#include #include #include #include #include #include #include #include #include #include #include #include #include template static int test_operators() { typedef typename genType::value_type valType; int Error = 0; { genType const A(1); genType const B(1); genType const C = A + B; Error += glm::all(glm::equal(C, genType(2), glm::epsilon())) ? 0 : 1; genType const D = A - B; Error += glm::all(glm::equal(D, genType(0), glm::epsilon())) ? 0 : 1; genType const E = A * B; Error += glm::all(glm::equal(E, genType(1), glm::epsilon())) ? 0 : 1; genType const F = A / B; Error += glm::all(glm::equal(F, genType(1), glm::epsilon())) ? 0 : 1; } return Error; } template static int test_ctor() { typedef typename genType::value_type T; int Error = 0; glm::vec<1, T> const A = genType(1); glm::vec<1, T> const E(genType(1)); Error += glm::all(glm::equal(A, E, glm::epsilon())) ? 0 : 1; glm::vec<1, T> const F(E); Error += glm::all(glm::equal(A, F, glm::epsilon())) ? 0 : 1; genType const B = genType(1); genType const G(glm::vec<2, T>(1)); Error += glm::all(glm::equal(B, G, glm::epsilon())) ? 0 : 1; genType const H(glm::vec<3, T>(1)); Error += glm::all(glm::equal(B, H, glm::epsilon())) ? 0 : 1; genType const I(glm::vec<4, T>(1)); Error += glm::all(glm::equal(B, I, glm::epsilon())) ? 0 : 1; return Error; } template static int test_size() { typedef typename genType::value_type T; int Error = 0; Error += sizeof(glm::vec<1, T>) == sizeof(genType) ? 0 : 1; Error += genType().length() == 1 ? 0 : 1; Error += genType::length() == 1 ? 0 : 1; return Error; } template static int test_relational() { typedef typename genType::value_type valType; int Error = 0; genType const A(1); genType const B(1); genType const C(0); Error += all(equal(A, B, glm::epsilon())) ? 0 : 1; Error += any(notEqual(A, C, glm::epsilon())) ? 0 : 1; return Error; } template static int test_constexpr() { # if GLM_CONFIG_CONSTEXP == GLM_ENABLE static_assert(genType::length() == 1, "GLM: Failed constexpr"); # endif return 0; } int main() { int Error = 0; Error += test_operators(); Error += test_operators(); Error += test_operators(); Error += test_operators(); Error += test_ctor(); Error += test_ctor(); Error += test_ctor(); Error += test_ctor(); Error += test_size(); Error += test_size(); Error += test_size(); Error += test_size(); Error += test_relational(); Error += test_relational(); Error += test_relational(); Error += test_relational(); Error += test_constexpr(); Error += test_constexpr(); Error += test_constexpr(); Error += test_constexpr(); Error += test_operators(); Error += test_operators(); Error += test_operators(); Error += test_operators(); Error += test_ctor(); Error += test_ctor(); Error += test_ctor(); Error += test_ctor(); Error += test_size(); Error += test_size(); Error += test_size(); Error += test_size(); Error += test_relational(); Error += test_relational(); Error += test_relational(); Error += test_relational(); Error += test_constexpr(); Error += test_constexpr(); Error += test_constexpr(); Error += test_constexpr(); return Error; }