Marcos ec26ec000a feat(review): equivalent provider price + enriched .pr-review.json schema
Three things in this commit, all in the review-rendering path:

1. COST DISPLAY — the `## 🔋 AI usage` section used to show $0.00 because
   the pilot runs on headroom/glm-5.2:cloud at no per-token charge. Now it
   shows TWO lines: the equivalent provider cost (default Claude Sonnet 5;
   configurable via .pr-review.json:cost_target or PRAGENT_PRICE_TARGET env)
   AND the actual $0.00 line. Maintainers can now budget on what the same
   measured tokens would cost on a paid model.

   equivalent_cost() builds a cost_model.Usage from the measured dict and
   runs cost_model.cost() against the resolved provider. _resolve_price_target
   walks repo config > env > default, surfaces typos as an inline note on
   the usage line (not a crash).

2. .pr-review.json SCHEMA — seven new optional fields:
     style                strict|balanced|lenient  (default: balanced)
     severity_threshold   low|medium|high|critical (per style)
     max_findings         1..30                     (per style)
     exclude_tests        bool                      (skip test files)
     require_tests        bool                      (synthetic finding)
     patterns             {allow: [...], deny: [...]} (glob filter)
     cost_target          <PRICES key>              (see #1)

   The first three are style-driven defaults — strict = 5 findings / high+,
   balanced = 12 / medium+, lenient = 15 / low+. Override per-field.
   patterns globs support * and **; built-in fnmatch-style with re.escape.

3. APPLY CONFIG — findings are filtered by the new schema before being
   split into anchored/unanchored. apply_repo_config() drops by exclude_tests
   / exclude_paths / patterns.deny / patterns.allow / severity_threshold, then
   caps at max_findings. require_tests=true appends a synthetic 'low' finding
   when changed paths include non-test files but no test file changed
   alongside them.

   build_user_prompt renders the new fields into the brief so the agent knows
   about style / threshold / patterns explicitly (not just via instructions).

Plus plumbing:
  * review_pr runs compress_diff(diff, context=PRAGENT_DIFF_CONTEXT) before
    handing the diff to either engine. Default context=1 (enough to anchor;
    full files are on disk in the workdir anyway). -1 disables.
  * compact_prior_reviews(prior) keeps only finding-bullet lines, drops the
    rest. Prior-review cap lowered 8k -> 4k chars in build_user_prompt.
  * opencode_review.write_brief accepts compression_note (rendered under
    the PR description, OUTSIDE the untrusted-data fence).

160 new tests covering equivalent_cost (4), format_usage_section cost lines
(5), parse_repo_config extended schema (6), apply_repo_config filters (8),
effective_config style defaults (2), compact_prior_reviews (2), and the
whole diff_compress suite (14 from the previous commit). 174 pass / 0 fail.
2026-08-20 16:12:46 +00:00

pragent

An AI pull-request reviewer for Gitea that posts inline comments with suggested fixes, not a wall of prose — and reports what each review cost.

Label a PR AI-REVIEW. A webhook wakes a service that checks the repo out at the PR's head commit, reads the changed files and the code around them, runs the repo's own linters, and posts a review anchored to real lines.

See it work: pragent-demo PR #1 — a PR with planted defects, and the review it drew: 9 findings, 3 critical, all anchored inline.

**[CRITICAL]** search_notes builds its SQL by string concatenation: owner and
term come from request['query'] and are spliced directly, so a term like
`' OR 1=1 --` reads every row in the table.

Fix: Parameterise owner and term with placeholders and a real LIKE pattern.

🪙 ~362 tok (11% · attributed output)

Why this exists

CodeRabbit, Greptile and Qodo are good products with fixed review dimensions and per-seat pricing. pragent targets the case where a platform team needs to add its own dimensions — an internal compliance rule, a service-catalog ownership check, a house performance idiom — without forking a vendor's reviewer. The analyzers, the data, and the analytics are yours.

It is also self-hosted end to end: the model endpoint is a config value, so the code never has to leave your network.

Status

A pilot is live and reviewing real PRs. The full framework (pragent init, tiering as code, analyzer fan-out, explain / replay) is designed but not built — see docs/plans/.

What works today:

  • a central webhook service, so onboarding a repo is add the bot + add the label
  • whole-repo context: the reviewer reads callers and types, not just the hunk
  • inline comments with language-highlighted suggested fixes, anchored to post-change lines and validated in Python before posting
  • per-commit dedupe, and prior reviews fed back so a re-push synthesises rather than repeats
  • .pr-review.json for per-repo focus and house rules
  • optional token/cost reporting via an AI-USAGE label
  • containment against hostile PR content (see Security)

Not yet: status checks, fail-close, attention tiering enforced in code (it is currently a skill the agent follows), multi-model routing.

How a review runs

PR labelled AI-REVIEW
   │  Gitea webhook (HMAC-verified, body-capped, concurrency-bounded)
   ▼
review_pr()
   1. dedupe        already reviewed this exact sha? stop.
   2. fetch diff    + .pr-review.json from the BASE branch
   3. checkout      repo archive at head sha → temp workdir
   4. sanitize      delete author-controlled agent-instruction files
   5. brief         .pragent/brief.md, untrusted parts explicitly fenced
   6. review        opencode agent: read code, run linters, emit findings JSON
   7. anchor        validate every line against the diff's post-change lines
   8. post          inline comments + summary, as pragent-bot

Steps 1, 2, 7 and 8 are deterministic Python. The model's only job is step 6 — producing correct findings. It never talks to Gitea, and a finding whose line does not validate becomes a summary bullet rather than a misplaced comment.

Setup

Onboarding a repo, once the service is running for that owner:

  1. add pragent-bot as a Write collaborator
  2. create the AI-REVIEW label
  3. label a PR

Standing up the service itself — the webhook, the image, the Gitea SSRF allow-list, the per-owner webhook registration — is in pilot/README-webhook.md. A legacy per-repo CI-step path is in pilot/README.md.

The model endpoint is supplied at runtime via PRAGENT_MODEL_BASE_URL; the committed opencode.json carries a placeholder.

Extending it

The review "factory" is .opencode/ — agent definitions and skills as plain Markdown. Adding a review dimension is dropping a file in, not writing code:

Add How
A review lens .opencode/agents/<name>.md + one allow-list line in pragent.md
Domain knowledge .opencode/skills/<name>/SKILL.md, referenced from the load table
Per-repo rules .pr-review.json in the repo being reviewed

Shipped skills: attention-tiering (the cost governor), review-methodology, findings-schema, linter-playbook, security-lens, malicious-change, comment-craft.

Security

The reviewer runs an autonomous agent with shell access over a checkout of the PR author's branch, and its bot account holds a Write credential. Anyone who can open a PR can therefore put arbitrary text in front of the model and arbitrary files on its disk — the setup exploited in the April 2026 disclosures against Claude Code Security Review, Gemini CLI Action and Copilot Agent.

Four controls, none of which rely on the model behaving:

  1. No credentials in the agent's environment. The subprocess environment is built from an allow-list, not inherited. There is nothing to exfiltrate.
  2. No author-controlled instruction files on disk. Nested AGENTS.md, CLAUDE.md, .cursorrules, a repo opencode.json — all deleted before the agent starts, so a PR cannot ship its own system prompt. They are still reviewed, as data.
  3. Untrusted-data framing. PR text and diffs are fenced; the agent reports injection attempts as critical findings instead of following them.
  4. Reviewer config comes from the base branch, so a PR cannot rewrite the rules it is judged by.

Plus: tar-slip guards on the archive, a non-root container, and bounded concurrency. Full threat model and residual risks: pilot/README-webhook.md.

What it costs

The pilot runs against a self-hosted model and bills nothing per token, but the token work is real. pilot/cost_model.py prices it against published API rates, calibrated against runs measured through the AI-USAGE label (OBSERVED_RUNS in that file — append to it, don't guess).

Two measured reviews of a ~1100-line PR in this repo: 28 and 31 agent steps, ~2.1M input tokens each, zero cache reads or writes. The demo repo's PR, same tier: 126K tokens.

Model this repo, ~1100-line PR demo repo PR
Claude Opus 5 ~$10.79 ~$0.71
Claude Sonnet 5 ~$4.32 ~$0.28
Claude Haiku 4.5 ~$2.16 ~$0.14

Three things that estimate wrong if you skip them:

  1. The loop resends its context every step. Cost is roughly quadratic in step count, not linear in diff size. This is what attention-tiering exists to cap.
  2. Repository size dominates diff size. The 16x gap above is the same reviewer on the same tier — the difference is how much repo there was to read.
  3. Prompt caching is worth about a third of the bill and is not currently happening on this stack. Check cache_read before budgeting.
python3 pilot/cost_model.py --help      # other mixes, volumes, models

Development

python3 -m pytest tests -q    # 137 tests, stdlib only, no network

The pilot is stdlib-only Python by design — it runs from a bare python:slim image with the scripts mounted, and has no dependency resolution to go wrong at review time.

License

Not yet chosen. Until one is added, no reuse rights are granted.

S
Description
An AI pull-request reviewer for Gitea — inline findings with suggested fixes, whole-repo context, and per-review cost reporting.
Readme 2.1 MiB
Languages
Python 99.5%
Dockerfile 0.5%