blob: b69dce1bd8a1d2451364c28696d91b09763e25c8 [file] [log] [blame]
Bill Wendlingb9ad4922009-02-09 12:31:40 +00001//===- llvm/unittest/ADT/APInt.cpp - APInt unit tests ---------------------===//
Nick Lewyckyee226112009-01-19 18:08:33 +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
Nick Lewyckyee226112009-01-19 18:08:33 +00006//
7//===----------------------------------------------------------------------===//
8
Nick Lewyckyee226112009-01-19 18:08:33 +00009#include "llvm/ADT/APInt.h"
Mehdi Amini47b292d2016-04-16 07:51:28 +000010#include "llvm/ADT/ArrayRef.h"
Misha Brukmand1d2c502009-03-24 21:36:09 +000011#include "llvm/ADT/SmallString.h"
Krzysztof Parzyszek90f32492018-08-02 19:13:35 +000012#include "llvm/ADT/Twine.h"
Chandler Carruth130cec22012-12-04 10:23:08 +000013#include "gtest/gtest.h"
Pawel Bylica0dda1642015-06-25 10:47:08 +000014#include <array>
Nick Lewyckyee226112009-01-19 18:08:33 +000015
16using namespace llvm;
17
18namespace {
19
Richard Smith55f5e652015-09-04 04:08:36 +000020TEST(APIntTest, ValueInit) {
21 APInt Zero = APInt();
22 EXPECT_TRUE(!Zero);
23 EXPECT_TRUE(!Zero.zext(64));
24 EXPECT_TRUE(!Zero.sext(64));
25}
26
Nick Lewyckyee226112009-01-19 18:08:33 +000027// Test that APInt shift left works when bitwidth > 64 and shiftamt == 0
28TEST(APIntTest, ShiftLeftByZero) {
29 APInt One = APInt::getNullValue(65) + 1;
30 APInt Shl = One.shl(0);
Chandler Carruthbc3e8a72010-07-13 17:28:05 +000031 EXPECT_TRUE(Shl[0]);
32 EXPECT_FALSE(Shl[1]);
Torok Edwinec39eb82009-01-27 18:06:03 +000033}
34
Jonathan Roelofs851b79d2016-08-10 19:50:14 +000035TEST(APIntTest, i64_ArithmeticRightShiftNegative) {
36 const APInt neg_one(64, static_cast<uint64_t>(-1), true);
37 EXPECT_EQ(neg_one, neg_one.ashr(7));
38}
39
Misha Brukmand1d2c502009-03-24 21:36:09 +000040TEST(APIntTest, i128_NegativeCount) {
Misha Brukman680336d2009-04-08 16:17:23 +000041 APInt Minus3(128, static_cast<uint64_t>(-3), true);
Torok Edwinec39eb82009-01-27 18:06:03 +000042 EXPECT_EQ(126u, Minus3.countLeadingOnes());
43 EXPECT_EQ(-3, Minus3.getSExtValue());
44
Misha Brukman680336d2009-04-08 16:17:23 +000045 APInt Minus1(128, static_cast<uint64_t>(-1), true);
Torok Edwinec39eb82009-01-27 18:06:03 +000046 EXPECT_EQ(0u, Minus1.countLeadingZeros());
47 EXPECT_EQ(128u, Minus1.countLeadingOnes());
48 EXPECT_EQ(128u, Minus1.getActiveBits());
49 EXPECT_EQ(0u, Minus1.countTrailingZeros());
50 EXPECT_EQ(128u, Minus1.countTrailingOnes());
51 EXPECT_EQ(128u, Minus1.countPopulation());
52 EXPECT_EQ(-1, Minus1.getSExtValue());
53}
54
Misha Brukmand1d2c502009-03-24 21:36:09 +000055TEST(APIntTest, i33_Count) {
Misha Brukman680336d2009-04-08 16:17:23 +000056 APInt i33minus2(33, static_cast<uint64_t>(-2), true);
Torok Edwinec39eb82009-01-27 18:06:03 +000057 EXPECT_EQ(0u, i33minus2.countLeadingZeros());
58 EXPECT_EQ(32u, i33minus2.countLeadingOnes());
59 EXPECT_EQ(33u, i33minus2.getActiveBits());
60 EXPECT_EQ(1u, i33minus2.countTrailingZeros());
61 EXPECT_EQ(32u, i33minus2.countPopulation());
62 EXPECT_EQ(-2, i33minus2.getSExtValue());
63 EXPECT_EQ(((uint64_t)-2)&((1ull<<33) -1), i33minus2.getZExtValue());
64}
65
Simon Pilgrimaed35222017-02-24 10:15:29 +000066TEST(APIntTest, i61_Count) {
67 APInt i61(61, 1 << 15);
68 EXPECT_EQ(45u, i61.countLeadingZeros());
69 EXPECT_EQ(0u, i61.countLeadingOnes());
70 EXPECT_EQ(16u, i61.getActiveBits());
71 EXPECT_EQ(15u, i61.countTrailingZeros());
72 EXPECT_EQ(1u, i61.countPopulation());
Simon Pilgrim4f8a4432017-02-24 11:31:00 +000073 EXPECT_EQ(static_cast<int64_t>(1 << 15), i61.getSExtValue());
74 EXPECT_EQ(static_cast<uint64_t>(1 << 15), i61.getZExtValue());
Simon Pilgrimaed35222017-02-24 10:15:29 +000075
76 i61.setBits(8, 19);
77 EXPECT_EQ(42u, i61.countLeadingZeros());
78 EXPECT_EQ(0u, i61.countLeadingOnes());
79 EXPECT_EQ(19u, i61.getActiveBits());
80 EXPECT_EQ(8u, i61.countTrailingZeros());
81 EXPECT_EQ(11u, i61.countPopulation());
Simon Pilgrim4f8a4432017-02-24 11:31:00 +000082 EXPECT_EQ(static_cast<int64_t>((1 << 19) - (1 << 8)), i61.getSExtValue());
83 EXPECT_EQ(static_cast<uint64_t>((1 << 19) - (1 << 8)), i61.getZExtValue());
Simon Pilgrimaed35222017-02-24 10:15:29 +000084}
85
Misha Brukmand1d2c502009-03-24 21:36:09 +000086TEST(APIntTest, i65_Count) {
Meador Inge32dc7242013-02-07 18:36:50 +000087 APInt i65(65, 0, true);
88 EXPECT_EQ(65u, i65.countLeadingZeros());
89 EXPECT_EQ(0u, i65.countLeadingOnes());
90 EXPECT_EQ(0u, i65.getActiveBits());
91 EXPECT_EQ(1u, i65.getActiveWords());
92 EXPECT_EQ(65u, i65.countTrailingZeros());
93 EXPECT_EQ(0u, i65.countPopulation());
94
Torok Edwinec39eb82009-01-27 18:06:03 +000095 APInt i65minus(65, 0, true);
Jay Foad25a5e4c2010-12-01 08:53:58 +000096 i65minus.setBit(64);
Torok Edwinec39eb82009-01-27 18:06:03 +000097 EXPECT_EQ(0u, i65minus.countLeadingZeros());
98 EXPECT_EQ(1u, i65minus.countLeadingOnes());
99 EXPECT_EQ(65u, i65minus.getActiveBits());
100 EXPECT_EQ(64u, i65minus.countTrailingZeros());
101 EXPECT_EQ(1u, i65minus.countPopulation());
102}
103
Misha Brukmand1d2c502009-03-24 21:36:09 +0000104TEST(APIntTest, i128_PositiveCount) {
Torok Edwinec39eb82009-01-27 18:06:03 +0000105 APInt u128max = APInt::getAllOnesValue(128);
106 EXPECT_EQ(128u, u128max.countLeadingOnes());
107 EXPECT_EQ(0u, u128max.countLeadingZeros());
108 EXPECT_EQ(128u, u128max.getActiveBits());
109 EXPECT_EQ(0u, u128max.countTrailingZeros());
110 EXPECT_EQ(128u, u128max.countTrailingOnes());
111 EXPECT_EQ(128u, u128max.countPopulation());
112
Misha Brukman680336d2009-04-08 16:17:23 +0000113 APInt u64max(128, static_cast<uint64_t>(-1), false);
Torok Edwinec39eb82009-01-27 18:06:03 +0000114 EXPECT_EQ(64u, u64max.countLeadingZeros());
115 EXPECT_EQ(0u, u64max.countLeadingOnes());
116 EXPECT_EQ(64u, u64max.getActiveBits());
117 EXPECT_EQ(0u, u64max.countTrailingZeros());
118 EXPECT_EQ(64u, u64max.countTrailingOnes());
119 EXPECT_EQ(64u, u64max.countPopulation());
120 EXPECT_EQ((uint64_t)~0ull, u64max.getZExtValue());
121
122 APInt zero(128, 0, true);
123 EXPECT_EQ(128u, zero.countLeadingZeros());
124 EXPECT_EQ(0u, zero.countLeadingOnes());
125 EXPECT_EQ(0u, zero.getActiveBits());
126 EXPECT_EQ(128u, zero.countTrailingZeros());
127 EXPECT_EQ(0u, zero.countTrailingOnes());
128 EXPECT_EQ(0u, zero.countPopulation());
129 EXPECT_EQ(0u, zero.getSExtValue());
130 EXPECT_EQ(0u, zero.getZExtValue());
131
132 APInt one(128, 1, true);
133 EXPECT_EQ(127u, one.countLeadingZeros());
134 EXPECT_EQ(0u, one.countLeadingOnes());
135 EXPECT_EQ(1u, one.getActiveBits());
136 EXPECT_EQ(0u, one.countTrailingZeros());
137 EXPECT_EQ(1u, one.countTrailingOnes());
138 EXPECT_EQ(1u, one.countPopulation());
139 EXPECT_EQ(1, one.getSExtValue());
140 EXPECT_EQ(1u, one.getZExtValue());
Simon Pilgrimaed35222017-02-24 10:15:29 +0000141
142 APInt s128(128, 2, true);
143 EXPECT_EQ(126u, s128.countLeadingZeros());
144 EXPECT_EQ(0u, s128.countLeadingOnes());
145 EXPECT_EQ(2u, s128.getActiveBits());
146 EXPECT_EQ(1u, s128.countTrailingZeros());
147 EXPECT_EQ(0u, s128.countTrailingOnes());
148 EXPECT_EQ(1u, s128.countPopulation());
149 EXPECT_EQ(2, s128.getSExtValue());
150 EXPECT_EQ(2u, s128.getZExtValue());
151
152 // NOP Test
153 s128.setBits(42, 42);
154 EXPECT_EQ(126u, s128.countLeadingZeros());
155 EXPECT_EQ(0u, s128.countLeadingOnes());
156 EXPECT_EQ(2u, s128.getActiveBits());
157 EXPECT_EQ(1u, s128.countTrailingZeros());
158 EXPECT_EQ(0u, s128.countTrailingOnes());
159 EXPECT_EQ(1u, s128.countPopulation());
160 EXPECT_EQ(2, s128.getSExtValue());
161 EXPECT_EQ(2u, s128.getZExtValue());
162
163 s128.setBits(3, 32);
164 EXPECT_EQ(96u, s128.countLeadingZeros());
165 EXPECT_EQ(0u, s128.countLeadingOnes());
166 EXPECT_EQ(32u, s128.getActiveBits());
167 EXPECT_EQ(33u, s128.getMinSignedBits());
168 EXPECT_EQ(1u, s128.countTrailingZeros());
169 EXPECT_EQ(0u, s128.countTrailingOnes());
170 EXPECT_EQ(30u, s128.countPopulation());
171 EXPECT_EQ(static_cast<uint32_t>((~0u << 3) | 2), s128.getZExtValue());
172
173 s128.setBits(62, 128);
174 EXPECT_EQ(0u, s128.countLeadingZeros());
175 EXPECT_EQ(66u, s128.countLeadingOnes());
176 EXPECT_EQ(128u, s128.getActiveBits());
177 EXPECT_EQ(63u, s128.getMinSignedBits());
178 EXPECT_EQ(1u, s128.countTrailingZeros());
179 EXPECT_EQ(0u, s128.countTrailingOnes());
180 EXPECT_EQ(96u, s128.countPopulation());
181 EXPECT_EQ(static_cast<int64_t>((3ull << 62) |
182 static_cast<uint32_t>((~0u << 3) | 2)),
183 s128.getSExtValue());
184}
185
186TEST(APIntTest, i256) {
187 APInt s256(256, 15, true);
188 EXPECT_EQ(252u, s256.countLeadingZeros());
189 EXPECT_EQ(0u, s256.countLeadingOnes());
190 EXPECT_EQ(4u, s256.getActiveBits());
191 EXPECT_EQ(0u, s256.countTrailingZeros());
192 EXPECT_EQ(4u, s256.countTrailingOnes());
193 EXPECT_EQ(4u, s256.countPopulation());
194 EXPECT_EQ(15, s256.getSExtValue());
195 EXPECT_EQ(15u, s256.getZExtValue());
196
197 s256.setBits(62, 66);
198 EXPECT_EQ(190u, s256.countLeadingZeros());
199 EXPECT_EQ(0u, s256.countLeadingOnes());
200 EXPECT_EQ(66u, s256.getActiveBits());
201 EXPECT_EQ(67u, s256.getMinSignedBits());
202 EXPECT_EQ(0u, s256.countTrailingZeros());
203 EXPECT_EQ(4u, s256.countTrailingOnes());
204 EXPECT_EQ(8u, s256.countPopulation());
205
206 s256.setBits(60, 256);
207 EXPECT_EQ(0u, s256.countLeadingZeros());
208 EXPECT_EQ(196u, s256.countLeadingOnes());
209 EXPECT_EQ(256u, s256.getActiveBits());
210 EXPECT_EQ(61u, s256.getMinSignedBits());
211 EXPECT_EQ(0u, s256.countTrailingZeros());
212 EXPECT_EQ(4u, s256.countTrailingOnes());
213 EXPECT_EQ(200u, s256.countPopulation());
214 EXPECT_EQ(static_cast<int64_t>((~0ull << 60) | 15), s256.getSExtValue());
Nick Lewyckyee226112009-01-19 18:08:33 +0000215}
216
Misha Brukmand1d2c502009-03-24 21:36:09 +0000217TEST(APIntTest, i1) {
Misha Brukman680336d2009-04-08 16:17:23 +0000218 const APInt neg_two(1, static_cast<uint64_t>(-2), true);
219 const APInt neg_one(1, static_cast<uint64_t>(-1), true);
Misha Brukmand1d2c502009-03-24 21:36:09 +0000220 const APInt zero(1, 0);
221 const APInt one(1, 1);
222 const APInt two(1, 2);
223
224 EXPECT_EQ(0, neg_two.getSExtValue());
225 EXPECT_EQ(-1, neg_one.getSExtValue());
226 EXPECT_EQ(1u, neg_one.getZExtValue());
227 EXPECT_EQ(0u, zero.getZExtValue());
228 EXPECT_EQ(-1, one.getSExtValue());
229 EXPECT_EQ(1u, one.getZExtValue());
230 EXPECT_EQ(0u, two.getZExtValue());
231 EXPECT_EQ(0, two.getSExtValue());
232
233 // Basic equalities for 1-bit values.
234 EXPECT_EQ(zero, two);
235 EXPECT_EQ(zero, neg_two);
236 EXPECT_EQ(one, neg_one);
237 EXPECT_EQ(two, neg_two);
238
Benjamin Kramer886461e2015-06-04 18:19:13 +0000239 // Min/max signed values.
240 EXPECT_TRUE(zero.isMaxSignedValue());
241 EXPECT_FALSE(one.isMaxSignedValue());
242 EXPECT_FALSE(zero.isMinSignedValue());
243 EXPECT_TRUE(one.isMinSignedValue());
244
Misha Brukmand1d2c502009-03-24 21:36:09 +0000245 // Additions.
246 EXPECT_EQ(two, one + one);
247 EXPECT_EQ(zero, neg_one + one);
248 EXPECT_EQ(neg_two, neg_one + neg_one);
249
250 // Subtractions.
251 EXPECT_EQ(neg_two, neg_one - one);
252 EXPECT_EQ(two, one - neg_one);
253 EXPECT_EQ(zero, one - one);
254
Craig Topper9028f052017-01-24 02:10:15 +0000255 // And
256 EXPECT_EQ(zero, zero & zero);
257 EXPECT_EQ(zero, one & zero);
258 EXPECT_EQ(zero, zero & one);
259 EXPECT_EQ(one, one & one);
260 EXPECT_EQ(zero, zero & zero);
261 EXPECT_EQ(zero, neg_one & zero);
262 EXPECT_EQ(zero, zero & neg_one);
263 EXPECT_EQ(neg_one, neg_one & neg_one);
264
265 // Or
266 EXPECT_EQ(zero, zero | zero);
267 EXPECT_EQ(one, one | zero);
268 EXPECT_EQ(one, zero | one);
269 EXPECT_EQ(one, one | one);
270 EXPECT_EQ(zero, zero | zero);
271 EXPECT_EQ(neg_one, neg_one | zero);
272 EXPECT_EQ(neg_one, zero | neg_one);
273 EXPECT_EQ(neg_one, neg_one | neg_one);
274
275 // Xor
276 EXPECT_EQ(zero, zero ^ zero);
277 EXPECT_EQ(one, one ^ zero);
278 EXPECT_EQ(one, zero ^ one);
279 EXPECT_EQ(zero, one ^ one);
280 EXPECT_EQ(zero, zero ^ zero);
281 EXPECT_EQ(neg_one, neg_one ^ zero);
282 EXPECT_EQ(neg_one, zero ^ neg_one);
283 EXPECT_EQ(zero, neg_one ^ neg_one);
284
Misha Brukmand1d2c502009-03-24 21:36:09 +0000285 // Shifts.
286 EXPECT_EQ(zero, one << one);
287 EXPECT_EQ(one, one << zero);
288 EXPECT_EQ(zero, one.shl(1));
289 EXPECT_EQ(one, one.shl(0));
290 EXPECT_EQ(zero, one.lshr(1));
Craig Topperfc03d2d2017-04-24 05:38:26 +0000291 EXPECT_EQ(one, one.ashr(1));
Misha Brukmand1d2c502009-03-24 21:36:09 +0000292
Eli Friedmanf70c8622011-12-22 22:11:19 +0000293 // Rotates.
294 EXPECT_EQ(one, one.rotl(0));
295 EXPECT_EQ(one, one.rotl(1));
296 EXPECT_EQ(one, one.rotr(0));
297 EXPECT_EQ(one, one.rotr(1));
298
Misha Brukmand1d2c502009-03-24 21:36:09 +0000299 // Multiplies.
300 EXPECT_EQ(neg_one, neg_one * one);
301 EXPECT_EQ(neg_one, one * neg_one);
302 EXPECT_EQ(one, neg_one * neg_one);
303 EXPECT_EQ(one, one * one);
304
305 // Divides.
306 EXPECT_EQ(neg_one, one.sdiv(neg_one));
307 EXPECT_EQ(neg_one, neg_one.sdiv(one));
308 EXPECT_EQ(one, neg_one.sdiv(neg_one));
309 EXPECT_EQ(one, one.sdiv(one));
310
311 EXPECT_EQ(neg_one, one.udiv(neg_one));
312 EXPECT_EQ(neg_one, neg_one.udiv(one));
313 EXPECT_EQ(one, neg_one.udiv(neg_one));
314 EXPECT_EQ(one, one.udiv(one));
315
316 // Remainders.
317 EXPECT_EQ(zero, neg_one.srem(one));
318 EXPECT_EQ(zero, neg_one.urem(one));
319 EXPECT_EQ(zero, one.srem(neg_one));
Nuno Lopes61b7fa22012-05-22 01:09:48 +0000320
321 // sdivrem
322 {
323 APInt q(8, 0);
324 APInt r(8, 0);
325 APInt one(8, 1);
326 APInt two(8, 2);
327 APInt nine(8, 9);
328 APInt four(8, 4);
329
330 EXPECT_EQ(nine.srem(two), one);
331 EXPECT_EQ(nine.srem(-two), one);
332 EXPECT_EQ((-nine).srem(two), -one);
333 EXPECT_EQ((-nine).srem(-two), -one);
334
335 APInt::sdivrem(nine, two, q, r);
336 EXPECT_EQ(four, q);
337 EXPECT_EQ(one, r);
338 APInt::sdivrem(-nine, two, q, r);
339 EXPECT_EQ(-four, q);
340 EXPECT_EQ(-one, r);
341 APInt::sdivrem(nine, -two, q, r);
342 EXPECT_EQ(-four, q);
343 EXPECT_EQ(one, r);
344 APInt::sdivrem(-nine, -two, q, r);
345 EXPECT_EQ(four, q);
346 EXPECT_EQ(-one, r);
347 }
Misha Brukmand1d2c502009-03-24 21:36:09 +0000348}
349
Pawel Bylica8bebed92015-06-25 10:23:52 +0000350TEST(APIntTest, compare) {
351 std::array<APInt, 5> testVals{{
352 APInt{16, 2},
353 APInt{16, 1},
354 APInt{16, 0},
355 APInt{16, (uint64_t)-1, true},
356 APInt{16, (uint64_t)-2, true},
357 }};
358
359 for (auto &arg1 : testVals)
360 for (auto &arg2 : testVals) {
361 auto uv1 = arg1.getZExtValue();
362 auto uv2 = arg2.getZExtValue();
363 auto sv1 = arg1.getSExtValue();
364 auto sv2 = arg2.getSExtValue();
365
366 EXPECT_EQ(uv1 < uv2, arg1.ult(arg2));
367 EXPECT_EQ(uv1 <= uv2, arg1.ule(arg2));
368 EXPECT_EQ(uv1 > uv2, arg1.ugt(arg2));
369 EXPECT_EQ(uv1 >= uv2, arg1.uge(arg2));
370
371 EXPECT_EQ(sv1 < sv2, arg1.slt(arg2));
372 EXPECT_EQ(sv1 <= sv2, arg1.sle(arg2));
373 EXPECT_EQ(sv1 > sv2, arg1.sgt(arg2));
374 EXPECT_EQ(sv1 >= sv2, arg1.sge(arg2));
375
376 EXPECT_EQ(uv1 < uv2, arg1.ult(uv2));
377 EXPECT_EQ(uv1 <= uv2, arg1.ule(uv2));
378 EXPECT_EQ(uv1 > uv2, arg1.ugt(uv2));
379 EXPECT_EQ(uv1 >= uv2, arg1.uge(uv2));
380
381 EXPECT_EQ(sv1 < sv2, arg1.slt(sv2));
382 EXPECT_EQ(sv1 <= sv2, arg1.sle(sv2));
383 EXPECT_EQ(sv1 > sv2, arg1.sgt(sv2));
384 EXPECT_EQ(sv1 >= sv2, arg1.sge(sv2));
385 }
386}
387
Pawel Bylicaea46a662015-07-01 22:56:43 +0000388TEST(APIntTest, compareWithRawIntegers) {
389 EXPECT_TRUE(!APInt(8, 1).uge(256));
390 EXPECT_TRUE(!APInt(8, 1).ugt(256));
391 EXPECT_TRUE( APInt(8, 1).ule(256));
392 EXPECT_TRUE( APInt(8, 1).ult(256));
393 EXPECT_TRUE(!APInt(8, 1).sge(256));
394 EXPECT_TRUE(!APInt(8, 1).sgt(256));
395 EXPECT_TRUE( APInt(8, 1).sle(256));
396 EXPECT_TRUE( APInt(8, 1).slt(256));
397 EXPECT_TRUE(!(APInt(8, 0) == 256));
398 EXPECT_TRUE( APInt(8, 0) != 256);
399 EXPECT_TRUE(!(APInt(8, 1) == 256));
400 EXPECT_TRUE( APInt(8, 1) != 256);
401
402 auto uint64max = UINT64_MAX;
403 auto int64max = INT64_MAX;
404 auto int64min = INT64_MIN;
405
406 auto u64 = APInt{128, uint64max};
407 auto s64 = APInt{128, static_cast<uint64_t>(int64max), true};
408 auto big = u64 + 1;
409
410 EXPECT_TRUE( u64.uge(uint64max));
411 EXPECT_TRUE(!u64.ugt(uint64max));
412 EXPECT_TRUE( u64.ule(uint64max));
413 EXPECT_TRUE(!u64.ult(uint64max));
414 EXPECT_TRUE( u64.sge(int64max));
415 EXPECT_TRUE( u64.sgt(int64max));
416 EXPECT_TRUE(!u64.sle(int64max));
417 EXPECT_TRUE(!u64.slt(int64max));
418 EXPECT_TRUE( u64.sge(int64min));
419 EXPECT_TRUE( u64.sgt(int64min));
420 EXPECT_TRUE(!u64.sle(int64min));
421 EXPECT_TRUE(!u64.slt(int64min));
422
423 EXPECT_TRUE(u64 == uint64max);
424 EXPECT_TRUE(u64 != int64max);
425 EXPECT_TRUE(u64 != int64min);
426
427 EXPECT_TRUE(!s64.uge(uint64max));
428 EXPECT_TRUE(!s64.ugt(uint64max));
429 EXPECT_TRUE( s64.ule(uint64max));
430 EXPECT_TRUE( s64.ult(uint64max));
431 EXPECT_TRUE( s64.sge(int64max));
432 EXPECT_TRUE(!s64.sgt(int64max));
433 EXPECT_TRUE( s64.sle(int64max));
434 EXPECT_TRUE(!s64.slt(int64max));
435 EXPECT_TRUE( s64.sge(int64min));
436 EXPECT_TRUE( s64.sgt(int64min));
437 EXPECT_TRUE(!s64.sle(int64min));
438 EXPECT_TRUE(!s64.slt(int64min));
439
440 EXPECT_TRUE(s64 != uint64max);
441 EXPECT_TRUE(s64 == int64max);
442 EXPECT_TRUE(s64 != int64min);
443
444 EXPECT_TRUE( big.uge(uint64max));
445 EXPECT_TRUE( big.ugt(uint64max));
446 EXPECT_TRUE(!big.ule(uint64max));
447 EXPECT_TRUE(!big.ult(uint64max));
448 EXPECT_TRUE( big.sge(int64max));
449 EXPECT_TRUE( big.sgt(int64max));
450 EXPECT_TRUE(!big.sle(int64max));
451 EXPECT_TRUE(!big.slt(int64max));
452 EXPECT_TRUE( big.sge(int64min));
453 EXPECT_TRUE( big.sgt(int64min));
454 EXPECT_TRUE(!big.sle(int64min));
455 EXPECT_TRUE(!big.slt(int64min));
456
457 EXPECT_TRUE(big != uint64max);
458 EXPECT_TRUE(big != int64max);
459 EXPECT_TRUE(big != int64min);
460}
461
462TEST(APIntTest, compareWithInt64Min) {
463 int64_t edge = INT64_MIN;
464 int64_t edgeP1 = edge + 1;
465 int64_t edgeM1 = INT64_MAX;
466 auto a = APInt{64, static_cast<uint64_t>(edge), true};
467
468 EXPECT_TRUE(!a.slt(edge));
469 EXPECT_TRUE( a.sle(edge));
470 EXPECT_TRUE(!a.sgt(edge));
471 EXPECT_TRUE( a.sge(edge));
472 EXPECT_TRUE( a.slt(edgeP1));
473 EXPECT_TRUE( a.sle(edgeP1));
474 EXPECT_TRUE(!a.sgt(edgeP1));
475 EXPECT_TRUE(!a.sge(edgeP1));
476 EXPECT_TRUE( a.slt(edgeM1));
477 EXPECT_TRUE( a.sle(edgeM1));
478 EXPECT_TRUE(!a.sgt(edgeM1));
479 EXPECT_TRUE(!a.sge(edgeM1));
480}
481
482TEST(APIntTest, compareWithHalfInt64Max) {
483 uint64_t edge = 0x4000000000000000;
484 uint64_t edgeP1 = edge + 1;
485 uint64_t edgeM1 = edge - 1;
486 auto a = APInt{64, edge};
487
488 EXPECT_TRUE(!a.ult(edge));
489 EXPECT_TRUE( a.ule(edge));
490 EXPECT_TRUE(!a.ugt(edge));
491 EXPECT_TRUE( a.uge(edge));
492 EXPECT_TRUE( a.ult(edgeP1));
493 EXPECT_TRUE( a.ule(edgeP1));
494 EXPECT_TRUE(!a.ugt(edgeP1));
495 EXPECT_TRUE(!a.uge(edgeP1));
496 EXPECT_TRUE(!a.ult(edgeM1));
497 EXPECT_TRUE(!a.ule(edgeM1));
498 EXPECT_TRUE( a.ugt(edgeM1));
499 EXPECT_TRUE( a.uge(edgeM1));
500
501 EXPECT_TRUE(!a.slt(edge));
502 EXPECT_TRUE( a.sle(edge));
503 EXPECT_TRUE(!a.sgt(edge));
504 EXPECT_TRUE( a.sge(edge));
505 EXPECT_TRUE( a.slt(edgeP1));
506 EXPECT_TRUE( a.sle(edgeP1));
507 EXPECT_TRUE(!a.sgt(edgeP1));
508 EXPECT_TRUE(!a.sge(edgeP1));
509 EXPECT_TRUE(!a.slt(edgeM1));
510 EXPECT_TRUE(!a.sle(edgeM1));
511 EXPECT_TRUE( a.sgt(edgeM1));
512 EXPECT_TRUE( a.sge(edgeM1));
513}
514
Pete Cooperd6e6bf12016-05-26 17:40:07 +0000515TEST(APIntTest, compareLargeIntegers) {
516 // Make sure all the combinations of signed comparisons work with big ints.
517 auto One = APInt{128, static_cast<uint64_t>(1), true};
518 auto Two = APInt{128, static_cast<uint64_t>(2), true};
519 auto MinusOne = APInt{128, static_cast<uint64_t>(-1), true};
520 auto MinusTwo = APInt{128, static_cast<uint64_t>(-2), true};
521
522 EXPECT_TRUE(!One.slt(One));
523 EXPECT_TRUE(!Two.slt(One));
524 EXPECT_TRUE(MinusOne.slt(One));
525 EXPECT_TRUE(MinusTwo.slt(One));
526
527 EXPECT_TRUE(One.slt(Two));
528 EXPECT_TRUE(!Two.slt(Two));
529 EXPECT_TRUE(MinusOne.slt(Two));
530 EXPECT_TRUE(MinusTwo.slt(Two));
531
532 EXPECT_TRUE(!One.slt(MinusOne));
533 EXPECT_TRUE(!Two.slt(MinusOne));
534 EXPECT_TRUE(!MinusOne.slt(MinusOne));
535 EXPECT_TRUE(MinusTwo.slt(MinusOne));
536
537 EXPECT_TRUE(!One.slt(MinusTwo));
538 EXPECT_TRUE(!Two.slt(MinusTwo));
539 EXPECT_TRUE(!MinusOne.slt(MinusTwo));
540 EXPECT_TRUE(!MinusTwo.slt(MinusTwo));
541}
542
Amaury Sechetfb1756b2017-02-03 22:54:41 +0000543TEST(APIntTest, binaryOpsWithRawIntegers) {
544 // Single word check.
545 uint64_t E1 = 0x2CA7F46BF6569915ULL;
546 APInt A1(64, E1);
547
548 EXPECT_EQ(A1 & E1, E1);
549 EXPECT_EQ(A1 & 0, 0);
550 EXPECT_EQ(A1 & 1, 1);
551 EXPECT_EQ(A1 & 5, 5);
552 EXPECT_EQ(A1 & UINT64_MAX, E1);
553
554 EXPECT_EQ(A1 | E1, E1);
555 EXPECT_EQ(A1 | 0, E1);
556 EXPECT_EQ(A1 | 1, E1);
557 EXPECT_EQ(A1 | 2, E1 | 2);
558 EXPECT_EQ(A1 | UINT64_MAX, UINT64_MAX);
559
560 EXPECT_EQ(A1 ^ E1, 0);
561 EXPECT_EQ(A1 ^ 0, E1);
562 EXPECT_EQ(A1 ^ 1, E1 ^ 1);
563 EXPECT_EQ(A1 ^ 7, E1 ^ 7);
564 EXPECT_EQ(A1 ^ UINT64_MAX, ~E1);
565
566 // Multiword check.
567 uint64_t N = 0xEB6EB136591CBA21ULL;
Craig Topper55229b72017-04-02 19:17:22 +0000568 APInt::WordType E2[4] = {
Amaury Sechetfb1756b2017-02-03 22:54:41 +0000569 N,
570 0x7B9358BD6A33F10AULL,
571 0x7E7FFA5EADD8846ULL,
572 0x305F341CA00B613DULL
573 };
Craig Topper55229b72017-04-02 19:17:22 +0000574 APInt A2(APInt::APINT_BITS_PER_WORD*4, E2);
Amaury Sechetfb1756b2017-02-03 22:54:41 +0000575
576 EXPECT_EQ(A2 & N, N);
577 EXPECT_EQ(A2 & 0, 0);
578 EXPECT_EQ(A2 & 1, 1);
579 EXPECT_EQ(A2 & 5, 1);
580 EXPECT_EQ(A2 & UINT64_MAX, N);
581
582 EXPECT_EQ(A2 | N, A2);
583 EXPECT_EQ(A2 | 0, A2);
584 EXPECT_EQ(A2 | 1, A2);
585 EXPECT_EQ(A2 | 2, A2 + 2);
586 EXPECT_EQ(A2 | UINT64_MAX, A2 - N + UINT64_MAX);
587
588 EXPECT_EQ(A2 ^ N, A2 - N);
589 EXPECT_EQ(A2 ^ 0, A2);
590 EXPECT_EQ(A2 ^ 1, A2 - 1);
591 EXPECT_EQ(A2 ^ 7, A2 + 5);
592 EXPECT_EQ(A2 ^ UINT64_MAX, A2 - N + ~N);
593}
594
Pete Cooperfea21392016-07-22 20:55:46 +0000595TEST(APIntTest, rvalue_arithmetic) {
596 // Test all combinations of lvalue/rvalue lhs/rhs of add/sub
597
598 // Lamdba to return an APInt by value, but also provide the raw value of the
599 // allocated data.
600 auto getRValue = [](const char *HexString, uint64_t const *&RawData) {
601 APInt V(129, HexString, 16);
602 RawData = V.getRawData();
603 return V;
604 };
605
606 APInt One(129, "1", 16);
607 APInt Two(129, "2", 16);
608 APInt Three(129, "3", 16);
609 APInt MinusOne = -One;
610
611 const uint64_t *RawDataL = nullptr;
612 const uint64_t *RawDataR = nullptr;
613
614 {
615 // 1 + 1 = 2
616 APInt AddLL = One + One;
617 EXPECT_EQ(AddLL, Two);
618
619 APInt AddLR = One + getRValue("1", RawDataR);
620 EXPECT_EQ(AddLR, Two);
621 EXPECT_EQ(AddLR.getRawData(), RawDataR);
622
623 APInt AddRL = getRValue("1", RawDataL) + One;
624 EXPECT_EQ(AddRL, Two);
625 EXPECT_EQ(AddRL.getRawData(), RawDataL);
626
627 APInt AddRR = getRValue("1", RawDataL) + getRValue("1", RawDataR);
628 EXPECT_EQ(AddRR, Two);
629 EXPECT_EQ(AddRR.getRawData(), RawDataR);
630
631 // LValue's and constants
632 APInt AddLK = One + 1;
633 EXPECT_EQ(AddLK, Two);
634
635 APInt AddKL = 1 + One;
636 EXPECT_EQ(AddKL, Two);
637
638 // RValue's and constants
639 APInt AddRK = getRValue("1", RawDataL) + 1;
640 EXPECT_EQ(AddRK, Two);
641 EXPECT_EQ(AddRK.getRawData(), RawDataL);
642
643 APInt AddKR = 1 + getRValue("1", RawDataR);
644 EXPECT_EQ(AddKR, Two);
645 EXPECT_EQ(AddKR.getRawData(), RawDataR);
646 }
647
648 {
649 // 0x0,FFFF...FFFF + 0x2 = 0x100...0001
650 APInt AllOnes(129, "0FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF", 16);
651 APInt HighOneLowOne(129, "100000000000000000000000000000001", 16);
652
653 APInt AddLL = AllOnes + Two;
654 EXPECT_EQ(AddLL, HighOneLowOne);
655
656 APInt AddLR = AllOnes + getRValue("2", RawDataR);
657 EXPECT_EQ(AddLR, HighOneLowOne);
658 EXPECT_EQ(AddLR.getRawData(), RawDataR);
659
660 APInt AddRL = getRValue("FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF", RawDataL) + Two;
661 EXPECT_EQ(AddRL, HighOneLowOne);
662 EXPECT_EQ(AddRL.getRawData(), RawDataL);
663
664 APInt AddRR = getRValue("FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF", RawDataL) +
665 getRValue("2", RawDataR);
666 EXPECT_EQ(AddRR, HighOneLowOne);
667 EXPECT_EQ(AddRR.getRawData(), RawDataR);
668
669 // LValue's and constants
670 APInt AddLK = AllOnes + 2;
671 EXPECT_EQ(AddLK, HighOneLowOne);
672
673 APInt AddKL = 2 + AllOnes;
674 EXPECT_EQ(AddKL, HighOneLowOne);
675
676 // RValue's and constants
677 APInt AddRK = getRValue("FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF", RawDataL) + 2;
678 EXPECT_EQ(AddRK, HighOneLowOne);
679 EXPECT_EQ(AddRK.getRawData(), RawDataL);
680
681 APInt AddKR = 2 + getRValue("FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF", RawDataR);
682 EXPECT_EQ(AddKR, HighOneLowOne);
683 EXPECT_EQ(AddKR.getRawData(), RawDataR);
684 }
685
686 {
687 // 2 - 1 = 1
688 APInt SubLL = Two - One;
689 EXPECT_EQ(SubLL, One);
690
691 APInt SubLR = Two - getRValue("1", RawDataR);
692 EXPECT_EQ(SubLR, One);
693 EXPECT_EQ(SubLR.getRawData(), RawDataR);
694
695 APInt SubRL = getRValue("2", RawDataL) - One;
696 EXPECT_EQ(SubRL, One);
697 EXPECT_EQ(SubRL.getRawData(), RawDataL);
698
699 APInt SubRR = getRValue("2", RawDataL) - getRValue("1", RawDataR);
700 EXPECT_EQ(SubRR, One);
701 EXPECT_EQ(SubRR.getRawData(), RawDataR);
702
703 // LValue's and constants
704 APInt SubLK = Two - 1;
705 EXPECT_EQ(SubLK, One);
706
707 APInt SubKL = 2 - One;
708 EXPECT_EQ(SubKL, One);
709
710 // RValue's and constants
711 APInt SubRK = getRValue("2", RawDataL) - 1;
712 EXPECT_EQ(SubRK, One);
713 EXPECT_EQ(SubRK.getRawData(), RawDataL);
714
715 APInt SubKR = 2 - getRValue("1", RawDataR);
716 EXPECT_EQ(SubKR, One);
717 EXPECT_EQ(SubKR.getRawData(), RawDataR);
718 }
719
720 {
721 // 0x100...0001 - 0x0,FFFF...FFFF = 0x2
722 APInt AllOnes(129, "0FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF", 16);
723 APInt HighOneLowOne(129, "100000000000000000000000000000001", 16);
724
725 APInt SubLL = HighOneLowOne - AllOnes;
726 EXPECT_EQ(SubLL, Two);
727
728 APInt SubLR = HighOneLowOne -
729 getRValue("0FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF", RawDataR);
730 EXPECT_EQ(SubLR, Two);
731 EXPECT_EQ(SubLR.getRawData(), RawDataR);
732
733 APInt SubRL = getRValue("100000000000000000000000000000001", RawDataL) -
734 AllOnes;
735 EXPECT_EQ(SubRL, Two);
736 EXPECT_EQ(SubRL.getRawData(), RawDataL);
737
738 APInt SubRR = getRValue("100000000000000000000000000000001", RawDataL) -
739 getRValue("0FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF", RawDataR);
740 EXPECT_EQ(SubRR, Two);
741 EXPECT_EQ(SubRR.getRawData(), RawDataR);
742
743 // LValue's and constants
744 // 0x100...0001 - 0x2 = 0x0,FFFF...FFFF
745 APInt SubLK = HighOneLowOne - 2;
746 EXPECT_EQ(SubLK, AllOnes);
747
748 // 2 - (-1) = 3
749 APInt SubKL = 2 - MinusOne;
750 EXPECT_EQ(SubKL, Three);
751
752 // RValue's and constants
753 // 0x100...0001 - 0x2 = 0x0,FFFF...FFFF
754 APInt SubRK = getRValue("100000000000000000000000000000001", RawDataL) - 2;
755 EXPECT_EQ(SubRK, AllOnes);
756 EXPECT_EQ(SubRK.getRawData(), RawDataL);
757
758 APInt SubKR = 2 - getRValue("1FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF", RawDataR);
759 EXPECT_EQ(SubKR, Three);
760 EXPECT_EQ(SubKR.getRawData(), RawDataR);
761 }
762}
763
Craig Topperb60a46f2017-03-07 05:36:19 +0000764TEST(APIntTest, rvalue_bitwise) {
765 // Test all combinations of lvalue/rvalue lhs/rhs of and/or/xor
766
767 // Lamdba to return an APInt by value, but also provide the raw value of the
768 // allocated data.
769 auto getRValue = [](const char *HexString, uint64_t const *&RawData) {
770 APInt V(129, HexString, 16);
771 RawData = V.getRawData();
772 return V;
773 };
774
775 APInt Ten(129, "A", 16);
776 APInt Twelve(129, "C", 16);
777
778 const uint64_t *RawDataL = nullptr;
779 const uint64_t *RawDataR = nullptr;
780
781 {
782 // 12 & 10 = 8
783 APInt AndLL = Ten & Twelve;
784 EXPECT_EQ(AndLL, 0x8);
785
786 APInt AndLR = Ten & getRValue("C", RawDataR);
787 EXPECT_EQ(AndLR, 0x8);
788 EXPECT_EQ(AndLR.getRawData(), RawDataR);
789
790 APInt AndRL = getRValue("A", RawDataL) & Twelve;
791 EXPECT_EQ(AndRL, 0x8);
792 EXPECT_EQ(AndRL.getRawData(), RawDataL);
793
794 APInt AndRR = getRValue("A", RawDataL) & getRValue("C", RawDataR);
795 EXPECT_EQ(AndRR, 0x8);
796 EXPECT_EQ(AndRR.getRawData(), RawDataR);
797
798 // LValue's and constants
799 APInt AndLK = Ten & 0xc;
800 EXPECT_EQ(AndLK, 0x8);
801
802 APInt AndKL = 0xa & Twelve;
803 EXPECT_EQ(AndKL, 0x8);
804
805 // RValue's and constants
806 APInt AndRK = getRValue("A", RawDataL) & 0xc;
807 EXPECT_EQ(AndRK, 0x8);
808 EXPECT_EQ(AndRK.getRawData(), RawDataL);
809
810 APInt AndKR = 0xa & getRValue("C", RawDataR);
811 EXPECT_EQ(AndKR, 0x8);
812 EXPECT_EQ(AndKR.getRawData(), RawDataR);
813 }
814
815 {
816 // 12 | 10 = 14
817 APInt OrLL = Ten | Twelve;
818 EXPECT_EQ(OrLL, 0xe);
819
820 APInt OrLR = Ten | getRValue("C", RawDataR);
821 EXPECT_EQ(OrLR, 0xe);
822 EXPECT_EQ(OrLR.getRawData(), RawDataR);
823
824 APInt OrRL = getRValue("A", RawDataL) | Twelve;
825 EXPECT_EQ(OrRL, 0xe);
826 EXPECT_EQ(OrRL.getRawData(), RawDataL);
827
828 APInt OrRR = getRValue("A", RawDataL) | getRValue("C", RawDataR);
829 EXPECT_EQ(OrRR, 0xe);
830 EXPECT_EQ(OrRR.getRawData(), RawDataR);
831
832 // LValue's and constants
833 APInt OrLK = Ten | 0xc;
834 EXPECT_EQ(OrLK, 0xe);
835
836 APInt OrKL = 0xa | Twelve;
837 EXPECT_EQ(OrKL, 0xe);
838
839 // RValue's and constants
840 APInt OrRK = getRValue("A", RawDataL) | 0xc;
841 EXPECT_EQ(OrRK, 0xe);
842 EXPECT_EQ(OrRK.getRawData(), RawDataL);
843
844 APInt OrKR = 0xa | getRValue("C", RawDataR);
845 EXPECT_EQ(OrKR, 0xe);
846 EXPECT_EQ(OrKR.getRawData(), RawDataR);
847 }
848
849 {
850 // 12 ^ 10 = 6
851 APInt XorLL = Ten ^ Twelve;
852 EXPECT_EQ(XorLL, 0x6);
853
854 APInt XorLR = Ten ^ getRValue("C", RawDataR);
855 EXPECT_EQ(XorLR, 0x6);
856 EXPECT_EQ(XorLR.getRawData(), RawDataR);
857
858 APInt XorRL = getRValue("A", RawDataL) ^ Twelve;
859 EXPECT_EQ(XorRL, 0x6);
860 EXPECT_EQ(XorRL.getRawData(), RawDataL);
861
862 APInt XorRR = getRValue("A", RawDataL) ^ getRValue("C", RawDataR);
863 EXPECT_EQ(XorRR, 0x6);
864 EXPECT_EQ(XorRR.getRawData(), RawDataR);
865
866 // LValue's and constants
867 APInt XorLK = Ten ^ 0xc;
868 EXPECT_EQ(XorLK, 0x6);
869
870 APInt XorKL = 0xa ^ Twelve;
871 EXPECT_EQ(XorKL, 0x6);
872
873 // RValue's and constants
874 APInt XorRK = getRValue("A", RawDataL) ^ 0xc;
875 EXPECT_EQ(XorRK, 0x6);
876 EXPECT_EQ(XorRK.getRawData(), RawDataL);
877
878 APInt XorKR = 0xa ^ getRValue("C", RawDataR);
879 EXPECT_EQ(XorKR, 0x6);
880 EXPECT_EQ(XorKR.getRawData(), RawDataR);
881 }
882}
883
Craig Toppera97f9272017-03-06 06:30:47 +0000884TEST(APIntTest, rvalue_invert) {
885 // Lamdba to return an APInt by value, but also provide the raw value of the
886 // allocated data.
887 auto getRValue = [](const char *HexString, uint64_t const *&RawData) {
888 APInt V(129, HexString, 16);
889 RawData = V.getRawData();
890 return V;
891 };
892
893 APInt One(129, 1);
894 APInt NegativeTwo(129, -2ULL, true);
895
896 const uint64_t *RawData = nullptr;
897
898 {
899 // ~1 = -2
900 APInt NegL = ~One;
901 EXPECT_EQ(NegL, NegativeTwo);
902
903 APInt NegR = ~getRValue("1", RawData);
904 EXPECT_EQ(NegR, NegativeTwo);
905 EXPECT_EQ(NegR.getRawData(), RawData);
906 }
907}
Pawel Bylica86ac4472015-04-24 07:38:39 +0000908
909// Tests different div/rem varaints using scheme (a * b + c) / a
910void testDiv(APInt a, APInt b, APInt c) {
911 ASSERT_TRUE(a.uge(b)); // Must: a >= b
912 ASSERT_TRUE(a.ugt(c)); // Must: a > c
Yaron Keren39fc5a62015-03-26 19:45:19 +0000913
914 auto p = a * b + c;
Pawel Bylica86ac4472015-04-24 07:38:39 +0000915
Yaron Keren39fc5a62015-03-26 19:45:19 +0000916 auto q = p.udiv(a);
917 auto r = p.urem(a);
Pawel Bylica86ac4472015-04-24 07:38:39 +0000918 EXPECT_EQ(b, q);
919 EXPECT_EQ(c, r);
Yaron Keren39fc5a62015-03-26 19:45:19 +0000920 APInt::udivrem(p, a, q, r);
Pawel Bylica86ac4472015-04-24 07:38:39 +0000921 EXPECT_EQ(b, q);
922 EXPECT_EQ(c, r);
Yaron Keren39fc5a62015-03-26 19:45:19 +0000923 q = p.sdiv(a);
924 r = p.srem(a);
Pawel Bylica86ac4472015-04-24 07:38:39 +0000925 EXPECT_EQ(b, q);
926 EXPECT_EQ(c, r);
Yaron Keren39fc5a62015-03-26 19:45:19 +0000927 APInt::sdivrem(p, a, q, r);
Pawel Bylica86ac4472015-04-24 07:38:39 +0000928 EXPECT_EQ(b, q);
929 EXPECT_EQ(c, r);
930
931 if (b.ugt(c)) { // Test also symmetric case
932 q = p.udiv(b);
933 r = p.urem(b);
934 EXPECT_EQ(a, q);
935 EXPECT_EQ(c, r);
936 APInt::udivrem(p, b, q, r);
937 EXPECT_EQ(a, q);
938 EXPECT_EQ(c, r);
939 q = p.sdiv(b);
940 r = p.srem(b);
941 EXPECT_EQ(a, q);
942 EXPECT_EQ(c, r);
943 APInt::sdivrem(p, b, q, r);
944 EXPECT_EQ(a, q);
945 EXPECT_EQ(c, r);
946 }
947}
948
949TEST(APIntTest, divrem_big1) {
950 // Tests KnuthDiv rare step D6
951 testDiv({256, "1ffffffffffffffff", 16},
952 {256, "1ffffffffffffffff", 16},
953 {256, 0});
Yaron Keren39fc5a62015-03-26 19:45:19 +0000954}
955
956TEST(APIntTest, divrem_big2) {
957 // Tests KnuthDiv rare step D6
Pawel Bylica86ac4472015-04-24 07:38:39 +0000958 testDiv({1024, "112233ceff"
959 "cecece000000ffffffffffffffffffff"
960 "ffffffffffffffffffffffffffffffff"
961 "ffffffffffffffffffffffffffffffff"
962 "ffffffffffffffffffffffffffffff33", 16},
963 {1024, "111111ffffffffffffffff"
964 "ffffffffffffffffffffffffffffffff"
965 "fffffffffffffffffffffffffffffccf"
966 "ffffffffffffffffffffffffffffff00", 16},
967 {1024, 7919});
Yaron Keren39fc5a62015-03-26 19:45:19 +0000968}
969
970TEST(APIntTest, divrem_big3) {
971 // Tests KnuthDiv case without shift
Pawel Bylica86ac4472015-04-24 07:38:39 +0000972 testDiv({256, "80000001ffffffffffffffff", 16},
973 {256, "ffffffffffffff0000000", 16},
974 {256, 4219});
Yaron Keren39fc5a62015-03-26 19:45:19 +0000975}
976
977TEST(APIntTest, divrem_big4) {
978 // Tests heap allocation in divide() enfoced by huge numbers
Pawel Bylica86ac4472015-04-24 07:38:39 +0000979 testDiv(APInt{4096, 5}.shl(2001),
980 APInt{4096, 1}.shl(2000),
981 APInt{4096, 4219*13});
Yaron Keren39fc5a62015-03-26 19:45:19 +0000982}
983
984TEST(APIntTest, divrem_big5) {
985 // Tests one word divisor case of divide()
Pawel Bylica86ac4472015-04-24 07:38:39 +0000986 testDiv(APInt{1024, 19}.shl(811),
987 APInt{1024, 4356013}, // one word
988 APInt{1024, 1});
989}
Yaron Keren39fc5a62015-03-26 19:45:19 +0000990
Pawel Bylica86ac4472015-04-24 07:38:39 +0000991TEST(APIntTest, divrem_big6) {
992 // Tests some rare "borrow" cases in D4 step
993 testDiv(APInt{512, "ffffffffffffffff00000000000000000000000001", 16},
994 APInt{512, "10000000000000001000000000000001", 16},
995 APInt{512, "10000000000000000000000000000000", 16});
Yaron Keren39fc5a62015-03-26 19:45:19 +0000996}
997
Yaron Keren61ad9d82015-04-22 18:49:59 +0000998TEST(APIntTest, divrem_big7) {
999 // Yet another test for KnuthDiv rare step D6.
Pawel Bylica86ac4472015-04-24 07:38:39 +00001000 testDiv({224, "800000008000000200000005", 16},
1001 {224, "fffffffd", 16},
1002 {224, "80000000800000010000000f", 16});
Yaron Keren61ad9d82015-04-22 18:49:59 +00001003}
1004
Craig Topper8885f932017-05-19 16:43:54 +00001005void testDiv(APInt a, uint64_t b, APInt c) {
1006 auto p = a * b + c;
1007
1008 APInt q;
1009 uint64_t r;
1010 // Unsigned division will only work if our original number wasn't negative.
1011 if (!a.isNegative()) {
1012 q = p.udiv(b);
1013 r = p.urem(b);
1014 EXPECT_EQ(a, q);
1015 EXPECT_EQ(c, r);
1016 APInt::udivrem(p, b, q, r);
1017 EXPECT_EQ(a, q);
1018 EXPECT_EQ(c, r);
1019 }
1020 q = p.sdiv(b);
1021 r = p.srem(b);
1022 EXPECT_EQ(a, q);
1023 if (c.isNegative())
1024 EXPECT_EQ(-c, -r); // Need to negate so the uint64_t compare will work.
1025 else
1026 EXPECT_EQ(c, r);
1027 int64_t sr;
1028 APInt::sdivrem(p, b, q, sr);
1029 EXPECT_EQ(a, q);
1030 if (c.isNegative())
1031 EXPECT_EQ(-c, -sr); // Need to negate so the uint64_t compare will work.
1032 else
1033 EXPECT_EQ(c, sr);
1034}
1035
1036TEST(APIntTest, divremuint) {
1037 // Single word APInt
1038 testDiv(APInt{64, 9},
1039 2,
1040 APInt{64, 1});
1041
1042 // Single word negative APInt
1043 testDiv(-APInt{64, 9},
1044 2,
1045 -APInt{64, 1});
1046
1047 // Multiword dividend with only one significant word.
1048 testDiv(APInt{256, 9},
1049 2,
1050 APInt{256, 1});
1051
1052 // Negative dividend.
1053 testDiv(-APInt{256, 9},
1054 2,
1055 -APInt{256, 1});
1056
1057 // Multiword dividend
1058 testDiv(APInt{1024, 19}.shl(811),
1059 4356013, // one word
1060 APInt{1024, 1});
1061}
1062
Krzysztof Parzyszek55a0dce2018-07-19 18:07:56 +00001063TEST(APIntTest, divrem_simple) {
1064 // Test simple cases.
1065 APInt A(65, 2), B(65, 2);
1066 APInt Q, R;
1067
1068 // X / X
1069 APInt::sdivrem(A, B, Q, R);
1070 EXPECT_EQ(Q, APInt(65, 1));
1071 EXPECT_EQ(R, APInt(65, 0));
1072 APInt::udivrem(A, B, Q, R);
1073 EXPECT_EQ(Q, APInt(65, 1));
1074 EXPECT_EQ(R, APInt(65, 0));
1075
1076 // 0 / X
1077 APInt O(65, 0);
1078 APInt::sdivrem(O, B, Q, R);
1079 EXPECT_EQ(Q, APInt(65, 0));
1080 EXPECT_EQ(R, APInt(65, 0));
1081 APInt::udivrem(O, B, Q, R);
1082 EXPECT_EQ(Q, APInt(65, 0));
1083 EXPECT_EQ(R, APInt(65, 0));
1084
1085 // X / 1
1086 APInt I(65, 1);
1087 APInt::sdivrem(A, I, Q, R);
1088 EXPECT_EQ(Q, A);
1089 EXPECT_EQ(R, APInt(65, 0));
1090 APInt::udivrem(A, I, Q, R);
1091 EXPECT_EQ(Q, A);
1092 EXPECT_EQ(R, APInt(65, 0));
1093}
1094
Chris Lattnerb869a0a2009-04-25 18:34:04 +00001095TEST(APIntTest, fromString) {
Erick Tryzelaar1264bcb2009-08-21 03:15:14 +00001096 EXPECT_EQ(APInt(32, 0), APInt(32, "0", 2));
1097 EXPECT_EQ(APInt(32, 1), APInt(32, "1", 2));
1098 EXPECT_EQ(APInt(32, 2), APInt(32, "10", 2));
1099 EXPECT_EQ(APInt(32, 3), APInt(32, "11", 2));
1100 EXPECT_EQ(APInt(32, 4), APInt(32, "100", 2));
1101
1102 EXPECT_EQ(APInt(32, 0), APInt(32, "+0", 2));
1103 EXPECT_EQ(APInt(32, 1), APInt(32, "+1", 2));
1104 EXPECT_EQ(APInt(32, 2), APInt(32, "+10", 2));
1105 EXPECT_EQ(APInt(32, 3), APInt(32, "+11", 2));
1106 EXPECT_EQ(APInt(32, 4), APInt(32, "+100", 2));
1107
Daniel Dunbar73e76a12009-09-18 17:48:05 +00001108 EXPECT_EQ(APInt(32, uint64_t(-0LL)), APInt(32, "-0", 2));
1109 EXPECT_EQ(APInt(32, uint64_t(-1LL)), APInt(32, "-1", 2));
1110 EXPECT_EQ(APInt(32, uint64_t(-2LL)), APInt(32, "-10", 2));
1111 EXPECT_EQ(APInt(32, uint64_t(-3LL)), APInt(32, "-11", 2));
1112 EXPECT_EQ(APInt(32, uint64_t(-4LL)), APInt(32, "-100", 2));
Erick Tryzelaar1264bcb2009-08-21 03:15:14 +00001113
Erick Tryzelaar1264bcb2009-08-21 03:15:14 +00001114 EXPECT_EQ(APInt(32, 0), APInt(32, "0", 8));
1115 EXPECT_EQ(APInt(32, 1), APInt(32, "1", 8));
1116 EXPECT_EQ(APInt(32, 7), APInt(32, "7", 8));
1117 EXPECT_EQ(APInt(32, 8), APInt(32, "10", 8));
1118 EXPECT_EQ(APInt(32, 15), APInt(32, "17", 8));
1119 EXPECT_EQ(APInt(32, 16), APInt(32, "20", 8));
1120
1121 EXPECT_EQ(APInt(32, +0), APInt(32, "+0", 8));
1122 EXPECT_EQ(APInt(32, +1), APInt(32, "+1", 8));
1123 EXPECT_EQ(APInt(32, +7), APInt(32, "+7", 8));
1124 EXPECT_EQ(APInt(32, +8), APInt(32, "+10", 8));
1125 EXPECT_EQ(APInt(32, +15), APInt(32, "+17", 8));
1126 EXPECT_EQ(APInt(32, +16), APInt(32, "+20", 8));
1127
Daniel Dunbar0ec4ed72009-09-17 17:46:53 +00001128 EXPECT_EQ(APInt(32, uint64_t(-0LL)), APInt(32, "-0", 8));
1129 EXPECT_EQ(APInt(32, uint64_t(-1LL)), APInt(32, "-1", 8));
1130 EXPECT_EQ(APInt(32, uint64_t(-7LL)), APInt(32, "-7", 8));
1131 EXPECT_EQ(APInt(32, uint64_t(-8LL)), APInt(32, "-10", 8));
1132 EXPECT_EQ(APInt(32, uint64_t(-15LL)), APInt(32, "-17", 8));
1133 EXPECT_EQ(APInt(32, uint64_t(-16LL)), APInt(32, "-20", 8));
Erick Tryzelaar1264bcb2009-08-21 03:15:14 +00001134
Erick Tryzelaar1264bcb2009-08-21 03:15:14 +00001135 EXPECT_EQ(APInt(32, 0), APInt(32, "0", 10));
1136 EXPECT_EQ(APInt(32, 1), APInt(32, "1", 10));
1137 EXPECT_EQ(APInt(32, 9), APInt(32, "9", 10));
1138 EXPECT_EQ(APInt(32, 10), APInt(32, "10", 10));
1139 EXPECT_EQ(APInt(32, 19), APInt(32, "19", 10));
1140 EXPECT_EQ(APInt(32, 20), APInt(32, "20", 10));
1141
Daniel Dunbar0ec4ed72009-09-17 17:46:53 +00001142 EXPECT_EQ(APInt(32, uint64_t(-0LL)), APInt(32, "-0", 10));
1143 EXPECT_EQ(APInt(32, uint64_t(-1LL)), APInt(32, "-1", 10));
1144 EXPECT_EQ(APInt(32, uint64_t(-9LL)), APInt(32, "-9", 10));
1145 EXPECT_EQ(APInt(32, uint64_t(-10LL)), APInt(32, "-10", 10));
1146 EXPECT_EQ(APInt(32, uint64_t(-19LL)), APInt(32, "-19", 10));
1147 EXPECT_EQ(APInt(32, uint64_t(-20LL)), APInt(32, "-20", 10));
Erick Tryzelaar1264bcb2009-08-21 03:15:14 +00001148
Erick Tryzelaar1264bcb2009-08-21 03:15:14 +00001149 EXPECT_EQ(APInt(32, 0), APInt(32, "0", 16));
1150 EXPECT_EQ(APInt(32, 1), APInt(32, "1", 16));
1151 EXPECT_EQ(APInt(32, 15), APInt(32, "F", 16));
1152 EXPECT_EQ(APInt(32, 16), APInt(32, "10", 16));
1153 EXPECT_EQ(APInt(32, 31), APInt(32, "1F", 16));
1154 EXPECT_EQ(APInt(32, 32), APInt(32, "20", 16));
1155
Daniel Dunbar0ec4ed72009-09-17 17:46:53 +00001156 EXPECT_EQ(APInt(32, uint64_t(-0LL)), APInt(32, "-0", 16));
1157 EXPECT_EQ(APInt(32, uint64_t(-1LL)), APInt(32, "-1", 16));
1158 EXPECT_EQ(APInt(32, uint64_t(-15LL)), APInt(32, "-F", 16));
1159 EXPECT_EQ(APInt(32, uint64_t(-16LL)), APInt(32, "-10", 16));
1160 EXPECT_EQ(APInt(32, uint64_t(-31LL)), APInt(32, "-1F", 16));
1161 EXPECT_EQ(APInt(32, uint64_t(-32LL)), APInt(32, "-20", 16));
Douglas Gregor663c0682011-09-14 15:54:46 +00001162
1163 EXPECT_EQ(APInt(32, 0), APInt(32, "0", 36));
1164 EXPECT_EQ(APInt(32, 1), APInt(32, "1", 36));
1165 EXPECT_EQ(APInt(32, 35), APInt(32, "Z", 36));
1166 EXPECT_EQ(APInt(32, 36), APInt(32, "10", 36));
1167 EXPECT_EQ(APInt(32, 71), APInt(32, "1Z", 36));
1168 EXPECT_EQ(APInt(32, 72), APInt(32, "20", 36));
Simon Pilgrim7f81c3d2017-03-07 21:16:38 +00001169
Douglas Gregor663c0682011-09-14 15:54:46 +00001170 EXPECT_EQ(APInt(32, uint64_t(-0LL)), APInt(32, "-0", 36));
1171 EXPECT_EQ(APInt(32, uint64_t(-1LL)), APInt(32, "-1", 36));
1172 EXPECT_EQ(APInt(32, uint64_t(-35LL)), APInt(32, "-Z", 36));
1173 EXPECT_EQ(APInt(32, uint64_t(-36LL)), APInt(32, "-10", 36));
1174 EXPECT_EQ(APInt(32, uint64_t(-71LL)), APInt(32, "-1Z", 36));
1175 EXPECT_EQ(APInt(32, uint64_t(-72LL)), APInt(32, "-20", 36));
Chris Lattnerb869a0a2009-04-25 18:34:04 +00001176}
1177
Sanjay Patel7ef0b312018-11-20 16:47:59 +00001178TEST(APIntTest, SaturatingMath) {
1179 APInt AP_10 = APInt(8, 10);
1180 APInt AP_100 = APInt(8, 100);
1181 APInt AP_200 = APInt(8, 200);
1182
1183 EXPECT_EQ(APInt(8, 200), AP_100.uadd_sat(AP_100));
1184 EXPECT_EQ(APInt(8, 255), AP_100.uadd_sat(AP_200));
1185 EXPECT_EQ(APInt(8, 255), APInt(8, 255).uadd_sat(APInt(8, 255)));
1186
1187 EXPECT_EQ(APInt(8, 110), AP_10.sadd_sat(AP_100));
1188 EXPECT_EQ(APInt(8, 127), AP_100.sadd_sat(AP_100));
1189 EXPECT_EQ(APInt(8, -128), (-AP_100).sadd_sat(-AP_100));
1190 EXPECT_EQ(APInt(8, -128), APInt(8, -128).sadd_sat(APInt(8, -128)));
1191
1192 EXPECT_EQ(APInt(8, 90), AP_100.usub_sat(AP_10));
1193 EXPECT_EQ(APInt(8, 0), AP_100.usub_sat(AP_200));
1194 EXPECT_EQ(APInt(8, 0), APInt(8, 0).usub_sat(APInt(8, 255)));
1195
1196 EXPECT_EQ(APInt(8, -90), AP_10.ssub_sat(AP_100));
1197 EXPECT_EQ(APInt(8, 127), AP_100.ssub_sat(-AP_100));
1198 EXPECT_EQ(APInt(8, -128), (-AP_100).ssub_sat(AP_100));
1199 EXPECT_EQ(APInt(8, -128), APInt(8, -128).ssub_sat(APInt(8, 127)));
1200}
1201
Jeffrey Yasskin7a162882011-07-18 21:45:40 +00001202TEST(APIntTest, FromArray) {
1203 EXPECT_EQ(APInt(32, uint64_t(1)), APInt(32, ArrayRef<uint64_t>(1)));
1204}
1205
Erick Tryzelaardadb15712009-08-21 03:15:28 +00001206TEST(APIntTest, StringBitsNeeded2) {
1207 EXPECT_EQ(1U, APInt::getBitsNeeded( "0", 2));
1208 EXPECT_EQ(1U, APInt::getBitsNeeded( "1", 2));
1209 EXPECT_EQ(2U, APInt::getBitsNeeded( "10", 2));
1210 EXPECT_EQ(2U, APInt::getBitsNeeded( "11", 2));
1211 EXPECT_EQ(3U, APInt::getBitsNeeded("100", 2));
1212
1213 EXPECT_EQ(1U, APInt::getBitsNeeded( "+0", 2));
1214 EXPECT_EQ(1U, APInt::getBitsNeeded( "+1", 2));
1215 EXPECT_EQ(2U, APInt::getBitsNeeded( "+10", 2));
1216 EXPECT_EQ(2U, APInt::getBitsNeeded( "+11", 2));
1217 EXPECT_EQ(3U, APInt::getBitsNeeded("+100", 2));
1218
1219 EXPECT_EQ(2U, APInt::getBitsNeeded( "-0", 2));
1220 EXPECT_EQ(2U, APInt::getBitsNeeded( "-1", 2));
1221 EXPECT_EQ(3U, APInt::getBitsNeeded( "-10", 2));
1222 EXPECT_EQ(3U, APInt::getBitsNeeded( "-11", 2));
1223 EXPECT_EQ(4U, APInt::getBitsNeeded("-100", 2));
1224}
1225
1226TEST(APIntTest, StringBitsNeeded8) {
1227 EXPECT_EQ(3U, APInt::getBitsNeeded( "0", 8));
1228 EXPECT_EQ(3U, APInt::getBitsNeeded( "7", 8));
1229 EXPECT_EQ(6U, APInt::getBitsNeeded("10", 8));
1230 EXPECT_EQ(6U, APInt::getBitsNeeded("17", 8));
1231 EXPECT_EQ(6U, APInt::getBitsNeeded("20", 8));
1232
1233 EXPECT_EQ(3U, APInt::getBitsNeeded( "+0", 8));
1234 EXPECT_EQ(3U, APInt::getBitsNeeded( "+7", 8));
1235 EXPECT_EQ(6U, APInt::getBitsNeeded("+10", 8));
1236 EXPECT_EQ(6U, APInt::getBitsNeeded("+17", 8));
1237 EXPECT_EQ(6U, APInt::getBitsNeeded("+20", 8));
1238
1239 EXPECT_EQ(4U, APInt::getBitsNeeded( "-0", 8));
1240 EXPECT_EQ(4U, APInt::getBitsNeeded( "-7", 8));
1241 EXPECT_EQ(7U, APInt::getBitsNeeded("-10", 8));
1242 EXPECT_EQ(7U, APInt::getBitsNeeded("-17", 8));
1243 EXPECT_EQ(7U, APInt::getBitsNeeded("-20", 8));
1244}
1245
1246TEST(APIntTest, StringBitsNeeded10) {
1247 EXPECT_EQ(1U, APInt::getBitsNeeded( "0", 10));
1248 EXPECT_EQ(2U, APInt::getBitsNeeded( "3", 10));
1249 EXPECT_EQ(4U, APInt::getBitsNeeded( "9", 10));
1250 EXPECT_EQ(4U, APInt::getBitsNeeded("10", 10));
1251 EXPECT_EQ(5U, APInt::getBitsNeeded("19", 10));
1252 EXPECT_EQ(5U, APInt::getBitsNeeded("20", 10));
1253
1254 EXPECT_EQ(1U, APInt::getBitsNeeded( "+0", 10));
1255 EXPECT_EQ(4U, APInt::getBitsNeeded( "+9", 10));
1256 EXPECT_EQ(4U, APInt::getBitsNeeded("+10", 10));
1257 EXPECT_EQ(5U, APInt::getBitsNeeded("+19", 10));
1258 EXPECT_EQ(5U, APInt::getBitsNeeded("+20", 10));
1259
1260 EXPECT_EQ(2U, APInt::getBitsNeeded( "-0", 10));
1261 EXPECT_EQ(5U, APInt::getBitsNeeded( "-9", 10));
1262 EXPECT_EQ(5U, APInt::getBitsNeeded("-10", 10));
1263 EXPECT_EQ(6U, APInt::getBitsNeeded("-19", 10));
1264 EXPECT_EQ(6U, APInt::getBitsNeeded("-20", 10));
Simon Pilgrima881ffe2019-06-01 14:58:36 +00001265
1266 // TODO: INT_MIN cases need 1 less bit (PR40897)
1267 EXPECT_EQ(9U, APInt::getBitsNeeded("-128", 10));
Erick Tryzelaardadb15712009-08-21 03:15:28 +00001268}
1269
1270TEST(APIntTest, StringBitsNeeded16) {
1271 EXPECT_EQ(4U, APInt::getBitsNeeded( "0", 16));
1272 EXPECT_EQ(4U, APInt::getBitsNeeded( "F", 16));
1273 EXPECT_EQ(8U, APInt::getBitsNeeded("10", 16));
1274 EXPECT_EQ(8U, APInt::getBitsNeeded("1F", 16));
1275 EXPECT_EQ(8U, APInt::getBitsNeeded("20", 16));
1276
1277 EXPECT_EQ(4U, APInt::getBitsNeeded( "+0", 16));
1278 EXPECT_EQ(4U, APInt::getBitsNeeded( "+F", 16));
1279 EXPECT_EQ(8U, APInt::getBitsNeeded("+10", 16));
1280 EXPECT_EQ(8U, APInt::getBitsNeeded("+1F", 16));
1281 EXPECT_EQ(8U, APInt::getBitsNeeded("+20", 16));
1282
1283 EXPECT_EQ(5U, APInt::getBitsNeeded( "-0", 16));
1284 EXPECT_EQ(5U, APInt::getBitsNeeded( "-F", 16));
1285 EXPECT_EQ(9U, APInt::getBitsNeeded("-10", 16));
1286 EXPECT_EQ(9U, APInt::getBitsNeeded("-1F", 16));
1287 EXPECT_EQ(9U, APInt::getBitsNeeded("-20", 16));
1288}
1289
Dylan Noblesmithc8c184d2011-06-15 23:36:34 +00001290TEST(APIntTest, toString) {
1291 SmallString<16> S;
1292 bool isSigned;
1293
1294 APInt(8, 0).toString(S, 2, true, true);
1295 EXPECT_EQ(S.str().str(), "0b0");
1296 S.clear();
1297 APInt(8, 0).toString(S, 8, true, true);
1298 EXPECT_EQ(S.str().str(), "00");
1299 S.clear();
1300 APInt(8, 0).toString(S, 10, true, true);
1301 EXPECT_EQ(S.str().str(), "0");
1302 S.clear();
1303 APInt(8, 0).toString(S, 16, true, true);
1304 EXPECT_EQ(S.str().str(), "0x0");
1305 S.clear();
Dylan Noblesmith1c419ff2011-12-16 20:36:31 +00001306 APInt(8, 0).toString(S, 36, true, false);
Douglas Gregor663c0682011-09-14 15:54:46 +00001307 EXPECT_EQ(S.str().str(), "0");
1308 S.clear();
Dylan Noblesmithc8c184d2011-06-15 23:36:34 +00001309
1310 isSigned = false;
1311 APInt(8, 255, isSigned).toString(S, 2, isSigned, true);
1312 EXPECT_EQ(S.str().str(), "0b11111111");
1313 S.clear();
1314 APInt(8, 255, isSigned).toString(S, 8, isSigned, true);
1315 EXPECT_EQ(S.str().str(), "0377");
1316 S.clear();
1317 APInt(8, 255, isSigned).toString(S, 10, isSigned, true);
1318 EXPECT_EQ(S.str().str(), "255");
1319 S.clear();
1320 APInt(8, 255, isSigned).toString(S, 16, isSigned, true);
1321 EXPECT_EQ(S.str().str(), "0xFF");
1322 S.clear();
Dylan Noblesmith1c419ff2011-12-16 20:36:31 +00001323 APInt(8, 255, isSigned).toString(S, 36, isSigned, false);
Douglas Gregor663c0682011-09-14 15:54:46 +00001324 EXPECT_EQ(S.str().str(), "73");
1325 S.clear();
Dylan Noblesmithc8c184d2011-06-15 23:36:34 +00001326
1327 isSigned = true;
1328 APInt(8, 255, isSigned).toString(S, 2, isSigned, true);
1329 EXPECT_EQ(S.str().str(), "-0b1");
1330 S.clear();
1331 APInt(8, 255, isSigned).toString(S, 8, isSigned, true);
1332 EXPECT_EQ(S.str().str(), "-01");
1333 S.clear();
1334 APInt(8, 255, isSigned).toString(S, 10, isSigned, true);
1335 EXPECT_EQ(S.str().str(), "-1");
1336 S.clear();
1337 APInt(8, 255, isSigned).toString(S, 16, isSigned, true);
1338 EXPECT_EQ(S.str().str(), "-0x1");
1339 S.clear();
Dylan Noblesmith1c419ff2011-12-16 20:36:31 +00001340 APInt(8, 255, isSigned).toString(S, 36, isSigned, false);
Douglas Gregor663c0682011-09-14 15:54:46 +00001341 EXPECT_EQ(S.str().str(), "-1");
1342 S.clear();
Dylan Noblesmithc8c184d2011-06-15 23:36:34 +00001343}
1344
Dan Gohmanc4e367b2009-10-13 01:49:02 +00001345TEST(APIntTest, Log2) {
Duncan Sandsf7ad6202009-10-13 09:23:11 +00001346 EXPECT_EQ(APInt(15, 7).logBase2(), 2U);
1347 EXPECT_EQ(APInt(15, 7).ceilLogBase2(), 3U);
Dan Gohmanc4e367b2009-10-13 01:49:02 +00001348 EXPECT_EQ(APInt(15, 7).exactLogBase2(), -1);
Duncan Sandsf7ad6202009-10-13 09:23:11 +00001349 EXPECT_EQ(APInt(15, 8).logBase2(), 3U);
1350 EXPECT_EQ(APInt(15, 8).ceilLogBase2(), 3U);
Dan Gohmanc4e367b2009-10-13 01:49:02 +00001351 EXPECT_EQ(APInt(15, 8).exactLogBase2(), 3);
Duncan Sandsf7ad6202009-10-13 09:23:11 +00001352 EXPECT_EQ(APInt(15, 9).logBase2(), 3U);
1353 EXPECT_EQ(APInt(15, 9).ceilLogBase2(), 4U);
Dan Gohmanc4e367b2009-10-13 01:49:02 +00001354 EXPECT_EQ(APInt(15, 9).exactLogBase2(), -1);
1355}
Erick Tryzelaardadb15712009-08-21 03:15:28 +00001356
Cameron Zwarich8731d0c2011-02-21 00:22:02 +00001357TEST(APIntTest, magic) {
1358 EXPECT_EQ(APInt(32, 3).magic().m, APInt(32, "55555556", 16));
1359 EXPECT_EQ(APInt(32, 3).magic().s, 0U);
1360 EXPECT_EQ(APInt(32, 5).magic().m, APInt(32, "66666667", 16));
1361 EXPECT_EQ(APInt(32, 5).magic().s, 1U);
1362 EXPECT_EQ(APInt(32, 7).magic().m, APInt(32, "92492493", 16));
1363 EXPECT_EQ(APInt(32, 7).magic().s, 2U);
1364}
1365
1366TEST(APIntTest, magicu) {
1367 EXPECT_EQ(APInt(32, 3).magicu().m, APInt(32, "AAAAAAAB", 16));
1368 EXPECT_EQ(APInt(32, 3).magicu().s, 1U);
1369 EXPECT_EQ(APInt(32, 5).magicu().m, APInt(32, "CCCCCCCD", 16));
1370 EXPECT_EQ(APInt(32, 5).magicu().s, 2U);
1371 EXPECT_EQ(APInt(32, 7).magicu().m, APInt(32, "24924925", 16));
1372 EXPECT_EQ(APInt(32, 7).magicu().s, 3U);
Benjamin Kramer09a51ba2011-03-17 20:39:06 +00001373 EXPECT_EQ(APInt(64, 25).magicu(1).m, APInt(64, "A3D70A3D70A3D70B", 16));
1374 EXPECT_EQ(APInt(64, 25).magicu(1).s, 4U);
Cameron Zwarich8731d0c2011-02-21 00:22:02 +00001375}
1376
Erick Tryzelaar927191f2009-08-17 00:55:33 +00001377#ifdef GTEST_HAS_DEATH_TEST
Jeffrey Yasskinb5cd0132010-03-17 01:18:45 +00001378#ifndef NDEBUG
Erick Tryzelaar2b01eab2009-08-16 23:36:01 +00001379TEST(APIntTest, StringDeath) {
Erick Tryzelaar1264bcb2009-08-21 03:15:14 +00001380 EXPECT_DEATH(APInt(0, "", 0), "Bitwidth too small");
1381 EXPECT_DEATH(APInt(32, "", 0), "Invalid string length");
Douglas Gregor663c0682011-09-14 15:54:46 +00001382 EXPECT_DEATH(APInt(32, "0", 0), "Radix should be 2, 8, 10, 16, or 36!");
Erick Tryzelaar2b01eab2009-08-16 23:36:01 +00001383 EXPECT_DEATH(APInt(32, "", 10), "Invalid string length");
Bill Wendlingef793cc2009-08-21 06:35:41 +00001384 EXPECT_DEATH(APInt(32, "-", 10), "String is only a sign, needs a value.");
Erick Tryzelaar2b01eab2009-08-16 23:36:01 +00001385 EXPECT_DEATH(APInt(1, "1234", 10), "Insufficient bit width");
1386 EXPECT_DEATH(APInt(32, "\0", 10), "Invalid string length");
1387 EXPECT_DEATH(APInt(32, StringRef("1\02", 3), 10), "Invalid character in digit string");
1388 EXPECT_DEATH(APInt(32, "1L", 10), "Invalid character in digit string");
1389}
Erick Tryzelaar927191f2009-08-17 00:55:33 +00001390#endif
Jeffrey Yasskinb5cd0132010-03-17 01:18:45 +00001391#endif
Erick Tryzelaar2b01eab2009-08-16 23:36:01 +00001392
Eli Friedman19546412011-10-07 23:40:49 +00001393TEST(APIntTest, mul_clear) {
1394 APInt ValA(65, -1ULL);
1395 APInt ValB(65, 4);
1396 APInt ValC(65, 0);
1397 ValC = ValA * ValB;
1398 ValA *= ValB;
1399 EXPECT_EQ(ValA.toString(10, false), ValC.toString(10, false));
1400}
1401
Eli Friedmanf70c8622011-12-22 22:11:19 +00001402TEST(APIntTest, Rotate) {
1403 EXPECT_EQ(APInt(8, 1), APInt(8, 1).rotl(0));
1404 EXPECT_EQ(APInt(8, 2), APInt(8, 1).rotl(1));
1405 EXPECT_EQ(APInt(8, 4), APInt(8, 1).rotl(2));
1406 EXPECT_EQ(APInt(8, 16), APInt(8, 1).rotl(4));
1407 EXPECT_EQ(APInt(8, 1), APInt(8, 1).rotl(8));
1408
1409 EXPECT_EQ(APInt(8, 16), APInt(8, 16).rotl(0));
1410 EXPECT_EQ(APInt(8, 32), APInt(8, 16).rotl(1));
1411 EXPECT_EQ(APInt(8, 64), APInt(8, 16).rotl(2));
1412 EXPECT_EQ(APInt(8, 1), APInt(8, 16).rotl(4));
1413 EXPECT_EQ(APInt(8, 16), APInt(8, 16).rotl(8));
1414
Joey Gouly51c0ae52017-02-07 11:58:22 +00001415 EXPECT_EQ(APInt(32, 2), APInt(32, 1).rotl(33));
1416 EXPECT_EQ(APInt(32, 2), APInt(32, 1).rotl(APInt(32, 33)));
1417
1418 EXPECT_EQ(APInt(32, 2), APInt(32, 1).rotl(33));
1419 EXPECT_EQ(APInt(32, 2), APInt(32, 1).rotl(APInt(32, 33)));
1420 EXPECT_EQ(APInt(32, 2), APInt(32, 1).rotl(APInt(33, 33)));
1421 EXPECT_EQ(APInt(32, (1 << 8)), APInt(32, 1).rotl(APInt(32, 40)));
1422 EXPECT_EQ(APInt(32, (1 << 30)), APInt(32, 1).rotl(APInt(31, 30)));
1423 EXPECT_EQ(APInt(32, (1 << 31)), APInt(32, 1).rotl(APInt(31, 31)));
1424
1425 EXPECT_EQ(APInt(32, 1), APInt(32, 1).rotl(APInt(1, 0)));
1426 EXPECT_EQ(APInt(32, 2), APInt(32, 1).rotl(APInt(1, 1)));
1427
1428 EXPECT_EQ(APInt(32, 16), APInt(32, 1).rotl(APInt(3, 4)));
1429
1430 EXPECT_EQ(APInt(32, 1), APInt(32, 1).rotl(APInt(64, 64)));
1431 EXPECT_EQ(APInt(32, 2), APInt(32, 1).rotl(APInt(64, 65)));
1432
1433 EXPECT_EQ(APInt(7, 24), APInt(7, 3).rotl(APInt(7, 3)));
1434 EXPECT_EQ(APInt(7, 24), APInt(7, 3).rotl(APInt(7, 10)));
1435 EXPECT_EQ(APInt(7, 24), APInt(7, 3).rotl(APInt(5, 10)));
1436 EXPECT_EQ(APInt(7, 6), APInt(7, 3).rotl(APInt(12, 120)));
1437
Eli Friedmanf70c8622011-12-22 22:11:19 +00001438 EXPECT_EQ(APInt(8, 16), APInt(8, 16).rotr(0));
1439 EXPECT_EQ(APInt(8, 8), APInt(8, 16).rotr(1));
1440 EXPECT_EQ(APInt(8, 4), APInt(8, 16).rotr(2));
1441 EXPECT_EQ(APInt(8, 1), APInt(8, 16).rotr(4));
1442 EXPECT_EQ(APInt(8, 16), APInt(8, 16).rotr(8));
1443
1444 EXPECT_EQ(APInt(8, 1), APInt(8, 1).rotr(0));
1445 EXPECT_EQ(APInt(8, 128), APInt(8, 1).rotr(1));
1446 EXPECT_EQ(APInt(8, 64), APInt(8, 1).rotr(2));
1447 EXPECT_EQ(APInt(8, 16), APInt(8, 1).rotr(4));
1448 EXPECT_EQ(APInt(8, 1), APInt(8, 1).rotr(8));
Benjamin Kramer47ddf602012-02-07 16:27:39 +00001449
Joey Gouly51c0ae52017-02-07 11:58:22 +00001450 EXPECT_EQ(APInt(32, (1 << 31)), APInt(32, 1).rotr(33));
1451 EXPECT_EQ(APInt(32, (1 << 31)), APInt(32, 1).rotr(APInt(32, 33)));
1452
1453 EXPECT_EQ(APInt(32, (1 << 31)), APInt(32, 1).rotr(33));
1454 EXPECT_EQ(APInt(32, (1 << 31)), APInt(32, 1).rotr(APInt(32, 33)));
1455 EXPECT_EQ(APInt(32, (1 << 31)), APInt(32, 1).rotr(APInt(33, 33)));
1456 EXPECT_EQ(APInt(32, (1 << 24)), APInt(32, 1).rotr(APInt(32, 40)));
1457
1458 EXPECT_EQ(APInt(32, (1 << 2)), APInt(32, 1).rotr(APInt(31, 30)));
1459 EXPECT_EQ(APInt(32, (1 << 1)), APInt(32, 1).rotr(APInt(31, 31)));
1460
1461 EXPECT_EQ(APInt(32, 1), APInt(32, 1).rotr(APInt(1, 0)));
1462 EXPECT_EQ(APInt(32, (1 << 31)), APInt(32, 1).rotr(APInt(1, 1)));
1463
1464 EXPECT_EQ(APInt(32, (1 << 28)), APInt(32, 1).rotr(APInt(3, 4)));
1465
1466 EXPECT_EQ(APInt(32, 1), APInt(32, 1).rotr(APInt(64, 64)));
1467 EXPECT_EQ(APInt(32, (1 << 31)), APInt(32, 1).rotr(APInt(64, 65)));
1468
1469 EXPECT_EQ(APInt(7, 48), APInt(7, 3).rotr(APInt(7, 3)));
1470 EXPECT_EQ(APInt(7, 48), APInt(7, 3).rotr(APInt(7, 10)));
1471 EXPECT_EQ(APInt(7, 48), APInt(7, 3).rotr(APInt(5, 10)));
1472 EXPECT_EQ(APInt(7, 65), APInt(7, 3).rotr(APInt(12, 120)));
1473
1474 APInt Big(256, "00004000800000000000000000003fff8000000000000003", 16);
1475 APInt Rot(256, "3fff80000000000000030000000000000000000040008000", 16);
Benjamin Kramer47ddf602012-02-07 16:27:39 +00001476 EXPECT_EQ(Rot, Big.rotr(144));
Joey Gouly51c0ae52017-02-07 11:58:22 +00001477
1478 EXPECT_EQ(APInt(32, 8), APInt(32, 1).rotl(Big));
1479 EXPECT_EQ(APInt(32, (1 << 29)), APInt(32, 1).rotr(Big));
Eli Friedmanf70c8622011-12-22 22:11:19 +00001480}
1481
Benjamin Kramer5c3e21b2013-02-20 13:00:06 +00001482TEST(APIntTest, Splat) {
1483 APInt ValA(8, 0x01);
1484 EXPECT_EQ(ValA, APInt::getSplat(8, ValA));
1485 EXPECT_EQ(APInt(64, 0x0101010101010101ULL), APInt::getSplat(64, ValA));
1486
1487 APInt ValB(3, 5);
1488 EXPECT_EQ(APInt(4, 0xD), APInt::getSplat(4, ValB));
1489 EXPECT_EQ(APInt(15, 0xDB6D), APInt::getSplat(15, ValB));
1490}
1491
Michael Gottesman9d406f42013-05-28 19:50:20 +00001492TEST(APIntTest, tcDecrement) {
1493 // Test single word decrement.
1494
1495 // No out borrow.
1496 {
Craig Topper55229b72017-04-02 19:17:22 +00001497 APInt::WordType singleWord = ~APInt::WordType(0) << (APInt::APINT_BITS_PER_WORD - 1);
1498 APInt::WordType carry = APInt::tcDecrement(&singleWord, 1);
1499 EXPECT_EQ(carry, APInt::WordType(0));
1500 EXPECT_EQ(singleWord, ~APInt::WordType(0) >> 1);
Michael Gottesman9d406f42013-05-28 19:50:20 +00001501 }
1502
1503 // With out borrow.
1504 {
Craig Topper55229b72017-04-02 19:17:22 +00001505 APInt::WordType singleWord = 0;
1506 APInt::WordType carry = APInt::tcDecrement(&singleWord, 1);
1507 EXPECT_EQ(carry, APInt::WordType(1));
1508 EXPECT_EQ(singleWord, ~APInt::WordType(0));
Michael Gottesman9d406f42013-05-28 19:50:20 +00001509 }
1510
1511 // Test multiword decrement.
1512
1513 // No across word borrow, no out borrow.
1514 {
Craig Topper55229b72017-04-02 19:17:22 +00001515 APInt::WordType test[4] = {0x1, 0x1, 0x1, 0x1};
1516 APInt::WordType expected[4] = {0x0, 0x1, 0x1, 0x1};
Michael Gottesman9d406f42013-05-28 19:50:20 +00001517 APInt::tcDecrement(test, 4);
1518 EXPECT_EQ(APInt::tcCompare(test, expected, 4), 0);
1519 }
1520
1521 // 1 across word borrow, no out borrow.
1522 {
Craig Topper55229b72017-04-02 19:17:22 +00001523 APInt::WordType test[4] = {0x0, 0xF, 0x1, 0x1};
1524 APInt::WordType expected[4] = {~APInt::WordType(0), 0xE, 0x1, 0x1};
1525 APInt::WordType carry = APInt::tcDecrement(test, 4);
1526 EXPECT_EQ(carry, APInt::WordType(0));
Michael Gottesman9d406f42013-05-28 19:50:20 +00001527 EXPECT_EQ(APInt::tcCompare(test, expected, 4), 0);
1528 }
1529
1530 // 2 across word borrow, no out borrow.
1531 {
Craig Topper55229b72017-04-02 19:17:22 +00001532 APInt::WordType test[4] = {0x0, 0x0, 0xC, 0x1};
1533 APInt::WordType expected[4] = {~APInt::WordType(0), ~APInt::WordType(0), 0xB, 0x1};
1534 APInt::WordType carry = APInt::tcDecrement(test, 4);
1535 EXPECT_EQ(carry, APInt::WordType(0));
Michael Gottesman9d406f42013-05-28 19:50:20 +00001536 EXPECT_EQ(APInt::tcCompare(test, expected, 4), 0);
1537 }
1538
1539 // 3 across word borrow, no out borrow.
1540 {
Craig Topper55229b72017-04-02 19:17:22 +00001541 APInt::WordType test[4] = {0x0, 0x0, 0x0, 0x1};
1542 APInt::WordType expected[4] = {~APInt::WordType(0), ~APInt::WordType(0), ~APInt::WordType(0), 0x0};
1543 APInt::WordType carry = APInt::tcDecrement(test, 4);
1544 EXPECT_EQ(carry, APInt::WordType(0));
Michael Gottesman9d406f42013-05-28 19:50:20 +00001545 EXPECT_EQ(APInt::tcCompare(test, expected, 4), 0);
1546 }
1547
1548 // 3 across word borrow, with out borrow.
1549 {
Craig Topper55229b72017-04-02 19:17:22 +00001550 APInt::WordType test[4] = {0x0, 0x0, 0x0, 0x0};
1551 APInt::WordType expected[4] = {~APInt::WordType(0), ~APInt::WordType(0), ~APInt::WordType(0), ~APInt::WordType(0)};
1552 APInt::WordType carry = APInt::tcDecrement(test, 4);
1553 EXPECT_EQ(carry, APInt::WordType(1));
Michael Gottesman9d406f42013-05-28 19:50:20 +00001554 EXPECT_EQ(APInt::tcCompare(test, expected, 4), 0);
1555 }
1556}
Michael Gottesman4497d962013-12-13 20:47:34 +00001557
Michael Gottesmane1fad2b2013-12-13 22:00:19 +00001558TEST(APIntTest, arrayAccess) {
Michael Gottesman4497d962013-12-13 20:47:34 +00001559 // Single word check.
1560 uint64_t E1 = 0x2CA7F46BF6569915ULL;
1561 APInt A1(64, E1);
Duncan P. N. Exon Smithc47069b2014-01-31 21:45:51 +00001562 for (unsigned i = 0, e = 64; i < e; ++i) {
Michael Gottesman4497d962013-12-13 20:47:34 +00001563 EXPECT_EQ(bool(E1 & (1ULL << i)),
Michael Gottesmane1fad2b2013-12-13 22:00:19 +00001564 A1[i]);
Michael Gottesman4497d962013-12-13 20:47:34 +00001565 }
1566
1567 // Multiword check.
Craig Topper55229b72017-04-02 19:17:22 +00001568 APInt::WordType E2[4] = {
Michael Gottesmanf6d58ff2013-12-13 20:47:37 +00001569 0xEB6EB136591CBA21ULL,
1570 0x7B9358BD6A33F10AULL,
1571 0x7E7FFA5EADD8846ULL,
1572 0x305F341CA00B613DULL
Michael Gottesman4497d962013-12-13 20:47:34 +00001573 };
Craig Topper55229b72017-04-02 19:17:22 +00001574 APInt A2(APInt::APINT_BITS_PER_WORD*4, E2);
Michael Gottesman4497d962013-12-13 20:47:34 +00001575 for (unsigned i = 0; i < 4; ++i) {
Craig Topper55229b72017-04-02 19:17:22 +00001576 for (unsigned j = 0; j < APInt::APINT_BITS_PER_WORD; ++j) {
Michael Gottesman4497d962013-12-13 20:47:34 +00001577 EXPECT_EQ(bool(E2[i] & (1ULL << j)),
Craig Topper55229b72017-04-02 19:17:22 +00001578 A2[i*APInt::APINT_BITS_PER_WORD + j]);
Michael Gottesman4497d962013-12-13 20:47:34 +00001579 }
1580 }
1581}
1582
Michael Gottesman073af742014-01-19 20:33:38 +00001583TEST(APIntTest, LargeAPIntConstruction) {
1584 // Check that we can properly construct very large APInt. It is very
1585 // unlikely that people will ever do this, but it is a legal input,
1586 // so we should not crash on it.
1587 APInt A9(UINT32_MAX, 0);
1588 EXPECT_FALSE(A9.getBoolValue());
1589}
1590
Michael Gottesmanf6d58ff2013-12-13 20:47:37 +00001591TEST(APIntTest, nearestLogBase2) {
Duncan P. N. Exon Smithc47069b2014-01-31 21:45:51 +00001592 // Single word check.
Michael Gottesmanf6d58ff2013-12-13 20:47:37 +00001593
1594 // Test round up.
1595 uint64_t I1 = 0x1800001;
1596 APInt A1(64, I1);
1597 EXPECT_EQ(A1.nearestLogBase2(), A1.ceilLogBase2());
1598
1599 // Test round down.
1600 uint64_t I2 = 0x1000011;
1601 APInt A2(64, I2);
1602 EXPECT_EQ(A2.nearestLogBase2(), A2.logBase2());
1603
1604 // Test ties round up.
1605 uint64_t I3 = 0x1800000;
1606 APInt A3(64, I3);
1607 EXPECT_EQ(A3.nearestLogBase2(), A3.ceilLogBase2());
1608
1609 // Multiple word check.
1610
1611 // Test round up.
Craig Topper55229b72017-04-02 19:17:22 +00001612 APInt::WordType I4[4] = {0x0, 0xF, 0x18, 0x0};
1613 APInt A4(APInt::APINT_BITS_PER_WORD*4, I4);
Michael Gottesmanf6d58ff2013-12-13 20:47:37 +00001614 EXPECT_EQ(A4.nearestLogBase2(), A4.ceilLogBase2());
1615
1616 // Test round down.
Craig Topper55229b72017-04-02 19:17:22 +00001617 APInt::WordType I5[4] = {0x0, 0xF, 0x10, 0x0};
1618 APInt A5(APInt::APINT_BITS_PER_WORD*4, I5);
Michael Gottesmanf6d58ff2013-12-13 20:47:37 +00001619 EXPECT_EQ(A5.nearestLogBase2(), A5.logBase2());
1620
1621 // Test ties round up.
1622 uint64_t I6[4] = {0x0, 0x0, 0x0, 0x18};
Craig Topper55229b72017-04-02 19:17:22 +00001623 APInt A6(APInt::APINT_BITS_PER_WORD*4, I6);
Michael Gottesmanf6d58ff2013-12-13 20:47:37 +00001624 EXPECT_EQ(A6.nearestLogBase2(), A6.ceilLogBase2());
Michael Gottesman84fcbde2014-01-19 20:33:48 +00001625
1626 // Test BitWidth == 1 special cases.
1627 APInt A7(1, 1);
1628 EXPECT_EQ(A7.nearestLogBase2(), 0ULL);
1629 APInt A8(1, 0);
1630 EXPECT_EQ(A8.nearestLogBase2(), UINT32_MAX);
1631
1632 // Test the zero case when we have a bit width large enough such
1633 // that the bit width is larger than UINT32_MAX-1.
1634 APInt A9(UINT32_MAX, 0);
1635 EXPECT_EQ(A9.nearestLogBase2(), UINT32_MAX);
Michael Gottesmanf6d58ff2013-12-13 20:47:37 +00001636}
1637
Benjamin Kramerb4b51502015-03-25 16:49:59 +00001638TEST(APIntTest, IsSplat) {
1639 APInt A(32, 0x01010101);
1640 EXPECT_FALSE(A.isSplat(1));
1641 EXPECT_FALSE(A.isSplat(2));
1642 EXPECT_FALSE(A.isSplat(4));
1643 EXPECT_TRUE(A.isSplat(8));
1644 EXPECT_TRUE(A.isSplat(16));
1645 EXPECT_TRUE(A.isSplat(32));
1646
1647 APInt B(24, 0xAAAAAA);
1648 EXPECT_FALSE(B.isSplat(1));
1649 EXPECT_TRUE(B.isSplat(2));
1650 EXPECT_TRUE(B.isSplat(4));
1651 EXPECT_TRUE(B.isSplat(8));
1652 EXPECT_TRUE(B.isSplat(24));
1653
1654 APInt C(24, 0xABAAAB);
1655 EXPECT_FALSE(C.isSplat(1));
1656 EXPECT_FALSE(C.isSplat(2));
1657 EXPECT_FALSE(C.isSplat(4));
1658 EXPECT_FALSE(C.isSplat(8));
1659 EXPECT_TRUE(C.isSplat(24));
1660
1661 APInt D(32, 0xABBAABBA);
1662 EXPECT_FALSE(D.isSplat(1));
1663 EXPECT_FALSE(D.isSplat(2));
1664 EXPECT_FALSE(D.isSplat(4));
1665 EXPECT_FALSE(D.isSplat(8));
1666 EXPECT_TRUE(D.isSplat(16));
1667 EXPECT_TRUE(D.isSplat(32));
1668
1669 APInt E(32, 0);
1670 EXPECT_TRUE(E.isSplat(1));
1671 EXPECT_TRUE(E.isSplat(2));
1672 EXPECT_TRUE(E.isSplat(4));
1673 EXPECT_TRUE(E.isSplat(8));
1674 EXPECT_TRUE(E.isSplat(16));
1675 EXPECT_TRUE(E.isSplat(32));
1676}
1677
Matt Arsenaultc3943572016-04-12 18:17:23 +00001678TEST(APIntTest, isMask) {
Craig Topperd33ee1b2017-04-03 16:34:59 +00001679 EXPECT_FALSE(APInt(32, 0x01010101).isMask());
1680 EXPECT_FALSE(APInt(32, 0xf0000000).isMask());
1681 EXPECT_FALSE(APInt(32, 0xffff0000).isMask());
1682 EXPECT_FALSE(APInt(32, 0xff << 1).isMask());
Matt Arsenaultc3943572016-04-12 18:17:23 +00001683
1684 for (int N : { 1, 2, 3, 4, 7, 8, 16, 32, 64, 127, 128, 129, 256 }) {
Craig Topperd33ee1b2017-04-03 16:34:59 +00001685 EXPECT_FALSE(APInt(N, 0).isMask());
Matt Arsenaultc3943572016-04-12 18:17:23 +00001686
1687 APInt One(N, 1);
1688 for (int I = 1; I <= N; ++I) {
1689 APInt MaskVal = One.shl(I) - 1;
Craig Topperd33ee1b2017-04-03 16:34:59 +00001690 EXPECT_TRUE(MaskVal.isMask());
1691 EXPECT_TRUE(MaskVal.isMask(I));
Matt Arsenaultc3943572016-04-12 18:17:23 +00001692 }
1693 }
1694}
1695
Craig Toppera4f660b2017-03-31 06:30:25 +00001696TEST(APIntTest, isShiftedMask) {
Craig Topperd33ee1b2017-04-03 16:34:59 +00001697 EXPECT_FALSE(APInt(32, 0x01010101).isShiftedMask());
1698 EXPECT_TRUE(APInt(32, 0xf0000000).isShiftedMask());
1699 EXPECT_TRUE(APInt(32, 0xffff0000).isShiftedMask());
1700 EXPECT_TRUE(APInt(32, 0xff << 1).isShiftedMask());
Craig Toppera4f660b2017-03-31 06:30:25 +00001701
1702 for (int N : { 1, 2, 3, 4, 7, 8, 16, 32, 64, 127, 128, 129, 256 }) {
Craig Topperd33ee1b2017-04-03 16:34:59 +00001703 EXPECT_FALSE(APInt(N, 0).isShiftedMask());
Craig Toppera4f660b2017-03-31 06:30:25 +00001704
1705 APInt One(N, 1);
1706 for (int I = 1; I < N; ++I) {
1707 APInt MaskVal = One.shl(I) - 1;
Craig Topperd33ee1b2017-04-03 16:34:59 +00001708 EXPECT_TRUE(MaskVal.isShiftedMask());
Craig Toppera4f660b2017-03-31 06:30:25 +00001709 }
1710 for (int I = 1; I < N - 1; ++I) {
1711 APInt MaskVal = One.shl(I);
Craig Topperd33ee1b2017-04-03 16:34:59 +00001712 EXPECT_TRUE(MaskVal.isShiftedMask());
Craig Toppera4f660b2017-03-31 06:30:25 +00001713 }
1714 for (int I = 1; I < N; ++I) {
1715 APInt MaskVal = APInt::getHighBitsSet(N, I);
Craig Topperd33ee1b2017-04-03 16:34:59 +00001716 EXPECT_TRUE(MaskVal.isShiftedMask());
Craig Toppera4f660b2017-03-31 06:30:25 +00001717 }
1718 }
1719}
1720
Reid Kleckner51760392018-04-24 21:41:50 +00001721// Test that self-move works, but only when we're using MSVC.
1722#if defined(_MSC_VER)
1723#if defined(__clang__)
1724// Disable the pragma warning from versions of Clang without -Wself-move
1725#pragma clang diagnostic push
1726#pragma clang diagnostic ignored "-Wunknown-pragmas"
1727// Disable the warning that triggers on exactly what is being tested.
1728#pragma clang diagnostic push
1729#pragma clang diagnostic ignored "-Wself-move"
1730#endif
1731TEST(APIntTest, SelfMoveAssignment) {
1732 APInt X(32, 0xdeadbeef);
1733 X = std::move(X);
1734 EXPECT_EQ(32u, X.getBitWidth());
1735 EXPECT_EQ(0xdeadbeefULL, X.getLimitedValue());
1736
1737 uint64_t Bits[] = {0xdeadbeefdeadbeefULL, 0xdeadbeefdeadbeefULL};
1738 APInt Y(128, Bits);
1739 Y = std::move(Y);
1740 EXPECT_EQ(128u, Y.getBitWidth());
1741 EXPECT_EQ(~0ULL, Y.getLimitedValue());
1742 const uint64_t *Raw = Y.getRawData();
1743 EXPECT_EQ(2u, Y.getNumWords());
1744 EXPECT_EQ(0xdeadbeefdeadbeefULL, Raw[0]);
1745 EXPECT_EQ(0xdeadbeefdeadbeefULL, Raw[1]);
1746}
1747#if defined(__clang__)
1748#pragma clang diagnostic pop
1749#pragma clang diagnostic pop
1750#endif
1751#endif // _MSC_VER
1752
Matt Arsenault155dda92016-03-21 15:00:35 +00001753TEST(APIntTest, reverseBits) {
1754 EXPECT_EQ(1, APInt(1, 1).reverseBits());
1755 EXPECT_EQ(0, APInt(1, 0).reverseBits());
1756
1757 EXPECT_EQ(3, APInt(2, 3).reverseBits());
1758 EXPECT_EQ(3, APInt(2, 3).reverseBits());
1759
1760 EXPECT_EQ(0xb, APInt(4, 0xd).reverseBits());
1761 EXPECT_EQ(0xd, APInt(4, 0xb).reverseBits());
1762 EXPECT_EQ(0xf, APInt(4, 0xf).reverseBits());
1763
1764 EXPECT_EQ(0x30, APInt(7, 0x6).reverseBits());
1765 EXPECT_EQ(0x5a, APInt(7, 0x2d).reverseBits());
1766
1767 EXPECT_EQ(0x0f, APInt(8, 0xf0).reverseBits());
1768 EXPECT_EQ(0xf0, APInt(8, 0x0f).reverseBits());
1769
1770 EXPECT_EQ(0x0f0f, APInt(16, 0xf0f0).reverseBits());
1771 EXPECT_EQ(0xf0f0, APInt(16, 0x0f0f).reverseBits());
1772
1773 EXPECT_EQ(0x0f0f0f0f, APInt(32, 0xf0f0f0f0).reverseBits());
1774 EXPECT_EQ(0xf0f0f0f0, APInt(32, 0x0f0f0f0f).reverseBits());
1775
1776 EXPECT_EQ(0x402880a0 >> 1, APInt(31, 0x05011402).reverseBits());
1777
1778 EXPECT_EQ(0x0f0f0f0f, APInt(32, 0xf0f0f0f0).reverseBits());
1779 EXPECT_EQ(0xf0f0f0f0, APInt(32, 0x0f0f0f0f).reverseBits());
1780
1781 EXPECT_EQ(0x0f0f0f0f0f0f0f0f, APInt(64, 0xf0f0f0f0f0f0f0f0).reverseBits());
1782 EXPECT_EQ(0xf0f0f0f0f0f0f0f0, APInt(64, 0x0f0f0f0f0f0f0f0f).reverseBits());
1783
1784 for (unsigned N : { 1, 8, 16, 24, 31, 32, 33,
1785 63, 64, 65, 127, 128, 257, 1024 }) {
1786 for (unsigned I = 0; I < N; ++I) {
1787 APInt X = APInt::getOneBitSet(N, I);
1788 APInt Y = APInt::getOneBitSet(N, N - (I + 1));
1789 EXPECT_EQ(Y, X.reverseBits());
1790 EXPECT_EQ(X, Y.reverseBits());
1791 }
1792 }
1793}
Simon Pilgrim0f5fb5f2017-02-25 20:01:58 +00001794
Simon Pilgrimb02667c2017-03-10 13:44:32 +00001795TEST(APIntTest, insertBits) {
1796 APInt iSrc(31, 0x00123456);
1797
1798 // Direct copy.
1799 APInt i31(31, 0x76543210ull);
1800 i31.insertBits(iSrc, 0);
1801 EXPECT_EQ(static_cast<int64_t>(0x00123456ull), i31.getSExtValue());
1802
1803 // Single word src/dst insertion.
1804 APInt i63(63, 0x01234567FFFFFFFFull);
1805 i63.insertBits(iSrc, 4);
1806 EXPECT_EQ(static_cast<int64_t>(0x012345600123456Full), i63.getSExtValue());
1807
1808 // Insert single word src into one word of dst.
1809 APInt i120(120, UINT64_MAX, true);
1810 i120.insertBits(iSrc, 8);
1811 EXPECT_EQ(static_cast<int64_t>(0xFFFFFF80123456FFull), i120.getSExtValue());
1812
1813 // Insert single word src into two words of dst.
1814 APInt i127(127, UINT64_MAX, true);
1815 i127.insertBits(iSrc, 48);
Simon Pilgrime9313ba2017-03-10 14:16:55 +00001816 EXPECT_EQ(i127.extractBits(64, 0).getZExtValue(), 0x3456FFFFFFFFFFFFull);
1817 EXPECT_EQ(i127.extractBits(63, 64).getZExtValue(), 0x7FFFFFFFFFFF8012ull);
Simon Pilgrimb02667c2017-03-10 13:44:32 +00001818
1819 // Insert on word boundaries.
1820 APInt i128(128, 0);
1821 i128.insertBits(APInt(64, UINT64_MAX, true), 0);
1822 i128.insertBits(APInt(64, UINT64_MAX, true), 64);
1823 EXPECT_EQ(-1, i128.getSExtValue());
1824
1825 APInt i256(256, UINT64_MAX, true);
1826 i256.insertBits(APInt(65, 0), 0);
1827 i256.insertBits(APInt(69, 0), 64);
1828 i256.insertBits(APInt(128, 0), 128);
1829 EXPECT_EQ(0u, i256.getSExtValue());
1830
1831 APInt i257(257, 0);
1832 i257.insertBits(APInt(96, UINT64_MAX, true), 64);
Simon Pilgrime9313ba2017-03-10 14:16:55 +00001833 EXPECT_EQ(i257.extractBits(64, 0).getZExtValue(), 0x0000000000000000ull);
1834 EXPECT_EQ(i257.extractBits(64, 64).getZExtValue(), 0xFFFFFFFFFFFFFFFFull);
1835 EXPECT_EQ(i257.extractBits(64, 128).getZExtValue(), 0x00000000FFFFFFFFull);
1836 EXPECT_EQ(i257.extractBits(65, 192).getZExtValue(), 0x0000000000000000ull);
Simon Pilgrimb02667c2017-03-10 13:44:32 +00001837
1838 // General insertion.
1839 APInt i260(260, UINT64_MAX, true);
1840 i260.insertBits(APInt(129, 1ull << 48), 15);
Simon Pilgrime9313ba2017-03-10 14:16:55 +00001841 EXPECT_EQ(i260.extractBits(64, 0).getZExtValue(), 0x8000000000007FFFull);
1842 EXPECT_EQ(i260.extractBits(64, 64).getZExtValue(), 0x0000000000000000ull);
1843 EXPECT_EQ(i260.extractBits(64, 128).getZExtValue(), 0xFFFFFFFFFFFF0000ull);
1844 EXPECT_EQ(i260.extractBits(64, 192).getZExtValue(), 0xFFFFFFFFFFFFFFFFull);
1845 EXPECT_EQ(i260.extractBits(4, 256).getZExtValue(), 0x000000000000000Full);
Simon Pilgrimb02667c2017-03-10 13:44:32 +00001846}
1847
Simon Pilgrim0f5fb5f2017-02-25 20:01:58 +00001848TEST(APIntTest, extractBits) {
1849 APInt i32(32, 0x1234567);
1850 EXPECT_EQ(0x3456, i32.extractBits(16, 4));
1851
1852 APInt i257(257, 0xFFFFFFFFFF0000FFull, true);
1853 EXPECT_EQ(0xFFu, i257.extractBits(16, 0));
1854 EXPECT_EQ((0xFFu >> 1), i257.extractBits(16, 1));
1855 EXPECT_EQ(-1, i257.extractBits(32, 64).getSExtValue());
1856 EXPECT_EQ(-1, i257.extractBits(128, 128).getSExtValue());
1857 EXPECT_EQ(-1, i257.extractBits(66, 191).getSExtValue());
1858 EXPECT_EQ(static_cast<int64_t>(0xFFFFFFFFFF80007Full),
1859 i257.extractBits(128, 1).getSExtValue());
1860 EXPECT_EQ(static_cast<int64_t>(0xFFFFFFFFFF80007Full),
1861 i257.extractBits(129, 1).getSExtValue());
Tim Shen89337752018-02-16 01:44:36 +00001862
1863 EXPECT_EQ(APInt(48, 0),
1864 APInt(144, "281474976710655", 10).extractBits(48, 48));
1865 EXPECT_EQ(APInt(48, 0x0000ffffffffffffull),
1866 APInt(144, "281474976710655", 10).extractBits(48, 0));
1867 EXPECT_EQ(APInt(48, 0x00007fffffffffffull),
1868 APInt(144, "281474976710655", 10).extractBits(48, 1));
Simon Pilgrim0f5fb5f2017-02-25 20:01:58 +00001869}
Craig Toppera8b26b82017-02-26 19:28:45 +00001870
1871TEST(APIntTest, getLowBitsSet) {
1872 APInt i128lo64 = APInt::getLowBitsSet(128, 64);
1873 EXPECT_EQ(0u, i128lo64.countLeadingOnes());
1874 EXPECT_EQ(64u, i128lo64.countLeadingZeros());
1875 EXPECT_EQ(64u, i128lo64.getActiveBits());
1876 EXPECT_EQ(0u, i128lo64.countTrailingZeros());
1877 EXPECT_EQ(64u, i128lo64.countTrailingOnes());
1878 EXPECT_EQ(64u, i128lo64.countPopulation());
1879}
Craig Topper7d7b6d72017-02-26 19:28:48 +00001880
Craig Topper06ec03c2017-03-07 03:16:37 +00001881TEST(APIntTest, getBitsSet) {
Craig Topper7f7d1202017-04-30 07:45:01 +00001882 APInt i64hi1lo1 = APInt::getBitsSet(64, 1, 63);
1883 EXPECT_EQ(0u, i64hi1lo1.countLeadingOnes());
1884 EXPECT_EQ(1u, i64hi1lo1.countLeadingZeros());
1885 EXPECT_EQ(63u, i64hi1lo1.getActiveBits());
1886 EXPECT_EQ(1u, i64hi1lo1.countTrailingZeros());
1887 EXPECT_EQ(0u, i64hi1lo1.countTrailingOnes());
1888 EXPECT_EQ(62u, i64hi1lo1.countPopulation());
Craig Topperdfd91312017-03-07 02:19:45 +00001889
Craig Topper7f7d1202017-04-30 07:45:01 +00001890 APInt i127hi1lo1 = APInt::getBitsSet(127, 1, 126);
1891 EXPECT_EQ(0u, i127hi1lo1.countLeadingOnes());
1892 EXPECT_EQ(1u, i127hi1lo1.countLeadingZeros());
1893 EXPECT_EQ(126u, i127hi1lo1.getActiveBits());
1894 EXPECT_EQ(1u, i127hi1lo1.countTrailingZeros());
1895 EXPECT_EQ(0u, i127hi1lo1.countTrailingOnes());
1896 EXPECT_EQ(125u, i127hi1lo1.countPopulation());
Craig Topperdfd91312017-03-07 02:19:45 +00001897}
1898
Craig Topper06ec03c2017-03-07 03:16:37 +00001899TEST(APIntTest, getHighBitsSet) {
Craig Topper7d7b6d72017-02-26 19:28:48 +00001900 APInt i64hi32 = APInt::getHighBitsSet(64, 32);
1901 EXPECT_EQ(32u, i64hi32.countLeadingOnes());
1902 EXPECT_EQ(0u, i64hi32.countLeadingZeros());
1903 EXPECT_EQ(64u, i64hi32.getActiveBits());
1904 EXPECT_EQ(32u, i64hi32.countTrailingZeros());
1905 EXPECT_EQ(0u, i64hi32.countTrailingOnes());
1906 EXPECT_EQ(32u, i64hi32.countPopulation());
1907}
Craig Topperbafdd032017-03-07 01:56:01 +00001908
Craig Topperbf1c9ab2017-03-07 02:58:36 +00001909TEST(APIntTest, getBitsSetFrom) {
1910 APInt i64hi31 = APInt::getBitsSetFrom(64, 33);
1911 EXPECT_EQ(31u, i64hi31.countLeadingOnes());
1912 EXPECT_EQ(0u, i64hi31.countLeadingZeros());
1913 EXPECT_EQ(64u, i64hi31.getActiveBits());
1914 EXPECT_EQ(33u, i64hi31.countTrailingZeros());
1915 EXPECT_EQ(0u, i64hi31.countTrailingOnes());
1916 EXPECT_EQ(31u, i64hi31.countPopulation());
1917}
1918
Craig Topperbafdd032017-03-07 01:56:01 +00001919TEST(APIntTest, setLowBits) {
1920 APInt i64lo32(64, 0);
1921 i64lo32.setLowBits(32);
1922 EXPECT_EQ(0u, i64lo32.countLeadingOnes());
1923 EXPECT_EQ(32u, i64lo32.countLeadingZeros());
1924 EXPECT_EQ(32u, i64lo32.getActiveBits());
1925 EXPECT_EQ(0u, i64lo32.countTrailingZeros());
1926 EXPECT_EQ(32u, i64lo32.countTrailingOnes());
1927 EXPECT_EQ(32u, i64lo32.countPopulation());
1928
1929 APInt i128lo64(128, 0);
1930 i128lo64.setLowBits(64);
1931 EXPECT_EQ(0u, i128lo64.countLeadingOnes());
1932 EXPECT_EQ(64u, i128lo64.countLeadingZeros());
1933 EXPECT_EQ(64u, i128lo64.getActiveBits());
1934 EXPECT_EQ(0u, i128lo64.countTrailingZeros());
1935 EXPECT_EQ(64u, i128lo64.countTrailingOnes());
1936 EXPECT_EQ(64u, i128lo64.countPopulation());
1937
1938 APInt i128lo24(128, 0);
1939 i128lo24.setLowBits(24);
1940 EXPECT_EQ(0u, i128lo24.countLeadingOnes());
1941 EXPECT_EQ(104u, i128lo24.countLeadingZeros());
1942 EXPECT_EQ(24u, i128lo24.getActiveBits());
1943 EXPECT_EQ(0u, i128lo24.countTrailingZeros());
1944 EXPECT_EQ(24u, i128lo24.countTrailingOnes());
1945 EXPECT_EQ(24u, i128lo24.countPopulation());
1946
1947 APInt i128lo104(128, 0);
1948 i128lo104.setLowBits(104);
1949 EXPECT_EQ(0u, i128lo104.countLeadingOnes());
1950 EXPECT_EQ(24u, i128lo104.countLeadingZeros());
1951 EXPECT_EQ(104u, i128lo104.getActiveBits());
1952 EXPECT_EQ(0u, i128lo104.countTrailingZeros());
1953 EXPECT_EQ(104u, i128lo104.countTrailingOnes());
1954 EXPECT_EQ(104u, i128lo104.countPopulation());
1955
1956 APInt i128lo0(128, 0);
1957 i128lo0.setLowBits(0);
1958 EXPECT_EQ(0u, i128lo0.countLeadingOnes());
1959 EXPECT_EQ(128u, i128lo0.countLeadingZeros());
1960 EXPECT_EQ(0u, i128lo0.getActiveBits());
1961 EXPECT_EQ(128u, i128lo0.countTrailingZeros());
1962 EXPECT_EQ(0u, i128lo0.countTrailingOnes());
1963 EXPECT_EQ(0u, i128lo0.countPopulation());
1964
1965 APInt i80lo79(80, 0);
1966 i80lo79.setLowBits(79);
1967 EXPECT_EQ(0u, i80lo79.countLeadingOnes());
1968 EXPECT_EQ(1u, i80lo79.countLeadingZeros());
1969 EXPECT_EQ(79u, i80lo79.getActiveBits());
1970 EXPECT_EQ(0u, i80lo79.countTrailingZeros());
1971 EXPECT_EQ(79u, i80lo79.countTrailingOnes());
1972 EXPECT_EQ(79u, i80lo79.countPopulation());
1973}
1974
1975TEST(APIntTest, setHighBits) {
1976 APInt i64hi32(64, 0);
1977 i64hi32.setHighBits(32);
1978 EXPECT_EQ(32u, i64hi32.countLeadingOnes());
1979 EXPECT_EQ(0u, i64hi32.countLeadingZeros());
1980 EXPECT_EQ(64u, i64hi32.getActiveBits());
1981 EXPECT_EQ(32u, i64hi32.countTrailingZeros());
1982 EXPECT_EQ(0u, i64hi32.countTrailingOnes());
1983 EXPECT_EQ(32u, i64hi32.countPopulation());
1984
1985 APInt i128hi64(128, 0);
1986 i128hi64.setHighBits(64);
1987 EXPECT_EQ(64u, i128hi64.countLeadingOnes());
1988 EXPECT_EQ(0u, i128hi64.countLeadingZeros());
1989 EXPECT_EQ(128u, i128hi64.getActiveBits());
1990 EXPECT_EQ(64u, i128hi64.countTrailingZeros());
1991 EXPECT_EQ(0u, i128hi64.countTrailingOnes());
1992 EXPECT_EQ(64u, i128hi64.countPopulation());
1993
1994 APInt i128hi24(128, 0);
1995 i128hi24.setHighBits(24);
1996 EXPECT_EQ(24u, i128hi24.countLeadingOnes());
1997 EXPECT_EQ(0u, i128hi24.countLeadingZeros());
1998 EXPECT_EQ(128u, i128hi24.getActiveBits());
1999 EXPECT_EQ(104u, i128hi24.countTrailingZeros());
2000 EXPECT_EQ(0u, i128hi24.countTrailingOnes());
2001 EXPECT_EQ(24u, i128hi24.countPopulation());
2002
2003 APInt i128hi104(128, 0);
2004 i128hi104.setHighBits(104);
2005 EXPECT_EQ(104u, i128hi104.countLeadingOnes());
2006 EXPECT_EQ(0u, i128hi104.countLeadingZeros());
2007 EXPECT_EQ(128u, i128hi104.getActiveBits());
2008 EXPECT_EQ(24u, i128hi104.countTrailingZeros());
2009 EXPECT_EQ(0u, i128hi104.countTrailingOnes());
2010 EXPECT_EQ(104u, i128hi104.countPopulation());
2011
2012 APInt i128hi0(128, 0);
2013 i128hi0.setHighBits(0);
2014 EXPECT_EQ(0u, i128hi0.countLeadingOnes());
2015 EXPECT_EQ(128u, i128hi0.countLeadingZeros());
2016 EXPECT_EQ(0u, i128hi0.getActiveBits());
2017 EXPECT_EQ(128u, i128hi0.countTrailingZeros());
2018 EXPECT_EQ(0u, i128hi0.countTrailingOnes());
2019 EXPECT_EQ(0u, i128hi0.countPopulation());
2020
2021 APInt i80hi1(80, 0);
2022 i80hi1.setHighBits(1);
2023 EXPECT_EQ(1u, i80hi1.countLeadingOnes());
2024 EXPECT_EQ(0u, i80hi1.countLeadingZeros());
2025 EXPECT_EQ(80u, i80hi1.getActiveBits());
2026 EXPECT_EQ(79u, i80hi1.countTrailingZeros());
2027 EXPECT_EQ(0u, i80hi1.countTrailingOnes());
2028 EXPECT_EQ(1u, i80hi1.countPopulation());
2029
2030 APInt i32hi16(32, 0);
2031 i32hi16.setHighBits(16);
2032 EXPECT_EQ(16u, i32hi16.countLeadingOnes());
2033 EXPECT_EQ(0u, i32hi16.countLeadingZeros());
2034 EXPECT_EQ(32u, i32hi16.getActiveBits());
2035 EXPECT_EQ(16u, i32hi16.countTrailingZeros());
2036 EXPECT_EQ(0u, i32hi16.countTrailingOnes());
2037 EXPECT_EQ(16u, i32hi16.countPopulation());
2038}
Craig Topperbf1c9ab2017-03-07 02:58:36 +00002039
2040TEST(APIntTest, setBitsFrom) {
2041 APInt i64from63(64, 0);
2042 i64from63.setBitsFrom(63);
2043 EXPECT_EQ(1u, i64from63.countLeadingOnes());
2044 EXPECT_EQ(0u, i64from63.countLeadingZeros());
2045 EXPECT_EQ(64u, i64from63.getActiveBits());
2046 EXPECT_EQ(63u, i64from63.countTrailingZeros());
2047 EXPECT_EQ(0u, i64from63.countTrailingOnes());
2048 EXPECT_EQ(1u, i64from63.countPopulation());
2049}
Craig Toppere4c46682017-03-27 17:50:54 +00002050
2051TEST(APIntTest, setAllBits) {
2052 APInt i32(32, 0);
2053 i32.setAllBits();
2054 EXPECT_EQ(32u, i32.countLeadingOnes());
2055 EXPECT_EQ(0u, i32.countLeadingZeros());
2056 EXPECT_EQ(32u, i32.getActiveBits());
2057 EXPECT_EQ(0u, i32.countTrailingZeros());
2058 EXPECT_EQ(32u, i32.countTrailingOnes());
2059 EXPECT_EQ(32u, i32.countPopulation());
2060
2061 APInt i64(64, 0);
2062 i64.setAllBits();
2063 EXPECT_EQ(64u, i64.countLeadingOnes());
2064 EXPECT_EQ(0u, i64.countLeadingZeros());
2065 EXPECT_EQ(64u, i64.getActiveBits());
2066 EXPECT_EQ(0u, i64.countTrailingZeros());
2067 EXPECT_EQ(64u, i64.countTrailingOnes());
2068 EXPECT_EQ(64u, i64.countPopulation());
2069
2070 APInt i96(96, 0);
2071 i96.setAllBits();
2072 EXPECT_EQ(96u, i96.countLeadingOnes());
2073 EXPECT_EQ(0u, i96.countLeadingZeros());
2074 EXPECT_EQ(96u, i96.getActiveBits());
2075 EXPECT_EQ(0u, i96.countTrailingZeros());
2076 EXPECT_EQ(96u, i96.countTrailingOnes());
2077 EXPECT_EQ(96u, i96.countPopulation());
2078
2079 APInt i128(128, 0);
2080 i128.setAllBits();
2081 EXPECT_EQ(128u, i128.countLeadingOnes());
2082 EXPECT_EQ(0u, i128.countLeadingZeros());
2083 EXPECT_EQ(128u, i128.getActiveBits());
2084 EXPECT_EQ(0u, i128.countTrailingZeros());
2085 EXPECT_EQ(128u, i128.countTrailingOnes());
2086 EXPECT_EQ(128u, i128.countPopulation());
2087}
Craig Toppere7e35602017-03-31 18:48:14 +00002088
2089TEST(APIntTest, getLoBits) {
2090 APInt i32(32, 0xfa);
2091 i32.setHighBits(1);
2092 EXPECT_EQ(0xa, i32.getLoBits(4));
2093 APInt i128(128, 0xfa);
2094 i128.setHighBits(1);
2095 EXPECT_EQ(0xa, i128.getLoBits(4));
2096}
2097
2098TEST(APIntTest, getHiBits) {
2099 APInt i32(32, 0xfa);
2100 i32.setHighBits(2);
2101 EXPECT_EQ(0xc, i32.getHiBits(4));
2102 APInt i128(128, 0xfa);
2103 i128.setHighBits(2);
2104 EXPECT_EQ(0xc, i128.getHiBits(4));
2105}
Richard Smith55bd3752017-04-13 20:29:59 +00002106
2107TEST(APIntTest, GCD) {
2108 using APIntOps::GreatestCommonDivisor;
2109
2110 for (unsigned Bits : {1, 2, 32, 63, 64, 65}) {
2111 // Test some corner cases near zero.
2112 APInt Zero(Bits, 0), One(Bits, 1);
2113 EXPECT_EQ(GreatestCommonDivisor(Zero, Zero), Zero);
2114 EXPECT_EQ(GreatestCommonDivisor(Zero, One), One);
2115 EXPECT_EQ(GreatestCommonDivisor(One, Zero), One);
2116 EXPECT_EQ(GreatestCommonDivisor(One, One), One);
2117
2118 if (Bits > 1) {
2119 APInt Two(Bits, 2);
2120 EXPECT_EQ(GreatestCommonDivisor(Zero, Two), Two);
2121 EXPECT_EQ(GreatestCommonDivisor(One, Two), One);
2122 EXPECT_EQ(GreatestCommonDivisor(Two, Two), Two);
2123
2124 // Test some corner cases near the highest representable value.
2125 APInt Max(Bits, 0);
2126 Max.setAllBits();
2127 EXPECT_EQ(GreatestCommonDivisor(Zero, Max), Max);
2128 EXPECT_EQ(GreatestCommonDivisor(One, Max), One);
2129 EXPECT_EQ(GreatestCommonDivisor(Two, Max), One);
2130 EXPECT_EQ(GreatestCommonDivisor(Max, Max), Max);
2131
2132 APInt MaxOver2 = Max.udiv(Two);
2133 EXPECT_EQ(GreatestCommonDivisor(MaxOver2, Max), One);
2134 // Max - 1 == Max / 2 * 2, because Max is odd.
2135 EXPECT_EQ(GreatestCommonDivisor(MaxOver2, Max - 1), MaxOver2);
2136 }
2137 }
2138
2139 // Compute the 20th Mersenne prime.
2140 const unsigned BitWidth = 4450;
2141 APInt HugePrime = APInt::getLowBitsSet(BitWidth, 4423);
2142
2143 // 9931 and 123456 are coprime.
2144 APInt A = HugePrime * APInt(BitWidth, 9931);
2145 APInt B = HugePrime * APInt(BitWidth, 123456);
2146 APInt C = GreatestCommonDivisor(A, B);
2147 EXPECT_EQ(C, HugePrime);
2148}
Craig Topper7abfbdf2017-04-17 18:44:27 +00002149
Craig Topper9575d8f2017-04-17 21:43:43 +00002150TEST(APIntTest, LogicalRightShift) {
2151 APInt i256(APInt::getHighBitsSet(256, 2));
2152
2153 i256.lshrInPlace(1);
2154 EXPECT_EQ(1U, i256.countLeadingZeros());
2155 EXPECT_EQ(253U, i256.countTrailingZeros());
2156 EXPECT_EQ(2U, i256.countPopulation());
2157
2158 i256.lshrInPlace(62);
2159 EXPECT_EQ(63U, i256.countLeadingZeros());
2160 EXPECT_EQ(191U, i256.countTrailingZeros());
2161 EXPECT_EQ(2U, i256.countPopulation());
2162
2163 i256.lshrInPlace(65);
2164 EXPECT_EQ(128U, i256.countLeadingZeros());
2165 EXPECT_EQ(126U, i256.countTrailingZeros());
2166 EXPECT_EQ(2U, i256.countPopulation());
2167
2168 i256.lshrInPlace(64);
2169 EXPECT_EQ(192U, i256.countLeadingZeros());
2170 EXPECT_EQ(62U, i256.countTrailingZeros());
2171 EXPECT_EQ(2U, i256.countPopulation());
2172
2173 i256.lshrInPlace(63);
2174 EXPECT_EQ(255U, i256.countLeadingZeros());
2175 EXPECT_EQ(0U, i256.countTrailingZeros());
2176 EXPECT_EQ(1U, i256.countPopulation());
2177
2178 // Ensure we handle large shifts of multi-word.
2179 const APInt neg_one(128, static_cast<uint64_t>(-1), true);
Craig Topper4db0c692017-04-20 03:49:18 +00002180 EXPECT_EQ(0, neg_one.lshr(128));
Craig Topper9575d8f2017-04-17 21:43:43 +00002181}
2182
Craig Topper8b373262017-04-24 17:18:47 +00002183TEST(APIntTest, ArithmeticRightShift) {
2184 APInt i72(APInt::getHighBitsSet(72, 1));
2185 i72.ashrInPlace(46);
2186 EXPECT_EQ(47U, i72.countLeadingOnes());
2187 EXPECT_EQ(25U, i72.countTrailingZeros());
2188 EXPECT_EQ(47U, i72.countPopulation());
2189
2190 i72 = APInt::getHighBitsSet(72, 1);
2191 i72.ashrInPlace(64);
2192 EXPECT_EQ(65U, i72.countLeadingOnes());
2193 EXPECT_EQ(7U, i72.countTrailingZeros());
2194 EXPECT_EQ(65U, i72.countPopulation());
2195
2196 APInt i128(APInt::getHighBitsSet(128, 1));
2197 i128.ashrInPlace(64);
2198 EXPECT_EQ(65U, i128.countLeadingOnes());
2199 EXPECT_EQ(63U, i128.countTrailingZeros());
2200 EXPECT_EQ(65U, i128.countPopulation());
2201
2202 // Ensure we handle large shifts of multi-word.
2203 const APInt signmin32(APInt::getSignedMinValue(32));
2204 EXPECT_TRUE(signmin32.ashr(32).isAllOnesValue());
2205
2206 // Ensure we handle large shifts of multi-word.
2207 const APInt umax32(APInt::getSignedMaxValue(32));
2208 EXPECT_EQ(0, umax32.ashr(32));
2209
2210 // Ensure we handle large shifts of multi-word.
2211 const APInt signmin128(APInt::getSignedMinValue(128));
2212 EXPECT_TRUE(signmin128.ashr(128).isAllOnesValue());
2213
2214 // Ensure we handle large shifts of multi-word.
2215 const APInt umax128(APInt::getSignedMaxValue(128));
2216 EXPECT_EQ(0, umax128.ashr(128));
2217}
2218
Craig Toppera8a4f0d2017-04-18 04:39:48 +00002219TEST(APIntTest, LeftShift) {
2220 APInt i256(APInt::getLowBitsSet(256, 2));
2221
2222 i256 <<= 1;
2223 EXPECT_EQ(253U, i256.countLeadingZeros());
2224 EXPECT_EQ(1U, i256.countTrailingZeros());
2225 EXPECT_EQ(2U, i256.countPopulation());
2226
2227 i256 <<= 62;
2228 EXPECT_EQ(191U, i256.countLeadingZeros());
2229 EXPECT_EQ(63U, i256.countTrailingZeros());
2230 EXPECT_EQ(2U, i256.countPopulation());
2231
2232 i256 <<= 65;
2233 EXPECT_EQ(126U, i256.countLeadingZeros());
2234 EXPECT_EQ(128U, i256.countTrailingZeros());
2235 EXPECT_EQ(2U, i256.countPopulation());
2236
2237 i256 <<= 64;
2238 EXPECT_EQ(62U, i256.countLeadingZeros());
2239 EXPECT_EQ(192U, i256.countTrailingZeros());
2240 EXPECT_EQ(2U, i256.countPopulation());
2241
2242 i256 <<= 63;
2243 EXPECT_EQ(0U, i256.countLeadingZeros());
2244 EXPECT_EQ(255U, i256.countTrailingZeros());
2245 EXPECT_EQ(1U, i256.countPopulation());
2246
2247 // Ensure we handle large shifts of multi-word.
2248 const APInt neg_one(128, static_cast<uint64_t>(-1), true);
Craig Topper4db0c692017-04-20 03:49:18 +00002249 EXPECT_EQ(0, neg_one.shl(128));
Craig Toppera8a4f0d2017-04-18 04:39:48 +00002250}
2251
Craig Toppera8129a12017-04-20 16:17:13 +00002252TEST(APIntTest, isSubsetOf) {
2253 APInt i32_1(32, 1);
2254 APInt i32_2(32, 2);
2255 APInt i32_3(32, 3);
2256 EXPECT_FALSE(i32_3.isSubsetOf(i32_1));
2257 EXPECT_TRUE(i32_1.isSubsetOf(i32_3));
2258 EXPECT_FALSE(i32_2.isSubsetOf(i32_1));
2259 EXPECT_FALSE(i32_1.isSubsetOf(i32_2));
2260 EXPECT_TRUE(i32_3.isSubsetOf(i32_3));
2261
2262 APInt i128_1(128, 1);
2263 APInt i128_2(128, 2);
2264 APInt i128_3(128, 3);
2265 EXPECT_FALSE(i128_3.isSubsetOf(i128_1));
2266 EXPECT_TRUE(i128_1.isSubsetOf(i128_3));
2267 EXPECT_FALSE(i128_2.isSubsetOf(i128_1));
2268 EXPECT_FALSE(i128_1.isSubsetOf(i128_2));
2269 EXPECT_TRUE(i128_3.isSubsetOf(i128_3));
2270
2271 i128_1 <<= 64;
2272 i128_2 <<= 64;
2273 i128_3 <<= 64;
2274 EXPECT_FALSE(i128_3.isSubsetOf(i128_1));
2275 EXPECT_TRUE(i128_1.isSubsetOf(i128_3));
2276 EXPECT_FALSE(i128_2.isSubsetOf(i128_1));
2277 EXPECT_FALSE(i128_1.isSubsetOf(i128_2));
2278 EXPECT_TRUE(i128_3.isSubsetOf(i128_3));
2279}
2280
Craig Topper652ca992017-04-23 17:16:24 +00002281TEST(APIntTest, sext) {
2282 EXPECT_EQ(0, APInt(1, 0).sext(64));
2283 EXPECT_EQ(~uint64_t(0), APInt(1, 1).sext(64));
2284
2285 APInt i32_max(APInt::getSignedMaxValue(32).sext(63));
2286 EXPECT_EQ(32U, i32_max.countLeadingZeros());
2287 EXPECT_EQ(0U, i32_max.countTrailingZeros());
2288 EXPECT_EQ(31U, i32_max.countPopulation());
2289
2290 APInt i32_min(APInt::getSignedMinValue(32).sext(63));
2291 EXPECT_EQ(32U, i32_min.countLeadingOnes());
2292 EXPECT_EQ(31U, i32_min.countTrailingZeros());
2293 EXPECT_EQ(32U, i32_min.countPopulation());
2294
2295 APInt i32_neg1(APInt(32, ~uint64_t(0)).sext(63));
2296 EXPECT_EQ(63U, i32_neg1.countLeadingOnes());
2297 EXPECT_EQ(0U, i32_neg1.countTrailingZeros());
2298 EXPECT_EQ(63U, i32_neg1.countPopulation());
2299}
2300
Craig Toppera51941f2017-05-08 04:55:09 +00002301TEST(APIntTest, multiply) {
2302 APInt i64(64, 1234);
2303
2304 EXPECT_EQ(7006652, i64 * 5678);
2305 EXPECT_EQ(7006652, 5678 * i64);
2306
2307 APInt i128 = APInt::getOneBitSet(128, 64);
2308 APInt i128_1234(128, 1234);
2309 i128_1234 <<= 64;
2310 EXPECT_EQ(i128_1234, i128 * 1234);
2311 EXPECT_EQ(i128_1234, 1234 * i128);
2312
2313 APInt i96 = APInt::getOneBitSet(96, 64);
2314 i96 *= ~0ULL;
2315 EXPECT_EQ(32U, i96.countLeadingOnes());
2316 EXPECT_EQ(32U, i96.countPopulation());
2317 EXPECT_EQ(64U, i96.countTrailingZeros());
2318}
2319
Tim Shen802c31c2018-06-25 23:49:20 +00002320TEST(APIntTest, RoundingUDiv) {
2321 for (uint64_t Ai = 1; Ai <= 255; Ai++) {
2322 APInt A(8, Ai);
2323 APInt Zero(8, 0);
2324 EXPECT_EQ(0, APIntOps::RoundingUDiv(Zero, A, APInt::Rounding::UP));
2325 EXPECT_EQ(0, APIntOps::RoundingUDiv(Zero, A, APInt::Rounding::DOWN));
2326 EXPECT_EQ(0, APIntOps::RoundingUDiv(Zero, A, APInt::Rounding::TOWARD_ZERO));
2327
2328 for (uint64_t Bi = 1; Bi <= 255; Bi++) {
2329 APInt B(8, Bi);
2330 {
2331 APInt Quo = APIntOps::RoundingUDiv(A, B, APInt::Rounding::UP);
2332 auto Prod = Quo.zext(16) * B.zext(16);
2333 EXPECT_TRUE(Prod.uge(Ai));
2334 if (Prod.ugt(Ai)) {
2335 EXPECT_TRUE(((Quo - 1).zext(16) * B.zext(16)).ult(Ai));
2336 }
2337 }
2338 {
2339 APInt Quo = A.udiv(B);
2340 EXPECT_EQ(Quo, APIntOps::RoundingUDiv(A, B, APInt::Rounding::TOWARD_ZERO));
2341 EXPECT_EQ(Quo, APIntOps::RoundingUDiv(A, B, APInt::Rounding::DOWN));
2342 }
2343 }
2344 }
2345}
2346
2347TEST(APIntTest, RoundingSDiv) {
2348 for (int64_t Ai = -128; Ai <= 127; Ai++) {
2349 APInt A(8, Ai);
2350
2351 if (Ai != 0) {
2352 APInt Zero(8, 0);
2353 EXPECT_EQ(0, APIntOps::RoundingSDiv(Zero, A, APInt::Rounding::UP));
2354 EXPECT_EQ(0, APIntOps::RoundingSDiv(Zero, A, APInt::Rounding::DOWN));
2355 EXPECT_EQ(0, APIntOps::RoundingSDiv(Zero, A, APInt::Rounding::TOWARD_ZERO));
2356 }
2357
2358 for (uint64_t Bi = -128; Bi <= 127; Bi++) {
2359 if (Bi == 0)
2360 continue;
2361
2362 APInt B(8, Bi);
2363 {
2364 APInt Quo = APIntOps::RoundingSDiv(A, B, APInt::Rounding::UP);
2365 auto Prod = Quo.sext(16) * B.sext(16);
2366 EXPECT_TRUE(Prod.uge(A));
2367 if (Prod.ugt(A)) {
2368 EXPECT_TRUE(((Quo - 1).sext(16) * B.sext(16)).ult(A));
2369 }
2370 }
2371 {
2372 APInt Quo = APIntOps::RoundingSDiv(A, B, APInt::Rounding::DOWN);
2373 auto Prod = Quo.sext(16) * B.sext(16);
2374 EXPECT_TRUE(Prod.ule(A));
2375 if (Prod.ult(A)) {
2376 EXPECT_TRUE(((Quo + 1).sext(16) * B.sext(16)).ugt(A));
2377 }
2378 }
2379 {
2380 APInt Quo = A.sdiv(B);
2381 EXPECT_EQ(Quo, APIntOps::RoundingSDiv(A, B, APInt::Rounding::TOWARD_ZERO));
2382 }
2383 }
2384 }
2385}
2386
Fangrui Songacc76412019-04-19 02:06:06 +00002387TEST(APIntTest, umul_ov) {
2388 const std::pair<uint64_t, uint64_t> Overflows[] = {
2389 {0x8000000000000000, 2},
2390 {0x5555555555555556, 3},
2391 {4294967296, 4294967296},
2392 {4294967295, 4294967298},
2393 };
2394 const std::pair<uint64_t, uint64_t> NonOverflows[] = {
2395 {0x7fffffffffffffff, 2},
2396 {0x5555555555555555, 3},
2397 {4294967295, 4294967297},
2398 };
2399
2400 bool Overflow;
2401 for (auto &X : Overflows) {
2402 APInt A(64, X.first);
2403 APInt B(64, X.second);
2404 (void)A.umul_ov(B, Overflow);
2405 EXPECT_TRUE(Overflow);
2406 }
2407 for (auto &X : NonOverflows) {
2408 APInt A(64, X.first);
2409 APInt B(64, X.second);
2410 (void)A.umul_ov(B, Overflow);
2411 EXPECT_FALSE(Overflow);
2412 }
2413
2414 for (unsigned Bits = 1; Bits <= 5; ++Bits)
2415 for (unsigned A = 0; A != 1u << Bits; ++A)
2416 for (unsigned B = 0; B != 1u << Bits; ++B) {
2417 APInt C = APInt(Bits, A).umul_ov(APInt(Bits, B), Overflow);
2418 APInt D = APInt(2 * Bits, A) * APInt(2 * Bits, B);
2419 EXPECT_TRUE(D.getHiBits(Bits).isNullValue() != Overflow);
2420 }
2421}
2422
Krzysztof Parzyszek90f32492018-08-02 19:13:35 +00002423TEST(APIntTest, SolveQuadraticEquationWrap) {
2424 // Verify that "Solution" is the first non-negative integer that solves
2425 // Ax^2 + Bx + C = "0 or overflow", i.e. that it is a correct solution
2426 // as calculated by SolveQuadraticEquationWrap.
2427 auto Validate = [] (int A, int B, int C, unsigned Width, int Solution) {
2428 int Mask = (1 << Width) - 1;
2429
2430 // Solution should be non-negative.
2431 EXPECT_GE(Solution, 0);
2432
2433 auto OverflowBits = [] (int64_t V, unsigned W) {
2434 return V & -(1 << W);
2435 };
2436
2437 int64_t Over0 = OverflowBits(C, Width);
2438
2439 auto IsZeroOrOverflow = [&] (int X) {
2440 int64_t ValueAtX = A*X*X + B*X + C;
2441 int64_t OverX = OverflowBits(ValueAtX, Width);
2442 return (ValueAtX & Mask) == 0 || OverX != Over0;
2443 };
2444
2445 auto EquationToString = [&] (const char *X_str) {
Krzysztof Parzyszekdb3e5442018-08-02 20:45:06 +00002446 return (Twine(A) + Twine(X_str) + Twine("^2 + ") + Twine(B) +
2447 Twine(X_str) + Twine(" + ") + Twine(C) + Twine(", bitwidth: ") +
2448 Twine(Width)).str();
Krzysztof Parzyszek90f32492018-08-02 19:13:35 +00002449 };
2450
2451 auto IsSolution = [&] (const char *X_str, int X) {
2452 if (IsZeroOrOverflow(X))
2453 return ::testing::AssertionSuccess()
2454 << X << " is a solution of " << EquationToString(X_str);
2455 return ::testing::AssertionFailure()
2456 << X << " is not an expected solution of "
2457 << EquationToString(X_str);
2458 };
2459
2460 auto IsNotSolution = [&] (const char *X_str, int X) {
2461 if (!IsZeroOrOverflow(X))
2462 return ::testing::AssertionSuccess()
2463 << X << " is not a solution of " << EquationToString(X_str);
2464 return ::testing::AssertionFailure()
2465 << X << " is an unexpected solution of "
2466 << EquationToString(X_str);
2467 };
2468
2469 // This is the important part: make sure that there is no solution that
2470 // is less than the calculated one.
2471 if (Solution > 0) {
2472 for (int X = 1; X < Solution-1; ++X)
2473 EXPECT_PRED_FORMAT1(IsNotSolution, X);
2474 }
2475
2476 // Verify that the calculated solution is indeed a solution.
2477 EXPECT_PRED_FORMAT1(IsSolution, Solution);
2478 };
2479
2480 // Generate all possible quadratic equations with Width-bit wide integer
2481 // coefficients, get the solution from SolveQuadraticEquationWrap, and
2482 // verify that the solution is correct.
2483 auto Iterate = [&] (unsigned Width) {
2484 assert(1 < Width && Width < 32);
2485 int Low = -(1 << (Width-1));
2486 int High = (1 << (Width-1));
2487
2488 for (int A = Low; A != High; ++A) {
2489 if (A == 0)
2490 continue;
2491 for (int B = Low; B != High; ++B) {
2492 for (int C = Low; C != High; ++C) {
2493 Optional<APInt> S = APIntOps::SolveQuadraticEquationWrap(
2494 APInt(Width, A), APInt(Width, B),
2495 APInt(Width, C), Width);
2496 if (S.hasValue())
2497 Validate(A, B, C, Width, S->getSExtValue());
2498 }
2499 }
2500 }
2501 };
2502
2503 // Test all widths in [2..6].
2504 for (unsigned i = 2; i <= 6; ++i)
2505 Iterate(i);
2506}
2507
Craig Topper7abfbdf2017-04-17 18:44:27 +00002508} // end anonymous namespace