godot/scene/3d/light_3d.h
Hugo Locurcio 09bedcead4
Add a per-light volumetric fog energy property
Per-light energy gives more control to the user on the final result of
volumetric fog. Specific lights can be fully excluded from volumetric fog
by setting their volumetric fog energy to 0, which improves performance
slightly. This can also be used to prevent short-lived dynamic effects
from poorly interacting with volumetric fog, as it's updated over several
frames by default unless temporal reprojection is disabled.

Volumetric fog shadows now obey Light3D's Shadow Opacity property as well.

The shadow fog fade property was removed as it had little visible impact
on the final scene's rendering.
2022-08-30 20:03:38 +02:00

233 lines
7.0 KiB
C++

/*************************************************************************/
/* light_3d.h */
/*************************************************************************/
/* This file is part of: */
/* GODOT ENGINE */
/* https://godotengine.org */
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/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
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#ifndef LIGHT_3D_H
#define LIGHT_3D_H
#include "scene/3d/visual_instance_3d.h"
class Light3D : public VisualInstance3D {
GDCLASS(Light3D, VisualInstance3D);
public:
enum Param {
PARAM_ENERGY = RS::LIGHT_PARAM_ENERGY,
PARAM_INDIRECT_ENERGY = RS::LIGHT_PARAM_INDIRECT_ENERGY,
PARAM_VOLUMETRIC_FOG_ENERGY = RS::LIGHT_PARAM_VOLUMETRIC_FOG_ENERGY,
PARAM_SPECULAR = RS::LIGHT_PARAM_SPECULAR,
PARAM_RANGE = RS::LIGHT_PARAM_RANGE,
PARAM_SIZE = RS::LIGHT_PARAM_SIZE,
PARAM_ATTENUATION = RS::LIGHT_PARAM_ATTENUATION,
PARAM_SPOT_ANGLE = RS::LIGHT_PARAM_SPOT_ANGLE,
PARAM_SPOT_ATTENUATION = RS::LIGHT_PARAM_SPOT_ATTENUATION,
PARAM_SHADOW_MAX_DISTANCE = RS::LIGHT_PARAM_SHADOW_MAX_DISTANCE,
PARAM_SHADOW_SPLIT_1_OFFSET = RS::LIGHT_PARAM_SHADOW_SPLIT_1_OFFSET,
PARAM_SHADOW_SPLIT_2_OFFSET = RS::LIGHT_PARAM_SHADOW_SPLIT_2_OFFSET,
PARAM_SHADOW_SPLIT_3_OFFSET = RS::LIGHT_PARAM_SHADOW_SPLIT_3_OFFSET,
PARAM_SHADOW_FADE_START = RS::LIGHT_PARAM_SHADOW_FADE_START,
PARAM_SHADOW_NORMAL_BIAS = RS::LIGHT_PARAM_SHADOW_NORMAL_BIAS,
PARAM_SHADOW_BIAS = RS::LIGHT_PARAM_SHADOW_BIAS,
PARAM_SHADOW_PANCAKE_SIZE = RS::LIGHT_PARAM_SHADOW_PANCAKE_SIZE,
PARAM_SHADOW_OPACITY = RS::LIGHT_PARAM_SHADOW_OPACITY,
PARAM_SHADOW_BLUR = RS::LIGHT_PARAM_SHADOW_BLUR,
PARAM_TRANSMITTANCE_BIAS = RS::LIGHT_PARAM_TRANSMITTANCE_BIAS,
PARAM_MAX = RS::LIGHT_PARAM_MAX
};
enum BakeMode {
BAKE_DISABLED,
BAKE_STATIC,
BAKE_DYNAMIC,
};
private:
Color color;
real_t param[PARAM_MAX] = {};
bool shadow = false;
bool negative = false;
bool reverse_cull = false;
uint32_t cull_mask = 0;
bool distance_fade_enabled = false;
real_t distance_fade_begin = 40.0;
real_t distance_fade_shadow = 50.0;
real_t distance_fade_length = 10.0;
RS::LightType type = RenderingServer::LIGHT_DIRECTIONAL;
bool editor_only = false;
void _update_visibility();
BakeMode bake_mode = BAKE_DYNAMIC;
Ref<Texture2D> projector;
// bind helpers
virtual void owner_changed_notify() override;
protected:
RID light;
static void _bind_methods();
void _notification(int p_what);
void _validate_property(PropertyInfo &p_property) const;
Light3D(RenderingServer::LightType p_type);
public:
RS::LightType get_light_type() const { return type; }
void set_editor_only(bool p_editor_only);
bool is_editor_only() const;
void set_param(Param p_param, real_t p_value);
real_t get_param(Param p_param) const;
void set_shadow(bool p_enable);
bool has_shadow() const;
void set_negative(bool p_enable);
bool is_negative() const;
void set_enable_distance_fade(bool p_enable);
bool is_distance_fade_enabled() const;
void set_distance_fade_begin(real_t p_distance);
real_t get_distance_fade_begin() const;
void set_distance_fade_shadow(real_t p_distance);
real_t get_distance_fade_shadow() const;
void set_distance_fade_length(real_t p_length);
real_t get_distance_fade_length() const;
void set_cull_mask(uint32_t p_cull_mask);
uint32_t get_cull_mask() const;
void set_color(const Color &p_color);
Color get_color() const;
void set_shadow_reverse_cull_face(bool p_enable);
bool get_shadow_reverse_cull_face() const;
void set_bake_mode(BakeMode p_mode);
BakeMode get_bake_mode() const;
void set_projector(const Ref<Texture2D> &p_texture);
Ref<Texture2D> get_projector() const;
virtual AABB get_aabb() const override;
Light3D();
~Light3D();
};
VARIANT_ENUM_CAST(Light3D::Param);
VARIANT_ENUM_CAST(Light3D::BakeMode);
class DirectionalLight3D : public Light3D {
GDCLASS(DirectionalLight3D, Light3D);
public:
enum ShadowMode {
SHADOW_ORTHOGONAL,
SHADOW_PARALLEL_2_SPLITS,
SHADOW_PARALLEL_4_SPLITS,
};
enum SkyMode {
SKY_MODE_LIGHT_AND_SKY,
SKY_MODE_LIGHT_ONLY,
SKY_MODE_SKY_ONLY,
};
private:
bool blend_splits;
ShadowMode shadow_mode;
SkyMode sky_mode = SKY_MODE_LIGHT_AND_SKY;
protected:
static void _bind_methods();
void _validate_property(PropertyInfo &p_property) const;
public:
void set_shadow_mode(ShadowMode p_mode);
ShadowMode get_shadow_mode() const;
void set_blend_splits(bool p_enable);
bool is_blend_splits_enabled() const;
void set_sky_mode(SkyMode p_mode);
SkyMode get_sky_mode() const;
DirectionalLight3D();
};
VARIANT_ENUM_CAST(DirectionalLight3D::ShadowMode)
VARIANT_ENUM_CAST(DirectionalLight3D::SkyMode)
class OmniLight3D : public Light3D {
GDCLASS(OmniLight3D, Light3D);
public:
// omni light
enum ShadowMode {
SHADOW_DUAL_PARABOLOID,
SHADOW_CUBE,
};
private:
ShadowMode shadow_mode;
protected:
static void _bind_methods();
public:
void set_shadow_mode(ShadowMode p_mode);
ShadowMode get_shadow_mode() const;
TypedArray<String> get_configuration_warnings() const override;
OmniLight3D();
};
VARIANT_ENUM_CAST(OmniLight3D::ShadowMode)
class SpotLight3D : public Light3D {
GDCLASS(SpotLight3D, Light3D);
protected:
static void _bind_methods();
public:
TypedArray<String> get_configuration_warnings() const override;
SpotLight3D() :
Light3D(RenderingServer::LIGHT_SPOT) {}
};
#endif // LIGHT_3D_H