mirror of
https://github.com/GraphiteEditor/Graphite.git
synced 2026-09-15 22:28:10 +08:00
Rename the repeat nodes to replace "Instance" terminology with "Repeat" (#3794)
* WIP * Move the Mirror node from the module 'vector' to 'graphic' * Update demo art * Fix failing tests Fix tests
This commit is contained in:
@@ -1,4 +1,5 @@
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use core_types::registry::types::SignedInteger;
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use core_types::bounds::{BoundingBox, RenderBoundingBox};
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use core_types::registry::types::{Angle, SignedInteger};
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use core_types::table::{Table, TableRow};
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use core_types::uuid::NodeId;
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use core_types::{AnyHash, CloneVarArgs, Color, Context, Ctx, ExtractAll, OwnedContextImpl};
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@@ -6,9 +7,9 @@ use glam::{DAffine2, DVec2};
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use graphic_types::graphic::{Graphic, IntoGraphicTable};
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use graphic_types::{Artboard, Vector};
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use raster_types::{CPU, GPU, Raster};
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use vector_types::GradientStops;
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use vector_types::{GradientStops, ReferencePoint};
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#[node_macro::node(category("General"), path(graphene_core::vector))]
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#[node_macro::node(category("General"))]
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async fn map<Item: AnyHash + Send + Sync + std::hash::Hash>(
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ctx: impl Ctx + CloneVarArgs + ExtractAll,
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#[implementations(
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@@ -41,6 +42,70 @@ async fn map<Item: AnyHash + Send + Sync + std::hash::Hash>(
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rows
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}
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#[node_macro::node(category("General"))]
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async fn mirror<T: 'n + Send + Clone>(
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_: impl Ctx,
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#[implementations(
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Table<Graphic>,
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Table<Vector>,
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Table<Raster<CPU>>,
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Table<Color>,
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Table<GradientStops>,
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)]
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content: Table<T>,
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#[default(ReferencePoint::Center)] relative_to_bounds: ReferencePoint,
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#[unit(" px")] offset: f64,
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#[range((-90., 90.))] angle: Angle,
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#[default(true)] keep_original: bool,
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) -> Table<T>
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where
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Table<T>: BoundingBox,
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{
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// Normalize the direction vector
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let normal = DVec2::from_angle(angle.to_radians());
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// The mirror reference may be based on the bounding box if an explicit reference point is chosen
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let RenderBoundingBox::Rectangle(bounding_box) = content.bounding_box(DAffine2::IDENTITY, false) else {
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return content;
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};
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let reference_point_location = relative_to_bounds.point_in_bounding_box((bounding_box[0], bounding_box[1]).into());
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let mirror_reference_point = reference_point_location.map(|point| point + normal * offset);
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// Create the reflection matrix
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let reflection = DAffine2::from_mat2_translation(
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glam::DMat2::from_cols(
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DVec2::new(1. - 2. * normal.x * normal.x, -2. * normal.y * normal.x),
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DVec2::new(-2. * normal.x * normal.y, 1. - 2. * normal.y * normal.y),
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),
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DVec2::ZERO,
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);
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// Apply reflection around the reference point
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let reflected_transform = if let Some(mirror_reference_point) = mirror_reference_point {
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DAffine2::from_translation(mirror_reference_point) * reflection * DAffine2::from_translation(-mirror_reference_point)
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} else {
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reflection * DAffine2::from_translation(DVec2::from_angle(angle.to_radians()) * DVec2::splat(-offset))
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};
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let mut result_table = Table::new();
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// Add original instance depending on the keep_original flag
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if keep_original {
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for instance in content.clone().into_iter() {
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result_table.push(instance);
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}
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}
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// Create and add mirrored instance
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for mut row in content.into_iter() {
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row.transform = reflected_transform * row.transform;
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result_table.push(row);
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}
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result_table
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}
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/// Performs internal editor record-keeping that enables tools to target this network's layer.
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/// This node associates the ID of the network's parent layer to every element of output data.
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/// This technical detail may be ignored by users, and will be phased out in the future.
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@@ -42,6 +42,7 @@ raster-nodes = { workspace = true }
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brush-nodes = { workspace = true }
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graphene-core = { workspace = true }
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graphic-nodes = { workspace = true }
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repeat-nodes = { workspace = true }
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# Workspace dependencies
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log = { workspace = true }
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@@ -14,6 +14,7 @@ pub use graphic_types::{Artboard, Graphic, Vector};
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pub use math_nodes;
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pub use path_bool_nodes as path_bool;
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pub use raster_nodes;
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pub use repeat_nodes;
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pub use text_nodes;
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pub use transform_nodes;
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pub use vector_nodes;
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@@ -64,6 +65,10 @@ pub mod transform {
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pub use vector_types::ReferencePoint;
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}
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pub mod repeat {
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pub use repeat_nodes::repeat_nodes::*;
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}
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pub mod math {
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pub use core_types::math::quad;
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32
node-graph/nodes/repeat/Cargo.toml
Normal file
32
node-graph/nodes/repeat/Cargo.toml
Normal file
@@ -0,0 +1,32 @@
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[package]
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name = "repeat-nodes"
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version = "0.1.0"
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edition = "2024"
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description = "Repeat operation nodes for Graphene"
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authors = ["Graphite Authors <contact@graphite.art>"]
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license = "MIT OR Apache-2.0"
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[features]
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default = ["serde"]
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[dependencies]
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# Local dependencies
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core-types = { workspace = true }
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vector-types = { workspace = true }
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raster-types = { workspace = true }
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node-macro = { workspace = true }
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graphic-types = { workspace = true }
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# Workspace dependencies
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dyn-any = { workspace = true }
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glam = { workspace = true }
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log = { workspace = true }
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# Optional workspace dependencies
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serde = { workspace = true, optional = true }
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[dev-dependencies]
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graphene-core = { workspace = true }
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vector-nodes = { workspace = true }
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tokio = { workspace = true, features = ["macros", "rt"] }
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kurbo = { workspace = true }
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8
node-graph/nodes/repeat/src/lib.rs
Normal file
8
node-graph/nodes/repeat/src/lib.rs
Normal file
@@ -0,0 +1,8 @@
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pub mod repeat_nodes;
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// Re-export for convenience
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pub use core_types as gcore;
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pub use graphic_types;
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pub use raster_types;
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pub use repeat_nodes::*;
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pub use vector_types;
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291
node-graph/nodes/repeat/src/repeat_nodes.rs
Normal file
291
node-graph/nodes/repeat/src/repeat_nodes.rs
Normal file
@@ -0,0 +1,291 @@
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use crate::gcore::Context;
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use core::f64::consts::TAU;
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use core_types::registry::types::{Angle, IntegerCount, PixelSize};
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use core_types::table::{Table, TableRowRef};
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use core_types::{CloneVarArgs, Color, Ctx, ExtractAll, InjectVarArgs, OwnedContextImpl};
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use glam::{DAffine2, DVec2};
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use graphic_types::{Graphic, Vector};
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use raster_types::{CPU, Raster};
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use vector_types::GradientStops;
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#[node_macro::node(category("Repeat"))]
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async fn repeat<T: Into<Graphic> + Default + Send + Clone + 'static>(
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ctx: impl ExtractAll + CloneVarArgs + Ctx,
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#[implementations(
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Context -> Table<Graphic>,
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Context -> Table<Vector>,
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Context -> Table<Raster<CPU>>,
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Context -> Table<Color>,
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Context -> Table<GradientStops>,
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)]
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instance: impl Node<'n, Context<'static>, Output = Table<T>>,
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#[default(1)] count: u64,
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reverse: bool,
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) -> Table<T> {
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// Someday this node can have the option to generate infinitely instead of a fixed count (basically `std::iter::repeat`).
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let count = count.max(1) as usize;
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let mut result_table = Table::new();
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for index in 0..count {
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let index = if reverse { count - index - 1 } else { index };
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let new_ctx = OwnedContextImpl::from(ctx.clone()).with_index(index);
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let generated_instance = instance.eval(new_ctx.into_context()).await;
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for generated_row in generated_instance.into_iter() {
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result_table.push(generated_row);
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}
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}
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result_table
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}
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#[node_macro::node(category("Repeat"))]
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pub async fn repeat_array<T: Into<Graphic> + Default + Send + Clone + 'static>(
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ctx: impl ExtractAll + CloneVarArgs + Ctx,
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#[implementations(
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Context -> Table<Graphic>,
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Context -> Table<Vector>,
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Context -> Table<Raster<CPU>>,
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Context -> Table<Color>,
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Context -> Table<GradientStops>,
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)]
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instance: impl Node<'n, Context<'static>, Output = Table<T>>,
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#[default(100., 100.)]
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// TODO: When using a custom Properties panel layout in document_node_definitions.rs and this default is set, the widget weirdly doesn't show up in the Properties panel. Investigation is needed.
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direction: PixelSize,
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angle: Angle,
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#[default(5)] count: IntegerCount,
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) -> Table<T> {
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let angle = angle.to_radians();
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let count = count.max(1);
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let total = (count - 1) as f64;
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let mut result_table = Table::new();
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for index in 0..count {
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let angle = index as f64 * angle / total;
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let translation = index as f64 * direction / total;
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let transform = DAffine2::from_angle(angle) * DAffine2::from_translation(translation);
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let new_ctx = OwnedContextImpl::from(ctx.clone()).with_index(index as usize);
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let generated_instance = instance.eval(new_ctx.into_context()).await;
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for row in generated_instance.iter() {
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let mut row = row.into_cloned();
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let local_translation = DAffine2::from_translation(row.transform.translation);
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let local_matrix = DAffine2::from_mat2(row.transform.matrix2);
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row.transform = local_translation * transform * local_matrix;
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result_table.push(row);
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}
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}
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result_table
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}
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#[node_macro::node(category("Repeat"))]
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async fn repeat_radial<T: Into<Graphic> + Default + Send + Clone + 'static>(
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ctx: impl ExtractAll + CloneVarArgs + Ctx,
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#[implementations(
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Context -> Table<Graphic>,
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Context -> Table<Vector>,
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Context -> Table<Raster<CPU>>,
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Context -> Table<Color>,
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Context -> Table<GradientStops>,
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)]
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instance: impl Node<'n, Context<'static>, Output = Table<T>>,
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start_angle: Angle,
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#[unit(" px")]
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#[default(5)]
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radius: f64,
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#[default(5)] count: IntegerCount,
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) -> Table<T> {
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let count = count.max(1);
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let mut result_table = Table::new();
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for index in 0..count {
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let angle = DAffine2::from_angle((TAU / count as f64) * index as f64 + start_angle.to_radians());
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let translation = DAffine2::from_translation(radius * DVec2::Y);
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let transform = angle * translation;
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let new_ctx = OwnedContextImpl::from(ctx.clone()).with_index(index as usize);
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let generated_instance = instance.eval(new_ctx.into_context()).await;
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for row in generated_instance.iter() {
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let mut row = row.into_cloned();
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let local_translation = DAffine2::from_translation(row.transform.translation);
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let local_matrix = DAffine2::from_mat2(row.transform.matrix2);
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row.transform = local_translation * transform * local_matrix;
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result_table.push(row);
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}
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}
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result_table
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}
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#[node_macro::node(category("Repeat"), name("Repeat on Points"))]
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async fn repeat_on_points<T: Into<Graphic> + Default + Send + Clone + 'static>(
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ctx: impl ExtractAll + CloneVarArgs + Sync + Ctx + InjectVarArgs,
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points: Table<Vector>,
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#[implementations(
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Context -> Table<Graphic>,
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Context -> Table<Vector>,
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Context -> Table<Raster<CPU>>,
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Context -> Table<Color>,
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Context -> Table<GradientStops>,
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)]
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instance: impl Node<'n, Context<'static>, Output = Table<T>>,
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reverse: bool,
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) -> Table<T> {
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let mut result_table = Table::new();
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for TableRowRef { element: points, transform, .. } in points.iter() {
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let mut iteration = async |index, point| {
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let transformed_point = transform.transform_point2(point);
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let new_ctx = OwnedContextImpl::from(ctx.clone()).with_index(index).with_position(transformed_point);
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let generated_instance = instance.eval(new_ctx.into_context()).await;
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for mut generated_row in generated_instance.into_iter() {
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generated_row.transform.translation = transformed_point;
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result_table.push(generated_row);
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}
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};
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let range = points.point_domain.positions().iter().enumerate();
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if reverse {
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for (index, &point) in range.rev() {
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iteration(index, point).await;
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}
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} else {
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for (index, &point) in range {
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iteration(index, point).await;
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}
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}
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}
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result_table
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}
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#[cfg(test)]
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mod test {
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use super::*;
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use core_types::Ctx;
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use core_types::Node;
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use core_types::transform::Footprint;
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use glam::DVec2;
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use graphene_core::ReadPositionNode;
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use graphene_core::extract_xy::{ExtractXyNode, XY};
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use graphic_types::Vector;
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use kurbo::Shape;
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use kurbo::{BezPath, DEFAULT_ACCURACY, Rect};
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use std::future::Future;
|
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use std::pin::Pin;
|
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use vector_nodes::generator_nodes::RectangleNode;
|
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use vector_types::subpath::Subpath;
|
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|
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fn vector_node_from_bezpath(bezpath: BezPath) -> Table<Vector> {
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Table::new_from_element(Vector::from_bezpath(bezpath))
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}
|
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|
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#[derive(Clone)]
|
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pub struct FutureWrapperNode<T: Clone>(T);
|
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|
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impl<'i, I: Ctx, T: 'i + Clone + Send> Node<'i, I> for FutureWrapperNode<T> {
|
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type Output = Pin<Box<dyn Future<Output = T> + 'i + Send>>;
|
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fn eval(&'i self, _input: I) -> Self::Output {
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let value = self.0.clone();
|
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Box::pin(async move { value })
|
||||
}
|
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}
|
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|
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#[tokio::test]
|
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async fn repeat_on_points_test() {
|
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let context = OwnedContextImpl::default().into_context();
|
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let rect = RectangleNode::new(
|
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FutureWrapperNode(()),
|
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ExtractXyNode::new(ReadPositionNode::new(FutureWrapperNode(()), FutureWrapperNode(0)), FutureWrapperNode(XY::Y)),
|
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FutureWrapperNode(2_f64),
|
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FutureWrapperNode(false),
|
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FutureWrapperNode(0_f64),
|
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FutureWrapperNode(false),
|
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);
|
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|
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let positions = [DVec2::new(40., 20.), DVec2::ONE, DVec2::new(-42., 9.), DVec2::new(10., 345.)];
|
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let points = Table::new_from_element(Vector::from_subpath(Subpath::from_anchors(positions, false)));
|
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let generated = super::repeat_on_points(context, points, &rect, false).await;
|
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assert_eq!(generated.len(), positions.len());
|
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for (position, generated_row) in positions.into_iter().zip(generated.iter()) {
|
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let bounds = generated_row.element.bounding_box_with_transform(*generated_row.transform).unwrap();
|
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assert!(position.abs_diff_eq((bounds[0] + bounds[1]) / 2., 1e-10));
|
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assert_eq!((bounds[1] - bounds[0]).x, position.y);
|
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}
|
||||
}
|
||||
|
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#[tokio::test]
|
||||
async fn repeat() {
|
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let direction = DVec2::X * 1.5;
|
||||
let count = 3;
|
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let context = OwnedContextImpl::default().into_context();
|
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let repeated = super::repeat_array(
|
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context,
|
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&FutureWrapperNode(vector_node_from_bezpath(Rect::new(0., 0., 1., 1.).to_path(DEFAULT_ACCURACY))),
|
||||
direction,
|
||||
0.,
|
||||
count,
|
||||
)
|
||||
.await;
|
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let vector_table = vector_nodes::flatten_path(Footprint::default(), repeated).await;
|
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let vector = vector_table.iter().next().unwrap().element;
|
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assert_eq!(vector.region_manipulator_groups().count(), 3);
|
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for (index, (_, manipulator_groups)) in vector.region_manipulator_groups().enumerate() {
|
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assert!((manipulator_groups[0].anchor - direction * index as f64 / (count - 1) as f64).length() < 1e-5);
|
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}
|
||||
}
|
||||
|
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#[tokio::test]
|
||||
async fn repeat_transform_position() {
|
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let direction = DVec2::new(12., 10.);
|
||||
let count = 8;
|
||||
let context = OwnedContextImpl::default().into_context();
|
||||
let repeated = super::repeat_array(
|
||||
context,
|
||||
&FutureWrapperNode(vector_node_from_bezpath(Rect::new(0., 0., 1., 1.).to_path(DEFAULT_ACCURACY))),
|
||||
direction,
|
||||
0.,
|
||||
count,
|
||||
)
|
||||
.await;
|
||||
let vector_table = vector_nodes::flatten_path(Footprint::default(), repeated).await;
|
||||
let vector = vector_table.iter().next().unwrap().element;
|
||||
assert_eq!(vector.region_manipulator_groups().count(), 8);
|
||||
for (index, (_, manipulator_groups)) in vector.region_manipulator_groups().enumerate() {
|
||||
assert!((manipulator_groups[0].anchor - direction * index as f64 / (count - 1) as f64).length() < 1e-5);
|
||||
}
|
||||
}
|
||||
|
||||
#[tokio::test]
|
||||
async fn repeat_radial() {
|
||||
let context = OwnedContextImpl::default().into_context();
|
||||
let repeated = super::repeat_radial(context, &FutureWrapperNode(vector_node_from_bezpath(Rect::new(-1., -1., 1., 1.).to_path(DEFAULT_ACCURACY))), 45., 4., 8).await;
|
||||
let vector_table = vector_nodes::flatten_path(Footprint::default(), repeated).await;
|
||||
let vector = vector_table.iter().next().unwrap().element;
|
||||
assert_eq!(vector.region_manipulator_groups().count(), 8);
|
||||
|
||||
for (index, (_, manipulator_groups)) in vector.region_manipulator_groups().enumerate() {
|
||||
let expected_angle = (index as f64 + 1.) * 45.;
|
||||
|
||||
let center = (manipulator_groups[0].anchor + manipulator_groups[2].anchor) / 2.;
|
||||
let actual_angle = DVec2::Y.angle_to(center).to_degrees();
|
||||
|
||||
assert!((actual_angle - expected_angle).abs() % 360. < 1e-5, "Expected {expected_angle} found {actual_angle}");
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -18,6 +18,7 @@ node-macro = { workspace = true }
|
||||
|
||||
# Workspace dependencies
|
||||
glam = { workspace = true }
|
||||
rand = { workspace = true }
|
||||
|
||||
# Optional workspace dependencies
|
||||
serde = { workspace = true, optional = true }
|
||||
|
||||
@@ -15,6 +15,7 @@ core-types = { workspace = true }
|
||||
vector-types = { workspace = true }
|
||||
graphic-types = { workspace = true }
|
||||
node-macro = { workspace = true }
|
||||
repeat-nodes = { workspace = true }
|
||||
|
||||
# Workspace dependencies
|
||||
dyn-any = { workspace = true }
|
||||
|
||||
@@ -1,132 +0,0 @@
|
||||
use core_types::Color;
|
||||
use core_types::table::{Table, TableRowRef};
|
||||
use core_types::{CloneVarArgs, Context, Ctx, ExtractAll, OwnedContextImpl};
|
||||
use graphic_types::Graphic;
|
||||
use graphic_types::Vector;
|
||||
use graphic_types::raster_types::{CPU, Raster};
|
||||
use vector_types::GradientStops;
|
||||
|
||||
#[node_macro::node(name("Instance on Points"), category("Instancing"), path(core_types::vector))]
|
||||
async fn instance_on_points<T: Into<Graphic> + Default + Send + Clone + 'static>(
|
||||
ctx: impl ExtractAll + CloneVarArgs + Sync + Ctx,
|
||||
points: Table<Vector>,
|
||||
#[implementations(
|
||||
Context -> Table<Graphic>,
|
||||
Context -> Table<Vector>,
|
||||
Context -> Table<Raster<CPU>>,
|
||||
Context -> Table<Color>,
|
||||
Context -> Table<GradientStops>,
|
||||
)]
|
||||
instance: impl Node<'n, Context<'static>, Output = Table<T>>,
|
||||
reverse: bool,
|
||||
) -> Table<T> {
|
||||
let mut result_table = Table::new();
|
||||
|
||||
for TableRowRef { element: points, transform, .. } in points.iter() {
|
||||
let mut iteration = async |index, point| {
|
||||
let transformed_point = transform.transform_point2(point);
|
||||
|
||||
let new_ctx = OwnedContextImpl::from(ctx.clone()).with_index(index).with_position(transformed_point);
|
||||
let generated_instance = instance.eval(new_ctx.into_context()).await;
|
||||
|
||||
for mut generated_row in generated_instance.into_iter() {
|
||||
generated_row.transform.translation = transformed_point;
|
||||
result_table.push(generated_row);
|
||||
}
|
||||
};
|
||||
|
||||
let range = points.point_domain.positions().iter().enumerate();
|
||||
if reverse {
|
||||
for (index, &point) in range.rev() {
|
||||
iteration(index, point).await;
|
||||
}
|
||||
} else {
|
||||
for (index, &point) in range {
|
||||
iteration(index, point).await;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
result_table
|
||||
}
|
||||
|
||||
#[node_macro::node(category("Instancing"), path(core_types::vector))]
|
||||
async fn instance_repeat<T: Into<Graphic> + Default + Send + Clone + 'static>(
|
||||
ctx: impl ExtractAll + CloneVarArgs + Ctx,
|
||||
#[implementations(
|
||||
Context -> Table<Graphic>,
|
||||
Context -> Table<Vector>,
|
||||
Context -> Table<Raster<CPU>>,
|
||||
Context -> Table<Color>,
|
||||
Context -> Table<GradientStops>,
|
||||
)]
|
||||
instance: impl Node<'n, Context<'static>, Output = Table<T>>,
|
||||
#[default(1)] count: u64,
|
||||
reverse: bool,
|
||||
) -> Table<T> {
|
||||
let count = count.max(1) as usize;
|
||||
|
||||
let mut result_table = Table::new();
|
||||
|
||||
for index in 0..count {
|
||||
let index = if reverse { count - index - 1 } else { index };
|
||||
|
||||
let new_ctx = OwnedContextImpl::from(ctx.clone()).with_index(index);
|
||||
let generated_instance = instance.eval(new_ctx.into_context()).await;
|
||||
|
||||
for generated_row in generated_instance.into_iter() {
|
||||
result_table.push(generated_row);
|
||||
}
|
||||
}
|
||||
|
||||
result_table
|
||||
}
|
||||
|
||||
#[cfg(test)]
|
||||
mod test {
|
||||
use super::*;
|
||||
use crate::generator_nodes::RectangleNode;
|
||||
use core_types::Ctx;
|
||||
use core_types::Node;
|
||||
use glam::DVec2;
|
||||
use graphene_core::ReadPositionNode;
|
||||
use graphene_core::extract_xy::{ExtractXyNode, XY};
|
||||
use graphic_types::Vector;
|
||||
use std::future::Future;
|
||||
use std::pin::Pin;
|
||||
use vector_types::subpath::Subpath;
|
||||
|
||||
#[derive(Clone)]
|
||||
pub struct FutureWrapperNode<T: Clone>(T);
|
||||
|
||||
impl<'i, I: Ctx, T: 'i + Clone + Send> Node<'i, I> for FutureWrapperNode<T> {
|
||||
type Output = Pin<Box<dyn Future<Output = T> + 'i + Send>>;
|
||||
fn eval(&'i self, _input: I) -> Self::Output {
|
||||
let value = self.0.clone();
|
||||
Box::pin(async move { value })
|
||||
}
|
||||
}
|
||||
|
||||
#[tokio::test]
|
||||
async fn instance_on_points_test() {
|
||||
let owned = OwnedContextImpl::default().into_context();
|
||||
let rect = RectangleNode::new(
|
||||
FutureWrapperNode(()),
|
||||
ExtractXyNode::new(ReadPositionNode::new(FutureWrapperNode(()), FutureWrapperNode(0)), FutureWrapperNode(XY::Y)),
|
||||
FutureWrapperNode(2_f64),
|
||||
FutureWrapperNode(false),
|
||||
FutureWrapperNode(0_f64),
|
||||
FutureWrapperNode(false),
|
||||
);
|
||||
|
||||
let positions = [DVec2::new(40., 20.), DVec2::ONE, DVec2::new(-42., 9.), DVec2::new(10., 345.)];
|
||||
let points = Table::new_from_element(Vector::from_subpath(Subpath::from_anchors(positions, false)));
|
||||
let generated = super::instance_on_points(owned, points, &rect, false).await;
|
||||
assert_eq!(generated.len(), positions.len());
|
||||
for (position, generated_row) in positions.into_iter().zip(generated.iter()) {
|
||||
let bounds = generated_row.element.bounding_box_with_transform(*generated_row.transform).unwrap();
|
||||
assert!(position.abs_diff_eq((bounds[0] + bounds[1]) / 2., 1e-10));
|
||||
assert_eq!((bounds[1] - bounds[0]).x, position.y);
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -1,5 +1,4 @@
|
||||
pub mod generator_nodes;
|
||||
pub mod instance;
|
||||
pub mod merge_qr_squares;
|
||||
pub mod vector_modification_nodes;
|
||||
mod vector_nodes;
|
||||
@@ -11,7 +10,6 @@ extern crate log;
|
||||
pub use core_types as gcore;
|
||||
pub use generator_nodes::*;
|
||||
pub use graphic_types;
|
||||
pub use instance::*;
|
||||
pub use vector_modification_nodes::*;
|
||||
pub use vector_nodes::*;
|
||||
pub use vector_types;
|
||||
|
||||
@@ -1,8 +1,8 @@
|
||||
use core::cmp::Ordering;
|
||||
use core::f64::consts::PI;
|
||||
use core::f64::consts::{PI, TAU};
|
||||
use core::hash::{Hash, Hasher};
|
||||
use core_types::bounds::{BoundingBox, RenderBoundingBox};
|
||||
use core_types::registry::types::{Angle, IntegerCount, Length, Multiplier, Percentage, PixelLength, PixelSize, Progression, SeedValue};
|
||||
use core_types::registry::types::{Angle, Length, Multiplier, Percentage, PixelLength, Progression, SeedValue};
|
||||
use core_types::table::{Table, TableRow, TableRowMut};
|
||||
use core_types::transform::{Footprint, Transform};
|
||||
use core_types::{CloneVarArgs, Color, Context, Ctx, ExtractAll, OwnedContextImpl};
|
||||
@@ -13,22 +13,18 @@ use graphic_types::{Graphic, IntoGraphicTable};
|
||||
use kurbo::{Affine, BezPath, DEFAULT_ACCURACY, Line, ParamCurve, PathEl, PathSeg, Shape};
|
||||
use rand::{Rng, SeedableRng};
|
||||
use std::collections::hash_map::DefaultHasher;
|
||||
use std::f64::consts::TAU;
|
||||
use vector_types::subpath::{BezierHandles, ManipulatorGroup};
|
||||
use vector_types::vector::PointDomain;
|
||||
use vector_types::vector::ReferencePoint;
|
||||
use vector_types::vector::algorithms::bezpath_algorithms::eval_pathseg_euclidean;
|
||||
use vector_types::vector::algorithms::bezpath_algorithms::{self, TValue, evaluate_bezpath, sample_polyline_on_bezpath, split_bezpath, tangent_on_bezpath};
|
||||
use vector_types::vector::algorithms::bezpath_algorithms::{self, TValue, eval_pathseg_euclidean, evaluate_bezpath, sample_polyline_on_bezpath, split_bezpath, tangent_on_bezpath};
|
||||
use vector_types::vector::algorithms::merge_by_distance::MergeByDistanceExt;
|
||||
use vector_types::vector::algorithms::offset_subpath::offset_bezpath;
|
||||
use vector_types::vector::algorithms::spline::{solve_spline_first_handle_closed, solve_spline_first_handle_open};
|
||||
use vector_types::vector::misc::{CentroidType, ExtrudeJoiningAlgorithm, RowsOrColumns, bezpath_from_manipulator_groups, bezpath_to_manipulator_groups, point_to_dvec2};
|
||||
use vector_types::vector::misc::{MergeByDistanceAlgorithm, PointSpacingType, is_linear};
|
||||
use vector_types::vector::misc::{handles_to_segment, segment_to_handles};
|
||||
use vector_types::vector::style::{Fill, Gradient, GradientStops, Stroke};
|
||||
use vector_types::vector::style::{PaintOrder, StrokeAlign, StrokeCap, StrokeJoin};
|
||||
use vector_types::vector::{FillId, RegionId};
|
||||
use vector_types::vector::{PointId, SegmentDomain, SegmentId, StrokeId, VectorExt};
|
||||
use vector_types::vector::misc::{
|
||||
CentroidType, ExtrudeJoiningAlgorithm, MergeByDistanceAlgorithm, PointSpacingType, RowsOrColumns, bezpath_from_manipulator_groups, bezpath_to_manipulator_groups, handles_to_segment, is_linear,
|
||||
point_to_dvec2, segment_to_handles,
|
||||
};
|
||||
use vector_types::vector::style::{Fill, Gradient, GradientStops, PaintOrder, Stroke, StrokeAlign, StrokeCap, StrokeJoin};
|
||||
use vector_types::vector::{FillId, PointId, RegionId, SegmentDomain, SegmentId, StrokeId, VectorExt};
|
||||
|
||||
/// Implemented for types that can be converted to an iterator of vector rows.
|
||||
/// Used for the fill and stroke node so they can be used on `Table<Graphic>` or `Table<Vector>`.
|
||||
@@ -226,75 +222,6 @@ where
|
||||
content
|
||||
}
|
||||
|
||||
#[node_macro::node(category("Instancing"), path(core_types::vector))]
|
||||
async fn repeat<I: 'n + Send + Clone>(
|
||||
_: impl Ctx,
|
||||
// TODO: Implement other graphical types.
|
||||
#[implementations(Table<Graphic>, Table<Vector>, Table<Raster<CPU>>, Table<Color>, Table<GradientStops>)] instance: Table<I>,
|
||||
#[default(100., 100.)]
|
||||
// TODO: When using a custom Properties panel layout in document_node_definitions.rs and this default is set, the widget weirdly doesn't show up in the Properties panel. Investigation is needed.
|
||||
direction: PixelSize,
|
||||
angle: Angle,
|
||||
#[default(5)] count: IntegerCount,
|
||||
) -> Table<I> {
|
||||
let angle = angle.to_radians();
|
||||
let count = count.max(1);
|
||||
let total = (count - 1) as f64;
|
||||
|
||||
let mut result_table = Table::new();
|
||||
|
||||
for index in 0..count {
|
||||
let angle = index as f64 * angle / total;
|
||||
let translation = index as f64 * direction / total;
|
||||
let transform = DAffine2::from_angle(angle) * DAffine2::from_translation(translation);
|
||||
|
||||
for row in instance.iter() {
|
||||
let mut row = row.into_cloned();
|
||||
|
||||
let local_translation = DAffine2::from_translation(row.transform.translation);
|
||||
let local_matrix = DAffine2::from_mat2(row.transform.matrix2);
|
||||
row.transform = local_translation * transform * local_matrix;
|
||||
|
||||
result_table.push(row);
|
||||
}
|
||||
}
|
||||
|
||||
result_table
|
||||
}
|
||||
|
||||
#[node_macro::node(category("Instancing"), path(core_types::vector))]
|
||||
async fn circular_repeat<I: 'n + Send + Clone>(
|
||||
_: impl Ctx,
|
||||
#[implementations(Table<Graphic>, Table<Vector>, Table<Raster<CPU>>, Table<Color>, Table<GradientStops>)] instance: Table<I>,
|
||||
start_angle: Angle,
|
||||
#[unit(" px")]
|
||||
#[default(5)]
|
||||
radius: f64,
|
||||
#[default(5)] count: IntegerCount,
|
||||
) -> Table<I> {
|
||||
let count = count.max(1);
|
||||
|
||||
let mut result_table = Table::new();
|
||||
|
||||
for index in 0..count {
|
||||
let angle = DAffine2::from_angle((TAU / count as f64) * index as f64 + start_angle.to_radians());
|
||||
let translation = DAffine2::from_translation(radius * DVec2::Y);
|
||||
let transform = angle * translation;
|
||||
|
||||
for row in instance.iter() {
|
||||
let mut row = row.into_cloned();
|
||||
|
||||
let local_translation = DAffine2::from_translation(row.transform.translation);
|
||||
let local_matrix = DAffine2::from_mat2(row.transform.matrix2);
|
||||
row.transform = local_translation * transform * local_matrix;
|
||||
|
||||
result_table.push(row);
|
||||
}
|
||||
}
|
||||
|
||||
result_table
|
||||
}
|
||||
|
||||
#[node_macro::node(name("Copy to Points"), category("Instancing"), path(core_types::vector))]
|
||||
async fn copy_to_points<I: 'n + Send + Clone>(
|
||||
_: impl Ctx,
|
||||
@@ -373,63 +300,6 @@ async fn copy_to_points<I: 'n + Send + Clone>(
|
||||
result_table
|
||||
}
|
||||
|
||||
#[node_macro::node(category("Instancing"), path(core_types::vector))]
|
||||
async fn mirror<I: 'n + Send + Clone>(
|
||||
_: impl Ctx,
|
||||
#[implementations(Table<Graphic>, Table<Vector>, Table<Raster<CPU>>, Table<Color>, Table<GradientStops>)] content: Table<I>,
|
||||
#[default(ReferencePoint::Center)] relative_to_bounds: ReferencePoint,
|
||||
#[unit(" px")] offset: f64,
|
||||
#[range((-90., 90.))] angle: Angle,
|
||||
#[default(true)] keep_original: bool,
|
||||
) -> Table<I>
|
||||
where
|
||||
Table<I>: BoundingBox,
|
||||
{
|
||||
// Normalize the direction vector
|
||||
let normal = DVec2::from_angle(angle.to_radians());
|
||||
|
||||
// The mirror reference may be based on the bounding box if an explicit reference point is chosen
|
||||
let RenderBoundingBox::Rectangle(bounding_box) = content.bounding_box(DAffine2::IDENTITY, false) else {
|
||||
return content;
|
||||
};
|
||||
|
||||
let reference_point_location = relative_to_bounds.point_in_bounding_box((bounding_box[0], bounding_box[1]).into());
|
||||
let mirror_reference_point = reference_point_location.map(|point| point + normal * offset);
|
||||
|
||||
// Create the reflection matrix
|
||||
let reflection = DAffine2::from_mat2_translation(
|
||||
glam::DMat2::from_cols(
|
||||
DVec2::new(1. - 2. * normal.x * normal.x, -2. * normal.y * normal.x),
|
||||
DVec2::new(-2. * normal.x * normal.y, 1. - 2. * normal.y * normal.y),
|
||||
),
|
||||
DVec2::ZERO,
|
||||
);
|
||||
|
||||
// Apply reflection around the reference point
|
||||
let reflected_transform = if let Some(mirror_reference_point) = mirror_reference_point {
|
||||
DAffine2::from_translation(mirror_reference_point) * reflection * DAffine2::from_translation(-mirror_reference_point)
|
||||
} else {
|
||||
reflection * DAffine2::from_translation(DVec2::from_angle(angle.to_radians()) * DVec2::splat(-offset))
|
||||
};
|
||||
|
||||
let mut result_table = Table::new();
|
||||
|
||||
// Add original instance depending on the keep_original flag
|
||||
if keep_original {
|
||||
for instance in content.clone().into_iter() {
|
||||
result_table.push(instance);
|
||||
}
|
||||
}
|
||||
|
||||
// Create and add mirrored instance
|
||||
for mut row in content.into_iter() {
|
||||
row.transform = reflected_transform * row.transform;
|
||||
result_table.push(row);
|
||||
}
|
||||
|
||||
result_table
|
||||
}
|
||||
|
||||
#[node_macro::node(category("Vector: Modifier"), path(core_types::vector))]
|
||||
async fn round_corners(
|
||||
_: impl Ctx,
|
||||
@@ -1343,7 +1213,7 @@ async fn map_points(ctx: impl Ctx + CloneVarArgs + ExtractAll, content: Table<Ve
|
||||
}
|
||||
|
||||
#[node_macro::node(category("Vector"), path(graphene_core::vector))]
|
||||
async fn flatten_path<T: 'n + Send>(
|
||||
pub async fn flatten_path<T: 'n + Send>(
|
||||
_: impl Ctx,
|
||||
#[implementations(
|
||||
Table<Graphic>,
|
||||
@@ -2536,60 +2406,6 @@ mod test {
|
||||
}
|
||||
}
|
||||
|
||||
#[tokio::test]
|
||||
async fn repeat() {
|
||||
let direction = DVec2::X * 1.5;
|
||||
let count = 3;
|
||||
let repeated = super::repeat(
|
||||
Footprint::default(),
|
||||
vector_node_from_bezpath(Rect::new(0., 0., 1., 1.).to_path(DEFAULT_ACCURACY)),
|
||||
direction,
|
||||
0.,
|
||||
count,
|
||||
)
|
||||
.await;
|
||||
let vector_table = super::flatten_path(Footprint::default(), repeated).await;
|
||||
let vector = vector_table.iter().next().unwrap().element;
|
||||
assert_eq!(vector.region_manipulator_groups().count(), 3);
|
||||
for (index, (_, manipulator_groups)) in vector.region_manipulator_groups().enumerate() {
|
||||
assert!((manipulator_groups[0].anchor - direction * index as f64 / (count - 1) as f64).length() < 1e-5);
|
||||
}
|
||||
}
|
||||
#[tokio::test]
|
||||
async fn repeat_transform_position() {
|
||||
let direction = DVec2::new(12., 10.);
|
||||
let count = 8;
|
||||
let repeated = super::repeat(
|
||||
Footprint::default(),
|
||||
vector_node_from_bezpath(Rect::new(0., 0., 1., 1.).to_path(DEFAULT_ACCURACY)),
|
||||
direction,
|
||||
0.,
|
||||
count,
|
||||
)
|
||||
.await;
|
||||
let vector_table = super::flatten_path(Footprint::default(), repeated).await;
|
||||
let vector = vector_table.iter().next().unwrap().element;
|
||||
assert_eq!(vector.region_manipulator_groups().count(), 8);
|
||||
for (index, (_, manipulator_groups)) in vector.region_manipulator_groups().enumerate() {
|
||||
assert!((manipulator_groups[0].anchor - direction * index as f64 / (count - 1) as f64).length() < 1e-5);
|
||||
}
|
||||
}
|
||||
#[tokio::test]
|
||||
async fn circular_repeat() {
|
||||
let repeated = super::circular_repeat(Footprint::default(), vector_node_from_bezpath(Rect::new(-1., -1., 1., 1.).to_path(DEFAULT_ACCURACY)), 45., 4., 8).await;
|
||||
let vector_table = super::flatten_path(Footprint::default(), repeated).await;
|
||||
let vector = vector_table.iter().next().unwrap().element;
|
||||
assert_eq!(vector.region_manipulator_groups().count(), 8);
|
||||
|
||||
for (index, (_, manipulator_groups)) in vector.region_manipulator_groups().enumerate() {
|
||||
let expected_angle = (index as f64 + 1.) * 45.;
|
||||
|
||||
let center = (manipulator_groups[0].anchor + manipulator_groups[2].anchor) / 2.;
|
||||
let actual_angle = DVec2::Y.angle_to(center).to_degrees();
|
||||
|
||||
assert!((actual_angle - expected_angle).abs() % 360. < 1e-5, "Expected {expected_angle} found {actual_angle}");
|
||||
}
|
||||
}
|
||||
#[tokio::test]
|
||||
async fn bounding_box() {
|
||||
let bounding_box = super::bounding_box((), vector_node_from_bezpath(Rect::new(-1., -1., 1., 1.).to_path(DEFAULT_ACCURACY))).await;
|
||||
@@ -2716,8 +2532,11 @@ mod test {
|
||||
}
|
||||
#[tokio::test]
|
||||
async fn morph() {
|
||||
let rectangle = vector_node_from_bezpath(Rect::new(0., 0., 100., 100.).to_path(DEFAULT_ACCURACY));
|
||||
let rectangles = super::repeat(Footprint::default(), rectangle, DVec2::new(-100., -100.), 0., 2).await;
|
||||
let mut rectangles = vector_node_from_bezpath(Rect::new(0., 0., 100., 100.).to_path(DEFAULT_ACCURACY));
|
||||
let mut second_rectangle = rectangles.get(0).unwrap().into_cloned();
|
||||
second_rectangle.transform *= DAffine2::from_translation((-100., -100.).into());
|
||||
rectangles.push(second_rectangle);
|
||||
|
||||
let morphed = super::morph(Footprint::default(), rectangles, 0.5).await;
|
||||
let element = morphed.iter().next().unwrap().element;
|
||||
assert_eq!(
|
||||
|
||||
Reference in New Issue
Block a user