1 /*
2 * Copyright (C) 2018 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17 #include "types.h"
18
19 #include <gtest/gtest.h>
20
21 #include <memory>
22 #include <utility>
23
24 #include "fdevent/fdevent_test.h"
25
create_block(const std::string & string)26 static IOVector::block_type create_block(const std::string& string) {
27 return IOVector::block_type(string.begin(), string.end());
28 }
29
create_block(char value,size_t len)30 static IOVector::block_type create_block(char value, size_t len) {
31 auto block = IOVector::block_type();
32 block.resize(len);
33 memset(&(block)[0], value, len);
34 return block;
35 }
36
37 template <typename T>
copy_block(const T & block)38 static IOVector::block_type copy_block(const T& block) {
39 auto copy = IOVector::block_type();
40 copy.assign(block.begin(), block.end());
41 return copy;
42 }
43
TEST(IOVector,empty)44 TEST(IOVector, empty) {
45 // Empty IOVector.
46 IOVector bc;
47 CHECK_EQ(0ULL, bc.coalesce().size());
48 }
49
TEST(IOVector,move_constructor)50 TEST(IOVector, move_constructor) {
51 IOVector x;
52 size_t xsize = x.coalesce().size();
53 IOVector y(std::move(x));
54 CHECK_EQ(xsize, y.coalesce().size());
55 }
56
TEST(IOVector,single_block)57 TEST(IOVector, single_block) {
58 // A single block.
59 auto block = create_block('x', 100);
60 IOVector bc;
61 bc.append(copy_block(block));
62 ASSERT_EQ(100ULL, bc.size());
63 auto coalesced = bc.coalesce();
64 ASSERT_EQ(block, coalesced);
65 }
66
TEST(IOVector,single_block_split)67 TEST(IOVector, single_block_split) {
68 // One block split.
69 IOVector bc;
70 bc.append(create_block("foobar"));
71 IOVector foo = bc.take_front(3);
72 ASSERT_EQ(3ULL, foo.size());
73 ASSERT_EQ(3ULL, bc.size());
74 ASSERT_EQ(create_block("foo"), foo.coalesce());
75 ASSERT_EQ(create_block("bar"), bc.coalesce());
76 }
77
TEST(IOVector,aligned_split)78 TEST(IOVector, aligned_split) {
79 IOVector bc;
80 bc.append(create_block("foo"));
81 bc.append(create_block("bar"));
82 bc.append(create_block("baz"));
83 ASSERT_EQ(9ULL, bc.size());
84
85 IOVector foo = bc.take_front(3);
86 ASSERT_EQ(3ULL, foo.size());
87 ASSERT_EQ(create_block("foo"), foo.coalesce());
88
89 IOVector bar = bc.take_front(3);
90 ASSERT_EQ(3ULL, bar.size());
91 ASSERT_EQ(create_block("bar"), bar.coalesce());
92
93 IOVector baz = bc.take_front(3);
94 ASSERT_EQ(3ULL, baz.size());
95 ASSERT_EQ(create_block("baz"), baz.coalesce());
96
97 ASSERT_EQ(0ULL, bc.size());
98 }
99
TEST(IOVector,misaligned_split)100 TEST(IOVector, misaligned_split) {
101 IOVector bc;
102 bc.append(create_block("foo"));
103 bc.append(create_block("bar"));
104 bc.append(create_block("baz"));
105 bc.append(create_block("qux"));
106 bc.append(create_block("quux"));
107
108 // Aligned left, misaligned right, across multiple blocks.
109 IOVector foob = bc.take_front(4);
110 ASSERT_EQ(4ULL, foob.size());
111 ASSERT_EQ(create_block("foob"), foob.coalesce());
112
113 // Misaligned left, misaligned right, in one block.
114 IOVector a = bc.take_front(1);
115 ASSERT_EQ(1ULL, a.size());
116 ASSERT_EQ(create_block("a"), a.coalesce());
117
118 // Misaligned left, misaligned right, across two blocks.
119 IOVector rba = bc.take_front(3);
120 ASSERT_EQ(3ULL, rba.size());
121 ASSERT_EQ(create_block("rba"), rba.coalesce());
122
123 // Misaligned left, misaligned right, across three blocks.
124 IOVector zquxquu = bc.take_front(7);
125 ASSERT_EQ(7ULL, zquxquu.size());
126 ASSERT_EQ(create_block("zquxquu"), zquxquu.coalesce());
127
128 ASSERT_EQ(1ULL, bc.size());
129 ASSERT_EQ(create_block("x"), bc.coalesce());
130 }
131
TEST(IOVector,drop_front)132 TEST(IOVector, drop_front) {
133 IOVector vec;
134
135 vec.append(create_block('x', 2));
136 vec.append(create_block('y', 1000));
137 ASSERT_EQ(2U, vec.front_size());
138 ASSERT_EQ(1002U, vec.size());
139
140 vec.drop_front(1);
141 ASSERT_EQ(1U, vec.front_size());
142 ASSERT_EQ(1001U, vec.size());
143
144 vec.drop_front(1);
145 ASSERT_EQ(1000U, vec.front_size());
146 ASSERT_EQ(1000U, vec.size());
147 }
148
TEST(IOVector,take_front)149 TEST(IOVector, take_front) {
150 IOVector vec;
151 ASSERT_TRUE(vec.take_front(0).empty());
152
153 vec.append(create_block('x', 2));
154 ASSERT_EQ(2ULL, vec.size());
155
156 ASSERT_EQ(1ULL, vec.take_front(1).size());
157 ASSERT_EQ(1ULL, vec.size());
158
159 ASSERT_EQ(1ULL, vec.take_front(1).size());
160 ASSERT_EQ(0ULL, vec.size());
161 }
162
TEST(IOVector,trim_front)163 TEST(IOVector, trim_front) {
164 IOVector vec;
165 vec.append(create_block('x', 2));
166
167 ASSERT_EQ(1ULL, vec.take_front(1).size());
168 ASSERT_EQ(1ULL, vec.size());
169 vec.trim_front();
170 ASSERT_EQ(1ULL, vec.size());
171 }
172
173 class weak_ptr_test : public FdeventTest {};
174
175 struct Destructor : public enable_weak_from_this<Destructor> {
DestructorDestructor176 Destructor(bool* destroyed) : destroyed_(destroyed) {}
~DestructorDestructor177 ~Destructor() { *destroyed_ = true; }
178
179 bool* destroyed_;
180 };
181
TEST_F(weak_ptr_test,smoke)182 TEST_F(weak_ptr_test, smoke) {
183 PrepareThread();
184
185 Destructor* destructor = nullptr;
186 bool destroyed = false;
187 std::optional<weak_ptr<Destructor>> p;
188
189 fdevent_run_on_looper([&p, &destructor, &destroyed]() {
190 destructor = new Destructor(&destroyed);
191 p = destructor->weak();
192 ASSERT_TRUE(p->get());
193
194 p->reset();
195 ASSERT_FALSE(p->get());
196
197 p->reset(destructor);
198 ASSERT_TRUE(p->get());
199 });
200 WaitForFdeventLoop();
201 ASSERT_TRUE(destructor);
202 ASSERT_FALSE(destroyed);
203
204 destructor->schedule_deletion();
205 WaitForFdeventLoop();
206
207 ASSERT_TRUE(destroyed);
208 fdevent_run_on_looper([&p]() {
209 ASSERT_FALSE(p->get());
210 p.reset();
211 });
212
213 TerminateThread();
214 }
215