use core_types::list::List; use core_types::transform::{Footprint, Transform}; use core_types::{CloneVarArgs, ExtractAll, ExtractVarArgs}; use core_types::{Color, Context, Ctx, ExtractFootprint, OwnedContextImpl, WasmNotSend}; use graph_craft::document::value::{RenderOutput, RenderOutputType}; use graphene_application_io::{ExportFormat, RenderConfig}; use graphic_types::raster_types::{CPU, Raster}; use graphic_types::{Artboard, Graphic, Vector}; use rendering::{Render, RenderMetadata, RenderOutputType as RenderOutputTypeRequest, RenderParams, SvgRender, SvgRenderOutput}; use std::sync::Arc; use vector_types::GradientStops; use wgpu_executor::{RenderContext, WgpuExecutor}; #[derive(Clone, dyn_any::DynAny)] pub enum RenderIntermediateType { Vello(Arc<(vello::Scene, RenderContext)>), Svg(Arc), } #[derive(Clone, dyn_any::DynAny)] pub struct RenderIntermediate { pub(crate) ty: RenderIntermediateType, pub(crate) metadata: RenderMetadata, } #[node_macro::node(category(""))] async fn render_intermediate<'a: 'n, T: 'static + Render + WasmNotSend + Send + Sync>( ctx: impl Ctx + ExtractVarArgs + ExtractAll + CloneVarArgs, #[implementations( Context -> List, Context -> List, Context -> List, Context -> List>, Context -> List, Context -> List, Context -> List, )] data: impl Node, Output = T>, ) -> RenderIntermediate { let render_params = ctx .vararg(0) .expect("Did not find var args") .downcast_ref::() .expect("Downcasting render params yielded invalid type"); let ctx = OwnedContextImpl::from(ctx.clone()).into_context(); let data = data.eval(ctx).await; let footprint = Footprint::default(); let mut metadata = RenderMetadata::default(); data.collect_metadata(&mut metadata, footprint, None); match &render_params.render_output_type { RenderOutputTypeRequest::Vello => { let mut scene = vello::Scene::new(); let mut context = wgpu_executor::RenderContext::default(); data.render_to_vello(&mut scene, Default::default(), &mut context, render_params); RenderIntermediate { ty: RenderIntermediateType::Vello(Arc::new((scene, context))), metadata, } } RenderOutputTypeRequest::Svg => { let mut render = SvgRender::new(); data.render_svg(&mut render, render_params); RenderIntermediate { ty: RenderIntermediateType::Svg(Arc::new(render.into())), metadata, } } } } #[node_macro::node(category(""))] async fn render<'a: 'n>( ctx: impl Ctx + ExtractFootprint + ExtractVarArgs, #[scope(crate::platform_application_io::try_wgpu_executor::IDENTIFIER)] executor: Option<&'a WgpuExecutor>, data: RenderIntermediate, ) -> RenderOutput { let footprint = ctx.footprint(); let render_params = ctx .vararg(0) .expect("Did not find var args") .downcast_ref::() .expect("Downcasting render params yielded invalid type"); let mut render_params = render_params.clone(); render_params.footprint = *footprint; let RenderIntermediate { ty, mut metadata } = data; metadata.apply_transform(footprint.transform); let data = match (render_params.render_output_type, ty) { (RenderOutputTypeRequest::Svg, RenderIntermediateType::Svg(data)) => { let logical_transform = glam::DAffine2::from_scale(glam::DVec2::splat(1.0 / render_params.scale)) * footprint.transform; let logical_resolution = footprint.resolution.as_dvec2() / render_params.scale; let mut render = SvgRender::from(data.as_ref()); render.wrap_with_transform(logical_transform, Some(logical_resolution)); let output = SvgRenderOutput::from(render); assert!(output.svg_defs.is_empty()); RenderOutputType::Svg { svg: output.svg, image_data: output.image_data.into_iter().map(|(image, id)| (id, image.0)).collect(), } } (RenderOutputTypeRequest::Vello, RenderIntermediateType::Vello(data)) => { let (scene, context) = data.as_ref(); let footprint_transform_vello = vello::kurbo::Affine::new(footprint.transform.to_cols_array()); let mut transformed_scene = vello::Scene::new(); transformed_scene.append(scene, Some(footprint_transform_vello)); // We now replace all transforms which are supposed to be infinite with a transform which covers the entire viewport. // See for more detail. // // `!is_finite()` rather than `== f32::INFINITY`: `scene.append` composes the child's `Affine::scale(INFINITY)` with // the viewport rotation, leaving `matrix[0] = cos(θ) * INFINITY`. In the (90°, 270°) tilt range cos is negative so // the result is `-INFINITY`, which the old equality check missed; Vello then rasterized a unit rect with non-finite // vertices, dropping the gradient and tanking performance. `!is_finite()` also covers NaN as a guard against future // code paths where `matrix[0]` could land on `0 * INFINITY`. let scaled_infinite_transform = vello::kurbo::Affine::scale_non_uniform(footprint.resolution.x as f64, footprint.resolution.y as f64); for transform in transformed_scene.encoding_mut().transforms.iter_mut() { if !transform.matrix[0].is_finite() { *transform = vello_encoding::Transform::from_kurbo(&scaled_infinite_transform); } } let texture = executor .expect("GPU executor not available") .render_vello_scene(&transformed_scene, footprint.resolution, context, None) .await .expect("Failed to render Vello scene"); RenderOutputType::Texture(texture) } _ => unreachable!("Render node did not receive its requested data type"), }; RenderOutput { data, metadata } } #[node_macro::node(category(""))] async fn create_context<'a: 'n>( // Context injections are defined in the wrap_network_in_scope function render_config: RenderConfig, data: impl Node, Output = RenderOutput>, ) -> RenderOutput { let render_output_type = match render_config.export_format { ExportFormat::Svg => RenderOutputTypeRequest::Svg, ExportFormat::Raster => RenderOutputTypeRequest::Vello, }; let logical_viewport = render_config.viewport; let footprint = Footprint { transform: glam::DAffine2::from_scale(glam::DVec2::splat(render_config.scale)) * logical_viewport.transform, ..logical_viewport }; let render_params = RenderParams { render_mode: render_config.render_mode, for_export: render_config.for_export, render_output_type, scale: render_config.scale, viewport_zoom: logical_viewport.scale_magnitudes().x, ..Default::default() }; let ctx = OwnedContextImpl::default() .with_footprint(footprint) .with_real_time(render_config.time.time) .with_animation_time(render_config.time.animation_time.as_secs_f64()) .with_pointer_position(render_config.pointer) .with_vararg(Box::new(render_params)) .into_context(); let mut result = data.eval(ctx).await; result.metadata.apply_transform(glam::DAffine2::from_scale(glam::DVec2::splat(1. / render_config.scale))); result }