Shape testing.
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149
main.cpp
149
main.cpp
@ -4,6 +4,7 @@
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#include <map>
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#include <iomanip>
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#include <vector>
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#include <cmath>
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using string = std::string;
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using slist = std::list<string>;
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@ -20,82 +21,75 @@ void printlm(T m){
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printm("\n");
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}
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class Heap {
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protected:
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int pos {0};
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int length {0};
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Heap() {}
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private:
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int size;
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int* storage;
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class Point {
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public:
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Heap(int sz) {
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size = sz;
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storage = new int[sz];
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}
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virtual ~Heap() {
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delete[] storage;
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}
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bool isEmpty() {
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return length == 0;
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}
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virtual void add(int item) {
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if (length + 1 > size) return;
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pos = length;
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while (pos > 0 && storage[(pos-1)/2] < item) {
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storage[pos] = storage[(pos-1)/2];
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pos = (pos-1)/2;
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}
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storage[pos] = item;
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++length;
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}
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virtual int extractMax() {
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int max {storage[0]};
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storage[0] = storage[--length];
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int first {0};
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while ((2*first)+1 <= length - 1) {
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int largest {(2*first)+1};
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if ((2*first)+2 <= length - 1 && storage[largest] < storage[(2*first)+2]) largest = (2*first)+2;
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if (storage[first] >= storage[largest]) break;
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int swap = storage[first];
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storage[first] = storage[largest];
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storage[largest] = swap;
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first = largest;
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}
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return max;
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}
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const double x;
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const double y;
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Point(double a, double b) : x(a), y(b) {}
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};
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class HeapInf : public Heap {
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std::vector<int> storage;
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double dist(Point a, Point b) {
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const auto dx = a.x - b.x;
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const auto dy = a.y - b.y;
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return sqrt(dx*dx + dy*dy);
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}
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std::string printp(const Point &p) {
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return "( " + std::to_string(p.x) + " , " + std::to_string(p.y) + " )";
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}
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class Shape {
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public:
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HeapInf() : Heap() {}
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virtual ~HeapInf() {}
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void add(int item) {
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if (length+1>storage.size()) storage.push_back(0);
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pos = length;
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while (pos > 0 && storage[(pos-1)/2] < item) {
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storage[pos] = storage[(pos-1)/2];
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pos = (pos-1)/2;
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virtual bool contains(Point p) const = 0;
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virtual std::string description() const = 0;
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virtual void scale(double s) = 0;
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virtual ~Shape() {}
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};
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class Circle : public Shape {
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public:
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Point center;
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double radius;
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Circle(Point c, double r) : center(c), radius(r) {}
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virtual bool contains(Point p) const override {
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return dist(center, p) <= radius;
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}
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storage[pos] = item;
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++length;
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virtual std::string description() const override {
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return "Circle ; " + printp(center) + " ; " + std::to_string(radius);
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}
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int extractMax() {
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int max {(storage.size() > 0) ? storage[0] : 0};
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storage[0] = storage[--length];
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int first {0};
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while ((2*first)+1 <= length - 1) {
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int largest {(2*first)+1};
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if ((2*first)+2 <= length - 1 && storage[largest] < storage[(2*first)+2]) largest = (2*first)+2;
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if (storage[first] >= storage[largest]) break;
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int swap = storage[first];
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storage[first] = storage[largest];
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storage[largest] = swap;
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first = largest;
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virtual void scale(double s) override {
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radius *= s;
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}
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storage.pop_back();
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return max;
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};
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class Rectangle : public Shape {
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public:
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Point topleft;
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double width, height;
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Rectangle(Point tl, double w, double h) : topleft(tl), width(w), height(h) {}
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virtual bool contains(Point p) const override {
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return topleft.x <= p.x && topleft.x + width >= p.x && topleft.y <= p.y && topleft.y + height >= p.y;
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}
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virtual std::string description() const override {
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return "Rectangle ; " + printp(topleft) + " ; [ " + std::to_string(width) + " , " + std::to_string(height) + " ]";
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}
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virtual void scale(double s) override {
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width *= s;
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height *= s;
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}
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};
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class CompositeShape : public Shape {
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public:
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Shape* shape1;
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Shape* shape2;
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CompositeShape(Shape* s1, Shape* s2) : shape1(s1), shape2(s2) {}
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virtual bool contains(Point p) const override {
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return shape1->contains(p) || shape2->contains(p);
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}
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virtual std::string description() const override {
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return "Composite ; " + shape1->description() + " ; " + shape2->description();
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}
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virtual void scale(double s) override {
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shape1->scale(s);
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shape2->scale(s);
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}
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};
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@ -104,15 +98,14 @@ double promptd(string,bool*);
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string prompts(string,bool*);
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int main() {
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printlm("Create Heap:");
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HeapInf h{};
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bool s{true};
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while (s) {
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auto x {prompti("Enter integer (Finish by entering invalid): ",&s)};
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if (s) {h.add(x);}
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}
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printlm("Output Heap:");
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while (!h.isEmpty()) printlm(h.extractMax());
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std::vector<Shape*> s {};
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printlm("Creating Cirlces...");
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for (int i = 0; i <= 10; ++i) s.push_back(new Circle(Point(0, i), 10));
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printlm("Circles with the point (5, 12) within them:");
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for (int i = 0; i < s.size(); i++) if (s[i]->contains(Point(5, 12))) printlm(i);
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printlm("Destroying Circles...");
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while (s.size() > 0) {delete s.back(); s.pop_back();}
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Circle c {Poi}
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return 0;
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}
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