leviath_core/layout.rs
1//! Context window layouts and memory maps.
2//!
3//! A layout defines the complete memory structure for an agent's context window,
4//! including all regions, their sizes, and eviction priorities. This is analogous
5//! to a hardware memory map that defines where different types of data live and
6//! how they're managed.
7
8use crate::error::ValidationError;
9use crate::region::{RegionKind, RegionSchema};
10use serde::{Deserialize, Serialize};
11
12/// How a region's token ceiling is expressed before it is resolved against a
13/// concrete model context window.
14///
15/// Blueprint authors think in **proportions** (`budget = "35%"`) so their intent
16/// stays correct regardless of the model's context size, while power users can
17/// still pin an exact count. The percentage denominator - the model's context
18/// window - is not known at parse time, so the spec is stored unresolved here and
19/// turned into a concrete token count at window-build time (see
20/// [`BudgetSpec::resolve`] and [`ContextLayout::resolved`]).
21#[derive(Debug, Clone, PartialEq, Serialize, Deserialize)]
22#[serde(rename_all = "snake_case")]
23pub enum BudgetSpec {
24 /// A fixed token ceiling, independent of the model. Resolving is a no-op.
25 Absolute(usize),
26
27 /// A ceiling expressed as a fraction of the model's context window, with
28 /// optional absolute guard-rails. `percent` is a fraction (`0.35` for
29 /// `"35%"`). `max` caps the resolved value (so e.g. 2% of a 1M window can't
30 /// balloon a task region to 20K tokens); `min` floors it (so a small-context
31 /// model doesn't starve the region below a usable size).
32 Percent {
33 /// Fraction of the model context window (0.35 == "35%").
34 percent: f64,
35 /// Absolute floor for the resolved value, if any.
36 min: Option<usize>,
37 /// Absolute cap for the resolved value, if any.
38 max: Option<usize>,
39 },
40}
41
42impl Default for BudgetSpec {
43 /// Only a serde-deserialize fallback for older persisted blueprints; live
44 /// code always sets the budget explicitly via [`RegionDefinition::new`].
45 fn default() -> Self {
46 BudgetSpec::Absolute(0)
47 }
48}
49
50impl BudgetSpec {
51 /// Parse a percentage string like `"35%"` into its fraction (`0.35`).
52 ///
53 /// Surrounding whitespace is trimmed and decimals are allowed (`"0.6%"`).
54 /// Rejects a missing `%`, a non-numeric value, and anything outside the
55 /// `(0, 100]` range - a single region can't sensibly claim ≤0% or more than
56 /// the whole window (region budgets may *sum* past 100%, but each is a
57 /// fraction of one window). Returns the human-readable reason on failure so
58 /// the caller can surface it at load time.
59 pub fn parse_budget(s: &str) -> std::result::Result<f64, String> {
60 let trimmed = s.trim();
61 let Some(num) = trimmed.strip_suffix('%') else {
62 return Err(format!("budget '{s}' must end with '%' (e.g. \"35%\")"));
63 };
64 let value: f64 = num
65 .trim()
66 .parse()
67 .map_err(|_| format!("budget '{s}' is not a valid number"))?;
68 if !(value > 0.0 && value <= 100.0) {
69 return Err(format!(
70 "budget '{s}' must be greater than 0% and at most 100%"
71 ));
72 }
73 Ok(value / 100.0)
74 }
75
76 /// Resolve this spec to a concrete token count against a model context
77 /// `window`.
78 ///
79 /// [`Absolute`](BudgetSpec::Absolute) ignores the window (idempotent - a
80 /// fully-absolute layout resolves to itself). [`Percent`](BudgetSpec::Percent)
81 /// rounds `window * percent`, then applies the `max` cap, then the `min`
82 /// floor. The floor is applied **last** so that when `min > max` the floor
83 /// wins: a region starved below a usable size is worse than one slightly over
84 /// its cap.
85 pub fn resolve(&self, window: usize) -> usize {
86 match self {
87 BudgetSpec::Absolute(n) => *n,
88 BudgetSpec::Percent { percent, min, max } => {
89 let mut v = (window as f64 * percent).round() as usize;
90 if let Some(max) = max {
91 v = v.min(*max);
92 }
93 if let Some(min) = min {
94 v = v.max(*min);
95 }
96 v
97 }
98 }
99 }
100
101 /// Whether this is a percentage budget (needs a model window to resolve).
102 pub fn is_percent(&self) -> bool {
103 matches!(self, BudgetSpec::Percent { .. })
104 }
105}
106
107/// A ContextLayout defines the complete memory map for an agent.
108///
109/// Like SNES VRAM layout - every region has a defined purpose, size, and policy.
110/// The layout specifies:
111/// - Which regions exist and their configurations
112/// - Total token budget across all regions
113/// - Eviction order when space is needed
114///
115/// Layouts are typically defined in an agent's blueprint and remain constant
116/// throughout the agent's lifecycle, though the content within regions changes.
117#[derive(Debug, Clone, Serialize, Deserialize)]
118pub struct ContextLayout {
119 /// All regions in this layout
120 pub regions: Vec<RegionDefinition>,
121
122 /// Total token budget across all regions
123 pub total_budget_tokens: usize,
124
125 /// Region names in eviction priority order (first = evicted first)
126 ///
127 /// When the context window fills up, regions are processed in this order:
128 /// 1. Temporary regions: evict oldest entries
129 /// 2. Compacting regions: trigger summarization
130 /// 3. SlidingWindow regions: reduce window size
131 /// 4. Pinned regions: NEVER touched (if these fill up, it's a config error)
132 pub eviction_order: Vec<String>,
133}
134
135impl ContextLayout {
136 /// Create a new layout with the specified configuration.
137 pub fn new(regions: Vec<RegionDefinition>, total_budget_tokens: usize) -> Self {
138 Self {
139 regions,
140 total_budget_tokens,
141 eviction_order: Vec::new(),
142 }
143 }
144
145 /// Set the eviction order for this layout.
146 pub fn with_eviction_order(mut self, order: Vec<String>) -> Self {
147 self.eviction_order = order;
148 self
149 }
150
151 /// Validate that the layout is well-formed.
152 ///
153 /// Checks:
154 /// - Sum of max_tokens doesn't exceed total_budget_tokens
155 /// - All region names in eviction_order exist
156 /// - No duplicate region names
157 pub fn validate(&self) -> std::result::Result<(), ValidationError> {
158 // Check for duplicate region names
159 let mut names = std::collections::HashSet::new();
160 for region in &self.regions {
161 if !names.insert(region.name.as_str()) {
162 return Err(ValidationError::Region {
163 region: region.name.clone(),
164 message: "duplicate region name".to_string(),
165 });
166 }
167 }
168
169 // Check that eviction_order regions exist
170 for name in &self.eviction_order {
171 if !names.contains(name.as_str()) {
172 return Err(ValidationError::Layout(format!(
173 "eviction order references unknown region: {}",
174 name
175 )));
176 }
177 }
178
179 // Reject a Custom region whose script path is empty - it could never
180 // resolve to a file, and the runtime would silently fall back to
181 // Temporary-style rendering on every inference.
182 for region in &self.regions {
183 if let RegionKind::Custom { script, .. } = ®ion.kind
184 && script.trim().is_empty()
185 {
186 return Err(ValidationError::Region {
187 region: region.name.clone(),
188 message: "custom region requires a non-empty script path".to_string(),
189 });
190 }
191 }
192
193 // Warn if sum of max tokens exceeds budget (not necessarily an error,
194 // since not all regions will be full simultaneously)
195 // Warn if no SlidingWindow region exists - agents should have a
196 // conversation region for typed message entries, but some agents
197 // (e.g., deep-researcher) use other region kinds exclusively. A Custom
198 // region counts: its script can render typed entries as messages.
199 let has_message_region = self.regions.iter().any(|r| {
200 matches!(
201 r.kind,
202 RegionKind::SlidingWindow { .. } | RegionKind::Custom { .. }
203 )
204 });
205 if !has_message_region {
206 tracing::warn!(
207 "Layout has no SlidingWindow (or custom scripted) region - typed \
208 conversation entries require one"
209 );
210 }
211
212 // The token-sum warning and the fixed-working-budget hard error below
213 // operate on concrete `max_tokens` values. When percentage budgets are
214 // present those values are provisional placeholders until the layout is
215 // resolved against a model window, so the checks are meaningless here -
216 // skip them and rely on the post-resolution `validate()` call at spawn.
217 if self.has_percent_budgets() {
218 return Ok(());
219 }
220
221 let total_max: usize = self.regions.iter().map(|r| r.max_tokens).sum();
222 if total_max > self.total_budget_tokens {
223 tracing::warn!(
224 "Sum of region max tokens ({}) exceeds total budget ({})",
225 total_max,
226 self.total_budget_tokens
227 );
228 }
229
230 // Ensure the layout leaves a minimum working budget once the fixed,
231 // non-evictable regions are full. Pinned / HashMap / CompactHistory
232 // regions persist for the whole run and consume budget; if they leave
233 // too little room, the conversation/tool-result (evictable) regions have
234 // almost no space and the agent operates "blind". Fail loudly at load
235 // instead of degrading silently at runtime.
236 let fixed_tokens: usize = self
237 .regions
238 .iter()
239 .filter(|r| {
240 matches!(
241 r.kind,
242 RegionKind::Pinned
243 | RegionKind::HashMap { .. }
244 | RegionKind::CompactHistory { .. }
245 | RegionKind::Custom {
246 persistent: true,
247 ..
248 }
249 )
250 })
251 .map(|r| r.max_tokens)
252 .sum();
253 // Only enforce the absolute working-budget floor on realistically-sized
254 // layouts. Tiny illustrative layouts (toy examples, unit-test fixtures)
255 // have small budgets by design and are not real agent runs; applying an
256 // absolute floor to them would be nonsensical.
257 let working_tokens = self.total_budget_tokens.saturating_sub(fixed_tokens);
258 if self.total_budget_tokens >= Self::BUDGET_CHECK_MIN_TOTAL
259 && working_tokens < Self::MIN_WORKING_TOKENS
260 {
261 return Err(ValidationError::Layout(format!(
262 "context layout leaves only {working_tokens} working tokens after fixed \
263 regions (pinned/hashmap/compact_history/persistent custom) consume \
264 {fixed_tokens} of the {} \
265 total budget; at least {} are needed for the agent to operate. Reduce the \
266 fixed regions' max_tokens or increase the total budget.",
267 self.total_budget_tokens,
268 Self::MIN_WORKING_TOKENS
269 )));
270 }
271
272 Ok(())
273 }
274
275 /// Minimum token budget that must remain for evictable/working regions
276 /// (conversation, tool results, scratch) after the fixed regions are full,
277 /// so the agent has room to hold recent context and generate. Below this a
278 /// run would operate with almost no working space.
279 const MIN_WORKING_TOKENS: usize = 8000;
280
281 /// The working-budget floor is only enforced when the layout's total budget
282 /// is at least this large - i.e. it's a realistically-sized agent, not a
283 /// toy/illustrative layout where an absolute floor wouldn't make sense.
284 const BUDGET_CHECK_MIN_TOTAL: usize = 20_000;
285
286 /// Get a region definition by name.
287 pub fn get_region(&self, name: &str) -> Option<&RegionDefinition> {
288 self.regions.iter().find(|r| r.name == name)
289 }
290
291 /// Whether any region uses a percentage budget (and therefore needs a model
292 /// context window to resolve to concrete token counts).
293 pub fn has_percent_budgets(&self) -> bool {
294 self.regions.iter().any(|r| r.budget.is_percent())
295 }
296
297 /// Resolve every region's percentage budget against a concrete model context
298 /// `window`, returning a fully-absolute layout.
299 ///
300 /// Each region's `max_tokens` becomes `budget.resolve(window)`, and each
301 /// [`RegionKind::Compacting`] region's `threshold_tokens` is recomputed from
302 /// its [`compact_at`](RegionDefinition::compact_at) fraction (via the private
303 /// `resolve_compacting_threshold` helper). `eviction_order` is preserved. The
304 /// total budget becomes the model `window` when any percentage budget is
305 /// present (percentage ceilings are relative to the whole window and may sum
306 /// past 100%); a pure-absolute layout keeps its legacy summed total unchanged.
307 ///
308 /// Resolving an already-absolute layout is a no-op, so this is safe to call
309 /// unconditionally at window-build time.
310 pub fn resolved(&self, window: usize) -> ContextLayout {
311 let regions = self
312 .regions
313 .iter()
314 .map(|r| {
315 let max_tokens = r.budget.resolve(window);
316 let kind = match &r.kind {
317 RegionKind::Compacting { threshold_tokens } => RegionKind::Compacting {
318 threshold_tokens: Self::resolve_compacting_threshold(
319 r.compact_at,
320 *threshold_tokens,
321 max_tokens,
322 ),
323 },
324 other => other.clone(),
325 };
326 // Emit a fully-absolute region: the percentage has been baked
327 // into `max_tokens` and the compaction threshold into `kind`, so
328 // the resolved layout carries no `Percent` budgets. This makes
329 // `has_percent_budgets()` false on the result, so a post-resolution
330 // `validate()` runs the real token/working-budget checks.
331 RegionDefinition {
332 kind,
333 max_tokens,
334 budget: BudgetSpec::Absolute(max_tokens),
335 compact_at: None,
336 ..r.clone()
337 }
338 })
339 .collect();
340
341 let total_budget_tokens = if self.has_percent_budgets() {
342 window
343 } else {
344 self.total_budget_tokens
345 };
346
347 ContextLayout {
348 regions,
349 total_budget_tokens,
350 eviction_order: self.eviction_order.clone(),
351 }
352 }
353
354 /// Compute a Compacting region's concrete compaction threshold from its
355 /// `compact_at` fraction, the absolute `threshold_tokens` guard carried on
356 /// the kind, and the region's resolved budget.
357 ///
358 /// - `compact_at = Some(f)` with an explicit `threshold_tokens` cap (any
359 /// value below the [`usize::MAX`] sentinel) → `min(round(budget * f), cap)`:
360 /// compact at the percentage, but never later than the absolute guard-rail.
361 /// - `compact_at = Some(f)` with no cap (`threshold_tokens == usize::MAX`
362 /// sentinel) → `round(budget * f)`.
363 /// - `compact_at = None` → the absolute `threshold_tokens` as-is (back-compat,
364 /// including the parser's `max_tokens * 8 / 10` default).
365 ///
366 /// The `usize::MAX` sentinel is safe: a layout is always resolved before any
367 /// [`Region::needs_compaction`](crate::region::Region::needs_compaction) check.
368 fn resolve_compacting_threshold(
369 compact_at: Option<f64>,
370 threshold_tokens: usize,
371 resolved_budget: usize,
372 ) -> usize {
373 match compact_at {
374 Some(fraction) => {
375 let pct = (resolved_budget as f64 * fraction).round() as usize;
376 pct.min(threshold_tokens)
377 }
378 None => threshold_tokens,
379 }
380 }
381}
382
383/// Where a region's initial content comes from at run start.
384///
385/// A region without a seed starts empty and is populated by the agent. A seeded
386/// region is filled before the first inference: `CallerInput` regions are filled
387/// by the run's caller (a CLI `--<name>` flag, an ACP `---region:<name>---`
388/// marker, or the API `regions` map); the remaining variants are resolved by the
389/// daemon from the run's workdir (which is why this type only *declares* the
390/// source - `leviath-core` stays filesystem-agnostic; resolution lives in the
391/// CLI daemon's spawner).
392#[derive(Debug, Clone, PartialEq, Serialize, Deserialize)]
393#[serde(rename_all = "snake_case")]
394pub enum RegionSeed {
395 /// Filled at run time by the caller, keyed by `name` (defaults to the
396 /// region's own name; the sentinel `task` maps to the `--task`/prompt text).
397 /// When the owning region is `required`, a missing value is a hard error
398 /// before any inference runs.
399 CallerInput {
400 /// The caller-input key this region is filled from.
401 name: String,
402 },
403 /// Concatenated contents of the workdir files matching a glob pattern.
404 Glob {
405 /// Glob pattern, resolved relative to the run's workdir.
406 pattern: String,
407 },
408 /// Concatenated contents of an explicit list of workdir-relative files.
409 Files {
410 /// File paths, resolved relative to the run's workdir.
411 paths: Vec<String>,
412 },
413 /// A static literal string baked into the blueprint.
414 Literal {
415 /// The verbatim seed text.
416 text: String,
417 },
418 /// The `String` returned by running a Rhai script from the workdir.
419 Rhai {
420 /// Script path, resolved relative to the run's workdir.
421 script: String,
422 },
423 /// The combined stdout/stderr of a shell command run in the workdir at spawn.
424 ///
425 /// Unlike every other variant this *executes* something, and it does so
426 /// before the first inference - so before any tool-approval prompt. The
427 /// daemon runs it inside the entry stage's sandbox when one is configured,
428 /// caps its runtime and output, and honours the `[security]
429 /// allow_seed_commands` kill switch. A failure is non-fatal unless the
430 /// owning region is `required`.
431 Command {
432 /// The shell command line, run with the platform shell in the workdir.
433 command: String,
434 },
435}
436
437/// Definition of a region in a layout.
438///
439/// This is the blueprint for creating a Region instance. It specifies the
440/// region's configuration but doesn't contain actual content.
441#[derive(Debug, Clone, Serialize, Deserialize)]
442pub struct RegionDefinition {
443 /// Unique name for this region
444 pub name: String,
445
446 /// Region lifecycle policy
447 pub kind: RegionKind,
448
449 /// **Resolved** maximum tokens for this region. This is the concrete ceiling
450 /// every downstream consumer reads; for a percentage budget it is populated
451 /// when the layout is resolved against a model window (see
452 /// [`ContextLayout::resolved`]). [`Self::budget`] is the source of truth for
453 /// how this value is derived.
454 pub max_tokens: usize,
455
456 /// How this region's ceiling is expressed. Defaults (via [`Self::new`]) to
457 /// [`BudgetSpec::Absolute`] holding `max_tokens`, so a region built the old
458 /// way behaves exactly as before. A percentage budget is resolved against the
459 /// model context window at window-build time.
460 #[serde(default)]
461 pub budget: BudgetSpec,
462
463 /// For [`RegionKind::Compacting`] regions only: compact when the region
464 /// reaches this fraction of its resolved budget (`0.80` for `compact_at =
465 /// "80%"`). `None` keeps the absolute `threshold_tokens` carried on the kind.
466 /// See [`ContextLayout::resolved`] for how this becomes a concrete threshold.
467 #[serde(default)]
468 pub compact_at: Option<f64>,
469
470 /// Optional validation schema
471 pub schema: Option<RegionSchema>,
472
473 /// Human-readable description of this region's purpose
474 pub description: Option<String>,
475
476 /// When true, this region must be non-empty before a stage that can write
477 /// to it is allowed to complete. Guards against an agent skipping a
478 /// context-population step (e.g. never writing the `plan` region). Enforced
479 /// in the run loop, which re-runs the stage with [`Self::required_message`]
480 /// until the region is populated.
481 #[serde(default)]
482 pub required: bool,
483
484 /// Optional custom message shown to the agent when this region is required
485 /// but empty. Falls back to a generated default when `None`.
486 #[serde(default)]
487 pub required_message: Option<String>,
488
489 /// Where this region's initial content comes from at run start. `None`
490 /// means the region starts empty (the agent populates it). See
491 /// [`RegionSeed`].
492 #[serde(default)]
493 pub seed: Option<RegionSeed>,
494}
495
496impl RegionDefinition {
497 /// Create a new region definition with an absolute token ceiling.
498 ///
499 /// The `budget` is set to [`BudgetSpec::Absolute`] holding `max_tokens` and
500 /// `compact_at` to `None`, so every existing caller (and every region without
501 /// a percentage budget) is unaffected - resolving such a layout is a no-op.
502 pub fn new(name: String, kind: RegionKind, max_tokens: usize) -> Self {
503 Self {
504 name,
505 kind,
506 max_tokens,
507 budget: BudgetSpec::Absolute(max_tokens),
508 compact_at: None,
509 schema: None,
510 description: None,
511 required: false,
512 required_message: None,
513 seed: None,
514 }
515 }
516
517 /// Set this region's budget spec (e.g. a percentage of the model window).
518 /// `max_tokens` is left as the provisional/resolved value; it is (re)computed
519 /// from the budget when the owning layout is resolved.
520 pub fn with_budget(mut self, budget: BudgetSpec) -> Self {
521 self.budget = budget;
522 self
523 }
524
525 /// Set the compaction trigger fraction for a [`RegionKind::Compacting`]
526 /// region (`0.80` == compact at 80% of the resolved budget).
527 pub fn with_compact_at(mut self, fraction: f64) -> Self {
528 self.compact_at = Some(fraction);
529 self
530 }
531
532 /// Set this region's seed source.
533 pub fn with_seed(mut self, seed: RegionSeed) -> Self {
534 self.seed = Some(seed);
535 self
536 }
537
538 /// Mark this region as required, with an optional custom nudge message.
539 pub fn with_required(mut self, required: bool, message: Option<String>) -> Self {
540 self.required = required;
541 self.required_message = message;
542 self
543 }
544
545 /// Add a schema to this region definition.
546 pub fn with_schema(mut self, schema: RegionSchema) -> Self {
547 self.schema = Some(schema);
548 self
549 }
550
551 /// Add a description to this region definition.
552 pub fn with_description(mut self, description: String) -> Self {
553 self.description = Some(description);
554 self
555 }
556}
557
558#[cfg(test)]
559mod tests {
560 use super::*;
561
562 /// Minimal no-op `Subscriber` that reports every callsite as enabled.
563 ///
564 /// Without an active subscriber, `tracing::warn!`/`info!`/`debug!` calls
565 /// short-circuit their field-argument evaluation before ever reaching it
566 /// (no subscriber means the "is this level enabled" check fails first) --
567 /// so a multi-line `tracing::warn!(...)` call's field-list lines show as
568 /// uncovered by `cargo llvm-cov` even when the surrounding branch
569 /// genuinely executes and is asserted on. This bare `Subscriber` impl is
570 /// the proven-working pattern used across this workspace.
571 struct AlwaysOnSubscriber;
572
573 impl tracing::Subscriber for AlwaysOnSubscriber {
574 fn enabled(&self, _metadata: &tracing::Metadata<'_>) -> bool {
575 true
576 }
577 fn register_callsite(
578 &self,
579 _metadata: &'static tracing::Metadata<'static>,
580 ) -> tracing::subscriber::Interest {
581 tracing::subscriber::Interest::always()
582 }
583 fn new_span(&self, _span: &tracing::span::Attributes<'_>) -> tracing::span::Id {
584 tracing::span::Id::from_u64(1)
585 }
586 fn record(&self, _span: &tracing::span::Id, _values: &tracing::span::Record<'_>) {}
587 fn record_follows_from(&self, _span: &tracing::span::Id, _follows: &tracing::span::Id) {}
588 fn event(&self, event: &tracing::Event<'_>) {
589 // `register_callsite` always returns `Interest::always()`, so
590 // tracing's dispatch macros cache every callsite as
591 // "always enabled" and never call `enabled` again afterward.
592 // Call it directly here (with real metadata from a live event)
593 // so this trait-impl boilerplate method isn't itself left
594 // uncovered.
595 assert!(self.enabled(event.metadata()));
596 }
597 fn enter(&self, _span: &tracing::span::Id) {}
598 fn exit(&self, _span: &tracing::span::Id) {}
599 fn max_level_hint(&self) -> Option<tracing::metadata::LevelFilter> {
600 Some(tracing::metadata::LevelFilter::TRACE)
601 }
602 }
603
604 fn with_tracing<T>(f: impl FnOnce() -> T) -> T {
605 static INSTALLED: std::sync::OnceLock<()> = std::sync::OnceLock::new();
606 INSTALLED.get_or_init(|| {
607 let _ = tracing::subscriber::set_global_default(AlwaysOnSubscriber);
608 tracing::callsite::rebuild_interest_cache();
609 });
610 f()
611 }
612
613 #[test]
614 fn always_on_subscriber_span_methods_are_all_no_ops() {
615 // This file only ever uses `tracing::warn!` event macros, never
616 // `tracing::span!`, so the span-related trait methods above are
617 // otherwise dead code from `with_tracing`'s callers. Exercise them
618 // directly via a real span so they're not left uncovered themselves.
619 with_tracing(|| {
620 let span = tracing::info_span!("test-span", field = tracing::field::Empty);
621 span.record("field", 1);
622 let other = tracing::info_span!("other-span");
623 span.follows_from(&other);
624 let _enter = span.enter();
625 tracing::info!(parent: &span, "inside span");
626 });
627 }
628
629 #[test]
630 fn test_layout_creation() {
631 let regions = vec![
632 RegionDefinition::new("pinned".to_string(), RegionKind::Pinned, 5000),
633 RegionDefinition::new("temp".to_string(), RegionKind::Temporary, 10000),
634 ];
635 let layout = ContextLayout::new(regions, 20000);
636 assert_eq!(layout.regions.len(), 2);
637 assert_eq!(layout.total_budget_tokens, 20000);
638 }
639
640 #[test]
641 fn test_layout_validation() {
642 let regions = vec![RegionDefinition::new(
643 "test".to_string(),
644 RegionKind::Pinned,
645 5000,
646 )];
647 let layout =
648 ContextLayout::new(regions, 10000).with_eviction_order(vec!["test".to_string()]);
649
650 assert!(layout.validate().is_ok());
651 }
652
653 #[test]
654 fn test_duplicate_region_names() {
655 let regions = vec![
656 RegionDefinition::new("test".to_string(), RegionKind::Pinned, 5000),
657 RegionDefinition::new("test".to_string(), RegionKind::Temporary, 3000),
658 ];
659 let layout = ContextLayout::new(regions, 10000);
660
661 assert!(layout.validate().is_err());
662 }
663
664 #[test]
665 fn test_eviction_order_unknown_region_is_error() {
666 let regions = vec![RegionDefinition::new(
667 "test".to_string(),
668 RegionKind::Pinned,
669 5000,
670 )];
671 let layout =
672 ContextLayout::new(regions, 10000).with_eviction_order(vec!["nonexistent".to_string()]);
673
674 let err = layout.validate().unwrap_err();
675 assert_eq!(
676 err,
677 ValidationError::Layout(
678 "eviction order references unknown region: nonexistent".to_string()
679 )
680 );
681 }
682
683 #[test]
684 fn test_validate_warns_but_does_not_error_when_max_tokens_exceed_budget() {
685 // Sum of region max_tokens (5000 + 10000 = 15000) exceeds the total
686 // budget (10000) - this should only warn, not fail validation, since
687 // not all regions are full simultaneously.
688 let regions = vec![
689 RegionDefinition::new("a".to_string(), RegionKind::Pinned, 5000),
690 RegionDefinition::new("b".to_string(), RegionKind::Temporary, 10000),
691 ];
692 let layout = ContextLayout::new(regions, 10000);
693 with_tracing(|| {
694 assert!(layout.validate().is_ok());
695 });
696 }
697
698 #[test]
699 fn validate_errors_when_fixed_regions_starve_working_budget() {
700 // Realistically-sized layout (>= 20k) where a huge fixed (pinned) region
701 // leaves < 8000 working tokens for conversation/tool-results → hard error.
702 let regions = vec![
703 RegionDefinition::new("big_pinned".to_string(), RegionKind::Pinned, 95_000),
704 RegionDefinition::new("work".to_string(), RegionKind::Temporary, 5_000),
705 ];
706 let layout = ContextLayout::new(regions, 100_000);
707 with_tracing(|| {
708 let err = layout.validate().unwrap_err();
709 assert!(
710 err.to_string().contains("working tokens"),
711 "actionable budget error: {err}"
712 );
713 });
714 }
715
716 #[test]
717 fn validate_ok_for_realistic_layout_with_working_room() {
718 let regions = vec![
719 RegionDefinition::new("task".to_string(), RegionKind::Pinned, 4_000),
720 RegionDefinition::new("conversation".to_string(), RegionKind::Temporary, 40_000),
721 ];
722 let layout = ContextLayout::new(regions, 44_000);
723 with_tracing(|| {
724 assert!(layout.validate().is_ok());
725 });
726 }
727
728 fn custom_kind(script: &str, persistent: bool) -> RegionKind {
729 RegionKind::Custom {
730 script: script.to_string(),
731 persistent,
732 }
733 }
734
735 #[test]
736 fn validate_rejects_custom_region_with_empty_script() {
737 // Whitespace-only counts as empty: it could never resolve to a file
738 // and the runtime would silently fall back on every inference.
739 let regions = vec![RegionDefinition::new(
740 "brain".to_string(),
741 custom_kind(" ", false),
742 5000,
743 )];
744 let layout = ContextLayout::new(regions, 10_000);
745 let err = with_tracing(|| layout.validate().unwrap_err());
746 assert!(
747 err.to_string().contains("non-empty script path"),
748 "actionable error: {err}"
749 );
750 }
751
752 #[test]
753 fn validate_counts_persistent_custom_as_fixed_budget() {
754 // A persistent custom region is Pinned-like: protected from eviction,
755 // so it must count toward the fixed budget that can starve the
756 // working room.
757 let regions = vec![
758 RegionDefinition::new("vault".to_string(), custom_kind("v.rhai", true), 95_000),
759 RegionDefinition::new("work".to_string(), RegionKind::Temporary, 5_000),
760 ];
761 let layout = ContextLayout::new(regions, 100_000);
762 let err = with_tracing(|| layout.validate().unwrap_err());
763 assert!(err.to_string().contains("working tokens"), "{err}");
764 }
765
766 #[test]
767 fn validate_counts_non_persistent_custom_as_working_budget() {
768 // Same shape, but the custom region is evictable - it IS the working
769 // room, so validation passes.
770 let regions = vec![
771 RegionDefinition::new("brain".to_string(), custom_kind("b.rhai", false), 95_000),
772 RegionDefinition::new("task".to_string(), RegionKind::Pinned, 4_000),
773 ];
774 let layout = ContextLayout::new(regions, 100_000);
775 with_tracing(|| {
776 assert!(layout.validate().is_ok());
777 });
778 }
779
780 #[test]
781 fn custom_region_satisfies_the_message_region_check() {
782 // A layout whose only region is custom must not trip the "no
783 // SlidingWindow region" warning path - its script can render typed
784 // entries as messages. (Mirrors the sliding-window-present test: the
785 // skip branch is exercised, validation succeeds.)
786 let regions = vec![RegionDefinition::new(
787 "everything".to_string(),
788 custom_kind("all.rhai", false),
789 9_000,
790 )];
791 let layout = ContextLayout::new(regions, 10_000);
792 with_tracing(|| {
793 assert!(layout.validate().is_ok());
794 });
795 }
796
797 #[test]
798 fn resolved_percent_budget_applies_to_custom_region() {
799 // The "recreate built-ins in Rhai" guarantee: percentage budgets work
800 // on custom regions exactly as on built-in kinds, resolved against
801 // the stage model's context window at spawn.
802 let def = RegionDefinition::new("brain".to_string(), custom_kind("b.rhai", false), 0)
803 .with_budget(BudgetSpec::Percent {
804 percent: 0.40,
805 min: Some(10_000),
806 max: None,
807 });
808 let layout = ContextLayout::new(vec![def], 0);
809 let resolved = layout.resolved(200_000);
810 assert_eq!(resolved.regions[0].max_tokens, 80_000);
811 assert!(matches!(
812 resolved.regions[0].kind,
813 RegionKind::Custom { ref script, persistent: false } if script == "b.rhai"
814 ));
815 // The min floor wins on a small window.
816 let small = layout.resolved(8_192);
817 assert_eq!(small.regions[0].max_tokens, 10_000);
818 }
819
820 #[test]
821 fn test_get_region_found() {
822 let regions = vec![
823 RegionDefinition::new("a".to_string(), RegionKind::Pinned, 5000),
824 RegionDefinition::new("b".to_string(), RegionKind::Temporary, 3000),
825 ];
826 let layout = ContextLayout::new(regions, 10000);
827
828 let found = layout.get_region("b").unwrap();
829 assert_eq!(found.name, "b");
830 assert_eq!(found.max_tokens, 3000);
831 }
832
833 #[test]
834 fn test_get_region_not_found() {
835 let regions = vec![RegionDefinition::new(
836 "a".to_string(),
837 RegionKind::Pinned,
838 5000,
839 )];
840 let layout = ContextLayout::new(regions, 10000);
841 assert!(layout.get_region("missing").is_none());
842 }
843
844 #[test]
845 fn test_region_definition_with_schema() {
846 let schema = crate::region::RegionSchema::new(crate::region::ContentFormat::Json);
847 let def =
848 RegionDefinition::new("a".to_string(), RegionKind::Pinned, 5000).with_schema(schema);
849 assert_eq!(
850 def.schema.as_ref().unwrap().format,
851 crate::region::ContentFormat::Json
852 );
853 }
854
855 #[test]
856 fn test_region_definition_with_description() {
857 let def = RegionDefinition::new("a".to_string(), RegionKind::Pinned, 5000)
858 .with_description("holds architecture notes".to_string());
859 assert_eq!(def.description.as_deref(), Some("holds architecture notes"));
860 }
861
862 #[test]
863 fn parse_budget_accepts_plain_and_decimal_percentages() {
864 assert_eq!(BudgetSpec::parse_budget("35%").unwrap(), 0.35);
865 assert_eq!(BudgetSpec::parse_budget("100%").unwrap(), 1.0);
866 assert!((BudgetSpec::parse_budget("0.6%").unwrap() - 0.006).abs() < 1e-9);
867 }
868
869 #[test]
870 fn parse_budget_trims_surrounding_and_inner_whitespace() {
871 assert_eq!(BudgetSpec::parse_budget(" 35 % ").unwrap(), 0.35);
872 }
873
874 #[test]
875 fn parse_budget_rejects_missing_percent_sign() {
876 let err = BudgetSpec::parse_budget("35").unwrap_err();
877 assert!(err.contains("must end with '%'"), "{err}");
878 }
879
880 #[test]
881 fn parse_budget_rejects_non_numeric() {
882 let err = BudgetSpec::parse_budget("abc%").unwrap_err();
883 assert!(err.contains("not a valid number"), "{err}");
884 }
885
886 #[test]
887 fn parse_budget_rejects_zero_and_negative() {
888 let zero = BudgetSpec::parse_budget("0%").unwrap_err();
889 assert!(zero.contains("greater than 0%"), "{zero}");
890 let neg = BudgetSpec::parse_budget("-10%").unwrap_err();
891 assert!(neg.contains("greater than 0%"), "{neg}");
892 }
893
894 #[test]
895 fn parse_budget_rejects_over_one_hundred() {
896 let err = BudgetSpec::parse_budget("150%").unwrap_err();
897 assert!(err.contains("at most 100%"), "{err}");
898 }
899
900 #[test]
901 fn resolve_absolute_ignores_window() {
902 assert_eq!(BudgetSpec::Absolute(4000).resolve(1_000_000), 4000);
903 assert!(!BudgetSpec::Absolute(4000).is_percent());
904 }
905
906 #[test]
907 fn resolve_percent_of_window() {
908 let spec = BudgetSpec::Percent {
909 percent: 0.35,
910 min: None,
911 max: None,
912 };
913 assert_eq!(spec.resolve(1_000_000), 350_000);
914 assert!(spec.is_percent());
915 }
916
917 #[test]
918 fn resolve_percent_applies_max_cap() {
919 let spec = BudgetSpec::Percent {
920 percent: 0.02,
921 min: None,
922 max: Some(4000),
923 };
924 // 2% of 1M = 20_000, capped to 4000.
925 assert_eq!(spec.resolve(1_000_000), 4000);
926 }
927
928 #[test]
929 fn resolve_percent_applies_min_floor() {
930 let spec = BudgetSpec::Percent {
931 percent: 0.02,
932 min: Some(2000),
933 max: None,
934 };
935 // 2% of 8000 = 160, floored to 2000.
936 assert_eq!(spec.resolve(8000), 2000);
937 }
938
939 #[test]
940 fn resolve_percent_within_bounds_takes_neither_clamp() {
941 let spec = BudgetSpec::Percent {
942 percent: 0.10,
943 min: Some(1000),
944 max: Some(50_000),
945 };
946 // 10% of 200k = 20_000, between the floor and cap.
947 assert_eq!(spec.resolve(200_000), 20_000);
948 }
949
950 #[test]
951 fn resolve_percent_floor_wins_when_min_exceeds_max() {
952 let spec = BudgetSpec::Percent {
953 percent: 0.10,
954 min: Some(9000),
955 max: Some(4000),
956 };
957 // 10% of 200k = 20_000 → capped to 4000 → floored up to 9000 (floor wins).
958 assert_eq!(spec.resolve(200_000), 9000);
959 }
960
961 #[test]
962 fn has_percent_budgets_detects_percentage_regions() {
963 let absolute = ContextLayout::new(
964 vec![RegionDefinition::new(
965 "a".to_string(),
966 RegionKind::Pinned,
967 5000,
968 )],
969 5000,
970 );
971 assert!(!absolute.has_percent_budgets());
972
973 let percent = ContextLayout::new(
974 vec![
975 RegionDefinition::new("a".to_string(), RegionKind::Pinned, 5000).with_budget(
976 BudgetSpec::Percent {
977 percent: 0.05,
978 min: None,
979 max: None,
980 },
981 ),
982 ],
983 5000,
984 );
985 assert!(percent.has_percent_budgets());
986 }
987
988 #[test]
989 fn resolved_is_noop_for_absolute_layout() {
990 let layout = ContextLayout::new(
991 vec![RegionDefinition::new(
992 "a".to_string(),
993 RegionKind::Pinned,
994 5000,
995 )],
996 5000,
997 );
998 let resolved = layout.resolved(1_000_000);
999 assert_eq!(resolved.regions[0].max_tokens, 5000);
1000 // Absolute layout keeps its legacy summed total, not the window.
1001 assert_eq!(resolved.total_budget_tokens, 5000);
1002 }
1003
1004 #[test]
1005 fn resolved_percent_layout_uses_window_as_total() {
1006 let layout = ContextLayout::new(
1007 vec![
1008 RegionDefinition::new("a".to_string(), RegionKind::Pinned, 0).with_budget(
1009 BudgetSpec::Percent {
1010 percent: 0.10,
1011 min: None,
1012 max: None,
1013 },
1014 ),
1015 ],
1016 0,
1017 )
1018 .with_eviction_order(vec!["a".to_string()]);
1019 let resolved = layout.resolved(1_000_000);
1020 assert_eq!(resolved.regions[0].max_tokens, 100_000);
1021 assert_eq!(resolved.total_budget_tokens, 1_000_000);
1022 // eviction order carried through.
1023 assert_eq!(resolved.eviction_order, vec!["a".to_string()]);
1024 }
1025
1026 #[test]
1027 fn resolved_compacting_threshold_all_cases() {
1028 // compact_at + explicit threshold cap → min(pct, cap).
1029 let both = RegionDefinition::new(
1030 "c".to_string(),
1031 RegionKind::Compacting {
1032 threshold_tokens: 25_000,
1033 },
1034 0,
1035 )
1036 .with_budget(BudgetSpec::Percent {
1037 percent: 0.20,
1038 min: None,
1039 max: None,
1040 })
1041 .with_compact_at(0.80);
1042 let r = ContextLayout::new(vec![both], 0).resolved(200_000);
1043 // budget = 40_000; 80% = 32_000; capped to 25_000.
1044 assert_eq!(
1045 r.regions[0].kind,
1046 RegionKind::Compacting {
1047 threshold_tokens: 25_000
1048 }
1049 );
1050
1051 // compact_at with no cap (usize::MAX sentinel) → pct only.
1052 let pct_only = RegionDefinition::new(
1053 "c".to_string(),
1054 RegionKind::Compacting {
1055 threshold_tokens: usize::MAX,
1056 },
1057 0,
1058 )
1059 .with_budget(BudgetSpec::Percent {
1060 percent: 0.20,
1061 min: None,
1062 max: None,
1063 })
1064 .with_compact_at(0.80);
1065 let r = ContextLayout::new(vec![pct_only], 0).resolved(200_000);
1066 assert_eq!(
1067 r.regions[0].kind,
1068 RegionKind::Compacting {
1069 threshold_tokens: 32_000
1070 }
1071 );
1072
1073 // compact_at = None → absolute threshold passes through unchanged.
1074 let absolute = RegionDefinition::new(
1075 "c".to_string(),
1076 RegionKind::Compacting {
1077 threshold_tokens: 8000,
1078 },
1079 10_000,
1080 );
1081 let r = ContextLayout::new(vec![absolute], 10_000).resolved(1_000_000);
1082 assert_eq!(
1083 r.regions[0].kind,
1084 RegionKind::Compacting {
1085 threshold_tokens: 8000
1086 }
1087 );
1088 }
1089
1090 #[test]
1091 fn validate_skips_token_checks_for_percent_layouts() {
1092 // A percentage layout whose provisional max_tokens are tiny/zero must not
1093 // trip the fixed-working-budget hard error - that check is deferred to
1094 // post-resolution. Wrap in tracing so no warn-arg lines read uncovered.
1095 let regions = vec![
1096 RegionDefinition::new("big_pinned".to_string(), RegionKind::Pinned, 0).with_budget(
1097 BudgetSpec::Percent {
1098 percent: 0.95,
1099 min: None,
1100 max: None,
1101 },
1102 ),
1103 ];
1104 let layout = ContextLayout::new(regions, 100_000);
1105 with_tracing(|| {
1106 assert!(layout.validate().is_ok());
1107 });
1108 }
1109
1110 #[test]
1111 fn region_definition_default_budget_matches_max_tokens() {
1112 let def = RegionDefinition::new("a".to_string(), RegionKind::Pinned, 5000);
1113 assert_eq!(def.budget, BudgetSpec::Absolute(5000));
1114 assert_eq!(def.compact_at, None);
1115 }
1116
1117 #[test]
1118 fn budget_spec_default_is_absolute_zero() {
1119 assert_eq!(BudgetSpec::default(), BudgetSpec::Absolute(0));
1120 }
1121
1122 #[test]
1123 fn test_validate_with_sliding_window_present() {
1124 // A layout that DOES contain a SlidingWindow region exercises the
1125 // has_sliding_window detection returning true, so the "no sliding
1126 // window" warning branch is skipped.
1127 let regions = vec![
1128 RegionDefinition::new("pinned".to_string(), RegionKind::Pinned, 5000),
1129 RegionDefinition::new(
1130 "conv".to_string(),
1131 RegionKind::SlidingWindow {
1132 max_items: 50,
1133 eviction_strategy: crate::region::EvictionStrategy::PerItem,
1134 },
1135 5000,
1136 ),
1137 ];
1138 let layout = ContextLayout::new(regions, 20000);
1139 with_tracing(|| {
1140 assert!(layout.validate().is_ok());
1141 });
1142 }
1143}