Add actuated ball and revolute joint to the 3D joint demo.
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@@ -1,7 +1,7 @@
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use na::{Isometry3, Point3, Unit, Vector3};
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use na::{Isometry3, Point3, Unit, UnitQuaternion, Vector3};
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use rapier3d::dynamics::{
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BallJoint, BodyStatus, FixedJoint, JointSet, PrismaticJoint, RevoluteJoint, RigidBodyBuilder,
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RigidBodySet,
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RigidBodyHandle, RigidBodySet,
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};
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use rapier3d::geometry::{ColliderBuilder, ColliderSet};
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use rapier_testbed3d::Testbed;
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@@ -14,7 +14,7 @@ fn create_prismatic_joints(
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num: usize,
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) {
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let rad = 0.4;
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let shift = 1.0;
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let shift = 2.0;
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let ground = RigidBodyBuilder::new_static()
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.translation(origin.x, origin.y, origin.z)
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@@ -40,7 +40,7 @@ fn create_prismatic_joints(
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let z = Vector3::z();
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let mut prism = PrismaticJoint::new(
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Point3::origin(),
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Point3::new(0.0, 0.0, 0.0),
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axis,
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z,
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Point3::new(0.0, 0.0, -shift),
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@@ -50,6 +50,7 @@ fn create_prismatic_joints(
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prism.limits_enabled = true;
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prism.limits[0] = -2.0;
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prism.limits[1] = 2.0;
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joints.insert(bodies, curr_parent, curr_child, prism);
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curr_parent = curr_child;
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@@ -222,6 +223,130 @@ fn create_ball_joints(
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}
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}
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fn create_actuated_revolute_joints(
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bodies: &mut RigidBodySet,
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colliders: &mut ColliderSet,
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joints: &mut JointSet,
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origin: Point3<f32>,
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num: usize,
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) {
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let rad = 0.4;
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let shift = 2.0;
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// We will reuse this base configuration for all the joints here.
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let joint_template = RevoluteJoint::new(
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Point3::origin(),
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Vector3::z_axis(),
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Point3::new(0.0, 0.0, -shift),
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Vector3::z_axis(),
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);
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let mut parent_handle = RigidBodyHandle::invalid();
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for i in 0..num {
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let fi = i as f32;
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// NOTE: the num - 2 test is to avoid two consecutive
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// fixed bodies. Because physx will crash if we add
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// a joint between these.
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let status = if i == 0 {
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BodyStatus::Static
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} else {
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BodyStatus::Dynamic
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};
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let shifty = (i >= 1) as u32 as f32 * -2.0;
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let rigid_body = RigidBodyBuilder::new(status)
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.translation(origin.x, origin.y + shifty, origin.z + fi * shift)
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// .rotation(Vector3::new(0.0, fi * 1.1, 0.0))
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.build();
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let child_handle = bodies.insert(rigid_body);
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let collider = ColliderBuilder::cuboid(rad * 2.0, rad * 6.0 / (fi + 1.0), rad).build();
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colliders.insert(collider, child_handle, bodies);
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if i > 0 {
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let mut joint = joint_template.clone();
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if i % 3 == 1 {
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joint.configure_motor_velocity(-20.0, 0.1);
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} else if i == num - 1 {
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let stiffness = 0.2;
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let damping = 1.0;
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joint.configure_motor_position(3.14 / 2.0, stiffness, damping);
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}
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if i == 1 {
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joint.local_anchor2.y = 2.0;
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joint.configure_motor_velocity(-2.0, 0.1);
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}
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joints.insert(bodies, parent_handle, child_handle, joint);
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}
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parent_handle = child_handle;
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}
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}
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fn create_actuated_ball_joints(
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bodies: &mut RigidBodySet,
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colliders: &mut ColliderSet,
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joints: &mut JointSet,
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origin: Point3<f32>,
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num: usize,
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) {
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let rad = 0.4;
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let shift = 2.0;
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// We will reuse this base configuration for all the joints here.
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let joint_template = BallJoint::new(Point3::new(0.0, 0.0, shift), Point3::origin());
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let mut parent_handle = RigidBodyHandle::invalid();
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for i in 0..num {
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let fi = i as f32;
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// NOTE: the num - 2 test is to avoid two consecutive
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// fixed bodies. Because physx will crash if we add
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// a joint between these.
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let status = if i == 0 {
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BodyStatus::Static
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} else {
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BodyStatus::Dynamic
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};
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let rigid_body = RigidBodyBuilder::new(status)
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.translation(origin.x, origin.y, origin.z + fi * shift)
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// .rotation(Vector3::new(0.0, fi * 1.1, 0.0))
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.build();
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let child_handle = bodies.insert(rigid_body);
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let collider = ColliderBuilder::capsule_y(rad * 2.0 / (fi + 1.0), rad).build();
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colliders.insert(collider, child_handle, bodies);
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if i > 0 {
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let mut joint = joint_template.clone();
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if i == 1 {
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joint.configure_motor_velocity(Vector3::new(0.0, 0.5, -2.0), 0.1);
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} else if i == num - 1 {
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let stiffness = 0.2;
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let damping = 1.0;
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joint.configure_motor_position(
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UnitQuaternion::new(Vector3::new(0.0, 1.0, 3.14 / 2.0)),
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stiffness,
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damping,
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);
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}
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joints.insert(bodies, parent_handle, child_handle, joint);
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}
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parent_handle = child_handle;
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}
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}
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pub fn init_world(testbed: &mut Testbed) {
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/*
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* World
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@@ -234,8 +359,8 @@ pub fn init_world(testbed: &mut Testbed) {
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&mut bodies,
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&mut colliders,
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&mut joints,
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Point3::new(20.0, 10.0, 0.0),
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5,
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Point3::new(20.0, 5.0, 0.0),
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4,
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);
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create_revolute_joints(
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&mut bodies,
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@@ -249,7 +374,21 @@ pub fn init_world(testbed: &mut Testbed) {
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&mut colliders,
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&mut joints,
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Point3::new(0.0, 10.0, 0.0),
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5,
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10,
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);
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create_actuated_revolute_joints(
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&mut bodies,
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&mut colliders,
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&mut joints,
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Point3::new(20.0, 10.0, 0.0),
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6,
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);
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create_actuated_ball_joints(
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&mut bodies,
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&mut colliders,
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&mut joints,
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Point3::new(13.0, 10.0, 0.0),
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3,
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);
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create_ball_joints(&mut bodies, &mut colliders, &mut joints, 15);
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