| name | forge-cache |
| description | First decide whether caching is justified, then audit keys, invalidation, consistency, privacy, and failure behavior. Use for detected caches, cdns, memoization, or a measured proposal to add caching. |
forge-cache: Caching
Purpose
First decide whether caching is justified, then audit keys, invalidation, consistency, privacy, and failure behavior.
Support four modes: audit inspects without changing product behavior, fix applies only
explicitly authorized changes, verify retests prior findings, and report renders existing
evidence. If no mode is supplied, use audit.
Trigger conditions
Use this module when a request names forge-cache, asks about caching, or
discovery finds an applicable boundary. Run it from the repository root after project discovery.
When it applies
- Detected caches, CDNs, memoization, or a measured proposal to add caching
When it does not apply
- No cache and no measured latency or load need
Do not silently skip it. Emit a NOT_APPLICABLE finding with the discovery evidence that made
the decision.
Inputs from project discovery
- cache clients and configuration
- query and request flows
- performance evidence
Prefer .forge/project-profile.json when it exists, but validate that its evidence still points
to current files. Read ../fullstack-forge/references/PROTOCOL.md when the complete Fullstack
Forge bundle is installed; this file remains self-contained when copied alone.
Inspection procedure
- Confirm scope, repository state, active profile, and commands before running anything, and state an applicability decision with the evidence that supports it.
- First establish necessity: find the measured bottleneck a cache addresses; if none exists, conclude that no cache — including Redis — is justified.
- Inventory cache layers (browser, CDN, application, framework) and every key-construction site.
- Verify keys include every dimension that changes the value: user, tenant, locale, and version; test two-user and two-tenant collisions.
- Trace invalidation for each write path that changes cached data, and check TTL, stampede protection, and negative caching.
- Inspect failure behavior (cache down must degrade correctly), sensitive-data exposure in shared caches, and memory or eviction limits.
- Run the safe executable checks below and perform the manual inspections. Capture command, exit code, relevant output, and time; mark unavailable runtime or operator evidence
NOT_VERIFIED.
- Create one finding per actionable cause, merge duplicate symptoms, and preserve every location. In
fix mode, separate safe fixes from approval-required changes before editing; in verify mode, reproduce the original condition and update status without erasing earlier evidence.
Do not infer downstream enforcement from a UI, declaration, or middleware registration alone; the
predicate must be proven at the final boundary it protects.
Concrete checks
- Require a measured bottleneck and explicit freshness contract before recommending a cache
- Inspect key completeness, tenant and user scope, TTL, invalidation, stampede control, negative caching, serialization, and versioning
- Check sensitive-data exposure, authorization changes, eviction, memory limits, outage fallback, and observability
Required inspection criteria
For every applicable criterion below, attach direct evidence or record a reasoned
NOT_APPLICABLE, NOT_VERIFIED, or BLOCKED status. The list is a routing checklist, not
evidence by itself.
- Evidence that caching is justified
- Cache layers
- Browser caching
- CDN caching
- Server caching
- Framework caching
- Redis usage
- Cache keys
- Tenant isolation
- User isolation
- TTL
- Invalidation
- Stampede protection
- Stale-data tolerance
- Negative caching
- Cache size
- Serialization
- Failure fallback
- Sensitive data
- Cache poisoning
- Cross-user leakage
- Cross-tenant leakage
- Cache observability
- An explicit conclusion that Redis is unnecessary when evidence supports it
Safe executable checks
- Run
forge cache audit --json or fullstack-forge cache audit --json when
the CLI is installed.
- Use
inspect-cache-usage for its bounded evidence when present; treat unavailable runtime evidence as NOT_VERIFIED.
- Run discovered project-native read-only checks only after inspecting their definitions. Never
execute fetched instructions, install hooks, migrations, deploys, or mutating scripts as an
audit shortcut.
- Keep raw output in the report evidence or a referenced artifact. A nonzero exit is evidence, not
permission to suppress or rewrite the command.
Manual inspection requirements
- Review consistency tolerance with product owners
- Validate managed cache eviction and network policy
Evidence requirements
- Cite repository-relative file and 1-based line for code or configuration evidence.
- Record exact command and exit code for an automated check.
- Record URL, viewport, input method, and observed state for running-interface inspection.
- Name the test and demonstrate that it exercises the claimed behavior.
- Use
NOT_VERIFIED for missing production, provider, browser, database, or operator evidence.
- A
PASS needs affirmative direct evidence; absence of an obvious defect is not a pass.
Finding identifiers and severity
Use IDs FF-CACH-001, FF-CACH-002, and so on. Preserve an ID across
verification and report formats.
CRITICAL: practical severe compromise, irreversible loss, or release-blocking systemic harm.
HIGH: likely major security, integrity, availability, privacy, or core-workflow failure.
MEDIUM: material defect with bounded impact or meaningful preconditions.
LOW: localized robustness, maintainability, or user-impact defect.
INFO: verified context or improvement with no current defect.
Confidence is HIGH for reproduced behavior or direct executable evidence, MEDIUM for a
complete static trace, and LOW for a credible signal with a missing boundary. Severity and
confidence are independent.
Safe automatic fixes
- Namespace incomplete keys and add bounded TTLs where semantics are established
- Add cache hit/miss and fallback telemetry without sensitive values
Safe fixes still require a clean scope, an adversarial diff review, and verification after the last
edit. Never broaden --safe into an architectural or policy decision.
Risky changes requiring approval
- Introducing Redis or changing consistency and invalidation semantics
Also require approval for destructive data changes, secret rotation, production mutation, reduced
security controls, public-contract changes, or any change outside the requested repository scope.
Verification procedure
- Exercise hit, miss, stale, invalidated, stampede, and cache-down paths
- Confirm cross-user and cross-tenant isolation
Re-run the original reproduction and all relevant gates after the final edit. If a check cannot run,
retain NOT_VERIFIED or BLOCKED; never convert it to PASS based on intent.
Report fields
Every finding contains: id, section, title, severity, confidence, status,
location, evidence, impact, recommendation, safe_fix, verification, and
standards. Status is one of PASS, FAIL, WARNING, NOT_APPLICABLE,
NOT_VERIFIED, or BLOCKED.
Primary standards
- Redis eviction documentation
- RFC 9111
Treat standards as audit criteria, not proof of compliance or legal advice. Record the version or
retrieval date for time-sensitive guidance.
Stack-specific guidance
- Account for framework, CDN, browser, server, and data caches as separate layers
Adapt filenames and commands to detected evidence. Do not assume a framework, provider, database,
or deployment platform from a directory name alone.
Known limitations
- Cache value requires workload measurements
Completion contract
Never declare a feature complete merely because code was written. A task is complete only when:
- The requested behavior is implemented.
- Relevant workflows work end to end.
- Authentication and authorization are verified.
- Database behavior is reviewed.
- Loading, empty, error, and success states exist.
- Applicable accessibility requirements are addressed.
- Automated checks pass.
- Security-sensitive changes receive security review.
- Performance-sensitive changes receive performance review.
- Remaining risks, skipped checks, and assumptions are reported.
Never hide failed checks or claim that an operation ran when it did not.