Constraint solver: properly take non-zero center of masses into account.
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@@ -215,10 +215,8 @@ impl VelocityConstraint {
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for k in 0..manifold_points.len() {
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let manifold_point = &manifold_points[k];
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let dp1 = (rb1.position * manifold_point.local_p1).coords
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- rb1.position.translation.vector;
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let dp2 = (rb2.position * manifold_point.local_p2).coords
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- rb2.position.translation.vector;
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let dp1 = (rb1.position * manifold_point.local_p1) - rb1.world_com;
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let dp2 = (rb2.position * manifold_point.local_p2) - rb2.world_com;
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let vel1 = rb1.linvel + rb1.angvel.gcross(dp1);
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let vel2 = rb2.linvel + rb2.angvel.gcross(dp2);
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@@ -355,7 +353,7 @@ impl VelocityConstraint {
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}
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}
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// Solve penetration.
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// Solve non-penetration.
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for i in 0..self.num_contacts as usize {
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let elt = &mut self.elements[i].normal_part;
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let dimpulse = self.dir1.dot(&mj_lambda1.linear) + elt.gcross1.gdot(mj_lambda1.angular)
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@@ -80,6 +80,7 @@ impl WVelocityConstraint {
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let angvel1 = AngVector::<SimdFloat>::from(array![|ii| rbs1[ii].angvel; SIMD_WIDTH]);
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let position1 = Isometry::from(array![|ii| rbs1[ii].position; SIMD_WIDTH]);
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let world_com1 = Point::from(array![|ii| rbs1[ii].world_com; SIMD_WIDTH]);
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let im2 = SimdFloat::from(array![|ii| rbs2[ii].mass_properties.inv_mass; SIMD_WIDTH]);
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let ii2: AngularInertia<SimdFloat> =
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@@ -89,6 +90,7 @@ impl WVelocityConstraint {
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let angvel2 = AngVector::<SimdFloat>::from(array![|ii| rbs2[ii].angvel; SIMD_WIDTH]);
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let position2 = Isometry::from(array![|ii| rbs2[ii].position; SIMD_WIDTH]);
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let world_com2 = Point::from(array![|ii| rbs2[ii].world_com; SIMD_WIDTH]);
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let force_dir1 = position1 * -Vector::from(array![|ii| manifolds[ii].local_n1; SIMD_WIDTH]);
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@@ -130,8 +132,8 @@ impl WVelocityConstraint {
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let impulse =
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SimdFloat::from(array![|ii| manifold_points[ii][k].impulse; SIMD_WIDTH]);
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let dp1 = p1.coords - position1.translation.vector;
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let dp2 = p2.coords - position2.translation.vector;
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let dp1 = p1 - world_com1;
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let dp2 = p2 - world_com2;
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let vel1 = linvel1 + angvel1.gcross(dp1);
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let vel2 = linvel2 + angvel2.gcross(dp2);
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@@ -155,8 +155,8 @@ impl VelocityGroundConstraint {
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rb2.position * manifold_point.local_p2,
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)
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};
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let dp2 = p2.coords - rb2.position.translation.vector;
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let dp1 = p1.coords - rb1.position.translation.vector;
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let dp2 = p2 - rb2.world_com;
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let dp1 = p1 - rb1.world_com;
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let vel1 = rb1.linvel + rb1.angvel.gcross(dp1);
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let vel2 = rb2.linvel + rb2.angvel.gcross(dp2);
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@@ -89,6 +89,9 @@ impl WVelocityGroundConstraint {
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let position1 = Isometry::from(array![|ii| rbs1[ii].position; SIMD_WIDTH]);
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let position2 = Isometry::from(array![|ii| rbs2[ii].position; SIMD_WIDTH]);
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let world_com1 = Point::from(array![|ii| rbs1[ii].world_com; SIMD_WIDTH]);
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let world_com2 = Point::from(array![|ii| rbs2[ii].world_com; SIMD_WIDTH]);
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let force_dir1 = position1
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* -Vector::from(
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array![|ii| if flipped[ii] { manifolds[ii].local_n2 } else { manifolds[ii].local_n1 }; SIMD_WIDTH],
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@@ -130,8 +133,8 @@ impl WVelocityGroundConstraint {
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let impulse =
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SimdFloat::from(array![|ii| manifold_points[ii][k].impulse; SIMD_WIDTH]);
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let dp1 = p1.coords - position1.translation.vector;
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let dp2 = p2.coords - position2.translation.vector;
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let dp1 = p1 - world_com1;
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let dp2 = p2 - world_com2;
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let vel1 = linvel1 + angvel1.gcross(dp1);
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let vel2 = linvel2 + angvel2.gcross(dp2);
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