Systematic Debugging
Overview
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.
The Iron Law
NO FIXES WITHOUT ROOT CAUSE INVESTIGATION FIRST
If you haven't completed Phase 1, you cannot propose fixes.
When to Use
Use for ANY technical issue:
- Test failures
- Bugs in production
- Unexpected behavior
- Performance problems
- Build failures
- Integration issues
Use this ESPECIALLY when:
- Under time pressure (emergencies make guessing tempting)
- "Just one quick fix" seems obvious
- You've already tried multiple fixes
- Previous fix didn't work
- You don't fully understand the issue
Don't skip when:
- Issue seems simple (simple bugs have root causes too)
- You're in a hurry (rushing guarantees rework)
- Manager wants it fixed NOW (systematic is faster than thrashing)
The Four Phases
You MUST complete each phase before proceeding to the next.
Phase 1: Root Cause Investigation
BEFORE attempting ANY fix:
Read Error Messages Carefully
- Don't skip past errors or warnings
- They often contain the exact solution
- Read stack traces completely
- Note line numbers, file paths, error codes
Reproduce Consistently
- Can you trigger it reliably?
- What are the exact steps?
- Does it happen every time?
- If not reproducible → gather more data, don't guess
Check Recent Changes
- What changed that could cause this?
- Git diff, recent commits
- New dependencies, config changes
- Environmental differences
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 CI/build 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 ✗)
Example — web application (POST /api/login returns 500 on valid credentials):
Trace through the request handler to find where the 500 originates, then follow into the auth service to check credential validation logic, then follow into the database query to verify the user lookup returns the expected row and that password comparison is correct.
Example — database performance (query takes 30s instead of <100ms):
Profile the query with EXPLAIN ANALYZE (or equivalent), check whether relevant indexes exist and are being used, examine the query plan for sequential scans on large tables, and verify that query parameters are not causing implicit type casts that prevent index use.
Trace Data Flow
WHEN error is deep in call stack:
To trace root cause: start at the error line, follow the call stack upward, note each function's inputs and outputs until you find where expected behavior diverges from actual behavior.
Quick version:
- Where does bad value originate?
- What called this with bad value?
- Keep tracing up until you find the source
- Fix at source, not at symptom
Phase 1 is complete when you have written:
"The bug is: [observable behavior]. Expected: [correct behavior]. First occurrence: [specific file:line or event]. Possible cause: [one hypothesis]."
You cannot proceed to Phase 2 until you have written this statement.
Phase 2: Pattern Analysis
Find the pattern before fixing:
Find Working Examples
- Locate similar working code in same codebase
- What works that's similar to what's broken?
Compare Against References
- If implementing pattern, read reference implementation COMPLETELY
- Don't skim - read every line
- Understand the pattern fully before applying
Identify Differences
- What's different between working and broken?
- List every difference, however small
- Don't assume "that can't matter"
Understand Dependencies
- What other components does this need?
- What settings, config, environment?
- What assumptions does it make?
Phase 3: Hypothesis and Testing
Scientific method:
Form Single Hypothesis
- State clearly: "I think X is the root cause because Y"
- Write it down
- Be specific, not vague
Test Minimally
- Make the SMALLEST possible change to test hypothesis
- One variable at a time
- Don't fix multiple things at once
Verify Before Continuing
- Did it work? Yes → Phase 4
- Didn't work? Form NEW hypothesis
- DON'T add more fixes on top
When You Don't Know
- Say "I don't understand X"
- Don't pretend to know
- Ask for help
- Research more
Phase 4: Implementation
Fix the root cause, not the symptom:
Create Failing Test Case
- Simplest possible reproduction
- Automated test if possible
- One-off test script if no framework
- MUST have before fixing
- Load the
test-driven-development skill for writing proper failing tests
Implement Single Fix
- Address the root cause identified
- ONE change at a time
- No "while I'm here" improvements
- No bundled refactoring
Verify Fix
- Test passes now?
- No other tests broken?
- Issue actually resolved?
If Fix Doesn't Work
- STOP
- Count: How many fixes have you tried?
- If < 3: Return to Phase 1, re-analyze with new information
- If ≥ 3: STOP and question the architecture (step 5 below)
- DON'T attempt Fix #4 without architectural discussion
If 3+ Fixes Failed: Question Architecture
Pattern indicating architectural problem:
- Each fix reveals new shared state/coupling/problem in different place
- Fixes require "massive refactoring" to implement
- Each fix creates new symptoms elsewhere
STOP and question fundamentals:
- Is this pattern fundamentally sound?
- Are we "sticking with it through sheer inertia"?
- Should we refactor architecture vs. continue fixing symptoms?
Discuss with your human partner before attempting more fixes
This is NOT a failed hypothesis - this is a wrong architecture.
Red Flags - STOP and Follow Process
If you catch yourself thinking:
- "Quick fix for now, investigate later"
- "Just try changing X and see if it works"
- "Add multiple changes, run tests"
- "Skip the test, I'll manually verify"
- "It's probably X, let me fix that"
- "I don't fully understand but this might work"
- "Pattern says X but I'll adapt it differently"
- "Here are the main problems: [lists fixes without investigation]"
- Proposing solutions before tracing data flow
- "One more fix attempt" (when already tried 2+)
- Each fix reveals new problem in different place
ALL of these mean: STOP. Return to Phase 1.
If 3+ fixes failed: Question the architecture (see Phase 4.5)
your human partner's Signals You're Doing It Wrong
Watch for these redirections:
- "Is that not happening?" - You assumed without verifying
- "Will it show us...?" - You should have added evidence gathering
- "Stop guessing" - You're proposing fixes without understanding
- "Ultrathink this" - Question fundamentals, not just symptoms
- "We're stuck?" (frustrated) - Your approach isn't working
When you see these: STOP. Return to Phase 1.
Common Rationalizations
| 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. |
Quick Reference
| Phase |
Key Activities |
Success Criteria |
| 1. Root Cause |
Read errors, reproduce, check changes, gather evidence |
Written statement: "The bug is: [observable behavior]. Expected: [correct behavior]. First occurrence: [specific file:line or event]. Possible cause: [one hypothesis]." |
| 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 |
When Process Reveals "No Root Cause"
If systematic investigation reveals issue is truly environmental, timing-dependent, or external:
- You've completed the process
- Document what you investigated
- Implement appropriate handling (retry, timeout, error message)
- Add monitoring/logging for future investigation
But: 95% of "no root cause" cases are incomplete investigation.
Supporting Techniques
These techniques support systematic debugging:
- Trace root cause - Start at the error line, follow the call stack upward, note each function's inputs and outputs until you find where expected behavior diverges from actual behavior.
- Add validation at multiple layers - After finding root cause, add defensive checks at each component boundary to catch similar issues earlier in future.
- Replace arbitrary timeouts with condition polling - When waiting for async state, poll the condition with a timeout rather than sleeping a fixed duration.
Related skills:
- test-driven-development - For creating failing test case (Phase 4, Step 1)
- verification-before-completion - Verify fix worked before claiming success
Real-World Impact
From debugging sessions:
- Systematic approach: 15-30 minutes to fix
- Random fixes approach: 2-3 hours of thrashing
- First-time fix rate: 95% vs 40%
- New bugs introduced: Near zero vs common
1---2name: systematic-debugging3description: Use when encountering any bug, test failure, or unexpected behavior, before proposing fixes4---56# Systematic Debugging78## Overview910Random fixes waste time and create new bugs. Quick patches mask underlying issues.1112**Core principle:** ALWAYS find root cause before attempting fixes. Symptom fixes are failure.1314**Violating the letter of this process is violating the spirit of debugging.**1516## The Iron Law1718```19NO FIXES WITHOUT ROOT CAUSE INVESTIGATION FIRST20```2122If you haven't completed Phase 1, you cannot propose fixes.2324## When to Use2526Use for ANY technical issue:27- Test failures28- Bugs in production29- Unexpected behavior30- Performance problems31- Build failures32- Integration issues3334**Use this ESPECIALLY when:**35- Under time pressure (emergencies make guessing tempting)36- "Just one quick fix" seems obvious37- You've already tried multiple fixes38- Previous fix didn't work39- You don't fully understand the issue4041**Don't skip when:**42- Issue seems simple (simple bugs have root causes too)43- You're in a hurry (rushing guarantees rework)44- Manager wants it fixed NOW (systematic is faster than thrashing)4546## The Four Phases4748You MUST complete each phase before proceeding to the next.4950### Phase 1: Root Cause Investigation5152**BEFORE attempting ANY fix:**53541. **Read Error Messages Carefully**55 - Don't skip past errors or warnings56 - They often contain the exact solution57 - Read stack traces completely58 - Note line numbers, file paths, error codes59602. **Reproduce Consistently**61 - Can you trigger it reliably?62 - What are the exact steps?63 - Does it happen every time?64 - If not reproducible → gather more data, don't guess65663. **Check Recent Changes**67 - What changed that could cause this?68 - Git diff, recent commits69 - New dependencies, config changes70 - Environmental differences71724. **Gather Evidence in Multi-Component Systems**7374 **WHEN system has multiple components (CI → build → signing, API → service → database):**7576 **BEFORE proposing fixes, add diagnostic instrumentation:**77 ```78 For EACH component boundary:79 - Log what data enters component80 - Log what data exits component81 - Verify environment/config propagation82 - Check state at each layer8384 Run once to gather evidence showing WHERE it breaks85 THEN analyze evidence to identify failing component86 THEN investigate that specific component87 ```8889 **Example — multi-layer CI/build system:**90 ```bash91 # Layer 1: Workflow92 echo "=== Secrets available in workflow: ==="93 echo "IDENTITY: ${IDENTITY:+SET}${IDENTITY:-UNSET}"9495 # Layer 2: Build script96 echo "=== Env vars in build script: ==="97 env | grep IDENTITY || echo "IDENTITY not in environment"9899 # Layer 3: Signing script100 echo "=== Keychain state: ==="101 security list-keychains102 security find-identity -v103104 # Layer 4: Actual signing105 codesign --sign "$IDENTITY" --verbose=4 "$APP"106 ```107108 **This reveals:** Which layer fails (secrets → workflow ✓, workflow → build ✗)109110 **Example — web application (POST /api/login returns 500 on valid credentials):**111 Trace through the request handler to find where the 500 originates, then follow into the auth service to check credential validation logic, then follow into the database query to verify the user lookup returns the expected row and that password comparison is correct.112113 **Example — database performance (query takes 30s instead of <100ms):**114 Profile the query with EXPLAIN ANALYZE (or equivalent), check whether relevant indexes exist and are being used, examine the query plan for sequential scans on large tables, and verify that query parameters are not causing implicit type casts that prevent index use.1151165. **Trace Data Flow**117118 **WHEN error is deep in call stack:**119120 To trace root cause: start at the error line, follow the call stack upward, note each function's inputs and outputs until you find where expected behavior diverges from actual behavior.121122 **Quick version:**123 - Where does bad value originate?124 - What called this with bad value?125 - Keep tracing up until you find the source126 - Fix at source, not at symptom127128**Phase 1 is complete when you have written:**129130> "The bug is: [observable behavior]. Expected: [correct behavior]. First occurrence: [specific file:line or event]. Possible cause: [one hypothesis]."131132You cannot proceed to Phase 2 until you have written this statement.133134### Phase 2: Pattern Analysis135136**Find the pattern before fixing:**1371381. **Find Working Examples**139 - Locate similar working code in same codebase140 - What works that's similar to what's broken?1411422. **Compare Against References**143 - If implementing pattern, read reference implementation COMPLETELY144 - Don't skim - read every line145 - Understand the pattern fully before applying1461473. **Identify Differences**148 - What's different between working and broken?149 - List every difference, however small150 - Don't assume "that can't matter"1511524. **Understand Dependencies**153 - What other components does this need?154 - What settings, config, environment?155 - What assumptions does it make?156157### Phase 3: Hypothesis and Testing158159**Scientific method:**1601611. **Form Single Hypothesis**162 - State clearly: "I think X is the root cause because Y"163 - Write it down164 - Be specific, not vague1651662. **Test Minimally**167 - Make the SMALLEST possible change to test hypothesis168 - One variable at a time169 - Don't fix multiple things at once1701713. **Verify Before Continuing**172 - Did it work? Yes → Phase 4173 - Didn't work? Form NEW hypothesis174 - DON'T add more fixes on top1751764. **When You Don't Know**177 - Say "I don't understand X"178 - Don't pretend to know179 - Ask for help180 - Research more181182### Phase 4: Implementation183184**Fix the root cause, not the symptom:**1851861. **Create Failing Test Case**187 - Simplest possible reproduction188 - Automated test if possible189 - One-off test script if no framework190 - MUST have before fixing191 - Load the `test-driven-development` skill for writing proper failing tests1921932. **Implement Single Fix**194 - Address the root cause identified195 - ONE change at a time196 - No "while I'm here" improvements197 - No bundled refactoring1981993. **Verify Fix**200 - Test passes now?201 - No other tests broken?202 - Issue actually resolved?2032044. **If Fix Doesn't Work**205 - STOP206 - Count: How many fixes have you tried?207 - If < 3: Return to Phase 1, re-analyze with new information208 - **If ≥ 3: STOP and question the architecture (step 5 below)**209 - DON'T attempt Fix #4 without architectural discussion2102115. **If 3+ Fixes Failed: Question Architecture**212213 **Pattern indicating architectural problem:**214 - Each fix reveals new shared state/coupling/problem in different place215 - Fixes require "massive refactoring" to implement216 - Each fix creates new symptoms elsewhere217218 **STOP and question fundamentals:**219 - Is this pattern fundamentally sound?220 - Are we "sticking with it through sheer inertia"?221 - Should we refactor architecture vs. continue fixing symptoms?222223 **Discuss with your human partner before attempting more fixes**224225 This is NOT a failed hypothesis - this is a wrong architecture.226227## Red Flags - STOP and Follow Process228229If you catch yourself thinking:230- "Quick fix for now, investigate later"231- "Just try changing X and see if it works"232- "Add multiple changes, run tests"233- "Skip the test, I'll manually verify"234- "It's probably X, let me fix that"235- "I don't fully understand but this might work"236- "Pattern says X but I'll adapt it differently"237- "Here are the main problems: [lists fixes without investigation]"238- Proposing solutions before tracing data flow239- **"One more fix attempt" (when already tried 2+)**240- **Each fix reveals new problem in different place**241242**ALL of these mean: STOP. Return to Phase 1.**243244**If 3+ fixes failed:** Question the architecture (see Phase 4.5)245246## your human partner's Signals You're Doing It Wrong247248**Watch for these redirections:**249- "Is that not happening?" - You assumed without verifying250- "Will it show us...?" - You should have added evidence gathering251- "Stop guessing" - You're proposing fixes without understanding252- "Ultrathink this" - Question fundamentals, not just symptoms253- "We're stuck?" (frustrated) - Your approach isn't working254255**When you see these:** STOP. Return to Phase 1.256257## Common Rationalizations258259| Excuse | Reality |260|--------|---------|261| "Issue is simple, don't need process" | Simple issues have root causes too. Process is fast for simple bugs. |262| "Emergency, no time for process" | Systematic debugging is FASTER than guess-and-check thrashing. |263| "Just try this first, then investigate" | First fix sets the pattern. Do it right from the start. |264| "I'll write test after confirming fix works" | Untested fixes don't stick. Test first proves it. |265| "Multiple fixes at once saves time" | Can't isolate what worked. Causes new bugs. |266| "Reference too long, I'll adapt the pattern" | Partial understanding guarantees bugs. Read it completely. |267| "I see the problem, let me fix it" | Seeing symptoms ≠ understanding root cause. |268| "One more fix attempt" (after 2+ failures) | 3+ failures = architectural problem. Question pattern, don't fix again. |269270## Quick Reference271272| Phase | Key Activities | Success Criteria |273|-------|---------------|------------------|274| **1. Root Cause** | Read errors, reproduce, check changes, gather evidence | Written statement: "The bug is: [observable behavior]. Expected: [correct behavior]. First occurrence: [specific file:line or event]. Possible cause: [one hypothesis]." |275| **2. Pattern** | Find working examples, compare | Identify differences |276| **3. Hypothesis** | Form theory, test minimally | Confirmed or new hypothesis |277| **4. Implementation** | Create test, fix, verify | Bug resolved, tests pass |278279## When Process Reveals "No Root Cause"280281If systematic investigation reveals issue is truly environmental, timing-dependent, or external:2822831. You've completed the process2842. Document what you investigated2853. Implement appropriate handling (retry, timeout, error message)2864. Add monitoring/logging for future investigation287288**But:** 95% of "no root cause" cases are incomplete investigation.289290## Supporting Techniques291292These techniques support systematic debugging:293294- **Trace root cause** - Start at the error line, follow the call stack upward, note each function's inputs and outputs until you find where expected behavior diverges from actual behavior.295- **Add validation at multiple layers** - After finding root cause, add defensive checks at each component boundary to catch similar issues earlier in future.296- **Replace arbitrary timeouts with condition polling** - When waiting for async state, poll the condition with a timeout rather than sleeping a fixed duration.297298**Related skills:**299- **test-driven-development** - For creating failing test case (Phase 4, Step 1)300- **verification-before-completion** - Verify fix worked before claiming success301302## Real-World Impact303304From debugging sessions:305- Systematic approach: 15-30 minutes to fix306- Random fixes approach: 2-3 hours of thrashing307- First-time fix rate: 95% vs 40%308- New bugs introduced: Near zero vs common