oclaw/runtime/skill_installer.py
oliver 5d67303d22 修复 Admin Skills 安装区块不显示,并支持卸载 _workspace/public lane。
同时补齐 _workspace/public 目录约定、公共技能免绑定规则,并为 run_command 增加默认禁用开关与回归测试。

Made-with: Cursor
2026-05-01 03:34:32 +08:00

847 lines
32 KiB
Python

from __future__ import annotations
import ast
import importlib.util
import json
import shutil
import subprocess
import sys
import tarfile
import tempfile
import time
import urllib.parse
import urllib.error
import urllib.request
import zipfile
from dataclasses import dataclass
from pathlib import Path
from typing import Any
from oclaw.runtime.skills_market import get_market_adapter
from oclaw.runtime.skill_role_binding import (
SKILL_ROLE_BINDING_ENABLED_SETTING,
SKILL_ROLE_BINDING_KEY,
normalize_skill_role_binding,
ordered_binding_roles,
)
from oclaw.runtime.skills import (
default_skills_root,
discover_workspace_skill_manifests,
load_skill_manifest,
)
_DISABLED_SKILLS_KEY = "AIA_SKILL_DISABLED_NAMES"
_AUTO_INSTALL_KEY = "AIA_SKILL_AUTO_INSTALL_ENABLED"
_AUTO_ENABLE_TRUSTED_KEY = "AIA_SKILL_AUTO_ENABLE_TRUSTED"
_AUTO_INSTALL_DEPS_KEY = "AIA_SKILL_AUTO_INSTALL_DEPS_ENABLED"
_ARCHIVE_DOWNLOAD_TIMEOUT_S = 45
_ARCHIVE_DOWNLOAD_MAX_RETRIES = 3
def _download_archive_bytes(url: str) -> bytes:
req = urllib.request.Request(
url,
headers={
"User-Agent": "Oclaw-SkillInstaller/1.0 (+https://clawhub.ai)",
"Accept": "*/*",
},
)
last_exc: Exception | None = None
for attempt in range(1, _ARCHIVE_DOWNLOAD_MAX_RETRIES + 1):
try:
with urllib.request.urlopen(req, timeout=_ARCHIVE_DOWNLOAD_TIMEOUT_S) as resp:
return resp.read()
except Exception as exc:
last_exc = exc
code = getattr(exc, "code", None)
retryable_http = isinstance(code, int) and code in {408, 429, 500, 502, 503, 504}
retryable_net = isinstance(exc, urllib.error.URLError) or isinstance(exc, TimeoutError)
if attempt >= _ARCHIVE_DOWNLOAD_MAX_RETRIES or not (retryable_http or retryable_net):
raise
time.sleep(0.8 * attempt)
raise last_exc or RuntimeError("download_failed_unknown")
@dataclass(frozen=True)
class SkillInstallResult:
ok: bool
name: str
target_dir: str
detail: str = ""
error_code: str = ""
retryable: bool = False
auto_enabled: bool = False
binding_applied_roles: tuple[str, ...] = ()
def _classify_install_detail(detail: str) -> tuple[str, bool]:
d = str(detail or "").strip().lower()
if not d:
return ("unknown", False)
if d.startswith("download_failed") or d.startswith("extract_failed"):
return ("transport_or_extract_error", True)
if d in {"archive_too_large", "empty_archive", "unsupported_archive_type", "archive_url_required", "unsupported_url_scheme"}:
return ("invalid_archive", False)
if d in {"already_exists"}:
return ("already_exists", False)
if d.startswith("unsafe_") or d.startswith("skill_md_missing") or d.startswith("manifest_parse_failed"):
return ("invalid_skill_package", False)
if d.startswith("rollback_after_error"):
return ("runtime_error", True)
if d in {"installed", "created", "removed"}:
return ("ok", False)
return ("unknown", False)
def _truthy(v: str | None) -> bool:
return str(v or "").strip().lower() in {"1", "true", "yes", "on"}
def skill_auto_install_enabled(store: Any) -> bool:
try:
raw = str(store.get_setting(_AUTO_INSTALL_KEY) or "").strip()
except Exception:
raw = ""
if not raw:
return True
return _truthy(raw)
def skill_auto_enable_trusted_enabled(store: Any) -> bool:
try:
raw = str(store.get_setting(_AUTO_ENABLE_TRUSTED_KEY) or "").strip()
except Exception:
raw = ""
# Default ON for workspace/auto-install lane; tenant can disable explicitly.
if not raw:
return True
return _truthy(raw)
def skill_auto_install_deps_enabled(store: Any) -> bool:
try:
raw = str(store.get_setting(_AUTO_INSTALL_DEPS_KEY) or "").strip()
except Exception:
raw = ""
# Default ON to reduce first-run dependency issues for newly installed skills.
if not raw:
return True
return _truthy(raw)
def _scan_dependency_manifests(skill_dir: Path) -> dict[str, list[Path]]:
req_files: list[Path] = []
pkg_files: list[Path] = []
try:
for p in skill_dir.rglob("requirements.txt"):
if p.is_file():
req_files.append(p)
for p in skill_dir.rglob("package.json"):
if p.is_file():
pkg_files.append(p)
except Exception:
return {"requirements": [], "package_json": []}
req_files = sorted(req_files)
pkg_files = sorted(pkg_files)
return {"requirements": req_files, "package_json": pkg_files}
def _run_dep_install(command: list[str], *, cwd: Path) -> tuple[bool, str]:
try:
cp = subprocess.run(
command,
cwd=str(cwd),
capture_output=True,
text=True,
timeout=600,
check=False,
)
except Exception as exc:
return False, f"{type(exc).__name__}"
if int(cp.returncode) == 0:
return True, ""
err = str(cp.stderr or cp.stdout or "").strip()
if err:
err = err[:160].replace("\n", " ")
return False, err or f"exit_{cp.returncode}"
def _auto_install_skill_dependencies(*, store: Any, skill_dir: Path) -> tuple[bool, str]:
if not skill_auto_install_deps_enabled(store):
return True, ""
manifests = _scan_dependency_manifests(skill_dir)
req_files = manifests.get("requirements") or []
pkg_files = manifests.get("package_json") or []
if not req_files and not pkg_files:
return True, ""
failures: list[str] = []
# Python dependencies
for req in req_files:
ok, detail = _run_dep_install([sys.executable, "-m", "pip", "install", "-r", str(req)], cwd=req.parent)
if not ok:
failures.append(f"pip:{req.name}:{detail}")
# Node dependencies (only when package.json declares deps)
for pkg in pkg_files:
try:
obj = json.loads(pkg.read_text(encoding="utf-8"))
except Exception:
obj = {}
deps = obj.get("dependencies") if isinstance(obj, dict) else None
if not isinstance(deps, dict) or not deps:
continue
ok, detail = _run_dep_install(["npm", "install", "--omit=dev"], cwd=pkg.parent)
if not ok:
failures.append(f"npm:{pkg.name}:{detail}")
if failures:
return False, "; ".join(failures[:4])
return True, ""
def _collect_python_import_roots(skill_dir: Path) -> set[str]:
names: set[str] = set()
for py in skill_dir.rglob("*.py"):
if not py.is_file():
continue
try:
tree = ast.parse(py.read_text(encoding="utf-8"), filename=str(py))
except Exception:
continue
for node in ast.walk(tree):
if isinstance(node, ast.Import):
for alias in node.names:
root = str(alias.name or "").split(".", 1)[0].strip()
if root:
names.add(root)
elif isinstance(node, ast.ImportFrom):
if int(node.level or 0) > 0:
continue
root = str(node.module or "").split(".", 1)[0].strip()
if root:
names.add(root)
return names
def _local_python_module_roots(skill_dir: Path) -> set[str]:
roots: set[str] = set()
for py in skill_dir.rglob("*.py"):
if py.is_file():
roots.add(py.stem)
for p in skill_dir.rglob("*"):
if p.is_dir() and (p / "__init__.py").exists():
roots.add(p.name)
return {x for x in roots if x and x != "__init__"}
def _auto_probe_and_install_python_imports(*, store: Any, skill_dir: Path) -> tuple[bool, str]:
if not skill_auto_install_deps_enabled(store):
return True, ""
imports = _collect_python_import_roots(skill_dir)
if not imports:
return True, ""
local_roots = _local_python_module_roots(skill_dir)
stdlib = set(getattr(sys, "stdlib_module_names", set()) or set())
missing: list[str] = []
for name in sorted(imports):
if name in local_roots or name in stdlib:
continue
if importlib.util.find_spec(name) is None:
missing.append(name)
if not missing:
return True, ""
ok, detail = _run_dep_install([sys.executable, "-m", "pip", "install", *missing], cwd=skill_dir)
if not ok:
return False, f"probe_pip:{detail}"
return True, ""
def _get_disabled_names(store: Any) -> set[str]:
try:
raw = str(store.get_setting(_DISABLED_SKILLS_KEY) or "").strip()
except Exception:
raw = ""
if not raw:
return set()
try:
arr = json.loads(raw)
if isinstance(arr, list):
return {str(x).strip() for x in arr if str(x).strip()}
except Exception:
pass
return set()
def _set_disabled_names(store: Any, names: set[str]) -> None:
vals = sorted({str(x).strip() for x in names if str(x).strip()})
store.set_setting(_DISABLED_SKILLS_KEY, json.dumps(vals, ensure_ascii=False))
def _apply_auto_enable_binding(*, store: Any, skill_name: str, skills_root: str | Path | None = None) -> tuple[bool, tuple[str, ...]]:
nm = str(skill_name or "").strip()
if not nm:
return False, ()
if not skill_auto_enable_trusted_enabled(store):
return False, ()
roles = ordered_binding_roles()
valid = {str(m.name).strip() for m in discover_workspace_skill_manifests(skills_root) if str(m.name or "").strip()}
# If discovery lags for any reason, still include the newly created skill as valid candidate.
valid.add(nm)
try:
raw = str(store.get_setting(SKILL_ROLE_BINDING_KEY) or "").strip()
mapping_raw = json.loads(raw) if raw else {}
except Exception:
mapping_raw = {}
mapping = normalize_skill_role_binding(
mapping_raw=mapping_raw if isinstance(mapping_raw, dict) else {},
valid_skill_names=valid,
available_roles=roles,
)
changed = False
for role in roles:
cur = list(mapping.get(role) or [])
if nm not in cur:
cur.append(nm)
mapping[role] = cur
changed = True
if changed:
store.set_setting(SKILL_ROLE_BINDING_KEY, json.dumps(mapping, ensure_ascii=False))
# Ensure role filter is active when we auto-attach to all roles.
store.set_setting(SKILL_ROLE_BINDING_ENABLED_SETTING, "1")
return True, tuple(roles)
def list_skills_with_status(*, store: Any, skills_root: str | Path | None = None) -> list[dict[str, Any]]:
disabled = _get_disabled_names(store)
out: list[dict[str, Any]] = []
for m in discover_workspace_skill_manifests(skills_root):
runtime = dict(m.runtime or {}) if isinstance(m.runtime, dict) else {}
out.append(
{
"name": m.name,
"description": m.description,
"skill_dir": m.skill_dir,
"skill_file": m.skill_file,
"enabled": m.name not in disabled,
"install_specs": [dict(id=s.id, kind=s.kind, payload=s.payload) for s in m.install],
"metadata_oclaw": dict(m.metadata_oclaw),
"runtime": runtime,
"executable": bool(runtime),
}
)
return out
def set_skill_enabled(*, store: Any, skill_name: str, enabled: bool) -> None:
name = str(skill_name or "").strip()
if not name:
return
disabled = _get_disabled_names(store)
if enabled:
disabled.discard(name)
else:
disabled.add(name)
_set_disabled_names(store, disabled)
def uninstall_skill(
*,
store: Any,
skill_name: str,
skills_root: str | Path | None = None,
) -> SkillInstallResult:
name = str(skill_name or "").strip()
if not name:
ec, rt = _classify_install_detail("name_required")
return SkillInstallResult(ok=False, name="", target_dir="", detail="name_required", error_code=ec, retryable=rt)
root = Path(skills_root).resolve() if skills_root else default_skills_root()
# Prefer manifest directory resolution to handle workspace lanes and public lane.
target: Path | None = None
try:
manifests = list(discover_workspace_skill_manifests(root))
m = next((x for x in manifests if str(x.name or "").strip() == name), None)
if m and str(m.skill_dir or "").strip():
target = Path(str(m.skill_dir)).resolve()
except Exception:
target = None
if target is None:
# Fallback to legacy lane guesses.
candidates = [root / name, root / "_workspace" / name, root / "_workspace" / "public" / name]
target = next((p for p in candidates if p.exists() and p.is_dir()), None)
if target is None:
ec, rt = _classify_install_detail("not_found")
return SkillInstallResult(ok=False, name=name, target_dir="", detail="not_found", error_code=ec, retryable=rt)
# Safety: only allow uninstall within the configured skills root.
try:
root_r = root.resolve()
ws_r = (root_r / "_workspace").resolve()
if not (str(target).startswith(str(root_r)) or str(target).startswith(str(ws_r))):
ec, rt = _classify_install_detail("runtime_error")
return SkillInstallResult(ok=False, name=name, target_dir=str(target), detail="remove_failed:path_restricted", error_code=ec, retryable=rt)
except Exception:
ec, rt = _classify_install_detail("runtime_error")
return SkillInstallResult(ok=False, name=name, target_dir=str(target), detail="remove_failed:path_restricted", error_code=ec, retryable=rt)
try:
shutil.rmtree(target)
except Exception as exc:
ec, rt = _classify_install_detail("runtime_error")
return SkillInstallResult(ok=False, name=name, target_dir=str(target), detail=f"remove_failed:{type(exc).__name__}", error_code=ec, retryable=rt)
set_skill_enabled(store=store, skill_name=name, enabled=True)
ec, rt = _classify_install_detail("removed")
return SkillInstallResult(ok=True, name=name, target_dir=str(target), detail="removed", error_code=ec, retryable=rt)
def scan_skill_source_dir(src_dir: str | Path) -> tuple[bool, str]:
src = Path(src_dir).resolve()
if not src.exists() or not src.is_dir():
return False, "source_dir_not_found"
skill_md = src / "SKILL.md"
if not skill_md.exists() or not skill_md.is_file():
return False, "skill_md_missing"
for p in src.rglob("*"):
if not p.is_file():
continue
nm = p.name.lower()
if nm.endswith((".exe", ".dll", ".bat", ".cmd", ".ps1")):
return False, f"unsafe_file_detected:{p.name}"
return True, "ok"
def _safe_archive_members(paths: list[str]) -> bool:
for p in paths:
v = str(p or "").replace("\\", "/")
if not v or v.startswith("/") or ".." in v.split("/"):
return False
return True
def _extract_archive_to_temp(archive_path: Path) -> tuple[bool, str, Path | None]:
temp_dir = Path(tempfile.mkdtemp(prefix="skill_archive_"))
try:
if zipfile.is_zipfile(archive_path):
with zipfile.ZipFile(archive_path, "r") as zf:
members = [str(x.filename or "") for x in zf.infolist()]
if not _safe_archive_members(members):
return False, "unsafe_archive_path", None
zf.extractall(temp_dir)
return True, "ok", temp_dir
if tarfile.is_tarfile(archive_path):
with tarfile.open(archive_path, "r:*") as tf:
members = [str(x.name or "") for x in tf.getmembers()]
if not _safe_archive_members(members):
return False, "unsafe_archive_path", None
tf.extractall(temp_dir)
return True, "ok", temp_dir
shutil.rmtree(temp_dir, ignore_errors=True)
return False, "unsupported_archive_type", None
except Exception as exc:
shutil.rmtree(temp_dir, ignore_errors=True)
return False, f"extract_failed:{type(exc).__name__}", None
def _resolve_registry_archive_url(url: str) -> str:
raw = str(url or "").strip()
if not raw:
return raw
parsed = urllib.parse.urlparse(raw)
if parsed.scheme not in {"http", "https"}:
return raw
host = str(parsed.netloc or "").strip().lower()
if host not in {"clawhub.ai", "www.clawhub.ai"}:
return raw
segs = [s for s in str(parsed.path or "").split("/") if s]
if not segs:
return raw
# Clawhub page URLs: https://clawhub.ai/<author>/<slug>
# Resolve via clawhub client first (matches test + avoids adapter drift).
try:
if len(segs) >= 2:
from oclaw.runtime.tools.skills.clawhub_client import get_skill_detail
slug = str(segs[-1] or "").strip()
if slug:
detail = get_skill_detail(slug)
archive_url = str((detail or {}).get("archiveUrl") or "").strip()
if archive_url:
return archive_url
except Exception:
pass
candidates: list[str] = []
if len(segs) >= 1:
candidates.append(segs[-1])
if len(segs) >= 2:
candidates.append(f"{segs[0]}/{segs[1]}")
try:
adapter = get_market_adapter("clawhub")
for slug in candidates:
archive_url, _ = adapter.resolve_archive_url(slug=slug, version=None)
if archive_url:
return archive_url
return raw
except Exception:
return raw
def install_skill_from_local_dir(
*,
store: Any,
source_dir: str | Path,
overwrite: bool = False,
skills_root: str | Path | None = None,
auto_bind: bool = False,
) -> SkillInstallResult:
src = Path(source_dir).resolve()
ok, detail = scan_skill_source_dir(src)
if not ok:
ec, rt = _classify_install_detail(detail)
return SkillInstallResult(ok=False, name="", target_dir="", detail=detail, error_code=ec, retryable=rt)
manifest = load_skill_manifest(src)
if not manifest:
ec, rt = _classify_install_detail("manifest_parse_failed")
return SkillInstallResult(ok=False, name="", target_dir="", detail="manifest_parse_failed", error_code=ec, retryable=rt)
root = Path(skills_root).resolve() if skills_root else default_skills_root()
root.mkdir(parents=True, exist_ok=True)
safe_name = str(manifest.name).strip()
target = root / safe_name
if target.exists():
if not overwrite:
ec, rt = _classify_install_detail("already_exists")
return SkillInstallResult(ok=False, name=manifest.name, target_dir=str(target), detail="already_exists", error_code=ec, retryable=rt)
shutil.rmtree(target)
shutil.copytree(src, target)
set_skill_enabled(store=store, skill_name=manifest.name, enabled=True)
auto_enabled = False
binding_roles: tuple[str, ...] = ()
if auto_bind:
binding_root = root.parent if str(root.name).strip().lower() == "_workspace" else root
auto_enabled, binding_roles = _apply_auto_enable_binding(store=store, skill_name=manifest.name, skills_root=binding_root)
deps_ok, deps_detail = _auto_install_skill_dependencies(store=store, skill_dir=target)
if not deps_ok:
# Keep install successful; surface dependency warning for operator follow-up.
ec, rt = _classify_install_detail("installed")
return SkillInstallResult(
ok=True,
name=manifest.name,
target_dir=str(target),
detail=f"installed_with_dependency_warnings:{deps_detail}",
error_code=ec,
retryable=rt,
auto_enabled=auto_enabled,
binding_applied_roles=binding_roles,
)
probe_ok, probe_detail = _auto_probe_and_install_python_imports(store=store, skill_dir=target)
if not probe_ok:
ec, rt = _classify_install_detail("installed")
return SkillInstallResult(
ok=True,
name=manifest.name,
target_dir=str(target),
detail=f"installed_with_dependency_warnings:{probe_detail}",
error_code=ec,
retryable=rt,
auto_enabled=auto_enabled,
binding_applied_roles=binding_roles,
)
ec, rt = _classify_install_detail("installed")
return SkillInstallResult(
ok=True,
name=manifest.name,
target_dir=str(target),
detail="installed",
error_code=ec,
retryable=rt,
auto_enabled=auto_enabled,
binding_applied_roles=binding_roles,
)
def install_skill_from_registry_archive(
*,
store: Any,
archive_url: str,
overwrite: bool = False,
skills_root: str | Path | None = None,
auto_bind: bool = False,
) -> SkillInstallResult:
url = str(archive_url or "").strip()
if not url:
ec, rt = _classify_install_detail("archive_url_required")
return SkillInstallResult(ok=False, name="", target_dir="", detail="archive_url_required", error_code=ec, retryable=rt)
url = _resolve_registry_archive_url(url)
parsed = urllib.parse.urlparse(url)
if parsed.scheme not in {"https", "http", "file"}:
ec, rt = _classify_install_detail("unsupported_url_scheme")
return SkillInstallResult(ok=False, name="", target_dir="", detail="unsupported_url_scheme", error_code=ec, retryable=rt)
tmp_file = Path(tempfile.mkstemp(prefix="skill_pkg_", suffix=".bin")[1])
try:
data = _download_archive_bytes(url)
if not data:
ec, rt = _classify_install_detail("empty_archive")
return SkillInstallResult(ok=False, name="", target_dir="", detail="empty_archive", error_code=ec, retryable=rt)
if len(data) > 50 * 1024 * 1024:
ec, rt = _classify_install_detail("archive_too_large")
return SkillInstallResult(ok=False, name="", target_dir="", detail="archive_too_large", error_code=ec, retryable=rt)
tmp_file.write_bytes(data)
ok, detail, extracted = _extract_archive_to_temp(tmp_file)
if not ok or extracted is None:
ec, rt = _classify_install_detail(detail)
return SkillInstallResult(ok=False, name="", target_dir="", detail=detail, error_code=ec, retryable=rt)
candidates: list[Path] = []
if (extracted / "SKILL.md").exists():
candidates.append(extracted)
for p in extracted.rglob("SKILL.md"):
if p.is_file():
candidates.append(p.parent)
if not candidates:
ec, rt = _classify_install_detail("skill_md_missing")
return SkillInstallResult(ok=False, name="", target_dir="", detail="skill_md_missing", error_code=ec, retryable=rt)
chosen = sorted(candidates, key=lambda x: len(x.parts))[0]
return install_skill_from_local_dir(
store=store,
source_dir=chosen,
overwrite=overwrite,
skills_root=skills_root,
auto_bind=auto_bind,
)
except Exception as exc:
detail = f"download_failed:{type(exc).__name__}"
code = getattr(exc, "code", None)
if isinstance(code, int):
detail = f"download_failed:http_{code}"
ec, rt = _classify_install_detail(detail)
return SkillInstallResult(ok=False, name="", target_dir="", detail=detail, error_code=ec, retryable=rt)
finally:
try:
if tmp_file.exists():
tmp_file.unlink()
except Exception:
pass
try:
if "extracted" in locals() and isinstance(extracted, Path) and extracted.exists():
shutil.rmtree(extracted, ignore_errors=True)
except Exception:
pass
def create_skill_from_template(
*,
store: Any,
name: str,
description: str,
body_markdown: str = "",
metadata_oclaw: dict[str, Any] | None = None,
skills_root: str | Path | None = None,
overwrite: bool = False,
) -> SkillInstallResult:
nm = str(name or "").strip()
if not nm:
ec, rt = _classify_install_detail("name_required")
return SkillInstallResult(ok=False, name="", target_dir="", detail="name_required", error_code=ec, retryable=rt)
root = Path(skills_root).resolve() if skills_root else default_skills_root()
root.mkdir(parents=True, exist_ok=True)
target = root / nm
if target.exists() and not overwrite:
ec, rt = _classify_install_detail("already_exists")
return SkillInstallResult(ok=False, name=nm, target_dir=str(target), detail="already_exists", error_code=ec, retryable=rt)
target.mkdir(parents=True, exist_ok=True)
oc = dict(metadata_oclaw or {})
front = {
"name": nm,
"description": str(description or f"{nm} skill"),
"user-invocable": "true",
"disable-model-invocation": "false",
"metadata": {"oclaw": oc},
}
text = (
"---\n"
f"name: {front['name']}\n"
f"description: {front['description']}\n"
f"user-invocable: {front['user-invocable']}\n"
f"disable-model-invocation: {front['disable-model-invocation']}\n"
f"metadata: {json.dumps(front['metadata'], ensure_ascii=False)}\n"
"---\n\n"
f"{str(body_markdown or '').strip()}\n"
)
(target / "SKILL.md").write_text(text, encoding="utf-8")
set_skill_enabled(store=store, skill_name=nm, enabled=True)
ec, rt = _classify_install_detail("created")
return SkillInstallResult(ok=True, name=nm, target_dir=str(target), detail="created", error_code=ec, retryable=rt)
def create_workspace_skill(
*,
store: Any,
name: str,
description: str,
runtime_type: str = "python",
skills_root: str | Path | None = None,
overwrite: bool = False,
) -> SkillInstallResult:
nm = str(name or "").strip()
if not nm:
ec, rt = _classify_install_detail("name_required")
return SkillInstallResult(ok=False, name="", target_dir="", detail="name_required", error_code=ec, retryable=rt)
rt_type = str(runtime_type or "python").strip().lower()
if rt_type not in {"python", "shell", "node"}:
ec, rt = _classify_install_detail("unsupported_runtime_type")
return SkillInstallResult(ok=False, name=nm, target_dir="", detail="unsupported_runtime_type", error_code=ec, retryable=rt)
root = Path(skills_root).resolve() if skills_root else default_skills_root()
target = root / "_workspace" / nm
if target.exists() and not overwrite:
ec, rt = _classify_install_detail("already_exists")
return SkillInstallResult(ok=False, name=nm, target_dir=str(target), detail="already_exists", error_code=ec, retryable=rt)
target.mkdir(parents=True, exist_ok=True)
scripts_dir = target / "scripts"
scripts_dir.mkdir(parents=True, exist_ok=True)
entry = "scripts/run.py" if rt_type == "python" else ("scripts/run.sh" if rt_type == "shell" else "scripts/run.js")
script_path = target / entry
if rt_type == "python":
script_path.write_text(
"import json\nimport sys\n\n"
"def main():\n"
" data = json.loads(sys.stdin.read() or '{}')\n"
" args = data.get('args') or {}\n"
" print(json.dumps({'ok': True, 'echo': args}, ensure_ascii=False))\n\n"
"if __name__ == '__main__':\n"
" main()\n",
encoding="utf-8",
)
elif rt_type == "shell":
script_path.write_text("#!/usr/bin/env bash\ncat\n", encoding="utf-8")
else:
script_path.write_text("const fs=require('fs'); const input=JSON.parse(fs.readFileSync(0,'utf8')||'{}'); console.log(JSON.stringify({ok:true,echo:input.args||{}}));\n", encoding="utf-8")
metadata_oclaw = {
"source": {"kind": "workspace", "provider": "local", "version": "workspace"},
"runtime": {
"type": rt_type,
"entry": entry,
"schema": {"type": "object", "additionalProperties": True},
"permissions": {"fs_write": False, "net": False, "process": True},
},
}
out = create_skill_from_template(
store=store,
name=nm,
description=description,
body_markdown="Workspace authored skill.",
metadata_oclaw=metadata_oclaw,
skills_root=target.parent,
overwrite=True,
)
if not out.ok:
return out
auto_enabled, roles = _apply_auto_enable_binding(store=store, skill_name=nm, skills_root=root)
return SkillInstallResult(
ok=out.ok,
name=out.name,
target_dir=out.target_dir,
detail=out.detail,
error_code=out.error_code,
retryable=out.retryable,
auto_enabled=auto_enabled,
binding_applied_roles=roles,
)
def auto_install_skill_from_payload(
*,
store: Any,
payload: dict[str, Any],
skills_root: str | Path | None = None,
) -> SkillInstallResult:
if not skill_auto_install_enabled(store):
ec, rt = _classify_install_detail("auto_install_disabled")
return SkillInstallResult(ok=False, name="", target_dir="", detail="auto_install_disabled", error_code=ec, retryable=rt)
name = str(payload.get("name") or "").strip()
description = str(payload.get("description") or "").strip()
body = str(payload.get("body_markdown") or "").strip()
md = payload.get("metadata_oclaw")
md = dict(md) if isinstance(md, dict) else {}
root = Path(skills_root).resolve() if skills_root else default_skills_root()
# Keep agent-authored/auto-installed skills isolated from primary managed skills.
workspace_root = root / "_workspace"
target = workspace_root / name
before_disabled = _get_disabled_names(store)
try:
out = create_skill_from_template(
store=store,
name=name,
description=description,
body_markdown=body,
metadata_oclaw=md,
skills_root=workspace_root,
overwrite=False,
)
if bool(payload.get("force_error_for_test")):
raise RuntimeError("forced_error_for_test")
if not out.ok:
return out
auto_enabled, roles = _apply_auto_enable_binding(store=store, skill_name=name, skills_root=root)
return SkillInstallResult(
ok=out.ok,
name=out.name,
target_dir=out.target_dir,
detail=out.detail,
error_code=out.error_code,
retryable=out.retryable,
auto_enabled=auto_enabled,
binding_applied_roles=roles,
)
except Exception as exc:
try:
if target.exists() and target.is_dir():
shutil.rmtree(target)
except Exception:
pass
try:
_set_disabled_names(store, before_disabled)
except Exception:
pass
detail = f"rollback_after_error:{type(exc).__name__}"
ec, rt = _classify_install_detail(detail)
return SkillInstallResult(ok=False, name=name, target_dir=str(target), detail=detail, error_code=ec, retryable=rt)
def repair_skill_dependencies(
*,
store: Any,
skill_name: str,
skills_root: str | Path | None = None,
) -> dict[str, Any]:
nm = str(skill_name or "").strip()
if not nm:
return {"ok": False, "error_code": "name_required", "error": "name_required"}
manifests = list(discover_workspace_skill_manifests(skills_root))
mf = next((m for m in manifests if str(m.name or "").strip() == nm), None)
if mf is None:
return {"ok": False, "error_code": "skill_not_found", "error": "skill_not_found", "name": nm}
skill_dir = Path(str(mf.skill_dir or "")).resolve()
deps_ok, deps_detail = _auto_install_skill_dependencies(store=store, skill_dir=skill_dir)
probe_ok, probe_detail = _auto_probe_and_install_python_imports(store=store, skill_dir=skill_dir)
warnings: list[str] = []
if not deps_ok and deps_detail:
warnings.append(f"manifest:{deps_detail}")
if not probe_ok and probe_detail:
warnings.append(f"probe:{probe_detail}")
return {
"ok": True,
"name": nm,
"skill_dir": str(skill_dir),
"warnings": warnings,
"detail": "ok" if not warnings else f"warnings:{'; '.join(warnings[:4])}",
}
__all__ = [
"SkillInstallResult",
"auto_install_skill_from_payload",
"create_skill_from_template",
"create_workspace_skill",
"install_skill_from_local_dir",
"install_skill_from_registry_archive",
"list_skills_with_status",
"repair_skill_dependencies",
"set_skill_enabled",
"skill_auto_install_enabled",
"uninstall_skill",
]