xref: /xnu-10002.81.5/tests/bounded_array_ref_src/ctor.raw_ptr.cpp (revision 5e3eaea39dcf651e66cb99ba7d70e32cc4a99587)
1*5e3eaea3SApple OSS Distributions //
2*5e3eaea3SApple OSS Distributions // Tests for
3*5e3eaea3SApple OSS Distributions //  explicit bounded_array_ref(T* data, size_t n);
4*5e3eaea3SApple OSS Distributions //
5*5e3eaea3SApple OSS Distributions 
6*5e3eaea3SApple OSS Distributions #include <libkern/c++/bounded_array_ref.h>
7*5e3eaea3SApple OSS Distributions #include "test_policy.h"
8*5e3eaea3SApple OSS Distributions #include <cstddef>
9*5e3eaea3SApple OSS Distributions #include <darwintest.h>
10*5e3eaea3SApple OSS Distributions #include <darwintest_utils.h>
11*5e3eaea3SApple OSS Distributions 
12*5e3eaea3SApple OSS Distributions struct T { int i; };
13*5e3eaea3SApple OSS Distributions inline bool
operator ==(T const & a,T const & b)14*5e3eaea3SApple OSS Distributions operator==(T const& a, T const& b)
15*5e3eaea3SApple OSS Distributions {
16*5e3eaea3SApple OSS Distributions 	return a.i == b.i;
17*5e3eaea3SApple OSS Distributions };
18*5e3eaea3SApple OSS Distributions 
19*5e3eaea3SApple OSS Distributions template <typename T>
20*5e3eaea3SApple OSS Distributions static void
tests()21*5e3eaea3SApple OSS Distributions tests()
22*5e3eaea3SApple OSS Distributions {
23*5e3eaea3SApple OSS Distributions 	T array[5] = {T{0}, T{1}, T{2}, T{3}, T{4}};
24*5e3eaea3SApple OSS Distributions 
25*5e3eaea3SApple OSS Distributions 	// T{0}     T{1}     T{2}     T{3}     T{4}     <one-past-last>
26*5e3eaea3SApple OSS Distributions 	//   ^
27*5e3eaea3SApple OSS Distributions 	//   |
28*5e3eaea3SApple OSS Distributions 	//  ptr
29*5e3eaea3SApple OSS Distributions 	//
30*5e3eaea3SApple OSS Distributions 	//   ^------------------- view -----------------------^
31*5e3eaea3SApple OSS Distributions 	{
32*5e3eaea3SApple OSS Distributions 		T* ptr = &array[0];
33*5e3eaea3SApple OSS Distributions 		test_bounded_array_ref<T> view(ptr, 5);
34*5e3eaea3SApple OSS Distributions 		CHECK(view.data() == &array[0]);
35*5e3eaea3SApple OSS Distributions 		CHECK(view.size() == 5);
36*5e3eaea3SApple OSS Distributions 		CHECK(view[0] == T{0});
37*5e3eaea3SApple OSS Distributions 		CHECK(view[1] == T{1});
38*5e3eaea3SApple OSS Distributions 		CHECK(view[2] == T{2});
39*5e3eaea3SApple OSS Distributions 		CHECK(view[3] == T{3});
40*5e3eaea3SApple OSS Distributions 		CHECK(view[4] == T{4});
41*5e3eaea3SApple OSS Distributions 	}
42*5e3eaea3SApple OSS Distributions 	// T{0}     T{1}     T{2}     T{3}     T{4}     <one-past-last>
43*5e3eaea3SApple OSS Distributions 	//   ^
44*5e3eaea3SApple OSS Distributions 	//   |
45*5e3eaea3SApple OSS Distributions 	//  ptr
46*5e3eaea3SApple OSS Distributions 	//
47*5e3eaea3SApple OSS Distributions 	//   ^----- view -----^
48*5e3eaea3SApple OSS Distributions 	{
49*5e3eaea3SApple OSS Distributions 		T* ptr = &array[0];
50*5e3eaea3SApple OSS Distributions 		test_bounded_array_ref<T> view(ptr, 3);
51*5e3eaea3SApple OSS Distributions 		CHECK(view.data() == &array[0]);
52*5e3eaea3SApple OSS Distributions 		CHECK(view.size() == 3);
53*5e3eaea3SApple OSS Distributions 		CHECK(view[0] == T{0});
54*5e3eaea3SApple OSS Distributions 		CHECK(view[1] == T{1});
55*5e3eaea3SApple OSS Distributions 		CHECK(view[2] == T{2});
56*5e3eaea3SApple OSS Distributions 	}
57*5e3eaea3SApple OSS Distributions 	// T{0}     T{1}     T{2}     T{3}     T{4}     <one-past-last>
58*5e3eaea3SApple OSS Distributions 	//                              ^
59*5e3eaea3SApple OSS Distributions 	//                              |
60*5e3eaea3SApple OSS Distributions 	//                             ptr
61*5e3eaea3SApple OSS Distributions 	//
62*5e3eaea3SApple OSS Distributions 	//                              ^------- view --------^
63*5e3eaea3SApple OSS Distributions 	{
64*5e3eaea3SApple OSS Distributions 		T* ptr = &array[3];
65*5e3eaea3SApple OSS Distributions 		test_bounded_array_ref<T> view(ptr, 2);
66*5e3eaea3SApple OSS Distributions 		CHECK(view.data() == &array[3]);
67*5e3eaea3SApple OSS Distributions 		CHECK(view.size() == 2);
68*5e3eaea3SApple OSS Distributions 		CHECK(view[0] == T{3});
69*5e3eaea3SApple OSS Distributions 		CHECK(view[1] == T{4});
70*5e3eaea3SApple OSS Distributions 	}
71*5e3eaea3SApple OSS Distributions 	// Check with a valid pointer and a size of 0.
72*5e3eaea3SApple OSS Distributions 	{
73*5e3eaea3SApple OSS Distributions 		T* ptr = &array[0];
74*5e3eaea3SApple OSS Distributions 		test_bounded_array_ref<T> view(ptr, static_cast<std::size_t>(0));
75*5e3eaea3SApple OSS Distributions 		CHECK(view.size() == 0);
76*5e3eaea3SApple OSS Distributions 	}
77*5e3eaea3SApple OSS Distributions 	// Check with a null pointer and a size of 0.
78*5e3eaea3SApple OSS Distributions 	{
79*5e3eaea3SApple OSS Distributions 		T* ptr = nullptr;
80*5e3eaea3SApple OSS Distributions 		test_bounded_array_ref<T> view(ptr, static_cast<std::size_t>(0));
81*5e3eaea3SApple OSS Distributions 		CHECK(view.size() == 0);
82*5e3eaea3SApple OSS Distributions 	}
83*5e3eaea3SApple OSS Distributions 	// Check with a non-null but invalid pointer and a size of 0.
84*5e3eaea3SApple OSS Distributions 	{
85*5e3eaea3SApple OSS Distributions 		T* ptr = &array[5];
86*5e3eaea3SApple OSS Distributions 		test_bounded_array_ref<T> view(ptr, static_cast<std::size_t>(0));
87*5e3eaea3SApple OSS Distributions 		CHECK(view.size() == 0);
88*5e3eaea3SApple OSS Distributions 	}
89*5e3eaea3SApple OSS Distributions 	// Make sure there's no ambiguity between constructors.
90*5e3eaea3SApple OSS Distributions 	{
91*5e3eaea3SApple OSS Distributions 		T* ptr = &array[0];
92*5e3eaea3SApple OSS Distributions 		std::ptrdiff_t size = 5;
93*5e3eaea3SApple OSS Distributions 		test_bounded_array_ref<T> view(ptr, size);
94*5e3eaea3SApple OSS Distributions 		CHECK(view.data() == &array[0]);
95*5e3eaea3SApple OSS Distributions 		CHECK(view.size() == 5);
96*5e3eaea3SApple OSS Distributions 	}
97*5e3eaea3SApple OSS Distributions 
98*5e3eaea3SApple OSS Distributions 	// Make sure we can create nested bounded_array_refs
99*5e3eaea3SApple OSS Distributions 	{
100*5e3eaea3SApple OSS Distributions 		int array1[] = {1, 2, 3, 4, 5};
101*5e3eaea3SApple OSS Distributions 		int array2[] = {6, 7, 8};
102*5e3eaea3SApple OSS Distributions 		int array3[] = {9, 10, 11, 12, 13, 14};
103*5e3eaea3SApple OSS Distributions 		test_bounded_array_ref<int> views[] = {
104*5e3eaea3SApple OSS Distributions 			test_bounded_array_ref<int>(array1, 5),
105*5e3eaea3SApple OSS Distributions 			test_bounded_array_ref<int>(array2, 3),
106*5e3eaea3SApple OSS Distributions 			test_bounded_array_ref<int>(array3, 6)
107*5e3eaea3SApple OSS Distributions 		};
108*5e3eaea3SApple OSS Distributions 
109*5e3eaea3SApple OSS Distributions 		test_bounded_array_ref<test_bounded_array_ref<int> > two_dim(views, 3);
110*5e3eaea3SApple OSS Distributions 		CHECK(two_dim.size() == 3);
111*5e3eaea3SApple OSS Distributions 		CHECK(two_dim.data() == &views[0]);
112*5e3eaea3SApple OSS Distributions 		CHECK(&two_dim[0] == &views[0]);
113*5e3eaea3SApple OSS Distributions 		CHECK(&two_dim[1] == &views[1]);
114*5e3eaea3SApple OSS Distributions 		CHECK(&two_dim[2] == &views[2]);
115*5e3eaea3SApple OSS Distributions 	}
116*5e3eaea3SApple OSS Distributions }
117*5e3eaea3SApple OSS Distributions 
118*5e3eaea3SApple OSS Distributions T_DECL(ctor_raw_ptr, "bounded_array_ref.ctor.raw_ptr") {
119*5e3eaea3SApple OSS Distributions 	tests<T>();
120*5e3eaea3SApple OSS Distributions 	tests<T const>();
121*5e3eaea3SApple OSS Distributions }
122