1use crate::blueprint::{AgentMeta, Blueprint};
29use serde_json::Value;
30use std::collections::BTreeMap;
31
32#[derive(Debug, Clone, PartialEq)]
34pub struct CtxKeyResolution {
35 pub value: Value,
37 pub winning_tier: CtxTier,
39}
40
41#[derive(Debug, Clone, Copy, PartialEq, Eq)]
50pub enum CtxTier {
51 AgentInline,
54 MetaRef,
57 BpGlobal,
60}
61
62pub fn explain_agent_ctx(
77 bp: &Blueprint,
78 agent: &str,
79) -> Option<BTreeMap<String, CtxKeyResolution>> {
80 let agent_def = bp.agents.iter().find(|ad| ad.name == agent)?;
81 let meta: Option<&AgentMeta> = agent_def.meta.as_ref();
82
83 let mut out: BTreeMap<String, CtxKeyResolution> = BTreeMap::new();
84
85 if let Some(Value::Object(obj)) = bp.default_agent_ctx.as_ref() {
87 for (k, v) in obj {
88 out.insert(
89 k.clone(),
90 CtxKeyResolution {
91 value: v.clone(),
92 winning_tier: CtxTier::BpGlobal,
93 },
94 );
95 }
96 }
97
98 if let Some(meta_ref) = meta.and_then(|m| m.meta_ref.as_ref()) {
99 if let Some(meta_def) = bp.metas.iter().find(|m| &m.name == meta_ref) {
100 if let Value::Object(obj) = &meta_def.ctx {
101 for (k, v) in obj {
102 out.insert(
103 k.clone(),
104 CtxKeyResolution {
105 value: v.clone(),
106 winning_tier: CtxTier::MetaRef,
107 },
108 );
109 }
110 }
111 }
112 }
113
114 if let Some(Value::Object(obj)) = meta.and_then(|m| m.ctx.as_ref()) {
115 for (k, v) in obj {
116 out.insert(
117 k.clone(),
118 CtxKeyResolution {
119 value: v.clone(),
120 winning_tier: CtxTier::AgentInline,
121 },
122 );
123 }
124 }
125
126 Some(out)
127}
128
129#[cfg(test)]
130mod tests {
131 use super::*;
132 use crate::blueprint::{
133 current_schema_version, AgentDef, AgentKind, BlueprintMetadata, CompilerHints,
134 CompilerStrategy, MetaDef,
135 };
136 use mlua_flow_ir::{Expr, Node as FlowNode};
137 use serde_json::json;
138
139 fn path(s: &str) -> Expr {
140 Expr::Path {
141 at: s.parse().expect("literal test path"),
142 }
143 }
144
145 fn noop_flow() -> FlowNode {
146 FlowNode::Step {
147 ref_: "noop".to_string(),
148 in_: path("$.input"),
149 out: path("$.out"),
150 }
151 }
152
153 fn agent(name: &str, meta: Option<AgentMeta>) -> AgentDef {
154 AgentDef {
155 name: name.to_string(),
156 kind: AgentKind::RustFn,
157 spec: json!({ "fn_id": name }),
158 profile: None,
159 meta,
160 runner: None,
161 runner_ref: None,
162 verdict: None,
163 lints: None,
164 }
165 }
166
167 fn bp(
168 agents: Vec<AgentDef>,
169 metas: Vec<MetaDef>,
170 default_agent_ctx: Option<Value>,
171 ) -> Blueprint {
172 Blueprint {
173 schema_version: current_schema_version(),
174 id: "explain-test".into(),
175 flow: noop_flow(),
176 agents,
177 operators: vec![],
178 metas,
179 hints: CompilerHints::default(),
180 strategy: CompilerStrategy::default(),
181 metadata: BlueprintMetadata::default(),
182 spawner_hints: Default::default(),
183 default_agent_kind: AgentKind::Operator,
184 default_operator_kind: None,
185 default_init_ctx: None,
186 default_agent_ctx,
187 default_context_policy: None,
188 projection_placement: None,
189 audits: vec![],
190 degradation_policy: None,
191 runners: vec![],
192 default_runner: None,
193 subprocesses: vec![],
194 check_policy: None,
195 blueprint_ref_includes: Vec::new(),
196 }
197 }
198
199 #[test]
200 fn bp_global_only() {
201 let blueprint = bp(
202 vec![agent("scout", None)],
203 vec![],
204 Some(json!({ "work_dir": "/bp-global" })),
205 );
206 let resolved = explain_agent_ctx(&blueprint, "scout").expect("agent present");
207 assert_eq!(resolved.len(), 1);
208 assert_eq!(resolved["work_dir"].value, json!("/bp-global"));
209 assert_eq!(resolved["work_dir"].winning_tier, CtxTier::BpGlobal);
210 }
211
212 #[test]
213 fn agent_inline_overrides_bp_global() {
214 let blueprint = bp(
215 vec![agent(
216 "scout",
217 Some(AgentMeta {
218 ctx: Some(json!({ "work_dir": "/inline" })),
219 ..Default::default()
220 }),
221 )],
222 vec![],
223 Some(json!({ "work_dir": "/bp-global", "extra": "kept" })),
224 );
225 let resolved = explain_agent_ctx(&blueprint, "scout").expect("agent present");
226 assert_eq!(resolved["work_dir"].value, json!("/inline"));
227 assert_eq!(resolved["work_dir"].winning_tier, CtxTier::AgentInline);
228 assert_eq!(resolved["extra"].value, json!("kept"));
230 assert_eq!(resolved["extra"].winning_tier, CtxTier::BpGlobal);
231 }
232
233 #[test]
234 fn meta_ref_wins_over_bp_global_and_agent_inline_wins_over_meta_ref() {
235 let blueprint = bp(
236 vec![agent(
237 "scout",
238 Some(AgentMeta {
239 ctx: Some(json!({ "work_dir": "/inline-wins" })),
240 meta_ref: Some("heavy-scan".to_string()),
241 ..Default::default()
242 }),
243 )],
244 vec![MetaDef {
245 name: "heavy-scan".to_string(),
246 ctx: json!({ "work_dir": "/meta-ref", "budget": "high" }),
247 }],
248 Some(json!({ "work_dir": "/bp-global", "budget": "low", "extra": "kept" })),
249 );
250 let resolved = explain_agent_ctx(&blueprint, "scout").expect("agent present");
251 assert_eq!(resolved["work_dir"].value, json!("/inline-wins"));
253 assert_eq!(resolved["work_dir"].winning_tier, CtxTier::AgentInline);
254 assert_eq!(resolved["budget"].value, json!("high"));
256 assert_eq!(resolved["budget"].winning_tier, CtxTier::MetaRef);
257 assert_eq!(resolved["extra"].value, json!("kept"));
259 assert_eq!(resolved["extra"].winning_tier, CtxTier::BpGlobal);
260 }
261
262 #[test]
263 fn agent_not_in_blueprint_returns_none() {
264 let blueprint = bp(vec![agent("scout", None)], vec![], None);
265 assert!(explain_agent_ctx(&blueprint, "no-such-agent").is_none());
266 }
267
268 #[test]
273 fn explain_agent_ctx_matches_derive_agent_ctx_semantics() {
274 use crate::service::task_launch::derive_agent_ctx;
275
276 let blueprint = bp(
277 vec![
278 agent(
279 "scout",
280 Some(AgentMeta {
281 ctx: Some(json!({ "work_dir": "/inline-wins" })),
282 meta_ref: Some("heavy-scan".to_string()),
283 ..Default::default()
284 }),
285 ),
286 agent("plain", None),
287 ],
288 vec![MetaDef {
289 name: "heavy-scan".to_string(),
290 ctx: json!({ "work_dir": "/meta-ref", "budget": "high" }),
291 }],
292 Some(json!({ "work_dir": "/bp-global", "budget": "low", "extra": "kept" })),
293 );
294
295 let (global, per_agent) = derive_agent_ctx(&blueprint);
296
297 for agent_name in ["scout", "plain"] {
298 let mut derived_merged = serde_json::Map::new();
302 if let Some(Value::Object(g)) = &global {
303 derived_merged.extend(g.clone());
304 }
305 if let Some(Value::Object(pa)) = per_agent.get(agent_name) {
306 for (k, v) in pa {
307 derived_merged.insert(k.clone(), v.clone());
308 }
309 }
310
311 let explained = explain_agent_ctx(&blueprint, agent_name).expect("agent present");
312 let explained_values: serde_json::Map<String, Value> = explained
313 .into_iter()
314 .map(|(k, resolution)| (k, resolution.value))
315 .collect();
316
317 assert_eq!(
318 explained_values, derived_merged,
319 "explain_agent_ctx must resolve to the exact same merged \
320 result as derive_agent_ctx for agent '{agent_name}'"
321 );
322 }
323 }
324}