"deploy/operator/vscode:/vscode.git/clone" did not exist on "f7ba417e76b0154ace38fefefdbc909fefc82314"
distributed.rs 16.1 KB
Newer Older
1
2
// SPDX-FileCopyrightText: Copyright (c) 2024-2025 NVIDIA CORPORATION & AFFILIATES. All rights reserved.
// SPDX-License-Identifier: Apache-2.0
Ryan Olson's avatar
Ryan Olson committed
3
4

pub use crate::component::Component;
5
use crate::transports::nats::DRTNatsClientPrometheusMetrics;
Ryan Olson's avatar
Ryan Olson committed
6
use crate::{
7
    ErrorContext, RuntimeCallback,
8
    component::{self, ComponentBuilder, Endpoint, InstanceSource, Namespace},
Ryan Olson's avatar
Ryan Olson committed
9
    discovery::DiscoveryClient,
10
    metrics::MetricsRegistry,
Ryan Olson's avatar
Ryan Olson committed
11
12
13
14
    service::ServiceClient,
    transports::{etcd, nats, tcp},
};

15
use super::utils::GracefulShutdownTracker;
16
use super::{Arc, DistributedRuntime, OK, OnceCell, Result, Runtime, SystemHealth, Weak, error};
17
use std::sync::OnceLock;
Ryan Olson's avatar
Ryan Olson committed
18
19
20

use derive_getters::Dissolve;
use figment::error;
21
22
use std::collections::HashMap;
use tokio::sync::Mutex;
23
use tokio_util::sync::CancellationToken;
Ryan Olson's avatar
Ryan Olson committed
24

25
26
27
28
29
30
31
32
33
34
impl MetricsRegistry for DistributedRuntime {
    fn basename(&self) -> String {
        "".to_string() // drt has no basename. Basename only begins with the Namespace.
    }

    fn parent_hierarchy(&self) -> Vec<String> {
        vec![] // drt is the root, so no parent hierarchy
    }
}

Ryan Olson's avatar
Ryan Olson committed
35
36
37
38
39
40
impl std::fmt::Debug for DistributedRuntime {
    fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
        write!(f, "DistributedRuntime")
    }
}

Ryan Olson's avatar
Ryan Olson committed
41
42
impl DistributedRuntime {
    pub async fn new(runtime: Runtime, config: DistributedConfig) -> Result<Self> {
43
        let (etcd_config, nats_config, is_static) = config.dissolve();
Ryan Olson's avatar
Ryan Olson committed
44
45
46

        let runtime_clone = runtime.clone();

47
48
49
        let etcd_client = if is_static {
            None
        } else {
50
            Some(etcd::Client::new(etcd_config.clone(), runtime_clone).await?)
51
        };
Ryan Olson's avatar
Ryan Olson committed
52

53
        let nats_client = nats_config.clone().connect().await?;
Ryan Olson's avatar
Ryan Olson committed
54

55
        // Start system status server for health and metrics if enabled in configuration
56
57
58
59
60
61
62
63
        let config = crate::config::RuntimeConfig::from_settings().unwrap_or_default();
        // IMPORTANT: We must extract cancel_token from runtime BEFORE moving runtime into the struct below.
        // This is because after moving, runtime is no longer accessible in this scope (ownership rules).
        let cancel_token = if config.system_server_enabled() {
            Some(runtime.clone().child_token())
        } else {
            None
        };
64
65
        let starting_health_status = config.starting_health_status.clone();
        let use_endpoint_health_status = config.use_endpoint_health_status.clone();
66
67
68
        let health_endpoint_path = config.system_health_path.clone();
        let live_endpoint_path = config.system_live_path.clone();
        let system_health = Arc::new(std::sync::Mutex::new(SystemHealth::new(
69
70
            starting_health_status,
            use_endpoint_health_status,
71
72
            health_endpoint_path,
            live_endpoint_path,
73
        )));
74

75
76
        let nats_client_for_metrics = nats_client.clone();

77
        let distributed_runtime = Self {
Ryan Olson's avatar
Ryan Olson committed
78
79
80
81
            runtime,
            etcd_client,
            nats_client,
            tcp_server: Arc::new(OnceCell::new()),
82
            system_status_server: Arc::new(OnceLock::new()),
Ryan Olson's avatar
Ryan Olson committed
83
            component_registry: component::Registry::new(),
84
            is_static,
85
            instance_sources: Arc::new(Mutex::new(HashMap::new())),
86
            hierarchy_to_metricsregistry: Arc::new(std::sync::RwLock::new(HashMap::<
87
                String,
88
                crate::MetricsRegistryEntry,
89
            >::new())),
90
            system_health,
91
92
        };

93
        let nats_client_metrics = DRTNatsClientPrometheusMetrics::new(
94
95
96
97
98
99
            &distributed_runtime,
            nats_client_for_metrics.client().clone(),
        )?;
        let mut drt_hierarchies = distributed_runtime.parent_hierarchy();
        drt_hierarchies.push(distributed_runtime.hierarchy());
        // Register a callback to update NATS client metrics
100
101
        let nats_client_callback = Arc::new({
            let nats_client_clone = nats_client_metrics.clone();
102
            move || {
103
                nats_client_clone.set_from_client_stats();
104
105
106
                Ok(())
            }
        });
107
        distributed_runtime.register_metrics_callback(drt_hierarchies, nats_client_callback);
108

109
110
111
112
113
114
115
        // Initialize the uptime gauge in SystemHealth
        distributed_runtime
            .system_health
            .lock()
            .unwrap()
            .initialize_uptime_gauge(&distributed_runtime)?;

116
        // Handle system status server initialization
117
        if let Some(cancel_token) = cancel_token {
118
            // System server is enabled - start both the state and HTTP server
119
120
121
            let host = config.system_host.clone();
            let port = config.system_port;

122
            // Start system status server (it creates SystemStatusState internally)
123
            match crate::system_status_server::spawn_system_status_server(
124
125
126
127
                &host,
                port,
                cancel_token,
                Arc::new(distributed_runtime.clone()),
128
129
130
            )
            .await
            {
131
                Ok((addr, handle)) => {
132
                    tracing::info!("System status server started successfully on {}", addr);
133

134
135
136
137
138
139
                    // Store system status server information
                    let system_status_server_info =
                        crate::system_status_server::SystemStatusServerInfo::new(
                            addr,
                            Some(handle),
                        );
140

141
                    // Initialize the system_status_server field
142
                    distributed_runtime
143
144
145
                        .system_status_server
                        .set(Arc::new(system_status_server_info))
                        .expect("System status server info should only be set once");
146
147
                }
                Err(e) => {
148
                    tracing::error!("System status server startup failed: {}", e);
149
                }
150
            }
151
        } else {
152
            // System server HTTP is disabled, but uptime metrics are still being tracked via SystemHealth
153
154
155
            tracing::debug!(
                "System status server HTTP endpoints disabled, but uptime metrics are being tracked"
            );
156
157
        }

158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
        // Start health check manager if enabled
        if config.health_check_enabled {
            let health_check_config = crate::health_check::HealthCheckConfig {
                canary_wait_time: std::time::Duration::from_secs(config.canary_wait_time_secs),
                request_timeout: std::time::Duration::from_secs(
                    config.health_check_request_timeout_secs,
                ),
            };

            // Start the health check manager (spawns per-endpoint monitoring tasks)
            match crate::health_check::start_health_check_manager(
                distributed_runtime.clone(),
                Some(health_check_config),
            )
            .await
            {
                Ok(()) => tracing::info!(
                    "Health check manager started (canary_wait_time: {}s, request_timeout: {}s)",
                    config.canary_wait_time_secs,
                    config.health_check_request_timeout_secs
                ),
                Err(e) => tracing::error!("Health check manager failed to start: {}", e),
            }
        }

183
        Ok(distributed_runtime)
Ryan Olson's avatar
Ryan Olson committed
184
185
186
    }

    pub async fn from_settings(runtime: Runtime) -> Result<Self> {
187
188
189
190
191
192
193
        let config = DistributedConfig::from_settings(false);
        Self::new(runtime, config).await
    }

    // Call this if you are using static workers that do not need etcd-based discovery.
    pub async fn from_settings_without_discovery(runtime: Runtime) -> Result<Self> {
        let config = DistributedConfig::from_settings(true);
Ryan Olson's avatar
Ryan Olson committed
194
195
196
197
198
199
200
        Self::new(runtime, config).await
    }

    pub fn runtime(&self) -> &Runtime {
        &self.runtime
    }

201
202
203
204
    pub fn primary_token(&self) -> CancellationToken {
        self.runtime.primary_token()
    }

205
206
207
208
    /// The etcd lease all our components will be attached to.
    /// Not available for static workers.
    pub fn primary_lease(&self) -> Option<etcd::Lease> {
        self.etcd_client.as_ref().map(|c| c.primary_lease())
Ryan Olson's avatar
Ryan Olson committed
209
210
211
212
213
214
215
216
    }

    pub fn shutdown(&self) {
        self.runtime.shutdown();
    }

    /// Create a [`Namespace`]
    pub fn namespace(&self, name: impl Into<String>) -> Result<Namespace> {
217
        Namespace::new(self.clone(), name.into(), self.is_static)
Ryan Olson's avatar
Ryan Olson committed
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
    }

    // /// Create a [`Component`]
    // pub fn component(
    //     &self,
    //     name: impl Into<String>,
    //     namespace: impl Into<String>,
    // ) -> Result<Component> {
    //     Ok(ComponentBuilder::from_runtime(self.clone())
    //         .name(name.into())
    //         .namespace(namespace.into())
    //         .build()?)
    // }

    pub(crate) fn discovery_client(&self, namespace: impl Into<String>) -> DiscoveryClient {
233
234
235
236
237
238
        DiscoveryClient::new(
            namespace.into(),
            self.etcd_client
                .clone()
                .expect("Attempt to get discovery_client on static DistributedRuntime"),
        )
Ryan Olson's avatar
Ryan Olson committed
239
240
241
242
243
244
    }

    pub(crate) fn service_client(&self) -> ServiceClient {
        ServiceClient::new(self.nats_client.clone())
    }

245
    pub async fn tcp_server(&self) -> Result<Arc<tcp::server::TcpStreamServer>> {
Ryan Olson's avatar
Ryan Olson committed
246
247
248
249
250
251
252
253
254
255
256
257
258
259
260
        Ok(self
            .tcp_server
            .get_or_try_init(async move {
                let options = tcp::server::ServerOptions::default();
                let server = tcp::server::TcpStreamServer::new(options).await?;
                OK(server)
            })
            .await?
            .clone())
    }

    pub fn nats_client(&self) -> nats::Client {
        self.nats_client.clone()
    }

261
262
263
264
265
    /// Get system status server information if available
    pub fn system_status_server_info(
        &self,
    ) -> Option<Arc<crate::system_status_server::SystemStatusServerInfo>> {
        self.system_status_server.get().cloned()
266
267
    }

268
    // todo(ryan): deprecate this as we move to Discovery traits and Component Identifiers
269
    pub fn etcd_client(&self) -> Option<etcd::Client> {
Ryan Olson's avatar
Ryan Olson committed
270
271
        self.etcd_client.clone()
    }
272
273
274
275

    pub fn child_token(&self) -> CancellationToken {
        self.runtime.child_token()
    }
276

277
278
279
280
    pub(crate) fn graceful_shutdown_tracker(&self) -> Arc<GracefulShutdownTracker> {
        self.runtime.graceful_shutdown_tracker()
    }

281
282
283
    pub fn instance_sources(&self) -> Arc<Mutex<HashMap<Endpoint, Weak<InstanceSource>>>> {
        self.instance_sources.clone()
    }
284

285
286
    /// Add a Prometheus metric to a specific hierarchy's registry. Note that it is possible
    /// to register the same metric name multiple times, as long as the labels are different.
287
288
289
290
291
292
293
294
    pub fn add_prometheus_metric(
        &self,
        hierarchy: &str,
        prometheus_metric: Box<dyn prometheus::core::Collector>,
    ) -> anyhow::Result<()> {
        let mut registries = self.hierarchy_to_metricsregistry.write().unwrap();
        let entry = registries.entry(hierarchy.to_string()).or_default();

295
296
297
298
299
        // Try to register the metric
        entry
            .prometheus_registry
            .register(prometheus_metric)
            .map_err(|e| e.into())
300
301
302
303
304
305
306
307
308
309
310
311
312
313
314
315
316
317
318
319
320
321
322
323
324
325
326
327
328
329
    }

    /// Add a callback function to metrics registries for the given hierarchies
    pub fn register_metrics_callback(&self, hierarchies: Vec<String>, callback: RuntimeCallback) {
        let mut registries = self.hierarchy_to_metricsregistry.write().unwrap();
        for hierarchy in hierarchies {
            registries
                .entry(hierarchy)
                .or_default()
                .add_callback(callback.clone());
        }
    }

    /// Execute all callbacks for a given hierarchy key and return their results
    pub fn execute_metrics_callbacks(&self, hierarchy: &str) -> Vec<anyhow::Result<()>> {
        // Clone callbacks while holding read lock (fast operation)
        let callbacks = {
            let registries = self.hierarchy_to_metricsregistry.read().unwrap();
            registries
                .get(hierarchy)
                .map(|entry| entry.runtime_callbacks.clone())
        }; // Read lock released here

        // Execute callbacks without holding the lock
        match callbacks {
            Some(callbacks) => callbacks.iter().map(|callback| callback()).collect(),
            None => Vec::new(),
        }
    }

330
331
332
333
334
335
336
337
338
339
340
341
342
    /// Clear everything in etcd under a key.
    /// todo: Remove as soon as we auto-delete the MDC.
    pub async fn temp_clear_namespace(&self, name: &str) -> anyhow::Result<()> {
        let Some(etcd_client) = self.etcd_client() else {
            return Ok(()); // no etcd, nothing to clear
        };
        let kvs = etcd_client.kv_get_prefix(name).await?;
        for kv in kvs {
            etcd_client.kv_delete(kv.key(), None).await?;
        }
        Ok(())
    }

343
344
345
346
347
    /// Get all registered hierarchy keys. Private because it is only used for testing.
    fn get_registered_hierarchies(&self) -> Vec<String> {
        let registries = self.hierarchy_to_metricsregistry.read().unwrap();
        registries.keys().cloned().collect()
    }
Ryan Olson's avatar
Ryan Olson committed
348
349
350
351
352
353
}

#[derive(Dissolve)]
pub struct DistributedConfig {
    pub etcd_config: etcd::ClientOptions,
    pub nats_config: nats::ClientOptions,
354
    pub is_static: bool,
Ryan Olson's avatar
Ryan Olson committed
355
356
357
}

impl DistributedConfig {
358
    pub fn from_settings(is_static: bool) -> DistributedConfig {
Ryan Olson's avatar
Ryan Olson committed
359
360
361
        DistributedConfig {
            etcd_config: etcd::ClientOptions::default(),
            nats_config: nats::ClientOptions::default(),
362
            is_static,
Ryan Olson's avatar
Ryan Olson committed
363
364
        }
    }
Ryan Olson's avatar
Ryan Olson committed
365
366
367
368
369

    pub fn for_cli() -> DistributedConfig {
        let mut config = DistributedConfig {
            etcd_config: etcd::ClientOptions::default(),
            nats_config: nats::ClientOptions::default(),
370
            is_static: false,
Ryan Olson's avatar
Ryan Olson committed
371
372
373
374
375
376
        };

        config.etcd_config.attach_lease = false;

        config
    }
Ryan Olson's avatar
Ryan Olson committed
377
}
378

379
pub mod distributed_test_utils {
380
381
382
    //! Common test helper functions for DistributedRuntime tests
    // TODO: Use in-memory DistributedRuntime for tests instead of full runtime when available.

383
    /// Helper function to create a DRT instance for integration-only tests.
384
385
386
387
388
389
390
391
392
393
    /// Uses from_current to leverage existing tokio runtime
    /// Note: Settings are read from environment variables inside DistributedRuntime::from_settings_without_discovery
    #[cfg(feature = "integration")]
    pub async fn create_test_drt_async() -> crate::DistributedRuntime {
        let rt = crate::Runtime::from_current().unwrap();
        crate::DistributedRuntime::from_settings_without_discovery(rt)
            .await
            .unwrap()
    }
}
394

395
#[cfg(all(test, feature = "integration"))]
396
397
398
399
400
401
402
403
404
405
406
407
408
409
410
411
412
413
414
415
416
417
418
419
420
421
422
423
424
425
426
427
428
429
430
431
432
433
434
435
436
437
438
439
440
441
442
443
444
445
446
447
448
449
450
mod tests {
    use super::distributed_test_utils::create_test_drt_async;

    #[tokio::test]
    async fn test_drt_uptime_after_delay_system_disabled() {
        // Test uptime with system status server disabled
        temp_env::async_with_vars([("DYN_SYSTEM_ENABLED", Some("false"))], async {
            // Start a DRT
            let drt = create_test_drt_async().await;

            // Wait 50ms
            tokio::time::sleep(tokio::time::Duration::from_millis(50)).await;

            // Check that uptime is 50+ ms
            let uptime = drt.system_health.lock().unwrap().uptime();
            assert!(
                uptime >= std::time::Duration::from_millis(50),
                "Expected uptime to be at least 50ms, but got {:?}",
                uptime
            );

            println!(
                "✓ DRT uptime test passed (system disabled): uptime = {:?}",
                uptime
            );
        })
        .await;
    }

    #[tokio::test]
    async fn test_drt_uptime_after_delay_system_enabled() {
        // Test uptime with system status server enabled
        temp_env::async_with_vars([("DYN_SYSTEM_ENABLED", Some("true"))], async {
            // Start a DRT
            let drt = create_test_drt_async().await;

            // Wait 50ms
            tokio::time::sleep(tokio::time::Duration::from_millis(50)).await;

            // Check that uptime is 50+ ms
            let uptime = drt.system_health.lock().unwrap().uptime();
            assert!(
                uptime >= std::time::Duration::from_millis(50),
                "Expected uptime to be at least 50ms, but got {:?}",
                uptime
            );

            println!(
                "✓ DRT uptime test passed (system enabled): uptime = {:?}",
                uptime
            );
        })
        .await;
    }
}