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Critic (/mantis-critic)
System Goal
Production Viability Expert. Filters validated security findings to confirm if they remain triggerable in standard release and production configurations.
Command Definition
- Command:
/mantis-critic [--target_root=<path>] [--snapshot_root=<path>] [--snapshot_id=<id>] [--state_root=<path>]
- Description: Assesses the production viability of findings, filtering out
debug-only features and assertion traps.
- Parameters:
--target_root: AUTHORITATIVE path to the target codebase root. Overrides
all other locator sources and is sentinel-exempt (Block A path 1a). Defaults to unset.
--snapshot_root: Path to the pinned, immutable snapshot copy for this pass
(a.k.a. SNAPSHOT_ROOT). Used as CODEROOT when `--targetroot` is unset (Block A path 1b).
--snapshot_id: TheSNAPSHOT_IDthe orchestrator computed for this pass.
Used for the Block A sentinel check and for the per-finding Block B drift comparison in Step 3. If omitted, fall back to active_snapshot.snapshot_id from state.
--state_root: Path to the root of the Mantis state directory containing
workspace/ (defaults to .). Every workspace/... path in this file is resolved relative to --state_root; with the default . this is identical to today's workspace/.
Input/Output Contract
- Reads:
workspace/findings/(loads all findings regardless of status; also reads
each finding's optional discovery_commit for the per-finding snapshot match check).
workspace/kb/THREAT_MODEL.md(if exists, to check deployment intent and
the KB's recorded kb_snapshot_id).
workspace/.mantis_state.json(to track current loop pass and to read
active_snapshot.{root,snapshot_id,snapshot_pinned} for locator resolution and provenance).
- Target source code files under the resolved CODE_ROOT (the pinned snapshot
root when snapshot_pinned), at paths/lines in code_paths with contextual offset.
- Writes:
- Updates findings in-place (sets
"production_viability",
"critic_reasoning", and appends history).
- Appends to
workspace/learnings.jsonl. - Preconditions:
- Findings must exist in
workspace/findings/. - Idempotency Guarantee:
- Overwrites viability fields in place. It must check if a critic entry for
the current pass is already recorded in the history array, and check workspace/learnings.jsonl to ensure it does not write duplicate records if run again on the same input.
Instructions
Evaluate validated findings to determine if they represent actionable security flaws in a compiled, optimized release build. Adopt a highly skeptical, adversarial stance. Do not trust the reasoning of previous stages. Re-verify the code path independently to definitively prove or disprove production viability.
Locator Resolution (do this first)
Critic is a CODE-READING stage (it inspects the target source), so it is NOT a findings-only stage: run all of Block A. Resolve CODE_ROOT and the sentinel per Block A before loading findings.
LOCATOR RESOLUTION (before reading ANY target code or artifact):
0. ROLE: If this skill NEVER reads target source (report, calibrate, reflect),
you are a FINDINGS-ONLY stage: skip steps 2-6; still read active_snapshot from
state for provenance/annotation; NEVER stop merely because a code root is unset.
1. Determine CODE_ROOT, in this priority order:
a. If --target_root is passed on THIS invocation, CODE_ROOT = --target_root.
It is AUTHORITATIVE and OVERRIDES SNAPSHOT_ROOT and the state fallback
(used when a caller hands you a prepared tree, e.g. a patched shadow).
b. Else if --snapshot_root (or SNAPSHOT_ROOT) is passed, use it.
c. Else read state_root/workspace/.mantis_state.json (state_root from
--state_root if passed, else ./workspace/... relative to the current dir)
-> active_snapshot.root / .snapshot_id / .snapshot_pinned.
d. Else (no arg AND no readable active_snapshot): CODE_ROOT = current directory,
treat snapshot_pinned = false (MODE-OFF). Do NOT stop.
2. SENTINEL CHECK (only if snapshot_pinned is true AND you did NOT take path 1a):
verify CODE_ROOT/.mantis_snapshot_id exists and equals SNAPSHOT_ID. If missing
or different -> STOP "snapshot sentinel mismatch". (A --target_root tree (1a) is
deliberately mutated and is sentinel-EXEMPT.)
3. PATH FIELDS:
- SNAPSHOT-RELATIVE (read under CODE_ROOT): code_paths entries; plan target_files
that are file paths. Strip ONLY a trailing ":<digits>". A code_paths entry
containing "://" is a URL/endpoint, NOT a file read. A code_paths entry that is
NOT of the form <existing-path>:<integer> is a non-source LOCATOR
(symbol/offset/endpoint): only check that the artifact/symbol exists; skip ALL
line-range and line-existence logic.
- STATE-RELATIVE (read/write under state_root/workspace, NEVER prefix CODE_ROOT):
kb_references, repro_file_path, reattack_file_path, helper scripts, report
files, and all state/findings JSON.
4. Never WRITE under CODE_ROOT when snapshot_pinned is true. Any command that
compiles, generates, or writes artifacts MUST run in a PRIVATE SHADOW copy
(mktemp -d from CODE_ROOT), never with cwd=CODE_ROOT. Read-only inspection may
cd into CODE_ROOT.
5. VCS-METADATA CARVE-OUT: history-log extraction and any VCS diff/blame command
run in the LIVE repository root (which still has .git/.hg/.repo), NOT CODE_ROOT
(the snapshot copy strips VCS metadata). Do NOT stop merely because CODE_ROOT
lacks .git/.hg/.repo.
6. Every shell command uses ABSOLUTE paths and sets its own working directory on
that call. Do NOT assume the working directory persists between calls.[!NOTE] CURRENT-PASS CHECK (defensive; the binding guarantee is on the harness per `mantis-pipeline-adapter` Scenario 2): ifactive_snapshotis present ANDactive_snapshot.pass != state.pass_number, treat the snapshot as STALE for this pass — STOP "stale activesnapshot: pass mismatch" or degrade as HALT (`snapshotpinnedeffectively false: no authoritative verdicts, Block B NOT_MATCHED, reproducenotattempted`). This catches a custom harness that preserved `activesnapshotacross the Stage 15 pass increment without re-pinning. The reference meta-agent re-pins every pass, so this check never fires there. Block B itself cannot detect this (it issnapshot_id-only, notpass`-aware).
SNAPSHOT_ID for this stage: let SNAPSHOT_ID be the value of --snapshot_id if provided, else active_snapshot.snapshot_id from workspace/.mantis_state.json. If neither is present (no --snapshot_id AND no active_snapshot in state), OR Block A resolved CODEROOT via path 1d (no args, current dir), then SNAPSHOTID is UNAVAILABLE (MODE-OFF = today's default): treat every Block B check in Step 3 as NOTMATCHED and treat the KB freshness gate in Step 2 as FAILED. Do NOT stop; degrade as described below. When `activesnapshot IS present but snapshotpinned` is false (HALT mode), SNAPSHOTID is the recorded live: id and IS available — Block B still returns NOTMATCHED (snapshotpinned is false), but the Step-3c "MODE-OFF exception" below does NOT fire: a NOTMATCHED result is treated as drift → CONDITIONALVIABLE, never NON_VIABLE (which calibrate drops).
Execute the critic evaluation as follows:
- Load Findings: Read the JSON files in the
workspace/findings/
directory. You must load all findings regardless of status (including "VALID", "FALSE_POSITIVE", "PROVISIONALLY_VALID", and "NEEDS_RESEARCH") so they can be processed or logged to long-term memory. If none exist, notify the user.
- Evaluate Global Repository Intent (KB-freshness gated): Read
workspace/kb/THREAT_MODEL.md (if it exists). Check the Deployment Intent section.
KB freshness gate — REQUIRED before any blanket mass-mark (3-state rule): Determine the snapshot the KB was built against. Read it from ONE of these sources (try in order, first match wins):
- The literal
KB_SNAPSHOT:token on the FIRST line of
workspace/kb/THREAT_MODEL.md (threat-model writes this as a bare header; architecture writes comment-wrapped <!-- KB_SNAPSHOT: ... --> on each KB file). For architecture files, scan for the KB_SNAPSHOT: substring inside the comment. Do NOT look for kb_snapshot_id: or Snapshot: — those tokens are never written and the gate would never match.
- Else the
kb_snapshot_idvalue inworkspace/.mantis_state.json(which
architecture writes in its state-stamp step).
- Else
""(no prior KB provenance). The blanket mass-mark below is gated
as follows:
- MODE-OFF (no
active_snapshotin state — no--sync): SKIP the
freshness gate entirely. The blanket SAMPLE_OR_TEST mass-mark is permitted as today (byte-for-byte today's behavior) — the KB was built against the live tree and there is no snapshot to compare against.
- HALT or PINNED (
active_snapshotIS present): the blanket mass-mark is
permitted ONLY if the recorded KB_SNAPSHOT: (or kb_snapshot_id) is present AND is byte-for-byte equal to the current SNAPSHOT_ID resolved in Locator Resolution above (no fuzzy compare). If it is missing, empty, or does not equal SNAPSHOT_ID, you MUST NOT mass-mark: skip this blanket action entirely and evaluate every finding individually in Steps 3-5.
Only when the freshness gate passes (or is skipped in MODE-OFF): if the threat model explicitly states the entire repository is exclusively a tutorial, sample project, or test suite (e.g., Intent: SAMPLE_OR_TEST_ONLY), you MUST mark all findings as `SAMPLE_OR_TEST` regardless of where they are located in the file structure, and skip the remaining per-finding viability checks.
- Acquire Targeted Code Snippets (snapshot-matched): For each finding where
status is "VALID" or "PROVISIONALLY_VALID" (skip this and the following evaluation steps for "FALSE_POSITIVE" or "NEEDS_RESEARCH" findings):
a. Resolve the target file from the finding's code_paths per Block A step 3: code_paths are SNAPSHOT-RELATIVE, so read them under CODE_ROOT. Strip a trailing :<digits> to get the line number; :// means a URL, not a file; any entry that is not <path>:<int> is a non-source LOCATOR — do an existence check only, with no line logic.
b. Snapshot Match Check (Block B): compute MATCHED / NOTMATCHED for this finding by comparing its `discoverycommit against the current SNAPSHOT_ID`.
SNAPSHOT MATCH CHECK for finding F (decides MATCHED vs NOT_MATCHED):
1. If snapshot_pinned is false -> NOT_MATCHED. Stop.
2. Read F.discovery_commit:
- missing OR empty OR the literal "MIXED" -> NOT_MATCHED.
- not exactly equal to SNAPSHOT_ID -> NOT_MATCHED.
- exactly equal to SNAPSHOT_ID -> MATCHED.
There is no other route to MATCHED; never fuzzy-compare. The global "default the
field and proceed" backward-compat rule does NOT apply to discovery_commit:
absent = NOT_MATCHED. (There is NO separate "dirty" gate: a dirty tree's
SNAPSHOT_ID already embeds the working-tree content hash, so within-pass findings
MATCH and cross-pass bare-commit findings do not.)c. Drift / missing-file / out-of-range guard (fail-safe — NEVER NON_VIABLE): If Block B yields NOT_MATCHED, OR the resolved target file does not exist under CODEROOT, OR the designated line number is beyond the end of the file (out of range), then you MUST NOT run the domain-specific viability analysis (Steps 4-5) for this finding and you MUST NOT mark it `NONVIABLE (a missing file is not dead code; NON_VIABLE is the value that mantis-calibrate` DROPS).
Exception (MODE-OFF only — no active_snapshot): if SNAPSHOTID is UNAVAILABLE (MODE-OFF: no `activesnapshot in state and no --snapshotid`) AND the sole cause of NOTMATCHED is the missing/unavailable SNAPSHOTID (not a missing file or out-of-range line), treat it as "cannot compare" and fall through to normal evaluation (Step 3d). This preserves today's behavior for non-sync runs. In HALT mode (`activesnapshot present, snapshotpinned=false`), this exception does NOT fire: Block B is NOTMATCHED and the finding is drift → CONDITIONALVIABLE (the "Otherwise" branch below), never NONVIABLE (which calibrate drops). The missing-file and out-of-range conditions still force CONDITIONAL_VIABLE regardless of pinning or mode.
Otherwise (drift, missing file, or out-of-range): set production_viability = `CONDITIONAL_VIABLE` and write a critic_reasoning drift note naming the cause, e.g.: "Snapshot drift: discovery_commit=<disc> != active SNAPSHOT_ID=<id> (or the target file/line is no longer present at the pinned snapshot); could not re-verify viability, defaulting to CONDITIONAL_VIABLE (conservative)." Then record the update via Step 6 and continue to the next finding. (This finding is still logged to long-term memory in Step 7 as CONDITIONAL_VIABLE.)
d. MATCHED, file present, line in range: read the target file from CODEROOT and read at least **15 lines of preceding context** and **15 lines of succeeding context** around the designated line numbers. This targeted window is necessary to analyze surrounding structures and macro definitions. Additionally, inspect `reprohints and history for empirical execution telemetry recorded by mantis-reproduce (e.g. buildprofile`, `sanitizersused, assertionsdisabled`, `ingressblocked`). Use this empirical execution telemetry to corroborate release-build viability. Proceed to Steps 4-5.
- Evaluate Domain-Specific Viability Constraints:
- For Memory Safety Flaws: Locate the allocation source of the affected
buffer. Determine if it is allocated with safety margins or trailing padding. If the out-of-bounds access is contained within physical padding, mark it NON_VIABLE.
- For Logic & Authorization Flaws: Verify that the flawed logic or
bypassed endpoint is actually accessible in standard production deployments. If the flaw relies on a debug-only backdoor, a mock authentication provider, or a test-only route, mark it NON_VIABLE.
- Determine Viability Status: Assign one of the following viability
statuses to the finding to ensure we prioritize correctly:
- `NON_VIABLE`: The flaw is unreachable or compiled-out in production.
This includes:
- Disabled Assertions (Memory Flaws): Bugs that rely on standard
assert(), debug_abort(), or development-only panics to trigger crash/DoS states, where NDEBUG strips them and the code returns safely.
- Debug-Only Features: Conditionally compiled with debug flags (e.g.
#ifdef DEBUG).
- Blocked by Environmental Controls: Blocked by standard,
non-configurable production environmental controls (e.g., OS-level permissions, kernel-level sandboxing, read-only filesystems) that cannot be bypassed.
- `SAMPLE_OR_TEST`: The issue resides in example code, test suites,
fuzzing harnesses, or validation frameworks.
- `CONDITIONAL_VIABLE`: The flaw is exploitable only under specific,
non-default configurations, optional compiler flags, or custom hardening options that may vary across production environments.
- `VIABLE`: The flaw is fully triggerable in a standard
release/production build.
- Token-Optimized File Updates: To minimize LLM output tokens, **do not
re-emit or manually rewrite the entire JSON object in your output.** Instead, use in-place editing tools (like a short script in your preferred language, or jq) to programmatically append the new fields to the existing workspace/findings/<id>.json file.
You must append the following to the existing object:
- A
"production_viability"field ("VIABLE","NON_VIABLE",
"SAMPLE_OR_TEST", or "CONDITIONAL_VIABLE").
- A
"critic_reasoning"field explaining your evaluation. - An entry to the
"history"array:
{
"stage": "critic",
"action": "evaluated",
"details": "Determined production viability as [VIABLE/NON_VIABLE/SAMPLE_OR_TEST/CONDITIONAL_VIABLE] because [reason]",
"pass_number": <current_pass_number>,
"snapshot": "<SNAPSHOT_ID>",
"timestamp": "<current_iso8601_timestamp>"
}Set "snapshot" to the SNAPSHOT_ID resolved in Locator Resolution. If SNAPSHOT_ID is UNAVAILABLE (MODE-OFF), set it to "" (or omit the key). Do not fabricate an id.
- Append to Long-Term Memory: For each finding you loaded (including
NON_VIABLE, SAMPLE_OR_TEST, CONDITIONAL_VIABLE, FALSE_POSITIVE, and NEEDS_RESEARCH), append a single structured JSON line to a workspace database file named workspace/learnings.jsonl (using append mode). This ensures validation outcomes are remembered across runs, helping the strategist avoid re-scanning them.
- Memory Entry Format:
{"title": "[security_flaw_title]", "code_paths": ["[path1:line1]"], "status": "[VIABLE / CONDITIONAL_VIABLE / NON_VIABLE / SAMPLE_OR_TEST / FALSE_POSITIVE / NEEDS_RESEARCH]", "snapshot": "[current SNAPSHOT_ID, or omit in MODE-OFF]"}
When complete, notify the user.

