initial commit
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# Prerequisites
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*.d
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# Compiled Object files
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*.slo
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*.lo
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*.o
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*.obj
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# Precompiled Headers
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*.gch
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*.pch
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# Linker files
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*.ilk
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# Debugger Files
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*.pdb
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# Compiled Dynamic libraries
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*.so
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*.dylib
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*.dll
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*.so.*
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# Fortran module files
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*.mod
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*.smod
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# Compiled Static libraries
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*.lai
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*.la
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*.a
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*.lib
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# Executables
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*.exe
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*.out
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*.app
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# Build directories
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build/
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Build/
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build-*/
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# CMake generated files
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CMakeFiles/
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CMakeCache.txt
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cmake_install.cmake
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Makefile
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install_manifest.txt
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compile_commands.json
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# Temporary files
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*.tmp
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*.log
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*.bak
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*.swp
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# vcpkg
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vcpkg_installed/
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# debug information files
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*.dwo
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# test output & cache
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Testing/
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.cache/
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.vscode/
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@@ -0,0 +1,17 @@
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#ifndef DELTA_ENTITY
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#define DELTA_ENTITY
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#include "renderer/camera.hpp"
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#include "math.hpp"
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class DeltaEntity {
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public:
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DeltaVector3 pos;
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DeltaVector2 angle;
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DeltaEntity(float x, float y, float z);
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void draw(DeltaCamera camera);
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void update(float deltaTime);
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};
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#endif
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@@ -0,0 +1,8 @@
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#ifndef DELTA_GLOBALS
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#define DELTA_GLOBALS
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const int SIMULATED_WIDTH = 1200;
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const int SIMULATED_HEIGHT = 800;
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const int FOCAL = 200;
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#endif
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@@ -0,0 +1,35 @@
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#ifndef DELTA_MATH
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#define DELTA_MATH
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class DeltaVector2 {
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public:
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float x, y;
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DeltaVector2(float xval, float yval);
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DeltaVector2();
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DeltaVector2 operator+(const DeltaVector2& other) const;
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DeltaVector2 operator-(const DeltaVector2& other) const;
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DeltaVector2 operator*(float a) const;
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DeltaVector2& operator+=(const DeltaVector2& other);
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DeltaVector2& operator-=(const DeltaVector2& other);
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float distanceToVector(const DeltaVector2& vec) const;
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float distanceToPos(float x, float y) const;
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float dotProduct(const DeltaVector2& vec) const;
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float angleTo(const DeltaVector2& vec) const;
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float length() const;
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};
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class DeltaVector3 {
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public:
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float x, y, z;
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DeltaVector3(float xval, float yval, float zval);
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DeltaVector3();
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float distanceToVector(const DeltaVector3 &vec) const;
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float distanceToPos(float x, float y) const;
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float dotProduct(const DeltaVector3 &vec) const;
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float angleTo(const DeltaVector3 &vec) const;
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float length() const;
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};
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float getDeterminant(const DeltaVector2 &pointA, const DeltaVector2 &pointB, const DeltaVector2 &candidate);
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#endif
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@@ -0,0 +1,10 @@
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#ifndef DELTA_RENDERCALLS
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#define DELTA_RENDERCALLS
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#include <SDL3/SDL.h>
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#include "math.hpp"
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void rasterizeTriangle(SDL_Renderer *renderer, const DeltaVector2 &a, const DeltaVector2 &b, const DeltaVector2 &c);
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#endif
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@@ -0,0 +1,16 @@
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#ifndef DELTA_CAMERA
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#define DELTA_CAMERA
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#include "math.hpp"
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class DeltaCamera {
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public:
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DeltaVector3 pos;
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DeltaVector2 angle;
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DeltaCamera(float x, float y, float z);
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DeltaVector2 projectPointVec(const DeltaVector3 &worldPos);
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DeltaVector2 projectPoint(float worldX, float worldY, float worldZ);
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};
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#endif
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@@ -0,0 +1,5 @@
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clang++ -c src/*.cpp -I/opt/homebrew/include -Iinclude/
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clang++ -c src/**/*.cpp -I/opt/homebrew/include -Iinclude/
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clang++ *.o -L/opt/homebrew/lib -Wl,-rpath,/opt/homebrew/lib -lSDL3 -o out/debug.bin
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rm ./*.o
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./out/debug.bin
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@@ -0,0 +1,64 @@
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#define SDL_MAIN_USE_CALLBACKS 1
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#include <SDL3/SDL.h>
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#include <SDL3/SDL_main.h>
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#include <cmath>
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#include <algorithm>
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#include "globals.hpp"
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#include "math.hpp"
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#include "renderer/camera.hpp"
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#include "renderer/calls.hpp"
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static SDL_Window *window = NULL;
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static SDL_Renderer *renderer = NULL;
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DeltaVector2 temp1(125, 150), temp2(150, 120), temp3(100, 100);
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DeltaVector2 topleft, bottomright, p;
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SDL_AppResult SDL_AppInit(void **appstate, int argc, char *argv[])
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{
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SDL_SetAppMetadata("delta engine game", "0.0", "com.miletici.game");
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if (!SDL_Init(SDL_INIT_VIDEO)) {
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SDL_Log("Couldn't initialize SDL: %s", SDL_GetError());
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return SDL_APP_FAILURE;
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}
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if (!SDL_CreateWindowAndRenderer("game", SIMULATED_WIDTH, SIMULATED_HEIGHT, 0, &window, &renderer)) {
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SDL_Log("Couldn't create window/renderer: %s", SDL_GetError());
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return SDL_APP_FAILURE;
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}
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SDL_SetRenderLogicalPresentation(renderer, 640, 480, SDL_LOGICAL_PRESENTATION_LETTERBOX);
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return SDL_APP_CONTINUE; /* carry on with the program! */
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}
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SDL_AppResult SDL_AppEvent(void *appstate, SDL_Event *event)
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{
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if (event->type == SDL_EVENT_QUIT) {
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return SDL_APP_SUCCESS;
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}
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return SDL_APP_CONTINUE;
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}
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SDL_AppResult SDL_AppIterate(void *appstate)
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{
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const double now = ((double)SDL_GetTicks()) / 1000.0;
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SDL_SetRenderDrawColor(renderer, 0, 0, 0, SDL_ALPHA_OPAQUE_FLOAT);
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SDL_RenderClear(renderer);
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SDL_SetRenderDrawColor(renderer, 255, 0, 255, SDL_ALPHA_OPAQUE);
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rasterizeTriangle(renderer, temp1, temp2, temp3);
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SDL_RenderPresent(renderer);
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return SDL_APP_CONTINUE;
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}
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void SDL_AppQuit(void *appstate, SDL_AppResult result)
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{
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}
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@@ -0,0 +1,87 @@
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#include <SDL3/SDL.h>
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#include <SDL3/SDL_main.h>
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#include <cmath>
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#include "math.hpp"
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// DeltaVector2
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DeltaVector2::DeltaVector2(float xval, float yval) {
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x = xval;
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y = yval;
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}
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float DeltaVector2::length() const {
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return std::sqrt(x * x + y * y);
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}
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float DeltaVector2::dotProduct(const DeltaVector2& vec) const {
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return x * vec.x + y * vec.y;
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}
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float DeltaVector2::angleTo(const DeltaVector2& vec) const {
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return std::acos(dotProduct(vec)) / (length() * vec.length());
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}
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DeltaVector2::DeltaVector2() {
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x = 0;
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y = 0;
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}
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DeltaVector2 DeltaVector2::operator+(const DeltaVector2& other) const {
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return DeltaVector2(x + other.x, y + other.y);
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}
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DeltaVector2 DeltaVector2::operator-(const DeltaVector2& other) const {
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return DeltaVector2(x - other.x, y - other.y);
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}
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DeltaVector2 DeltaVector2::operator*(float a) const {
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return DeltaVector2(x * a, y * a);
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}
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DeltaVector2& DeltaVector2::operator+=(const DeltaVector2& other) {
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x += other.x;
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y += other.y;
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return *this;
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}
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DeltaVector2& DeltaVector2::operator-=(const DeltaVector2& other) {
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x -= other.x;
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y -= other.y;
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return *this;
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}
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// DeltaVector3
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DeltaVector3::DeltaVector3() {
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x = 0;
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y = 0;
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z = 0;
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}
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DeltaVector3::DeltaVector3(float xval, float yval, float zval) {
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x = xval;
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y = yval;
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z = zval;
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}
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float DeltaVector3::length() const {
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return std::sqrt(x * x + y * y + z * z);
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}
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float DeltaVector3::dotProduct(const DeltaVector3 &vec) const {
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return x * vec.x + y * vec.y + z * vec.z;
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}
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float DeltaVector3::angleTo(const DeltaVector3 &vec) const {
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return std::acos(dotProduct(vec)) / (length() * vec.length());
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}
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float getDeterminant(const DeltaVector2 &pointA, const DeltaVector2 &pointB, const DeltaVector2 &candidate) {
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DeltaVector2 ab = pointB - pointA;
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DeltaVector2 ac = candidate - pointA;
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return (ab.y * ac.x) - (ab.x * ac.y);
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}
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@@ -0,0 +1,24 @@
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#include <SDL3/SDL.h>
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#include <SDL3/SDL_main.h>
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#include <algorithm>
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#include "renderer/calls.hpp"
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void rasterizeTriangle(SDL_Renderer *renderer, const DeltaVector2 &a, const DeltaVector2 &b, const DeltaVector2 &c) {
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DeltaVector2 begin, end, p;
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begin.x = std::min(a.x, std::min(b.x, c.x));
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begin.y = std::min(a.y, std::min(b.y, c.y));
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end.x = std::max(a.x, std::max(b.x, c.x));
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end.y = std::max(a.y, std::max(b.y, c.y));
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for (int y = begin.y; y < end.y; y++) {
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for (int x = begin.x; x < end.x; x++) {
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p.x = x; p.y = y;
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if (getDeterminant(a, b, p) >= 0 && getDeterminant(b, c, p) >= 0 && getDeterminant(c, a, p) >= 0) {
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SDL_RenderPoint(renderer, p.x, p.y);
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}
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}
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}
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}
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@@ -0,0 +1,53 @@
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// please do not touch this code.
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// it is a waste of time looking at this code.
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// please, dont. if you do continue, edit the value below
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// as a warning for future you.
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// hoursWasted = 2
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#include <SDL3/SDL.h>
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#include <SDL3/SDL_main.h>
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#include <cmath>
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#include "renderer/camera.hpp"
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#include "globals.hpp"
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DeltaCamera::DeltaCamera(float x, float y, float z) {
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pos = DeltaVector3(x, y, z);
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angle = DeltaVector2();
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}
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DeltaVector2 DeltaCamera::projectPointVec(const DeltaVector3 &worldPos) {
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DeltaVector3 calculatedPos; DeltaVector2 projected;
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float sineX = std::sin(angle.x);
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float cosineX = std::cos(angle.x);
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float sineY = std::sin(angle.y);
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float cosineY = std::cos(angle.y);
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// yaw translate
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calculatedPos.x = (worldPos.x - pos.x) * cosineX - (worldPos.y - pos.y) * sineX;
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calculatedPos.y = (worldPos.y - pos.y) * cosineX + (worldPos.x - pos.x) * sineX;
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calculatedPos.z = (worldPos.z - pos.z);
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// pitch translate
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calculatedPos.y = calculatedPos.y * cosineY - calculatedPos.z * sineY;
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calculatedPos.z = calculatedPos.y * sineY + calculatedPos.z * cosineY;
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// dont touch calculatedPos.x
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projected.x = calculatedPos.x * FOCAL / calculatedPos.y + SIMULATED_WIDTH / 2;
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projected.y = calculatedPos.y * FOCAL / calculatedPos.y + SIMULATED_HEIGHT / 2;
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// now gotta convert y to our y
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projected.y = SIMULATED_HEIGHT - projected.y;
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// we are done =D
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return projected;
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}
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DeltaVector2 DeltaCamera::projectPoint(float worldX, float worldY, float worldZ) {
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// simple conversion, dont iterate further
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return projectPointVec({ worldX, worldY, worldZ });
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}
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