forked from LeenkxTeam/LNXSDK
Update
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@ -139,11 +139,6 @@ class ParticleSystemCPU {
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scaleElementsCount = getRampElementsLength();
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scaleElementsCount = getRampElementsLength();
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scaleRampSizeFactor = getRampSizeFactor();
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scaleRampSizeFactor = getRampSizeFactor();
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Scene.active.notifyOnInit(function () {
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var i: Int;
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for (i in 0...count) addToPool();
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});
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switch (type) {
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switch (type) {
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case 0: // Emission
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case 0: // Emission
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loopAnim = {
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loopAnim = {
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@ -163,16 +158,19 @@ class ParticleSystemCPU {
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if (loop) start();
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if (loop) start();
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}
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}
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}
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}
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Scene.active.notifyOnInit(function () {
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if (autoStart) start();
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});
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case 1: // Hair
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case 1: // Hair
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Scene.active.notifyOnInit(function () {
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Scene.active.notifyOnInit(function () {
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var i: Int;
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for (i in 0...count) spawnParticle();
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for (i in 0...count) spawnParticle();
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});
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});
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default:
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default:
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}
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}
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Scene.active.notifyOnInit(function () {
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Scene.active.notifyOnInit(function () {
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if (autoStart) start();
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for (i in 0...count) addToPool();
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});
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});
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});
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});
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}
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}
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@ -370,17 +368,6 @@ class ParticleSystemCPU {
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particlePhysics.set(o, physics);
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particlePhysics.set(o, physics);
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o.transform.buildMatrix();
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o.transform.buildMatrix();
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}
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}
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}
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function setVelocityHair(object: Object, velocity: Vec4, randQuat: Quat, phaseQuat: Quat) {
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var dir: Vec4 = velocity.clone().normalize();
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var yaw: FastFloat = Math.atan2(-dir.x, dir.y);
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var pitch: FastFloat = Math.asin(dir.z);
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var targetRot: Quat = new Quat().fromEuler(pitch, 0, yaw);
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targetRot.mult(randQuat);
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object.transform.rot.setFrom(targetRot.mult(phaseQuat));
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}
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function updateParticles() {
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function updateParticles() {
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for (particle => physics in particlePhysics) {
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for (particle => physics in particlePhysics) {
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@ -415,13 +402,22 @@ class ParticleSystemCPU {
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}
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}
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}
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}
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function setVelocityHair(object: Object, velocity: Vec4, randQuat: Quat, phaseQuat: Quat) {
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var dir: Vec4 = velocity.clone().normalize();
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var yaw: FastFloat = Math.atan2(-dir.x, dir.y);
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var pitch: FastFloat = Math.asin(dir.z);
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var targetRot: Quat = new Quat().fromEuler(pitch, 0, yaw);
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targetRot.mult(randQuat);
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object.transform.rot.setFrom(targetRot.mult(phaseQuat));
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}
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// Linear interpolation
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// Linear interpolation
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function interpolateRampValue(normalizedAge: FastFloat, positions: Array<FastFloat>, colors: Array<FastFloat>): FastFloat {
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function interpolateRampValue(normalizedAge: FastFloat, positions: Array<FastFloat>, colors: Array<FastFloat>): FastFloat {
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if (positions.length == 0) return 1.0;
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if (positions.length == 0) return 1.0;
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if (normalizedAge <= positions[0]) return colors[0];
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if (normalizedAge <= positions[0]) return colors[0];
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if (normalizedAge >= positions[positions.length - 1]) return colors[colors.length - 1];
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if (normalizedAge >= positions[positions.length - 1]) return colors[colors.length - 1];
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var i: Int;
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for (i in 0...(positions.length - 1)) {
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for (i in 0...(positions.length - 1)) {
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if (normalizedAge >= positions[i] && normalizedAge <= positions[i + 1]) {
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if (normalizedAge >= positions[i] && normalizedAge <= positions[i + 1]) {
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var t: FastFloat = (normalizedAge - positions[i]) / (positions[i + 1] - positions[i]);
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var t: FastFloat = (normalizedAge - positions[i]) / (positions[i + 1] - positions[i]);
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@ -535,6 +531,7 @@ class ParticleSystemCPU {
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var v = c.sub(a);
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var v = c.sub(a);
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return a.add(u.mult(x).add(v.mult(y)));
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return a.add(u.mult(x).add(v.mult(y)));
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}
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}
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}
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typedef TParticlePhysics = {
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typedef TParticlePhysics = {
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var velocity: Vec4;
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var velocity: Vec4;
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@ -547,5 +544,4 @@ class ParticleSystemCPU {
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var rampColors: Array<FastFloat>;
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var rampColors: Array<FastFloat>;
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var scaleRampSizeFactor: FastFloat;
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var scaleRampSizeFactor: FastFloat;
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}
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}
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}
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#end
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#end
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