xref: /aosp_15_r20/external/abseil-cpp/absl/random/bernoulli_distribution_test.cc (revision 9356374a3709195abf420251b3e825997ff56c0f)
1*9356374aSAndroid Build Coastguard Worker // Copyright 2017 The Abseil Authors.
2*9356374aSAndroid Build Coastguard Worker //
3*9356374aSAndroid Build Coastguard Worker // Licensed under the Apache License, Version 2.0 (the "License");
4*9356374aSAndroid Build Coastguard Worker // you may not use this file except in compliance with the License.
5*9356374aSAndroid Build Coastguard Worker // You may obtain a copy of the License at
6*9356374aSAndroid Build Coastguard Worker //
7*9356374aSAndroid Build Coastguard Worker //      https://www.apache.org/licenses/LICENSE-2.0
8*9356374aSAndroid Build Coastguard Worker //
9*9356374aSAndroid Build Coastguard Worker // Unless required by applicable law or agreed to in writing, software
10*9356374aSAndroid Build Coastguard Worker // distributed under the License is distributed on an "AS IS" BASIS,
11*9356374aSAndroid Build Coastguard Worker // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12*9356374aSAndroid Build Coastguard Worker // See the License for the specific language governing permissions and
13*9356374aSAndroid Build Coastguard Worker // limitations under the License.
14*9356374aSAndroid Build Coastguard Worker 
15*9356374aSAndroid Build Coastguard Worker #include "absl/random/bernoulli_distribution.h"
16*9356374aSAndroid Build Coastguard Worker 
17*9356374aSAndroid Build Coastguard Worker #include <cmath>
18*9356374aSAndroid Build Coastguard Worker #include <cstddef>
19*9356374aSAndroid Build Coastguard Worker #include <random>
20*9356374aSAndroid Build Coastguard Worker #include <sstream>
21*9356374aSAndroid Build Coastguard Worker #include <utility>
22*9356374aSAndroid Build Coastguard Worker 
23*9356374aSAndroid Build Coastguard Worker #include "gtest/gtest.h"
24*9356374aSAndroid Build Coastguard Worker #include "absl/random/internal/pcg_engine.h"
25*9356374aSAndroid Build Coastguard Worker #include "absl/random/internal/sequence_urbg.h"
26*9356374aSAndroid Build Coastguard Worker #include "absl/random/random.h"
27*9356374aSAndroid Build Coastguard Worker 
28*9356374aSAndroid Build Coastguard Worker namespace {
29*9356374aSAndroid Build Coastguard Worker 
30*9356374aSAndroid Build Coastguard Worker class BernoulliTest : public testing::TestWithParam<std::pair<double, size_t>> {
31*9356374aSAndroid Build Coastguard Worker };
32*9356374aSAndroid Build Coastguard Worker 
TEST_P(BernoulliTest,Serialize)33*9356374aSAndroid Build Coastguard Worker TEST_P(BernoulliTest, Serialize) {
34*9356374aSAndroid Build Coastguard Worker   const double d = GetParam().first;
35*9356374aSAndroid Build Coastguard Worker   absl::bernoulli_distribution before(d);
36*9356374aSAndroid Build Coastguard Worker 
37*9356374aSAndroid Build Coastguard Worker   {
38*9356374aSAndroid Build Coastguard Worker     absl::bernoulli_distribution via_param{
39*9356374aSAndroid Build Coastguard Worker         absl::bernoulli_distribution::param_type(d)};
40*9356374aSAndroid Build Coastguard Worker     EXPECT_EQ(via_param, before);
41*9356374aSAndroid Build Coastguard Worker   }
42*9356374aSAndroid Build Coastguard Worker 
43*9356374aSAndroid Build Coastguard Worker   std::stringstream ss;
44*9356374aSAndroid Build Coastguard Worker   ss << before;
45*9356374aSAndroid Build Coastguard Worker   absl::bernoulli_distribution after(0.6789);
46*9356374aSAndroid Build Coastguard Worker 
47*9356374aSAndroid Build Coastguard Worker   EXPECT_NE(before.p(), after.p());
48*9356374aSAndroid Build Coastguard Worker   EXPECT_NE(before.param(), after.param());
49*9356374aSAndroid Build Coastguard Worker   EXPECT_NE(before, after);
50*9356374aSAndroid Build Coastguard Worker 
51*9356374aSAndroid Build Coastguard Worker   ss >> after;
52*9356374aSAndroid Build Coastguard Worker 
53*9356374aSAndroid Build Coastguard Worker   EXPECT_EQ(before.p(), after.p());
54*9356374aSAndroid Build Coastguard Worker   EXPECT_EQ(before.param(), after.param());
55*9356374aSAndroid Build Coastguard Worker   EXPECT_EQ(before, after);
56*9356374aSAndroid Build Coastguard Worker }
57*9356374aSAndroid Build Coastguard Worker 
TEST_P(BernoulliTest,Accuracy)58*9356374aSAndroid Build Coastguard Worker TEST_P(BernoulliTest, Accuracy) {
59*9356374aSAndroid Build Coastguard Worker   // Sadly, the claim to fame for this implementation is precise accuracy, which
60*9356374aSAndroid Build Coastguard Worker   // is very, very hard to measure, the improvements come as trials approach the
61*9356374aSAndroid Build Coastguard Worker   // limit of double accuracy; thus the outcome differs from the
62*9356374aSAndroid Build Coastguard Worker   // std::bernoulli_distribution with a probability of approximately 1 in 2^-53.
63*9356374aSAndroid Build Coastguard Worker   const std::pair<double, size_t> para = GetParam();
64*9356374aSAndroid Build Coastguard Worker   size_t trials = para.second;
65*9356374aSAndroid Build Coastguard Worker   double p = para.first;
66*9356374aSAndroid Build Coastguard Worker 
67*9356374aSAndroid Build Coastguard Worker   // We use a fixed bit generator for distribution accuracy tests.  This allows
68*9356374aSAndroid Build Coastguard Worker   // these tests to be deterministic, while still testing the qualify of the
69*9356374aSAndroid Build Coastguard Worker   // implementation.
70*9356374aSAndroid Build Coastguard Worker   absl::random_internal::pcg64_2018_engine rng(0x2B7E151628AED2A6);
71*9356374aSAndroid Build Coastguard Worker 
72*9356374aSAndroid Build Coastguard Worker   size_t yes = 0;
73*9356374aSAndroid Build Coastguard Worker   absl::bernoulli_distribution dist(p);
74*9356374aSAndroid Build Coastguard Worker   for (size_t i = 0; i < trials; ++i) {
75*9356374aSAndroid Build Coastguard Worker     if (dist(rng)) yes++;
76*9356374aSAndroid Build Coastguard Worker   }
77*9356374aSAndroid Build Coastguard Worker 
78*9356374aSAndroid Build Coastguard Worker   // Compute the distribution parameters for a binomial test, using a normal
79*9356374aSAndroid Build Coastguard Worker   // approximation for the confidence interval, as there are a sufficiently
80*9356374aSAndroid Build Coastguard Worker   // large number of trials that the central limit theorem applies.
81*9356374aSAndroid Build Coastguard Worker   const double stddev_p = std::sqrt((p * (1.0 - p)) / trials);
82*9356374aSAndroid Build Coastguard Worker   const double expected = trials * p;
83*9356374aSAndroid Build Coastguard Worker   const double stddev = trials * stddev_p;
84*9356374aSAndroid Build Coastguard Worker 
85*9356374aSAndroid Build Coastguard Worker   // 5 sigma, approved by Richard Feynman
86*9356374aSAndroid Build Coastguard Worker   EXPECT_NEAR(yes, expected, 5 * stddev)
87*9356374aSAndroid Build Coastguard Worker       << "@" << p << ", "
88*9356374aSAndroid Build Coastguard Worker       << std::abs(static_cast<double>(yes) - expected) / stddev << " stddev";
89*9356374aSAndroid Build Coastguard Worker }
90*9356374aSAndroid Build Coastguard Worker 
91*9356374aSAndroid Build Coastguard Worker // There must be many more trials to make the mean approximately normal for `p`
92*9356374aSAndroid Build Coastguard Worker // closes to 0 or 1.
93*9356374aSAndroid Build Coastguard Worker INSTANTIATE_TEST_SUITE_P(
94*9356374aSAndroid Build Coastguard Worker     All, BernoulliTest,
95*9356374aSAndroid Build Coastguard Worker     ::testing::Values(
96*9356374aSAndroid Build Coastguard Worker         // Typical values.
97*9356374aSAndroid Build Coastguard Worker         std::make_pair(0, 30000), std::make_pair(1e-3, 30000000),
98*9356374aSAndroid Build Coastguard Worker         std::make_pair(0.1, 3000000), std::make_pair(0.5, 3000000),
99*9356374aSAndroid Build Coastguard Worker         std::make_pair(0.9, 30000000), std::make_pair(0.999, 30000000),
100*9356374aSAndroid Build Coastguard Worker         std::make_pair(1, 30000),
101*9356374aSAndroid Build Coastguard Worker         // Boundary cases.
102*9356374aSAndroid Build Coastguard Worker         std::make_pair(std::nextafter(1.0, 0.0), 1),  // ~1 - epsilon
103*9356374aSAndroid Build Coastguard Worker         std::make_pair(std::numeric_limits<double>::epsilon(), 1),
104*9356374aSAndroid Build Coastguard Worker         std::make_pair(std::nextafter(std::numeric_limits<double>::min(),
105*9356374aSAndroid Build Coastguard Worker                                       1.0),  // min + epsilon
106*9356374aSAndroid Build Coastguard Worker                        1),
107*9356374aSAndroid Build Coastguard Worker         std::make_pair(std::numeric_limits<double>::min(),  // smallest normal
108*9356374aSAndroid Build Coastguard Worker                        1),
109*9356374aSAndroid Build Coastguard Worker         std::make_pair(
110*9356374aSAndroid Build Coastguard Worker             std::numeric_limits<double>::denorm_min(),  // smallest denorm
111*9356374aSAndroid Build Coastguard Worker             1),
112*9356374aSAndroid Build Coastguard Worker         std::make_pair(std::numeric_limits<double>::min() / 2, 1),  // denorm
113*9356374aSAndroid Build Coastguard Worker         std::make_pair(std::nextafter(std::numeric_limits<double>::min(),
114*9356374aSAndroid Build Coastguard Worker                                       0.0),  // denorm_max
115*9356374aSAndroid Build Coastguard Worker                        1)));
116*9356374aSAndroid Build Coastguard Worker 
117*9356374aSAndroid Build Coastguard Worker // NOTE: absl::bernoulli_distribution is not guaranteed to be stable.
TEST(BernoulliTest,StabilityTest)118*9356374aSAndroid Build Coastguard Worker TEST(BernoulliTest, StabilityTest) {
119*9356374aSAndroid Build Coastguard Worker   // absl::bernoulli_distribution stability relies on FastUniformBits and
120*9356374aSAndroid Build Coastguard Worker   // integer arithmetic.
121*9356374aSAndroid Build Coastguard Worker   absl::random_internal::sequence_urbg urbg({
122*9356374aSAndroid Build Coastguard Worker       0x0003eb76f6f7f755ull, 0xFFCEA50FDB2F953Bull, 0xC332DDEFBE6C5AA5ull,
123*9356374aSAndroid Build Coastguard Worker       0x6558218568AB9702ull, 0x2AEF7DAD5B6E2F84ull, 0x1521B62829076170ull,
124*9356374aSAndroid Build Coastguard Worker       0xECDD4775619F1510ull, 0x13CCA830EB61BD96ull, 0x0334FE1EAA0363CFull,
125*9356374aSAndroid Build Coastguard Worker       0xB5735C904C70A239ull, 0xD59E9E0BCBAADE14ull, 0xEECC86BC60622CA7ull,
126*9356374aSAndroid Build Coastguard Worker       0x4864f22c059bf29eull, 0x247856d8b862665cull, 0xe46e86e9a1337e10ull,
127*9356374aSAndroid Build Coastguard Worker       0xd8c8541f3519b133ull, 0xe75b5162c567b9e4ull, 0xf732e5ded7009c5bull,
128*9356374aSAndroid Build Coastguard Worker       0xb170b98353121eacull, 0x1ec2e8986d2362caull, 0x814c8e35fe9a961aull,
129*9356374aSAndroid Build Coastguard Worker       0x0c3cd59c9b638a02ull, 0xcb3bb6478a07715cull, 0x1224e62c978bbc7full,
130*9356374aSAndroid Build Coastguard Worker       0x671ef2cb04e81f6eull, 0x3c1cbd811eaf1808ull, 0x1bbc23cfa8fac721ull,
131*9356374aSAndroid Build Coastguard Worker       0xa4c2cda65e596a51ull, 0xb77216fad37adf91ull, 0x836d794457c08849ull,
132*9356374aSAndroid Build Coastguard Worker       0xe083df03475f49d7ull, 0xbc9feb512e6b0d6cull, 0xb12d74fdd718c8c5ull,
133*9356374aSAndroid Build Coastguard Worker       0x12ff09653bfbe4caull, 0x8dd03a105bc4ee7eull, 0x5738341045ba0d85ull,
134*9356374aSAndroid Build Coastguard Worker       0xe3fd722dc65ad09eull, 0x5a14fd21ea2a5705ull, 0x14e6ea4d6edb0c73ull,
135*9356374aSAndroid Build Coastguard Worker       0x275b0dc7e0a18acfull, 0x36cebe0d2653682eull, 0x0361e9b23861596bull,
136*9356374aSAndroid Build Coastguard Worker   });
137*9356374aSAndroid Build Coastguard Worker 
138*9356374aSAndroid Build Coastguard Worker   // Generate a string of '0' and '1' for the distribution output.
139*9356374aSAndroid Build Coastguard Worker   auto generate = [&urbg](absl::bernoulli_distribution& dist) {
140*9356374aSAndroid Build Coastguard Worker     std::string output;
141*9356374aSAndroid Build Coastguard Worker     output.reserve(36);
142*9356374aSAndroid Build Coastguard Worker     urbg.reset();
143*9356374aSAndroid Build Coastguard Worker     for (int i = 0; i < 35; i++) {
144*9356374aSAndroid Build Coastguard Worker       output.append(dist(urbg) ? "1" : "0");
145*9356374aSAndroid Build Coastguard Worker     }
146*9356374aSAndroid Build Coastguard Worker     return output;
147*9356374aSAndroid Build Coastguard Worker   };
148*9356374aSAndroid Build Coastguard Worker 
149*9356374aSAndroid Build Coastguard Worker   const double kP = 0.0331289862362;
150*9356374aSAndroid Build Coastguard Worker   {
151*9356374aSAndroid Build Coastguard Worker     absl::bernoulli_distribution dist(kP);
152*9356374aSAndroid Build Coastguard Worker     auto v = generate(dist);
153*9356374aSAndroid Build Coastguard Worker     EXPECT_EQ(35, urbg.invocations());
154*9356374aSAndroid Build Coastguard Worker     EXPECT_EQ(v, "00000000000010000000000010000000000") << dist;
155*9356374aSAndroid Build Coastguard Worker   }
156*9356374aSAndroid Build Coastguard Worker   {
157*9356374aSAndroid Build Coastguard Worker     absl::bernoulli_distribution dist(kP * 10.0);
158*9356374aSAndroid Build Coastguard Worker     auto v = generate(dist);
159*9356374aSAndroid Build Coastguard Worker     EXPECT_EQ(35, urbg.invocations());
160*9356374aSAndroid Build Coastguard Worker     EXPECT_EQ(v, "00000100010010010010000011000011010") << dist;
161*9356374aSAndroid Build Coastguard Worker   }
162*9356374aSAndroid Build Coastguard Worker   {
163*9356374aSAndroid Build Coastguard Worker     absl::bernoulli_distribution dist(kP * 20.0);
164*9356374aSAndroid Build Coastguard Worker     auto v = generate(dist);
165*9356374aSAndroid Build Coastguard Worker     EXPECT_EQ(35, urbg.invocations());
166*9356374aSAndroid Build Coastguard Worker     EXPECT_EQ(v, "00011110010110110011011111110111011") << dist;
167*9356374aSAndroid Build Coastguard Worker   }
168*9356374aSAndroid Build Coastguard Worker   {
169*9356374aSAndroid Build Coastguard Worker     absl::bernoulli_distribution dist(1.0 - kP);
170*9356374aSAndroid Build Coastguard Worker     auto v = generate(dist);
171*9356374aSAndroid Build Coastguard Worker     EXPECT_EQ(35, urbg.invocations());
172*9356374aSAndroid Build Coastguard Worker     EXPECT_EQ(v, "11111111111111111111011111111111111") << dist;
173*9356374aSAndroid Build Coastguard Worker   }
174*9356374aSAndroid Build Coastguard Worker }
175*9356374aSAndroid Build Coastguard Worker 
TEST(BernoulliTest,StabilityTest2)176*9356374aSAndroid Build Coastguard Worker TEST(BernoulliTest, StabilityTest2) {
177*9356374aSAndroid Build Coastguard Worker   absl::random_internal::sequence_urbg urbg(
178*9356374aSAndroid Build Coastguard Worker       {0x0003eb76f6f7f755ull, 0xFFCEA50FDB2F953Bull, 0xC332DDEFBE6C5AA5ull,
179*9356374aSAndroid Build Coastguard Worker        0x6558218568AB9702ull, 0x2AEF7DAD5B6E2F84ull, 0x1521B62829076170ull,
180*9356374aSAndroid Build Coastguard Worker        0xECDD4775619F1510ull, 0x13CCA830EB61BD96ull, 0x0334FE1EAA0363CFull,
181*9356374aSAndroid Build Coastguard Worker        0xB5735C904C70A239ull, 0xD59E9E0BCBAADE14ull, 0xEECC86BC60622CA7ull});
182*9356374aSAndroid Build Coastguard Worker 
183*9356374aSAndroid Build Coastguard Worker   // Generate a string of '0' and '1' for the distribution output.
184*9356374aSAndroid Build Coastguard Worker   auto generate = [&urbg](absl::bernoulli_distribution& dist) {
185*9356374aSAndroid Build Coastguard Worker     std::string output;
186*9356374aSAndroid Build Coastguard Worker     output.reserve(13);
187*9356374aSAndroid Build Coastguard Worker     urbg.reset();
188*9356374aSAndroid Build Coastguard Worker     for (int i = 0; i < 12; i++) {
189*9356374aSAndroid Build Coastguard Worker       output.append(dist(urbg) ? "1" : "0");
190*9356374aSAndroid Build Coastguard Worker     }
191*9356374aSAndroid Build Coastguard Worker     return output;
192*9356374aSAndroid Build Coastguard Worker   };
193*9356374aSAndroid Build Coastguard Worker 
194*9356374aSAndroid Build Coastguard Worker   constexpr double b0 = 1.0 / 13.0 / 0.2;
195*9356374aSAndroid Build Coastguard Worker   constexpr double b1 = 2.0 / 13.0 / 0.2;
196*9356374aSAndroid Build Coastguard Worker   constexpr double b3 = (5.0 / 13.0 / 0.2) - ((1 - b0) + (1 - b1) + (1 - b1));
197*9356374aSAndroid Build Coastguard Worker   {
198*9356374aSAndroid Build Coastguard Worker     absl::bernoulli_distribution dist(b0);
199*9356374aSAndroid Build Coastguard Worker     auto v = generate(dist);
200*9356374aSAndroid Build Coastguard Worker     EXPECT_EQ(12, urbg.invocations());
201*9356374aSAndroid Build Coastguard Worker     EXPECT_EQ(v, "000011100101") << dist;
202*9356374aSAndroid Build Coastguard Worker   }
203*9356374aSAndroid Build Coastguard Worker   {
204*9356374aSAndroid Build Coastguard Worker     absl::bernoulli_distribution dist(b1);
205*9356374aSAndroid Build Coastguard Worker     auto v = generate(dist);
206*9356374aSAndroid Build Coastguard Worker     EXPECT_EQ(12, urbg.invocations());
207*9356374aSAndroid Build Coastguard Worker     EXPECT_EQ(v, "001111101101") << dist;
208*9356374aSAndroid Build Coastguard Worker   }
209*9356374aSAndroid Build Coastguard Worker   {
210*9356374aSAndroid Build Coastguard Worker     absl::bernoulli_distribution dist(b3);
211*9356374aSAndroid Build Coastguard Worker     auto v = generate(dist);
212*9356374aSAndroid Build Coastguard Worker     EXPECT_EQ(12, urbg.invocations());
213*9356374aSAndroid Build Coastguard Worker     EXPECT_EQ(v, "001111101111") << dist;
214*9356374aSAndroid Build Coastguard Worker   }
215*9356374aSAndroid Build Coastguard Worker }
216*9356374aSAndroid Build Coastguard Worker 
217*9356374aSAndroid Build Coastguard Worker }  // namespace
218