World: Introduce a struct for raycast results
In order to implement more complexe behaviors, more information than the distance is needed from a raycast. Add a new struct to store and return this information, currently hit position and hit type, and update castRay to return that instead.
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3492cfa63d
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9678e8c286
2 changed files with 27 additions and 5 deletions
20
World.cpp
20
World.cpp
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@ -99,7 +99,7 @@ std::ostream& operator<<(std::ostream& ostream, World const& world)
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return(ostream);
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}
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float World::castRay(float originX, float originY, float orientation) const
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RaycastResult World::castRay(float originX, float originY, float orientation) const
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{
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/*
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* Reference used for ray intersection computations :
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@ -214,7 +214,21 @@ float World::castRay(float originX, float originY, float orientation) const
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float vDist = sqrtf((originX - vCheckX)*(originX - vCheckX) +
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(originY - vCheckY)*(originY - vCheckY));
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return hDist > vDist ? vDist : hDist;
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RaycastResult result{};
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if (hDist > vDist) {
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result.distance = vDist;
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result.hitX = vCheckX;
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result.hitY = vCheckY;
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} else {
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result.distance = hDist;
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result.hitX = hCheckX;
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result.hitY = hCheckY;
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}
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result.hitBlock = getBlock(floorf(result.hitX) + vRound,
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floorf(result.hitY));
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return result;
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}
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void World::fillColumn(sf::RenderWindow& window, unsigned int column,
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@ -268,7 +282,7 @@ void World::render(sf::RenderWindow& window)
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rayAngle -= 360;
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}
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float obstacleScale = worldToCamera / (
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castRay(player.x, player.y, rayAngle) *
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castRay(player.x, player.y, rayAngle).distance *
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cosf(deltaAngle*deg_to_rad)
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);
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/* 2 Is wall height in meters. */
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12
World.h
12
World.h
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@ -9,6 +9,7 @@
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#include <ostream>
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#include <SFML/Graphics.hpp>
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#include <iostream>
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#include <optional>
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#include "Color.h"
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#include "Player.h"
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@ -20,6 +21,13 @@ enum class BlockType {
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WINDOW,
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};
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struct RaycastResult {
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float distance;
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float hitX;
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float hitY;
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BlockType hitBlock;
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};
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class World {
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public:
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Player player;
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@ -61,9 +69,9 @@ private:
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* @param originX Ray X origin, strictly positive
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* @param originY Ray Y origin, strictly positive
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* @param orientation Angle to cast to, in degrees between 0 and 360
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* @return Distance of the hit to the origin.
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* @return Result struct containing information on the hit.
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*/
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float castRay(float originX, float originY, float orientation) const;
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RaycastResult castRay(float originX, float originY, float orientation) const;
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};
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