politeness[border]

The politeness detector for border, an embeddable library that inspects the text going into and coming out of an LLM and returns a structured decision plus an audit-grade evidence record.

flowxai/politeness on the hub. It is one detector of 28, and it is not a general purpose politeness classifier: it was trained for this library's policy, is read at the operating point below, and reports through the evidence record rather than returning a bare score.

This card is generated from the evaluation and export artifacts of the training run, so every number on it is reproducible from this repository rather than asserted.

What it is

  • Base model: FacebookAI/xlm-roberta-base
  • Head: multi_label_classification
  • Labels: impolite
  • Artifact: onnx/model.int8.onnx, 535 MB, opset 17
  • Trained at: 96 tokens

Operating point

Threshold 0.1, calibrated on the validation split against the macro_f1 objective.

This number is not decoration. Read at the 0.5 default that looked reasonable, several detectors in this family reported F1 0.000 in every language, because their scores separate positives from negatives well below 0.5. One of them went from 0.000 to 0.893 on the threshold alone. Use the value above, or calibrate your own on your own data.

This threshold is not a tuned parameter, and the shipped policy default stays at 0.89. Two seeds on the identical corpus read 0.10 and 0.36, a spread of 0.26, the same shape as nsfw's calibration on the same retrain campaign. Per-language quality is stable across the two seeds (mean spread 0.0015), the threshold picked from a flat curve is not. 0.89 is the value reviewed and shipped before this retrain and is unchanged by it.

  • At the 0.5 default: 0.982
  • At the calibrated 0.1: 0.983

How to use it

Through the library, which is what this model is for. It loads the artifact below, applies the operating point above, and returns a decision with an evidence record rather than a bare score.

pip install flowx-border
# policy.yaml
policy_id: default
version: 1

detectors:
  politeness:
    enabled: true
    on_fail: flag
    threshold: 0.1
from flowx_border import load_policy, scan_output

policy = load_policy("policy.yaml")

decision = scan_output(model_answer, policy)

print(decision.verdict)      # allow | flag | redact | block
print([f.label for f in decision.findings if f.detector_id == "politeness"])
print(decision.evidence.record_id)

This detector reads the output side, so scan_output is where it fires. It is T2, so it runs on the standard path and can be disabled per policy. Its budget is 225 ms at 87 tokens on one CPU thread.

The weights are fetched once and cached, and a scan needs no network after that. Nothing here calls out to a hosted model, and the evidence record carries hashes rather than your text.

Without the library

The artifact is plain ONNX, so it will load in onnxruntime directly. Two things you then own yourself, and they are the reason the library exists: the operating point above is not in the graph, and neither is the chunking. Inputs longer than the trained window have to be split and recombined, or the scores past it are extrapolation.

import onnxruntime as ort
from huggingface_hub import hf_hub_download
from tokenizers import Tokenizer

repo = "flowxai/politeness"
session = ort.InferenceSession(hf_hub_download(repo, "onnx/model.int8.onnx"))
tokenizer = Tokenizer.from_file(hf_hub_download(repo, "tokenizer.json"))

Per language

Per language rather than an aggregate, because an aggregate across 26 languages hides the tail and the tail is the point.

Language Support P R F1 Note
bg Bulgarian 21 1.000 1.000 1.000
cs Czech 21 1.000 1.000 1.000
da Danish 21 1.000 1.000 1.000
fi Finnish 21 1.000 1.000 1.000
ga Irish 21 1.000 1.000 1.000
hr Croatian 21 1.000 1.000 1.000
hu Hungarian 21 1.000 1.000 1.000
it Italian 21 1.000 1.000 1.000
lt Lithuanian 21 1.000 1.000 1.000
lv Latvian 21 1.000 1.000 1.000
pl Polish 21 1.000 1.000 1.000
pt Portuguese 21 1.000 1.000 1.000
sk Slovak 21 1.000 1.000 1.000
sl Slovenian 21 1.000 1.000 1.000
az Azerbaijani 21 0.955 1.000 0.977
en English 21 0.955 1.000 0.977
ro Romanian 21 0.955 1.000 0.977
tr Turkish 21 0.955 1.000 0.977
de German 21 1.000 0.952 0.976
es Spanish 21 1.000 0.952 0.976
et Estonian 21 0.913 1.000 0.955
nl Dutch 21 0.913 1.000 0.955
fr French 21 0.952 0.952 0.952
el Greek 21 1.000 0.905 0.950
sv Swedish 20 0.870 1.000 0.930
mt Maltese 21 0.760 0.905 0.826 not in base model pretraining

Weakest languages

Published rather than dropped. A coverage table with the bad rows removed is not a coverage table.

  • mt Maltese: F1 0.826 (absent from XLM-R pretraining, which is a base-model limit)
  • sv Swedish: F1 0.930
  • el Greek: F1 0.950

Quantisation

The published artifact is INT8, quantising Gather.

For this artifact specifically: 0 of 300 decisions differ from the fp32 checkpoint, mean logit drift 0.0034, read as sigmoid_at_threshold. A quantised model that answers differently is a different detector, so this is measured rather than assumed.

Limitations

  • Synthetic training data. Generated natively per language, never translated from English, so the sentence structure is the target language's own. It is still synthetic, and a production distribution will differ.
  • Maltese is absent from XLM-RoBERTa's pretraining set. That is a fact about the base model, and it is not an explanation for a weak score. This card said "no amount of data fixes that" until 2026-08-14, which this project's own measurement disproves: the nsfw detector scored 0.000 in Maltese, was blamed on the base model, and went to 1.000 with perfect precision and recall when its corpus went from 2 positives per language to 10. Nothing about the model changed. So where a language scores badly here, read the support column first.
  • This is not a compliance product. It produces evidence about controls that were applied. It does not make anyone compliant with anything, and the obligations under the EU AI Act sit with the provider or deployer of a system, not with a model or a library.

Licence

Apache-2.0, declared in the metadata above as well as here, so that a tool reading the repository can attest it rather than a human having to read prose.

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