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ferrox_models/
speculative.rs

1//! Speculative decoding: propose several candidate next tokens with
2//! something cheap, then verify them all in a single
3//! `Decoder::forward_batch` call instead of one `forward_token` call
4//! per token.
5//!
6//! Two halves, deliberately separated:
7//!
8//! * **Drafting** is the [`Drafter`] trait. The only implementation in
9//!   the tree is [`PromptLookupSpeculator`], an n-gram match over the
10//!   history with no model at all (the same idea as vLLM's "prompt
11//!   lookup decoding"), chosen because it needs no GPU, no second set
12//!   of weights and no checkpoint to be useful. A model-based drafter
13//!   (MTP head, EAGLE, dFlash) is a second impl of the same trait.
14//! * **Verification** is [`speculative_decode_with`], and it does not
15//!   know or care which drafter proposed the block.
16//!
17//! # Losslessness is the property that matters most here
18//!
19//! Speculative decoding is only worth having if it produces exactly the
20//! same *distribution* the target model would have produced on its own,
21//! just faster. This module implements the speculative-sampling
22//! rejection rule (Leviathan et al. 2023 / Chen et al. 2023): a draft
23//! token `x` proposed with draft probability `q(x)` is accepted with
24//! probability `min(1, p(x)/q(x))`, and on rejection the position is
25//! resampled from the normalised residual `max(0, p - q)`. That rule is
26//! lossless at *every* temperature.
27//!
28//! It is worth being precise about what the previous accept test --
29//! `argmax(target_logits[i]) == guess` -- actually guaranteed, because
30//! it looks like the same thing and is not. Argmax matching is exactly
31//! the special case of the rule above at `temperature = 0`, where `p`
32//! is a point mass: `p(x)` is 1 when the guess is the argmax and 0
33//! otherwise, so acceptance is certain or impossible and the residual
34//! collapses back onto the argmax. Above temperature 0 it is a
35//! different algorithm with a different output distribution -- it
36//! silently biases generation toward the target's argmax, because a
37//! draft token only survives if it happens to be the most likely one.
38//! [`accept_or_resample`] is therefore not an optimisation; it is the
39//! difference between "lossless" being true and being a claim.
40//!
41//! The invariant is tested directly, not assumed:
42//! `resampling_reproduces_the_target_distribution` pushes two hundred
43//! thousand tokens through the accept/reject rule with deliberately bad
44//! draft distributions and asserts the empirical output matches the
45//! target distribution;
46//! `speculative_decode_at_temperature_matches_plain_sampling` compares
47//! a real decode at temperature 1.0 against the target's own exactly
48//! enumerated per-position marginals; and
49//! `speculative_decode_matches_greedy_token_for_token` asserts
50//! token-for-token identity with a plain `forward_token` loop at
51//! temperature 0.
52
53use crate::decoder::Decoder;
54use crate::sampling::{sampling_distribution, Sampler, SamplingParams};
55use ferrox_core::cache::KvCache;
56
57/// The distribution one drafted position was sampled from, as its
58/// complete support: `(token id, probability)` pairs summing to 1.
59///
60/// Sparse rather than a dense vocabulary-length vector because the
61/// distributions drafters actually produce are sparse: a prompt-lookup
62/// drafter's support is a single token, and a real drafter's is a
63/// top-k, not 150k floats per drafted position per step.
64///
65/// # Contract
66///
67/// The support must be the distribution the draft token was *actually*
68/// sampled from. Losslessness does not require the drafter to be good,
69/// or even sane -- the rejection rule corrects any `q` -- but it does
70/// require `q` to be honest. A drafter that truncates its own softmax
71/// to a top-k before sampling must report the truncated, renormalised
72/// distribution, not the full softmax it started from.
73#[derive(Debug, Clone, PartialEq, Default)]
74pub struct DraftDist {
75    support: Vec<(usize, f32)>,
76}
77
78impl DraftDist {
79    /// A drafter that is certain: all probability on one token. This is
80    /// what a lookup-table drafter honestly reports -- it did not
81    /// sample, it asserted.
82    pub fn deterministic(token: usize) -> Self {
83        DraftDist {
84            support: vec![(token, 1.0)],
85        }
86    }
87
88    /// The nonzero entries of a dense probability vector.
89    pub fn from_dense(probs: &[f32]) -> Self {
90        DraftDist {
91            support: probs
92                .iter()
93                .enumerate()
94                .filter(|&(_, &p)| p > 0.0)
95                .map(|(i, &p)| (i, p))
96                .collect(),
97        }
98    }
99
100    /// Builds from explicit `(token, probability)` pairs.
101    pub fn from_support(support: Vec<(usize, f32)>) -> Self {
102        DraftDist { support }
103    }
104
105    pub fn support(&self) -> &[(usize, f32)] {
106        &self.support
107    }
108
109    /// `q(token)`, or 0.0 for a token outside the support.
110    pub fn prob(&self, token: usize) -> f32 {
111        self.support
112            .iter()
113            .find(|&&(t, _)| t == token)
114            .map(|&(_, p)| p)
115            .unwrap_or(0.0)
116    }
117}
118
119/// A block of drafted tokens plus, per position, the distribution that
120/// position was drawn from.
121///
122/// `tokens` and `dists` are the same length by construction: the
123/// verification rule needs `q` for every token it might have to reject,
124/// so a block that carried tokens without distributions could not be
125/// verified losslessly at all.
126#[derive(Debug, Clone, Default, PartialEq)]
127pub struct DraftBlock {
128    tokens: Vec<usize>,
129    dists: Vec<DraftDist>,
130}
131
132impl DraftBlock {
133    pub fn empty() -> Self {
134        DraftBlock::default()
135    }
136
137    /// Panics if the two vectors disagree in length -- an unverifiable
138    /// block is a programming error in the drafter, not a runtime
139    /// condition to degrade around.
140    pub fn new(tokens: Vec<usize>, dists: Vec<DraftDist>) -> Self {
141        assert_eq!(
142            tokens.len(),
143            dists.len(),
144            "a draft block needs one draft distribution per drafted token"
145        );
146        DraftBlock { tokens, dists }
147    }
148
149    /// A block from a drafter that has no distribution to offer: every
150    /// position is reported as certain. Correct (and lossless) for a
151    /// lookup drafter; wrong for a model-based one, which must report
152    /// its real softmax.
153    pub fn deterministic(tokens: Vec<usize>) -> Self {
154        let dists = tokens
155            .iter()
156            .map(|&t| DraftDist::deterministic(t))
157            .collect();
158        DraftBlock { tokens, dists }
159    }
160
161    pub fn tokens(&self) -> &[usize] {
162        &self.tokens
163    }
164
165    pub fn dists(&self) -> &[DraftDist] {
166        &self.dists
167    }
168
169    pub fn len(&self) -> usize {
170        self.tokens.len()
171    }
172
173    pub fn is_empty(&self) -> bool {
174        self.tokens.is_empty()
175    }
176
177    /// Drops everything past `len` positions, keeping tokens and
178    /// distributions in step.
179    pub fn truncate(&mut self, len: usize) {
180        self.tokens.truncate(len);
181        self.dists.truncate(len);
182    }
183}
184
185/// Proposes a block of candidate continuation tokens.
186///
187/// The signature carries two things a plain `fn(&[usize]) -> Vec<usize>`
188/// cannot express, and both are load-bearing:
189///
190/// * **Per-position draft probabilities**, without which
191///   [`accept_or_resample`] cannot run and speculation is only lossless
192///   at temperature 0.
193/// * **The target model's hidden state** for the last position whose KV
194///   is committed. Every model-based drafter worth having (EAGLE, MTP,
195///   dFlash) conditions on it, and `Decoder::forward_batch_with_hidden`
196///   already computes it as a by-product of verification, so a drafter
197///   that wanted it would otherwise have to run the target twice.
198///   Drafters that do not need it, like [`PromptLookupSpeculator`],
199///   ignore the argument.
200pub trait Drafter {
201    /// Proposes at most `max_len` tokens to follow `history`.
202    /// `target_hidden` is the target model's final-layer hidden state
203    /// for `history`'s last token, or empty when none is available yet
204    /// (which a drafter that needs it must handle by proposing
205    /// nothing).
206    fn propose(&self, history: &[usize], target_hidden: &[f32], max_len: usize) -> DraftBlock;
207}
208
209/// Proposes candidate continuation tokens by looking for the longest
210/// available match of the most recent `ngram_size` tokens earlier in
211/// `history`, and returning up to `max_draft_len` tokens that followed
212/// that earlier occurrence. Returns an empty block if no match is found
213/// or `history` is too short to contain one.
214///
215/// This is deliberately simple (last-match-wins, not best-match or a
216/// frequency-weighted choice): the whole point of prompt-lookup
217/// decoding is that it's nearly free to compute, since a wrong guess
218/// costs nothing but a rejected batch position, not a correctness bug.
219#[derive(Debug, Clone, Copy)]
220pub struct PromptLookupSpeculator {
221    pub ngram_size: usize,
222    pub max_draft_len: usize,
223}
224
225impl PromptLookupSpeculator {
226    pub fn new(ngram_size: usize, max_draft_len: usize) -> Self {
227        assert!(ngram_size >= 1, "ngram_size must be at least 1");
228        assert!(max_draft_len >= 1, "max_draft_len must be at least 1");
229        PromptLookupSpeculator {
230            ngram_size,
231            max_draft_len,
232        }
233    }
234
235    /// Looks for the most recent earlier occurrence of `history`'s
236    /// last `ngram_size` tokens, scanning from the end backwards so
237    /// the *most recent* match wins (most likely to reflect current
238    /// context, e.g. a loop the model is currently in). Returns the
239    /// tokens that followed that occurrence, truncated to
240    /// `max_draft_len`.
241    pub fn propose_tokens(&self, history: &[usize]) -> Vec<usize> {
242        if history.len() < self.ngram_size + 1 {
243            return Vec::new();
244        }
245        let needle = &history[history.len() - self.ngram_size..];
246
247        // Search every earlier start position, latest first. The last
248        // possible start that still leaves room for the needle without
249        // overlapping into the needle itself is history.len() -
250        // ngram_size - 1 (exclusive of the needle's own occurrence).
251        let last_possible_start = history.len() - self.ngram_size - 1;
252        for start in (0..=last_possible_start).rev() {
253            if &history[start..start + self.ngram_size] == needle {
254                let continuation_start = start + self.ngram_size;
255                let available = history.len() - continuation_start;
256                let take = available.min(self.max_draft_len);
257                return history[continuation_start..continuation_start + take].to_vec();
258            }
259        }
260        Vec::new()
261    }
262}
263
264impl Drafter for PromptLookupSpeculator {
265    fn propose(&self, history: &[usize], _target_hidden: &[f32], max_len: usize) -> DraftBlock {
266        let mut tokens = self.propose_tokens(history);
267        tokens.truncate(max_len.min(self.max_draft_len));
268        DraftBlock::deterministic(tokens)
269    }
270}
271
272/// The speculative-sampling accept/reject decision for one drafted
273/// position.
274///
275/// `target` is the target model's *final* sampling distribution for
276/// this position -- what [`sampling_distribution`] returns, i.e. after
277/// penalties, temperature, top-k and top-p, because that is the
278/// distribution the non-speculative path would have drawn from.
279/// `draft` is the distribution `token` was drawn from.
280///
281/// Returns `None` when the draft token is accepted, and
282/// `Some(replacement)` when it is rejected -- the replacement is drawn
283/// from the normalised residual `max(0, target - draft)`, which is what
284/// makes the combined procedure's output distribution equal to
285/// `target` exactly rather than approximately.
286///
287/// A token with `draft(token) == 0.0` violates the [`DraftDist`]
288/// contract (it could not have been sampled from `draft`); it is
289/// accepted, matching the `p/q -> infinity` limit, rather than
290/// silently biasing the result.
291pub fn accept_or_resample(
292    target: &[f32],
293    draft: &DraftDist,
294    token: usize,
295    rng: &mut Sampler,
296) -> Option<usize> {
297    let p = target.get(token).copied().unwrap_or(0.0);
298    let q = draft.prob(token);
299    if q <= 0.0 || p >= q {
300        return None;
301    }
302    // p < q, so the accept probability p/q is a real coin flip.
303    if rng.uniform() < p / q {
304        return None;
305    }
306
307    // Rejected: draw the replacement from the normalised residual.
308    let mut residual = target.to_vec();
309    for &(t, qt) in draft.support() {
310        if let Some(r) = residual.get_mut(t) {
311            *r = (*r - qt).max(0.0);
312        }
313    }
314    let total: f32 = residual.iter().sum();
315    if total <= 0.0 {
316        // Only reachable when target and draft are the same
317        // distribution, in which case acceptance was certain and we
318        // cannot be here -- but sampling from nothing is not an option,
319        // so fall back to the target itself.
320        return Some(rng.sample_from(target));
321    }
322    for r in residual.iter_mut() {
323        *r /= total;
324    }
325    Some(rng.sample_from(&residual))
326}
327
328/// Everything `speculative_decode_with` needs beyond the model, the
329/// prompt and the drafter.
330#[derive(Debug, Clone, Default)]
331pub struct SpeculativeOptions {
332    pub max_new_tokens: usize,
333    /// Absolute position of the first `prompt_tokens` token in the KV
334    /// cache: 0 for a fresh cache, `cache.seq_len` when resuming a
335    /// warm one (a prefix-cache hit, or a second call continuing the
336    /// first). Every position and every rollback length inside the
337    /// decode loop is absolute, so a non-zero base is not a special
338    /// case -- see `rolls_back_to_absolute_positions_on_a_warm_cache`.
339    pub start_pos: usize,
340    /// The sampling configuration the *target* model would have used
341    /// without speculation. Verification is lossless with respect to
342    /// exactly these parameters (see [`accept_or_resample`]).
343    pub sampling: SamplingParams,
344    pub seed: u64,
345}
346
347/// Result of a speculative decode run, with the counters that make its
348/// actual savings observable rather than just assumed.
349#[derive(Debug, Clone, Default)]
350pub struct SpeculativeDecodeResult {
351    pub generated_tokens: Vec<usize>,
352    /// Number of `Decoder::forward_batch` calls made (prefill counts as
353    /// one call, each subsequent accept/reject round counts as one
354    /// more, regardless of how many tokens that round produced).
355    pub forward_calls: usize,
356    /// Total tokens produced across all rounds -- always equal to
357    /// `generated_tokens.len()`, kept as a separate field so the ratio
358    /// `tokens_generated / forward_calls` (the actual speedup metric)
359    /// is easy to read directly off this struct.
360    pub tokens_generated: usize,
361    /// Verification rounds: `forward_calls` minus the prefill call.
362    /// This is the denominator of the published *acceptance length*
363    /// metric.
364    pub verification_steps: usize,
365    /// Draft tokens the target actually evaluated. Positions past a
366    /// rejection are never evaluated, so they are not counted here --
367    /// counting them would deflate the accept rate by the drafter's
368    /// block size rather than by its accuracy.
369    pub drafted_tokens: usize,
370    /// Draft tokens accepted.
371    pub accepted_tokens: usize,
372    /// Per drafted position (0 = first token after the anchor), how
373    /// many times that position was *evaluated*, i.e. reached without
374    /// an earlier rejection ending the round.
375    pub evaluated_at_position: Vec<usize>,
376    /// Per drafted position, how many times it was accepted.
377    pub accepted_at_position: Vec<usize>,
378}
379
380impl SpeculativeDecodeResult {
381    /// Average tokens produced per `forward_batch` call. 1.0 means
382    /// speculation never helped (every round produced exactly the
383    /// anchor token); higher means draft tokens were accepted.
384    pub fn tokens_per_call(&self) -> f64 {
385        if self.forward_calls == 0 {
386            0.0
387        } else {
388            self.tokens_generated as f64 / self.forward_calls as f64
389        }
390    }
391
392    /// The published metric: completion tokens per verification step.
393    /// `None` when nothing was verified (an empty run), because a zero
394    /// there would read as "speculation made things worse" rather than
395    /// "speculation did not run".
396    ///
397    /// Deliberately not the same number as [`Self::tokens_per_call`],
398    /// which charges the one-off prefill call against the average and
399    /// so understates a short run.
400    pub fn acceptance_length(&self) -> Option<f64> {
401        if self.verification_steps == 0 {
402            None
403        } else {
404            Some(self.tokens_generated as f64 / self.verification_steps as f64)
405        }
406    }
407
408    /// Fraction of drafted positions accepted, over all positions.
409    pub fn accept_rate(&self) -> Option<f64> {
410        if self.drafted_tokens == 0 {
411            None
412        } else {
413            Some(self.accepted_tokens as f64 / self.drafted_tokens as f64)
414        }
415    }
416
417    /// Accept rate at each drafted position, conditional on that
418    /// position having been reached.
419    ///
420    /// A single mean cannot distinguish a drafter that is uniformly
421    /// mediocre from one that is excellent at position 0 and useless by
422    /// position 7, and the two want opposite responses (raise the block
423    /// size, or lower it). The published motivation for dFlash2's
424    /// two-tap convolution is exactly this curve falling from 99.5% to
425    /// 87.8% across a block, so it has to be visible per position or
426    /// the diagnosis is not testable here.
427    pub fn accept_rate_per_position(&self) -> Vec<f64> {
428        self.evaluated_at_position
429            .iter()
430            .zip(self.accepted_at_position.iter())
431            .map(|(&seen, &ok)| {
432                if seen == 0 {
433                    0.0
434                } else {
435                    ok as f64 / seen as f64
436                }
437            })
438            .collect()
439    }
440
441    fn record_position(&mut self, position: usize, accepted: bool) {
442        if self.evaluated_at_position.len() <= position {
443            self.evaluated_at_position.resize(position + 1, 0);
444            self.accepted_at_position.resize(position + 1, 0);
445        }
446        self.evaluated_at_position[position] += 1;
447        self.drafted_tokens += 1;
448        if accepted {
449            self.accepted_at_position[position] += 1;
450            self.accepted_tokens += 1;
451        }
452    }
453}
454
455/// Greedy speculative decode over a **fresh** KV cache, with
456/// prompt-lookup drafting. Thin wrapper over
457/// [`speculative_decode_with`], kept for callers that want the original
458/// no-options shape.
459pub fn speculative_decode<D: Drafter + ?Sized>(
460    decoder: &Decoder,
461    prompt_tokens: &[usize],
462    max_new_tokens: usize,
463    kv_caches: &mut [KvCache],
464    drafter: &D,
465) -> SpeculativeDecodeResult {
466    speculative_decode_with(
467        decoder,
468        prompt_tokens,
469        kv_caches,
470        drafter,
471        &SpeculativeOptions {
472            max_new_tokens,
473            ..SpeculativeOptions::default()
474        },
475    )
476}
477
478/// Decodes `options.max_new_tokens` tokens, using `drafter` to propose
479/// candidate continuations and verifying each block in a single batched
480/// call.
481///
482/// `prompt_tokens` is processed as one prefill batch (one
483/// `forward_batch` call for the whole prompt, not one per prompt token
484/// -- itself a real saving independent of speculation).
485///
486/// # Cache state
487///
488/// `kv_caches` may be warm. `options.start_pos` states where
489/// `prompt_tokens` begins, and must equal every cache's current
490/// `seq_len` -- the caches hold exactly the context preceding the
491/// prompt, and this function appends to them. On return they hold that
492/// context plus the prompt plus every generated token *except* the last
493/// (whose KV is not computed until it is fed, which the next call does
494/// for free by passing it as the anchor).
495///
496/// # Output distribution
497///
498/// Identical to plain token-at-a-time sampling from `decoder` with
499/// `options.sampling`, at any temperature. See the module docs.
500pub fn speculative_decode_with<D: Drafter + ?Sized>(
501    decoder: &Decoder,
502    prompt_tokens: &[usize],
503    kv_caches: &mut [KvCache],
504    drafter: &D,
505    options: &SpeculativeOptions,
506) -> SpeculativeDecodeResult {
507    assert!(!prompt_tokens.is_empty(), "prompt must not be empty");
508    for cache in kv_caches.iter() {
509        assert_eq!(
510            cache.seq_len, options.start_pos,
511            "start_pos must be the caches' current length: they hold exactly the \
512             context preceding the prompt"
513        );
514    }
515
516    let mut result = SpeculativeDecodeResult::default();
517    if options.max_new_tokens == 0 {
518        return result;
519    }
520
521    let mut rng = Sampler::new(options.seed);
522    let mut history: Vec<usize> = prompt_tokens.to_vec();
523    let mut generated: Vec<usize> = Vec::with_capacity(options.max_new_tokens);
524
525    // Prefill: one batched call over the whole prompt.
526    let (prefill_logits, prefill_hidden) =
527        decoder.forward_batch_with_hidden(prompt_tokens, options.start_pos, kv_caches);
528    result.forward_calls += 1;
529    let last = prefill_logits
530        .last()
531        .expect("prompt_tokens is non-empty, so forward_batch returns at least one logits vector");
532    let mut target_hidden = prefill_hidden.last().cloned().unwrap_or_default();
533
534    // `pending` is decided but its KV is not in the cache yet: it is
535    // fed as the anchor of the next batch, which is what lets one
536    // forward call both commit it and verify a block after it.
537    let mut pending = {
538        let probs = sampling_distribution(last, &options.sampling, &history);
539        rng.sample_from(&probs)
540    };
541    let mut pos = options.start_pos + prompt_tokens.len();
542
543    loop {
544        generated.push(pending);
545        history.push(pending);
546        if generated.len() == options.max_new_tokens {
547            break;
548        }
549        // One short of the remaining budget on purpose: the last token
550        // of the run is always committed as an anchor at the top of the
551        // loop, never as an accepted draft. That keeps the cache in
552        // exactly one state on return (see the doc comment) instead of
553        // one state when the budget runs out on an anchor and another
554        // when it runs out mid-block -- and it costs nothing, because
555        // the drafted position it gives up is one whose KV would have
556        // had to be discarded anyway.
557        let draft_budget = options.max_new_tokens - generated.len() - 1;
558
559        // The drafter is asked to continue a history that *includes*
560        // `pending`, because the first drafted token lands at pos + 1.
561        let mut draft = drafter.propose(&history, &target_hidden, draft_budget);
562        draft.truncate(draft_budget);
563
564        let mut batch = Vec::with_capacity(1 + draft.len());
565        batch.push(pending);
566        batch.extend_from_slice(draft.tokens());
567
568        let (batch_logits, batch_hidden) =
569            decoder.forward_batch_with_hidden(&batch, pos, kv_caches);
570        result.forward_calls += 1;
571        result.verification_steps += 1;
572
573        // batch_logits[i] is the target's distribution for the position
574        // right after batch[i], i.e. the distribution draft token i
575        // should be judged against.
576        let mut accepted = 0usize;
577        let mut replacement: Option<usize> = None;
578        for (i, (&token, dist)) in draft.tokens().iter().zip(draft.dists()).enumerate() {
579            let target = sampling_distribution(&batch_logits[i], &options.sampling, &history);
580            match accept_or_resample(&target, dist, token, &mut rng) {
581                None => {
582                    result.record_position(i, true);
583                    accepted += 1;
584                    history.push(token);
585                    generated.push(token);
586                }
587                Some(resampled) => {
588                    result.record_position(i, false);
589                    replacement = Some(resampled);
590                    break;
591                }
592            }
593        }
594
595        // Every position past `accepted` was computed from a token that
596        // is not going to be committed, so its KV is wrong. Lengths are
597        // absolute, which is what makes a warm cache work: `pos` is
598        // already offset by start_pos.
599        let committed_len = pos + 1 + accepted;
600        if accepted < draft.len() {
601            for cache in kv_caches.iter_mut() {
602                cache.truncate(committed_len);
603            }
604        }
605        debug_assert!(kv_caches.iter().all(|c| c.seq_len == committed_len));
606
607        target_hidden = batch_hidden[accepted].clone();
608        pending = match replacement {
609            // A rejected position was resampled from the residual; that
610            // token is committed and becomes the next anchor.
611            Some(tok) => tok,
612            // Every draft token was accepted, so the last row of the
613            // batch predicts a genuinely new position -- the free bonus
614            // token that makes a fully-accepted block worth `k + 1`.
615            None => {
616                let probs =
617                    sampling_distribution(&batch_logits[accepted], &options.sampling, &history);
618                rng.sample_from(&probs)
619            }
620        };
621        pos = committed_len;
622        debug_assert!(generated.len() < options.max_new_tokens);
623    }
624
625    debug_assert_eq!(generated.len(), options.max_new_tokens);
626    result.tokens_generated = generated.len();
627    result.generated_tokens = generated;
628    result
629}
630
631#[cfg(test)]
632mod tests {
633    use super::*;
634    use crate::config::glm_5_2;
635    use crate::ModelConfig;
636    use std::cell::RefCell;
637
638    fn tiny_test_config() -> ModelConfig {
639        let mut cfg = glm_5_2();
640        cfg.hidden_dim = 16;
641        cfg.n_heads = 4;
642        cfg.n_kv_heads = 2;
643        cfg.head_dim = 4;
644        cfg.moe.hidden_dim = 16;
645        cfg.moe.n_experts = 6;
646        cfg.moe.n_experts_active = 2;
647        cfg.moe.n_shared_experts = 1;
648        cfg.moe.expert_ffn_dim = 8;
649        cfg
650    }
651
652    fn caches(decoder: &Decoder) -> Vec<KvCache> {
653        (0..decoder.layers.len())
654            .map(|_| KvCache::new(decoder.config.n_kv_heads, decoder.config.head_dim))
655            .collect()
656    }
657
658    fn argmax(logits: &[f32]) -> usize {
659        logits
660            .iter()
661            .enumerate()
662            .max_by(|a, b| a.1.partial_cmp(b.1).unwrap())
663            .map(|(i, _)| i)
664            .unwrap_or(0)
665    }
666
667    /// A drafter that always proposes the same block, with a
668    /// configurable draft distribution, and records the history it was
669    /// asked about.
670    struct FixedDrafter {
671        block: DraftBlock,
672        seen_history: RefCell<Vec<Vec<usize>>>,
673        seen_hidden_len: RefCell<Vec<usize>>,
674    }
675
676    impl FixedDrafter {
677        fn new(block: DraftBlock) -> Self {
678            FixedDrafter {
679                block,
680                seen_history: RefCell::new(Vec::new()),
681                seen_hidden_len: RefCell::new(Vec::new()),
682            }
683        }
684    }
685
686    impl Drafter for FixedDrafter {
687        fn propose(&self, history: &[usize], target_hidden: &[f32], max_len: usize) -> DraftBlock {
688            self.seen_history.borrow_mut().push(history.to_vec());
689            self.seen_hidden_len.borrow_mut().push(target_hidden.len());
690            let mut block = self.block.clone();
691            block.truncate(max_len);
692            block
693        }
694    }
695
696    // ---- PromptLookupSpeculator tests ----
697
698    #[test]
699    fn proposes_the_continuation_after_a_real_repeat() {
700        let spec = PromptLookupSpeculator::new(2, 4);
701        // "...1 2 3 4 5 9 9 9 1 2" -> earlier "1 2" occurs at the very
702        // start (indices 0-1); the 4 tokens that followed it are
703        // "3 4 5 9" (capped at max_draft_len=4).
704        let history = vec![1, 2, 3, 4, 5, 9, 9, 9, 1, 2];
705        assert_eq!(spec.propose_tokens(&history), vec![3, 4, 5, 9]);
706        assert_eq!(
707            spec.propose(&history, &[], 8),
708            DraftBlock::deterministic(vec![3, 4, 5, 9])
709        );
710    }
711
712    #[test]
713    fn respects_max_draft_len() {
714        let spec = PromptLookupSpeculator::new(2, 2);
715        let history = vec![1, 2, 3, 4, 5, 6, 7, 1, 2];
716        assert_eq!(spec.propose_tokens(&history), vec![3, 4]);
717    }
718
719    #[test]
720    fn returns_empty_when_no_earlier_match_exists() {
721        let spec = PromptLookupSpeculator::new(2, 4);
722        let history = vec![1, 2, 3, 4, 5];
723        assert_eq!(spec.propose_tokens(&history), Vec::<usize>::new());
724    }
725
726    #[test]
727    fn returns_empty_when_history_too_short() {
728        let spec = PromptLookupSpeculator::new(3, 4);
729        let history = vec![1, 2, 3];
730        assert_eq!(spec.propose_tokens(&history), Vec::<usize>::new());
731    }
732
733    #[test]
734    fn finds_the_most_recent_match_when_several_exist() {
735        let spec = PromptLookupSpeculator::new(1, 3);
736        // needle = [9]. Earlier occurrences at index 0 (-> [8,7,6]) and
737        // index 4 (-> [5,4,9]); most recent (index 4) should win.
738        let history = vec![9, 8, 7, 6, 9, 5, 4, 9];
739        assert_eq!(spec.propose_tokens(&history), vec![5, 4, 9]);
740    }
741
742    #[test]
743    fn the_trait_caps_a_block_at_the_callers_budget() {
744        let spec = PromptLookupSpeculator::new(2, 4);
745        let history = vec![1, 2, 3, 4, 5, 9, 9, 9, 1, 2];
746        let block = spec.propose(&history, &[], 2);
747        assert_eq!(block.tokens(), &[3, 4]);
748        assert_eq!(block.dists().len(), 2);
749    }
750
751    // ---- the rejection rule ----
752
753    #[test]
754    fn a_draft_at_least_as_likely_under_the_target_is_always_accepted() {
755        let target = vec![0.6f32, 0.3, 0.1];
756        let draft = DraftDist::from_dense(&[0.5, 0.4, 0.1]);
757        let mut rng = Sampler::new(1);
758        for _ in 0..100 {
759            // p(0)=0.6 >= q(0)=0.5, so token 0 is never rejected.
760            assert_eq!(accept_or_resample(&target, &draft, 0, &mut rng), None);
761        }
762    }
763
764    #[test]
765    fn a_draft_the_target_rules_out_is_always_rejected() {
766        let target = vec![0.5f32, 0.5, 0.0];
767        let draft = DraftDist::deterministic(2);
768        let mut rng = Sampler::new(2);
769        for _ in 0..50 {
770            let replacement = accept_or_resample(&target, &draft, 2, &mut rng);
771            let tok = replacement.expect("p(2) = 0 means token 2 can never be accepted");
772            assert!(tok < 2, "residual must never resample the rejected token");
773        }
774    }
775
776    #[test]
777    fn resampling_reproduces_the_target_distribution() {
778        // THE invariant. Draw a token from the draft distribution, run
779        // it through the accept/reject rule, and the result must be
780        // distributed as the TARGET, no matter how bad the draft is.
781        //
782        // A test that only checked "it runs" would pass on the old
783        // argmax rule, which concentrates mass on the target's argmax
784        // and is not the target distribution at all.
785        let target = vec![0.30f32, 0.25, 0.20, 0.15, 0.07, 0.03];
786        let drafts = [
787            // A drafter that is simply wrong about which token is likely.
788            DraftDist::from_dense(&[0.02, 0.03, 0.05, 0.10, 0.30, 0.50]),
789            // A deterministic drafter, i.e. prompt lookup.
790            DraftDist::deterministic(3),
791            // A drafter whose support misses most of the target's.
792            DraftDist::from_support(vec![(0, 0.5), (5, 0.5)]),
793            // A perfect drafter.
794            DraftDist::from_dense(&target),
795        ];
796        let draws = 200_000;
797        for (d, draft) in drafts.iter().enumerate() {
798            let mut rng = Sampler::new(0xA11CE + d as u64);
799            let mut counts = vec![0usize; target.len()];
800            for _ in 0..draws {
801                // Sample the draft token from the draft distribution --
802                // the rule is only lossless when q is honest about
803                // where the token came from.
804                let dense = {
805                    let mut v = vec![0.0f32; target.len()];
806                    for &(t, p) in draft.support() {
807                        v[t] = p;
808                    }
809                    v
810                };
811                let x = rng.sample_from(&dense);
812                let out = accept_or_resample(&target, draft, x, &mut rng).unwrap_or(x);
813                counts[out] += 1;
814            }
815            let tv: f64 = counts
816                .iter()
817                .enumerate()
818                .map(|(i, &c)| (c as f64 / draws as f64 - target[i] as f64).abs())
819                .sum::<f64>()
820                / 2.0;
821            assert!(
822                tv < 0.01,
823                "draft {d}: speculative output distribution differs from the target \
824                 (total variation {tv:.4}); counts={counts:?}"
825            );
826        }
827    }
828
829    // ---- speculative_decode correctness tests ----
830
831    #[test]
832    fn speculative_decode_matches_greedy_token_for_token() {
833        // Quality-neutrality at temperature 0: token-for-token identity
834        // against a plain sequential forward_token loop on a
835        // separately constructed but identically-seeded decoder.
836        let cfg = tiny_test_config();
837        let vocab = 8;
838        let prompt = vec![1usize, 2, 3, 4, 1, 2];
839        let max_new = 6;
840
841        let decoder_a = Decoder::new_random_small(cfg.clone(), 2, vocab);
842        let mut caches_a = caches(&decoder_a);
843        let speculator = PromptLookupSpeculator::new(2, 3);
844        let result = speculative_decode(&decoder_a, &prompt, max_new, &mut caches_a, &speculator);
845
846        let decoder_b = Decoder::new_random_small(cfg, 2, vocab);
847        let mut caches_b = caches(&decoder_b);
848        let mut pending = decoder_b
849            .forward_batch(&prompt, 0, &mut caches_b)
850            .pop()
851            .unwrap();
852        let mut greedy = Vec::with_capacity(max_new);
853        for pos in (prompt.len()..).take(max_new) {
854            let tok = argmax(&pending);
855            greedy.push(tok);
856            pending = decoder_b.forward_token(tok, pos, &mut caches_b);
857        }
858
859        assert_eq!(
860            result.generated_tokens, greedy,
861            "speculative decode must produce exactly the same tokens as plain greedy decode"
862        );
863    }
864
865    /// The exact per-position marginal distributions of plain
866    /// token-at-a-time sampling from `decoder`, by enumerating every
867    /// prefix rather than sampling them. Only tractable because the
868    /// test model has a 6-token vocabulary and the horizon is 3, but
869    /// worth it: the speculative sampler is then compared against the
870    /// truth, not against a second noisy estimate of it.
871    fn exact_marginals(
872        decoder: &Decoder,
873        prompt: &[usize],
874        params: &SamplingParams,
875        depth: usize,
876        vocab: usize,
877    ) -> Vec<Vec<f64>> {
878        #[allow(clippy::too_many_arguments)]
879        fn walk(
880            decoder: &Decoder,
881            kv: &[KvCache],
882            logits: &[f32],
883            history: &mut Vec<usize>,
884            weight: f64,
885            level: usize,
886            depth: usize,
887            pos: usize,
888            params: &SamplingParams,
889            marginals: &mut [Vec<f64>],
890        ) {
891            let probs = sampling_distribution(logits, params, history);
892            for (token, &p) in probs.iter().enumerate() {
893                if p <= 0.0 {
894                    continue;
895                }
896                marginals[level][token] += weight * p as f64;
897                if level + 1 == depth {
898                    continue;
899                }
900                let mut branch: Vec<KvCache> = kv.to_vec();
901                let next = decoder.forward_token(token, pos, &mut branch);
902                history.push(token);
903                walk(
904                    decoder,
905                    &branch,
906                    &next,
907                    history,
908                    weight * p as f64,
909                    level + 1,
910                    depth,
911                    pos + 1,
912                    params,
913                    marginals,
914                );
915                history.pop();
916            }
917        }
918
919        let mut marginals = vec![vec![0.0f64; vocab]; depth];
920        let mut kv = caches(decoder);
921        let logits = decoder.forward_batch(prompt, 0, &mut kv).pop().unwrap();
922        let mut history = prompt.to_vec();
923        walk(
924            decoder,
925            &kv,
926            &logits,
927            &mut history,
928            1.0,
929            0,
930            depth,
931            prompt.len(),
932            params,
933            &mut marginals,
934        );
935        marginals
936    }
937
938    #[test]
939    fn speculative_decode_at_temperature_matches_plain_sampling() {
940        // The end-to-end half of the losslessness claim, and the one
941        // the old argmax accept test fails: at temperature > 0 the
942        // per-position output distribution of speculative decoding must
943        // equal that of plain token-at-a-time sampling from the same
944        // target. Argmax matching passes every other test in this file
945        // and fails this one, because accepting a draft only when it is
946        // the target's most likely token pushes mass onto the argmax.
947        let cfg = tiny_test_config();
948        let vocab = 6;
949        let prompt = vec![1usize, 2, 3, 1, 2];
950        let max_new = 3;
951        let params = SamplingParams {
952            temperature: 1.0,
953            ..SamplingParams::default()
954        };
955        let seeds = 4_000u64;
956
957        let decoder = Decoder::new_random_small(cfg, 1, vocab);
958        let speculator = PromptLookupSpeculator::new(2, 3);
959        let exact = exact_marginals(&decoder, &prompt, &params, max_new, vocab);
960
961        let mut spec_counts = vec![vec![0usize; vocab]; max_new];
962        for seed in 0..seeds {
963            let mut kv = caches(&decoder);
964            let out = speculative_decode_with(
965                &decoder,
966                &prompt,
967                &mut kv,
968                &speculator,
969                &SpeculativeOptions {
970                    max_new_tokens: max_new,
971                    sampling: params.clone(),
972                    seed,
973                    ..SpeculativeOptions::default()
974                },
975            );
976            for (i, &t) in out.generated_tokens.iter().enumerate() {
977                spec_counts[i][t] += 1;
978            }
979        }
980
981        for i in 0..max_new {
982            let tv: f64 = (0..vocab)
983                .map(|t| (spec_counts[i][t] as f64 / seeds as f64 - exact[i][t]).abs())
984                .sum::<f64>()
985                / 2.0;
986            assert!(
987                tv < 0.03,
988                "position {i}: speculative sampling drifted from the target's own \
989                 distribution (total variation {tv:.4})\n  speculative = {:?}\n  exact = {:?}",
990                spec_counts[i]
991                    .iter()
992                    .map(|&c| c as f64 / seeds as f64)
993                    .collect::<Vec<_>>(),
994                exact[i]
995            );
996        }
997    }
998
999    #[test]
1000    fn speculative_decode_saves_real_calls_when_drafts_hit() {
1001        let cfg = tiny_test_config();
1002        let vocab = 8;
1003        let prompt = vec![1usize, 2, 3, 1, 2];
1004        let max_new = 8;
1005
1006        let decoder = Decoder::new_random_small(cfg, 2, vocab);
1007        let mut kv = caches(&decoder);
1008        let speculator = PromptLookupSpeculator::new(2, 4);
1009        let result = speculative_decode(&decoder, &prompt, max_new, &mut kv, &speculator);
1010
1011        assert_eq!(result.tokens_generated, max_new);
1012        // Plain sequential decode needs exactly `max_new` calls here:
1013        // one prefill plus one per token except the last, whose KV is
1014        // never needed. Speculation must never need more.
1015        assert!(
1016            result.forward_calls <= max_new,
1017            "speculative decode must never need MORE forward_batch calls than plain \
1018             sequential decode would (calls={}, tokens={})",
1019            result.forward_calls,
1020            max_new
1021        );
1022    }
1023
1024    #[test]
1025    fn speculative_decode_with_no_repeats_falls_back_to_one_token_per_call() {
1026        // A prompt with no internal repeats at all must still work
1027        // correctly, just without any speedup.
1028        let cfg = tiny_test_config();
1029        let vocab = 8;
1030        let prompt = vec![1usize, 2, 3];
1031        let max_new = 5;
1032
1033        let decoder = Decoder::new_random_small(cfg, 2, vocab);
1034        let mut kv = caches(&decoder);
1035        let speculator = PromptLookupSpeculator::new(10, 4); // ngram far longer than any possible history
1036        let result = speculative_decode(&decoder, &prompt, max_new, &mut kv, &speculator);
1037
1038        assert_eq!(result.tokens_generated, max_new);
1039        assert_eq!(
1040            result.forward_calls,
1041            1 + max_new - 1,
1042            "prefill (1 call) + one call per token, minus the last token, whose KV is \
1043             never needed because generation stopped"
1044        );
1045        assert_eq!(result.drafted_tokens, 0);
1046        assert_eq!(result.accept_rate(), None);
1047    }
1048
1049    // ---- drafter trait plumbing ----
1050
1051    #[test]
1052    fn the_drafter_is_asked_to_continue_the_anchor_token() {
1053        // The block the drafter proposes lands *after* the pending
1054        // token, so the history it sees must already contain it.
1055        // Drafting from a history that stopped one token short would
1056        // shift every proposal by one position and quietly halve the
1057        // accept rate without breaking any output-correctness test.
1058        let cfg = tiny_test_config();
1059        let decoder = Decoder::new_random_small(cfg, 2, 8);
1060        let mut kv = caches(&decoder);
1061        let prompt = vec![1usize, 2, 3];
1062        let drafter = FixedDrafter::new(DraftBlock::deterministic(vec![5, 6]));
1063
1064        let result = speculative_decode(&decoder, &prompt, 4, &mut kv, &drafter);
1065
1066        let seen = drafter.seen_history.borrow();
1067        assert!(!seen.is_empty(), "the drafter must actually be consulted");
1068        for (round, history) in seen.iter().enumerate() {
1069            assert_eq!(
1070                history.len(),
1071                prompt.len() + round + 1,
1072                "round {round}: history must grow by the committed tokens"
1073            );
1074            assert_eq!(
1075                history[..prompt.len()],
1076                prompt[..],
1077                "the prompt must stay at the front of the drafter's history"
1078            );
1079        }
1080        assert_eq!(seen[0][prompt.len()], result.generated_tokens[0]);
1081    }
1082
1083    #[test]
1084    fn the_drafter_receives_the_targets_hidden_state() {
1085        // The conditioning tensor dFlash/EAGLE need. It is already
1086        // computed by verification; the trait exists so it stops being
1087        // discarded.
1088        let cfg = tiny_test_config();
1089        let hidden_dim = cfg.hidden_dim;
1090        let decoder = Decoder::new_random_small(cfg, 2, 8);
1091        let mut kv = caches(&decoder);
1092        let drafter = FixedDrafter::new(DraftBlock::deterministic(vec![5, 6]));
1093
1094        speculative_decode(&decoder, &[1usize, 2, 3], 4, &mut kv, &drafter);
1095
1096        let lens = drafter.seen_hidden_len.borrow();
1097        assert!(!lens.is_empty());
1098        for len in lens.iter() {
1099            assert_eq!(
1100                *len, hidden_dim,
1101                "every round must pass a full target hidden state, not an empty slice"
1102            );
1103        }
1104    }
1105
1106    // ---- cache resume + rollback arithmetic ----
1107
1108    #[test]
1109    fn resuming_a_warm_cache_gives_the_same_tokens_as_one_fresh_run() {
1110        // The serving shape: a prefix cache hands the decode loop a
1111        // cache that already holds part of the context.
1112        let cfg = tiny_test_config();
1113        let vocab = 8;
1114        let decoder = Decoder::new_random_small(cfg, 2, vocab);
1115        let speculator = PromptLookupSpeculator::new(2, 3);
1116        let full_prompt = vec![1usize, 2, 3, 4, 1, 2];
1117        let max_new = 6;
1118
1119        let mut fresh = caches(&decoder);
1120        let cold = speculative_decode(&decoder, &full_prompt, max_new, &mut fresh, &speculator);
1121
1122        // Warm: feed the first 4 prompt tokens through the decoder
1123        // first, then resume speculative decoding from position 4.
1124        let split = 4;
1125        let mut warm = caches(&decoder);
1126        decoder.forward_batch(&full_prompt[..split], 0, &mut warm);
1127        let resumed = speculative_decode_with(
1128            &decoder,
1129            &full_prompt[split..],
1130            &mut warm,
1131            &speculator,
1132            &SpeculativeOptions {
1133                max_new_tokens: max_new,
1134                start_pos: split,
1135                ..SpeculativeOptions::default()
1136            },
1137        );
1138
1139        assert_eq!(
1140            resumed.generated_tokens, cold.generated_tokens,
1141            "resuming a warm cache must not change the output"
1142        );
1143    }
1144
1145    #[test]
1146    fn rolls_back_to_absolute_positions_on_a_warm_cache() {
1147        // Rollback lengths are absolute cache lengths, not offsets from
1148        // the start of this call. With a warm cache the two differ by
1149        // start_pos, and a rollback that used the offset would truncate
1150        // into the caller's context. Forced rejections every round make
1151        // the rollback path run every round.
1152        let cfg = tiny_test_config();
1153        let decoder = Decoder::new_random_small(cfg, 2, 8);
1154        // Token 7 is a fixed guess; whether it is accepted is up to the
1155        // model, but the invariant below holds either way.
1156        let drafter = FixedDrafter::new(DraftBlock::deterministic(vec![7, 7, 7]));
1157        let context = vec![1usize, 2, 3, 4];
1158        let prompt = vec![5usize, 6];
1159        let max_new = 6;
1160
1161        let mut kv = caches(&decoder);
1162        decoder.forward_batch(&context, 0, &mut kv);
1163        assert_eq!(kv[0].seq_len, context.len());
1164
1165        let result = speculative_decode_with(
1166            &decoder,
1167            &prompt,
1168            &mut kv,
1169            &drafter,
1170            &SpeculativeOptions {
1171                max_new_tokens: max_new,
1172                start_pos: context.len(),
1173                ..SpeculativeOptions::default()
1174            },
1175        );
1176
1177        assert_eq!(result.tokens_generated, max_new);
1178        // Exact invariant: the cache holds the context, the prompt and
1179        // every generated token except the last (whose KV is not
1180        // computed until it is fed).
1181        let expected = context.len() + prompt.len() + result.tokens_generated - 1;
1182        for cache in kv.iter() {
1183            assert_eq!(
1184                cache.seq_len,
1185                expected,
1186                "cache length must be absolute: context {} + prompt {} + generated {} - 1",
1187                context.len(),
1188                prompt.len(),
1189                result.tokens_generated
1190            );
1191        }
1192    }
1193
1194    #[test]
1195    fn a_resumed_run_continues_a_previous_one() {
1196        // Two back-to-back calls on the same caches must equal one long
1197        // call: this is what "not a demo" means for the serving path.
1198        let cfg = tiny_test_config();
1199        let decoder = Decoder::new_random_small(cfg, 2, 8);
1200        let speculator = PromptLookupSpeculator::new(2, 3);
1201        let prompt = vec![1usize, 2, 3, 4, 1, 2];
1202
1203        let mut one = caches(&decoder);
1204        let long = speculative_decode(&decoder, &prompt, 8, &mut one, &speculator);
1205
1206        let mut kv = caches(&decoder);
1207        let first = speculative_decode(&decoder, &prompt, 4, &mut kv, &speculator);
1208        // The last generated token's KV is not in the cache yet, so it
1209        // is the first token of the continuation's "prompt".
1210        let resume_prompt = vec![*first.generated_tokens.last().unwrap()];
1211        let start = prompt.len() + first.tokens_generated - 1;
1212        let second = speculative_decode_with(
1213            &decoder,
1214            &resume_prompt,
1215            &mut kv,
1216            &speculator,
1217            &SpeculativeOptions {
1218                max_new_tokens: 5,
1219                start_pos: start,
1220                ..SpeculativeOptions::default()
1221            },
1222        );
1223
1224        let mut stitched = first.generated_tokens.clone();
1225        stitched.pop(); // re-fed as the continuation's prompt
1226        stitched.extend_from_slice(&second.generated_tokens);
1227        assert_eq!(
1228            &stitched[..8],
1229            &long.generated_tokens[..],
1230            "a decode split across two calls must equal the same decode in one"
1231        );
1232    }
1233
1234    #[test]
1235    #[should_panic(expected = "start_pos must be the caches' current length")]
1236    fn a_mismatched_start_pos_is_refused_rather_than_silently_wrong() {
1237        let cfg = tiny_test_config();
1238        let decoder = Decoder::new_random_small(cfg, 2, 8);
1239        let mut kv = caches(&decoder);
1240        decoder.forward_batch(&[1usize, 2, 3], 0, &mut kv);
1241        let speculator = PromptLookupSpeculator::new(2, 2);
1242        speculative_decode(&decoder, &[4usize, 5], 2, &mut kv, &speculator);
1243    }
1244
1245    // ---- acceptance metrics ----
1246
1247    #[test]
1248    fn per_position_accept_rates_expose_suffix_decay() {
1249        // A drafter whose first guess is always right and whose later
1250        // guesses are always wrong has the same mean accept rate as one
1251        // that is uniformly mediocre. Only the per-position curve tells
1252        // them apart, which is the whole reason it exists.
1253        let mut result = SpeculativeDecodeResult::default();
1254        for _ in 0..100 {
1255            result.record_position(0, true);
1256            result.record_position(1, false);
1257        }
1258        result.verification_steps = 100;
1259        result.tokens_generated = 200;
1260
1261        assert_eq!(result.accept_rate(), Some(0.5));
1262        assert_eq!(result.accept_rate_per_position(), vec![1.0, 0.0]);
1263        assert_eq!(result.acceptance_length(), Some(2.0));
1264    }
1265
1266    #[test]
1267    fn positions_after_a_rejection_are_not_counted_as_drafted() {
1268        // A round that rejects at position 0 never evaluates positions
1269        // 1..k. Counting them would report an accept rate that falls
1270        // with the block size rather than with the drafter's accuracy.
1271        let cfg = tiny_test_config();
1272        let decoder = Decoder::new_random_small(cfg, 2, 8);
1273        let mut kv = caches(&decoder);
1274        // Token 7 against a random model: whatever happens, every
1275        // counted position must have been reachable.
1276        let drafter = FixedDrafter::new(DraftBlock::deterministic(vec![7, 7, 7, 7]));
1277        let result = speculative_decode(&decoder, &[1usize, 2, 3], 6, &mut kv, &drafter);
1278
1279        let evaluated = &result.evaluated_at_position;
1280        let accepted = &result.accepted_at_position;
1281        assert!(
1282            result.drafted_tokens > result.accepted_tokens,
1283            "the scenario is pointless unless something was actually rejected \
1284             (drafted {}, accepted {})",
1285            result.drafted_tokens,
1286            result.accepted_tokens
1287        );
1288        // The sharp invariant: position i+1 is only reached when
1289        // position i was accepted, so it can never have been evaluated
1290        // more often. Merely checking that the counts are
1291        // non-increasing is not enough -- crediting every position of
1292        // every proposed block, rejected or not, keeps them
1293        // non-increasing (it makes them equal) while reporting an
1294        // accept rate that decays with the block size rather than with
1295        // the drafter.
1296        for (i, &seen) in evaluated.iter().enumerate().skip(1) {
1297            assert!(
1298                seen <= accepted[i - 1],
1299                "position {i} was evaluated {seen} times but position {} was only \
1300                 accepted {} times: evaluated={evaluated:?} accepted={accepted:?}",
1301                i - 1,
1302                accepted[i - 1]
1303            );
1304        }
1305        assert_eq!(
1306            result.drafted_tokens,
1307            evaluated.iter().sum::<usize>(),
1308            "drafted_tokens must be the per-position counts' total"
1309        );
1310        assert_eq!(
1311            result.accepted_tokens,
1312            result.accepted_at_position.iter().sum::<usize>()
1313        );
1314        assert!(result.accepted_tokens <= result.drafted_tokens);
1315    }
1316
1317    #[test]
1318    fn acceptance_length_is_reported_per_verification_step_not_per_call() {
1319        // The published metric divides by verification steps; charging
1320        // the one-off prefill against it understates short runs.
1321        let cfg = tiny_test_config();
1322        let decoder = Decoder::new_random_small(cfg, 2, 8);
1323        let mut kv = caches(&decoder);
1324        let speculator = PromptLookupSpeculator::new(2, 3);
1325        let result = speculative_decode(&decoder, &[1usize, 2, 3, 1, 2], 6, &mut kv, &speculator);
1326
1327        assert_eq!(result.verification_steps, result.forward_calls - 1);
1328        let length = result.acceptance_length().unwrap();
1329        assert!(length >= 1.0, "every verification step commits >= 1 token");
1330        assert!(
1331            length > result.tokens_per_call(),
1332            "acceptance length must not be diluted by the prefill call"
1333        );
1334    }
1335
1336    #[test]
1337    fn an_empty_run_reports_no_acceptance_length_rather_than_zero() {
1338        let result = SpeculativeDecodeResult::default();
1339        assert_eq!(result.acceptance_length(), None);
1340        assert_eq!(result.accept_rate(), None);
1341        assert_eq!(result.tokens_per_call(), 0.0);
1342    }
1343}