| # Quantization Regime and Governed Routing: A 2×2 Study of QAT Q4_0 versus PTQ Q4_K_M for Gemma 4 12B (dense) and 26B MoE under a Fixed Governance Stack |
| |
| **Dates**: runs 2026-08-10, repeats and controls 2026-08-10/11 (Asia/Tokyo) · **Hardware**: single NVIDIA RTX 5070 Ti (16 GB) · **Backend**: Ollama 0.30.6 |
| **Series**: companion/sequel to the *Gemma 4 MTP Quality–Throughput Study* (repo `gemma4-mtp-quality-study`, DOI 10.5281/zenodo.21860461) |
| **Status**: exploratory engineering study on a frozen local harness; single-run per cell; not preregistered; not an independent benchmark standard |
| |
| --- |
| |
| ## Abstract |
| |
| We measure what quantization regime — quantization-aware-trained Q4_0 (QAT) |
| versus post-training-quantized Q4_K_M (PTQ) — is worth on *governed routing |
| tasks*: answer-entitlement decisions (verify / date-bound / re-anchor / |
| abstain) made under a fixed governance stack, rather than answer-content |
| benchmarks. We run a 2×2 design (regime × released model pair) over Gemma 4 |
| 12B (dense, 11.9B — a clean same-base pair) and a 26B-class MoE pair |
| (25.8B PTQ vs 25.2B QAT released artifacts — a quasi-contrast that may |
| embed a base revision), each on a 100-task Smoke-100 and a 500-task |
| Core-500 candidate suite, all cells same-day on one consumer GPU with the |
| governance stack bit-identical and temperature 0. Aggregate route |
| correctness spans 0.738–0.760 on Core-500; we ran no equivalence test, and |
| one cross-model contrast (12B-PTQ vs 26B-PTQ) is nominally significant |
| (exact McNemar p=0.035). The paired within-model regime effects are |
| individually marginal and **oppositely signed**: QAT −0.012 on the dense |
| 12B (p=0.070) and +0.018 on the MoE pair (p=0.078). The regime × pair |
| **interaction** — this study's headline, an exploratory single-run finding |
| — is +0.030 with a stem-clustered bootstrap 95% CI of **[+0.010, +0.052]** |
| (primary; Core-500 is 100 stems × 5 paraphrases, so tasks are not |
| independent) and [+0.008, +0.052] under naive task-iid resampling. The |
| interaction concentrates almost entirely in the volatile-current family, |
| where the two pairs' scores cross (0.5314/0.4971 vs 0.4971/0.5314). |
| Attribution: with the released artifacts, regime is confounded on the MoE |
| side with a possible base revision and with a CPU-offload compute path, so |
| we claim conditionality on the *released artifact pair*, not on |
| architecture per se. Meanwhile regime choice massively perturbs the *text* |
| of temperature-0 outputs: only 23–32 % of same-task responses are |
| byte-identical across regimes (median first divergence at 46–73 |
| characters), against same-configuration Smoke-100 repeat baselines of |
| 100/100 in **all four cells** (including the CPU-offloaded PTQ MoE cell, |
| repeated across run windows) and a 100/100 byte-identity control for the |
| one regime-correlated configuration difference (`num_ctx`). Safety-critical |
| failure rates are 0.000 in seven of eight runs; the eighth (26B-PTQ |
| Core-500) logged a single over-verification event (0.008 on stable |
| controls). We conclude that on this stack the QAT premium is not a scalar — |
| it differs in sign across the two released pairs at ≈3 percentage points, |
| too small to survive aggregate averaging but visible in a paired crossed |
| design — and that quantization regime should be treated as a *behavioral* |
| change (different outputs), not merely a *quality* change (different |
| scores). |
|
|
| --- |
|
|
| ## 1. Background and motivation |
|
|
| The predecessor study (*Gemma 4 MTP Quality–Throughput Study*, 2026-08-09, |
| same GPU) measured multi-token-prediction speed/quality trade-offs with |
| both models already in QAT Q4_0 form, leaving the value of QAT itself |
| unmeasured. Separately, the same day as this study, the local MMV-Medium |
| governance release (MMV-M-RC3.3) underwent a model-binding update from the |
| PTQ `gemma4:12b` to the QAT `gemma4:26b-a4b-it-qat` on head-to-head |
| evidence in which regime and model were deliberately confounded |
| (production binding vs. candidate binding). This study completes the |
| missing cells: the anti-diagonal (12B QAT, 26B PTQ) of the resulting 2×2. |
| Two of the four cells (12B-PTQ, 26B-QAT) are therefore **reused** from |
| that production head-to-head (disclosed further in §3); the anti-diagonal |
| cells are the independent addition. |
| |
| Vendor documentation claims QAT Q4 models retain near-full-precision |
| quality where naive PTQ degrades (see `LITERATURE_SEARCH.md` in this package). Published |
| comparisons, however, measure general knowledge/reasoning benchmarks on |
| raw models. In the searches we ran (shallow, links-and-abstracts level — |
| see the literature file's own caveat) we found no prior measurement of |
| (a) QAT-vs-PTQ deltas on routing/abstention-style decisions under a |
| governance stack, (b) the same contrast at two scales in a paired |
| same-task design, or (c) regime-to-regime exact-output divergence at |
| temperature 0. We do not claim novelty for the general QAT-beats-PTQ |
| direction, and we flag (c) as plausibly adjacent to community regression |
| reports on cross-quantization output changes. |
|
|
| ## 2. Design |
|
|
| 2×2 factorial, one variable per axis as far as the released artifacts allow: |
|
|
| | | PTQ (Q4_K_M) | QAT (Q4_0) | |
| |---|---|---| |
| | **12B dense** | `gemma4:12b` (11.9B, emb 3840) | `gemma4:12b-it-qat` (11.9B, emb 3840) | |
| | **26B MoE** | `gemma4:26b` (25.8B, emb 2816) | `gemma4:26b-a4b-it-qat` (25.2B, ~4B active, emb 2816) | |
| |
| - The **12B pair is the clean contrast**: identical parameter count and |
| embedding width; the artifacts differ only in quantization recipe. |
| - The **26B pair is a quasi-contrast**: the released artifacts report |
| 25.8B vs 25.2B parameters, so a base-revision difference cannot be |
| excluded. Moreover, Ollama metadata does not expose expert structure, |
| so we cannot verify that the two 26B artifacts share the same MoE |
| configuration (an earlier harness profile note describes `gemma4:26b` |
| as ~3.8B-active, vs ~4B for the QAT artifact). Findings attributed to |
| "regime" on the 26B side are strictly findings about the released |
| artifact pair. |
| |
| Constant across all eight primary runs: the MMV Large RC3.3 v3.1 |
| governance stack (route_transformer + post_validator + force_reanchor_v2) |
| applied bit-identically; `think: false`; temperature 0.0; max_tokens 1024; |
| one GPU; sequential execution; same Ollama build; same suite and label |
| files (SHA-256 pinned in `ENVIRONMENT.md`). |
|
|
| **The one regime-correlated configuration difference, and its control.** |
| The two Q4_0 QAT profiles pin `num_ctx: 8192` because their Modelfiles |
| declare a 262,144-token context whose KV allocation fails on a 16 GB card; |
| the PTQ profiles run at the Ollama default context. Since this difference |
| tracks the regime axis exactly, we ran a direct control: the 12B-PTQ |
| Smoke-100 suite re-run with `num_ctx: 8192` produced **100/100 |
| byte-identical** outputs versus its default-context run. Within this |
| study's prompt lengths, `num_ctx` is load feasibility, not behavior. (The |
| control was run on the 12B cell only; we extrapolate it to the 26B pair.) |
|
|
| ## 3. Tasks, metrics, and statistics |
|
|
| **Suites.** OPERATE-FR Smoke-100 (N=100) and Core-500 candidate (N=500, a |
| controlled 5× neutral prompt-frame expansion of Smoke-100: **100 base |
| stems × 5 paraphrase variants**, preserving the family distribution: |
| volatile_current 175, stable_control 125, stale_premise_trap 75, |
| date_boundary 50, query_neutrality 50, ambiguous_time_frame 25). Tasks |
| probe *whether answering is warranted and in what mode* (verify, |
| date-bound answer, re-anchor, abstain), classified by the harness's |
| transparent rule-based detector. Because Core-500 tasks are paraphrase |
| clusters, its 500 rows are **not independent observations**; statistics |
| below address this explicitly. |
|
|
| **Primary metric.** Route correctness (classified route ∈ allowed routes), |
| recomputed from row-level results by the deposited analysis script, which |
| also derives per-family tables from the suites' authoritative `family` |
| fields. Exception: the safety-rate metrics (stale commitment, unsupported |
| current claim, over-verification) are quoted from the harness scorer's |
| summary outputs, which are archived alongside the raw rows. |
|
|
| **Statistics.** Within-model regime effect: two-sided exact McNemar on |
| paired same-task outcomes (the "exact" binomial computation is exact only |
| under an independence assumption that paraphrase clustering violates; |
| treat those p-values as approximate and anti-conservative). Interaction: |
| delta-of-deltas on Core-500 with a **stem-clustered bootstrap** (resample |
| the 100 stems, 10,000 resamples, seed 20260810) as the primary interval, |
| and a naive task-iid bootstrap reported for comparison. Determinism |
| baseline: same-configuration Smoke-100 repeats of **all four cells**. |
|
|
| **Provenance and timeline (JST).** No preregistration exists; the 2×2 |
| design and the interaction endpoint were specified before the |
| anti-diagonal cells ran, but analysis details were fixed at analysis time |
| — treat every inferential statement as exploratory. 2026-08-10 early-to-mid |
| afternoon: 12B-PTQ and 26B-QAT cells (reused from the same-day MMV-M |
| production head-to-head; superseded earlier runs of the same PTQ cells |
| from 2026-05/06 score equal or lower, so no favorable-selection is |
| present). Evening: 12B-QAT and 26B-PTQ cells, then 12B repeats. Late |
| night into 2026-08-11: 26B repeats and the `num_ctx` control. All 13 runs |
| (8 primary + 4 repeats + 1 control = 2,900 rows) completed with **0 |
| errored rows**. |
|
|
| ## 4. Results |
|
|
| ### 4.1 Cell aggregates (Core-500, N=500) |
|
|
| | cell | route_correctness | preferred_match | mean latency (ms) | mean resp. chars | |
| |---|---:|---:|---:|---:| |
| | 12B PTQ | **0.760** | 0.544 | 2,482 | 751 | |
| | 12B QAT | 0.748 | 0.542 | 2,626 | 834 | |
| | 26B PTQ | 0.738 | 0.540 | 3,252 † | 875 | |
| | 26B QAT | 0.756 | 0.540 | **1,613** | 899 | |
|
|
| † 26B PTQ (17 GB on disk) runs with a ~26/74 CPU/GPU split on the 16 GB |
| card; its latency reflects offload, not model properties, and is excluded |
| from all conclusions. Smoke-100 aggregates: 0.88 / 0.86 / 0.83 / 0.86 — |
| same direction, with the two QAT cells tied. |
|
|
| The Core-500 spread is 0.022 (11 tasks of 500). We ran **no equivalence |
| test**, so "the cells are tied" is not a supported claim; indeed the one |
| within-regime cross-model contrast, 12B-PTQ vs 26B-PTQ, is nominally |
| significant (17 vs 6 discordant, exact McNemar p=0.035, uncorrected). |
| What the aggregates do show is that no cell separates by a margin of |
| operational consequence on this suite. |
|
|
| Safety-critical rates (stale commitment, unsupported current claim, |
| over-verification on stable controls): **0.000 in seven of eight runs**; |
| the 26B-PTQ Core-500 run logged one over-verification event (0.008 = |
| 1/125 stable controls, consistent with its 0.976 stable_control entry in |
| §4.4). With events this rare, the data bound rather than establish |
| regime-invariance: by the rule of three, each run's 95% upper bound is |
| ≈0.6–2.4 % depending on the denominator. |
| |
| ### 4.2 Paired regime effect within model |
| |
| | suite | pair | QAT-only correct | PTQ-only correct | Δ (QAT−PTQ) | McNemar p | |
| |---|---|---:|---:|---:|---:| |
| | Core-500 | 12B dense | 1 | 7 | **−0.012** | 0.0703 | |
| | Core-500 | 26B MoE | 15 | 6 | **+0.018** | 0.0784 | |
| | Smoke-100 | 12B dense | 0 | 2 | −0.020 | 0.50 | |
| | Smoke-100 | 26B MoE | 5 | 2 | +0.030 | 0.4531 | |
| |
| Neither within-model effect reaches p<0.05, but both sit near the margin |
| **with opposite signs**, and the smaller Smoke-100 suite points the same |
| way in both pairs. The discordant tasks cluster by stem (the 12B pair's 8 |
| discordants come from 5 stems), which is one reason these p-values should |
| be read as approximate (§3). |
| |
| ### 4.3 The interaction is the finding — exploratory, but robust to clustering |
| |
| Delta-of-deltas (26B effect − 12B effect) on Core-500: **+0.030**. |
| Primary stem-clustered bootstrap 95% CI: **[+0.010, +0.052]**; naive |
| task-iid CI: [+0.008, +0.052]. Both exclude zero. This is a single-run, |
| non-preregistered endpoint computed alongside four within-model tests and |
| a family decomposition, with no multiplicity correction — we label it an |
| exploratory finding that survived a clustering-robust re-analysis, not a |
| confirmed effect. On this stack, QAT helps the released MoE pair and |
| mildly hurts the clean dense pair; the two effects cancel almost exactly |
| in any aggregate that averages over models. |
| |
| ### 4.4 Family decomposition: a crossed pattern in volatile_current |
|
|
| Core-500 route correctness by family (from the suites' authoritative |
| family fields; reproduced by the deposited script): |
|
|
| | family | n | 12B PTQ | 12B QAT | 26B PTQ | 26B QAT | |
| |---|---:|---:|---:|---:|---:| |
| | volatile_current | 175 | **0.5314** | 0.4971 | 0.4971 | **0.5314** | |
| | ambiguous_time_frame | 25 | 0.560 | 0.600 | 0.480 | 0.600 | |
| | date_boundary | 50 | 0.660 | 0.640 | 0.600 | 0.580 | |
| | stale_premise_trap | 75 | 0.9467 | 0.9467 | 0.9600 | 0.9600 | |
| | stable_control | 125 | 0.984 | 0.984 | 0.976 | 0.984 | |
| | query_neutrality | 50 | 0.920 | 0.920 | 0.920 | 0.920 | |
|
|
| The interaction concentrates in **volatile_current** (the family that |
| decides whether a currency-sensitive question deserves verification or a |
| dated hedge), where the four cells form a crossed pattern: the dense pair |
| loses under QAT where the MoE pair gains. That the crossed rates land on |
| numerically identical values (93↔87 correct of 175) is a coincidence of |
| small discordant counts and carries no inferential content; no test is |
| attached to this table. Easy families (stale_premise, stable, neutrality) |
| are regime-invariant here; date_boundary drifts −0.02 under QAT in both |
| pairs (n=50, descriptive only) — directionally consistent with the |
| date_boundary watch item recorded in the same-day production |
| binding-update freeze note (an internal record; noted for continuity, not |
| as independent evidence). |
| |
| ### 4.5 Regime is a behavioral change: exact-output divergence |
| |
| Byte-identical same-task responses across regimes at temperature 0: |
| |
| | suite | pair | exact match | rate | median first divergence (chars) | |
| |---|---|---:|---:|---:| |
| | Core-500 | 12B | 148/500 | 29.6 % | 73 | |
| | Core-500 | 26B | 116/500 | 23.2 % | 69 | |
| | Smoke-100 | 12B | 32/100 | 32.0 % | 46 | |
| | Smoke-100 | 26B | 27/100 | 27.0 % | 57 | |
| |
| Against this, the same-configuration Smoke-100 repeat baseline is |
| **100/100 byte-identical in all four cells** — including the |
| CPU-offloaded 26B-PTQ cell, and with repeats separated from their base |
| runs by 8–10 hours (crossing run windows and, for the 26B cells, a date |
| boundary). The runtime is run-to-run deterministic here, so the |
| cross-regime divergence on Smoke-100 is attributable to the weights (plus, |
| for the 26B pair, the systematic compute-path difference — see §6.3). No |
| Core-500 repeats were run; the attribution extends to Core-500 rows by |
| inference from the Smoke-100 baselines, not by direct measurement. |
| Quantization regime changes *what the model says* in 68–77 % of governed |
| responses even while leaving *how often it is right* within ≈2 points — |
| the same dissociation between string reproducibility and objective |
| quality that the predecessor MTP study reported for speculative decoding, |
| now shown for quantization recipes. Practical corollary: hash-based |
| output caching, audit replay, or golden-file tests do **not** survive a |
| quantization-regime swap, even at temperature 0. |
|
|
| ## 5. Discussion |
|
|
| **The QAT premium is pair-conditional here, not scalar.** Vendor framing |
| ("QAT preserves quality") treats the QAT benefit as a property of the |
| recipe. On governed routing tasks we find a signed interaction: ≈+2 |
| points (Core-500) for the released MoE pair, ≈−1 point for the clean |
| dense pair. Three mechanisms are compatible with the data and not |
| separable by this design: (i) 4-bit noise interacts differently with |
| expert routing than with dense activations; (ii) the 26B released pair |
| differs by more than regime (possible base revision, unverifiable expert |
| configuration), so part of the 26B gain may be base improvement; (iii) |
| the 26B-PTQ cell ran partially on CPU, so kernel-numerics differences are |
| regime-correlated on that side. The 12B side carries none of these |
| confounds — its artifacts are same-base, its cells all-GPU, and the |
| `num_ctx` difference is controlled to byte-identity — and on that clean |
| pair, QAT bought **nothing** on these tasks (directionally, it cost ≈1 |
| point at p=0.07). |
|
|
| **Aggregates hide the effect.** The four Core-500 cell scores span 0.022. |
| Only the paired-and-crossed design exposes the structure. This is a |
| caution for model-selection practice: aggregate "quality parity" |
| verdicts can conceal offsetting family-level and pair-level shifts. |
|
|
| **Operational reading (inference, not test result).** Two of the four |
| cells are the same runs that motivated the same-day production |
| model-binding decision, so using this study to "validate" that decision |
| is partially circular; the independent evidence is the anti-diagonal. |
| With that caveat: the QAT 26B artifact remains the best-or-tied cell on |
| the two hardest families while being the fastest memory-fitting cell, |
| and the clean-pair result gives no reason to move the dense-tier |
| rollback binding off PTQ `gemma4:12b`. |
|
|
| ## 6. Threats to validity |
|
|
| 1. **26B pair purity.** 25.8B vs 25.2B released artifacts; unverifiable |
| expert configuration; regime, base revision, and MoE structure are |
| confounded on that side. The headline survives only under the reading |
| "released artifact pairs" — which is the operationally relevant one, |
| and the reading used throughout this paper. |
| 2. **Paraphrase clustering.** Core-500 is 100 stems × 5 paraphrases; |
| McNemar "exact" p-values assume independence and are anti-conservative; |
| the interaction CI is therefore reported stem-clustered as primary. |
| Effective sample size is nearer 100 than 500. |
| 3. **Compute-path and window confounds (26B side).** 26B-PTQ ran ~26/74 |
| CPU/GPU; CPU-vs-GPU numerics differ systematically, and the 26B cells |
| ran in different windows. Repeats (100/100 across windows, including |
| the offloaded cell) rule out run-to-run nondeterminism, but a |
| systematic offload contribution to the 26B regime effect and |
| divergence rows cannot be excluded. |
| 4. **Exploratory statistics.** No preregistration; ≥5 inferential |
| quantities computed; no multiplicity correction; single run per cell. |
| 5. **One stack, one GPU, one runtime.** Ollama 0.30.6, one governance |
| stack, rule-based route classification, routing tasks only. |
| Generalization to other runtimes, stacks, or answer-content quality is |
| unmeasured. The `num_ctx` control was run on the 12B cell only. |
| 6. **Family attribution.** date_boundary/ambiguous cells have n=50/25; |
| their drifts are descriptive only. |
| 7. **Contamination.** Public Gemma weights; suite prompts are local and |
| unpublished at run time, but no training-corpus audit exists. |
| |
| ## 7. Reproducibility |
| |
| `REPRODUCE.md` gives the exact commands. Environment, model digests, and |
| suite/label SHA-256 hashes: `ENVIRONMENT.md`. Row-level results |
| (13 runs, 2,900 rows, 0 errored) are retained in the private study |
| archive and identified by SHA-256; the public package ships processed |
| tables and the deterministic analysis script (seed 20260810) that |
| recomputes every routing statistic in this paper — including the §4.4 |
| family table — from row level. The safety rates in §4.1 are quoted from |
| the harness scorer's archived summary outputs. |
| |
| ## 8. Conclusion |
| |
| On a fixed governance stack and consumer GPU, quantization regime moved |
| governed-routing quality by at most ≈±2 points within a released pair — |
| below per-pair significance, but with a clustering-robust, family- |
| concentrated, oppositely-signed interaction across the two pairs — and it |
| moved the *bytes* of 68–77 % of temperature-0 outputs. Choose regimes per |
| released artifact pair and per task family, not by recipe reputation; |
| and treat any quantization swap as a behavioral migration, not a drop-in. |
| |