314 lines
7.8 KiB
GDScript
314 lines
7.8 KiB
GDScript
class_name CatchController
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extends Node
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const CatchDifficultyProfileType = preload(
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"res://fishing/catch_difficulty_profile.gd"
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)
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signal encounter_updated(
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progress: float,
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chase_progress: float,
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barrier_positions: PackedFloat32Array,
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barrier_health: PackedInt32Array,
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barrier_max_health: PackedInt32Array,
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active_barrier_index: int,
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visible: bool,
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)
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signal caught
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signal escaped
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enum CatchState {
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IDLE,
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REELING,
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BLOCKED_BY_BARRIER,
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CAUGHT,
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ESCAPED,
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}
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class Barrier:
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extends RefCounted
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var position: float
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var health: int
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var maximum_health: int
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var defeated: bool = false
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func _init(
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barrier_position: float,
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barrier_health: int,
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) -> void:
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position = barrier_position
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health = barrier_health
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maximum_health = barrier_health
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@export_category("Accessibility")
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@export var auto_click_enabled: bool = false
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@export_range(0.05, 2.0, 0.01) var auto_click_interval: float = 0.20
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@export_category("Testing")
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@export var use_deterministic_test_seed: bool = false
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@export var deterministic_test_seed: int = 12345
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var state: CatchState = CatchState.IDLE
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var progress: float = 0.0
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var chase_progress: float = 0.0
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var encounter_seed: int = 0
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var _barriers: Array[Barrier] = []
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var _active_barrier_index: int = -1
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var _reel_input_held: bool = false
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var _reel_speed: float = 0.0
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var _click_power: int = 1
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var _chase_start_delay: float = 0.0
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var _chase_delay_remaining: float = 0.0
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var _chase_speed: float = 0.0
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var _failure_epsilon: float = 0.0001
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var _auto_click_accumulator: float = 0.0
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var _rng: RandomNumberGenerator = RandomNumberGenerator.new()
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func _process(delta: float) -> void:
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match state:
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CatchState.REELING:
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_update_free_reeling(delta)
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CatchState.BLOCKED_BY_BARRIER:
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_update_auto_click(delta)
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_:
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return
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if state in [CatchState.CAUGHT, CatchState.ESCAPED, CatchState.IDLE]:
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return
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if progress >= 1.0:
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_resolve_catch()
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return
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_update_chase(delta)
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if _is_chase_failure():
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_resolve_escape()
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return
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_emit_encounter_update()
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func start_encounter(
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profile: CatchDifficultyProfileType,
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reel_speed: float,
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click_power: int,
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) -> void:
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reset()
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if profile == null:
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_resolve_escape()
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return
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_reel_speed = maxf(reel_speed, 0.0)
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_click_power = maxi(click_power, 1)
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_chase_start_delay = maxf(profile.chase_start_delay, 0.0)
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_chase_delay_remaining = _chase_start_delay
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chase_progress = -maxf(profile.chase_start_offset, 0.01)
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_chase_speed = maxf(profile.chase_speed, 0.0)
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_seed_encounter_rng()
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_generate_barriers(profile)
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progress = 0.0
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state = CatchState.REELING
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_emit_encounter_update()
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func set_reel_input(held: bool) -> void:
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_reel_input_held = held
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if not held:
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_auto_click_accumulator = 0.0
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func handle_primary_pressed() -> void:
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if state not in [CatchState.REELING, CatchState.BLOCKED_BY_BARRIER]:
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return
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_reel_input_held = true
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if state == CatchState.BLOCKED_BY_BARRIER and not auto_click_enabled:
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_damage_active_barrier()
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func reset() -> void:
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state = CatchState.IDLE
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progress = 0.0
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chase_progress = 0.0
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encounter_seed = 0
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_barriers.clear()
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_active_barrier_index = -1
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_reel_input_held = false
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_reel_speed = 0.0
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_click_power = 1
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_chase_start_delay = 0.0
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_chase_delay_remaining = 0.0
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_chase_speed = 0.0
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_auto_click_accumulator = 0.0
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emit_signal(
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"encounter_updated",
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0.0,
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0.0,
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PackedFloat32Array(),
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PackedInt32Array(),
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PackedInt32Array(),
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-1,
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false
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)
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func get_barrier_count() -> int:
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return _barriers.size()
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func _update_free_reeling(delta: float) -> void:
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if not _reel_input_held:
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return
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var intended_progress: float = minf(
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progress + _reel_speed * delta,
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1.0
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)
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var next_barrier: Barrier = _get_next_undefeated_barrier()
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if next_barrier != null and intended_progress >= next_barrier.position:
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progress = next_barrier.position
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_active_barrier_index = _barriers.find(next_barrier)
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state = CatchState.BLOCKED_BY_BARRIER
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_auto_click_accumulator = 0.0
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else:
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progress = intended_progress
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func _update_chase(delta: float) -> void:
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var active_delta: float = delta
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if _chase_delay_remaining > 0.0:
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var protected_time: float = minf(_chase_delay_remaining, active_delta)
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_chase_delay_remaining -= protected_time
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active_delta -= protected_time
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if active_delta <= 0.0:
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return
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chase_progress = minf(
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chase_progress + _chase_speed * active_delta,
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1.0
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)
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func _is_chase_failure() -> bool:
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if _chase_delay_remaining > 0.0:
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return false
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return chase_progress + _failure_epsilon >= progress
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func _update_auto_click(delta: float) -> void:
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if not auto_click_enabled or not _reel_input_held:
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return
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_auto_click_accumulator += delta
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var interval: float = maxf(auto_click_interval, 0.05)
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while (
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_auto_click_accumulator >= interval
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and state == CatchState.BLOCKED_BY_BARRIER
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and _reel_input_held
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):
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_auto_click_accumulator -= interval
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_damage_active_barrier()
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func _damage_active_barrier() -> void:
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if (
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state != CatchState.BLOCKED_BY_BARRIER
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or _active_barrier_index < 0
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or _active_barrier_index >= _barriers.size()
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):
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return
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var barrier: Barrier = _barriers[_active_barrier_index]
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if barrier.defeated:
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return
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barrier.health = maxi(barrier.health - _click_power, 0)
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if barrier.health == 0:
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barrier.defeated = true
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_active_barrier_index = -1
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_auto_click_accumulator = 0.0
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state = CatchState.REELING
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_emit_encounter_update()
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func _get_next_undefeated_barrier() -> Barrier:
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for barrier: Barrier in _barriers:
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if not barrier.defeated and barrier.position >= progress:
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return barrier
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return null
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func _seed_encounter_rng() -> void:
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if use_deterministic_test_seed:
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encounter_seed = deterministic_test_seed
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_rng.seed = deterministic_test_seed
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else:
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_rng.randomize()
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encounter_seed = _rng.seed
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func _generate_barriers(profile: CatchDifficultyProfileType) -> void:
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var count_range: Vector2i = profile.get_barrier_count_range()
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var health_range: Vector2i = profile.get_barrier_health_range()
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var interval: Vector2 = profile.get_generation_interval()
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var spacing: float = maxf(profile.minimum_barrier_spacing, 0.01)
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var available_distance: float = maxf(interval.y - interval.x, 0.0)
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var maximum_fitting_count: int = 0
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if available_distance > 0.0:
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maximum_fitting_count = int(floor(available_distance / spacing)) + 1
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var requested_count: int = _rng.randi_range(count_range.x, count_range.y)
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var barrier_count: int = mini(requested_count, maximum_fitting_count)
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if barrier_count <= 0:
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return
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var random_offsets := PackedFloat32Array()
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for _barrier_index: int in range(barrier_count):
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random_offsets.append(_rng.randf())
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random_offsets.sort()
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var required_spacing: float = spacing * float(barrier_count - 1)
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var random_slack: float = maxf(available_distance - required_spacing, 0.0)
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for barrier_index: int in range(barrier_count):
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var position: float = (
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interval.x
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+ spacing * float(barrier_index)
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+ random_offsets[barrier_index] * random_slack
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)
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var health: int = _rng.randi_range(health_range.x, health_range.y)
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_barriers.append(Barrier.new(position, health))
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func _resolve_catch() -> void:
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if state in [CatchState.CAUGHT, CatchState.ESCAPED, CatchState.IDLE]:
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return
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state = CatchState.CAUGHT
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_reel_input_held = false
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_auto_click_accumulator = 0.0
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_emit_encounter_update()
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caught.emit()
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func _resolve_escape() -> void:
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if state in [CatchState.CAUGHT, CatchState.ESCAPED]:
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return
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state = CatchState.ESCAPED
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_reel_input_held = false
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_auto_click_accumulator = 0.0
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_emit_encounter_update()
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escaped.emit()
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func _emit_encounter_update() -> void:
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var positions := PackedFloat32Array()
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var health := PackedInt32Array()
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var maximum_health := PackedInt32Array()
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for barrier: Barrier in _barriers:
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positions.append(barrier.position)
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health.append(barrier.health)
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maximum_health.append(barrier.maximum_health)
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encounter_updated.emit(
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progress,
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chase_progress,
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positions,
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health,
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maximum_health,
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_active_barrier_index,
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state != CatchState.IDLE
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)
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