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Add make_span()
This patch provides a make_span function to simplify the creation of spans until C++17 is available. In addition this patch updates the unit tests to includes tests that verify this new functionality.
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9523c1842e
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39
gsl/span
39
gsl/span
@ -632,6 +632,45 @@ as_writeable_bytes(span<ElementType, Extent> s) noexcept
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return {reinterpret_cast<byte*>(s.data()), s.size_bytes()};
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}
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//
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// make_span() - Utility functions for creating spans
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//
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template <class ElementType>
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span<ElementType>
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make_span(ElementType* ptr, typename span<ElementType>::index_type count)
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{ return span<ElementType>(ptr, count); }
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template <class ElementType>
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span<ElementType>
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make_span(ElementType* firstElem, ElementType* lastElem)
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{ return span<ElementType>(firstElem, lastElem); }
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template <class ElementType, size_t N>
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span<ElementType>
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make_span(ElementType (&arr)[N])
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{ return span<ElementType>(arr); }
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template <class Container>
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span<typename Container::value_type>
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make_span(Container &cont)
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{ return span<typename Container::value_type>(cont); }
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template <class Container>
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span<const typename Container::value_type>
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make_span(const Container &cont)
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{ return span<const typename Container::value_type>(cont); }
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template <class Ptr>
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span<typename Ptr::element_type>
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make_span(Ptr& cont, std::ptrdiff_t count)
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{ return span<typename Ptr::element_type>(cont, count); }
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template <class Ptr>
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span<typename Ptr::element_type>
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make_span(Ptr& cont)
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{ return span<typename Ptr::element_type>(cont); }
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// Specialization of gsl::at for span
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template <class ElementType, std::ptrdiff_t Extent>
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constexpr ElementType& at(const span<ElementType, Extent>& s, std::ptrdiff_t index)
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@ -204,6 +204,24 @@ SUITE(span_tests)
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auto workaround_macro = [=]() { span<int> s{p, 2}; };
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CHECK_THROW(workaround_macro(), fail_fast);
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}
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{
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auto s = make_span(&arr[0], 2);
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CHECK(s.length() == 2 && s.data() == &arr[0]);
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CHECK(s[0] == 1 && s[1] == 2);
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}
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{
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int* p = nullptr;
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auto s = make_span(p, static_cast<span<int>::index_type>(0));
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CHECK(s.length() == 0 && s.data() == nullptr);
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}
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{
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int* p = nullptr;
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auto workaround_macro = [=]() { make_span(p, 2); };
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CHECK_THROW(workaround_macro(), fail_fast);
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}
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}
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TEST(from_pointer_pointer_constructor)
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@ -263,6 +281,23 @@ SUITE(span_tests)
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// auto workaround_macro = [&]() { span<int> s{&arr[0], p}; };
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// CHECK_THROW(workaround_macro(), fail_fast);
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//}
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{
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auto s = make_span(&arr[0], &arr[2]);
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CHECK(s.length() == 2 && s.data() == &arr[0]);
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CHECK(s[0] == 1 && s[1] == 2);
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}
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{
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auto s = make_span(&arr[0], &arr[0]);
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CHECK(s.length() == 0 && s.data() == &arr[0]);
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}
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{
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int* p = nullptr;
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auto s = make_span(p, p);
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CHECK(s.length() == 0 && s.data() == nullptr);
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}
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}
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TEST(from_array_constructor)
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@ -339,6 +374,21 @@ SUITE(span_tests)
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span<int[3][2]> s{&arr3d[0], 1};
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CHECK(s.length() == 1 && s.data() == &arr3d[0]);
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}
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{
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auto s = make_span(arr);
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CHECK(s.length() == 5 && s.data() == &arr[0]);
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}
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{
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auto s = make_span(&(arr2d[0]), 1);
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CHECK(s.length() == 1 && s.data() == &arr2d[0]);
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}
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{
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auto s = make_span(&arr3d[0], 1);
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CHECK(s.length() == 1 && s.data() == &arr3d[0]);
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}
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}
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TEST(from_dynamic_array_constructor)
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@ -350,6 +400,11 @@ SUITE(span_tests)
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CHECK(s.length() == 10 && s.data() == &arr[0][0][0]);
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}
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{
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auto s = make_span(&arr[0][0][0], 10);
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CHECK(s.length() == 10 && s.data() == &arr[0][0][0]);
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}
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delete[] arr;
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}
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@ -408,6 +463,11 @@ SUITE(span_tests)
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// try to take a temporary std::array
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take_a_span(get_an_array());
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}
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{
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auto s = make_span(arr);
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CHECK(s.size() == narrow_cast<ptrdiff_t>(arr.size()) && s.data() == arr.data());
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}
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}
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TEST(from_const_std_array_constructor)
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@ -446,6 +506,11 @@ SUITE(span_tests)
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// try to take a temporary std::array
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take_a_span(get_an_array());
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}
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{
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auto s = make_span(arr);
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CHECK(s.size() == narrow_cast<ptrdiff_t>(arr.size()) && s.data() == arr.data());
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}
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}
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TEST(from_std_array_const_constructor)
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@ -481,6 +546,11 @@ SUITE(span_tests)
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span<int, 4> s{arr};
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}
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#endif
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{
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auto s = make_span(arr);
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CHECK(s.size() == narrow_cast<ptrdiff_t>(arr.size()) && s.data() == arr.data());
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}
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}
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TEST(from_unique_pointer_construction)
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@ -493,6 +563,12 @@ SUITE(span_tests)
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CHECK(s.length() == 1 && s.data() == ptr.get());
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CHECK(s[0] == 4);
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}
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{
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auto s = make_span(ptr);
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CHECK(s.length() == 1 && s.data() == ptr.get());
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CHECK(s[0] == 4);
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}
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}
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{
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@ -502,6 +578,11 @@ SUITE(span_tests)
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span<int> s{ptr};
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CHECK(s.length() == 0 && s.data() == nullptr);
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}
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{
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auto s = make_span(ptr);
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CHECK(s.length() == 0 && s.data() == nullptr);
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}
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}
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{
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@ -515,13 +596,24 @@ SUITE(span_tests)
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CHECK(s.length() == 4 && s.data() == arr.get());
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CHECK(s[0] == 1 && s[1] == 2);
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}
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{
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auto s = make_span(arr, 4);
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CHECK(s.length() == 4 && s.data() == arr.get());
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CHECK(s[0] == 1 && s[1] == 2);
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}
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}
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{
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auto ptr = std::unique_ptr<int[]>{nullptr};
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auto arr = std::unique_ptr<int[]>{nullptr};
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{
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span<int> s{ptr, 0};
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span<int> s{arr, 0};
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CHECK(s.length() == 0 && s.data() == nullptr);
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}
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{
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auto s = make_span(arr, 0);
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CHECK(s.length() == 0 && s.data() == nullptr);
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}
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}
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@ -537,6 +629,12 @@ SUITE(span_tests)
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CHECK(s.length() == 1 && s.data() == ptr.get());
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CHECK(s[0] == 4);
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}
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{
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auto s = make_span(ptr);
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CHECK(s.length() == 1 && s.data() == ptr.get());
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CHECK(s[0] == 4);
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}
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}
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{
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@ -546,6 +644,11 @@ SUITE(span_tests)
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span<int> s{ptr};
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CHECK(s.length() == 0 && s.data() == nullptr);
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}
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{
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auto s = make_span(ptr);
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CHECK(s.length() == 0 && s.data() == nullptr);
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}
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}
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}
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@ -631,6 +734,14 @@ SUITE(span_tests)
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span<int> s{m};
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#endif
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}
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{
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auto s = make_span(v);
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CHECK(s.size() == narrow_cast<std::ptrdiff_t>(v.size()) && s.data() == v.data());
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auto cs = make_span(cv);
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CHECK(cs.size() == narrow_cast<std::ptrdiff_t>(cv.size()) && cs.data() == cv.data());
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}
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}
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TEST(from_convertible_span_constructor)
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