Added ship collapse sequence
parent
46313b4880
commit
27c8bf6093
2
assets
2
assets
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@ -1 +1 @@
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Subproject commit 38fd6766762ce90bb699f98e30e46b17c4eda50c
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Subproject commit 74ddbde9e1cec1418c17844bc7336324ece88d15
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@ -2,13 +2,19 @@
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sprite = "particle::explosion::small"
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lifetime = "inherit"
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inherit_velocity = "target"
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size = 3.0
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size = 8.0
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[effect."large explosion"]
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sprite = "particle::explosion::large"
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lifetime = "inherit"
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inherit_velocity = "target"
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size = 25.0
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[effect."huge explosion"]
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sprite = "particle::explosion::huge"
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lifetime = "inherit"
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inherit_velocity = "target"
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size = 3.0
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size = 50.0
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[effect."blaster expire"]
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sprite = "particle::blaster"
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@ -25,5 +31,4 @@ size = 3.0
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# effect probabilities & variants
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# multiple particles in one effect
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# fade
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# better physics
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# document:effect vs particle
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# document: effect vs particle
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@ -6,6 +6,9 @@ hull = 200
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linear_drag = 0.2
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angular_drag = 0.2
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# TODO: disable
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# TODO: damage effects
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space.outfit = 200
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space.engine = 50
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space.weapon = 50
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@ -13,6 +16,19 @@ space.weapon = 50
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engines = [{ x = 0.0, y = -1.05, size = 50.0 }]
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guns = [{ x = 0.0, y = 1 }, { x = 0.1, y = 0.80 }, { x = -0.1, y = 0.80 }]
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# Length of death sequence, in seconds
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collapse.length = 5.0
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# Effects to create during the collapse sequence.
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# On average, `count` will be spawned over the sequence,
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# with a distribution of (x^2 + 0.1)
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collapse.effects = [
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{ effect = "small explosion", count = 30 },
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{ effect = "large explosion", count = 5 },
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]
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collision = [
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#[rustfmt:skip],
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[0.53921, 1.0000],
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@ -37,3 +53,44 @@ collision = [
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[-0.53921, 0.29343],
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[-0.53921, 1.0000],
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]
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# Scripted explosion
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[[ship."Gypsum".collapse.event]]
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time = 5.0
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effects = [
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#[rustfmt:skip],
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{ effect = "small explosion", count = 8 },
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{ effect = "large explosion", count = 5 },
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{ effect = "huge explosion", count = 1, pos = [0, 0] },
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{ effect = "huge explosion", count = 4 },
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]
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# Scripted explosion
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[[ship."Gypsum".collapse.event]]
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time = 0.0
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effects = [
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#[rustfmt:skip],
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{ effect = "small explosion", count = 3 },
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{ effect = "large explosion", count = 1 },
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]
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# Play a sprite reel (or change sprite)
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#[[ship."Gypsum".death.collapse.event]]
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#time = 10.0
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#reel = "gypsum post-death"
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# Create debris
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#[[ship."Gypsum".death.collapse.event]]
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#time = "end"
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#physics = "inherit"
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# OR (relative to original rigidbody)
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#physics.position = [0, 0]
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#physics.velocity = [0, 0]
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#physics.angle = 0
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#physics.angvel = 0
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#debris = "debris"
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# Burning, interactable, destructible debris
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#[debris]
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#effects = [{ type = "small explosion", count = 10 }]
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@ -21,10 +21,7 @@ use walkdir::WalkDir;
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pub use handle::{
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EffectHandle, FactionHandle, GunHandle, OutfitHandle, ShipHandle, SpriteHandle, SystemHandle,
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};
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pub use part::{
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Effect, EnginePoint, Faction, Gun, GunPoint, ImpactInheritVelocity, Outfit, OutfitSpace,
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Projectile, ProjectileCollider, Relationship, RepeatMode, Ship, Sprite, System,
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};
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pub use part::*;
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mod syntax {
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use anyhow::{bail, Context, Result};
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@ -48,8 +48,10 @@ pub enum ProjectileCollider {
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Ball(BallCollider),
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}
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/// A simple ball-shaped collider, centered at the object's position
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#[derive(Debug, Deserialize, Clone)]
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pub struct BallCollider {
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/// The radius of this ball
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pub radius: f32,
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}
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@ -1,19 +1,22 @@
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//! Content parts
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pub mod effect;
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pub mod faction;
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pub mod gun;
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pub mod outfit;
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pub mod outfitspace;
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pub mod ship;
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pub mod sprite;
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pub mod system;
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pub(crate) mod effect;
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pub(crate) mod faction;
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pub(crate) mod gun;
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pub(crate) mod outfit;
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pub(crate) mod outfitspace;
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pub(crate) mod ship;
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pub(crate) mod sprite;
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pub(crate) mod system;
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pub use effect::{Effect, ImpactInheritVelocity};
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pub use faction::{Faction, Relationship};
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pub use gun::{Gun, Projectile, ProjectileCollider};
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pub use outfit::Outfit;
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pub use outfitspace::OutfitSpace;
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pub use ship::{EnginePoint, GunPoint, Ship};
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pub use ship::{
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CollapseEffectSpawner, CollapseEvent, EffectCollapseEvent, EnginePoint, GunPoint, Ship,
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ShipCollapse,
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};
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pub use sprite::{RepeatMode, Sprite};
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pub use system::{Object, System};
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@ -1,13 +1,13 @@
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use std::collections::HashMap;
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use anyhow::{bail, Result};
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use anyhow::{bail, Context, Result};
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use cgmath::Point2;
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use nalgebra::{point, Point};
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use crate::{handle::SpriteHandle, Content, ContentBuildContext, OutfitSpace};
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use crate::{handle::SpriteHandle, Content, ContentBuildContext, EffectHandle, OutfitSpace};
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pub(crate) mod syntax {
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use crate::part::outfitspace;
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use crate::part::{effect::syntax::EffectReference, outfitspace};
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use serde::Deserialize;
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// Raw serde syntax structs.
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@ -25,6 +25,7 @@ pub(crate) mod syntax {
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pub angular_drag: f32,
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pub linear_drag: f32,
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pub space: outfitspace::syntax::OutfitSpace,
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pub collapse: Option<Collapse>,
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}
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#[derive(Debug, Deserialize)]
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@ -39,6 +40,34 @@ pub(crate) mod syntax {
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pub x: f32,
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pub y: f32,
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}
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// TODO:
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// plural or not? document!
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#[derive(Debug, Deserialize)]
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pub struct Collapse {
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pub length: f32,
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pub effects: Vec<CollapseEffectSpawner>,
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pub event: Vec<CollapseEvent>,
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}
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#[derive(Debug, Deserialize)]
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pub struct CollapseEffectSpawner {
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pub effect: EffectReference,
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pub count: f32,
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pub pos: Option<[f32; 2]>,
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}
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#[derive(Debug, Deserialize)]
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#[serde(untagged)]
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pub enum CollapseEvent {
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Effect(EffectCollapseEvent),
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}
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#[derive(Debug, Deserialize)]
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pub struct EffectCollapseEvent {
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pub time: f32,
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pub effects: Vec<CollapseEffectSpawner>,
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}
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}
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// Processed data structs.
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@ -86,6 +115,9 @@ pub struct Ship {
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/// Outfit space in this ship
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pub space: OutfitSpace,
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/// Ship collapse sequence
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pub collapse: ShipCollapse,
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}
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/// Collision shape for this ship
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@ -116,16 +148,60 @@ pub struct GunPoint {
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pub pos: Point2<f32>,
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}
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/// Parameters for a ship's collapse sequence
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#[derive(Debug, Clone)]
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pub struct ShipCollapse {
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/// Collapse sequence length, in seconds
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pub length: f32,
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/// Effects to create during collapse
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pub effects: Vec<CollapseEffectSpawner>,
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/// Scripted events during ship collapse
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pub events: Vec<CollapseEvent>,
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}
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/// A scripted event during a ship collapse sequence
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#[derive(Debug, Clone)]
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pub struct CollapseEffectSpawner {
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/// The effect to create
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pub effect: EffectHandle,
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/// How many effects to create
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pub count: f32,
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/// Where to create these effects.
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/// Position is random if None.
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pub pos: Option<Point2<f32>>,
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}
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/// A scripted event during a ship collapse sequence
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#[derive(Debug, Clone)]
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pub enum CollapseEvent {
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/// A scripted effect during a ship collapse sequence
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Effect(EffectCollapseEvent),
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}
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/// A scripted effect during a ship collapse sequence
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#[derive(Debug, Clone)]
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pub struct EffectCollapseEvent {
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/// When to trigger this event
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pub time: f32,
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/// The effect to create
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pub effects: Vec<CollapseEffectSpawner>,
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}
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impl crate::Build for Ship {
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type InputSyntaxType = HashMap<String, syntax::Ship>;
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fn build(
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ship: Self::InputSyntaxType,
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_build_context: &mut ContentBuildContext,
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content: &mut Content,
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build_context: &mut ContentBuildContext,
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ct: &mut Content,
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) -> Result<()> {
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for (ship_name, ship) in ship {
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let handle = match content.sprite_index.get(&ship.sprite) {
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let handle = match ct.sprite_index.get(&ship.sprite) {
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None => bail!(
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"In ship `{}`: sprite `{}` doesn't exist",
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ship_name,
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@ -135,10 +211,67 @@ impl crate::Build for Ship {
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};
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let size = ship.size;
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let aspect = content.get_sprite(handle).aspect;
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let aspect = ct.get_sprite(handle).aspect;
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content.ships.push(Self {
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let collapse = if let Some(c) = ship.collapse {
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let mut effects = Vec::new();
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for e in c.effects {
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effects.push(CollapseEffectSpawner {
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effect: e
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.effect
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.to_handle(build_context, ct)
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.with_context(|| format!("while loading ship `{}`", ship_name))?,
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count: e.count,
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pos: e.pos.map(|p| Point2 {
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x: p[0] * (size / 2.0) * aspect,
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y: p[1] * size / 2.0,
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}),
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});
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}
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let mut events = Vec::new();
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for e in c.event {
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match e {
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syntax::CollapseEvent::Effect(e) => {
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let mut effects = Vec::new();
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for g in e.effects {
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effects.push(CollapseEffectSpawner {
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effect: g.effect.to_handle(build_context, ct).with_context(
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|| format!("while loading ship `{}`", ship_name),
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)?,
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count: g.count,
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pos: g.pos.map(|p| Point2 {
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x: p[0] * (size / 2.0) * aspect,
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y: p[1] * size / 2.0,
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}),
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})
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}
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events.push(CollapseEvent::Effect(EffectCollapseEvent {
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time: e.time,
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effects,
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}))
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}
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}
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}
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ShipCollapse {
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length: c.length,
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effects,
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events,
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}
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} else {
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// Default collapse sequence
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ShipCollapse {
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length: 0.0,
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effects: vec![],
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events: vec![],
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}
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};
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ct.ships.push(Self {
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aspect,
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collapse,
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name: ship_name,
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sprite: handle,
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mass: ship.mass,
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@ -41,6 +41,7 @@ impl Game {
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o1.add(&ct, content::OutfitHandle { index: 0 });
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o1.add_gun(&ct, content::GunHandle { index: 0 });
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o1.add_gun(&ct, content::GunHandle { index: 0 });
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o1.add_gun(&ct, content::GunHandle { index: 0 });
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let s = object::Ship::new(
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&ct,
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@ -57,14 +58,14 @@ impl Game {
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// This method of specifying factions is non-deterministic,
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// but that's ok since this is for debug.
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// TODO: fix
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content::FactionHandle { index: 0 },
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content::FactionHandle { index: 1 },
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object::OutfitSet::new(ss),
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);
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let h2 = physics.add_ship(&ct, s, Point2 { x: 300.0, y: 300.0 });
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let mut o1 = object::OutfitSet::new(ss);
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o1.add(&ct, content::OutfitHandle { index: 0 });
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o1.add_gun(&ct, content::GunHandle { index: 0 });
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//o1.add_gun(&ct, content::GunHandle { index: 0 });
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let s = object::Ship::new(
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&ct,
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@ -30,8 +30,7 @@ impl Ship {
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}
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}
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/// Has this ship been destroyed?
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pub fn is_destroyed(&self) -> bool {
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pub fn is_dead(&self) -> bool {
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self.hull <= 0.0
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}
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@ -42,8 +41,10 @@ impl Ship {
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let r = f.relationships.get(&p.faction).unwrap();
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match r {
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content::Relationship::Hostile => {
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// TODO: implement death and spawning, and enable damage
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//s.hull -= p.damage;
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if self.is_dead() {
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return true;
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}
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self.hull -= p.content.damage;
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return true;
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}
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_ => return false,
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@ -51,6 +52,10 @@ impl Ship {
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}
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pub fn fire_guns(&mut self) -> Vec<(Projectile, content::GunPoint)> {
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if self.is_dead() {
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return vec![];
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}
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self.outfits
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.iter_guns_points()
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.filter(|(g, _)| g.cooldown <= 0.0)
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|
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@ -2,6 +2,7 @@ use anyhow::Result;
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use bytemuck;
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use cgmath::{Deg, EuclideanSpace, Matrix2, Matrix4, Point2, Vector3};
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use galactica_constants;
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use rand::seq::SliceRandom;
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use std::{iter, rc::Rc};
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use wgpu;
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use winit::{self, dpi::LogicalSize, window::Window};
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@ -624,6 +625,7 @@ impl GPUState {
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);
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// Write all new particles to GPU buffer
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state.new_particles.shuffle(&mut rand::thread_rng());
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for i in state.new_particles.iter() {
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self.queue.write_buffer(
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&self.vertex_buffers.particle.instances,
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|
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@ -1,12 +1,13 @@
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use cgmath::{Deg, InnerSpace, Vector2};
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use nalgebra::vector;
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use cgmath::{Deg, EuclideanSpace, InnerSpace, Matrix2, Rad, Vector2, Zero};
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use nalgebra::{point, vector};
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use rapier2d::dynamics::RigidBody;
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use rand::{rngs::ThreadRng, Rng};
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use rapier2d::{dynamics::RigidBody, geometry::Collider};
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use crate::{util, ShipPhysicsHandle};
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use galactica_content as content;
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use galactica_gameobject as object;
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use galactica_render::ObjectSprite;
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use galactica_render::{ObjectSprite, ParticleBuilder};
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pub struct ShipControls {
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pub left: bool,
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@ -26,6 +27,141 @@ impl ShipControls {
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}
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}
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struct ShipCollapseSequence {
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total_length: f32,
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time_elapsed: f32,
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rng: ThreadRng,
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}
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impl ShipCollapseSequence {
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fn new(total_length: f32) -> Self {
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Self {
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total_length: total_length,
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time_elapsed: 0.0,
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rng: rand::thread_rng(),
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}
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}
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fn is_done(&self) -> bool {
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self.time_elapsed >= self.total_length
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}
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fn random_in_ship(
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&mut self,
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ship_content: &content::Ship,
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collider: &Collider,
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) -> Vector2<f32> {
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// Pick a random point inside this ship's collider
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let mut y = 0.0;
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let mut x = 0.0;
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let mut a = false;
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while !a {
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y = self.rng.gen_range(-1.0..=1.0) * ship_content.size / 2.0;
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x = self.rng.gen_range(-1.0..=1.0) * ship_content.size * ship_content.sprite.aspect
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/ 2.0;
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a = collider.shape().contains_local_point(&point![x, y]);
|
||||
}
|
||||
Vector2 { x, y }
|
||||
}
|
||||
|
||||
fn step(
|
||||
&mut self,
|
||||
ship: &object::Ship,
|
||||
ct: &content::Content,
|
||||
particles: &mut Vec<ParticleBuilder>,
|
||||
rigid_body: &mut RigidBody,
|
||||
collider: &mut Collider,
|
||||
t: f32,
|
||||
) {
|
||||
let h = ship.handle;
|
||||
let ship_content = ct.get_ship(h);
|
||||
let ship_pos = util::rigidbody_position(rigid_body);
|
||||
let ship_rot = util::rigidbody_rotation(rigid_body);
|
||||
let ship_ang = ship_rot.angle(Vector2 { x: 1.0, y: 0.0 });
|
||||
|
||||
// The fraction of this collapse sequence that has been played
|
||||
let frac_done = self.time_elapsed / self.total_length;
|
||||
|
||||
// Trigger collapse events
|
||||
for event in &ship_content.collapse.events {
|
||||
match event {
|
||||
content::CollapseEvent::Effect(event) => {
|
||||
if (event.time > self.time_elapsed && event.time <= self.time_elapsed + t)
|
||||
|| (event.time == 0.0 && self.time_elapsed == 0.0)
|
||||
{
|
||||
for spawner in &event.effects {
|
||||
let effect = ct.get_effect(spawner.effect);
|
||||
|
||||
for _ in 0..spawner.count as usize {
|
||||
let pos = if let Some(pos) = spawner.pos {
|
||||
pos.to_vec()
|
||||
} else {
|
||||
self.random_in_ship(ship_content, collider)
|
||||
};
|
||||
|
||||
// Position, adjusted for ship rotation
|
||||
let pos =
|
||||
Matrix2::from_angle(-ship_ang - Rad::from(Deg(90.0))) * pos;
|
||||
|
||||
particles.push(ParticleBuilder {
|
||||
sprite: effect.sprite,
|
||||
pos: ship_pos + pos,
|
||||
velocity: Vector2::zero(),
|
||||
angle: Deg::zero(),
|
||||
lifetime: effect.lifetime,
|
||||
size: effect.size,
|
||||
});
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// Create collapse effects
|
||||
for spawner in &ship_content.collapse.effects {
|
||||
let effect = ct.get_effect(spawner.effect);
|
||||
|
||||
// Probability of adding a particle this frame.
|
||||
// The area of this function over [0, 1] should be 1.
|
||||
let pdf = |x: f32| {
|
||||
let f = 0.2;
|
||||
let y = if x < (1.0 - f) {
|
||||
let x = x / (1.0 - f);
|
||||
(x * x + 0.2) * 1.8 - f
|
||||
} else {
|
||||
1.0
|
||||
};
|
||||
return y;
|
||||
};
|
||||
|
||||
let p_add = (t / self.total_length) * pdf(frac_done) * spawner.count;
|
||||
|
||||
if self.rng.gen_range(0.0..=1.0) <= p_add {
|
||||
let pos = if let Some(pos) = spawner.pos {
|
||||
pos.to_vec()
|
||||
} else {
|
||||
self.random_in_ship(ship_content, collider)
|
||||
};
|
||||
|
||||
// Position, adjusted for ship rotation
|
||||
let pos = Matrix2::from_angle(-ship_ang - Rad::from(Deg(90.0))) * pos;
|
||||
|
||||
particles.push(ParticleBuilder {
|
||||
sprite: effect.sprite,
|
||||
pos: ship_pos + pos,
|
||||
velocity: Vector2::zero(),
|
||||
angle: Deg::zero(),
|
||||
lifetime: effect.lifetime,
|
||||
size: effect.size,
|
||||
});
|
||||
}
|
||||
}
|
||||
|
||||
self.time_elapsed += t;
|
||||
}
|
||||
}
|
||||
|
||||
/// A ship instance in the physics system
|
||||
pub struct ShipWorldObject {
|
||||
/// This ship's physics handle
|
||||
|
@ -36,20 +172,46 @@ pub struct ShipWorldObject {
|
|||
|
||||
/// This ship's controls
|
||||
pub controls: ShipControls,
|
||||
|
||||
collapse_sequence: ShipCollapseSequence,
|
||||
}
|
||||
|
||||
impl ShipWorldObject {
|
||||
/// Make a new ship
|
||||
pub fn new(ship: object::Ship, physics_handle: ShipPhysicsHandle) -> Self {
|
||||
pub fn new(
|
||||
ct: &content::Content,
|
||||
ship: object::Ship,
|
||||
physics_handle: ShipPhysicsHandle,
|
||||
) -> Self {
|
||||
let ship_content = ct.get_ship(ship.handle);
|
||||
ShipWorldObject {
|
||||
physics_handle,
|
||||
ship,
|
||||
controls: ShipControls::new(),
|
||||
collapse_sequence: ShipCollapseSequence::new(ship_content.collapse.length),
|
||||
}
|
||||
}
|
||||
|
||||
/// Should this ship should be removed from the world?
|
||||
pub fn remove_from_world(&self) -> bool {
|
||||
return self.ship.is_dead() && self.collapse_sequence.is_done();
|
||||
}
|
||||
|
||||
/// Step this ship's state by t seconds
|
||||
pub fn step(&mut self, r: &mut RigidBody, t: f32) {
|
||||
pub fn step(
|
||||
&mut self,
|
||||
ct: &content::Content,
|
||||
particles: &mut Vec<ParticleBuilder>,
|
||||
r: &mut RigidBody,
|
||||
c: &mut Collider,
|
||||
t: f32,
|
||||
) {
|
||||
if self.ship.is_dead() {
|
||||
return self
|
||||
.collapse_sequence
|
||||
.step(&self.ship, ct, particles, r, c, t);
|
||||
}
|
||||
|
||||
let ship_rot = util::rigidbody_rotation(r);
|
||||
let engine_force = ship_rot * t;
|
||||
|
||||
|
|
|
@ -253,7 +253,8 @@ impl<'a> World {
|
|||
);
|
||||
|
||||
let h = ShipPhysicsHandle(r, c);
|
||||
self.ships.insert(c, objects::ShipWorldObject::new(ship, h));
|
||||
self.ships
|
||||
.insert(c, objects::ShipWorldObject::new(ct, ship, h));
|
||||
return h;
|
||||
}
|
||||
|
||||
|
@ -264,16 +265,19 @@ impl<'a> World {
|
|||
let mut projectiles = Vec::new();
|
||||
let mut to_remove = Vec::new();
|
||||
for (_, s) in &mut self.ships {
|
||||
if s.ship.is_destroyed() {
|
||||
to_remove.push(s.physics_handle);
|
||||
continue;
|
||||
}
|
||||
|
||||
let r = &mut self.wrapper.rigid_body_set[s.physics_handle.0];
|
||||
s.step(r, t);
|
||||
let c = &mut self.wrapper.collider_set[s.physics_handle.1];
|
||||
|
||||
// TODO: unified step info struct
|
||||
s.step(ct, particles, r, c, t);
|
||||
if s.controls.guns {
|
||||
projectiles.push((s.physics_handle, s.ship.fire_guns()));
|
||||
}
|
||||
|
||||
if s.remove_from_world() {
|
||||
to_remove.push(s.physics_handle);
|
||||
continue;
|
||||
}
|
||||
}
|
||||
for (s, p) in projectiles {
|
||||
self.add_projectiles(s, p);
|
||||
|
|
Loading…
Reference in New Issue