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lean_ctx/server/
mod.rs

1mod dispatch;
2mod execute;
3pub mod helpers;
4
5use rmcp::handler::server::ServerHandler;
6use rmcp::model::*;
7use rmcp::service::{RequestContext, RoleServer};
8use rmcp::ErrorData;
9
10use crate::tools::{CrpMode, LeanCtxServer};
11
12impl ServerHandler for LeanCtxServer {
13    fn get_info(&self) -> ServerInfo {
14        let capabilities = ServerCapabilities::builder().enable_tools().build();
15
16        let instructions = crate::instructions::build_instructions(self.crp_mode);
17
18        InitializeResult::new(capabilities)
19            .with_server_info(Implementation::new("lean-ctx", env!("CARGO_PKG_VERSION")))
20            .with_instructions(instructions)
21    }
22
23    async fn initialize(
24        &self,
25        request: InitializeRequestParams,
26        _context: RequestContext<RoleServer>,
27    ) -> Result<InitializeResult, ErrorData> {
28        let name = request.client_info.name.clone();
29        tracing::info!("MCP client connected: {:?}", name);
30        *self.client_name.write().await = name.clone();
31
32        let derived_root = derive_project_root_from_cwd();
33        let cwd_str = std::env::current_dir()
34            .ok()
35            .map(|p| p.to_string_lossy().to_string())
36            .unwrap_or_default();
37        {
38            let mut session = self.session.write().await;
39            if !cwd_str.is_empty() {
40                session.shell_cwd = Some(cwd_str.clone());
41            }
42            if let Some(ref root) = derived_root {
43                session.project_root = Some(root.clone());
44                tracing::info!("Project root set to: {root}");
45            } else if let Some(ref root) = session.project_root {
46                let root_path = std::path::Path::new(root);
47                let root_has_marker = has_project_marker(root_path);
48                let root_str = root_path.to_string_lossy();
49                let root_suspicious = root_str.contains("/.claude")
50                    || root_str.contains("/.codex")
51                    || root_str.contains("/var/folders/")
52                    || root_str.contains("/tmp/")
53                    || root_str.contains("\\.claude")
54                    || root_str.contains("\\.codex")
55                    || root_str.contains("\\AppData\\Local\\Temp")
56                    || root_str.contains("\\Temp\\");
57                if root_suspicious && !root_has_marker {
58                    session.project_root = None;
59                }
60            }
61            let _ = session.save();
62        }
63
64        let agent_name = name.clone();
65        let agent_root = derived_root.clone().unwrap_or_default();
66        let agent_id_handle = self.agent_id.clone();
67        tokio::task::spawn_blocking(move || {
68            if let Some(home) = dirs::home_dir() {
69                let _ = crate::rules_inject::inject_all_rules(&home);
70            }
71            crate::hooks::refresh_installed_hooks();
72            crate::core::version_check::check_background();
73
74            if !agent_root.is_empty() {
75                let role = match agent_name.to_lowercase().as_str() {
76                    n if n.contains("cursor") => Some("coder"),
77                    n if n.contains("claude") => Some("coder"),
78                    n if n.contains("codex") => Some("coder"),
79                    n if n.contains("antigravity") || n.contains("gemini") => Some("explorer"),
80                    n if n.contains("review") => Some("reviewer"),
81                    n if n.contains("test") => Some("tester"),
82                    _ => None,
83                };
84                let env_role = std::env::var("LEAN_CTX_AGENT_ROLE").ok();
85                let effective_role = env_role.as_deref().or(role);
86                let mut registry = crate::core::agents::AgentRegistry::load_or_create();
87                registry.cleanup_stale(24);
88                let id = registry.register("mcp", effective_role, &agent_root);
89                let _ = registry.save();
90                if let Ok(mut guard) = agent_id_handle.try_write() {
91                    *guard = Some(id);
92                }
93            }
94        });
95
96        let instructions =
97            crate::instructions::build_instructions_with_client(self.crp_mode, &name);
98        let capabilities = ServerCapabilities::builder().enable_tools().build();
99
100        Ok(InitializeResult::new(capabilities)
101            .with_server_info(Implementation::new("lean-ctx", env!("CARGO_PKG_VERSION")))
102            .with_instructions(instructions))
103    }
104
105    async fn list_tools(
106        &self,
107        _request: Option<PaginatedRequestParams>,
108        _context: RequestContext<RoleServer>,
109    ) -> Result<ListToolsResult, ErrorData> {
110        let all_tools = if crate::tool_defs::is_lazy_mode() {
111            crate::tool_defs::lazy_tool_defs()
112        } else if std::env::var("LEAN_CTX_UNIFIED").is_ok()
113            && std::env::var("LEAN_CTX_FULL_TOOLS").is_err()
114        {
115            crate::tool_defs::unified_tool_defs()
116        } else {
117            crate::tool_defs::granular_tool_defs()
118        };
119
120        let disabled = crate::core::config::Config::load().disabled_tools_effective();
121        let tools = if disabled.is_empty() {
122            all_tools
123        } else {
124            all_tools
125                .into_iter()
126                .filter(|t| !disabled.iter().any(|d| t.name.as_ref() == d.as_str()))
127                .collect()
128        };
129
130        let tools = {
131            let active = self.workflow.read().await.clone();
132            if let Some(run) = active {
133                if let Some(state) = run.spec.state(&run.current) {
134                    if let Some(allowed) = &state.allowed_tools {
135                        let mut allow: std::collections::HashSet<&str> =
136                            allowed.iter().map(|s| s.as_str()).collect();
137                        allow.insert("ctx");
138                        allow.insert("ctx_workflow");
139                        return Ok(ListToolsResult {
140                            tools: tools
141                                .into_iter()
142                                .filter(|t| allow.contains(t.name.as_ref()))
143                                .collect(),
144                            ..Default::default()
145                        });
146                    }
147                }
148            }
149            tools
150        };
151
152        Ok(ListToolsResult {
153            tools,
154            ..Default::default()
155        })
156    }
157
158    async fn call_tool(
159        &self,
160        request: CallToolRequestParams,
161        _context: RequestContext<RoleServer>,
162    ) -> Result<CallToolResult, ErrorData> {
163        self.check_idle_expiry().await;
164
165        let original_name = request.name.as_ref().to_string();
166        let (resolved_name, resolved_args) = if original_name == "ctx" {
167            let sub = request
168                .arguments
169                .as_ref()
170                .and_then(|a| a.get("tool"))
171                .and_then(|v| v.as_str())
172                .map(|s| s.to_string())
173                .ok_or_else(|| {
174                    ErrorData::invalid_params("'tool' is required for ctx meta-tool", None)
175                })?;
176            let tool_name = if sub.starts_with("ctx_") {
177                sub
178            } else {
179                format!("ctx_{sub}")
180            };
181            let mut args = request.arguments.unwrap_or_default();
182            args.remove("tool");
183            (tool_name, Some(args))
184        } else {
185            (original_name, request.arguments)
186        };
187        let name = resolved_name.as_str();
188        let args = &resolved_args;
189
190        if name != "ctx_workflow" {
191            let active = self.workflow.read().await.clone();
192            if let Some(run) = active {
193                if let Some(state) = run.spec.state(&run.current) {
194                    if let Some(allowed) = &state.allowed_tools {
195                        let allowed_ok = allowed.iter().any(|t| t == name) || name == "ctx";
196                        if !allowed_ok {
197                            let mut shown = allowed.clone();
198                            shown.sort();
199                            shown.truncate(30);
200                            return Ok(CallToolResult::success(vec![Content::text(format!(
201                                "Tool '{name}' blocked by workflow '{}' (state: {}). Allowed ({} shown): {}",
202                                run.spec.name,
203                                run.current,
204                                shown.len(),
205                                shown.join(", ")
206                            ))]));
207                        }
208                    }
209                }
210            }
211        }
212
213        let auto_context = {
214            let task = {
215                let session = self.session.read().await;
216                session.task.as_ref().map(|t| t.description.clone())
217            };
218            let project_root = {
219                let session = self.session.read().await;
220                session.project_root.clone()
221            };
222            let mut cache = self.cache.write().await;
223            crate::tools::autonomy::session_lifecycle_pre_hook(
224                &self.autonomy,
225                name,
226                &mut cache,
227                task.as_deref(),
228                project_root.as_deref(),
229                self.crp_mode,
230            )
231        };
232
233        let throttle_result = {
234            let fp = args
235                .as_ref()
236                .map(|a| {
237                    crate::core::loop_detection::LoopDetector::fingerprint(
238                        &serde_json::Value::Object(a.clone()),
239                    )
240                })
241                .unwrap_or_default();
242            let mut detector = self.loop_detector.write().await;
243
244            let is_search = crate::core::loop_detection::LoopDetector::is_search_tool(name);
245            let is_search_shell = name == "ctx_shell" && {
246                let cmd = args
247                    .as_ref()
248                    .and_then(|a| a.get("command"))
249                    .and_then(|v| v.as_str())
250                    .unwrap_or("");
251                crate::core::loop_detection::LoopDetector::is_search_shell_command(cmd)
252            };
253
254            if is_search || is_search_shell {
255                let search_pattern = args.as_ref().and_then(|a| {
256                    a.get("pattern")
257                        .or_else(|| a.get("query"))
258                        .and_then(|v| v.as_str())
259                });
260                let shell_pattern = if is_search_shell {
261                    args.as_ref()
262                        .and_then(|a| a.get("command"))
263                        .and_then(|v| v.as_str())
264                        .and_then(helpers::extract_search_pattern_from_command)
265                } else {
266                    None
267                };
268                let pat = search_pattern.or(shell_pattern.as_deref());
269                detector.record_search(name, &fp, pat)
270            } else {
271                detector.record_call(name, &fp)
272            }
273        };
274
275        if throttle_result.level == crate::core::loop_detection::ThrottleLevel::Blocked {
276            let msg = throttle_result.message.unwrap_or_default();
277            return Ok(CallToolResult::success(vec![Content::text(msg)]));
278        }
279
280        let throttle_warning =
281            if throttle_result.level == crate::core::loop_detection::ThrottleLevel::Reduced {
282                throttle_result.message.clone()
283            } else {
284                None
285            };
286
287        let tool_start = std::time::Instant::now();
288        let result_text = self.dispatch_tool(name, args).await?;
289
290        let mut result_text = result_text;
291
292        {
293            let config = crate::core::config::Config::load();
294            let density = crate::core::config::OutputDensity::effective(&config.output_density);
295            result_text = crate::core::protocol::compress_output(&result_text, &density);
296        }
297
298        if let Some(ctx) = auto_context {
299            result_text = format!("{ctx}\n\n{result_text}");
300        }
301
302        if let Some(warning) = throttle_warning {
303            result_text = format!("{result_text}\n\n{warning}");
304        }
305
306        if name == "ctx_read" {
307            let read_path = self
308                .resolve_path_or_passthrough(&helpers::get_str(args, "path").unwrap_or_default())
309                .await;
310            let project_root = {
311                let session = self.session.read().await;
312                session.project_root.clone()
313            };
314            let mut cache = self.cache.write().await;
315            let enrich = crate::tools::autonomy::enrich_after_read(
316                &self.autonomy,
317                &mut cache,
318                &read_path,
319                project_root.as_deref(),
320            );
321            if let Some(hint) = enrich.related_hint {
322                result_text = format!("{result_text}\n{hint}");
323            }
324
325            crate::tools::autonomy::maybe_auto_dedup(&self.autonomy, &mut cache);
326        }
327
328        if name == "ctx_shell" {
329            let cmd = helpers::get_str(args, "command").unwrap_or_default();
330            let output_tokens = crate::core::tokens::count_tokens(&result_text);
331            let calls = self.tool_calls.read().await;
332            let last_original = calls.last().map(|c| c.original_tokens).unwrap_or(0);
333            drop(calls);
334            if let Some(hint) = crate::tools::autonomy::shell_efficiency_hint(
335                &self.autonomy,
336                &cmd,
337                last_original,
338                output_tokens,
339            ) {
340                result_text = format!("{result_text}\n{hint}");
341            }
342        }
343
344        {
345            let input = helpers::canonical_args_string(args);
346            let input_md5 = helpers::md5_hex(&input);
347            let output_md5 = helpers::md5_hex(&result_text);
348            let action = helpers::get_str(args, "action");
349            let agent_id = self.agent_id.read().await.clone();
350            let client_name = self.client_name.read().await.clone();
351            let mut explicit_intent: Option<(
352                crate::core::intent_protocol::IntentRecord,
353                Option<String>,
354                String,
355            )> = None;
356
357            {
358                let empty_args = serde_json::Map::new();
359                let args_map = args.as_ref().unwrap_or(&empty_args);
360                let mut session = self.session.write().await;
361                session.record_tool_receipt(
362                    name,
363                    action.as_deref(),
364                    &input_md5,
365                    &output_md5,
366                    agent_id.as_deref(),
367                    Some(&client_name),
368                );
369
370                if let Some(intent) = crate::core::intent_protocol::infer_from_tool_call(
371                    name,
372                    action.as_deref(),
373                    args_map,
374                    session.project_root.as_deref(),
375                ) {
376                    let is_explicit =
377                        intent.source == crate::core::intent_protocol::IntentSource::Explicit;
378                    let root = session.project_root.clone();
379                    let sid = session.id.clone();
380                    session.record_intent(intent.clone());
381                    if is_explicit {
382                        explicit_intent = Some((intent, root, sid));
383                    }
384                }
385                if session.should_save() {
386                    let _ = session.save();
387                }
388            }
389
390            if let Some((intent, root, session_id)) = explicit_intent {
391                crate::core::intent_protocol::apply_side_effects(
392                    &intent,
393                    root.as_deref(),
394                    &session_id,
395                );
396            }
397
398            // Autopilot: consolidation loop (silent, deterministic, budgeted).
399            if self.autonomy.is_enabled() {
400                let (calls, project_root) = {
401                    let session = self.session.read().await;
402                    (session.stats.total_tool_calls, session.project_root.clone())
403                };
404
405                if let Some(root) = project_root {
406                    if crate::tools::autonomy::should_auto_consolidate(&self.autonomy, calls) {
407                        let root_clone = root.clone();
408                        tokio::task::spawn_blocking(move || {
409                            let _ = crate::core::consolidation_engine::consolidate_latest(
410                                &root_clone,
411                                crate::core::consolidation_engine::ConsolidationBudgets::default(),
412                            );
413                        });
414                    }
415                }
416            }
417
418            let agent_key = agent_id.unwrap_or_else(|| "unknown".to_string());
419            let input_tokens = crate::core::tokens::count_tokens(&input) as u64;
420            let output_tokens = crate::core::tokens::count_tokens(&result_text) as u64;
421            let mut store = crate::core::a2a::cost_attribution::CostStore::load();
422            store.record_tool_call(&agent_key, &client_name, name, input_tokens, output_tokens);
423            let _ = store.save();
424        }
425
426        let skip_checkpoint = matches!(
427            name,
428            "ctx_compress"
429                | "ctx_metrics"
430                | "ctx_benchmark"
431                | "ctx_analyze"
432                | "ctx_cache"
433                | "ctx_discover"
434                | "ctx_dedup"
435                | "ctx_session"
436                | "ctx_knowledge"
437                | "ctx_agent"
438                | "ctx_share"
439                | "ctx_wrapped"
440                | "ctx_overview"
441                | "ctx_preload"
442                | "ctx_cost"
443                | "ctx_gain"
444                | "ctx_heatmap"
445                | "ctx_task"
446                | "ctx_impact"
447                | "ctx_architecture"
448                | "ctx_workflow"
449        );
450
451        if !skip_checkpoint && self.increment_and_check() {
452            if let Some(checkpoint) = self.auto_checkpoint().await {
453                let combined = format!(
454                    "{result_text}\n\n--- AUTO CHECKPOINT (every {} calls) ---\n{checkpoint}",
455                    self.checkpoint_interval
456                );
457                return Ok(CallToolResult::success(vec![Content::text(combined)]));
458            }
459        }
460
461        let tool_duration_ms = tool_start.elapsed().as_millis() as u64;
462        if tool_duration_ms > 100 {
463            LeanCtxServer::append_tool_call_log(
464                name,
465                tool_duration_ms,
466                0,
467                0,
468                None,
469                &chrono::Local::now().format("%Y-%m-%d %H:%M:%S").to_string(),
470            );
471        }
472
473        let current_count = self.call_count.load(std::sync::atomic::Ordering::Relaxed);
474        if current_count > 0 && current_count.is_multiple_of(100) {
475            std::thread::spawn(crate::cloud_sync::cloud_background_tasks);
476        }
477
478        Ok(CallToolResult::success(vec![Content::text(result_text)]))
479    }
480}
481
482pub fn build_instructions_for_test(crp_mode: CrpMode) -> String {
483    crate::instructions::build_instructions(crp_mode)
484}
485
486pub fn build_claude_code_instructions_for_test() -> String {
487    crate::instructions::claude_code_instructions()
488}
489
490const PROJECT_MARKERS: &[&str] = &[
491    ".git",
492    "Cargo.toml",
493    "package.json",
494    "go.mod",
495    "pyproject.toml",
496    "setup.py",
497    "pom.xml",
498    "build.gradle",
499    "Makefile",
500    ".lean-ctx.toml",
501];
502
503fn has_project_marker(dir: &std::path::Path) -> bool {
504    PROJECT_MARKERS.iter().any(|m| dir.join(m).exists())
505}
506
507fn is_home_or_agent_dir(dir: &std::path::Path) -> bool {
508    if let Some(home) = dirs::home_dir() {
509        if dir == home {
510            return true;
511        }
512    }
513    let dir_str = dir.to_string_lossy();
514    dir_str.ends_with("/.claude")
515        || dir_str.ends_with("/.codex")
516        || dir_str.contains("/.claude/")
517        || dir_str.contains("/.codex/")
518}
519
520fn git_toplevel_from(dir: &std::path::Path) -> Option<String> {
521    std::process::Command::new("git")
522        .args(["rev-parse", "--show-toplevel"])
523        .current_dir(dir)
524        .stdout(std::process::Stdio::piped())
525        .stderr(std::process::Stdio::null())
526        .output()
527        .ok()
528        .and_then(|o| {
529            if o.status.success() {
530                String::from_utf8(o.stdout)
531                    .ok()
532                    .map(|s| s.trim().to_string())
533            } else {
534                None
535            }
536        })
537}
538
539pub fn derive_project_root_from_cwd() -> Option<String> {
540    let cwd = std::env::current_dir().ok()?;
541    let canonical = crate::core::pathutil::safe_canonicalize_or_self(&cwd);
542
543    if is_home_or_agent_dir(&canonical) {
544        return git_toplevel_from(&canonical);
545    }
546
547    if has_project_marker(&canonical) {
548        return Some(canonical.to_string_lossy().to_string());
549    }
550
551    if let Some(git_root) = git_toplevel_from(&canonical) {
552        return Some(git_root);
553    }
554
555    None
556}
557
558pub fn tool_descriptions_for_test() -> Vec<(&'static str, &'static str)> {
559    crate::tool_defs::list_all_tool_defs()
560        .into_iter()
561        .map(|(name, desc, _)| (name, desc))
562        .collect()
563}
564
565pub fn tool_schemas_json_for_test() -> String {
566    crate::tool_defs::list_all_tool_defs()
567        .iter()
568        .map(|(name, _, schema)| format!("{}: {}", name, schema))
569        .collect::<Vec<_>>()
570        .join("\n")
571}
572
573#[cfg(test)]
574mod tests {
575    use super::*;
576
577    #[test]
578    fn project_markers_detected() {
579        let tmp = tempfile::tempdir().unwrap();
580        let root = tmp.path().join("myproject");
581        std::fs::create_dir_all(&root).unwrap();
582        assert!(!has_project_marker(&root));
583
584        std::fs::create_dir(root.join(".git")).unwrap();
585        assert!(has_project_marker(&root));
586    }
587
588    #[test]
589    fn home_dir_detected_as_agent_dir() {
590        if let Some(home) = dirs::home_dir() {
591            assert!(is_home_or_agent_dir(&home));
592        }
593    }
594
595    #[test]
596    fn agent_dirs_detected() {
597        let claude = std::path::PathBuf::from("/home/user/.claude");
598        assert!(is_home_or_agent_dir(&claude));
599        let codex = std::path::PathBuf::from("/home/user/.codex");
600        assert!(is_home_or_agent_dir(&codex));
601        let project = std::path::PathBuf::from("/home/user/projects/myapp");
602        assert!(!is_home_or_agent_dir(&project));
603    }
604
605    #[test]
606    fn test_unified_tool_count() {
607        let tools = crate::tool_defs::unified_tool_defs();
608        assert_eq!(tools.len(), 5, "Expected 5 unified tools");
609    }
610
611    #[test]
612    fn test_granular_tool_count() {
613        let tools = crate::tool_defs::granular_tool_defs();
614        assert!(tools.len() >= 25, "Expected at least 25 granular tools");
615    }
616
617    #[test]
618    fn disabled_tools_filters_list() {
619        let all = crate::tool_defs::granular_tool_defs();
620        let total = all.len();
621        let disabled = ["ctx_graph".to_string(), "ctx_agent".to_string()];
622        let filtered: Vec<_> = all
623            .into_iter()
624            .filter(|t| !disabled.iter().any(|d| t.name.as_ref() == d.as_str()))
625            .collect();
626        assert_eq!(filtered.len(), total - 2);
627        assert!(!filtered.iter().any(|t| t.name.as_ref() == "ctx_graph"));
628        assert!(!filtered.iter().any(|t| t.name.as_ref() == "ctx_agent"));
629    }
630
631    #[test]
632    fn empty_disabled_tools_returns_all() {
633        let all = crate::tool_defs::granular_tool_defs();
634        let total = all.len();
635        let disabled: Vec<String> = vec![];
636        let filtered: Vec<_> = all
637            .into_iter()
638            .filter(|t| !disabled.iter().any(|d| t.name.as_ref() == d.as_str()))
639            .collect();
640        assert_eq!(filtered.len(), total);
641    }
642
643    #[test]
644    fn misspelled_disabled_tool_is_silently_ignored() {
645        let all = crate::tool_defs::granular_tool_defs();
646        let total = all.len();
647        let disabled = ["ctx_nonexistent_tool".to_string()];
648        let filtered: Vec<_> = all
649            .into_iter()
650            .filter(|t| !disabled.iter().any(|d| t.name.as_ref() == d.as_str()))
651            .collect();
652        assert_eq!(filtered.len(), total);
653    }
654}