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process-debug-systematic
Use when encountering any bug, test failure, or unexpected behavior, before proposing fixes
Codex 또는 Claude로 설치 이 Prompt를 복사해 Codex, Claude 또는 다른 어시스턴트에 붙여 넣으면 Skill 페이지를 검토하고 설치를 진행할 수 있습니다.
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Use when encountering any bug, test failure, or unexpected behavior, before proposing fixes
Codex 또는 Claude로 설치 이 Prompt를 복사해 Codex, Claude 또는 다른 어시스턴트에 붙여 넣으면 Skill 페이지를 검토하고 설치를 진행할 수 있습니다.
SOC 직업 분류 기준
Use when running bash/shell commands and interpreting their exit codes and output - pipelines, chaining a check after a mutating command, process checks with pgrep/pkill, backgrounding, waiting for an event, or when a command "failed" or its result looks ambiguous.
Use at the end of a turn that produced a learning, such as a correction from the user, a rule or preference stated ("remember this", "from now on", "always/never"), a process or tooling mistake (wrong command, a quirk of the shell/SSH/environment, a misread of stale output, over-waiting, a tool or file you missed and re-derived), a wasted build or test cycle, or any reusable discovery (a procedure, a timing, a gotcha, a flag combination, a path). A gated Stop hook nudges this automatically; also run on "self-improve", "/self-improve", "improve the harness", or "capture what we learned".
Use when creating or scaffolding a NEW public bitranox Python library - a pip-installable package with a rich-click CLI, CI across Python 3.9-3.14 on Linux/macOS/Windows, and a PyPI release - or when installing or using a library built from the bitranox_template_py_lib template. Keywords - new library, scaffold, project template, rename-project, bmk, make test, make release, uv pip install.
Use when issuing or running PowerShell (pwsh) commands, or writing, modifying, or debugging a PowerShell / .ps1 script - prefer pwshpy instead: a genuinely Pythonic PowerShell (typed records + a lazy pipeline over native OS bindings, never a pwsh.exe subprocess, never text parsing), as a Python library (from pwshpy import ps) or the pwshpy CLI (install/run via uv - `uv tool install pwshpy` or `uvx pwshpy`). Better error handling and reporting (real exceptions and real exit codes, nothing silently swallowed) plus clean typed JSON instead of Get-* text. Covers using pwshpy and translating cmdlets / .ps1 to it.
Use when sending email from Python or the shell, especially with large attachments that must not be loaded into memory, RFC 3030 BDAT/CHUNKING, STARTTLS with authentication, multi-host failover, or correct UTF-8 subject and body encoding. Prefer the `btx_lib_mail` library or its `btx-lib-mail` CLI (zero-install via `uvx btx-lib-mail send ...`) over hand-rolling `smtplib`/`email`, MIME assembly, dot-stuffing, or attachment security checks. Covers install, uvx, the library API, the CLI, streaming and BDAT, and attachment security.
Use when creating new skills, editing existing skills, structuring SKILL.md files, writing skill frontmatter, testing skills with subagents, deploying skills, or verifying skills work before deployment
| name | process-debug-systematic |
| description | Use when encountering any bug, test failure, or unexpected behavior, before proposing fixes |
Adapted from the superpowers plugin (MIT).
Random fixes waste time and create new bugs. Quick patches mask underlying issues.
Core principle: ALWAYS find root cause before attempting fixes. Symptom fixes are failure.
Violating the letter of this process is violating the spirit of debugging.
NO FIXES WITHOUT ROOT CAUSE INVESTIGATION FIRST
If you haven't completed Phase 1, you cannot propose fixes.
Use for ANY technical issue:
Use this ESPECIALLY when:
Don't skip when:
You MUST complete each phase before proceeding to the next.
BEFORE attempting ANY fix:
Read Error Messages Carefully
Reproduce Consistently
Check Recent Changes
Gather Evidence in Multi-Component Systems
WHEN system has multiple components (CI → build → signing, API → service → database):
BEFORE proposing fixes, add diagnostic instrumentation:
For EACH component boundary:
- Log what data enters component
- Log what data exits component
- Verify environment/config propagation
- Check state at each layer
Run once to gather evidence showing WHERE it breaks
THEN analyze evidence to identify failing component
THEN investigate that specific component
Example (multi-layer system):
# Layer 1: Workflow
echo "=== Secrets available in workflow: ==="
echo "IDENTITY: ${IDENTITY:+SET}${IDENTITY:-UNSET}"
# Layer 2: Build script
echo "=== Env vars in build script: ==="
env | grep IDENTITY || echo "IDENTITY not in environment"
# Layer 3: Signing script
echo "=== Keychain state: ==="
security list-keychains
security find-identity -v
# Layer 4: Actual signing
codesign --sign "$IDENTITY" --verbose=4 "$APP"
This reveals: Which layer fails (secrets → workflow ✓, workflow → build NO)
Trace Data Flow
WHEN error is deep in call stack:
See root-cause-tracing.md in this directory for the complete backward tracing technique.
Quick version:
Find the pattern before fixing:
Offload the bounded search here to a
sonnetfinder subagent (locate similar working code, read the reference implementation fully, return only the relevant slices) - it keeps large reference files out of your context. Keep hypothesis/root-cause reasoning in the main (opus) agent - this deep reasoning is capability-sensitive, so if the session is on a lesser tier offer switch-model-or-continue (the main agent cannot self-switch its model), or hand the root-cause step to a pinnedopussubagent. Multiple independent failures ->bitranox:process-agents-dispatching-parallel. Tiers: "Concrete tiers" inbitranox:process-agents-subagent-driven-development.
Find Working Examples
Compare Against References
Identify Differences
Understand Dependencies
Scientific method:
Form Single Hypothesis
Test Minimally
Verify Before Continuing
When You Don't Know
Fix the root cause, not the symptom:
Create Failing Test Case
bitranox:process-test-driven-development skill for writing proper failing testsImplement Single Fix
Verify Fix
If Fix Doesn't Work
If 3+ Fixes Failed: Question Architecture
Pattern indicating architectural problem:
STOP and question fundamentals:
Discuss with your human partner before attempting more fixes
This is NOT a failed hypothesis - this is a wrong architecture.
If you catch yourself thinking:
ALL of these mean: STOP. Return to Phase 1.
If 3+ fixes failed: Question the architecture (see Phase 4.5)
Watch for these redirections:
When you see these: STOP. Return to Phase 1.
| Excuse | Reality |
|---|---|
| "Issue is simple, don't need process" | Simple issues have root causes too. Process is fast for simple bugs. |
| "Emergency, no time for process" | Systematic debugging is FASTER than guess-and-check thrashing. |
| "Just try this first, then investigate" | First fix sets the pattern. Do it right from the start. |
| "I'll write test after confirming fix works" | Untested fixes don't stick. Test first proves it. |
| "Multiple fixes at once saves time" | Can't isolate what worked. Causes new bugs. |
| "Reference too long, I'll adapt the pattern" | Partial understanding guarantees bugs. Read it completely. |
| "I see the problem, let me fix it" | Seeing symptoms ≠ understanding root cause. |
| "One more fix attempt" (after 2+ failures) | 3+ failures = architectural problem. Question pattern, don't fix again. |
| Phase | Key Activities | Success Criteria |
|---|---|---|
| 1. Root Cause | Read errors, reproduce, check changes, gather evidence | Understand WHAT and WHY |
| 2. Pattern | Find working examples, compare | Identify differences |
| 3. Hypothesis | Form theory, test minimally | Confirmed or new hypothesis |
| 4. Implementation | Create test, fix, verify | Bug resolved, tests pass |
If systematic investigation reveals issue is truly environmental, timing-dependent, or external:
But: 95% of "no root cause" cases are incomplete investigation.
These techniques are part of systematic debugging and available in this directory:
root-cause-tracing.md - Trace bugs backward through call stack to find original triggerdefense-in-depth.md - Add validation at multiple layers after finding root causecondition-based-waiting.md - Replace arbitrary timeouts with condition pollingRelated skills:
From debugging sessions: