23 Commits

Author SHA1 Message Date
richard 56593c58cf Release 0.2.0: device-aware controls, spear, settings, shaders
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>
2026-08-09 19:39:37 +03:00
richard ce6f3d7075 Deployment script update 2026-08-09 15:26:01 +03:00
siim a74182255b light tim 2026-08-08 11:47:36 +03:00
siim ebf5046461 credits 2026-07-30 20:21:10 +03:00
richard 271de1b045 ps1 filter variables, crowds 2026-07-30 15:12:22 +03:00
richard 3defc9da95 UI theme 2026-07-30 13:52:50 +03:00
richard ff75dacfb6 New screens, new hud, new intro menu, some UI element changes 2026-07-30 13:52:39 +03:00
richard bf7a454ad0 Win, lose screen. Game version info. Matador a lot more aggressive/wins easier (tweaks needed). No more score/combo/waves 2026-07-30 12:39:51 +03:00
richard ebb6ec6335 Bull roll ability, console screen, tests 2026-07-28 23:10:38 +03:00
siim a0b248748c hud ja camera change 2026-07-24 15:16:21 +03:00
siim 5ef5889979 siim push 2026-07-24 14:51:57 +03:00
siim 2e9d62b964 bull uptade 2026-07-24 10:02:56 +03:00
richard 622830a6ee Hide controls by default 2026-07-22 23:00:45 +03:00
richard 603a674e08 menu interactive, refactor, perf tests, charge bar, debug menu stuff 2026-07-22 22:57:02 +03:00
siim 631df017d1 seq uptate 2026-07-22 22:25:14 +03:00
siim 2c0142d208 + intro sequence 2026-07-22 22:00:22 +03:00
richard c283eb0927 Menu, options with changeable controls, fade transition, placeholder background 2026-07-22 19:45:49 +03:00
siim d379b215e2 intro test 2026-07-21 23:36:41 +03:00
siim cd73a21ab7 intro menu alustasin 2026-07-20 22:40:50 +03:00
richard 6a67bfea36 better ragdoll, launch ragdolls on slam weee 2026-06-25 00:17:12 +03:00
richard b929ed2a7a cooldowns, sword holstering, ability colors 2026-06-25 00:10:40 +03:00
richard 708a35d51f return of the bull 2026-06-24 23:13:14 +03:00
richard 115872b98f sword holster, health 2026-06-24 23:11:19 +03:00
135 changed files with 7832 additions and 989 deletions
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@@ -90,13 +90,28 @@ bash run_tests.sh
# Individual tests:
gdlint *.gd tests/*.gd # GDScript lint (gdtoolkit, installed via uv)
godot --headless --script tests/logic_test.gd # pure logic, ~2 s
godot --headless --script tests/performance_test.gd # frame-budget regression guard, ~4 s
godot --headless --script tests/gameplay_test.gd # full scene, bone sanity, ~4 s
# Gameplay test with real rendering (inspect frame strip visually):
godot --script tests/gameplay_test.gd # opens a window, saves real screenshots
# Output: tests/output/gameplay/motion_00..04.png, ragdoll_trigger.png, ragdoll_result.png
# Difficulty simulation (balance tool, ~2 min):
godot --headless --script tests/difficulty_sim.gd # drives a bot bull vs one matador
```
### Difficulty simulation (`tests/difficulty_sim.gd`)
A balance tool, not a pass/fail test. It drives a kinematic "bot bull" against one
real matador across behaviour profiles (CHARGER / KITER / PASSIVE) and reports the
matador's win rate (how often it gores the bull). Use it to tune matador difficulty
from data. The bot bull has NO abilities (it only kills by ramming), so it can't use
roll/slam/kick — real skilled play beats the matador more than these numbers imply;
read the rates as "how well the matador threatens each movement pattern." A rough
target is CHARGER high (blind charging is punished), KITER moderate (throws are a
dodgeable threat), PASSIVE high (standing still dies). Note: as a `--script` entry it
reads the `DP` autoload via `/root/DP`, not the global identifier.
### What the gameplay test catches
| Check | What it detects |
|---|---|
@@ -107,6 +122,13 @@ godot --script tests/gameplay_test.gd # opens a window, saves re
Headless screenshots will be blank (Forward Plus has no display). Run without `--headless` to get real frame strips.
### What the performance test catches
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during normal play and during a mass-ragdoll spike, and fails if the average
exceeds 16 ms or any single frame exceeds 100 ms. Budgets are generous regression
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gradual creep shows up before it trips the ceiling.
## Godot 4.x specifics
- `wrapf` / `wrap` instead of manual modulo for angles
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theme_override_constants/line_separation = 6
theme_override_constants/outline_size = 5
theme_override_font_sizes/normal_font_size = 26
theme_override_font_sizes/bold_font_size = 30
bbcode_enabled = true
text = "[center][font_size=32][color=#d9a833]Bullosseum[/color][/font_size]
[b][color=#d9a833]Siim Raud[/color][/b] [url=https://instagram.com/siimpressionist]@siimpressionist[/url]
[font_size=20]Artist[/font_size]
[b][color=#d9a833]Richard Aasa[/color][/b] [url=https://instagram.com/aasarichard]@aasarichard[/url]
[font_size=20]Programmer[/font_size]
[b][color=#d9a833]Kadi Rebane[/color][/b] [url=https://x.com/_barkseven]@_barkseven[/url]
[font_size=20]Arena asset[/font_size][/center]"
fit_content = true
scroll_active = false
[node name="BackButton" type="Button" parent="CreditsPanel/VBox" unique_id=1194791074]
custom_minimum_size = Vector2(0, 48)
layout_mode = 2
theme_override_font_sizes/font_size = 24
text = "Back"
[node name="FadeRect" type="ColorRect" parent="." unique_id=15381366]
layout_mode = 1
anchors_preset = 15
anchor_right = 1.0
anchor_bottom = 1.0
grow_horizontal = 2
grow_vertical = 2
mouse_filter = 2
color = Color(0, 0, 0, 0)
+1 -1
View File
@@ -1,7 +1,7 @@
[gd_scene format=3 uid="uid://matador_scene_v1"]
[ext_resource type="Script" path="res://matador.gd" id="1_matgd"]
[ext_resource type="PackedScene" uid="uid://ch5fiscgxfmpc" path="res://Blender/matador.glb" id="2_matfbx"]
[ext_resource type="PackedScene" uid="uid://eu2lqjhowj4t" path="res://Assets/Matador.glb" id="2_matfbx"]
[sub_resource type="CapsuleShape3D" id="CapsuleShape3D_body"]
radius = 0.25
+49
View File
@@ -0,0 +1,49 @@
extends CPUParticles3D
## One-shot blood spray. Add as a child of whatever bleeds, then call burst().
func _ready() -> void:
var mat := StandardMaterial3D.new()
mat.shading_mode = BaseMaterial3D.SHADING_MODE_UNSHADED
mat.transparency = BaseMaterial3D.TRANSPARENCY_ALPHA
mat.vertex_color_use_as_albedo = true
mat.cull_mode = BaseMaterial3D.CULL_DISABLED
var sphere := SphereMesh.new()
sphere.radius = 0.07
sphere.height = 0.14
sphere.radial_segments = 4
sphere.rings = 2
sphere.material = mat
var ramp := Gradient.new()
ramp.set_color(0, Color(1.0, 0.02, 0.02, 1.0))
ramp.set_color(1, Color(0.25, 0.0, 0.0, 0.0))
var scale_curve := Curve.new()
scale_curve.add_point(Vector2(0.0, 1.0))
scale_curve.add_point(Vector2(0.6, 0.5))
scale_curve.add_point(Vector2(1.0, 0.0))
mesh = sphere
color_ramp = ramp
scale_amount_curve = scale_curve
one_shot = true
explosiveness = 0.9
amount = 25
lifetime = 1.1
randomness = 0.4
local_coords = false
spread = 80.0
gravity = Vector3(0.0, -7.0, 0.0)
initial_velocity_min = 4.0
initial_velocity_max = 11.0
scale_amount_min = 0.5
scale_amount_max = 1.6
emitting = false
# Fire a burst at a world position, sprayed along dir (biased upward).
func burst(at: Vector3, dir: Vector3) -> void:
global_position = at
direction = (dir * 0.6 + Vector3.UP * 0.4).normalized()
restart()
+1
View File
@@ -0,0 +1 @@
uid://cnhmhom4w5o3i
+8 -17
View File
@@ -15,6 +15,10 @@ var _aerial_pitch: float = 0.0
var charge_pitch_target: float = 0.0
var _charge_pitch_curr: float = 0.0
# When true, another system (the roll's ball-tumble) owns the bull's full
# orientation — skip writing body wobble so we don't fight it.
var external_rotation: bool = false
# Tail — Verlet chain simulation
const TAIL_BONES: Array = [
&"tail_1", &"tail_2", &"tail_3", &"tail_4",
@@ -94,18 +98,14 @@ func _setup_tail() -> void:
_tail_parent_idx = _skeleton.get_bone_parent(_tail_idx[0])
func _unhandled_input(event: InputEvent) -> void:
if event is InputEventKey and event.pressed and not event.echo:
if event.physical_keycode == KEY_QUOTELEFT:
_dbg_toggle()
func _process(delta: float) -> void:
if not _skeleton:
return
_wobble_body(delta)
_update_tail(delta)
_apply_tail()
if DP.b("show_tail") != _dbg_on:
_dbg_toggle()
if _dbg_on:
_dbg_update()
@@ -132,6 +132,8 @@ func _wobble_body(delta: float) -> void:
_aerial_pitch = lerpf(_aerial_pitch, target_pitch, delta * DP.f("aerial_pitch_speed"))
_charge_pitch_curr = lerpf(_charge_pitch_curr, charge_pitch_target, delta * DP.f("charge_head_speed"))
if external_rotation:
return
_bull.rotation.x = _tilt_x + _aerial_pitch + _charge_pitch_curr
_bull.rotation.z = _tilt_z
@@ -243,12 +245,9 @@ func _dbg_toggle() -> void:
n.queue_free()
_dbg_nodes.clear()
_dbg_on = false
print("TailDebug OFF")
else:
_dbg_build()
_dbg_on = true
var pname := _skeleton.get_bone_name(_tail_parent_idx) if _tail_parent_idx >= 0 else "none"
print("TailDebug ON parent_bone=", pname, " bull_pos=", _bull.global_position)
func _dbg_build() -> void:
@@ -275,14 +274,6 @@ func _dbg_build() -> void:
func _dbg_update() -> void:
for i: int in _dbg_nodes.size():
_dbg_nodes[i].global_position = _tail_world[i]
# Print positions every ~60 frames
if Engine.get_process_frames() % 60 == 0:
var parent_y := 0.0
if _tail_parent_idx >= 0:
parent_y = _skeleton.to_global(_skeleton.get_bone_global_pose(_tail_parent_idx).origin).y
print("anchor_Y=%.2f parent_bone_Y=%.2f player_Y=%.2f on_floor=%s" % [
_tail_world[0].y, parent_y, _player.global_position.y,
str(_player.is_on_floor())])
# ── Utility ───────────────────────────────────────────────────────────────────
+67 -42
View File
@@ -1,94 +1,119 @@
extends Camera3D
@export var height: float = 28.0
@export var horizontal_distance: float = 28.0
@export var height: float = 25.0
@export var horizontal_distance: float = 25.0
@export var horizontal_angle_deg: float = 45.0
@export var size_min: float = 5.0
@export var size_max: float = 30.0
@export var default_size: float = 15.0
# Perspective zoom (FOV)
@export var fov_min: float = 20.0
@export var fov_max: float = 75.0
@export var default_fov: float = 30.0
@export var focus_slice_thickness: float = 6.0
@export var blur_transition: float = 15.0
var _shake_amount: float = 0.0
var _shake_decay: float = 0.0
var _user_size: float = 0.0
var _charge_active: bool = false
var _user_fov: float = 0.0
# Trailing-camera state: _focus is the smoothed point the camera frames (it lags
# the bull), _drag_offset is the velocity-driven trail that slides it behind.
var _focus: Vector3 = Vector3.ZERO
var _drag_offset: Vector3 = Vector3.ZERO
var _focus_init: bool = false
func _ready() -> void:
set_as_top_level(true)
projection = Camera3D.PROJECTION_ORTHOGONAL
_user_size = default_size
size = default_size
projection = Camera3D.PROJECTION_PERSPECTIVE
fov = default_fov
_user_fov = default_fov
near = 0.1
far = 150.0
func _unhandled_input(event: InputEvent) -> void:
if event.is_action_pressed("zoom_in"):
_user_size = clamp(_user_size / 1.2, size_min, size_max)
_user_fov = clamp(_user_fov / 1.1, fov_min, fov_max)
if event.is_action_pressed("zoom_out"):
_user_size = clamp(_user_size * 1.2, size_min, size_max)
_user_fov = clamp(_user_fov * 1.1, fov_min, fov_max)
func _process(delta: float) -> void:
var zoom_target := _user_size * DP.f("charge_zoom_factor") if _charge_active else _user_size
size = lerpf(size, zoom_target, delta * 8.0)
fov = lerpf(fov, _user_fov, delta * 8.0)
var angle_rad := deg_to_rad(horizontal_angle_deg)
var offset := Vector3(
sin(angle_rad) * horizontal_distance,
height,
cos(angle_rad) * horizontal_distance,
cos(angle_rad) * horizontal_distance
)
var target := get_parent() as Node3D
global_position = target.global_position + offset
look_at(target.global_position, Vector3.UP)
_update_ortho_tilt_shift_dof(target.global_position)
var target := get_parent() as Node3D
var focus := _drag_focus(target, delta)
global_position = focus + offset
look_at(focus, Vector3.UP)
_update_dof(focus)
if _shake_amount > 0.005:
global_position += Vector3(
randf_range(-_shake_amount, _shake_amount),
randf_range(-_shake_amount * 0.25, _shake_amount * 0.25),
randf_range(-_shake_amount, _shake_amount),
randf_range(-_shake_amount, _shake_amount)
)
_shake_amount = move_toward(_shake_amount, 0.0, _shake_decay * delta)
# Smoothed follow point that drags behind the bull. The target trail sits opposite
# the bull's flat velocity (cam_drag metres per m/s); the offset and the focus both
# ease toward their targets so the camera lags and settles rather than snapping.
func _drag_focus(target: Node3D, delta: float) -> Vector3:
var pos := target.global_position
if not _focus_init:
_focus = pos
_focus_init = true
var vel := Vector3.ZERO
if target is CharacterBody3D:
vel = (target as CharacterBody3D).velocity
vel.y = 0.0
var drag_target := -vel * DP.f("cam_drag")
_drag_offset = _drag_offset.lerp(drag_target, clampf(DP.f("cam_drag_speed") * delta, 0.0, 1.0))
_focus = _focus.lerp(pos + _drag_offset, clampf(DP.f("cam_follow_lerp") * delta, 0.0, 1.0))
return _focus
func trigger_hit(strength: float) -> void:
if not Settings.screen_shake:
return
_shake_amount = strength * 0.5
_shake_decay = _shake_amount / 0.4
func set_charge_active(active: bool) -> void:
_charge_active = active
func _update_ortho_tilt_shift_dof(target_pos: Vector3) -> void:
func _update_dof(target_pos: Vector3) -> void:
var cam_attr: CameraAttributesPractical = null
if "attributes" in self and self.attributes is CameraAttributesPractical:
cam_attr = self.attributes
elif "camera_attributes" in self and self.camera_attributes is CameraAttributesPractical:
cam_attr = self.camera_attributes
if attributes is CameraAttributesPractical:
cam_attr = attributes
if cam_attr != null:
var to_target := target_pos - global_position
var forward_vector := -global_transform.basis.z
var ortho_depth := to_target.dot(forward_vector)
if cam_attr == null:
return
var zoom_factor := size / default_size
var dynamic_slice := focus_slice_thickness * zoom_factor
var half_slice := dynamic_slice * 0.5
var distance := global_position.distance_to(target_pos)
var base_transition := blur_transition * zoom_factor
cam_attr.dof_blur_near_distance = max(distance - focus_slice_thickness * 0.5, near + 0.1)
cam_attr.dof_blur_far_distance = distance + focus_slice_thickness * 0.5
cam_attr.dof_blur_near_transition = blur_transition
cam_attr.dof_blur_far_transition = blur_transition
cam_attr.dof_blur_far_distance = ortho_depth + half_slice
cam_attr.dof_blur_near_distance = maxf(near + 0.1, ortho_depth - half_slice)
cam_attr.dof_blur_far_transition = maxf(0.1, base_transition * 0.5)
cam_attr.dof_blur_near_transition = maxf(1.0, base_transition * 1.5)
cam_attr.dof_blur_far_enabled = false
cam_attr.dof_blur_near_enabled = false
cam_attr.dof_blur_far_enabled = false
+651
View File
@@ -0,0 +1,651 @@
extends Node
## Quake-style drop-down developer console (autoload "Console"). Toggle with the
## backtick/tilde key (`/~) — matched by physical position so it works on any
## keyboard layout and with or without Shift.
## Query a param: type its name. Set it: "name value".
## Tab = complete top match · ↑↓ = browse suggestions / history · Esc = close.
const CONSOLE_HEIGHT_RATIO := 0.25
const SLIDE_DURATION := 0.18
const MAX_SUGGESTIONS := 10
const LOG_MAX_LINES := 300
# Built-in commands (name → one-line help). Surfaced in autocomplete alongside
# param keys and printed by `help`. None collide with param key names.
const _COMMANDS := {
"save": "persist values to disk",
"reset": "reset all, or reset <name>",
"diff": "list params changed from default",
"toggle": "flip a bool param",
"list": "print params (optional section)",
"clear": "clear the log",
"help": "show this help",
}
var _canvas: CanvasLayer
var _panel: PanelContainer
var _log: RichTextLabel
var _suggest_panel: PanelContainer
var _suggest_box: VBoxContainer
var _suggest_labels: Array[Label] = []
var _input_field: LineEdit
var _tween: Tween
var _is_open: bool = false
var _prev_mouse: Input.MouseMode = Input.MOUSE_MODE_CAPTURED
var _suggestions: Array[String] = []
var _selected_idx: int = -1
var _history: Array[String] = []
var _history_idx: int = -1 # -1 = editing the live line
var _pending_line: String = "" # live line stashed while browsing history
func _ready() -> void:
# Keep the console (and its slide tween/input) alive while the tree is paused.
process_mode = Node.PROCESS_MODE_ALWAYS
_build_ui()
func _build_ui() -> void:
var mono := SystemFont.new()
mono.font_names = PackedStringArray([
"JetBrains Mono", "DejaVu Sans Mono", "Consolas", "Menlo", "monospace",
])
_canvas = CanvasLayer.new()
_canvas.layer = 128
add_child(_canvas)
_panel = PanelContainer.new()
_panel.anchor_left = 0.0
_panel.anchor_right = 1.0
_panel.anchor_top = 0.0
_panel.anchor_bottom = 0.0
_panel.offset_bottom = 500.0
_panel.mouse_filter = Control.MOUSE_FILTER_STOP
_panel.visible = false
var bg := StyleBoxFlat.new()
bg.bg_color = Color(0.04, 0.06, 0.04, 0.94)
bg.border_width_bottom = 2
bg.border_color = Color(0.2, 0.8, 0.2, 1.0)
_panel.add_theme_stylebox_override("panel", bg)
_canvas.add_child(_panel)
var root_vbox := VBoxContainer.new()
root_vbox.size_flags_horizontal = Control.SIZE_FILL
root_vbox.size_flags_vertical = Control.SIZE_FILL
_panel.add_child(root_vbox)
# ── Log ───────────────────────────────────────────────────────────────────
_log = RichTextLabel.new()
_log.bbcode_enabled = true
_log.scroll_following = true
_log.size_flags_vertical = Control.SIZE_EXPAND_FILL
_log.size_flags_horizontal = Control.SIZE_FILL
_log.add_theme_font_size_override("normal_font_size", 13)
_log.add_theme_constant_override("line_separation", 1)
# Monospace so the rpad-aligned suggestion/list columns actually line up.
_log.add_theme_font_override("normal_font", mono)
_log.add_theme_font_override("bold_font", mono)
_log.add_theme_font_override("mono_font", mono)
root_vbox.add_child(_log)
# ── Suggestion panel ──────────────────────────────────────────────────────
_suggest_panel = PanelContainer.new()
_suggest_panel.visible = false
_suggest_panel.mouse_filter = Control.MOUSE_FILTER_IGNORE
var sg_bg := StyleBoxFlat.new()
sg_bg.bg_color = Color(0.06, 0.10, 0.06, 0.97)
sg_bg.border_width_top = 1
sg_bg.border_color = Color(0.15, 0.55, 0.15, 0.8)
_suggest_panel.add_theme_stylebox_override("panel", sg_bg)
root_vbox.add_child(_suggest_panel)
_suggest_box = VBoxContainer.new()
_suggest_box.add_theme_constant_override("separation", 0)
_suggest_panel.add_child(_suggest_box)
for _i in MAX_SUGGESTIONS:
var lbl := Label.new()
lbl.visible = false
lbl.add_theme_font_size_override("font_size", 13)
lbl.add_theme_font_override("font", mono)
_suggest_box.add_child(lbl)
_suggest_labels.append(lbl)
root_vbox.add_child(HSeparator.new())
# ── Input row ─────────────────────────────────────────────────────────────
var in_margin := MarginContainer.new()
in_margin.add_theme_constant_override("margin_left", 10)
in_margin.add_theme_constant_override("margin_right", 10)
in_margin.add_theme_constant_override("margin_top", 4)
in_margin.add_theme_constant_override("margin_bottom", 6)
root_vbox.add_child(in_margin)
var in_row := HBoxContainer.new()
in_row.add_theme_constant_override("separation", 6)
in_margin.add_child(in_row)
var prompt_lbl := Label.new()
prompt_lbl.text = ">"
prompt_lbl.modulate = Color(0.35, 1.0, 0.35)
prompt_lbl.add_theme_font_override("font", mono)
in_row.add_child(prompt_lbl)
_input_field = LineEdit.new()
_input_field.size_flags_horizontal = Control.SIZE_EXPAND_FILL
_input_field.placeholder_text = "param · param value · toggle <bool> · save reset diff list clear help"
_input_field.clear_button_enabled = true
_input_field.add_theme_font_size_override("font_size", 14)
_input_field.add_theme_font_override("font", mono)
# Drop the default LineEdit chrome (the white box border) — the panel is the frame.
var flat := StyleBoxFlat.new()
flat.bg_color = Color(0, 0, 0, 0)
flat.set_border_width_all(0)
flat.set_content_margin_all(2)
_input_field.add_theme_stylebox_override("normal", flat)
_input_field.add_theme_stylebox_override("focus", flat)
in_row.add_child(_input_field)
_input_field.text_changed.connect(_on_text_changed)
_input_field.text_submitted.connect(_on_submitted)
# ── Input handling ────────────────────────────────────────────────────────────
func _input(event: InputEvent) -> void:
if not (event is InputEventKey and (event as InputEventKey).pressed
and not (event as InputEventKey).echo):
return
var ke := event as InputEventKey
# Backtick/tilde — toggle regardless of focus. Match by physical position so a
# non-US layout or a Shift-produced ~ both open the console.
if ke.physical_keycode == KEY_QUOTELEFT:
_toggle()
get_viewport().set_input_as_handled()
return
if not _is_open:
return
# Ctrl+C clears the input line, Ctrl+L clears the log — familiar shell reflexes.
if ke.ctrl_pressed:
match ke.keycode:
KEY_C:
_clear_input()
get_viewport().set_input_as_handled()
return
KEY_L:
_log.clear()
get_viewport().set_input_as_handled()
return
match ke.keycode:
KEY_TAB:
_accept_completion()
get_viewport().set_input_as_handled()
KEY_UP:
_arrow(-1)
get_viewport().set_input_as_handled()
KEY_DOWN:
_arrow(1)
get_viewport().set_input_as_handled()
KEY_ESCAPE:
_toggle()
get_viewport().set_input_as_handled()
# Focus can be stolen a frame or more after we re-grab it (submit, arrows, the tree
# unpausing), so a one-shot deferred grab loses the race. Enforce it every frame
# while the console is open — cheap, and it never lets the command line go dark.
func _process(_delta: float) -> void:
if _is_open and not _input_field.has_focus():
# Diagnostic: name whatever currently holds focus before we snatch it back, so
# a persistent thief (a HUD button, a menu control) shows up in the log instead
# of us guessing. Remove once the culprit is identified.
var owner: Control = get_viewport().gui_get_focus_owner()
var who: String = String(owner.name) if owner != null else "<nothing>"
_log_warn("focus stolen by %s — reclaiming" % who)
_input_field.grab_focus()
func _toggle() -> void:
_is_open = not _is_open
get_tree().paused = _is_open
var h := get_viewport().get_visible_rect().size.y * CONSOLE_HEIGHT_RATIO
_panel.offset_bottom = h
if _tween:
_tween.kill()
_tween = create_tween().set_ease(Tween.EASE_OUT).set_trans(Tween.TRANS_QUART)
if _is_open:
_prev_mouse = Input.mouse_mode
Input.mouse_mode = Input.MOUSE_MODE_VISIBLE
_panel.position.y = -h
_panel.visible = true
_tween.tween_property(_panel, "position:y", 0.0, SLIDE_DURATION)
_tween.tween_callback(_input_field.grab_focus)
else:
_tween.tween_property(_panel, "position:y", -h, SLIDE_DURATION)
_tween.tween_callback(func() -> void: _panel.visible = false)
Input.mouse_mode = _prev_mouse
_clear_suggestions()
# ── Fuzzy autocomplete ────────────────────────────────────────────────────────
func _on_text_changed(text: String) -> void:
_selected_idx = -1
_history_idx = -1
var query := text.get_slice(" ", 0).strip_edges()
if query.is_empty():
_clear_suggestions()
return
_refresh_suggestions(query)
func _refresh_suggestions(query: String) -> void:
var ql := query.to_lower()
var scored : Array = []
# Commands rank above params on an equal score so a leading "re" surfaces the
# `reset` verb, not just params that happen to contain those letters.
for name: String in _COMMANDS:
var cs := _fuzzy_score(ql, name)
if cs > 0:
scored.append([cs + 1, name])
for key: String in DP.get_all():
var s := _fuzzy_score(ql, key.to_lower())
if s > 0:
scored.append([s, key])
scored.sort_custom(func(a: Array, b: Array) -> bool: return a[0] > b[0])
_suggestions.clear()
for i in mini(scored.size(), MAX_SUGGESTIONS):
_suggestions.append(scored[i][1])
for i in MAX_SUGGESTIONS:
if i < _suggestions.size():
_suggest_labels[i].text = _suggestion_text(_suggestions[i])
_suggest_labels[i].modulate = _suggestion_color(i)
_suggest_labels[i].visible = true
else:
_suggest_labels[i].visible = false
_suggest_panel.visible = not _suggestions.is_empty()
func _is_command(name: String) -> bool:
return _COMMANDS.has(name)
func _suggestion_text(name: String) -> String:
if _is_command(name):
return " %s [cmd] %s" % [name.rpad(10), _COMMANDS[name]]
var meta: Dictionary = DP.get_all()[name]
return " %s %s [%s]" % [name.rpad(28), _fmt_val(name, meta).rpad(8), meta["section"]]
func _suggestion_color(idx: int) -> Color:
if idx == _selected_idx:
return Color(1.0, 1.0, 0.4) # selected — yellow
if idx == 0:
return Color(0.85, 1.0, 0.70) # top match — bright green
return Color(0.60, 0.78, 0.50) # rest — muted green
func _fuzzy_score(query: String, target: String) -> int:
var qi := 0
var score := 0
var last := -1
for ti in target.length():
if qi >= query.length():
break
if target[ti] == query[qi]:
score += 10 + (5 if ti == last + 1 else 0)
last = ti
qi += 1
if qi < query.length():
return 0 # not all query chars matched
if target.begins_with(query):
score += 50
if target == query:
score += 100
return score
func _fmt_val(_key: String, meta: Dictionary) -> String:
if meta["type"] == TYPE_FLOAT:
return _fmt_num(meta["value"] as float)
if meta["type"] == TYPE_BOOL:
var bval: bool = meta["value"]
return "true" if bval else "false"
return str(meta["value"])
# Render a float as a plain decimal — trailing zeros trimmed but always at least one
# place, so it always reads as a float (4.0, 0.4, 0.005) never an int (4).
func _fmt_num(v: float) -> String:
var s := ("%.4f" % v).rstrip("0")
if s.ends_with("."):
s += "0"
return s
func _clear_suggestions() -> void:
_suggestions.clear()
_selected_idx = -1
for lbl in _suggest_labels:
lbl.visible = false
_suggest_panel.visible = false
# ↑/↓ move through the suggestion list while it's open; once it's gone they recall
# command history instead. Same keys, context decides — no separate binding to learn.
func _arrow(dir: int) -> void:
if _suggest_panel.visible and not _suggestions.is_empty():
_move_selection(dir)
else:
_history_step(-dir)
# Highlight the next/prev suggestion and drop "<name> <value>" into the field with the
# value pre-selected, so you just type your number over it.
func _move_selection(dir: int) -> void:
if _selected_idx < 0:
_selected_idx = 0 if dir > 0 else _suggestions.size() - 1
else:
_selected_idx = wrapi(_selected_idx + dir, 0, _suggestions.size())
_recolor_suggestions()
_fill_selected()
# Tab commits the highlighted suggestion (top match if none yet) and closes the list.
func _accept_completion() -> void:
if _suggestions.is_empty():
return
_selected_idx = maxi(_selected_idx, 0)
_fill_selected()
_clear_suggestions()
func _fill_selected() -> void:
var key := _suggestions[_selected_idx]
# A command drops in as "verb " ready for its argument (or a bare Enter); a
# param drops in as "key value" with the value pre-selected to type over.
# Suggestions stay open either way so ↑↓ keeps cycling.
if _is_command(key):
_input_field.text = key + " "
_input_field.caret_column = _input_field.text.length()
return
var meta: Dictionary = DP.get_all()[key]
_input_field.text = "%s %s" % [key, _fmt_val(key, meta)]
_input_field.caret_column = _input_field.text.length()
_input_field.select(key.length() + 1)
func _recolor_suggestions() -> void:
for i in MAX_SUGGESTIONS:
if _suggest_labels[i].visible:
_suggest_labels[i].modulate = _suggestion_color(i)
# ↑ recalls older commands, ↓ newer ones; index -1 is the live (in-progress) line,
# which is stashed on the first ↑ and restored when you step back down to it.
func _history_step(dir: int) -> void:
if _history.is_empty():
return
var target := _history_idx + dir
if target < -1 or target >= _history.size():
return
if _history_idx == -1 and dir > 0:
_pending_line = _input_field.text
_history_idx = target
_set_input(_pending_line if _history_idx == -1 else _history[_history_idx])
# Wipe the live line (Ctrl+C) without submitting — also drops any suggestion popup
# and resets history browsing so the next ↑ starts fresh.
func _clear_input() -> void:
_input_field.clear()
_history_idx = -1
_pending_line = ""
_clear_suggestions()
func _set_input(text: String) -> void:
_input_field.text = text
_input_field.caret_column = text.length()
_clear_suggestions()
# ── Command execution ─────────────────────────────────────────────────────────
func _on_submitted(raw: String) -> void:
raw = raw.strip_edges()
if raw.is_empty():
return
if _history.is_empty() or _history[0] != raw:
_history.push_front(raw)
_history_idx = -1
_pending_line = ""
_input_field.clear()
_clear_suggestions()
_execute(raw)
func _execute(cmd: String) -> void:
_log_raw("[color=#3a5a3a]> %s[/color]" % _esc(cmd))
var parts := cmd.split(" ", false)
if parts.is_empty():
return
if _run_command(parts):
return
# Not a command — treat as a param key, with fuzzy fall-back for partial names.
var key := _resolve_key(parts[0])
if key.is_empty():
return
var meta: Dictionary = DP.get_all()[key]
if parts.size() == 1:
_read_param(key, meta)
else:
_set_param(key, meta, parts[1])
# Run a built-in command; returns false if parts[0] isn't one (caller falls through
# to param handling). Kept separate from _execute to keep each dispatch shallow.
func _run_command(parts: PackedStringArray) -> bool:
match parts[0].to_lower():
"save":
DP.save()
_log_ok("Saved.")
"reset":
_cmd_reset(parts)
"toggle":
_cmd_toggle(parts)
"diff":
_cmd_diff()
"list":
_cmd_list(parts)
"clear":
_log.clear()
"help":
_cmd_help()
_:
return false
return true
# Resolve a user-typed token to a param key: exact match, else unique fuzzy match.
# Logs an ambiguity / unknown warning (and an arrow on a fuzzy hit) and returns
# "" when it can't narrow to a single key.
func _resolve_key(raw: String) -> String:
if DP.get_all().has(raw):
return raw
var matches := _fuzzy_find_all(raw)
if matches.size() == 1:
_log_raw("[color=#8888ff]→ %s[/color]" % matches[0])
return matches[0]
if matches.size() > 1:
_log_warn("Ambiguous '%s': %s" % [_esc(raw), ", ".join(matches.slice(0, 6))])
else:
_log_warn("Unknown: %s" % _esc(raw))
return ""
func _cmd_reset(parts: PackedStringArray) -> void:
if parts.size() == 1:
DP.reset_all()
_log_ok("All params reset to defaults.")
return
var key := _resolve_key(parts[1])
if key.is_empty():
return
DP.reset(key)
_log_ok("[b]%s[/b] reset to [color=#ffe080]%s[/color]" % [key, _fmt_val(key, DP.get_all()[key])])
func _cmd_toggle(parts: PackedStringArray) -> void:
if parts.size() < 2:
_log_warn("Usage: toggle <bool param>")
return
var key := _resolve_key(parts[1])
if key.is_empty():
return
var meta: Dictionary = DP.get_all()[key]
if meta["type"] != TYPE_BOOL:
_log_warn("%s is not a bool — use '%s <value>'" % [key, key])
return
var v := not (meta["value"] as bool)
DP.set_value(key, v)
_log_ok("[b]%s[/b] ← [color=#ffe080]%s[/color]" % [key, "true" if v else "false"])
# List only params that currently differ from their registered default, grouped by
# section — the "what have I actually changed?" view before a save.
func _cmd_diff() -> void:
var all := DP.get_all()
var sections: Dictionary = {}
for key: String in all:
if not DP.is_modified(key):
continue
var sec: String = all[key]["section"]
if not sections.has(sec):
sections[sec] = []
sections[sec].append(key)
if sections.is_empty():
_log_ok("All params at defaults.")
return
for sec: String in sections:
_log_raw("[color=#6699ff][b]%s[/b][/color]" % sec)
for key: String in sections[sec]:
var meta: Dictionary = all[key]
_log_raw(" [color=#777777]%s[/color] = [color=#ffe080]%s[/color] [color=#484848](def %s)[/color]" % [
key, _fmt_val(key, meta), _fmt_default(meta)
])
func _cmd_help() -> void:
_log_raw("[color=#888888] <name>[/color] — read current value + range")
_log_raw("[color=#888888] <name> <value>[/color] — set it (number, or true/false)")
for name: String in _COMMANDS:
_log_raw("[color=#888888] %s[/color] — %s" % [name.rpad(20), _COMMANDS[name]])
_log_raw(" [color=#555555]↑↓ pick suggestion · Tab complete · ↑↓ history when empty · ` close[/color]")
func _fmt_default(meta: Dictionary) -> String:
if meta["type"] == TYPE_FLOAT:
return _fmt_num(meta["default"] as float)
return "true" if (meta["default"] as bool) else "false"
func _read_param(key: String, meta: Dictionary) -> void:
if meta["type"] == TYPE_FLOAT:
_log_raw("[b]%s[/b] = [color=#ffe080]%s[/color] [color=#484848](%s%s)[/color]" % [
key, _fmt_val(key, meta),
_fmt_num(meta["min"] as float), _fmt_num(meta["max"] as float),
])
else:
_log_raw("[b]%s[/b] = [color=#ffe080]%s[/color] [color=#484848](true / false)[/color]" % [
key, _fmt_val(key, meta),
])
func _set_param(key: String, meta: Dictionary, raw: String) -> void:
if meta["type"] == TYPE_FLOAT:
var lo := meta["min"] as float
var hi := meta["max"] as float
if not raw.is_valid_float() or not is_finite(raw.to_float()):
_log_warn("%s wants a number %s%s" % [key, _fmt_num(lo), _fmt_num(hi)])
return
var v := snappedf(clampf(raw.to_float(), lo, hi), meta["step"] as float)
DP.set_value(key, v)
_log_ok("[b]%s[/b] ← [color=#ffe080]%s[/color]" % [key, _fmt_num(v)])
elif meta["type"] == TYPE_BOOL:
match raw.to_lower():
"1", "true", "yes", "on":
DP.set_value(key, true)
_log_ok("[b]%s[/b] ← [color=#ffe080]true[/color]" % key)
"0", "false", "no", "off":
DP.set_value(key, false)
_log_ok("[b]%s[/b] ← [color=#ffe080]false[/color]" % key)
_:
_log_warn("%s wants true or false" % key)
else:
_log_warn("Cannot set param of type %d" % meta["type"])
func _cmd_list(parts: PackedStringArray) -> void:
var filter := parts[1].to_lower() if parts.size() > 1 else ""
var all := DP.get_all()
var sections: Dictionary = {}
for key: String in all:
var sec: String = all[key]["section"]
if filter.length() > 0:
if not sec.to_lower().begins_with(filter) and not key.to_lower().contains(filter):
continue
if not sections.has(sec):
sections[sec] = []
sections[sec].append(key)
for sec: String in sections:
_log_raw("[color=#6699ff][b]%s[/b][/color]" % sec)
for key: String in sections[sec]:
_log_raw(" [color=#777777]%s[/color] = [color=#ffe080]%s[/color]" % [
key, _fmt_val(key, all[key])
])
func _fuzzy_find_all(query: String) -> Array[String]:
var result: Array[String] = []
var ql := query.to_lower()
for key: String in DP.get_all():
if _fuzzy_score(ql, key.to_lower()) > 0:
result.append(key)
return result
# ── Logging ───────────────────────────────────────────────────────────────────
## Neutralise BBCode in user-supplied text before it reaches the RichTextLabel,
## so malformed or hostile tags (e.g. [img]) render literally instead of running.
func _esc(text: String) -> String:
return text.replace("[", "[lb]")
func _log_raw(text: String) -> void:
if _log.get_line_count() > LOG_MAX_LINES:
_log.clear()
_log.append_text(text + "\n")
func _log_ok(text: String) -> void:
_log_raw("[color=#66ee88]%s[/color]" % text)
func _log_warn(text: String) -> void:
_log_raw("[color=#ff7744]%s[/color]" % text)
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extends Node
## Global keybinding manager (autoload `Controls`).
## Loads saved keyboard bindings on startup and applies them to InputMap so
## rebinds made in the intro menu persist into the game scene. Only the
## keyboard event of each action is overridden; joypad/mouse events are kept.
const SAVE_PATH := "user://controls.cfg"
const SECTION := "keybinds"
## Actions the options menu lets the player rebind (keyboard only).
const REBINDABLE_ACTIONS: PackedStringArray = [
&"move_forward",
&"move_back",
&"move_left",
&"move_right",
&"ability_kick",
&"ability_dash",
&"ability_slam",
&"ability_roll",
]
func _ready() -> void:
load_saved()
## Whether to drive the game with the on-screen touch UI (joystick + buttons)
## instead of keyboard hints. DisplayServer.is_touchscreen_available() can't be
## used here: `emulate_touch_from_mouse` (on for desktop testing) makes it report
## true on every desktop. Gate on the actual runtime platform instead — real
## mobile/native and mobile web browsers — plus the DP force flag for testing.
func use_touch_ui() -> bool:
if DP.b("force_touch_controls"):
return true
return (
OS.has_feature("mobile")
or OS.has_feature("web_android")
or OS.has_feature("web_ios")
)
## Returns the first keyboard event bound to an action, or null.
func get_key_event(action: StringName) -> InputEventKey:
for event: InputEvent in InputMap.action_get_events(action):
if event is InputEventKey:
return event
return null
## Human-readable label for the action's current key (e.g. "W", "Space").
func get_key_label(action: StringName) -> String:
var event := get_key_event(action)
if event == null:
return ""
return event.as_text_physical_keycode()
## Replaces the primary keyboard event of `action` with `event`, keeping
## every other event (e.g. arrow-key alternates, joypad) in its place.
func rebind(action: StringName, event: InputEventKey) -> void:
rebind_no_save(action, event)
save()
func save() -> void:
var cfg := ConfigFile.new()
for action: StringName in REBINDABLE_ACTIONS:
var event := get_key_event(action)
if event != null:
cfg.set_value(SECTION, String(action), event.physical_keycode)
cfg.save(SAVE_PATH)
func load_saved() -> void:
var cfg := ConfigFile.new()
if cfg.load(SAVE_PATH) != OK:
return
for action: StringName in REBINDABLE_ACTIONS:
var key := String(action)
if not cfg.has_section_key(SECTION, key):
continue
var keycode: int = cfg.get_value(SECTION, key)
var event := InputEventKey.new()
event.physical_keycode = keycode as Key
rebind_no_save(action, event)
## Rebuilds the action's event list, swapping the first keyboard event for
## `event` in place so ordering (and thus the "primary" key) is preserved.
func rebind_no_save(action: StringName, event: InputEventKey) -> void:
var events := InputMap.action_get_events(action)
InputMap.action_erase_events(action)
var replaced := false
for existing: InputEvent in events:
if not replaced and existing is InputEventKey:
InputMap.action_add_event(action, event)
replaced = true
else:
InputMap.action_add_event(action, existing)
if not replaced:
InputMap.action_add_event(action, event)
func reset_defaults() -> void:
InputMap.load_from_project_settings()
if FileAccess.file_exists(SAVE_PATH):
DirAccess.remove_absolute(SAVE_PATH)
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uid://dvxx75l5re2mf
+35
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shader_type spatial;
// Flat crowd sprite. Each instance is oriented at build time to face the arena centre
// (see crowd_billboards.gd) — NOT the camera — so spectators on different segments of
// the ring face inward toward the action, like a real stand. Unshaded (the sheet was
// baked with lighting), alpha-tested (no transparency sorting across hundreds of
// quads), nearest-filtered for a crisp PS1 look that matches the ps1_filter effect.
render_mode unshaded, cull_disabled, shadows_disabled, depth_draw_opaque;
uniform sampler2D sheet : source_color, filter_nearest;
uniform int hframes = 8;
uniform float fps = 10.0;
uniform float alpha_clip = 0.4;
varying flat float v_frame;
varying flat vec3 v_tint;
void vertex() {
// Per-instance clap phase (0..1) and tint are packed into the MultiMesh custom data.
// The instance transform already carries the inward facing, so no billboard maths.
float phase = INSTANCE_CUSTOM.x;
v_tint = INSTANCE_CUSTOM.yzw;
v_frame = floor(mod(TIME * fps + phase * float(hframes), float(hframes)));
}
void fragment() {
// Sheet is two rows: top = front, bottom = back. Show the back when the camera is
// behind the spectator (they're facing into the arena, away from us).
float u = (UV.x + v_frame) / float(hframes);
float v = UV.y * 0.5 + (FRONT_FACING ? 0.0 : 0.5);
vec4 c = texture(sheet, vec2(u, v));
if (c.a < alpha_clip) {
discard;
}
ALBEDO = c.rgb * v_tint;
}
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uid://hkdivctavovb
+137
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extends MultiMeshInstance3D
## A whole stand of cheering spectators rendered as camera-facing billboards in a
## single draw call — the performant replacement for dozens of skinned crowd skeletons.
## The sprite sheet is baked from the existing crowd figure by tools/bake_crowd_sheet.gd.
##
## Placement mirrors an existing crowd node (default: the sibling PublikNode) so the
## billboards land exactly where the crowd was authored; if that node is missing it
## falls back to a generated tribune so the scene still populates.
const SHEET_PATH := "res://Assets/crowd_clap_sheet.png"
const SHADER_PATH := "res://crowd_billboard.gdshader"
## Node whose descendant figures (names starting with `figure_prefix`) donate their
## world positions. Empty = use the generated fallback stand.
@export var source_path: NodePath = ^"../PublikNode"
@export var figure_prefix: String = "mees"
## World height of a spectator billboard, in metres. Sheet aspect sets the width.
@export var figure_height: float = 2.0
@export var frames: int = 8
@export var clap_fps: float = 10.0
## Subtle per-spectator brightness spread so the crowd doesn't read as clones.
@export_range(0.0, 0.5) var tint_variation: float = 0.18
# Fallback tribune (used only when source_path resolves to nothing) — concentric arcs
# of seats ringing the arena.
@export_group("Fallback stand")
@export var fallback_count: int = 120
@export var fallback_inner_radius: float = 26.0
@export var fallback_rows: int = 6
@export var fallback_row_rise: float = 1.6
@export var fallback_row_step: float = 2.2
@export var fallback_seat_step: float = 2.4
var _rng := RandomNumberGenerator.new()
func _ready() -> void:
_rng.seed = hash("bullosseum-crowd") # deterministic layout/phases across runs
_build()
func _build() -> void:
var sheet := load(SHEET_PATH) as Texture2D
if sheet == null:
push_warning("crowd_billboards: missing sheet %s — run tools/bake_crowd_sheet.gd" % SHEET_PATH)
return
# Sheet holds `frames` columns and 2 rows (front / back), so a cell is half-height.
var aspect := (float(sheet.get_width()) / float(frames)) / (float(sheet.get_height()) / 2.0)
var quad := QuadMesh.new()
quad.size = Vector2(figure_height * aspect, figure_height)
quad.center_offset = Vector3(0.0, figure_height * 0.5, 0.0) # pivot at the feet
var mat := ShaderMaterial.new()
mat.shader = load(SHADER_PATH) as Shader
mat.set_shader_parameter("sheet", sheet)
mat.set_shader_parameter("hframes", frames)
mat.set_shader_parameter("fps", clap_fps)
material_override = mat
var seats := _seat_positions()
var center := _arena_center(seats)
var mm := MultiMesh.new()
mm.transform_format = MultiMesh.TRANSFORM_3D
mm.use_custom_data = true
mm.mesh = quad
mm.instance_count = seats.size()
for i in seats.size():
var s := 1.0 + _rng.randf_range(-0.06, 0.06) # slight height variety
mm.set_instance_transform(i, Transform3D(_facing_basis(seats[i], center, s), seats[i]))
var b := 1.0 + _rng.randf_range(-tint_variation, tint_variation)
mm.set_instance_custom_data(i, Color(_rng.randf(), b, b * 0.99, b * 0.98))
multimesh = mm
# Orientation for a seat: the sprite's forward (+Z, the quad's face) points horizontally
# inward at the arena centre, so each ring segment faces the action instead of the
# camera. Upright (world +Y), uniformly scaled by `s`.
func _facing_basis(seat: Vector3, center: Vector3, s: float) -> Basis:
var look := center - seat
look.y = 0.0
look = look.normalized() if look.length() > 0.001 else Vector3(0.0, 0.0, -1.0)
var up := Vector3.UP
var right := up.cross(look).normalized()
var basis := Basis()
basis.x = right
basis.y = up
basis.z = look
return basis.scaled(Vector3.ONE * s)
# Horizontal centre the crowd faces — the mean of the seat positions (the ring/stand
# centroid), which for an arena crowd is the middle of the pitch.
func _arena_center(seats: PackedVector3Array) -> Vector3:
if seats.is_empty():
return global_position
var sum := Vector3.ZERO
for p in seats:
sum += p
return sum / float(seats.size())
# Global feet-positions for every spectator: harvested from the source crowd if present,
# otherwise the generated fallback tribune.
func _seat_positions() -> PackedVector3Array:
var out := PackedVector3Array()
var src := get_node_or_null(source_path)
if src != null:
_collect_figures(src, out)
if out.is_empty():
_fallback_stand(out)
return out
func _collect_figures(node: Node, out: PackedVector3Array) -> void:
if node is Node3D and node != self and (node as Node3D).name.begins_with(figure_prefix):
out.append((node as Node3D).global_position)
return # don't descend into a figure's own rig
for c in node.get_children():
_collect_figures(c, out)
func _fallback_stand(out: PackedVector3Array) -> void:
var placed := 0
for row in fallback_rows:
var radius := fallback_inner_radius + float(row) * fallback_row_step
var y := float(row) * fallback_row_rise
var circumference := TAU * radius
var seats_in_row := int(circumference / fallback_seat_step)
for s in seats_in_row:
if placed >= fallback_count:
return
var ang := TAU * float(s) / float(seats_in_row)
out.append(Vector3(cos(ang) * radius, y, sin(ang) * radius))
placed += 1
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shader_type canvas_item;
// Faint red gradient hugging the screen edges, flashed on a hit. `flash` is tweened
// 0.9 → 0 by the HUD; the vignette is transparent in the centre and reddens toward
// the corners so the middle of the screen stays clear.
uniform float flash : hint_range(0.0, 1.0) = 0.0;
uniform vec3 tint : source_color = vec3(0.75, 0.0, 0.0);
uniform float inner : hint_range(0.0, 1.0) = 0.45;
uniform float outer : hint_range(0.0, 1.0) = 1.0;
void fragment() {
// Distance from centre normalised so the corners land at ~1.0.
float dist = length(UV - vec2(0.5)) / 0.70710678;
float v = smoothstep(inner, outer, dist);
COLOR = vec4(tint, v * flash);
}
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+509
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extends Node
## Runtime debug overlays (autoload "DebugDraw").
##
## Two mechanisms, both gated by DP "Debug" bool params so they cost nothing when off:
## • Immediate-mode 3D lines — call DebugDraw.line()/ray() each frame; flushed once
## per frame into a single ImmediateMesh. Used for raycasts and the bone overlay.
## • Shape overlays — a MeshInstance3D attached to each CollisionShape3D, reconciled
## incrementally so static geometry is never re-instanced and freshly spawned
## bodies get picked up within one interval.
##
## Toggle from the console:
## show_collisions · show_hitboxes · show_bones · show_raycasts (true / false)
## show_states — floating AI-state tags + velocity vectors over each matador
## show_animation_name — floating current-clip tag over every AnimationPlayer host
## show_stats — 2D corner readout: fps / frame ms / draw calls / matador tally
## show_grid — 1 m reference grid on the ground plane around the origin
## show_axes — RGB world-axis gizmo at the origin
## show_wireframe — render the whole viewport in wireframe
const REBUILD_INTERVAL := 0.5
const STATS_INTERVAL := 0.2 # stats text is re-composed 5×/sec, not every frame
const COLOR_BODY := Color(0.30, 1.0, 0.45) # collision wireframes (green)
const COLOR_AREA := Color(0.0, 0.9, 1.0) # hit-area volumes (cyan, translucent)
const COLOR_BONE := Color(1.0, 0.35, 0.9) # skeleton bones (magenta)
const COLOR_VEL := Color(1.0, 0.85, 0.2) # matador velocity vectors (amber)
const COLOR_ANIM := Color(0.55, 0.85, 1.0) # animation-name tags (sky blue)
const COLOR_GRID := Color(0.45, 0.45, 0.45, 0.5)
const AREA_ALPHA := 0.25
const GRID_HALF := 20 # grid extends ±GRID_HALF cells from the origin
const GRID_STEP := 1.0 # metres between grid lines
const AXIS_LEN := 3.0 # length of each world-axis gizmo arm
var _line_mesh: ImmediateMesh
var _lines: PackedVector3Array = PackedVector3Array()
var _colors: PackedColorArray = PackedColorArray()
var _overlays: Dictionary = {} # CollisionShape3D instance id -> MeshInstance3D
var _skeletons: Array[Skeleton3D] = []
var _anim_players: Array[AnimationPlayer] = []
var _reconcile_t: float = 0.0
var _prev_flags: String = ""
var _state_labels: Dictionary = {} # matador instance id -> Label3D
var _anim_labels: Dictionary = {} # AnimationPlayer instance id -> Label3D
var _stats_layer: CanvasLayer = null
var _stats_label: Label = null
var _stats_t: float = 0.0
func _ready() -> void:
process_mode = Node.PROCESS_MODE_ALWAYS # keep drawing while the console pauses the game
process_priority = 1000 # flush after everyone has queued their lines
# One-time: wireframe debug-draw needs the wireframe index buffers generated.
RenderingServer.set_debug_generate_wireframes(true)
_line_mesh = ImmediateMesh.new()
var inst := MeshInstance3D.new()
inst.mesh = _line_mesh
inst.material_override = _line_material()
inst.cast_shadow = GeometryInstance3D.SHADOW_CASTING_SETTING_OFF
add_child(inst)
# ── Public immediate-mode API ──────────────────────────────────────────────────
func line(from: Vector3, to: Vector3, color: Color = Color.YELLOW) -> void:
_lines.append(from)
_lines.append(to)
_colors.append(color)
_colors.append(color)
func ray(from: Vector3, to: Vector3, color: Color = Color.YELLOW) -> void:
line(from, to, color)
# ── Frame flush ────────────────────────────────────────────────────────────────
func _process(delta: float) -> void:
_reconcile(delta)
if DP.b("show_bones"):
_draw_bones()
if DP.b("show_states"):
_update_state_labels()
elif not _state_labels.is_empty():
_clear_state_labels()
if DP.b("show_animation_name"):
_update_anim_labels()
elif not _anim_labels.is_empty():
_clear_anim_labels()
if DP.b("show_grid"):
_draw_grid()
if DP.b("show_axes"):
_draw_axes()
_update_wireframe()
_update_stats(delta)
_flush_lines()
func _flush_lines() -> void:
_line_mesh.clear_surfaces()
if not _lines.is_empty():
_line_mesh.surface_begin(Mesh.PRIMITIVE_LINES)
for i in _lines.size():
_line_mesh.surface_set_color(_colors[i])
_line_mesh.surface_add_vertex(_lines[i])
_line_mesh.surface_end()
_lines.clear()
_colors.clear()
# ── Bone overlay ───────────────────────────────────────────────────────────────
func _draw_bones() -> void:
for sk in _skeletons:
if not is_instance_valid(sk):
continue
var gx := sk.global_transform
for b in sk.get_bone_count():
var parent := sk.get_bone_parent(b)
if parent < 0:
continue
var a := gx * sk.get_bone_global_pose(parent).origin
var c := gx * sk.get_bone_global_pose(b).origin
line(a, c, COLOR_BONE)
# ── Matador AI-state overlay ───────────────────────────────────────────────────
# A billboarded state tag hovers over each matador, coloured by state, with an
# amber velocity vector — reads the whole arena's AI at a glance while tuning combat.
func _update_state_labels() -> void:
var seen: Dictionary = {}
for node: Node in get_tree().get_nodes_in_group(&"matador"):
var m := node as Node3D
if m == null:
continue
var id := m.get_instance_id()
seen[id] = true
var lbl: Label3D = _state_labels.get(id)
if lbl == null:
lbl = _new_state_label()
_state_labels[id] = lbl
var state_name := "?"
if m.has_method(&"ai_state_name"):
state_name = m.call(&"ai_state_name")
lbl.text = state_name
lbl.modulate = _state_color(state_name)
lbl.global_position = m.global_position + Vector3.UP * 2.2
if m is CharacterBody3D:
var v: Vector3 = (m as CharacterBody3D).velocity
v.y = 0.0
if v.length() > 0.5:
var base := m.global_position + Vector3.UP * 0.15
line(base, base + v * 0.18, COLOR_VEL)
for id: int in _state_labels.keys():
if not seen.has(id):
var lbl: Label3D = _state_labels[id]
if is_instance_valid(lbl):
lbl.queue_free()
_state_labels.erase(id)
func _new_state_label() -> Label3D:
var lbl := Label3D.new()
lbl.billboard = BaseMaterial3D.BILLBOARD_ENABLED
lbl.no_depth_test = true
lbl.fixed_size = true
lbl.pixel_size = 0.0006
lbl.font_size = 64
lbl.outline_size = 12
lbl.outline_modulate = Color(0.0, 0.0, 0.0, 0.9)
add_child(lbl)
return lbl
func _clear_state_labels() -> void:
for id: int in _state_labels:
var lbl: Label3D = _state_labels[id]
if is_instance_valid(lbl):
lbl.queue_free()
_state_labels.clear()
const _STATE_COLORS := {
"WANDER": Color(0.70, 0.70, 0.70),
"FLEE": Color(0.40, 0.80, 1.00),
"BRACE": Color(1.00, 0.90, 0.30),
"SIDESTEP": Color(1.00, 0.60, 0.10),
"ATTACK": Color(1.00, 0.30, 0.30),
"ROLL": Color(0.60, 1.00, 0.60),
"THROW": Color(1.00, 0.40, 0.90),
"RAGDOLL": Color(0.40, 0.40, 0.40),
}
func _state_color(state_name: String) -> Color:
return _STATE_COLORS.get(state_name, Color.WHITE)
# ── Animation-name overlay ─────────────────────────────────────────────────────
# A billboarded tag showing the clip each AnimationPlayer is currently playing,
# hovering above its nearest Node3D host — catches wrong / stuck animation states
# at a glance. Players are re-collected on the reconcile tick (see _collect).
func _update_anim_labels() -> void:
var seen: Dictionary = {}
for ap in _anim_players:
if not is_instance_valid(ap):
continue
var clip := ap.current_animation
# Skip finished / dormant sub-players so a host with several AnimationPlayers
# (e.g. a matador's main + olé + death players) doesn't stack empty tags.
if clip.is_empty() and not ap.is_playing():
continue
var host := _node3d_host(ap)
if host == null:
continue
var id := ap.get_instance_id()
seen[id] = true
var lbl: Label3D = _anim_labels.get(id)
if lbl == null:
lbl = _new_state_label()
lbl.modulate = COLOR_ANIM
_anim_labels[id] = lbl
lbl.text = clip if not clip.is_empty() else ""
lbl.global_position = host.global_position + Vector3.UP * 2.6
for id: int in _anim_labels.keys():
if not seen.has(id):
var lbl: Label3D = _anim_labels[id]
if is_instance_valid(lbl):
lbl.queue_free()
_anim_labels.erase(id)
func _clear_anim_labels() -> void:
for id: int in _anim_labels:
var lbl: Label3D = _anim_labels[id]
if is_instance_valid(lbl):
lbl.queue_free()
_anim_labels.clear()
# Nearest Node3D at or above `node` — the anchor an AnimationPlayer's tag hovers over.
func _node3d_host(node: Node) -> Node3D:
var n := node
while n != null:
if n is Node3D:
return n as Node3D
n = n.get_parent()
return null
# ── World reference overlays ───────────────────────────────────────────────────
func _draw_grid() -> void:
var extent := GRID_HALF * GRID_STEP
for i in range(-GRID_HALF, GRID_HALF + 1):
var o := i * GRID_STEP
line(Vector3(o, 0.01, -extent), Vector3(o, 0.01, extent), COLOR_GRID)
line(Vector3(-extent, 0.01, o), Vector3(extent, 0.01, o), COLOR_GRID)
func _draw_axes() -> void:
line(Vector3.ZERO, Vector3.RIGHT * AXIS_LEN, Color.RED) # +X
line(Vector3.ZERO, Vector3.UP * AXIS_LEN, Color.GREEN) # +Y
line(Vector3.ZERO, Vector3(0.0, 0.0, 1.0) * AXIS_LEN, Color.DODGER_BLUE) # +Z
func _update_wireframe() -> void:
var vp := get_viewport()
var want := Viewport.DEBUG_DRAW_WIREFRAME if DP.b("show_wireframe") else Viewport.DEBUG_DRAW_DISABLED
if vp.debug_draw != want:
vp.debug_draw = want
# ── Stats overlay ──────────────────────────────────────────────────────────────
# A 2D corner readout of frame cost + scene load, plus a per-state matador tally so
# a combat slowdown or a stuck AI swarm shows up immediately.
func _update_stats(delta: float) -> void:
if not DP.b("show_stats"):
if _stats_layer != null:
_stats_layer.visible = false
return
_ensure_stats_ui()
_stats_layer.visible = true
_stats_t -= delta
if _stats_t > 0.0:
return
_stats_t = STATS_INTERVAL
_stats_label.text = _compose_stats()
func _ensure_stats_ui() -> void:
if _stats_layer != null:
return
var mono := SystemFont.new()
mono.font_names = PackedStringArray(["JetBrains Mono", "DejaVu Sans Mono", "monospace"])
_stats_layer = CanvasLayer.new()
_stats_layer.layer = 64
add_child(_stats_layer)
var panel := PanelContainer.new()
panel.position = Vector2(8.0, 8.0)
var bg := StyleBoxFlat.new()
bg.bg_color = Color(0.0, 0.0, 0.0, 0.55)
bg.set_content_margin_all(6.0)
panel.add_theme_stylebox_override("panel", bg)
_stats_layer.add_child(panel)
_stats_label = Label.new()
_stats_label.add_theme_font_override("font", mono)
_stats_label.add_theme_font_size_override("font_size", 13)
_stats_label.add_theme_color_override("font_color", Color(0.60, 1.0, 0.60))
panel.add_child(_stats_label)
func _compose_stats() -> String:
var fps := int(Performance.get_monitor(Performance.TIME_FPS))
var proc := Performance.get_monitor(Performance.TIME_PROCESS) * 1000.0
var phys := Performance.get_monitor(Performance.TIME_PHYSICS_PROCESS) * 1000.0
var draws := int(Performance.get_monitor(Performance.RENDER_TOTAL_DRAW_CALLS_IN_FRAME))
var prims := int(Performance.get_monitor(Performance.RENDER_TOTAL_PRIMITIVES_IN_FRAME))
var vmem := int(Performance.get_monitor(Performance.RENDER_VIDEO_MEM_USED) / 1048576.0)
var nodes := int(Performance.get_monitor(Performance.OBJECT_NODE_COUNT))
var phys3d := int(Performance.get_monitor(Performance.PHYSICS_3D_ACTIVE_OBJECTS))
return "fps %d proc %.1fms phys %.1fms\ndraws %d prims %s vmem %dMB\nnodes %d phys3d %d\n%s" % [
fps, proc, phys, draws, _si(prims), vmem, nodes, phys3d, _matador_tally()]
func _matador_tally() -> String:
var mats := get_tree().get_nodes_in_group(&"matador")
if mats.is_empty():
return "matadors 0"
var counts: Dictionary = {}
for node: Node in mats:
var s := "?"
if node.has_method(&"ai_state_name"):
s = node.call(&"ai_state_name")
counts[s] = int(counts.get(s, 0)) + 1
var parts: PackedStringArray = PackedStringArray()
for s: String in counts:
parts.append("%s:%d" % [s.substr(0, 2), counts[s]])
return "matadors %d %s" % [mats.size(), " ".join(parts)]
func _si(n: int) -> String:
if n >= 1000000:
return "%.1fM" % (n / 1000000.0)
if n >= 1000:
return "%.0fk" % (n / 1000.0)
return str(n)
# ── Collision / hit-area overlays (incremental) ────────────────────────────────
func _reconcile(delta: float) -> void:
var col := DP.b("show_collisions")
var hit := DP.b("show_hitboxes")
var bone := DP.b("show_bones")
var anim := DP.b("show_animation_name")
if not (col or hit or bone or anim):
if not _overlays.is_empty():
_clear_overlays()
_skeletons.clear()
_anim_players.clear()
_prev_flags = ""
return
var flags := "%d%d%d%d" % [int(col), int(hit), int(bone), int(anim)]
_reconcile_t -= delta
if flags != _prev_flags: # a toggle just changed — refresh immediately
_prev_flags = flags
_reconcile_t = 0.0
if _reconcile_t > 0.0:
return
_reconcile_t = REBUILD_INTERVAL
_skeletons.clear()
_anim_players.clear()
var wanted: Dictionary = {}
var scene := get_tree().current_scene
if scene != null:
_collect(scene, col, hit, bone, anim, wanted)
# Drop overlays whose shape is gone or no longer wanted. The overlay is a child of
# the collision shape, so it's freed with it — hold it as Variant, since assigning a
# freed instance to any *typed* var (even Object) throws before is_instance_valid()
# can filter it out.
for id: int in _overlays.keys():
var mi: Variant = _overlays[id]
if not wanted.has(id) or not is_instance_valid(mi):
if is_instance_valid(mi):
(mi as Node).queue_free()
_overlays.erase(id)
# Add overlays for newly seen shapes.
for id: int in wanted:
if not _overlays.has(id):
var entry: Array = wanted[id]
_overlays[id] = _attach(entry[0] as CollisionShape3D, entry[1] as bool)
func _collect(node: Node, col: bool, hit: bool, bone: bool, anim: bool, wanted: Dictionary) -> void:
# The audience ("public") is ambient decoration, not a debug target — skip the whole
# crowd subtree so its clapping AnimationPlayers/skeletons don't flood the overlays.
if node.is_in_group(&"public"):
return
if bone and node is Skeleton3D and (node as Skeleton3D).is_visible_in_tree():
_skeletons.append(node as Skeleton3D)
if anim and node is AnimationPlayer:
_anim_players.append(node as AnimationPlayer)
if node is CollisionShape3D:
var cs := node as CollisionShape3D
if cs.shape != null and not cs.disabled and _drawable(cs.shape):
var parent := cs.get_parent()
var is_area := parent is Area3D
# Ragdoll bone colliders (PhysicalBone3D) are excluded — use show_bones for
# the skeleton; otherwise every corpse floods the view with capsules.
var is_body := parent is PhysicsBody3D and not (parent is PhysicalBone3D)
if (is_area and hit) or (is_body and col):
wanted[cs.get_instance_id()] = [cs, is_area]
for child in node.get_children():
_collect(child, col, hit, bone, anim, wanted)
# Skip only the unbounded shapes whose debug mesh is meaningless/huge; concave arena
# geometry is fine — Godot caches each shape's debug mesh, so it's built at most once.
func _drawable(shape: Shape3D) -> bool:
return not (shape is WorldBoundaryShape3D or shape is HeightMapShape3D)
func _attach(cs: CollisionShape3D, is_area: bool) -> MeshInstance3D:
var mi := MeshInstance3D.new()
if is_area:
var solid := _solid_mesh(cs.shape)
mi.mesh = solid if solid != null else cs.shape.get_debug_mesh()
mi.material_override = _translucent_material(COLOR_AREA)
else:
mi.mesh = cs.shape.get_debug_mesh()
mi.material_override = _wire_material(COLOR_BODY)
mi.cast_shadow = GeometryInstance3D.SHADOW_CASTING_SETTING_OFF
cs.add_child(mi)
return mi
func _clear_overlays() -> void:
for id: int in _overlays:
var mi: Variant = _overlays[id]
if is_instance_valid(mi):
(mi as Node).queue_free()
_overlays.clear()
# ── Meshes & materials ─────────────────────────────────────────────────────────
# A filled mesh matching a primitive shape, for translucent volume overlays. Returns
# null for shapes without a clean solid equivalent (caller falls back to wireframe).
func _solid_mesh(shape: Shape3D) -> Mesh:
if shape is BoxShape3D:
var m := BoxMesh.new()
m.size = (shape as BoxShape3D).size
return m
if shape is SphereShape3D:
var m := SphereMesh.new()
m.radius = (shape as SphereShape3D).radius
m.height = m.radius * 2.0
return m
if shape is CapsuleShape3D:
var m := CapsuleMesh.new()
m.radius = (shape as CapsuleShape3D).radius
m.height = (shape as CapsuleShape3D).height
return m
if shape is CylinderShape3D:
var m := CylinderMesh.new()
m.top_radius = (shape as CylinderShape3D).radius
m.bottom_radius = (shape as CylinderShape3D).radius
m.height = (shape as CylinderShape3D).height
return m
return null
func _line_material() -> StandardMaterial3D:
var mat := StandardMaterial3D.new()
mat.shading_mode = BaseMaterial3D.SHADING_MODE_UNSHADED
mat.vertex_color_use_as_albedo = true
mat.no_depth_test = true
return mat
func _wire_material(color: Color) -> StandardMaterial3D:
var mat := StandardMaterial3D.new()
mat.shading_mode = BaseMaterial3D.SHADING_MODE_UNSHADED
mat.albedo_color = color
mat.no_depth_test = true
return mat
func _translucent_material(color: Color) -> StandardMaterial3D:
var mat := StandardMaterial3D.new()
mat.shading_mode = BaseMaterial3D.SHADING_MODE_UNSHADED
mat.transparency = BaseMaterial3D.TRANSPARENCY_ALPHA
mat.albedo_color = Color(color.r, color.g, color.b, AREA_ALPHA)
mat.cull_mode = BaseMaterial3D.CULL_DISABLED
mat.depth_draw_mode = BaseMaterial3D.DEPTH_DRAW_DISABLED
return mat
+1
View File
@@ -0,0 +1 @@
uid://cgty4al6aqey3
-216
View File
@@ -1,216 +0,0 @@
extends Node
## Runtime debug panel. Toggle with F1.
## Reads DP.get_all() to build controls — adding a param to DP is all that's needed to show it here.
var _panel: Control
var _status_label: Label
var _prev_mouse_mode: Input.MouseMode = Input.MOUSE_MODE_CAPTURED
func _ready() -> void:
_build_ui()
func _build_ui() -> void:
var canvas := CanvasLayer.new()
canvas.layer = 128
add_child(canvas)
_panel = PanelContainer.new()
_panel.anchor_left = 1.0
_panel.anchor_right = 1.0
_panel.anchor_top = 0.0
_panel.anchor_bottom = 1.0
_panel.offset_left = -390.0
_panel.offset_right = 0.0
_panel.offset_top = 0.0
_panel.offset_bottom = 0.0
_panel.mouse_filter = Control.MOUSE_FILTER_STOP
_panel.visible = false
var bg := StyleBoxFlat.new()
bg.bg_color = Color(0.08, 0.08, 0.10, 0.95)
_panel.add_theme_stylebox_override("panel", bg)
canvas.add_child(_panel)
var root_vbox := VBoxContainer.new()
root_vbox.size_flags_horizontal = Control.SIZE_FILL
_panel.add_child(root_vbox)
# ── Toolbar ───────────────────────────────────────────────────────────────
var toolbar_margin := MarginContainer.new()
toolbar_margin.add_theme_constant_override("margin_left", 8)
toolbar_margin.add_theme_constant_override("margin_right", 8)
toolbar_margin.add_theme_constant_override("margin_top", 6)
toolbar_margin.add_theme_constant_override("margin_bottom", 4)
root_vbox.add_child(toolbar_margin)
var toolbar := HBoxContainer.new()
toolbar.add_theme_constant_override("separation", 6)
toolbar_margin.add_child(toolbar)
var title := Label.new()
title.text = "DEBUG [F1]"
title.size_flags_horizontal = Control.SIZE_EXPAND_FILL
toolbar.add_child(title)
_status_label = Label.new()
_status_label.modulate = Color(0.4, 1.0, 0.5)
toolbar.add_child(_status_label)
var save_btn := Button.new()
save_btn.text = "Save"
save_btn.pressed.connect(_on_save)
toolbar.add_child(save_btn)
var rand_all_btn := Button.new()
rand_all_btn.text = "Randomize All"
rand_all_btn.pressed.connect(_on_randomize_all)
toolbar.add_child(rand_all_btn)
var reset_btn := Button.new()
reset_btn.text = "Reset All"
reset_btn.pressed.connect(DP.reset_all)
toolbar.add_child(reset_btn)
root_vbox.add_child(HSeparator.new())
# ── Scrollable content ────────────────────────────────────────────────────
var scroll := ScrollContainer.new()
scroll.size_flags_vertical = Control.SIZE_EXPAND_FILL
scroll.size_flags_horizontal = Control.SIZE_FILL
root_vbox.add_child(scroll)
var content_margin := MarginContainer.new()
content_margin.size_flags_horizontal = Control.SIZE_EXPAND_FILL
content_margin.add_theme_constant_override("margin_left", 8)
content_margin.add_theme_constant_override("margin_right", 8)
content_margin.add_theme_constant_override("margin_top", 4)
content_margin.add_theme_constant_override("margin_bottom", 8)
scroll.add_child(content_margin)
var content := VBoxContainer.new()
content.size_flags_horizontal = Control.SIZE_EXPAND_FILL
content_margin.add_child(content)
_build_params(content)
func _build_params(content: VBoxContainer) -> void:
# Group keys by section preserving registration order
var sections: Dictionary = {}
for key: String in DP.get_all():
var sec: String = DP.get_all()[key]["section"]
if not sections.has(sec):
sections[sec] = []
sections[sec].append(key)
for section: String in sections:
content.add_child(HSeparator.new())
var header := Label.new()
header.text = section.to_upper()
header.modulate = Color(0.75, 0.85, 1.0)
content.add_child(header)
for key: String in sections[section]:
var meta: Dictionary = DP.get_all()[key]
if meta["type"] == TYPE_FLOAT:
_add_float_row(content, key, meta)
func _add_float_row(parent: VBoxContainer, key: String, meta: Dictionary) -> void:
var row := HBoxContainer.new()
row.size_flags_horizontal = Control.SIZE_FILL
parent.add_child(row)
var lbl := Label.new()
lbl.text = key.replace("_", " ")
lbl.custom_minimum_size.x = 140
lbl.vertical_alignment = VERTICAL_ALIGNMENT_CENTER
row.add_child(lbl)
var slider := HSlider.new()
slider.min_value = meta["min"]
slider.max_value = meta["max"]
slider.step = meta["step"]
slider.value = meta["value"]
slider.size_flags_horizontal = Control.SIZE_EXPAND_FILL
slider.custom_minimum_size.x = 60
row.add_child(slider)
var spin := SpinBox.new()
spin.min_value = meta["min"]
spin.max_value = meta["max"]
spin.step = meta["step"]
spin.value = meta["value"]
spin.custom_minimum_size.x = 85
row.add_child(spin)
var rand_btn := Button.new()
rand_btn.text = "🎲"
rand_btn.tooltip_text = "Randomize"
rand_btn.pressed.connect(func() -> void:
var v := randf_range(meta["min"], meta["max"])
v = snappedf(v, meta["step"])
slider.value = v
)
row.add_child(rand_btn)
# Slider → SpinBox + DP (use no_signal to avoid echo)
slider.value_changed.connect(func(v: float) -> void:
spin.set_value_no_signal(v)
DP.set_value(key, v)
)
# SpinBox → Slider + DP
spin.value_changed.connect(func(v: float) -> void:
slider.set_value_no_signal(v)
DP.set_value(key, v)
)
# External changes (reset, load) → sync both controls
DP.any_changed.connect(func(changed_key: String, _val: Variant) -> void:
if changed_key != key and changed_key != "__all__":
return
var v := DP.f(key)
slider.set_value_no_signal(v)
spin.set_value_no_signal(v)
)
func _on_save() -> void:
DP.save()
_status_label.text = "Saved!"
get_tree().create_timer(1.5).timeout.connect(func() -> void:
_status_label.text = ""
)
func _input(event: InputEvent) -> void:
if _panel.visible and Input.is_key_pressed(KEY_CTRL) and event is InputEventMouseMotion:
get_viewport().set_input_as_handled()
func _unhandled_input(event: InputEvent) -> void:
if not (event is InputEventKey and event.pressed and not event.echo):
return
if (event as InputEventKey).keycode != KEY_F1:
return
_panel.visible = not _panel.visible
if _panel.visible:
_prev_mouse_mode = Input.mouse_mode
Input.mouse_mode = Input.MOUSE_MODE_VISIBLE
else:
Input.mouse_mode = _prev_mouse_mode
get_viewport().set_input_as_handled()
func _on_randomize_all() -> void:
for key: String in DP.get_all():
var meta: Dictionary = DP.get_all()[key]
if meta["type"] == TYPE_FLOAT:
var v := snappedf(randf_range(meta["min"], meta["max"]), meta["step"])
DP.set_value(key, v)
+226 -33
View File
@@ -7,7 +7,12 @@ signal any_changed(key: String, value: Variant)
const SAVE_PATH := "user://debug_params.cfg"
# _params holds the full metadata (min/max/step/default/section/type) and is the
# authority the debug menu reads. _values is a flat key→value mirror so the hot
# f()/b() reads — called dozens of times per matador per physics frame — cost a
# single hash lookup instead of a nested dict access. Every write updates both.
var _params: Dictionary = {}
var _values: Dictionary = {}
func _ready() -> void:
@@ -17,25 +22,22 @@ func _ready() -> void:
func _register_all() -> void:
# ── Movement ──────────────────────────────────────────────────────────────
_reg_f("Movement", "thrust_impulse", 18.0, 1.0, 200.0)
_reg_f("Movement", "thrust_vertical", 2.0, 0.0, 20.0)
_reg_f("Movement", "thrust_min_angle", 15.0, 0.0, 90.0, 1.0)
_reg_f("Movement", "thrust_max_angle", 90.0, 0.0, 180.0, 1.0)
_reg_f("Movement", "thrust_charge_time", 0.5, 0.05, 2.0, 0.05)
_reg_f("Movement", "max_speed", 50.0, 2.0, 1000.0)
_reg_f("Movement", "roll_damping", 0.15, 0.01, 0.99, 0.01)
# WASD/arrows drive the bull: move_accel ramps flat velocity toward max_speed in
# the input direction; move_friction bleeds it off when no direction is held.
_reg_f("Movement", "max_speed", 10.0, 2.0, 1000.0)
_reg_f("Movement", "move_accel", 120.0, 5.0, 600.0)
_reg_f("Movement", "move_friction", 90.0, 5.0, 600.0)
_reg_f("Movement", "jump_velocity", 4.5, 1.0, 200.0)
_reg_f("Movement", "visual_turn_speed", 12.0, 1.0, 200.0)
_reg_f("Movement", "bounce_restitution", 0.55, 0.0, 2.0, 0.05)
_reg_f("Movement", "bounce_min_impact", 1.0, 0.0, 20.0)
_reg_f("Movement", "wall_bounce_restitution", 0.6, 0.0, 1.5, 0.05)
_reg_f("Movement", "wall_min_bounce_speed", 6.0, 0.0, 30.0)
_reg_f("Movement", "kick_impulse", 8.0, 1.0, 50.0)
_reg_f("Movement", "kick_interval", 0.25, 0.05, 1.0, 0.01)
_reg_f("Movement", "kick_vertical", 0.0, 0.0, 15.0)
_reg_f("Movement", "kick_force_var", 0.2, 0.0, 1.0, 0.01)
_reg_f("Movement", "kick_spread", 10.0, 0.0, 45.0, 1.0)
_reg_f("Movement", "charge_kick_mult", 2.0, 1.0, 5.0)
# ── Bull health ───────────────────────────────────────────────────────────
# The bull soaks bull_max_hp clean hits before it dies; each hit grants
# bull_hit_iframes seconds of invulnerability so a single pass can't drain it.
_reg_f("Bull", "bull_max_hp", 10.0, 1.0, 100.0, 1.0)
_reg_f("Bull", "bull_hit_iframes", 0.8, 0.0, 3.0, 0.1)
# ── Dust speed thresholds ─────────────────────────────────────────────────
_reg_f("Dust", "dust_walk_spd", 1.5, 0.1, 10.0)
_reg_f("Dust", "dust_charge_spd", 7.0, 1.0, 20.0)
@@ -58,10 +60,7 @@ func _register_all() -> void:
_reg_f("Tail", "tail_body_radius", 0.35, 0.05, 2.0, 0.05)
_reg_f("Tail", "tail_wag_freq", 4.0, 0.5, 15.0)
_reg_f("Tail", "tail_wag_idle", 0.3, 0.0, 2.0, 0.05)
# ── Charge (both mouse buttons) ──────────────────────────────────────────
_reg_f("Charge", "bull_charge_accel", 80.0, 1.0, 400.0)
_reg_f("Charge", "bull_charge_max_speed", 76.0, 5.0, 200.0)
_reg_f("Charge", "charge_ramp_time", 0.75, 0.1, 5.0, 0.05)
# ── Charge pose (horns-down lean during dash / roll) ─────────────────────
_reg_f("Charge", "charge_head_pitch", 0.3, 0.0, 1.2, 0.01)
_reg_f("Charge", "charge_head_speed", 5.0, 0.5, 20.0)
# ── Body ──────────────────────────────────────────────────────────────────
@@ -91,42 +90,215 @@ func _register_all() -> void:
_reg_f("Camera", "cam_spring_length", 7.0, 1.0, 30.0)
_reg_f("Camera", "cam_min_vert_angle", -60.0, -90.0, 0.0, 1.0)
_reg_f("Camera", "cam_max_vert_angle", 45.0, 0.0, 90.0, 1.0)
# Trailing "drag" camera: the focus point lags the bull and slides opposite to
# its velocity, so the camera visibly drags behind during a fast charge.
# cam_drag = metres of trail per m/s of bull speed (0 = rigid follow)
# cam_drag_speed = how fast the trail offset eases toward its target
# cam_follow_lerp = how tightly the focus point chases the bull (higher = snappier)
_reg_f("Camera", "cam_drag", 0.12, 0.0, 1.0, 0.01)
_reg_f("Camera", "cam_drag_speed", 3.5, 0.5, 20.0)
_reg_f("Camera", "cam_follow_lerp", 10.0, 1.0, 40.0)
# ── Matador ───────────────────────────────────────────────────────────────
_reg_f("Matador", "mat_spawn_count", 1.0, 1.0, 30.0, 1.0)
_reg_f("Matador", "mat_walk_speed", 4.0, 0.5, 10.0)
# Hydra split: a slain matador is replaced on the spot by mat_split_factor fresh
# matadors, so the horde doubles each generation (1 → 2 → 4 → 8 …) at the default
# 2. Capped at mat_split_generations deep so the arena stays winnable (factor <2 or
# generations 0 = no splitting, the classic one-and-done arena).
_reg_f("Matador", "mat_split_factor", 2.0, 1.0, 6.0, 1.0)
_reg_f("Matador", "mat_split_generations", 3.0, 0.0, 6.0, 1.0)
# The bull wins outright once it has slain this many matadors, even if the hydra
# still has bodies on the sand. 0 = disabled (win only when the horde dies out)
_reg_f("Matador", "mat_win_kills", 21.0, 0.0, 200.0, 1.0)
_reg_f("Matador", "mat_walk_speed", 5.5, 0.5, 10.0)
_reg_f("Matador", "mat_wander_radius", 22.0, 5.0, 50.0)
_reg_f("Matador", "mat_idle_min", 0.5, 0.0, 5.0, 0.1)
_reg_f("Matador", "mat_idle_max", 2.5, 0.5, 10.0, 0.1)
# Radius of the inner fighting floor: bull + matadors spawn on this ring (so
# they stay off the benches). Tune in the console to hug the bench edge.
_reg_f("Matador", "arena_spawn_radius", 10.0, 2.0, 22.0, 0.5)
_reg_f("Matador", "mat_idle_min", 1.2, 0.0, 5.0, 0.1)
_reg_f("Matador", "mat_idle_max", 4.0, 0.5, 10.0, 0.1)
_reg_f("Matador", "mat_hit_threshold", 4.0, 1.0, 30.0)
_reg_f("Matador", "mat_ragdoll_impulse", 6.0, 0.5, 20.0)
# Ragdoll joint limits — lower swing/twist = stiffer corpse that keeps its
# shape; higher angular damp settles the flail instead of flopping flat.
_reg_f("Matador", "mat_joint_swing", 35.0, 0.0, 180.0, 1.0)
_reg_f("Matador", "mat_joint_twist", 40.0, 0.0, 180.0, 1.0)
_reg_f("Matador", "mat_ragdoll_damp", 1.5, 0.0, 10.0, 0.1)
_reg_f("Matador", "mat_flee_range", 3.5, 2.0, 40.0)
_reg_f("Matador", "mat_flee_speed", 5.5, 0.5, 12.0)
_reg_f("Matador", "mat_flee_speed", 7.0, 0.5, 12.0)
_reg_f("Matador", "mat_charge_speed", 10.0, 1.0, 30.0)
_reg_f("Matador", "mat_brace_range", 5.0, 2.0, 20.0)
_reg_f("Matador", "mat_brace_duration", 0.7, 0.05, 1.5, 0.05)
_reg_f("Matador", "mat_commit_dist", 2.5, 0.5, 6.0, 0.1)
_reg_f("Matador", "mat_step_speed", 3.5, 2.0, 20.0)
_reg_f("Matador", "mat_step_speed", 6.5, 2.0, 20.0)
_reg_f("Matador", "mat_step_duration", 0.35, 0.1, 1.0, 0.05)
_reg_f("Matador", "mat_dodge_cooldown", 5.0, 0.5, 12.0, 0.25)
_reg_f("Matador", "mat_dodge_chance", 0.25, 0.0, 1.0, 0.05)
# How strongly the sidestep biases toward the bull so the blade sweeps through
# its path during the pass (0 = pure lateral dodge, 1 = straight at the bull).
_reg_f("Matador", "mat_pass_lunge", 0.35, 0.0, 1.0, 0.05)
_reg_f("Matador", "mat_dodge_cooldown", 2.5, 0.5, 12.0, 0.25)
_reg_f("Matador", "mat_dodge_chance", 0.72, 0.0, 1.0, 0.05)
_reg_f("Matador", "mat_attack_range", 8.0, 2.0, 20.0)
_reg_f("Matador", "mat_attack_speed", 5.5, 1.0, 12.0)
_reg_f("Matador", "mat_attack_speed", 7.5, 1.0, 12.0)
_reg_f("Matador", "mat_attack_duration", 1.8, 0.5, 5.0, 0.1)
_reg_f("Matador", "mat_attack_min_dist", 2.5, 0.5, 6.0, 0.1)
_reg_f("Matador", "mat_attack_min_dist", 3.2, 0.5, 6.0, 0.1)
# Forward drive during the opening of a melee swing — turns the stationary stab
# into an estocada lunge so the blade covers ground toward the bull.
_reg_f("Matador", "mat_lunge_speed", 13.0, 0.0, 20.0)
_reg_f("Matador", "mat_lunge_time", 0.22, 0.0, 0.6, 0.01)
# Reach of the reach-based stab (the reliable melee hit) and its re-strike gap.
# The bull dies if it comes inside mat_stab_reach of a matador that's attacking,
# bracing, or passing with a drawn blade — closing in is genuinely deadly.
_reg_f("Matador", "mat_stab_reach", 1.7, 0.5, 4.0, 0.1)
_reg_f("Matador", "mat_stab_cooldown", 0.6, 0.1, 3.0, 0.1)
# Half-angle (deg) the matador must be facing the bull within for a stab to land.
# Stops "sword's off to the side but I still died" — you're only gored when the
# blade is actually presented at you.
_reg_f("Matador", "mat_stab_arc", 55.0, 5.0, 180.0, 5.0)
_reg_f("Matador", "mat_roll_chance", 0.35, 0.0, 1.0, 0.05)
_reg_f("Matador", "mat_roll_duration", 0.45, 0.1, 1.5, 0.05)
# Playback rate of the Draw_weapon clip used for both drawing and sheathing —
# higher = snappier unholster/holster.
_reg_f("Matador", "mat_draw_speed", 1.9, 0.25, 3.0, 0.05)
# Cross-fade between matador animation clips — smooths Run/Attack/Taunt cuts.
_reg_f("Matador", "mat_anim_blend", 0.12, 0.0, 0.5, 0.01)
# ── Matador heuristics (utility AI) ───────────────────────────────────────
# Every mat_decide_interval seconds the matador scores its options — dodge the
# pass, close for a strike, retreat, throw the blade, or strut/taunt — and picks
# the highest. These weights bias the personality: crank aggression for a reckless
# bullfighter, caution for a slippery one. mat_w_commit is a stickiness bonus for
# the current choice so it doesn't dither between two near-tied options.
_reg_f("Matador", "mat_decide_interval", 0.2, 0.05, 1.0, 0.05)
_reg_f("Matador", "mat_w_aggression", 1.1, 0.0, 3.0, 0.05)
_reg_f("Matador", "mat_w_caution", 1.0, 0.0, 3.0, 0.05)
_reg_f("Matador", "mat_w_flee", 0.8, 0.0, 3.0, 0.05)
# Showmanship (strut, circle the bull, taunt) — the supporting matadors lean on
# this to spread out and give the lead room, so a whole crowd reads as a bullring,
# not a swarm. Crank it for more posturing, drop it for a relentless mob.
_reg_f("Matador", "mat_w_showmanship", 1.6, 0.0, 3.0, 0.05)
# Weight on hurling the blade. Kept low — a thrown sword is an occasional flourish,
# not a barrage; raising this brings back the pelting.
_reg_f("Matador", "mat_w_throw", 0.35, 0.0, 3.0, 0.05)
# How many matadors press the bull at once. The nearest this-many engage (close,
# throw); everyone else keeps their distance and taunts, taking turns as the bull
# moves. 1 = strict one-on-one, higher = a bolder pack.
_reg_f("Matador", "mat_engage_slots", 2.0, 1.0, 8.0, 1.0)
# Preferred distance (m) a taunting matador circles the bull at while waiting its
# turn — the showmanship ring the crowd spreads out onto.
_reg_f("Matador", "mat_taunt_ring", 7.0, 3.0, 15.0, 0.5)
# How long (s) a matador safely out of the action holds a taunt before drifting to
# a new spot — much longer than the between-passes idle, so bystanders mostly pose
# for the crowd instead of milling about. Actual hold is randomised ±30%.
_reg_f("Matador", "mat_taunt_hold", 8.0, 1.0, 20.0, 0.5)
# Small so it smooths dithering without locking the matador into idling.
_reg_f("Matador", "mat_w_commit", 0.15, 0.0, 2.0, 0.05)
# ── Sword ─────────────────────────────────────────────────────────────────
# Local seating of the sword in the right hand (drawn / fighting).
# Defaults are identity — the bone is oriented in Blender to seat the sword
# directly; these exist to fine-tune in-game without re-exporting.
_reg_f("Sword", "sword_pos_x", 0.0, -1.0, 1.0, 0.01)
_reg_f("Sword", "sword_pos_y", 0.0, -1.0, 1.0, 0.01)
_reg_f("Sword", "sword_pos_z", 0.0, -1.0, 1.0, 0.01)
_reg_f("Sword", "sword_rot_x", 0.0, -180.0, 180.0, 1.0)
_reg_f("Sword", "sword_rot_y", 0.0, -180.0, 180.0, 1.0)
_reg_f("Sword", "sword_rot_z", 0.0, -180.0, 180.0, 1.0)
# Local seating of the sword in the hip holster (sheathed / wandering).
# Independent of the hand grip so each pose can be tuned without affecting the
# other. Defaults angle the blade down along the matador's side.
_reg_f("Sword", "sword_rest_pos_x", 0.0, -1.0, 1.0, 0.01)
_reg_f("Sword", "sword_rest_pos_y", 0.0, -1.0, 1.0, 0.01)
_reg_f("Sword", "sword_rest_pos_z", 0.0, -1.0, 1.0, 0.01)
_reg_f("Sword", "sword_rest_rot_x", -120.0, -180.0, 180.0, 1.0)
_reg_f("Sword", "sword_rest_rot_y", 0.0, -180.0, 180.0, 1.0)
_reg_f("Sword", "sword_rest_rot_z", 0.0, -180.0, 180.0, 1.0)
# ── Spear throw (matador ranged attack) ──────────────────────────────────
# Local seating of the spear in the throwing hand during the wind-up. Tune to
# seat the shaft in the grip without re-exporting; flight orientation is derived
# from the aim direction at release, not from this pose.
_reg_f("Sword", "spear_pos_x", 0.0, -1.0, 1.0, 0.01)
_reg_f("Sword", "spear_pos_y", 0.0, -1.0, 1.0, 0.01)
_reg_f("Sword", "spear_pos_z", 0.0, -1.0, 1.0, 0.01)
_reg_f("Sword", "spear_rot_x", 0.0, -180.0, 180.0, 1.0)
_reg_f("Sword", "spear_rot_y", 0.0, -180.0, 180.0, 1.0)
_reg_f("Sword", "spear_rot_z", 0.0, -180.0, 180.0, 1.0)
# Delay before a fresh sword reappears in the holster if one is ever lost.
_reg_f("Sword", "mat_resword_delay", 2.0, 0.0, 10.0, 0.5)
_reg_f("Sword", "mat_throw_range", 18.0, 5.0, 40.0)
_reg_f("Sword", "mat_throw_min_dist", 5.0, 2.0, 15.0, 0.1)
_reg_f("Sword", "mat_throw_windup", 0.5, 0.2, 2.0, 0.05)
_reg_f("Sword", "mat_throw_release", 0.55, 0.1, 0.95, 0.01)
# Horizontal speed of the thrown spear; the vertical launch is solved from this
# and the gravity below so the arc lands on the bull. Lower = a higher, slower lob.
_reg_f("Sword", "mat_throw_speed", 11.0, 5.0, 60.0)
# Gravity scale on the spear (higher = a more pronounced arc) and the vertical aim
# offset from the bull origin down onto its low collision body.
_reg_f("Sword", "mat_throw_gravity", 1.0, 0.1, 3.0, 0.05)
_reg_f("Sword", "mat_throw_aim_y", -0.45,-1.5, 0.5, 0.05)
# Aim scatter (± degrees) so thrown blades can be read and dodged on the move.
_reg_f("Sword", "mat_throw_spread", 11.0, 0.0, 30.0, 0.5)
_reg_f("Sword", "mat_throw_arm_cock", 70.0,-180.0, 180.0, 1.0)
_reg_f("Sword", "mat_throw_arm_release", -90.0,-180.0, 180.0, 1.0)
_reg_f("Sword", "mat_throw_elbow", 80.0,-180.0, 180.0, 1.0)
# ── Abilities ─────────────────────────────────────────────────────────────
_reg_f("Abilities", "kick_cooldown", 1.5, 0.2, 10.0, 0.1)
_reg_f("Abilities", "kick_range", 3.5, 0.5, 8.0, 0.1)
_reg_f("Abilities", "kick_range", 6.0, 0.5, 8.0, 0.1)
_reg_f("Abilities", "kick_strength", 12.0, 1.0, 30.0)
_reg_f("Abilities", "slam_cooldown", 4.0, 0.5, 15.0, 0.1)
_reg_f("Abilities", "slam_jump_velocity", 7.0, 2.0, 20.0)
# Descent gravity multiplier — higher = faster crash, less airtime.
_reg_f("Abilities", "slam_fall_mult", 3.0, 1.0, 8.0, 0.5)
# Upward launch velocity (m/s) given to a slammed matador's ragdoll — pops them
# skyward. ~7 ≈ a 2.5 m hop; 0 disables the launch.
_reg_f("Abilities", "slam_launch_up", 7.0, 0.0, 15.0, 0.5)
_reg_f("Abilities", "slam_range", 4.0, 1.0, 10.0, 0.1)
_reg_f("Abilities", "slam_strength", 14.0, 1.0, 30.0)
_reg_f("Abilities", "dash_cooldown", 2.0, 0.5, 10.0, 0.1)
_reg_f("Abilities", "dash_cooldown", 0.5, 0.1, 10.0, 0.1)
_reg_f("Abilities", "dash_speed", 66.0, 5.0, 200.0)
# ── Debug ─────────────────────────────────────────────────────────────────
# Exponential rate the dash bleeds from dash_speed back to cruise (max_speed).
# Higher = a snappier bullet that dies off quicker; lower = a longer glide.
_reg_f("Abilities", "dash_decel", 7.0, 0.5, 30.0, 0.5)
# ── Roll (homing chain ball) ──────────────────────────────────────────────
# The bull curls into a ball and ACCELERATES the longer it rolls, from
# roll_base_speed up to roll_max_speed over roll_rampup_time. It HOMES on the
# closest matador; on slamming one the ball POPS it (launched skyward via
# roll_knockup) then CHAINS to the next closest, up to roll_chain_count times.
# roll_turn is the homing turn rate. When no chain targets remain, the roll ends.
_reg_f("Roll", "roll_cooldown", 3.0, 0.5, 15.0, 0.1)
_reg_f("Roll", "roll_duration", 2.5, 0.5, 6.0, 0.1) # max roll time
_reg_f("Roll", "roll_chain_count", 2.0, 0.0, 8.0, 1.0) # extra matadors chained after the first
_reg_f("Roll", "roll_base_speed", 28.0, 5.0, 120.0) # speed at the start of the roll
_reg_f("Roll", "roll_max_speed", 95.0, 10.0, 200.0) # top speed once fully ramped
_reg_f("Roll", "roll_rampup_time", 2.0, 0.2, 6.0, 0.1) # time to reach top speed
_reg_f("Roll", "roll_turn", 7.0, 0.2, 20.0) # homing turn rate (higher = tighter tracking)
_reg_f("Roll", "roll_spin_radius", 1.4, 0.3, 4.0, 0.1) # ball radius for tumble spin (smaller = faster)
_reg_f("Roll", "roll_hit_radius", 2.4, 0.5, 6.0, 0.1) # contact radius that pops the ball
_reg_f("Roll", "roll_hit_strength", 22.0, 1.0, 40.0) # horizontal launch on the pop
_reg_f("Roll", "roll_knockup", 11.0, 0.0, 25.0) # vertical knock-up on the pop
# ── Debug overlays (see debug_draw.gd) ───────────────────────────────────
_reg_b("Debug", "show_collisions", false)
# PS1 post-process filter (see ps1_filter.gd on the fullscreen ColorRect):
# screen-covering CRT/PS1 shader — pixelation, colour-banding + dither, and a
# rolling scanline. Keys map 1:1 onto the shader uniforms; show_ps1 toggles the
# whole overlay. Ranges mirror the shader's hint_range so the console can't push
# a uniform out of bounds.
_reg_b("PS1", "show_ps1", true)
_reg_f("PS1", "ps1_pixel_scale", 4.0, 1.0, 8.0, 1.0)
_reg_f("PS1", "ps1_color_depth", 5.0, 2.0, 8.0, 1.0)
_reg_f("PS1", "ps1_dither_strength", 0.8, 0.0, 2.0, 0.05)
_reg_f("PS1", "ps1_scanline_strength", 0.2, 0.0, 1.0, 0.05)
_reg_f("PS1", "ps1_roll_speed", 3.0, 0.0, 10.0, 0.1)
_reg_f("PS1", "ps1_roll_strength", 1.0, 0.0, 1.0, 0.05)
_reg_b("Debug", "show_hitboxes", false)
_reg_b("Debug", "show_bones", false)
_reg_b("Debug", "show_raycasts", false)
_reg_b("Debug", "show_tail", false)
_reg_b("Debug", "show_stats", false)
_reg_b("Debug", "show_states", false)
_reg_b("Debug", "show_animation_name", false)
_reg_b("Debug", "show_wireframe", false)
_reg_b("Debug", "show_grid", false)
_reg_b("Debug", "show_axes", false)
# Force the on-screen touch controls (joystick + ability buttons) on even on a
# desktop build — otherwise they appear only when a touchscreen is detected.
_reg_b("Touch", "force_touch_controls", false)
func _reg_f(section: String, key: String, default: float,
@@ -140,6 +312,7 @@ func _reg_f(section: String, key: String, default: float,
"max": max_val,
"step": step,
}
_values[key] = default
func _reg_b(section: String, key: String, default: bool) -> void:
@@ -149,26 +322,28 @@ func _reg_b(section: String, key: String, default: bool) -> void:
"section": section,
"type": TYPE_BOOL,
}
_values[key] = default
## Read a float param. Panics on unknown key — intentional: typos should be loud.
func f(key: String) -> float:
return _params[key]["value"] as float
return _values[key] as float
## Read a bool param.
func b(key: String) -> bool:
return _params[key]["value"] as bool
return _values[key] as bool
func set_value(key: String, value: Variant) -> void:
if not _params.has(key):
return
_params[key]["value"] = value
_values[key] = value
any_changed.emit(key, value)
## Returns the full metadata dict — used by DebugMenu to build UI.
## Returns the full metadata dict — used by Console to build UI.
func get_all() -> Dictionary:
return _params
@@ -194,9 +369,27 @@ func load_saved() -> void:
if p["type"] == TYPE_FLOAT:
val = clampf(val as float, p["min"] as float, p["max"] as float)
_params[key]["value"] = val
_values[key] = val
func reset_all() -> void:
for key: String in _params:
_params[key]["value"] = _params[key]["default"]
var default: Variant = _params[key]["default"]
_params[key]["value"] = default
_values[key] = default
any_changed.emit("__all__", null)
## Reset a single param to its default. No-op on unknown key.
func reset(key: String) -> void:
if not _params.has(key):
return
var default: Variant = _params[key]["default"]
_params[key]["value"] = default
_values[key] = default
any_changed.emit(key, default)
## True when the param currently differs from its registered default.
func is_modified(key: String) -> bool:
return _params.has(key) and _params[key]["value"] != _params[key]["default"]
+24 -1
View File
@@ -1,17 +1,39 @@
#!/usr/bin/env bash
set -euo pipefail
# Run from the project root regardless of where the script is invoked.
cd "$(dirname "$0")"
SERVER_USER="richard"
SERVER_HOST="192.168.1.168"
SERVER_PATH="/opt/bulloseum/data"
BUILD_DIR="build/web"
# Derive the version the same way GameVersion does (single source of truth):
# numeric version from project.godot, pre-release channel from game_version.gd.
VERSION_NUMBER="$(grep -oP 'config/version="\K[^"]+' project.godot)"
CHANNEL="$(grep -oP 'const CHANNEL: String = "\K[^"]*' game_version.gd || true)"
VERSION="v${VERSION_NUMBER}"
[ -n "$CHANNEL" ] && VERSION="${VERSION}-${CHANNEL}"
GIT_COMMIT="$(git rev-parse --short HEAD 2>/dev/null || echo unknown)"
BUILD_DATE="$(date -u +%Y-%m-%dT%H:%M:%SZ)"
echo "building Bullosseum ${VERSION} (${GIT_COMMIT})"
mkdir -p "$BUILD_DIR"
godot --headless --export-release "Web" "$BUILD_DIR/index.html"
gzip -kf "$BUILD_DIR/index.wasm"
# Version stamp shipped alongside the flat build so the server records what's live.
cat > "$BUILD_DIR/version.txt" <<EOF
version=${VERSION}
commit=${GIT_COMMIT}
built=${BUILD_DATE}
EOF
scp "$BUILD_DIR/index.html" \
"$BUILD_DIR/index.js" \
"$BUILD_DIR/index.wasm.gz" \
@@ -21,6 +43,7 @@ scp "$BUILD_DIR/index.html" \
"$BUILD_DIR/index.icon.png" \
"$BUILD_DIR/index.apple-touch-icon.png" \
"$BUILD_DIR/index.png" \
"$BUILD_DIR/version.txt" \
"$SERVER_USER@$SERVER_HOST:$SERVER_PATH/"
echo "deployed to $SERVER_HOST:$SERVER_PATH"
echo "deployed ${VERSION} to $SERVER_HOST:$SERVER_PATH"
BIN
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+36
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@@ -0,0 +1,36 @@
[remap]
importer="font_data_dynamic"
type="FontFile"
uid="uid://fu84fchl1im6"
path="res://.godot/imported/Cinzel.ttf-b9b78caa7497d2ec78b922cb77f34333.fontdata"
[deps]
source_file="res://fonts/Cinzel.ttf"
dest_files=["res://.godot/imported/Cinzel.ttf-b9b78caa7497d2ec78b922cb77f34333.fontdata"]
[params]
Rendering=null
antialiasing=1
generate_mipmaps=false
disable_embedded_bitmaps=true
multichannel_signed_distance_field=false
msdf_pixel_range=8
msdf_size=48
allow_system_fallback=true
force_autohinter=false
modulate_color_glyphs=false
hinting=3
subpixel_positioning=4
keep_rounding_remainders=true
oversampling=0.0
Fallbacks=null
fallbacks=[]
Compress=null
compress=true
preload=[]
language_support={}
script_support={}
opentype_features={}
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+36
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@@ -0,0 +1,36 @@
[remap]
importer="font_data_dynamic"
type="FontFile"
uid="uid://rcfn6xhs7fur"
path="res://.godot/imported/CinzelDecorative-Bold.ttf-fd8dd0c7ef2ceb6acaeb4b78a3c0a47b.fontdata"
[deps]
source_file="res://fonts/CinzelDecorative-Bold.ttf"
dest_files=["res://.godot/imported/CinzelDecorative-Bold.ttf-fd8dd0c7ef2ceb6acaeb4b78a3c0a47b.fontdata"]
[params]
Rendering=null
antialiasing=1
generate_mipmaps=false
disable_embedded_bitmaps=true
multichannel_signed_distance_field=false
msdf_pixel_range=8
msdf_size=48
allow_system_fallback=true
force_autohinter=false
modulate_color_glyphs=false
hinting=3
subpixel_positioning=4
keep_rounding_remainders=true
oversampling=0.0
Fallbacks=null
fallbacks=[]
Compress=null
compress=true
preload=[]
language_support={}
script_support={}
opentype_features={}
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+36
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@@ -0,0 +1,36 @@
[remap]
importer="font_data_dynamic"
type="FontFile"
uid="uid://cgppsmy8krkhw"
path="res://.godot/imported/CinzelDecorative-Regular.ttf-818749a2a58435ecbb00dae02eb6079a.fontdata"
[deps]
source_file="res://fonts/CinzelDecorative-Regular.ttf"
dest_files=["res://.godot/imported/CinzelDecorative-Regular.ttf-818749a2a58435ecbb00dae02eb6079a.fontdata"]
[params]
Rendering=null
antialiasing=1
generate_mipmaps=false
disable_embedded_bitmaps=true
multichannel_signed_distance_field=false
msdf_pixel_range=8
msdf_size=48
allow_system_fallback=true
force_autohinter=false
modulate_color_glyphs=false
hinting=3
subpixel_positioning=4
keep_rounding_remainders=true
oversampling=0.0
Fallbacks=null
fallbacks=[]
Compress=null
compress=true
preload=[]
language_support={}
script_support={}
opentype_features={}
+93
View File
@@ -0,0 +1,93 @@
Copyright 2020 The Cinzel Project Authors (https://github.com/NDISCOVER/Cinzel)
This Font Software is licensed under the SIL Open Font License, Version 1.1.
This license is copied below, and is also available with a FAQ at:
http://scripts.sil.org/OFL
-----------------------------------------------------------
SIL OPEN FONT LICENSE Version 1.1 - 26 February 2007
-----------------------------------------------------------
PREAMBLE
The goals of the Open Font License (OFL) are to stimulate worldwide
development of collaborative font projects, to support the font creation
efforts of academic and linguistic communities, and to provide a free and
open framework in which fonts may be shared and improved in partnership
with others.
The OFL allows the licensed fonts to be used, studied, modified and
redistributed freely as long as they are not sold by themselves. The
fonts, including any derivative works, can be bundled, embedded,
redistributed and/or sold with any software provided that any reserved
names are not used by derivative works. The fonts and derivatives,
however, cannot be released under any other type of license. The
requirement for fonts to remain under this license does not apply
to any document created using the fonts or their derivatives.
DEFINITIONS
"Font Software" refers to the set of files released by the Copyright
Holder(s) under this license and clearly marked as such. This may
include source files, build scripts and documentation.
"Reserved Font Name" refers to any names specified as such after the
copyright statement(s).
"Original Version" refers to the collection of Font Software components as
distributed by the Copyright Holder(s).
"Modified Version" refers to any derivative made by adding to, deleting,
or substituting -- in part or in whole -- any of the components of the
Original Version, by changing formats or by porting the Font Software to a
new environment.
"Author" refers to any designer, engineer, programmer, technical
writer or other person who contributed to the Font Software.
PERMISSION & CONDITIONS
Permission is hereby granted, free of charge, to any person obtaining
a copy of the Font Software, to use, study, copy, merge, embed, modify,
redistribute, and sell modified and unmodified copies of the Font
Software, subject to the following conditions:
1) Neither the Font Software nor any of its individual components,
in Original or Modified Versions, may be sold by itself.
2) Original or Modified Versions of the Font Software may be bundled,
redistributed and/or sold with any software, provided that each copy
contains the above copyright notice and this license. These can be
included either as stand-alone text files, human-readable headers or
in the appropriate machine-readable metadata fields within text or
binary files as long as those fields can be easily viewed by the user.
3) No Modified Version of the Font Software may use the Reserved Font
Name(s) unless explicit written permission is granted by the corresponding
Copyright Holder. This restriction only applies to the primary font name as
presented to the users.
4) The name(s) of the Copyright Holder(s) or the Author(s) of the Font
Software shall not be used to promote, endorse or advertise any
Modified Version, except to acknowledge the contribution(s) of the
Copyright Holder(s) and the Author(s) or with their explicit written
permission.
5) The Font Software, modified or unmodified, in part or in whole,
must be distributed entirely under this license, and must not be
distributed under any other license. The requirement for fonts to
remain under this license does not apply to any document created
using the Font Software.
TERMINATION
This license becomes null and void if any of the above conditions are
not met.
DISCLAIMER
THE FONT SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO ANY WARRANTIES OF
MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT
OF COPYRIGHT, PATENT, TRADEMARK, OR OTHER RIGHT. IN NO EVENT SHALL THE
COPYRIGHT HOLDER BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
INCLUDING ANY GENERAL, SPECIAL, INDIRECT, INCIDENTAL, OR CONSEQUENTIAL
DAMAGES, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
FROM, OUT OF THE USE OR INABILITY TO USE THE FONT SOFTWARE OR FROM
OTHER DEALINGS IN THE FONT SOFTWARE.
+33
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@@ -0,0 +1,33 @@
class_name GameVersion
extends RefCounted
## Single source of truth for the game's version string.
##
## The numeric version lives in project.godot (application/config/version) so it
## also feeds export metadata; here we read it back and layer on the pre-release
## CHANNEL and a human-readable STAGE label. We're pre-1.0 — every 0.x build is
## understood to be unstable, in-development software (see the recommendations in
## the commit / PR notes for why 0.x is the convention for early game dev).
## Pre-release channel appended to the number, SemVer-style (e.g. 0.1.0-alpha).
const CHANNEL: String = "alpha"
## Friendly stage banner shown to players so it's unmistakably an early build.
const STAGE: String = "Early Development Build"
## Bare numeric version, e.g. "0.1.0". Read from project settings.
static func number() -> String:
return str(ProjectSettings.get_setting("application/config/version", "0.0.0"))
## Full version tag, e.g. "v0.1.0-alpha".
static func string() -> String:
var s := "v" + number()
if not CHANNEL.is_empty():
s += "-" + CHANNEL
return s
## Version tag + stage banner, e.g. "v0.1.0-alpha · Early Development Build".
static func full() -> String:
return "%s · %s" % [string(), STAGE]
+1
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@@ -0,0 +1 @@
uid://f4bvu1mnvpiu
+547 -136
View File
@@ -1,113 +1,510 @@
extends CanvasLayer
const _GOLD := Color(1.00, 0.78, 0.22)
const _CREAM := Color(0.88, 0.83, 0.72)
const _MUTED := Color(0.65, 0.60, 0.48)
const _BG := Color(0.06, 0.04, 0.02, 0.78)
const _BADGE := Color(0.16, 0.10, 0.03, 0.90)
const _BORDER := Color(0.65, 0.48, 0.15, 0.55)
const _CREAM := Color(0.93, 0.88, 0.72)
const _MUTED := Color(0.66, 0.60, 0.46)
# Per-ability trim colour, tying each tile (and its key cap) to that ability's FX.
# Order matches _ABILITY_ICONS: kick, dash, slam, roll.
const _ABILITY_ACCENT: Array[Color] = [
Color(1.00, 0.62, 0.16), # Kick — ember orange
Color(0.45, 0.75, 1.00), # Dash — sky blue
Color(0.98, 0.34, 0.20), # Slam — crimson
Color(1.00, 0.82, 0.32), # Roll — gold
]
const _ABILITY_ICONS: Array[String] = [
"res://HUD/HUD_0000_ability_JALG.png",
"res://HUD/HUD_0001_ability_SLAM.png",
"res://HUD/HUD_0002_ability_DASH.png",
"res://HUD/KICK.png",
"res://HUD/DASH.png",
"res://HUD/SLAM.png",
"res://HUD/ROLL.png",
]
const _ABILITY_KEYS: Array[String] = ["F", "G", "H"]
const _ABILITY_ACTIONS: Array[StringName] = [
&"ability_kick", &"ability_dash", &"ability_slam", &"ability_roll",
]
# Fallback label shown in a slot whose icon file fails to load.
const _ABILITY_NAMES: Array[String] = ["Kick", "Dash", "Slam", "Roll"]
var _controls_visible: bool = true
var _controls_visible: bool = false
var _controls_panel: PanelContainer
var _toggle_btn: Button
var _tab_hint: Label
var _spawner: Node
var _player: Node = null
var _died_connected: bool = false
var _cd_overlays: Array[ColorRect] = []
var _cd_labels: Array[Label] = []
var _hp_label: Label
var _hp_segments: HBoxContainer
var _hp_seg_fills: Array[ColorRect] = []
var _bottom_col: VBoxContainer
var _ability_bar: HBoxContainer
var _ability_panels: Array[PanelContainer] = []
var _bull_bg: TextureRect
# Red damage vignette — a full-screen shader ColorRect flashed on every hit.
const _VIGNETTE_SHADER := "res://damage_vignette.gdshader"
var _vignette: ColorRect
var _vignette_mat: ShaderMaterial
# Bull-head backdrop for the gameplay HUD. The image is a wide horned silhouette; its
# solid "face" occupies the centred middle band, with horns flaring above. We size the
# image so that face band wraps the ability+HP cluster (horns crowning it above).
const _BULL_BG := "res://Assets/bull_hud_bg.png"
const _BULL_FACE_W: float = 0.529 # face width as a fraction of image width
const _BULL_ASPECT: float = 0.2741 # image height / width (267 / 974)
const _BULL_FACE_PAD: float = 1.15 # breathing room around the cluster within the face
# Win/lose screen. _game_over latches so the result is shown once; _result_win
# records which way it went (read by the gameplay test).
const _WIN_VIDEO := "res://videos/bull_win.ogv" # the bull triumphs
const _LOSS_VIDEO := "res://videos/matador_win.ogv" # the matador triumphs
# Beat between the run ending and the outcome screen. A loss is a short freeze on the
# dead bull; a win gives the player a longer stretch to strut a victory lap around the
# arena before the screen (and the pause) takes over.
const _LOSS_DELAY := 2.0
const _WIN_DELAY := 3.0
var _game_over: bool = false
var _result_win: bool = false
var _over_root: Control
var _over_video: VideoStreamPlayer
var _over_label: Label
func _ready() -> void:
layer = 11
process_mode = Node.PROCESS_MODE_ALWAYS
_build_controls_panel()
_build_tab_hint()
_build_bottom_hud()
_build_bull_hud_bg()
_build_ability_bar()
_build_health()
_build_version_label()
_build_damage_vignette()
_build_game_over()
_build_touch_controls()
_update_control_hints()
_find_spawner.call_deferred()
# On-screen joystick + ability buttons for touch devices. Self-gating: the overlay
# only shows itself when a touchscreen is present (or DP force_touch_controls is on),
# so this is a no-op on desktop.
func _build_touch_controls() -> void:
add_child((load("res://touch_controls.gd") as Script).new())
# Bottom-centre column that groups the gameplay HUD (abilities on top, bull health
# directly beneath) so both read as one cluster instead of scattered corners.
func _build_bottom_hud() -> void:
_bottom_col = VBoxContainer.new()
_bottom_col.add_theme_constant_override("separation", 8)
_bottom_col.alignment = BoxContainer.ALIGNMENT_END
# Collapsed horizontal anchors so the column shrinks to its content and stays
# bottom-centred; the bull backdrop is sized against this content rect.
_bottom_col.anchor_left = 0.5
_bottom_col.anchor_right = 0.5
_bottom_col.anchor_top = 1.0
_bottom_col.anchor_bottom = 1.0
_bottom_col.grow_horizontal = Control.GROW_DIRECTION_BOTH
_bottom_col.grow_vertical = Control.GROW_DIRECTION_BEGIN
_bottom_col.offset_bottom = -16.0
_bottom_col.mouse_filter = Control.MOUSE_FILTER_IGNORE
add_child(_bottom_col)
# Bull-head plate that sits behind the ability + health cluster. It's a sibling of the
# cluster (not a parent) so it never constrains the cluster's layout; we size and place
# it against the cluster's rect in _position_bull_bg.
func _build_bull_hud_bg() -> void:
_bull_bg = TextureRect.new()
if ResourceLoader.exists(_BULL_BG):
_bull_bg.texture = load(_BULL_BG)
# We size the rect ourselves to the image's aspect, so STRETCH_SCALE fills it
# exactly with no letterboxing.
_bull_bg.expand_mode = TextureRect.EXPAND_IGNORE_SIZE
_bull_bg.stretch_mode = TextureRect.STRETCH_SCALE
_bull_bg.modulate.a = 0.95
_bull_bg.mouse_filter = Control.MOUSE_FILTER_IGNORE
add_child(_bull_bg)
# Draw the plate behind the cluster.
move_child(_bull_bg, _bottom_col.get_index())
_bottom_col.resized.connect(_position_bull_bg)
get_viewport().size_changed.connect(_position_bull_bg)
_position_bull_bg.call_deferred()
# Wrap the bull's solid "face" band around the current cluster rect: scale the image up
# so its face spans the cluster (plus padding), centre it horizontally on the cluster,
# and pin its bottom edge to the bottom of the screen so the plate is always seated flush
# against the screen edge on any resolution (horns crowning the cluster above).
func _position_bull_bg() -> void:
if _bull_bg == null or _bottom_col == null:
return
var r := _bottom_col.get_global_rect()
if r.size.x <= 1.0:
return
var vp_h := get_viewport().get_visible_rect().size.y
var bw := (r.size.x * _BULL_FACE_PAD) / _BULL_FACE_W
var bh := bw * _BULL_ASPECT
_bull_bg.size = Vector2(bw, bh)
_bull_bg.position = Vector2(
r.position.x + r.size.x * 0.5 - bw * 0.5,
vp_h - bh)
# Unobtrusive early-build tag in the bottom-right corner.
func _build_version_label() -> void:
var lbl := Label.new()
lbl.text = GameVersion.full()
lbl.add_theme_color_override("font_color", _MUTED)
lbl.add_theme_font_size_override("font_size", 12)
lbl.set_anchors_preset(Control.PRESET_BOTTOM_RIGHT)
lbl.grow_horizontal = Control.GROW_DIRECTION_BEGIN
lbl.grow_vertical = Control.GROW_DIRECTION_BEGIN
lbl.offset_right = -14.0
lbl.offset_bottom = -10.0
lbl.mouse_filter = Control.MOUSE_FILTER_IGNORE
add_child(lbl)
func _process(_delta: float) -> void:
_update_control_hints()
if _player == null:
var players := get_tree().get_nodes_in_group(&"player")
if not players.is_empty():
_player = players[0]
return
if not _died_connected:
_died_connected = true
_player.died.connect(_on_player_died)
_player.health_changed.connect(_on_health_changed)
_player.hit_taken.connect(_on_hit_taken)
_on_health_changed(_player.call(&"get_hp"), _player.call(&"get_max_hp"))
for i: int in _cd_overlays.size():
var fraction: float = _player.call(&"ability_cooldown_fraction", i)
var ov := _cd_overlays[i]
ov.anchor_top = 1.0 - fraction
ov.anchor_bottom = 1.0
var remaining: float = _player.call(&"ability_cooldown_remaining", i)
var lbl := _cd_labels[i]
if remaining > 0.0:
lbl.text = "%.1fs" % remaining
lbl.visible = true
else:
lbl.visible = false
func _find_spawner() -> void:
var spawners := get_tree().get_nodes_in_group(&"matador_spawn")
if not spawners.is_empty():
if spawners.is_empty():
return
_spawner = spawners[0]
_spawner.all_defeated.connect(_on_all_defeated)
func _unhandled_input(event: InputEvent) -> void:
if event is InputEventKey and event.pressed and not event.echo:
if event.physical_keycode == KEY_TAB:
if _game_over and event.physical_keycode in [KEY_ENTER, KEY_KP_ENTER]:
_restart()
elif event.physical_keycode == KEY_TAB and not _game_over:
_toggle_controls()
elif event.physical_keycode == KEY_ESCAPE:
_return_to_menu()
func _return_to_menu() -> void:
get_tree().paused = false
Input.mouse_mode = Input.MOUSE_MODE_VISIBLE
get_tree().change_scene_to_file("res://MainMenu.tscn")
func _restart() -> void:
get_tree().paused = false
Input.mouse_mode = Input.MOUSE_MODE_CAPTURED
get_tree().reload_current_scene()
func _toggle_controls() -> void:
_controls_visible = not _controls_visible
_controls_panel.visible = _controls_visible
_toggle_btn.text = "Hide controls" if _controls_visible else "Show controls"
_update_control_hints()
func _on_reset_pressed() -> void:
if get_tree().paused:
get_tree().paused = false
if _spawner:
_spawner.reset_spawn()
# The Tab hint and the keyboard controls plaque only make sense with a keyboard, so
# they stand down on touch devices — where touch_controls.gd shows the on-screen
# joystick and ability buttons instead. Shares Controls.use_touch_ui() with that
# overlay so exactly one control scheme shows on any given device.
func _update_control_hints() -> void:
if _game_over or Controls.use_touch_ui():
_controls_panel.visible = false
_tab_hint.visible = false
else:
_controls_panel.visible = _controls_visible
_tab_hint.visible = not _controls_visible
# ── Damage vignette ───────────────────────────────────────────────────────────
# A full-screen ColorRect driven by damage_vignette.gdshader: transparent centre, red
# toward the edges, alpha ("flash") tweened up on a hit and eased back to nothing. Built
# before the game-over layer so the outcome screen always draws over it.
func _build_damage_vignette() -> void:
_vignette = ColorRect.new()
_vignette.set_anchors_preset(Control.PRESET_FULL_RECT)
_vignette.color = Color.WHITE # the shader writes COLOR outright; this is just a base
_vignette.mouse_filter = Control.MOUSE_FILTER_IGNORE
if ResourceLoader.exists(_VIGNETTE_SHADER):
_vignette_mat = ShaderMaterial.new()
_vignette_mat.shader = load(_VIGNETTE_SHADER)
_vignette_mat.set_shader_parameter("flash", 0.0)
_vignette.material = _vignette_mat
add_child(_vignette)
func _on_hit_taken(_cause: String) -> void:
if _vignette_mat == null:
return
var set_flash := func(v: float) -> void:
_vignette_mat.set_shader_parameter("flash", v)
create_tween().tween_method(set_flash, 0.9, 0.0, 0.5)\
.set_trans(Tween.TRANS_SINE).set_ease(Tween.EASE_OUT)
# ── Win / lose ──────────────────────────────────────────────────────────────
# The bull takes one clean blade and it's over; clear the last matador and it's a
# victory. Both routes end here — the arena freezes and the result is proclaimed.
func _on_player_died(cause: String = "") -> void:
_show_game_over(false, cause)
func _on_all_defeated() -> void:
_show_game_over(true)
func _show_game_over(win: bool, _cause: String = "") -> void:
if _game_over:
return
_game_over = true
_result_win = win
if _controls_panel:
_controls_panel.visible = false
if _tab_hint:
_tab_hint.visible = false
await get_tree().create_timer(_WIN_DELAY if win else _LOSS_DELAY, false, false, true).timeout
_over_label.text = "Bull Won!" if _result_win else "Matadors Won!"
var path := _WIN_VIDEO if _result_win else _LOSS_VIDEO
if ResourceLoader.exists(path):
_over_video.stream = load(path)
_over_video.play()
_over_root.visible = true
_over_root.modulate.a = 0.0
Input.mouse_mode = Input.MOUSE_MODE_VISIBLE
get_tree().paused = true
create_tween().tween_property(_over_root, "modulate:a", 1.0, 0.5)
func _build_game_over() -> void:
_over_root = Control.new()
_over_root.set_anchors_preset(Control.PRESET_FULL_RECT)
_over_root.process_mode = Node.PROCESS_MODE_ALWAYS
_over_root.visible = false
add_child(_over_root)
# Full-screen outcome clip (bull win / matador win), looping.
# AspectRatioContainer keeps the 16:9 video's ratio and crops overflow (COVER),
# so it fills any screen shape without stretching or leaving dead bars.
var arc := AspectRatioContainer.new()
arc.set_anchors_preset(Control.PRESET_FULL_RECT)
arc.ratio = 16.0 / 9.0
arc.stretch_mode = AspectRatioContainer.STRETCH_COVER
arc.alignment_horizontal = AspectRatioContainer.ALIGNMENT_CENTER
arc.alignment_vertical = AspectRatioContainer.ALIGNMENT_CENTER
arc.process_mode = Node.PROCESS_MODE_ALWAYS
arc.mouse_filter = Control.MOUSE_FILTER_IGNORE
_over_root.add_child(arc)
_over_video = VideoStreamPlayer.new()
_over_video.set_anchors_preset(Control.PRESET_FULL_RECT)
_over_video.expand = true
_over_video.process_mode = Node.PROCESS_MODE_ALWAYS
_over_video.mouse_filter = Control.MOUSE_FILTER_IGNORE
_over_video.finished.connect(_over_video.play) # loop the outcome clip
arc.add_child(_over_video)
# Outcome text centred over the video.
_over_label = Label.new()
_over_label.set_anchors_preset(Control.PRESET_CENTER_TOP)
_over_label.grow_horizontal = Control.GROW_DIRECTION_BOTH
_over_label.grow_vertical = Control.GROW_DIRECTION_END
_over_label.offset_top = 80.0
_over_label.horizontal_alignment = HORIZONTAL_ALIGNMENT_CENTER
_over_label.add_theme_font_override("font", UiFonts.title())
_over_label.add_theme_font_size_override("font_size", 64)
_over_label.add_theme_color_override("font_color", _GOLD)
_over_label.add_theme_color_override("font_outline_color", Color(0.0, 0.0, 0.0, 0.9))
_over_label.add_theme_constant_override("outline_size", 6)
_over_label.mouse_filter = Control.MOUSE_FILTER_IGNORE
_over_root.add_child(_over_label)
# Buttons overlaid at the bottom of the clip.
var row := HBoxContainer.new()
row.alignment = BoxContainer.ALIGNMENT_CENTER
row.add_theme_constant_override("separation", 16)
row.anchor_left = 0.5
row.anchor_right = 0.5
row.anchor_top = 1.0
row.anchor_bottom = 1.0
row.grow_horizontal = Control.GROW_DIRECTION_BOTH
row.grow_vertical = Control.GROW_DIRECTION_BEGIN
row.offset_bottom = -48.0
_over_root.add_child(row)
var again := _make_button("Go Again (Enter)")
again.pressed.connect(_restart)
row.add_child(again)
var menu := _make_button("Main Menu")
menu.pressed.connect(_return_to_menu)
row.add_child(menu)
# ── Bull health ───────────────────────────────────────────────────────────────
# A row of gold-socketed pips beneath the ability bar — one pip per HP, so raising or
# lowering max HP visibly grows or shrinks the row. Lit pips run red and shade toward
# crimson as the bull is worn down; spent pips read as empty dark sockets.
const _HP_FULL: Color = Color(0.82, 0.16, 0.12)
const _HP_EMPTY: Color = Color(0.35, 0.05, 0.05)
const _HP_SOCKET: Color = Color(0.05, 0.02, 0.02, 0.92)
const _HP_PIP_W: float = 22.0
const _HP_PIP_H: float = 14.0
func _build_health() -> void:
var panel := PanelContainer.new()
panel.add_theme_stylebox_override(
"panel", UiTheme.plaque(UiTheme.LEATHER, UiTheme.BORDER, 4, 12.0, 6.0))
panel.size_flags_horizontal = Control.SIZE_SHRINK_CENTER
panel.mouse_filter = Control.MOUSE_FILTER_IGNORE
_bottom_col.add_child(panel)
var row := HBoxContainer.new()
row.add_theme_constant_override("separation", 8)
panel.add_child(row)
_hp_label = Label.new()
_hp_label.text = "BULL"
_hp_label.vertical_alignment = VERTICAL_ALIGNMENT_CENTER
_hp_label.add_theme_font_override("font", UiFonts.body())
_hp_label.add_theme_color_override("font_color", _GOLD)
_hp_label.add_theme_color_override("font_outline_color", Color(0, 0, 0, 0.85))
_hp_label.add_theme_constant_override("outline_size", 3)
_hp_label.add_theme_font_size_override("font_size", 14)
row.add_child(_hp_label)
_hp_segments = HBoxContainer.new()
_hp_segments.add_theme_constant_override("separation", 4)
_hp_segments.size_flags_vertical = Control.SIZE_SHRINK_CENTER
_hp_segments.mouse_filter = Control.MOUSE_FILTER_IGNORE
row.add_child(_hp_segments)
# The gold-underlined socket behind each pip — shared, non-mutating, so one instance
# is safe across every pip.
func _hp_socket_style() -> StyleBoxFlat:
var s := StyleBoxFlat.new()
s.bg_color = _HP_SOCKET
s.set_corner_radius_all(3)
s.corner_detail = 4
s.border_width_bottom = 2
s.border_color = Color(UiTheme.GOLD.r, UiTheme.GOLD.g, UiTheme.GOLD.b, 0.45)
s.content_margin_left = 2.0
s.content_margin_right = 2.0
s.content_margin_top = 2.0
s.content_margin_bottom = 2.0
return s
func _rebuild_hp_pips(max_hp: int) -> void:
for child in _hp_segments.get_children():
child.queue_free()
_hp_seg_fills.clear()
var socket_style := _hp_socket_style()
for _i: int in maxi(max_hp, 0):
var socket := PanelContainer.new()
socket.custom_minimum_size = Vector2(_HP_PIP_W, _HP_PIP_H)
socket.clip_contents = true
socket.add_theme_stylebox_override("panel", socket_style)
socket.mouse_filter = Control.MOUSE_FILTER_IGNORE
_hp_segments.add_child(socket)
var fill := ColorRect.new()
fill.color = _HP_FULL
fill.mouse_filter = Control.MOUSE_FILTER_IGNORE
socket.add_child(fill)
_hp_seg_fills.append(fill)
func _on_health_changed(current: int, max_hp: int) -> void:
if _hp_segments == null:
return
if _hp_seg_fills.size() != max_hp:
_rebuild_hp_pips(max_hp)
var cur := maxi(current, 0)
var frac := 0.0 if max_hp <= 0 else clampf(float(cur) / float(max_hp), 0.0, 1.0)
var lit := _HP_FULL.lerp(_HP_EMPTY, 1.0 - frac)
for i: int in _hp_seg_fills.size():
var fill := _hp_seg_fills[i]
fill.visible = i < cur
fill.color = lit
const _SLOT_SEPARATION: int = 10
func _build_ability_bar() -> void:
var bar := HBoxContainer.new()
bar.add_theme_constant_override("separation", 10)
bar.anchor_left = 0.5
bar.anchor_right = 0.5
bar.anchor_top = 1.0
bar.anchor_bottom = 1.0
bar.grow_horizontal = Control.GROW_DIRECTION_BOTH
bar.grow_vertical = Control.GROW_DIRECTION_BEGIN
bar.offset_left = -120.0
bar.offset_bottom = -20.0
add_child(bar)
for i: int in 3:
bar.add_child(_build_ability_slot(i))
_ability_bar = HBoxContainer.new()
_ability_bar.add_theme_constant_override("separation", _SLOT_SEPARATION)
_ability_bar.size_flags_horizontal = Control.SIZE_SHRINK_CENTER
_ability_bar.mouse_filter = Control.MOUSE_FILTER_IGNORE
_bottom_col.add_child(_ability_bar)
for i: int in 4:
_ability_bar.add_child(_build_ability_slot(i))
_layout_ability_bar()
get_viewport().size_changed.connect(_layout_ability_bar)
# Size the ability slots as a fraction of the viewport (clamped) so the bar scales
# with the window; the bottom column keeps the bar horizontally centred.
func _layout_ability_bar() -> void:
var vp := get_viewport().get_visible_rect().size
var slot := clampf(minf(vp.x * 0.055, vp.y * 0.11), 56.0, 104.0)
for panel: PanelContainer in _ability_panels:
panel.custom_minimum_size = Vector2(slot, slot)
func _build_ability_slot(idx: int) -> Control:
var vbox := VBoxContainer.new()
vbox.add_theme_constant_override("separation", 4)
var bg_style := StyleBoxFlat.new()
bg_style.bg_color = _BG
bg_style.corner_radius_top_left = 6
bg_style.corner_radius_top_right = 6
bg_style.corner_radius_bottom_left = 6
bg_style.corner_radius_bottom_right = 6
bg_style.border_width_left = 1
bg_style.border_width_right = 1
bg_style.border_width_top = 1
bg_style.border_width_bottom = 1
bg_style.border_color = _BORDER
bg_style.content_margin_left = 4.0
bg_style.content_margin_right = 4.0
bg_style.content_margin_top = 4.0
bg_style.content_margin_bottom = 4.0
vbox.add_theme_constant_override("separation", 3)
var panel := PanelContainer.new()
panel.custom_minimum_size = Vector2(72.0, 72.0)
panel.add_theme_stylebox_override("panel", bg_style)
panel.add_theme_stylebox_override(
"panel", UiTheme.plaque(UiTheme.LEATHER, _ABILITY_ACCENT[idx], 4, 5.0, 5.0))
vbox.add_child(panel)
_ability_panels.append(panel)
var stack := Control.new()
stack.set_anchors_preset(Control.PRESET_FULL_RECT)
@@ -116,9 +513,23 @@ func _build_ability_slot(idx: int) -> Control:
if ResourceLoader.exists(_ABILITY_ICONS[idx]):
var icon := TextureRect.new()
icon.texture = load(_ABILITY_ICONS[idx])
# Ignore the texture's native size so a large source PNG doesn't blow the
# slot's minimum size out; scale-to-fit the box while keeping aspect.
icon.expand_mode = TextureRect.EXPAND_IGNORE_SIZE
icon.stretch_mode = TextureRect.STRETCH_KEEP_ASPECT_CENTERED
icon.set_anchors_preset(Control.PRESET_FULL_RECT)
icon.mouse_filter = Control.MOUSE_FILTER_IGNORE
stack.add_child(icon)
else:
var name_lbl := Label.new()
name_lbl.text = _ABILITY_NAMES[idx]
name_lbl.set_anchors_preset(Control.PRESET_FULL_RECT)
name_lbl.horizontal_alignment = HORIZONTAL_ALIGNMENT_CENTER
name_lbl.vertical_alignment = VERTICAL_ALIGNMENT_CENTER
name_lbl.mouse_filter = Control.MOUSE_FILTER_IGNORE
name_lbl.add_theme_color_override("font_color", _GOLD)
name_lbl.add_theme_font_size_override("font_size", 16)
stack.add_child(name_lbl)
var cd_overlay := ColorRect.new()
cd_overlay.color = Color(0.0, 0.0, 0.0, 0.70)
@@ -130,35 +541,78 @@ func _build_ability_slot(idx: int) -> Control:
stack.add_child(cd_overlay)
_cd_overlays.append(cd_overlay)
var cd_lbl := Label.new()
cd_lbl.set_anchors_preset(Control.PRESET_FULL_RECT)
cd_lbl.horizontal_alignment = HORIZONTAL_ALIGNMENT_CENTER
cd_lbl.vertical_alignment = VERTICAL_ALIGNMENT_CENTER
cd_lbl.mouse_filter = Control.MOUSE_FILTER_IGNORE
cd_lbl.visible = false
cd_lbl.add_theme_color_override("font_color", Color.WHITE)
cd_lbl.add_theme_font_size_override("font_size", 18)
stack.add_child(cd_lbl)
_cd_labels.append(cd_lbl)
# Keycap tucked directly beneath the tile — a solid dark plate wearing the
# ability's accent underline, so it reads as attached to its box without ever
# covering the artwork. Centred under the tile and tightly spaced.
var keycap := PanelContainer.new()
keycap.add_theme_stylebox_override("panel", _keycap_style(idx))
keycap.size_flags_horizontal = Control.SIZE_SHRINK_CENTER
keycap.mouse_filter = Control.MOUSE_FILTER_IGNORE
vbox.add_child(keycap)
var key_lbl := Label.new()
key_lbl.text = _ABILITY_KEYS[idx]
key_lbl.text = Controls.get_key_label(_ABILITY_ACTIONS[idx])
key_lbl.horizontal_alignment = HORIZONTAL_ALIGNMENT_CENTER
key_lbl.add_theme_color_override("font_color", _GOLD)
key_lbl.add_theme_font_size_override("font_size", 12)
vbox.add_child(key_lbl)
key_lbl.vertical_alignment = VERTICAL_ALIGNMENT_CENTER
key_lbl.mouse_filter = Control.MOUSE_FILTER_IGNORE
key_lbl.add_theme_font_override("font", UiFonts.body_bold())
key_lbl.add_theme_color_override("font_color", _CREAM)
key_lbl.add_theme_color_override("font_outline_color", Color(0, 0, 0, 0.9))
key_lbl.add_theme_constant_override("outline_size", 3)
key_lbl.add_theme_font_size_override("font_size", 14)
keycap.add_child(key_lbl)
return vbox
# Solid keycap plate for an ability bind: near-black fill with the ability's accent
# as a chunky top edge, so the accent bridges up to the tile it sits under (reads as
# attached) while the key stays on a high-contrast background against busy scenes.
func _keycap_style(idx: int) -> StyleBoxFlat:
var s := StyleBoxFlat.new()
s.bg_color = Color(0.04, 0.03, 0.02, 0.94)
s.set_corner_radius_all(4)
s.corner_detail = 4
s.set_border_width_all(1)
s.border_width_top = 3
s.border_color = _ABILITY_ACCENT[idx]
s.content_margin_left = 7.0
s.content_margin_right = 7.0
s.content_margin_top = 2.0
s.content_margin_bottom = 1.0
return s
func _build_tab_hint() -> void:
_tab_hint = Label.new()
_tab_hint.text = "Press 'Tab' to see controls"
_tab_hint.anchor_left = 0.0
_tab_hint.anchor_top = 1.0
_tab_hint.anchor_right = 0.0
_tab_hint.anchor_bottom = 1.0
_tab_hint.grow_vertical = Control.GROW_DIRECTION_BEGIN
_tab_hint.offset_left = 20.0
_tab_hint.offset_bottom = -20.0
_tab_hint.add_theme_color_override("font_color", _MUTED)
_tab_hint.add_theme_font_size_override("font_size", 12)
add_child(_tab_hint)
func _build_controls_panel() -> void:
_controls_panel = PanelContainer.new()
var bg := StyleBoxFlat.new()
bg.bg_color = _BG
bg.corner_radius_top_left = 7
bg.corner_radius_top_right = 7
bg.corner_radius_bottom_left = 7
bg.corner_radius_bottom_right = 7
bg.border_width_left = 1
bg.border_width_right = 1
bg.border_width_top = 1
bg.border_width_bottom = 1
bg.border_color = _BORDER
bg.content_margin_left = 14.0
bg.content_margin_right = 14.0
bg.content_margin_top = 10.0
bg.content_margin_bottom = 10.0
_controls_panel.add_theme_stylebox_override("panel", bg)
_controls_panel.add_theme_stylebox_override(
"panel", UiTheme.plaque(UiTheme.LEATHER, UiTheme.BORDER, 4, 16.0, 12.0))
_controls_panel.anchor_left = 0.0
_controls_panel.anchor_top = 1.0
@@ -167,41 +621,35 @@ func _build_controls_panel() -> void:
_controls_panel.grow_vertical = Control.GROW_DIRECTION_BEGIN
_controls_panel.offset_left = 20.0
_controls_panel.offset_bottom = -20.0
_controls_panel.visible = false
add_child(_controls_panel)
var vbox := VBoxContainer.new()
vbox.add_theme_constant_override("separation", 5)
_controls_panel.add_child(vbox)
_row(vbox, "WASD / Arrows", "Move (not intended)", _MUTED)
_row(vbox, "LMB (hold)", "Right horn", _CREAM)
_row(vbox, "RMB (hold)", "Left horn", _CREAM)
_row(vbox, "F", "Kick", _CREAM)
_row(vbox, "G", "Slam", _CREAM)
_row(vbox, "H", "Dash", _CREAM)
var move_keys := "%s %s %s %s" % [
Controls.get_key_label(&"move_forward"),
Controls.get_key_label(&"move_left"),
Controls.get_key_label(&"move_back"),
Controls.get_key_label(&"move_right"),
]
_row(vbox, move_keys, "Move", _CREAM)
_row(vbox, Controls.get_key_label(&"ability_kick"), "Kick", _CREAM)
_row(vbox, Controls.get_key_label(&"ability_dash"), "Dash", _CREAM)
_row(vbox, Controls.get_key_label(&"ability_slam"), "Slam", _CREAM)
_row(vbox, Controls.get_key_label(&"ability_roll"), "Roll (Powerball: ram the matador!)", _CREAM)
_row(vbox, "Scroll", "Zoom", _CREAM)
_row(vbox, "R", "Respawn matadors (cooldown)", _MUTED)
_row(vbox, "Tab", "Toggle controls", _MUTED)
_row(vbox, "Esc", "Back to menu", _MUTED)
var sep := HSeparator.new()
var sep_style := StyleBoxFlat.new()
sep_style.bg_color = Color(0.65, 0.48, 0.15, 0.30)
sep_style.content_margin_top = 4.0
sep_style.content_margin_bottom = 4.0
sep.add_theme_stylebox_override("separator", sep_style)
sep.add_theme_stylebox_override("separator", UiTheme.rule())
vbox.add_child(sep)
var hbox := HBoxContainer.new()
hbox.add_theme_constant_override("separation", 8)
vbox.add_child(hbox)
_toggle_btn = _make_button("Hide controls")
_toggle_btn = _make_button("Show controls")
_toggle_btn.pressed.connect(_toggle_controls)
hbox.add_child(_toggle_btn)
var reset_btn := _make_button("Reset")
reset_btn.pressed.connect(_on_reset_pressed)
hbox.add_child(reset_btn)
vbox.add_child(_toggle_btn)
func _make_button(label_text: String) -> Button:
@@ -209,44 +657,17 @@ func _make_button(label_text: String) -> Button:
btn.text = label_text
btn.process_mode = Node.PROCESS_MODE_ALWAYS
var normal := StyleBoxFlat.new()
normal.bg_color = Color(0.18, 0.12, 0.04, 0.90)
normal.corner_radius_top_left = 5
normal.corner_radius_top_right = 5
normal.corner_radius_bottom_left = 5
normal.corner_radius_bottom_right = 5
normal.border_width_left = 1
normal.border_width_right = 1
normal.border_width_top = 1
normal.border_width_bottom = 1
normal.border_color = _BORDER
normal.content_margin_left = 12.0
normal.content_margin_right = 12.0
normal.content_margin_top = 6.0
normal.content_margin_bottom = 6.0
var hover := StyleBoxFlat.new()
hover.bg_color = Color(0.30, 0.20, 0.06, 0.95)
hover.corner_radius_top_left = 5
hover.corner_radius_top_right = 5
hover.corner_radius_bottom_left = 5
hover.corner_radius_bottom_right = 5
hover.border_width_left = 1
hover.border_width_right = 1
hover.border_width_top = 1
hover.border_width_bottom = 1
hover.border_color = _GOLD
hover.content_margin_left = 12.0
hover.content_margin_right = 12.0
hover.content_margin_top = 6.0
hover.content_margin_bottom = 6.0
var normal := UiTheme.plaque(Color(0.10, 0.07, 0.03, 0.90), _GOLD, 3, 18.0, 9.0)
var hover := UiTheme.plaque(Color(0.16, 0.10, 0.04, 0.96), _CREAM, 3, 18.0, 9.0)
btn.add_theme_stylebox_override("normal", normal)
btn.add_theme_stylebox_override("hover", hover)
btn.add_theme_stylebox_override("pressed", hover)
btn.add_theme_stylebox_override("focus", hover)
btn.add_theme_font_override("font", UiFonts.body())
btn.add_theme_color_override("font_color", _GOLD)
btn.add_theme_color_override("font_hover_color", _GOLD)
btn.add_theme_font_size_override("font_size", 12)
btn.add_theme_color_override("font_hover_color", _CREAM)
btn.add_theme_font_size_override("font_size", 18)
return btn
@@ -257,17 +678,7 @@ func _row(parent: VBoxContainer, key: String, desc: String, desc_color: Color) -
parent.add_child(row)
var badge := PanelContainer.new()
var bs := StyleBoxFlat.new()
bs.bg_color = _BADGE
bs.corner_radius_top_left = 3
bs.corner_radius_top_right = 3
bs.corner_radius_bottom_left = 3
bs.corner_radius_bottom_right = 3
bs.content_margin_left = 6.0
bs.content_margin_right = 6.0
bs.content_margin_top = 2.0
bs.content_margin_bottom = 2.0
badge.add_theme_stylebox_override("panel", bs)
badge.add_theme_stylebox_override("panel", UiTheme.badge())
badge.custom_minimum_size = Vector2(100.0, 0.0)
row.add_child(badge)
+324
View File
@@ -0,0 +1,324 @@
extends Control
## Intro menu: Siim's arena animation as a looping video background.
## Play / Options / Credits / Exit UI are overlaid; Play follows the cape.
const GAME_SCENE := "res://scene.tscn"
const FADE_TIME := 0.6
# Arena palette: aged gold on dark leather, warm cream on hover.
const MENU_GOLD := Color(0.85, 0.66, 0.20)
const MENU_CREAM := Color(0.93, 0.88, 0.72)
## Cape centroid per frame (normalized 0-1), detected from red-pixel centroid.
## 34 frames at 24 fps = 1.4167 s loop.
const VIDEO_FPS := 24.0
const CAPE_POS: Array = [
Vector2(0.4530, 0.6513),
Vector2(0.4521, 0.6516),
Vector2(0.4495, 0.6524),
Vector2(0.4456, 0.6537),
Vector2(0.4415, 0.6550),
Vector2(0.4373, 0.6578),
Vector2(0.4338, 0.6616),
Vector2(0.4306, 0.6669),
Vector2(0.4273, 0.6673),
Vector2(0.4256, 0.6586),
Vector2(0.4258, 0.6428),
Vector2(0.4281, 0.6243),
Vector2(0.4324, 0.6086),
Vector2(0.4382, 0.5997),
Vector2(0.4439, 0.5972),
Vector2(0.4483, 0.5970),
Vector2(0.4512, 0.5986),
Vector2(0.4529, 0.6025),
Vector2(0.4535, 0.6078),
Vector2(0.4533, 0.6135),
Vector2(0.4539, 0.6159),
Vector2(0.4545, 0.6120),
Vector2(0.4546, 0.6050),
Vector2(0.4541, 0.5988),
Vector2(0.4528, 0.5961),
Vector2(0.4508, 0.6012),
Vector2(0.4485, 0.6123),
Vector2(0.4466, 0.6256),
Vector2(0.4456, 0.6388),
Vector2(0.4457, 0.6491),
Vector2(0.4473, 0.6552),
Vector2(0.4492, 0.6567),
Vector2(0.4513, 0.6556),
Vector2(0.4524, 0.6526),
]
## Friendly labels for the rebindable actions (order defines list order).
const ACTION_LABELS: Dictionary = {
&"move_forward": "Move Forward",
&"move_back": "Move Back",
&"move_left": "Move Left",
&"move_right": "Move Right",
&"ability_kick": "Kick",
&"ability_dash": "Dash",
&"ability_slam": "Slam",
&"ability_roll": "Roll",
}
@onready var main_panel: Control = $MainPanel
@onready var options_panel: Control = $OptionsPanel
@onready var credits_panel: Control = $CreditsPanel
@onready var options_vbox: VBoxContainer = $OptionsPanel/VBox
@onready var options_scroll: ScrollContainer = $OptionsPanel/VBox/Scroll
@onready var rebind_list: VBoxContainer = $OptionsPanel/VBox/Scroll/RebindList
@onready var fade_rect: ColorRect = $FadeRect
@onready var play_button: Button = $VideoAspect/CapeLayer/PlayButton
@onready var options_button: Button = $MainPanel/OptionsButton
@onready var credits_button: Button = $MainPanel/CreditsButton
@onready var exit_button: Button = $MainPanel/ExitButton
@onready var options_back: Button = $OptionsPanel/VBox/BackButton
@onready var credits_back: Button = $CreditsPanel/VBox/BackButton
@onready var video: VideoStreamPlayer = $VideoAspect/VideoStreamPlayer
@onready var blur_video: VideoStreamPlayer = $VideoBlur/BlurVideo
var _listening_action: StringName = &""
var _listening_button: Button = null
func _ready() -> void:
Input.mouse_mode = Input.MOUSE_MODE_VISIBLE
options_panel.visible = false
credits_panel.visible = false
fade_rect.color = Color(0, 0, 0, 0)
if video.stream != null:
video.play()
video.finished.connect(video.play) # loop the background clip
if blur_video.stream != null:
blur_video.play()
blur_video.finished.connect(blur_video.play) # loop the blurred backdrop
play_button.pressed.connect(_on_play_pressed)
options_button.pressed.connect(_on_options_pressed)
credits_button.pressed.connect(_on_credits_pressed)
exit_button.pressed.connect(_on_exit_pressed)
options_back.pressed.connect(_close_subpanels)
credits_back.pressed.connect(_close_subpanels)
_apply_theme()
_build_version_label()
_build_options_toggles()
_build_rebind_rows()
play_button.grab_focus()
# Version banner in the bottom-right corner so it's clear this is an early build.
func _build_version_label() -> void:
var lbl := Label.new()
lbl.text = GameVersion.full()
lbl.add_theme_font_override("font", UiFonts.body())
lbl.add_theme_font_size_override("font_size", 16)
lbl.add_theme_color_override("font_color", MENU_CREAM)
lbl.add_theme_color_override("font_outline_color", Color.BLACK)
lbl.add_theme_constant_override("outline_size", 4)
lbl.set_anchors_preset(Control.PRESET_BOTTOM_RIGHT)
lbl.grow_horizontal = Control.GROW_DIRECTION_BEGIN
lbl.grow_vertical = Control.GROW_DIRECTION_BEGIN
lbl.offset_right = -16.0
lbl.offset_bottom = -12.0
lbl.mouse_filter = Control.MOUSE_FILTER_IGNORE
add_child(lbl)
# Give the whole menu the Cinzel look and swap the generic translucent boxes for
# engraved bronze plaques (dark leather fill, gold border with a heavier bottom
# edge for a chiselled-tablet feel).
func _apply_theme() -> void:
_style_button(play_button, true)
for btn: Button in [options_button, credits_button, exit_button, options_back, credits_back]:
_style_button(btn, false)
for path: String in ["OptionsPanel/VBox/TitleLabel", "CreditsPanel/VBox/TitleLabel"]:
var title := get_node_or_null(path) as Label
if title != null:
title.add_theme_font_override("font", UiFonts.title())
title.add_theme_color_override("font_color", MENU_GOLD)
var hint := get_node_or_null("OptionsPanel/VBox/Hint") as Label
if hint != null:
hint.add_theme_font_override("font", UiFonts.body())
hint.add_theme_color_override("font_color", MENU_CREAM)
_style_credits(get_node_or_null("CreditsPanel/VBox/Names") as RichTextLabel)
# The credits use a RichTextLabel so the Instagram handles are clickable links
# ([url] tags). meta_clicked opens the profile — in the web export OS.shell_open
# pops a new browser tab.
func _style_credits(names: RichTextLabel) -> void:
if names == null:
return
names.add_theme_font_override("normal_font", UiFonts.body())
names.add_theme_font_override("bold_font", UiFonts.title())
names.add_theme_color_override("default_color", MENU_CREAM)
names.meta_clicked.connect(func(meta: Variant) -> void:
OS.shell_open(str(meta)))
func _style_button(btn: Button, big: bool) -> void:
btn.add_theme_font_override("font", UiFonts.title() if big else UiFonts.body())
btn.add_theme_color_override("font_color", MENU_GOLD)
btn.add_theme_color_override("font_hover_color", MENU_CREAM)
btn.add_theme_color_override("font_focus_color", MENU_CREAM)
btn.add_theme_color_override("font_pressed_color", MENU_CREAM)
btn.add_theme_color_override("font_outline_color", Color(0, 0, 0, 1))
btn.add_theme_constant_override("outline_size", 8 if big else 5)
btn.add_theme_stylebox_override("normal", _plaque(false))
btn.add_theme_stylebox_override("hover", _plaque(true))
btn.add_theme_stylebox_override("pressed", _plaque(true))
btn.add_theme_stylebox_override("focus", _plaque(true))
func _plaque(hot: bool) -> StyleBoxFlat:
var bg := Color(0.14, 0.09, 0.04, 0.94) if hot else Color(0.07, 0.05, 0.03, 0.82)
var trim := MENU_CREAM if hot else MENU_GOLD
return UiTheme.plaque(bg, trim, 2, 24.0, 9.0)
func _process(_delta: float) -> void:
if not main_panel.visible or video.stream == null:
return
var frame_count := CAPE_POS.size()
var t := video.stream_position
var frame_idx := int(t * VIDEO_FPS) % frame_count
var cape: Vector2 = CAPE_POS[frame_idx]
play_button.anchor_left = cape.x
play_button.anchor_right = cape.x
play_button.anchor_top = cape.y
play_button.anchor_bottom = cape.y
# Player-facing option toggles, seated above the rebind list in the Options panel:
# the master screen-shake switch and the gore toggle (both persisted via Settings).
func _build_options_toggles() -> void:
var scroll_idx := options_scroll.get_index()
# Insert in reverse so both land directly above the rebind scroll, in listed order.
_add_toggle_row("Blood & Gore", Settings.gore, Settings.set_gore, scroll_idx)
_add_toggle_row("Screen Shake", Settings.screen_shake, Settings.set_screen_shake, scroll_idx)
func _add_toggle_row(label_text: String, value: bool, setter: Callable, at_index: int) -> void:
var row := HBoxContainer.new()
row.size_flags_horizontal = Control.SIZE_EXPAND_FILL
var name_label := Label.new()
name_label.text = label_text
name_label.size_flags_horizontal = Control.SIZE_EXPAND_FILL
name_label.vertical_alignment = VERTICAL_ALIGNMENT_CENTER
name_label.add_theme_font_override("font", UiFonts.body())
name_label.add_theme_font_size_override("font_size", 20)
name_label.add_theme_color_override("font_color", MENU_CREAM)
name_label.add_theme_color_override("font_outline_color", Color.BLACK)
name_label.add_theme_constant_override("outline_size", 5)
row.add_child(name_label)
var toggle := CheckButton.new()
toggle.button_pressed = value
toggle.add_theme_color_override("font_color", MENU_GOLD)
toggle.toggled.connect(func(on: bool) -> void: setter.call(on))
row.add_child(toggle)
options_vbox.add_child(row)
options_vbox.move_child(row, at_index)
func _build_rebind_rows() -> void:
for child in rebind_list.get_children():
child.queue_free()
for action: StringName in ACTION_LABELS:
var row := HBoxContainer.new()
row.size_flags_horizontal = Control.SIZE_EXPAND_FILL
var name_label := Label.new()
name_label.text = ACTION_LABELS[action]
name_label.size_flags_horizontal = Control.SIZE_EXPAND_FILL
name_label.vertical_alignment = VERTICAL_ALIGNMENT_CENTER
name_label.add_theme_font_override("font", UiFonts.body())
name_label.add_theme_font_size_override("font_size", 20)
name_label.add_theme_color_override("font_color", MENU_CREAM)
name_label.add_theme_color_override("font_outline_color", Color.BLACK)
name_label.add_theme_constant_override("outline_size", 5)
row.add_child(name_label)
var key_button := Button.new()
key_button.custom_minimum_size = Vector2(160, 0)
key_button.text = Controls.get_key_label(action)
_style_button(key_button, false)
key_button.pressed.connect(_on_rebind_pressed.bind(action, key_button))
row.add_child(key_button)
rebind_list.add_child(row)
func _on_play_pressed() -> void:
_set_buttons_disabled(true)
var tween := create_tween()
tween.tween_property(fade_rect, "color:a", 1.0, FADE_TIME)
tween.tween_callback(func() -> void:
get_tree().change_scene_to_file(GAME_SCENE))
func _on_options_pressed() -> void:
main_panel.visible = false
play_button.visible = false
options_panel.visible = true
options_back.grab_focus()
func _on_credits_pressed() -> void:
main_panel.visible = false
play_button.visible = false
credits_panel.visible = true
credits_back.grab_focus()
func _on_exit_pressed() -> void:
get_tree().quit()
func _close_subpanels() -> void:
_cancel_listening()
options_panel.visible = false
credits_panel.visible = false
main_panel.visible = true
play_button.visible = true
play_button.grab_focus()
func _set_buttons_disabled(value: bool) -> void:
play_button.disabled = value
options_button.disabled = value
credits_button.disabled = value
exit_button.disabled = value
func _on_rebind_pressed(action: StringName, button: Button) -> void:
_cancel_listening()
_listening_action = action
_listening_button = button
button.text = "Press a key…"
func _cancel_listening() -> void:
if _listening_button != null:
_listening_button.text = Controls.get_key_label(_listening_action)
_listening_action = &""
_listening_button = null
func _unhandled_input(event: InputEvent) -> void:
if _listening_action == &"":
return
if event is InputEventKey and event.pressed and not event.echo:
if event.physical_keycode == KEY_ESCAPE:
_cancel_listening()
else:
var new_event := InputEventKey.new()
new_event.physical_keycode = event.physical_keycode
Controls.rebind(_listening_action, new_event)
_listening_button.text = Controls.get_key_label(_listening_action)
_listening_action = &""
_listening_button = null
get_viewport().set_input_as_handled()
+1
View File
@@ -0,0 +1 @@
uid://46y10alai56q
+776 -194
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File diff suppressed because it is too large Load Diff
+85
View File
@@ -0,0 +1,85 @@
class_name MatadorRagdoll
extends RefCounted
## Builds the matador's physical-bone ragdoll. Body joints are cone-twist with
## limited swing/twist (DP-tunable) so the corpse keeps its silhouette instead of
## folding into a flat "deflated" pile; the cape stays free (PIN) so it drapes.
# [bone, radius] → sphere collider; [bone, radius, height] → capsule.
const _BONES: Array = [
["matador", 0.18],
["COG", 0.12],
["chest", 0.13, 0.30],
["head", 0.14],
["collarbone_L", 0.06, 0.18],
["collarbone_R", 0.06, 0.18],
["arm_L", 0.07, 0.22],
["arm_R", 0.07, 0.22],
["forearm_L", 0.06, 0.22],
["forearm_R", 0.06, 0.22],
["hand_L", 0.05, 0.12],
["hand_R", 0.05, 0.12],
["leg_L", 0.10, 0.32],
["leg_R", 0.10, 0.32],
["shin_L", 0.08, 0.28],
["shin_R", 0.08, 0.28],
["foot_L", 0.07, 0.18],
["foot_R", 0.07, 0.18],
["Bone", 0.04, 0.30],
["Bone.001", 0.04, 0.34],
["Bone.002", 0.04, 0.30],
]
# Reuse an existing simulator if the rig already has one, else build the bodies.
static func build(skeleton: Skeleton3D) -> PhysicalBoneSimulator3D:
for child: Node in skeleton.get_children():
if child is PhysicalBoneSimulator3D:
(child as PhysicalBoneSimulator3D).active = false
return child as PhysicalBoneSimulator3D
var sim := PhysicalBoneSimulator3D.new()
sim.active = false
skeleton.add_child(sim)
var swing := DP.f("mat_joint_swing")
var twist := DP.f("mat_joint_twist")
var damp := DP.f("mat_ragdoll_damp")
for entry: Array in _BONES:
var bname: String = entry[0]
if skeleton.find_bone(bname) == -1:
continue
var pb := PhysicalBone3D.new()
pb.bone_name = bname
pb.mass = 0.4
pb.linear_damp = 0.1
pb.collision_layer = 1
pb.collision_mask = 1
if bname.begins_with("Bone"):
# Cape: floppy cloth — free swing, light, draggy, one-way collision.
pb.joint_type = PhysicalBone3D.JOINT_TYPE_PIN
pb.mass = 0.15
pb.linear_damp = 0.5
pb.angular_damp = 0.7
pb.collision_layer = 0
else:
# Body: cone-twist joints cap how far each bone bends from its rest
# pose, so the silhouette holds; extra angular damp settles the flail.
pb.joint_type = PhysicalBone3D.JOINT_TYPE_CONE
pb.angular_damp = damp
pb.set(&"joint_constraints/swing_span", swing)
pb.set(&"joint_constraints/twist_span", twist)
var cs := CollisionShape3D.new()
if entry.size() >= 3:
var cap := CapsuleShape3D.new()
cap.radius = entry[1]
cap.height = entry[2]
cs.shape = cap
else:
var sph := SphereShape3D.new()
sph.radius = entry[1]
cs.shape = sph
pb.add_child(cs)
sim.add_child(pb)
return sim
+1
View File
@@ -0,0 +1 @@
uid://dmf04b5exnejn
+109 -37
View File
@@ -1,70 +1,142 @@
extends Node3D
signal matador_killed
signal all_defeated
const MATADOR := preload("res://Matador.tscn")
const RESPAWN_COOLDOWN := 8.0
var _respawn_cooldown: float = 0.0
var _wave_count: int = 1
var _spawn_count: int = 1
var _alive: int = 0
var _kills: int = 0
var _resolved: bool = false
# Flat (x,z) positions of the most recent batch spawned. A fresh wave keeps at least
# _SPAWN_MIN_SEP away from these so it never lands on top of where the last one did.
const _SPAWN_MIN_SEP: float = 3.5
var _last_spawn_positions: Array[Vector3] = []
func _ready() -> void:
add_to_group(&"matador_spawn")
_wave_count = maxi(1, int(DP.f("mat_spawn_count")))
_spawn_count = maxi(1, int(DP.f("mat_spawn_count")))
# Deferred so it's safe from _ready and matches the previous spawn timing.
_spawn.call_deferred()
func _process(delta: float) -> void:
_respawn_cooldown = maxf(0.0, _respawn_cooldown - delta)
func _unhandled_input(event: InputEvent) -> void:
if event is InputEventKey and event.pressed and not event.echo:
if event.physical_keycode == KEY_R and _respawn_cooldown <= 0.0:
_respawn_cooldown = RESPAWN_COOLDOWN
reset_spawn()
func _spawn() -> void:
var positions := _spread_positions(_wave_count)
for pos: Vector3 in positions:
# Bull and matadors start at opposite ends of a random diameter, so they always
# begin as far apart as the arena allows (edge-to-edge across the centre).
var arena_r := DP.f("arena_spawn_radius")
var bull_angle := randf() * TAU
_place_bull(bull_angle, arena_r)
var placed: Array[Vector3] = _spread_positions(_spawn_count, bull_angle + PI, arena_r)
for pos: Vector3 in placed:
_spawn_at(pos)
_last_spawn_positions = placed
func _spread_positions(count: int) -> Array[Vector3]:
func _place_bull(angle: float, arena_r: float) -> void:
var bull := get_tree().get_first_node_in_group(&"player") as Node3D
if not bull:
return
bull.global_position = Vector3(
cos(angle) * arena_r, bull.global_position.y, sin(angle) * arena_r
)
# Positions for the matadors, spread across the far side (centred on `center_angle`)
# so every matador stays near the point diametrically opposite the bull. Each slot gets
# its own angular band and a staggered radius, then rejection-samples inside that band so
# no two matadors land closer than _SPAWN_MIN_SEP — otherwise they pile up on top of
# each other on spawn. The arc widens with the crowd so a big wave doesn't get cramped.
func _spread_positions(count: int, center_angle: float, arena_r: float) -> Array[Vector3]:
var positions: Array[Vector3] = []
var arena_r := DP.f("mat_wander_radius") * 0.72
var min_r := 5.0
if count <= 1:
positions.append(Vector3(cos(center_angle) * arena_r, 1.0, sin(center_angle) * arena_r))
return positions
var arc := clampf(TAU * 0.33 + float(count) * 0.25, TAU * 0.33, TAU * 0.92)
var slot := arc / float(count)
var inner := maxf(2.5, arena_r * 0.5)
for i: int in count:
var sector := TAU / count
var angle := sector * i + randf_range(-sector * 0.35, sector * 0.35)
var radius := randf_range(min_r, arena_r)
positions.append(Vector3(cos(angle) * radius, 1.0, sin(angle) * radius))
# Give each matador its own angular slot for an even fan, but sample the radius
# freely across the whole far-side band so the rejection test can push crowded
# neighbours onto a different ring instead of piling them at one distance.
var base_angle := center_angle - arc * 0.5 + slot * (float(i) + 0.5)
var pos := Vector3(cos(base_angle) * arena_r, 1.0, sin(base_angle) * arena_r)
for attempt: int in 16:
var angle := base_angle + randf_range(-0.5, 0.5) * slot
var radius := randf_range(inner, arena_r)
pos = Vector3(cos(angle) * radius, 1.0, sin(angle) * radius)
if _clear_of(pos, positions, _SPAWN_MIN_SEP):
break
positions.append(pos)
return positions
func _spawn_at(pos: Vector3) -> void:
func _spawn_at(pos: Vector3, generation: int = 0) -> void:
var m: Node3D = MATADOR.instantiate()
m.position = pos
m.set_meta(&"generation", generation)
get_parent().add_child(m)
m.killed.connect(_on_matador_killed)
m.killed.connect(_on_matador_killed.bind(m))
_alive += 1
func _on_matador_killed() -> void:
# A slain matador is replaced by mat_split_factor fresh ones on the spot (a hydra),
# so the horde doubles each generation, up to mat_split_generations deep. The bull
# wins only when a whole generation dies out without splitting — i.e. once the spawns
# stop and the last body drops.
func _on_matador_killed(dead: Node3D) -> void:
matador_killed.emit()
_alive -= 1
if _alive <= 0:
_wave_count *= 2
_spawn.call_deferred()
_kills += 1
_split(dead)
var win_kills := int(DP.f("mat_win_kills"))
var reached_quota := win_kills > 0 and _kills >= win_kills
if (reached_quota or _alive <= 0) and not _resolved:
_resolved = true
all_defeated.emit()
func reset_spawn() -> void:
for m: Node in get_tree().get_nodes_in_group(&"matador"):
m.queue_free()
await get_tree().process_frame
_wave_count = maxi(1, int(DP.f("mat_spawn_count")))
_alive = 0
_spawn()
func _split(dead: Node3D) -> void:
var count := int(DP.f("mat_split_factor"))
var generation := int(dead.get_meta(&"generation", 0))
if count < 2 or generation >= int(DP.f("mat_split_generations")):
return
var arena_r := DP.f("arena_spawn_radius")
var origin := dead.global_position
origin.y = 0.0
var wave: Array[Vector3] = []
for i: int in count:
var pos := _pick_spawn(origin, arena_r, wave)
wave.append(pos)
_spawn_at(pos, generation + 1)
_last_spawn_positions = wave
# Rejection-sample a spawn point ringed around `origin`, pushing the ring outward on
# each failed attempt until it clears both the previous wave (_last_spawn_positions)
# and the spots already taken this wave — so a fresh wave never lands where the last
# one did. Falls back to the last candidate if the arena is too cramped to satisfy it.
func _pick_spawn(origin: Vector3, arena_r: float, taken: Array[Vector3]) -> Vector3:
var pos := origin
for attempt: int in 12:
var angle := randf() * TAU
var r := randf_range(2.0, 3.5) + float(attempt) * 0.4
pos = origin + Vector3(cos(angle) * r, 0.0, sin(angle) * r)
var flat := Vector2(pos.x, pos.z)
if flat.length() > arena_r:
flat = flat.normalized() * arena_r
pos = Vector3(flat.x, 0.0, flat.y)
if _clear_of(pos, _last_spawn_positions, _SPAWN_MIN_SEP) \
and _clear_of(pos, taken, _SPAWN_MIN_SEP):
break
pos.y = 1.0
return pos
func _clear_of(pos: Vector3, others: Array[Vector3], min_sep: float) -> bool:
for o: Vector3 in others:
if Vector2(pos.x - o.x, pos.z - o.z).length() < min_sep:
return false
return true
+25
View File
@@ -0,0 +1,25 @@
shader_type canvas_item;
// Blurred, darkened backdrop for the intro video. A COVER-scaled copy of the
// clip sits behind the sharp fitted clip so portrait/ultrawide screens fill
// edge-to-edge instead of showing dead bars.
uniform float blur_radius : hint_range(0.0, 8.0) = 3.0;
uniform float darken : hint_range(0.0, 1.0) = 0.35;
void fragment() {
vec2 px = TEXTURE_PIXEL_SIZE * blur_radius;
vec4 sum = vec4(0.0);
// 3x3 gaussian-ish tap, weights sum to 16.
sum += texture(TEXTURE, UV + vec2(-px.x, -px.y)) * 1.0;
sum += texture(TEXTURE, UV + vec2(0.0, -px.y)) * 2.0;
sum += texture(TEXTURE, UV + vec2(px.x, -px.y)) * 1.0;
sum += texture(TEXTURE, UV + vec2(-px.x, 0.0)) * 2.0;
sum += texture(TEXTURE, UV) * 4.0;
sum += texture(TEXTURE, UV + vec2(px.x, 0.0)) * 2.0;
sum += texture(TEXTURE, UV + vec2(-px.x, px.y)) * 1.0;
sum += texture(TEXTURE, UV + vec2(0.0, px.y)) * 2.0;
sum += texture(TEXTURE, UV + vec2(px.x, px.y)) * 1.0;
sum /= 16.0;
COLOR = vec4(sum.rgb * (1.0 - darken), sum.a);
}
+1
View File
@@ -0,0 +1 @@
uid://bmdtg6qlh7wri
+667 -230
View File
File diff suppressed because it is too large Load Diff
+21 -27
View File
@@ -11,15 +11,23 @@ config_version=5
[application]
config/name="Bullosseum"
run/main_scene="res://scene.tscn"
config/version="0.2.0"
run/main_scene="res://MainMenu.tscn"
config/features=PackedStringArray("4.7", "Forward Plus")
config/icon="res://icon.svg"
config/run/main_scene="res://scene.tscn"
config/run/main_scene="res://MainMenu.tscn"
boot_splash/bg_color=Color(0, 0, 0, 1)
boot_splash/image="res://Assets/loading_screen.png"
boot_splash/fullsize=true
boot_splash/use_filter=true
[autoload]
DP="*res://debug_params.gd"
DebugMenu="*res://debug_menu.gd"
Console="*res://console.gd"
Controls="*res://controls_manager.gd"
DebugDraw="*res://debug_draw.gd"
Settings="*res://settings.gd"
[editor_plugins]
@@ -59,12 +67,6 @@ move_right={
, Object(InputEventJoypadButton,"resource_local_to_scene":false,"resource_name":"","device":-1,"button_index":14,"pressure":0.0,"pressed":false,"script":null)
]
}
jump={
"deadzone": 0.2,
"events": [Object(InputEventKey,"resource_local_to_scene":false,"resource_name":"","device":-1,"window_id":0,"alt_pressed":false,"shift_pressed":false,"ctrl_pressed":false,"meta_pressed":false,"pressed":false,"keycode":0,"physical_keycode":32,"key_label":0,"unicode":32,"location":0,"echo":false,"script":null)
, Object(InputEventJoypadButton,"resource_local_to_scene":false,"resource_name":"","device":-1,"button_index":0,"pressure":0.0,"pressed":false,"script":null)
]
}
zoom_in={
"deadzone": 0.2,
"events": [Object(InputEventMouseButton,"resource_local_to_scene":false,"resource_name":"","device":-1,"window_id":0,"alt_pressed":false,"shift_pressed":false,"ctrl_pressed":false,"meta_pressed":false,"button_mask":8,"position":Vector2(726, 8),"global_position":Vector2(735, 56),"factor":1.0,"button_index":4,"canceled":false,"pressed":true,"double_click":false,"script":null)
@@ -80,24 +82,6 @@ toggle_mouse_capture={
"events": [Object(InputEventMouseButton,"resource_local_to_scene":false,"resource_name":"","device":-1,"window_id":0,"alt_pressed":false,"shift_pressed":false,"ctrl_pressed":false,"meta_pressed":false,"button_mask":4,"position":Vector2(461, 22),"global_position":Vector2(470, 70),"factor":1.0,"button_index":3,"canceled":false,"pressed":true,"double_click":false,"script":null)
]
}
charge={
"deadzone": 0.2,
"events": [Object(InputEventKey,"resource_local_to_scene":false,"resource_name":"","device":-1,"window_id":0,"alt_pressed":false,"shift_pressed":false,"ctrl_pressed":false,"meta_pressed":false,"pressed":false,"keycode":0,"physical_keycode":4194325,"key_label":0,"unicode":0,"location":1,"echo":false,"script":null)
, Object(InputEventJoypadButton,"resource_local_to_scene":false,"resource_name":"","device":-1,"button_index":10,"pressure":0.0,"pressed":false,"script":null)
]
}
thrust_left={
"deadzone": 0.2,
"events": [Object(InputEventMouseButton,"resource_local_to_scene":false,"resource_name":"","device":-1,"window_id":0,"alt_pressed":false,"shift_pressed":false,"ctrl_pressed":false,"meta_pressed":false,"button_mask":1,"position":Vector2(0, 0),"global_position":Vector2(0, 0),"factor":1.0,"button_index":1,"canceled":false,"pressed":true,"double_click":false,"script":null)
, Object(InputEventJoypadMotion,"resource_local_to_scene":false,"resource_name":"","device":-1,"axis":4,"axis_value":1.0,"script":null)
]
}
thrust_right={
"deadzone": 0.2,
"events": [Object(InputEventMouseButton,"resource_local_to_scene":false,"resource_name":"","device":-1,"window_id":0,"alt_pressed":false,"shift_pressed":false,"ctrl_pressed":false,"meta_pressed":false,"button_mask":2,"position":Vector2(0, 0),"global_position":Vector2(0, 0),"factor":1.0,"button_index":2,"canceled":false,"pressed":true,"double_click":false,"script":null)
, Object(InputEventJoypadMotion,"resource_local_to_scene":false,"resource_name":"","device":-1,"axis":5,"axis_value":1.0,"script":null)
]
}
ability_kick={
"deadzone": 0.2,
"events": [Object(InputEventKey,"resource_local_to_scene":false,"resource_name":"","device":-1,"window_id":0,"alt_pressed":false,"shift_pressed":false,"ctrl_pressed":false,"meta_pressed":false,"pressed":false,"keycode":0,"physical_keycode":70,"key_label":0,"unicode":102,"location":0,"echo":false,"script":null)
@@ -116,6 +100,16 @@ ability_dash={
, Object(InputEventJoypadButton,"resource_local_to_scene":false,"resource_name":"","device":-1,"button_index":1,"pressure":0.0,"pressed":true,"script":null)
]
}
ability_roll={
"deadzone": 0.2,
"events": [Object(InputEventKey,"resource_local_to_scene":false,"resource_name":"","device":-1,"window_id":0,"alt_pressed":false,"shift_pressed":false,"ctrl_pressed":false,"meta_pressed":false,"pressed":false,"keycode":0,"physical_keycode":74,"key_label":0,"unicode":106,"location":0,"echo":false,"script":null)
, Object(InputEventJoypadButton,"resource_local_to_scene":false,"resource_name":"","device":-1,"button_index":3,"pressure":0.0,"pressed":true,"script":null)
]
}
[input_devices]
pointing/emulate_touch_from_mouse=true
[physics]
+36
View File
@@ -0,0 +1,36 @@
extends ColorRect
## Drives the fullscreen PS1/CRT post-process (ps1_filter.gdshader) from the DP
## registry so every uniform is live-tunable in the console. `show_ps1` toggles the
## whole overlay; the ps1_* floats feed the matching shader uniforms 1:1.
# DP param key → shader uniform name. Keys are registered in debug_params.gd with
# ranges that mirror the shader's hint_range, so nothing here can go out of bounds.
const _UNIFORMS := {
"ps1_pixel_scale": "pixel_scale",
"ps1_color_depth": "color_depth",
"ps1_dither_strength": "dither_strength",
"ps1_scanline_strength": "scanline_strength",
"ps1_roll_speed": "roll_speed",
"ps1_roll_strength": "roll_strength",
}
@onready var _mat: ShaderMaterial = material as ShaderMaterial
func _ready() -> void:
DP.any_changed.connect(_on_param_changed)
_apply_all()
# reset_all() fires with key "__all__"; a single edit fires with its own key. Either
# way just re-push everything — it's a handful of cheap uniform writes.
func _on_param_changed(_key: String, _value: Variant) -> void:
_apply_all()
func _apply_all() -> void:
visible = DP.b("show_ps1")
if _mat == null:
return
for key: String in _UNIFORMS:
_mat.set_shader_parameter(_UNIFORMS[key], DP.f(key))
+1
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@@ -0,0 +1 @@
uid://ce5n4qu88mhyx
+3
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@@ -2,6 +2,9 @@ extends Node3D
func _ready() -> void:
# Mark the crowd so debug overlays (show_animation_name / show_bones) skip it —
# 72 ambient clapping spectators would otherwise flood the view with tags.
add_to_group(&"public")
for child in get_children():
var anim := child.get_node_or_null(^"AnimationPlayer") as AnimationPlayer
if anim:
+8
View File
@@ -14,6 +14,14 @@ echo ""
echo "=== Logic tests ==="
"$GODOT" --headless --script tests/logic_test.gd
echo ""
echo "=== Console focus tests ==="
"$GODOT" --headless --script tests/console_focus_test.gd
echo ""
echo "=== Performance tests (frame-budget regression guard) ==="
"$GODOT" --headless --script tests/performance_test.gd
if [[ "$SKIP_GAMEPLAY" -eq 0 ]]; then
echo ""
echo "=== Gameplay tests (headless — assertions only, screenshots may be blank) ==="
+36 -14
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File diff suppressed because one or more lines are too long
+49
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@@ -0,0 +1,49 @@
extends Node
## Player-facing game options (autoload `Settings`), persisted to user://settings.cfg.
## Distinct from DP (debug tunables) and Controls (keybinds): this is the small set of
## comfort/accessibility toggles the options menu exposes to the player.
signal changed(key: String, value: Variant)
const SAVE_PATH := "user://settings.cfg"
const SECTION := "options"
## Master screen-shake toggle — gates every camera_iso.trigger_hit (hits and ability FX).
var screen_shake: bool = true
## Gore toggle — when off, no blood spawns (impact spurt + ongoing spear-wound bleed).
var gore: bool = true
func _ready() -> void:
load_saved()
func set_screen_shake(value: bool) -> void:
if screen_shake == value:
return
screen_shake = value
changed.emit("screen_shake", value)
save()
func set_gore(value: bool) -> void:
if gore == value:
return
gore = value
changed.emit("gore", value)
save()
func save() -> void:
var cfg := ConfigFile.new()
cfg.set_value(SECTION, "screen_shake", screen_shake)
cfg.set_value(SECTION, "gore", gore)
cfg.save(SAVE_PATH)
func load_saved() -> void:
var cfg := ConfigFile.new()
if cfg.load(SAVE_PATH) != OK:
return
screen_shake = cfg.get_value(SECTION, "screen_shake", true) as bool
gore = cfg.get_value(SECTION, "gore", true) as bool
+1
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@@ -0,0 +1 @@
uid://dyspgr7m238la
+206
View File
@@ -0,0 +1,206 @@
class_name SpearProjectile
extends RigidBody3D
# A thrown spear. It flies a ballistic arc (gravity does the work — the launch
# velocity is solved by the matador to land on the bull) and keeps its shaft aimed
# along its own velocity, so it noses over at the apex and drives in point-first.
# On impact it embeds where it struck: the tip buried just past the contact point
# with the shaft trailing back along the flight line, so it reads as stuck-in rather
# than floating alongside. A hit on the bull leaves the spear riding it like a spine
# (see shed_all, which the bull's slam calls to fling them all off); other hits pin
# it in place until the despawn timer clears it.
const _DESPAWN_SEC: float = 8.0
const _STUCK_GROUP: StringName = &"stuck_spear"
# Shaft geometry in spear.glb local space: tip at +Z, butt behind the origin.
const _TIP_Z: float = 1.915
const _EMBED_DEPTH: float = 0.45 # how far past the surface the tip buries
var _mesh: Node3D = null
var _stopped: bool = false
var _flight_dir: Vector3 = Vector3.ZERO # last pre-impact travel direction
# Build, seat and launch a spear from an already-instantiated mesh (the one that was
# in the matador's hand). `origin` is the release point; `velocity` is the full
# ballistic launch vector; `gravity` is the RigidBody gravity_scale for the arc.
static func launch(parent: Node, mesh: Node3D, origin: Vector3, velocity: Vector3,
gravity: float) -> SpearProjectile:
var s := SpearProjectile.new()
s.gravity_scale = gravity
s.collision_layer = 0
s.collision_mask = 1
s.contact_monitor = true
s.max_contacts_reported = 6
parent.add_child(s)
# Seat the body so its local +Z (the shaft, see spear.glb) points along the throw.
s.global_transform = Transform3D(_aim_basis(velocity), origin)
mesh.reparent(s, false)
mesh.transform = Transform3D.IDENTITY
s._mesh = mesh
s.add_child(_shaft_collider())
s.linear_velocity = velocity
_despawn(s)
return s
# Shed every spear stuck in `bull` — pop each off as a tumbling body that flies clear
# and clears itself on the despawn timer. Called by the bull's slam.
static func shed_all(bull: Node) -> void:
if not (bull is Node3D):
return
var scene: Node = bull.get_tree().current_scene
if scene == null:
scene = bull
var center: Vector3 = (bull as Node3D).global_position
for child in bull.get_children():
if not child.is_in_group(_STUCK_GROUP):
continue
var mesh := child as Node3D
var gx := mesh.global_transform
var rb := RigidBody3D.new()
rb.collision_layer = 0
rb.collision_mask = 1
scene.add_child(rb)
rb.global_transform = gx
mesh.reparent(rb, false)
mesh.transform = Transform3D.IDENTITY
mesh.remove_from_group(_STUCK_GROUP)
rb.add_child(_shaft_collider())
# Fling outward from the bull with a bit of lift and spin.
var out := gx.origin - center
out.y = 0.0
out = out.normalized() if out.length() > 0.01 else Vector3(randf() - 0.5, 0.0, randf() - 0.5)
rb.linear_velocity = out * randf_range(3.0, 6.0) + Vector3.UP * randf_range(3.0, 5.0)
rb.angular_velocity = Vector3(randf_range(-10.0, 10.0),
randf_range(-10.0, 10.0), randf_range(-10.0, 10.0))
_despawn(rb)
static func _shaft_collider() -> CollisionShape3D:
# Collider along local +Z (mesh runs z≈-0.34 … 1.92), fattened so a fast throw
# can't tunnel past the bull's collision spheres.
var cap := CapsuleShape3D.new()
cap.radius = 0.13
cap.height = 2.2
var cs := CollisionShape3D.new()
cs.shape = cap
cs.position = Vector3(0.0, 0.0, 0.79)
cs.rotation_degrees = Vector3(90.0, 0.0, 0.0)
return cs
# Continuous bleed from a spear lodged in the bull: a steady spurt of dark-red gobs out
# of the entry wound. Parented to the stuck mesh so it tracks the wound as the bull
# moves; world-space particles (local_coords off) so they arc off and fall behind as a
# trail. Dies with the mesh when the spear is shed or despawned.
static func _wound_emitter() -> CPUParticles3D:
var ramp := Gradient.new()
ramp.set_color(0, Color(0.5, 0.02, 0.02, 1.0))
ramp.set_color(1, Color(0.22, 0.0, 0.0, 0.0))
var sc := Curve.new()
sc.add_point(Vector2(0.0, 1.0))
sc.add_point(Vector2(0.6, 0.7))
sc.add_point(Vector2(1.0, 0.0))
var p := CPUParticles3D.new()
# Seat at the wound (where the shaft meets the hide) and spray back out along the
# shaft: mesh local -Z is the exit direction, rotated into world by the node basis.
p.position = Vector3(0.0, 0.0, _TIP_Z - _EMBED_DEPTH)
p.emitting = true
p.amount = 22
p.lifetime = 0.6
p.explosiveness = 0.0
p.randomness = 0.6
p.local_coords = false
p.direction = Vector3(0.0, 0.55, -1.0).normalized()
p.spread = 32.0
p.gravity = Vector3(0.0, -12.0, 0.0)
p.initial_velocity_min = 1.6
p.initial_velocity_max = 4.0
p.scale_amount_min = 0.5
p.scale_amount_max = 1.4
p.mesh = _blood_mesh()
p.color_ramp = ramp
p.scale_amount_curve = sc
return p
# Small unshaded, vertex-coloured sphere for blood gobs.
static func _blood_mesh() -> SphereMesh:
var mat := StandardMaterial3D.new()
mat.shading_mode = BaseMaterial3D.SHADING_MODE_UNSHADED
mat.transparency = BaseMaterial3D.TRANSPARENCY_ALPHA
mat.vertex_color_use_as_albedo = true
mat.cull_mode = BaseMaterial3D.CULL_DISABLED
var s := SphereMesh.new()
s.radius = 0.045
s.height = 0.09
s.radial_segments = 4
s.rings = 2
s.material = mat
return s
static func _despawn(node: Node) -> void:
node.get_tree().create_timer(_DESPAWN_SEC).timeout.connect(func() -> void:
if is_instance_valid(node):
node.queue_free()
)
# Basis whose local +Z points along `v` (looking_at points -Z at its target).
static func _aim_basis(v: Vector3) -> Basis:
var dir := v.normalized()
if dir.length_squared() < 0.0001:
return Basis.IDENTITY
var up := Vector3.UP if absf(dir.dot(Vector3.UP)) < 0.99 else Vector3.FORWARD
return Basis.looking_at(-dir, up)
# While flying, keep the shaft aligned with the velocity; on the first contact freeze
# and hand off to _embed so the spear sticks where it struck instead of bouncing off.
func _integrate_forces(state: PhysicsDirectBodyState3D) -> void:
if _stopped:
return
if state.get_contact_count() > 0:
_stopped = true
# Use the remembered pre-impact heading — state.linear_velocity is already the
# bounced (post-collision) velocity by now, which would aim the shaft wrong.
var contact := state.get_contact_collider_position(0)
var other := state.get_contact_collider_object(0)
state.linear_velocity = Vector3.ZERO
state.angular_velocity = Vector3.ZERO
_embed.call_deferred(other, contact, _flight_dir)
return
var v := state.linear_velocity
if v.length_squared() > 0.04:
_flight_dir = v.normalized()
var t := state.transform
t.basis = _aim_basis(v)
state.transform = t
state.angular_velocity = Vector3.ZERO
# Compose the stuck pose (tip buried _EMBED_DEPTH past the contact, shaft along the
# flight line) and plant the spear. A bull hit hands the mesh to the bull so it rides
# along as a spine; anything else pins the body in place for the despawn timer.
func _embed(other: Object, contact: Vector3, flight: Vector3) -> void:
var f := flight.normalized()
if f.length_squared() < 0.0001:
f = global_transform.basis.z.normalized()
var pose := Transform3D(_aim_basis(f), contact + f * (_EMBED_DEPTH - _TIP_Z))
var bull := other as Node
if bull != null and bull.is_in_group(&"player"):
bull.call(&"take_sword_hit", "thrown", contact)
if is_instance_valid(_mesh) and is_instance_valid(bull):
_mesh.reparent(bull, false)
_mesh.global_transform = pose
_mesh.add_to_group(_STUCK_GROUP)
if Settings.gore:
_mesh.add_child(_wound_emitter()) # keep bleeding from the wound while lodged
queue_free()
return
freeze = true
global_transform = pose
+1
View File
@@ -0,0 +1 @@
uid://dwjakh1is1jtj
+110
View File
@@ -0,0 +1,110 @@
extends SceneTree
## Headless focus tests for the dev console — verifies the command line keeps (or
## reclaims) keyboard focus after the actions that were observed to drop it.
## Run: godot --headless --script tests/console_focus_test.gd
##
## Exit code 0 = all passed, 1 = any failure.
var _passed: int = 0
var _failed: int = 0
func _init() -> void:
_run.call_deferred()
func _run() -> void:
print("=".repeat(60))
print("CONSOLE FOCUS TESTS")
print("=".repeat(60))
await test_focus_after_submit()
await test_focus_after_external_steal()
print("=".repeat(60))
print("Results: %d passed, %d failed" % [_passed, _failed])
print("=".repeat(60))
quit(1 if _failed > 0 else 0)
func _assert_true(condition: bool, desc: String) -> void:
if condition:
_passed += 1
print(" PASS: %s" % desc)
else:
_failed += 1
print(" FAIL: %s" % desc)
func _get_console() -> Node:
var c: Node = root.get_node_or_null("/root/Console")
if c == null:
_assert_true(false, "Console autoload should exist")
return c
# Drive the real path: open via _toggle (pauses the tree, slide tween grabs focus),
# type a command as real key events, submit with a real Enter, and confirm the guard
# keeps the command line focused across the paused submit.
func test_focus_after_submit() -> void:
print("\n-- test_focus_after_submit --")
var menu := _get_console()
if menu == null:
return
menu._toggle()
# Let the open slide tween finish and its grab_focus callback fire.
for _i in 20:
await process_frame
_assert_true(paused, "tree paused while console open")
_assert_true(menu._input_field.has_focus(), "input has focus after open")
menu._input_field.text = "clear"
menu._input_field.caret_column = 5
_press(KEY_ENTER)
# The submit and any focus theft settle over the next few idle frames.
for _i in 5:
await process_frame
_assert_true(menu._input_field.has_focus(), "input still has focus after submit")
menu._toggle()
for _i in 20:
await process_frame
# Push a key down+up through the viewport so LineEdit / _input handle it for real.
func _press(keycode: Key) -> void:
var down := InputEventKey.new()
down.keycode = keycode
down.physical_keycode = keycode
down.pressed = true
root.push_input(down)
var up := InputEventKey.new()
up.keycode = keycode
up.physical_keycode = keycode
up.pressed = false
root.push_input(up)
# Simulate anything yanking focus away mid-session (a stray click, a UI button); the
# guard in _process must pull it straight back while the console is open.
func test_focus_after_external_steal() -> void:
print("\n-- test_focus_after_external_steal --")
var menu := _get_console()
if menu == null:
return
menu._is_open = true
menu._panel.visible = true
menu._input_field.grab_focus()
await process_frame
menu._input_field.release_focus()
_assert_true(not menu._input_field.has_focus(), "focus released (precondition)")
await process_frame
_assert_true(menu._input_field.has_focus(), "guard reclaims focus next frame")
menu._is_open = false
menu._panel.visible = false

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