clusterflux-public/crates/disasmer-node/src/main.rs
Disasmer release dry run de66658961 Public dry run dryrun-750f29790fe2
Source commit: 750f29790fe2046599fbe5b5d06fdb63d92fabff

Public tree identity: sha256:02326e08850bb287585789733ea5f3f153e1f7f3fd88afcc24e249107df91506
2026-07-03 16:28:39 +02:00

637 lines
20 KiB
Rust

use std::io::{BufRead, BufReader, Write};
use std::net::TcpStream;
use std::path::PathBuf;
use std::time::{Duration, Instant};
use disasmer_core::{
Capability, CommandInvocation, NodeCapabilities, NodeId, TaskId, VfsOverlay, VfsPath,
};
use disasmer_node::{CommandOutput, LocalCommandExecutor, VirtualThreadCommand};
use serde_json::{json, Value};
#[derive(Debug)]
struct Args {
coordinator: String,
tenant: String,
project: String,
node: String,
process: String,
task: String,
command: String,
command_args: Vec<String>,
artifact: String,
enrollment_grant: Option<String>,
public_key: Option<String>,
control_poll_ms: u64,
assignment_poll_ms: u64,
emit_ready: bool,
worker: bool,
}
#[derive(Clone, Debug)]
struct RuntimeTask {
process: String,
task: String,
command: String,
command_args: Vec<String>,
artifact: String,
epoch: Option<u64>,
task_assignment_response: Value,
}
fn main() -> Result<(), Box<dyn std::error::Error>> {
let args = parse_args()?;
let mut session = CoordinatorSession::connect(&args.coordinator)?;
let registration = register_node(&mut session, &args)?;
let heartbeat = session.request(json!({
"type": "node_heartbeat",
"node": &args.node,
}))?;
let capability_report = session.request(json!({
"type": "report_node_capabilities",
"tenant": &args.tenant,
"project": &args.project,
"node": &args.node,
"capabilities": NodeCapabilities::detect_current(),
"cached_environment_digests": [],
"dependency_cache_digests": [],
"source_snapshots": [],
"artifact_locations": [],
"direct_connectivity": true,
"online": true,
}))?;
if args.worker {
return worker_loop(
&args,
&mut session,
registration,
heartbeat,
capability_report,
);
}
let task_assignment = session.request(json!({
"type": "schedule_task",
"tenant": &args.tenant,
"project": &args.project,
"environment": null,
"environment_digest": null,
"required_capabilities": [Capability::Command],
"dependency_cache": null,
"source_snapshot": null,
"required_artifacts": [],
"quota_available": true,
"policy_allowed": true,
"prefer_node": &args.node,
}))?;
let runtime_task = RuntimeTask {
process: args.process.clone(),
task: args.task.clone(),
command: args.command.clone(),
command_args: args.command_args.clone(),
artifact: args.artifact.clone(),
epoch: None,
task_assignment_response: task_assignment,
};
let report = run_runtime_task(
&args,
&mut session,
runtime_task,
registration,
heartbeat,
capability_report,
)?;
println!("{}", serde_json::to_string(&report)?);
Ok(())
}
fn worker_loop(
args: &Args,
session: &mut CoordinatorSession,
registration: Value,
heartbeat: Value,
capability_report: Value,
) -> Result<(), Box<dyn std::error::Error>> {
if args.emit_ready {
println!(
"{}",
serde_json::to_string(&json!({
"node_status": "ready",
"mode": "worker",
"node": &args.node,
}))?
);
std::io::stdout().flush()?;
}
loop {
let response = session.request(json!({
"type": "poll_task_assignment",
"tenant": &args.tenant,
"project": &args.project,
"node": &args.node,
}))?;
let Some(assignment) = response.get("assignment").filter(|value| !value.is_null()) else {
std::thread::sleep(Duration::from_millis(args.assignment_poll_ms));
continue;
};
let runtime_task = runtime_task_from_assignment(assignment)?;
let report = run_runtime_task(
args,
session,
runtime_task,
registration.clone(),
heartbeat.clone(),
capability_report.clone(),
)?;
println!("{}", serde_json::to_string(&report)?);
std::io::stdout().flush()?;
}
}
fn runtime_task_from_assignment(value: &Value) -> Result<RuntimeTask, Box<dyn std::error::Error>> {
Ok(RuntimeTask {
process: required_string(value, "process")?,
task: required_string(value, "task")?,
command: required_string(value, "command")?,
command_args: value
.get("command_args")
.and_then(Value::as_array)
.map(|items| {
items
.iter()
.filter_map(Value::as_str)
.map(str::to_owned)
.collect::<Vec<_>>()
})
.unwrap_or_default(),
artifact: required_string(value, "artifact_path")?,
epoch: value.get("epoch").and_then(Value::as_u64),
task_assignment_response: value.clone(),
})
}
fn required_string(value: &Value, field: &str) -> Result<String, Box<dyn std::error::Error>> {
value
.get(field)
.and_then(Value::as_str)
.map(str::to_owned)
.ok_or_else(|| format!("task assignment missing string field `{field}`").into())
}
fn run_runtime_task(
args: &Args,
session: &mut CoordinatorSession,
task: RuntimeTask,
registration: Value,
heartbeat: Value,
capability_report: Value,
) -> Result<Value, Box<dyn std::error::Error>> {
let epoch = match task.epoch {
Some(epoch) => epoch,
None => {
let started = session.request(json!({
"type": "start_process",
"tenant": &args.tenant,
"project": &args.project,
"process": &task.process,
}))?;
started
.get("epoch")
.and_then(Value::as_u64)
.ok_or("coordinator start_process response missing epoch")?
}
};
session.request(json!({
"type": "reconnect_node",
"node": &args.node,
"process": &task.process,
"epoch": epoch,
}))?;
let debug_command = session.request(json!({
"type": "poll_debug_command",
"tenant": &args.tenant,
"project": &args.project,
"process": &task.process,
"node": &args.node,
"task": &task.task,
}))?;
if args.emit_ready && !args.worker {
println!(
"{}",
serde_json::to_string(&json!({
"node_status": "ready",
"node": &args.node,
"process": &task.process,
"task": &task.task,
}))?
);
std::io::stdout().flush()?;
}
if args.control_poll_ms > 0 && wait_for_cancellation(session, args, &task)? {
let recorded = session.request(json!({
"type": "task_completed",
"tenant": &args.tenant,
"project": &args.project,
"process": &task.process,
"node": &args.node,
"task": &task.task,
"terminal_state": "cancelled",
"status_code": null,
"stdout_bytes": 0,
"stderr_bytes": 0,
"artifact_path": null,
"artifact_digest": null,
"artifact_size_bytes": null,
}))?;
return Ok(cancelled_node_report(
args,
&task,
registration,
heartbeat,
capability_report,
task.task_assignment_response.clone(),
debug_command,
recorded,
session.requests(),
));
}
let executor = LocalCommandExecutor {
node: NodeId::new(args.node.clone()),
hosted_control_plane: false,
has_command_capability: true,
};
let task_id = TaskId::new(task.task.clone());
let mut overlay = VfsOverlay::new(task_id.clone(), NodeId::new(args.node.clone()));
let output = executor.run(
VirtualThreadCommand {
virtual_thread: task_id,
invocation: CommandInvocation {
program: task.command.clone(),
args: task.command_args.clone(),
env: None,
},
stage_stdout_as: Some(VfsPath::new(task.artifact.clone())?),
},
&mut overlay,
)?;
let manifest = overlay.flush();
let staged = output.staged_artifact.as_ref();
let artifact_digest = staged.map(|artifact| artifact.digest.clone());
let artifact_path = staged.map(|artifact| artifact.path.as_str().to_owned());
let artifact_size_bytes = staged.map(|artifact| artifact.size);
let log_event = session.request(json!({
"type": "report_task_log",
"tenant": &args.tenant,
"project": &args.project,
"process": &task.process,
"node": &args.node,
"task": &task.task,
"stdout_bytes": output.stdout.len(),
"stderr_bytes": output.stderr.len(),
"stdout_tail": &output.stdout,
"stderr_tail": &output.stderr,
"stdout_truncated": output.stdout_truncated,
"stderr_truncated": output.stderr_truncated,
"backpressured": output.log_backpressured,
}))?;
let vfs_metadata = session.request(json!({
"type": "report_vfs_metadata",
"tenant": &args.tenant,
"project": &args.project,
"process": &task.process,
"node": &args.node,
"task": &task.task,
"artifact_path": artifact_path,
"artifact_digest": artifact_digest,
"artifact_size_bytes": artifact_size_bytes,
"large_bytes_uploaded": manifest.large_bytes_uploaded,
}))?;
let recorded = session.request(json!({
"type": "task_completed",
"tenant": &args.tenant,
"project": &args.project,
"process": &task.process,
"node": &args.node,
"task": &task.task,
"status_code": output.status_code,
"stdout_bytes": output.stdout.len(),
"stderr_bytes": output.stderr.len(),
"stdout_tail": &output.stdout,
"stderr_tail": &output.stderr,
"stdout_truncated": output.stdout_truncated,
"stderr_truncated": output.stderr_truncated,
"artifact_path": staged.map(|artifact| artifact.path.as_str().to_owned()),
"artifact_digest": staged.map(|artifact| artifact.digest.clone()),
"artifact_size_bytes": artifact_size_bytes,
}))?;
Ok(node_report(
output,
manifest.large_bytes_uploaded,
registration,
heartbeat,
capability_report,
task.task_assignment_response,
debug_command,
log_event,
vfs_metadata,
recorded,
session.requests(),
))
}
fn node_report(
output: CommandOutput,
large_bytes_uploaded: bool,
registration_response: Value,
heartbeat_response: Value,
capability_response: Value,
task_assignment_response: Value,
debug_command_response: Value,
log_event_response: Value,
vfs_metadata_response: Value,
coordinator_response: Value,
session_requests: usize,
) -> Value {
json!({
"node_status": "completed",
"virtual_thread": output.virtual_thread,
"terminal_state": if output.status_code == Some(0) { "completed" } else { "failed" },
"status_code": output.status_code,
"stdout_bytes": output.stdout.len(),
"stderr_bytes": output.stderr.len(),
"stdout_tail": &output.stdout,
"stderr_tail": &output.stderr,
"stdout_truncated": output.stdout_truncated,
"stderr_truncated": output.stderr_truncated,
"log_backpressured": output.log_backpressured,
"staged_artifact": output.staged_artifact,
"large_bytes_uploaded": large_bytes_uploaded,
"registration_response": registration_response,
"heartbeat_response": heartbeat_response,
"capability_response": capability_response,
"task_assignment_response": task_assignment_response,
"debug_command_response": debug_command_response,
"log_event_response": log_event_response,
"vfs_metadata_response": vfs_metadata_response,
"session_requests": session_requests,
"coordinator_response": coordinator_response,
})
}
fn cancelled_node_report(
_args: &Args,
task: &RuntimeTask,
registration_response: Value,
heartbeat_response: Value,
capability_response: Value,
task_assignment_response: Value,
debug_command_response: Value,
coordinator_response: Value,
session_requests: usize,
) -> Value {
json!({
"node_status": "cancelled",
"virtual_thread": &task.task,
"terminal_state": "cancelled",
"status_code": null,
"stdout_bytes": 0,
"stderr_bytes": 0,
"stdout_tail": "",
"stderr_tail": "",
"stdout_truncated": false,
"stderr_truncated": false,
"log_backpressured": false,
"staged_artifact": null,
"large_bytes_uploaded": false,
"registration_response": registration_response,
"heartbeat_response": heartbeat_response,
"capability_response": capability_response,
"task_assignment_response": task_assignment_response,
"debug_command_response": debug_command_response,
"log_event_response": null,
"vfs_metadata_response": null,
"session_requests": session_requests,
"coordinator_response": coordinator_response,
})
}
fn register_node(
session: &mut CoordinatorSession,
args: &Args,
) -> Result<Value, Box<dyn std::error::Error>> {
let public_key = args
.public_key
.clone()
.unwrap_or_else(|| format!("{}-public-key", args.node));
if let Some(grant) = &args.enrollment_grant {
session.request(json!({
"type": "exchange_node_enrollment_grant",
"tenant": &args.tenant,
"project": &args.project,
"node": &args.node,
"public_key": public_key,
"enrollment_grant": grant,
"now_epoch_seconds": 0,
}))
} else {
session.request(json!({
"type": "attach_node",
"tenant": &args.tenant,
"project": &args.project,
"node": &args.node,
"public_key": public_key,
}))
}
}
fn wait_for_cancellation(
session: &mut CoordinatorSession,
args: &Args,
task: &RuntimeTask,
) -> Result<bool, Box<dyn std::error::Error>> {
let deadline = Instant::now() + Duration::from_millis(args.control_poll_ms);
loop {
let control = session.request(json!({
"type": "poll_task_control",
"tenant": &args.tenant,
"project": &args.project,
"process": &task.process,
"node": &args.node,
"task": &task.task,
}))?;
if control
.get("cancel_requested")
.and_then(Value::as_bool)
.unwrap_or(false)
{
return Ok(true);
}
let now = Instant::now();
if now >= deadline {
return Ok(false);
}
std::thread::sleep((deadline - now).min(Duration::from_millis(100)));
}
}
struct CoordinatorSession {
writer: TcpStream,
reader: BufReader<TcpStream>,
requests: usize,
}
impl CoordinatorSession {
fn connect(addr: &str) -> Result<Self, Box<dyn std::error::Error>> {
let transport_addr = json_line_transport_addr(addr);
let writer = TcpStream::connect(&transport_addr)?;
let reader = BufReader::new(writer.try_clone()?);
Ok(Self {
writer,
reader,
requests: 0,
})
}
fn request(&mut self, value: Value) -> Result<Value, Box<dyn std::error::Error>> {
serde_json::to_writer(&mut self.writer, &value)?;
self.writer.write_all(b"\n")?;
self.writer.flush()?;
let mut line = String::new();
if self.reader.read_line(&mut line)? == 0 {
return Err("coordinator closed session without a response".into());
}
let response: Value = serde_json::from_str(&line)?;
self.requests += 1;
if response.get("type").and_then(Value::as_str) == Some("error") {
return Err(format!("coordinator error: {response}").into());
}
Ok(response)
}
fn requests(&self) -> usize {
self.requests
}
}
fn json_line_transport_addr(endpoint: &str) -> String {
let endpoint = endpoint.trim();
for (scheme, default_port) in [("https://", 443), ("http://", 80)] {
if let Some(rest) = endpoint.strip_prefix(scheme) {
let authority = rest.split('/').next().unwrap_or(rest);
if authority.contains(':') {
return authority.to_owned();
}
return format!("{authority}:{default_port}");
}
}
endpoint.to_owned()
}
fn parse_args() -> Result<Args, Box<dyn std::error::Error>> {
let mut coordinator = None;
let mut tenant = "tenant".to_owned();
let mut project = "project".to_owned();
let mut node = "node".to_owned();
let mut process = "process".to_owned();
let mut task = "compile-linux".to_owned();
let mut command = None;
let mut command_args = Vec::new();
let mut artifact = "/vfs/artifacts/node-output.txt".to_owned();
let mut enrollment_grant = None;
let mut public_key = None;
let mut control_poll_ms = 0;
let mut assignment_poll_ms = 500;
let mut emit_ready = false;
let mut worker = false;
let mut args = std::env::args().skip(1);
while let Some(arg) = args.next() {
match arg.as_str() {
"--coordinator" => coordinator = args.next(),
"--tenant" => tenant = args.next().ok_or("--tenant requires a value")?,
"--project-id" => project = args.next().ok_or("--project-id requires a value")?,
"--node" => node = args.next().ok_or("--node requires a value")?,
"--process" => process = args.next().ok_or("--process requires a value")?,
"--task" => task = args.next().ok_or("--task requires a value")?,
"--command" => command = args.next(),
"--arg" => command_args.push(args.next().ok_or("--arg requires a value")?),
"--artifact" => artifact = args.next().ok_or("--artifact requires a value")?,
"--enrollment-grant" => enrollment_grant = args.next(),
"--public-key" => public_key = args.next(),
"--control-poll-ms" => {
control_poll_ms = args
.next()
.ok_or("--control-poll-ms requires a value")?
.parse()?
}
"--assignment-poll-ms" => {
assignment_poll_ms = args
.next()
.ok_or("--assignment-poll-ms requires a value")?
.parse()?
}
"--emit-ready" => emit_ready = true,
"--worker" => worker = true,
"--project" => {
let project_path = PathBuf::from(args.next().ok_or("--project requires a path")?);
command_args.extend([
"test".to_owned(),
"--manifest-path".to_owned(),
project_path
.join("Cargo.toml")
.to_string_lossy()
.into_owned(),
]);
}
other => return Err(format!("unknown argument: {other}").into()),
}
}
Ok(Args {
coordinator: coordinator.ok_or("--coordinator is required")?,
tenant,
project,
node,
process,
task,
command: command.unwrap_or_else(|| "cargo".to_owned()),
command_args,
artifact,
enrollment_grant,
public_key,
control_poll_ms,
assignment_poll_ms,
emit_ready,
worker,
})
}
#[cfg(test)]
mod tests {
use super::json_line_transport_addr;
#[test]
fn hosted_operator_url_maps_to_json_line_transport_address() {
assert_eq!(
json_line_transport_addr("https://disasmer.michelpaulissen.com:9443"),
"disasmer.michelpaulissen.com:9443"
);
assert_eq!(
json_line_transport_addr("https://disasmer.michelpaulissen.com:9443/auth/device"),
"disasmer.michelpaulissen.com:9443"
);
assert_eq!(
json_line_transport_addr("http://operator.example.test"),
"operator.example.test:80"
);
assert_eq!(json_line_transport_addr("127.0.0.1:7999"), "127.0.0.1:7999");
}
}