feat(physics): hinge joints
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2f0f507051
commit
3dfc3abaf8
7 changed files with 29 additions and 20 deletions
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@ -20,7 +20,7 @@ void Rotate::buildJoint() {
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part1.lock()->cframe = newFrame;
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// Do NOT use Abs() in this scenario. For some reason that breaks it
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PhysJointHingeInfo jointInfo((part0.lock()->cframe * c0).Position(), -(part0.lock()->cframe * c0).LookVector().Unit());
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PhysHingeJointInfo jointInfo(c0, c1);
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this->joint = workspace->CreateJoint(jointInfo, part0.lock(), part1.lock());
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jointWorkspace = workspace;
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}
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@ -21,7 +21,7 @@ void RotateV::buildJoint() {
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CFrame newFrame = part0.lock()->cframe * (c0 * c1.Inverse());
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part1.lock()->cframe = newFrame;
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// Do NOT use Abs() in this scenario. For some reason that breaks it
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PhysJointMotorInfo jointInfo((part0.lock()->cframe * c0).Position(), -(part0.lock()->cframe * c0).LookVector().Unit());
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PhysMotorJointInfo jointInfo((part0.lock()->cframe * c0).Position(), -(part0.lock()->cframe * c0).LookVector().Unit());
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this->joint = workspace->CreateJoint(jointInfo, part0.lock(), part1.lock());
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jointWorkspace = workspace;
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@ -23,7 +23,7 @@ void Snap::buildJoint() {
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CFrame newFrame = part0.lock()->cframe * (c0 * c1.Inverse());
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part1.lock()->cframe = newFrame;
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PhysJointSnapInfo jointInfo((c0.Inverse() * c1).Position());
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PhysFixedJointInfo jointInfo(c0, c1);
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this->joint = workspace->CreateJoint(jointInfo, part0.lock(), part1.lock());
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jointWorkspace = workspace;
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}
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@ -23,7 +23,7 @@ void Weld::buildJoint() {
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CFrame newFrame = part0.lock()->cframe * (c0 * c1.Inverse());
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part1.lock()->cframe = newFrame;
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PhysJointWeldInfo jointInfo((c0.Inverse() * c1).Position());
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PhysFixedJointInfo jointInfo(c0, c1);
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this->joint = workspace->CreateJoint(jointInfo, part0.lock(), part1.lock());
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jointWorkspace = workspace;
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}
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@ -285,6 +285,10 @@ void BasePart::MakeJoints() {
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joint->part1 = otherPart->shared<BasePart>();
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joint->c0 = contact0;
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joint->c1 = contact1;
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// If both parts touch directly, this can cause friction in Rotate and RotateV joints, so we leave a little extra space
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if (joint->IsA("Rotate") || joint->IsA("RotateV"))
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joint->c1 = joint->c1 + joint->c1.LookVector() * 0.02f,
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joint->c0 = joint->c0 - joint->c0.LookVector() * 0.02f;
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dataModel()->GetService<JointsService>()->AddChild(joint);
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joint->UpdateProperty("Part0");
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}
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@ -1,5 +1,4 @@
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#include "world.h"
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#include "Jolt/Geometry/AABox.h"
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#include "datatypes/vector.h"
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#include "enum/part.h"
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#include "logger.h"
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@ -27,6 +26,7 @@
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#include <Jolt/Physics/Collision/Shape/ScaledShape.h>
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#include <Jolt/Physics/Collision/Shape/ConvexHullShape.h>
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#include <Jolt/Physics/Collision/Shape/RotatedTranslatedShape.h>
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#include <Jolt/Physics/Constraints/ConeConstraint.h>
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#include <Jolt/Physics/EActivation.h>
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#include <Jolt/Physics/PhysicsSettings.h>
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#include <Jolt/RegisterTypes.h>
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@ -37,7 +37,6 @@
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#include <Jolt/Physics/Body/BodyLockInterface.h>
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#include <Jolt/Physics/Collision/NarrowPhaseQuery.h>
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#include <Jolt/Physics/Constraints/FixedConstraint.h>
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#include <cstdio>
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#include <memory>
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static JPH::TempAllocator* allocator;
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@ -208,17 +207,24 @@ PhysJoint PhysWorld::createJoint(PhysJointInfo& type, std::shared_ptr<BasePart>
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) { Logger::fatalError("Failed to create joint between two parts due to the call being invalid"); panic(); };
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JPH::TwoBodyConstraint* constraint;
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if (PhysJointGlueInfo* _ = dynamic_cast<PhysJointGlueInfo*>(&type)) {
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if (PhysFixedJointInfo* info = dynamic_cast<PhysFixedJointInfo*>(&type)) {
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JPH::FixedConstraintSettings settings;
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settings.mAutoDetectPoint = true; // TODO: Replace this with anchor point
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settings.mSpace = JPH::EConstraintSpace::LocalToBodyCOM;
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settings.mPoint1 = convert<JPH::Vec3>(info->c0.Position());
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settings.mAxisX1 = convert<JPH::Vec3>(info->c0.RightVector());
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settings.mAxisY1 = convert<JPH::Vec3>(info->c0.UpVector());
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settings.mPoint2 = convert<JPH::Vec3>(info->c1.Position());
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settings.mAxisX2 = convert<JPH::Vec3>(info->c1.RightVector());
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settings.mAxisY2 = convert<JPH::Vec3>(info->c1.UpVector());
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constraint = settings.Create(*part0->rigidBody.bodyImpl, *part1->rigidBody.bodyImpl);
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} else if (PhysJointWeldInfo* _ = dynamic_cast<PhysJointWeldInfo*>(&type)) {
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JPH::FixedConstraintSettings settings;
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settings.mAutoDetectPoint = true; // TODO: Replace this with anchor point
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constraint = settings.Create(*part0->rigidBody.bodyImpl, *part1->rigidBody.bodyImpl);
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} else if (PhysJointSnapInfo* _ = dynamic_cast<PhysJointSnapInfo*>(&type)) {
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JPH::FixedConstraintSettings settings;
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settings.mAutoDetectPoint = true; // TODO: Replace this with anchor point
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} else if (PhysHingeJointInfo* info = dynamic_cast<PhysHingeJointInfo*>(&type)) {
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JPH::ConeConstraintSettings settings;
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settings.mSpace = JPH::EConstraintSpace::LocalToBodyCOM;
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settings.mPoint1 = convert<JPH::Vec3>(info->c0.Position());
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settings.mTwistAxis1 = convert<JPH::Vec3>(info->c0.LookVector());
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settings.mPoint2 = convert<JPH::Vec3>(info->c1.Position());
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settings.mTwistAxis2 = convert<JPH::Vec3>(info->c1.LookVector());
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settings.mHalfConeAngle = 0.0f;
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constraint = settings.Create(*part0->rigidBody.bodyImpl, *part1->rigidBody.bodyImpl);
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} else {
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panic();
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@ -1,5 +1,6 @@
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#pragma once
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#include "datatypes/cframe.h"
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#include "datatypes/vector.h"
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#include "enum/part.h"
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#include "utils.h"
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@ -16,11 +17,9 @@ class BasePart;
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class PhysWorld;
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struct PhysJointInfo { virtual ~PhysJointInfo() = default; protected: PhysJointInfo() = default; };
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struct PhysJointGlueInfo : PhysJointInfo { Vector3 anchorPoint; inline PhysJointGlueInfo(Vector3 anchorPoint) : anchorPoint(anchorPoint) {} };
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struct PhysJointWeldInfo : PhysJointInfo { Vector3 anchorPoint; inline PhysJointWeldInfo(Vector3 anchorPoint) : anchorPoint(anchorPoint) {} };
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struct PhysJointSnapInfo : PhysJointInfo { Vector3 anchorPoint; inline PhysJointSnapInfo(Vector3 anchorPoint) : anchorPoint(anchorPoint) {} };
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struct PhysJointHingeInfo : PhysJointInfo { Vector3 anchorPoint; Vector3 rotationAxis; inline PhysJointHingeInfo(Vector3 anchorPoint, Vector3 rotationAxis) : anchorPoint(anchorPoint), rotationAxis(rotationAxis) {} };
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struct PhysJointMotorInfo : PhysJointInfo { Vector3 anchorPoint; Vector3 rotationAxis; inline PhysJointMotorInfo(Vector3 anchorPoint, Vector3 rotationAxis) : anchorPoint(anchorPoint), rotationAxis(rotationAxis) {} };
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struct PhysFixedJointInfo : PhysJointInfo { CFrame c0; CFrame c1; inline PhysFixedJointInfo(CFrame c0, CFrame c1) : c0(c0), c1(c1) {} };
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struct PhysHingeJointInfo : PhysJointInfo { CFrame c0; CFrame c1; inline PhysHingeJointInfo(CFrame c0, CFrame c1) : c0(c0), c1(c1) {} };
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struct PhysMotorJointInfo : PhysJointInfo { Vector3 anchorPoint; Vector3 rotationAxis; inline PhysMotorJointInfo(Vector3 anchorPoint, Vector3 rotationAxis) : anchorPoint(anchorPoint), rotationAxis(rotationAxis) {} };
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class PhysWorld;
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struct PhysJoint {
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