- oakengine_sequence_move_clip implemented for real (oaktimeline TrackMoveBlockCommand; fixes the graph-ownership/gap-anchor/ripple trim bugs the stub was hiding); same-track via the frozen C ABI, cross-track supported by the module command - oaknode clip blocks now declare a tex_in texture input and set effect_input to it, so timeline clips can host effect chains; facade test covers effect insert/remove on a real clip - oakffmpeg-link: FFMPEG_DIR is now mandatory with a clear panic (a Homebrew upgrade left the system ffmpeg .pc pointing at a deleted dav1d Cellar path, breaking links); reads a git-ignored workspace .env for IDEs that cannot inject env vars (RustRover); links the C++ stdlib for C++ codec libs (svt-av1) - oakengine re-exports oaknode so tests share one crate instance; it_node uses the direct instance's value type where it calls the module FFI (the --workspace dev-dependency feature split builds oaknode twice)
235 lines
6.8 KiB
Rust
235 lines
6.8 KiB
Rust
// Oak Video Editor - Non-Linear Video Editor
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// Copyright (C) 2026 Oak Team
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//
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License
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// along with this program. If not, see <http://www.gnu.org/licenses/>.
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//! Traverser (evaluation engine) contract tests.
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use oakcore_rs::{Rational, TimeRange};
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use oaknode::error::Error;
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use oaknode::graph::Graph;
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use oaknode::id::NodeId;
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use oaknode::input::Input;
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use oaknode::node::{NodeBehavior, NodeCore};
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use oaknode::traverser::{EvalRequest, RenderHooks, Traverser};
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use oaknode::value::{NodeValue, NodeValueRow, NodeValueTable, ValueType};
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/// A source node: pushes its `val_in` standard value into the table.
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struct Src;
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impl NodeBehavior for Src {
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fn name(&self) -> &str {
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"Src"
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}
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fn type_id(&self) -> &str {
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"test.src"
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}
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fn duplicate(&self, _c: &NodeCore) -> Option<Box<dyn NodeBehavior>> {
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Some(Box::new(Src))
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}
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fn value(&self, core: &NodeCore, _i: &NodeValueRow, _t: Rational, table: &mut NodeValueTable) {
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table.push(ValueType::Float, core.standard_value("val_in", -1), None);
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}
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}
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/// A node that pushes `input + 1`.
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struct Inc;
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impl NodeBehavior for Inc {
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fn name(&self) -> &str {
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"Inc"
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}
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fn type_id(&self) -> &str {
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"test.inc"
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}
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fn duplicate(&self, _c: &NodeCore) -> Option<Box<dyn NodeBehavior>> {
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Some(Box::new(Inc))
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}
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fn value(
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&self,
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_c: &NodeCore,
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inputs: &NodeValueRow,
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_t: Rational,
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table: &mut NodeValueTable,
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) {
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let v = inputs
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.get("val_in")
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.cloned()
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.unwrap_or(NodeValue::Float(0.0));
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table.push(
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ValueType::Float,
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NodeValue::Float(v.to_double() + 1.0),
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None,
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);
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}
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}
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struct Noop;
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impl RenderHooks for Noop {}
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/// A behavior that counts its evaluations.
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struct Count(std::sync::Arc<std::sync::atomic::AtomicUsize>);
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impl NodeBehavior for Count {
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fn name(&self) -> &str {
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"Count"
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}
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fn type_id(&self) -> &str {
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"test.count"
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}
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fn duplicate(&self, _c: &NodeCore) -> Option<Box<dyn NodeBehavior>> {
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Some(Box::new(Count(self.0.clone())))
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}
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fn value(&self, _c: &NodeCore, _i: &NodeValueRow, _t: Rational, table: &mut NodeValueTable) {
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self.0.fetch_add(1, std::sync::atomic::Ordering::SeqCst);
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table.push(ValueType::Int, NodeValue::Int(1), None);
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}
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}
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fn node_with_input(g: &mut Graph, behavior: Box<dyn NodeBehavior>) -> NodeId {
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let mut core = NodeCore::new();
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core.add_input(Input::new(
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"val_in",
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ValueType::Float,
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NodeValue::Float(0.0),
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));
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core.add_input(Input::new(
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"val_in2",
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ValueType::Float,
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NodeValue::Float(0.0),
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));
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g.add_node(core, behavior)
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}
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/// A linear chain of test nodes evaluates in topological order and the
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/// root table contains the expected value.
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#[test]
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fn linear_chain_evaluation_order() {
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let mut g = Graph::new();
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let src = node_with_input(&mut g, Box::new(Src));
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g.get_mut(src)
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.unwrap()
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.core
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.set_standard_value("val_in", -1, NodeValue::Float(1.0));
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let a = node_with_input(&mut g, Box::new(Inc));
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let b = node_with_input(&mut g, Box::new(Inc));
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let root = node_with_input(&mut g, Box::new(Inc));
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g.connect(src, a, "val_in", -1).unwrap();
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g.connect(a, b, "val_in", -1).unwrap();
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g.connect(b, root, "val_in", -1).unwrap();
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let mut t = Traverser::new();
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let mut hooks = Noop;
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let table = t
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.evaluate(&g, &EvalRequest::new(root, Rational::new(0, 1)), &mut hooks)
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.unwrap();
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assert_eq!(table.get(ValueType::Float), Some(&NodeValue::Float(4.0)));
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}
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/// Diamond graph: shared upstream evaluates once (memoization).
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#[test]
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fn diamond_evaluates_shared_node_once() {
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let mut g = Graph::new();
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let counter = std::sync::Arc::new(std::sync::atomic::AtomicUsize::new(0));
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let shared = {
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let mut core = NodeCore::new();
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core.add_input(Input::new("val_in", ValueType::Int, NodeValue::Int(0)));
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core.add_input(Input::new("val_in2", ValueType::Int, NodeValue::Int(0)));
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g.add_node(core, Box::new(Count(counter.clone())))
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};
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let leaf = {
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let mut core = NodeCore::new();
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core.add_input(Input::new("a", ValueType::Int, NodeValue::Int(0)));
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core.add_input(Input::new("b", ValueType::Int, NodeValue::Int(0)));
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g.add_node(
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core,
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Box::new(Count(std::sync::Arc::new(
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std::sync::atomic::AtomicUsize::new(0),
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))),
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)
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};
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g.connect(shared, leaf, "a", -1).unwrap();
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g.connect(shared, leaf, "b", -1).unwrap();
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let mut t = Traverser::new();
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let mut hooks = Noop;
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let _ = t
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.evaluate(&g, &EvalRequest::new(leaf, Rational::new(0, 1)), &mut hooks)
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.unwrap();
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assert_eq!(counter.load(std::sync::atomic::Ordering::SeqCst), 1);
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}
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/// Cancellation: hook returning cancelled stops evaluation with E_STATE.
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#[test]
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fn cancellation_stops_evaluation() {
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struct Cancel;
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impl RenderHooks for Cancel {
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fn is_cancelled(&self) -> bool {
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true
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}
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}
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let mut g = Graph::new();
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let id = node_with_input(&mut g, Box::new(Src));
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let mut t = Traverser::new();
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let mut hooks = Cancel;
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let r = t.evaluate(&g, &EvalRequest::new(id, Rational::new(0, 1)), &mut hooks);
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match r {
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Err(Error::State) => {}
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other => panic!("expected E_STATE, got {:?}", other.map(|_| ())),
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}
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}
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/// Deep chain (10k nodes) completes without recursion (stack-safe).
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#[test]
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fn deep_graph_is_iterative() {
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let mut g = Graph::new();
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let mut prev = node_with_input(&mut g, Box::new(Inc));
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for _ in 0..10_000 {
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let next = node_with_input(&mut g, Box::new(Inc));
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g.connect(prev, next, "val_in", -1).unwrap();
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prev = next;
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}
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let mut t = Traverser::new();
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let mut hooks = Noop;
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let table = t
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.evaluate(&g, &EvalRequest::new(prev, Rational::new(0, 1)), &mut hooks)
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.unwrap();
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assert!(table.get(ValueType::Float).is_some());
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}
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/// invalidate_downstream marks exactly the downstream caches and only
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/// once per node on a diamond (signal-free fan-out parity).
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#[test]
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fn invalidation_fanout() {
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let mut g = Graph::new();
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let a = node_with_input(&mut g, Box::new(Src));
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let b = node_with_input(&mut g, Box::new(Inc));
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let c = node_with_input(&mut g, Box::new(Inc));
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let d = node_with_input(&mut g, Box::new(Inc));
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g.connect(a, b, "val_in", -1).unwrap();
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g.connect(a, c, "val_in", -1).unwrap();
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g.connect(b, d, "val_in", -1).unwrap();
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g.connect(c, d, "val_in2", -1).unwrap();
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let mut t = Traverser::new();
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t.invalidate_downstream(
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&g,
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a,
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TimeRange::new(Rational::new(0, 1), Rational::new(1, 1)),
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);
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let walked = t.last_invalidation();
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assert_eq!(walked.len(), 4, "a, b, c, d each exactly once");
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assert!(walked.contains(&a) && walked.contains(&d));
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let _ = NodeId::INVALID;
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}
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