blob: 98f78d6680e7707e022716a2dabfacd2ab7e6908 [file] [log] [blame]
kwiberg24c7c122016-09-28 11:57:10 -07001/*
2 * Copyright 2016 The WebRTC Project Authors. All rights reserved.
3 *
4 * Use of this source code is governed by a BSD-style license
5 * that can be found in the LICENSE file in the root of the source
6 * tree. An additional intellectual property rights grant can be found
7 * in the file PATENTS. All contributing project authors may
8 * be found in the AUTHORS file in the root of the source tree.
9 */
10
11#include <memory>
12#include <utility>
13
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020014#include "rtc_base/function_view.h"
15#include "rtc_base/gunit.h"
kwiberg24c7c122016-09-28 11:57:10 -070016
17namespace rtc {
18
19namespace {
20
21int CallWith33(rtc::FunctionView<int(int)> fv) {
kwiberg607d9d72016-10-03 12:40:37 -070022 return fv ? fv(33) : -1;
23}
24
25int Add33(int x) {
26 return x + 33;
kwiberg24c7c122016-09-28 11:57:10 -070027}
28
29} // namespace
30
kwiberg607d9d72016-10-03 12:40:37 -070031// Test the main use case of FunctionView: implicitly converting a callable
32// argument.
kwiberg24c7c122016-09-28 11:57:10 -070033TEST(FunctionViewTest, ImplicitConversion) {
34 EXPECT_EQ(38, CallWith33([](int x) { return x + 5; }));
kwiberg607d9d72016-10-03 12:40:37 -070035 EXPECT_EQ(66, CallWith33(Add33));
36 EXPECT_EQ(-1, CallWith33(nullptr));
kwiberg24c7c122016-09-28 11:57:10 -070037}
38
39TEST(FunctionViewTest, IntIntLambdaWithoutState) {
40 auto f = [](int x) { return x + 1; };
41 EXPECT_EQ(18, f(17));
42 rtc::FunctionView<int(int)> fv(f);
kwiberg607d9d72016-10-03 12:40:37 -070043 EXPECT_TRUE(fv);
kwiberg24c7c122016-09-28 11:57:10 -070044 EXPECT_EQ(18, fv(17));
45}
46
47TEST(FunctionViewTest, IntVoidLambdaWithState) {
48 int x = 13;
49 auto f = [x]() mutable { return ++x; };
50 rtc::FunctionView<int()> fv(f);
kwiberg607d9d72016-10-03 12:40:37 -070051 EXPECT_TRUE(fv);
kwiberg24c7c122016-09-28 11:57:10 -070052 EXPECT_EQ(14, f());
53 EXPECT_EQ(15, fv());
54 EXPECT_EQ(16, f());
55 EXPECT_EQ(17, fv());
56}
57
kwiberg607d9d72016-10-03 12:40:37 -070058TEST(FunctionViewTest, IntIntFunction) {
59 rtc::FunctionView<int(int)> fv(Add33);
60 EXPECT_TRUE(fv);
61 EXPECT_EQ(50, fv(17));
62}
63
64TEST(FunctionViewTest, IntIntFunctionPointer) {
65 rtc::FunctionView<int(int)> fv(&Add33);
66 EXPECT_TRUE(fv);
67 EXPECT_EQ(50, fv(17));
68}
69
70TEST(FunctionViewTest, Null) {
71 // These two call constructors that statically construct null FunctionViews.
72 EXPECT_FALSE(rtc::FunctionView<int()>());
73 EXPECT_FALSE(rtc::FunctionView<int()>(nullptr));
74
75 // This calls the constructor for function pointers.
76 EXPECT_FALSE(rtc::FunctionView<int()>(reinterpret_cast<int(*)()>(0)));
77}
78
kwiberg24c7c122016-09-28 11:57:10 -070079// Ensure that FunctionView handles move-only arguments and return values.
80TEST(FunctionViewTest, UniquePtrPassthrough) {
81 auto f = [](std::unique_ptr<int> x) { return x; };
82 rtc::FunctionView<std::unique_ptr<int>(std::unique_ptr<int>)> fv(f);
83 std::unique_ptr<int> x(new int);
84 int* x_addr = x.get();
85 auto y = fv(std::move(x));
86 EXPECT_EQ(x_addr, y.get());
87}
88
89TEST(FunctionViewTest, CopyConstructor) {
90 auto f17 = [] { return 17; };
91 rtc::FunctionView<int()> fv1(f17);
92 rtc::FunctionView<int()> fv2(fv1);
93 EXPECT_EQ(17, fv1());
94 EXPECT_EQ(17, fv2());
95}
96
97TEST(FunctionViewTest, MoveConstructorIsCopy) {
98 auto f17 = [] { return 17; };
99 rtc::FunctionView<int()> fv1(f17);
100 rtc::FunctionView<int()> fv2(std::move(fv1));
101 EXPECT_EQ(17, fv1());
102 EXPECT_EQ(17, fv2());
103}
104
105TEST(FunctionViewTest, CopyAssignment) {
106 auto f17 = [] { return 17; };
107 rtc::FunctionView<int()> fv1(f17);
108 auto f23 = [] { return 23; };
109 rtc::FunctionView<int()> fv2(f23);
110 EXPECT_EQ(17, fv1());
111 EXPECT_EQ(23, fv2());
112 fv2 = fv1;
113 EXPECT_EQ(17, fv1());
114 EXPECT_EQ(17, fv2());
115}
116
117TEST(FunctionViewTest, MoveAssignmentIsCopy) {
118 auto f17 = [] { return 17; };
119 rtc::FunctionView<int()> fv1(f17);
120 auto f23 = [] { return 23; };
121 rtc::FunctionView<int()> fv2(f23);
122 EXPECT_EQ(17, fv1());
123 EXPECT_EQ(23, fv2());
124 fv2 = std::move(fv1);
125 EXPECT_EQ(17, fv1());
126 EXPECT_EQ(17, fv2());
127}
128
129TEST(FunctionViewTest, Swap) {
130 auto f17 = [] { return 17; };
131 rtc::FunctionView<int()> fv1(f17);
132 auto f23 = [] { return 23; };
133 rtc::FunctionView<int()> fv2(f23);
134 EXPECT_EQ(17, fv1());
135 EXPECT_EQ(23, fv2());
136 using std::swap;
137 swap(fv1, fv2);
138 EXPECT_EQ(23, fv1());
139 EXPECT_EQ(17, fv2());
140}
141
142// Ensure that when you copy-construct a FunctionView, the new object points to
kwiberg607d9d72016-10-03 12:40:37 -0700143// the same function as the old one (as opposed to the new object pointing to
144// the old one).
kwiberg24c7c122016-09-28 11:57:10 -0700145TEST(FunctionViewTest, CopyConstructorChaining) {
146 auto f17 = [] { return 17; };
147 rtc::FunctionView<int()> fv1(f17);
148 rtc::FunctionView<int()> fv2(fv1);
149 EXPECT_EQ(17, fv1());
150 EXPECT_EQ(17, fv2());
151 auto f23 = [] { return 23; };
152 fv1 = f23;
153 EXPECT_EQ(23, fv1());
154 EXPECT_EQ(17, fv2());
155}
156
157// Ensure that when you assign one FunctionView to another, we actually make a
kwiberg607d9d72016-10-03 12:40:37 -0700158// copy (as opposed to making the second FunctionView point to the first one).
kwiberg24c7c122016-09-28 11:57:10 -0700159TEST(FunctionViewTest, CopyAssignmentChaining) {
160 auto f17 = [] { return 17; };
161 rtc::FunctionView<int()> fv1(f17);
kwiberg607d9d72016-10-03 12:40:37 -0700162 rtc::FunctionView<int()> fv2;
163 EXPECT_TRUE(fv1);
kwiberg24c7c122016-09-28 11:57:10 -0700164 EXPECT_EQ(17, fv1());
kwiberg607d9d72016-10-03 12:40:37 -0700165 EXPECT_FALSE(fv2);
kwiberg24c7c122016-09-28 11:57:10 -0700166 fv2 = fv1;
167 EXPECT_EQ(17, fv1());
168 EXPECT_EQ(17, fv2());
169 auto f23 = [] { return 23; };
170 fv1 = f23;
171 EXPECT_EQ(23, fv1());
172 EXPECT_EQ(17, fv2());
173}
174
175} // namespace rtc