2020-01-12 23:06:52 +00:00
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use crate::comp::{ActionState, EcsStateData, MoveState, StateUpdate};
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use crate::states::StateHandler;
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2019-12-26 14:43:59 +00:00
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use vek::{Vec2, Vec3};
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2020-01-07 15:49:08 +00:00
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// Gravity is 9.81 * 4, so this makes gravity equal to .15
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const GLIDE_ANTIGRAV: f32 = crate::sys::phys::GRAVITY * 0.96;
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const GLIDE_ACCEL: f32 = 15.0;
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const GLIDE_SPEED: f32 = 45.0;
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2020-01-05 18:19:09 +00:00
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#[derive(Clone, Copy, Default, Debug, PartialEq, Serialize, Deserialize, Eq, Hash)]
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2020-01-08 16:56:36 +00:00
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pub struct State;
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2019-12-26 14:43:59 +00:00
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2020-01-08 16:56:36 +00:00
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impl StateHandler for State {
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2020-01-07 15:49:08 +00:00
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fn new(_ecs_data: &EcsStateData) -> Self {
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2020-01-05 23:17:22 +00:00
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Self {}
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}
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2019-12-28 16:10:39 +00:00
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fn handle(&self, ecs_data: &EcsStateData) -> StateUpdate {
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let mut update = StateUpdate {
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2019-12-26 14:43:59 +00:00
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pos: *ecs_data.pos,
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vel: *ecs_data.vel,
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ori: *ecs_data.ori,
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character: *ecs_data.character,
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};
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2019-12-28 16:10:39 +00:00
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// Defaults for this state
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2020-01-08 19:31:42 +00:00
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update.character.action_state = ActionState::Idle(None);
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update.character.move_state = MoveState::Glide(None);
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2020-01-07 15:49:08 +00:00
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// If glide button isn't held, start falling
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if !ecs_data.inputs.glide.is_pressed() {
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2020-01-08 19:31:42 +00:00
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update.character.move_state = MoveState::Fall(None);
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2020-01-07 15:49:08 +00:00
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return update;
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}
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// If there is a wall in front of character go to climb
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if let Some(_wall_dir) = ecs_data.physics.on_wall {
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2020-01-08 19:31:42 +00:00
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update.character.move_state = MoveState::Climb(None);
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2020-01-07 15:49:08 +00:00
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return update;
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}
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// If on ground go to stand
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if ecs_data.physics.on_ground {
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2020-01-08 19:31:42 +00:00
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update.character.move_state = MoveState::Stand(None);
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2020-01-07 15:49:08 +00:00
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return update;
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}
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2019-12-26 18:01:19 +00:00
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2019-12-26 14:43:59 +00:00
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// Move player according to movement direction vector
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update.vel.0 += Vec2::broadcast(ecs_data.dt.0)
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* ecs_data.inputs.move_dir
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* if ecs_data.vel.0.magnitude_squared() < GLIDE_SPEED.powf(2.0) {
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GLIDE_ACCEL
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} else {
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0.0
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};
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// Determine orientation vector from movement direction vector
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let ori_dir = Vec2::from(update.vel.0);
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if ori_dir.magnitude_squared() > 0.0001
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&& (update.ori.0.normalized() - Vec3::from(ori_dir).normalized()).magnitude_squared()
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> 0.001
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{
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update.ori.0 =
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vek::ops::Slerp::slerp(update.ori.0, ori_dir.into(), 2.0 * ecs_data.dt.0);
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}
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2019-12-26 18:01:19 +00:00
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// Apply Glide antigrav lift
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2019-12-26 14:43:59 +00:00
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if Vec2::<f32>::from(update.vel.0).magnitude_squared() < GLIDE_SPEED.powf(2.0)
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&& update.vel.0.z < 0.0
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{
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let lift = GLIDE_ANTIGRAV + update.vel.0.z.abs().powf(2.0) * 0.15;
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update.vel.0.z += ecs_data.dt.0
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* lift
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* (Vec2::<f32>::from(update.vel.0).magnitude() * 0.075)
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.min(1.0)
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.max(0.2);
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}
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// Otherwise keep gliding
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return update;
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}
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}
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