Post PR #5295 docs audit — 4 fixes: 1. cli-commands.md: Update hermes honcho subcommand table with 4 missing commands (peers, enable, disable, sync), --target-profile flag, --all on status, correct mode values (hybrid/context/tools not hybrid/honcho/local), and note that setup redirects to hermes memory setup. 2. build-a-hermes-plugin.md: Replace 'ctx.register_command() — planned but not yet implemented' with the actual implemented ctx.register_cli_command() API. Add full Register CLI commands section with code example. 3. memory-provider-plugin.md: Add 'Adding CLI Commands' section documenting the register_cli(subparser) convention for memory provider plugins, active-provider gating, and directory structure. 4. plugins.md: Add CLI command registration to the capabilities table.
251 lines
8.1 KiB
Markdown
251 lines
8.1 KiB
Markdown
---
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sidebar_position: 8
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title: "Memory Provider Plugins"
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description: "How to build a memory provider plugin for Hermes Agent"
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---
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# Building a Memory Provider Plugin
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Memory provider plugins give Hermes Agent persistent, cross-session knowledge beyond the built-in MEMORY.md and USER.md. This guide covers how to build one.
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## Directory Structure
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Each memory provider lives in `plugins/memory/<name>/`:
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```
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plugins/memory/my-provider/
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├── __init__.py # MemoryProvider implementation + register() entry point
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├── plugin.yaml # Metadata (name, description, hooks)
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└── README.md # Setup instructions, config reference, tools
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```
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## The MemoryProvider ABC
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Your plugin implements the `MemoryProvider` abstract base class from `agent/memory_provider.py`:
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```python
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from agent.memory_provider import MemoryProvider
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class MyMemoryProvider(MemoryProvider):
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@property
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def name(self) -> str:
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return "my-provider"
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def is_available(self) -> bool:
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"""Check if this provider can activate. NO network calls."""
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return bool(os.environ.get("MY_API_KEY"))
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def initialize(self, session_id: str, **kwargs) -> None:
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"""Called once at agent startup.
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kwargs always includes:
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hermes_home (str): Active HERMES_HOME path. Use for storage.
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"""
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self._api_key = os.environ.get("MY_API_KEY", "")
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self._session_id = session_id
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# ... implement remaining methods
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```
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## Required Methods
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### Core Lifecycle
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| Method | When Called | Must Implement? |
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|--------|-----------|-----------------|
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| `name` (property) | Always | **Yes** |
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| `is_available()` | Agent init, before activation | **Yes** — no network calls |
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| `initialize(session_id, **kwargs)` | Agent startup | **Yes** |
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| `get_tool_schemas()` | After init, for tool injection | **Yes** |
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| `handle_tool_call(name, args)` | When agent uses your tools | **Yes** (if you have tools) |
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### Config
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| Method | Purpose | Must Implement? |
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|--------|---------|-----------------|
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| `get_config_schema()` | Declare config fields for `hermes memory setup` | **Yes** |
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| `save_config(values, hermes_home)` | Write non-secret config to native location | **Yes** (unless env-var-only) |
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### Optional Hooks
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| Method | When Called | Use Case |
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|--------|-----------|----------|
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| `system_prompt_block()` | System prompt assembly | Static provider info |
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| `prefetch(query)` | Before each API call | Return recalled context |
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| `queue_prefetch(query)` | After each turn | Pre-warm for next turn |
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| `sync_turn(user, assistant)` | After each completed turn | Persist conversation |
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| `on_session_end(messages)` | Conversation ends | Final extraction/flush |
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| `on_pre_compress(messages)` | Before context compression | Save insights before discard |
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| `on_memory_write(action, target, content)` | Built-in memory writes | Mirror to your backend |
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| `shutdown()` | Process exit | Clean up connections |
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## Config Schema
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`get_config_schema()` returns a list of field descriptors used by `hermes memory setup`:
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```python
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def get_config_schema(self):
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return [
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{
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"key": "api_key",
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"description": "My Provider API key",
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"secret": True, # → written to .env
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"required": True,
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"env_var": "MY_API_KEY", # explicit env var name
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"url": "https://my-provider.com/keys", # where to get it
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},
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{
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"key": "region",
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"description": "Server region",
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"default": "us-east",
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"choices": ["us-east", "eu-west", "ap-south"],
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},
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{
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"key": "project",
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"description": "Project identifier",
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"default": "hermes",
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},
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]
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```
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Fields with `secret: True` and `env_var` go to `.env`. Non-secret fields are passed to `save_config()`.
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## Save Config
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```python
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def save_config(self, values: dict, hermes_home: str) -> None:
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"""Write non-secret config to your native location."""
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import json
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from pathlib import Path
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config_path = Path(hermes_home) / "my-provider.json"
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config_path.write_text(json.dumps(values, indent=2))
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```
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For env-var-only providers, leave the default no-op.
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## Plugin Entry Point
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```python
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def register(ctx) -> None:
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"""Called by the memory plugin discovery system."""
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ctx.register_memory_provider(MyMemoryProvider())
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```
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## plugin.yaml
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```yaml
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name: my-provider
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version: 1.0.0
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description: "Short description of what this provider does."
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hooks:
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- on_session_end # list hooks you implement
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```
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## Threading Contract
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**`sync_turn()` MUST be non-blocking.** If your backend has latency (API calls, LLM processing), run the work in a daemon thread:
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```python
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def sync_turn(self, user_content, assistant_content):
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def _sync():
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try:
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self._api.ingest(user_content, assistant_content)
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except Exception as e:
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logger.warning("Sync failed: %s", e)
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if self._sync_thread and self._sync_thread.is_alive():
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self._sync_thread.join(timeout=5.0)
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self._sync_thread = threading.Thread(target=_sync, daemon=True)
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self._sync_thread.start()
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```
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## Profile Isolation
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All storage paths **must** use the `hermes_home` kwarg from `initialize()`, not hardcoded `~/.hermes`:
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```python
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# CORRECT — profile-scoped
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from hermes_constants import get_hermes_home
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data_dir = get_hermes_home() / "my-provider"
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# WRONG — shared across all profiles
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data_dir = Path("~/.hermes/my-provider").expanduser()
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```
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## Testing
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See `tests/agent/test_memory_plugin_e2e.py` for the complete E2E testing pattern using a real SQLite provider.
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```python
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from agent.memory_manager import MemoryManager
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mgr = MemoryManager()
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mgr.add_provider(my_provider)
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mgr.initialize_all(session_id="test-1", platform="cli")
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# Test tool routing
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result = mgr.handle_tool_call("my_tool", {"action": "add", "content": "test"})
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# Test lifecycle
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mgr.sync_all("user msg", "assistant msg")
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mgr.on_session_end([])
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mgr.shutdown_all()
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```
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## Adding CLI Commands
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Memory provider plugins can register their own CLI subcommand tree (e.g. `hermes my-provider status`, `hermes my-provider config`). This uses a convention-based discovery system — no changes to core files needed.
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### How it works
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1. Add a `cli.py` file to your plugin directory
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2. Define a `register_cli(subparser)` function that builds the argparse tree
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3. The memory plugin system discovers it at startup via `discover_plugin_cli_commands()`
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4. Your commands appear under `hermes <provider-name> <subcommand>`
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**Active-provider gating:** Your CLI commands only appear when your provider is the active `memory.provider` in config. If a user hasn't configured your provider, your commands won't show in `hermes --help`.
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### Example
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```python
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# plugins/memory/my-provider/cli.py
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def my_command(args):
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"""Handler dispatched by argparse."""
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sub = getattr(args, "my_command", None)
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if sub == "status":
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print("Provider is active and connected.")
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elif sub == "config":
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print("Showing config...")
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else:
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print("Usage: hermes my-provider <status|config>")
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def register_cli(subparser) -> None:
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"""Build the hermes my-provider argparse tree.
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Called by discover_plugin_cli_commands() at argparse setup time.
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"""
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subs = subparser.add_subparsers(dest="my_command")
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subs.add_parser("status", help="Show provider status")
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subs.add_parser("config", help="Show provider config")
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subparser.set_defaults(func=my_command)
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```
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### Reference implementation
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See `plugins/memory/honcho/cli.py` for a full example with 13 subcommands, cross-profile management (`--target-profile`), and config read/write.
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### Directory structure with CLI
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```
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plugins/memory/my-provider/
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├── __init__.py # MemoryProvider implementation + register()
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├── plugin.yaml # Metadata
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├── cli.py # register_cli(subparser) — CLI commands
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└── README.md # Setup instructions
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```
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## Single Provider Rule
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Only **one** external memory provider can be active at a time. If a user tries to register a second, the MemoryManager rejects it with a warning. This prevents tool schema bloat and conflicting backends.
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