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mistergc2e75482017-09-19 16:54:40 -04001// Copyright 2017 The Abseil Authors.
2//
3// Licensed under the Apache License, Version 2.0 (the "License");
4// you may not use this file except in compliance with the License.
5// You may obtain a copy of the License at
6//
7// http://www.apache.org/licenses/LICENSE-2.0
8//
9// Unless required by applicable law or agreed to in writing, software
10// distributed under the License is distributed on an "AS IS" BASIS,
11// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12// See the License for the specific language governing permissions and
13// limitations under the License.
14
15#include "absl/numeric/int128.h"
16
17#include <algorithm>
18#include <limits>
19#include <random>
mistergc2e75482017-09-19 16:54:40 -040020#include <type_traits>
21#include <utility>
22#include <vector>
23
24#include "gtest/gtest.h"
25#include "absl/base/internal/cycleclock.h"
Abseil Teamf21d1872018-10-02 12:09:18 -070026#include "absl/hash/hash_testing.h"
mistergc2e75482017-09-19 16:54:40 -040027#include "absl/meta/type_traits.h"
28
29#if defined(_MSC_VER) && _MSC_VER == 1900
30// Disable "unary minus operator applied to unsigned type" warnings in Microsoft
31// Visual C++ 14 (2015).
32#pragma warning(disable:4146)
33#endif
34
35namespace {
36
37template <typename T>
38class Uint128IntegerTraitsTest : public ::testing::Test {};
39typedef ::testing::Types<bool, char, signed char, unsigned char, char16_t,
40 char32_t, wchar_t,
41 short, // NOLINT(runtime/int)
42 unsigned short, // NOLINT(runtime/int)
43 int, unsigned int,
44 long, // NOLINT(runtime/int)
45 unsigned long, // NOLINT(runtime/int)
46 long long, // NOLINT(runtime/int)
47 unsigned long long> // NOLINT(runtime/int)
48 IntegerTypes;
49
50template <typename T>
51class Uint128FloatTraitsTest : public ::testing::Test {};
52typedef ::testing::Types<float, double, long double> FloatingPointTypes;
53
54TYPED_TEST_CASE(Uint128IntegerTraitsTest, IntegerTypes);
55
56TYPED_TEST(Uint128IntegerTraitsTest, ConstructAssignTest) {
57 static_assert(std::is_constructible<absl::uint128, TypeParam>::value,
58 "absl::uint128 must be constructible from TypeParam");
59 static_assert(std::is_assignable<absl::uint128&, TypeParam>::value,
60 "absl::uint128 must be assignable from TypeParam");
61 static_assert(!std::is_assignable<TypeParam&, absl::uint128>::value,
62 "TypeParam must not be assignable from absl::uint128");
63}
64
65TYPED_TEST_CASE(Uint128FloatTraitsTest, FloatingPointTypes);
66
67TYPED_TEST(Uint128FloatTraitsTest, ConstructAssignTest) {
68 static_assert(std::is_constructible<absl::uint128, TypeParam>::value,
69 "absl::uint128 must be constructible from TypeParam");
70 static_assert(!std::is_assignable<absl::uint128&, TypeParam>::value,
71 "absl::uint128 must not be assignable from TypeParam");
72 static_assert(!std::is_assignable<TypeParam&, absl::uint128>::value,
73 "TypeParam must not be assignable from absl::uint128");
74}
75
76#ifdef ABSL_HAVE_INTRINSIC_INT128
77// These type traits done separately as TYPED_TEST requires typeinfo, and not
78// all platforms have this for __int128 even though they define the type.
79TEST(Uint128, IntrinsicTypeTraitsTest) {
80 static_assert(std::is_constructible<absl::uint128, __int128>::value,
81 "absl::uint128 must be constructible from __int128");
82 static_assert(std::is_assignable<absl::uint128&, __int128>::value,
83 "absl::uint128 must be assignable from __int128");
84 static_assert(!std::is_assignable<__int128&, absl::uint128>::value,
85 "__int128 must not be assignable from absl::uint128");
86
87 static_assert(std::is_constructible<absl::uint128, unsigned __int128>::value,
88 "absl::uint128 must be constructible from unsigned __int128");
89 static_assert(std::is_assignable<absl::uint128&, unsigned __int128>::value,
90 "absl::uint128 must be assignable from unsigned __int128");
91 static_assert(!std::is_assignable<unsigned __int128&, absl::uint128>::value,
92 "unsigned __int128 must not be assignable from absl::uint128");
93}
94#endif // ABSL_HAVE_INTRINSIC_INT128
95
Abseil Team99b92c82017-11-14 13:17:47 -080096TEST(Uint128, TrivialTraitsTest) {
97 static_assert(absl::is_trivially_default_constructible<absl::uint128>::value,
98 "");
99 static_assert(absl::is_trivially_copy_constructible<absl::uint128>::value,
100 "");
101 static_assert(absl::is_trivially_copy_assignable<absl::uint128>::value, "");
102 static_assert(std::is_trivially_destructible<absl::uint128>::value, "");
103}
104
mistergc2e75482017-09-19 16:54:40 -0400105TEST(Uint128, AllTests) {
106 absl::uint128 zero = 0;
107 absl::uint128 one = 1;
108 absl::uint128 one_2arg = absl::MakeUint128(0, 1);
109 absl::uint128 two = 2;
110 absl::uint128 three = 3;
111 absl::uint128 big = absl::MakeUint128(2000, 2);
112 absl::uint128 big_minus_one = absl::MakeUint128(2000, 1);
113 absl::uint128 bigger = absl::MakeUint128(2001, 1);
Abseil Teambe40fdf2018-01-12 07:45:05 -0800114 absl::uint128 biggest = absl::Uint128Max();
mistergc2e75482017-09-19 16:54:40 -0400115 absl::uint128 high_low = absl::MakeUint128(1, 0);
116 absl::uint128 low_high =
117 absl::MakeUint128(0, std::numeric_limits<uint64_t>::max());
118 EXPECT_LT(one, two);
119 EXPECT_GT(two, one);
120 EXPECT_LT(one, big);
121 EXPECT_LT(one, big);
122 EXPECT_EQ(one, one_2arg);
123 EXPECT_NE(one, two);
124 EXPECT_GT(big, one);
125 EXPECT_GE(big, two);
126 EXPECT_GE(big, big_minus_one);
127 EXPECT_GT(big, big_minus_one);
128 EXPECT_LT(big_minus_one, big);
129 EXPECT_LE(big_minus_one, big);
130 EXPECT_NE(big_minus_one, big);
131 EXPECT_LT(big, biggest);
132 EXPECT_LE(big, biggest);
133 EXPECT_GT(biggest, big);
134 EXPECT_GE(biggest, big);
135 EXPECT_EQ(big, ~~big);
136 EXPECT_EQ(one, one | one);
137 EXPECT_EQ(big, big | big);
138 EXPECT_EQ(one, one | zero);
139 EXPECT_EQ(one, one & one);
140 EXPECT_EQ(big, big & big);
141 EXPECT_EQ(zero, one & zero);
142 EXPECT_EQ(zero, big & ~big);
143 EXPECT_EQ(zero, one ^ one);
144 EXPECT_EQ(zero, big ^ big);
145 EXPECT_EQ(one, one ^ zero);
146
147 // Shift operators.
148 EXPECT_EQ(big, big << 0);
149 EXPECT_EQ(big, big >> 0);
150 EXPECT_GT(big << 1, big);
151 EXPECT_LT(big >> 1, big);
152 EXPECT_EQ(big, (big << 10) >> 10);
153 EXPECT_EQ(big, (big >> 1) << 1);
154 EXPECT_EQ(one, (one << 80) >> 80);
155 EXPECT_EQ(zero, (one >> 80) << 80);
156
157 // Shift assignments.
158 absl::uint128 big_copy = big;
159 EXPECT_EQ(big << 0, big_copy <<= 0);
160 big_copy = big;
161 EXPECT_EQ(big >> 0, big_copy >>= 0);
162 big_copy = big;
163 EXPECT_EQ(big << 1, big_copy <<= 1);
164 big_copy = big;
165 EXPECT_EQ(big >> 1, big_copy >>= 1);
166 big_copy = big;
167 EXPECT_EQ(big << 10, big_copy <<= 10);
168 big_copy = big;
169 EXPECT_EQ(big >> 10, big_copy >>= 10);
170 big_copy = big;
171 EXPECT_EQ(big << 64, big_copy <<= 64);
172 big_copy = big;
173 EXPECT_EQ(big >> 64, big_copy >>= 64);
174 big_copy = big;
175 EXPECT_EQ(big << 73, big_copy <<= 73);
176 big_copy = big;
177 EXPECT_EQ(big >> 73, big_copy >>= 73);
178
Abseil Teamff704562017-12-20 12:34:46 -0800179 EXPECT_EQ(absl::Uint128High64(biggest), std::numeric_limits<uint64_t>::max());
180 EXPECT_EQ(absl::Uint128Low64(biggest), std::numeric_limits<uint64_t>::max());
mistergc2e75482017-09-19 16:54:40 -0400181 EXPECT_EQ(zero + one, one);
182 EXPECT_EQ(one + one, two);
183 EXPECT_EQ(big_minus_one + one, big);
184 EXPECT_EQ(one - one, zero);
185 EXPECT_EQ(one - zero, one);
186 EXPECT_EQ(zero - one, biggest);
187 EXPECT_EQ(big - big, zero);
188 EXPECT_EQ(big - one, big_minus_one);
189 EXPECT_EQ(big + std::numeric_limits<uint64_t>::max(), bigger);
190 EXPECT_EQ(biggest + 1, zero);
191 EXPECT_EQ(zero - 1, biggest);
192 EXPECT_EQ(high_low - one, low_high);
193 EXPECT_EQ(low_high + one, high_low);
Abseil Teamff704562017-12-20 12:34:46 -0800194 EXPECT_EQ(absl::Uint128High64((absl::uint128(1) << 64) - 1), 0);
195 EXPECT_EQ(absl::Uint128Low64((absl::uint128(1) << 64) - 1),
mistergc2e75482017-09-19 16:54:40 -0400196 std::numeric_limits<uint64_t>::max());
197 EXPECT_TRUE(!!one);
198 EXPECT_TRUE(!!high_low);
199 EXPECT_FALSE(!!zero);
200 EXPECT_FALSE(!one);
201 EXPECT_FALSE(!high_low);
202 EXPECT_TRUE(!zero);
203 EXPECT_TRUE(zero == 0); // NOLINT(readability/check)
204 EXPECT_FALSE(zero != 0); // NOLINT(readability/check)
205 EXPECT_FALSE(one == 0); // NOLINT(readability/check)
206 EXPECT_TRUE(one != 0); // NOLINT(readability/check)
207 EXPECT_FALSE(high_low == 0); // NOLINT(readability/check)
208 EXPECT_TRUE(high_low != 0); // NOLINT(readability/check)
209
210 absl::uint128 test = zero;
211 EXPECT_EQ(++test, one);
212 EXPECT_EQ(test, one);
213 EXPECT_EQ(test++, one);
214 EXPECT_EQ(test, two);
215 EXPECT_EQ(test -= 2, zero);
216 EXPECT_EQ(test, zero);
217 EXPECT_EQ(test += 2, two);
218 EXPECT_EQ(test, two);
219 EXPECT_EQ(--test, one);
220 EXPECT_EQ(test, one);
221 EXPECT_EQ(test--, one);
222 EXPECT_EQ(test, zero);
223 EXPECT_EQ(test |= three, three);
224 EXPECT_EQ(test &= one, one);
225 EXPECT_EQ(test ^= three, two);
226 EXPECT_EQ(test >>= 1, one);
227 EXPECT_EQ(test <<= 1, two);
228
229 EXPECT_EQ(big, -(-big));
230 EXPECT_EQ(two, -((-one) - 1));
Abseil Teambe40fdf2018-01-12 07:45:05 -0800231 EXPECT_EQ(absl::Uint128Max(), -one);
mistergc2e75482017-09-19 16:54:40 -0400232 EXPECT_EQ(zero, -zero);
Abseil Teambe40fdf2018-01-12 07:45:05 -0800233
234 EXPECT_EQ(absl::Uint128Max(), absl::kuint128max);
mistergc2e75482017-09-19 16:54:40 -0400235}
236
237TEST(Uint128, ConversionTests) {
238 EXPECT_TRUE(absl::MakeUint128(1, 0));
239
240#ifdef ABSL_HAVE_INTRINSIC_INT128
241 unsigned __int128 intrinsic =
242 (static_cast<unsigned __int128>(0x3a5b76c209de76f6) << 64) +
243 0x1f25e1d63a2b46c5;
244 absl::uint128 custom =
245 absl::MakeUint128(0x3a5b76c209de76f6, 0x1f25e1d63a2b46c5);
246
247 EXPECT_EQ(custom, absl::uint128(intrinsic));
248 EXPECT_EQ(custom, absl::uint128(static_cast<__int128>(intrinsic)));
249 EXPECT_EQ(intrinsic, static_cast<unsigned __int128>(custom));
250 EXPECT_EQ(intrinsic, static_cast<__int128>(custom));
251#endif // ABSL_HAVE_INTRINSIC_INT128
252
253 // verify that an integer greater than 2**64 that can be stored precisely
254 // inside a double is converted to a absl::uint128 without loss of
255 // information.
256 double precise_double = 0x530e * std::pow(2.0, 64.0) + 0xda74000000000000;
257 absl::uint128 from_precise_double(precise_double);
258 absl::uint128 from_precise_ints =
259 absl::MakeUint128(0x530e, 0xda74000000000000);
260 EXPECT_EQ(from_precise_double, from_precise_ints);
261 EXPECT_DOUBLE_EQ(static_cast<double>(from_precise_ints), precise_double);
262
263 double approx_double = 0xffffeeeeddddcccc * std::pow(2.0, 64.0) +
264 0xbbbbaaaa99998888;
265 absl::uint128 from_approx_double(approx_double);
266 EXPECT_DOUBLE_EQ(static_cast<double>(from_approx_double), approx_double);
267
268 double round_to_zero = 0.7;
269 double round_to_five = 5.8;
270 double round_to_nine = 9.3;
271 EXPECT_EQ(static_cast<absl::uint128>(round_to_zero), 0);
272 EXPECT_EQ(static_cast<absl::uint128>(round_to_five), 5);
273 EXPECT_EQ(static_cast<absl::uint128>(round_to_nine), 9);
274}
275
276TEST(Uint128, OperatorAssignReturnRef) {
277 absl::uint128 v(1);
278 (v += 4) -= 3;
279 EXPECT_EQ(2, v);
280}
281
282TEST(Uint128, Multiply) {
283 absl::uint128 a, b, c;
284
285 // Zero test.
286 a = 0;
287 b = 0;
288 c = a * b;
289 EXPECT_EQ(0, c);
290
291 // Max carries.
292 a = absl::uint128(0) - 1;
293 b = absl::uint128(0) - 1;
294 c = a * b;
295 EXPECT_EQ(1, c);
296
297 // Self-operation with max carries.
298 c = absl::uint128(0) - 1;
299 c *= c;
300 EXPECT_EQ(1, c);
301
302 // 1-bit x 1-bit.
303 for (int i = 0; i < 64; ++i) {
304 for (int j = 0; j < 64; ++j) {
305 a = absl::uint128(1) << i;
306 b = absl::uint128(1) << j;
307 c = a * b;
308 EXPECT_EQ(absl::uint128(1) << (i + j), c);
309 }
310 }
311
312 // Verified with dc.
313 a = absl::MakeUint128(0xffffeeeeddddcccc, 0xbbbbaaaa99998888);
314 b = absl::MakeUint128(0x7777666655554444, 0x3333222211110000);
315 c = a * b;
316 EXPECT_EQ(absl::MakeUint128(0x530EDA741C71D4C3, 0xBF25975319080000), c);
317 EXPECT_EQ(0, c - b * a);
318 EXPECT_EQ(a*a - b*b, (a+b) * (a-b));
319
320 // Verified with dc.
321 a = absl::MakeUint128(0x0123456789abcdef, 0xfedcba9876543210);
322 b = absl::MakeUint128(0x02468ace13579bdf, 0xfdb97531eca86420);
323 c = a * b;
324 EXPECT_EQ(absl::MakeUint128(0x97a87f4f261ba3f2, 0x342d0bbf48948200), c);
325 EXPECT_EQ(0, c - b * a);
326 EXPECT_EQ(a*a - b*b, (a+b) * (a-b));
327}
328
329TEST(Uint128, AliasTests) {
330 absl::uint128 x1 = absl::MakeUint128(1, 2);
331 absl::uint128 x2 = absl::MakeUint128(2, 4);
332 x1 += x1;
333 EXPECT_EQ(x2, x1);
334
335 absl::uint128 x3 = absl::MakeUint128(1, static_cast<uint64_t>(1) << 63);
336 absl::uint128 x4 = absl::MakeUint128(3, 0);
337 x3 += x3;
338 EXPECT_EQ(x4, x3);
339}
340
341TEST(Uint128, DivideAndMod) {
342 using std::swap;
343
344 // a := q * b + r
345 absl::uint128 a, b, q, r;
346
347 // Zero test.
348 a = 0;
349 b = 123;
350 q = a / b;
351 r = a % b;
352 EXPECT_EQ(0, q);
353 EXPECT_EQ(0, r);
354
355 a = absl::MakeUint128(0x530eda741c71d4c3, 0xbf25975319080000);
356 q = absl::MakeUint128(0x4de2cab081, 0x14c34ab4676e4bab);
357 b = absl::uint128(0x1110001);
358 r = absl::uint128(0x3eb455);
359 ASSERT_EQ(a, q * b + r); // Sanity-check.
360
361 absl::uint128 result_q, result_r;
362 result_q = a / b;
363 result_r = a % b;
364 EXPECT_EQ(q, result_q);
365 EXPECT_EQ(r, result_r);
366
367 // Try the other way around.
368 swap(q, b);
369 result_q = a / b;
370 result_r = a % b;
371 EXPECT_EQ(q, result_q);
372 EXPECT_EQ(r, result_r);
373 // Restore.
374 swap(b, q);
375
376 // Dividend < divisor; result should be q:0 r:<dividend>.
377 swap(a, b);
378 result_q = a / b;
379 result_r = a % b;
380 EXPECT_EQ(0, result_q);
381 EXPECT_EQ(a, result_r);
382 // Try the other way around.
383 swap(a, q);
384 result_q = a / b;
385 result_r = a % b;
386 EXPECT_EQ(0, result_q);
387 EXPECT_EQ(a, result_r);
388 // Restore.
389 swap(q, a);
390 swap(b, a);
391
392 // Try a large remainder.
393 b = a / 2 + 1;
394 absl::uint128 expected_r =
395 absl::MakeUint128(0x29876d3a0e38ea61, 0xdf92cba98c83ffff);
396 // Sanity checks.
397 ASSERT_EQ(a / 2 - 1, expected_r);
398 ASSERT_EQ(a, b + expected_r);
399 result_q = a / b;
400 result_r = a % b;
401 EXPECT_EQ(1, result_q);
402 EXPECT_EQ(expected_r, result_r);
403}
404
405TEST(Uint128, DivideAndModRandomInputs) {
406 const int kNumIters = 1 << 18;
407 std::minstd_rand random(testing::UnitTest::GetInstance()->random_seed());
408 std::uniform_int_distribution<uint64_t> uniform_uint64;
409 for (int i = 0; i < kNumIters; ++i) {
410 const absl::uint128 a =
411 absl::MakeUint128(uniform_uint64(random), uniform_uint64(random));
412 const absl::uint128 b =
413 absl::MakeUint128(uniform_uint64(random), uniform_uint64(random));
414 if (b == 0) {
415 continue; // Avoid a div-by-zero.
416 }
417 const absl::uint128 q = a / b;
418 const absl::uint128 r = a % b;
419 ASSERT_EQ(a, b * q + r);
420 }
421}
422
423TEST(Uint128, ConstexprTest) {
424 constexpr absl::uint128 zero = absl::uint128();
425 constexpr absl::uint128 one = 1;
426 constexpr absl::uint128 minus_two = -2;
427 EXPECT_EQ(zero, absl::uint128(0));
428 EXPECT_EQ(one, absl::uint128(1));
429 EXPECT_EQ(minus_two, absl::MakeUint128(-1, -2));
430}
431
Abseil Team87a4c072018-06-25 09:18:19 -0700432TEST(Uint128, NumericLimitsTest) {
433 static_assert(std::numeric_limits<absl::uint128>::is_specialized, "");
434 static_assert(!std::numeric_limits<absl::uint128>::is_signed, "");
435 static_assert(std::numeric_limits<absl::uint128>::is_integer, "");
436 EXPECT_EQ(static_cast<int>(128 * std::log10(2)),
437 std::numeric_limits<absl::uint128>::digits10);
438 EXPECT_EQ(0, std::numeric_limits<absl::uint128>::min());
439 EXPECT_EQ(0, std::numeric_limits<absl::uint128>::lowest());
440 EXPECT_EQ(absl::Uint128Max(), std::numeric_limits<absl::uint128>::max());
441}
442
mistergc2e75482017-09-19 16:54:40 -0400443} // namespace