- name
- arch-lens-repository-access
- categories
- ["arch-lens"]
- description
- Create Repository/Data Access architecture diagram showing the repository pattern, entity relationships, and data access patterns. Data-centric lens answering "How is data accessed?"
- hooks
- {"PreToolUse":[{"matcher":"*","hooks":"[Truncated]"}]}
# Repository/Data Access Architecture Lens
**Cognitive Mode:** Data-Centric
**Primary Question:** "How is data accessed?"
**Focus:** Repository Pattern, Entity Relationships, Query Patterns, Format Conversion
## When to Use
- Need to understand data access layer architecture
- Documenting repository pattern implementation
- Analyzing entity relationships and query patterns
- User invokes `/autoskillit:arch-lens-repository-access` or `/autoskillit:make-arch-diag repository`
## Critical Constraints
**NEVER:**
- Modify any source code files
- Focus on data flow (that's data lineage lens)
- Include business logic details
**ALWAYS:**
- Focus on REPOSITORIES and their methods
- Show entity relationships (1:1, 1:N, N:N)
- Document key query patterns
- Identify format conversion boundaries
- BEFORE creating any diagram, LOAD the `/autoskillit:mermaid` skill using the Skill tool - this is MANDATORY
---
## Analysis Workflow
### Step 1: Launch Parallel Exploration Subagents
Spawn Explore subagents to investigate:
**Repository Classes**
- Find all repository implementations
- Identify base repository patterns
- Look for: Repository classes, DAO (Data Access Object) patterns, base repository abstractions
**Entity Models**
- Find entity/model classes
- Identify table/collection definitions
- Look for: ORM models (ActiveRecord, Entity Framework, TypeORM, etc.), data models, entity classes
**CRUD Operations**
- Find standard CRUD methods
- Identify specialized query methods
- Look for: create, get, update, delete, save, find_*, get_by_*, query methods
**Query Patterns**
- Find complex queries and joins
- Identify index usage patterns
- Look for: filter, where, join, order_by, group_by, query builders
**Factory/Scoping**
- Find repository factory patterns
- Identify scope management
- Look for: Factory patterns, dependency injection, session/context management
**Format Conversion**
- Find adapter/converter patterns
- Identify boundary conversions
- Look for: Adapters, DTOs, to_*/from_* methods, serializers, mappers
### Step 2: Map Entity Relationships
Document:
- **Entities**: All model classes
- **Relationships**: Foreign key relationships, cardinality
- **Key Fields**: Primary keys, business keys
- **Repositories**: Which repo manages which entity
**CRITICAL - Analyze Read/Write Direction:**
For EVERY repository method and data access:
- **Read methods**: `get_*`, `find_*`, `query_*` - data flows OUT of storage
- **Write methods**: `save_*`, `create_*`, `update_*`, `delete_*` - data flows INTO storage
- **Bulk operations**: Direction of each operation in batch
For EVERY caller-to-repository relationship:
- Does the caller READ from this repository?
- Does the caller WRITE to this repository?
- Or both?
Label connections accordingly (reads, writes, reads/writes)
### Step 3: Document Access Patterns
| Pattern | Repository Method | Use Case |
|---------|------------------|----------|
| By ID | get_by_id() | Single entity lookup |
| By Business Key | get_by_* | Domain-specific lookup |
| List | get_all(), get_for_* | Collection queries |
| Bulk | save_many() | Batch operations |
### Step 4: Create the Diagram
Use flowchart with:
**Direction:** `LR` (left-to-right) for caller-to-storage flow
**Subgraphs:**
- Callers (who uses repositories)
- Factory (repository construction)
- Repositories by Category
- Conversion (format boundaries)
- Storage (database tables)
**Node Styling:**
- `cli` class: Callers (nodes, handlers)
- `phase` class: Factory, scoping
- `newComponent` class: Repositories (green to highlight)
- `handler` class: Conversion adapters
- `integration` class: Database storage
**Show Relationships:**
- Entity relationships with cardinality (1:N)
- Repository-to-table mapping
- Conversion flow
### Step 5: Write Output
Write the diagram to: `temp/arch-lens-repository-access/arch_diag_repository_access_{YYYY-MM-DD_HHMMSS}.md` (relative to the current working directory)
After writing the diagram file, emit a structured output line:
```
diagram_path = {absolute_path_to_diagram_file}
```
---
## Output Template
```markdown
# Repository/Data Access Diagram: {System Name}
**Lens:** Repository/Data Access (Data-Centric)
**Question:** How is data accessed?
**Date:** {YYYY-MM-DD}
**Scope:** {What was analyzed}
## Repository Overview
| Category | Count | Key Repositories |
|----------|-------|------------------|
| {category} | {N} | {names} |
## Data Access Diagram
```mermaid
%%{init: {'flowchart': {'nodeSpacing': 50, 'rankSpacing': 60, 'curve': 'basis'}}}%%
flowchart LR
%% CLASS DEFINITIONS %%
classDef cli fill:#1a237e,stroke:#7986cb,stroke-width:2px,color:#fff;
classDef stateNode fill:#004d40,stroke:#4db6ac,stroke-width:2px,color:#fff;
classDef handler fill:#e65100,stroke:#ffb74d,stroke-width:2px,color:#fff;
classDef phase fill:#6a1b9a,stroke:#ba68c8,stroke-width:2px,color:#fff;
classDef output fill:#00695c,stroke:#4db6ac,stroke-width:2px,color:#fff;
classDef integration fill:#c62828,stroke:#ef9a9a,stroke-width:2px,color:#fff;
classDef newComponent fill:#2e7d32,stroke:#81c784,stroke-width:2px,color:#fff;
subgraph Callers ["CALLERS"]
CALLER1["Handler/Service<br/>━━━━━━━━━━<br/>Business logic"]
end
subgraph Factory ["REPOSITORY FACTORY"]
direction TB
FAC["RepositoryFactory<br/>━━━━━━━━━━<br/>Dependency injection"]
SCOPE["Scoping<br/>━━━━━━━━━━<br/>Context management"]
end
subgraph Repositories ["REPOSITORIES"]
direction TB
REPO1["EntityRepository<br/>━━━━━━━━━━<br/>CRUD methods"]
BASE["BaseRepository<T><br/>━━━━━━━━━━<br/>Generic CRUD"]
end
subgraph Conversion ["FORMAT CONVERSION"]
direction TB
ADAPTER["Adapters/DTOs<br/>━━━━━━━━━━<br/>Serialization"]
end
subgraph Storage ["DATABASE"]
direction TB
DB[("Table/Collection<br/>━━━━━━━━━━<br/>Persistent storage")]
end
%% FLOW %%
CALLER1 --> FAC
FAC --> SCOPE
SCOPE --> REPO1
BASE --> REPO1
REPO1 --> ADAPTER
ADAPTER --> DB
%% CLASS ASSIGNMENTS %%
class CALLER1 cli;
class FAC,SCOPE phase;
class REPO1 newComponent;
class BASE stateNode;
class ADAPTER handler;
class DB integration;
```
**Color Legend:**
| Color | Category | Description |
|-------|----------|-------------|
| Dark Blue | Callers | Services/handlers that use repositories |
| Purple | Factory | Repository construction and scoping |
| Green | Repositories | Repository implementations |
| Teal | Base | Generic base repository |
| Orange | Conversion | Format adapters/DTOs |
| Red | Storage | Database tables/collections |
## Repository Categories
| Category | Count | Key Repositories |
|----------|-------|------------------|
| {category} | {N} | {list} |
## Key Query Patterns
| Pattern | Repository Method | Use Case |
|---------|------------------|----------|
| {pattern} | {method} | {use case} |
## Entity Relationships
| Parent | Child | Cardinality | FK |
|--------|-------|-------------|-----|
| {parent} | {child} | {1:N/1:1} | {fk field} |
```
---
## Pre-Diagram Checklist
Before creating the diagram, verify:
- [ ] LOADED `/autoskillit:mermaid` skill using the Skill tool
- [ ] Using ONLY classDef styles from the mermaid skill (no invented colors)
- [ ] Diagram will include a color legend table
---
## Related Skills
- `/autoskillit:make-arch-diag` - Parent skill for lens selection
- `/autoskillit:mermaid` - MUST BE LOADED before creating diagram
- `/autoskillit:arch-lens-data-lineage` - For data flow view
- `/autoskillit:arch-lens-c4-container` - For storage container view
Auf GitHub ansehen