Graphics Buffers can be used as Shader Storage Buffers.

This commit is contained in:
Alex Szpakowski
2021-01-10 17:53:12 -04:00
parent 6fede802b3
commit 50ff86bd92
15 changed files with 451 additions and 68 deletions
+59 -8
View File
@@ -20,6 +20,7 @@
#include "Buffer.h"
#include "Graphics.h"
#include "common/memory.h"
namespace love
{
@@ -48,15 +49,20 @@ Buffer::Buffer(Graphics *gfx, const Settings &settings, const std::vector<DataDe
bool indexbuffer = settings.typeFlags & TYPEFLAG_INDEX;
bool vertexbuffer = settings.typeFlags & TYPEFLAG_VERTEX;
bool texelbuffer = settings.typeFlags & TYPEFLAG_TEXEL;
bool storagebuffer = settings.typeFlags & TYPEFLAG_SHADER_STORAGE;
if (!indexbuffer && !vertexbuffer && !texelbuffer)
throw love::Exception("Buffer must be created with at least one buffer type (index, vertex, or texel).");
if (!indexbuffer && !vertexbuffer && !texelbuffer && !storagebuffer)
throw love::Exception("Buffer must be created with at least one buffer type (index, vertex, texel, or shaderstorage).");
if (texelbuffer && !caps.features[Graphics::FEATURE_TEXEL_BUFFER])
throw love::Exception("Texel buffers are not supported on this system.");
if (storagebuffer && !caps.features[Graphics::FEATURE_GLSL4])
throw love::Exception("Shader Storage buffers are not supported on this system (GLSL 4 support is necessary.)");
size_t offset = 0;
size_t stride = 0;
size_t structurealignment = 1;
for (const DataDeclaration &decl : bufferformat)
{
@@ -116,16 +122,60 @@ Buffer::Buffer(Graphics *gfx, const Settings &settings, const std::vector<DataDe
throw love::Exception("Signed normalized formats are not supported in texel buffers.");
}
// TODO: alignment
member.offset = offset;
member.size = member.info.size;
size_t memberoffset = offset;
size_t membersize = member.info.size;
offset += member.size;
// Storage buffers are always treated as being an array of a structure.
// The structure's contents are the buffer format declaration.
if (storagebuffer)
{
// TODO: We can support these.
if (decl.arrayLength > 0)
throw love::Exception("Arrays are not currently supported in shader storage buffers.");
if (info.baseType == DATA_BASETYPE_BOOL)
throw love::Exception("Bool types are not supported in shader storage buffers.");
if (info.baseType == DATA_BASETYPE_UNORM || info.baseType == DATA_BASETYPE_SNORM)
throw love::Exception("Normalized formats are not supported in shader storage buffers.");
size_t alignment = 1;
// GLSL's std430 packing rules. We also assume all matrices are
// column-major.
if (info.isMatrix)
alignment = info.matrixRows * info.componentSize;
else
alignment = info.components * info.componentSize;
structurealignment = std::max(structurealignment, alignment);
memberoffset = alignUp(memberoffset, alignment);
if (memberoffset != offset && (indexbuffer || vertexbuffer || texelbuffer))
throw love::Exception("Cannot create Buffer:\nInternal alignment of member '%s' is preventing Buffer from being created as both a shader storage buffer and other buffer types\nMember byte offset needed for shader storage buffer: %d\nMember byte offset needed for other buffer types: %d",
member.decl.name.c_str(), memberoffset, offset);
}
member.offset = memberoffset;
member.size = membersize;
offset = member.offset + member.size;
dataMembers.push_back(member);
}
stride = offset;
stride = alignUp(offset, structurealignment);
if (storagebuffer && (indexbuffer || vertexbuffer || texelbuffer))
{
if (stride != offset)
throw love::Exception("Cannot create Buffer:\nBuffer used as a shader storage buffer would have a different number of bytes per array element (%d) than when used as other buffer types (%d)",
stride, offset);
}
if (storagebuffer && stride > SHADER_STORAGE_BUFFER_MAX_STRIDE)
throw love::Exception("Shader storage buffers cannot have more than %d bytes within each array element.", SHADER_STORAGE_BUFFER_MAX_STRIDE);
if (size != 0)
{
@@ -144,7 +194,8 @@ Buffer::Buffer(Graphics *gfx, const Settings &settings, const std::vector<DataDe
this->size = size;
if (texelbuffer && arraylength * dataMembers.size() > caps.limits[Graphics::LIMIT_TEXEL_BUFFER_SIZE])
throw love::Exception("Cannot create texel buffer: total number of values in the buffer (%d * %d) is too large for this system (maximum %d).", (int) dataMembers.size(), (int) arraylength, caps.limits[Graphics::LIMIT_TEXEL_BUFFER_SIZE]);
throw love::Exception("Cannot create texel buffer: total number of values in the buffer (%d * %d) is too large for this system (maximum %d).",
(int) dataMembers.size(), (int) arraylength, caps.limits[Graphics::LIMIT_TEXEL_BUFFER_SIZE]);
}
Buffer::~Buffer()
+3
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@@ -48,6 +48,8 @@ public:
static love::Type type;
static const size_t SHADER_STORAGE_BUFFER_MAX_STRIDE = 2048;
enum MapType
{
MAP_WRITE_INVALIDATE,
@@ -59,6 +61,7 @@ public:
TYPEFLAG_VERTEX = 1 << BUFFERTYPE_VERTEX,
TYPEFLAG_INDEX = 1 << BUFFERTYPE_INDEX,
TYPEFLAG_TEXEL = 1 << BUFFERTYPE_TEXEL,
TYPEFLAG_SHADER_STORAGE = 1 << BUFFERTYPE_SHADER_STORAGE,
};
struct DataDeclaration
+10 -9
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@@ -1944,15 +1944,16 @@ StringMap<Graphics::Feature, Graphics::FEATURE_MAX_ENUM> Graphics::features(Grap
StringMap<Graphics::SystemLimit, Graphics::LIMIT_MAX_ENUM>::Entry Graphics::systemLimitEntries[] =
{
{ "pointsize", LIMIT_POINT_SIZE },
{ "texturesize", LIMIT_TEXTURE_SIZE },
{ "texturelayers", LIMIT_TEXTURE_LAYERS },
{ "volumetexturesize", LIMIT_VOLUME_TEXTURE_SIZE },
{ "cubetexturesize", LIMIT_CUBE_TEXTURE_SIZE },
{ "texelbuffersize", LIMIT_TEXEL_BUFFER_SIZE },
{ "rendertargets", LIMIT_RENDER_TARGETS },
{ "texturemsaa", LIMIT_TEXTURE_MSAA },
{ "anisotropy", LIMIT_ANISOTROPY },
{ "pointsize", LIMIT_POINT_SIZE },
{ "texturesize", LIMIT_TEXTURE_SIZE },
{ "texturelayers", LIMIT_TEXTURE_LAYERS },
{ "volumetexturesize", LIMIT_VOLUME_TEXTURE_SIZE },
{ "cubetexturesize", LIMIT_CUBE_TEXTURE_SIZE },
{ "texelbuffersize", LIMIT_TEXEL_BUFFER_SIZE },
{ "shaderstoragebuffersize", LIMIT_SHADER_STORAGE_BUFFER_SIZE },
{ "rendertargets", LIMIT_RENDER_TARGETS },
{ "texturemsaa", LIMIT_TEXTURE_MSAA },
{ "anisotropy", LIMIT_ANISOTROPY },
};
StringMap<Graphics::SystemLimit, Graphics::LIMIT_MAX_ENUM> Graphics::systemLimits(Graphics::systemLimitEntries, sizeof(Graphics::systemLimitEntries));
+1
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@@ -162,6 +162,7 @@ public:
LIMIT_CUBE_TEXTURE_SIZE,
LIMIT_TEXTURE_LAYERS,
LIMIT_TEXEL_BUFFER_SIZE,
LIMIT_SHADER_STORAGE_BUFFER_SIZE,
LIMIT_RENDER_TARGETS,
LIMIT_TEXTURE_MSAA,
LIMIT_ANISOTROPY,
+64 -2
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@@ -26,6 +26,9 @@
// glslang
#include "libraries/glslang/glslang/Public/ShaderLang.h"
// Needed for reflection information.
#include "libraries/glslang/glslang/Include/Types.h"
// C++
#include <string>
#include <regex>
@@ -546,7 +549,7 @@ Shader::Shader(ShaderStage *vertex, ShaderStage *pixel)
: stages()
{
std::string err;
if (!validate(vertex, pixel, err))
if (!validateInternal(vertex, pixel, err, validationReflection))
throw love::Exception("%s", err.c_str());
stages[ShaderStage::STAGE_VERTEX] = vertex;
@@ -629,7 +632,13 @@ void Shader::checkMainTexture(Texture *tex) const
checkMainTextureType(tex->getTextureType(), tex->getSamplerState().depthSampleMode.hasValue);
}
bool Shader::validate(ShaderStage *vertex, ShaderStage *pixel, std::string &err)
bool Shader::validate(ShaderStage* vertex, ShaderStage* pixel, std::string& err)
{
ValidationReflection reflection;
return validateInternal(vertex, pixel, err, reflection);
}
bool Shader::validateInternal(ShaderStage *vertex, ShaderStage *pixel, std::string &err, ValidationReflection &reflection)
{
glslang::TProgram program;
@@ -645,6 +654,59 @@ bool Shader::validate(ShaderStage *vertex, ShaderStage *pixel, std::string &err)
return false;
}
if (!program.buildReflection(EShReflectionSeparateBuffers))
{
err = "Cannot get reflection information for shader.";
return false;
}
for (int i = 0; i < program.getNumBufferBlocks(); i++)
{
const glslang::TObjectReflection &info = program.getBufferBlock(i);
const glslang::TType *type = info.getType();
if (type != nullptr)
{
const glslang::TQualifier &qualifiers = type->getQualifier();
if ((!qualifiers.isReadOnly() || qualifiers.isWriteOnly()) && (info.stages & (EShLangVertexMask | EShLangFragmentMask)))
{
err = "Shader validation error:\nStorage Buffer block '" + info.name + "' must be marked as readonly in vertex and pixel shaders.";
return false;
}
if (qualifiers.layoutPacking != glslang::ElpStd430)
{
err = "Shader validation error:\nStorage Buffer block '" + info.name + "' must use the std430 packing layout.";
return false;
}
const glslang::TTypeList *structure = type->getStruct();
if (structure == nullptr || structure->size() != 1)
{
err = "Shader validation error:\nStorage Buffer block '" + info.name + "' must contain a single unsized array of structs.";
return false;
}
const glslang::TType* structtype = (*structure)[0].type;
if (structtype == nullptr || structtype->getBasicType() != glslang::EbtStruct || !structtype->isUnsizedArray())
{
err = "Shader validation error:\nStorage Buffer block '" + info.name + "' must contain a single unsized array of structs.";
return false;
}
BufferReflection bufferReflection = {};
bufferReflection.stride = (size_t) info.size;
bufferReflection.memberCount = (size_t) info.numMembers;
reflection.storageBuffers[info.name] = bufferReflection;
}
else
{
err = "Shader validation error:\nCannot retrieve type information for Storage Buffer Block '" + info.name + "'.";
return false;
}
}
return true;
}
+18
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@@ -78,6 +78,7 @@ public:
UNIFORM_BOOL,
UNIFORM_SAMPLER,
UNIFORM_TEXELBUFFER,
UNIFORM_STORAGEBUFFER,
UNIFORM_UNKNOWN,
UNIFORM_MAX_ENUM
};
@@ -126,6 +127,8 @@ public:
TextureType textureType;
DataBaseType texelBufferType;
bool isDepthSampler;
size_t bufferStride;
size_t bufferMemberCount;
std::string name;
union
@@ -227,8 +230,23 @@ public:
protected:
struct BufferReflection
{
size_t stride;
size_t memberCount;
};
struct ValidationReflection
{
std::map<std::string, BufferReflection> storageBuffers;
};
static bool validateInternal(ShaderStage* vertex, ShaderStage* pixel, std::string& err, ValidationReflection &reflection);
StrongRef<ShaderStage> stages[ShaderStage::STAGE_MAX_ENUM];
ValidationReflection validationReflection;
}; // Shader
} // graphics
+2
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@@ -78,6 +78,8 @@ Buffer::Buffer(love::graphics::Graphics *gfx, const Settings &settings, const st
mapType = BUFFERTYPE_VERTEX;
else if (typeFlags & TYPEFLAG_INDEX)
mapType = BUFFERTYPE_INDEX;
else if (typeFlags & TYPEFLAG_SHADER_STORAGE)
mapType = BUFFERTYPE_SHADER_STORAGE;
target = OpenGL::getGLBufferType(mapType);
+19 -3
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@@ -345,7 +345,19 @@ bool Graphics::setMode(int width, int height, int pixelwidth, int pixelheight, b
const float texel[] = {0.0f, 0.0f, 0.0f, 1.0f};
love::graphics::Buffer *buffer = newBuffer(settings, format, texel, sizeof(texel), 1);
auto buffer = newBuffer(settings, format, texel, sizeof(texel), 1);
defaultBuffers[BUFFERTYPE_TEXEL].set(buffer, Acquire::NORETAIN);
}
if (capabilities.features[FEATURE_GLSL4] && defaultBuffers[BUFFERTYPE_SHADER_STORAGE].get() == nullptr)
{
Buffer::Settings settings(Buffer::TYPEFLAG_SHADER_STORAGE, BUFFERUSAGE_STATIC);
std::vector<Buffer::DataDeclaration> format = {{"", DATAFORMAT_FLOAT, 0}};
std::vector<float> data;
data.resize(Buffer::SHADER_STORAGE_BUFFER_MAX_STRIDE / 4);
auto buffer = newBuffer(settings, format, data.data(), data.size() * sizeof(float), data.size());
defaultBuffers[BUFFERTYPE_TEXEL].set(buffer, Acquire::NORETAIN);
}
@@ -359,6 +371,9 @@ bool Graphics::setMode(int width, int height, int pixelwidth, int pixelheight, b
if (defaultBuffers[BUFFERTYPE_TEXEL].get())
gl.setDefaultTexelBuffer((GLuint) defaultBuffers[BUFFERTYPE_TEXEL]->getTexelBufferHandle());
if (defaultBuffers[BUFFERTYPE_SHADER_STORAGE].get())
gl.setDefaultStorageBuffer((GLuint) defaultBuffers[BUFFERTYPE_SHADER_STORAGE]->getHandle());
// Reload all volatile objects.
if (!Volatile::loadAll())
::printf("Could not reload all volatile objects.\n");
@@ -1515,7 +1530,7 @@ void Graphics::initCapabilities()
capabilities.features[FEATURE_GLSL3] = GLAD_ES_VERSION_3_0 || gl.isCoreProfile();
capabilities.features[FEATURE_GLSL4] = GLAD_ES_VERSION_3_1 || (gl.isCoreProfile() && GLAD_VERSION_4_3);
capabilities.features[FEATURE_INSTANCING] = gl.isInstancingSupported();
capabilities.features[FEATURE_TEXEL_BUFFER] = gl.areTexelBuffersSupported();
capabilities.features[FEATURE_TEXEL_BUFFER] = gl.isBufferTypeSupported(BUFFERTYPE_TEXEL);
static_assert(FEATURE_MAX_ENUM == 11, "Graphics::initCapabilities must be updated when adding a new graphics feature!");
capabilities.limits[LIMIT_POINT_SIZE] = gl.getMaxPointSize();
@@ -1524,10 +1539,11 @@ void Graphics::initCapabilities()
capabilities.limits[LIMIT_VOLUME_TEXTURE_SIZE] = gl.getMax3DTextureSize();
capabilities.limits[LIMIT_CUBE_TEXTURE_SIZE] = gl.getMaxCubeTextureSize();
capabilities.limits[LIMIT_TEXEL_BUFFER_SIZE] = gl.getMaxTexelBufferSize();
capabilities.limits[LIMIT_SHADER_STORAGE_BUFFER_SIZE] = gl.getMaxShaderStorageBufferSize();
capabilities.limits[LIMIT_RENDER_TARGETS] = gl.getMaxRenderTargets();
capabilities.limits[LIMIT_TEXTURE_MSAA] = gl.getMaxSamples();
capabilities.limits[LIMIT_ANISOTROPY] = gl.getMaxAnisotropy();
static_assert(LIMIT_MAX_ENUM == 9, "Graphics::initCapabilities must be updated when adding a new system limit!");
static_assert(LIMIT_MAX_ENUM == 10, "Graphics::initCapabilities must be updated when adding a new system limit!");
for (int i = 0; i < TEXTURE_MAX_ENUM; i++)
capabilities.textureTypes[i] = gl.isTextureTypeSupported((TextureType) i);
+70 -13
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@@ -101,9 +101,12 @@ OpenGL::OpenGL()
, max3DTextureSize(0)
, maxCubeTextureSize(0)
, maxTextureArrayLayers(0)
, maxTexelBufferSize(0)
, maxShaderStorageBufferSize(0)
, maxRenderTargets(1)
, maxSamples(1)
, maxTextureUnits(1)
, maxShaderStorageBufferBindings(0)
, maxPointSize(1)
, coreProfile(false)
, vendor(VENDOR_UNKNOWN)
@@ -235,9 +238,13 @@ void OpenGL::setupContext()
for (int i = 0; i < (int) BUFFERTYPE_MAX_ENUM; i++)
{
state.boundBuffers[i] = 0;
glBindBuffer(getGLBufferType((BufferType) i), 0);
if (isBufferTypeSupported((BufferType) i))
glBindBuffer(getGLBufferType((BufferType) i), 0);
}
if (isBufferTypeSupported(BUFFERTYPE_SHADER_STORAGE))
state.boundIndexedBuffers[BUFFERTYPE_SHADER_STORAGE].resize(maxShaderStorageBufferBindings, 0);
// Initialize multiple texture unit support for shaders.
for (int i = 0; i < TEXTURE_MAX_ENUM + 1; i++)
{
@@ -290,10 +297,6 @@ void OpenGL::deInitContext()
}
}
if (state.defaultTexelBuffer != 0)
gl.deleteTexture(state.defaultTexelBuffer);
state.defaultTexelBuffer = 0;
contextInitialized = false;
}
@@ -481,11 +484,22 @@ void OpenGL::initMaxValues()
else
maxTextureArrayLayers = 0;
if (areTexelBuffersSupported())
if (isBufferTypeSupported(BUFFERTYPE_TEXEL))
glGetIntegerv(GL_MAX_TEXTURE_BUFFER_SIZE, &maxTexelBufferSize);
else
maxTexelBufferSize = 0;
if (isBufferTypeSupported(BUFFERTYPE_SHADER_STORAGE))
{
glGetIntegerv(GL_MAX_SHADER_STORAGE_BLOCK_SIZE, &maxShaderStorageBufferSize);
glGetIntegerv(GL_MAX_SHADER_STORAGE_BUFFER_BINDINGS, &maxShaderStorageBufferBindings);
}
else
{
maxShaderStorageBufferSize = 0;
maxShaderStorageBufferBindings = 0;
}
int maxattachments = 1;
int maxdrawbuffers = 1;
@@ -606,6 +620,7 @@ GLenum OpenGL::getGLBufferType(BufferType type)
case BUFFERTYPE_VERTEX: return GL_ARRAY_BUFFER;
case BUFFERTYPE_INDEX: return GL_ELEMENT_ARRAY_BUFFER;
case BUFFERTYPE_TEXEL: return GL_TEXTURE_BUFFER;
case BUFFERTYPE_SHADER_STORAGE: return GL_SHADER_STORAGE_BUFFER;
case BUFFERTYPE_MAX_ENUM: return GL_ZERO;
}
@@ -803,6 +818,12 @@ void OpenGL::deleteBuffer(GLuint buffer)
{
if (state.boundBuffers[i] == buffer)
state.boundBuffers[i] = 0;
for (GLuint &bufferid : state.boundIndexedBuffers[i])
{
if (bufferid == buffer)
bufferid = 0;
}
}
}
@@ -1142,6 +1163,19 @@ void OpenGL::bindTextureToUnit(Texture *texture, int textureunit, bool restorepr
bindTextureToUnit(textype, handle, textureunit, restoreprev, bindforedit);
}
void OpenGL::bindIndexedBuffer(GLuint buffer, BufferType type, int index)
{
auto &bindings = state.boundIndexedBuffers[type];
if (bindings.size() > (size_t) index && buffer != bindings[index])
{
bindings[index] = buffer;
glBindBufferBase(getGLBufferType(type), index, buffer);
// glBindBufferBase affects glBindBuffer as well... for some reason.
state.boundBuffers[type] = buffer;
}
}
void OpenGL::deleteTexture(GLuint texture)
{
// glDeleteTextures binds texture 0 to all texture units the deleted texture
@@ -1392,9 +1426,28 @@ bool OpenGL::isTextureTypeSupported(TextureType type) const
return GLAD_VERSION_3_0 || GLAD_ES_VERSION_3_0 || GLAD_EXT_texture_array;
case TEXTURE_CUBE:
return GLAD_VERSION_1_3 || GLAD_ES_VERSION_2_0;
default:
case TEXTURE_MAX_ENUM:
return false;
}
return false;
}
bool OpenGL::isBufferTypeSupported(BufferType type) const
{
switch (type)
{
case BUFFERTYPE_VERTEX:
case BUFFERTYPE_INDEX:
return true;
case BUFFERTYPE_TEXEL:
// Not supported in ES until 3.2, which we don't support shaders for...
return GLAD_VERSION_3_1;
case BUFFERTYPE_SHADER_STORAGE:
return (GLAD_VERSION_4_3 && isCoreProfile()) || GLAD_ES_VERSION_3_1;
case BUFFERTYPE_MAX_ENUM:
return false;
}
return false;
}
bool OpenGL::isClampZeroOneTextureWrapSupported() const
@@ -1435,12 +1488,6 @@ bool OpenGL::isMultiFormatMRTSupported() const
return getMaxRenderTargets() > 1 && (GLAD_ES_VERSION_3_0 || GLAD_VERSION_3_0 || GLAD_ARB_framebuffer_object);
}
bool OpenGL::areTexelBuffersSupported() const
{
// Not supported in ES until 3.2, which we don't support shaders for...
return GLAD_VERSION_3_1;
}
int OpenGL::getMax2DTextureSize() const
{
return std::max(max2DTextureSize, 1);
@@ -1466,6 +1513,11 @@ int OpenGL::getMaxTexelBufferSize() const
return maxTexelBufferSize;
}
int OpenGL::getMaxShaderStorageBufferSize() const
{
return maxShaderStorageBufferSize;
}
int OpenGL::getMaxRenderTargets() const
{
return std::min(maxRenderTargets, MAX_COLOR_RENDER_TARGETS);
@@ -1481,6 +1533,11 @@ int OpenGL::getMaxTextureUnits() const
return maxTextureUnits;
}
int OpenGL::getMaxShaderStorageBufferBindings() const
{
return maxShaderStorageBufferBindings;
}
float OpenGL::getMaxPointSize() const
{
return maxPointSize;
+21 -1
View File
@@ -319,6 +319,9 @@ public:
GLuint getDefaultTexelBuffer() const { return state.defaultTexelBuffer; }
void setDefaultTexelBuffer(GLuint tex) { state.defaultTexelBuffer = tex; }
GLuint getDefaultStorageBuffer() const { return state.defaultStorageBuffer; }
void setDefaultStorageBuffer(GLuint buf) { state.defaultStorageBuffer = buf; }
/**
* Helper for setting the active texture unit.
*
@@ -338,6 +341,8 @@ public:
void bindBufferTextureToUnit(GLuint texture, int textureunit, bool restoreprev, bool bindforedit);
void bindIndexedBuffer(GLuint buffer, BufferType type, int index);
/**
* Helper for deleting an OpenGL texture.
* Cleans up if the texture is currently bound.
@@ -357,6 +362,7 @@ public:
bool rawTexStorage(TextureType target, int levels, PixelFormat pixelformat, bool &isSRGB, int width, int height, int depth = 1);
bool isTextureTypeSupported(TextureType type) const;
bool isBufferTypeSupported(BufferType type) const;
bool isClampZeroOneTextureWrapSupported() const;
bool isPixelShaderHighpSupported() const;
bool isInstancingSupported() const;
@@ -364,7 +370,6 @@ public:
bool isSamplerLODBiasSupported() const;
bool isBaseVertexSupported() const;
bool isMultiFormatMRTSupported() const;
bool areTexelBuffersSupported() const;
/**
* Returns the maximum supported width or height of a texture.
@@ -379,6 +384,11 @@ public:
**/
int getMaxTexelBufferSize() const;
/**
* Returns the maximum number of bytes in a shader storage buffer.
**/
int getMaxShaderStorageBufferSize() const;
/**
* Returns the maximum supported number of simultaneous render targets.
**/
@@ -394,6 +404,11 @@ public:
**/
int getMaxTextureUnits() const;
/**
* Returns the maximum number of shader storage buffer bindings.
**/
int getMaxShaderStorageBufferBindings() const;
/**
* Returns the maximum point size.
**/
@@ -458,9 +473,11 @@ private:
int maxCubeTextureSize;
int maxTextureArrayLayers;
int maxTexelBufferSize;
int maxShaderStorageBufferSize;
int maxRenderTargets;
int maxSamples;
int maxTextureUnits;
int maxShaderStorageBufferBindings;
float maxPointSize;
bool coreProfile;
@@ -475,6 +492,8 @@ private:
// Texture unit state (currently bound texture for each texture unit.)
std::vector<GLuint> boundTextures[TEXTURE_MAX_ENUM + 1];
std::vector<GLuint> boundIndexedBuffers[BUFFERTYPE_MAX_ENUM];
bool enableState[ENABLE_MAX_ENUM];
GLenum faceCullMode;
@@ -495,6 +514,7 @@ private:
GLuint defaultTexture[TEXTURE_MAX_ENUM];
GLuint defaultTexelBuffer;
GLuint defaultStorageBuffer;
} state;
+167 -25
View File
@@ -37,6 +37,11 @@ namespace graphics
namespace opengl
{
static bool isBuffer(Shader::UniformType utype)
{
return utype == Shader::UNIFORM_TEXELBUFFER || utype == Shader::UNIFORM_STORAGEBUFFER;
}
Shader::Shader(love::graphics::ShaderStage *vertex, love::graphics::ShaderStage *pixel)
: love::graphics::Shader(vertex, pixel)
, program(0)
@@ -69,7 +74,7 @@ Shader::~Shader()
delete[] p.second.textures;
}
else if (p.second.baseType == UNIFORM_TEXELBUFFER)
else if (isBuffer(p.second.baseType))
{
for (int i = 0; i < p.second.count; i++)
{
@@ -195,7 +200,7 @@ void Shader::mapActiveUniforms()
u.data = malloc(u.dataSize);
break;
case UNIFORM_MATRIX:
u.dataSize = sizeof(float) * (u.matrix.rows * u.matrix.columns) * u.count;
u.dataSize = sizeof(float) * ((size_t)u.matrix.rows * u.matrix.columns) * u.count;
u.data = malloc(u.dataSize);
break;
default:
@@ -267,7 +272,7 @@ void Shader::mapActiveUniforms()
break;
case UNIFORM_MATRIX:
glGetUniformfv(program, location, &u.floats[offset]);
offset += u.matrix.rows * u.matrix.columns;
offset += (size_t)u.matrix.rows * u.matrix.columns;
break;
default:
break;
@@ -310,13 +315,90 @@ void Shader::mapActiveUniforms()
}
}
if (gl.isBufferTypeSupported(BUFFERTYPE_SHADER_STORAGE))
{
GLint numstoragebuffers = 0;
glGetProgramInterfaceiv(program, GL_SHADER_STORAGE_BLOCK, GL_ACTIVE_RESOURCES, &numstoragebuffers);
char namebuffer[2048] = { '\0' };
for (int sindex = 0; sindex < numstoragebuffers; sindex++)
{
UniformInfo u = {};
u.baseType = UNIFORM_STORAGEBUFFER;
GLsizei namelength = 0;
glGetProgramResourceName(program, GL_SHADER_STORAGE_BLOCK, sindex, 2048, &namelength, namebuffer);
u.name = std::string(namebuffer, namelength);
u.count = 1;
const auto reflectionit = validationReflection.storageBuffers.find(u.name);
if (reflectionit != validationReflection.storageBuffers.end())
{
u.bufferStride = reflectionit->second.stride;
u.bufferMemberCount = reflectionit->second.memberCount;
}
// Make sure previously set uniform data is preserved, and shader-
// initialized values are retrieved.
auto oldu = olduniforms.find(u.name);
if (oldu != olduniforms.end())
{
u.data = oldu->second.data;
u.dataSize = oldu->second.dataSize;
u.buffers = oldu->second.buffers;
}
else
{
u.dataSize = sizeof(int) * 1;
u.data = malloc(u.dataSize);
u.ints[0] = -1;
u.buffers = new love::graphics::Buffer * [u.count];
memset(u.buffers, 0, sizeof(Buffer*)* u.count);
}
GLenum props[] = { GL_BUFFER_BINDING };
glGetProgramResourceiv(program, GL_SHADER_STORAGE_BLOCK, sindex, 1, props, 1, nullptr, u.ints);
BufferBinding binding;
binding.bindingindex = u.ints[0];
binding.buffer = gl.getDefaultStorageBuffer();
if (binding.bindingindex >= 0)
{
int activeindex = (int)activeStorageBufferBindings.size();
storageBufferBindingIndexToActiveBinding[binding.bindingindex] = activeindex;
activeStorageBufferBindings.push_back(binding);
}
uniforms[u.name] = u;
for (int i = 0; i < u.count; i++)
{
if (u.buffers[i] == nullptr)
continue;
Volatile* v = dynamic_cast<Volatile*>(u.buffers[i]);
if (v != nullptr)
v->loadVolatile();
}
sendBuffers(&u, u.buffers, u.count, true);
}
}
// Make sure uniforms that existed before but don't exist anymore are
// cleaned up. This theoretically shouldn't happen, but...
for (const auto &p : olduniforms)
{
if (uniforms.find(p.first) == uniforms.end())
{
free(p.second.data);
if (p.second.data != nullptr)
free(p.second.data);
if (p.second.baseType == UNIFORM_SAMPLER)
{
@@ -328,7 +410,7 @@ void Shader::mapActiveUniforms()
delete[] p.second.textures;
}
else if (p.second.baseType == UNIFORM_TEXELBUFFER)
else if (isBuffer(p.second.baseType))
{
for (int i = 0; i < p.second.count; i++)
{
@@ -354,6 +436,9 @@ bool Shader::loadVolatile()
textureUnits.clear();
textureUnits.push_back(TextureUnit());
storageBufferBindingIndexToActiveBinding.resize(gl.getMaxShaderStorageBufferBindings(), -1);
activeStorageBufferBindings.clear();
for (const auto &stage : stages)
{
if (stage.get() != nullptr)
@@ -500,6 +585,9 @@ void Shader::attach()
}
}
for (auto bufferbinding : activeStorageBufferBindings)
gl.bindIndexedBuffer(bufferbinding.buffer, BUFFERTYPE_SHADER_STORAGE, bufferbinding.bindingindex);
// send any pending uniforms to the shader program.
for (const auto &p : pendingUniformUpdates)
updateUniform(p.first, p.second, true);
@@ -722,10 +810,18 @@ static bool isTexelBufferTypeCompatible(DataBaseType a, DataBaseType b)
void Shader::sendBuffers(const UniformInfo *info, love::graphics::Buffer **buffers, int count, bool internalUpdate)
{
if (info->baseType != UNIFORM_TEXELBUFFER)
return;
uint32 requiredtypeflags = 0;
uint32 requiredtypeflags = Buffer::TYPEFLAG_TEXEL;
bool texelbinding = info->baseType == UNIFORM_TEXELBUFFER;
bool storagebinding = info->baseType == UNIFORM_STORAGEBUFFER;
if (texelbinding)
requiredtypeflags = Buffer::TYPEFLAG_TEXEL;
else if (storagebinding)
requiredtypeflags = Buffer::TYPEFLAG_SHADER_STORAGE;
if (requiredtypeflags == 0)
return;
bool shaderactive = current == this;
@@ -745,17 +841,43 @@ void Shader::sendBuffers(const UniformInfo *info, love::graphics::Buffer **buffe
{
if (internalUpdate)
continue;
else
else if (texelbinding)
throw love::Exception("Shader uniform '%s' is a texel buffer, but the given Buffer was not created with texel buffer capabilities.", info->name.c_str());
else if (storagebinding)
throw love::Exception("Shader uniform '%s' is a shader storage buffer block, but the given Buffer was not created with shader storage buffer capabilities.", info->name.c_str());
else
throw love::Exception("Shader uniform '%s' does not match the types supported by the given Buffer.", info->name.c_str());
}
DataBaseType basetype = buffer->getDataMember(0).info.baseType;
if (!isTexelBufferTypeCompatible(basetype, info->texelBufferType))
if (texelbinding)
{
if (internalUpdate)
continue;
else
throw love::Exception("Texel buffer's data format base type must match the variable declared in the shader.");
DataBaseType basetype = buffer->getDataMember(0).info.baseType;
if (!isTexelBufferTypeCompatible(basetype, info->texelBufferType))
{
if (internalUpdate)
continue;
else
throw love::Exception("Texel buffer's data format base type must match the variable declared in the shader.");
}
}
else if (storagebinding)
{
if (info->bufferStride != buffer->getArrayStride())
{
if (internalUpdate)
continue;
else
throw love::Exception("Shader storage block '%s' has an array stride of %d bytes, but the given Buffer has an array stride of %d bytes.",
info->name.c_str(), info->bufferStride, buffer->getArrayStride());
}
else if (info->bufferMemberCount != buffer->getDataMembers().size())
{
if (internalUpdate)
continue;
else
throw love::Exception("Shader storage block '%s' has a struct with %d fields, but the given Buffer has a format with %d members.",
info->name.c_str(), info->bufferMemberCount, buffer->getDataMembers().size());
}
}
buffer->retain();
@@ -766,19 +888,39 @@ void Shader::sendBuffers(const UniformInfo *info, love::graphics::Buffer **buffe
info->buffers[i] = buffer;
GLuint gltex = 0;
if (buffers[i] != nullptr)
gltex = (GLuint) buffer->getTexelBufferHandle();
else
gltex = gl.getDefaultTexelBuffer();
if (texelbinding)
{
GLuint gltex = 0;
if (buffers[i] != nullptr)
gltex = (GLuint) buffer->getTexelBufferHandle();
else
gltex = gl.getDefaultTexelBuffer();
int texunit = info->ints[i];
int texunit = info->ints[i];
if (shaderactive)
gl.bindBufferTextureToUnit(gltex, texunit, false, false);
if (shaderactive)
gl.bindBufferTextureToUnit(gltex, texunit, false, false);
// Store texture id so it can be re-bound to the texture unit later.
textureUnits[texunit].texture = gltex;
// Store texture id so it can be re-bound to the texture unit later.
textureUnits[texunit].texture = gltex;
}
else if (storagebinding)
{
int bindingindex = info->ints[i];
GLuint glbuffer = 0;
if (buffers[i] != nullptr)
glbuffer = (GLuint) buffer->getHandle();
else
glbuffer = gl.getDefaultStorageBuffer();
if (shaderactive)
gl.bindIndexedBuffer(glbuffer, BUFFERTYPE_SHADER_STORAGE, bindingindex);
int activeindex = storageBufferBindingIndexToActiveBinding[bindingindex];
if (activeindex >= 0)
activeStorageBufferBindings[activeindex].buffer = glbuffer;
}
}
}
+9
View File
@@ -80,6 +80,12 @@ private:
bool active = false;
};
struct BufferBinding
{
int bindingindex = 0;
GLuint buffer = 0;
};
// Map active uniform names to their locations.
void mapActiveUniforms();
@@ -117,6 +123,9 @@ private:
// Texture unit pool for setting textures
std::vector<TextureUnit> textureUnits;
std::vector<int> storageBufferBindingIndexToActiveBinding;
std::vector<BufferBinding> activeStorageBufferBindings;
std::vector<std::pair<const UniformInfo *, int>> pendingUniformUpdates;
float lastPointSize;
+4 -3
View File
@@ -339,9 +339,10 @@ const char *getConstant(BuiltinVertexAttribute attrib)
STRINGMAP_BEGIN(BufferType, BUFFERTYPE_MAX_ENUM, bufferTypeName)
{
{ "vertex", BUFFERTYPE_VERTEX },
{ "index", BUFFERTYPE_INDEX },
{ "texel", BUFFERTYPE_TEXEL },
{ "vertex", BUFFERTYPE_VERTEX },
{ "index", BUFFERTYPE_INDEX },
{ "texel", BUFFERTYPE_TEXEL },
{ "shaderstorage", BUFFERTYPE_SHADER_STORAGE },
}
STRINGMAP_END(BufferType, BUFFERTYPE_MAX_ENUM, bufferTypeName)
+1
View File
@@ -59,6 +59,7 @@ enum BufferType
BUFFERTYPE_VERTEX = 0,
BUFFERTYPE_INDEX,
BUFFERTYPE_TEXEL,
BUFFERTYPE_SHADER_STORAGE,
BUFFERTYPE_MAX_ENUM
};
+3 -4
View File
@@ -278,8 +278,6 @@ int w_Shader_sendTextures(lua_State *L, int startidx, Shader *shader, const Shad
for (int i = 0; i < count; i++)
{
Texture *tex = luax_checktexture(L, startidx + i);
if (tex->getTextureType() != info->textureType)
return luaL_argerror(L, startidx + i, "invalid texture type for uniform");
textures.push_back(tex);
}
@@ -321,6 +319,7 @@ static int w_Shader_sendLuaValues(lua_State *L, int startidx, Shader *shader, co
case Shader::UNIFORM_SAMPLER:
return w_Shader_sendTextures(L, startidx, shader, info);
case Shader::UNIFORM_TEXELBUFFER:
case Shader::UNIFORM_STORAGEBUFFER:
return w_Shader_sendBuffers(L, startidx, shader, info);
default:
return luaL_error(L, "Unknown variable type for shader uniform '%s", name);
@@ -329,8 +328,8 @@ static int w_Shader_sendLuaValues(lua_State *L, int startidx, Shader *shader, co
static int w_Shader_sendData(lua_State *L, int startidx, Shader *shader, const Shader::UniformInfo *info, bool colors)
{
if (info->baseType == Shader::UNIFORM_SAMPLER)
return luaL_error(L, "Uniform sampler values (textures) cannot be sent to Shaders via Data objects.");
if (info->baseType == Shader::UNIFORM_SAMPLER || info->baseType == Shader::UNIFORM_TEXELBUFFER || info->baseType == Shader::UNIFORM_STORAGEBUFFER)
return luaL_error(L, "Only value types (floats, ints, vectors, matrices, etc) be sent to Shaders via Data objects.");
math::Transform::MatrixLayout layout = math::Transform::MATRIX_ROW_MAJOR;
int dataidx = startidx;