Merge pull request #4081 from Morph1984/maxwell-to-gl-vk
maxwell_to_gl/vk: Miscellaneous changes
This commit is contained in:
commit
de644d506f
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@ -46,10 +46,8 @@ inline GLenum VertexType(Maxwell::VertexAttribute attrib) {
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return GL_UNSIGNED_INT;
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return GL_UNSIGNED_INT;
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case Maxwell::VertexAttribute::Size::Size_10_10_10_2:
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case Maxwell::VertexAttribute::Size::Size_10_10_10_2:
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return GL_UNSIGNED_INT_2_10_10_10_REV;
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return GL_UNSIGNED_INT_2_10_10_10_REV;
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default:
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LOG_ERROR(Render_OpenGL, "Unimplemented vertex size={}", attrib.SizeString());
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return {};
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}
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}
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break;
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case Maxwell::VertexAttribute::Type::SignedInt:
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case Maxwell::VertexAttribute::Type::SignedInt:
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case Maxwell::VertexAttribute::Type::SignedNorm:
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case Maxwell::VertexAttribute::Type::SignedNorm:
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switch (attrib.size) {
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switch (attrib.size) {
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@ -70,10 +68,8 @@ inline GLenum VertexType(Maxwell::VertexAttribute attrib) {
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return GL_INT;
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return GL_INT;
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case Maxwell::VertexAttribute::Size::Size_10_10_10_2:
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case Maxwell::VertexAttribute::Size::Size_10_10_10_2:
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return GL_INT_2_10_10_10_REV;
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return GL_INT_2_10_10_10_REV;
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default:
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LOG_ERROR(Render_OpenGL, "Unimplemented vertex size={}", attrib.SizeString());
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return {};
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}
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}
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break;
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case Maxwell::VertexAttribute::Type::Float:
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case Maxwell::VertexAttribute::Type::Float:
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switch (attrib.size) {
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switch (attrib.size) {
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case Maxwell::VertexAttribute::Size::Size_16:
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case Maxwell::VertexAttribute::Size::Size_16:
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@ -86,10 +82,8 @@ inline GLenum VertexType(Maxwell::VertexAttribute attrib) {
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case Maxwell::VertexAttribute::Size::Size_32_32_32:
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case Maxwell::VertexAttribute::Size::Size_32_32_32:
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case Maxwell::VertexAttribute::Size::Size_32_32_32_32:
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case Maxwell::VertexAttribute::Size::Size_32_32_32_32:
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return GL_FLOAT;
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return GL_FLOAT;
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default:
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LOG_ERROR(Render_OpenGL, "Unimplemented vertex size={}", attrib.SizeString());
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return {};
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}
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}
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break;
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case Maxwell::VertexAttribute::Type::UnsignedScaled:
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case Maxwell::VertexAttribute::Type::UnsignedScaled:
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switch (attrib.size) {
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switch (attrib.size) {
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case Maxwell::VertexAttribute::Size::Size_8:
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case Maxwell::VertexAttribute::Size::Size_8:
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@ -102,10 +96,8 @@ inline GLenum VertexType(Maxwell::VertexAttribute attrib) {
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case Maxwell::VertexAttribute::Size::Size_16_16_16:
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case Maxwell::VertexAttribute::Size::Size_16_16_16:
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case Maxwell::VertexAttribute::Size::Size_16_16_16_16:
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case Maxwell::VertexAttribute::Size::Size_16_16_16_16:
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return GL_UNSIGNED_SHORT;
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return GL_UNSIGNED_SHORT;
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default:
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LOG_ERROR(Render_OpenGL, "Unimplemented vertex size={}", attrib.SizeString());
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return {};
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}
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}
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break;
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case Maxwell::VertexAttribute::Type::SignedScaled:
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case Maxwell::VertexAttribute::Type::SignedScaled:
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switch (attrib.size) {
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switch (attrib.size) {
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case Maxwell::VertexAttribute::Size::Size_8:
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case Maxwell::VertexAttribute::Size::Size_8:
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@ -118,14 +110,12 @@ inline GLenum VertexType(Maxwell::VertexAttribute attrib) {
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case Maxwell::VertexAttribute::Size::Size_16_16_16:
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case Maxwell::VertexAttribute::Size::Size_16_16_16:
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case Maxwell::VertexAttribute::Size::Size_16_16_16_16:
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case Maxwell::VertexAttribute::Size::Size_16_16_16_16:
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return GL_SHORT;
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return GL_SHORT;
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default:
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LOG_ERROR(Render_OpenGL, "Unimplemented vertex size={}", attrib.SizeString());
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return {};
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}
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}
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default:
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break;
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LOG_ERROR(Render_OpenGL, "Unimplemented vertex type={}", attrib.TypeString());
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return {};
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}
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}
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UNIMPLEMENTED_MSG("Unimplemented vertex type={} and size={}", attrib.TypeString(),
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attrib.SizeString());
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return {};
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}
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}
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inline GLenum IndexFormat(Maxwell::IndexFormat index_format) {
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inline GLenum IndexFormat(Maxwell::IndexFormat index_format) {
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@ -137,8 +127,7 @@ inline GLenum IndexFormat(Maxwell::IndexFormat index_format) {
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case Maxwell::IndexFormat::UnsignedInt:
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case Maxwell::IndexFormat::UnsignedInt:
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return GL_UNSIGNED_INT;
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return GL_UNSIGNED_INT;
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}
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}
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LOG_CRITICAL(Render_OpenGL, "Unimplemented index_format={}", static_cast<u32>(index_format));
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UNREACHABLE_MSG("Invalid index_format={}", static_cast<u32>(index_format));
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UNREACHABLE();
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return {};
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return {};
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}
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}
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@ -180,10 +169,20 @@ inline GLenum PrimitiveTopology(Maxwell::PrimitiveTopology topology) {
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}
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}
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inline GLenum TextureFilterMode(Tegra::Texture::TextureFilter filter_mode,
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inline GLenum TextureFilterMode(Tegra::Texture::TextureFilter filter_mode,
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Tegra::Texture::TextureMipmapFilter mip_filter_mode) {
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Tegra::Texture::TextureMipmapFilter mipmap_filter_mode) {
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switch (filter_mode) {
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switch (filter_mode) {
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case Tegra::Texture::TextureFilter::Linear: {
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case Tegra::Texture::TextureFilter::Nearest:
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switch (mip_filter_mode) {
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switch (mipmap_filter_mode) {
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case Tegra::Texture::TextureMipmapFilter::None:
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return GL_NEAREST;
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case Tegra::Texture::TextureMipmapFilter::Nearest:
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return GL_NEAREST_MIPMAP_NEAREST;
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case Tegra::Texture::TextureMipmapFilter::Linear:
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return GL_NEAREST_MIPMAP_LINEAR;
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}
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break;
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case Tegra::Texture::TextureFilter::Linear:
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switch (mipmap_filter_mode) {
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case Tegra::Texture::TextureMipmapFilter::None:
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case Tegra::Texture::TextureMipmapFilter::None:
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return GL_LINEAR;
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return GL_LINEAR;
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case Tegra::Texture::TextureMipmapFilter::Nearest:
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case Tegra::Texture::TextureMipmapFilter::Nearest:
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@ -193,20 +192,9 @@ inline GLenum TextureFilterMode(Tegra::Texture::TextureFilter filter_mode,
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}
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}
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break;
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break;
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}
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}
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case Tegra::Texture::TextureFilter::Nearest: {
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UNREACHABLE_MSG("Invalid texture filter mode={} and mipmap filter mode={}",
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switch (mip_filter_mode) {
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static_cast<u32>(filter_mode), static_cast<u32>(mipmap_filter_mode));
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case Tegra::Texture::TextureMipmapFilter::None:
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return GL_NEAREST;
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return GL_NEAREST;
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case Tegra::Texture::TextureMipmapFilter::Nearest:
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return GL_NEAREST_MIPMAP_NEAREST;
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case Tegra::Texture::TextureMipmapFilter::Linear:
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return GL_NEAREST_MIPMAP_LINEAR;
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}
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break;
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}
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}
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LOG_ERROR(Render_OpenGL, "Unimplemented texture filter mode={}", static_cast<u32>(filter_mode));
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return GL_LINEAR;
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}
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}
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inline GLenum WrapMode(Tegra::Texture::WrapMode wrap_mode) {
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inline GLenum WrapMode(Tegra::Texture::WrapMode wrap_mode) {
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@ -229,10 +217,9 @@ inline GLenum WrapMode(Tegra::Texture::WrapMode wrap_mode) {
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} else {
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} else {
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return GL_MIRROR_CLAMP_TO_EDGE;
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return GL_MIRROR_CLAMP_TO_EDGE;
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}
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}
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default:
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LOG_ERROR(Render_OpenGL, "Unimplemented texture wrap mode={}", static_cast<u32>(wrap_mode));
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return GL_REPEAT;
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}
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}
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UNIMPLEMENTED_MSG("Unimplemented texture wrap mode={}", static_cast<u32>(wrap_mode));
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return GL_REPEAT;
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}
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}
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inline GLenum DepthCompareFunc(Tegra::Texture::DepthCompareFunc func) {
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inline GLenum DepthCompareFunc(Tegra::Texture::DepthCompareFunc func) {
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@ -254,8 +241,7 @@ inline GLenum DepthCompareFunc(Tegra::Texture::DepthCompareFunc func) {
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case Tegra::Texture::DepthCompareFunc::Always:
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case Tegra::Texture::DepthCompareFunc::Always:
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return GL_ALWAYS;
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return GL_ALWAYS;
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}
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}
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LOG_ERROR(Render_OpenGL, "Unimplemented texture depth compare function ={}",
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UNIMPLEMENTED_MSG("Unimplemented texture depth compare function={}", static_cast<u32>(func));
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static_cast<u32>(func));
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return GL_GREATER;
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return GL_GREATER;
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}
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}
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@ -277,7 +263,7 @@ inline GLenum BlendEquation(Maxwell::Blend::Equation equation) {
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case Maxwell::Blend::Equation::MaxGL:
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case Maxwell::Blend::Equation::MaxGL:
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return GL_MAX;
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return GL_MAX;
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}
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}
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LOG_ERROR(Render_OpenGL, "Unimplemented blend equation={}", static_cast<u32>(equation));
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UNIMPLEMENTED_MSG("Unimplemented blend equation={}", static_cast<u32>(equation));
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return GL_FUNC_ADD;
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return GL_FUNC_ADD;
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}
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}
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@ -341,7 +327,7 @@ inline GLenum BlendFunc(Maxwell::Blend::Factor factor) {
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case Maxwell::Blend::Factor::OneMinusConstantAlphaGL:
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case Maxwell::Blend::Factor::OneMinusConstantAlphaGL:
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return GL_ONE_MINUS_CONSTANT_ALPHA;
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return GL_ONE_MINUS_CONSTANT_ALPHA;
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}
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}
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LOG_ERROR(Render_OpenGL, "Unimplemented blend factor={}", static_cast<u32>(factor));
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UNIMPLEMENTED_MSG("Unimplemented blend factor={}", static_cast<u32>(factor));
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return GL_ZERO;
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return GL_ZERO;
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}
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}
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@ -361,7 +347,7 @@ inline GLenum SwizzleSource(Tegra::Texture::SwizzleSource source) {
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case Tegra::Texture::SwizzleSource::OneFloat:
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case Tegra::Texture::SwizzleSource::OneFloat:
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return GL_ONE;
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return GL_ONE;
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}
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}
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LOG_ERROR(Render_OpenGL, "Unimplemented swizzle source={}", static_cast<u32>(source));
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UNIMPLEMENTED_MSG("Unimplemented swizzle source={}", static_cast<u32>(source));
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return GL_ZERO;
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return GL_ZERO;
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}
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}
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@ -392,7 +378,7 @@ inline GLenum ComparisonOp(Maxwell::ComparisonOp comparison) {
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case Maxwell::ComparisonOp::AlwaysOld:
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case Maxwell::ComparisonOp::AlwaysOld:
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return GL_ALWAYS;
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return GL_ALWAYS;
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}
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}
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LOG_ERROR(Render_OpenGL, "Unimplemented comparison op={}", static_cast<u32>(comparison));
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UNIMPLEMENTED_MSG("Unimplemented comparison op={}", static_cast<u32>(comparison));
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return GL_ALWAYS;
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return GL_ALWAYS;
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}
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}
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@ -423,7 +409,7 @@ inline GLenum StencilOp(Maxwell::StencilOp stencil) {
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case Maxwell::StencilOp::DecrWrapOGL:
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case Maxwell::StencilOp::DecrWrapOGL:
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return GL_DECR_WRAP;
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return GL_DECR_WRAP;
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}
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}
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LOG_ERROR(Render_OpenGL, "Unimplemented stencil op={}", static_cast<u32>(stencil));
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UNIMPLEMENTED_MSG("Unimplemented stencil op={}", static_cast<u32>(stencil));
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return GL_KEEP;
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return GL_KEEP;
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}
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}
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@ -434,7 +420,7 @@ inline GLenum FrontFace(Maxwell::FrontFace front_face) {
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case Maxwell::FrontFace::CounterClockWise:
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case Maxwell::FrontFace::CounterClockWise:
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return GL_CCW;
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return GL_CCW;
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}
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}
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LOG_ERROR(Render_OpenGL, "Unimplemented front face cull={}", static_cast<u32>(front_face));
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UNIMPLEMENTED_MSG("Unimplemented front face cull={}", static_cast<u32>(front_face));
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return GL_CCW;
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return GL_CCW;
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}
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}
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@ -447,7 +433,7 @@ inline GLenum CullFace(Maxwell::CullFace cull_face) {
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case Maxwell::CullFace::FrontAndBack:
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case Maxwell::CullFace::FrontAndBack:
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return GL_FRONT_AND_BACK;
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return GL_FRONT_AND_BACK;
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}
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}
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LOG_ERROR(Render_OpenGL, "Unimplemented cull face={}", static_cast<u32>(cull_face));
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UNIMPLEMENTED_MSG("Unimplemented cull face={}", static_cast<u32>(cull_face));
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return GL_BACK;
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return GL_BACK;
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}
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}
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@ -486,7 +472,7 @@ inline GLenum LogicOp(Maxwell::LogicOperation operation) {
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case Maxwell::LogicOperation::Set:
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case Maxwell::LogicOperation::Set:
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return GL_SET;
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return GL_SET;
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}
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}
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LOG_ERROR(Render_OpenGL, "Unimplemented logic operation={}", static_cast<u32>(operation));
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UNIMPLEMENTED_MSG("Unimplemented logic operation={}", static_cast<u32>(operation));
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return GL_COPY;
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return GL_COPY;
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}
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}
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@ -21,29 +21,29 @@ namespace Sampler {
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VkFilter Filter(Tegra::Texture::TextureFilter filter) {
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VkFilter Filter(Tegra::Texture::TextureFilter filter) {
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switch (filter) {
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switch (filter) {
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case Tegra::Texture::TextureFilter::Linear:
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return VK_FILTER_LINEAR;
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case Tegra::Texture::TextureFilter::Nearest:
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case Tegra::Texture::TextureFilter::Nearest:
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return VK_FILTER_NEAREST;
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return VK_FILTER_NEAREST;
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case Tegra::Texture::TextureFilter::Linear:
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return VK_FILTER_LINEAR;
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}
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}
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UNIMPLEMENTED_MSG("Unimplemented sampler filter={}", static_cast<u32>(filter));
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UNREACHABLE_MSG("Invalid sampler filter={}", static_cast<u32>(filter));
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return {};
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return {};
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}
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}
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VkSamplerMipmapMode MipmapMode(Tegra::Texture::TextureMipmapFilter mipmap_filter) {
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VkSamplerMipmapMode MipmapMode(Tegra::Texture::TextureMipmapFilter mipmap_filter) {
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switch (mipmap_filter) {
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switch (mipmap_filter) {
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case Tegra::Texture::TextureMipmapFilter::None:
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case Tegra::Texture::TextureMipmapFilter::None:
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// TODO(Rodrigo): None seems to be mapped to OpenGL's mag and min filters without mipmapping
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// There are no Vulkan filter modes that directly correspond to OpenGL minification filters
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// (e.g. GL_NEAREST and GL_LINEAR). Vulkan doesn't have such a thing, find out if we have to
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// of GL_LINEAR or GL_NEAREST, but they can be emulated using
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// use an image view with a single mipmap level to emulate this.
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// VK_SAMPLER_MIPMAP_MODE_NEAREST, minLod = 0, and maxLod = 0.25, and using minFilter =
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return VK_SAMPLER_MIPMAP_MODE_LINEAR;
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// VK_FILTER_LINEAR or minFilter = VK_FILTER_NEAREST, respectively.
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;
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return VK_SAMPLER_MIPMAP_MODE_NEAREST;
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case Tegra::Texture::TextureMipmapFilter::Linear:
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return VK_SAMPLER_MIPMAP_MODE_LINEAR;
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case Tegra::Texture::TextureMipmapFilter::Nearest:
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case Tegra::Texture::TextureMipmapFilter::Nearest:
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return VK_SAMPLER_MIPMAP_MODE_NEAREST;
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return VK_SAMPLER_MIPMAP_MODE_NEAREST;
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case Tegra::Texture::TextureMipmapFilter::Linear:
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return VK_SAMPLER_MIPMAP_MODE_LINEAR;
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}
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}
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UNIMPLEMENTED_MSG("Unimplemented sampler mipmap mode={}", static_cast<u32>(mipmap_filter));
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UNREACHABLE_MSG("Invalid sampler mipmap mode={}", static_cast<u32>(mipmap_filter));
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return {};
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return {};
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}
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}
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@ -78,10 +78,9 @@ VkSamplerAddressMode WrapMode(const VKDevice& device, Tegra::Texture::WrapMode w
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case Tegra::Texture::WrapMode::MirrorOnceBorder:
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case Tegra::Texture::WrapMode::MirrorOnceBorder:
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UNIMPLEMENTED();
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UNIMPLEMENTED();
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return VK_SAMPLER_ADDRESS_MODE_MIRROR_CLAMP_TO_EDGE;
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return VK_SAMPLER_ADDRESS_MODE_MIRROR_CLAMP_TO_EDGE;
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default:
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}
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UNIMPLEMENTED_MSG("Unimplemented wrap mode={}", static_cast<u32>(wrap_mode));
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UNIMPLEMENTED_MSG("Unimplemented wrap mode={}", static_cast<u32>(wrap_mode));
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return {};
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return {};
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}
|
|
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}
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}
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|
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VkCompareOp DepthCompareFunction(Tegra::Texture::DepthCompareFunc depth_compare_func) {
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VkCompareOp DepthCompareFunction(Tegra::Texture::DepthCompareFunc depth_compare_func) {
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@ -288,10 +287,9 @@ VkPrimitiveTopology PrimitiveTopology([[maybe_unused]] const VKDevice& device,
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return VK_PRIMITIVE_TOPOLOGY_TRIANGLE_LIST;
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return VK_PRIMITIVE_TOPOLOGY_TRIANGLE_LIST;
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case Maxwell::PrimitiveTopology::Patches:
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case Maxwell::PrimitiveTopology::Patches:
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return VK_PRIMITIVE_TOPOLOGY_PATCH_LIST;
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return VK_PRIMITIVE_TOPOLOGY_PATCH_LIST;
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default:
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}
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UNIMPLEMENTED_MSG("Unimplemented topology={}", static_cast<u32>(topology));
|
UNIMPLEMENTED_MSG("Unimplemented topology={}", static_cast<u32>(topology));
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||||||
return {};
|
return {};
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||||||
}
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|
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}
|
}
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|
|
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VkFormat VertexFormat(Maxwell::VertexAttribute::Type type, Maxwell::VertexAttribute::Size size) {
|
VkFormat VertexFormat(Maxwell::VertexAttribute::Type type, Maxwell::VertexAttribute::Size size) {
|
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@ -9,6 +9,8 @@
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||||||
#include "video_core/renderer_vulkan/wrapper.h"
|
#include "video_core/renderer_vulkan/wrapper.h"
|
||||||
#include "video_core/textures/texture.h"
|
#include "video_core/textures/texture.h"
|
||||||
|
|
||||||
|
using Tegra::Texture::TextureMipmapFilter;
|
||||||
|
|
||||||
namespace Vulkan {
|
namespace Vulkan {
|
||||||
|
|
||||||
namespace {
|
namespace {
|
||||||
|
@ -63,8 +65,8 @@ vk::Sampler VKSamplerCache::CreateSampler(const Tegra::Texture::TSCEntry& tsc) c
|
||||||
ci.maxAnisotropy = tsc.GetMaxAnisotropy();
|
ci.maxAnisotropy = tsc.GetMaxAnisotropy();
|
||||||
ci.compareEnable = tsc.depth_compare_enabled;
|
ci.compareEnable = tsc.depth_compare_enabled;
|
||||||
ci.compareOp = MaxwellToVK::Sampler::DepthCompareFunction(tsc.depth_compare_func);
|
ci.compareOp = MaxwellToVK::Sampler::DepthCompareFunction(tsc.depth_compare_func);
|
||||||
ci.minLod = tsc.GetMinLod();
|
ci.minLod = tsc.mipmap_filter == TextureMipmapFilter::None ? 0.0f : tsc.GetMinLod();
|
||||||
ci.maxLod = tsc.GetMaxLod();
|
ci.maxLod = tsc.mipmap_filter == TextureMipmapFilter::None ? 0.25f : tsc.GetMaxLod();
|
||||||
ci.borderColor = arbitrary_borders ? VK_BORDER_COLOR_INT_CUSTOM_EXT : ConvertBorderColor(color);
|
ci.borderColor = arbitrary_borders ? VK_BORDER_COLOR_INT_CUSTOM_EXT : ConvertBorderColor(color);
|
||||||
ci.unnormalizedCoordinates = VK_FALSE;
|
ci.unnormalizedCoordinates = VK_FALSE;
|
||||||
return device.GetLogical().CreateSampler(ci);
|
return device.GetLogical().CreateSampler(ci);
|
||||||
|
|
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Reference in New Issue