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https://github.com/Astatin3/unshell.git
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Add crossbeam channel router leaf example
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//! Crossbeam-channel router leaf example.
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//!
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//! This example wires a root controller to an `agent` node, promotes a staged
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//! child connection on that agent via the `add_connection` procedure, and then
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//! queries the grandchild's connection snapshot through a fully routed call/reply
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//! exchange.
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use std::error::Error;
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use crossbeam_channel::{Receiver, Sender, unbounded};
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use unshell::leaves::crossbeam_channel::{
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ConnectionRequest, ConnectionSnapshot, CrossbeamChannelLeaf, CrossbeamEnvelope,
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};
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use unshell::protocol::tree::ProtocolEndpoint;
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use unshell::protocol::tree::{
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ChildRoute, Endpoint, EndpointOutcome, Ingress, LeafRuntime, decode_call_input,
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encode_call_reply,
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};
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fn main() -> Result<(), Box<dyn Error>> {
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let (mut agent, root_to_agent) = ChannelNode::new(path(&["agent"]));
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let (mut child, agent_to_child) = ChannelNode::new(path(&["agent", "child"]));
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let (agent_to_root, root_rx) = unbounded();
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let mut root = ProtocolEndpoint::new(
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Vec::new(),
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None,
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vec![ChildRoute::registered(path(&["agent"]))],
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Vec::new(),
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);
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agent.stage_connection(Vec::new(), agent_to_root);
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agent.connect_staged(Vec::new())?;
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child.stage_connection(path(&["agent"]), root_to_agent.clone());
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child.connect_staged(path(&["agent"]))?;
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agent.stage_connection(path(&["agent", "child"]), agent_to_child);
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call_root(
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&mut root,
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&root_to_agent,
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&mut agent,
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&mut child,
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&root_rx,
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path(&["agent"]),
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CrossbeamChannelLeaf::protocol_procedure_id("add_connection").expect("procedure exists"),
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encode_call_reply(&ConnectionRequest {
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peer_path: path(&["agent", "child"]),
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})?,
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)?;
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let reply = call_root(
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&mut root,
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&root_to_agent,
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&mut agent,
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&mut child,
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&root_rx,
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path(&["agent", "child"]),
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CrossbeamChannelLeaf::protocol_procedure_id("get_connections").expect("procedure exists"),
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encode_call_reply(&())?,
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)?;
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let snapshot = decode_call_input::<ConnectionSnapshot>(reply.as_slice())?;
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println!("child parent: {:?}", snapshot.parent);
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println!("child children: {:?}", snapshot.children);
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Ok(())
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}
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struct ChannelNode {
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runtime: LeafRuntime<CrossbeamChannelLeaf>,
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rx: Receiver<CrossbeamEnvelope>,
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}
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impl ChannelNode {
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fn new(path: Vec<String>) -> (Self, Sender<CrossbeamEnvelope>) {
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let (tx, rx) = unbounded();
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let endpoint = ProtocolEndpoint::new(
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path,
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None,
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Vec::new(),
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vec![CrossbeamChannelLeaf::protocol_leaf_spec()],
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);
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(
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Self {
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runtime: LeafRuntime::new(endpoint, CrossbeamChannelLeaf::default()),
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rx,
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},
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tx,
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)
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}
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fn stage_connection(&mut self, peer_path: Vec<String>, sender: Sender<CrossbeamEnvelope>) {
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let _ = self.runtime.leaf_mut().stage_connection(peer_path, sender);
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}
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fn connect_staged(&mut self, peer_path: Vec<String>) -> Result<(), Box<dyn Error>> {
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let runtime = &mut self.runtime;
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let mut leaf = core::mem::take(runtime.leaf_mut());
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let result = leaf.connect_staged(runtime.endpoint_mut(), peer_path);
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*runtime.leaf_mut() = leaf;
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result?;
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Ok(())
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}
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fn drain(&mut self) -> Result<usize, Box<dyn Error>> {
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let mut processed = 0usize;
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while let Ok(envelope) = self.rx.try_recv() {
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let outcome = self
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.runtime
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.receive_routed(&envelope.ingress, envelope.frame)?;
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self.runtime.route_forwarded(outcome.forwarded)?;
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processed += 1;
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}
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Ok(processed)
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}
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}
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fn call_root(
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root: &mut ProtocolEndpoint,
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root_to_agent: &Sender<CrossbeamEnvelope>,
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agent: &mut ChannelNode,
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child: &mut ChannelNode,
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root_rx: &Receiver<CrossbeamEnvelope>,
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dst_path: Vec<String>,
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procedure_id: String,
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data: Vec<u8>,
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) -> Result<Vec<u8>, Box<dyn Error>> {
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let hook_id = root.allocate_hook_id();
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let outcome = root.send_call(
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dst_path,
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Some(CrossbeamChannelLeaf::protocol_leaf_name()),
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procedure_id,
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Some(hook_id),
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data,
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)?;
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let EndpointOutcome::Forward { frame, .. } = outcome else {
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return Err("root call did not forward".into());
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};
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root_to_agent.send(CrossbeamEnvelope {
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ingress: Ingress::Parent,
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frame,
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})?;
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for _ in 0..16 {
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let mut progress = 0usize;
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progress += agent.drain()?;
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progress += child.drain()?;
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while let Ok(envelope) = root_rx.try_recv() {
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progress += 1;
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let outcome = root.receive(&envelope.ingress, envelope.frame)?;
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if let EndpointOutcome::Local(event) = outcome {
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match event {
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unshell::protocol::tree::LocalEvent::Data { message, .. } => {
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return Ok(message.data);
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}
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unshell::protocol::tree::LocalEvent::Fault { message, .. } => {
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return Err(format!("routed call faulted: {:?}", message.fault).into());
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}
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unshell::protocol::tree::LocalEvent::Call { .. } => {}
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}
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}
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}
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if progress == 0 {
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break;
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}
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}
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Err("timed out waiting for routed reply".into())
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}
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fn path(parts: &[&str]) -> Vec<String> {
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parts.iter().map(|part| (*part).to_owned()).collect()
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}
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