1use std::path::{Path, PathBuf};
2use std::sync::Arc;
3use std::time::Duration;
4
5use kmp_adapter_embedded::{
6 EmbeddedKernelStore, QualityTelemetryRetention, SqliteQualityTelemetryReader,
7 SqliteQualityTelemetryWriter, StorageEngine,
8};
9use kmp_application::{
10 CommandApplicationService, KernelMemoryApplicationService, QueryApplicationService,
11 UpdateContextUseCase,
12};
13use kmp_domain::{PortError, QualityMetricsObserver};
14use kmp_observability::{BufferedQualityMetricsObserver, EmbeddedTelemetryGuard};
15
16const GENERATOR_VERSION: &str = env!("CARGO_PKG_VERSION");
17
18pub type EmbeddedMemoryService = KernelMemoryApplicationService<
22 EmbeddedKernelStore,
23 EmbeddedKernelStore,
24 EmbeddedKernelStore,
25 EmbeddedKernelStore,
26 EmbeddedKernelStore,
27>;
28
29pub struct EmbeddedKernel {
32 data_dir: PathBuf,
33 engine: StorageEngine,
34 store: EmbeddedKernelStore,
35 service: Arc<EmbeddedMemoryService>,
36 quality_observer: Arc<BufferedQualityMetricsObserver>,
37 telemetry_guard: Option<EmbeddedTelemetryGuard>,
38 telemetry_writer: Option<Arc<SqliteQualityTelemetryWriter>>,
39 quality_telemetry_error: Option<String>,
40}
41
42impl EmbeddedKernel {
43 pub fn open(data_dir: &Path) -> Result<Self, PortError> {
48 Self::open_with_engine(data_dir, None)
49 }
50
51 pub fn open_with_engine(
57 data_dir: &Path,
58 engine: Option<StorageEngine>,
59 ) -> Result<Self, PortError> {
60 let opened = match engine {
61 Some(engine) => EmbeddedKernelStore::open_with_engine(data_dir, engine),
62 None => EmbeddedKernelStore::open(data_dir),
63 };
64 let store = opened?;
65
66 let graph = Arc::new(store.clone());
67 let detail = Arc::new(store.clone());
68 let query_application = Arc::new(
69 QueryApplicationService::new(
70 Arc::clone(&graph),
71 Arc::clone(&detail),
72 Arc::new(store.clone()),
73 GENERATOR_VERSION,
74 )
75 .with_read_snapshots(Arc::new(store.clone())),
76 );
77 let update_context = Arc::new(UpdateContextUseCase::new_with_projection_writer(
78 Arc::new(store.clone()),
79 store.clone(),
80 GENERATOR_VERSION,
81 ));
82 let service = Arc::new(KernelMemoryApplicationService::new(
83 query_application,
84 Arc::new(CommandApplicationService::new(update_context)),
85 ));
86 let (quality_observer, telemetry_guard, telemetry_writer, quality_telemetry_error) =
87 compose_quality_telemetry(data_dir);
88
89 let engine = EmbeddedKernelStore::engine_of(data_dir)?;
92
93 Ok(Self {
94 data_dir: data_dir.to_path_buf(),
95 engine,
96 store,
97 service,
98 quality_observer,
99 telemetry_guard,
100 telemetry_writer,
101 quality_telemetry_error,
102 })
103 }
104
105 pub fn engine(&self) -> StorageEngine {
109 self.engine
110 }
111
112 pub fn data_dir(&self) -> &Path {
113 &self.data_dir
114 }
115
116 pub fn store(&self) -> &EmbeddedKernelStore {
117 &self.store
118 }
119
120 pub fn service(&self) -> Arc<EmbeddedMemoryService> {
121 Arc::clone(&self.service)
122 }
123
124 pub fn quality_observer(&self) -> Arc<dyn QualityMetricsObserver> {
125 self.quality_observer.clone()
126 }
127
128 pub fn quality_telemetry_dropped_observations(&self) -> u64 {
129 self.quality_observer.dropped_observations()
130 }
131
132 pub fn quality_telemetry_write_failures(&self) -> u64 {
133 self.telemetry_writer
134 .as_ref()
135 .map_or(0, |writer| writer.write_failures())
136 }
137
138 pub fn quality_telemetry_error(&self) -> Option<&str> {
139 self.quality_telemetry_error.as_deref()
140 }
141
142 pub fn quality_telemetry_active(&self) -> bool {
143 self.telemetry_guard.is_some()
144 }
145
146 pub fn quality_telemetry_reader(&self) -> Option<SqliteQualityTelemetryReader> {
149 self.telemetry_writer.as_ref().map(|writer| writer.reader())
150 }
151}
152
153fn compose_quality_telemetry(
154 data_dir: &Path,
155) -> (
156 Arc<BufferedQualityMetricsObserver>,
157 Option<EmbeddedTelemetryGuard>,
158 Option<Arc<SqliteQualityTelemetryWriter>>,
159 Option<String>,
160) {
161 let (observer, receiver) = BufferedQualityMetricsObserver::with_capacity(1_024);
162 let observer = Arc::new(observer);
163 let writer =
164 match SqliteQualityTelemetryWriter::open(data_dir, QualityTelemetryRetention::default()) {
165 Ok(writer) => Arc::new(writer),
166 Err(error) => {
167 drop(receiver);
168 let raw = error.to_string();
169 let reason = if raw.contains("Cannot acquire lock")
170 || raw.to_ascii_lowercase().contains("already open")
171 {
172 format!("the store's quality telemetry is held by another process ({raw})")
173 } else {
174 raw
175 };
176 return (observer, None, None, Some(reason));
177 }
178 };
179 let batch_writer = Arc::clone(&writer);
180 let final_writer = Arc::clone(&writer);
181 let guard = match EmbeddedTelemetryGuard::try_spawn(
182 receiver,
183 64,
184 Duration::from_millis(250),
185 move |batch| {
186 let _ = batch_writer.write_batch(&batch);
187 },
188 move || {
189 let _ = final_writer.flush_durable();
190 },
191 ) {
192 Ok(guard) => guard,
193 Err(error) => {
194 return (
195 observer,
196 None,
197 Some(writer),
198 Some(format!("quality telemetry worker could not start: {error}")),
199 );
200 }
201 };
202 (observer, Some(guard), Some(writer), None)
203}
204
205#[cfg(test)]
206mod tests {
207 use kmp_domain::{BundleQualityMetrics, QualityMetricsObserver, QualityObservationContext};
208
209 use super::EmbeddedKernel;
210
211 #[test]
212 fn telemetry_startup_failure_never_prevents_the_kernel_from_opening() {
213 let data_dir = tempfile::tempdir().expect("temp data dir");
214 std::fs::write(
215 data_dir.path().join("telemetry"),
216 b"blocks directory creation",
217 )
218 .expect("blocking file");
219
220 let kernel = EmbeddedKernel::open(data_dir.path()).expect("kernel remains available");
221 assert!(!kernel.quality_telemetry_active());
222 assert!(kernel.quality_telemetry_error().is_some());
223 let metrics = BundleQualityMetrics::new(1, 1.0, 0.0, 0.0, 0.0).expect("valid metrics");
224 kernel.quality_observer.observe(
225 &metrics,
226 &QualityObservationContext {
227 rpc: "kmp_wake".to_string(),
228 root_node_id: "question:fail-open".to_string(),
229 role: "resumer".to_string(),
230 revision: Some(1),
231 },
232 );
233 assert_eq!(kernel.quality_telemetry_dropped_observations(), 1);
234 assert_eq!(kernel.quality_telemetry_write_failures(), 0);
235 }
236
237 #[test]
238 fn live_quality_reader_shares_the_kernel_journal() {
239 let data_dir = tempfile::tempdir().expect("temp data dir");
240 let kernel = EmbeddedKernel::open(data_dir.path()).expect("kernel");
241 let reader = kernel
242 .quality_telemetry_reader()
243 .expect("active telemetry exposes its read side");
244
245 assert_eq!(reader.count().expect("shared journal is readable"), 0);
246 }
247
248 #[test]
249 fn two_telemetry_compositions_share_the_sqlite_journal() {
250 let data_dir = tempfile::tempdir().expect("temp data dir");
251 let first = super::compose_quality_telemetry(data_dir.path());
252 assert!(first.2.is_some(), "the first writer opens the journal");
253 let second = super::compose_quality_telemetry(data_dir.path());
254 assert!(
255 second.2.is_some(),
256 "the second writer opens the same journal"
257 );
258 assert!(
259 second.3.is_none(),
260 "SQLite does not report process ownership"
261 );
262 }
263}