Move the general-vs-memory hook ownership logic out of the memory collector into PluginLedgerMixin (_drop_fallback_hooks / _register_fallback_hook) so the collector and the loader each call one manager method instead of reaching into manager privates. Hoist hashlib to module scope. Trim the new suite to the three invariant cases (run-once across load orders, distinct sources not suppressed, re-exported register).
436 lines
19 KiB
Python
436 lines
19 KiB
Python
"""Memory provider plugin discovery: bundled ``plugins/memory/<name>/``, user
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``$HERMES_HOME/plugins/<name>/``, project ``./.hermes/plugins/<name>/`` (opt-in via
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HERMES_ENABLE_PROJECT_PLUGINS), then ``hermes_agent.memory_providers`` entry points.
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Precedence is deliberately the REVERSE of PluginManager's later-source-wins:
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bundled wins, then user, project, entry point — a provider is activated by name
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(``memory.provider``, one at a time), so a directory dropped into the working tree
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must never shadow a shipped provider. Changing this order is a breaking change.
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"""
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from __future__ import annotations
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import hashlib
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import importlib.metadata
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import importlib.util
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import logging
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import sys
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from pathlib import Path
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from types import SimpleNamespace
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from typing import List, Optional, Tuple, TYPE_CHECKING
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from hermes_cli.config import cfg_get
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from plugins import plugin_loader as _loader
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if TYPE_CHECKING:
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from agent.memory_provider import MemoryProvider
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logger = logging.getLogger(__name__)
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_MEMORY_PLUGINS_DIR = Path(__file__).parent
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ENTRY_POINTS_GROUP = "hermes_agent.memory_providers"
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_REGISTERED_MEMORY_PROVIDER_SKILLS: dict[str, Path] = {}
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# Synthetic parent package so user-installed providers don't collide with bundled ones.
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_USER_NAMESPACE = "_hermes_user_memory"
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_register_synthetic_package = _loader.register_synthetic_package
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_get_user_plugins_dir = _loader.user_plugins_dir
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def _get_project_plugins_dir() -> Optional[Path]:
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"""``./.hermes/plugins/`` or None. Gated on HERMES_ENABLE_PROJECT_PLUGINS like the
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PluginManager scan: a repo you merely ``cd`` into must not offer a memory backend."""
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try:
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from hermes_cli.plugins import _env_enabled
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if not _env_enabled("HERMES_ENABLE_PROJECT_PLUGINS"):
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return None
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d = Path.cwd() / ".hermes" / "plugins"
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return d if d.is_dir() else None
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except Exception:
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return None
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def _is_memory_provider_dir(path: Path) -> bool:
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"""Cheap text heuristic (no import): ``__init__.py`` mentions the memory provider contract."""
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init_file = path / "__init__.py"
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if not init_file.exists():
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return False
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try:
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source = init_file.read_text(errors="replace", encoding="utf-8")[:8192]
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return "register_memory_provider" in source or "MemoryProvider" in source
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except Exception:
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return False
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def _is_bundled(provider_dir: Path) -> bool:
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return _MEMORY_PLUGINS_DIR in provider_dir.parents or provider_dir.parent == _MEMORY_PLUGINS_DIR
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def _module_name(provider_dir: Path, name: str) -> str:
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"""``plugins.memory.<name>`` for bundled providers, else under the synthetic user namespace."""
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if _is_bundled(provider_dir):
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return f"plugins.memory.{name}"
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# Separate package trees, including relative imports, across homes/sources.
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digest = hashlib.sha256(str(provider_dir.resolve()).encode()).hexdigest()[:16]
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return f"{_USER_NAMESPACE}.{name}__source_{digest}"
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def _external_source_dirs() -> List[Path]:
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"""User then project plugin roots that exist (precedence order)."""
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return [d for d in (_get_user_plugins_dir(), _get_project_plugins_dir()) if d]
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def _iter_provider_dirs() -> List[Tuple[str, Path]]:
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"""``(name, path)`` for bundled, then user-installed, then project-local; first-seen wins."""
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dirs = [(child.name, child) for child in _loader.iter_plugin_dirs(_MEMORY_PLUGINS_DIR)]
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seen = {name for name, _ in dirs}
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for source_dir in _external_source_dirs():
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for child in sorted(source_dir.iterdir()):
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if (
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child.is_dir()
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and not child.name.startswith(("_", "."))
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and child.name not in seen
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and _is_memory_provider_dir(child)
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):
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seen.add(child.name)
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dirs.append((child.name, child))
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return dirs
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def _iter_entry_points():
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"""Yield pip-installed memory provider entry points."""
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try:
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eps = importlib.metadata.entry_points()
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if hasattr(eps, "select"):
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return list(eps.select(group=ENTRY_POINTS_GROUP))
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return list(eps.get(ENTRY_POINTS_GROUP, [])) if isinstance(eps, dict) else [ep for ep in eps if ep.group == ENTRY_POINTS_GROUP]
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except Exception as exc:
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logger.debug("Memory provider entry-point scan failed: %s", exc)
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return []
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def find_provider_dir(name: str) -> Optional[Path]:
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"""Provider name -> directory: bundled, user, project, then a pip entry point's
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package dir. The entry-point case matters because ``config_schema.py`` and
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``cli.py`` are read from disk, not imported; without a directory a pip-installed
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provider silently loses its dashboard panel and ``hermes <provider>`` commands."""
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bundled = _MEMORY_PLUGINS_DIR / name
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if bundled.is_dir() and (bundled / "__init__.py").exists():
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return bundled
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for source_dir in _external_source_dirs():
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candidate = source_dir / name
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if candidate.is_dir() and _is_memory_provider_dir(candidate):
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return candidate
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return _entry_point_package_dir(find_provider_entry_point(name))
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def _entry_point_package_dir(entry_point) -> Optional[Path]:
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"""Directory of an entry point's module, resolved WITHOUT importing it (discovery
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runs from the dashboard/argparse before a provider is selected; importing every
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candidate would run arbitrary code). Only package entry points yield a
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directory — a bare ``module.py`` has nowhere for a sibling ``config_schema.py``."""
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if entry_point is None:
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return None
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try:
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from hermes_cli.plugins import resolve_module_origin
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module_name = (entry_point.value or "").split(":")[0].strip()
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origin = resolve_module_origin(module_name)
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if not origin:
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return None
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path = Path(origin)
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return path.parent if path.name == "__init__.py" else None
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except Exception as exc:
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logger.debug("Could not resolve directory for entry point '%s': %s",
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getattr(entry_point, "name", "?"), exc)
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return None
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def find_provider_entry_point(name: str):
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"""Resolve a provider name to a pip entry point, if installed."""
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return next((ep for ep in _iter_entry_points() if ep.name == name), None)
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def list_memory_provider_names() -> List[str]:
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"""Cheap name-only listing (directory scan + entry-point enumeration, no import or
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availability check) — safe at module-import time (dashboard dropdown)."""
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names = {name for name, _ in _iter_provider_dirs()}
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names.update(ep.name for ep in _iter_entry_points())
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return sorted(names)
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def discover_memory_providers() -> List[Tuple[str, str, bool]]:
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"""``[(name, description, is_available), ...]``; bundled wins on name collisions,
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then user directories, then pip."""
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results = [
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(name, _loader.read_plugin_description(child),
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_loader.probe_availability(lambda c=child: _load_provider_from_dir(c, register_skills=False)))
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for name, child in _iter_provider_dirs()
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]
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seen = {name for name, _, _ in results}
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for entry_point in _iter_entry_points():
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if entry_point.name not in seen:
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seen.add(entry_point.name)
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results.append((entry_point.name, "", _loader.probe_availability(
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lambda ep=entry_point: _load_provider_from_entry_point(ep, register_skills=False)
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)))
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return results
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def load_memory_provider(name: str, *, register_skills: Optional[bool] = None) -> Optional["MemoryProvider"]:
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"""Load a MemoryProvider by name (bundled, user, project, then pip entry point);
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None if not found or failing to load. Skills register only for the configured
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active provider unless ``register_skills`` is explicit, so inspecting inactive
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providers leaves no registry side effects."""
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if register_skills is None:
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register_skills = name == _get_active_memory_provider()
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provider_dir = find_provider_dir(name)
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entry_point = None if provider_dir else find_provider_entry_point(name)
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if not provider_dir and entry_point is None:
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logger.debug("Memory provider '%s' not found in bundled, user plugins, or entry points", name)
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return None
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def _load(_dir):
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if provider_dir:
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return _load_provider_from_dir(provider_dir, register_skills=register_skills)
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return _load_provider_from_entry_point(entry_point, register_skills=register_skills)
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return _loader.load_named(name, provider_dir, _load, kind="Memory provider", noun="provider", logger=logger)
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def _instantiate_subclass(namespace) -> Optional["MemoryProvider"]:
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"""First instantiable ``MemoryProvider`` subclass found among *namespace*'s attributes."""
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from agent.memory_provider import MemoryProvider
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for attr_name in dir(namespace):
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attr = getattr(namespace, attr_name, None)
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if isinstance(attr, type) and issubclass(attr, MemoryProvider) and attr is not MemoryProvider:
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try:
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return attr()
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except Exception:
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pass
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return None
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def _load_provider_from_entry_point(entry_point, *, register_skills: bool = True) -> Optional["MemoryProvider"]:
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"""Import a provider entry point and extract the MemoryProvider instance: an
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instance, a subclass, a module with ``register(ctx)``, a factory / ``register``
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callable, or a namespace holding a subclass — in that order."""
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from agent.memory_provider import MemoryProvider
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loaded = entry_point.load()
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if isinstance(loaded, MemoryProvider):
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return loaded
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if isinstance(loaded, type) and issubclass(loaded, MemoryProvider):
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try:
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return loaded()
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except Exception:
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pass
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if hasattr(loaded, "register"):
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collector = _ProviderCollector(entry_point.name, register_skills=register_skills)
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collector.collect(loaded.register, source=getattr(loaded, "__file__", None))
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if collector.provider:
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return collector.provider
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if callable(loaded):
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try:
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provider = loaded()
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if isinstance(provider, MemoryProvider):
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return provider
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except TypeError:
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pass
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collector = _ProviderCollector(entry_point.name, register_skills=register_skills)
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collector.collect(loaded)
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return collector.provider
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provider = _instantiate_subclass(loaded)
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if provider is None:
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logger.debug("Memory provider entry point '%s' loaded no provider", entry_point.name)
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return provider
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def _load_provider_from_dir(provider_dir: Path, *, register_skills: bool = True) -> Optional["MemoryProvider"]:
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"""Import a provider module; ``register(ctx)`` first, else a top-level subclass."""
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name = provider_dir.name
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mod = _loader.load_plugin_module(
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_module_name(provider_dir, name), provider_dir,
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parents=("plugins", "plugins.memory"),
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logger=logger,
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synthetic_namespace=None if _is_bundled(provider_dir) else _USER_NAMESPACE,
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)
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if mod is None:
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return None
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if hasattr(mod, "register"):
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collector = _ProviderCollector(name, register_skills=register_skills)
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try:
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collector.collect(mod.register, source=mod.__file__)
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except Exception as e:
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# A raise AFTER register_memory_provider() must not cost us the provider:
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# falling through to the subclass scan would hand back a bare second
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# instance — a silent downgrade that looks like success.
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if collector.provider is None:
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logger.debug("register() failed for %s: %s", name, e)
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else:
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logger.warning(
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"Memory provider '%s' raised after registering (%s) — "
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"using the registered provider; later registrations were skipped",
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name, e,
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)
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if collector.provider:
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return collector.provider
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return _instantiate_subclass(mod)
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class _ProviderCollector:
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"""Plugin context for memory providers: captures ``register_memory_provider``
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(the one call the activation path owns) and delegates other ``register_*``
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calls to a real ``PluginContext`` so providers have the full plugin surface."""
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def __init__(self, name: str, *, register_skills: bool = True):
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self.name = name
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self.provider = None
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self._register_skills = register_skills
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self._context = None
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self._hook_source = None
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def collect(self, register, *, source=None):
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"""Run ``register`` with this collector; hooks it registers form the fallback group that
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general discovery of the same source replaces (see ``PluginLedgerMixin``)."""
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from hermes_cli.plugins_ledger import _hook_source_of
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module = sys.modules.get(getattr(register, "__module__", ""))
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self._hook_source = _hook_source_of(self.name, SimpleNamespace(__file__=source) if source else module)
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manager = self._plugin_context()._manager
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with manager._discovery_lock:
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manager._drop_fallback_hooks(self._hook_source)
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register(self)
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def register_hook(self, hook_name, callback):
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context = self._plugin_context()
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with context._manager._discovery_lock:
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return context._manager._register_fallback_hook(context, self._hook_source, hook_name, callback)
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def register_memory_provider(self, provider):
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self.provider = provider
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def register_skill(self, *args, **kwargs):
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"""Forward skills to the plugin registry, tracking qualified name + path so
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switching the active provider can retract the previous one's skills. Gated
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on ``register_skills`` so inspecting an inactive provider has no side effects."""
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if not self._register_skills:
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return
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try:
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self._plugin_context().register_skill(*args, **kwargs)
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qualified_name = f"{self.name}:{args[0] if args else kwargs.get('name')}"
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from hermes_cli.plugins import get_plugin_manager
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registered_path = get_plugin_manager().find_plugin_skill(qualified_name)
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if registered_path is not None:
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_REGISTERED_MEMORY_PROVIDER_SKILLS[qualified_name] = registered_path
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except Exception as exc:
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logger.debug("Memory provider '%s' failed to register skill: %s", self.name, exc)
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def register_cli_command(self, *args, **kwargs):
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pass # CLI registration happens via discover_plugin_cli_commands()
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def __getattr__(self, attr: str):
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"""Delegate any other ``register_*`` call to a real ``PluginContext`` (a
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hand-maintained stub drifted: unknown calls raised and cost the provider).
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Non-``register_*`` attributes raise normally so a typo still fails loudly."""
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if not attr.startswith("register_"):
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raise AttributeError(attr)
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def _forward(*args, **kwargs):
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try:
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return self._plugin_context().__getattribute__(attr)(*args, **kwargs)
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except Exception as exc:
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# A secondary registration must not cost the provider itself.
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logger.warning("Memory provider '%s' failed to %s: %s", self.name, attr, exc)
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return None
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return _forward
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def _plugin_context(self):
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"""A real ``PluginContext``, built once on demand: the common provider that only
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calls ``register_memory_provider`` must not pay for importing the plugin manager."""
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if self._context is None:
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from hermes_cli.plugins import PluginContext, PluginManifest, get_plugin_manager
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manifest = PluginManifest(name=self.name, key=self.name)
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self._context = PluginContext(manifest, get_plugin_manager())
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return self._context
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def _get_active_memory_provider() -> Optional[str]:
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"""Active provider name from config.yaml (``memory.provider``), or None. Reads config only."""
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try:
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from hermes_cli.config import load_config
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config = load_config()
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return cfg_get(config, "memory", "provider") or None
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except Exception:
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return None
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def _prune_inactive_memory_provider_skills(active_provider: Optional[str] = None) -> None:
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"""Remove tracked skills that no longer belong to the active provider."""
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if active_provider is None:
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active_provider = _get_active_memory_provider()
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from hermes_cli.plugins import get_plugin_manager
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manager = get_plugin_manager()
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for qualified_name, registered_path in list(_REGISTERED_MEMORY_PROVIDER_SKILLS.items()):
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if qualified_name.partition(":")[0] == active_provider:
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continue
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if manager.find_plugin_skill(qualified_name) == registered_path:
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manager.remove_plugin_skill(qualified_name)
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_REGISTERED_MEMORY_PROVIDER_SKILLS.pop(qualified_name, None)
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def discover_plugin_cli_commands() -> List[dict]:
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"""CLI commands for the **active** memory plugin only. Imports just its ``cli.py``
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(``register_cli(subparser)``), never the provider module, so it is safe during
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argparse setup. At most one dict: name/help/description/setup_fn/handler_fn/plugin."""
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active_provider = _get_active_memory_provider() if _MEMORY_PLUGINS_DIR.is_dir() else None
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plugin_dir = find_provider_dir(active_provider) if active_provider else None
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if not plugin_dir or not (plugin_dir / "cli.py").exists():
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return []
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module_name = _module_name(plugin_dir, active_provider) + ".cli"
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try:
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cli_mod = sys.modules.get(module_name)
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if cli_mod is None:
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if not _is_bundled(plugin_dir):
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# cli.py imports as _hermes_user_memory.<name>.cli, usually before the
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# provider is loaded: register parent packages so its relative imports
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# resolve without executing the plugin's __init__.py (the shell has no
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# __file__, so _load_provider_from_dir() still loads the real module).
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_register_synthetic_package(_USER_NAMESPACE, [])
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_register_synthetic_package(_module_name(plugin_dir, active_provider), [str(plugin_dir)])
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spec = importlib.util.spec_from_file_location(module_name, str(plugin_dir / "cli.py"))
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if not spec or not spec.loader:
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return []
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cli_mod = importlib.util.module_from_spec(spec)
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sys.modules[module_name] = cli_mod
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spec.loader.exec_module(cli_mod)
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register_cli = getattr(cli_mod, "register_cli", None)
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if not callable(register_cli):
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return []
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desc = _loader.read_plugin_description(plugin_dir)
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return [{
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"name": active_provider,
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"help": desc or f"Manage {active_provider} memory plugin",
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"description": desc or "",
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"setup_fn": register_cli,
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"handler_fn": getattr(cli_mod, f"{active_provider}_command", None) or getattr(cli_mod, "honcho_command", None),
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"plugin": active_provider,
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}]
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except Exception as e:
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logger.debug("Failed to scan CLI for memory plugin '%s': %s", active_provider, e)
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return []
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