gl_rasterizer_cache: Create texture views for array discrepancies
When a texture is sampled in a shader with a different array mode than the cached state, create a texture view and bind that to the shader instead.
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42f7c11021
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@ -1012,10 +1012,9 @@ void RasterizerOpenGL::SetupTextures(Maxwell::ShaderStage stage, const Shader& s
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texture_samplers[current_bindpoint].SyncWithConfig(texture.tsc);
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texture_samplers[current_bindpoint].SyncWithConfig(texture.tsc);
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Surface surface = res_cache.GetTextureSurface(texture, entry);
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if (Surface surface = res_cache.GetTextureSurface(texture, entry); surface) {
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if (surface != nullptr) {
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state.texture_units[current_bindpoint].texture =
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state.texture_units[current_bindpoint].texture =
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entry.IsArray() ? surface->TextureLayer().handle : surface->Texture().handle;
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surface->Texture(entry.IsArray()).handle;
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surface->UpdateSwizzle(texture.tic.x_source, texture.tic.y_source, texture.tic.z_source,
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surface->UpdateSwizzle(texture.tic.x_source, texture.tic.y_source, texture.tic.z_source,
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texture.tic.w_source);
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texture.tic.w_source);
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} else {
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} else {
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@ -399,6 +399,27 @@ static const FormatTuple& GetFormatTuple(PixelFormat pixel_format, ComponentType
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return format;
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return format;
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}
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}
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/// Returns the discrepant array target
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constexpr GLenum GetArrayDiscrepantTarget(SurfaceTarget target) {
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switch (target) {
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case SurfaceTarget::Texture1D:
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return GL_TEXTURE_1D_ARRAY;
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case SurfaceTarget::Texture2D:
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return GL_TEXTURE_2D_ARRAY;
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case SurfaceTarget::Texture3D:
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return GL_NONE;
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case SurfaceTarget::Texture1DArray:
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return GL_TEXTURE_1D;
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case SurfaceTarget::Texture2DArray:
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return GL_TEXTURE_2D;
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case SurfaceTarget::TextureCubemap:
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return GL_TEXTURE_CUBE_MAP_ARRAY;
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case SurfaceTarget::TextureCubeArray:
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return GL_TEXTURE_CUBE_MAP;
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}
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return GL_NONE;
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}
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Common::Rectangle<u32> SurfaceParams::GetRect(u32 mip_level) const {
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Common::Rectangle<u32> SurfaceParams::GetRect(u32 mip_level) const {
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u32 actual_height{std::max(1U, unaligned_height >> mip_level)};
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u32 actual_height{std::max(1U, unaligned_height >> mip_level)};
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if (IsPixelFormatASTC(pixel_format)) {
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if (IsPixelFormatASTC(pixel_format)) {
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@ -881,20 +902,22 @@ void CachedSurface::UploadGLMipmapTexture(u32 mip_map, GLuint read_fb_handle,
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glPixelStorei(GL_UNPACK_ROW_LENGTH, 0);
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glPixelStorei(GL_UNPACK_ROW_LENGTH, 0);
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}
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}
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void CachedSurface::EnsureTextureView() {
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void CachedSurface::EnsureTextureDiscrepantView() {
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if (texture_view.handle != 0)
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if (discrepant_view.handle != 0)
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return;
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return;
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const GLenum target{TargetLayer()};
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const GLenum target{GetArrayDiscrepantTarget(params.target)};
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ASSERT(target != GL_NONE);
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const GLuint num_layers{target == GL_TEXTURE_CUBE_MAP_ARRAY ? 6u : 1u};
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const GLuint num_layers{target == GL_TEXTURE_CUBE_MAP_ARRAY ? 6u : 1u};
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constexpr GLuint min_layer = 0;
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constexpr GLuint min_layer = 0;
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constexpr GLuint min_level = 0;
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constexpr GLuint min_level = 0;
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glGenTextures(1, &texture_view.handle);
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glGenTextures(1, &discrepant_view.handle);
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glTextureView(texture_view.handle, target, texture.handle, gl_internal_format, min_level,
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glTextureView(discrepant_view.handle, target, texture.handle, gl_internal_format, min_level,
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params.max_mip_level, min_layer, num_layers);
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params.max_mip_level, min_layer, num_layers);
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ApplyTextureDefaults(texture_view.handle, params.max_mip_level);
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ApplyTextureDefaults(discrepant_view.handle, params.max_mip_level);
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glTextureParameteriv(texture_view.handle, GL_TEXTURE_SWIZZLE_RGBA,
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glTextureParameteriv(discrepant_view.handle, GL_TEXTURE_SWIZZLE_RGBA,
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reinterpret_cast<const GLint*>(swizzle.data()));
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reinterpret_cast<const GLint*>(swizzle.data()));
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}
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}
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@ -920,8 +943,8 @@ void CachedSurface::UpdateSwizzle(Tegra::Texture::SwizzleSource swizzle_x,
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swizzle = {new_x, new_y, new_z, new_w};
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swizzle = {new_x, new_y, new_z, new_w};
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const auto swizzle_data = reinterpret_cast<const GLint*>(swizzle.data());
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const auto swizzle_data = reinterpret_cast<const GLint*>(swizzle.data());
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glTextureParameteriv(texture.handle, GL_TEXTURE_SWIZZLE_RGBA, swizzle_data);
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glTextureParameteriv(texture.handle, GL_TEXTURE_SWIZZLE_RGBA, swizzle_data);
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if (texture_view.handle != 0) {
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if (discrepant_view.handle != 0) {
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glTextureParameteriv(texture_view.handle, GL_TEXTURE_SWIZZLE_RGBA, swizzle_data);
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glTextureParameteriv(discrepant_view.handle, GL_TEXTURE_SWIZZLE_RGBA, swizzle_data);
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}
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}
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}
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}
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@ -354,31 +354,19 @@ public:
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return texture;
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return texture;
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}
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}
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const OGLTexture& TextureLayer() {
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const OGLTexture& Texture(bool as_array) {
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if (params.is_array) {
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if (params.is_array == as_array) {
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return Texture();
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return texture;
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} else {
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EnsureTextureDiscrepantView();
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return discrepant_view;
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}
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}
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EnsureTextureView();
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return texture_view;
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}
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}
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GLenum Target() const {
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GLenum Target() const {
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return gl_target;
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return gl_target;
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}
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}
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GLenum TargetLayer() const {
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using VideoCore::Surface::SurfaceTarget;
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switch (params.target) {
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case SurfaceTarget::Texture1D:
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return GL_TEXTURE_1D_ARRAY;
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case SurfaceTarget::Texture2D:
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return GL_TEXTURE_2D_ARRAY;
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case SurfaceTarget::TextureCubemap:
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return GL_TEXTURE_CUBE_MAP_ARRAY;
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}
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return Target();
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}
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const SurfaceParams& GetSurfaceParams() const {
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const SurfaceParams& GetSurfaceParams() const {
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return params;
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return params;
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}
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}
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@ -398,10 +386,10 @@ public:
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private:
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private:
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void UploadGLMipmapTexture(u32 mip_map, GLuint read_fb_handle, GLuint draw_fb_handle);
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void UploadGLMipmapTexture(u32 mip_map, GLuint read_fb_handle, GLuint draw_fb_handle);
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void EnsureTextureView();
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void EnsureTextureDiscrepantView();
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OGLTexture texture;
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OGLTexture texture;
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OGLTexture texture_view;
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OGLTexture discrepant_view;
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std::vector<std::vector<u8>> gl_buffer;
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std::vector<std::vector<u8>> gl_buffer;
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SurfaceParams params{};
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SurfaceParams params{};
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GLenum gl_target{};
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GLenum gl_target{};
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