Files
hermes-agent/tools/skill_manager_tool.py

926 lines
45 KiB
Python

#!/usr/bin/env python3
"""Skill Manager Tool — agent-managed skill creation & editing.
Skills are the agent's procedural memory (narrow "how to do X"; MEMORY.md/USER.md are
broad, declarative). New skills land in ~/.hermes/skills/ (or ``skills.create_dir``);
existing skills (bundled, hub, user) are modified in place. Layout:
``<skills>/[category/]<skill>/SKILL.md`` + optional ``references/ templates/ scripts/ assets/``.
"""
import contextvars as _ctxvars
import json
from contextlib import suppress
import logging
import re
import shutil
import threading
from pathlib import Path
from typing import Any, Dict, List, Optional, Tuple
import hermes_yaml as yaml
from hermes_constants import get_hermes_home, display_hermes_home
from utils import atomic_write_text, is_truthy_value
from hermes_cli.config import cfg_get
from agent.skill_utils import (
extract_skill_description,
is_skill_description_truncated_for_prompt,
parse_frontmatter as _parse_frontmatter,
SKILL_PROMPT_DESC_LIMIT)
from tools.skill_manager_guards import (
_background_review_preflight, _background_review_read_before_write_guard, _background_review_write_guard,
_containing_skills_root, _curator_consolidation_delete_guard, _maybe_auto_propose_org_edit,
_org_mirror_write_guard, _pinned_guard, _validate_delete_target, _is_background_review, _refusal as _err)
from tools.skill_manager_batch import _skill_manage_batch
from tools.skills_guard import scan_skill, should_allow_install, format_scan_report
logger = logging.getLogger(__name__)
def _guard_agent_created_enabled() -> bool:
"""skills.guard_agent_created (default False): opt-in — terminal() runs the same code ungated."""
try:
from hermes_cli.config import load_config
return is_truthy_value(cfg_get(load_config(), "skills", "guard_agent_created"), default=False)
except Exception:
return False
def _security_scan_skill(skill_dir: Path) -> Optional[str]:
"""Post-write scan (opt-in); error string if blocked, else None. An "ask" verdict
(dangerous findings) is surfaced as an error so the agent can retry without them."""
if not _guard_agent_created_enabled():
return None
try:
result = scan_skill(skill_dir, source="agent-created")
allowed, reason = should_allow_install(result)
if allowed is None:
logger.warning("Agent-created skill blocked (dangerous findings): %s", reason)
if allowed is not True:
return f"Security scan blocked this skill ({reason}):\n{format_scan_report(result)}"
except Exception as e:
logger.warning("Security scan failed for %s: %s", skill_dir, e, exc_info=True)
return None
# All skills live in ~/.hermes/skills/ (single source of truth)
HERMES_HOME = get_hermes_home()
SKILLS_DIR = HERMES_HOME / "skills"
_SKILLS_DIR_AT_IMPORT = SKILLS_DIR
def _skills_dir() -> Path:
"""Active profile's skills dir at call time (multi-profile runtimes rebind per session).
An explicitly patched module-level ``SKILLS_DIR`` (tests) wins over the live HERMES_HOME.
Long-lived multi-profile runtimes (Dashboard/TUI/Desktop backend, cron, kanban workers) import this
module once under the launch HERMES_HOME and later bind a different profile per session (#40677).
"""
configured = Path(SKILLS_DIR)
return configured if configured != _SKILLS_DIR_AT_IMPORT else get_hermes_home() / "skills"
MAX_NAME_LENGTH = 64
MAX_DESCRIPTION_LENGTH = 1024
MAX_SKILL_CONTENT_CHARS = 100_000 # ~36k tokens at 2.75 chars/token
MAX_SKILL_FILE_BYTES = 1_048_576 # 1 MiB per supporting file
VALID_NAME_RE = re.compile(r'^[a-z0-9][a-z0-9._-]*$') # filesystem-safe, URL-friendly
ALLOWED_SUBDIRS = {"references", "templates", "scripts", "assets"} # for write_file/remove_file
_FRONTMATTER_END_RE = re.compile(r'\n---\s*\n')
_NAME_RULE = "Use lowercase letters, numbers, hyphens, dots, and underscores."
def _display_create_dir() -> str:
"""Skill-creation dir for schema/instruction text; follows ``skills.create_dir``."""
try:
from agent.skill_utils import display_skill_create_dir
return display_skill_create_dir()
except Exception:
return f"{display_hermes_home()}/skills/"
# --- Validation helpers -------------------------------------------------------
def _check_identifier(value: str, label: str, invalid: str) -> Optional[str]:
if len(value) > MAX_NAME_LENGTH:
return f"{label} exceeds {MAX_NAME_LENGTH} characters."
return None if VALID_NAME_RE.match(value) else invalid
def _validate_name(name: str) -> Optional[str]:
if not name:
return "Skill name is required."
return _check_identifier(
name, "Skill name", f"Invalid skill name '{name}'. {_NAME_RULE} Must start with a letter or digit.")
def _validate_category(category: Optional[str]) -> Optional[str]:
if category is None or (isinstance(category, str) and not category.strip()):
return None
if not isinstance(category, str):
return "Category must be a string."
category = category.strip()
invalid = (f"Invalid category '{category}'. {_NAME_RULE} "
"Categories must be a single directory name.")
if "/" in category or "\\" in category:
return invalid
return _check_identifier(category, "Category", invalid)
def _validate_frontmatter(content: str, *, new_skill: bool = False) -> Optional[str]:
"""Validate frontmatter (name + description) and a non-empty body. ``new_skill`` (create
only) also enforces SKILL_PROMPT_DESC_LIMIT so new skills never lose routing signal to
index truncation; edit/patch skip it so existing over-limit skills stay maintainable."""
if not content.strip():
return "Content cannot be empty."
content = content.lstrip("\ufeff") # tolerate a Windows UTF-8 BOM
if not content.startswith("---"):
return "SKILL.md must start with YAML frontmatter (---). See existing skills for format."
end_match = _FRONTMATTER_END_RE.search(content[3:])
if not end_match:
return "SKILL.md frontmatter is not closed. Ensure you have a closing '---' line."
try:
parsed = yaml.safe_load(content[3:end_match.start() + 3])
except yaml.YAMLError as e:
return f"YAML frontmatter parse error: {e}"
if not isinstance(parsed, dict):
return "Frontmatter must be a YAML mapping (key: value pairs)."
for field in ("name", "description"):
if field not in parsed:
return f"Frontmatter must include '{field}' field."
desc = str(parsed["description"])
if len(desc) > MAX_DESCRIPTION_LENGTH:
return f"Description exceeds {MAX_DESCRIPTION_LENGTH} characters."
if new_skill and len(desc.strip().strip("'\"")) > SKILL_PROMPT_DESC_LIMIT:
return (
f"Description is {len(desc.strip())} chars — new skills must fit the "
f"{SKILL_PROMPT_DESC_LIMIT}-char system-prompt budget (one sentence, trigger first, "
f"ends with a period). The skill index truncates longer descriptions to "
f"{SKILL_PROMPT_DESC_LIMIT - 3} chars + '...', destroying the routing signal. "
f"Move detail into the skill body.")
if not content[end_match.end() + 3:].strip():
return "SKILL.md must have content after the frontmatter (instructions, procedures, etc.)."
return None
def _validate_content_size(content: str, label: str = "SKILL.md") -> Optional[str]:
if len(content) > MAX_SKILL_CONTENT_CHARS:
return (
f"{label} content is {len(content):,} characters (limit: {MAX_SKILL_CONTENT_CHARS:,}). "
f"Consider splitting into a smaller SKILL.md with supporting files in references/ "
f"or templates/.")
return None
def _description_preview(content: str) -> str:
"""First 120 chars of the frontmatter description; '' on any failure."""
with suppress(Exception):
fm_end = _FRONTMATTER_END_RE.search(content[3:])
if fm_end:
return str(yaml.safe_load(content[3:fm_end.start() + 3]).get("description", ""))[:120]
return ""
def _resolve_skill_dir(name: str, category: str = None) -> Path:
"""New-skill dir; honors ``skills.create_dir`` (e.g. a shared fleet dir)."""
base = _skills_dir()
try:
from agent.skill_utils import get_skill_create_dir
base = get_skill_create_dir() or base
except Exception:
logger.debug("skills.create_dir lookup failed", exc_info=True)
return base / (category or "") / name
def _iter_skill_dirs(root: Path):
from agent.skill_utils import is_excluded_skill_path
for skill_md in root.rglob("SKILL.md"):
if not is_excluded_skill_path(skill_md):
yield skill_md.parent
def _find_skill(name: str) -> Optional[Dict[str, Any]]:
"""Find a skill (local skills dir, then skills.external_dirs) -> ``{"path": Path}`` | None.
Accepts the bare dir name (``axolotl``; matches category-nested skills too) and the
categorized relative path (``mlops/axolotl``) — the two forms skill_view resolves. The
categorized form matches RELATIVE to the local root only (relative_to raises for external dirs)."""
from agent.skill_utils import get_all_skills_dirs
local_root = None
if "/" in name or "\\" in name:
try:
local_root = _skills_dir().resolve()
except OSError:
logger.debug(
"skills dir resolve failed; categorized lookups fall back to the unresolved path",
exc_info=True)
local_root = _skills_dir()
for skills_dir in get_all_skills_dirs():
if not skills_dir.exists():
continue
for skill_dir in _iter_skill_dirs(skills_dir):
if skill_dir.name == name:
return {"path": skill_dir}
if local_root is not None:
resolved = skill_dir.resolve()
if (resolved.is_relative_to(local_root)
and resolved.relative_to(local_root).as_posix() == name): # POSIX form
return {"path": skill_dir}
return None
def _find_skill_in_other_profiles(name: str) -> List[Tuple[str, Path]]:
"""``(profile, skill_dir)`` pairs for OTHER profiles holding ``name`` (so the not-found
error can explain a wrong-profile mistake). Fail-quiet."""
matches: List[Tuple[str, Path]] = []
try:
from hermes_constants import get_default_hermes_root
root = get_default_hermes_root()
except Exception:
return matches
_active = _skills_dir()
active_dir = _active.resolve() if _active.exists() else _active
# Every profile's skills dir EXCEPT the active one (already searched). A candidate whose
# path cannot be resolved is skipped (not a fatal error); is_dir() checks stay unguarded.
candidates: List[Tuple[str, Path]] = []
with suppress(OSError, RuntimeError):
if (root / "skills").resolve() != active_dir:
candidates.append(("default", root / "skills"))
if (root / "profiles").is_dir():
with suppress(OSError):
for entry in (root / "profiles").iterdir():
if not entry.is_dir():
continue
try:
if (entry / "skills").resolve() == active_dir:
continue
except (OSError, RuntimeError):
continue
candidates.append((entry.name, entry / "skills"))
for profile_name, skills_dir in candidates:
if not skills_dir.is_dir():
continue
with suppress(OSError):
hit = next((d for d in _iter_skill_dirs(skills_dir) if d.name == name), None)
if hit is not None:
matches.append((profile_name, hit)) # one match per profile is enough
return matches
def _skill_not_found_error(name: str, suffix: str = "") -> str:
"""Not-found error naming other profiles that hold the skill, plus ``suffix``."""
from agent.file_safety import _resolve_active_profile_name
base = f"Skill '{name}' not found in active profile '{_resolve_active_profile_name()}'."
others = _find_skill_in_other_profiles(name)
if len(others) == 1:
other_profile, other_path = others[0]
base += (
f" A skill by that name exists in profile '{other_profile}' ({other_path}). To edit "
f"it, switch profiles (`hermes -p {other_profile}`) or edit the file directly "
f"(file tools / terminal).")
elif others:
names = ", ".join(f"'{p}'" for p, _ in others)
base += (
f" Skills by that name exist in other profiles: {names}. Switch profiles (`hermes -p "
f"<name>`) to edit there, or edit the files directly (file tools / terminal).")
else:
base += " Use skills_list() to see available skills."
return base + suffix
def _validate_file_path(file_path: str) -> Optional[str]:
"""Validate a write_file/remove_file path: under an allowed subdir, no escape."""
from tools.path_security import has_traversal_component
if not file_path:
return "file_path is required."
parts = Path(file_path).parts
# Traversal first, so the SKILL.md exception is unreachable by a traversal-laden path.
if has_traversal_component(file_path):
return "Path traversal ('..') is not allowed."
# SKILL.md lives at the skill root; accept 'SKILL.md' and '<skill>/SKILL.md'.
if parts and parts[-1] == "SKILL.md" and len(parts) in (1, 2):
return None
if not parts or parts[0] not in ALLOWED_SUBDIRS:
allowed = ", ".join(sorted(ALLOWED_SUBDIRS))
return f"File must be under one of: {allowed}. Got: '{file_path}'"
if len(parts) < 2:
return f"Provide a file path, not just a directory. Example: '{parts[0]}/myfile.md'"
return None
def _resolve_supporting_file(skill_dir: Path, file_path: str):
"""Validate ``file_path`` and resolve it inside ``skill_dir``
-> ``(target, None)`` | ``(None, error_dict)``."""
from tools.path_security import validate_within_dir
target = skill_dir / (file_path or "")
err = _validate_file_path(file_path) or validate_within_dir(target, skill_dir)
return (None, _err(err)) if err else (target, None)
def _locate_for_write(name: str, action: str, not_found_suffix: str = "", *,
org_guard: bool = True):
"""Find the skill; run the org-mirror (unless ``org_guard=False``) and background-review
write guards -> ``(skill_dir, None)`` | ``(None, error_dict)``."""
existing = _find_skill(name)
if not existing:
return None, _err(_skill_not_found_error(name, not_found_suffix))
skill_dir = existing["path"]
guard = ((org_guard and _org_mirror_write_guard(name, skill_dir, action))
or _background_review_write_guard(name, skill_dir, action))
return (None, guard) if guard else (skill_dir, None)
def _guarded_write(name: str, skill_dir: Path, target: Path, action: str, label: str,
content: str) -> Optional[Dict[str, Any]]:
"""Read-before-write guard (existing targets only), atomic write, then the security scan;
a blocked scan restores the original (or unlinks a new file). Error dict or None."""
original = None
if target.exists():
if read_guard := _background_review_read_before_write_guard(name, target, action, label):
return read_guard
original = target.read_text(encoding="utf-8-sig")
target.parent.mkdir(parents=True, exist_ok=True)
atomic_write_text(target, content, preserve_mode=True, create_mode=0o644)
scan_error = _security_scan_skill(skill_dir)
if not scan_error:
return None
if original is not None:
atomic_write_text(target, original, preserve_mode=True)
else:
target.unlink(missing_ok=True)
return _err(scan_error)
def _attach_org_note(result: Dict[str, Any], name: str, skill_dir: Path) -> Dict[str, Any]:
if org_note := _maybe_auto_propose_org_edit(name, skill_dir):
result["org_sharing"] = org_note
result["message"] = f"{result['message']} {org_note}"
return result
def _add_description_prompt_preview(result: Dict[str, Any], content: str) -> Dict[str, Any]:
fm, _ = _parse_frontmatter(content)
if is_skill_description_truncated_for_prompt(fm):
result["system_prompt_preview"] = (
f"System prompt will show: \"{extract_skill_description(fm)}\" — keep the trigger "
f"self-contained in the first {SKILL_PROMPT_DESC_LIMIT - 3} chars.")
return result
def _attach_lint_findings(result: Dict[str, Any], skill_md: Path) -> None:
"""Attach ADVISORY authoring findings (hard rejects already ran in _validate_frontmatter)."""
try:
from tools.skill_linter import lint_skill # local import: optional path
findings = lint_skill(skill_md)
except Exception:
findings = None
if not findings:
return
result["lint_warnings"] = [
{"severity": f.severity, "rule": f.rule, "message": f.message} for f in findings]
result["lint_hint"] = (
"The skill was created. These are advisory authoring-convention findings (not blockers) "
"— fix them with skill_manage(action='patch') to match Hermes skill standards.")
def _clip(text: str, n: int, ellipsis: str) -> str:
return text[:n] + (ellipsis if len(text) > n else "")
# --- Core actions -------------------------------------------------------------
def _create_skill(name: str, content: str, category: str = None) -> Dict[str, Any]:
if err := (_validate_name(name) or _validate_category(category)
or _validate_frontmatter(content, new_skill=True) or _validate_content_size(content)):
return _err(err)
if existing := _find_skill(name):
return _err(f"A skill named '{name}' already exists at {existing['path']}.")
skill_dir = _resolve_skill_dir(name, category)
skill_dir.mkdir(parents=True, exist_ok=True)
skill_md = skill_dir / "SKILL.md"
atomic_write_text(skill_md, content, preserve_mode=True, create_mode=0o644)
if scan_error := _security_scan_skill(skill_dir):
shutil.rmtree(skill_dir, ignore_errors=True)
return _err(scan_error)
root = _skills_dir() # display relative under the profile dir; absolute under skills.create_dir
display = skill_dir.relative_to(root) if skill_dir.is_relative_to(root) else skill_dir
result = {
"success": True, "message": f"Skill '{name}' created.", "path": str(display),
"skill_md": str(skill_md), "_change": {"description": _description_preview(content)},
**({"category": category} if category else {}),
"hint": "To add reference files, templates, or scripts, use "
f"skill_manage(action='write_file', name='{name}', file_path='references/example.md', "
"file_content='...')"}
_attach_lint_findings(_add_description_prompt_preview(result, content), skill_md)
return result
def _edit_skill(name: str, content: str) -> Dict[str, Any]:
"""Replace the SKILL.md of any existing skill (full rewrite)."""
if err := _validate_frontmatter(content) or _validate_content_size(content):
return _err(err)
skill_dir, guard = _locate_for_write(name, "edit")
# SKILL.md always exists here (_find_skill requires it), so a blocked scan restores it.
if guard := guard or _guarded_write(name, skill_dir, skill_dir / "SKILL.md", "edit", "SKILL.md", content):
return guard
result = {
"success": True, "message": f"Skill '{name}' updated (full rewrite).",
"path": str(skill_dir), "_change": {"description": _description_preview(content)}}
return _add_description_prompt_preview(_attach_org_note(result, name, skill_dir), content)
def _patch_skill(name: str, old_string: str, new_string: str, file_path: str = None,
replace_all: bool = False) -> Dict[str, Any]:
"""Targeted find-and-replace in SKILL.md (default) or a supporting file; unique match unless replace_all."""
if not old_string:
# A bare "required" error is a dead end: the model retries blindly and often
# escapes to action='write_file', clobbering the whole file.
return _err(
"old_string is required for 'patch' and must be the EXACT text currently in the file. "
"Read the target file first (read_file on the skill's SKILL.md, or the file named by "
"file_path) and copy the snippet verbatim, then retry 'patch'. Do NOT fall back to "
"action='write_file' — that rewrites the entire file and destroys unrelated content.")
if new_string is None:
return _err("new_string is required for 'patch'. Use an empty string to delete matched text.")
# No old_string == new_string guard here: fuzzy_find_and_replace rejects that with a
# richer error (file_preview) this layer cannot produce.
skill_dir, guard = _locate_for_write(name, "patch")
if guard:
return guard
target_label = file_path or "SKILL.md"
if file_path:
target, err = _resolve_supporting_file(skill_dir, file_path)
if err:
return err
else:
target = skill_dir / "SKILL.md"
if not target.exists():
return _err(f"File not found: {target.relative_to(skill_dir)}")
if read_guard := _background_review_read_before_write_guard(name, target, "patch", target_label):
return read_guard
content = target.read_text(encoding="utf-8-sig")
# Use the same fuzzy matching engine as the file patch tool.
from tools.fuzzy_match import fuzzy_find_and_replace
new_content, match_count, _strategy, match_error = fuzzy_find_and_replace(
content, old_string, new_string, replace_all)
if match_error:
with suppress(Exception):
from tools.fuzzy_match import format_no_match_hint
match_error += format_no_match_hint(match_error, match_count, old_string, content)
return _err(match_error) | {"file_preview": _clip(content, 500, "...")}
if err := _validate_content_size(new_content, label=target_label):
return _err(err)
if not file_path and (err := _validate_frontmatter(new_content)):
return _err(f"Patch would break SKILL.md structure: {err}")
if guard := _guarded_write(name, skill_dir, target, "patch", target_label, new_content):
return guard
result = {
"success": True,
"message": f"Patched {target_label} in skill '{name}' ({match_count} replacement{'s' if match_count > 1 else ''}).",
"_change": {"old": _clip(old_string, 200, "…"), "new": _clip(new_string, 200, "…")}}
return _attach_org_note(result, name, skill_dir)
def _delete_skill(name: str, absorbed_into: Optional[str] = None) -> Dict[str, Any]:
"""Delete a skill. ``absorbed_into``: None = undeclared (legacy, accepted); "" = explicit prune;
"<skill>" = absorbed into that umbrella, which must exist (so the model can't claim one)."""
skill_dir, guard = _locate_for_write(name, "delete")
if guard := guard or _curator_consolidation_delete_guard(name, absorbed_into):
return guard
if pinned_err := _pinned_guard(name):
return _err(pinned_err)
absorbed_target = absorbed_into.strip() if isinstance(absorbed_into, str) else ""
if absorbed_target:
if absorbed_target == name:
return _err(f"absorbed_into='{absorbed_target}' cannot equal the skill being deleted.")
if not _find_skill(absorbed_target):
return _err(f"absorbed_into='{absorbed_target}' does not exist. "
f"Create or patch the umbrella skill first, then retry the delete.")
skills_root = _containing_skills_root(skill_dir)
if unsafe := _validate_delete_target(skill_dir): # defense-in-depth before rmtree
return _err(unsafe)
# Curator consolidations must be RECOVERABLE (`hermes curator restore`): archive instead
# of rmtree. Foreground deletes keep hard-delete semantics.
absorbed_note = f" Content absorbed into '{absorbed_target}'." if absorbed_target else ""
if _is_background_review():
try:
from tools.skill_usage import archive_skill
ok, archive_msg = archive_skill(name)
except Exception as e:
return _err(f"failed to archive '{name}': {e}")
if not ok:
return _err(archive_msg)
return {"success": True,
"message": f"Skill '{name}' archived ({archive_msg}).{absorbed_note}",
"_archived": True}
shutil.rmtree(skill_dir)
_rmdir_if_empty(skill_dir.parent, skills_root) # empty category dir, never the root
return {"success": True, "message": f"Skill '{name}' deleted.{absorbed_note}"}
def _rmdir_if_empty(parent: Path, stop: Path) -> None:
if parent != stop and parent.exists() and not any(parent.iterdir()):
parent.rmdir()
def _write_file(name: str, file_path: str, file_content: str) -> Dict[str, Any]:
"""Add or overwrite a supporting file within any skill directory."""
if err := _validate_file_path(file_path):
return _err(err)
if not file_content and file_content != "":
return _err("file_content is required.")
if (content_bytes := len(file_content.encode("utf-8"))) > MAX_SKILL_FILE_BYTES:
return _err(f"File content is {content_bytes:,} bytes (limit: {MAX_SKILL_FILE_BYTES:,} "
f"bytes / 1 MiB). Consider splitting into smaller files.")
if err := _validate_content_size(file_content, label=file_path):
return _err(err)
skill_dir, guard = _locate_for_write(name, "write_file", " Create it first with action='create'.")
if guard:
return guard
target, err = _resolve_supporting_file(skill_dir, file_path)
if guard := err or _guarded_write(name, skill_dir, target, "write_file", file_path, file_content):
return guard
result = _attach_org_note({"success": True, "message": f"File '{file_path}' written to skill '{name}'.",
"path": str(target)}, name, skill_dir)
# references/ is where per-session hoarding shows up; surface the sprawl finding on the write
# that crosses the line so the review fork sees it in the same turn.
if file_path.startswith("references/") and (skill_dir / "SKILL.md").exists():
_attach_lint_findings(result, skill_dir / "SKILL.md")
return result
def _remove_file(name: str, file_path: str) -> Dict[str, Any]:
"""Remove a supporting file from any skill directory."""
if err := _validate_file_path(file_path):
return _err(err)
skill_dir, guard = _locate_for_write(name, "remove_file", org_guard=False)
if guard:
return guard
target, err = _resolve_supporting_file(skill_dir, file_path)
if err:
return err
if not target.exists(): # list what IS there so the model can pick the right path
available = [str(f.relative_to(skill_dir)) for subdir in ALLOWED_SUBDIRS
if (skill_dir / subdir).exists() for f in (skill_dir / subdir).rglob("*") if f.is_file()]
return _err(f"File '{file_path}' not found in skill '{name}'.", available_files=available or None)
if read_guard := _background_review_read_before_write_guard(name, target, "remove_file", file_path):
return read_guard
target.unlink()
_rmdir_if_empty(target.parent, skill_dir)
return {"success": True, "message": f"File '{file_path}' removed from skill '{name}'."}
# --- Main entry point ---------------------------------------------------------
# Set while replaying an approved staged skill write so skill_manage() does not re-gate it.
_skill_gate_bypass: "_ctxvars.ContextVar[bool]" = _ctxvars.ContextVar(
"skill_gate_bypass", default=False)
def _run_write_gate(build_staging):
"""Shared write gate: None to proceed, else a JSON tool result (blocked/staged).
``build_staging(wa) -> (payload, gist)`` runs only when staging. Fails open if
write_approval cannot be imported."""
try:
from tools import write_approval as wa
except Exception:
return None # fail open
decision = wa.evaluate_gate(wa.SKILLS)
if decision.allow:
return None
if decision.blocked:
return tool_error(decision.message, success=False)
payload, gist = build_staging(wa)
record = wa.stage_write(wa.SKILLS, payload, summary=gist, origin=wa.current_origin())
return json.dumps({"success": True, "staged": True, "pending_id": record["id"],
"gist": gist, "message": decision.message}, ensure_ascii=False)
def _apply_skill_write_gate(action, name, **payload_kwargs):
"""Flat-shape gate: stage the full kwargs so approval can replay them; bypassed during replay."""
if action not in _ACTION_HANDLERS or _skill_gate_bypass.get():
return None
def _staging(wa):
payload = {"action": action, "name": name,
**{k: v for k, v in payload_kwargs.items() if v is not None}}
gist_kw = {k: payload_kwargs.get(k) or ""
for k in ("content", "file_path", "old_string", "new_string")}
return payload, wa.skill_gist(action, name, **gist_kw)
return _run_write_gate(_staging)
_FLAT_OP_KEYS = ("content", "category", "file_path", "file_content", "old_string", "new_string",
"absorbed_into", "operations")
def _skill_manage_from(payload: Dict[str, Any], **extra) -> str:
"""Call ``skill_manage`` with the flat-shape fields (and absorbed_into/operations) of ``payload``."""
return skill_manage(
action=payload.get("action", ""), name=payload.get("name", ""),
replace_all=payload.get("replace_all", False),
**{k: payload.get(k) for k in _FLAT_OP_KEYS}, **extra)
def apply_skill_pending(payload: Dict[str, Any]) -> str:
"""Replay a staged skill write, bypassing the gate (the /skills approve handler)."""
token = _skill_gate_bypass.set(True)
try:
return _skill_manage_from(payload)
finally:
_skill_gate_bypass.reset(token)
# Sync push debounce: a burst of skill_manage writes collapses into one push on a daemon timer.
# One timer per profile home: in a multiplexed process B's write must not cancel A's pending push.
_sync_push_timers: Dict[str, threading.Timer] = {}
_sync_push_lock = threading.Lock()
_SYNC_PUSH_DEBOUNCE_S = 5.0
def _maybe_debounced_sync_push(skill_name: str) -> None:
"""Debounced best-effort sync push after a skill write; never blocks the caller. Skills not
opted into sync do nothing (no auth/network); ``maybe_push_skills`` enforces the access gate."""
try:
from tools.skill_usage import is_sync_enabled
if not is_sync_enabled(skill_name):
return
except Exception:
return
from hermes_constants import hermes_home_key
home_key = hermes_home_key()
# Timer threads start with empty ContextVars; without the scheduling turn's context the push would
# resolve the launch profile's home and credentials instead of the writing profile's.
ctx = _ctxvars.copy_context()
def _fire():
with suppress(Exception):
from tools.skills_sync_client import maybe_push_skills
maybe_push_skills(message=f"sync: {skill_name}")
with _sync_push_lock:
pending = _sync_push_timers.get(home_key)
if pending is not None:
pending.cancel() # only sets an Event; never raises
timer = threading.Timer(_SYNC_PUSH_DEBOUNCE_S, ctx.run, args=(_fire,))
timer.daemon = True
_sync_push_timers[home_key] = timer
timer.start()
def _act_patch(a):
"""Two shapes: old_string/new_string = targeted replacement (validated in _patch_skill so the
tool and the helper give the same guidance); content alone = full rewrite (the old 'edit')."""
if a["content"] and (a["old_string"] or a["new_string"] is not None):
return tool_error("Pass EITHER content (full SKILL.md rewrite) OR "
"old_string/new_string (targeted replacement), not both.", success=False)
if a["content"]:
return _edit_skill(a["name"], a["content"])
return _patch_skill(a["name"], a["old_string"], a["new_string"], a["file_path"], a["replace_all"])
# action -> handler(args dict) returning a result dict, or a tool_error JSON string for
# argument-shape errors. "edit" is a legacy alias for a full rewrite (not in the schema).
_ACTION_HANDLERS = {
"create": lambda a: _create_skill(a["name"], a["content"], a["category"]),
"edit": lambda a: _edit_skill(a["name"], a["content"]),
"patch": _act_patch,
"delete": lambda a: _delete_skill(a["name"], absorbed_into=a["absorbed_into"]),
"write_file": lambda a: _write_file(a["name"], a["file_path"], a["file_content"]),
"remove_file": lambda a: _remove_file(a["name"], a["file_path"])}
# action -> (arg, is_missing, error) argument-shape checks run before the handler.
_MISSING, _IS_NONE = (lambda v: not v), (lambda v: v is None)
_REQUIRED_ARGS = {
"create": [("content", _MISSING,
"content is required for 'create'. Provide the full SKILL.md text (frontmatter + body).")],
"edit": [("content", _MISSING,
"content is required for a full rewrite. Provide the full updated SKILL.md text.")],
"write_file": [
("file_path", _MISSING, "file_path is required for 'write_file'. Example: 'references/api-guide.md'"),
("file_content", _IS_NONE, "file_content is required for 'write_file'.")],
"remove_file": [("file_path", _MISSING, "file_path is required for 'remove_file'.")]}
def _record_success(action, name, result, *, file_path, absorbed_into, task_id,
session_id, ledger_before) -> None:
"""Best-effort post-mutation side effects (never break the tool): ledger, prompt-cache
clear, curator telemetry, debounced sync push."""
with suppress(Exception):
from tools import skill_ledger as _ledger
_post = _find_skill(name)
# delete: consolidation vs prune, and whether the recoverable archive handled it
_evidence = ({"absorbed_into": absorbed_into, "archived": bool(result.get("_archived"))}
if action == "delete" else {})
_evidence.update({k: v for k, v in (("session_id", session_id), ("file_path", file_path)) if v})
_ledger.record_mutation(
action, name, before=ledger_before if ledger_before is not None else [],
after_root=_post["path"] if _post else None, evidence=_evidence)
with suppress(Exception):
from agent.prompt_builder import clear_skills_system_prompt_cache
clear_skills_system_prompt_cache(clear_snapshot=True)
# Curator telemetry: only the background review fork marks a skill agent-created
# (foreground creates belong to the user). A recoverable curator archive keeps its
# record as STATE_ARCHIVED (`hermes curator status`/`restore`); only a hard delete forgets.
with suppress(Exception):
from tools.skill_usage import bump_patch, forget, record_created
# During the curator consolidation pass, a verified consolidation must be RECOVERABLE: archival into
# ~/.hermes/skills/.archive/ is documented as the maximum destructive action the curator may take,
# and `hermes curator restore` promises the skill can be brought back. Route through the recoverable
# archive primitive instead of permanent rmtree so a misjudged consolidation can be undone (#29912).
# Foreground, user-directed deletes keep their existing hard-delete semantics.
from tools.skill_provenance import is_background_review
if action == "create":
record_created(name, agent_created=is_background_review(),
task_id=task_id, session_id=session_id)
elif action in {"patch", "edit", "write_file", "remove_file"}:
bump_patch(name, action=action, task_id=task_id, session_id=session_id)
elif action == "delete" and not result.get("_archived"):
forget(name)
# Only AFTER the write gate passed (staged writes returned early): never push un-reviewed content.
with suppress(Exception):
_maybe_debounced_sync_push(name)
def skill_manage(
action: str, name: str, content: str = None, category: str = None, file_path: str = None,
file_content: str = None, old_string: str = None, new_string: str = None,
replace_all: bool = False, absorbed_into: str = None, task_id: str = None,
session_id: str = None, operations=None) -> str:
"""Dispatch to the action handler -> JSON string. ``operations`` (atomic batch shape,
see _skill_manage_batch) overrides the flat fields."""
if operations is not None:
return _skill_manage_batch(
operations, default_name=name or None, task_id=task_id, session_id=session_id)
if (preflight := _background_review_preflight(action, name)) is not None:
return json.dumps(preflight, ensure_ascii=False)
# Approval gate: skills are too large to review inline, so they always stage regardless
# of origin; bypassed when replaying an approved staged write.
args = dict(content=content, category=category, file_path=file_path, file_content=file_content,
old_string=old_string, new_string=new_string, replace_all=replace_all,
absorbed_into=absorbed_into)
if (gate_result := _apply_skill_write_gate(action, name, **args)) is not None:
return gate_result
# Ledger pre-capture: telemetry, not a gate — failures must NEVER block the mutation. delete
# destroys the whole package (consolidation may have re-homed support files first), so
# complete it from the newest curator backup or a restore is hollow.
# Audit ledger (tracker #79686 P3): capture the pre-mutation state of the skill directory so every
# mutation — any actor — lands in the append-only JSONL ledger with before/after blobs.
_ledger_before = None
with suppress(Exception):
from tools import skill_ledger as _ledger
_pre = _find_skill(name)
_ledger_before = _ledger.capture_before(
_pre["path"] if _pre else None, complete_package=(action == "delete"), skill=name)
for arg, missing, message in _REQUIRED_ARGS.get(action, ()):
if missing(args[arg]):
return tool_error(message, success=False)
handler = _ACTION_HANDLERS.get(action, lambda a: _err(
f"Unknown action '{action}'. Use: create, edit, patch, delete, write_file, remove_file"))
result = handler({"name": name, **args})
if isinstance(result, str):
return result # tool_error JSON for argument-shape problems (patch)
if result.get("success"):
_record_success(
action, name, result, file_path=file_path, absorbed_into=absorbed_into,
task_id=task_id, session_id=session_id, ledger_before=_ledger_before)
return json.dumps(result, ensure_ascii=False)
# --- OpenAI Function-Calling Schema -------------------------------------------
def _skill_manage_description(create_dir: str) -> str:
return (
"Create, update, or delete skills — your procedural memory for "
"recurring task types. The call is an operations array (a single "
"edit is a list of one); it applies atomically — any failure rolls "
"every touched skill back. Ops: create (full SKILL.md; lands in "
f"{create_dir}; must precede that skill's other "
"ops), patch (targeted old_string/new_string fix — preferred; "
"content alone REPLACES the whole file, read it via skill_view() "
"first), write_file/remove_file (supporting files), delete (sole "
"op only). Existing skills are modified wherever they live. Keep "
"the description's first 57 chars a self-contained trigger: 'Use "
"when <trigger>. <one-line behavior>.' Write lessons, not logs: "
"imperative rule + why, no PR numbers/dates/incident narration, one "
"rule per lesson, references/ named by topic (extend before adding). "
"skill_view() shows format conventions."
)
def _skill_manage_schema_overrides() -> dict:
"""Rebuild the create-dir hint from the ACTIVE profile at every get_definitions(): the
multiplexed gateway serves every profile from one process, so a path baked in at import
would name the launch profile's skills dir for everyone else (#95685)."""
return {"description": _skill_manage_description(_display_create_dir())}
SKILL_MANAGE_SCHEMA = {
"name": "skill_manage",
# ONE advertised call shape (memory-tool pattern): the call IS an operations
# array. The legacy flat shape (top-level action/name/content/...) is still
# ACCEPTED for old transcripts and staged-write replay, but not advertised.
"description": _skill_manage_description("the profile's skills.create_dir"),
"parameters": {
"type": "object",
"properties": {
"operations": {
"type": "array",
"description": "Ordered ops; each names its target skill.",
"items": {
"type": "object",
"properties": {
"name": {
"type": "string",
"description": (
"Skill name (lowercase, hyphens/underscores, "
"max 64 chars); an existing skill's name "
"unless creating."
)
},
"action": {
"type": "string",
"enum": ["create", "patch", "delete", "write_file", "remove_file"]
},
"content": {
"type": "string",
"description": (
"Full SKILL.md text (YAML frontmatter + "
"markdown body) for create, or a full "
"rewrite on patch."
)
},
"category": {
"type": "string",
"description": "Optional category subdir for create (e.g. 'devops')."
},
# patch args: same fuzzy-matching semantics as the
# `patch` tool — teach only skill-specific facts here.
"old_string": {
"type": "string",
"description": "Text to find (patch; same matching semantics as the patch tool)."
},
"new_string": {
"type": "string",
"description": "Replacement (patch); empty string deletes the match."
},
"replace_all": {
"type": "boolean",
"description": "patch: replace all occurrences (default false)."
},
"file_path": {
"type": "string",
"description": (
"Path RELATIVE to the skill's own directory, "
"e.g. 'references/api.md' — no leading slash, "
"never absolute. write_file/remove_file: "
"required; first segment references/, "
"templates/, scripts/, or assets/. patch: "
"optional (default SKILL.md)."
)
},
"file_content": {
"type": "string",
"description": "Content for write_file."
}
},
"required": ["name", "action"]
}
},
# Also accepted, never advertised: the legacy flat single-op fields, and
# `absorbed_into` on delete ops (curator-only vocabulary; the curator's
# prompt documents it and the delete guard's error re-teaches it).
},
"required": ["operations"],
},
}
# --- Registry ---
from tools.registry import registry, tool_error
registry.register(
name="skill_manage", toolset="skills", schema=SKILL_MANAGE_SCHEMA, emoji="📝",
handler=lambda args, **kw: _skill_manage_from(
args, task_id=kw.get("task_id"), session_id=kw.get("session_id")),
dynamic_schema_overrides=_skill_manage_schema_overrides)
# ---- BEGIN PLUGIN-COMPAT (revert-scheduled; see COMPAT_MANIFEST.md) ----
# Names external plugins imported from this module before the Sep 2026 decomposition.
# Internal code MUST NOT use these (scripts/check_compat_pointers.py fails CI if it does).
# The whole block is removed by reverting the commit that added it.
_PLUGIN_COMPAT_LAZY = {
'mark_background_review_skill_read': ('tools.skill_manager_guards', 'mark_background_review_skill_read'),
}
def __getattr__(name): # PEP 562 — lazy so no import cycles
target = _PLUGIN_COMPAT_LAZY.get(name)
if target is None:
raise AttributeError(f"module {__name__!r} has no attribute {name!r}")
import importlib
from hermes_cli.plugin_compat import warn_once
warn_once(__name__, name, *target)
return getattr(importlib.import_module(target[0]), target[1])
# ---- END PLUGIN-COMPAT ----