1
0
forked from 0ad/0ad
0ad/source/renderer/RenderingOptions.cpp

305 lines
8.3 KiB
C++
Raw Normal View History

/* Copyright (C) 2023 Wildfire Games.
* This file is part of 0 A.D.
*
* 0 A.D. is free software: you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation, either version 2 of the License, or
* (at your option) any later version.
*
* 0 A.D. is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with 0 A.D. If not, see <http://www.gnu.org/licenses/>.
*/
#include "precompiled.h"
#include "RenderingOptions.h"
#include "graphics/TextureManager.h"
#include "ps/CLogger.h"
#include "ps/ConfigDB.h"
#include "ps/CStr.h"
#include "ps/CStrInternStatic.h"
#include "ps/VideoMode.h"
#include "renderer/backend/IDevice.h"
#include "renderer/Renderer.h"
#include "renderer/PostprocManager.h"
#include "renderer/SceneRenderer.h"
#include "renderer/ShadowMap.h"
#include "renderer/WaterManager.h"
CRenderingOptions g_RenderingOptions;
class CRenderingOptions::ConfigHooks
{
public:
Implement quality levels for actors & corresponding setting. An actor file, as referenced by the VisualActor, can now define different actors for different "quality level" setting. In this initial version, the quality is handled directly by the object manager. Actor format impact: - '<qualitylevels>' may be used as the root node, containing actor nodes as children. - such actor nodes can refer to a file, or to an inline actor, or simply be inlined. - such actor nodes may have a 'quality' attribute, specifying the maximum quality level of this actor. By default, 255 (the maximum) is implied. - The actor format remains valid, but 'groups', 'variants', 'material', 'castshadow' and 'float' can be given a [minquality, maxquality[ range via XML attributes. Outside of this range, the XML node is ignored (making it possible to define, in a single actor file, several quality levels). Quality is a 0-255 value, with: - Range 0-99 intended for lower level-of-detail actors (billboards, etc.) - Range 100-200 the 'normal' range for models. 100 is "low", 150 "medium", and 200 "high". - Range 201-255 used for higher quality actors that might be used for e.g. cinematics. The range is wide to make it easier to add intermediate levels in the future and it seemed easier given that an integer value of some kind was required anyways. Engine impacts: - A new CActorDef class is introduced, wrapping an art/actors XML file and its different quality levels. ObjectBase remains the definition of a given 'actor', now at a given quality level. - CActorDef imposes a maximal # of quality level for a particular actor definition (5 currently). - CUnit is made to refer to an Actor Definition explicitly, not a particular ObjectBase. - As a minor optimisation, variation keys are calculated on pointer-to-sets-of-selections, instead of raw sets-of-selections, as this reduces copying. - some refactoring, including better const-correctness and hotloading support via std::shared_ptr. Differential Revision: https://code.wildfiregames.com/D3787 This was SVN commit r25210.
2021-04-08 09:22:24 +02:00
std::vector<CConfigDBHook>::iterator begin() { return hooks.begin(); }
std::vector<CConfigDBHook>::iterator end() { return hooks.end(); }
template<typename T>
void Setup(CStr8 name, T& variable)
{
hooks.emplace_back(g_ConfigDB.RegisterHookAndCall(name, [name, &variable]() { CFG_GET_VAL(name, variable); }));
}
void Setup(CStr8 name, std::function<void()> hook)
{
hooks.emplace_back(g_ConfigDB.RegisterHookAndCall(name, hook));
}
void clear() { hooks.clear(); }
private:
Implement quality levels for actors & corresponding setting. An actor file, as referenced by the VisualActor, can now define different actors for different "quality level" setting. In this initial version, the quality is handled directly by the object manager. Actor format impact: - '<qualitylevels>' may be used as the root node, containing actor nodes as children. - such actor nodes can refer to a file, or to an inline actor, or simply be inlined. - such actor nodes may have a 'quality' attribute, specifying the maximum quality level of this actor. By default, 255 (the maximum) is implied. - The actor format remains valid, but 'groups', 'variants', 'material', 'castshadow' and 'float' can be given a [minquality, maxquality[ range via XML attributes. Outside of this range, the XML node is ignored (making it possible to define, in a single actor file, several quality levels). Quality is a 0-255 value, with: - Range 0-99 intended for lower level-of-detail actors (billboards, etc.) - Range 100-200 the 'normal' range for models. 100 is "low", 150 "medium", and 200 "high". - Range 201-255 used for higher quality actors that might be used for e.g. cinematics. The range is wide to make it easier to add intermediate levels in the future and it seemed easier given that an integer value of some kind was required anyways. Engine impacts: - A new CActorDef class is introduced, wrapping an art/actors XML file and its different quality levels. ObjectBase remains the definition of a given 'actor', now at a given quality level. - CActorDef imposes a maximal # of quality level for a particular actor definition (5 currently). - CUnit is made to refer to an Actor Definition explicitly, not a particular ObjectBase. - As a minor optimisation, variation keys are calculated on pointer-to-sets-of-selections, instead of raw sets-of-selections, as this reduces copying. - some refactoring, including better const-correctness and hotloading support via std::shared_ptr. Differential Revision: https://code.wildfiregames.com/D3787 This was SVN commit r25210.
2021-04-08 09:22:24 +02:00
std::vector<CConfigDBHook> hooks;
};
RenderPath RenderPathEnum::FromString(const CStr8& name)
{
if (name == "default")
return DEFAULT;
if (name == "fixed")
return FIXED;
if (name == "shader")
return SHADER;
LOGWARNING("Unknown render path %s", name.c_str());
return DEFAULT;
}
CStr8 RenderPathEnum::ToString(RenderPath path)
{
switch (path)
{
case RenderPath::DEFAULT:
return "default";
case RenderPath::FIXED:
return "fixed";
case RenderPath::SHADER:
return "shader";
}
return "default"; // Silence warning about reaching end of non-void function.
}
RenderDebugMode RenderDebugModeEnum::FromString(const CStr8& name)
{
if (name == str_RENDER_DEBUG_MODE_NONE.c_str())
return RenderDebugMode::NONE;
if (name == str_RENDER_DEBUG_MODE_AO.c_str())
return RenderDebugMode::AO;
if (name == str_RENDER_DEBUG_MODE_ALPHA.c_str())
return RenderDebugMode::ALPHA;
if (name == str_RENDER_DEBUG_MODE_CUSTOM.c_str())
return RenderDebugMode::CUSTOM;
LOGWARNING("Unknown render debug mode %s", name.c_str());
return RenderDebugMode::NONE;
}
CStrIntern RenderDebugModeEnum::ToString(RenderDebugMode mode)
{
switch (mode)
{
case RenderDebugMode::AO:
return str_RENDER_DEBUG_MODE_AO;
case RenderDebugMode::ALPHA:
return str_RENDER_DEBUG_MODE_ALPHA;
case RenderDebugMode::CUSTOM:
return str_RENDER_DEBUG_MODE_CUSTOM;
default:
break;
}
return str_RENDER_DEBUG_MODE_NONE;
}
CRenderingOptions::CRenderingOptions() : m_ConfigHooks(new ConfigHooks())
{
m_RenderPath = RenderPath::DEFAULT;
m_Shadows = false;
m_WaterEffects = false;
m_WaterFancyEffects = false;
m_WaterRealDepth = false;
m_WaterRefraction = false;
m_WaterReflection = false;
m_ShadowAlphaFix = false;
m_ShadowPCF = false;
m_Particles = false;
m_Silhouettes = false;
m_Fog = false;
m_GPUSkinning = false;
m_SmoothLOS = false;
m_PostProc = false;
m_DisplayFrustum = false;
m_DisplayShadowsFrustum = false;
m_RenderActors = true;
}
CRenderingOptions::~CRenderingOptions()
{
ClearHooks();
}
void CRenderingOptions::ReadConfigAndSetupHooks()
{
m_ConfigHooks->Setup("renderpath", [this]() {
CStr renderPath;
CFG_GET_VAL("renderpath", renderPath);
SetRenderPath(RenderPathEnum::FromString(renderPath));
});
m_ConfigHooks->Setup("shadowquality", []() {
if (CRenderer::IsInitialised())
g_Renderer.GetSceneRenderer().GetShadowMap().RecreateTexture();
});
m_ConfigHooks->Setup("shadowscascadecount", []() {
if (CRenderer::IsInitialised())
{
g_Renderer.GetSceneRenderer().GetShadowMap().RecreateTexture();
g_Renderer.MakeShadersDirty();
}
});
m_ConfigHooks->Setup("shadowscovermap", []() {
if (CRenderer::IsInitialised())
{
g_Renderer.GetSceneRenderer().GetShadowMap().RecreateTexture();
g_Renderer.MakeShadersDirty();
}
});
m_ConfigHooks->Setup("shadowscutoffdistance", []() {
if (CRenderer::IsInitialised())
g_Renderer.GetSceneRenderer().GetShadowMap().RecreateTexture();
});
m_ConfigHooks->Setup("shadows", [this]() {
bool enabled;
CFG_GET_VAL("shadows", enabled);
SetShadows(enabled);
});
m_ConfigHooks->Setup("shadowpcf", [this]() {
bool enabled;
CFG_GET_VAL("shadowpcf", enabled);
SetShadowPCF(enabled);
});
m_ConfigHooks->Setup("postproc", m_PostProc);
m_ConfigHooks->Setup("antialiasing", []() {
if (CRenderer::IsInitialised())
g_Renderer.GetPostprocManager().UpdateAntiAliasingTechnique();
});
m_ConfigHooks->Setup("sharpness", []() {
if (CRenderer::IsInitialised())
g_Renderer.GetPostprocManager().UpdateSharpnessFactor();
});
m_ConfigHooks->Setup("sharpening", []() {
if (CRenderer::IsInitialised())
g_Renderer.GetPostprocManager().UpdateSharpeningTechnique();
});
m_ConfigHooks->Setup("smoothlos", m_SmoothLOS);
m_ConfigHooks->Setup("watereffects", [this]() {
bool enabled;
CFG_GET_VAL("watereffects", enabled);
SetWaterEffects(enabled);
if (CRenderer::IsInitialised())
g_Renderer.GetSceneRenderer().GetWaterManager().RecreateOrLoadTexturesIfNeeded();
});
m_ConfigHooks->Setup("waterfancyeffects", [this]() {
bool enabled;
CFG_GET_VAL("waterfancyeffects", enabled);
SetWaterFancyEffects(enabled);
if (CRenderer::IsInitialised())
g_Renderer.GetSceneRenderer().GetWaterManager().RecreateOrLoadTexturesIfNeeded();
});
m_ConfigHooks->Setup("waterrealdepth", m_WaterRealDepth);
m_ConfigHooks->Setup("waterrefraction", [this]() {
bool enabled;
CFG_GET_VAL("waterrefraction", enabled);
SetWaterRefraction(enabled);
if (CRenderer::IsInitialised())
g_Renderer.GetSceneRenderer().GetWaterManager().RecreateOrLoadTexturesIfNeeded();
});
m_ConfigHooks->Setup("waterreflection", [this]() {
bool enabled;
CFG_GET_VAL("waterreflection", enabled);
SetWaterReflection(enabled);
if (CRenderer::IsInitialised())
g_Renderer.GetSceneRenderer().GetWaterManager().RecreateOrLoadTexturesIfNeeded();
});
m_ConfigHooks->Setup("particles", m_Particles);
m_ConfigHooks->Setup("fog", [this]() {
bool enabled;
CFG_GET_VAL("fog", enabled);
SetFog(enabled);
});
m_ConfigHooks->Setup("silhouettes", m_Silhouettes);
m_ConfigHooks->Setup("gpuskinning", [this]() {
bool enabled;
CFG_GET_VAL("gpuskinning", enabled);
if (enabled)
{
if (g_VideoMode.GetBackendDevice()->GetBackend() == Renderer::Backend::Backend::GL_ARB)
LOGWARNING("GPUSkinning has been disabled, because it is not supported with ARB shaders.");
else if (g_VideoMode.GetBackendDevice()->GetBackend() == Renderer::Backend::Backend::VULKAN)
LOGWARNING("GPUSkinning has been disabled, because it is not supported for Vulkan backend yet.");
else
m_GPUSkinning = true;
}
});
m_ConfigHooks->Setup("renderactors", m_RenderActors);
m_ConfigHooks->Setup("textures.quality", []() {
if (CRenderer::IsInitialised())
g_Renderer.GetTextureManager().OnQualityChanged();
});
m_ConfigHooks->Setup("textures.maxanisotropy", []() {
if (CRenderer::IsInitialised())
g_Renderer.GetTextureManager().OnQualityChanged();
});
}
void CRenderingOptions::ClearHooks()
{
m_ConfigHooks->clear();
}
void CRenderingOptions::SetShadows(bool value)
{
m_Shadows = value;
if (CRenderer::IsInitialised())
g_Renderer.MakeShadersDirty();
}
void CRenderingOptions::SetShadowPCF(bool value)
{
m_ShadowPCF = value;
if (CRenderer::IsInitialised())
g_Renderer.MakeShadersDirty();
}
void CRenderingOptions::SetFog(bool value)
{
m_Fog = value;
if (CRenderer::IsInitialised())
g_Renderer.MakeShadersDirty();
}
void CRenderingOptions::SetRenderPath(RenderPath value)
{
m_RenderPath = value;
if (CRenderer::IsInitialised())
g_Renderer.SetRenderPath(m_RenderPath);
}
void CRenderingOptions::SetRenderDebugMode(RenderDebugMode value)
{
m_RenderDebugMode = value;
if (CRenderer::IsInitialised())
g_Renderer.MakeShadersDirty();
}