1fd4e5da5Sopenharmony_ci// Copyright (c) 2019 Google LLC
2fd4e5da5Sopenharmony_ci//
3fd4e5da5Sopenharmony_ci// Licensed under the Apache License, Version 2.0 (the "License");
4fd4e5da5Sopenharmony_ci// you may not use this file except in compliance with the License.
5fd4e5da5Sopenharmony_ci// You may obtain a copy of the License at
6fd4e5da5Sopenharmony_ci//
7fd4e5da5Sopenharmony_ci//     http://www.apache.org/licenses/LICENSE-2.0
8fd4e5da5Sopenharmony_ci//
9fd4e5da5Sopenharmony_ci// Unless required by applicable law or agreed to in writing, software
10fd4e5da5Sopenharmony_ci// distributed under the License is distributed on an "AS IS" BASIS,
11fd4e5da5Sopenharmony_ci// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12fd4e5da5Sopenharmony_ci// See the License for the specific language governing permissions and
13fd4e5da5Sopenharmony_ci// limitations under the License.
14fd4e5da5Sopenharmony_ci
15fd4e5da5Sopenharmony_ci#include <set>
16fd4e5da5Sopenharmony_ci
17fd4e5da5Sopenharmony_ci#include "source/fuzz/equivalence_relation.h"
18fd4e5da5Sopenharmony_ci
19fd4e5da5Sopenharmony_ci#include "gmock/gmock.h"
20fd4e5da5Sopenharmony_ci#include "gtest/gtest.h"
21fd4e5da5Sopenharmony_ci
22fd4e5da5Sopenharmony_cinamespace spvtools {
23fd4e5da5Sopenharmony_cinamespace fuzz {
24fd4e5da5Sopenharmony_cinamespace {
25fd4e5da5Sopenharmony_ci
26fd4e5da5Sopenharmony_cistruct UInt32Equals {
27fd4e5da5Sopenharmony_ci  bool operator()(const uint32_t* first, const uint32_t* second) const {
28fd4e5da5Sopenharmony_ci    return *first == *second;
29fd4e5da5Sopenharmony_ci  }
30fd4e5da5Sopenharmony_ci};
31fd4e5da5Sopenharmony_ci
32fd4e5da5Sopenharmony_cistruct UInt32Hash {
33fd4e5da5Sopenharmony_ci  size_t operator()(const uint32_t* element) const {
34fd4e5da5Sopenharmony_ci    return static_cast<size_t>(*element);
35fd4e5da5Sopenharmony_ci  }
36fd4e5da5Sopenharmony_ci};
37fd4e5da5Sopenharmony_ci
38fd4e5da5Sopenharmony_cistd::vector<uint32_t> ToUIntVector(
39fd4e5da5Sopenharmony_ci    const std::vector<const uint32_t*>& pointers) {
40fd4e5da5Sopenharmony_ci  std::vector<uint32_t> result;
41fd4e5da5Sopenharmony_ci  for (auto pointer : pointers) {
42fd4e5da5Sopenharmony_ci    result.push_back(*pointer);
43fd4e5da5Sopenharmony_ci  }
44fd4e5da5Sopenharmony_ci  return result;
45fd4e5da5Sopenharmony_ci}
46fd4e5da5Sopenharmony_ci
47fd4e5da5Sopenharmony_ciTEST(EquivalenceRelationTest, BasicTest) {
48fd4e5da5Sopenharmony_ci  EquivalenceRelation<uint32_t, UInt32Hash, UInt32Equals> relation;
49fd4e5da5Sopenharmony_ci  ASSERT_TRUE(relation.GetAllKnownValues().empty());
50fd4e5da5Sopenharmony_ci
51fd4e5da5Sopenharmony_ci  for (uint32_t element = 0; element < 100; element++) {
52fd4e5da5Sopenharmony_ci    relation.Register(element);
53fd4e5da5Sopenharmony_ci  }
54fd4e5da5Sopenharmony_ci
55fd4e5da5Sopenharmony_ci  for (uint32_t element = 2; element < 80; element += 2) {
56fd4e5da5Sopenharmony_ci    relation.MakeEquivalent(0, element);
57fd4e5da5Sopenharmony_ci    relation.MakeEquivalent(element - 1, element + 1);
58fd4e5da5Sopenharmony_ci  }
59fd4e5da5Sopenharmony_ci
60fd4e5da5Sopenharmony_ci  for (uint32_t element = 82; element < 100; element += 2) {
61fd4e5da5Sopenharmony_ci    relation.MakeEquivalent(80, element);
62fd4e5da5Sopenharmony_ci    relation.MakeEquivalent(element - 1, element + 1);
63fd4e5da5Sopenharmony_ci  }
64fd4e5da5Sopenharmony_ci
65fd4e5da5Sopenharmony_ci  relation.MakeEquivalent(78, 80);
66fd4e5da5Sopenharmony_ci
67fd4e5da5Sopenharmony_ci  std::vector<uint32_t> class1;
68fd4e5da5Sopenharmony_ci  for (uint32_t element = 0; element < 98; element += 2) {
69fd4e5da5Sopenharmony_ci    ASSERT_TRUE(relation.IsEquivalent(0, element));
70fd4e5da5Sopenharmony_ci    ASSERT_TRUE(relation.IsEquivalent(element, element + 2));
71fd4e5da5Sopenharmony_ci    class1.push_back(element);
72fd4e5da5Sopenharmony_ci  }
73fd4e5da5Sopenharmony_ci  class1.push_back(98);
74fd4e5da5Sopenharmony_ci
75fd4e5da5Sopenharmony_ci  ASSERT_THAT(ToUIntVector(relation.GetEquivalenceClass(0)),
76fd4e5da5Sopenharmony_ci              testing::WhenSorted(class1));
77fd4e5da5Sopenharmony_ci  ASSERT_THAT(ToUIntVector(relation.GetEquivalenceClass(4)),
78fd4e5da5Sopenharmony_ci              testing::WhenSorted(class1));
79fd4e5da5Sopenharmony_ci  ASSERT_THAT(ToUIntVector(relation.GetEquivalenceClass(40)),
80fd4e5da5Sopenharmony_ci              testing::WhenSorted(class1));
81fd4e5da5Sopenharmony_ci
82fd4e5da5Sopenharmony_ci  std::vector<uint32_t> class2;
83fd4e5da5Sopenharmony_ci  for (uint32_t element = 1; element < 79; element += 2) {
84fd4e5da5Sopenharmony_ci    ASSERT_TRUE(relation.IsEquivalent(1, element));
85fd4e5da5Sopenharmony_ci    ASSERT_TRUE(relation.IsEquivalent(element, element + 2));
86fd4e5da5Sopenharmony_ci    class2.push_back(element);
87fd4e5da5Sopenharmony_ci  }
88fd4e5da5Sopenharmony_ci  class2.push_back(79);
89fd4e5da5Sopenharmony_ci  ASSERT_THAT(ToUIntVector(relation.GetEquivalenceClass(1)),
90fd4e5da5Sopenharmony_ci              testing::WhenSorted(class2));
91fd4e5da5Sopenharmony_ci  ASSERT_THAT(ToUIntVector(relation.GetEquivalenceClass(11)),
92fd4e5da5Sopenharmony_ci              testing::WhenSorted(class2));
93fd4e5da5Sopenharmony_ci  ASSERT_THAT(ToUIntVector(relation.GetEquivalenceClass(31)),
94fd4e5da5Sopenharmony_ci              testing::WhenSorted(class2));
95fd4e5da5Sopenharmony_ci
96fd4e5da5Sopenharmony_ci  std::vector<uint32_t> class3;
97fd4e5da5Sopenharmony_ci  for (uint32_t element = 81; element < 99; element += 2) {
98fd4e5da5Sopenharmony_ci    ASSERT_TRUE(relation.IsEquivalent(81, element));
99fd4e5da5Sopenharmony_ci    ASSERT_TRUE(relation.IsEquivalent(element, element + 2));
100fd4e5da5Sopenharmony_ci    class3.push_back(element);
101fd4e5da5Sopenharmony_ci  }
102fd4e5da5Sopenharmony_ci  class3.push_back(99);
103fd4e5da5Sopenharmony_ci  ASSERT_THAT(ToUIntVector(relation.GetEquivalenceClass(81)),
104fd4e5da5Sopenharmony_ci              testing::WhenSorted(class3));
105fd4e5da5Sopenharmony_ci  ASSERT_THAT(ToUIntVector(relation.GetEquivalenceClass(91)),
106fd4e5da5Sopenharmony_ci              testing::WhenSorted(class3));
107fd4e5da5Sopenharmony_ci  ASSERT_THAT(ToUIntVector(relation.GetEquivalenceClass(99)),
108fd4e5da5Sopenharmony_ci              testing::WhenSorted(class3));
109fd4e5da5Sopenharmony_ci
110fd4e5da5Sopenharmony_ci  bool first = true;
111fd4e5da5Sopenharmony_ci  std::vector<const uint32_t*> previous_class;
112fd4e5da5Sopenharmony_ci  for (auto representative : relation.GetEquivalenceClassRepresentatives()) {
113fd4e5da5Sopenharmony_ci    std::vector<const uint32_t*> current_class =
114fd4e5da5Sopenharmony_ci        relation.GetEquivalenceClass(*representative);
115fd4e5da5Sopenharmony_ci    ASSERT_TRUE(std::find(current_class.begin(), current_class.end(),
116fd4e5da5Sopenharmony_ci                          representative) != current_class.end());
117fd4e5da5Sopenharmony_ci    if (!first) {
118fd4e5da5Sopenharmony_ci      ASSERT_TRUE(std::find(previous_class.begin(), previous_class.end(),
119fd4e5da5Sopenharmony_ci                            representative) == previous_class.end());
120fd4e5da5Sopenharmony_ci    }
121fd4e5da5Sopenharmony_ci    previous_class = current_class;
122fd4e5da5Sopenharmony_ci    first = false;
123fd4e5da5Sopenharmony_ci  }
124fd4e5da5Sopenharmony_ci}
125fd4e5da5Sopenharmony_ci
126fd4e5da5Sopenharmony_ciTEST(EquivalenceRelationTest, DeterministicEquivalenceClassOrder) {
127fd4e5da5Sopenharmony_ci  EquivalenceRelation<uint32_t, UInt32Hash, UInt32Equals> relation1;
128fd4e5da5Sopenharmony_ci  EquivalenceRelation<uint32_t, UInt32Hash, UInt32Equals> relation2;
129fd4e5da5Sopenharmony_ci
130fd4e5da5Sopenharmony_ci  for (uint32_t i = 0; i < 1000; ++i) {
131fd4e5da5Sopenharmony_ci    relation1.Register(i);
132fd4e5da5Sopenharmony_ci    relation2.Register(i);
133fd4e5da5Sopenharmony_ci  }
134fd4e5da5Sopenharmony_ci
135fd4e5da5Sopenharmony_ci  for (uint32_t i = 0; i < 1000; ++i) {
136fd4e5da5Sopenharmony_ci    if (i >= 10) {
137fd4e5da5Sopenharmony_ci      relation1.MakeEquivalent(i, i - 10);
138fd4e5da5Sopenharmony_ci      relation2.MakeEquivalent(i, i - 10);
139fd4e5da5Sopenharmony_ci    }
140fd4e5da5Sopenharmony_ci  }
141fd4e5da5Sopenharmony_ci
142fd4e5da5Sopenharmony_ci  // We constructed the equivalence relations in the same way, so we would like
143fd4e5da5Sopenharmony_ci  // them to have identical representatives, and identically-ordered equivalence
144fd4e5da5Sopenharmony_ci  // classes per representative.
145fd4e5da5Sopenharmony_ci  ASSERT_THAT(ToUIntVector(relation1.GetEquivalenceClassRepresentatives()),
146fd4e5da5Sopenharmony_ci              ToUIntVector(relation2.GetEquivalenceClassRepresentatives()));
147fd4e5da5Sopenharmony_ci  for (auto representative : relation1.GetEquivalenceClassRepresentatives()) {
148fd4e5da5Sopenharmony_ci    ASSERT_THAT(ToUIntVector(relation1.GetEquivalenceClass(*representative)),
149fd4e5da5Sopenharmony_ci                ToUIntVector(relation2.GetEquivalenceClass(*representative)));
150fd4e5da5Sopenharmony_ci  }
151fd4e5da5Sopenharmony_ci}
152fd4e5da5Sopenharmony_ci
153fd4e5da5Sopenharmony_ci}  // namespace
154fd4e5da5Sopenharmony_ci}  // namespace fuzz
155fd4e5da5Sopenharmony_ci}  // namespace spvtools
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