1use super::{cache::{DiskCache, Record, now_seconds}, policy::*};
5use std::{cell::Cell, collections::{BTreeMap, BTreeSet, VecDeque}, path::PathBuf,
6 string::{String, ToString}, sync::{Mutex, MutexGuard}, time::{Duration, Instant}, vec::Vec};
7
8std::thread_local! { static DEPTH: Cell<usize> = const { Cell::new(0) }; }
9pub fn is_tuning() -> bool { DEPTH.with(|d| d.get() != 0) }
12pub(super) struct DepthGuard;
13impl DepthGuard { pub(super) fn enter() -> Self { DEPTH.with(|d| d.set(d.get()+1)); Self } }
14impl Drop for DepthGuard { fn drop(&mut self) { DEPTH.with(|d| d.set(d.get()-1)); } }
15
16pub trait TrialRunner {
19 fn validate(&mut self, reference: usize, candidate: usize, tolerance: Tolerance) -> Result<Validation, TuneFailure>;
23 fn measure(&mut self, candidate: usize) -> Result<Duration, TuneFailure>;
26}
27#[derive(Debug, Clone, Copy, PartialEq, Eq)]
29pub enum DecisionSource {
30 Tuned,
32 MemoryCache,
34 DiskCache,
36 CacheMiss,
38 Disabled,
40 Busy,
42 Nested,
44 ValidationUnavailable
46}
47#[derive(Debug, Clone)]
49pub struct Decision {
50 pub index: usize,
52 pub reference_index: usize,
54 pub name: String,
56 pub source: DecisionSource,
58 pub verified: bool,
60 pub ratio: Option<f64>,
62 pub cache_key: String,
64}
65#[derive(Debug, Clone)]
67pub struct CandidateReport {
68 pub name: String,
70 pub samples: usize,
72 pub ratio: Option<f64>,
74 pub relative_mad: Option<f64>,
76 pub verified: bool,
78 pub note: String,
80}
81#[derive(Debug, Clone)]
83pub struct TuneReport {
84 pub operation: String,
86 pub environment: String,
88 pub workload: String,
90 pub execution_context: String,
92 pub winner: String,
94 pub elapsed: Duration,
96 pub budget_exhausted: bool,
98 pub candidates: Vec<CandidateReport>,
100}
101#[derive(Debug, Clone, Default)]
103pub struct Stats {
104 pub memory_hits: u64,
106 pub disk_hits: u64,
108 pub misses: u64,
110 pub busy_fallbacks: u64,
112 pub tunes: u64,
114 pub cache_warnings: u64,
116 pub invalidations: u64,
118 pub device_failures: u64,
120}
121#[derive(Default)]
122struct State {
123 records: BTreeMap<String, Record>, order: VecDeque<String>,
124 bypass: BTreeMap<String, Scope>,
125 pending: BTreeSet<String>, devices: BTreeSet<String>, poisoned_devices: BTreeSet<String>,
126 banned: BTreeMap<String, BTreeSet<String>>, regressions: BTreeMap<String, VecDeque<f64>>,
127 reports: VecDeque<TuneReport>, stats: Stats,
128}
129pub struct StackTuner { policy: StackPolicy, disk: Option<DiskCache>, state: Mutex<State> }
132struct Permit<'a> { tuner: &'a StackTuner, key: String, device: String }
133impl Drop for Permit<'_> {
134 fn drop(&mut self) { let mut s = self.tuner.lock(); s.pending.remove(&self.key); s.devices.remove(&self.device); }
135}
136impl StackTuner {
137 pub fn new(policy: StackPolicy, cache_directory: Option<PathBuf>) -> Result<Self, TuneFailure> {
141 policy.validate()?;
142 let disk = cache_directory.map(|dir| DiskCache::new(dir, policy.capacity));
143 Ok(Self { policy, disk, state: Mutex::new(State::default()) })
144 }
145 fn lock(&self) -> MutexGuard<'_, State> { self.state.lock().unwrap_or_else(|e| e.into_inner()) }
146 pub fn policy(&self) -> &StackPolicy { &self.policy }
148 pub fn stats(&self) -> Stats { self.lock().stats.clone() }
150 pub fn lower_level_fingerprint(&self) -> String {
154 let s = self.lock();
155 let mut parts = Vec::new();
156 for (key, record) in &s.records {
157 if record.scope != Scope::Pipeline as u8 && record.is_fresh(now_seconds(), self.policy.ttl.as_secs().max(1)) { parts.push(fields(&[key, &record.winner])); }
158 }
159 for (key, scope) in &s.bypass {
161 if *scope != Scope::Pipeline { parts.push(fields(&[key, "unverified-reference"])); }
162 }
163 parts.sort();
164 super::cache::digest(fields(&parts.iter().map(String::as_str).collect::<Vec<_>>()).as_bytes())
165 }
166 pub fn reports(&self) -> Vec<TuneReport> { self.lock().reports.iter().cloned().collect() }
169 fn insert(&self, record: Record) {
170 let mut s = self.lock();
171 if !s.order.contains(&record.key) {
172 while s.order.len() >= self.policy.capacity {
173 if let Some(key) = s.order.pop_front() {
174 s.records.remove(&key); s.banned.remove(&key); s.regressions.remove(&key); s.bypass.remove(&key);
175 }
176 }
177 s.order.push_back(record.key.clone());
178 }
179 s.records.insert(record.key.clone(), record);
180 }
181 fn allowed(&self, key: &str, c: &Candidate) -> bool {
182 c.fits(&self.policy) && !self.lock().banned.get(key).is_some_and(|b| b.contains(&c.name))
183 }
184 fn from_record(&self, r: &Record, candidates: &[Candidate], reference: usize, source: DecisionSource) -> Option<Decision> {
185 if !r.is_fresh(now_seconds(), self.policy.ttl.as_secs().max(1)) || (self.policy.require_validation && !r.verified) { return None; }
186 let index = candidates.iter().position(|c| c.name == r.winner && self.allowed(&r.key, c))?;
187 Some(Decision { index, reference_index: reference, name: r.winner.clone(), source, verified: r.verified, ratio: Some(r.ratio), cache_key: r.key.clone() })
188 }
189 fn validation(&self, runner: &mut impl TrialRunner, reference: usize, candidate: usize) -> Result<bool, TuneFailure> {
190 match runner.validate(reference, candidate, self.policy.tolerance)? {
191 Validation::Passed => Ok(true),
192 Validation::Unsupported if !self.policy.require_validation => Ok(false),
193 Validation::Unsupported => Err(TuneFailure { kind: FailureKind::Unavailable, message: "no numerical validator for this output/size".into() }),
194 }
195 }
196 fn fail_device(&self, environment: &str) {
197 let mut s = self.lock(); s.poisoned_devices.insert(environment.to_string()); s.stats.device_failures += 1;
198 }
199 pub fn select(&self, problem: &Problem, candidates: &[Candidate], reference: usize, runner: &mut impl TrialRunner) -> Result<Decision, TuneFailure> {
205 if candidates.is_empty() || candidates.len() > 4096 || reference >= candidates.len()
206 || problem.operation.is_empty() || problem.environment.is_empty() || problem.workload.is_empty() {
207 return Err(TuneFailure::invalid("a workload, environment and valid reference candidate are required"));
208 }
209 let mut names = BTreeSet::new();
210 if candidates.iter().any(|c| c.name.is_empty() || c.name.len() > 4096 || !names.insert(&c.name)) {
211 return Err(TuneFailure::invalid("candidate names must be nonempty, bounded and unique"));
212 }
213 if !candidates[reference].fits(&self.policy) { return Err(TuneFailure::invalid("reference does not satisfy eligibility/workspace policy")); }
214 let key = cache_key(problem, candidates, reference, &self.policy);
215 if key.len() > 384 * 1024 { return Err(TuneFailure::invalid("autotune key exceeds 384 KiB")); }
216 let fallback = |source| Decision { index: reference, reference_index: reference, name: candidates[reference].name.clone(), source, verified: false, ratio: None, cache_key: key.clone() };
217 if self.lock().poisoned_devices.contains(&problem.environment) {
218 return Err(TuneFailure { kind: FailureKind::Quarantined, message: "device tuning lane is quarantined after an unconfirmed device completion".into() });
219 }
220 if self.policy.mode == Mode::Disabled { return Ok(fallback(DecisionSource::Disabled)); }
221 let memory = { self.lock().records.get(&key).cloned() };
222 if let Some(record) = memory {
223 if let Some(d) = self.from_record(&record, candidates, reference, DecisionSource::MemoryCache) {
224 self.lock().stats.memory_hits += 1; return Ok(d);
225 }
226 }
227 if self.lock().bypass.contains_key(&key) { return Ok(fallback(DecisionSource::ValidationUnavailable)); }
228 if is_tuning() { return Ok(fallback(DecisionSource::Nested)); }
229 let _permit = {
230 let mut s = self.lock();
231 if s.pending.contains(&key) || s.devices.contains(&problem.environment) || s.pending.len() >= self.policy.max_parallel_tunes {
232 s.stats.busy_fallbacks += 1; return Ok(fallback(DecisionSource::Busy));
233 }
234 s.pending.insert(key.clone()); s.devices.insert(problem.environment.clone()); s.stats.misses += 1;
235 Permit { tuner: self, key: key.clone(), device: problem.environment.clone() }
236 };
237 let _depth = DepthGuard::enter();
238 if problem.persistent {
239 if let Some(disk) = &self.disk {
240 match disk.load(&key) {
241 Ok(Some(record)) => {
242 if let Some(mut decision) = self.from_record(&record, candidates, reference, DecisionSource::DiskCache).filter(|_| record.scope == problem.scope as u8) {
243 match self.validation(runner, reference, decision.index) {
246 Ok(checked) => {
247 decision.verified = checked;
248 let mut record = record; record.verified = checked;
249 self.insert(record); self.lock().stats.disk_hits += 1; return Ok(decision);
250 }
251 Err(e) if e.kind == FailureKind::Device => { self.fail_device(&problem.environment); return Err(e); }
252 Err(_) => { if disk.remove(&key).is_err() { self.lock().stats.cache_warnings += 1; } }
253 }
254 }
255 }
256 Err(_) => self.lock().stats.cache_warnings += 1,
257 Ok(None) => {}
258 }
259 }
260 }
261 if self.policy.mode == Mode::CacheOnly { return Ok(fallback(DecisionSource::CacheMiss)); }
262 match self.explore(problem, candidates, reference, &key, runner) {
263 Ok((decision, report, record)) => {
264 if problem.persistent {
265 if let Some(disk) = &self.disk { if disk.save(&record).is_err() { self.lock().stats.cache_warnings += 1; } }
266 }
267 self.insert(record);
268 let mut s = self.lock(); s.stats.tunes += 1;
269 if s.reports.len() >= self.policy.capacity.min(128) { s.reports.pop_front(); }
270 s.reports.push_back(report);
271 Ok(decision)
272 }
273 Err(e) if e.kind == FailureKind::Unavailable => {
274 let mut s = self.lock();
277 if !s.order.contains(&key) { s.order.push_back(key.clone()); }
278 s.bypass.insert(key.clone(), problem.scope);
279 while s.order.len() > self.policy.capacity {
280 if let Some(old) = s.order.pop_front() { s.records.remove(&old); s.banned.remove(&old); s.regressions.remove(&old); s.bypass.remove(&old); }
281 }
282 if s.reports.len() >= self.policy.capacity.min(128) { s.reports.pop_front(); }
283 s.reports.push_back(TuneReport {
284 operation: problem.operation.clone(), environment: problem.environment.clone(),
285 workload: problem.workload.clone(), execution_context: problem.execution_context.clone(),
286 winner: candidates[reference].name.clone(), elapsed: Duration::ZERO, budget_exhausted: false,
287 candidates: std::vec![CandidateReport { name: candidates[reference].name.clone(), samples: 0,
288 ratio: None, relative_mad: None, verified: false, note: e.message }],
289 });
290 Ok(fallback(DecisionSource::ValidationUnavailable))
291 }
292 Err(e) => { if e.kind == FailureKind::Device { self.fail_device(&problem.environment); } Err(e) }
293 }
294 }
295 fn explore(&self, problem: &Problem, candidates: &[Candidate], reference: usize, key: &str, runner: &mut impl TrialRunner) -> Result<(Decision, TuneReport, Record), TuneFailure> {
296 let started = Instant::now();
297 for _ in 0..self.policy.warmups { runner.measure(reference)?; }
300 let reference_checked = self.validation(runner, reference, reference)?;
301 let reference_time = runner.measure(reference)?;
302 if reference_time.is_zero() { return Err(TuneFailure { kind: FailureKind::Unavailable, message: "reference has zero elapsed time".into() }); }
303 let mut winner = reference; let mut winner_ratio = 1.0; let mut winner_time = reference_time;
304 let mut winner_reference = reference_time; let mut winner_checked = reference_checked;
305 let mut reports = Vec::new();
306 reports.push(CandidateReport { name: candidates[reference].name.clone(), samples: 1, ratio: Some(1.0), relative_mad: Some(0.0), verified: reference_checked, note: "reference; retained unless a stable measured improvement qualifies".into() });
307 let mut attempted = 1; let mut exhausted = false;
308 for (index, candidate) in candidates.iter().enumerate() {
309 if index == reference { continue; }
310 let mut report = CandidateReport { name: candidate.name.clone(), samples: 0, ratio: None, relative_mad: None, verified: false, note: String::new() };
311 if !self.allowed(key, candidate) { report.note = "ineligible, unknown/over-budget workspace, or regressed candidate".into(); reports.push(report); continue; }
312 if attempted >= self.policy.max_candidates || started.elapsed() >= self.policy.budget {
313 exhausted = true; report.note = "search budget exhausted".into(); reports.push(report); continue;
314 }
315 attempted += 1;
316 let result = (|| -> Result<(bool, Vec<(Duration, Duration)>), TuneFailure> {
317 for _ in 0..self.policy.warmups {
318 if started.elapsed() >= self.policy.budget { return Err(TuneFailure::rejected("budget exhausted during warmup")); }
319 runner.measure(index)?;
320 }
321 let checked = self.validation(runner, reference, index)?;
322 let mut pairs = Vec::with_capacity(self.policy.samples);
323 for sample in 0..self.policy.samples {
324 if started.elapsed() >= self.policy.budget { return Err(TuneFailure::rejected("budget exhausted before enough paired samples")); }
325 let pair = if (sample + index) % 2 == 0 {
327 let a = runner.measure(reference)?; let b = runner.measure(index)?; (a,b)
328 } else {
329 let b = runner.measure(index)?; let a = runner.measure(reference)?; (a,b)
330 };
331 if pair.0.is_zero() || pair.1.is_zero() { return Err(TuneFailure::rejected("zero duration cannot be scored")); }
332 pairs.push(pair);
333 }
334 Ok((checked, pairs))
335 })();
336 match result {
337 Err(e) if e.kind == FailureKind::Device => return Err(e),
338 Err(e) => { report.note = e.message; },
339 Ok((checked, pairs)) => {
340 report.verified = checked; report.samples = pairs.len();
341 match paired_score(&pairs, &self.policy) {
342 None => { report.note = "timings too noisy or incomplete".into(); },
343 Some((ratio, mad)) => {
344 report.ratio = Some(ratio); report.relative_mad = Some(mad);
345 report.note = "paired synchronized measurements".into();
346 if ratio < winner_ratio && ratio * self.policy.min_speedup <= 1.0 {
347 winner = index; winner_ratio = ratio; winner_checked = checked;
348 let mut a: Vec<_> = pairs.iter().map(|p| p.0.as_secs_f64()).collect();
349 let mut b: Vec<_> = pairs.iter().map(|p| p.1.as_secs_f64()).collect();
350 winner_reference = Duration::from_secs_f64(median(&mut a).unwrap());
351 winner_time = Duration::from_secs_f64(median(&mut b).unwrap());
352 }
353 }
354 }
355 }
356 }
357 reports.push(report);
358 }
359 exhausted |= started.elapsed() >= self.policy.budget;
360 let record = Record { scope: problem.scope as u8, key: key.to_string(), winner: candidates[winner].name.clone(), created: now_seconds(),
361 reference_ns: winner_reference.as_nanos().min(u64::MAX as u128) as u64,
362 winner_ns: winner_time.as_nanos().min(u64::MAX as u128) as u64, ratio: winner_ratio, verified: winner_checked };
363 let decision = Decision { index: winner, reference_index: reference, name: record.winner.clone(), source: DecisionSource::Tuned, verified: winner_checked, ratio: Some(winner_ratio), cache_key: key.to_string() };
364 let report = TuneReport { operation: problem.operation.clone(), environment: problem.environment.clone(), workload: problem.workload.clone(), execution_context: problem.execution_context.clone(), winner: record.winner.clone(), elapsed: started.elapsed(), budget_exhausted: exhausted, candidates: reports };
365 Ok((decision, report, record))
366 }
367 pub fn invalidate(&self, decision: &Decision, ban_candidate: bool) {
371 {
372 let mut s = self.lock(); s.records.remove(&decision.cache_key); s.regressions.remove(&decision.cache_key); s.bypass.remove(&decision.cache_key);
373 if ban_candidate && decision.index != decision.reference_index {
374 s.banned.entry(decision.cache_key.clone()).or_default().insert(decision.name.clone());
375 }
376 if !s.order.contains(&decision.cache_key) { s.order.push_back(decision.cache_key.clone()); }
378 while s.order.len() > self.policy.capacity {
379 if let Some(old) = s.order.pop_front() { s.records.remove(&old); s.banned.remove(&old); s.regressions.remove(&old); s.bypass.remove(&old); }
380 }
381 s.stats.invalidations += 1;
382 }
383 if let Some(disk) = &self.disk { if disk.remove(&decision.cache_key).is_err() { self.lock().stats.cache_warnings += 1; } }
384 }
385 pub fn record_comparison(&self, decision: &Decision, reference: Duration, selected: Duration, correctness_checked: bool) -> Result<bool, TuneFailure> {
391 if !correctness_checked || reference.is_zero() || selected.is_zero() { return Err(TuneFailure::invalid("regression observations require nonzero, correctness-checked paired timings")); }
392 let should_invalidate = {
393 let mut s = self.lock();
394 if !s.records.get(&decision.cache_key).is_some_and(|r| r.winner == decision.name) { return Ok(false); }
395 let history = s.regressions.entry(decision.cache_key.clone()).or_default();
396 if history.len() == self.policy.regression_pairs { history.pop_front(); }
397 history.push_back(selected.as_secs_f64()/reference.as_secs_f64());
398 if history.len() < self.policy.regression_pairs { false } else {
399 let mut ratios: Vec<_> = history.iter().copied().collect(); median(&mut ratios).is_some_and(|r| r > self.policy.regression_ratio)
400 }
401 };
402 if should_invalidate { self.invalidate(decision, true); }
403 Ok(should_invalidate)
404 }
405}