Make scalar_type and vector_type public in Vec.
- Add a dot product implementation. - Test code to demonstrate dot product. - Test code to demonstrate wrapping structs with unordered properties.
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4 changed files with 71 additions and 3 deletions
22
include/vectorwrapper/vectorops.hpp
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22
include/vectorwrapper/vectorops.hpp
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#ifndef id8949C80C36BA42CABC49EA4C1DB54BC7
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#define id8949C80C36BA42CABC49EA4C1DB54BC7
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#include "vectorwrapper.hpp"
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#include <type_traits>
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#include <cstddef>
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namespace vwr {
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template <typename V1, typename V2, std::size_t S>
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typename std::common_type<typename Vec<V1>::scalar_type, typename Vec<V2>::scalar_type>::type dot ( const Vec<V1, S>& parLeft, const Vec<V2, S>& parRight );
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template <typename V1, typename V2, std::size_t S>
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inline typename std::common_type<typename Vec<V1>::scalar_type, typename Vec<V2>::scalar_type>::type dot (const Vec<V1, S>& parLeft, const Vec<V2, S>& parRight) {
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auto retval = parLeft.x() * parRight.x();
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for (int z = 1; z < S; ++z) {
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retval += parLeft[z] * parRight[z];
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}
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return retval;
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}
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} //namespace vwr
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#endif
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@ -292,9 +292,9 @@ namespace vwr {
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template <typename V>
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class Vec<V, 1> : public implem::VecBase<V>, public implem::VecAccessors<V, 1> {
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static_assert(std::is_standard_layout<implem::VecBase<V>>::value, "Base class must be a standard layout type");
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public:
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typedef typename implem::VecBase<V>::vector_type vector_type;
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typedef typename implem::VecBase<V>::scalar_type scalar_type;
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public:
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enum {
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dimensions = 1
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};
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@ -317,9 +317,9 @@ namespace vwr {
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class Vec<V, 2> : public implem::VecBase<V>, public implem::VecAccessors<V, 2> {
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static_assert(std::is_standard_layout<implem::VecBase<V>>::value, "Base class must be a standard layout type");
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static_assert(std::is_standard_layout<implem::VecAccessors<V, 2>>::value, "Base class must be a standard layout type");
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public:
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typedef typename implem::VecBase<V>::scalar_type scalar_type;
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typedef typename implem::VecBase<V>::vector_type vector_type;
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public:
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enum {
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dimensions = 2
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};
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@ -344,9 +344,9 @@ namespace vwr {
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class Vec<V, 3> : public implem::VecBase<V>, public implem::VecAccessors<V, 3> {
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static_assert(std::is_standard_layout<implem::VecBase<V>>::value, "Base class must be a standard layout type");
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static_assert(std::is_standard_layout<implem::VecAccessors<V, 3>>::value, "Base class must be a standard layout type");
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public:
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typedef typename implem::VecBase<V>::scalar_type scalar_type;
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typedef typename implem::VecBase<V>::vector_type vector_type;
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public:
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enum {
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dimensions = 3
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};
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@ -3,6 +3,7 @@ project(unit CXX)
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add_executable(${PROJECT_NAME}
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${GTEST_MAIN_CPP}
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test_conversions.cpp
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test_ops.cpp
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)
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target_link_libraries(${PROJECT_NAME}
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45
test/unit/test_ops.cpp
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test/unit/test_ops.cpp
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#include "sample_vectors.hpp"
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#include "vectorwrapper/vectorops.hpp"
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#include <gtest/gtest.h>
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struct UnorderedVector {
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int64_t y;
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int64_t z;
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int64_t x;
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};
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namespace vwr {
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template <>
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struct VectorWrapperInfo<UnorderedVector> {
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enum { dimensions = 3 };
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typedef int64_t scalar_type;
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enum {
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offset_x = offsetof(UnorderedVector, x),
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offset_y = offsetof(UnorderedVector, y),
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offset_z = offsetof(UnorderedVector, z)
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};
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};
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} //namespace vwr
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typedef vwr::Vec<UnorderedVector> uvec3i;
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TEST(vwr, ops) {
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using namespace vwr;
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ivec3 a(1);
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ivec3 b(1);
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EXPECT_EQ(3, dot(a, b));
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EXPECT_EQ(3, dot(a, a));
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a = ivec3{5, 2, 8};
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b = ivec3{6, 9, 3};
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EXPECT_EQ(6*5+2*9+8*3, dot(a, b));
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uvec3i c(7, 2, 9);
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EXPECT_EQ(7, c.x());
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EXPECT_EQ(2, c.y());
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EXPECT_EQ(9, c.z());
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EXPECT_EQ(7*5+2*2+9*8, dot(a, c));
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EXPECT_EQ(7*6+2*9+9*3, dot(b, c));
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}
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