use std::any::Any;
use std::sync::Arc;
use streamweave::graph;
use streamweave::graph::Graph;
use streamweave::nodes::math::CeilNode;
use tokio::sync::mpsc;
#[tokio::main]
async fn main() -> Result<(), Box<dyn std::error::Error>> {
let (config_tx, config_rx) = mpsc::channel(1);
let (in_tx, in_rx) = mpsc::channel(10);
let (out_tx, mut out_rx) = mpsc::channel::<Arc<dyn Any + Send + Sync>>(10);
let (error_tx, mut error_rx) = mpsc::channel::<Arc<dyn Any + Send + Sync>>(10);
let mut graph: Graph = graph! {
ceil: CeilNode::new("ceil".to_string()),
graph.configuration => ceil.configuration,
graph.input => ceil.in,
ceil.out => graph.output,
ceil.error => graph.error
};
graph.connect_input_channel("configuration", config_rx)?;
graph.connect_input_channel("input", in_rx)?;
graph.connect_output_channel("output", out_tx)?;
graph.connect_output_channel("error", error_tx)?;
println!("โ Graph built with CeilNode using graph! macro");
let _ = config_tx
.send(Arc::new(()) as Arc<dyn Any + Send + Sync>)
.await;
println!("\n๐งช Testing ceiling computations...");
println!(" Test 1: ceil(3.2f64) (expected: 4)");
let _ = in_tx
.send(Arc::new(3.2f64) as Arc<dyn Any + Send + Sync>)
.await;
tokio::time::sleep(tokio::time::Duration::from_millis(50)).await;
println!(" Test 2: ceil(-2.7f64) (expected: -2)");
let _ = in_tx
.send(Arc::new(-2.7f64) as Arc<dyn Any + Send + Sync>)
.await;
tokio::time::sleep(tokio::time::Duration::from_millis(50)).await;
println!(" Test 3: ceil(5.0f64) (expected: 5)");
let _ = in_tx
.send(Arc::new(5.0f64) as Arc<dyn Any + Send + Sync>)
.await;
tokio::time::sleep(tokio::time::Duration::from_millis(50)).await;
println!(" Test 4: ceil(-1.1f64) (expected: -1)");
let _ = in_tx
.send(Arc::new(-1.1f64) as Arc<dyn Any + Send + Sync>)
.await;
tokio::time::sleep(tokio::time::Duration::from_millis(50)).await;
println!("โ Configuration and test data sent to input channels");
println!("Executing graph with CeilNode...");
let start = std::time::Instant::now();
graph
.execute()
.await
.map_err(|e| format!("Graph execution failed: {:?}", e))?;
println!("โ Graph execution completed in {:?}", start.elapsed());
drop(config_tx);
drop(in_tx);
println!("Reading results from output channels...");
let mut success_count = 0;
let mut error_count = 0;
let mut results_received = 0;
loop {
let out_result =
tokio::time::timeout(tokio::time::Duration::from_millis(100), out_rx.recv()).await;
let error_result =
tokio::time::timeout(tokio::time::Duration::from_millis(100), error_rx.recv()).await;
let mut has_data = false;
if let Ok(Some(item)) = out_result {
results_received += 1;
println!(" Ceiling result {}:", results_received);
if let Ok(int_result) = item.clone().downcast::<i64>() {
let value = *int_result;
println!(" i64: {}", value);
success_count += 1;
} else if let Ok(int_result) = item.clone().downcast::<i32>() {
let value = *int_result;
println!(" i32: {}", value);
success_count += 1;
} else {
println!(" Unknown type");
success_count += 1;
}
has_data = true;
}
if let Ok(Some(item)) = error_result
&& let Ok(error_msg) = item.downcast::<String>()
{
let error = (**error_msg).to_string();
println!(" Error: {}", error);
error_count += 1;
has_data = true;
}
if !has_data {
break;
}
}
println!(
"โ Received {} successful results via output channel",
success_count
);
println!("โ Received {} errors via error channel", error_count);
println!("โ Total completed in {:?}", start.elapsed());
if success_count == 4 && error_count == 0 {
println!("โ CeilNode correctly computed ceiling values");
println!(" Results should be: [4, -2, 5, -1]");
} else {
println!(
"โ CeilNode behavior may be unexpected (successes: {}, errors: {}, expected successes: 4, errors: 0)",
success_count, error_count
);
}
Ok(())
}