1use crate::cli::MemoryType;
4use crate::errors::AppError;
5use crate::graph::traverse_from_memories_with_hops;
6use crate::i18n::errors_msg;
7use crate::output::{self, JsonOutputFormat, RecallItem, RecallResponse};
8use crate::paths::AppPaths;
9use crate::storage::connection::open_ro;
10use crate::storage::entities;
11use crate::storage::memories;
12
13#[derive(clap::Args)]
20#[command(after_long_help = "EXAMPLES:\n \
21 # Semantic search for top 5 matches\n \
22 sqlite-graphrag recall \"authentication design\" --k 5\n\n \
23 # Disable automatic graph expansion\n \
24 sqlite-graphrag recall \"JWT tokens\" --k 3 --no-graph\n\n \
25 # Limit graph traversal depth and minimum edge weight\n \
26 sqlite-graphrag recall \"auth\" --k 5 --max-hops 2 --min-weight 0.3\n\n \
27 # Filter by memory type\n \
28 sqlite-graphrag recall \"deployment\" --type decision --k 10\n\n \
29 # Cap results by distance threshold\n \
30 sqlite-graphrag recall \"API design\" --k 5 --max-distance 0.8\n\n \
31NOTES:\n \
32 When --no-graph is active, graph traversal is skipped and every result has\n \
33 source=\"direct\". The source field is therefore redundant with --no-graph and\n \
34 may be ignored by callers in that mode.")]
35pub struct RecallArgs {
36 #[arg(
37 allow_hyphen_values = true,
38 help = "Search query string (semantic vector search via sqlite-vec)"
39 )]
40 pub query: String,
41 #[arg(short = 'k', long, aliases = ["limit", "top-k"], default_value = "10", value_parser = crate::parsers::parse_k_range)]
49 pub k: usize,
50 #[arg(long, value_enum)]
54 pub r#type: Option<MemoryType>,
55 #[arg(long)]
56 pub namespace: Option<String>,
57 #[arg(long)]
58 pub no_graph: bool,
59 #[arg(long)]
65 pub precise: bool,
66 #[arg(long, default_value = "2")]
67 pub max_hops: u32,
68 #[arg(long, default_value = "0.3")]
69 pub min_weight: f64,
70 #[arg(long, value_name = "N")]
76 pub max_graph_results: Option<usize>,
77 #[arg(long, alias = "min-distance", default_value = "1.0")]
82 pub max_distance: f32,
83 #[arg(long, value_enum, default_value_t = JsonOutputFormat::Json)]
84 pub format: JsonOutputFormat,
85 #[arg(long, env = "SQLITE_GRAPHRAG_DB_PATH")]
86 pub db: Option<String>,
87 #[arg(long, hide = true, help = "No-op; JSON is always emitted on stdout")]
89 pub json: bool,
90 #[arg(long, conflicts_with = "namespace")]
95 pub all_namespaces: bool,
96}
97
98#[tracing::instrument(skip_all, level = "debug", name = "recall")]
99pub fn run(args: RecallArgs) -> Result<(), AppError> {
100 let start = std::time::Instant::now();
101 let _ = args.format;
102 tracing::debug!(target: "recall", query = %args.query, k = args.k, "searching");
103
104 if args.no_graph {
106 if args.max_hops != 2 {
107 return Err(AppError::Validation(
108 "--max-hops has no effect with --no-graph; remove one".to_string(),
109 ));
110 }
111 if (args.min_weight - 0.3).abs() > f64::EPSILON {
112 return Err(AppError::Validation(
113 "--min-weight has no effect with --no-graph; remove one".to_string(),
114 ));
115 }
116 }
117
118 if args.query.trim().is_empty() {
119 return Err(AppError::Validation(crate::i18n::validation::empty_query()));
120 }
121 let namespaces: Vec<String> = if args.all_namespaces {
125 Vec::new()
126 } else {
127 vec![crate::namespace::resolve_namespace(
128 args.namespace.as_deref(),
129 )?]
130 };
131 let namespace_for_graph = namespaces
133 .first()
134 .cloned()
135 .unwrap_or_else(|| "global".to_string());
136 let paths = AppPaths::resolve(args.db.as_deref())?;
137
138 crate::storage::connection::ensure_db_ready(&paths)?;
139
140 output::emit_progress_i18n(
141 "Computing query embedding...",
142 "Calculando embedding da consulta...",
143 );
144 let embedding = crate::embedder::embed_query_local(&paths.models, &args.query)?;
145
146 let conn = open_ro(&paths.db)?;
147
148 let memory_type_str = args.r#type.map(|t| t.as_str());
149 let effective_k = if args.precise { 100_000 } else { args.k };
152 let knn_results =
153 memories::knn_search(&conn, &embedding, &namespaces, memory_type_str, effective_k)?;
154
155 let mut direct_matches = Vec::with_capacity(effective_k);
156 let mut memory_ids: Vec<i64> = Vec::with_capacity(effective_k);
157 for (memory_id, distance) in knn_results {
158 let row = {
159 let mut stmt = conn.prepare_cached(
160 "SELECT id, namespace, name, type, description, body, body_hash,
161 session_id, source, metadata, created_at, updated_at
162 FROM memories WHERE id=?1 AND deleted_at IS NULL",
163 )?;
164 stmt.query_row(rusqlite::params![memory_id], |r| {
165 Ok(memories::MemoryRow {
166 id: r.get(0)?,
167 namespace: r.get(1)?,
168 name: r.get(2)?,
169 memory_type: r.get(3)?,
170 description: r.get(4)?,
171 body: r.get(5)?,
172 body_hash: r.get(6)?,
173 session_id: r.get(7)?,
174 source: r.get(8)?,
175 metadata: r.get(9)?,
176 created_at: r.get(10)?,
177 updated_at: r.get(11)?,
178 deleted_at: None,
179 })
180 })
181 .ok()
182 };
183 if let Some(row) = row {
184 let snippet: String = row.body.chars().take(300).collect();
185 direct_matches.push(RecallItem {
186 memory_id: row.id,
187 name: row.name,
188 namespace: row.namespace,
189 memory_type: row.memory_type,
190 description: row.description,
191 snippet,
192 distance,
193 score: RecallItem::score_from_distance(distance),
194 source: "direct".to_string(),
195 graph_depth: None,
197 });
198 memory_ids.push(memory_id);
199 }
200 }
201
202 let mut graph_matches = Vec::with_capacity(8);
203 if !args.no_graph {
204 let entity_knn = entities::knn_search(&conn, &embedding, &namespace_for_graph, 5)?;
205 let entity_ids: Vec<i64> = entity_knn.iter().map(|(id, _)| *id).collect();
206
207 let all_seed_ids: Vec<i64> = memory_ids
208 .iter()
209 .chain(entity_ids.iter())
210 .copied()
211 .collect();
212
213 if !all_seed_ids.is_empty() {
214 let graph_memory_ids = traverse_from_memories_with_hops(
215 &conn,
216 &all_seed_ids,
217 &namespace_for_graph,
218 args.min_weight,
219 args.max_hops,
220 )?;
221
222 for (graph_mem_id, hop) in graph_memory_ids {
223 if let Some(cap) = args.max_graph_results {
226 if graph_matches.len() >= cap {
227 break;
228 }
229 }
230 let row = {
231 let mut stmt = conn.prepare_cached(
232 "SELECT id, namespace, name, type, description, body, body_hash,
233 session_id, source, metadata, created_at, updated_at
234 FROM memories WHERE id=?1 AND deleted_at IS NULL",
235 )?;
236 stmt.query_row(rusqlite::params![graph_mem_id], |r| {
237 Ok(memories::MemoryRow {
238 id: r.get(0)?,
239 namespace: r.get(1)?,
240 name: r.get(2)?,
241 memory_type: r.get(3)?,
242 description: r.get(4)?,
243 body: r.get(5)?,
244 body_hash: r.get(6)?,
245 session_id: r.get(7)?,
246 source: r.get(8)?,
247 metadata: r.get(9)?,
248 created_at: r.get(10)?,
249 updated_at: r.get(11)?,
250 deleted_at: None,
251 })
252 })
253 .ok()
254 };
255 if let Some(row) = row {
256 let snippet: String = row.body.chars().take(300).collect();
257 let graph_distance = 1.0 - 1.0 / (hop as f32 + 1.0);
263 graph_matches.push(RecallItem {
264 memory_id: row.id,
265 name: row.name,
266 namespace: row.namespace,
267 memory_type: row.memory_type,
268 description: row.description,
269 snippet,
270 distance: graph_distance,
271 score: RecallItem::score_from_distance(graph_distance),
272 source: "graph".to_string(),
273 graph_depth: Some(hop),
274 });
275 }
276 }
277 }
278 }
279
280 if args.max_distance < 1.0 {
282 let has_relevant = direct_matches
283 .iter()
284 .any(|item| item.distance <= args.max_distance);
285 if !has_relevant {
286 return Err(AppError::NotFound(errors_msg::no_recall_results(
287 args.max_distance,
288 &args.query,
289 &namespace_for_graph,
290 )));
291 }
292 }
293
294 let results: Vec<RecallItem> = direct_matches
295 .iter()
296 .cloned()
297 .chain(graph_matches.iter().cloned())
298 .collect();
299
300 output::emit_json(&RecallResponse {
301 query: args.query,
302 k: args.k,
303 direct_matches,
304 graph_matches,
305 results,
306 elapsed_ms: start.elapsed().as_millis() as u64,
307 })?;
308
309 Ok(())
310}
311
312#[cfg(test)]
313mod tests {
314 use crate::output::{RecallItem, RecallResponse};
315
316 fn make_item(name: &str, distance: f32, source: &str) -> RecallItem {
317 RecallItem {
318 memory_id: 1,
319 name: name.to_string(),
320 namespace: "global".to_string(),
321 memory_type: "fact".to_string(),
322 description: "desc".to_string(),
323 snippet: "snippet".to_string(),
324 distance,
325 score: RecallItem::score_from_distance(distance),
326 source: source.to_string(),
327 graph_depth: if source == "graph" { Some(0) } else { None },
328 }
329 }
330
331 #[test]
333 fn recall_item_score_is_present_and_finite_for_direct_match() {
334 let item = make_item("mem", 0.25, "direct");
335 let json = serde_json::to_value(&item).expect("serialization failed");
336 let score = json["score"].as_f64().expect("score must be a number");
337 assert!(
338 (0.0..=1.0).contains(&score),
339 "score must be in [0, 1], got {score}"
340 );
341 assert!(
342 (score - 0.75).abs() < 1e-6,
343 "score must equal 1 - distance for canonical case"
344 );
345 }
346
347 #[test]
348 fn recall_item_score_clamps_distance_outside_unit_range() {
349 assert_eq!(RecallItem::score_from_distance(2.0), 0.0);
351 assert_eq!(RecallItem::score_from_distance(-0.5), 1.0);
352 assert_eq!(RecallItem::score_from_distance(f32::NAN), 0.0);
353 }
354
355 #[test]
356 fn recall_response_serializes_required_fields() {
357 let resp = RecallResponse {
358 query: "rust memory".to_string(),
359 k: 5,
360 direct_matches: vec![make_item("mem-a", 0.12, "direct")],
361 graph_matches: vec![],
362 results: vec![make_item("mem-a", 0.12, "direct")],
363 elapsed_ms: 42,
364 };
365
366 let json = serde_json::to_value(&resp).expect("serialization failed");
367 assert_eq!(json["query"], "rust memory");
368 assert_eq!(json["k"], 5);
369 assert_eq!(json["elapsed_ms"], 42u64);
370 assert!(json["direct_matches"].is_array());
371 assert!(json["graph_matches"].is_array());
372 assert!(json["results"].is_array());
373 }
374
375 #[test]
376 fn recall_item_serializes_renamed_type() {
377 let item = make_item("mem-test", 0.25, "direct");
378 let json = serde_json::to_value(&item).expect("serialization failed");
379
380 assert_eq!(json["type"], "fact");
382 assert_eq!(json["distance"], 0.25f32);
383 assert_eq!(json["source"], "direct");
384 }
385
386 #[test]
387 fn recall_response_results_contains_direct_and_graph() {
388 let direct = make_item("d-mem", 0.10, "direct");
389 let graph = make_item("g-mem", 0.0, "graph");
390
391 let resp = RecallResponse {
392 query: "query".to_string(),
393 k: 10,
394 direct_matches: vec![direct.clone()],
395 graph_matches: vec![graph.clone()],
396 results: vec![direct, graph],
397 elapsed_ms: 10,
398 };
399
400 let json = serde_json::to_value(&resp).expect("serialization failed");
401 assert_eq!(json["direct_matches"].as_array().unwrap().len(), 1);
402 assert_eq!(json["graph_matches"].as_array().unwrap().len(), 1);
403 assert_eq!(json["results"].as_array().unwrap().len(), 2);
404 assert_eq!(json["results"][0]["source"], "direct");
405 assert_eq!(json["results"][1]["source"], "graph");
406 }
407
408 #[test]
409 fn recall_response_empty_serializes_empty_arrays() {
410 let resp = RecallResponse {
411 query: "nothing".to_string(),
412 k: 3,
413 direct_matches: vec![],
414 graph_matches: vec![],
415 results: vec![],
416 elapsed_ms: 1,
417 };
418
419 let json = serde_json::to_value(&resp).expect("serialization failed");
420 assert_eq!(json["direct_matches"].as_array().unwrap().len(), 0);
421 assert_eq!(json["results"].as_array().unwrap().len(), 0);
422 }
423
424 #[test]
425 fn graph_matches_distance_uses_hop_count_proxy() {
426 let cases: &[(u32, f32)] = &[(0, 0.0), (1, 0.5), (2, 0.6667), (3, 0.75)];
432 for &(hop, expected) in cases {
433 let d = 1.0_f32 - 1.0 / (hop as f32 + 1.0);
434 assert!(
435 (d - expected).abs() < 0.001,
436 "hop={hop} expected={expected} got={d}"
437 );
438 }
439 }
440}