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Restoring empty_array_view tests.
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@ -758,20 +758,62 @@ SUITE(array_view_tests)
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}
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#endif
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array_view<int, 0> empty_av(nullptr);
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{
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array_view<int, 0> empty_av(nullptr);
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CHECK(empty_av.bounds().index_bounds() == index<1>{ 0 });
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CHECK_THROW(empty_av[0], fail_fast);
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CHECK(empty_av.bounds().index_bounds() == index<1>{ 0 });
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CHECK_THROW(empty_av[0], fail_fast);
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CHECK_THROW(empty_av.begin()[0], fail_fast);
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CHECK_THROW(empty_av.cbegin()[0], fail_fast);
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for (auto& v : empty_av)
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{
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CHECK(false);
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}
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}
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strided_array_view<int, 1> empty_sav{ empty_av, { 0, 1 } };
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{
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array_view<int> empty_av = {};
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CHECK(empty_av.bounds().index_bounds() == index<1>{ 0 });
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CHECK_THROW(empty_av[0], fail_fast);
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CHECK_THROW(empty_av.begin()[0], fail_fast);
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CHECK_THROW(empty_av.cbegin()[0], fail_fast);
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for (auto& v : empty_av)
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{
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CHECK(false);
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}
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}
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CHECK(empty_sav.bounds().index_bounds() == index<1>{ 0 });
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CHECK_THROW(empty_sav[0], fail_fast);
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{
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array_view<int, 0> empty_av(nullptr);
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strided_array_view<int, 1> empty_sav{ empty_av, { 0, 1 } };
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strided_array_view<int, 1> empty_sav2{ nullptr, 0, { 0, 1 } };
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CHECK(empty_sav.bounds().index_bounds() == index<1>{ 0 });
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CHECK_THROW(empty_sav[0], fail_fast);
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CHECK_THROW(empty_sav.begin()[0], fail_fast);
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CHECK_THROW(empty_sav.cbegin()[0], fail_fast);
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CHECK(empty_sav.bounds().index_bounds() == index<1>{ 0 });
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CHECK_THROW(empty_sav[0], fail_fast);
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for (auto& v : empty_sav)
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{
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CHECK(false);
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}
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}
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{
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strided_array_view<int, 1> empty_sav{ nullptr, 0, { 0, 1 } };
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CHECK(empty_sav.bounds().index_bounds() == index<1>{ 0 });
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CHECK_THROW(empty_sav[0], fail_fast);
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CHECK_THROW(empty_sav.begin()[0], fail_fast);
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CHECK_THROW(empty_sav.cbegin()[0], fail_fast);
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for (auto& v : empty_sav)
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{
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CHECK(false);
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}
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}
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}
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TEST(index_constructor)
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