Add acceleration and deceleration to MovementComponent
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@ -16,11 +16,15 @@ namespace simpleengine {
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class MovementComponent : public Component {
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class MovementComponent : public Component {
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public:
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public:
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MovementComponent(Entity& owning_entity, float movement_speed);
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MovementComponent(Entity& owning_entity, float max_velocity, float acceleration = 7, float deceleration = 2.5);
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void Move(const float &delta_time, const float& dir_x, const float& dir_y);
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void Update(const float &delta_time) override;
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void Update(const float &delta_time) override;
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private:
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private:
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float movement_speed;
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float max_velocity;
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sf::Vector2f velocity;
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float acceleration;
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float deceleration;
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};
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};
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}
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}
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@ -25,7 +25,9 @@ namespace simpleengine {
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virtual ~Entity() = default;
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virtual ~Entity() = default;
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Entity(const Entity& entity) = delete;
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Entity(const Entity& entity) = delete;
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virtual void Move(const float& delta_time, const float& x, const float& y) {};
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virtual void Move(const float& delta_time, const float& dir_x, const float& dir_y) {};
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virtual void Move(const float& delta_time, const sf::Vector2f& offset) {};
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virtual void Move(const sf::Vector2f& offset) {};
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virtual void Update(const float& delta_time) = 0;
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virtual void Update(const float& delta_time) = 0;
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virtual void Render(sf::RenderTarget* target) = 0;
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virtual void Render(sf::RenderTarget* target) = 0;
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@ -27,7 +27,7 @@ namespace simpleengine {
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entity->Update(delta_time);
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entity->Update(delta_time);
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if (entity->IsGettingDestroyed()) {
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if (entity->IsGettingDestroyed()) {
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entity->DestroyLater();
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quit = true;
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}
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}
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}
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}
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@ -5,29 +5,133 @@
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//
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//
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#include "components/movement/movement_component.h"
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#include "components/movement/movement_component.h"
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#include <utility>
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#include "entity.h"
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#include "entity.h"
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simpleengine::MovementComponent::MovementComponent(Entity& owning_entity, float movement_speed) :
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#include <algorithm>
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Component(owning_entity), movement_speed(movement_speed) {
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#include <iostream>
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simpleengine::MovementComponent::MovementComponent(Entity& owning_entity, float max_velocity, float acceleration, float deceleration) :
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Component(owning_entity), max_velocity(max_velocity), acceleration(acceleration), deceleration(deceleration) {
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}
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void simpleengine::MovementComponent::Move(const float &delta_time, const float& dir_x, const float& dir_y) {
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// Acceleration
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velocity.x += acceleration * dir_x;
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// Limit the horizontal velocity
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if (velocity.x > 0) { // Right
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velocity.x = std::min(velocity.x, max_velocity);
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} else if (velocity.x < 0) { // Left
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velocity.x = std::max(velocity.x, -max_velocity);
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}
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velocity.y += acceleration * dir_y;
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// Limit the vertical velocity
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if (velocity.y > 0) { // Up
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velocity.y = std::min(velocity.y, max_velocity);
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} else if (velocity.y < 0) { // Down
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velocity.y = std::max(velocity.y, -max_velocity);
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}
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// Limit total velocity
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float y_sq = velocity.y * velocity.y;
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float x_sq = velocity.x * velocity.x;
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float abs_sq = y_sq + x_sq;
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if (abs_sq > max_velocity * max_velocity) {
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float abs = sqrt(abs_sq);
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velocity.x *= max_velocity / abs;
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velocity.y *= max_velocity / abs;
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}
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owning_entity.Move(velocity * delta_time);
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}
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}
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void simpleengine::MovementComponent::Update(const float &delta_time) {
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void simpleengine::MovementComponent::Update(const float &delta_time) {
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sf::Vector2f direction;
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if (sf::Keyboard::isKeyPressed(sf::Keyboard::A)) {
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if (sf::Keyboard::isKeyPressed(sf::Keyboard::A)) {
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owning_entity.Move(delta_time, -1, 0);
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direction.x = -1;
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}
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}
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if (sf::Keyboard::isKeyPressed(sf::Keyboard::W)) {
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if (sf::Keyboard::isKeyPressed(sf::Keyboard::W)) {
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owning_entity.Move(delta_time, 0, -1);
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direction.y = -1;
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}
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}
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if (sf::Keyboard::isKeyPressed(sf::Keyboard::D)) {
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if (sf::Keyboard::isKeyPressed(sf::Keyboard::D)) {
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owning_entity.Move(delta_time, 1, 0);
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direction.x = 1;
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}
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}
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if (sf::Keyboard::isKeyPressed(sf::Keyboard::S)) {
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if (sf::Keyboard::isKeyPressed(sf::Keyboard::S)) {
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owning_entity.Move(delta_time, 0, 1);
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direction.y = 1;
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}
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//std::cout << "Speed: " << velocity.x << ", " << velocity.y << std::endl;
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// If we're not moving from deceleration or player input, then reset velocity.
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bool no_movement = true;
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if (direction.y != 0 || direction.x == 0) {
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if (velocity.y > 0) {
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if (velocity.y > max_velocity) {
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velocity.y = max_velocity;
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}
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velocity.y -= deceleration;
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if (velocity.y < 0) {
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velocity.y = 0;
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}
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owning_entity.Move(velocity * delta_time);
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no_movement = false;
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} else if (velocity.y < 0) {
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if (velocity.y < -max_velocity) {
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velocity.y = -max_velocity;
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}
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velocity.y += deceleration;
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if (velocity.y > 0) {
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velocity.y = 0;
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}
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owning_entity.Move(velocity * delta_time);
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no_movement = false;
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}
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}
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if (direction.x != 0 || direction.y == 0) {
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if (velocity.x > 0) {
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if (velocity.x > max_velocity) {
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velocity.x = max_velocity;
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}
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velocity.x -= deceleration;
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if (velocity.x < 0) {
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velocity.x = 0;
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}
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owning_entity.Move(velocity * delta_time);
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no_movement = false;
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} else if (velocity.x < 0) {
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if (velocity.x < -max_velocity) {
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velocity.x = -max_velocity;
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}
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velocity.x += deceleration;
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if (velocity.x > 0) {
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velocity.x = 0;
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}
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owning_entity.Move(velocity * delta_time);
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no_movement = false;
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}
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}
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if (direction.x != 0 || direction.y != 0) {
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Move(delta_time, direction.x, direction.y);
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no_movement = false;
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}
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if (no_movement) {
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velocity = sf::Vector2f();
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}
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}
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}
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}
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