//! Security engine: wires bus -> observer -> vector -> risk -> policy -> capabilities. //! //! The full workflow from the doc: //! Kernel event -> Normalize -> Adaptive Observer -> Behaviour Vector //! -> Risk Calculation -> Policy Evaluation -> Capability Decision -> Enforcement //! //! "Enforcement" here prints/records what the kernel command interface would be //! told to do; a real build sends these to WFP / eBPF maps. use crate::capability::{CapabilityManager, Permission}; use crate::event::{Event, EventBus, EventKind}; use crate::observer::AdaptiveObserver; use crate::risk::{PolicyAction, RiskState}; use crate::rtid::{exe_hash, Rtid}; use crate::vector::BehaviorVector; use std::collections::HashMap; /// Audit ledger entry — only meaningful security decisions, never raw telemetry. #[derive(Clone, Debug)] pub struct AuditEntry { pub at_ms: u64, pub rtid: Rtid, pub what: String, } pub struct ProcessState { pub name: String, pub rtid: Rtid, pub vector: BehaviorVector, pub risk: RiskState, pub observer: AdaptiveObserver, pub action: PolicyAction, pub alive: bool, last_vector_decay_ms: u64, } pub struct Engine { pub bus: EventBus, pub caps: CapabilityManager, pub audit: Vec, procs: HashMap, boot_nonce: u64, nonce_counter: u64, /// Alert-only: record and report decisions but never change process /// state or revoke leases. The safe default for a freshly deployed agent. alert_only: bool, } impl Engine { pub fn new(boot_nonce: u64) -> Self { Self { bus: EventBus::new(), caps: CapabilityManager::new(boot_nonce ^ 0xC0FFEE), audit: Vec::new(), procs: HashMap::new(), boot_nonce, nonce_counter: 0, alert_only: false, } } pub fn set_alert_only(&mut self, on: bool) { self.alert_only = on; } /// Adopt an already-running external process observed by a real sensor. /// Unlike `spawn`, publishes no signature evidence — sensors supply /// evidence separately as they learn things. pub fn adopt(&mut self, name: &str, ident: &[u8], now_ms: u64) -> Rtid { self.nonce_counter += 1; let rtid = Rtid::derive( exe_hash(ident), None, self.boot_nonce, now_ms, self.nonce_counter, ); self.procs.insert( rtid, ProcessState { name: name.to_string(), rtid, vector: BehaviorVector::default(), risk: RiskState::new(now_ms), observer: AdaptiveObserver::new(), action: PolicyAction::Allow, alive: true, last_vector_decay_ms: now_ms, }, ); self.bus.publish(Event { rtid, kind: EventKind::ProcessStart, at_ms: now_ms, detail: name.to_string(), }); rtid } /// Drop state for exited processes (RTIDs expire with the process). /// Audit ledger entries are kept — they're the long-term record. pub fn prune_exited(&mut self) { self.procs.retain(|_, p| p.alive); } fn record(&mut self, at_ms: u64, rtid: Rtid, what: impl Into) { self.audit.push(AuditEntry { at_ms, rtid, what: what.into() }); } /// Register a new process: derive RTID, publish start + signature evidence. pub fn spawn( &mut self, name: &str, exe_bytes: &[u8], signed: bool, parent: Option, now_ms: u64, ) -> Rtid { self.nonce_counter += 1; let rtid = Rtid::derive( exe_hash(exe_bytes), parent, self.boot_nonce, now_ms, self.nonce_counter, ); self.procs.insert( rtid, ProcessState { name: name.to_string(), rtid, vector: BehaviorVector::default(), risk: RiskState::new(now_ms), observer: AdaptiveObserver::new(), action: PolicyAction::Allow, alive: true, last_vector_decay_ms: now_ms, }, ); self.bus.publish(Event { rtid, kind: EventKind::ProcessStart, at_ms: now_ms, detail: name.to_string(), }); self.bus.publish(Event { rtid, kind: if signed { EventKind::SignedBinary } else { EventKind::UnsignedBinary }, at_ms: now_ms, detail: String::new(), }); rtid } /// A process asks for a capability. Policy gate: only Allow/Monitor may /// receive new leases; Restrict and above are denied. pub fn request_capability( &mut self, rtid: Rtid, perm: Permission, scope: &str, ttl_ms: u64, now_ms: u64, ) -> Option { let action = self.procs.get(&rtid).map(|p| p.action)?; if action > PolicyAction::Monitor { self.record(now_ms, rtid, format!("DENY lease {:?} {} (action {:?})", perm, scope, action)); return None; } let cap = self.caps.grant(rtid, perm, scope, ttl_ms, now_ms); self.record( now_ms, rtid, format!("GRANT lease #{} {:?} {} ttl {}s", cap.id, perm, scope, ttl_ms / 1000), ); Some(cap) } /// One engine cycle. Returns human-readable log lines for anything notable. pub fn tick(&mut self, now_ms: u64) -> Vec { let mut log = Vec::new(); // 1. Deliver a batch of normalized events. for ev in self.bus.drain_batch(256) { let Some(p) = self.procs.get_mut(&ev.rtid) else { continue }; if !p.alive { continue; } // Behaviour vector update (decay first, then fold event in). let dt = now_ms.saturating_sub(p.last_vector_decay_ms); p.vector.decay(dt); p.last_vector_decay_ms = now_ms; p.vector.apply(ev.kind); // Risk update. p.risk.absorb(ev.kind, now_ms); if ev.kind == EventKind::ProcessExit { p.alive = false; // RTID expires with the process } } // 2. Decay risk for everyone, re-evaluate observation level + policy. let rtids: Vec = self.procs.keys().copied().collect(); for rtid in rtids { let (name, score, transition, old_action, new_action) = { let p = self.procs.get_mut(&rtid).unwrap(); if !p.alive { continue; } p.risk.decay_to(now_ms); let transition = p.observer.update(p.risk.score); let old_action = p.action; let new_action = p.risk.action(); p.action = new_action; (p.name.clone(), p.risk.score, transition, old_action, new_action) }; if let Some((from, to)) = transition { log.push(format!( "[obs] {} ({}) {} -> {} (risk {:.1})", name, rtid.short(), from.label(), to.label(), score )); } if new_action != old_action { log.push(format!( "[policy] {} ({}) {:?} -> {:?} (risk {:.1})", name, rtid.short(), old_action, new_action, score )); self.record(now_ms, rtid, format!("POLICY {:?} -> {:?} risk {:.1}", old_action, new_action, score)); self.enforce(rtid, &name, old_action, new_action, now_ms, &mut log); } } // 3. Housekeeping: expired leases vanish. self.caps.sweep(now_ms); log } /// Capability decision -> kernel command interface (simulated). fn enforce( &mut self, rtid: Rtid, name: &str, old: PolicyAction, new: PolicyAction, now_ms: u64, log: &mut Vec, ) { use PolicyAction::*; if self.alert_only { // Report what enforcement WOULD do, change nothing. if new >= Restrict && old < Restrict { log.push(format!("[ALERT] {} would lose network access (alert-only mode)", name)); } if new >= Suspend && old < Suspend { log.push(format!("[ALERT] {} would be SUSPENDED (alert-only mode) — inspect pid now", name)); } if new == Block && old < Block { log.push(format!("[ALERT] {} would be BLOCKED (alert-only mode) — treat as hostile", name)); } if new < Restrict && old >= Restrict { log.push(format!("[ALERT] {} de-escalated to {:?} (risk decayed)", name, new)); } let _ = now_ms; return; } if new >= Restrict && old < Restrict { let n = self.caps.revoke(rtid, Some(Permission::Network)); if n > 0 { self.record(now_ms, rtid, format!("REVOKE {} network lease(s)", n)); log.push(format!("[enforce] {} network leases revoked -> kernel: drop flows for {}", name, rtid.short())); } } if new >= Suspend && old < Suspend { let n = self.caps.revoke(rtid, None); self.record(now_ms, rtid, format!("SUSPEND process, revoked {} remaining lease(s), awaiting user approval", n)); log.push(format!("[enforce] {} SUSPENDED -> kernel: freeze threads of {}", name, rtid.short())); } if new == Block && old < Block { self.record(now_ms, rtid, "BLOCK + ISOLATE process".to_string()); log.push(format!("[enforce] {} BLOCKED -> kernel: kill + network isolate {}", name, rtid.short())); if let Some(p) = self.procs.get_mut(&rtid) { p.alive = false; } } // De-escalation path: risk decayed back down. if new < Restrict && old >= Restrict { self.record(now_ms, rtid, format!("DE-ESCALATE to {:?} (risk decayed)", new)); log.push(format!("[enforce] {} de-escalated to {:?}", name, new)); } } pub fn process(&self, rtid: Rtid) -> Option<&ProcessState> { self.procs.get(&rtid) } pub fn processes(&self) -> impl Iterator { self.procs.values() } } #[cfg(test)] mod tests { use super::*; /// Full pipeline: benign process keeps its lease, attacker escalates /// through Monitor -> Restrict -> Suspend -> Block and loses everything. #[test] fn escalating_process_is_contained_and_benign_one_is_not() { let mut e = Engine::new(42); let good = e.spawn("chrome", b"chrome-image", true, None, 0); let bad = e.spawn("helper_update.exe", b"updater-image", false, None, 0); e.tick(0); let cap = e.request_capability(good, Permission::Network, "https://github.com", 900_000, 0); assert!(cap.is_some()); // Attack chain, compressed in time so decay doesn't mask it. for (t, kind) in [ (1_000, EventKind::UnsignedModuleLoad), (2_000, EventKind::RwxAlloc), (3_000, EventKind::PrivilegeEscalation), (4_000, EventKind::RemoteThreadInjection), (5_000, EventKind::CredentialAccess), ] { e.bus.publish(Event { rtid: bad, kind, at_ms: t, detail: String::new() }); e.tick(t); } let bad_state = e.process(bad).unwrap(); assert_eq!(bad_state.action, PolicyAction::Block); assert!(!bad_state.alive); assert!(!e.caps.check(bad, Permission::Network, 6_000)); // Benign process untouched. let good_state = e.process(good).unwrap(); assert_eq!(good_state.action, PolicyAction::Allow); assert!(e.caps.check(good, Permission::Network, 6_000)); // Ledger holds decisions, not telemetry. assert!(e.audit.iter().any(|a| a.what.contains("BLOCK"))); assert!(e.audit.iter().any(|a| a.what.contains("SUSPEND"))); } #[test] fn restricted_process_is_denied_new_leases() { let mut e = Engine::new(1); let p = e.spawn("sketchy", b"sketchy-image", false, None, 0); e.tick(0); e.bus.publish(Event { rtid: p, kind: EventKind::RwxAlloc, at_ms: 100, detail: String::new() }); e.bus.publish(Event { rtid: p, kind: EventKind::UnsignedModuleLoad, at_ms: 100, detail: String::new() }); e.tick(100); // 15 + 25 + 20 = 60 -> Restrict assert_eq!(e.process(p).unwrap().action, PolicyAction::Restrict); assert!(e.request_capability(p, Permission::Network, "*", 60_000, 200).is_none()); } #[test] fn risk_decay_de_escalates() { let mut e = Engine::new(1); let p = e.spawn("one_off", b"tool-image", false, None, 0); e.tick(0); e.bus.publish(Event { rtid: p, kind: EventKind::UnsignedModuleLoad, at_ms: 0, detail: String::new() }); e.tick(0); // 15 + 20 = 35 -> Monitor assert_eq!(e.process(p).unwrap().action, PolicyAction::Monitor); e.tick(120_000); // two half-lives later assert_eq!(e.process(p).unwrap().action, PolicyAction::Allow); } }