proofmark
proofmark validates and repairs structured LLM output beyond JSON Schema.
Define semantic checks for things like totals, bounds, duplicates, and placeholders, then deterministically fix what can be fixed before spending another LLM call.
pip install proofmark
The pipeline:
LLM output
↓
normalize what can be deterministically derived
↓
structural/schema validation
↓
application-level semantic checks
↓
LLM repair only if necessary
The differentiator is the ordering: repair with deterministic code before asking the model again. A second model call costs latency and money, and it re-rolls the dice on output the previous call already got wrong. Fixing in code what code can fix removes those retries entirely.
Zero required dependencies, incidentally: providers speak HTTP over the standard library and schema validation is implemented in-tree.
The problem
Your schema says budget.total is a number and budget.items[].amount is a
number. The model returns:
{
"budget": {
"total": 1000.0,
"items": [
{ "category": "lodging", "amount": 500.0 },
{ "category": "food", "amount": 300.0 },
{ "category": "contingency", "amount": 150.0 }
]
}
}
Every field has the right type. JSON Schema is satisfied. The line items add up to 950.
Schema conformance cannot catch this: "line items sum to the stated total" is an
application invariant, not a typing rule. proofmark lets you state that invariant
(checks.sums_to(...)), detects the violation, and — if you have supplied a
normalizer that says how to reconcile it — repairs it in code without another
provider call.
proofmark does not decide which number is authoritative. That policy is your normalizer configuration: absorbing the shortfall into a contingency line is a choice you make, not something the library infers.
Normalize what is derivable. Check what is evidence.
This is the principle the library is organised around, and it is how you decide
whether something belongs in normalizers= or checks=.
- Derived values can safely be recomputed. On an invoice,
line_totalisquantity × unit_priceand nothing else, so code recomputes it and the model is never asked. - Evidence values should usually be checked, not overwritten. A
subtotalprinted on the source document is evidence; when it disagrees with the extracted rows, that often means a row was missed.
Auto-correcting evidence to match the rest of the document erases the only signal
that extraction went wrong, and hands you a tidy, internally consistent, wrong
invoice. That is a silent data-loss bug in a lot of extraction pipelines; here it
is just the difference between normalizers= and checks=.
Usage
from proofmark import compose, checks, normalize, OpenAICompatibleProvider
provider = OpenAICompatibleProvider(api_key=KEY, model="gpt-4o-mini")
result = compose(
prompt="Draft a 3-day budget for Lisbon. Total 1000 EUR.",
schema=BUDGET_SCHEMA,
provider=provider,
# Deterministic repair, applied before anything is validated.
normalizers=[
normalize.coerce_numbers("budget.items[].amount"),
normalize.rebalance_to_total(
items="budget.items",
amount_field="amount",
total="budget.total",
slack_match={"category": "contingency"},
),
],
# Application-level rules JSON Schema cannot express.
checks=[
checks.sums_to("budget.items", "amount", "budget.total"),
checks.currency_consistent("EUR"),
checks.no_placeholders(),
],
repair_attempts=1,
)
if result.ok:
use(result.data)
else:
log(result.failure, result.issues, result.trace)
That run costs one provider call. The 50-EUR shortfall is absorbed into
contingency by rebalance_to_total, and result.outcome is NORMALIZED rather
than OK — so you know the model got it wrong even though the document you got
satisfies the constraints you defined.
What it does
The built-in checks and normalizers below are a starting set, not the point. The abstraction is the pipeline and its extension model: checks are ordinary callables, normalizers are deterministic, structural and semantic failures are separated, model repair runs only after deterministic repair fails, failure types are explicit, traces record what happened, and provider degradation is handled the same way across backends.
1. Preflights the schema — before spending a call
Strict structured-output modes impose constraints ordinary JSON Schema does not:
every object must close itself to extra properties, every property must be listed
in required, nesting is capped. Violate one and you get an opaque 400 after
paying for the round trip, usually without being told which path is at fault.
from proofmark import preflight
report = preflight(MY_SCHEMA)
for error in report.errors:
print(error.format())
# $.address: object must set 'additionalProperties': false
# $.user: every property must be listed in 'required'; missing ['nickname'].
# Model optional fields as a nullable union instead.
Warnings are separate from errors. minimum, pattern, and friends may be
silently ignored by a strict provider — proofmark tells you rather than refusing to
send, and checks.bounded() is there to enforce them yourself.
2. Degrades across tiers deliberately, and tells you which one ran
native_structured → json_mode → text_json. The distinction that matters:
a provider saying "this model can't do json_schema" triggers degradation, while
a provider saying "401" does not. Conflating the two turns an auth failure into a
mysteriously low-quality result.
result.tier records what actually produced your payload. "The model is bad at
JSON" and "your model silently fell back to prompt-and-pray" look identical
without it.
3. Runs application-level semantic checks
Schema validity is table stakes. The built-ins cover recurring ways a schema-valid document still violates a domain invariant:
| Check | Catches |
|---|---|
sums_to |
line items that don't add up to the stated total |
currency_consistent |
a budget narrated in dollars after you asked for euros |
no_placeholders |
"TBD", "N/A", "lorem ipsum" left in the output |
unique |
two entries for day 3 |
bounded |
negative quantities the provider ignored your minimum for |
non_empty |
required prose the model left blank |
Anything domain-specific is a plain Callable[[dict], list[Issue]].
4. Repairs deterministically first
Normalizers run before validation and cost nothing:
| Normalizer | Fixes |
|---|---|
coerce_numbers |
"1,200.00" → 1200.0 |
rebalance_to_total |
forces line items to sum exactly, in Decimal |
drop_unknown_properties |
deletes the chatty "explanation" key |
round_amounts |
quantizes to a fixed precision |
deduplicate |
drops repeated list entries |
rebalance_to_total pushes the whole discrepancy into a designated slack category
if you name one, and otherwise redistributes proportionally using the
largest-remainder method — so the parts sum to the target exactly, rather than
drifting by a cent per line. All arithmetic is Decimal.
Only what survives normalization is worth a model call.
5. Explains the failure
result.outcome # ok | normalized | repaired | fallback | failed
result.failure # invalid_schema | provider_refusal | incomplete_response |
# empty_response | unparseable_response |
# structural_invalid | semantic_invalid | provider_error | ...
result.issues # [Issue(path='$.budget.items', message='line items sum to 950...')]
result.trace # sanitized, diffable event log
incomplete_response means you hit the token limit — a different fix from
provider_refusal, which is a different fix again from semantic_invalid. Most
code built on structured output collapses all of these into "it failed" and retries
blindly.
The trace is safe to paste into a bug report: credentials are redacted on the way in, prompts are excluded by default because they carry user data, and it contains no timestamps or object ids — so two runs of the same input produce traces that differ only where behaviour differed.
Examples
All three run offline with no API key, and are covered by the test suite so they
cannot silently rot. See examples/.
python examples/budget.py # the core pitch, on a flat strict schema
python examples/recipe.py # deep nesting, $refs, arrays, permissive schema
python examples/invoice.py # document extraction -- start here
invoice.py is the worked version of normalize what is
derivable, check what is evidence: line_total is recomputed by a normalizer,
subtotal is left alone and asserted by a check.
(The name: a proof mark is the stamp something gets once it has been tested.)
Testing without a network
Every behaviour proofmark claims to handle is reproducible offline. The library's own suite is 100 tests in 0.04s with no network and no mocking of HTTP.
from proofmark import compose, StaticProvider
from proofmark.errors import TierUnsupported
# Degradation, without inventing HTTP error payloads.
provider = StaticProvider(responses=[
TierUnsupported("native_structured", "model does not support json_schema"),
{"title": "Lisbon", "budget": {...}},
])
result = compose(prompt="...", schema=SCHEMA, provider=provider)
assert result.tier is Tier.JSON_MODE
compose(provider=None, fallback=...) is a supported path rather than a crash, so
a missing API key degrades to your fallback instead of taking down a test run.
Design notes
Providers are deliberately dumb. They issue one request at one tier and report what happened. Tier degradation, JSON recovery, validation, and repair all live in the pipeline, so behaviour is identical across backends and testable without a network. Writing a provider means implementing one method.
Normalization precedes repair. This is the ordering the whole library is built around. A second model call is slow, costs money, and may return something new to be wrong about.
Semantic checks are skipped when the payload is structurally broken. Running them against a malformed document produces issues addressed to fields that may not exist, which then pollutes the repair prompt.
Repair prompts quote specific paths. $.title: required property is missing,
not "the output was invalid." All issues are collected and sent at once, so a
document with five problems takes one repair round, not five.
Status
0.1.0, alpha. The API may move before 1.0.
Not yet implemented: Pydantic model adaptation (pass a JSON Schema for now —
Model.model_json_schema() works), Anthropic-native tool-use provider, streaming,
and a response cache for deterministic replay.
Nearest neighbours: Instructor and Outlines. proofmark is focused specifically on the layer after structured generation — deterministic normalization, application-level invariant checks, repair orchestration, failure classification, and tracing — so it complements libraries that already handle structured generation. It does not care how the JSON was produced.
License
MIT — see LICENSE.
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