| name | deep-analysis |
| description | Deep exploration and synthesis workflow using dynamic planning and hub-and-spoke coordination. Use when asked for "deep analysis", "deep understanding", "analyze codebase", "explore and analyze", or "investigate codebase". |
| dependencies | ["code-explorer","code-synthesizer"] |
Deep Analysis Workflow
Execute a structured exploration + synthesis workflow using hub-and-spoke coordination. The lead performs rapid reconnaissance to generate dynamic focus areas, composes a team plan for review, workers explore independently, and a synthesizer merges findings with shell-powered investigation.
This skill can be invoked standalone or loaded by other skills as a reusable building block. Approval behavior is configurable.
Settings Check
Goal: Determine whether the team plan requires user approval before execution.
-
Read settings file:
- Check configuration for
deep-analysis.direct-invocation-approval (default: true)
- Check configuration for
deep-analysis.invocation-by-skill-approval (default: false)
- If settings are missing or malformed, use defaults
-
Determine invocation mode:
- Direct invocation: The user invoked deep-analysis directly, or it is running standalone
- Skill-invoked: Another skill (e.g., codebase-analysis, feature-dev, docs-manager) loaded and is executing this workflow
-
Resolve settings:
- If settings were found, use them as-is
- If settings are missing, use defaults
- If settings are malformed, warn the user and use defaults
-
Set REQUIRE_APPROVAL:
- If direct invocation: use
direct-invocation-approval value (default: true)
- If skill-invoked: use
invocation-by-skill-approval value (default: false)
-
Parse session settings:
- Check configuration for
deep-analysis.cache-ttl-hours (default: 24). Number of hours before exploration cache expires. Set to 0 to disable caching entirely.
- Check configuration for
deep-analysis.enable-checkpointing (default: true). Whether to write session checkpoints at phase boundaries.
- Check configuration for
deep-analysis.enable-progress-indicators (default: true). Whether to display phase progress messages.
-
Set behavioral flags:
CACHE_TTL = value of cache-ttl-hours (default: 24)
ENABLE_CHECKPOINTING = value of enable-checkpointing (default: true)
ENABLE_PROGRESS = value of enable-progress-indicators (default: true)
Phase 0: Session Setup
Goal: Check for cached exploration results, detect interrupted sessions, and initialize the session directory.
Skip this phase entirely if CACHE_TTL = 0 AND ENABLE_CHECKPOINTING = false.
Step 1: Exploration Cache Check
If CACHE_TTL > 0:
- Check if
.claude/sessions/exploration-cache/manifest.md exists
- If found, read the manifest and verify:
analysis_context matches the current analysis context (or is a superset)
codebase_path matches the current working directory
timestamp is within CACHE_TTL hours of now
- Config files referenced in
config_checksum haven't been modified since the cache was written (check mod-times of package.json, tsconfig.json, pyproject.toml, etc.)
- If cache is valid:
- Skill-invoked mode: Auto-accept the cache. Set
CACHE_HIT = true. Read cached synthesis.md and recon_summary.md. Skip to Phase 6 step 2 (present/return results).
- Direct invocation: Prompt the user to choose:
- Use cached results -- Set
CACHE_HIT = true, skip to Phase 6 step 2
- Refresh analysis -- Set
CACHE_HIT = false, proceed normally
- If cache is invalid or absent: Set
CACHE_HIT = false
Step 2: Interrupted Session Check
If ENABLE_CHECKPOINTING = true:
- Check if
.claude/sessions/__da_live__/checkpoint.md exists
- If found, read the checkpoint to determine
last_completed_phase
- Prompt the user to choose:
- Resume from Phase [N+1] -- Load checkpoint state, proceed from the interrupted phase (see Session Recovery in Error Handling)
- Start fresh -- Archive the interrupted session to
.claude/sessions/da-interrupted-{timestamp}/ and proceed normally
- If not found: proceed normally
Step 3: Initialize Session Directory
If ENABLE_CHECKPOINTING = true AND CACHE_HIT = false:
- Create
.claude/sessions/__da_live__/ directory
- Write
checkpoint.md:
## Deep Analysis Session
- **analysis_context**: [context from arguments or caller]
- **codebase_path**: [current working directory]
- **started**: [ISO timestamp]
- **current_phase**: 0
- **status**: initialized
- Write
progress.md:
## Deep Analysis Progress
- **Phase**: 0 of 6
- **Status**: Session initialized
### Phase Log
- [timestamp] Phase 0: Session initialized
Phase 1: Reconnaissance & Planning
Goal: Perform codebase reconnaissance, generate dynamic focus areas, and compose a team plan.
-
Determine analysis context:
- Accept the following inputs: an analysis context or focus area describing the exploration goal
- If no inputs and this skill was loaded by another skill, use the calling skill's context
- If no inputs and standalone invocation, set context to "general codebase understanding"
- Set
PATH = current working directory
- Inform the user: "Exploring codebase at:
PATH" with the analysis context
-
Rapid codebase reconnaissance:
Search for files and read contents to quickly map the codebase structure. This should take 1-2 minutes, not deep investigation.
- Directory structure: Search for files matching
*/ pattern to understand the project layout
- Language and framework detection: Read config files (
package.json, tsconfig.json, pyproject.toml, Cargo.toml, go.mod, etc.) to identify primary language(s) and framework(s)
- File distribution: Search for files matching patterns like
src/**/*.ts, **/*.py to gauge the size and shape of different areas
- Key documentation: Read
README.md, CLAUDE.md, or similar docs if they exist for project context
- For feature-focused analysis: Search file contents for feature-related terms (function names, component names, route paths) to find hotspot directories
- For general analysis: Identify the 3-5 largest or most architecturally significant directories
Fallback: If reconnaissance fails (empty project, unusual structure, errors), use the static focus area templates from Step 3b.
-
Generate dynamic focus areas:
Based on reconnaissance findings, create focus areas tailored to the actual codebase. Default to 3 focus areas, but adjust based on codebase size and complexity (2 for small projects, up to 4 for large ones).
a) Dynamic focus areas (default):
Each focus area should include:
- Label: Short description (e.g., "API layer in src/api/")
- Directories: Specific directories to explore
- Starting files: 2-3 key files to read first
Phase 2: Review & Approval
Goal: Present the team plan for user review and approval before allocating resources.
If REQUIRE_APPROVAL = false
Skip to Phase 3 with a brief note: "Auto-approving team plan (skill-invoked mode). Proceeding with [N] explorers and 1 synthesizer."
If REQUIRE_APPROVAL = true
-
Present the team plan to the user (output the plan from Phase 1 Step 4), then prompt the user to choose:
- Approve -- Proceed to Phase 3 as-is
- Modify -- User describes changes (adjust focus areas, add/remove explorers, change scope)
- Regenerate -- Re-run reconnaissance with user feedback
-
If "Modify" (up to 3 cycles):
- Ask what to change
- Apply modifications to the team plan (adjust focus areas, agent count, scope)
- Re-present the updated plan for approval
- If 3 modification cycles are exhausted, offer "Approve current plan" or "Abort analysis"
-
If "Regenerate" (up to 2 cycles):
- Ask for feedback/new direction
- Return to Phase 1 Step 2 with the user's feedback incorporated
- Re-compose and re-present the team plan
- If 2 regeneration cycles are exhausted, offer "Approve current plan" or "Abort analysis"
-
Checkpoint (if ENABLE_CHECKPOINTING = true):
- Update
.claude/sessions/__da_live__/checkpoint.md: set current_phase: 2, record approval_mode (approved/auto-approved)
- Append to
progress.md: [timestamp] Phase 2: Plan approved (mode: [approval_mode])
Phase 3: Team Assembly
Goal: Create the team, delegate tasks, and assign work using the approved plan.
-
Create the team named deep-analysis-{timestamp} with description: "Deep analysis of [analysis context]"
-
Delegate exploration to independent workers based on the approved plan:
-
Create tasks:
- Exploration Task per focus area: Subject: "Explore: [Focus area label]", Description: detailed exploration instructions including directories, starting files, search terms, and complexity estimate
- Synthesis Task: Subject: "Synthesize and evaluate exploration findings", Description: "Merge and synthesize findings from all exploration tasks into a unified analysis. Investigate gaps using shell commands (git history, dependency trees). Evaluate completeness before finalizing."
- The synthesis task is blocked by all exploration tasks
-
Assign exploration tasks (with status guard):
For each exploration task, apply the following status-guarded assignment:
- Check the task's current status and owner
- Only assign if status is
pending AND owner is empty
- If already assigned or completed: log "Task [ID] already [status], skipping" and move on
- Set the owner to the corresponding explorer
- Send the explorer the task details: "Your exploration task [ID] is assigned. Focus area: [label]. Directories: [list]. Starting files: [list]. Search patterns: [list]. Begin exploration now."
Never re-assign a completed or in-progress task.
-
Checkpoint (if ENABLE_CHECKPOINTING = true):
Phase 4: Focused Exploration
Goal: Workers explore their assigned areas independently.
Monitoring Loop
After assigning exploration tasks, monitor progress with status-aware tracking:
- When an explorer goes idle or sends a message, check their task status
- If task is
completed: Record the explorer's findings. If ENABLE_CHECKPOINTING = true, write explorer-{N}-findings.md to .claude/sessions/__da_live__/ and update checkpoint.
- If task is
in_progress: The explorer is still working -- do NOT re-send the assignment
- If task is
pending and owner is set: The explorer received the assignment but hasn't started yet -- wait, do NOT re-send
- If task is
pending and owner is empty: Assignment may have been lost -- re-assign using the status guard from Phase 3 step 4
Never re-assign a completed or in-progress task. This is the primary duplicate prevention mechanism.
- Workers explore their assigned focus areas independently -- no cross-worker messaging
- Workers can respond to follow-up questions from the synthesizer
- Each worker marks its task as completed when done
- You (the lead) receive idle notifications as workers finish
- Wait for all exploration tasks to be marked complete before proceeding to Phase 5
Phase 5: Evaluation and Synthesis
Goal: Verify exploration completeness, launch synthesis with deep investigation.
Step 1: Structural Completeness Check
This is a structural check, not a quality assessment:
- Verify all exploration tasks are completed
- Check that each worker produced a report with content (review the messages/reports received)
- If a worker failed completely (empty or error output):
- Create a follow-up exploration task targeting the gap
- Assign it to an idle worker
- Add the new task as a blocker for the synthesis task
- Wait for the follow-up task to complete
- If all produced content: proceed immediately to Step 2
Step 2: Launch Synthesis
-
Assign the synthesis task to the synthesizer
-
Send the synthesizer the exploration context and recon findings:
"All exploration tasks are complete. Your synthesis task is now assigned.
Analysis context: [analysis context]
Codebase path: [PATH]
Recon findings from planning phase:
- Project structure: [brief summary of directory layout]
- Primary language/framework: [what was detected]
- Key areas identified: [the focus areas and why they were chosen]
The workers are: [list of explorer names from the approved plan]. You can message them with follow-up questions if you find conflicts or gaps in their findings.
You have shell access for deep investigation -- use it for git history analysis, dependency trees, static analysis, or any investigation that file reading and searching can't handle.
Read the completed exploration tasks to access their reports, then synthesize into a unified analysis. Evaluate completeness before finalizing."
-
Wait for the synthesizer to mark the synthesis task as completed
-
Checkpoint (if ENABLE_CHECKPOINTING = true):
- Update
.claude/sessions/__da_live__/checkpoint.md: set current_phase: 5
- Write
.claude/sessions/__da_live__/synthesis.md with the synthesis results
- Append to
progress.md: [timestamp] Phase 5: Synthesis complete
Phase 6: Completion + Cleanup
Goal: Collect results, present to user, and tear down the team.
-
Collect synthesis output:
- The synthesizer's findings are in the messages it sent and/or the task completion output
- Read the synthesis results
-
Write exploration cache (if CACHE_TTL > 0):
-
Present or return results:
- Standalone invocation: Present the synthesized analysis to the user. The results remain in conversation memory for follow-up questions.
- Loaded by another skill: The synthesis is complete. Control returns to the calling workflow -- do not present a standalone summary.
-
Tear down the team:
Notify all spawned workers that the analysis is complete and release resources.
-
Archive session and cleanup team:
- If
ENABLE_CHECKPOINTING = true: Move .claude/sessions/__da_live__/ to .claude/sessions/da-{timestamp}/
- Remove the team and its task list
Error Handling
Settings Check Failure
- If settings exist but are malformed: warn the user ("Settings file found but could not parse deep-analysis settings -- using defaults") and proceed with default approval values.
Planning Phase Failure
- If reconnaissance fails (errors, empty results, unusual structure): fall back to static focus area templates (Step 3b)
- If the codebase appears empty: inform the user and ask how to proceed
Approval Phase Failure
- If maximum modification cycles (3) or regeneration cycles (2) are reached without approval, prompt the user to choose:
- Approve current plan -- Proceed with the latest version of the plan
- Abort analysis -- Cancel the analysis entirely
Partial Worker Failure
- If one worker fails: create a follow-up task targeting the missed focus area, assign to an idle worker, add as blocker for synthesis
- If two workers fail: attempt follow-ups, but if they also fail, instruct the synthesizer to work with partial results
- If all workers fail: inform the user and offer to retry or abort
Synthesizer Failure
- If the synthesizer fails: present the raw exploration results to the user directly
- Offer to retry synthesis or let the user work with partial results
General Failures
If any phase fails:
- Explain what went wrong
- Ask the user how to proceed:
- Retry the phase
- Continue with partial results
- Abort the analysis
Session Recovery
When resuming from an interrupted session (detected in Phase 0 Step 2), use the following per-phase strategy:
| Interrupted At | Recovery Strategy |
|---|
| Phase 1 | Restart from Phase 1 (reconnaissance is fast, ~1-2 min) |
| Phase 2 | Load saved team_plan.md from session dir, re-present for approval |
| Phase 3 | Load approved plan from checkpoint, restart team assembly |
| Phase 4 | Read completed explorer-{N}-findings.md files from session dir. Only spawn and assign explorers whose findings files are missing. Add existing findings to synthesizer context. |
| Phase 5 | Load all explorer findings from session dir. Spawn a fresh synthesizer and launch synthesis with the persisted findings. |
| Phase 6 | Load synthesis.md from session dir. Proceed directly to present/return results and cleanup. |
Recovery procedure:
- Read
checkpoint.md to determine last_completed_phase and session state (team_name, explorer_names, task_ids)
- Load any persisted artifacts from the session directory (team_plan, explorer findings, synthesis)
- Resume from Phase
last_completed_phase + 1 using the loaded state
- For Phase 4 recovery: compare persisted
explorer-{N}-findings.md files against expected explorer list to determine which explorers still need to run
Agent Coordination
- The lead (you) acts as the planner: performs recon, composes the team plan, handles approval, assigns work
- Workers explore independently -- no cross-worker messaging (hub-and-spoke topology)
- The synthesizer can ask workers follow-up questions to resolve conflicts and fill gaps
- The synthesizer has shell access for deep investigation (git history, dependency trees, static analysis)
- Wait for task dependencies to resolve before proceeding
- Handle agent failures gracefully -- continue with partial results
- Agent count and focus area details come from the approved plan, not hardcoded values
Integration Notes
What this component does: Orchestrates a multi-agent codebase exploration and synthesis workflow. A lead agent performs reconnaissance, plans focus areas, delegates exploration to independent workers, and coordinates a synthesizer to merge findings into a unified analysis.
Capabilities needed:
- File operations (read, write, search by pattern, search by content)
- Shell execution (for session management directories)
- Sub-agent delegation (spawn N explorer workers + 1 synthesizer)
- Task/message coordination between agents
- User interaction (approval prompts, cache/resume choices)
Adaptation guidance:
- The hub-and-spoke pattern requires a way to spawn independent worker agents and a synthesizer agent. Map to your platform's agent delegation mechanism.
- Task status tracking (pending/in_progress/completed) with ownership is required for the status-guard duplicate prevention. If your platform lacks this, implement equivalent coordination logic.
- Session checkpointing writes to
.claude/sessions/ -- adapt the directory to your platform's session storage.
- The before_action hook (see hooks/) auto-approves file writes to session directories. Adapt to your platform's permission model.
Configurable parameters:
deep-analysis.direct-invocation-approval (default: true)
deep-analysis.invocation-by-skill-approval (default: false)
deep-analysis.cache-ttl-hours (default: 24)
deep-analysis.enable-checkpointing (default: true)
deep-analysis.enable-progress-indicators (default: true)