Test without Raylib
This commit is contained in:
		
							
								
								
									
										6
									
								
								Makefile
									
									
									
									
									
								
							
							
						
						
									
										6
									
								
								Makefile
									
									
									
									
									
								
							@@ -1,6 +1,8 @@
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CC            = clang
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					CC            = clang
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CFLAGS        = -g -O3 -Iraylib/include -Iwapp/src
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					# CFLAGS        = -g -O3 -Iraylib/include -Iwapp/src
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LDFLAGS       = '-Wl,-rpath,$$ORIGIN/raylib/lib' -Lraylib/lib -lraylib -lm -lpthread
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					# LDFLAGS       = '-Wl,-rpath,$$ORIGIN/raylib/lib' -Lraylib/lib -lraylib -lm -lpthread
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					CFLAGS        = -g -O3 -Iwapp/src
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					LDFLAGS       = -lm
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BASEDIR       = $(shell realpath ./)
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					BASEDIR       = $(shell realpath ./)
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RL_SRCDIR     = ${BASEDIR}/raylib-src/src
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					RL_SRCDIR     = ${BASEDIR}/raylib-src/src
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RL_BUILDDIR   = ${BASEDIR}/raylib-build
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					RL_BUILDDIR   = ${BASEDIR}/raylib-build
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										1
									
								
								common.h
									
									
									
									
									
								
							
							
						
						
									
										1
									
								
								common.h
									
									
									
									
									
								
							@@ -17,6 +17,7 @@
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#define WANDERER_SLOWDOWN_FACTOR 0.5f
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					#define WANDERER_SLOWDOWN_FACTOR 0.5f
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#define WANDERER_SPEEDUP_FACTOR 2.0f
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					#define WANDERER_SPEEDUP_FACTOR 2.0f
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#define MSG_BUF_LEN 4096
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					#define MSG_BUF_LEN 4096
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					#define LINE_BUF_LEN 1024
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#define abs(A) (A < 0 ? A * -1 : A)
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					#define abs(A) (A < 0 ? A * -1 : A)
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#define min(A, B) (A < B ? A : B)
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					#define min(A, B) (A < B ? A : B)
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										155
									
								
								dod.c
									
									
									
									
									
								
							
							
						
						
									
										155
									
								
								dod.c
									
									
									
									
									
								
							@@ -1,14 +1,11 @@
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#include "wapp.h"
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					#include "wapp.h"
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#include "common.h"
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					#include "common.h"
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#include "raylib.h"
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					 | 
				
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#include <math.h>
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					#include <math.h>
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#include <stdint.h>
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					#include <stdint.h>
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#include <stdbool.h>
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					#include <stdbool.h>
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#include <assert.h>
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					#include <assert.h>
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#include <string.h>
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					#include <string.h>
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#include <pthread.h>
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					#include <time.h>
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#define THREAD_COUNT 4
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#define MOVABLE_TAG_SHIFT     0
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					#define MOVABLE_TAG_SHIFT     0
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#define RENDERABLE_TAG_SHIFT  1
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					#define RENDERABLE_TAG_SHIFT  1
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@@ -60,20 +57,8 @@ struct Manager {
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  u64      count;
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					  u64      count;
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};
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					};
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typedef struct PositionThreadArgs PositionThreadArgs;
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struct PositionThreadArgs {
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  const Rect *zones;
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  Rect       *rects;
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  Velocity   *velocities;
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  u8         *tags;
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  u64        count;
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  f32        delta;
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};
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typedef void *(*PThreadRoutine)(void *);
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typedef void (*ScaleInitialiser)(Scale *scale, XOR256State *state);
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					typedef void (*ScaleInitialiser)(Scale *scale, XOR256State *state);
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typedef void (*VelocityInitialiser)(Velocity *velocity, XOR256State *state);
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					typedef void (*VelocityInitialiser)(Velocity *velocity, XOR256State *state);
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typedef void (*RaylibDrawRectFunc)(int posX, int posY, int width, int height, Color color);
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void init_manager(const Allocator *allocator, Manager *manager);
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					void init_manager(const Allocator *allocator, Manager *manager);
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void init_position(Position *position, XOR256State *state);
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					void init_position(Position *position, XOR256State *state);
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@@ -82,18 +67,13 @@ void init_scale_zone(Scale *scale, XOR256State *state);
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void init_velocity(Velocity *velocity, XOR256State *state);
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					void init_velocity(Velocity *velocity, XOR256State *state);
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void zero_velocity(Velocity *velocity, XOR256State *state);
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					void zero_velocity(Velocity *velocity, XOR256State *state);
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void update_positions(u8 *tags, Rect *rects, Velocity *velocities, u64 count, f32 delta);
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					void update_positions(u8 *tags, Rect *rects, Velocity *velocities, u64 count, f32 delta);
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void *update_position_thread(PositionThreadArgs *args);
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void render_entities(const u8 *tags, const Rect *rects, u64 count);
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					void render_entities(const u8 *tags, const Rect *rects, u64 count);
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u8 collides(const Rect *rect, const Rect *collider);
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					u8 collides(const Rect *rect, const Rect *collider);
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i16 get_random_velocity(XOR256State *state);
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					i16 get_random_velocity(XOR256State *state);
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					void log_data(const Rect *rects, u64 count, FILE *fp, char *line);
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int main(void) {
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					int main(void) {
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  i32 target_fps = 120;
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  SetTraceLogLevel(LOG_NONE);
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  InitWindow(WIDTH, HEIGHT, "DOD test");
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  SetTargetFPS(target_fps);
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  Allocator arena = wapp_mem_arena_allocator_init(MB(20));
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					  Allocator arena = wapp_mem_arena_allocator_init(MB(20));
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  assert(!wapp_mem_allocator_invalid(&arena));
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					  assert(!wapp_mem_allocator_invalid(&arena));
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@@ -116,35 +96,24 @@ int main(void) {
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    velocity_initialisers[is_zone](&(manager.velocities[i]), &state);
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					    velocity_initialisers[is_zone](&(manager.velocities[i]), &state);
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  }
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					  }
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  f32 last_time = GetFrameTime();
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					  FILE *fp = fopen("dod.out", "w");
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  f32 delta, cur_time;
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					  assert(fp != NULL);
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  while (!WindowShouldClose()) {
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    f64 time = GetTime();
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    if (time >= 20.0) {
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      break;
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    }
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    cur_time = GetFrameTime();
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    delta    = cur_time - last_time;
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					  time_t start   = time(NULL);
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					  time_t elapsed = (time_t)-1;
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					  f32 delta = 0.016666666f;
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					  while (elapsed < 20) {
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    update_positions(manager.tags, manager.rects, manager.velocities, manager.count, delta);
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					    update_positions(manager.tags, manager.rects, manager.velocities, manager.count, delta);
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    BeginDrawing();
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					    char line[LINE_BUF_LEN] = {0};
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    ClearBackground(BG_COLOR);
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					    log_data(manager.rects, manager.count, fp, line);
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    render_entities(manager.tags, manager.rects, manager.count);
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					    elapsed = time(NULL) - start;
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    DrawFPS(10, 10);
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    EndDrawing();
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  }
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					  }
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  wapp_mem_arena_allocator_destroy(&arena);
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					  wapp_mem_arena_allocator_destroy(&arena);
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  CloseWindow();
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  return 0;
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					  return 0;
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}
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					}
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@@ -199,46 +168,6 @@ void zero_velocity(Velocity *velocity, XOR256State *state) {
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}
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					}
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void update_positions(u8 *tags, Rect *rects, Velocity *velocities, u64 count, f32 delta) {
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					void update_positions(u8 *tags, Rect *rects, Velocity *velocities, u64 count, f32 delta) {
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  persistent pthread_t threads[THREAD_COUNT]       = {0};
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  persistent PositionThreadArgs args[THREAD_COUNT] = {0};
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  u64 total_entities_count  = count - ZONE_COUNT;
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  u64 thread_entities_count = (u64)(ceil((f64)total_entities_count / THREAD_COUNT));
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  i32 result;
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  u64 start = ZONE_COUNT;
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  u64 end, args_count;
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  for (u64 i = 0; i < THREAD_COUNT; ++i) {
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    if (total_entities_count > thread_entities_count) {
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      end = start + thread_entities_count;
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      total_entities_count -= thread_entities_count;
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    } else {
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      end = start + total_entities_count;
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      total_entities_count = 0;
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    }
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    args_count = end - start;
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    args[i].zones      = &(rects[0]);
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    args[i].tags       = &(tags[start]);
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    args[i].rects      = &(rects[start]);
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    args[i].velocities = &(velocities[start]);
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    args[i].count      = args_count;
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    args[i].delta      = delta;
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    start += args_count;
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    result = pthread_create(&(threads[i]), NULL, (PThreadRoutine)update_position_thread, (void *)&(args[i]));
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    assert(result == 0);
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  }
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  for (u64 i = 0; i < THREAD_COUNT; ++i) {
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    pthread_join(threads[i], NULL);
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  }
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}
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void *update_position_thread(PositionThreadArgs *args) {
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  persistent f32 multipliers[2] = {1.0f, 0.5f};
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					  persistent f32 multipliers[2] = {1.0f, 0.5f};
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  persistent u64 inside_zone_mask = 0x7;
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					  persistent u64 inside_zone_mask = 0x7;
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@@ -246,52 +175,32 @@ void *update_position_thread(PositionThreadArgs *args) {
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  f32 pos_x, pos_y;
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					  f32 pos_x, pos_y;
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  f32 max_x, max_y;
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					  f32 max_x, max_y;
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  for (u64 i = 0; i < args->count; ++i) {
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					  for (u64 i = ZONE_COUNT; i < count; ++i) {
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    args->tags[i] &= inside_zone_mask;
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					    tags[i] &= inside_zone_mask;
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    for (u64 j = 0; j < ZONE_COUNT; ++j) {
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					    for (u64 j = 0; j < ZONE_COUNT; ++j) {
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      args->tags[i] |= collides(&args->rects[i], &args->zones[j]) << INSIDE_ZONE_TAG_SHIFT;
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					      tags[i] |= collides(&rects[i], &rects[j]) << INSIDE_ZONE_TAG_SHIFT;
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    }
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					    }
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    index = (args->tags[i] & ENTITY_TAG_INSIDE_ZONE) >> INSIDE_ZONE_TAG_SHIFT;
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					    index = (tags[i] & ENTITY_TAG_INSIDE_ZONE) >> INSIDE_ZONE_TAG_SHIFT;
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    max_x = WIDTH - args->rects[i].scale.width;
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					    max_x = WIDTH - rects[i].scale.width;
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    max_y = HEIGHT - args->rects[i].scale.height;
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					    max_y = HEIGHT - rects[i].scale.height;
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    pos_x = args->rects[i].position.x + args->velocities[i].x * multipliers[index] * args->delta;
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					    pos_x = rects[i].position.x + velocities[i].x * multipliers[index] * delta;
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    pos_y = args->rects[i].position.y + args->velocities[i].y * multipliers[index] * args->delta;
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					    pos_y = rects[i].position.y + velocities[i].y * multipliers[index] * delta;
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    if (pos_x < 0 || pos_x >= max_x) {
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					    if (pos_x < 0 || pos_x >= max_x) {
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      pos_x = min(max(pos_x, 0), max_x);
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					      pos_x = min(max(pos_x, 0), max_x);
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      args->velocities[i].x *= -1;
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					      velocities[i].x *= -1;
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    }
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					    }
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    if (pos_y < 0 || pos_y >= max_y) {
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					    if (pos_y < 0 || pos_y >= max_y) {
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      pos_y = min(max(pos_y, 0), max_y);
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					      pos_y = min(max(pos_y, 0), max_y);
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      args->velocities[i].y *= -1;
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					      velocities[i].y *= -1;
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    }
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					    }
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    args->rects[i].position.x = roundf(pos_x);
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					    rects[i].position.x = roundf(pos_x);
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    args->rects[i].position.y = roundf(pos_y);
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					    rects[i].position.y = roundf(pos_y);
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  }
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  return args;
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}
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void render_entities(const u8 *tags, const Rect *rects, u64 count) {
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  persistent RaylibDrawRectFunc renderers[2] = {DrawRectangle, DrawRectangleLines};
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  persistent Color colors[2]                 = {FG_COLOR, ZONE_COLOR};
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  for (u64 i = 0; i < count; ++i) {
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    u8 func_index  = (tags[i] & ENTITY_TAG_COLLIDER) >> COLLIDER_TAG_SHIFT;
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    u8 color_index = func_index | ((tags[i] & ENTITY_TAG_INSIDE_ZONE) >> INSIDE_ZONE_TAG_SHIFT);
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    renderers[func_index](
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      rects[i].position.x,
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      rects[i].position.y,
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      rects[i].scale.width,
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      rects[i].scale.height,
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      colors[color_index]
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    );
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  }
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					  }
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}
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					}
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@@ -313,3 +222,19 @@ u8 collides(const Rect *rect, const Rect *collider) {
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i16 get_random_velocity(XOR256State *state) {
 | 
					i16 get_random_velocity(XOR256State *state) {
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  return (wapp_prng_xorshift_256(state) % (MAX_ABS_VELOCITY + 1 - MIN_ABS_VELOCITY)) + MIN_ABS_VELOCITY;
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					  return (wapp_prng_xorshift_256(state) % (MAX_ABS_VELOCITY + 1 - MIN_ABS_VELOCITY)) + MIN_ABS_VELOCITY;
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}
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					}
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 | 
					void log_data(const Rect *rects, u64 count, FILE *fp, char *line) {
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 | 
					  for (u64 i = 0; i < count; ++i) {
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					    snprintf(
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					      line, LINE_BUF_LEN,
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 | 
					      "x: %d, y: %d, width: %d, height: %d\n",
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			||||||
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					      rects[i].position.x,
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					      rects[i].position.y,
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					      rects[i].scale.width,
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 | 
					      rects[i].scale.height
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 | 
					    );
 | 
				
			||||||
 | 
					    u64 size = strlen(line);
 | 
				
			||||||
 | 
					    fwrite(line, sizeof(char), size, fp);
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			||||||
 | 
					    memset(line, 0, size);
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			||||||
 | 
					  }
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			||||||
 | 
					}
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										69
									
								
								no_dod.c
									
									
									
									
									
								
							
							
						
						
									
										69
									
								
								no_dod.c
									
									
									
									
									
								
							@@ -1,9 +1,10 @@
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#include "wapp.h"
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					#include "wapp.h"
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#include "common.h"
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					#include "common.h"
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#include "raylib.h"
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#include <stdint.h>
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					#include <stdint.h>
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#include <stdbool.h>
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					#include <stdbool.h>
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#include <assert.h>
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					#include <assert.h>
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					#include <time.h>
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					#include <stdio.h>
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#define OBJECT_COMMON struct {Position position; Scale scale;}
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					#define OBJECT_COMMON struct {Position position; Scale scale;}
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@@ -39,19 +40,11 @@ struct SlowZone {
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void init_wanderer(Wanderer *wanderer, XOR256State *state);
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					void init_wanderer(Wanderer *wanderer, XOR256State *state);
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void move_wanderer(Wanderer *wanderer, const SlowZone *zones);
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					void move_wanderer(Wanderer *wanderer, const SlowZone *zones);
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void render_wanderer(const Wanderer *wanderer);
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void init_slow_zone(SlowZone *zone,  XOR256State *state);
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					void init_slow_zone(SlowZone *zone,  XOR256State *state);
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void render_slow_zone(const SlowZone *zone);
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bool inside_zone(const Wanderer *wanderer, const SlowZone *zone);
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					bool inside_zone(const Wanderer *wanderer, const SlowZone *zone);
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f32 get_random_float(XOR256State *state);
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					f32 get_random_float(XOR256State *state);
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int main(void) {
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					int main(void) {
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  SetTraceLogLevel(LOG_NONE);
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  InitWindow(WIDTH, HEIGHT, "No-DOD test");
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  SetTargetFPS(120);
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  Allocator arena       = wapp_mem_arena_allocator_init(MB(20));
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					  Allocator arena       = wapp_mem_arena_allocator_init(MB(20));
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  XOR256State state     = wapp_prng_xorshift_init_state();
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					  XOR256State state     = wapp_prng_xorshift_init_state();
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  u64 wanderers_size    = sizeof(Wanderer) * WANDERER_COUNT;
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					  u64 wanderers_size    = sizeof(Wanderer) * WANDERER_COUNT;
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@@ -70,37 +63,38 @@ int main(void) {
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    init_slow_zone(&(zones[i]),&state);
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					    init_slow_zone(&(zones[i]),&state);
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  }
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					  }
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  while (!WindowShouldClose()) {
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					  FILE *fp = fopen("no_dod.out", "w");
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    f64 time = GetTime();
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					  assert(fp != NULL);
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    if (time >= 20.0) {
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      break;
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    }
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					  time_t start   = time(NULL);
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					  time_t elapsed = (time_t)-1;
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					  while (elapsed < 20) {
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    for (u64 i = 0; i < WANDERER_COUNT; ++i) {
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					    for (u64 i = 0; i < WANDERER_COUNT; ++i) {
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      move_wanderer(&(wanderers[i]), zones);
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					      move_wanderer(&(wanderers[i]), zones);
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    }
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					    }
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    BeginDrawing();
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					    char line[LINE_BUF_LEN] = {0};
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    ClearBackground(BG_COLOR);
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    for (u64 i = 0; i < ZONE_COUNT; ++i) {
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      render_slow_zone(&(zones[i]));
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    }
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    for (u64 i = 0; i < WANDERER_COUNT; ++i) {
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					    for (u64 i = 0; i < WANDERER_COUNT; ++i) {
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      render_wanderer(&(wanderers[i]));
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					      snprintf(
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					        line, LINE_BUF_LEN,
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					        "x: %f, y: %f, width: %f, height: %f\n",
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					        wanderers[i].position.x,
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					        wanderers[i].position.y,
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					        wanderers[i].scale.width,
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					        wanderers[i].scale.height
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					      );
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					      u64 size = strlen(line);
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					      fwrite(line, sizeof(char), size, fp);
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					      memset(line, 0, size);
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    }
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					    }
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    DrawFPS(10, 10);
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					    elapsed = time(NULL) - start;
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    EndDrawing();
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  }
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					  }
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					  fclose(fp);
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  wapp_mem_arena_allocator_destroy(&arena);
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					  wapp_mem_arena_allocator_destroy(&arena);
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  CloseWindow();
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  return 0;
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					  return 0;
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}
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					}
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@@ -157,17 +151,6 @@ void move_wanderer(Wanderer *wanderer, const SlowZone *zones) {
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  }
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					  }
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}
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					}
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void render_wanderer(const Wanderer *wanderer) {
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  Color color = wanderer->slow ? ZONE_COLOR : FG_COLOR;
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  DrawRectangle(
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    (i32)wanderer->position.x,
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    (i32)wanderer->position.y,
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    (i32)wanderer->scale.width,
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    (i32)wanderer->scale.height,
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    color
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  );
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}
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void init_slow_zone(SlowZone *zone,  XOR256State *state) {
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					void init_slow_zone(SlowZone *zone,  XOR256State *state) {
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  zone->position = (Position){
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					  zone->position = (Position){
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    .x = wapp_prng_xorshift_256(state) % WIDTH,
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					    .x = wapp_prng_xorshift_256(state) % WIDTH,
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@@ -180,16 +163,6 @@ void init_slow_zone(SlowZone *zone,  XOR256State *state) {
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  };
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					  };
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}
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					}
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void render_slow_zone(const SlowZone *zone) {
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  DrawRectangleLines(
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    zone->position.x,
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    zone->position.y,
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    zone->scale.width,
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    zone->scale.height,
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    ZONE_COLOR
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  );
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}
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bool inside_zone(const Wanderer *wanderer, const SlowZone *zone) {
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					bool inside_zone(const Wanderer *wanderer, const SlowZone *zone) {
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  f32 wanderer_min_x = wanderer->position.x + wanderer->scale.width;
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					  f32 wanderer_min_x = wanderer->position.x + wanderer->scale.width;
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  f32 wanderer_min_y = wanderer->position.y + wanderer->scale.height;
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					  f32 wanderer_min_y = wanderer->position.y + wanderer->scale.height;
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