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diagnose

Structured 6-phase debugging. Build feedback loop first, reproduce deterministically, hypothesize with ranked falsifiable theories, instrument one variable at a time, fix with regression test, cleanup. Use when a bug exists, tests fail unexpectedly, or behavior is wrong and cause is unknown.

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/supergraph:diagnose

Systematic debugging. Never guess and patch — build a feedback loop, prove the hypothesis, fix once.

Announce: "🐛 /supergraph:diagnose — building feedback loop..."

Setup

Read .supergraph-env for test/lint commands (if exists):

[ -f .supergraph-env ] && source .supergraph-env

This sets $TEST_CMD, $FOCUSED_TEST_CMD, $LINT_CMD. If absent, detect from project config (package.json → jest/vitest, pubspec.yaml → flutter test, etc.) same as /supergraph:scan.

Phases

Phase 1 — Build Feedback Loop

Before touching any code, establish a fast, deterministic way to observe the bug.

# Identify the smallest command that shows the failure
$TEST_CMD --grep "<failing test name>"   # focused test run
# or
<minimal repro command>

Goal: failure visible in < 5 seconds. If not, slim down the repro. Do NOT skip this phase. Debugging without a feedback loop is guessing.

Phase 2 — Reproduce Cleanly

  • Run the feedback loop 3 times — confirm it fails consistently
  • Capture exact error output, stack trace, exit code
  • Note any flakiness → treat as separate bug before continuing
  • Add a failing regression test if one doesn't exist:
    test("<bug description>", () => { ... }) // RED
    

Phase 3 — Hypothesize (3-5 ranked theories)

List falsifiable hypotheses, ordered most-to-least likely:

1. [Most likely] — [reason] — [how to falsify]
2. [Second]      — [reason] — [how to falsify]
3. [Third]       — [reason] — [how to falsify]

Rules:

  • Each hypothesis must be falsifiable (observable test to disprove it)
  • No implementation yet — only theories
  • Use graph context if available:
    search_graph(project=CBM_PROJECT, name_pattern=<suspect>)
    trace_path(project=CBM_PROJECT, direction="inbound")
    trace_path(project=CBM_PROJECT, direction="outbound")
    

Phase 4 — Instrument (one variable at a time)

Test hypothesis #1 first. Change ONE thing to observe ONE signal:

  • Add targeted log/assertion near the suspect code
  • Run feedback loop → confirm or refute
  • Remove instrumentation after each test — never accumulate debug logs
  • If refuted → move to hypothesis #2
  • Stop when hypothesis is confirmed

Rule: Never change the code under test and the instrumentation simultaneously.

Phase 5 — Fix + Regression Test

Once root cause is confirmed:

  1. Write/update the regression test first (stays RED)
  2. Apply minimal fix
  3. Run feedback loop → GREEN
  4. Run full test suite → no regressions
  5. Run lint: $LINT_CMD

Minimal fix means: fix the cause, not the symptom. If the fix touches a hub node → get user approval first. If search/trace returns empty, label graph evidence unavailable and fall back to Serena/filesystem evidence. Use the validated test-gaps recipe for missing tests.

Phase 6 — Cleanup + Post-mortem

  • Remove all debug instrumentation and temp files
  • Update CONTEXT.md if bug revealed a hidden domain invariant
  • One-sentence post-mortem:
    Root cause: [X]
    Fix: [Y]
    Prevented recurrence by: [regression test / invariant documented]
    
  • Checkpoint:
    git add [exact files]
    git commit -m "fix: <description>"
    

Report

✅ /supergraph:diagnose complete
- Root cause: [confirmed hypothesis]
- Fix: [what changed]
- Regression test: [test name / path]
- Tests: PASS | Lint: PASS
- Next: /supergraph:fix (if more issues) or /supergraph:verify

Rules

  • Never skip Phase 1 — feedback loop is mandatory
  • Never change two variables simultaneously in Phase 4
  • Never commit without a regression test
  • If hypotheses exhausted with no match → stop, report to user with all observations

レビュー

まだレビューはありません。使ってみた感想をお寄せください。

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