Files
hermes-agent/hermes_state_holders.py
kshitijk4poor 30a299180c refactor(state): stdlib-only home for read_only_db_uri; reuse the doctor/repair helpers
hermes_state_common pulls in agent.* at import, so the URI builder moves to
hermes_state_holders (errno/os/sqlite3/pathlib only) where the gateway
readiness probe and backup can adopt it in a follow-up sweep. The doctor
structural-damage branch is one helper instead of two copies, the holder
scan goes through hermes_state_repair._live_writer_holds_db, the migration
hint uses _schema_not_built (the startswith("no such ") check also matched
"no such module: fts5"), and the hermes_state import is hoisted so an import
failure cannot mask itself as UnboundLocalError.
2026-09-15 12:51:27 +05:30

364 lines
14 KiB
Python

"""Process and descriptor authority for state.db structural maintenance.
This module owns the proof that no foreign process still holds the active or
an unlinked SQLite DB/WAL/SHM generation. ``hermes_state`` supplies only the
SQLite connection factory needed by the final lock probe.
"""
from __future__ import annotations
import errno
import logging
import os
import sqlite3
import sys
from pathlib import Path
from typing import Callable, List, Optional, Sequence, Set, Tuple
try: # Hard dependency, but tolerate scaffold-phase imports before pip install.
import psutil
except ImportError: # pragma: no cover - stripped/scaffold installs only
psutil = None # type: ignore[assignment]
def read_only_db_uri(db_path) -> str:
"""``file:`` URI for a ``mode=ro`` open. ``as_uri()`` percent-encodes ``?``/``#`` in the home
path; a raw ``f"file:{path}?mode=ro"`` truncates there and opens the wrong (empty) database."""
return Path(db_path).resolve().as_uri() + "?mode=ro"
logger = logging.getLogger(__name__)
_IS_WINDOWS = sys.platform == "win32"
_HERMES_EXECUTABLES = frozenset({"hermes", "hermes-agent", "hermes-acp"})
_HERMES_PYTHON_MODULES = frozenset({"acp_adapter", "hermes_cli.main"})
_HERMES_PYTHON_SCRIPTS = frozenset({"hermes_cli/main.py", "run_agent.py"})
_PYTHON_SHORT_OPTIONS_WITH_OPERANDS = frozenset({"Q", "W", "X"})
_PYTHON_LONG_OPTIONS_WITH_OPERANDS = frozenset(
{"--check-hash-based-pycs", "--jit"}
)
def _read_proc_argv(pid: int) -> Optional[List[str]]:
"""Read /proc/<pid>/cmdline without losing argv boundaries."""
try:
with open(f"/proc/{pid}/cmdline", "rb") as handle:
raw = handle.read()
if not raw:
return None
argv = raw.decode("utf-8", "replace").split("\x00")
if argv[-1] == "":
argv.pop()
return argv or None
except OSError:
return None
def _looks_like_python_executable(program: str) -> bool:
name = os.path.basename(program).lower().removesuffix(".exe")
for prefix in ("python", "pypy"):
if name.startswith(prefix):
suffix = name[len(prefix) :]
return not suffix or all(char.isdigit() or char == "." for char in suffix)
return False
def _python_execution_target(argv: Sequence[str]) -> Optional[Tuple[str, str]]:
"""Return the Python module or script selected by interpreter options."""
index = 1
while index < len(argv):
arg = argv[index]
if arg == "--":
index += 1
return ("script", argv[index]) if index < len(argv) else None
if arg in _PYTHON_LONG_OPTIONS_WITH_OPERANDS:
index += 2
continue
if arg.startswith("--check-hash-based-pycs=") or arg.startswith("--jit="):
index += 1
continue
if arg.startswith("--"):
index += 1
continue
if arg.startswith("-") and arg != "-":
options = arg[1:]
option_index = 0
consumed_next = False
while option_index < len(options):
option = options[option_index]
attached = options[option_index + 1 :]
if option == "c":
return None
if option == "m":
if attached:
return "module", attached
index += 1
return ("module", argv[index]) if index < len(argv) else None
if option in _PYTHON_SHORT_OPTIONS_WITH_OPERANDS:
consumed_next = not attached
break
option_index += 1
index += 2 if consumed_next else 1
continue
return "script", arg
return None
def _looks_like_hermes(argv: Sequence[str]) -> bool:
"""Return whether argv identifies a supported Hermes execution target."""
if not argv:
return False
program = os.path.basename(argv[0]).lower().removesuffix(".exe")
if program in _HERMES_EXECUTABLES:
return True
if not _looks_like_python_executable(program):
return False
target = _python_execution_target(argv)
if target is None:
return False
kind, value = target
normalized = value.lower().replace("\\", "/")
if kind == "module":
return normalized in _HERMES_PYTHON_MODULES
return any(
normalized == script or normalized.endswith(f"/{script}")
for script in _HERMES_PYTHON_SCRIPTS
)
def canonical_sqlite_path(path: str) -> str:
"""Normalize a /proc fd target, stripping the Linux `` (deleted)`` suffix."""
return os.path.normcase(os.path.abspath(path.removesuffix(" (deleted)")))
def _argv_scoped_to_other_home(argv: Sequence[str], db_path: Path) -> bool:
"""Return whether argv proves the process belongs to a DIFFERENT instance.
``state.db`` lives at the HERMES_HOME root, so an absolute-path token
containing a ``/.hermes`` segment (or naming a ``state.db``/WAL/SHM under
some other parent) identifies that token's own Hermes home. When at least
one such token exists AND no token references this instance's state.db,
its sidecars, or its home directory, the process provably works on a
different generation and must not be counted as an uninspectable holder
of ours (issue #92401: a second gateway under /home/demo/.hermes deferred
this instance's stale-FTS rebuild forever despite lsof proving zero open
handles). Ambiguous argv without absolute-path tokens returns False and
keeps the fail-closed suspicion.
"""
db_path_str = os.path.abspath(os.fspath(db_path))
this_home = os.path.dirname(db_path_str)
ours = {
os.path.normcase(candidate)
for candidate in (
db_path_str,
db_path_str + "-wal",
db_path_str + "-shm",
this_home,
)
}
other_home_seen = False
for token in argv:
if not isinstance(token, str):
continue
if token.startswith("/"):
path_token = token
elif token.startswith("-") and "=" in token:
# ``--db=/abs/path``-style options carry a path value; anchor on
# the text after '=' so normpath does not prepend the option.
value = token.split("=", 1)[1]
path_token = value if value.startswith("/") else None
else:
path_token = None
if path_token is not None:
normalized = os.path.normcase(os.path.normpath(path_token))
if normalized in ours or normalized.startswith(this_home + os.sep):
return False
if "/.hermes" in normalized or normalized.endswith("/.hermes"):
other_home_seen = True
elif os.path.basename(normalized) in (
"state.db",
"state.db-wal",
"state.db-shm",
):
other_home_seen = True
return other_home_seen
def foreign_state_db_holders(db_path: Path) -> List[Tuple[int, str]]:
"""Return foreign holders of the DB or one of its WAL sidecars.
A scan failure is represented as an unknown holder. Structural maintenance
must not assume quiescence when an old, unlinked SQLite generation may
still be open by another process.
"""
if _IS_WINDOWS:
return []
# realpath, not abspath: psutil/libproc report the kernel-resolved pathname, so a symlinked
# HERMES_HOME would otherwise make every holder invisible and let maintenance proceed.
db_path_str = os.path.realpath(os.fspath(db_path))
watched = {
canonical_sqlite_path(db_path_str),
canonical_sqlite_path(db_path_str + "-wal"),
canonical_sqlite_path(db_path_str + "-shm"),
}
holders: List[Tuple[int, str]] = []
watched_ids: Set[Tuple[int, int]] = set()
db_dev: Optional[int] = None
for candidate in (db_path_str, db_path_str + "-wal", db_path_str + "-shm"):
try:
stat_result = os.stat(candidate)
except OSError as exc:
if exc.errno not in (errno.ENOENT, errno.ESRCH):
holders.append(
(-1, f"watched-file stat failed: {candidate}: {exc}")
)
continue
watched_ids.add((stat_result.st_dev, stat_result.st_ino))
if candidate == db_path_str:
db_dev = stat_result.st_dev
if sys.platform.startswith("linux"):
try:
own_pid = os.getpid()
for pid_str in os.listdir("/proc"):
if not pid_str.isdigit():
continue
pid = int(pid_str)
if pid == own_pid:
continue
fd_dir = f"/proc/{pid}/fd"
try:
fds = os.listdir(fd_dir)
except OSError:
argv = _read_proc_argv(pid)
if (
argv is not None
and _looks_like_hermes(argv)
and not _argv_scoped_to_other_home(argv, db_path)
):
cmdline = " ".join(argv)
holders.append((pid, f"uninspectable holder: {cmdline[:80]}"))
continue
for fd in fds:
fd_path = f"{fd_dir}/{fd}"
try:
target = os.readlink(fd_path)
except OSError as exc:
if exc.errno in (errno.ENOENT, errno.ESRCH):
continue
argv = _read_proc_argv(pid)
if (
argv is not None
and _looks_like_hermes(argv)
and not _argv_scoped_to_other_home(argv, db_path)
):
holders.append(
(
pid,
f"uninspectable descriptor: {fd_path}: {exc}",
)
)
continue
target_is_watched = canonical_sqlite_path(target) in watched
try:
fd_stat = os.stat(fd_path)
except OSError as exc:
if exc.errno in (errno.ENOENT, errno.ESRCH):
continue
if target_is_watched:
holders.append(
(pid, f"uninspectable descriptor: {target}: {exc}")
)
else:
argv = _read_proc_argv(pid)
if (
argv is not None
and _looks_like_hermes(argv)
and not _argv_scoped_to_other_home(argv, db_path)
):
holders.append(
(
pid,
"uninspectable descriptor: "
f"{target}: {exc}",
)
)
continue
if (fd_stat.st_dev, fd_stat.st_ino) in watched_ids or (
target_is_watched
and target.endswith(" (deleted)")
and db_dev is not None
and fd_stat.st_dev == db_dev
):
holders.append((pid, target))
except Exception as exc:
logger.warning(
"Could not prove state.db has no foreign holders; "
"deferring structural maintenance: %s",
exc,
)
holders.append((-1, f"open-file scan failed: {exc}"))
return holders
if psutil is None:
return [(-1, "open-file scan unavailable")]
try:
for process in psutil.process_iter(["pid", "open_files"]):
info = process.info
pid = int(info["pid"])
if pid == os.getpid():
continue
for opened in info.get("open_files") or ():
path = getattr(opened, "path", "")
if path and canonical_sqlite_path(os.path.realpath(path)) in watched:
holders.append((pid, path))
except Exception as exc:
logger.warning(
"Could not prove state.db has no foreign holders; "
"deferring structural maintenance: %s",
exc,
)
holders.append((-1, f"open-file scan failed: {exc}"))
return holders
def live_writer_holds_db(
db_path: Path,
*,
connect_repair_durable: Callable[..., sqlite3.Connection],
) -> bool:
"""Return whether repair lacks proven exclusive ownership of ``db_path``.
ANY foreign process holding the DB or a sidecar is a live holder (#103339): the lock probe below
cannot see a DELETE-mode reader (SHARED only) and cannot run at all on a malformed file, and those
are exactly the states repair/VACUUM/checkpoint get invoked in. The holder scan is the authority and
fails closed on its own failures (unknown/uninspectable sentinels); the probe only adds a positive
lock signal on top."""
if foreign_state_db_holders(db_path):
return True
probe = None
try:
probe = connect_repair_durable(db_path, timeout=0.0)
probe.execute("PRAGMA locking_mode=EXCLUSIVE")
probe.execute("BEGIN IMMEDIATE")
probe.execute("ROLLBACK")
return False
except sqlite3.OperationalError as exc:
lowered = str(exc).lower()
return "locked" in lowered or "busy" in lowered
except sqlite3.DatabaseError:
# Malformed/unreadable with no holder on the scan: nobody else has it open, so repair may run.
return False
finally:
if probe is not None:
try:
probe.execute("PRAGMA locking_mode=NORMAL")
except Exception:
pass
try:
probe.close()
except Exception:
pass