mirror of
https://github.com/GraphiteEditor/Graphite.git
synced 2026-09-15 22:28:10 +08:00
1027 lines
40 KiB
Rust
1027 lines
40 KiB
Rust
use crate::messages::frontend::utility_types::{ExportBounds, FileType, RasterizedImage};
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use crate::messages::portfolio::document::utility_types::network_interface::InputConnector;
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use crate::messages::prelude::*;
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use glam::{DAffine2, DVec2, UVec2};
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use graph_craft::application_io::EditorPreferences;
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use graph_craft::document::value::{RenderOutput, RenderOutputType, TaggedValue};
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use graph_craft::document::{DocumentNode, DocumentNodeImplementation, NodeId, NodeInput, NodeNetwork};
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use graph_craft::proto::GraphErrors;
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use graphene_std::application_io::{ExportFormat, NodeGraphUpdateMessage, RenderConfig, TimingInformation};
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use graphene_std::bounds::RenderBoundingBox;
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use graphene_std::color::SRGBA8;
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use graphene_std::list::List;
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use graphene_std::raster::{CPU, Raster};
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use graphene_std::renderer::{RenderMetadata, graphic_list_bounding_box};
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use graphene_std::transform::Footprint;
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use graphene_std::vector::{Vector, graphic_types};
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use graphene_std::{ATTR_TRANSFORM, Graphic, NodeInputDecleration};
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use interpreted_executor::dynamic_executor::ResolvedDocumentNodeTypesDelta;
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use std::any::Any;
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use std::sync::Arc;
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mod runtime_io;
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pub use runtime_io::NodeRuntimeIO;
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mod runtime;
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pub use runtime::*;
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#[derive(Debug, Clone, serde::Serialize, serde::Deserialize)]
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pub struct ExecutionRequest {
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execution_id: u64,
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render_config: RenderConfig,
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}
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pub struct ExecutionResponse {
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execution_id: u64,
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result: Result<TaggedValue, String>,
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responses: VecDeque<FrontendMessage>,
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vector_modify: HashMap<NodeId, Vector>,
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/// The resulting value from the temporary inspected during execution
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inspect_result: Option<InspectResult>,
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}
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#[derive(serde::Serialize, serde::Deserialize)]
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pub struct CompilationResponse {
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result: Result<ResolvedDocumentNodeTypesDelta, (ResolvedDocumentNodeTypesDelta, String)>,
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node_graph_errors: GraphErrors,
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}
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pub enum NodeGraphUpdate {
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ExecutionResponse(Box<ExecutionResponse>),
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CompilationResponse(CompilationResponse),
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EyedropperPreview(Raster<CPU>),
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NodeGraphUpdateMessage(NodeGraphUpdateMessage),
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}
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#[derive(Debug, Default)]
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pub struct NodeGraphExecutor {
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runtime_io: NodeRuntimeIO,
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current_execution_id: u64,
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futures: VecDeque<(u64, ExecutionContext)>,
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/// The most recently consumed plain render execution, kept so a runtime-replayed response with the same id
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/// (sent after an async source completion) finds its context again.
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last_execution_context: Option<(u64, ExecutionContext)>,
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node_graph_hash: u64,
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/// Full path from the root document network to the node currently being inspected by the Data panel, or empty if nothing is selected.
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/// The last element is the inspect target itself; preceding elements identify the nested subnetwork the node lives in,
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/// so the runtime can splice its monitor node alongside the target rather than only at the top level.
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/// Tracking the previously-sent value lets `update_node_graph` re-send the network when the inspection target changes.
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previous_node_to_inspect: Vec<NodeId>,
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// TODO: Eventually remove this document upgrade code
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/// In-progress one-time pre-pass that converts legacy bounding-box-relative gradients to absolute space, if any.
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gradient_migration: Option<GradientMigration>,
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// TODO: Eventually remove this document upgrade code
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/// Documents whose gradient migration pass already ran this session, so entries that failed to measure
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/// (kept pending for a retry on the next open) don't re-run the pass on every render request.
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gradient_migration_attempted: HashSet<DocumentId>,
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}
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#[derive(Debug, Clone)]
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struct ExecutionContext {
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export_config: Option<ExportConfig>,
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document_id: DocumentId,
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// TODO: Eventually remove this document upgrade code
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/// Set when this execution is a gradient-migration measurement run, carrying the "Fill" node (addressed by its enclosing
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/// network path) and its original relative gradient. The evaluated geometry is read back from the inspect result to size the
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/// gradient; such runs never touch the visible artwork. Carrying the entry keeps a stale re-dispatched response paired with the fill it measured.
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measure_fill: Option<(Vec<NodeId>, NodeId, graphic_types::migrations::legacy::LegacyGradient)>,
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}
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// TODO: Eventually remove this document upgrade code
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/// State for the deferred legacy-gradient migration: a queue of "Fill" nodes (each addressed by its enclosing network path)
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/// whose decomposed gradient still needs its transform baked, each paired with its original relative gradient and measured
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/// one at a time by redirecting the document export so even hidden/orphaned/nested branches evaluate.
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#[derive(Debug, Clone)]
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struct GradientMigration {
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document_id: DocumentId,
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remaining: VecDeque<(Vec<NodeId>, NodeId, graphic_types::migrations::legacy::LegacyGradient)>,
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resolution: UVec2,
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scale: f64,
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}
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impl NodeGraphExecutor {
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/// A local runtime is useful on threads since having global state causes flakes
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#[cfg(test)]
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pub(crate) fn new_with_local_runtime() -> (NodeRuntime, Self) {
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let (request_sender, request_receiver) = std::sync::mpsc::channel();
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let (response_sender, response_receiver) = std::sync::mpsc::channel();
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let node_runtime = NodeRuntime::new(request_receiver, response_sender);
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let node_executor = Self {
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futures: Default::default(),
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runtime_io: NodeRuntimeIO::with_channels(request_sender, response_receiver),
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last_execution_context: None,
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node_graph_hash: 0,
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current_execution_id: 0,
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previous_node_to_inspect: Vec::new(),
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gradient_migration: None,
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gradient_migration_attempted: HashSet::new(),
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};
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(node_runtime, node_executor)
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}
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/// Execute the network by flattening it and creating a borrow stack.
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fn queue_execution(&mut self, render_config: RenderConfig) -> u64 {
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let execution_id = self.current_execution_id;
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self.current_execution_id += 1;
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let request = ExecutionRequest { execution_id, render_config };
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self.runtime_io.send(GraphRuntimeRequest::ExecutionRequest(request)).expect("Failed to send generation request");
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execution_id
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}
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pub fn update_editor_preferences(&self, editor_preferences: EditorPreferences) {
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self.runtime_io
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.send(GraphRuntimeRequest::EditorPreferencesUpdate(editor_preferences))
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.expect("Failed to send editor preferences");
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}
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/// Updates the network to monitor all inputs. Useful for the testing.
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#[cfg(test)]
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pub(crate) fn update_node_graph_instrumented(&mut self, document: &mut DocumentMessageHandler) -> Result<Instrumented, String> {
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// We should always invalidate the cache.
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self.node_graph_hash = crate::application::generate_uuid();
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let mut network = document.network_interface.document_network().clone();
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let instrumented = Instrumented::new(&mut network);
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let resources = document.resources.registry.clone();
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self.runtime_io
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.send(GraphRuntimeRequest::GraphUpdate(GraphUpdate {
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network,
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resources,
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node_to_inspect: Vec::new(),
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}))
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.map_err(|e| e.to_string())?;
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Ok(instrumented)
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}
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/// Update the cached network if necessary.
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fn update_node_graph(&mut self, document: &mut DocumentMessageHandler, node_to_inspect: Vec<NodeId>, ignore_hash: bool) -> Result<(), String> {
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let network_hash = document.network_interface.network_hash();
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// Refresh the graph when it changes or the inspect node changes
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if network_hash != self.node_graph_hash || self.previous_node_to_inspect != node_to_inspect || ignore_hash {
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let network = document.network_interface.document_network().clone();
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self.previous_node_to_inspect.clone_from(&node_to_inspect);
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self.node_graph_hash = network_hash;
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let resources = document.resources.registry.clone();
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self.runtime_io
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.send(GraphRuntimeRequest::GraphUpdate(GraphUpdate { network, resources, node_to_inspect }))
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.map_err(|e| e.to_string())?;
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}
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Ok(())
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}
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/// Adds an evaluate request for whatever current network is cached.
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pub(crate) fn submit_current_node_graph_evaluation(
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&mut self,
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document: &mut DocumentMessageHandler,
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document_id: DocumentId,
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viewport_resolution: UVec2,
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viewport_scale: f64,
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time: TimingInformation,
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pointer: DVec2,
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) -> Result<Message, String> {
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let viewport = Footprint {
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transform: document.metadata().document_to_viewport,
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resolution: viewport_resolution,
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..Default::default()
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};
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let render_config = RenderConfig {
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viewport,
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scale: viewport_scale,
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time,
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pointer,
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export_format: graphene_std::application_io::ExportFormat::Raster,
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render_mode: document.render_mode,
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for_export: false,
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for_eyedropper: false,
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};
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// Execute the node graph
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let execution_id = self.queue_execution(render_config);
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self.futures.push_back((
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execution_id,
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ExecutionContext {
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export_config: None,
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document_id,
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measure_fill: None,
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},
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));
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Ok(DeferMessage::SetGraphSubmissionIndex { execution_id }.into())
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}
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/// Evaluates a node graph, computing the entire graph
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#[allow(clippy::too_many_arguments)]
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pub fn submit_node_graph_evaluation(
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&mut self,
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document: &mut DocumentMessageHandler,
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document_id: DocumentId,
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viewport_resolution: UVec2,
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viewport_scale: f64,
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time: TimingInformation,
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node_to_inspect: Vec<NodeId>,
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ignore_hash: bool,
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pointer: DVec2,
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) -> Result<Message, String> {
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self.update_node_graph(document, node_to_inspect, ignore_hash)?;
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self.submit_current_node_graph_evaluation(document, document_id, viewport_resolution, viewport_scale, time, pointer)
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}
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#[allow(clippy::too_many_arguments)]
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pub(crate) fn submit_eyedropper_preview(
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&mut self,
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document: &DocumentMessageHandler,
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document_id: DocumentId,
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transform: DAffine2,
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pointer: DVec2,
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viewport_resolution: UVec2,
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viewport_scale: f64,
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time: TimingInformation,
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) -> Result<Message, String> {
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let viewport = Footprint {
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transform,
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resolution: viewport_resolution,
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..Default::default()
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};
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// TODO: On desktop, SVG Preview mode cannot work with the Eyedropper tool until <https://github.com/GraphiteEditor/Graphite/issues/3796> is implemented.
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// TODO: So for now, we fall back to the Eyedropper using Normal mode (Vello) rendering, which looks similar enough to SVG Preview.
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#[cfg(not(target_family = "wasm"))]
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let render_mode = match document.render_mode {
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graphene_std::vector::style::RenderMode::SvgPreview => graphene_std::vector::style::RenderMode::Normal,
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other => other,
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};
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// On web, SVG Preview is handled by the frontend's SVG rasterization path instead, producing the correct result, so we keep it enabled.
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#[cfg(target_family = "wasm")]
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let render_mode = document.render_mode;
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let render_config = RenderConfig {
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viewport,
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scale: viewport_scale,
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time,
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pointer,
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export_format: graphene_std::application_io::ExportFormat::Raster,
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render_mode,
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for_export: false,
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for_eyedropper: true,
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};
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// Execute the node graph
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let execution_id = self.queue_execution(render_config);
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self.futures.push_back((
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execution_id,
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ExecutionContext {
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export_config: None,
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document_id,
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measure_fill: None,
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},
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));
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Ok(DeferMessage::SetGraphSubmissionIndex { execution_id }.into())
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}
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/// Evaluates a node graph for export
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pub fn submit_document_export(&mut self, document: &mut DocumentMessageHandler, document_id: DocumentId, mut export_config: ExportConfig) -> Result<(), String> {
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let network = document.network_interface.document_network().clone();
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let resources = document.resources.registry.clone();
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let export_format = if export_config.file_type == FileType::Svg {
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graphene_std::application_io::ExportFormat::Svg
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} else {
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graphene_std::application_io::ExportFormat::Raster
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};
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// Calculate the bounding box of the region to be exported (artboard bounds always contribute).
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// `AllArtwork` and `Selection` expand vector layer bounds by the rendered stroke width so strokes
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// drawn at render-time (without a `Solidify Stroke`) aren't clipped at the export canvas edge.
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let bounds = match export_config.bounds {
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ExportBounds::AllArtwork => document.network_interface.document_bounds_document_space_with_stroke(true),
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ExportBounds::Selection => document.network_interface.selected_bounds_document_space_with_stroke(true, &[]),
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ExportBounds::Artboard(id) => document.metadata().bounding_box_document(id),
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}
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.ok_or_else(|| "No bounding box".to_string())?;
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let resolution_in_document_space = bounds[1] - bounds[0];
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let export_resolution = resolution_in_document_space * export_config.scale_factor;
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let resolution = export_resolution.round().as_uvec2();
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let transform = DAffine2::from_translation(bounds[0]).inverse();
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let viewport = Footprint {
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resolution,
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transform,
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..Default::default()
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};
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let render_config = RenderConfig {
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viewport,
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scale: export_config.scale_factor,
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time: Default::default(),
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pointer: DVec2::ZERO,
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export_format,
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render_mode: document.render_mode,
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for_export: true,
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for_eyedropper: false,
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};
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export_config.size = resolution;
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// Execute the node graph
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self.runtime_io
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.send(GraphRuntimeRequest::GraphUpdate(GraphUpdate {
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network,
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resources,
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node_to_inspect: Vec::new(),
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}))
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.map_err(|e| e.to_string())?;
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let execution_id = self.queue_execution(render_config);
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self.futures.push_back((
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execution_id,
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ExecutionContext {
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export_config: Some(export_config),
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document_id,
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measure_fill: None,
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},
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));
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Ok(())
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}
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pub fn poll_node_graph_evaluation(&mut self, document: &mut DocumentMessageHandler, document_id: DocumentId, responses: &mut VecDeque<Message>) -> Result<(), String> {
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// TODO: Eventually remove this document upgrade code
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// A gradient migration belongs to one document; if the active document changed away from it, cancel so its stale in-flight response is ignored and revisiting restarts a fresh pass
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if self.gradient_migration.as_ref().is_some_and(|migration| migration.document_id != document_id) {
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self.cancel_gradient_migration();
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}
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let results = self.runtime_io.receive().collect::<Vec<_>>();
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for response in results {
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match response {
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NodeGraphUpdate::ExecutionResponse(execution_response) => {
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let ExecutionResponse {
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execution_id,
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result,
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responses: existing_responses,
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vector_modify,
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inspect_result,
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} = *execution_response;
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while let Some(&(queued_execution_id, _)) = self.futures.front() {
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if queued_execution_id < execution_id {
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self.futures.pop_front();
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} else {
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break;
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}
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}
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let execution_context = if self.futures.front().is_some_and(|&(queued_execution_id, _)| queued_execution_id == execution_id) {
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let (_, execution_context) = self.futures.pop_front().expect("front was just matched");
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self.last_execution_context = Some((execution_id, execution_context.clone()));
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execution_context
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} else {
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// A runtime-replayed response re-uses an already consumed id; only plain renders may re-apply.
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match &self.last_execution_context {
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Some((last_execution_id, execution_context)) if *last_execution_id == execution_id => {
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if execution_context.export_config.is_some() || execution_context.measure_fill.is_some() {
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continue;
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}
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execution_context.clone()
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}
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_ => panic!("InvalidGenerationId"),
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}
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};
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// TODO: Eventually remove this document upgrade code
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// Gradient-migration measurement runs only read back the fill's evaluated geometry; they never render to the artwork.
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// Apply only to the active document's in-progress migration, dropping responses left over from a document switch.
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if let Some(bake_target) = execution_context.measure_fill {
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if execution_context.document_id == document_id && self.gradient_migration.as_ref().is_some_and(|migration| migration.document_id == document_id) {
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self.handle_gradient_measurement(document, document_id, bake_target, result.ok().and(inspect_result), responses);
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}
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continue;
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}
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responses.add(OverlaysMessage::Draw);
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let node_graph_output = match result {
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Ok(output) => output,
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Err(e) => {
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// Clear the click targets while the graph is in an un-renderable state
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document.network_interface.update_click_targets(HashMap::new());
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document.network_interface.update_outlines(HashMap::new());
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document.network_interface.update_vector_modify(HashMap::new());
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return Err(format!("Node graph evaluation failed:\n{e}"));
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}
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};
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responses.extend(existing_responses.into_iter().map(Into::into));
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document.network_interface.update_vector_modify(vector_modify);
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if let Some(export_config) = execution_context.export_config {
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// Special handling for exporting the artwork
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self.process_export(node_graph_output, export_config, document, responses)?;
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} else {
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self.process_node_graph_output(node_graph_output, responses)?;
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}
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responses.add(DeferMessage::TriggerGraphRun {
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execution_id,
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document_id: execution_context.document_id,
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});
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// Update the Data panel on the frontend using the value of the inspect result.
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if let Some(inspect_result) = (!self.previous_node_to_inspect.is_empty()).then_some(inspect_result).flatten() {
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responses.add(DataPanelMessage::UpdateLayout { inspect_result });
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} else {
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responses.add(DataPanelMessage::ClearLayout);
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}
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}
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NodeGraphUpdate::CompilationResponse(execution_response) => {
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let CompilationResponse { node_graph_errors, result } = execution_response;
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// TODO: Eventually remove this document upgrade code
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// The migration's temporary redirected-export compilations must not push types or a graph view to the frontend
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if self.gradient_migration.is_some() {
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if let Err((_, e)) = &result {
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log::trace!("Gradient migration measurement compile: {e}");
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}
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continue;
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}
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let type_delta = match result {
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Err((incomplete_delta, e)) => {
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// Clear the click targets while the graph is in an un-renderable state
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document.network_interface.update_click_targets(HashMap::new());
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document.network_interface.update_outlines(HashMap::new());
|
|
document.network_interface.update_vector_modify(HashMap::new());
|
|
|
|
log::trace!("{e}");
|
|
|
|
responses.add(NodeGraphMessage::UpdateTypes {
|
|
resolved_types: incomplete_delta,
|
|
node_graph_errors,
|
|
});
|
|
responses.add(NodeGraphMessage::SendGraph);
|
|
|
|
return Err(format!("Node graph evaluation failed:\n{e}"));
|
|
}
|
|
Ok(result) => result,
|
|
};
|
|
|
|
responses.add(NodeGraphMessage::UpdateTypes {
|
|
resolved_types: type_delta,
|
|
node_graph_errors,
|
|
});
|
|
responses.add(NodeGraphMessage::SendGraph);
|
|
}
|
|
NodeGraphUpdate::EyedropperPreview(raster) => {
|
|
let (data, width, height) = raster.to_flat_u8();
|
|
responses.add(EyedropperToolMessage::PreviewImage { data, width, height });
|
|
}
|
|
NodeGraphUpdate::NodeGraphUpdateMessage(_) => {}
|
|
}
|
|
}
|
|
|
|
Ok(())
|
|
}
|
|
|
|
// TODO: Eventually remove this document upgrade code
|
|
/// Kick off the one-time pre-pass converting legacy bounding-box gradients to absolute space, or no-op if already running.
|
|
/// Returns false when the render should proceed normally instead: the pass already ran this session, so any entries still
|
|
/// pending are unmeasurable ones kept to retry on the next open.
|
|
pub(crate) fn drive_gradient_migration(&mut self, document: &mut DocumentMessageHandler, document_id: DocumentId, resolution: UVec2, scale: f64, responses: &mut VecDeque<Message>) -> bool {
|
|
if self.gradient_migration_attempted.contains(&document_id) {
|
|
return false;
|
|
}
|
|
|
|
match &self.gradient_migration {
|
|
// Already running for this document
|
|
Some(migration) if migration.document_id == document_id => return true,
|
|
// A different document's migration is in progress; cancel it so this one can run (the other restarts when revisited)
|
|
Some(_) => self.gradient_migration = None,
|
|
None => {}
|
|
}
|
|
|
|
// Snapshot the queue but leave `pending_gradient_bbox_bake` populated, so subsequent render requests keep deferring here (and hit the guard above); each entry is removed from the document as its bake lands.
|
|
let remaining: VecDeque<(Vec<NodeId>, NodeId, graphic_types::migrations::legacy::LegacyGradient)> = document.pending_gradient_bbox_bake.iter().cloned().collect();
|
|
let Some((first_network_path, first_fill, first_gradient)) = remaining.front().cloned() else {
|
|
return false;
|
|
};
|
|
|
|
self.gradient_migration = Some(GradientMigration {
|
|
document_id,
|
|
remaining,
|
|
resolution,
|
|
scale,
|
|
});
|
|
self.dispatch_gradient_measurement(document, document_id, first_network_path, first_fill, first_gradient, resolution, scale, responses);
|
|
|
|
true
|
|
}
|
|
|
|
// TODO: Eventually remove this document upgrade code
|
|
/// Run the graph with its export chain redirected down to the (possibly nested) Fill at `network_path`/`fill_node_id`
|
|
/// (so its branch evaluates even when hidden or orphaned) and that node inspected, so its evaluated geometry returns
|
|
/// in the execution response without touching the visible artwork.
|
|
#[allow(clippy::too_many_arguments)]
|
|
fn dispatch_gradient_measurement(
|
|
&mut self,
|
|
document: &mut DocumentMessageHandler,
|
|
document_id: DocumentId,
|
|
network_path: Vec<NodeId>,
|
|
fill_node_id: NodeId,
|
|
gradient: graphic_types::migrations::legacy::LegacyGradient,
|
|
resolution: UVec2,
|
|
scale: f64,
|
|
responses: &mut VecDeque<Message>,
|
|
) {
|
|
let mut network = document.network_interface.document_network().clone();
|
|
|
|
// On this throwaway clone, redirect each level's export down to the Fill, un-hiding the Fill and its enclosing subnetworks so it's measured as a real Fill rather than a passthrough.
|
|
// But upstream generators keep their visibility, so a hidden one intentionally contributes no geometry.
|
|
let full_path: Vec<NodeId> = network_path.iter().copied().chain(std::iter::once(fill_node_id)).collect();
|
|
if !redirect_export_chain(&mut network, &full_path) {
|
|
// The fill was deleted or is otherwise unreachable, so drop its stale entry instead of retrying it on every open
|
|
log::warn!("Gradient migration: could not redirect the document network's export chain to fill node {fill_node_id:?}; dropping its pending gradient bake");
|
|
remove_pending_gradient_bake(document, &network_path, fill_node_id);
|
|
self.advance_gradient_migration(document, document_id, responses);
|
|
return;
|
|
}
|
|
|
|
let resources = document.resources.registry.clone();
|
|
if self
|
|
.runtime_io
|
|
.send(GraphRuntimeRequest::GraphUpdate(GraphUpdate {
|
|
network,
|
|
resources,
|
|
node_to_inspect: full_path.clone(),
|
|
}))
|
|
.is_err()
|
|
{
|
|
log::error!("Gradient migration: failed to send measurement graph update");
|
|
self.advance_gradient_migration(document, document_id, responses);
|
|
return;
|
|
}
|
|
|
|
// Force the next normal render to recompile and re-send the real, non-redirected network
|
|
self.node_graph_hash = 0;
|
|
self.previous_node_to_inspect = full_path;
|
|
|
|
let viewport = Footprint {
|
|
transform: document.metadata().document_to_viewport,
|
|
resolution,
|
|
..Default::default()
|
|
};
|
|
let render_config = RenderConfig {
|
|
viewport,
|
|
scale,
|
|
time: Default::default(),
|
|
pointer: DVec2::ZERO,
|
|
export_format: ExportFormat::Svg,
|
|
render_mode: document.render_mode,
|
|
for_export: false,
|
|
for_eyedropper: false,
|
|
};
|
|
let execution_id = self.queue_execution(render_config);
|
|
self.futures.push_back((
|
|
execution_id,
|
|
ExecutionContext {
|
|
export_config: None,
|
|
document_id,
|
|
measure_fill: Some((network_path, fill_node_id, gradient)),
|
|
},
|
|
));
|
|
}
|
|
|
|
// TODO: Eventually remove this document upgrade code
|
|
/// Bake the just-measured fill's gradient transform into absolute space using its evaluated geometry, then advance the queue.
|
|
fn handle_gradient_measurement(
|
|
&mut self,
|
|
document: &mut DocumentMessageHandler,
|
|
document_id: DocumentId,
|
|
bake_target: (Vec<NodeId>, NodeId, graphic_types::migrations::legacy::LegacyGradient),
|
|
inspect_result: Option<InspectResult>,
|
|
responses: &mut VecDeque<Message>,
|
|
) {
|
|
let (network_path, fill_node_id, gradient) = bake_target;
|
|
|
|
// Ignore a stale response whose fill is no longer the one being measured (a re-dispatch after a document switch can leave two measurements in flight for the same entry)
|
|
let is_current = self
|
|
.gradient_migration
|
|
.as_ref()
|
|
.and_then(|migration| migration.remaining.front())
|
|
.is_some_and(|(front_path, front_fill, _)| *front_fill == fill_node_id && *front_path == network_path);
|
|
if !is_current {
|
|
return;
|
|
}
|
|
|
|
match inspect_result.and_then(|mut result| result.take_data()).and_then(|data| measure_fill_geometry(&data)) {
|
|
Some((bounding_box, item_transform)) => {
|
|
// Skip the bake if the user already placed this gradient themselves, but drop the now-superseded entry either way
|
|
if fill_transform_unbaked(document, &network_path, fill_node_id) {
|
|
let absolute_gradient = gradient.to_absolute(bounding_box, item_transform);
|
|
let gradient_transform = absolute_gradient.transform * absolute_gradient.to_transform();
|
|
let has_transform_input = InputConnector::node(fill_node_id, graphene_std::vector::fill::HasTransformInput::INDEX);
|
|
let transform_input = InputConnector::node(fill_node_id, graphene_std::vector::fill::TransformInput::INDEX);
|
|
document
|
|
.network_interface
|
|
.set_input(&has_transform_input, NodeInput::value(TaggedValue::Bool(true), false), &network_path);
|
|
document
|
|
.network_interface
|
|
.set_input(&transform_input, NodeInput::value(TaggedValue::DAffine2(gradient_transform), false), &network_path);
|
|
}
|
|
|
|
// The transform is settled, so its entry no longer needs to persist for a retry on the next open
|
|
remove_pending_gradient_bake(document, &network_path, fill_node_id);
|
|
}
|
|
// Leave the entry pending so the next open retries it
|
|
None => log::warn!("Gradient migration could not measure geometry for fill node {fill_node_id:?}; leaving its transform unbaked and pending a retry on the next open"),
|
|
}
|
|
|
|
self.advance_gradient_migration(document, document_id, responses);
|
|
}
|
|
|
|
// TODO: Eventually remove this document upgrade code
|
|
/// Move to the next queued fill, or finish the migration and trigger a normal render once the queue is empty.
|
|
fn advance_gradient_migration(&mut self, document: &mut DocumentMessageHandler, document_id: DocumentId, responses: &mut VecDeque<Message>) {
|
|
let next = self.gradient_migration.as_mut().and_then(|migration| {
|
|
migration.remaining.pop_front();
|
|
migration.remaining.front().cloned()
|
|
});
|
|
|
|
if let Some((next_network_path, next_fill, next_gradient)) = next {
|
|
let (resolution, scale) = self.gradient_migration.as_ref().map(|migration| (migration.resolution, migration.scale)).unwrap_or((UVec2::ONE, 1.));
|
|
self.dispatch_gradient_measurement(document, document_id, next_network_path, next_fill, next_gradient, resolution, scale, responses);
|
|
} else {
|
|
// Entries still pending failed to measure; they stay persisted for the next open while this marker stops re-runs this session
|
|
self.cancel_gradient_migration();
|
|
self.gradient_migration_attempted.insert(document_id);
|
|
responses.add(NodeGraphMessage::RunDocumentGraph);
|
|
}
|
|
}
|
|
|
|
// TODO: Eventually remove this document upgrade code
|
|
/// Tear down the in-progress migration and clear the stale inspect target and hash so the next normal render recompiles the real network.
|
|
fn cancel_gradient_migration(&mut self) {
|
|
self.gradient_migration = None;
|
|
self.previous_node_to_inspect = Vec::new();
|
|
self.node_graph_hash = 0;
|
|
}
|
|
|
|
fn process_node_graph_output(&mut self, node_graph_output: TaggedValue, responses: &mut VecDeque<Message>) -> Result<(), String> {
|
|
let TaggedValue::RenderOutput(render_output) = node_graph_output else {
|
|
return Err(format!("Invalid node graph output type: {node_graph_output:#?}"));
|
|
};
|
|
|
|
match render_output.data {
|
|
RenderOutputType::Svg { svg, image_data } => {
|
|
// Convert each linear-light `Image<Color>` into gamma sRGB bytes (the DOM boundary form) before dispatching.
|
|
let rgba8_bytes = |&color: &_| <[u8; 4]>::from(SRGBA8::from(color));
|
|
let image_data = image_data
|
|
.into_iter()
|
|
.map(|(id, image)| RasterizedImage {
|
|
id,
|
|
width: image.width,
|
|
height: image.height,
|
|
pixels: image.data.iter().flat_map(rgba8_bytes).collect::<Vec<u8>>().into(),
|
|
})
|
|
.collect();
|
|
responses.add(FrontendMessage::UpdateImageData { image_data });
|
|
responses.add(FrontendMessage::UpdateDocumentArtwork { svg });
|
|
}
|
|
#[cfg(target_family = "wasm")]
|
|
RenderOutputType::CanvasFrame { canvas_id, resolution } => {
|
|
let svg = format!(
|
|
r#"<svg><foreignObject width="{}" height="{}"><div data-canvas-placeholder="{}" data-is-viewport="true"></div></foreignObject></svg>"#,
|
|
resolution.x, resolution.y, canvas_id,
|
|
);
|
|
responses.add(FrontendMessage::UpdateDocumentArtwork { svg });
|
|
}
|
|
RenderOutputType::Texture { .. } => {}
|
|
_ => return Err(format!("Invalid node graph output type: {:#?}", render_output.data)),
|
|
}
|
|
|
|
let RenderMetadata {
|
|
upstream_footprints,
|
|
local_transforms,
|
|
first_element_source_id,
|
|
click_targets,
|
|
outlines,
|
|
text_frames,
|
|
clip_targets,
|
|
vector_data,
|
|
fill_attributes,
|
|
stroke_attributes,
|
|
backgrounds: _,
|
|
} = render_output.metadata;
|
|
|
|
// Run these update state messages immediately
|
|
responses.add(DocumentMessage::UpdateUpstreamTransforms {
|
|
upstream_footprints,
|
|
local_transforms,
|
|
first_element_source_id,
|
|
});
|
|
responses.add(DocumentMessage::UpdateClickTargets { click_targets });
|
|
responses.add(DocumentMessage::UpdateOutlines { outlines });
|
|
responses.add(DocumentMessage::UpdateTextFrames { text_frames });
|
|
responses.add(DocumentMessage::UpdateClipTargets { clip_targets });
|
|
responses.add(DocumentMessage::UpdateVectorData { vector_data });
|
|
responses.add(DocumentMessage::UpdateFillAttributes { fill_attributes });
|
|
responses.add(DocumentMessage::UpdateStrokeAttributes { stroke_attributes });
|
|
responses.add(DocumentMessage::RenderScrollbars);
|
|
responses.add(DocumentMessage::RenderRulers);
|
|
responses.add(OverlaysMessage::Draw);
|
|
|
|
Ok(())
|
|
}
|
|
|
|
fn process_export(&self, node_graph_output: TaggedValue, export_config: ExportConfig, document: &DocumentMessageHandler, responses: &mut VecDeque<Message>) -> Result<(), String> {
|
|
let ExportConfig {
|
|
file_type,
|
|
name,
|
|
size,
|
|
artboard_name,
|
|
artboard_count,
|
|
..
|
|
} = export_config;
|
|
|
|
let file_extension = match file_type {
|
|
FileType::Svg => "svg",
|
|
FileType::Png => "png",
|
|
FileType::Jpg => "jpg",
|
|
};
|
|
let base_name = match (artboard_name, artboard_count) {
|
|
(Some(artboard_name), count) if count > 1 => format!("{name} - {artboard_name}"),
|
|
_ => name,
|
|
};
|
|
let name = format!("{base_name}.{file_extension}");
|
|
let folder = document.path.as_ref().and_then(|path| path.parent()).map(|parent| parent.to_path_buf());
|
|
|
|
match node_graph_output {
|
|
TaggedValue::RenderOutput(RenderOutput {
|
|
data: RenderOutputType::Svg { svg, .. },
|
|
..
|
|
}) => {
|
|
if file_type == FileType::Svg {
|
|
responses.add(FrontendMessage::TriggerSaveFile {
|
|
name,
|
|
folder,
|
|
content: svg.into_bytes().into(),
|
|
});
|
|
} else {
|
|
let mime = file_type.to_mime().to_string();
|
|
let size = size.as_dvec2().into();
|
|
responses.add(FrontendMessage::TriggerExportImage { svg, name, mime, size });
|
|
}
|
|
}
|
|
#[cfg(feature = "gpu")]
|
|
TaggedValue::RenderOutput(RenderOutput {
|
|
data: RenderOutputType::Buffer { data, width, height },
|
|
..
|
|
}) if file_type != FileType::Svg => {
|
|
use image::buffer::ConvertBuffer;
|
|
use image::{ImageFormat, RgbImage, RgbaImage};
|
|
|
|
let Some(mut image) = RgbaImage::from_raw(width, height, data) else {
|
|
return Err("Failed to create image buffer for export".to_string());
|
|
};
|
|
|
|
let mut encoded = Vec::new();
|
|
let mut cursor = std::io::Cursor::new(&mut encoded);
|
|
|
|
match file_type {
|
|
FileType::Png => {
|
|
let result = image.write_to(&mut cursor, ImageFormat::Png);
|
|
if let Err(err) = result {
|
|
return Err(format!("Failed to encode PNG: {err}"));
|
|
}
|
|
}
|
|
FileType::Jpg => {
|
|
// Composite onto a white background since JPG doesn't support transparency
|
|
for pixel in image.pixels_mut() {
|
|
let [r, g, b, a] = pixel.0;
|
|
let alpha = a as f32 / 255.;
|
|
let blend = |channel: u8| (channel as f32 * alpha + 255. * (1. - alpha)).round() as u8;
|
|
*pixel = image::Rgba([blend(r), blend(g), blend(b), 255]);
|
|
}
|
|
|
|
let image: RgbImage = image.convert();
|
|
let result = image.write_to(&mut cursor, ImageFormat::Jpeg);
|
|
if let Err(err) = result {
|
|
return Err(format!("Failed to encode JPG: {err}"));
|
|
}
|
|
}
|
|
FileType::Svg => {
|
|
return Err("SVG cannot be exported from an image buffer".to_string());
|
|
}
|
|
}
|
|
|
|
responses.add(FrontendMessage::TriggerSaveFile {
|
|
name,
|
|
folder,
|
|
content: encoded.into(),
|
|
});
|
|
}
|
|
_ => {
|
|
return Err(format!("Incorrect render type for exporting to an SVG ({file_type:?}, {node_graph_output})"));
|
|
}
|
|
};
|
|
|
|
Ok(())
|
|
}
|
|
}
|
|
|
|
// TODO: Eventually remove this document upgrade code
|
|
/// Whether the fill node's transform input is still the unset `OptionalDAffine2(None)` placeholder that the migration leaves
|
|
/// behind, meaning its gradient placement has not yet been baked (or set by the user), so a measured bake may safely be written.
|
|
fn fill_transform_unbaked(document: &DocumentMessageHandler, network_path: &[NodeId], fill_node_id: NodeId) -> bool {
|
|
let Some(network) = document.network_interface.document_network().nested_network(network_path) else {
|
|
return false;
|
|
};
|
|
let Some(node) = network.nodes.get(&fill_node_id) else { return false };
|
|
matches!(
|
|
node.inputs.get(graphene_std::vector::fill::HasTransformInput::INDEX).and_then(|input| input.as_value()),
|
|
Some(TaggedValue::Bool(false))
|
|
)
|
|
}
|
|
|
|
// TODO: Eventually remove this document upgrade code
|
|
/// Remove a fill's entry from the document's persisted pending-bake list, either because its bake landed or because it is stale.
|
|
fn remove_pending_gradient_bake(document: &mut DocumentMessageHandler, network_path: &[NodeId], fill_node_id: NodeId) {
|
|
if let Some(index) = document
|
|
.pending_gradient_bbox_bake
|
|
.iter()
|
|
.position(|(path, node_id, _)| *node_id == fill_node_id && path == network_path)
|
|
{
|
|
document.pending_gradient_bbox_bake.remove(index);
|
|
}
|
|
}
|
|
|
|
// TODO: Eventually remove this document upgrade code
|
|
/// Redirect the primary export at each level of `network` down through the subnetwork nodes named by `full_path`,
|
|
/// un-hiding each so the innermost node's branch evaluates. Returns false if any step is missing or not a subnetwork.
|
|
fn redirect_export_chain(network: &mut NodeNetwork, full_path: &[NodeId]) -> bool {
|
|
let Some((node_id, deeper_path)) = full_path.split_first() else { return true };
|
|
|
|
let Some(export) = network.exports.first_mut() else { return false };
|
|
*export = NodeInput::node(*node_id, 0);
|
|
|
|
let Some(node) = network.nodes.get_mut(node_id) else { return false };
|
|
node.visible = true;
|
|
|
|
if deeper_path.is_empty() {
|
|
return true;
|
|
}
|
|
match &mut node.implementation {
|
|
DocumentNodeImplementation::Network(nested) => redirect_export_chain(nested, deeper_path),
|
|
_ => false,
|
|
}
|
|
}
|
|
|
|
// TODO: Eventually remove this document upgrade code
|
|
/// Turn a measured fill node's evaluated geometry into a `[0,1]² -> bounding box` affine plus the geometry's item transform.
|
|
fn measure_fill_geometry(data: &Arc<dyn Any + Send + Sync>) -> Option<(DAffine2, DAffine2)> {
|
|
if let Some(list) = introspected_output::<List<Vector>>(data) {
|
|
let vector = list.element(0)?;
|
|
let item_transform: DAffine2 = list.attribute_cloned_or_default(ATTR_TRANSFORM, 0);
|
|
let bounds = vector.nonzero_bounding_box();
|
|
let bounding_box_affine = DAffine2::from_scale_angle_translation(bounds[1] - bounds[0], 0., bounds[0]);
|
|
return Some((bounding_box_affine, item_transform));
|
|
}
|
|
if let Some(list) = introspected_output::<List<Graphic>>(data) {
|
|
let RenderBoundingBox::Rectangle(bounds) = graphic_list_bounding_box(&list, DAffine2::IDENTITY) else {
|
|
return None;
|
|
};
|
|
let bounding_box_affine = DAffine2::from_scale_angle_translation(bounds[1] - bounds[0], 0., bounds[0]);
|
|
return Some((bounding_box_affine, DAffine2::IDENTITY));
|
|
}
|
|
None
|
|
}
|
|
|
|
// TODO: Eventually remove this document upgrade code
|
|
/// Extract a monitor node's captured output element.
|
|
fn introspected_output<T: Clone + Send + Sync + 'static>(data: &Arc<dyn Any + Send + Sync>) -> Option<T> {
|
|
data.downcast_ref::<T>().cloned()
|
|
}
|
|
|
|
// Re-export for usage by tests in other modules
|
|
#[cfg(test)]
|
|
pub use test::Instrumented;
|
|
|
|
#[cfg(test)]
|
|
mod test {
|
|
use std::sync::Arc;
|
|
|
|
use super::*;
|
|
use crate::messages::portfolio::document::utility_types::network_interface::NodeNetworkInterface;
|
|
use crate::test_utils::test_prelude::{self, NodeGraphLayer};
|
|
use graph_craft::ProtoNodeIdentifier;
|
|
use graph_craft::document::NodeNetwork;
|
|
use graphene_std::NodeInputDecleration;
|
|
use test_prelude::LayerNodeIdentifier;
|
|
|
|
/// Stores all of the monitor nodes that have been attached to a graph
|
|
#[derive(Default)]
|
|
pub struct Instrumented {
|
|
protonodes_by_name: HashMap<ProtoNodeIdentifier, Vec<Vec<Vec<NodeId>>>>,
|
|
protonodes_by_path: HashMap<Vec<NodeId>, Vec<Vec<NodeId>>>,
|
|
}
|
|
|
|
impl Instrumented {
|
|
/// Adds montior nodes to the network
|
|
fn add(&mut self, network: &mut NodeNetwork, path: &mut Vec<NodeId>) {
|
|
// Required to do seperately to satiate the borrow checker.
|
|
let mut monitor_nodes = Vec::new();
|
|
for (id, node) in network.nodes.iter_mut() {
|
|
// Recursively instrument
|
|
if let DocumentNodeImplementation::Network(nested) = &mut node.implementation {
|
|
path.push(*id);
|
|
self.add(nested, path);
|
|
path.pop();
|
|
}
|
|
let mut monitor_node_ids = Vec::with_capacity(node.inputs.len());
|
|
for input in &mut node.inputs {
|
|
let node_id = NodeId::new();
|
|
let old_input = std::mem::replace(input, NodeInput::node(node_id, 0));
|
|
monitor_nodes.push((old_input, node_id));
|
|
path.push(node_id);
|
|
monitor_node_ids.push(path.clone());
|
|
path.pop();
|
|
}
|
|
if let DocumentNodeImplementation::ProtoNode(identifier) = &mut node.implementation {
|
|
path.push(*id);
|
|
self.protonodes_by_name.entry(identifier.clone()).or_default().push(monitor_node_ids.clone());
|
|
self.protonodes_by_path.insert(path.clone(), monitor_node_ids);
|
|
path.pop();
|
|
}
|
|
}
|
|
for (input, monitor_id) in monitor_nodes {
|
|
let monitor_node = DocumentNode {
|
|
inputs: vec![input],
|
|
implementation: DocumentNodeImplementation::ProtoNode(graphene_std::memo::monitor::IDENTIFIER),
|
|
call_argument: graph_craft::generic!(T),
|
|
skip_deduplication: true,
|
|
..Default::default()
|
|
};
|
|
network.nodes.insert(monitor_id, monitor_node);
|
|
}
|
|
}
|
|
|
|
/// Instrument a graph and return a new [Instrumented] state.
|
|
pub fn new(network: &mut NodeNetwork) -> Self {
|
|
let mut instrumented = Self::default();
|
|
instrumented.add(network, &mut Vec::new());
|
|
instrumented
|
|
}
|
|
|
|
fn downcast<Input: NodeInputDecleration>(dynamic: Arc<dyn std::any::Any + Send + Sync>) -> Option<Input::Result>
|
|
where
|
|
Input::Result: Send + Sync + Clone + 'static,
|
|
{
|
|
let element = dynamic.downcast_ref::<Input::Result>().cloned();
|
|
if element.is_none() {
|
|
warn!("cannot downcast type for introspection");
|
|
}
|
|
element
|
|
}
|
|
|
|
/// Grab all of the values of a LEVELED input, which introspects as its
|
|
/// whole legacy list rather than as one element. `T` is the introspected
|
|
/// element type, which differs from the declared one where a conversion
|
|
/// sits downstream of the monitor.
|
|
pub fn grab_all_input_level<'a, Input: NodeInputDecleration + 'a, T: Send + Sync + Clone + 'static>(&'a self, runtime: &'a NodeRuntime) -> impl Iterator<Item = List<T>> + 'a {
|
|
self.protonodes_by_name
|
|
.get(&Input::identifier())
|
|
.map_or([].as_slice(), |x| x.as_slice())
|
|
.iter()
|
|
.filter_map(|inputs| inputs.get(Input::INDEX))
|
|
.filter_map(|input_monitor_node| runtime.executor.introspect(input_monitor_node).ok())
|
|
.filter_map(|dynamic| dynamic.downcast_ref::<List<T>>().cloned())
|
|
}
|
|
|
|
pub fn grab_protonode_input<Input: NodeInputDecleration>(&self, path: &Vec<NodeId>, runtime: &NodeRuntime) -> Option<Input::Result>
|
|
where
|
|
Input::Result: Send + Sync + Clone + 'static,
|
|
{
|
|
let input_monitor_node = self.protonodes_by_path.get(path)?.get(Input::INDEX)?;
|
|
|
|
let dynamic = runtime.executor.introspect(input_monitor_node).ok()?;
|
|
|
|
Self::downcast::<Input>(dynamic)
|
|
}
|
|
|
|
pub fn grab_input_from_layer<Input: NodeInputDecleration>(&self, layer: LayerNodeIdentifier, network_interface: &NodeNetworkInterface, runtime: &NodeRuntime) -> Option<Input::Result>
|
|
where
|
|
Input::Result: Send + Sync + Clone + 'static,
|
|
{
|
|
let node_graph_layer = NodeGraphLayer::new(layer, network_interface);
|
|
let node = node_graph_layer.upstream_node_id_from_protonode(Input::identifier())?;
|
|
self.grab_protonode_input::<Input>(&vec![node], runtime)
|
|
}
|
|
}
|
|
}
|