harness_loop/lib.rs
1//! ReAct agent loop with self-correction.
2//!
3//! Minimal v0.0.1 implementation:
4//! - Applies guides once at the start.
5//! - Sends `Context` (with `tools`) to the model.
6//! - Dispatches each returned tool call via [`ToolRegistry`].
7//! - Runs `Sensor::SelfCorrect` sensors after each action; auto-fix patches are
8//! applied directly to the world, blocking signals are fed back to the model.
9//! - Stops when the model returns no tool calls, or when `policy.max_iters` is hit.
10
11pub mod learning;
12pub mod memory_layer;
13#[cfg(feature = "otel")]
14pub mod otel;
15pub mod profile_guide;
16pub mod recall_layer;
17pub mod registry;
18pub mod replay;
19pub mod subagent;
20pub mod telemetry;
21
22pub use learning::*;
23pub use memory_layer::*;
24pub use profile_guide::*;
25pub use recall_layer::*;
26pub use registry::*;
27pub use replay::*;
28pub use subagent::*;
29pub use telemetry::*;
30
31use harness_compactor::{CALIBRATION_KEY, DefaultCompactor};
32use harness_core::{
33 Action, Block, CompactionStage, Compactor, Context, Event, Guide, HarnessError, HookOutcome,
34 Model, ModelDelta, ModelOutput, ResponseFormat, Sensor, SessionSource, SignalSet, Stage,
35 StopReason, Task, ToolCall, ToolResult, Turn, TurnRole, Usage, World,
36};
37use harness_hooks::HookBus;
38use std::collections::HashMap;
39use std::sync::Arc;
40
41/// Governs the loop's stuck-detector. When the model repeats the *same* tool
42/// call (name + args) round after round without making progress, the loop first
43/// nudges it to change approach, then terminates cleanly with [`Outcome::Stuck`]
44/// rather than burning the rest of the budget spinning on a loop.
45///
46/// Enabled by default with conservative thresholds — the calls must be
47/// *byte-identical*, so genuine "read the same file twice" work never trips it.
48#[derive(Debug, Clone)]
49pub struct StuckPolicy {
50 pub enabled: bool,
51 /// Consecutive identical tool-call rounds before injecting a "you are
52 /// repeating yourself, change your approach" feedback signal.
53 pub nudge_after: u32,
54 /// Consecutive identical rounds before terminating with [`Outcome::Stuck`].
55 pub abort_after: u32,
56}
57
58impl Default for StuckPolicy {
59 fn default() -> Self {
60 Self {
61 enabled: true,
62 nudge_after: 3,
63 abort_after: 6,
64 }
65 }
66}
67
68/// Governs *when* and *how far* the loop compacts context. Hysteresis: only
69/// start compacting once usage crosses `high_water`, and stop as soon as it's
70/// back under `target` — instead of running every stage above a threshold on
71/// every turn. This avoids over-compacting (needlessly reaching the lossy,
72/// main-model `AutoCompact` stage) and, because compaction rewrites history and
73/// invalidates the provider prefix cache, avoids nibbling the context every
74/// single turn.
75#[derive(Debug, Clone)]
76pub struct CompactPolicy {
77 /// Start compacting when `used/window` exceeds this. Default 0.75.
78 pub high_water: f32,
79 /// Stop as soon as `used/window` is back at/under this. Default 0.55.
80 pub target: f32,
81}
82
83impl Default for CompactPolicy {
84 fn default() -> Self {
85 Self {
86 high_water: 0.75,
87 target: 0.55,
88 }
89 }
90}
91
92/// A stable fingerprint of a round's tool calls (names + args, ignoring the
93/// volatile call id). Two rounds with the same fingerprint asked for the exact
94/// same actions — the signal the stuck-detector keys on.
95fn tool_call_fingerprint(calls: &[ToolCall]) -> String {
96 calls
97 .iter()
98 .map(|c| format!("{}({})", c.name, c.args))
99 .collect::<Vec<_>>()
100 .join("|")
101}
102
103/// Where a run finished. Each variant is `#[non_exhaustive]` so new *fields*
104/// don't break downstream matches — always include `..` when destructuring.
105#[derive(Debug, Clone)]
106pub enum Outcome {
107 /// Model returned text with no tool calls (natural end).
108 #[non_exhaustive]
109 Done {
110 text: Option<String>,
111 iters: u32,
112 tools_called: u32,
113 usage: harness_core::Usage,
114 },
115 /// Policy budget exhausted before the model stopped requesting tools.
116 /// Carries everything we know so the caller can recover partial work
117 /// (saved notes, files written by tools, the last assistant text, etc.)
118 /// instead of seeing a single bare "budget out" string.
119 #[non_exhaustive]
120 BudgetExhausted {
121 iters: u32,
122 last_text: Option<String>,
123 tools_called: u32,
124 usage: harness_core::Usage,
125 },
126 /// The agent got stuck: it repeated the *same* tool call for
127 /// `StuckPolicy::abort_after` consecutive rounds without progress, so the
128 /// loop terminated early to save the rest of the budget. Carries partial
129 /// work (last text, files already written by tools) like `BudgetExhausted`.
130 #[non_exhaustive]
131 Stuck {
132 /// Human-readable reason, e.g. "repeated `read_file(...)` 6× without progress".
133 reason: String,
134 /// How many consecutive identical rounds were observed.
135 repeated: u32,
136 iters: u32,
137 last_text: Option<String>,
138 tools_called: u32,
139 usage: harness_core::Usage,
140 },
141}
142
143/// The agent loop.
144pub struct AgentLoop<M: Model> {
145 pub model: M,
146 pub tools: ToolRegistry,
147 pub guides: Vec<Arc<dyn Guide>>,
148 pub sensors: Vec<Arc<dyn Sensor>>,
149 pub hooks: HookBus,
150 pub compactor: Arc<dyn Compactor>,
151 /// Default response format applied to every run unless overridden by
152 /// `run_typed`. See [`ResponseFormat`].
153 pub response_format: ResponseFormat,
154 /// When `true`, the loop drives each model turn via `Model::stream()`
155 /// instead of `complete()`, firing `Event::ModelTokenDelta` for each
156 /// text fragment. Tool-call deltas are still assembled inside the loop;
157 /// only the terminal `ModelOutput` shape is observable downstream.
158 pub streaming: bool,
159 /// Optional cross-session recall store. When set, the loop captures every
160 /// turn and the `session_search` tool is registered. See `with_recall`.
161 pub recall: Option<Arc<dyn harness_core::RecallStore>>,
162 /// When true (and `recall` is set), a `RecallGuide` auto-injects top-k
163 /// past context at session start.
164 pub recall_auto_inject: bool,
165 pub learning: Option<LearningConfig>,
166 /// Loop-detection policy. Enabled by default — see [`StuckPolicy`].
167 pub stuck: StuckPolicy,
168 /// Context-compaction hysteresis. See [`CompactPolicy`].
169 pub compaction: CompactPolicy,
170 /// System instruction injected into every run's `Context.system` (unless the
171 /// built context already carries its own). Set via [`with_system`](Self::with_system).
172 pub system: Vec<Block>,
173}
174
175impl<M: Model> AgentLoop<M> {
176 pub fn new(model: M) -> Self {
177 Self {
178 model,
179 tools: ToolRegistry::new(),
180 guides: Vec::new(),
181 sensors: Vec::new(),
182 hooks: HookBus::new(),
183 compactor: Arc::new(DefaultCompactor::new()),
184 response_format: ResponseFormat::Free,
185 streaming: false,
186 recall: None,
187 recall_auto_inject: false,
188 learning: None,
189 stuck: StuckPolicy::default(),
190 compaction: CompactPolicy::default(),
191 system: Vec::new(),
192 }
193 }
194
195 /// Set a system instruction applied to every run (into `Context.system`) —
196 /// e.g. "answer only via the governed tools; never claim you can't access
197 /// data; never invent numbers". This is the first-class seam for a system
198 /// prompt; small local models in particular need it to reliably call tools
199 /// instead of refusing or hallucinating.
200 pub fn with_system(mut self, text: impl Into<String>) -> Self {
201 self.system = vec![Block::Text(text.into())];
202 self
203 }
204
205 /// Override the loop-detection policy (thresholds, or disable entirely).
206 pub fn with_stuck_policy(mut self, policy: StuckPolicy) -> Self {
207 self.stuck = policy;
208 self
209 }
210
211 /// Override the compaction hysteresis policy. See [`CompactPolicy`].
212 pub fn with_compact_policy(mut self, policy: CompactPolicy) -> Self {
213 self.compaction = policy;
214 self
215 }
216
217 /// Opt in to streaming the model's terminal turn token-by-token via
218 /// `Model::stream()`. Hooks subscribed to `Event::ModelTokenDelta` see
219 /// each fragment as it arrives; the rest of the loop is unchanged.
220 pub fn with_streaming(mut self, enable: bool) -> Self {
221 self.streaming = enable;
222 self
223 }
224
225 pub fn with_compactor(mut self, c: Arc<dyn Compactor>) -> Self {
226 self.compactor = c;
227 self
228 }
229
230 pub fn with_tool(mut self, t: Arc<dyn harness_core::Tool>) -> Self {
231 self.tools.insert(t);
232 self
233 }
234
235 pub fn with_guide(mut self, g: Arc<dyn Guide>) -> Self {
236 self.guides.push(g);
237 self
238 }
239
240 pub fn with_sensor(mut self, s: Arc<dyn Sensor>) -> Self {
241 self.sensors.push(s);
242 self
243 }
244
245 pub fn with_hook(mut self, h: Arc<dyn harness_core::Hook>) -> Self {
246 self.hooks.register(h);
247 self
248 }
249
250 /// Pull in every `#[hook]`-registered hook.
251 pub fn with_macro_hooks(mut self) -> Self {
252 self.hooks = self.hooks.with_macro_hooks_take();
253 self
254 }
255
256 /// Enable cross-session recall: capture every turn into `store` and
257 /// register the `session_search` tool. Owner + session id are read from
258 /// `world.profile.extra["recall_owner"|"recall_session"]` at run time.
259 pub fn with_recall(mut self, store: Arc<dyn harness_core::RecallStore>) -> Self {
260 self.tools
261 .insert(Arc::new(crate::SessionSearchTool::new(store.clone())));
262 self.recall = Some(store);
263 self
264 }
265
266 /// After `with_recall`, also auto-inject top-k relevant past context at
267 /// session start (off by default — tool-only is prompt-cache friendly).
268 pub fn auto_inject(mut self) -> Self {
269 self.recall_auto_inject = true;
270 self
271 }
272
273 /// Enable the self-evolving learning loop: after a session that made
274 /// `>= cfg.nudge_interval` tool calls, fork a review subagent (white-listed to
275 /// `cfg.tools`) to update skills + memory from the transcript. Best-effort.
276 pub fn with_learning_loop(mut self, cfg: LearningConfig) -> Self {
277 self.learning = Some(cfg);
278 self
279 }
280
281 /// Set the default response format for all runs through this loop. See
282 /// [`ResponseFormat`]. For typed deserialisation, prefer `run_typed::<T>()`.
283 pub fn with_response_format(mut self, fmt: ResponseFormat) -> Self {
284 self.response_format = fmt;
285 self
286 }
287
288 /// Shortcut for `with_response_format(ResponseFormat::JsonSchema { name, schema })`.
289 /// Accepts a raw `serde_json::Value` so callers can hand-roll the schema or
290 /// pull it from `schemars::schema_for!(T)`.
291 pub fn with_response_schema(self, name: impl Into<String>, schema: serde_json::Value) -> Self {
292 self.with_response_format(ResponseFormat::JsonSchema {
293 name: name.into(),
294 schema,
295 })
296 }
297
298 pub async fn run(&self, task: Task, world: &mut World) -> Result<Outcome, HarnessError> {
299 let max = harness_core::Policy::default().max_iters;
300 self.run_with_max_iters(task, world, max).await
301 }
302
303 pub async fn run_with_max_iters(
304 &self,
305 task: Task,
306 world: &mut World,
307 max_iters: u32,
308 ) -> Result<Outcome, HarnessError> {
309 self.run_with_seed_history(task, Vec::new(), world, max_iters)
310 .await
311 }
312
313 /// Run the agent and deserialise the terminal reply into `T`.
314 ///
315 /// The schema for `T` is derived via `schemars::schema_for!(T)` and
316 /// installed as `ResponseFormat::JsonSchema` for this run only — any
317 /// pre-existing `self.response_format` is ignored. On success the
318 /// returned `T` is parsed from `Outcome::Done.text` (or, on budget
319 /// exhaustion, from `Outcome::BudgetExhausted.last_text`).
320 ///
321 /// Errors:
322 /// - `HarnessError::Other` if the model returns no text at all
323 /// - `HarnessError::Other` if `serde_json::from_str::<T>(text)` fails —
324 /// the original text is included in the message for debugging.
325 pub async fn run_typed<T>(&self, task: Task, world: &mut World) -> Result<T, HarnessError>
326 where
327 T: serde::de::DeserializeOwned + schemars::JsonSchema + 'static,
328 {
329 let max = harness_core::Policy::default().max_iters;
330 self.run_typed_with_max_iters::<T>(task, world, max).await
331 }
332
333 /// Like `run_typed` but with explicit `max_iters`.
334 pub async fn run_typed_with_max_iters<T>(
335 &self,
336 task: Task,
337 world: &mut World,
338 max_iters: u32,
339 ) -> Result<T, HarnessError>
340 where
341 T: serde::de::DeserializeOwned + schemars::JsonSchema + 'static,
342 {
343 let schema_root = schemars::schema_for!(T);
344 let schema = serde_json::to_value(&schema_root)
345 .map_err(|e| HarnessError::Other(format!("response schema: {e}")))?;
346 let name = std::any::type_name::<T>()
347 .rsplit("::")
348 .next()
349 .unwrap_or("response")
350 .to_string();
351 let fmt = ResponseFormat::JsonSchema { name, schema };
352 let outcome = self
353 .run_with_response_format(task, world, max_iters, fmt)
354 .await?;
355 let text = match outcome {
356 Outcome::Done { text: Some(t), .. }
357 | Outcome::BudgetExhausted {
358 last_text: Some(t), ..
359 }
360 | Outcome::Stuck {
361 last_text: Some(t), ..
362 } => t,
363 Outcome::Done { text: None, .. } => {
364 return Err(HarnessError::Other(
365 "run_typed: model returned no text".into(),
366 ));
367 }
368 Outcome::Stuck {
369 last_text: None, ..
370 } => {
371 return Err(HarnessError::Other(
372 "run_typed: agent stuck with no text".into(),
373 ));
374 }
375 Outcome::BudgetExhausted {
376 last_text: None, ..
377 } => {
378 return Err(HarnessError::Other(
379 "run_typed: budget exhausted with no text".into(),
380 ));
381 }
382 };
383 serde_json::from_str::<T>(&text).map_err(|e| {
384 HarnessError::Other(format!(
385 "run_typed: decode {} failed: {e} — raw text was: {text}",
386 std::any::type_name::<T>()
387 ))
388 })
389 }
390
391 /// Run with a one-off `ResponseFormat` override (doesn't touch `self`).
392 pub async fn run_with_response_format(
393 &self,
394 task: Task,
395 world: &mut World,
396 max_iters: u32,
397 fmt: ResponseFormat,
398 ) -> Result<Outcome, HarnessError> {
399 // Borrow checker won't let us swap `self.response_format` because
400 // `self` is `&`. Easiest workaround: hand-roll the same setup that
401 // `run_with_seed_history` does, but with our `fmt`. We do this by
402 // calling through a private helper.
403 self.run_with_seed_history_and_format(task, Vec::new(), world, max_iters, Some(fmt))
404 .await
405 }
406
407 async fn run_with_seed_history_and_format(
408 &self,
409 task: Task,
410 seed: Vec<Turn>,
411 world: &mut World,
412 max_iters: u32,
413 fmt_override: Option<ResponseFormat>,
414 ) -> Result<Outcome, HarnessError> {
415 let mut ctx = Context::new(task);
416 ctx.policy.max_iters = max_iters;
417 ctx.tools = self.tools.schemas();
418 ctx.history = seed;
419 ctx.response_format = fmt_override.unwrap_or_else(|| self.response_format.clone());
420 self.run_built_context(ctx, world).await
421 }
422
423 /// Like `run_with_max_iters` but seeds `ctx.history` with `seed` **before**
424 /// the current user task is appended. Use this for multi-turn REPLs so
425 /// prior conversation lives in `ctx.history` (where the Compactor can see
426 /// it) instead of being concatenated into `task.description` (where it
427 /// previously bypassed compaction entirely — see audit #2).
428 pub async fn run_with_seed_history(
429 &self,
430 task: Task,
431 seed: Vec<Turn>,
432 world: &mut World,
433 max_iters: u32,
434 ) -> Result<Outcome, HarnessError> {
435 self.run_with_seed_and_metadata(task, seed, Default::default(), world, max_iters)
436 .await
437 }
438
439 /// Like [`run_with_seed_history`](Self::run_with_seed_history) but also seeds
440 /// `ctx.metadata` with per-request key/values. Hooks and a
441 /// [`ModelRouter`](harness_models::ModelRouter) read this map — e.g.
442 /// `audit.actor` / `audit.session` for the audit trail, or
443 /// `router.keep_local` to pin a request to the local model. This is the
444 /// entry point a serving layer uses to pass caller identity and routing
445 /// flags into a single, shared, reused loop.
446 pub async fn run_with_seed_and_metadata(
447 &self,
448 task: Task,
449 seed: Vec<Turn>,
450 metadata: std::collections::BTreeMap<String, serde_json::Value>,
451 world: &mut World,
452 max_iters: u32,
453 ) -> Result<Outcome, HarnessError> {
454 let mut ctx = Context::new(task);
455 ctx.policy.max_iters = max_iters;
456 ctx.tools = self.tools.schemas();
457 ctx.history = seed;
458 ctx.metadata = metadata;
459 ctx.response_format = self.response_format.clone();
460 self.run_built_context(ctx, world).await
461 }
462
463 /// Start a persistent multi-turn [`Session`]. Each `turn` re-runs the loop
464 /// against the accumulated history with a **stable prefix** (system +
465 /// name-sorted tool schemas), so a provider's prefix cache (e.g. DeepSeek's,
466 /// ~10% price on cache-hit tokens) hits across turns instead of paying full
467 /// price to re-read the same bytes every round. For maximum hit rate, keep
468 /// your guides' output stable (put per-turn volatile context in the message,
469 /// not a recomputed system guide).
470 pub fn session(&self) -> Session<'_, M> {
471 Session {
472 loop_: self,
473 history: Vec::new(),
474 max_iters: harness_core::Policy::default().max_iters,
475 }
476 }
477
478 /// Inner ReAct loop on an already-prepared `Context`. Use the public
479 /// `run*` methods unless you need to inject a non-standard `Context`
480 /// (e.g. `run_with_response_format` does to apply a one-off
481 /// `ResponseFormat` without mutating `self`).
482 async fn run_built_context(
483 &self,
484 mut ctx: Context,
485 world: &mut World,
486 ) -> Result<Outcome, HarnessError> {
487 if ctx.system.is_empty() && !self.system.is_empty() {
488 ctx.system = self.system.clone();
489 }
490 self.hooks.fire(
491 &Event::SessionStart {
492 source: SessionSource::Startup,
493 },
494 world,
495 );
496
497 // ── recall: resolve owner/session, ensure the session row ──
498 let (recall_owner, recall_session) = if self.recall.is_some() {
499 use std::sync::atomic::Ordering;
500 let owner = crate::recall_owner(world);
501 let session = world
502 .profile
503 .extra
504 .get("recall_session")
505 .and_then(|v| v.as_str())
506 .map(|s| s.to_string())
507 .unwrap_or_else(|| {
508 format!(
509 "sess-{}-{}",
510 world.clock.now_ms(),
511 RECALL_SEQ.fetch_add(1, Ordering::SeqCst)
512 )
513 });
514 if let Some(store) = &self.recall {
515 let meta = harness_core::SessionMeta::new(&session, world.clock.now_ms());
516 if let Err(e) = store.ensure_session(&owner, &session, &meta).await {
517 tracing::warn!(error = %e, "recall ensure_session failed");
518 }
519 }
520 (owner, session)
521 } else {
522 (String::new(), String::new())
523 };
524
525 let recall_guide: Option<Arc<dyn Guide>> = if self.recall_auto_inject {
526 if self.recall.is_none() {
527 tracing::warn!(
528 "auto_inject() set but no recall store — call with_recall(store) first; skipping recall guide"
529 );
530 None
531 } else {
532 self.recall
533 .clone()
534 .map(|s| Arc::new(crate::RecallGuide::new(s)) as Arc<dyn Guide>)
535 }
536 } else {
537 None
538 };
539 let all_guides: Vec<&Arc<dyn Guide>> =
540 self.guides.iter().chain(recall_guide.iter()).collect();
541 for g in &all_guides {
542 if g.scope().matches(&ctx.task) {
543 self.hooks.fire(&Event::PreGuide { guide: g.id() }, world);
544 g.apply(&mut ctx, world).await?;
545 self.hooks.fire(&Event::PostGuide { guide: g.id() }, world);
546 }
547 }
548
549 ctx.history.push(Turn {
550 role: TurnRole::User,
551 blocks: vec![Block::Text(ctx.task.description.clone())],
552 });
553
554 if self.recall.is_some() {
555 self.recall_append(
556 &recall_owner,
557 &recall_session,
558 harness_core::RecallMessage::new(
559 "user",
560 ctx.task.description.clone(),
561 world.clock.now_ms(),
562 ),
563 )
564 .await;
565 }
566
567 // Running totals — surface to caller even on BudgetExhausted.
568 let mut tools_called: u32 = 0;
569 let mut total_usage = harness_core::Usage::default();
570 let mut last_text: Option<String> = None;
571
572 // Stuck-detector state: the previous round's tool-call fingerprint and
573 // how many consecutive rounds have repeated it.
574 let mut last_fingerprint: Option<String> = None;
575 let mut repeat_count: u32 = 0;
576
577 for iter in 0..ctx.policy.max_iters {
578 self.hooks.fire(&Event::Heartbeat { iter }, world);
579
580 // Compaction with hysteresis: only once over the high-water mark,
581 // then escalate stage-by-stage, re-estimating after each, and stop
582 // the moment we're back under target. Avoids over-compacting to the
583 // lossy AutoCompact stage and avoids rewriting history (→ prefix
584 // cache miss) every turn. Token estimate is calibrated against the
585 // last real `input_tokens` via `CALIBRATION_KEY`.
586 let mut budget = self.compactor.budget(&ctx);
587 if budget.ratio() > self.compaction.high_water {
588 for stage in CompactionStage::ALL {
589 if budget.ratio() <= self.compaction.target {
590 break;
591 }
592 self.hooks.fire(&Event::PreCompact { stage }, world);
593 self.compactor.compact(stage, &mut ctx).await?;
594 self.hooks.fire(&Event::PostCompact { stage }, world);
595 budget = self.compactor.budget(&ctx);
596 }
597 }
598
599 // Per-iteration guides — recall-style adapters that want to
600 // refresh their injected context every turn (e.g. MemoryGuide
601 // re-recalling against the latest user message). Default
602 // `apply_before_iter` is a no-op, so this loop is cheap for
603 // guides that don't override it.
604 for g in &all_guides {
605 if g.scope().matches(&ctx.task)
606 && let Err(e) = g.apply_before_iter(&mut ctx, world).await
607 {
608 tracing::warn!(guide = %g.id(), error = %e, "apply_before_iter failed; continuing");
609 }
610 }
611
612 self.hooks.fire(&Event::PreModel { ctx: &ctx }, world);
613 let out = if self.streaming {
614 self.complete_via_stream(&ctx, world).await?
615 } else {
616 self.model.complete(&ctx).await?
617 };
618 self.hooks.fire(&Event::PostModel { out: &out }, world);
619
620 // Calibrate the compactor against ground truth: `ctx` still holds
621 // exactly what we just sent, so `budget().used` is the estimate for
622 // it. Nudge the stored correction so estimate·correction ≈ the
623 // model's real `input_tokens` next time. Self-correcting (converges
624 // even as the raw estimate drifts); clamped so one odd turn can't
625 // blow it up. This is what makes compaction fire at the right moment
626 // for *this* model + language instead of a blind char heuristic.
627 if out.usage.input_tokens > 0 {
628 let used = self.compactor.budget(&ctx).used;
629 if used > 0 {
630 let prev = ctx
631 .metadata
632 .get(CALIBRATION_KEY)
633 .and_then(|v| v.as_f64())
634 .filter(|f| f.is_finite() && *f > 0.0)
635 .unwrap_or(1.0);
636 let next =
637 (prev * out.usage.input_tokens as f64 / used as f64).clamp(0.1, 10.0);
638 ctx.metadata
639 .insert(CALIBRATION_KEY.into(), serde_json::json!(next));
640 }
641 }
642
643 // Accumulate usage even if the run later exhausts budget.
644 total_usage.input_tokens += out.usage.input_tokens;
645 total_usage.output_tokens += out.usage.output_tokens;
646 total_usage.cached_input_tokens += out.usage.cached_input_tokens;
647 if let Some(t) = &out.text {
648 last_text = Some(t.clone());
649 }
650 ctx.push_model_output(&out);
651
652 if self.recall.is_some() {
653 let calls = if out.tool_calls.is_empty() {
654 None
655 } else {
656 serde_json::to_string(&out.tool_calls).ok()
657 };
658 let mut m = harness_core::RecallMessage::new(
659 "assistant",
660 out.text.clone().unwrap_or_default(),
661 world.clock.now_ms(),
662 );
663 m.tool_calls = calls;
664 self.recall_append(&recall_owner, &recall_session, m).await;
665 }
666
667 if out.tool_calls.is_empty() {
668 self.hooks.fire(&Event::TaskCompleted, world);
669 self.hooks.fire(&Event::SessionEnd, world);
670 self.run_learning_review(&ctx, world, tools_called).await;
671 // Thinking models (e.g. Qwen3 via Ollama) sometimes emit the
672 // whole answer into the reasoning channel and leave `text`
673 // empty. Fall back to the reasoning so the turn isn't blank.
674 let text = out
675 .text
676 .filter(|t| !t.trim().is_empty())
677 .or_else(|| out.reasoning.filter(|r| !r.trim().is_empty()));
678 return Ok(Outcome::Done {
679 text,
680 iters: iter + 1,
681 tools_called,
682 usage: total_usage,
683 });
684 }
685
686 // ── stuck detection ─────────────────────────────────────────
687 // The model asked for tools again. If it's the *same* request as
688 // last round, it's spinning: nudge it to change tack, then abort
689 // cleanly rather than burn the rest of the budget on the loop.
690 if self.stuck.enabled {
691 let fp = tool_call_fingerprint(&out.tool_calls);
692 if last_fingerprint.as_ref() == Some(&fp) {
693 repeat_count += 1;
694 } else {
695 repeat_count = 1;
696 last_fingerprint = Some(fp);
697 }
698
699 if repeat_count >= self.stuck.abort_after {
700 let reason =
701 format!("repeated the same tool call {repeat_count}× without progress");
702 tracing::warn!(repeated = repeat_count, "stuck: aborting run");
703 self.hooks.fire(&Event::SessionEnd, world);
704 return Ok(Outcome::Stuck {
705 reason,
706 repeated: repeat_count,
707 iters: iter + 1,
708 last_text,
709 tools_called,
710 usage: total_usage,
711 });
712 }
713
714 if repeat_count == self.stuck.nudge_after {
715 tracing::warn!(
716 repeated = repeat_count,
717 "stuck: nudging model to change approach"
718 );
719 ctx.push_feedback(vec![harness_core::Signal {
720 severity: harness_core::Severity::Warn,
721 origin: "stuck-detector".into(),
722 message: format!(
723 "You have issued the same tool call {repeat_count} rounds in a row \
724 without making progress."
725 ),
726 agent_hint: Some(
727 "Stop repeating it. Inspect the actual tool result/error, try a \
728 different approach, or give your final answer with no tool call."
729 .into(),
730 ),
731 auto_fix: None,
732 location: None,
733 }]);
734 }
735 }
736
737 // Parallel-safe prefetch: dispatch the *leading run* of read-only
738 // tool calls concurrently (a mutating tool is a serial barrier).
739 // The sequential loop below still processes every call in order —
740 // hooks, sensors, and history stay ordered — only the dispatch IO
741 // overlaps. Reads before any write are safe; anything at/after the
742 // first mutating call runs on the normal path.
743 let mut prefetched: HashMap<String, ToolResult> = HashMap::new();
744 {
745 let lead: Vec<&_> = out
746 .tool_calls
747 .iter()
748 .take_while(|c| {
749 self.tools.risk(&c.name) == Some(harness_core::ToolRisk::ReadOnly)
750 })
751 .collect();
752 if lead.len() > 1 {
753 let futs =
754 lead.iter().map(|c| {
755 let mut w = world.clone();
756 let action = Action {
757 tool: c.name.clone(),
758 call_id: c.id.clone(),
759 args: c.args.clone(),
760 };
761 async move {
762 let r = self.tools.dispatch(&action, &mut w).await.unwrap_or_else(
763 |e| ToolResult {
764 ok: false,
765 content: serde_json::json!({"error": e.to_string()}),
766 trace: None,
767 },
768 );
769 (action.call_id, r)
770 }
771 });
772 for (id, r) in futures::future::join_all(futs).await {
773 prefetched.insert(id, r);
774 }
775 }
776 }
777
778 for call in &out.tool_calls {
779 let action = Action {
780 tool: call.name.clone(),
781 call_id: call.id.clone(),
782 args: call.args.clone(),
783 };
784
785 // PreToolUse hook can deny destructive actions
786 if let HookOutcome::Deny { reason } = self
787 .hooks
788 .fire(&Event::PreToolUse { action: &action }, world)
789 {
790 ctx.history.push(Turn {
791 role: TurnRole::Tool,
792 blocks: vec![Block::ToolResult {
793 call_id: action.call_id.clone(),
794 content: serde_json::json!({
795 "ok": false,
796 "denied_by_hook": reason,
797 }),
798 }],
799 });
800 if self.recall.is_some() {
801 self.recall_append(
802 &recall_owner,
803 &recall_session,
804 harness_core::RecallMessage::new(
805 "tool",
806 format!("[denied by hook] {reason}"),
807 world.clock.now_ms(),
808 )
809 .with_tool_name(action.tool.clone()),
810 )
811 .await;
812 }
813 continue;
814 }
815
816 // Use the concurrently-prefetched result if we have one;
817 // otherwise dispatch now.
818 let result = if let Some(r) = prefetched.remove(&action.call_id) {
819 r
820 } else {
821 match self.tools.dispatch(&action, world).await {
822 Ok(r) => r,
823 Err(e) => ToolResult {
824 ok: false,
825 content: serde_json::json!({"error": e.to_string()}),
826 trace: None,
827 },
828 }
829 };
830 tools_called += 1;
831 self.hooks.fire(
832 &Event::PostToolUse {
833 action: &action,
834 result: &result,
835 },
836 world,
837 );
838
839 ctx.history.push(Turn {
840 role: TurnRole::Tool,
841 blocks: vec![Block::ToolResult {
842 call_id: action.call_id.clone(),
843 content: result.content.clone(),
844 }],
845 });
846
847 if self.recall.is_some() {
848 let body = serde_json::to_string(&result.content).unwrap_or_default();
849 self.recall_append(
850 &recall_owner,
851 &recall_session,
852 harness_core::RecallMessage::new("tool", body, world.clock.now_ms())
853 .with_tool_name(action.tool.clone()),
854 )
855 .await;
856 }
857
858 // run self-correct sensors
859 let mut all_signals = Vec::new();
860 for s in &self.sensors {
861 if s.stage() != Stage::SelfCorrect {
862 continue;
863 }
864 self.hooks.fire(&Event::PreSensor { sensor: s.id() }, world);
865 let sigs = s.observe(&action, world).await.unwrap_or_else(|e| {
866 tracing::warn!(?e, "sensor failed");
867 Vec::new()
868 });
869 self.hooks.fire(
870 &Event::PostSensor {
871 sensor: s.id(),
872 signals: &sigs,
873 },
874 world,
875 );
876 all_signals.extend(sigs);
877 }
878 if !all_signals.is_empty() {
879 let bundle = SignalSet::new(all_signals);
880 let (patches, remaining) = bundle.partition_auto_fix();
881
882 // audit #7: each patch goes through PreAutoFix.
883 // Hooks can Deny (skip silently). Default safelist on
884 // RunCommand catches the obvious misuses with no hook.
885 let approved: Vec<harness_core::FixPatch> = patches.into_iter().filter(|p| {
886 if !is_default_safe_fix(p) {
887 tracing::warn!(?p, "auto-fix rejected by default safelist (use PreAutoFix hook to override)");
888 self.hooks.fire(&Event::PostAutoFix { patch: p, applied: false }, world);
889 return false;
890 }
891 match self.hooks.fire(&Event::PreAutoFix { patch: p }, world) {
892 HookOutcome::Deny { reason } => {
893 tracing::warn!(?p, %reason, "auto-fix denied by hook");
894 self.hooks.fire(&Event::PostAutoFix { patch: p, applied: false }, world);
895 false
896 }
897 _ => true,
898 }
899 }).collect();
900
901 let applied = apply_patches(&approved, world).await;
902 // Emit PostAutoFix for each approved patch with the application result.
903 for (i, p) in approved.iter().enumerate() {
904 self.hooks.fire(
905 &Event::PostAutoFix {
906 patch: p,
907 applied: i < applied.len(),
908 },
909 world,
910 );
911 }
912 if !applied.is_empty() {
913 ctx.push_feedback(vec![harness_core::Signal {
914 severity: harness_core::Severity::Hint,
915 origin: "auto-fix".into(),
916 message: format!(
917 "applied {} auto-fix patch(es): {applied:?}",
918 applied.len()
919 ),
920 agent_hint: Some(
921 "re-check the affected files before continuing".into(),
922 ),
923 auto_fix: None,
924 location: None,
925 }]);
926 }
927 if remaining.has_blocking() {
928 ctx.push_feedback(remaining.signals);
929 }
930 }
931 }
932 }
933 // ── Budget exhausted ─────────────────────────────────────────
934 // Force a final synthesis pass with tools DISABLED. Otherwise the
935 // model often spins on tool calls right up to the budget cap and
936 // never emits a text conclusion, leaving the caller with nothing
937 // but `last_text` from some earlier intermediate turn (or None).
938 //
939 // The synthesis call is "free" — it costs one extra model call
940 // beyond max_iters but doesn't count toward `iters`. The result
941 // lands in `last_text` so callers display it as the answer.
942 let synthesised = self
943 .force_final_synthesis(&mut ctx, world, &mut total_usage)
944 .await;
945 if let Some(t) = synthesised {
946 last_text = Some(t);
947 }
948
949 self.hooks.fire(&Event::SessionEnd, world);
950 self.run_learning_review(&ctx, world, tools_called).await;
951 Ok(Outcome::BudgetExhausted {
952 iters: ctx.policy.max_iters,
953 last_text,
954 tools_called,
955 usage: total_usage,
956 })
957 }
958
959 /// Drive `Model::stream()` and assemble the result into a `ModelOutput`,
960 /// firing `Event::ModelTokenDelta` for each text fragment along the way.
961 ///
962 /// Adapters that don't implement real streaming (e.g. `GeminiNative` /
963 /// `AnthropicNative` today) fall back to the default trait impl, which
964 /// runs `complete()` and emits the whole reply as a single delta. That
965 /// works — the loop sees one big `ModelDelta::Text(...)` followed by
966 /// `Stop`, fires one big `ModelTokenDelta`, and proceeds. So enabling
967 /// `streaming` is safe regardless of which provider the user picked.
968 async fn complete_via_stream(
969 &self,
970 ctx: &Context,
971 world: &mut World,
972 ) -> Result<ModelOutput, HarnessError> {
973 use futures::StreamExt;
974 let mut stream = self
975 .model
976 .stream(ctx)
977 .await
978 .map_err(harness_core::HarnessError::Model)?;
979 let mut text = String::new();
980 let mut reasoning = String::new();
981 let mut usage = Usage::default();
982 let mut stop_reason = StopReason::EndTurn;
983 // Insertion-ordered map: index → (id, name, args). We can't use the
984 // tool-call id as the primary key because the stream may emit args
985 // chunks before the first chunk that carries the id; the OpenAI-compat
986 // SSE parser already does its own buffering and surfaces `id` in
987 // ToolCallStart, but be lenient with adapters that may interleave.
988 let mut tool_starts: HashMap<String, (String, String)> = HashMap::new();
989 let mut tool_order: Vec<String> = Vec::new();
990 while let Some(item) = stream.next().await {
991 let delta = item.map_err(harness_core::HarnessError::Model)?;
992 match delta {
993 ModelDelta::Text(t) => {
994 if !t.is_empty() {
995 self.hooks.fire(&Event::ModelTokenDelta { text: &t }, world);
996 text.push_str(&t);
997 }
998 }
999 ModelDelta::ToolCallStart { id, name } => {
1000 if !tool_starts.contains_key(&id) {
1001 tool_order.push(id.clone());
1002 }
1003 tool_starts
1004 .entry(id)
1005 .or_insert_with(|| (name, String::new()));
1006 }
1007 ModelDelta::ToolCallArgs { id, partial_json } => {
1008 let entry = tool_starts
1009 .entry(id.clone())
1010 .or_insert_with(|| (String::new(), String::new()));
1011 if !tool_order.iter().any(|k| k == &id) {
1012 tool_order.push(id);
1013 }
1014 entry.1.push_str(&partial_json);
1015 }
1016 ModelDelta::ToolCallEnd { .. } => {}
1017 ModelDelta::Usage(u) => usage = u,
1018 ModelDelta::Stop(r) => stop_reason = r,
1019 ModelDelta::Reasoning(s) => {
1020 // Streamed reasoning arrives as token fragments, not lines —
1021 // concatenate verbatim (same as `text`), don't insert newlines.
1022 reasoning.push_str(&s);
1023 }
1024 // ModelDelta is `#[non_exhaustive]`; ignore future variants
1025 // we don't yet understand.
1026 _ => {}
1027 }
1028 }
1029 let tool_calls: Vec<ToolCall> = tool_order
1030 .into_iter()
1031 .filter_map(|id| {
1032 tool_starts.remove(&id).map(|(name, args)| {
1033 let args_v = serde_json::from_str::<serde_json::Value>(&args)
1034 .unwrap_or(serde_json::Value::String(args));
1035 ToolCall {
1036 id,
1037 name,
1038 args: args_v,
1039 }
1040 })
1041 })
1042 .collect();
1043 // Reconcile stop_reason with what actually came out — adapters
1044 // sometimes emit `Stop(EndTurn)` even after tool_calls, which would
1045 // confuse downstream consumers that branch on stop_reason alone.
1046 let stop_reason = if !tool_calls.is_empty() {
1047 StopReason::ToolUse
1048 } else {
1049 stop_reason
1050 };
1051 Ok(ModelOutput {
1052 text: if text.is_empty() { None } else { Some(text) },
1053 tool_calls,
1054 usage,
1055 stop_reason,
1056 reasoning: if reasoning.is_empty() {
1057 None
1058 } else {
1059 Some(reasoning)
1060 },
1061 })
1062 }
1063
1064 /// Best-effort append to the recall store. Never fails the turn.
1065 async fn recall_append(&self, owner: &str, session: &str, msg: harness_core::RecallMessage) {
1066 if let Some(store) = &self.recall
1067 && let Err(e) = store.append(owner, session, &msg).await
1068 {
1069 tracing::warn!(error = %e, "recall append failed");
1070 }
1071 }
1072
1073 /// Best-effort post-session review. Never affects the finished run.
1074 async fn run_learning_review(&self, ctx: &Context, world: &mut World, tools_called: u32) {
1075 let Some(cfg) = &self.learning else { return };
1076 if tools_called < cfg.nudge_interval {
1077 return;
1078 }
1079 let transcript = crate::render_transcript(&ctx.history, 12_000);
1080 let task = harness_core::Task {
1081 description: format!(
1082 "{}\n\n## Conversation transcript\n{}",
1083 cfg.review_prompt, transcript
1084 ),
1085 source: None,
1086 deadline: None,
1087 };
1088 let mut spec =
1089 crate::SubagentSpec::new("learning-review", task).with_max_iters(cfg.max_iters);
1090 for t in &cfg.tools {
1091 spec = spec.with_tool(t.clone());
1092 }
1093 let sub = crate::Subagent::new(harness_core::DynModel(cfg.review_model.clone()), spec);
1094 // Box::pin breaks the recursive async-future cycle: AgentLoop<M> →
1095 // run_learning_review → Subagent<DynModel>::run →
1096 // AgentLoop<Arc<dyn Model>>::run_built_context. Without pinning the
1097 // compiler rejects the infinite-sized future.
1098 if let Err(e) = Box::pin(sub.run(world)).await {
1099 tracing::warn!(error = %e, "learning review failed");
1100 }
1101 }
1102
1103 /// One final model call with tools removed, asking it to write the
1104 /// best-effort conclusion from whatever it has already gathered.
1105 ///
1106 /// Errors from the model are swallowed — observability is best-effort
1107 /// here, and a transport blip during synthesis should not turn a
1108 /// near-complete run into a hard failure.
1109 async fn force_final_synthesis(
1110 &self,
1111 ctx: &mut Context,
1112 world: &mut World,
1113 total_usage: &mut harness_core::Usage,
1114 ) -> Option<String> {
1115 const SYNTHESIS_PROMPT: &str = "[system: iteration budget exhausted] \
1116 You have run out of tool-calling iterations. Write your final answer \
1117 NOW using only the tool results already in this conversation. Do not \
1118 request more tools. Mark facts you could not verify as UNKNOWN. \
1119 Include source URLs for every claim that is not UNKNOWN.";
1120
1121 // Signal to any observer (LiveProgressHook, SessionRecorder, custom
1122 // hooks) that we've used 100% of the budget and are about to force
1123 // synthesis. Pre-existing `BudgetWarning` event was unused; this is
1124 // its natural home.
1125 self.hooks.fire(&Event::BudgetWarning { ratio: 1.0 }, world);
1126
1127 // Snapshot + clear tool schemas so the model has no choice but text.
1128 let saved_tools = std::mem::take(&mut ctx.tools);
1129 ctx.history.push(Turn {
1130 role: TurnRole::User,
1131 blocks: vec![Block::Text(SYNTHESIS_PROMPT.into())],
1132 });
1133
1134 self.hooks.fire(&Event::PreModel { ctx }, world);
1135 let result = self.model.complete(ctx).await;
1136 ctx.tools = saved_tools;
1137
1138 match result {
1139 Ok(out) => {
1140 self.hooks.fire(&Event::PostModel { out: &out }, world);
1141 total_usage.input_tokens += out.usage.input_tokens;
1142 total_usage.output_tokens += out.usage.output_tokens;
1143 total_usage.cached_input_tokens += out.usage.cached_input_tokens;
1144 ctx.push_model_output(&out);
1145 out.text
1146 }
1147 Err(_) => None,
1148 }
1149 }
1150}
1151
1152/// A persistent multi-turn conversation over one [`AgentLoop`].
1153///
1154/// Holds the append-only history and, on each [`turn`](Session::turn), re-runs
1155/// the loop against a **stable prefix** (system + name-sorted tool schemas).
1156/// That byte-stable prefix is what lets a provider's prefix cache hit across
1157/// turns — the difference between paying full price to re-read the same context
1158/// every round and paying ~10% for the cached bytes (DeepSeek).
1159pub struct Session<'a, M: Model> {
1160 loop_: &'a AgentLoop<M>,
1161 history: Vec<Turn>,
1162 max_iters: u32,
1163}
1164
1165impl<'a, M: Model> Session<'a, M> {
1166 pub fn with_max_iters(mut self, n: u32) -> Self {
1167 self.max_iters = n;
1168 self
1169 }
1170 /// Preload prior turns (e.g. resumed from disk).
1171 pub fn with_seed(mut self, seed: Vec<Turn>) -> Self {
1172 self.history = seed;
1173 self
1174 }
1175 /// The accumulated conversation so far.
1176 pub fn history(&self) -> &[Turn] {
1177 &self.history
1178 }
1179 /// Start over (branch): drop the accumulated turns.
1180 pub fn reset(&mut self) {
1181 self.history.clear();
1182 }
1183
1184 /// Send one user message. Runs the ReAct loop against the accumulated
1185 /// history, then appends this user turn + the assistant reply so the next
1186 /// turn extends the same cached prefix.
1187 pub async fn turn(
1188 &mut self,
1189 message: impl Into<String>,
1190 world: &mut World,
1191 ) -> Result<Outcome, HarnessError> {
1192 let message = message.into();
1193 let task = Task {
1194 description: message.clone(),
1195 source: None,
1196 deadline: None,
1197 };
1198 let outcome = self
1199 .loop_
1200 .run_with_seed_history(task, self.history.clone(), world, self.max_iters)
1201 .await?;
1202 let reply = match &outcome {
1203 Outcome::Done { text, .. } => text.clone().unwrap_or_default(),
1204 Outcome::BudgetExhausted { last_text, .. } | Outcome::Stuck { last_text, .. } => {
1205 last_text.clone().unwrap_or_default()
1206 }
1207 };
1208 self.history.push(Turn {
1209 role: TurnRole::User,
1210 blocks: vec![Block::Text(message)],
1211 });
1212 self.history.push(Turn {
1213 role: TurnRole::Assistant,
1214 blocks: vec![Block::Text(reply)],
1215 });
1216 Ok(outcome)
1217 }
1218}
1219
1220/// Audit #7: default safelist for `FixPatch::RunCommand`.
1221///
1222/// Sensors emitting `RunCommand` patches would otherwise be a silent
1223/// arbitrary-code-execution channel. We restrict the *program* by name to a
1224/// short list of well-known, side-effect-bounded formatters/fixers. Anything
1225/// else returns false and the patch is rejected (write your own `PreAutoFix`
1226/// hook returning `HookOutcome::Allow` to widen the policy).
1227///
1228/// `ReplaceFile` and `UnifiedDiff` are not restricted here — they only touch
1229/// files inside the workspace and are covered by the symlink-safe path
1230/// resolution in `harness-tools-fs`.
1231pub fn is_default_safe_fix(patch: &harness_core::FixPatch) -> bool {
1232 use harness_core::FixPatch;
1233 match patch {
1234 FixPatch::ReplaceFile { .. } | FixPatch::UnifiedDiff { .. } => true,
1235 FixPatch::RunCommand { program, args, .. } => match program.as_str() {
1236 // Cargo subcommands proven side-effect-bounded.
1237 "cargo" => matches!(
1238 args.first().map(String::as_str),
1239 Some("fmt" | "clippy" | "fix"),
1240 ),
1241 "rustfmt" | "gofmt" | "prettier" | "ruff" | "black" => true,
1242 _ => false,
1243 },
1244 // Future FixPatch variants: deny by default — review and add to the list above.
1245 _ => false,
1246 }
1247}
1248
1249/// Monotonic counter for `.harness-patch-*.diff` temp filenames — millisecond
1250/// resolution alone collides under parallel agent runs.
1251static PATCH_SEQ: std::sync::atomic::AtomicU64 = std::sync::atomic::AtomicU64::new(0);
1252
1253/// Monotonic counter for fallback recall session ids (no `uuid` dep).
1254static RECALL_SEQ: std::sync::atomic::AtomicU64 = std::sync::atomic::AtomicU64::new(0);
1255
1256/// Apply auto-fix patches; return short descriptions of those that succeeded.
1257///
1258/// Made `pub` (was `pub(crate)`) so integration tests can call it directly.
1259pub async fn apply_patches(patches: &[harness_core::FixPatch], world: &mut World) -> Vec<String> {
1260 use harness_core::FixPatch;
1261 let mut applied = Vec::new();
1262 for p in patches {
1263 match p {
1264 FixPatch::ReplaceFile { path, content } => {
1265 let abs = world.repo.root.join(path);
1266 if let Some(parent) = abs.parent() {
1267 let _ = tokio::fs::create_dir_all(parent).await;
1268 }
1269 if tokio::fs::write(&abs, content).await.is_ok() {
1270 applied.push(format!("replaced {}", path.display()));
1271 }
1272 }
1273 FixPatch::UnifiedDiff { diff } => {
1274 if try_apply_diff(world, diff).await {
1275 applied.push("unified diff applied".into());
1276 }
1277 }
1278 FixPatch::RunCommand { program, args, cwd } => {
1279 let cwd_ref = cwd.as_deref().unwrap_or(world.repo.root.as_path());
1280 let args_ref: Vec<&str> = args.iter().map(String::as_str).collect();
1281 if let Ok(out) = world.runner.exec(program, &args_ref, Some(cwd_ref)).await
1282 && out.status == 0
1283 {
1284 applied.push(format!("ran `{program} {}`", args.join(" ")));
1285 }
1286 }
1287 // FixPatch is `#[non_exhaustive]`; unknown variants are skipped.
1288 _ => tracing::warn!("apply_patches: unknown FixPatch variant — skipped"),
1289 }
1290 }
1291 applied
1292}
1293
1294/// Write `diff` to a unique temp file and try `patch -p1` first, then `-p0`.
1295/// Returns whether either succeeded. The `-p1`-then-`-p0` order matches the
1296/// reality that most agent-emitted diffs are git-style (need `-p1`) but some
1297/// hand-rolled diffs use repo-relative paths (need `-p0`).
1298async fn try_apply_diff(world: &mut World, diff: &str) -> bool {
1299 use std::sync::atomic::Ordering;
1300 use tokio::io::AsyncWriteExt;
1301
1302 let seq = PATCH_SEQ.fetch_add(1, Ordering::SeqCst);
1303 let pid = std::process::id();
1304 let now = world.clock.now_ms();
1305 let tmp = world
1306 .repo
1307 .root
1308 .join(format!(".harness-patch-{pid}-{now}-{seq}.diff"));
1309
1310 let mut f = match tokio::fs::File::create(&tmp).await {
1311 Ok(f) => f,
1312 Err(e) => {
1313 tracing::warn!(error=%e, path=%tmp.display(), "could not create patch tempfile");
1314 return false;
1315 }
1316 };
1317 if let Err(e) = f.write_all(diff.as_bytes()).await {
1318 tracing::warn!(error=%e, "could not write patch tempfile");
1319 let _ = tokio::fs::remove_file(&tmp).await;
1320 return false;
1321 }
1322 drop(f);
1323
1324 let tmp_str = tmp.to_string_lossy().to_string();
1325 let mut applied = false;
1326 for strip in ["-p1", "-p0"] {
1327 match world
1328 .runner
1329 .exec(
1330 "patch",
1331 &[strip, "--silent", "-i", tmp_str.as_str()],
1332 Some(world.repo.root.as_path()),
1333 )
1334 .await
1335 {
1336 Ok(out) if out.status == 0 => {
1337 tracing::info!(strip, "patch applied");
1338 applied = true;
1339 break;
1340 }
1341 Ok(out) => {
1342 tracing::debug!(strip, stderr=%out.stderr, "patch failed; trying next strip level");
1343 }
1344 Err(e) => {
1345 tracing::warn!(error=%e, "patch command not available");
1346 break; // patch tool missing — no point trying other strip
1347 }
1348 }
1349 }
1350 let _ = tokio::fs::remove_file(&tmp).await;
1351 applied
1352}