The three things the greengrocer was still missing, plus the physics bug that
finding them uncovered.
HANGING SCALES. Real PinJoint3D pendulums, not animations: a static dial and
rod, and a scale-pan rigid body pinned at its own origin so it can only rotate
about the pivot. They hang at chest height down the aisles — dial at eye level,
dish below — where a real shop scale hangs and where you keep walking into it.
The dish swings 0.40 m off a light knock and the pin holds the pivot to 1.1 mm.
The pan is steel so it never breaks; what you get is a heavy brass weight loose
in a room full of stacked fruit.
THE BAG YOU CANNOT OPEN. Tearing one off the roll is the easy half — that's the
setup. Then you have to open it, and the bag has two ends, only one of which
opens, and nothing tells you which. Rubbing alternates arrow keys, because
mashing one key is not rubbing. Either the meter climbs or it doesn't, and the
only way to learn which end you're holding is to have already lost several
seconds to the other one. SPACE turns it over. That is the whole solution and
the game never says so.
CARRY AND THROW. E picks up anything under 6 kg that isn't a record; LMB throws
it at 11 m/s, six times any brittle threshold in the game. Thrown fruit bursts
on landing through the same brittle_speed path a collapse uses — no separate
thrown-object code at all.
Then the part that took the longest. Round produce got sphere colliders (a box
on an apple is why nothing ever rolled) and every display in the shop instantly
fell over. Three separate things were wrong:
- the stack radii were TYPED, not measured. The table said a cabbage was
84 mm; the model is 213 mm, so that pyramid was built with every row driven
a third of the way into the row below it. Main._glb_radius() reads the asset.
- the lattice was box geometry. For spheres the rise per row is
sqrt(4r^2 - step^2/2) — the height at which a fruit touches all four
beneath it. Anything else spawns every row above the first in mid-air.
- there was no tray. A pyramid of spheres on a bare flat table cannot stand;
nothing holds the bottom row in, so the weight above wedges it outward and
the display walks itself apart in a second. Main._stack_tray() frames each
pile in four low timber walls sized to its base row, which is what every
greengrocer on earth already does.
All 310 bodies asleep within 3 s.
While chasing that, the spawn guard fired on a cardboard box in the OFFICE. The
guard is a net, not a test: it only catches a pair Jolt happens to resolve
violently on the frames it's watching, and this one had been interpenetrating
in four levels for weeks. dev/probe_overlap.gd now finds them by measurement,
comparing every pair of dynamic colliders across all six sites. It found 15,
including a row of filing cabinets 0.70 m apart that are 0.80 m wide, and a
stapler inside a monitor. The box asset is 1.35 m across, so boxes are now
stacked into piles rather than dotted about, and the Backrooms scatter uses
rejection sampling with a 1.6 m minimum. All six sites read CLEAN.
Also: the rage veins were drawing every branch from its own start point
regardless of how far the trunk had grown, so at low rage you got disconnected
fragments floating mid-screen that read as biro scribble rather than blood. A
branch now can't appear before the trunk carrying it, and trunks are thick and
dark where capillaries are fine and pale.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
372 lines
13 KiB
GDScript
372 lines
13 KiB
GDScript
extends CharacterBody3D
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class_name Player
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## First-person player for Destroyulator. Built entirely in code so Main.gd can spawn it
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## where the old fixed Camera3D was and reuse `player.camera` for the crosshair raycast.
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## Mouse-captured look, WASD move, Space jump; Esc releases the mouse (click recaptures).
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##
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## Melee is a `Weapon` resource (stats + the weapon-vs-material matrix + a swing
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## archetype) and the arms are a rigged `ViewModel`. Swapping weapon swaps both; movement
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## never changes.
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##
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## The hit does NOT land on the click — it lands at `weapon.contact` through the swing
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## animation. That single delay is most of why a sledgehammer feels different from a box
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## cutter: you commit, then it connects.
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##
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## Godot 4.7 GDScript 2.0. No 3.x APIs: move_and_slide() takes no args and reads/writes
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## `velocity`; get_gravity() supplies the project default; mouse_mode is a property.
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@export var move_speed: float = 5.0
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@export var accel: float = 12.0
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@export var air_accel: float = 3.0
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@export var jump_velocity: float = 4.5
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@export var mouse_sensitivity: float = 0.0025 # radians per pixel of mouse motion
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@export var pitch_limit_deg: float = 89.0
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@export var eye_height: float = 1.6
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## How far below the eye a swing actually starts (see _strike).
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const SWING_DROP := 0.32
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var camera: Camera3D # Main reads this for the crosshair raycast
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var grab: GrabController # the record grab/extract/throw hands
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var viewmodel: ViewModel # the arms + weapon rig
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## Set by Main. While a task is open the player is LOCKED at the station: no walking, no
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## looking, and keys go to the task instead. You're at your desk — that's the joke.
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var tasks: Tasks = null
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## Set by Main. E opens cabinet drawers / feeds the shredder when a run is live.
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var gauntlet: Gauntlet = null
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## Set by Main. RMB discharges powder on sites where the smashables are invisible.
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var dust: Dust = null
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## Set by Main. Juice on the floor costs you grip — the more mess you make, the less
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## the floor cooperates.
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var splat: Splat = null
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## Set while you're dying, so you can't stroll around during it.
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var _frozen := false
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func set_frozen(v: bool) -> void:
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_frozen = v
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if v:
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velocity = Vector3.ZERO
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var _head: Node3D
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var _pitch := 0.0
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var _cd_left := 0.0
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# --- loadout -------------------------------------------------------------
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var _loadout: Array[Weapon] = []
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var _slot := 0
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var _prev_slot := 0
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# --- swing scheduling ----------------------------------------------------
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var _queued := false # a click waiting for the cooldown
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var _swing_left := -1.0 # seconds until this swing's contact frame
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var _swinging: Weapon = null
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# --- feel bookkeeping ----------------------------------------------------
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var _look_delta := Vector2.ZERO # mouse motion this frame, fed to viewmodel sway
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var _was_on_floor := true
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var _fall_speed := 0.0
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signal weapon_changed(w: Weapon)
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signal hit_landed(node: Node, w: Weapon)
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signal swung(w: Weapon)
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func _ready() -> void:
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# --- collision capsule (feet at the body origin) ---
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var col := CollisionShape3D.new()
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var cap := CapsuleShape3D.new()
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cap.radius = 0.35
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cap.height = 1.8
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col.shape = cap
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col.position = Vector3(0, 0.9, 0) # capsule center at height/2 so feet sit at origin
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add_child(col)
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# --- head (pitch) + camera ---
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_head = Node3D.new()
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_head.name = "Head"
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_head.position = Vector3(0, eye_height, 0)
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add_child(_head)
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camera = Camera3D.new()
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camera.name = "Camera3D"
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_head.add_child(camera)
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camera.current = true
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camera.near = 0.03 # the viewmodel sits ~40 cm out; don't clip it
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_loadout = Weapon.loadout()
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viewmodel = ViewModel.new()
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viewmodel.setup(camera) # parents itself to the camera
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viewmodel.equip(_loadout[_slot])
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_build_crosshair()
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# the record ritual hands: a child node that owns a hold point under the camera
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grab = GrabController.new()
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add_child(grab)
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grab.setup(camera, self)
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Input.mouse_mode = Input.MOUSE_MODE_CAPTURED
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weapon_changed.emit(_loadout[_slot])
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# ---------------------------------------------------------------- loadout
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func weapon() -> Weapon:
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return _loadout[_slot]
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func loadout() -> Array[Weapon]:
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return _loadout
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func slot() -> int:
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return _slot
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func select(i: int) -> void:
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if i < 0 or i >= _loadout.size() or i == _slot:
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return
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if viewmodel != null and viewmodel.is_swapping():
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return
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_prev_slot = _slot
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_slot = i
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_queued = false
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_swing_left = -1.0
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_swinging = null
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if viewmodel != null:
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viewmodel.request_swap(_loadout[_slot])
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weapon_changed.emit(_loadout[_slot])
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func cycle(step: int) -> void:
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select(posmod(_slot + step, _loadout.size()))
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func quick_swap() -> void:
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select(_prev_slot)
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# ---------------------------------------------------------------- crosshair
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func _build_crosshair() -> void:
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var layer := CanvasLayer.new()
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layer.name = "CrosshairLayer"
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add_child(layer)
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var dot := ColorRect.new()
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dot.color = Color(1, 1, 1, 0.85)
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dot.anchor_left = 0.5
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dot.anchor_top = 0.5
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dot.anchor_right = 0.5
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dot.anchor_bottom = 0.5
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dot.offset_left = -2
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dot.offset_top = -2
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dot.offset_right = 2
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dot.offset_bottom = 2
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layer.add_child(dot)
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# ---------------------------------------------------------------- input
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func _unhandled_input(event: InputEvent) -> void:
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# dead men don't switch weapons. R is handled by Main and reaches it regardless.
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if _frozen:
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return
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# a task swallows the keyboard first, so digits and arrows edit the spreadsheet
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# instead of switching weapons and walking away from the desk
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if tasks != null and tasks.is_working():
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if event is InputEventKey and event.pressed and not event.echo:
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tasks.handle_key((event as InputEventKey).keycode)
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return
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if event is InputEventMouseMotion and Input.mouse_mode == Input.MOUSE_MODE_CAPTURED:
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var mm := event as InputEventMouseMotion
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_look_delta += mm.relative * 0.01
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# while pulling a disc out, horizontal drag slides the disc (yaw is suspended);
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# vertical still looks up/down so you're never fully locked.
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if grab != null and grab.is_extracting():
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grab.feed_drag(mm.relative.x)
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else:
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rotate_y(-mm.relative.x * mouse_sensitivity) # yaw on the body only
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_pitch = clamp(
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_pitch - mm.relative.y * mouse_sensitivity,
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deg_to_rad(-pitch_limit_deg), deg_to_rad(pitch_limit_deg))
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_head.rotation.x = _pitch # pitch on the head only
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return
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if event is InputEventMouseButton and event.pressed:
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var mb := event as InputEventMouseButton
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if Input.mouse_mode != Input.MOUSE_MODE_CAPTURED:
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Input.mouse_mode = Input.MOUSE_MODE_CAPTURED # click recaptures; not an attack
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return
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match mb.button_index:
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MOUSE_BUTTON_LEFT:
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# holding a record? LMB throws the disc / trashes the sleeve, not a swing.
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if grab != null and grab.is_holding():
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grab.primary()
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else:
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_queued = true
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MOUSE_BUTTON_RIGHT:
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# the extinguisher is the only thing you can shake powder out of
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if dust != null and dust.active and weapon().id == "extinguisher":
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dust.discharge()
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MOUSE_BUTTON_WHEEL_UP:
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cycle(-1)
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MOUSE_BUTTON_WHEEL_DOWN:
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cycle(1)
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return
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if event is InputEventKey and event.pressed and not event.echo:
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var k := (event as InputEventKey).keycode
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if k == KEY_ESCAPE:
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Input.mouse_mode = Input.MOUSE_MODE_VISIBLE
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elif k == KEY_E:
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# a station in reach wins over the record ritual
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if tasks != null and tasks.try_start():
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pass
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elif gauntlet != null and gauntlet.interact():
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pass
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elif grab != null:
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grab.try_grab() # grab the record under the crosshair
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elif k == KEY_G and grab != null:
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grab.drop() # drop / trash whatever's in hand
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elif k == KEY_Q:
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quick_swap()
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elif k >= KEY_1 and k <= KEY_6:
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select(k - KEY_1)
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# ---------------------------------------------------------------- physics / movement
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func _physics_process(delta: float) -> void:
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_cd_left = max(0.0, _cd_left - delta)
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# --- start a swing when the cooldown allows ---
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if _queued and _cd_left <= 0.0 and (viewmodel == null or not viewmodel.is_swapping()):
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_queued = false
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var w := weapon()
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_cd_left = w.cooldown
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_swinging = w
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_swing_left = w.swing_time * w.contact
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if viewmodel != null:
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viewmodel.start_swing()
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swung.emit(w)
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# --- land the hit at the contact frame, not on the click ---
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if _swing_left >= 0.0:
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_swing_left -= delta
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if _swing_left <= 0.0:
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var w := _swinging
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_swing_left = -1.0
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_swinging = null
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if w != null:
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var hit := _strike(w)
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if hit != null:
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hit_landed.emit(hit, w)
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# gravity (only off the floor, or it accumulates and you rocket downward)
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if not is_on_floor():
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velocity += get_gravity() * delta
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_fall_speed = maxf(_fall_speed, -velocity.y)
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elif not _was_on_floor:
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if viewmodel != null:
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viewmodel.land(_fall_speed)
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_fall_speed = 0.0
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_was_on_floor = is_on_floor()
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if Input.is_key_pressed(KEY_SPACE) and is_on_floor():
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velocity.y = jump_velocity
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var seated := (tasks != null and tasks.is_working()) or _frozen
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var input_dir := Vector2.ZERO
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if not seated:
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input_dir = Vector2(
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float(Input.is_key_pressed(KEY_D)) - float(Input.is_key_pressed(KEY_A)),
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float(Input.is_key_pressed(KEY_S)) - float(Input.is_key_pressed(KEY_W)))
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var wish := transform.basis * Vector3(input_dir.x, 0.0, input_dir.y)
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wish.y = 0.0
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if wish.length() > 1.0:
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wish = wish.normalized()
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var target := wish * move_speed
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var a := accel if is_on_floor() else air_accel
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if splat != null and is_on_floor():
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# standing in juice: you keep your top speed but lose the ability to change it,
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# which reads as sliding rather than as being slowed down
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a *= 1.0 - 0.82 * splat.slip_under_player()
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velocity.x = move_toward(velocity.x, target.x, a * move_speed * delta)
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velocity.z = move_toward(velocity.z, target.z, a * move_speed * delta)
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move_and_slide()
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func _process(dt: float) -> void:
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if viewmodel != null:
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var planar := Vector2(velocity.x, velocity.z).length()
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viewmodel.drive(_look_delta, planar, is_on_floor(), dt)
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_look_delta = _look_delta.lerp(Vector2.ZERO, clampf(dt * 14.0, 0.0, 1.0))
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# ---------------------------------------------------------------- the hit
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## Forgiving CAPSULE sweep from the camera along the crosshair, so melee doesn't need
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## pixel aim. intersect_shape is NOT distance-sorted, so pick the nearest collider.
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##
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## This used to be a sphere parked AT `reach`, which meant anything CLOSER than the
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## weapon's reach fell in front of the test and was missed completely — you could stand
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## against the printer with a sledgehammer and swing through it. A capsule spanning
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## camera -> camera + dir*reach covers the whole swing instead of just its far end.
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##
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## Runs from _physics_process, where direct_space_state is valid.
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func _strike(w: Weapon) -> Node:
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var space := get_world_3d().direct_space_state
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if space == null:
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return null
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# Swing from roughly where the hands are, not from the eyeballs. With eyes at 1.6 m,
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# a carton sitting on the floor is ~1.5 m away even when you're standing right over
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# it, so a short-reach weapon could never touch anything on the ground. Dropping the
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# origin to hand height fixes that without inflating every weapon's reach.
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var origin := camera.global_position - Vector3(0.0, SWING_DROP, 0.0)
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var dir := -camera.global_transform.basis.z
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var cap := CapsuleShape3D.new()
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cap.radius = w.radius
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cap.height = maxf(w.reach, w.radius * 2.0 + 0.01) # total height, caps included
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# CapsuleShape3D runs along its local Y, so build a basis whose Y is the view dir
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var ref := Vector3.UP if absf(dir.dot(Vector3.UP)) < 0.95 else Vector3.RIGHT
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var bx := ref.cross(dir).normalized()
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var bz := bx.cross(dir).normalized()
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var params := PhysicsShapeQueryParameters3D.new()
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params.shape = cap
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params.transform = Transform3D(Basis(bx, dir, bz), origin + dir * (w.reach * 0.5))
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params.collide_with_bodies = true
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params.collide_with_areas = false
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params.exclude = [get_rid()]
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var hits := space.intersect_shape(params, 8)
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if hits.is_empty():
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return null
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# Prefer a SMASHABLE over anything else in the sweep, and only fall back to loose
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# bodies if there isn't one.
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#
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# This used to just take the nearest collider of any kind, which meant a static
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# surface could eat the swing: leaning over a greengrocer's display table, the table
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# edge is a few centimetres nearer than the fruit piled on it, so every swing hit
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# the table and nothing broke. Same bug was quietly costing hits on desks and shelves
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# in the offices too.
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var best: Node = null
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var best_d := INF
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var fallback: Node = null
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var fallback_d := INF
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for h in hits:
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var c = h.get("collider")
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if c == null or not (c is Node3D):
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continue
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var d: float = (c.global_position - origin).length_squared()
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if c is Smashable:
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if d < best_d:
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best_d = d
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best = c
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elif c is RigidBody3D and d < fallback_d:
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fallback_d = d
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fallback = c
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if best == null:
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best = fallback
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if best == null:
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return null
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# Smashable extends RigidBody3D, so this branch MUST come first or we'd only shove
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# props around and never break them.
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if best is Smashable:
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var s := best as Smashable
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s.smash(dir * w.impulse, w.damage_against(s.kind))
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elif best is RigidBody3D:
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var hit_pos: Vector3 = origin + dir * w.reach
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(best as RigidBody3D).apply_impulse(dir * w.knockback,
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hit_pos - (best as RigidBody3D).global_position)
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return best
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