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6cab255d92
| Author | SHA1 | Date | |
|---|---|---|---|
| 6cab255d92 | |||
| 2920749387 |
22
src/math.hpp
22
src/math.hpp
@@ -102,8 +102,30 @@ static vec2 max2(vec2 const &a, vec2 const &b)
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static vec2 polar_to_vec2(const float angle, const float len)
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{
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// 0 (north) up, PI/2 (east) right
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return {
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.x = len * sinf(angle),
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.y = len * cosf(angle)
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};
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}
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static float vec2_angle(const vec2 v)
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{
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return atan2f(v.x, v.y);
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}
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static float normalize_angle(const float angle)
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{
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float a = angle;
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while (a > 2*M_PIf) a -= 2*M_PIf;
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while (a < 0) a += 2*M_PIf;
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return a;
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}
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static float normalize_angle_diff(const float diff)
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{
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float d = diff;
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while (d > M_PIf) d -= 2*M_PIf;
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while (d < -M_PIf) d += 2*M_PIf;
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return d;
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}
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@@ -1,5 +1,7 @@
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#include "af_spawner.hpp"
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#include <math.h>
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void dxd::sim::AFSpawner::tick(float timestep, World *world)
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{
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(void)timestep;
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@@ -11,7 +13,7 @@ void dxd::sim::AFSpawner::tick(float timestep, World *world)
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//Pos should spawn in a grid, check if free, and offset random from grid coord to look natural
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vec2 pos = {(SDL_randf()-.5f)*2*60.0f, (SDL_randf()-.5f)*2*60.0f};
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Airfield *af = new Airfield(pos, _MIN_AF_TTL + SDL_rand(_MAX_AF_TTL));
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Airfield *af = new Airfield(pos, _MIN_AF_TTL + SDL_rand(_MAX_AF_TTL), SDL_randf()*2*M_PIf);
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world->add_obj(af);
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_airfields.push_back(af);
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}
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@@ -5,6 +5,13 @@ void dxd::sim::Aircraft::tick(float timestep, World *world)
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{
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(void)world;
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float target_angle = vec2_angle(_target - _position);
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float target_deviation = target_angle - _direction;
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target_deviation = normalize_angle_diff(target_deviation);
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_direction += SDL_clamp(target_deviation, -_MAX_TURN_RATE, _MAX_TURN_RATE) * timestep;
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_direction = normalize_angle(_direction);
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_position = _position + polar_to_vec2(_direction, _speed) * timestep;
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if (--_trail_cooldown == 0)
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@@ -19,4 +26,7 @@ void dxd::sim::Aircraft::draw(Renderer *rend)
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rend->color(255, 255, 255, 255);
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rend->box(_position, 1);
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rend->line(_position, _position + polar_to_vec2(_direction, 3));
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rend->color(255, 64, 64, 255);
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rend->diamond(_target, 1);
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}
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@@ -12,14 +12,16 @@ private:
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vec2 _position;
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float _direction;
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float _speed;
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vec2 _target;
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int _trail_cooldown;
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const int _TRAIL_DELAY = 60;
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const int _TRAIL_DURATION = 420;
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const float _MAX_TURN_RATE = 0.5f;
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public:
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Aircraft(vec2 position, float direction, float speed)
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: _position(position), _direction(direction), _speed(speed)
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Aircraft(vec2 position, float direction, float speed, vec2 target)
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: _position(position), _direction(direction), _speed(speed), _target(target)
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{
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_trail_cooldown = _TRAIL_DELAY;
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}
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@@ -13,9 +13,13 @@ void dxd::sim::Airfield::tick(float timestep, World *world)
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if (--_next_spawn == 0)
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{
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Aircraft *af = new Aircraft(_position, SDL_randf() * 2 * M_PIf, 5.0f);
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vec2 pos = _position + polar_to_vec2(_rw_heading, _WR_LENGTH+0.5);
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//vec2 tgt = _position + polar_to_vec2(SDL_randf()*2*M_PIf, 30);
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vec2 tgt = _position + polar_to_vec2(0, 30);
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Aircraft *af = new Aircraft(pos, _rw_heading, 5.0f, tgt);
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world->add_obj(af);
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_next_spawn = _MIN_TAKEOFF_DELAY + SDL_rand(_MAX_TAKEOFF_DELAY - _MIN_TAKEOFF_DELAY);
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//_next_spawn = _MIN_TAKEOFF_DELAY + SDL_rand(_MAX_TAKEOFF_DELAY - _MIN_TAKEOFF_DELAY);
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_next_spawn = 99999999;
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}
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}
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@@ -24,4 +28,9 @@ void dxd::sim::Airfield::draw(Renderer *rend)
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rend->color(127, 127, 127, 255);
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rend->rect(_position, 5);
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rend->diamond(_position, 5);
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rend->color(64, 64, 255, 255);
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vec2 a = _position + polar_to_vec2(_rw_heading, +_WR_LENGTH);
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vec2 b = _position + polar_to_vec2(_rw_heading, -_WR_LENGTH);
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rend->line(a, b);
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}
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@@ -14,14 +14,17 @@ private:
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vec2 _position;
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int _ttl;
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int _next_spawn;
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float _rw_heading;
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const int _MIN_TAKEOFF_DELAY = 240;
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const int _MAX_TAKEOFF_DELAY = 600;
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const int _WR_LENGTH = 6;
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public:
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Airfield(vec2 position, int ttl) : _position(position), _ttl(ttl)
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Airfield(vec2 position, int ttl, float rw_heading)
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: _position(position), _ttl(ttl), _rw_heading(rw_heading)
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{
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_next_spawn = 30;
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_next_spawn = _MIN_TAKEOFF_DELAY;
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}
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void tick(float timestep, World *world) override;
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