===//
8
Nikita Popovc061b992019-06-03 18:19:54 +00009#include "llvm/ADT/BitVector.h"
Chandler Carruth8cd041e2014-03-04 12:24:34 +000010#include "llvm/IR/ConstantRange.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000011#include "llvm/IR/Instructions.h"
Sanjoy Das6ed05302015-10-22 03:12:57 +000012#include "llvm/IR/Operator.h"
Nikita Popovef2d9792019-03-17 20:24:02 +000013#include "llvm/Support/KnownBits.h"
Dan Gohman5035fbf2009-07-09 22:07:27 +000014#include "gtest/gtest.h"
15
16using namespace llvm;
17
18namespace {
19
Nick Lewycky17a4fa82009-07-11 18:43:20 +000020class ConstantRangeTest : public ::testing::Test {
21protected:
22 static ConstantRange Full;
23 static ConstantRange Empty;
24 static ConstantRange One;
25 static ConstantRange Some;
26 static ConstantRange Wrap;
27};
Dan Gohman5035fbf2009-07-09 22:07:27 +000028
Nikita Popovee9f2ae2019-03-27 20:18:51 +000029template<typename Fn>
Nikita Popovbad648a2019-04-07 17:52:40 +000030static void EnumerateConstantRanges(unsigned Bits, Fn TestFn) {
Nikita Popovee9f2ae2019-03-27 20:18:51 +000031 unsigned Max = 1 << Bits;
Nikita Popovbad648a2019-04-07 17:52:40 +000032 for (unsigned Lo = 0; Lo < Max; Lo++) {
33 for (unsigned Hi = 0; Hi < Max; Hi++) {
Nikita Popovee9f2ae2019-03-27 20:18:51 +000034 // Enforce ConstantRange invariant.
Nikita Popovbad648a2019-04-07 17:52:40 +000035 if (Lo == Hi && Lo != 0 && Lo != Max - 1)
Nikita Popovee9f2ae2019-03-27 20:18:51 +000036 continue;
37
Nikita Popovbad648a2019-04-07 17:52:40 +000038 ConstantRange CR(APInt(Bits, Lo), APInt(Bits, Hi));
39 TestFn(CR);
Nikita Popovee9f2ae2019-03-27 20:18:51 +000040 }
41 }
42}
43
Nikita Popovbad648a2019-04-07 17:52:40 +000044template<typename Fn>
45static void EnumerateTwoConstantRanges(unsigned Bits, Fn TestFn) {
46 EnumerateConstantRanges(Bits, [&](const ConstantRange &CR1) {
47 EnumerateConstantRanges(Bits, [&](const ConstantRange &CR2) {
48 TestFn(CR1, CR2);
49 });
50 });
51}
52
53template<typename Fn>
54static void ForeachNumInConstantRange(const ConstantRange &CR, Fn TestFn) {
Fangrui Songdc7000b2019-04-14 09:19:15 +000055 if (!CR.isEmptySet()) {
56 APInt N = CR.getLower();
57 do TestFn(N);
58 while (++N != CR.getUpper());
Nikita Popovbad648a2019-04-07 17:52:40 +000059 }
60}
61
Nikita Popov4a523972019-04-23 18:00:02 +000062template<typename Fn1, typename Fn2>
Nikita Popovf9454292019-04-23 18:00:17 +000063static void TestUnsignedBinOpExhaustive(
64 Fn1 RangeFn, Fn2 IntFn,
65 bool SkipZeroRHS = false, bool CorrectnessOnly = false) {
Nikita Popov4a523972019-04-23 18:00:02 +000066 unsigned Bits = 4;
67 EnumerateTwoConstantRanges(Bits, [&](const ConstantRange &CR1,
68 const ConstantRange &CR2) {
Nikita Popov4a523972019-04-23 18:00:02 +000069 APInt Min = APInt::getMaxValue(Bits);
70 APInt Max = APInt::getMinValue(Bits);
71 ForeachNumInConstantRange(CR1, [&](const APInt &N1) {
72 ForeachNumInConstantRange(CR2, [&](const APInt &N2) {
Nikita Popovf9454292019-04-23 18:00:17 +000073 if (SkipZeroRHS && N2 == 0)
74 return;
75
Nikita Popov4a523972019-04-23 18:00:02 +000076 APInt N = IntFn(N1, N2);
77 if (N.ult(Min))
78 Min = N;
79 if (N.ugt(Max))
80 Max = N;
81 });
82 });
83
Nikita Popovf9454292019-04-23 18:00:17 +000084 ConstantRange CR = RangeFn(CR1, CR2);
85 if (Min.ugt(Max)) {
86 EXPECT_TRUE(CR.isEmptySet());
87 return;
88 }
89
90 ConstantRange Exact = ConstantRange::getNonEmpty(Min, Max + 1);
91 if (CorrectnessOnly) {
92 EXPECT_TRUE(CR.contains(Exact));
93 } else {
94 EXPECT_EQ(Exact, CR);
95 }
Nikita Popov4a523972019-04-23 18:00:02 +000096 });
97}
98
99template<typename Fn1, typename Fn2>
Nikita Popovd5a403f2019-05-06 16:59:37 +0000100static void TestSignedBinOpExhaustive(
101 Fn1 RangeFn, Fn2 IntFn,
102 bool SkipZeroRHS = false, bool CorrectnessOnly = false) {
Nikita Popov4a523972019-04-23 18:00:02 +0000103 unsigned Bits = 4;
104 EnumerateTwoConstantRanges(Bits, [&](const ConstantRange &CR1,
105 const ConstantRange &CR2) {
Nikita Popov4a523972019-04-23 18:00:02 +0000106 APInt Min = APInt::getSignedMaxValue(Bits);
107 APInt Max = APInt::getSignedMinValue(Bits);
108 ForeachNumInConstantRange(CR1, [&](const APInt &N1) {
109 ForeachNumInConstantRange(CR2, [&](const APInt &N2) {
Nikita Popovd5a403f2019-05-06 16:59:37 +0000110 if (SkipZeroRHS && N2 == 0)
111 return;
112
Nikita Popov4a523972019-04-23 18:00:02 +0000113 APInt N = IntFn(N1, N2);
114 if (N.slt(Min))
115 Min = N;
116 if (N.sgt(Max))
117 Max = N;
118 });
119 });
120
Nikita Popovd5a403f2019-05-06 16:59:37 +0000121 ConstantRange CR = RangeFn(CR1, CR2);
122 if (Min.sgt(Max)) {
123 EXPECT_TRUE(CR.isEmptySet());
124 return;
125 }
126
127 ConstantRange Exact = ConstantRange::getNonEmpty(Min, Max + 1);
128 if (CorrectnessOnly) {
129 EXPECT_TRUE(CR.contains(Exact));
130 } else {
131 EXPECT_EQ(Exact, CR);
132 }
Nikita Popov4a523972019-04-23 18:00:02 +0000133 });
134}
135
Nikita Popov977934f2019-03-24 09:34:40 +0000136ConstantRange ConstantRangeTest::Full(16, true);
Nick Lewycky17a4fa82009-07-11 18:43:20 +0000137ConstantRange ConstantRangeTest::Empty(16, false);
138ConstantRange ConstantRangeTest::One(APInt(16, 0xa));
139ConstantRange ConstantRangeTest::Some(APInt(16, 0xa), APInt(16, 0xaaa));
140ConstantRange ConstantRangeTest::Wrap(APInt(16, 0xaaa), APInt(16, 0xa));
141
142TEST_F(ConstantRangeTest, Basics) {
Dan Gohman5035fbf2009-07-09 22:07:27 +0000143 EXPECT_TRUE(Full.isFullSet());
144 EXPECT_FALSE(Full.isEmptySet());
Owen Anderson1a9078b2010-08-07 05:47:46 +0000145 EXPECT_TRUE(Full.inverse().isEmptySet());
Nikita Popov7b4e9a12019-03-27 19:12:09 +0000146 EXPECT_FALSE(Full.isWrappedSet());
Dan Gohman5035fbf2009-07-09 22:07:27 +0000147 EXPECT_TRUE(Full.contains(APInt(16, 0x0)));
148 EXPECT_TRUE(Full.contains(APInt(16, 0x9)));
149 EXPECT_TRUE(Full.contains(APInt(16, 0xa)));
150 EXPECT_TRUE(Full.contains(APInt(16, 0xaa9)));
151 EXPECT_TRUE(Full.contains(APInt(16, 0xaaa)));
152
153 EXPECT_FALSE(Empty.isFullSet());
154 EXPECT_TRUE(Empty.isEmptySet());
Owen Anderson1a9078b2010-08-07 05:47:46 +0000155 EXPECT_TRUE(Empty.inverse().isFullSet());
Nikita Popov7b4e9a12019-03-27 19:12:09 +0000156 EXPECT_FALSE(Empty.isWrappedSet());
Dan Gohman5035fbf2009-07-09 22:07:27 +0000157 EXPECT_FALSE(Empty.contains(APInt(16, 0x0)));
158 EXPECT_FALSE(Empty.contains(APInt(16, 0x9)));
159 EXPECT_FALSE(Empty.contains(APInt(16, 0xa)));
160 EXPECT_FALSE(Empty.contains(APInt(16, 0xaa9)));
161 EXPECT_FALSE(Empty.contains(APInt(16, 0xaaa)));
162
163 EXPECT_FALSE(One.isFullSet());
164 EXPECT_FALSE(One.isEmptySet());
Nikita Popov7b4e9a12019-03-27 19:12:09 +0000165 EXPECT_FALSE(One.isWrappedSet());
Dan Gohman5035fbf2009-07-09 22:07:27 +0000166 EXPECT_FALSE(One.contains(APInt(16, 0x0)));
167 EXPECT_FALSE(One.contains(APInt(16, 0x9)));
168 EXPECT_TRUE(One.contains(APInt(16, 0xa)));
169 EXPECT_FALSE(One.contains(APInt(16, 0xaa9)));
170 EXPECT_FALSE(One.contains(APInt(16, 0xaaa)));
Owen Anderson1a9078b2010-08-07 05:47:46 +0000171 EXPECT_FALSE(One.inverse().contains(APInt(16, 0xa)));
Dan Gohman5035fbf2009-07-09 22:07:27 +0000172
173 EXPECT_FALSE(Some.isFullSet());
174 EXPECT_FALSE(Some.isEmptySet());
Nikita Popov7b4e9a12019-03-27 19:12:09 +0000175 EXPECT_FALSE(Some.isWrappedSet());
Dan Gohman5035fbf2009-07-09 22:07:27 +0000176 EXPECT_FALSE(Some.contains(APInt(16, 0x0)));
177 EXPECT_FALSE(Some.contains(APInt(16, 0x9)));
178 EXPECT_TRUE(Some.contains(APInt(16, 0xa)));
179 EXPECT_TRUE(Some.contains(APInt(16, 0xaa9)));
180 EXPECT_FALSE(Some.contains(APInt(16, 0xaaa)));
181
182 EXPECT_FALSE(Wrap.isFullSet());
183 EXPECT_FALSE(Wrap.isEmptySet());
Nikita Popov7b4e9a12019-03-27 19:12:09 +0000184 EXPECT_TRUE(Wrap.isWrappedSet());
Dan Gohman5035fbf2009-07-09 22:07:27 +0000185 EXPECT_TRUE(Wrap.contains(APInt(16, 0x0)));
186 EXPECT_TRUE(Wrap.contains(APInt(16, 0x9)));
187 EXPECT_FALSE(Wrap.contains(APInt(16, 0xa)));
188 EXPECT_FALSE(Wrap.contains(APInt(16, 0xaa9)));
189 EXPECT_TRUE(Wrap.contains(APInt(16, 0xaaa)));
Nick Lewycky17a4fa82009-07-11 18:43:20 +0000190}
Dan Gohman5035fbf2009-07-09 22:07:27 +0000191
Nick Lewycky17a4fa82009-07-11 18:43:20 +0000192TEST_F(ConstantRangeTest, Equality) {
Nick Lewyckyd5923992009-09-05 18:27:40 +0000193 EXPECT_EQ(Full, Full);
194 EXPECT_EQ(Empty, Empty);
195 EXPECT_EQ(One, One);
196 EXPECT_EQ(Some, Some);
197 EXPECT_EQ(Wrap, Wrap);
198 EXPECT_NE(Full, Empty);
199 EXPECT_NE(Full, One);
200 EXPECT_NE(Full, Some);
201 EXPECT_NE(Full, Wrap);
202 EXPECT_NE(Empty, One);
203 EXPECT_NE(Empty, Some);
204 EXPECT_NE(Empty, Wrap);
205 EXPECT_NE(One, Some);
206 EXPECT_NE(One, Wrap);
207 EXPECT_NE(Some, Wrap);
Nick Lewycky17a4fa82009-07-11 18:43:20 +0000208}
Dan Gohman5035fbf2009-07-09 22:07:27 +0000209
Nick Lewycky17a4fa82009-07-11 18:43:20 +0000210TEST_F(ConstantRangeTest, SingleElement) {
Craig Topper66f09ad2014-06-08 22:29:17 +0000211 EXPECT_EQ(Full.getSingleElement(), static_cast<APInt *>(nullptr));
212 EXPECT_EQ(Empty.getSingleElement(), static_cast<APInt *>(nullptr));
Sanjoy Dasc7d32912016-10-02 20:59:05 +0000213 EXPECT_EQ(Full.getSingleMissingElement(), static_cast<APInt *>(nullptr));
214 EXPECT_EQ(Empty.getSingleMissingElement(), static_cast<APInt *>(nullptr));
215
Dan Gohman5035fbf2009-07-09 22:07:27 +0000216 EXPECT_EQ(*One.getSingleElement(), APInt(16, 0xa));
Craig Topper66f09ad2014-06-08 22:29:17 +0000217 EXPECT_EQ(Some.getSingleElement(), static_cast<APInt *>(nullptr));
218 EXPECT_EQ(Wrap.getSingleElement(), static_cast<APInt *>(nullptr));
Dan Gohman5035fbf2009-07-09 22:07:27 +0000219
Sanjoy Dasc7d32912016-10-02 20:59:05 +0000220 EXPECT_EQ(One.getSingleMissingElement(), static_cast<APInt *>(nullptr));
221 EXPECT_EQ(Some.getSingleMissingElement(), static_cast<APInt *>(nullptr));
222
223 ConstantRange OneInverse = One.inverse();
224 EXPECT_EQ(*OneInverse.getSingleMissingElement(), *One.getSingleElement());
225
Dan Gohman5035fbf2009-07-09 22:07:27 +0000226 EXPECT_FALSE(Full.isSingleElement());
227 EXPECT_FALSE(Empty.isSingleElement());
228 EXPECT_TRUE(One.isSingleElement());
229 EXPECT_FALSE(Some.isSingleElement());
230 EXPECT_FALSE(Wrap.isSingleElement());
Nick Lewycky17a4fa82009-07-11 18:43:20 +0000231}
Dan Gohman5035fbf2009-07-09 22:07:27 +0000232
Nick Lewycky17a4fa82009-07-11 18:43:20 +0000233TEST_F(ConstantRangeTest, GetMinsAndMaxes) {
Dan Gohman5035fbf2009-07-09 22:07:27 +0000234 EXPECT_EQ(Full.getUnsignedMax(), APInt(16, UINT16_MAX));
235 EXPECT_EQ(One.getUnsignedMax(), APInt(16, 0xa));
236 EXPECT_EQ(Some.getUnsignedMax(), APInt(16, 0xaa9));
237 EXPECT_EQ(Wrap.getUnsignedMax(), APInt(16, UINT16_MAX));
238
239 EXPECT_EQ(Full.getUnsignedMin(), APInt(16, 0));
240 EXPECT_EQ(One.getUnsignedMin(), APInt(16, 0xa));
241 EXPECT_EQ(Some.getUnsignedMin(), APInt(16, 0xa));
242 EXPECT_EQ(Wrap.getUnsignedMin(), APInt(16, 0));
243
244 EXPECT_EQ(Full.getSignedMax(), APInt(16, INT16_MAX));
245 EXPECT_EQ(One.getSignedMax(), APInt(16, 0xa));
246 EXPECT_EQ(Some.getSignedMax(), APInt(16, 0xaa9));
247 EXPECT_EQ(Wrap.getSignedMax(), APInt(16, INT16_MAX));
248
Ryan Flynna845ef02009-07-22 16:17:36 +0000249 EXPECT_EQ(Full.getSignedMin(), APInt(16, (uint64_t)INT16_MIN));
Dan Gohman5035fbf2009-07-09 22:07:27 +0000250 EXPECT_EQ(One.getSignedMin(), APInt(16, 0xa));
251 EXPECT_EQ(Some.getSignedMin(), APInt(16, 0xa));
Ryan Flynna845ef02009-07-22 16:17:36 +0000252 EXPECT_EQ(Wrap.getSignedMin(), APInt(16, (uint64_t)INT16_MIN));
Nick Lewycky571bf542009-07-13 04:50:21 +0000253
254 // Found by Klee
255 EXPECT_EQ(ConstantRange(APInt(4, 7), APInt(4, 0)).getSignedMax(),
256 APInt(4, 7));
Nick Lewycky17a4fa82009-07-11 18:43:20 +0000257}
Dan Gohman5035fbf2009-07-09 22:07:27 +0000258
Nick Lewyckya35462d2010-09-06 23:52:49 +0000259TEST_F(ConstantRangeTest, SignWrapped) {
Nikita Popove6eef492019-03-26 22:37:26 +0000260 EXPECT_FALSE(Full.isSignWrappedSet());
Nick Lewyckya35462d2010-09-06 23:52:49 +0000261 EXPECT_FALSE(Empty.isSignWrappedSet());
262 EXPECT_FALSE(One.isSignWrappedSet());
263 EXPECT_FALSE(Some.isSignWrappedSet());
264 EXPECT_TRUE(Wrap.isSignWrappedSet());
265
266 EXPECT_FALSE(ConstantRange(APInt(8, 127), APInt(8, 128)).isSignWrappedSet());
267 EXPECT_TRUE(ConstantRange(APInt(8, 127), APInt(8, 129)).isSignWrappedSet());
268 EXPECT_FALSE(ConstantRange(APInt(8, 128), APInt(8, 129)).isSignWrappedSet());
269 EXPECT_TRUE(ConstantRange(APInt(8, 10), APInt(8, 9)).isSignWrappedSet());
270 EXPECT_TRUE(ConstantRange(APInt(8, 10), APInt(8, 250)).isSignWrappedSet());
271 EXPECT_FALSE(ConstantRange(APInt(8, 250), APInt(8, 10)).isSignWrappedSet());
272 EXPECT_FALSE(ConstantRange(APInt(8, 250), APInt(8, 251)).isSignWrappedSet());
273}
274
Nikita Popov7b4e9a12019-03-27 19:12:09 +0000275TEST_F(ConstantRangeTest, UpperWrapped) {
276 // The behavior here is the same as for isWrappedSet() / isSignWrappedSet().
277 EXPECT_FALSE(Full.isUpperWrapped());
278 EXPECT_FALSE(Empty.isUpperWrapped());
279 EXPECT_FALSE(One.isUpperWrapped());
280 EXPECT_FALSE(Some.isUpperWrapped());
281 EXPECT_TRUE(Wrap.isUpperWrapped());
282 EXPECT_FALSE(Full.isUpperSignWrapped());
283 EXPECT_FALSE(Empty.isUpperSignWrapped());
284 EXPECT_FALSE(One.isUpperSignWrapped());
285 EXPECT_FALSE(Some.isUpperSignWrapped());
286 EXPECT_TRUE(Wrap.isUpperSignWrapped());
287
288 // The behavior differs if Upper is the Min/SignedMin value.
289 ConstantRange CR1(APInt(8, 42), APInt::getMinValue(8));
290 EXPECT_FALSE(CR1.isWrappedSet());
291 EXPECT_TRUE(CR1.isUpperWrapped());
292
293 ConstantRange CR2(APInt(8, 42), APInt::getSignedMinValue(8));
294 EXPECT_FALSE(CR2.isSignWrappedSet());
295 EXPECT_TRUE(CR2.isUpperSignWrapped());
296}
297
Nick Lewycky17a4fa82009-07-11 18:43:20 +0000298TEST_F(ConstantRangeTest, Trunc) {
Dan Gohman5035fbf2009-07-09 22:07:27 +0000299 ConstantRange TFull = Full.truncate(10);
300 ConstantRange TEmpty = Empty.truncate(10);
301 ConstantRange TOne = One.truncate(10);
302 ConstantRange TSome = Some.truncate(10);
303 ConstantRange TWrap = Wrap.truncate(10);
304 EXPECT_TRUE(TFull.isFullSet());
305 EXPECT_TRUE(TEmpty.isEmptySet());
Jay Foad583abbc2010-12-07 08:25:19 +0000306 EXPECT_EQ(TOne, ConstantRange(One.getLower().trunc(10),
307 One.getUpper().trunc(10)));
Dan Gohman5035fbf2009-07-09 22:07:27 +0000308 EXPECT_TRUE(TSome.isFullSet());
Craig Topper2df639e2017-06-04 23:03:52 +0000309 EXPECT_TRUE(TWrap.isFullSet());
Craig Topper0be7a1b2017-06-04 23:03:54 +0000310
311 // trunc([2, 5), 3->2) = [2, 1)
312 ConstantRange TwoFive(APInt(3, 2), APInt(3, 5));
313 EXPECT_EQ(TwoFive.truncate(2), ConstantRange(APInt(2, 2), APInt(2, 1)));
314
315 // trunc([2, 6), 3->2) = full
316 ConstantRange TwoSix(APInt(3, 2), APInt(3, 6));
317 EXPECT_TRUE(TwoSix.truncate(2).isFullSet());
318
319 // trunc([5, 7), 3->2) = [1, 3)
320 ConstantRange FiveSeven(APInt(3, 5), APInt(3, 7));
321 EXPECT_EQ(FiveSeven.truncate(2), ConstantRange(APInt(2, 1), APInt(2, 3)));
Craig Topper4b31ffd2017-06-04 23:07:53 +0000322
323 // trunc([7, 1), 3->2) = [3, 1)
324 ConstantRange SevenOne(APInt(3, 7), APInt(3, 1));
325 EXPECT_EQ(SevenOne.truncate(2), ConstantRange(APInt(2, 3), APInt(2, 1)));
Nick Lewycky17a4fa82009-07-11 18:43:20 +0000326}
Dan Gohman5035fbf2009-07-09 22:07:27 +0000327
Nick Lewycky17a4fa82009-07-11 18:43:20 +0000328TEST_F(ConstantRangeTest, ZExt) {
Dan Gohman5035fbf2009-07-09 22:07:27 +0000329 ConstantRange ZFull = Full.zeroExtend(20);
330 ConstantRange ZEmpty = Empty.zeroExtend(20);
331 ConstantRange ZOne = One.zeroExtend(20);
332 ConstantRange ZSome = Some.zeroExtend(20);
333 ConstantRange ZWrap = Wrap.zeroExtend(20);
Nick Lewyckyd5923992009-09-05 18:27:40 +0000334 EXPECT_EQ(ZFull, ConstantRange(APInt(20, 0), APInt(20, 0x10000)));
Dan Gohman5035fbf2009-07-09 22:07:27 +0000335 EXPECT_TRUE(ZEmpty.isEmptySet());
Jay Foad583abbc2010-12-07 08:25:19 +0000336 EXPECT_EQ(ZOne, ConstantRange(One.getLower().zext(20),
337 One.getUpper().zext(20)));
338 EXPECT_EQ(ZSome, ConstantRange(Some.getLower().zext(20),
339 Some.getUpper().zext(20)));
Nick Lewyckya35462d2010-09-06 23:52:49 +0000340 EXPECT_EQ(ZWrap, ConstantRange(APInt(20, 0), APInt(20, 0x10000)));
Nuno Lopeseb9d2752012-07-23 20:33:29 +0000341
342 // zext([5, 0), 3->7) = [5, 8)
343 ConstantRange FiveZero(APInt(3, 5), APInt(3, 0));
344 EXPECT_EQ(FiveZero.zeroExtend(7), ConstantRange(APInt(7, 5), APInt(7, 8)));
Nick Lewycky17a4fa82009-07-11 18:43:20 +0000345}
Dan Gohman5035fbf2009-07-09 22:07:27 +0000346
Nick Lewycky17a4fa82009-07-11 18:43:20 +0000347TEST_F(ConstantRangeTest, SExt) {
Dan Gohman5035fbf2009-07-09 22:07:27 +0000348 ConstantRange SFull = Full.signExtend(20);
349 ConstantRange SEmpty = Empty.signExtend(20);
350 ConstantRange SOne = One.signExtend(20);
351 ConstantRange SSome = Some.signExtend(20);
352 ConstantRange SWrap = Wrap.signExtend(20);
Nick Lewyckyd5923992009-09-05 18:27:40 +0000353 EXPECT_EQ(SFull, ConstantRange(APInt(20, (uint64_t)INT16_MIN, true),
354 APInt(20, INT16_MAX + 1, true)));
Dan Gohman5035fbf2009-07-09 22:07:27 +0000355 EXPECT_TRUE(SEmpty.isEmptySet());
Jay Foad583abbc2010-12-07 08:25:19 +0000356 EXPECT_EQ(SOne, ConstantRange(One.getLower().sext(20),
357 One.getUpper().sext(20)));
358 EXPECT_EQ(SSome, ConstantRange(Some.getLower().sext(20),
359 Some.getUpper().sext(20)));
Nick Lewyckya35462d2010-09-06 23:52:49 +0000360 EXPECT_EQ(SWrap, ConstantRange(APInt(20, (uint64_t)INT16_MIN, true),
361 APInt(20, INT16_MAX + 1, true)));
362
363 EXPECT_EQ(ConstantRange(APInt(8, 120), APInt(8, 140)).signExtend(16),
364 ConstantRange(APInt(16, -128), APInt(16, 128)));
Nuno Lopes1112eca2013-10-30 15:36:50 +0000365
366 EXPECT_EQ(ConstantRange(APInt(16, 0x0200), APInt(16, 0x8000)).signExtend(19),
367 ConstantRange(APInt(19, 0x0200), APInt(19, 0x8000)));
Nick Lewycky17a4fa82009-07-11 18:43:20 +0000368}
369
370TEST_F(ConstantRangeTest, IntersectWith) {
Nick Lewyckyd5923992009-09-05 18:27:40 +0000371 EXPECT_EQ(Empty.intersectWith(Full), Empty);
372 EXPECT_EQ(Empty.intersectWith(Empty), Empty);
373 EXPECT_EQ(Empty.intersectWith(One), Empty);
374 EXPECT_EQ(Empty.intersectWith(Some), Empty);
375 EXPECT_EQ(Empty.intersectWith(Wrap), Empty);
376 EXPECT_EQ(Full.intersectWith(Full), Full);
377 EXPECT_EQ(Some.intersectWith(Some), Some);
378 EXPECT_EQ(Some.intersectWith(One), One);
379 EXPECT_EQ(Full.intersectWith(One), One);
380 EXPECT_EQ(Full.intersectWith(Some), Some);
381 EXPECT_EQ(Some.intersectWith(Wrap), Empty);
382 EXPECT_EQ(One.intersectWith(Wrap), Empty);
383 EXPECT_EQ(One.intersectWith(Wrap), Wrap.intersectWith(One));
Dan Gohman5035fbf2009-07-09 22:07:27 +0000384
Nick Lewycky0d139032009-07-18 06:34:42 +0000385 // Klee generated testcase from PR4545.
386 // The intersection of i16 [4, 2) and [6, 5) is disjoint, looking like
387 // 01..4.6789ABCDEF where the dots represent values not in the intersection.
388 ConstantRange LHS(APInt(16, 4), APInt(16, 2));
389 ConstantRange RHS(APInt(16, 6), APInt(16, 5));
Chris Lattnerdbbdc792009-08-23 06:32:25 +0000390 EXPECT_TRUE(LHS.intersectWith(RHS) == LHS);
Nuno Lopes63afc082012-05-18 00:14:36 +0000391
392 // previous bug: intersection of [min, 3) and [2, max) should be 2
Nuno Lopesebb0c942012-06-28 00:59:33 +0000393 LHS = ConstantRange(APInt(32, -2147483646), APInt(32, 3));
394 RHS = ConstantRange(APInt(32, 2), APInt(32, 2147483646));
Nuno Lopes63afc082012-05-18 00:14:36 +0000395 EXPECT_EQ(LHS.intersectWith(RHS), ConstantRange(APInt(32, 2)));
Nuno Lopesebb0c942012-06-28 00:59:33 +0000396
397 // [2, 0) /\ [4, 3) = [2, 0)
398 LHS = ConstantRange(APInt(32, 2), APInt(32, 0));
399 RHS = ConstantRange(APInt(32, 4), APInt(32, 3));
400 EXPECT_EQ(LHS.intersectWith(RHS), ConstantRange(APInt(32, 2), APInt(32, 0)));
401
402 // [2, 0) /\ [4, 2) = [4, 0)
403 LHS = ConstantRange(APInt(32, 2), APInt(32, 0));
404 RHS = ConstantRange(APInt(32, 4), APInt(32, 2));
405 EXPECT_EQ(LHS.intersectWith(RHS), ConstantRange(APInt(32, 4), APInt(32, 0)));
406
407 // [4, 2) /\ [5, 1) = [5, 1)
408 LHS = ConstantRange(APInt(32, 4), APInt(32, 2));
409 RHS = ConstantRange(APInt(32, 5), APInt(32, 1));
410 EXPECT_EQ(LHS.intersectWith(RHS), ConstantRange(APInt(32, 5), APInt(32, 1)));
411
412 // [2, 0) /\ [7, 4) = [7, 4)
413 LHS = ConstantRange(APInt(32, 2), APInt(32, 0));
414 RHS = ConstantRange(APInt(32, 7), APInt(32, 4));
415 EXPECT_EQ(LHS.intersectWith(RHS), ConstantRange(APInt(32, 7), APInt(32, 4)));
416
417 // [4, 2) /\ [1, 0) = [1, 0)
418 LHS = ConstantRange(APInt(32, 4), APInt(32, 2));
419 RHS = ConstantRange(APInt(32, 1), APInt(32, 0));
420 EXPECT_EQ(LHS.intersectWith(RHS), ConstantRange(APInt(32, 4), APInt(32, 2)));
Fangrui Songdabd8002019-04-14 05:19:15 +0000421
Nuno Lopesebb0c942012-06-28 00:59:33 +0000422 // [15, 0) /\ [7, 6) = [15, 0)
423 LHS = ConstantRange(APInt(32, 15), APInt(32, 0));
424 RHS = ConstantRange(APInt(32, 7), APInt(32, 6));
425 EXPECT_EQ(LHS.intersectWith(RHS), ConstantRange(APInt(32, 15), APInt(32, 0)));
Nick Lewycky17a4fa82009-07-11 18:43:20 +0000426}
Dan Gohman5035fbf2009-07-09 22:07:27 +0000427
Nikita Popovc664c2a2019-04-07 18:55:45 +0000428template<typename Fn1, typename Fn2>
429void testBinarySetOperationExhaustive(Fn1 OpFn, Fn2 InResultFn) {
Nikita Popovee9f2ae2019-03-27 20:18:51 +0000430 unsigned Bits = 4;
431 EnumerateTwoConstantRanges(Bits,
432 [=](const ConstantRange &CR1, const ConstantRange &CR2) {
433 // Collect up to three contiguous unsigned ranges. The HaveInterrupt
434 // variables are used determine when we have to switch to the next
435 // range because the previous one ended.
436 APInt Lower1(Bits, 0), Upper1(Bits, 0);
437 APInt Lower2(Bits, 0), Upper2(Bits, 0);
438 APInt Lower3(Bits, 0), Upper3(Bits, 0);
439 bool HaveRange1 = false, HaveInterrupt1 = false;
440 bool HaveRange2 = false, HaveInterrupt2 = false;
441 bool HaveRange3 = false, HaveInterrupt3 = false;
442
443 APInt Num(Bits, 0);
444 for (unsigned I = 0, Limit = 1 << Bits; I < Limit; ++I, ++Num) {
Nikita Popovc664c2a2019-04-07 18:55:45 +0000445 if (!InResultFn(CR1, CR2, Num)) {
Nikita Popovee9f2ae2019-03-27 20:18:51 +0000446 if (HaveRange3)
447 HaveInterrupt3 = true;
448 else if (HaveRange2)
449 HaveInterrupt2 = true;
450 else if (HaveRange1)
451 HaveInterrupt1 = true;
452 continue;
453 }
454
455 if (HaveRange3) {
456 Upper3 = Num;
457 } else if (HaveInterrupt2) {
458 HaveRange3 = true;
459 Lower3 = Upper3 = Num;
460 } else if (HaveRange2) {
461 Upper2 = Num;
462 } else if (HaveInterrupt1) {
463 HaveRange2 = true;
464 Lower2 = Upper2 = Num;
465 } else if (HaveRange1) {
466 Upper1 = Num;
467 } else {
468 HaveRange1 = true;
469 Lower1 = Upper1 = Num;
470 }
471 }
472
Alexandre Ganea799d96e2019-05-06 13:41:54 +0000473 (void)HaveInterrupt3;
Nikita Popovee9f2ae2019-03-27 20:18:51 +0000474 assert(!HaveInterrupt3 && "Should have at most three ranges");
475
Nikita Popovc664c2a2019-04-07 18:55:45 +0000476 ConstantRange SmallestCR = OpFn(CR1, CR2, ConstantRange::Smallest);
477 ConstantRange UnsignedCR = OpFn(CR1, CR2, ConstantRange::Unsigned);
478 ConstantRange SignedCR = OpFn(CR1, CR2, ConstantRange::Signed);
Nikita Popovee9f2ae2019-03-27 20:18:51 +0000479
480 if (!HaveRange1) {
Nikita Popov42461062019-04-07 18:44:36 +0000481 EXPECT_TRUE(SmallestCR.isEmptySet());
482 EXPECT_TRUE(UnsignedCR.isEmptySet());
483 EXPECT_TRUE(SignedCR.isEmptySet());
Nikita Popovee9f2ae2019-03-27 20:18:51 +0000484 return;
485 }
486
487 if (!HaveRange2) {
488 if (Lower1 == Upper1 + 1) {
Nikita Popov42461062019-04-07 18:44:36 +0000489 EXPECT_TRUE(SmallestCR.isFullSet());
490 EXPECT_TRUE(UnsignedCR.isFullSet());
491 EXPECT_TRUE(SignedCR.isFullSet());
Nikita Popovee9f2ae2019-03-27 20:18:51 +0000492 } else {
493 ConstantRange Expected(Lower1, Upper1 + 1);
Nikita Popov42461062019-04-07 18:44:36 +0000494 EXPECT_EQ(Expected, SmallestCR);
495 EXPECT_EQ(Expected, UnsignedCR);
496 EXPECT_EQ(Expected, SignedCR);
Nikita Popovee9f2ae2019-03-27 20:18:51 +0000497 }
498 return;
499 }
500
501 ConstantRange Variant1(Bits, /*full*/ true);
502 ConstantRange Variant2(Bits, /*full*/ true);
503 if (!HaveRange3) {
504 // Compute the two possible ways to cover two disjoint ranges.
505 if (Lower1 != Upper2 + 1)
506 Variant1 = ConstantRange(Lower1, Upper2 + 1);
507 if (Lower2 != Upper1 + 1)
508 Variant2 = ConstantRange(Lower2, Upper1 + 1);
509 } else {
510 // If we have three ranges, the first and last one have to be adjacent
511 // to the unsigned domain. It's better to think of this as having two
512 // holes, and we can construct one range using each hole.
513 assert(Lower1.isNullValue() && Upper3.isMaxValue());
514 Variant1 = ConstantRange(Lower2, Upper1 + 1);
515 Variant2 = ConstantRange(Lower3, Upper2 + 1);
516 }
517
Nikita Popov42461062019-04-07 18:44:36 +0000518 // Smallest: Smaller set, then any set.
Nikita Popovee9f2ae2019-03-27 20:18:51 +0000519 if (Variant1.isSizeStrictlySmallerThan(Variant2))
Nikita Popov42461062019-04-07 18:44:36 +0000520 EXPECT_EQ(Variant1, SmallestCR);
Nikita Popovee9f2ae2019-03-27 20:18:51 +0000521 else if (Variant2.isSizeStrictlySmallerThan(Variant1))
Nikita Popov42461062019-04-07 18:44:36 +0000522 EXPECT_EQ(Variant2, SmallestCR);
Nikita Popovee9f2ae2019-03-27 20:18:51 +0000523 else
Nikita Popov42461062019-04-07 18:44:36 +0000524 EXPECT_TRUE(Variant1 == SmallestCR || Variant2 == SmallestCR);
525
526 // Unsigned: Non-wrapped set, then smaller set, then any set.
527 bool Variant1Full = Variant1.isFullSet() || Variant1.isWrappedSet();
528 bool Variant2Full = Variant2.isFullSet() || Variant2.isWrappedSet();
529 if (!Variant1Full && Variant2Full)
530 EXPECT_EQ(Variant1, UnsignedCR);
531 else if (Variant1Full && !Variant2Full)
532 EXPECT_EQ(Variant2, UnsignedCR);
533 else if (Variant1.isSizeStrictlySmallerThan(Variant2))
534 EXPECT_EQ(Variant1, UnsignedCR);
535 else if (Variant2.isSizeStrictlySmallerThan(Variant1))
536 EXPECT_EQ(Variant2, UnsignedCR);
537 else
538 EXPECT_TRUE(Variant1 == UnsignedCR || Variant2 == UnsignedCR);
539
540 // Signed: Signed non-wrapped set, then smaller set, then any set.
541 Variant1Full = Variant1.isFullSet() || Variant1.isSignWrappedSet();
542 Variant2Full = Variant2.isFullSet() || Variant2.isSignWrappedSet();
543 if (!Variant1Full && Variant2Full)
544 EXPECT_EQ(Variant1, SignedCR);
545 else if (Variant1Full && !Variant2Full)
546 EXPECT_EQ(Variant2, SignedCR);
547 else if (Variant1.isSizeStrictlySmallerThan(Variant2))
548 EXPECT_EQ(Variant1, SignedCR);
549 else if (Variant2.isSizeStrictlySmallerThan(Variant1))
550 EXPECT_EQ(Variant2, SignedCR);
551 else
552 EXPECT_TRUE(Variant1 == SignedCR || Variant2 == SignedCR);
Nikita Popovee9f2ae2019-03-27 20:18:51 +0000553 });
554}
555
Nikita Popovc664c2a2019-04-07 18:55:45 +0000556TEST_F(ConstantRangeTest, IntersectWithExhaustive) {
557 testBinarySetOperationExhaustive(
558 [](const ConstantRange &CR1, const ConstantRange &CR2,
559 ConstantRange::PreferredRangeType Type) {
560 return CR1.intersectWith(CR2, Type);
561 },
562 [](const ConstantRange &CR1, const ConstantRange &CR2, const APInt &N) {
563 return CR1.contains(N) && CR2.contains(N);
564 });
565}
566
Nikita Popovf38b46f2019-04-07 20:20:24 +0000567TEST_F(ConstantRangeTest, UnionWithExhaustive) {
568 testBinarySetOperationExhaustive(
569 [](const ConstantRange &CR1, const ConstantRange &CR2,
570 ConstantRange::PreferredRangeType Type) {
571 return CR1.unionWith(CR2, Type);
572 },
573 [](const ConstantRange &CR1, const ConstantRange &CR2, const APInt &N) {
574 return CR1.contains(N) || CR2.contains(N);
575 });
576}
577
Nick Lewycky17a4fa82009-07-11 18:43:20 +0000578TEST_F(ConstantRangeTest, UnionWith) {
Nick Lewyckyd5923992009-09-05 18:27:40 +0000579 EXPECT_EQ(Wrap.unionWith(One),
580 ConstantRange(APInt(16, 0xaaa), APInt(16, 0xb)));
581 EXPECT_EQ(One.unionWith(Wrap), Wrap.unionWith(One));
582 EXPECT_EQ(Empty.unionWith(Empty), Empty);
583 EXPECT_EQ(Full.unionWith(Full), Full);
584 EXPECT_EQ(Some.unionWith(Wrap), Full);
Nick Lewycky567daf32009-07-19 03:44:35 +0000585
586 // PR4545
Nick Lewyckyd5923992009-09-05 18:27:40 +0000587 EXPECT_EQ(ConstantRange(APInt(16, 14), APInt(16, 1)).unionWith(
588 ConstantRange(APInt(16, 0), APInt(16, 8))),
589 ConstantRange(APInt(16, 14), APInt(16, 8)));
590 EXPECT_EQ(ConstantRange(APInt(16, 6), APInt(16, 4)).unionWith(
591 ConstantRange(APInt(16, 4), APInt(16, 0))),
Nikita Popov977934f2019-03-24 09:34:40 +0000592 ConstantRange::getFull(16));
Nick Lewyckyd5923992009-09-05 18:27:40 +0000593 EXPECT_EQ(ConstantRange(APInt(16, 1), APInt(16, 0)).unionWith(
594 ConstantRange(APInt(16, 2), APInt(16, 1))),
Nikita Popov977934f2019-03-24 09:34:40 +0000595 ConstantRange::getFull(16));
Nick Lewycky17a4fa82009-07-11 18:43:20 +0000596}
Dan Gohman5035fbf2009-07-09 22:07:27 +0000597
Nuno Lopes5020db22012-06-28 16:10:13 +0000598TEST_F(ConstantRangeTest, SetDifference) {
599 EXPECT_EQ(Full.difference(Empty), Full);
600 EXPECT_EQ(Full.difference(Full), Empty);
601 EXPECT_EQ(Empty.difference(Empty), Empty);
602 EXPECT_EQ(Empty.difference(Full), Empty);
603
604 ConstantRange A(APInt(16, 3), APInt(16, 7));
605 ConstantRange B(APInt(16, 5), APInt(16, 9));
606 ConstantRange C(APInt(16, 3), APInt(16, 5));
607 ConstantRange D(APInt(16, 7), APInt(16, 9));
608 ConstantRange E(APInt(16, 5), APInt(16, 4));
609 ConstantRange F(APInt(16, 7), APInt(16, 3));
610 EXPECT_EQ(A.difference(B), C);
611 EXPECT_EQ(B.difference(A), D);
612 EXPECT_EQ(E.difference(A), F);
613}
614
Nick Lewycky17a4fa82009-07-11 18:43:20 +0000615TEST_F(ConstantRangeTest, SubtractAPInt) {
Nick Lewyckyd5923992009-09-05 18:27:40 +0000616 EXPECT_EQ(Full.subtract(APInt(16, 4)), Full);
617 EXPECT_EQ(Empty.subtract(APInt(16, 4)), Empty);
618 EXPECT_EQ(Some.subtract(APInt(16, 4)),
619 ConstantRange(APInt(16, 0x6), APInt(16, 0xaa6)));
620 EXPECT_EQ(Wrap.subtract(APInt(16, 4)),
621 ConstantRange(APInt(16, 0xaa6), APInt(16, 0x6)));
622 EXPECT_EQ(One.subtract(APInt(16, 4)),
623 ConstantRange(APInt(16, 0x6)));
Nick Lewycky17a4fa82009-07-11 18:43:20 +0000624}
Dan Gohman5035fbf2009-07-09 22:07:27 +0000625
Nick Lewycky17a4fa82009-07-11 18:43:20 +0000626TEST_F(ConstantRangeTest, Add) {
Nick Lewyckyd5923992009-09-05 18:27:40 +0000627 EXPECT_EQ(Full.add(APInt(16, 4)), Full);
628 EXPECT_EQ(Full.add(Full), Full);
629 EXPECT_EQ(Full.add(Empty), Empty);
630 EXPECT_EQ(Full.add(One), Full);
631 EXPECT_EQ(Full.add(Some), Full);
632 EXPECT_EQ(Full.add(Wrap), Full);
633 EXPECT_EQ(Empty.add(Empty), Empty);
634 EXPECT_EQ(Empty.add(One), Empty);
635 EXPECT_EQ(Empty.add(Some), Empty);
636 EXPECT_EQ(Empty.add(Wrap), Empty);
637 EXPECT_EQ(Empty.add(APInt(16, 4)), Empty);
638 EXPECT_EQ(Some.add(APInt(16, 4)),
Nick Lewyckyd385c222010-08-11 22:04:36 +0000639 ConstantRange(APInt(16, 0xe), APInt(16, 0xaae)));
Nick Lewyckyd5923992009-09-05 18:27:40 +0000640 EXPECT_EQ(Wrap.add(APInt(16, 4)),
Nick Lewyckyd385c222010-08-11 22:04:36 +0000641 ConstantRange(APInt(16, 0xaae), APInt(16, 0xe)));
Nick Lewyckyd5923992009-09-05 18:27:40 +0000642 EXPECT_EQ(One.add(APInt(16, 4)),
Nick Lewyckyd385c222010-08-11 22:04:36 +0000643 ConstantRange(APInt(16, 0xe)));
644}
645
Artur Pilipenkoed841032016-10-19 14:44:23 +0000646TEST_F(ConstantRangeTest, AddWithNoSignedWrap) {
647 EXPECT_EQ(Empty.addWithNoSignedWrap(APInt(16, 1)), Empty);
648 EXPECT_EQ(Full.addWithNoSignedWrap(APInt(16, 1)),
649 ConstantRange(APInt(16, INT16_MIN+1), APInt(16, INT16_MIN)));
650 EXPECT_EQ(ConstantRange(APInt(8, -50), APInt(8, 50)).addWithNoSignedWrap(APInt(8, 10)),
651 ConstantRange(APInt(8, -40), APInt(8, 60)));
652 EXPECT_EQ(ConstantRange(APInt(8, -50), APInt(8, 120)).addWithNoSignedWrap(APInt(8, 10)),
653 ConstantRange(APInt(8, -40), APInt(8, INT8_MIN)));
654 EXPECT_EQ(ConstantRange(APInt(8, 120), APInt(8, -10)).addWithNoSignedWrap(APInt(8, 5)),
655 ConstantRange(APInt(8, 125), APInt(8, -5)));
656 EXPECT_EQ(ConstantRange(APInt(8, 120), APInt(8, -120)).addWithNoSignedWrap(APInt(8, 10)),
657 ConstantRange(APInt(8, INT8_MIN+10), APInt(8, -110)));
658
659 EXPECT_EQ(Empty.addWithNoSignedWrap(APInt(16, -1)), Empty);
660 EXPECT_EQ(Full.addWithNoSignedWrap(APInt(16, -1)),
661 ConstantRange(APInt(16, INT16_MIN), APInt(16, INT16_MAX)));
662 EXPECT_EQ(ConstantRange(APInt(8, -50), APInt(8, 50)).addWithNoSignedWrap(APInt(8, -10)),
663 ConstantRange(APInt(8, -60), APInt(8, 40)));
664 EXPECT_EQ(ConstantRange(APInt(8, -120), APInt(8, 50)).addWithNoSignedWrap(APInt(8, -10)),
665 ConstantRange(APInt(8, INT8_MIN), APInt(8, 40)));
666 EXPECT_EQ(ConstantRange(APInt(8, 120), APInt(8, -120)).addWithNoSignedWrap(APInt(8, -5)),
667 ConstantRange(APInt(8, 115), APInt(8, -125)));
668 EXPECT_EQ(ConstantRange(APInt(8, 120), APInt(8, -120)).addWithNoSignedWrap(APInt(8, -10)),
669 ConstantRange(APInt(8, 110), APInt(8, INT8_MIN-10)));
670}
671
Chen Zhengbfec0452019-09-30 12:57:53 +0000672template <typename Fn1, typename Fn2>
673static void TestAddWithNoSignedWrapExhaustive(Fn1 RangeFn, Fn2 IntFn) {
674 unsigned Bits = 4;
675 EnumerateTwoConstantRanges(Bits, [&](const ConstantRange &CR1,
676 const ConstantRange &CR2) {
677 ConstantRange CR = RangeFn(CR1, CR2);
678 APInt Min = APInt::getSignedMaxValue(Bits);
679 APInt Max = APInt::getSignedMinValue(Bits);
680 ForeachNumInConstantRange(CR1, [&](const APInt &N1) {
681 ForeachNumInConstantRange(CR2, [&](const APInt &N2) {
682 bool IsOverflow = false;
683 APInt N = IntFn(IsOverflow, N1, N2);
684 if (!IsOverflow) {
685 if (N.slt(Min))
686 Min = N;
687 if (N.sgt(Max))
688 Max = N;
689 EXPECT_TRUE(CR.contains(N));
690 }
691 });
692 });
693 if (!CR1.isSignWrappedSet() && !CR2.isSignWrappedSet()) {
694 if (Min.sgt(Max)) {
695 EXPECT_TRUE(CR.isEmptySet());
696 return;
697 }
698
699 ConstantRange Exact = ConstantRange::getNonEmpty(Min, Max + 1);
700 EXPECT_EQ(Exact, CR);
701 }
702 });
703}
704
705template <typename Fn1, typename Fn2>
706static void TestAddWithNoUnsignedWrapExhaustive(Fn1 RangeFn, Fn2 IntFn) {
707 unsigned Bits = 4;
708 EnumerateTwoConstantRanges(Bits, [&](const ConstantRange &CR1,
709 const ConstantRange &CR2) {
710 ConstantRange CR = RangeFn(CR1, CR2);
711 APInt Min = APInt::getMaxValue(Bits);
712 APInt Max = APInt::getMinValue(Bits);
713 ForeachNumInConstantRange(CR1, [&](const APInt &N1) {
714 ForeachNumInConstantRange(CR2, [&](const APInt &N2) {
715 bool IsOverflow = false;
716 APInt N = IntFn(IsOverflow, N1, N2);
717 if (!IsOverflow) {
718 if (N.ult(Min))
719 Min = N;
720 if (N.ugt(Max))
721 Max = N;
722 EXPECT_TRUE(CR.contains(N));
723 }
724 });
725 });
726
727 if (!CR1.isWrappedSet() && !CR2.isWrappedSet()) {
728 if (Min.ugt(Max)) {
729 EXPECT_TRUE(CR.isEmptySet());
730 return;
731 }
732
733 ConstantRange Exact = ConstantRange::getNonEmpty(Min, Max + 1);
734 EXPECT_EQ(Exact, CR);
735 }
736 });
737}
738
739template <typename Fn1, typename Fn2, typename Fn3>
740static void TestAddWithNoSignedUnsignedWrapExhaustive(Fn1 RangeFn,
741 Fn2 IntFnSigned,
742 Fn3 IntFnUnsigned) {
743 unsigned Bits = 4;
744 EnumerateTwoConstantRanges(
745 Bits, [&](const ConstantRange &CR1, const ConstantRange &CR2) {
746 ConstantRange CR = RangeFn(CR1, CR2);
747 APInt UMin = APInt::getMaxValue(Bits);
748 APInt UMax = APInt::getMinValue(Bits);
749 APInt SMin = APInt::getSignedMaxValue(Bits);
750 APInt SMax = APInt::getSignedMinValue(Bits);
751 ForeachNumInConstantRange(CR1, [&](const APInt &N1) {
752 ForeachNumInConstantRange(CR2, [&](const APInt &N2) {
753 bool IsOverflow = false, IsSignedOverflow = false;
754 APInt N = IntFnSigned(IsSignedOverflow, N1, N2);
755 (void) IntFnUnsigned(IsOverflow, N1, N2);
756 if (!IsSignedOverflow && !IsOverflow) {
757 if (N.slt(SMin))
758 SMin = N;
759 if (N.sgt(SMax))
760 SMax = N;
761 if (N.ult(UMin))
762 UMin = N;
763 if (N.ugt(UMax))
764 UMax = N;
765 EXPECT_TRUE(CR.contains(N));
766 }
767 });
768 });
769
770 if (!CR1.isWrappedSet() && !CR2.isWrappedSet() &&
771 !CR1.isSignWrappedSet() && !CR2.isSignWrappedSet()) {
772 if (UMin.ugt(UMax) || SMin.sgt(SMax)) {
773 EXPECT_TRUE(CR.isEmptySet());
774 return;
775 }
776
777 ConstantRange Exact =
778 ConstantRange::getNonEmpty(SMin, SMax + 1)
779 .intersectWith(ConstantRange::getNonEmpty(UMin, UMax + 1));
780 EXPECT_EQ(Exact, CR);
781 }
782 });
783}
784
785TEST_F(ConstantRangeTest, AddWithNoWrap) {
786 typedef OverflowingBinaryOperator OBO;
787 EXPECT_EQ(Empty.addWithNoWrap(Some, OBO::NoSignedWrap), Empty);
788 EXPECT_EQ(Some.addWithNoWrap(Empty, OBO::NoSignedWrap), Empty);
789 EXPECT_EQ(Full.addWithNoWrap(Full, OBO::NoSignedWrap), Full);
790 EXPECT_NE(Full.addWithNoWrap(Some, OBO::NoSignedWrap), Full);
791 EXPECT_NE(Some.addWithNoWrap(Full, OBO::NoSignedWrap), Full);
792 EXPECT_EQ(Full.addWithNoWrap(ConstantRange(APInt(16, 1), APInt(16, 2)),
793 OBO::NoSignedWrap),
794 ConstantRange(APInt(16, INT16_MIN + 1), APInt(16, INT16_MIN)));
795 EXPECT_EQ(ConstantRange(APInt(16, 1), APInt(16, 2))
796 .addWithNoWrap(Full, OBO::NoSignedWrap),
797 ConstantRange(APInt(16, INT16_MIN + 1), APInt(16, INT16_MIN)));
798 EXPECT_EQ(Full.addWithNoWrap(ConstantRange(APInt(16, -1), APInt(16, 0)),
799 OBO::NoSignedWrap),
800 ConstantRange(APInt(16, INT16_MIN), APInt(16, INT16_MAX)));
801 EXPECT_EQ(ConstantRange(APInt(8, 100), APInt(8, 120))
802 .addWithNoWrap(ConstantRange(APInt(8, 120), APInt(8, 123)),
803 OBO::NoSignedWrap),
804 ConstantRange(8, false));
805 EXPECT_EQ(ConstantRange(APInt(8, -120), APInt(8, -100))
806 .addWithNoWrap(ConstantRange(APInt(8, -110), APInt(8, -100)),
807 OBO::NoSignedWrap),
808 ConstantRange(8, false));
809 EXPECT_EQ(ConstantRange(APInt(8, 0), APInt(8, 101))
810 .addWithNoWrap(ConstantRange(APInt(8, -128), APInt(8, 28)),
811 OBO::NoSignedWrap),
812 ConstantRange(8, true));
813 EXPECT_EQ(ConstantRange(APInt(8, 0), APInt(8, 101))
814 .addWithNoWrap(ConstantRange(APInt(8, -120), APInt(8, 29)),
815 OBO::NoSignedWrap),
816 ConstantRange(APInt(8, -120), APInt(8, -128)));
817 EXPECT_EQ(ConstantRange(APInt(8, -50), APInt(8, 50))
818 .addWithNoWrap(ConstantRange(APInt(8, 10), APInt(8, 20)),
819 OBO::NoSignedWrap),
820 ConstantRange(APInt(8, -40), APInt(8, 69)));
821 EXPECT_EQ(ConstantRange(APInt(8, 10), APInt(8, 20))
822 .addWithNoWrap(ConstantRange(APInt(8, -50), APInt(8, 50)),
823 OBO::NoSignedWrap),
824 ConstantRange(APInt(8, -40), APInt(8, 69)));
825 EXPECT_EQ(ConstantRange(APInt(8, 120), APInt(8, -10))
826 .addWithNoWrap(ConstantRange(APInt(8, 5), APInt(8, 20)),
827 OBO::NoSignedWrap),
828 ConstantRange(APInt(8, 125), APInt(8, 9)));
829 EXPECT_EQ(ConstantRange(APInt(8, 5), APInt(8, 20))
830 .addWithNoWrap(ConstantRange(APInt(8, 120), APInt(8, -10)),
831 OBO::NoSignedWrap),
832 ConstantRange(APInt(8, 125), APInt(8, 9)));
833
834 TestAddWithNoSignedWrapExhaustive(
835 [](const ConstantRange &CR1, const ConstantRange &CR2) {
836 return CR1.addWithNoWrap(CR2, OBO::NoSignedWrap);
837 },
838 [](bool &IsOverflow, const APInt &N1, const APInt &N2) {
839 return N1.sadd_ov(N2, IsOverflow);
840 });
841
842 EXPECT_EQ(Empty.addWithNoWrap(Some, OBO::NoUnsignedWrap), Empty);
843 EXPECT_EQ(Some.addWithNoWrap(Empty, OBO::NoUnsignedWrap), Empty);
844 EXPECT_EQ(Full.addWithNoWrap(Full, OBO::NoUnsignedWrap), Full);
845 EXPECT_NE(Full.addWithNoWrap(Some, OBO::NoUnsignedWrap), Full);
846 EXPECT_NE(Some.addWithNoWrap(Full, OBO::NoUnsignedWrap), Full);
847 EXPECT_EQ(Full.addWithNoWrap(ConstantRange(APInt(16, 1), APInt(16, 2)),
848 OBO::NoUnsignedWrap),
849 ConstantRange(APInt(16, 1), APInt(16, 0)));
850 EXPECT_EQ(ConstantRange(APInt(16, 1), APInt(16, 2))
851 .addWithNoWrap(Full, OBO::NoUnsignedWrap),
852 ConstantRange(APInt(16, 1), APInt(16, 0)));
853 EXPECT_EQ(ConstantRange(APInt(8, 200), APInt(8, 220))
854 .addWithNoWrap(ConstantRange(APInt(8, 100), APInt(8, 123)),
855 OBO::NoUnsignedWrap),
856 ConstantRange(8, false));
857 EXPECT_EQ(ConstantRange(APInt(8, 0), APInt(8, 101))
858 .addWithNoWrap(ConstantRange(APInt(8, 0), APInt(8, 156)),
859 OBO::NoUnsignedWrap),
860 ConstantRange(8, true));
861 EXPECT_EQ(ConstantRange(APInt(8, 0), APInt(8, 101))
862 .addWithNoWrap(ConstantRange(APInt(8, 10), APInt(8, 29)),
863 OBO::NoUnsignedWrap),
864 ConstantRange(APInt(8, 10), APInt(8, 129)));
865 EXPECT_EQ(ConstantRange(APInt(8, 20), APInt(8, 10))
866 .addWithNoWrap(ConstantRange(APInt(8, 50), APInt(8, 200)),
867 OBO::NoUnsignedWrap),
868 ConstantRange(APInt(8, 50), APInt(8, 0)));
869 EXPECT_EQ(ConstantRange(APInt(8, 10), APInt(8, 20))
870 .addWithNoWrap(ConstantRange(APInt(8, 50), APInt(8, 200)),
871 OBO::NoUnsignedWrap),
872 ConstantRange(APInt(8, 60), APInt(8, -37)));
873 EXPECT_EQ(ConstantRange(APInt(8, 20), APInt(8, -30))
874 .addWithNoWrap(ConstantRange(APInt(8, 5), APInt(8, 20)),
875 OBO::NoUnsignedWrap),
876 ConstantRange(APInt(8, 25), APInt(8, -11)));
877 EXPECT_EQ(ConstantRange(APInt(8, 5), APInt(8, 20))
878 .addWithNoWrap(ConstantRange(APInt(8, 20), APInt(8, -30)),
879 OBO::NoUnsignedWrap),
880 ConstantRange(APInt(8, 25), APInt(8, -11)));
881
882 TestAddWithNoUnsignedWrapExhaustive(
883 [](const ConstantRange &CR1, const ConstantRange &CR2) {
884 return CR1.addWithNoWrap(CR2, OBO::NoUnsignedWrap);
885 },
886 [](bool &IsOverflow, const APInt &N1, const APInt &N2) {
887 return N1.uadd_ov(N2, IsOverflow);
888 });
889
890 EXPECT_EQ(ConstantRange(APInt(8, 50), APInt(8, 100))
891 .addWithNoWrap(ConstantRange(APInt(8, 20), APInt(8, 70)),
892 OBO::NoSignedWrap),
893 ConstantRange(APInt(8, 70), APInt(8, -128)));
894 EXPECT_EQ(ConstantRange(APInt(8, 50), APInt(8, 100))
895 .addWithNoWrap(ConstantRange(APInt(8, 20), APInt(8, 70)),
896 OBO::NoUnsignedWrap),
897 ConstantRange(APInt(8, 70), APInt(8, 169)));
898 EXPECT_EQ(ConstantRange(APInt(8, 50), APInt(8, 100))
899 .addWithNoWrap(ConstantRange(APInt(8, 20), APInt(8, 70)),
900 OBO::NoUnsignedWrap | OBO::NoSignedWrap),
901 ConstantRange(APInt(8, 70), APInt(8, -128)));
902
903 EXPECT_EQ(ConstantRange(APInt(8, -100), APInt(8, -50))
904 .addWithNoWrap(ConstantRange(APInt(8, 20), APInt(8, 30)),
905 OBO::NoSignedWrap),
906 ConstantRange(APInt(8, -80), APInt(8, -21)));
907 EXPECT_EQ(ConstantRange(APInt(8, -100), APInt(8, -50))
908 .addWithNoWrap(ConstantRange(APInt(8, 20), APInt(8, 30)),
909 OBO::NoUnsignedWrap),
910 ConstantRange(APInt(8, 176), APInt(8, 235)));
911 EXPECT_EQ(ConstantRange(APInt(8, -100), APInt(8, -50))
912 .addWithNoWrap(ConstantRange(APInt(8, 20), APInt(8, 30)),
913 OBO::NoUnsignedWrap | OBO::NoSignedWrap),
914 ConstantRange(APInt(8, 176), APInt(8, 235)));
915
916 TestAddWithNoSignedUnsignedWrapExhaustive(
917 [](const ConstantRange &CR1, const ConstantRange &CR2) {
918 return CR1.addWithNoWrap(CR2, OBO::NoUnsignedWrap | OBO::NoSignedWrap);
919 },
920 [](bool &IsOverflow, const APInt &N1, const APInt &N2) {
921 return N1.sadd_ov(N2, IsOverflow);
922 },
923 [](bool &IsOverflow, const APInt &N1, const APInt &N2) {
924 return N1.uadd_ov(N2, IsOverflow);
925 });
926}
927
Nick Lewyckyd385c222010-08-11 22:04:36 +0000928TEST_F(ConstantRangeTest, Sub) {
929 EXPECT_EQ(Full.sub(APInt(16, 4)), Full);
930 EXPECT_EQ(Full.sub(Full), Full);
931 EXPECT_EQ(Full.sub(Empty), Empty);
932 EXPECT_EQ(Full.sub(One), Full);
933 EXPECT_EQ(Full.sub(Some), Full);
934 EXPECT_EQ(Full.sub(Wrap), Full);
935 EXPECT_EQ(Empty.sub(Empty), Empty);
936 EXPECT_EQ(Empty.sub(One), Empty);
937 EXPECT_EQ(Empty.sub(Some), Empty);
938 EXPECT_EQ(Empty.sub(Wrap), Empty);
939 EXPECT_EQ(Empty.sub(APInt(16, 4)), Empty);
940 EXPECT_EQ(Some.sub(APInt(16, 4)),
941 ConstantRange(APInt(16, 0x6), APInt(16, 0xaa6)));
Nick Lewycky5dc6b792011-06-22 21:13:46 +0000942 EXPECT_EQ(Some.sub(Some),
943 ConstantRange(APInt(16, 0xf561), APInt(16, 0xaa0)));
Nick Lewyckyd385c222010-08-11 22:04:36 +0000944 EXPECT_EQ(Wrap.sub(APInt(16, 4)),
945 ConstantRange(APInt(16, 0xaa6), APInt(16, 0x6)));
946 EXPECT_EQ(One.sub(APInt(16, 4)),
947 ConstantRange(APInt(16, 0x6)));
Nick Lewycky17a4fa82009-07-11 18:43:20 +0000948}
Dan Gohman5035fbf2009-07-09 22:07:27 +0000949
Nick Lewycky17a4fa82009-07-11 18:43:20 +0000950TEST_F(ConstantRangeTest, Multiply) {
Nick Lewyckyd5923992009-09-05 18:27:40 +0000951 EXPECT_EQ(Full.multiply(Full), Full);
952 EXPECT_EQ(Full.multiply(Empty), Empty);
953 EXPECT_EQ(Full.multiply(One), Full);
954 EXPECT_EQ(Full.multiply(Some), Full);
955 EXPECT_EQ(Full.multiply(Wrap), Full);
956 EXPECT_EQ(Empty.multiply(Empty), Empty);
957 EXPECT_EQ(Empty.multiply(One), Empty);
958 EXPECT_EQ(Empty.multiply(Some), Empty);
959 EXPECT_EQ(Empty.multiply(Wrap), Empty);
960 EXPECT_EQ(One.multiply(One), ConstantRange(APInt(16, 0xa*0xa),
961 APInt(16, 0xa*0xa + 1)));
962 EXPECT_EQ(One.multiply(Some), ConstantRange(APInt(16, 0xa*0xa),
963 APInt(16, 0xa*0xaa9 + 1)));
964 EXPECT_EQ(One.multiply(Wrap), Full);
965 EXPECT_EQ(Some.multiply(Some), Full);
966 EXPECT_EQ(Some.multiply(Wrap), Full);
967 EXPECT_EQ(Wrap.multiply(Wrap), Full);
Nick Lewycky53023892009-07-13 03:27:41 +0000968
Nuno Lopes986cc182012-07-16 20:47:16 +0000969 ConstantRange Zero(APInt(16, 0));
970 EXPECT_EQ(Zero.multiply(Full), Zero);
971 EXPECT_EQ(Zero.multiply(Some), Zero);
972 EXPECT_EQ(Zero.multiply(Wrap), Zero);
973 EXPECT_EQ(Full.multiply(Zero), Zero);
974 EXPECT_EQ(Some.multiply(Zero), Zero);
975 EXPECT_EQ(Wrap.multiply(Zero), Zero);
976
Nick Lewycky53023892009-07-13 03:27:41 +0000977 // http://llvm.org/PR4545
Nick Lewyckyd5923992009-09-05 18:27:40 +0000978 EXPECT_EQ(ConstantRange(APInt(4, 1), APInt(4, 6)).multiply(
979 ConstantRange(APInt(4, 6), APInt(4, 2))),
980 ConstantRange(4, /*isFullSet=*/true));
James Molloydcc78ec2015-03-06 15:50:47 +0000981
982 EXPECT_EQ(ConstantRange(APInt(8, 254), APInt(8, 0)).multiply(
983 ConstantRange(APInt(8, 252), APInt(8, 4))),
984 ConstantRange(APInt(8, 250), APInt(8, 9)));
985 EXPECT_EQ(ConstantRange(APInt(8, 254), APInt(8, 255)).multiply(
986 ConstantRange(APInt(8, 2), APInt(8, 4))),
987 ConstantRange(APInt(8, 250), APInt(8, 253)));
Craig Topper9bbae502017-05-10 18:15:06 +0000988
989 // TODO: This should be return [-2, 0]
990 EXPECT_EQ(ConstantRange(APInt(8, -2)).multiply(
991 ConstantRange(APInt(8, 0), APInt(8, 2))),
Craig Topperc51d0532017-05-10 20:01:48 +0000992 ConstantRange(APInt(8, -2), APInt(8, 1)));
Nick Lewycky17a4fa82009-07-11 18:43:20 +0000993}
Dan Gohman5035fbf2009-07-09 22:07:27 +0000994
Nick Lewycky17a4fa82009-07-11 18:43:20 +0000995TEST_F(ConstantRangeTest, UMax) {
Nick Lewyckyd5923992009-09-05 18:27:40 +0000996 EXPECT_EQ(Full.umax(Full), Full);
997 EXPECT_EQ(Full.umax(Empty), Empty);
998 EXPECT_EQ(Full.umax(Some), ConstantRange(APInt(16, 0xa), APInt(16, 0)));
999 EXPECT_EQ(Full.umax(Wrap), Full);
1000 EXPECT_EQ(Full.umax(Some), ConstantRange(APInt(16, 0xa), APInt(16, 0)));
1001 EXPECT_EQ(Empty.umax(Empty), Empty);
1002 EXPECT_EQ(Empty.umax(Some), Empty);
1003 EXPECT_EQ(Empty.umax(Wrap), Empty);
1004 EXPECT_EQ(Empty.umax(One), Empty);
1005 EXPECT_EQ(Some.umax(Some), Some);
1006 EXPECT_EQ(Some.umax(Wrap), ConstantRange(APInt(16, 0xa), APInt(16, 0)));
1007 EXPECT_EQ(Some.umax(One), Some);
Nick Lewycky17a4fa82009-07-11 18:43:20 +00001008 // TODO: ConstantRange is currently over-conservative here.
Nick Lewyckyd5923992009-09-05 18:27:40 +00001009 EXPECT_EQ(Wrap.umax(Wrap), Full);
1010 EXPECT_EQ(Wrap.umax(One), ConstantRange(APInt(16, 0xa), APInt(16, 0)));
1011 EXPECT_EQ(One.umax(One), One);
Nick Lewycky17a4fa82009-07-11 18:43:20 +00001012}
1013
1014TEST_F(ConstantRangeTest, SMax) {
Nick Lewyckyd5923992009-09-05 18:27:40 +00001015 EXPECT_EQ(Full.smax(Full), Full);
1016 EXPECT_EQ(Full.smax(Empty), Empty);
1017 EXPECT_EQ(Full.smax(Some), ConstantRange(APInt(16, 0xa),
1018 APInt::getSignedMinValue(16)));
1019 EXPECT_EQ(Full.smax(Wrap), Full);
1020 EXPECT_EQ(Full.smax(One), ConstantRange(APInt(16, 0xa),
1021 APInt::getSignedMinValue(16)));
1022 EXPECT_EQ(Empty.smax(Empty), Empty);
1023 EXPECT_EQ(Empty.smax(Some), Empty);
1024 EXPECT_EQ(Empty.smax(Wrap), Empty);
1025 EXPECT_EQ(Empty.smax(One), Empty);
1026 EXPECT_EQ(Some.smax(Some), Some);
1027 EXPECT_EQ(Some.smax(Wrap), ConstantRange(APInt(16, 0xa),
1028 APInt(16, (uint64_t)INT16_MIN)));
1029 EXPECT_EQ(Some.smax(One), Some);
1030 EXPECT_EQ(Wrap.smax(One), ConstantRange(APInt(16, 0xa),
1031 APInt(16, (uint64_t)INT16_MIN)));
1032 EXPECT_EQ(One.smax(One), One);
Nick Lewycky17a4fa82009-07-11 18:43:20 +00001033}
Dan Gohman5035fbf2009-07-09 22:07:27 +00001034
Philip Reamesba313122016-02-26 22:08:18 +00001035TEST_F(ConstantRangeTest, UMin) {
1036 EXPECT_EQ(Full.umin(Full), Full);
1037 EXPECT_EQ(Full.umin(Empty), Empty);
1038 EXPECT_EQ(Full.umin(Some), ConstantRange(APInt(16, 0), APInt(16, 0xaaa)));
1039 EXPECT_EQ(Full.umin(Wrap), Full);
1040 EXPECT_EQ(Empty.umin(Empty), Empty);
1041 EXPECT_EQ(Empty.umin(Some), Empty);
1042 EXPECT_EQ(Empty.umin(Wrap), Empty);
1043 EXPECT_EQ(Empty.umin(One), Empty);
1044 EXPECT_EQ(Some.umin(Some), Some);
1045 EXPECT_EQ(Some.umin(Wrap), ConstantRange(APInt(16, 0), APInt(16, 0xaaa)));
1046 EXPECT_EQ(Some.umin(One), One);
1047 // TODO: ConstantRange is currently over-conservative here.
1048 EXPECT_EQ(Wrap.umin(Wrap), Full);
1049 EXPECT_EQ(Wrap.umin(One), ConstantRange(APInt(16, 0), APInt(16, 0xb)));
1050 EXPECT_EQ(One.umin(One), One);
1051}
1052
1053TEST_F(ConstantRangeTest, SMin) {
1054 EXPECT_EQ(Full.smin(Full), Full);
1055 EXPECT_EQ(Full.smin(Empty), Empty);
1056 EXPECT_EQ(Full.smin(Some), ConstantRange(APInt(16, (uint64_t)INT16_MIN),
1057 APInt(16, 0xaaa)));
1058 EXPECT_EQ(Full.smin(Wrap), Full);
1059 EXPECT_EQ(Empty.smin(Empty), Empty);
1060 EXPECT_EQ(Empty.smin(Some), Empty);
1061 EXPECT_EQ(Empty.smin(Wrap), Empty);
1062 EXPECT_EQ(Empty.smin(One), Empty);
1063 EXPECT_EQ(Some.smin(Some), Some);
1064 EXPECT_EQ(Some.smin(Wrap), ConstantRange(APInt(16, (uint64_t)INT16_MIN),
1065 APInt(16, 0xaaa)));
1066 EXPECT_EQ(Some.smin(One), One);
1067 // TODO: ConstantRange is currently over-conservative here.
1068 EXPECT_EQ(Wrap.smin(Wrap), Full);
1069 EXPECT_EQ(Wrap.smin(One), ConstantRange(APInt(16, (uint64_t)INT16_MIN),
1070 APInt(16, 0xb)));
1071 EXPECT_EQ(One.smin(One), One);
1072}
1073
Nick Lewycky17a4fa82009-07-11 18:43:20 +00001074TEST_F(ConstantRangeTest, UDiv) {
Nick Lewyckyd5923992009-09-05 18:27:40 +00001075 EXPECT_EQ(Full.udiv(Full), Full);
1076 EXPECT_EQ(Full.udiv(Empty), Empty);
1077 EXPECT_EQ(Full.udiv(One), ConstantRange(APInt(16, 0),
1078 APInt(16, 0xffff / 0xa + 1)));
1079 EXPECT_EQ(Full.udiv(Some), ConstantRange(APInt(16, 0),
1080 APInt(16, 0xffff / 0xa + 1)));
1081 EXPECT_EQ(Full.udiv(Wrap), Full);
1082 EXPECT_EQ(Empty.udiv(Empty), Empty);
1083 EXPECT_EQ(Empty.udiv(One), Empty);
1084 EXPECT_EQ(Empty.udiv(Some), Empty);
1085 EXPECT_EQ(Empty.udiv(Wrap), Empty);
1086 EXPECT_EQ(One.udiv(One), ConstantRange(APInt(16, 1)));
1087 EXPECT_EQ(One.udiv(Some), ConstantRange(APInt(16, 0), APInt(16, 2)));
1088 EXPECT_EQ(One.udiv(Wrap), ConstantRange(APInt(16, 0), APInt(16, 0xb)));
1089 EXPECT_EQ(Some.udiv(Some), ConstantRange(APInt(16, 0), APInt(16, 0x111)));
1090 EXPECT_EQ(Some.udiv(Wrap), ConstantRange(APInt(16, 0), APInt(16, 0xaaa)));
1091 EXPECT_EQ(Wrap.udiv(Wrap), Full);
Florian Hahn10381372019-04-25 10:12:43 +00001092
1093
1094 ConstantRange Zero(APInt(16, 0));
1095 EXPECT_EQ(Zero.udiv(One), Zero);
1096 EXPECT_EQ(Zero.udiv(Full), Zero);
1097
1098 EXPECT_EQ(ConstantRange(APInt(16, 0), APInt(16, 99)).udiv(Full),
1099 ConstantRange(APInt(16, 0), APInt(16, 99)));
1100 EXPECT_EQ(ConstantRange(APInt(16, 10), APInt(16, 99)).udiv(Full),
1101 ConstantRange(APInt(16, 0), APInt(16, 99)));
Dan Gohman5035fbf2009-07-09 22:07:27 +00001102}
1103
Nikita Popovc061b992019-06-03 18:19:54 +00001104TEST_F(ConstantRangeTest, SDiv) {
1105 unsigned Bits = 4;
1106 EnumerateTwoConstantRanges(Bits, [&](const ConstantRange &CR1,
1107 const ConstantRange &CR2) {
1108 // Collect possible results in a bit vector. We store the signed value plus
1109 // a bias to make it unsigned.
1110 int Bias = 1 << (Bits - 1);
1111 BitVector Results(1 << Bits);
1112 ForeachNumInConstantRange(CR1, [&](const APInt &N1) {
1113 ForeachNumInConstantRange(CR2, [&](const APInt &N2) {
1114 // Division by zero is UB.
1115 if (N2 == 0)
1116 return;
1117
1118 // SignedMin / -1 is UB.
1119 if (N1.isMinSignedValue() && N2.isAllOnesValue())
1120 return;
1121
1122 APInt N = N1.sdiv(N2);
1123 Results.set(N.getSExtValue() + Bias);
1124 });
1125 });
1126
1127 ConstantRange CR = CR1.sdiv(CR2);
1128 if (Results.none()) {
1129 EXPECT_TRUE(CR.isEmptySet());
1130 return;
1131 }
1132
1133 // If there is a non-full signed envelope, that should be the result.
1134 APInt SMin(Bits, Results.find_first() - Bias);
1135 APInt SMax(Bits, Results.find_last() - Bias);
1136 ConstantRange Envelope = ConstantRange::getNonEmpty(SMin, SMax + 1);
1137 if (!Envelope.isFullSet()) {
1138 EXPECT_EQ(Envelope, CR);
1139 return;
1140 }
1141
1142 // If the signed envelope is a full set, try to find a smaller sign wrapped
1143 // set that is separated in negative and positive components (or one which
1144 // can also additionally contain zero).
1145 int LastNeg = Results.find_last_in(0, Bias) - Bias;
1146 int LastPos = Results.find_next(Bias) - Bias;
1147 if (Results[Bias]) {
1148 if (LastNeg == -1)
1149 ++LastNeg;
1150 else if (LastPos == 1)
1151 --LastPos;
1152 }
1153
1154 APInt WMax(Bits, LastNeg);
1155 APInt WMin(Bits, LastPos);
1156 ConstantRange Wrapped = ConstantRange::getNonEmpty(WMin, WMax + 1);
1157 EXPECT_EQ(Wrapped, CR);
1158 });
1159}
1160
Nikita Popovf9454292019-04-23 18:00:17 +00001161TEST_F(ConstantRangeTest, URem) {
1162 EXPECT_EQ(Full.urem(Empty), Empty);
1163 EXPECT_EQ(Empty.urem(Full), Empty);
1164 // urem by zero is poison.
1165 EXPECT_EQ(Full.urem(ConstantRange(APInt(16, 0))), Empty);
1166 // urem by full range doesn't contain MaxValue.
1167 EXPECT_EQ(Full.urem(Full), ConstantRange(APInt(16, 0), APInt(16, 0xffff)));
1168 // urem is upper bounded by maximum RHS minus one.
1169 EXPECT_EQ(Full.urem(ConstantRange(APInt(16, 0), APInt(16, 123))),
1170 ConstantRange(APInt(16, 0), APInt(16, 122)));
1171 // urem is upper bounded by maximum LHS.
1172 EXPECT_EQ(ConstantRange(APInt(16, 0), APInt(16, 123)).urem(Full),
1173 ConstantRange(APInt(16, 0), APInt(16, 123)));
1174 // If the LHS is always lower than the RHS, the result is the LHS.
1175 EXPECT_EQ(ConstantRange(APInt(16, 10), APInt(16, 20))
1176 .urem(ConstantRange(APInt(16, 20), APInt(16, 30))),
1177 ConstantRange(APInt(16, 10), APInt(16, 20)));
1178 // It has to be strictly lower, otherwise the top value may wrap to zero.
1179 EXPECT_EQ(ConstantRange(APInt(16, 10), APInt(16, 20))
1180 .urem(ConstantRange(APInt(16, 19), APInt(16, 30))),
1181 ConstantRange(APInt(16, 0), APInt(16, 20)));
1182 // [12, 14] % 10 is [2, 4], but we conservatively compute [0, 9].
1183 EXPECT_EQ(ConstantRange(APInt(16, 12), APInt(16, 15))
1184 .urem(ConstantRange(APInt(16, 10))),
1185 ConstantRange(APInt(16, 0), APInt(16, 10)));
1186
1187 TestUnsignedBinOpExhaustive(
1188 [](const ConstantRange &CR1, const ConstantRange &CR2) {
1189 return CR1.urem(CR2);
1190 },
1191 [](const APInt &N1, const APInt &N2) {
1192 return N1.urem(N2);
1193 },
1194 /* SkipZeroRHS */ true, /* CorrectnessOnly */ true);
1195}
1196
Nikita Popovd5a403f2019-05-06 16:59:37 +00001197TEST_F(ConstantRangeTest, SRem) {
1198 EXPECT_EQ(Full.srem(Empty), Empty);
1199 EXPECT_EQ(Empty.srem(Full), Empty);
1200 // srem by zero is UB.
1201 EXPECT_EQ(Full.srem(ConstantRange(APInt(16, 0))), Empty);
1202 // srem by full range doesn't contain SignedMinValue.
1203 EXPECT_EQ(Full.srem(Full), ConstantRange(APInt::getSignedMinValue(16) + 1,
1204 APInt::getSignedMinValue(16)));
1205
1206 ConstantRange PosMod(APInt(16, 10), APInt(16, 21)); // [10, 20]
1207 ConstantRange NegMod(APInt(16, -20), APInt(16, -9)); // [-20, -10]
1208 ConstantRange IntMinMod(APInt::getSignedMinValue(16));
1209
1210 ConstantRange Expected(16, true);
1211
1212 // srem is bounded by abs(RHS) minus one.
1213 ConstantRange PosLargeLHS(APInt(16, 0), APInt(16, 41));
1214 Expected = ConstantRange(APInt(16, 0), APInt(16, 20));
1215 EXPECT_EQ(PosLargeLHS.srem(PosMod), Expected);
1216 EXPECT_EQ(PosLargeLHS.srem(NegMod), Expected);
1217 ConstantRange NegLargeLHS(APInt(16, -40), APInt(16, 1));
1218 Expected = ConstantRange(APInt(16, -19), APInt(16, 1));
1219 EXPECT_EQ(NegLargeLHS.srem(PosMod), Expected);
1220 EXPECT_EQ(NegLargeLHS.srem(NegMod), Expected);
1221 ConstantRange PosNegLargeLHS(APInt(16, -32), APInt(16, 38));
1222 Expected = ConstantRange(APInt(16, -19), APInt(16, 20));
1223 EXPECT_EQ(PosNegLargeLHS.srem(PosMod), Expected);
1224 EXPECT_EQ(PosNegLargeLHS.srem(NegMod), Expected);
1225
1226 // srem is bounded by LHS.
1227 ConstantRange PosLHS(APInt(16, 0), APInt(16, 16));
1228 EXPECT_EQ(PosLHS.srem(PosMod), PosLHS);
1229 EXPECT_EQ(PosLHS.srem(NegMod), PosLHS);
1230 EXPECT_EQ(PosLHS.srem(IntMinMod), PosLHS);
1231 ConstantRange NegLHS(APInt(16, -15), APInt(16, 1));
1232 EXPECT_EQ(NegLHS.srem(PosMod), NegLHS);
1233 EXPECT_EQ(NegLHS.srem(NegMod), NegLHS);
1234 EXPECT_EQ(NegLHS.srem(IntMinMod), NegLHS);
1235 ConstantRange PosNegLHS(APInt(16, -12), APInt(16, 18));
1236 EXPECT_EQ(PosNegLHS.srem(PosMod), PosNegLHS);
1237 EXPECT_EQ(PosNegLHS.srem(NegMod), PosNegLHS);
1238 EXPECT_EQ(PosNegLHS.srem(IntMinMod), PosNegLHS);
1239
1240 // srem is LHS if it is smaller than RHS.
1241 ConstantRange PosSmallLHS(APInt(16, 3), APInt(16, 8));
1242 EXPECT_EQ(PosSmallLHS.srem(PosMod), PosSmallLHS);
1243 EXPECT_EQ(PosSmallLHS.srem(NegMod), PosSmallLHS);
1244 EXPECT_EQ(PosSmallLHS.srem(IntMinMod), PosSmallLHS);
1245 ConstantRange NegSmallLHS(APInt(16, -7), APInt(16, -2));
1246 EXPECT_EQ(NegSmallLHS.srem(PosMod), NegSmallLHS);
1247 EXPECT_EQ(NegSmallLHS.srem(NegMod), NegSmallLHS);
1248 EXPECT_EQ(NegSmallLHS.srem(IntMinMod), NegSmallLHS);
1249 ConstantRange PosNegSmallLHS(APInt(16, -3), APInt(16, 8));
1250 EXPECT_EQ(PosNegSmallLHS.srem(PosMod), PosNegSmallLHS);
1251 EXPECT_EQ(PosNegSmallLHS.srem(NegMod), PosNegSmallLHS);
1252 EXPECT_EQ(PosNegSmallLHS.srem(IntMinMod), PosNegSmallLHS);
1253
1254 // Example of a suboptimal result:
1255 // [12, 14] srem 10 is [2, 4], but we conservatively compute [0, 9].
1256 EXPECT_EQ(ConstantRange(APInt(16, 12), APInt(16, 15))
1257 .srem(ConstantRange(APInt(16, 10))),
1258 ConstantRange(APInt(16, 0), APInt(16, 10)));
1259
1260 TestSignedBinOpExhaustive(
1261 [](const ConstantRange &CR1, const ConstantRange &CR2) {
1262 return CR1.srem(CR2);
1263 },
1264 [](const APInt &N1, const APInt &N2) {
1265 return N1.srem(N2);
1266 },
1267 /* SkipZeroRHS */ true, /* CorrectnessOnly */ true);
1268}
1269
Nick Lewyckyd385c222010-08-11 22:04:36 +00001270TEST_F(ConstantRangeTest, Shl) {
Marcello Maggioni30eb5752019-04-07 06:12:44 +00001271 ConstantRange Some2(APInt(16, 0xfff), APInt(16, 0x8000));
1272 ConstantRange WrapNullMax(APInt(16, 0x1), APInt(16, 0x0));
Nick Lewyckyd385c222010-08-11 22:04:36 +00001273 EXPECT_EQ(Full.shl(Full), Full);
1274 EXPECT_EQ(Full.shl(Empty), Empty);
1275 EXPECT_EQ(Full.shl(One), Full); // TODO: [0, (-1 << 0xa) + 1)
1276 EXPECT_EQ(Full.shl(Some), Full); // TODO: [0, (-1 << 0xa) + 1)
1277 EXPECT_EQ(Full.shl(Wrap), Full);
1278 EXPECT_EQ(Empty.shl(Empty), Empty);
1279 EXPECT_EQ(Empty.shl(One), Empty);
1280 EXPECT_EQ(Empty.shl(Some), Empty);
1281 EXPECT_EQ(Empty.shl(Wrap), Empty);
1282 EXPECT_EQ(One.shl(One), ConstantRange(APInt(16, 0xa << 0xa),
1283 APInt(16, (0xa << 0xa) + 1)));
1284 EXPECT_EQ(One.shl(Some), Full); // TODO: [0xa << 0xa, 0)
1285 EXPECT_EQ(One.shl(Wrap), Full); // TODO: [0xa, 0xa << 14 + 1)
1286 EXPECT_EQ(Some.shl(Some), Full); // TODO: [0xa << 0xa, 0xfc01)
1287 EXPECT_EQ(Some.shl(Wrap), Full); // TODO: [0xa, 0x7ff << 0x5 + 1)
1288 EXPECT_EQ(Wrap.shl(Wrap), Full);
Marcello Maggioni30eb5752019-04-07 06:12:44 +00001289 EXPECT_EQ(
1290 Some2.shl(ConstantRange(APInt(16, 0x1))),
1291 ConstantRange(APInt(16, 0xfff << 0x1), APInt(16, 0x7fff << 0x1) + 1));
1292 EXPECT_EQ(One.shl(WrapNullMax), Full);
Nick Lewyckyd385c222010-08-11 22:04:36 +00001293}
1294
1295TEST_F(ConstantRangeTest, Lshr) {
1296 EXPECT_EQ(Full.lshr(Full), Full);
1297 EXPECT_EQ(Full.lshr(Empty), Empty);
1298 EXPECT_EQ(Full.lshr(One), ConstantRange(APInt(16, 0),
1299 APInt(16, (0xffff >> 0xa) + 1)));
1300 EXPECT_EQ(Full.lshr(Some), ConstantRange(APInt(16, 0),
1301 APInt(16, (0xffff >> 0xa) + 1)));
1302 EXPECT_EQ(Full.lshr(Wrap), Full);
1303 EXPECT_EQ(Empty.lshr(Empty), Empty);
1304 EXPECT_EQ(Empty.lshr(One), Empty);
1305 EXPECT_EQ(Empty.lshr(Some), Empty);
1306 EXPECT_EQ(Empty.lshr(Wrap), Empty);
1307 EXPECT_EQ(One.lshr(One), ConstantRange(APInt(16, 0)));
1308 EXPECT_EQ(One.lshr(Some), ConstantRange(APInt(16, 0)));
1309 EXPECT_EQ(One.lshr(Wrap), ConstantRange(APInt(16, 0), APInt(16, 0xb)));
1310 EXPECT_EQ(Some.lshr(Some), ConstantRange(APInt(16, 0),
1311 APInt(16, (0xaaa >> 0xa) + 1)));
1312 EXPECT_EQ(Some.lshr(Wrap), ConstantRange(APInt(16, 0), APInt(16, 0xaaa)));
1313 EXPECT_EQ(Wrap.lshr(Wrap), Full);
1314}
1315
Max Kazantsevd7921712017-12-18 13:01:32 +00001316TEST_F(ConstantRangeTest, Ashr) {
1317 EXPECT_EQ(Full.ashr(Full), Full);
1318 EXPECT_EQ(Full.ashr(Empty), Empty);
1319 EXPECT_EQ(Full.ashr(One), ConstantRange(APInt(16, 0xffe0),
1320 APInt(16, (0x7fff >> 0xa) + 1 )));
1321 ConstantRange Small(APInt(16, 0xa), APInt(16, 0xb));
1322 EXPECT_EQ(Full.ashr(Small), ConstantRange(APInt(16, 0xffe0),
1323 APInt(16, (0x7fff >> 0xa) + 1 )));
1324 EXPECT_EQ(Full.ashr(Some), ConstantRange(APInt(16, 0xffe0),
1325 APInt(16, (0x7fff >> 0xa) + 1 )));
1326 EXPECT_EQ(Full.ashr(Wrap), Full);
1327 EXPECT_EQ(Empty.ashr(Empty), Empty);
1328 EXPECT_EQ(Empty.ashr(One), Empty);
1329 EXPECT_EQ(Empty.ashr(Some), Empty);
1330 EXPECT_EQ(Empty.ashr(Wrap), Empty);
1331 EXPECT_EQ(One.ashr(One), ConstantRange(APInt(16, 0)));
1332 EXPECT_EQ(One.ashr(Some), ConstantRange(APInt(16, 0)));
1333 EXPECT_EQ(One.ashr(Wrap), ConstantRange(APInt(16, 0), APInt(16, 0xb)));
1334 EXPECT_EQ(Some.ashr(Some), ConstantRange(APInt(16, 0),
1335 APInt(16, (0xaaa >> 0xa) + 1)));
1336 EXPECT_EQ(Some.ashr(Wrap), ConstantRange(APInt(16, 0), APInt(16, 0xaaa)));
1337 EXPECT_EQ(Wrap.ashr(Wrap), Full);
1338 ConstantRange Neg(APInt(16, 0xf3f0, true), APInt(16, 0xf7f8, true));
1339 EXPECT_EQ(Neg.ashr(Small), ConstantRange(APInt(16, 0xfffc, true),
1340 APInt(16, 0xfffe, true)));
1341}
1342
Sanjoy Das7182d362015-03-18 00:41:24 +00001343TEST(ConstantRange, MakeAllowedICmpRegion) {
Nick Lewycky5154ee02010-09-28 18:18:36 +00001344 // PR8250
1345 ConstantRange SMax = ConstantRange(APInt::getSignedMaxValue(32));
Sanjoy Das7182d362015-03-18 00:41:24 +00001346 EXPECT_TRUE(ConstantRange::makeAllowedICmpRegion(ICmpInst::ICMP_SGT, SMax)
1347 .isEmptySet());
1348}
1349
1350TEST(ConstantRange, MakeSatisfyingICmpRegion) {
1351 ConstantRange LowHalf(APInt(8, 0), APInt(8, 128));
1352 ConstantRange HighHalf(APInt(8, 128), APInt(8, 0));
1353 ConstantRange EmptySet(8, /* isFullSet = */ false);
1354
1355 EXPECT_EQ(ConstantRange::makeSatisfyingICmpRegion(ICmpInst::ICMP_NE, LowHalf),
1356 HighHalf);
1357
1358 EXPECT_EQ(
1359 ConstantRange::makeSatisfyingICmpRegion(ICmpInst::ICMP_NE, HighHalf),
1360 LowHalf);
1361
1362 EXPECT_TRUE(ConstantRange::makeSatisfyingICmpRegion(ICmpInst::ICMP_EQ,
1363 HighHalf).isEmptySet());
1364
1365 ConstantRange UnsignedSample(APInt(8, 5), APInt(8, 200));
1366
1367 EXPECT_EQ(ConstantRange::makeSatisfyingICmpRegion(ICmpInst::ICMP_ULT,
1368 UnsignedSample),
1369 ConstantRange(APInt(8, 0), APInt(8, 5)));
1370
1371 EXPECT_EQ(ConstantRange::makeSatisfyingICmpRegion(ICmpInst::ICMP_ULE,
1372 UnsignedSample),
1373 ConstantRange(APInt(8, 0), APInt(8, 6)));
1374
1375 EXPECT_EQ(ConstantRange::makeSatisfyingICmpRegion(ICmpInst::ICMP_UGT,
1376 UnsignedSample),
1377 ConstantRange(APInt(8, 200), APInt(8, 0)));
1378
1379 EXPECT_EQ(ConstantRange::makeSatisfyingICmpRegion(ICmpInst::ICMP_UGE,
1380 UnsignedSample),
1381 ConstantRange(APInt(8, 199), APInt(8, 0)));
1382
1383 ConstantRange SignedSample(APInt(8, -5), APInt(8, 5));
1384
1385 EXPECT_EQ(
1386 ConstantRange::makeSatisfyingICmpRegion(ICmpInst::ICMP_SLT, SignedSample),
1387 ConstantRange(APInt(8, -128), APInt(8, -5)));
1388
1389 EXPECT_EQ(
1390 ConstantRange::makeSatisfyingICmpRegion(ICmpInst::ICMP_SLE, SignedSample),
1391 ConstantRange(APInt(8, -128), APInt(8, -4)));
1392
1393 EXPECT_EQ(
1394 ConstantRange::makeSatisfyingICmpRegion(ICmpInst::ICMP_SGT, SignedSample),
1395 ConstantRange(APInt(8, 5), APInt(8, -128)));
1396
1397 EXPECT_EQ(
1398 ConstantRange::makeSatisfyingICmpRegion(ICmpInst::ICMP_SGE, SignedSample),
1399 ConstantRange(APInt(8, 4), APInt(8, -128)));
Nick Lewycky5154ee02010-09-28 18:18:36 +00001400}
1401
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001402TEST(ConstantRange, MakeGuaranteedNoWrapRegion) {
Sanjoy Das6ed05302015-10-22 03:12:57 +00001403 const int IntMin4Bits = 8;
1404 const int IntMax4Bits = 7;
1405 typedef OverflowingBinaryOperator OBO;
1406
1407 for (int Const : {0, -1, -2, 1, 2, IntMin4Bits, IntMax4Bits}) {
1408 APInt C(4, Const, true /* = isSigned */);
1409
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001410 auto NUWRegion = ConstantRange::makeGuaranteedNoWrapRegion(
Sanjoy Das5079f622016-02-22 16:13:02 +00001411 Instruction::Add, C, OBO::NoUnsignedWrap);
Sanjoy Das6ed05302015-10-22 03:12:57 +00001412
1413 EXPECT_FALSE(NUWRegion.isEmptySet());
1414
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001415 auto NSWRegion = ConstantRange::makeGuaranteedNoWrapRegion(
Sanjoy Das5079f622016-02-22 16:13:02 +00001416 Instruction::Add, C, OBO::NoSignedWrap);
Sanjoy Das6ed05302015-10-22 03:12:57 +00001417
1418 EXPECT_FALSE(NSWRegion.isEmptySet());
1419
Sanjoy Das6ed05302015-10-22 03:12:57 +00001420 for (APInt I = NUWRegion.getLower(), E = NUWRegion.getUpper(); I != E;
1421 ++I) {
1422 bool Overflow = false;
Craig Topper3cc8da32017-04-19 22:11:05 +00001423 (void)I.uadd_ov(C, Overflow);
Sanjoy Das6ed05302015-10-22 03:12:57 +00001424 EXPECT_FALSE(Overflow);
1425 }
1426
1427 for (APInt I = NSWRegion.getLower(), E = NSWRegion.getUpper(); I != E;
1428 ++I) {
1429 bool Overflow = false;
Craig Topper3cc8da32017-04-19 22:11:05 +00001430 (void)I.sadd_ov(C, Overflow);
Sanjoy Das6ed05302015-10-22 03:12:57 +00001431 EXPECT_FALSE(Overflow);
1432 }
Sanjoy Das6ed05302015-10-22 03:12:57 +00001433 }
Sanjoy Dasf3867e62016-03-03 18:31:16 +00001434
Joel Galensonc32b0fc2017-12-05 18:14:23 +00001435 for (int Const : {0, -1, -2, 1, 2, IntMin4Bits, IntMax4Bits}) {
1436 APInt C(4, Const, true /* = isSigned */);
1437
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001438 auto NUWRegion = ConstantRange::makeGuaranteedNoWrapRegion(
Joel Galensonc32b0fc2017-12-05 18:14:23 +00001439 Instruction::Sub, C, OBO::NoUnsignedWrap);
1440
1441 EXPECT_FALSE(NUWRegion.isEmptySet());
1442
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001443 auto NSWRegion = ConstantRange::makeGuaranteedNoWrapRegion(
Joel Galensonc32b0fc2017-12-05 18:14:23 +00001444 Instruction::Sub, C, OBO::NoSignedWrap);
1445
1446 EXPECT_FALSE(NSWRegion.isEmptySet());
1447
Joel Galensonc32b0fc2017-12-05 18:14:23 +00001448 for (APInt I = NUWRegion.getLower(), E = NUWRegion.getUpper(); I != E;
1449 ++I) {
1450 bool Overflow = false;
1451 (void)I.usub_ov(C, Overflow);
1452 EXPECT_FALSE(Overflow);
1453 }
1454
1455 for (APInt I = NSWRegion.getLower(), E = NSWRegion.getUpper(); I != E;
1456 ++I) {
1457 bool Overflow = false;
1458 (void)I.ssub_ov(C, Overflow);
1459 EXPECT_FALSE(Overflow);
1460 }
Joel Galensonc32b0fc2017-12-05 18:14:23 +00001461 }
1462
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001463 auto NSWForAllValues = ConstantRange::makeGuaranteedNoWrapRegion(
Sanjoy Dasf3867e62016-03-03 18:31:16 +00001464 Instruction::Add, ConstantRange(32, /* isFullSet = */ true),
1465 OBO::NoSignedWrap);
1466 EXPECT_TRUE(NSWForAllValues.isSingleElement() &&
1467 NSWForAllValues.getSingleElement()->isMinValue());
1468
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001469 NSWForAllValues = ConstantRange::makeGuaranteedNoWrapRegion(
Joel Galensonc32b0fc2017-12-05 18:14:23 +00001470 Instruction::Sub, ConstantRange(32, /* isFullSet = */ true),
1471 OBO::NoSignedWrap);
1472 EXPECT_TRUE(NSWForAllValues.isSingleElement() &&
1473 NSWForAllValues.getSingleElement()->isMaxValue());
1474
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001475 auto NUWForAllValues = ConstantRange::makeGuaranteedNoWrapRegion(
Sanjoy Dasf3867e62016-03-03 18:31:16 +00001476 Instruction::Add, ConstantRange(32, /* isFullSet = */ true),
1477 OBO::NoUnsignedWrap);
1478 EXPECT_TRUE(NUWForAllValues.isSingleElement() &&
Craig Topper5c0a5472017-05-15 04:40:19 +00001479 NUWForAllValues.getSingleElement()->isMinValue());
Sanjoy Dasf3867e62016-03-03 18:31:16 +00001480
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001481 NUWForAllValues = ConstantRange::makeGuaranteedNoWrapRegion(
Joel Galensonc32b0fc2017-12-05 18:14:23 +00001482 Instruction::Sub, ConstantRange(32, /* isFullSet = */ true),
1483 OBO::NoUnsignedWrap);
1484 EXPECT_TRUE(NUWForAllValues.isSingleElement() &&
1485 NUWForAllValues.getSingleElement()->isMaxValue());
1486
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001487 EXPECT_TRUE(ConstantRange::makeGuaranteedNoWrapRegion(
Joel Galensonc32b0fc2017-12-05 18:14:23 +00001488 Instruction::Add, APInt(32, 0), OBO::NoUnsignedWrap).isFullSet());
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001489 EXPECT_TRUE(ConstantRange::makeGuaranteedNoWrapRegion(
Joel Galensonc32b0fc2017-12-05 18:14:23 +00001490 Instruction::Add, APInt(32, 0), OBO::NoSignedWrap).isFullSet());
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001491 EXPECT_TRUE(ConstantRange::makeGuaranteedNoWrapRegion(
Joel Galensonc32b0fc2017-12-05 18:14:23 +00001492 Instruction::Sub, APInt(32, 0), OBO::NoUnsignedWrap).isFullSet());
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001493 EXPECT_TRUE(ConstantRange::makeGuaranteedNoWrapRegion(
Joel Galensonc32b0fc2017-12-05 18:14:23 +00001494 Instruction::Sub, APInt(32, 0), OBO::NoSignedWrap).isFullSet());
Joel Galensonc32b0fc2017-12-05 18:14:23 +00001495
Sanjoy Dasf3867e62016-03-03 18:31:16 +00001496 ConstantRange OneToFive(APInt(32, 1), APInt(32, 6));
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001497 EXPECT_EQ(ConstantRange::makeGuaranteedNoWrapRegion(
Sanjoy Dasf3867e62016-03-03 18:31:16 +00001498 Instruction::Add, OneToFive, OBO::NoSignedWrap),
1499 ConstantRange(APInt::getSignedMinValue(32),
1500 APInt::getSignedMaxValue(32) - 4));
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001501 EXPECT_EQ(ConstantRange::makeGuaranteedNoWrapRegion(
Sanjoy Dasf3867e62016-03-03 18:31:16 +00001502 Instruction::Add, OneToFive, OBO::NoUnsignedWrap),
1503 ConstantRange(APInt::getMinValue(32), APInt::getMinValue(32) - 5));
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001504 EXPECT_EQ(ConstantRange::makeGuaranteedNoWrapRegion(
Joel Galensonc32b0fc2017-12-05 18:14:23 +00001505 Instruction::Sub, OneToFive, OBO::NoSignedWrap),
1506 ConstantRange(APInt::getSignedMinValue(32) + 5,
1507 APInt::getSignedMinValue(32)));
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001508 EXPECT_EQ(ConstantRange::makeGuaranteedNoWrapRegion(
Joel Galensonc32b0fc2017-12-05 18:14:23 +00001509 Instruction::Sub, OneToFive, OBO::NoUnsignedWrap),
1510 ConstantRange(APInt::getMinValue(32) + 5, APInt::getMinValue(32)));
Sanjoy Dasf3867e62016-03-03 18:31:16 +00001511
1512 ConstantRange MinusFiveToMinusTwo(APInt(32, -5), APInt(32, -1));
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001513 EXPECT_EQ(ConstantRange::makeGuaranteedNoWrapRegion(
Sanjoy Dasf3867e62016-03-03 18:31:16 +00001514 Instruction::Add, MinusFiveToMinusTwo, OBO::NoSignedWrap),
1515 ConstantRange(APInt::getSignedMinValue(32) + 5,
1516 APInt::getSignedMinValue(32)));
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001517 EXPECT_EQ(ConstantRange::makeGuaranteedNoWrapRegion(
Sanjoy Dasf3867e62016-03-03 18:31:16 +00001518 Instruction::Add, MinusFiveToMinusTwo, OBO::NoUnsignedWrap),
1519 ConstantRange(APInt(32, 0), APInt(32, 2)));
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001520 EXPECT_EQ(ConstantRange::makeGuaranteedNoWrapRegion(
Joel Galensonc32b0fc2017-12-05 18:14:23 +00001521 Instruction::Sub, MinusFiveToMinusTwo, OBO::NoSignedWrap),
1522 ConstantRange(APInt::getSignedMinValue(32),
1523 APInt::getSignedMaxValue(32) - 4));
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001524 EXPECT_EQ(ConstantRange::makeGuaranteedNoWrapRegion(
Joel Galensonc32b0fc2017-12-05 18:14:23 +00001525 Instruction::Sub, MinusFiveToMinusTwo, OBO::NoUnsignedWrap),
1526 ConstantRange(APInt::getMaxValue(32) - 1,
1527 APInt::getMinValue(32)));
Sanjoy Dasf3867e62016-03-03 18:31:16 +00001528
1529 ConstantRange MinusOneToOne(APInt(32, -1), APInt(32, 2));
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001530 EXPECT_EQ(ConstantRange::makeGuaranteedNoWrapRegion(
Sanjoy Dasf3867e62016-03-03 18:31:16 +00001531 Instruction::Add, MinusOneToOne, OBO::NoSignedWrap),
1532 ConstantRange(APInt::getSignedMinValue(32) + 1,
1533 APInt::getSignedMinValue(32) - 1));
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001534 EXPECT_EQ(ConstantRange::makeGuaranteedNoWrapRegion(
Sanjoy Dasf3867e62016-03-03 18:31:16 +00001535 Instruction::Add, MinusOneToOne, OBO::NoUnsignedWrap),
1536 ConstantRange(APInt(32, 0), APInt(32, 1)));
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001537 EXPECT_EQ(ConstantRange::makeGuaranteedNoWrapRegion(
Joel Galensonc32b0fc2017-12-05 18:14:23 +00001538 Instruction::Sub, MinusOneToOne, OBO::NoSignedWrap),
1539 ConstantRange(APInt::getSignedMinValue(32) + 1,
1540 APInt::getSignedMinValue(32) - 1));
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001541 EXPECT_EQ(ConstantRange::makeGuaranteedNoWrapRegion(
Joel Galensonc32b0fc2017-12-05 18:14:23 +00001542 Instruction::Sub, MinusOneToOne, OBO::NoUnsignedWrap),
1543 ConstantRange(APInt::getMaxValue(32),
1544 APInt::getMinValue(32)));
Joel Galensonc32b0fc2017-12-05 18:14:23 +00001545
1546 ConstantRange One(APInt(32, 1), APInt(32, 2));
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001547 EXPECT_EQ(ConstantRange::makeGuaranteedNoWrapRegion(
Joel Galensonc32b0fc2017-12-05 18:14:23 +00001548 Instruction::Add, One, OBO::NoSignedWrap),
1549 ConstantRange(APInt::getSignedMinValue(32),
1550 APInt::getSignedMaxValue(32)));
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001551 EXPECT_EQ(ConstantRange::makeGuaranteedNoWrapRegion(
Joel Galensonc32b0fc2017-12-05 18:14:23 +00001552 Instruction::Add, One, OBO::NoUnsignedWrap),
1553 ConstantRange(APInt::getMinValue(32), APInt::getMaxValue(32)));
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001554 EXPECT_EQ(ConstantRange::makeGuaranteedNoWrapRegion(
Joel Galensonc32b0fc2017-12-05 18:14:23 +00001555 Instruction::Sub, One, OBO::NoSignedWrap),
1556 ConstantRange(APInt::getSignedMinValue(32) + 1,
1557 APInt::getSignedMinValue(32)));
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001558 EXPECT_EQ(ConstantRange::makeGuaranteedNoWrapRegion(
Joel Galensonc32b0fc2017-12-05 18:14:23 +00001559 Instruction::Sub, One, OBO::NoUnsignedWrap),
1560 ConstantRange(APInt::getMinValue(32) + 1, APInt::getMinValue(32)));
Sanjoy Das6ed05302015-10-22 03:12:57 +00001561}
1562
Nikita Popov3dc7c7c2019-04-12 19:36:47 +00001563template<typename Fn>
1564void TestNoWrapRegionExhaustive(Instruction::BinaryOps BinOp,
1565 unsigned NoWrapKind, Fn OverflowFn) {
1566 // When using 4 bits this test needs ~3s on a debug build.
1567 unsigned Bits = 3;
1568 EnumerateTwoConstantRanges(Bits,
1569 [&](const ConstantRange &CR1, const ConstantRange &CR2) {
1570 if (CR2.isEmptySet())
1571 return;
1572
1573 ConstantRange NoWrap =
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001574 ConstantRange::makeGuaranteedNoWrapRegion(BinOp, CR2, NoWrapKind);
Nikita Popov3dc7c7c2019-04-12 19:36:47 +00001575 ForeachNumInConstantRange(CR1, [&](const APInt &N1) {
1576 bool NoOverflow = true;
Nikita Popov7a947952019-04-28 15:40:56 +00001577 bool Overflow = true;
Nikita Popov3dc7c7c2019-04-12 19:36:47 +00001578 ForeachNumInConstantRange(CR2, [&](const APInt &N2) {
1579 if (OverflowFn(N1, N2))
1580 NoOverflow = false;
Nikita Popov7a947952019-04-28 15:40:56 +00001581 else
1582 Overflow = false;
Nikita Popov3dc7c7c2019-04-12 19:36:47 +00001583 });
1584 EXPECT_EQ(NoOverflow, NoWrap.contains(N1));
Nikita Popov7a947952019-04-28 15:40:56 +00001585
1586 // The no-wrap range is exact for single-element ranges.
1587 if (CR2.isSingleElement()) {
1588 EXPECT_EQ(Overflow, !NoWrap.contains(N1));
1589 }
Nikita Popov3dc7c7c2019-04-12 19:36:47 +00001590 });
1591 });
1592}
1593
Nikita Popov7a947952019-04-28 15:40:56 +00001594// Show that makeGuaranteedNoWrapRegion() is maximal, and for single-element
1595// ranges also exact.
Nikita Popov3dc7c7c2019-04-12 19:36:47 +00001596TEST(ConstantRange, NoWrapRegionExhaustive) {
1597 TestNoWrapRegionExhaustive(
1598 Instruction::Add, OverflowingBinaryOperator::NoUnsignedWrap,
1599 [](const APInt &N1, const APInt &N2) {
1600 bool Overflow;
1601 (void) N1.uadd_ov(N2, Overflow);
1602 return Overflow;
1603 });
1604 TestNoWrapRegionExhaustive(
1605 Instruction::Add, OverflowingBinaryOperator::NoSignedWrap,
1606 [](const APInt &N1, const APInt &N2) {
1607 bool Overflow;
1608 (void) N1.sadd_ov(N2, Overflow);
1609 return Overflow;
1610 });
1611 TestNoWrapRegionExhaustive(
1612 Instruction::Sub, OverflowingBinaryOperator::NoUnsignedWrap,
1613 [](const APInt &N1, const APInt &N2) {
1614 bool Overflow;
1615 (void) N1.usub_ov(N2, Overflow);
1616 return Overflow;
1617 });
1618 TestNoWrapRegionExhaustive(
1619 Instruction::Sub, OverflowingBinaryOperator::NoSignedWrap,
1620 [](const APInt &N1, const APInt &N2) {
1621 bool Overflow;
1622 (void) N1.ssub_ov(N2, Overflow);
1623 return Overflow;
1624 });
1625 TestNoWrapRegionExhaustive(
1626 Instruction::Mul, OverflowingBinaryOperator::NoUnsignedWrap,
1627 [](const APInt &N1, const APInt &N2) {
1628 bool Overflow;
1629 (void) N1.umul_ov(N2, Overflow);
1630 return Overflow;
1631 });
1632 TestNoWrapRegionExhaustive(
1633 Instruction::Mul, OverflowingBinaryOperator::NoSignedWrap,
1634 [](const APInt &N1, const APInt &N2) {
1635 bool Overflow;
1636 (void) N1.smul_ov(N2, Overflow);
1637 return Overflow;
1638 });
1639}
1640
Sanjoy Das590614c2016-05-19 03:53:06 +00001641TEST(ConstantRange, GetEquivalentICmp) {
1642 APInt RHS;
1643 CmpInst::Predicate Pred;
1644
1645 EXPECT_TRUE(ConstantRange(APInt::getMinValue(32), APInt(32, 100))
1646 .getEquivalentICmp(Pred, RHS));
1647 EXPECT_EQ(Pred, CmpInst::ICMP_ULT);
1648 EXPECT_EQ(RHS, APInt(32, 100));
1649
1650 EXPECT_TRUE(ConstantRange(APInt::getSignedMinValue(32), APInt(32, 100))
1651 .getEquivalentICmp(Pred, RHS));
1652 EXPECT_EQ(Pred, CmpInst::ICMP_SLT);
1653 EXPECT_EQ(RHS, APInt(32, 100));
1654
1655 EXPECT_TRUE(ConstantRange(APInt(32, 100), APInt::getMinValue(32))
1656 .getEquivalentICmp(Pred, RHS));
1657 EXPECT_EQ(Pred, CmpInst::ICMP_UGE);
1658 EXPECT_EQ(RHS, APInt(32, 100));
1659
1660 EXPECT_TRUE(ConstantRange(APInt(32, 100), APInt::getSignedMinValue(32))
1661 .getEquivalentICmp(Pred, RHS));
1662 EXPECT_EQ(Pred, CmpInst::ICMP_SGE);
1663 EXPECT_EQ(RHS, APInt(32, 100));
1664
1665 EXPECT_TRUE(
1666 ConstantRange(32, /*isFullSet=*/true).getEquivalentICmp(Pred, RHS));
1667 EXPECT_EQ(Pred, CmpInst::ICMP_UGE);
1668 EXPECT_EQ(RHS, APInt(32, 0));
1669
1670 EXPECT_TRUE(
1671 ConstantRange(32, /*isFullSet=*/false).getEquivalentICmp(Pred, RHS));
1672 EXPECT_EQ(Pred, CmpInst::ICMP_ULT);
1673 EXPECT_EQ(RHS, APInt(32, 0));
1674
1675 EXPECT_FALSE(ConstantRange(APInt(32, 100), APInt(32, 200))
1676 .getEquivalentICmp(Pred, RHS));
1677
1678 EXPECT_FALSE(ConstantRange(APInt::getSignedMinValue(32) - APInt(32, 100),
1679 APInt::getSignedMinValue(32) + APInt(32, 100))
1680 .getEquivalentICmp(Pred, RHS));
1681
1682 EXPECT_FALSE(ConstantRange(APInt::getMinValue(32) - APInt(32, 100),
1683 APInt::getMinValue(32) + APInt(32, 100))
1684 .getEquivalentICmp(Pred, RHS));
Sanjoy Dasc7d32912016-10-02 20:59:05 +00001685
1686 EXPECT_TRUE(ConstantRange(APInt(32, 100)).getEquivalentICmp(Pred, RHS));
1687 EXPECT_EQ(Pred, CmpInst::ICMP_EQ);
1688 EXPECT_EQ(RHS, APInt(32, 100));
1689
1690 EXPECT_TRUE(
1691 ConstantRange(APInt(32, 100)).inverse().getEquivalentICmp(Pred, RHS));
1692 EXPECT_EQ(Pred, CmpInst::ICMP_NE);
1693 EXPECT_EQ(RHS, APInt(32, 100));
1694
1695 EXPECT_TRUE(
1696 ConstantRange(APInt(512, 100)).inverse().getEquivalentICmp(Pred, RHS));
1697 EXPECT_EQ(Pred, CmpInst::ICMP_NE);
1698 EXPECT_EQ(RHS, APInt(512, 100));
1699
1700 // NB! It would be correct for the following four calls to getEquivalentICmp
1701 // to return ordered predicates like CmpInst::ICMP_ULT or CmpInst::ICMP_UGT.
1702 // However, that's not the case today.
1703
1704 EXPECT_TRUE(ConstantRange(APInt(32, 0)).getEquivalentICmp(Pred, RHS));
1705 EXPECT_EQ(Pred, CmpInst::ICMP_EQ);
1706 EXPECT_EQ(RHS, APInt(32, 0));
1707
1708 EXPECT_TRUE(
1709 ConstantRange(APInt(32, 0)).inverse().getEquivalentICmp(Pred, RHS));
1710 EXPECT_EQ(Pred, CmpInst::ICMP_NE);
1711 EXPECT_EQ(RHS, APInt(32, 0));
1712
1713 EXPECT_TRUE(ConstantRange(APInt(32, -1)).getEquivalentICmp(Pred, RHS));
1714 EXPECT_EQ(Pred, CmpInst::ICMP_EQ);
1715 EXPECT_EQ(RHS, APInt(32, -1));
1716
1717 EXPECT_TRUE(
1718 ConstantRange(APInt(32, -1)).inverse().getEquivalentICmp(Pred, RHS));
1719 EXPECT_EQ(Pred, CmpInst::ICMP_NE);
1720 EXPECT_EQ(RHS, APInt(32, -1));
Sanjoy Das590614c2016-05-19 03:53:06 +00001721}
1722
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001723TEST(ConstantRange, MakeGuaranteedNoWrapRegionMulUnsignedSingleValue) {
Tim Shenb32823c2018-06-26 18:54:10 +00001724 typedef OverflowingBinaryOperator OBO;
1725
1726 for (uint64_t I = std::numeric_limits<uint8_t>::min();
1727 I <= std::numeric_limits<uint8_t>::max(); I++) {
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001728 auto Range = ConstantRange::makeGuaranteedNoWrapRegion(
Tim Shenb32823c2018-06-26 18:54:10 +00001729 Instruction::Mul, ConstantRange(APInt(8, I), APInt(8, I + 1)),
1730 OBO::NoUnsignedWrap);
1731
1732 for (uint64_t V = std::numeric_limits<uint8_t>::min();
1733 V <= std::numeric_limits<uint8_t>::max(); V++) {
1734 bool Overflow;
1735 (void)APInt(8, I).umul_ov(APInt(8, V), Overflow);
1736 EXPECT_EQ(!Overflow, Range.contains(APInt(8, V)));
1737 }
1738 }
1739}
1740
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001741TEST(ConstantRange, MakeGuaranteedNoWrapRegionMulSignedSingleValue) {
Tim Shenb32823c2018-06-26 18:54:10 +00001742 typedef OverflowingBinaryOperator OBO;
1743
1744 for (int64_t I = std::numeric_limits<int8_t>::min();
1745 I <= std::numeric_limits<int8_t>::max(); I++) {
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001746 auto Range = ConstantRange::makeGuaranteedNoWrapRegion(
Tim Shenb32823c2018-06-26 18:54:10 +00001747 Instruction::Mul,
1748 ConstantRange(APInt(8, I, /*isSigned=*/true),
1749 APInt(8, I + 1, /*isSigned=*/true)),
1750 OBO::NoSignedWrap);
1751
1752 for (int64_t V = std::numeric_limits<int8_t>::min();
1753 V <= std::numeric_limits<int8_t>::max(); V++) {
1754 bool Overflow;
1755 (void)APInt(8, I, /*isSigned=*/true)
1756 .smul_ov(APInt(8, V, /*isSigned=*/true), Overflow);
1757 EXPECT_EQ(!Overflow, Range.contains(APInt(8, V, /*isSigned=*/true)));
1758 }
1759 }
1760}
1761
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001762TEST(ConstantRange, MakeGuaranteedNoWrapRegionMulUnsignedRange) {
Tim Shenb32823c2018-06-26 18:54:10 +00001763 typedef OverflowingBinaryOperator OBO;
1764
1765 for (uint64_t Lo = std::numeric_limits<uint8_t>::min();
1766 Lo <= std::numeric_limits<uint8_t>::max(); Lo++) {
1767 for (uint64_t Hi = Lo; Hi <= std::numeric_limits<uint8_t>::max(); Hi++) {
1768 EXPECT_EQ(
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001769 ConstantRange::makeGuaranteedNoWrapRegion(
Tim Shenb32823c2018-06-26 18:54:10 +00001770 Instruction::Mul, ConstantRange(APInt(8, Lo), APInt(8, Hi + 1)),
1771 OBO::NoUnsignedWrap),
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001772 ConstantRange::makeGuaranteedNoWrapRegion(
Tim Shenb32823c2018-06-26 18:54:10 +00001773 Instruction::Mul, ConstantRange(APInt(8, Hi), APInt(8, Hi + 1)),
1774 OBO::NoUnsignedWrap));
1775 }
1776 }
1777}
1778
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001779TEST(ConstantRange, MakeGuaranteedNoWrapRegionMulSignedRange) {
Tim Shenb32823c2018-06-26 18:54:10 +00001780 typedef OverflowingBinaryOperator OBO;
1781
1782 int Lo = -12, Hi = 16;
Nikita Popov5aacc7a2019-04-22 09:01:38 +00001783 auto Range = ConstantRange::makeGuaranteedNoWrapRegion(
Tim Shenb32823c2018-06-26 18:54:10 +00001784 Instruction::Mul,
1785 ConstantRange(APInt(8, Lo, /*isSigned=*/true),
1786 APInt(8, Hi + 1, /*isSigned=*/true)),
1787 OBO::NoSignedWrap);
1788
1789 for (int64_t V = std::numeric_limits<int8_t>::min();
1790 V <= std::numeric_limits<int8_t>::max(); V++) {
1791 bool AnyOverflow = false;
1792 for (int64_t I = Lo; I <= Hi; I++) {
1793 bool Overflow;
1794 (void)APInt(8, I, /*isSigned=*/true)
1795 .smul_ov(APInt(8, V, /*isSigned=*/true), Overflow);
1796 AnyOverflow |= Overflow;
1797 }
1798 EXPECT_EQ(!AnyOverflow, Range.contains(APInt(8, V, /*isSigned=*/true)));
1799 }
1800}
1801
Nikita Popove3d3e862019-03-15 17:29:05 +00001802#define EXPECT_MAY_OVERFLOW(op) \
1803 EXPECT_EQ(ConstantRange::OverflowResult::MayOverflow, (op))
Nikita Popov332c1002019-05-28 18:08:31 +00001804#define EXPECT_ALWAYS_OVERFLOWS_LOW(op) \
1805 EXPECT_EQ(ConstantRange::OverflowResult::AlwaysOverflowsLow, (op))
1806#define EXPECT_ALWAYS_OVERFLOWS_HIGH(op) \
1807 EXPECT_EQ(ConstantRange::OverflowResult::AlwaysOverflowsHigh, (op))
Nikita Popove3d3e862019-03-15 17:29:05 +00001808#define EXPECT_NEVER_OVERFLOWS(op) \
1809 EXPECT_EQ(ConstantRange::OverflowResult::NeverOverflows, (op))
1810
1811TEST_F(ConstantRangeTest, UnsignedAddOverflow) {
1812 // Ill-defined - may overflow is a conservative result.
1813 EXPECT_MAY_OVERFLOW(Some.unsignedAddMayOverflow(Empty));
1814 EXPECT_MAY_OVERFLOW(Empty.unsignedAddMayOverflow(Some));
1815
1816 // Never overflow despite one full/wrap set.
1817 ConstantRange Zero(APInt::getNullValue(16));
1818 EXPECT_NEVER_OVERFLOWS(Full.unsignedAddMayOverflow(Zero));
1819 EXPECT_NEVER_OVERFLOWS(Wrap.unsignedAddMayOverflow(Zero));
1820 EXPECT_NEVER_OVERFLOWS(Zero.unsignedAddMayOverflow(Full));
1821 EXPECT_NEVER_OVERFLOWS(Zero.unsignedAddMayOverflow(Wrap));
1822
1823 // But usually full/wrap always may overflow.
1824 EXPECT_MAY_OVERFLOW(Full.unsignedAddMayOverflow(One));
1825 EXPECT_MAY_OVERFLOW(Wrap.unsignedAddMayOverflow(One));
1826 EXPECT_MAY_OVERFLOW(One.unsignedAddMayOverflow(Full));
1827 EXPECT_MAY_OVERFLOW(One.unsignedAddMayOverflow(Wrap));
1828
1829 ConstantRange A(APInt(16, 0xfd00), APInt(16, 0xfe00));
1830 ConstantRange B1(APInt(16, 0x0100), APInt(16, 0x0201));
1831 ConstantRange B2(APInt(16, 0x0100), APInt(16, 0x0202));
1832 EXPECT_NEVER_OVERFLOWS(A.unsignedAddMayOverflow(B1));
1833 EXPECT_MAY_OVERFLOW(A.unsignedAddMayOverflow(B2));
1834 EXPECT_NEVER_OVERFLOWS(B1.unsignedAddMayOverflow(A));
1835 EXPECT_MAY_OVERFLOW(B2.unsignedAddMayOverflow(A));
1836
1837 ConstantRange C1(APInt(16, 0x0299), APInt(16, 0x0400));
1838 ConstantRange C2(APInt(16, 0x0300), APInt(16, 0x0400));
1839 EXPECT_MAY_OVERFLOW(A.unsignedAddMayOverflow(C1));
Nikita Popov332c1002019-05-28 18:08:31 +00001840 EXPECT_ALWAYS_OVERFLOWS_HIGH(A.unsignedAddMayOverflow(C2));
Nikita Popove3d3e862019-03-15 17:29:05 +00001841 EXPECT_MAY_OVERFLOW(C1.unsignedAddMayOverflow(A));
Nikita Popov332c1002019-05-28 18:08:31 +00001842 EXPECT_ALWAYS_OVERFLOWS_HIGH(C2.unsignedAddMayOverflow(A));
Nikita Popove3d3e862019-03-15 17:29:05 +00001843}
1844
1845TEST_F(ConstantRangeTest, UnsignedSubOverflow) {
1846 // Ill-defined - may overflow is a conservative result.
1847 EXPECT_MAY_OVERFLOW(Some.unsignedSubMayOverflow(Empty));
1848 EXPECT_MAY_OVERFLOW(Empty.unsignedSubMayOverflow(Some));
1849
1850 // Never overflow despite one full/wrap set.
1851 ConstantRange Zero(APInt::getNullValue(16));
1852 ConstantRange Max(APInt::getAllOnesValue(16));
1853 EXPECT_NEVER_OVERFLOWS(Full.unsignedSubMayOverflow(Zero));
1854 EXPECT_NEVER_OVERFLOWS(Wrap.unsignedSubMayOverflow(Zero));
1855 EXPECT_NEVER_OVERFLOWS(Max.unsignedSubMayOverflow(Full));
1856 EXPECT_NEVER_OVERFLOWS(Max.unsignedSubMayOverflow(Wrap));
1857
1858 // But usually full/wrap always may overflow.
1859 EXPECT_MAY_OVERFLOW(Full.unsignedSubMayOverflow(One));
1860 EXPECT_MAY_OVERFLOW(Wrap.unsignedSubMayOverflow(One));
1861 EXPECT_MAY_OVERFLOW(One.unsignedSubMayOverflow(Full));
1862 EXPECT_MAY_OVERFLOW(One.unsignedSubMayOverflow(Wrap));
1863
1864 ConstantRange A(APInt(16, 0x0000), APInt(16, 0x0100));
1865 ConstantRange B(APInt(16, 0x0100), APInt(16, 0x0200));
1866 EXPECT_NEVER_OVERFLOWS(B.unsignedSubMayOverflow(A));
Nikita Popov332c1002019-05-28 18:08:31 +00001867 EXPECT_ALWAYS_OVERFLOWS_LOW(A.unsignedSubMayOverflow(B));
Nikita Popove3d3e862019-03-15 17:29:05 +00001868
1869 ConstantRange A1(APInt(16, 0x0000), APInt(16, 0x0101));
1870 ConstantRange B1(APInt(16, 0x0100), APInt(16, 0x0201));
1871 EXPECT_NEVER_OVERFLOWS(B1.unsignedSubMayOverflow(A1));
1872 EXPECT_MAY_OVERFLOW(A1.unsignedSubMayOverflow(B1));
1873
1874 ConstantRange A2(APInt(16, 0x0000), APInt(16, 0x0102));
1875 ConstantRange B2(APInt(16, 0x0100), APInt(16, 0x0202));
1876 EXPECT_MAY_OVERFLOW(B2.unsignedSubMayOverflow(A2));
1877 EXPECT_MAY_OVERFLOW(A2.unsignedSubMayOverflow(B2));
1878}
1879
1880TEST_F(ConstantRangeTest, SignedAddOverflow) {
1881 // Ill-defined - may overflow is a conservative result.
1882 EXPECT_MAY_OVERFLOW(Some.signedAddMayOverflow(Empty));
1883 EXPECT_MAY_OVERFLOW(Empty.signedAddMayOverflow(Some));
1884
1885 // Never overflow despite one full/wrap set.
1886 ConstantRange Zero(APInt::getNullValue(16));
1887 EXPECT_NEVER_OVERFLOWS(Full.signedAddMayOverflow(Zero));
1888 EXPECT_NEVER_OVERFLOWS(Wrap.signedAddMayOverflow(Zero));
1889 EXPECT_NEVER_OVERFLOWS(Zero.signedAddMayOverflow(Full));
1890 EXPECT_NEVER_OVERFLOWS(Zero.signedAddMayOverflow(Wrap));
1891
1892 // But usually full/wrap always may overflow.
1893 EXPECT_MAY_OVERFLOW(Full.signedAddMayOverflow(One));
1894 EXPECT_MAY_OVERFLOW(Wrap.signedAddMayOverflow(One));
1895 EXPECT_MAY_OVERFLOW(One.signedAddMayOverflow(Full));
1896 EXPECT_MAY_OVERFLOW(One.signedAddMayOverflow(Wrap));
1897
1898 ConstantRange A(APInt(16, 0x7d00), APInt(16, 0x7e00));
1899 ConstantRange B1(APInt(16, 0x0100), APInt(16, 0x0201));
1900 ConstantRange B2(APInt(16, 0x0100), APInt(16, 0x0202));
1901 EXPECT_NEVER_OVERFLOWS(A.signedAddMayOverflow(B1));
1902 EXPECT_MAY_OVERFLOW(A.signedAddMayOverflow(B2));
1903 ConstantRange B3(APInt(16, 0x8000), APInt(16, 0x0201));
1904 ConstantRange B4(APInt(16, 0x8000), APInt(16, 0x0202));
1905 EXPECT_NEVER_OVERFLOWS(A.signedAddMayOverflow(B3));
1906 EXPECT_MAY_OVERFLOW(A.signedAddMayOverflow(B4));
1907 ConstantRange B5(APInt(16, 0x0299), APInt(16, 0x0400));
1908 ConstantRange B6(APInt(16, 0x0300), APInt(16, 0x0400));
1909 EXPECT_MAY_OVERFLOW(A.signedAddMayOverflow(B5));
Nikita Popov332c1002019-05-28 18:08:31 +00001910 EXPECT_ALWAYS_OVERFLOWS_HIGH(A.signedAddMayOverflow(B6));
Nikita Popove3d3e862019-03-15 17:29:05 +00001911
1912 ConstantRange C(APInt(16, 0x8200), APInt(16, 0x8300));
1913 ConstantRange D1(APInt(16, 0xfe00), APInt(16, 0xff00));
1914 ConstantRange D2(APInt(16, 0xfd99), APInt(16, 0xff00));
1915 EXPECT_NEVER_OVERFLOWS(C.signedAddMayOverflow(D1));
1916 EXPECT_MAY_OVERFLOW(C.signedAddMayOverflow(D2));
1917 ConstantRange D3(APInt(16, 0xfe00), APInt(16, 0x8000));
1918 ConstantRange D4(APInt(16, 0xfd99), APInt(16, 0x8000));
1919 EXPECT_NEVER_OVERFLOWS(C.signedAddMayOverflow(D3));
1920 EXPECT_MAY_OVERFLOW(C.signedAddMayOverflow(D4));
1921 ConstantRange D5(APInt(16, 0xfc00), APInt(16, 0xfd02));
1922 ConstantRange D6(APInt(16, 0xfc00), APInt(16, 0xfd01));
1923 EXPECT_MAY_OVERFLOW(C.signedAddMayOverflow(D5));
Nikita Popov332c1002019-05-28 18:08:31 +00001924 EXPECT_ALWAYS_OVERFLOWS_LOW(C.signedAddMayOverflow(D6));
Nikita Popove3d3e862019-03-15 17:29:05 +00001925
1926 ConstantRange E(APInt(16, 0xff00), APInt(16, 0x0100));
1927 EXPECT_NEVER_OVERFLOWS(E.signedAddMayOverflow(E));
1928 ConstantRange F(APInt(16, 0xf000), APInt(16, 0x7000));
1929 EXPECT_MAY_OVERFLOW(F.signedAddMayOverflow(F));
1930}
1931
1932TEST_F(ConstantRangeTest, SignedSubOverflow) {
1933 // Ill-defined - may overflow is a conservative result.
1934 EXPECT_MAY_OVERFLOW(Some.signedSubMayOverflow(Empty));
1935 EXPECT_MAY_OVERFLOW(Empty.signedSubMayOverflow(Some));
1936
1937 // Never overflow despite one full/wrap set.
1938 ConstantRange Zero(APInt::getNullValue(16));
1939 EXPECT_NEVER_OVERFLOWS(Full.signedSubMayOverflow(Zero));
1940 EXPECT_NEVER_OVERFLOWS(Wrap.signedSubMayOverflow(Zero));
1941
1942 // But usually full/wrap always may overflow.
1943 EXPECT_MAY_OVERFLOW(Full.signedSubMayOverflow(One));
1944 EXPECT_MAY_OVERFLOW(Wrap.signedSubMayOverflow(One));
1945 EXPECT_MAY_OVERFLOW(One.signedSubMayOverflow(Full));
1946 EXPECT_MAY_OVERFLOW(One.signedSubMayOverflow(Wrap));
1947
1948 ConstantRange A(APInt(16, 0x7d00), APInt(16, 0x7e00));
1949 ConstantRange B1(APInt(16, 0xfe00), APInt(16, 0xff00));
1950 ConstantRange B2(APInt(16, 0xfd99), APInt(16, 0xff00));
1951 EXPECT_NEVER_OVERFLOWS(A.signedSubMayOverflow(B1));
1952 EXPECT_MAY_OVERFLOW(A.signedSubMayOverflow(B2));
1953 ConstantRange B3(APInt(16, 0xfc00), APInt(16, 0xfd02));
1954 ConstantRange B4(APInt(16, 0xfc00), APInt(16, 0xfd01));
1955 EXPECT_MAY_OVERFLOW(A.signedSubMayOverflow(B3));
Nikita Popov332c1002019-05-28 18:08:31 +00001956 EXPECT_ALWAYS_OVERFLOWS_HIGH(A.signedSubMayOverflow(B4));
Nikita Popove3d3e862019-03-15 17:29:05 +00001957
1958 ConstantRange C(APInt(16, 0x8200), APInt(16, 0x8300));
1959 ConstantRange D1(APInt(16, 0x0100), APInt(16, 0x0201));
1960 ConstantRange D2(APInt(16, 0x0100), APInt(16, 0x0202));
1961 EXPECT_NEVER_OVERFLOWS(C.signedSubMayOverflow(D1));
1962 EXPECT_MAY_OVERFLOW(C.signedSubMayOverflow(D2));
1963 ConstantRange D3(APInt(16, 0x0299), APInt(16, 0x0400));
1964 ConstantRange D4(APInt(16, 0x0300), APInt(16, 0x0400));
1965 EXPECT_MAY_OVERFLOW(C.signedSubMayOverflow(D3));
Nikita Popov332c1002019-05-28 18:08:31 +00001966 EXPECT_ALWAYS_OVERFLOWS_LOW(C.signedSubMayOverflow(D4));
Nikita Popove3d3e862019-03-15 17:29:05 +00001967
1968 ConstantRange E(APInt(16, 0xff00), APInt(16, 0x0100));
1969 EXPECT_NEVER_OVERFLOWS(E.signedSubMayOverflow(E));
1970 ConstantRange F(APInt(16, 0xf000), APInt(16, 0x7001));
1971 EXPECT_MAY_OVERFLOW(F.signedSubMayOverflow(F));
1972}
1973
1974template<typename Fn1, typename Fn2>
1975static void TestOverflowExhaustive(Fn1 OverflowFn, Fn2 MayOverflowFn) {
1976 // Constant range overflow checks are tested exhaustively on 4-bit numbers.
1977 unsigned Bits = 4;
Fangrui Songdabd8002019-04-14 05:19:15 +00001978 EnumerateTwoConstantRanges(Bits, [=](const ConstantRange &CR1,
1979 const ConstantRange &CR2) {
Fangrui Songdabd8002019-04-14 05:19:15 +00001980 // Loop over all N1 in CR1 and N2 in CR2 and check whether any of the
Fangrui Songdc7000b2019-04-14 09:19:15 +00001981 // operations have overflow / have no overflow.
Nikita Popov332c1002019-05-28 18:08:31 +00001982 bool RangeHasOverflowLow = false;
1983 bool RangeHasOverflowHigh = false;
Fangrui Songdabd8002019-04-14 05:19:15 +00001984 bool RangeHasNoOverflow = false;
Fangrui Songdc7000b2019-04-14 09:19:15 +00001985 ForeachNumInConstantRange(CR1, [&](const APInt &N1) {
1986 ForeachNumInConstantRange(CR2, [&](const APInt &N2) {
Nikita Popov332c1002019-05-28 18:08:31 +00001987 bool IsOverflowHigh;
1988 if (!OverflowFn(IsOverflowHigh, N1, N2)) {
Fangrui Songdabd8002019-04-14 05:19:15 +00001989 RangeHasNoOverflow = true;
Nikita Popov332c1002019-05-28 18:08:31 +00001990 return;
1991 }
1992
1993 if (IsOverflowHigh)
1994 RangeHasOverflowHigh = true;
1995 else
1996 RangeHasOverflowLow = true;
Fangrui Songdc7000b2019-04-14 09:19:15 +00001997 });
1998 });
Nikita Popovee9f2ae2019-03-27 20:18:51 +00001999
Fangrui Songdabd8002019-04-14 05:19:15 +00002000 ConstantRange::OverflowResult OR = MayOverflowFn(CR1, CR2);
2001 switch (OR) {
Nikita Popov332c1002019-05-28 18:08:31 +00002002 case ConstantRange::OverflowResult::AlwaysOverflowsLow:
2003 EXPECT_TRUE(RangeHasOverflowLow);
2004 EXPECT_FALSE(RangeHasOverflowHigh);
2005 EXPECT_FALSE(RangeHasNoOverflow);
2006 break;
2007 case ConstantRange::OverflowResult::AlwaysOverflowsHigh:
2008 EXPECT_TRUE(RangeHasOverflowHigh);
2009 EXPECT_FALSE(RangeHasOverflowLow);
Fangrui Songdabd8002019-04-14 05:19:15 +00002010 EXPECT_FALSE(RangeHasNoOverflow);
2011 break;
2012 case ConstantRange::OverflowResult::NeverOverflows:
Nikita Popov332c1002019-05-28 18:08:31 +00002013 EXPECT_FALSE(RangeHasOverflowLow);
2014 EXPECT_FALSE(RangeHasOverflowHigh);
Fangrui Songdabd8002019-04-14 05:19:15 +00002015 EXPECT_TRUE(RangeHasNoOverflow);
2016 break;
2017 case ConstantRange::OverflowResult::MayOverflow:
2018 // We return MayOverflow for empty sets as a conservative result,
2019 // but of course neither the RangeHasOverflow nor the
2020 // RangeHasNoOverflow flags will be set.
2021 if (CR1.isEmptySet() || CR2.isEmptySet())
2022 break;
Nikita Popovee9f2ae2019-03-27 20:18:51 +00002023
Nikita Popov332c1002019-05-28 18:08:31 +00002024 EXPECT_TRUE(RangeHasOverflowLow || RangeHasOverflowHigh);
Fangrui Songdabd8002019-04-14 05:19:15 +00002025 EXPECT_TRUE(RangeHasNoOverflow);
2026 break;
2027 }
2028 });
Nikita Popove3d3e862019-03-15 17:29:05 +00002029}
2030
Nikita Popovdb615bb2019-04-11 21:10:19 +00002031TEST_F(ConstantRangeTest, UnsignedAddOverflowExhaustive) {
Nikita Popove3d3e862019-03-15 17:29:05 +00002032 TestOverflowExhaustive(
Nikita Popov332c1002019-05-28 18:08:31 +00002033 [](bool &IsOverflowHigh, const APInt &N1, const APInt &N2) {
Nikita Popove3d3e862019-03-15 17:29:05 +00002034 bool Overflow;
Nikita Popov8d92b8e2019-03-15 18:08:06 +00002035 (void) N1.uadd_ov(N2, Overflow);
Nikita Popov332c1002019-05-28 18:08:31 +00002036 IsOverflowHigh = true;
Nikita Popove3d3e862019-03-15 17:29:05 +00002037 return Overflow;
2038 },
2039 [](const ConstantRange &CR1, const ConstantRange &CR2) {
2040 return CR1.unsignedAddMayOverflow(CR2);
2041 });
2042}
2043
Nikita Popovdb615bb2019-04-11 21:10:19 +00002044TEST_F(ConstantRangeTest, UnsignedSubOverflowExhaustive) {
Nikita Popove3d3e862019-03-15 17:29:05 +00002045 TestOverflowExhaustive(
Nikita Popov332c1002019-05-28 18:08:31 +00002046 [](bool &IsOverflowHigh, const APInt &N1, const APInt &N2) {
Nikita Popove3d3e862019-03-15 17:29:05 +00002047 bool Overflow;
Nikita Popov8d92b8e2019-03-15 18:08:06 +00002048 (void) N1.usub_ov(N2, Overflow);
Nikita Popov332c1002019-05-28 18:08:31 +00002049 IsOverflowHigh = false;
Nikita Popove3d3e862019-03-15 17:29:05 +00002050 return Overflow;
2051 },
2052 [](const ConstantRange &CR1, const ConstantRange &CR2) {
2053 return CR1.unsignedSubMayOverflow(CR2);
2054 });
2055}
2056
Nikita Popove319eaf2019-04-11 21:10:33 +00002057TEST_F(ConstantRangeTest, UnsignedMulOverflowExhaustive) {
2058 TestOverflowExhaustive(
Nikita Popov332c1002019-05-28 18:08:31 +00002059 [](bool &IsOverflowHigh, const APInt &N1, const APInt &N2) {
Nikita Popove319eaf2019-04-11 21:10:33 +00002060 bool Overflow;
2061 (void) N1.umul_ov(N2, Overflow);
Nikita Popov332c1002019-05-28 18:08:31 +00002062 IsOverflowHigh = true;
Nikita Popove319eaf2019-04-11 21:10:33 +00002063 return Overflow;
2064 },
2065 [](const ConstantRange &CR1, const ConstantRange &CR2) {
2066 return CR1.unsignedMulMayOverflow(CR2);
2067 });
2068}
2069
Nikita Popovdb615bb2019-04-11 21:10:19 +00002070TEST_F(ConstantRangeTest, SignedAddOverflowExhaustive) {
Nikita Popove3d3e862019-03-15 17:29:05 +00002071 TestOverflowExhaustive(
Nikita Popov332c1002019-05-28 18:08:31 +00002072 [](bool &IsOverflowHigh, const APInt &N1, const APInt &N2) {
Nikita Popove3d3e862019-03-15 17:29:05 +00002073 bool Overflow;
Nikita Popov8d92b8e2019-03-15 18:08:06 +00002074 (void) N1.sadd_ov(N2, Overflow);
Nikita Popov332c1002019-05-28 18:08:31 +00002075 IsOverflowHigh = N1.isNonNegative();
Nikita Popove3d3e862019-03-15 17:29:05 +00002076 return Overflow;
2077 },
2078 [](const ConstantRange &CR1, const ConstantRange &CR2) {
2079 return CR1.signedAddMayOverflow(CR2);
2080 });
2081}
2082
Nikita Popovdb615bb2019-04-11 21:10:19 +00002083TEST_F(ConstantRangeTest, SignedSubOverflowExhaustive) {
Nikita Popove3d3e862019-03-15 17:29:05 +00002084 TestOverflowExhaustive(
Nikita Popov332c1002019-05-28 18:08:31 +00002085 [](bool &IsOverflowHigh, const APInt &N1, const APInt &N2) {
Nikita Popove3d3e862019-03-15 17:29:05 +00002086 bool Overflow;
Nikita Popov8d92b8e2019-03-15 18:08:06 +00002087 (void) N1.ssub_ov(N2, Overflow);
Nikita Popov332c1002019-05-28 18:08:31 +00002088 IsOverflowHigh = N1.isNonNegative();
Nikita Popove3d3e862019-03-15 17:29:05 +00002089 return Overflow;
2090 },
2091 [](const ConstantRange &CR1, const ConstantRange &CR2) {
2092 return CR1.signedSubMayOverflow(CR2);
2093 });
2094}
2095
Nikita Popovef2d9792019-03-17 20:24:02 +00002096TEST_F(ConstantRangeTest, FromKnownBits) {
2097 KnownBits Unknown(16);
2098 EXPECT_EQ(Full, ConstantRange::fromKnownBits(Unknown, /*signed*/false));
2099 EXPECT_EQ(Full, ConstantRange::fromKnownBits(Unknown, /*signed*/true));
2100
2101 // .10..01. -> unsigned 01000010 (66) to 11011011 (219)
2102 // -> signed 11000010 (194) to 01011011 (91)
2103 KnownBits Known(8);
2104 Known.Zero = 36;
2105 Known.One = 66;
2106 ConstantRange Unsigned(APInt(8, 66), APInt(8, 219 + 1));
2107 ConstantRange Signed(APInt(8, 194), APInt(8, 91 + 1));
2108 EXPECT_EQ(Unsigned, ConstantRange::fromKnownBits(Known, /*signed*/false));
2109 EXPECT_EQ(Signed, ConstantRange::fromKnownBits(Known, /*signed*/true));
2110
2111 // 1.10.10. -> 10100100 (164) to 11101101 (237)
2112 Known.Zero = 18;
2113 Known.One = 164;
2114 ConstantRange CR1(APInt(8, 164), APInt(8, 237 + 1));
2115 EXPECT_EQ(CR1, ConstantRange::fromKnownBits(Known, /*signed*/false));
2116 EXPECT_EQ(CR1, ConstantRange::fromKnownBits(Known, /*signed*/true));
2117
2118 // 01.0.1.0 -> 01000100 (68) to 01101110 (110)
2119 Known.Zero = 145;
2120 Known.One = 68;
2121 ConstantRange CR2(APInt(8, 68), APInt(8, 110 + 1));
2122 EXPECT_EQ(CR2, ConstantRange::fromKnownBits(Known, /*signed*/false));
2123 EXPECT_EQ(CR2, ConstantRange::fromKnownBits(Known, /*signed*/true));
2124}
2125
2126TEST_F(ConstantRangeTest, FromKnownBitsExhaustive) {
2127 unsigned Bits = 4;
2128 unsigned Max = 1 << Bits;
2129 KnownBits Known(Bits);
2130 for (unsigned Zero = 0; Zero < Max; ++Zero) {
2131 for (unsigned One = 0; One < Max; ++One) {
2132 Known.Zero = Zero;
2133 Known.One = One;
2134 if (Known.hasConflict() || Known.isUnknown())
2135 continue;
2136
2137 APInt MinUnsigned = APInt::getMaxValue(Bits);
2138 APInt MaxUnsigned = APInt::getMinValue(Bits);
2139 APInt MinSigned = APInt::getSignedMaxValue(Bits);
2140 APInt MaxSigned = APInt::getSignedMinValue(Bits);
2141 for (unsigned N = 0; N < Max; ++N) {
2142 APInt Num(Bits, N);
2143 if ((Num & Known.Zero) != 0 || (~Num & Known.One) != 0)
2144 continue;
2145
2146 if (Num.ult(MinUnsigned)) MinUnsigned = Num;
2147 if (Num.ugt(MaxUnsigned)) MaxUnsigned = Num;
2148 if (Num.slt(MinSigned)) MinSigned = Num;
2149 if (Num.sgt(MaxSigned)) MaxSigned = Num;
2150 }
2151
2152 ConstantRange UnsignedCR(MinUnsigned, MaxUnsigned + 1);
2153 ConstantRange SignedCR(MinSigned, MaxSigned + 1);
2154 EXPECT_EQ(UnsignedCR, ConstantRange::fromKnownBits(Known, false));
2155 EXPECT_EQ(SignedCR, ConstantRange::fromKnownBits(Known, true));
2156 }
2157 }
2158}
2159
Nikita Popovbad648a2019-04-07 17:52:40 +00002160TEST_F(ConstantRangeTest, Negative) {
2161 // All elements in an empty set (of which there are none) are both negative
2162 // and non-negative. Empty & full sets checked explicitly for clarity, but
2163 // they are also covered by the exhaustive test below.
2164 EXPECT_TRUE(Empty.isAllNegative());
2165 EXPECT_TRUE(Empty.isAllNonNegative());
2166 EXPECT_FALSE(Full.isAllNegative());
2167 EXPECT_FALSE(Full.isAllNonNegative());
2168
2169 unsigned Bits = 4;
2170 EnumerateConstantRanges(Bits, [](const ConstantRange &CR) {
2171 bool AllNegative = true;
2172 bool AllNonNegative = true;
2173 ForeachNumInConstantRange(CR, [&](const APInt &N) {
2174 if (!N.isNegative())
2175 AllNegative = false;
2176 if (!N.isNonNegative())
2177 AllNonNegative = false;
2178 });
2179 assert((CR.isEmptySet() || !AllNegative || !AllNonNegative) &&
2180 "Only empty set can be both all negative and all non-negative");
2181
2182 EXPECT_EQ(AllNegative, CR.isAllNegative());
2183 EXPECT_EQ(AllNonNegative, CR.isAllNonNegative());
2184 });
2185}
2186
Nikita Popov198ab602019-04-21 15:23:05 +00002187TEST_F(ConstantRangeTest, UAddSat) {
2188 TestUnsignedBinOpExhaustive(
2189 [](const ConstantRange &CR1, const ConstantRange &CR2) {
2190 return CR1.uadd_sat(CR2);
2191 },
2192 [](const APInt &N1, const APInt &N2) {
2193 return N1.uadd_sat(N2);
2194 });
2195}
2196
2197TEST_F(ConstantRangeTest, USubSat) {
2198 TestUnsignedBinOpExhaustive(
2199 [](const ConstantRange &CR1, const ConstantRange &CR2) {
2200 return CR1.usub_sat(CR2);
2201 },
2202 [](const APInt &N1, const APInt &N2) {
2203 return N1.usub_sat(N2);
2204 });
2205}
2206
2207TEST_F(ConstantRangeTest, SAddSat) {
2208 TestSignedBinOpExhaustive(
2209 [](const ConstantRange &CR1, const ConstantRange &CR2) {
2210 return CR1.sadd_sat(CR2);
2211 },
2212 [](const APInt &N1, const APInt &N2) {
2213 return N1.sadd_sat(N2);
2214 });
2215}
2216
2217TEST_F(ConstantRangeTest, SSubSat) {
2218 TestSignedBinOpExhaustive(
2219 [](const ConstantRange &CR1, const ConstantRange &CR2) {
2220 return CR1.ssub_sat(CR2);
2221 },
2222 [](const APInt &N1, const APInt &N2) {
2223 return N1.ssub_sat(N2);
2224 });
2225}
2226
Nikita Popovc0fa4ec2019-04-26 16:50:31 +00002227TEST_F(ConstantRangeTest, Abs) {
2228 unsigned Bits = 4;
2229 EnumerateConstantRanges(Bits, [&](const ConstantRange &CR) {
2230 // We're working with unsigned integers here, because it makes the signed
2231 // min case non-wrapping.
2232 APInt Min = APInt::getMaxValue(Bits);
2233 APInt Max = APInt::getMinValue(Bits);
2234 ForeachNumInConstantRange(CR, [&](const APInt &N) {
2235 APInt AbsN = N.abs();
2236 if (AbsN.ult(Min))
2237 Min = AbsN;
2238 if (AbsN.ugt(Max))
2239 Max = AbsN;
2240 });
2241
2242 ConstantRange AbsCR = CR.abs();
2243 if (Min.ugt(Max)) {
2244 EXPECT_TRUE(AbsCR.isEmptySet());
2245 return;
2246 }
2247
2248 ConstantRange Exact = ConstantRange::getNonEmpty(Min, Max + 1);
2249 EXPECT_EQ(Exact, AbsCR);
2250 });
2251}
2252
Dan Gohman5035fbf2009-07-09 22:07:27 +00002253} // anonymous namespace