final vectors
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-12
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#include <iostream>
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#include <vector>
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#include <algorithm>
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#include <numeric>
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template <class T, int N>
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// a class implementing a mathematical vector
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template <class K, size_t N>
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class Vector {
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public:
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Vector<T,N> operator+(const Vector<T,N>& y); // Vektoraddition
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//T operator*(const Vector<T,n>& y); // Skalarprodukt
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// constructor, initializes vector with zeroes of length N
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Vector() : _vector(N, 0) {}
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// initialize by passing vector vec to initialize the vector object with
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Vector(std::vector<K> vec) { _vector = vec; }
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// copy constructor, assignment, destructor not needed
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// all handled by std::vector
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// reference [] operator, used for assignments
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K& operator[](int i) {
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return _vector[i];
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}
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// const ref [] operator
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K operator[](int i) const {
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return _vector[i];
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}
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// return an iterator pointing to the first element of the underlying std::vector
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typename std::vector<K>::const_iterator begin() const {
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return _vector.begin();
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}
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// return an iterator pointing to the last element of the underlying std::vector
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typename std::vector<K>::const_iterator end() const {
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return _vector.end();
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}
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// dot product of two vectors of the same length
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template <class K2>
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K operator*(const Vector<K2,N>& y) {
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std::vector<K> result(N); // new empty std::vector of correct size
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// now multiply one element of the first with one of the second vector
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std::transform(_vector.begin(), _vector.end(), y.begin(), result.begin(), std::multiplies<K>());
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// and sum up the products
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return std::accumulate(result.begin(), result.end(), 0);
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}
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// vector addition
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template <class K2>
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Vector<K, N> operator+(const Vector<K2, N>& y) {
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std::vector<K> result(N); // new empty std::vector of correct size
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// add elements by adding one element of the first to one of the second vector
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std::transform(_vector.begin(), _vector.end(), y.begin(), result.begin(), std::plus<K>());
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return Vector(result);
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}
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// return the maximum value in the vector
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K max() {
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return *std::max_element(_vector.begin(), _vector.end());
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}
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// return the minimum value in the vector
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K min() {
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return *std::min_element(_vector.begin(), _vector.end());
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}
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// return the average value of the vector
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K average() {
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// sum up all elements
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K sum = std::accumulate(_vector.begin(), _vector.end(), 0);
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return sum / N; // and divide by length
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}
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// run the specified function on each vector element
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template <class F>
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Vector<K,N> map(F op) const {
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std::vector<K> result(N); // initialize new std::vector of correct size
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// run op on each element
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std::transform(_vector.begin(), _vector.end(), result.begin(), op);
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return Vector(result);
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}
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private:
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std::vector<T> _vector[N];
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std::vector<K> _vector; // the private std::vector container
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};
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template <class A, int N>
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Vector<A,N> Vector<A, N>::operator+(const Vector<B,N>& y) {
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//for(int i = 0; i < _vector.last; i++) {
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// std::cout << _vector[i] << std::endl;
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//}
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return y;
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// print vector
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template <class K, size_t N>
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std::ostream& operator<<(std::ostream& os, const Vector<K,N>& v) {
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os << "["; // opening brackets
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for (size_t i = 0; i < N; i++) {
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os << v[i]; // print element
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if(i < N-1) {
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os << ", "; // if not the last one, add comma
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}
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}
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os << "]"; // closing brackets
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return os;
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}
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// scalar multiplication
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template <class K, size_t N, class K2>
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Vector<K, N> operator*(const Vector<K,N>& v, const K2 k) {
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// multiply a scalar value using the generic map function
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return v.map(std::bind1st(std::multiplies<K>(), k));
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}
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// scalar multiplication for scalar * vector
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template <class K, size_t N, class K2>
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Vector<K, N> operator*(const K2 k, const Vector<K,N>& v) {
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return v * k;
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}
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// example function
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double foo(double val) {
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return val*2+3;
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}
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// testing out functionalities
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int main() {
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Vector<double, 3> a;
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Vector<double, 3> b;
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b = a+a;
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Vector<float, 3> b;
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a[0] = 0;
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a[1] = 0;
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a[2] = 4;
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b[0] = 42;
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b[1] = -20;
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b[2] = 3;
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std::cout << "Vektor a: " << a << ", Vektor b: " << b << std::endl;
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std::cout << "a+b: " << a+b << std::endl;
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std::cout << "a*b: " << a*b << std::endl;
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std::cout << "42*b: " << 42*b << std::endl;
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std::cout << "b*42: " << b*42 << std::endl;
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std::cout << "max(a): " << a.max() << std::endl;
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std::cout << "min(a): " << a.min() << std::endl;
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std::cout << "mean(a): " << a.average() << std::endl;
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std::cout << "foo angewendet auf b: " << b.map(foo) << std::endl;
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}
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