56593c58cf
Show touch controls only on touch platforms and keyboard hints only on desktop, via a shared Controls.use_touch_ui() gate (is_touchscreen_available is unreliable with emulate_touch_from_mouse). Bumps version to 0.2.0. Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
207 lines
7.5 KiB
GDScript
207 lines
7.5 KiB
GDScript
class_name SpearProjectile
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extends RigidBody3D
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# A thrown spear. It flies a ballistic arc (gravity does the work — the launch
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# velocity is solved by the matador to land on the bull) and keeps its shaft aimed
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# along its own velocity, so it noses over at the apex and drives in point-first.
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# On impact it embeds where it struck: the tip buried just past the contact point
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# with the shaft trailing back along the flight line, so it reads as stuck-in rather
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# than floating alongside. A hit on the bull leaves the spear riding it like a spine
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# (see shed_all, which the bull's slam calls to fling them all off); other hits pin
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# it in place until the despawn timer clears it.
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const _DESPAWN_SEC: float = 8.0
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const _STUCK_GROUP: StringName = &"stuck_spear"
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# Shaft geometry in spear.glb local space: tip at +Z, butt behind the origin.
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const _TIP_Z: float = 1.915
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const _EMBED_DEPTH: float = 0.45 # how far past the surface the tip buries
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var _mesh: Node3D = null
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var _stopped: bool = false
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var _flight_dir: Vector3 = Vector3.ZERO # last pre-impact travel direction
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# Build, seat and launch a spear from an already-instantiated mesh (the one that was
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# in the matador's hand). `origin` is the release point; `velocity` is the full
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# ballistic launch vector; `gravity` is the RigidBody gravity_scale for the arc.
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static func launch(parent: Node, mesh: Node3D, origin: Vector3, velocity: Vector3,
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gravity: float) -> SpearProjectile:
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var s := SpearProjectile.new()
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s.gravity_scale = gravity
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s.collision_layer = 0
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s.collision_mask = 1
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s.contact_monitor = true
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s.max_contacts_reported = 6
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parent.add_child(s)
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# Seat the body so its local +Z (the shaft, see spear.glb) points along the throw.
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s.global_transform = Transform3D(_aim_basis(velocity), origin)
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mesh.reparent(s, false)
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mesh.transform = Transform3D.IDENTITY
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s._mesh = mesh
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s.add_child(_shaft_collider())
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s.linear_velocity = velocity
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_despawn(s)
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return s
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# Shed every spear stuck in `bull` — pop each off as a tumbling body that flies clear
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# and clears itself on the despawn timer. Called by the bull's slam.
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static func shed_all(bull: Node) -> void:
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if not (bull is Node3D):
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return
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var scene: Node = bull.get_tree().current_scene
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if scene == null:
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scene = bull
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var center: Vector3 = (bull as Node3D).global_position
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for child in bull.get_children():
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if not child.is_in_group(_STUCK_GROUP):
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continue
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var mesh := child as Node3D
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var gx := mesh.global_transform
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var rb := RigidBody3D.new()
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rb.collision_layer = 0
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rb.collision_mask = 1
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scene.add_child(rb)
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rb.global_transform = gx
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mesh.reparent(rb, false)
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mesh.transform = Transform3D.IDENTITY
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mesh.remove_from_group(_STUCK_GROUP)
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rb.add_child(_shaft_collider())
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# Fling outward from the bull with a bit of lift and spin.
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var out := gx.origin - center
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out.y = 0.0
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out = out.normalized() if out.length() > 0.01 else Vector3(randf() - 0.5, 0.0, randf() - 0.5)
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rb.linear_velocity = out * randf_range(3.0, 6.0) + Vector3.UP * randf_range(3.0, 5.0)
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rb.angular_velocity = Vector3(randf_range(-10.0, 10.0),
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randf_range(-10.0, 10.0), randf_range(-10.0, 10.0))
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_despawn(rb)
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static func _shaft_collider() -> CollisionShape3D:
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# Collider along local +Z (mesh runs z≈-0.34 … 1.92), fattened so a fast throw
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# can't tunnel past the bull's collision spheres.
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var cap := CapsuleShape3D.new()
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cap.radius = 0.13
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cap.height = 2.2
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var cs := CollisionShape3D.new()
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cs.shape = cap
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cs.position = Vector3(0.0, 0.0, 0.79)
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cs.rotation_degrees = Vector3(90.0, 0.0, 0.0)
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return cs
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# Continuous bleed from a spear lodged in the bull: a steady spurt of dark-red gobs out
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# of the entry wound. Parented to the stuck mesh so it tracks the wound as the bull
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# moves; world-space particles (local_coords off) so they arc off and fall behind as a
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# trail. Dies with the mesh when the spear is shed or despawned.
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static func _wound_emitter() -> CPUParticles3D:
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var ramp := Gradient.new()
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ramp.set_color(0, Color(0.5, 0.02, 0.02, 1.0))
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ramp.set_color(1, Color(0.22, 0.0, 0.0, 0.0))
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var sc := Curve.new()
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sc.add_point(Vector2(0.0, 1.0))
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sc.add_point(Vector2(0.6, 0.7))
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sc.add_point(Vector2(1.0, 0.0))
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var p := CPUParticles3D.new()
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# Seat at the wound (where the shaft meets the hide) and spray back out along the
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# shaft: mesh local -Z is the exit direction, rotated into world by the node basis.
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p.position = Vector3(0.0, 0.0, _TIP_Z - _EMBED_DEPTH)
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p.emitting = true
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p.amount = 22
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p.lifetime = 0.6
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p.explosiveness = 0.0
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p.randomness = 0.6
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p.local_coords = false
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p.direction = Vector3(0.0, 0.55, -1.0).normalized()
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p.spread = 32.0
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p.gravity = Vector3(0.0, -12.0, 0.0)
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p.initial_velocity_min = 1.6
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p.initial_velocity_max = 4.0
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p.scale_amount_min = 0.5
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p.scale_amount_max = 1.4
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p.mesh = _blood_mesh()
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p.color_ramp = ramp
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p.scale_amount_curve = sc
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return p
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# Small unshaded, vertex-coloured sphere for blood gobs.
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static func _blood_mesh() -> SphereMesh:
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var mat := StandardMaterial3D.new()
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mat.shading_mode = BaseMaterial3D.SHADING_MODE_UNSHADED
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mat.transparency = BaseMaterial3D.TRANSPARENCY_ALPHA
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mat.vertex_color_use_as_albedo = true
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mat.cull_mode = BaseMaterial3D.CULL_DISABLED
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var s := SphereMesh.new()
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s.radius = 0.045
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s.height = 0.09
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s.radial_segments = 4
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s.rings = 2
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s.material = mat
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return s
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static func _despawn(node: Node) -> void:
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node.get_tree().create_timer(_DESPAWN_SEC).timeout.connect(func() -> void:
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if is_instance_valid(node):
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node.queue_free()
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)
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# Basis whose local +Z points along `v` (looking_at points -Z at its target).
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static func _aim_basis(v: Vector3) -> Basis:
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var dir := v.normalized()
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if dir.length_squared() < 0.0001:
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return Basis.IDENTITY
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var up := Vector3.UP if absf(dir.dot(Vector3.UP)) < 0.99 else Vector3.FORWARD
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return Basis.looking_at(-dir, up)
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# While flying, keep the shaft aligned with the velocity; on the first contact freeze
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# and hand off to _embed so the spear sticks where it struck instead of bouncing off.
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func _integrate_forces(state: PhysicsDirectBodyState3D) -> void:
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if _stopped:
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return
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if state.get_contact_count() > 0:
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_stopped = true
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# Use the remembered pre-impact heading — state.linear_velocity is already the
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# bounced (post-collision) velocity by now, which would aim the shaft wrong.
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var contact := state.get_contact_collider_position(0)
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var other := state.get_contact_collider_object(0)
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state.linear_velocity = Vector3.ZERO
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state.angular_velocity = Vector3.ZERO
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_embed.call_deferred(other, contact, _flight_dir)
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return
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var v := state.linear_velocity
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if v.length_squared() > 0.04:
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_flight_dir = v.normalized()
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var t := state.transform
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t.basis = _aim_basis(v)
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state.transform = t
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state.angular_velocity = Vector3.ZERO
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# Compose the stuck pose (tip buried _EMBED_DEPTH past the contact, shaft along the
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# flight line) and plant the spear. A bull hit hands the mesh to the bull so it rides
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# along as a spine; anything else pins the body in place for the despawn timer.
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func _embed(other: Object, contact: Vector3, flight: Vector3) -> void:
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var f := flight.normalized()
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if f.length_squared() < 0.0001:
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f = global_transform.basis.z.normalized()
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var pose := Transform3D(_aim_basis(f), contact + f * (_EMBED_DEPTH - _TIP_Z))
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var bull := other as Node
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if bull != null and bull.is_in_group(&"player"):
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bull.call(&"take_sword_hit", "thrown", contact)
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if is_instance_valid(_mesh) and is_instance_valid(bull):
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_mesh.reparent(bull, false)
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_mesh.global_transform = pose
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_mesh.add_to_group(_STUCK_GROUP)
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if Settings.gore:
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_mesh.add_child(_wound_emitter()) # keep bleeding from the wound while lodged
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queue_free()
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return
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freeze = true
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global_transform = pose
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