Fresh installs and `hermes update` both fail at the first `npm ci`:
npm error code EBADENGINE
npm error notsup Required: {"node":">=26.0.0","npm":">=12.0.0"}
npm error notsup Actual: {"node":"v24.15.0","npm":"11.12.1"}
`.npmrc` sets engine-strict=true, so `engines` is a hard gate on every
install. The floor was raised to npm >=12 — but no Node release bundles
npm 12: Node 26 ships 11.17.0, 24 ships 11.16.0, 22 ships 10.9.8. The
requirement is unsatisfiable by any stock toolchain, so the installer
provisions a Node and is immediately unable to install with it.
engines.npm becomes `<11.10.0 || >=11.17.0`. That still excludes the band
the strictness was actually for: npm 11.10-11.16 honor `min-release-age`
but ignore `min-release-age-exclude`, both set in .npmrc, so they apply the
14-day gate to packages we exempted. Verified rather than assumed — npm
11.12.1 fails `ETARGET ... vite@8.2.0 with a date before 7/18/2026` while
11.17.0 installs it.
engines.node returns to >=20.0.0 and the toolchain floor to Node 22.
Nothing in the tree needs 26: Vite 8.2.0 declares `^20.19.0 || >=22.12.0`
and Electron 40 declares `>=12.20.55`. Requiring 26 force-migrated every
working install for no dependency reason. apps/desktop drops to Vite's own
floor for the same reason; the desktop bundle builds clean on Node 22.
install.sh gained a second gate: a system Node was accepted on version
alone, so a machine with Node 24 + its bundled npm 11.16.0 (the bad band)
passed the check and then failed `npm ci`. npm_supports_npmrc() now rejects
that band and installs the managed Node instead.
CI, Docker and nix are hermetic and keep pinning Node 26 / npm 12 — they
provision their own toolchain, and both satisfy the relaxed range.
tests/test_engines_satisfiable.py encodes the invariants that would have
caught this: the npm floor must be met by an npm some shipping Node
bundles, the node floor by the runtime install.sh provisions, the desktop
floor by its own build toolchain, and the lockfile mirror must match.
Restoring the broken values fails 5 of them with the reason stated.
Verified end-to-end (real downloads, temp HERMES_HOME):
- fresh install: managed node v22.23.2 / npm 10.9.8 -> npm ci, 209 packages
- existing managed tree (v22.22.3 / npm 10.9.8) -> npm ci, 209 packages
- node 26.5.1 + bundled npm 11.17.0 -> npm ci, 208 packages
- system npm 11.12.1 (the reported case) -> EBADENGINE, recovery provisions
a managed tree and retries green
- apps/desktop `npm run build` on Node 22 -> dist built, assert passes
Existing users who only ever launch Hermes (never re-run an installer)
kept their managed Node 22 tree forever: the heal path only fired for
*broken* trees, and a healthy 22 passes the --version probe. Now
"outdated" heals the same way "broken" does, on both sides of the mirror:
- hermes_constants.py: find_hermes_node_executable() checks
_managed_node_tree_outdated() (managed node major <
_HERMES_NODE_TARGET_MAJOR) and routes through the existing
once-per-process heal_hermes_managed_node(), which redownloads
latest-v26.x. When the heal fails (offline, download error) the
outdated-but-runnable tree is still returned — old Node beats no Node.
- scripts/lib/node-bootstrap.sh: _nb_managed_node_needs_heal() gains the
matching _nb_managed_node_outdated() rung, so heal_managed_node agrees
with the Python side.
This is the same shape as the managed-uv flow: resolve the managed
runtime, notice it can't satisfy the requirement, provision the right one
in place, fall back gracefully.
Tests (tests/test_hermes_constants.py): outdated tree triggers heal and
returns the upgraded binary; failed heal still serves the old tree; an
at-target tree never heals (heal stub raises).
Hermes now pins its toolchain to Node 26 everywhere. Every path that
installs, accepts, heals, or upgrades a Node runtime moves from the old
22-default / `^20.19 || >=22.12` floor to a single rule: Node >=26.
Installers:
- scripts/install.sh — NODE_VERSION=26; node_satisfies_build() collapses
the two-branch Vite floor to `major >= 26`; user-facing messages updated.
- scripts/install.ps1 — $NodeVersion=26; Test-NodeVersionOk likewise;
winget fallback switches OpenJS.NodeJS.LTS -> OpenJS.NodeJS (26 is
Current, not LTS — the LTS manifest would reinstall a too-old Node).
- Dockerfile — node_source stage node:22-bookworm-slim -> node:26 (digest
pinned, amd64 sha256:9e6f...bf73).
- nix/ was already on nodejs_26 (lib.nix, npm-12-0-2.nix); the checks.nix
wrapper check ratchets from `>= 20` to `>= 26`.
Heal/upgrade paths:
- scripts/lib/node-bootstrap.sh — HERMES_NODE_TARGET_MAJOR default 22->26
and HERMES_NODE_MIN_VERSION default 20->26, so heal_managed_node,
_nb_install_bundled_node, and the fnm/proto/nvm/brew rungs all target 26
and stop accepting an on-PATH Node below it. Both remain env-overridable.
- hermes_constants.py — _HERMES_NODE_TARGET_MAJOR fallback 22->26, which
drives the Windows heal path's latest-v26.x download.
Version gates:
- package.json engines.node >=20 -> >=26; apps/desktop engines
`^20.19.0 || >=22.12.0` -> `>=26.0.0`.
- CI setup-node: all five workflows 22 -> 26.
- Docs describing Hermes's own toolchain updated (windows-native, docker,
acp, nix-setup, contributing). Skill docs describing third-party tools'
own requirements are untouched.
Termux still installs via `pkg install nodejs` best-effort (nodejs.org
ships no Android tarballs); that path was never version-gated.
Verified: bash -n on both shell scripts, PowerShell AST parse of
install.ps1, latest-v26.x index resolves (node-v26.5.1), and the install
test suite — 18 tests across the 5 install/runtime test files — passes.
Hermes installs runtimes for itself — `uv` at `$HERMES_HOME/bin/uv`, Node
at `$HERMES_HOME/node` — and neither directory is on an arbitrary
process's PATH. Every `shutil.which("node"/"npm"/"npx"/"uv")` in Hermes's
own code therefore has two failure modes: the managed runtime is invisible,
so the caller reports "not installed" or degrades to a slower tier on a
machine that has exactly what it needed; and when a system copy also
exists, the one Hermes does not own wins.
Routed the Hermes-owned call sites through managed-aware resolvers:
- `agent/lsp/install.py`, `hermes_cli/dep_ensure.py`, `hermes_cli/main.py`
(`_make_tui_argv`), `hermes_cli/tools_config.py` (`_run_post_setup`) now
use `find_node_executable()`.
- `hermes_cli/tools_config.py::_pip_install` and `hermes_cli/setup.py`'s
vercel install use `ensure_uv()` (installing uv is in scope during setup,
and the Windows installer's `uv venv` does not seed pip, so the fallback
tier is "No module named pip"). `tools/lazy_deps.py` uses `resolve_uv()`
— a lookup, not a bootstrap, because it runs mid-turn for an optional
dependency and downloading a runtime as a side effect exceeds what the
caller asked for.
- `hermes_cli/gateway.py`: extracted `_append_node_dir_for_service()`,
shared by the systemd unit and launchd plist generators, which appends
the managed dirs before the PATH-resolved one. A service definition is
written once and survives reboots, so resolving a system Node that
happens to lead the installing shell's PATH bakes the wrong interpreter
in permanently. Managed dirs are profile-scoped, so each profile's unit
still names its own Node; the existing symlink-parent rule (don't
`.resolve()`) is preserved verbatim.
- `tools/environments/local.py`: the terminal tool's subshell PATH gains
the managed dirs, appended alongside the sane entries rather than
prepended — a tool the user deliberately put on their own PATH still
wins, and the managed one only fills a gap. This is also what makes the
bare `which("uv")` in `tools/env_probe.py` correct: that probe reports
the environment the *model* sees, and the model can only run what is on
that subshell's PATH.
`scripts/install.ps1`: the persisted User PATH update becomes
`Set-ManagedNodeFirstOnUserPath`, a move-to-front rather than an
add-if-missing. Installs made by an older install.ps1 already have the
managed dir in User PATH — at the tail, behind a system Node — and an
add-if-missing check sees it present and leaves that ordering in place
forever, so the users the bug hurt would never be repaired. Unrelated
entries keep their relative order (empty segments included; a trailing
`;` is legal and the installer's other PATH code preserves them),
duplicates collapse, and it writes only when the string actually changes.
Tests:
- `tests/test_managed_runtime_resolution.py` — AST guard that fails any
new bare `which()` for a managed runtime, with a short justified
allow-list and a companion test that fails when an allow-list entry goes
stale. Reading source is banned by AGENTS.md and this is the documented
exception: the property is "no call site anywhere spells it this way",
which no runtime seam can observe.
- `scripts/ci/test_install_ps1_path_migration.ps1` — behavioral, not a
source regex: it lifts the real `Set-ManagedNodeFirstOnUserPath` out of
install.ps1's AST and rewrites only the two registry calls into an
in-memory store, so the shipped split/dedupe/prepend/change-detection
logic executes for real. Not in the default lane (Linux runners have no
PowerShell host); runs under `pwsh`. 13/13 assertions pass.
The npm 12 requirement (f88ed6c717) strands every system-Node install:
no shipping Node bundles npm >=12, engine-strict makes EBADENGINE fatal,
and the recovery in npm_engine.py refuses to touch a system npm — so
'hermes update' leaves the install in a mixed state (updated code, stale
Node deps, no TUI/web/desktop rebuild) with only a manual-fix hint.
Instead of modifying the user's toolchain (still never done), the
EBADENGINE recovery now provisions Hermes' own managed Node tree under
$HERMES_HOME/node — the same pinned-nodejs.org path install.sh and
install.ps1 use — upgrades THAT npm into the required range, and hands
the caller the managed npm for its single retry.
- hermes_constants.bootstrap_hermes_managed_node(): cross-platform
provisioning (POSIX via node-bootstrap.sh _nb_install_bundled_node,
Windows via the existing portable-zip download); reuses a healthy tree.
- node-bootstrap.sh: HERMES_NODE_SKIP_LINKS=1 skips the ~/.local/bin
node/npm/npx symlinks so the private tree never shadows the user's
own toolchain on PATH.
- maybe_repair_npm_engine() now returns the npm path to retry with
(managed-in-place upgrade or freshly provisioned runtime); both call
sites retry with the returned path and put the managed tree first on
PATH so npm lifecycle scripts resolve the managed node.
- Node-only mismatches on a foreign npm are now also recoverable (the
managed tree ships a supported Node); on a managed npm they still
correctly decline.
E2E (real download, temp HERMES_HOME): provisioned node v22.23.2,
upgraded bundled npm 10.9.4 -> 12.0.2, system npm byte-identical after,
no ~/.local/bin links re-pointed, healthy-tree reuse in 0.05s.
Phase 2 review findings: (1) _commit_staged_replacements' docstring cited
os.replace while the code uses os.rename — the atomicity claim holds (same-
filesystem rename is atomic on POSIX and NTFS) but named the wrong function.
(2) venv_bin_dir's remaining hand-rolled site list missed agent/lsp/servers.py:270.
CI slice 8/8 red:
test_verify_core_dependencies.py::test_uses_virtual_env_from_environment
AssertionError: assert None == PosixPath('.../newvenv/Scripts/python.exe')
The Phase 2 reviewer flagged this exact risk (W4) and I under-weighted it as
"latent, not broken". It was neither — it was already failing.
The suite exercises Windows-only paths on Linux CI by patching predicates
(`hermes_cli.main._is_windows`, `is_windows`, `platform.system`). Routing
those call sites through a helper that reads `sys.platform` unconditionally
meant the patches no longer reached the path derivation: the test built
`Scripts/python.exe` while the code looked for `bin/python`.
venv_bin_dir/venv_python_path now take an optional `windows=` verdict,
defaulting to the host. Every converted site passes its own predicate, so
the patched-predicate coverage is restored — the dedup keeps the layout in
one place without hijacking the platform decision.
Verified by causation: dropping `windows=` reproduces the CI failure exactly;
restoring it goes green. Added two regression tests, including one asserting
a patched `_is_windows` still reaches the derivation.
Phase 2 review findings on the first commit.
C1 (critical) — the two-phase replace covered directories only, so the 20
first-party modules at the repo root (run_agent.py, cli.py,
hermes_constants.py, model_tools.py, toolsets.py, ...) were still copied
one-at-a-time with shutil.copy2 straight onto live paths. A failure in that
loop left all directories new and the root modules stale: precisely the
ImportError shape this PR exists to prevent. Worse, copy2 truncates in place,
so a crash mid-copy could leave a half-written cli.py — strictly worse than
stale on the flaky-AV path this code runs on.
Stage files the same way as directories and swap them in the same commit
phase. The docstring's "wholly new or wholly old" is now actually true.
C2 (critical) — a phase-1 failure (disk exhaustion being the likely one)
orphaned one staging copy per entry already processed, up to a second copy
of the tree. The user then follows our "re-run hermes update" advice with
LESS free space and the retry fails harder. Added _discard_staged() on the
staging path. Verified: staging failure now leaves zero litter.
W1 — _stage_replacement duplicated _atomic_replace_dir's first half verbatim.
_atomic_replace_dir is now a 1-line shim over the two-phase helpers; its
#49145 regression test still passes.
W2 — the failure message still said "some directories were replaced and
others were not", which the fix makes false. Now says the install was left
in place.
W3 — the free-space gate demanded 2x the tree when only the staging copy is
new (the live tree already occupies its space; swaps are renames). Relaxed
to need * 1.2, so we stop blocking updates that would have succeeded on the
space-constrained machines most likely to hit this.
W5/W6 — the lint-style guard used `"if" in line`, which matches "modify" and
"verify" and still missed os.path.join(venv, "Scripts"). Rewritten as an AST
check; it immediately found the real offender the substring version missed
(stdio.py, now explicitly exempted — it lists literal Windows-only PATH
candidates, not a cross-platform derivation). Softened venv_bin_dir's
"single source of truth" claim, since sites outside hermes_cli/ remain.
S1 — the rollback loop now logs instead of silently swallowing OSError.
Both C1 and C2 fixes are mutation-verified: reverting either makes the new
tests fail.
Closes#76104, closes#76105.
#76104 — `_atomic_replace_dir` (#49145) made each individual directory swap
safe, but `_update_via_zip` replaced ~70 top-level entries in a loop with no
atomicity across iterations. `agent/` lands at os.listdir index 13 and
`tools/` at 66, so an interruption between them left the new
`agent/context_compressor.py` (module-level `from tools.todo_tool import
TODO_INJECTION_HEADER`) beside a stale `tools/todo_tool.py` — every file
valid Python, the tree unbootable. That is the mechanism behind the
ImportError fixed in #76091, and the "partial update" field report in #63717.
Split into stage-all-then-swap-all:
- `_stage_replacement` copies each dir to a sibling staging path, touching
nothing live, so a failure during the long copy phase is a no-op.
- `_commit_staged_replacements` performs the renames and, if any fails,
restores every entry already swapped — the tree lands wholly new or
wholly old, never mixed.
This shrinks the failure window from a full tree copy to N renames and makes
what remains recoverable. Added an up-front free-space check, since staging
needs a second copy of the tree; a clear error beats running out mid-swap.
#76105 — venv interpreter resolution was open-coded in 7 places across 4
files using 3 different Windows predicates. #76091 added the seventh because
the correct behaviour lived 2400 lines away. Hoisted `venv_bin_dir()` /
`venv_python_path()` into hermes_constants (import-safe, no new imports) and
routed every site through them; `managed_uv._venv_python` now delegates so
its 6 callers are untouched.
`_atomic_replace_dir` is retained — it is re-exported from main.py and has
its own #49145 regression test; removing it is out of scope here.
Tests: 10 new (rollback-on-mid-swap-failure is mutation-verified — it fails
when the rollback loop is removed), plus a guard that fails if a new call
site hand-rolls Scripts/bin again. E2E-verified against the real staging +
commit helpers with a live tree.
/simplify-code reuse reviewer (HIGH): the probe and the user-facing hint
each carried their own hand-written list of first-party package roots,
and they had already diverged on day one —
module probe hint
cli False True <- rollback with no explanation
hermesx True False <- third-party blamed on our updater
Hoist a single FIRST_PARTY_MODULE_ROOTS + is_first_party_module() into
hermes_constants (import-safe, no new imports) and have both consume it;
the probe gets the set injected into its source rather than re-typing it.
Also completes the roster — cron, utils, run_agent, model_tools,
toolsets, tui_gateway, acp_adapter were missing from both copies.
Verified by executing the real probe source against 19 module roots:
0 disagreements. Added a test that fails if either side grows a private
copy again.
Phase 2 review (C2) and /simplify-code findings.
C2 — the git path ran the import guard before `_clear_bytecode_cache`,
wired into the syntax guard's `git reset --hard` rollback. But
`cannot import name 'X'` is ALSO the documented signature of the
stale-bytecode class (#6207, #60242, see
_sweep_stale_bytecode_if_checkout_changed), which the very next steps —
and the launch-time sweep — already self-heal. A false positive there
would destroy a good update over a state that fixes itself.
Remove the guard from the rollback path entirely and re-add it at the
end of the git path, after bytecode sweep + dependency reinstall + lazy
refresh, as a WARNING only. By then every benign source of a transient
ImportError has run, and we never reset the user's checkout.
W6 — the headline regression test was vacuous: it patched
`hermes_main._UPDATE_CRITICAL_FILES`, but the syntax guard reads
`update_cmd`'s global, so the stub files were never examined and the
(True, None, None) came from "no files found" rather than "parses
clean". Patch the right module; mutation-checked (the test now fails
when the guard is disabled).
S5 — `startswith(("tools","agent","hermes","gateway"))` also matched
third-party `agents`/`agentops`/`toolsets`. Compare the first dotted
segment against an exact set instead.
S6 — hoist the per-line ChatConsole() instantiation.
A Windows user reported every startup dying with `ImportError: cannot
import name 'TODO_INJECTION_HEADER' from 'tools.todo_tool'`. The symbol
exists on main; their tree had the new `agent/context_compressor.py`
(which imports it at module level) alongside a pre-update
`tools/todo_tool.py`.
The post-update guard missed it. `_validate_critical_files_syntax` only
py_compiles files, and every file in a skewed tree parses fine — it is
the combination that is broken. The guard reported success and the
update completed over an install that could not start.
The ZIP-update path (Windows-only, used when git file I/O is broken)
is where the skew comes from: its copy loop replaces top-level entries
one at a time in `os.listdir` order, so `agent/` lands at index 13 and
`tools/` at index 66. Any failure between them leaves exactly this
mismatch — and that path had no post-copy validation or rollback at all.
- Add `_validate_critical_modules_import`: imports the four startup
modules in a subprocess (~0.4s) so cross-module breakage is caught.
Non-import errors (config/env) are ignored; a probe that cannot spawn
is non-fatal so we never block an update on our own tooling.
- Run it after the syntax guard on the git path, reusing the existing
auto-rollback.
- Run it on the ZIP path after dependency install (so a genuinely-new
requirement is not misreported as a partial copy), and make the ZIP
failure message state the install may be half-updated.
- Add `partial_update_hint()` and print it under "Failed to initialize
agent", so users see "re-run hermes update" instead of a bare
ImportError. Stays silent for ModuleNotFoundError and third-party
imports, which need different remediation.
Verified by simulating the exact skew: the syntax guard returns ok=True
while the import guard returns the user's error verbatim.
The /indicator command was registered in COMMAND_REGISTRY, listed in
/help, offered by tab-completion, recommended by the tips system, and
even documented in config.py — but it had no actual handler. Running
/indicator in the CLI produced "Unknown command: indicator".
Add _handle_indicator_command to CLICommandsMixin that:
- Shows the current indicator style when called with no args or "status"
- Validates the requested style against the shared INDICATOR_STYLES
allowlist (ascii | emoji | kaomoji | unicode)
- Persists the choice to display.tui_status_indicator in config.yaml
via the existing save_config_value helper
- Falls back to session-only when config save fails
The indicator-style allowlist is defined once in hermes_constants as
INDICATOR_STYLES + DEFAULT_INDICATOR_STYLE and imported by all three
consumers (CLI handler, command registry, TUI gateway config handler),
preventing drift between the TUI and CLI validation.
Also adds tests/cli/test_indicator_command.py covering dispatch,
validation, persistence, and registry integration.
Signed-off-by: dongjiang <dongjiang1989@126.com>
AST-driven pass over every Path.read_text()/write_text() without an
explicit encoding= across non-test code: 71 sites in 34 files
(skills_hub, hermes_cli/main+profiles+service_manager+container_boot,
mem0/hindsight/honcho plugins, achievements dashboard, release/CI
scripts, productivity+comfyui skill helpers, agent/*). Verified zero
positional-encoding collisions before insertion; per-file compile()
check after.
Adds a check-windows-footguns rule flagging bare single-line
read_text/write_text (multi-line forms stay covered by the AST guard
test from #38985). Together with the salvaged contributor commits this
retires the ~169-site bare file-I/O class (#37423's long tail).
Removes Homebrew and PyPI wheel/sdist as Hermes distribution paths while
preserving the supported source, Docker, and Nix workflows.
Changes:
- Removes the Homebrew formula, PyPI publish workflow, sdist manifest
(MANIFEST.in), and wheel/sdist release-attachment logic from scripts/release.py.
- Keeps setuptools metadata and entry points required by editable installs
and Docker/Nix builds, but adds a setup.py guard that rejects wheel/sdist
builds outside a sealed Nix derivation (HERMES_NIX_BUILD=1).
- Removes pip/Homebrew install detection, PyPI update checks, the pip
self-update path, the deprecation-banner state, the postinstall subcommand,
wheel data-directory fallbacks in agent/i18n.py and hermes_constants.py,
and the ACP Registry manifest/version-lockstep release logic.
- Adds /nix/store/ path detection so `nix run` / `nix profile install`
installs (which don't set HERMES_MANAGED) are correctly identified as
"nix" rather than falling through to "git"/"unknown".
- Retired install-method values ("pip", "homebrew") in existing
.install_method stamps (both code-scoped and home-scoped) are ignored by
the allowlist reader and fall through to "unknown" instead of resurrecting
a retired enum value.
- Updates Nix packaging to ship bare runtime data (locales, optional-mcps)
through store symlinks and wrapper env vars instead of wheel data-files.
- Removes the ACP Registry manifest/icon and their version-lockstep tests.
- Deletes or rewrites packaging, pip-update, Homebrew, and ACP Registry
tests; adds parametrized coverage for the packaging build guard covering
BOTH sdist and wheel paths (the guards live in separate cmdclass entries
— a passing sdist test proves nothing about the wheel path).
- Updates installation/platform documentation and related user-facing copy.
- Adjusts the supply-chain scan so deleted install-hook files do not trigger
a finding, while additions or modifications still require the existing
ci-reviewed label gate.
Supported installation paths (unchanged):
- git installer (install.sh)
- Docker
- Nix/NixOS
- editable development installs (uv sync, uv pip install -e ., pip install -e .)
* fix(dashboard): resolve dashboard-owned assets from the process launch home
Profile-scoped chat / ?profile= requests install a context-local
HERMES_HOME override, which made custom dashboard themes AND user
dashboard-plugin extensions disappear once the embedded /chat started
under a different profile than the dashboard process.
Add get_process_hermes_home() (sharing _hermes_home_from_env() with
get_hermes_home() so the two can't drift, and splitting the profile
fallback warning into _warn_profile_fallback_once()) and use it for both
the theme YAML scan and the user dashboard-plugin scan — machine-level
assets that belong to the server's launch home and must not follow a
transient per-request override.
Genuinely profile-scoped callers (memories/backups/checkpoints/provider
config) and the paired _merged_plugins_hub classification are left
untouched so they keep following the override.
* test(dashboard): cover process-home asset discovery under profile override
- get_process_hermes_home(): env set returns that path, unset falls back
to the platform default, and an active context-local override is ignored.
- _discover_user_themes() and _discover_dashboard_plugins() keep returning
launch-home assets while a profile override scopes the request elsewhere.
STANDARD_PROFILES, normalize_profile, validate_profile_name, and
is_standard_profile in hermes_constants were superseded by
hermes_cli.profiles.{normalize_profile_name, validate_profile_name}
but never removed. profile_routing.py is updated to import from the
canonical location; the old helpers are deleted.
Lazy import inside parse_profile_routes avoids the circular dependency
at module load time (hermes_constants -> hermes_cli -> hermes_constants).
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
Adds gateway.profile_routes config that routes specific Discord
guilds/channels/threads (and other platforms) to different profiles.
The routing engine uses hierarchical specificity matching
(thread > channel > guild) with bounded LRU caching for forum post
resolution.
Routing result is stamped on source.profile by BasePlatformAdapter
.build_source() at inbound time. When gateway.multiplex_profiles is on,
the existing _profile_runtime_scope machinery picks up source.profile
and runs the whole turn inside the profile's HERMES_HOME — so memory,
skills, config, and secrets all resolve to that profile automatically.
No new isolation code is added; this PR only adds the routing decision
layer on top of the existing multiplexing infrastructure.
Configuration:
gateway:
multiplex_profiles: true
profile_routes:
- name: server-default
platform: discord
guild_id: "GUILD_ID"
profile: server-profile
- name: special-channel
platform: discord
guild_id: "GUILD_ID"
chat_id: "CHANNEL_ID"
profile: channel-profile
When multiplex_profiles is off, profile_routes is ignored (no behavior
change for single-profile gateways).
Tests: 29 unit tests covering specificity scoring, hierarchical
matching, path-traversal validation, and config parsing.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
Collapse the six per-surface copies of override-then-global resolution
(CLI startup, gateway, TUI, cron, /model switch, fallback activation)
onto one shared resolve_reasoning_config() in hermes_constants.
Also fixes the gateway resolving reasoning against config model.default
instead of the session's effective model: after a session-only /model
switch, the switched model's override now applies (gateway message paths
pass the resolved session model through _resolve_session_reasoning_config;
/reasoning status reads the session model override).
Cleanup: drop docs/PER_MODEL_REASONING.md (duplicates the website docs
page), drop the change-detector _config_version test (no bump needed —
deep-merge handles new keys), remove a stale plan-reference comment.
Adds chokepoint contract tests (13) and gateway session-effective-model
regression tests (2).
Add agent.reasoning_overrides dict to config.yaml. Users can now set
a reasoning_effort per model, overriding the global agent.reasoning_effort.
Example:
agent:
reasoning_effort: "medium" # global default
reasoning_overrides:
"openrouter/anthropic/claude-opus-4.5": "xhigh"
"openai/gpt-5": "low"
"claude-sonnet-4.6": "high" # bare model name also works
The helper is spelling-tolerant: override keys match regardless of
provider prefix or dots-vs-dashes normalization, so users can write
keys in any sensible form and they'll match.
Resolution priority:
1. Session-scoped /reasoning --session override (gateway only; unchanged)
2. Per-model override from agent.reasoning_overrides (spelling-tolerant)
3. Global agent.reasoning_effort (existing)
4. Provider default (unchanged)
Wired into:
- CLI startup (cli.py)
- Messaging gateway agent construction (gateway/run.py)
- Desktop/TUI _load_reasoning_config (tui_gateway/server.py)
- Cron job scheduler (cron/scheduler.py)
- /model mid-session switch (agent/agent_runtime_helpers.py)
+ _primary_runtime now tracks reasoning_config for correct fallback recovery
- Fallback activation (agent/chat_completion_helpers.py::try_activate_fallback)
+ Re-resolves reasoning_config for the fallback model (best-effort)
Closes#21256 (per-model reasoning_effort defaults).
Note: no hermes config set agent.reasoning_overrides.<model> support;
users edit the YAML directly. _set_nested splits on "." and would
corrupt model keys containing version dots.
Add shared translators in hermes_constants (Windows drive → /mnt, `\\wsl(.localhost|$)\`
UNC → POSIX, gated on is_wsl) and apply them at the gateway session-cwd boundary
so a Windows-host UI can hand the WSL backend a path it can actually chdir into.
De-dups the ACP adapter's private `_win_path_to_wsl` onto the shared helper and
extends it to the UNC spelling.
Co-authored-by: Rage Lopez <VrtxOmega@pm.me>
Follow-up to salvaged #57601. Adding "max" to VALID_REASONING_EFFORTS
made parse_reasoning_effort("max") valid, so:
- test_unknown_levels_return_none no longer lists "max" (it is now valid;
auto-covered by test_each_valid_level which iterates the tuple).
- test_known_supported_levels_are_documented and the parse_reasoning_effort
docstring now include "max" so the doc-sync guard actually protects it.
- Add 'max' to VALID_REASONING_EFFORTS (GLM-5.2 native parameter)
- Emit top-level reasoning_effort string for custom providers
- Stop hardcoding 'medium' in legacy extra_body.reasoning, use actual effort
Custom providers (e.g. GLM-5.2 on Volcengine ARK) silently dropped
reasoning_effort — the value never reached the upstream API. Kimi,
TokenHub, and LM Studio all had dedicated branches for this, but
custom providers had none.
A Z.ai desktop user reported thinking reverting to medium after one turn,
burning ~200% of a week's credits in 4 days despite reasoning_effort: false
in config.yaml. Four compounding bugs:
- _session_info reported reasoning_effort "" for disabled reasoning,
indistinguishable from unset — the desktop adopted it after the first
turn, wiping its sticky "thinking off" pick so every later chat
reverted to the default effort.
- config.set key=reasoning always wrote agent.reasoning_effort to global
config.yaml, so every desktop model-menu selection (preset.effort ??
'medium') clobbered the user's configured value. Now session-scoped
like the messaging gateway's /reasoning, landing on
create_reasoning_override so lazily-built sessions keep it too.
- YAML `reasoning_effort: false`/`off`/`no` (boolean False) was coerced
to "" by every loader's `str(x or "")`, silently re-enabling thinking.
parse_reasoning_effort now treats False/"false"/"disabled" as
{"enabled": False}; loaders (tui gateway, gateway, cli, cron,
delegate) pass the raw value through. The desktop config reader also
crashed on the boolean (false.trim()), aborting voice/STT settings.
- The zai provider profile never sent thinking on the wire, and GLM-4.5+
defaults to thinking ON server-side — so disabling reasoning was a
silent no-op on direct Z.ai, the actual token burner. The profile now
emits extra_body.thinking {"type": "enabled"|"disabled"} for
thinking-capable GLM models, mirroring the DeepSeek profile.
Also: /new (session reset) now carries reasoning_config across the
rebuild like model_override; config.get reasoning prefers the session's
live value and maps a config False to "none"; Settings shows "Off"
instead of a blank select for hand-written false.
* fix(windows): stop terminal-window popups from background spawns
Native-Windows desktop/gateway users saw cmd/conhost windows flash on
gateway restart, image paste, the dashboard Projects tree, voice notes,
and ~5 min after closing the app (detached cron). Two root causes:
- Console-subsystem exes (taskkill, schtasks, wmic, netstat, tasklist,
agent-browser, git, ffmpeg, powershell, git-bash) spawned via raw
subprocess allocate a fresh console when the launching process has
none (pythonw desktop backend / detached gateway) - even with output
captured.
- uv venv pythonw shims re-exec console python.exe, so Python children
get a console regardless of how they're launched.
Fixes:
- Single hidden-spawn primitive (_subprocess_compat.run/.popen) that ORs
CREATE_NO_WINDOW on Windows, no-op on POSIX. Route every Hermes-owned
console-exe spawn through it.
- FreeConsole() catch-all in hermes_bootstrap: any Python child that
exclusively owns an auto-allocated console detaches it at startup
(GetConsoleProcessList()==1 gate leaves shared interactive consoles
untouched).
- Replace PowerShell/wmic gateway PID scans with in-process psutil.
- Skip schtasks queries on non-interactive desktop restarts.
- Prefer native agent-browser .exe over .cmd shims.
- Guard test bans raw subprocess spawns of the Windows-only console
tools repo-wide so the popup class can't regress.
* fix(windows): scope FreeConsole to background entry points; fix merge fallout
Console detach review (per #53810 feedback): GetConsoleProcessList()==1 can't
tell a uv pythonw->python phantom console apart from a user opening the
interactive CLI/TUI in its own fresh console (double-click, shortcut, ConPTY) —
both report a single attached process with a tty. Running FreeConsole() in the
import-time bootstrap therefore risked detaching a legitimately-interactive
terminal.
- Extract FreeConsole into explicit hermes_bootstrap.detach_orphan_console();
remove it from apply_windows_utf8_bootstrap() (import side effect).
- Call it only from known background mains: gateway run, dashboard backend
(start_server, what the desktop spawns), cron standalone, tui_gateway entry,
slash worker. Interactive CLI/TUI never calls it.
- Behavior-contract tests: frees only when solo owner, leaves shared console,
no-op without console / on POSIX, and asserts it's not an import side effect.
Merge fallout from origin/main (#53791):
- local.py: 3-way merge left a dangling **_popen_kwargs (NameError crashing
every terminal init). _subprocess_compat.popen already hides the window, so
drop it.
- discord adapter: merge stacked an undefined windows_hide_flags() onto the
primitive call; drop the redundant arg.
- test_gateway: scan now goes psutil-first (zero spawn); rewrite the
case-variant test to drive that production path.
* test(claw): mock _subprocess_compat.run seam for Windows process scan
claw.py's Windows tasklist/powershell scan routes through the hidden-spawn
primitive; the tests still patched claw_mod.subprocess, so on win32 the mock
was never hit and real spawns returned nothing. Patch the actual seam.
get_hermes_dir(new_subpath, old_name) returned the legacy <old_name>/
location as soon as it existed on disk — even when empty. When an empty
legacy stub is created on a profile that already has populated data at
the new consolidated <new_subpath>/ (install scaffolds, profile init, a
stray mkdir, or ensure_hermes_home() recreating legacy dirs), the
resolver silently flipped to the empty legacy dir and the real data
became invisible. No log, no error — the feature behaved as if state was
wiped. Reproduced as a Discord pairing store losing every approved user
when an empty pairing/ shadowed the populated platforms/pairing/.
Resolve the legacy path only when it has content: a populated directory
(any entry) or a non-directory file counts; an empty directory falls
through to the new layout. Inspection failures (PermissionError on
lstat/iterdir, or any OSError short of FileNotFoundError) are treated as
"occupied" so a transient error never orphans legacy data — only a
genuine FileNotFoundError counts as absent. The lstat()-based gate also
fixes the prior exists()/is_dir() path swallowing PermissionError and
mis-reading an unreadable legacy dir as absent.
This hardens all 11+ call sites that share the resolver (pairing,
image/audio/video/document caches, matrix/whatsapp session stores,
vision/credential/tts/browser dirs).
Adds TestGetHermesDir regression coverage (empty/populated/subdir/file/
unreadable/unstatable cases) and updates test_credential_files to
populate its legacy dirs so they still count as content.
Closes#27602Closes#27715
When a Hermes-managed node/npm/npx shim exists but fails --version, redownload
the pinned nodejs.org bundle under HERMES_HOME/node and retry. Do not fall
back to system npm on PATH when a managed tree is present.
POSIX heal probes node, npm, and npx (npm can break while node still runs).
A stale or partial Hermes-managed Node tree under the active HERMES_HOME
can leave bin/npm behind while lib/cli.js is missing. File-existence checks
alone made hermes update pick that broken npm and skip healthy system npm
on PATH. Probe managed candidates with --version before preferring them.
After `hermes update`, a globally-installed agent-browser's npm postinstall
(fixUnixSymlink) re-points the global symlink (e.g. /opt/homebrew/bin/agent-browser)
at our local node_modules binary. The next update wipes node_modules, leaving a
dangling symlink that `which` still reports but exec fails on with exit 127 —
silently breaking every browser tool (#48521).
Root cause is trust-on-presence: shutil.which/Path.exists accept a name that
resolves but won't run. Add hermes_constants.agent_browser_runnable() (resolves
the path + runs --version) and gate all four resolution sites on it:
_find_agent_browser now skips a dead candidate and falls through to the next
working one (extended PATH -> local .bin -> npx), self-healing the dangling link.
dep_ensure/doctor/nous_subscription validate too; doctor warns on a broken link.
Closes#48521.
Behavior-preserving cleanups on the managed-node resolver:
- Hoist _candidate_node_command_names() out of the inner dir loop in
find_hermes_node_executable (computed once, not per directory).
- Drop redundant os.environ.copy() at the two with_hermes_node_path(
os.environ.copy()) sites \u2014 the helper already copies os.environ when
called with no argument (verified env-equivalent).
- Add reciprocal keep-in-sync comments between iter_hermes_node_dirs()
(hermes_constants.py) and hermesManagedNodePathEntries() (electron
main.cjs), which mirror the same platform-ordering rule across the
Python/Node boundary.
Closes#47111
is_container() only recognized Docker (/.dockerenv), Podman
(/run/.containerenv), and docker/podman/lxc markers in /proc/1/cgroup.
Under cgroup v2 (Kubernetes/k3s on containerd or CRI-O) /proc/1/cgroup
collapses to a single "0::/" line with no runtime marker, so
is_container() returned False on every containerd/CRI pod.
That false negative bypassed container-aware behavior across the CLI.
The most damaging case (reported): even after #46290 fixed
detect_service_manager() to gate on _s6_running() alone, other
is_container() call sites (profile home resolution, gateway behaviors,
config, doctor) still misbehave on containerd.
Broaden detection conservatively:
- KUBERNETES_SERVICE_HOST env var (present in every k8s pod).
- kubepods/containerd/crio markers in /proc/1/cgroup (cgroup v1 nested).
- same markers in /proc/self/mountinfo as a cgroup-v2 fallback.
Tests: 3 new (k8s env, kubepods cgroup, cgroup-v2-via-mountinfo) plus the
existing negative case hardened to stub mountinfo + env; 108 constants +
service_manager tests pass.
When profile isolation activates ({HERMES_HOME}/home/ exists), child
processes receive HOME={HERMES_HOME}/home/ for tool config isolation
(git, ssh, gh). However, scripts using Path.home() to locate
~/.hermes/ would incorrectly resolve to the isolated profile home,
breaking helpers that rely on the real user home directory.
New get_real_home() helper in hermes_constants resolves the actual
user home independently of profile isolation. All four subprocess
spawners now inject HERMES_REAL_HOME alongside the profile HOME:
- tools/code_execution_tool.py (execute_code)
- tools/environments/local.py (terminal background, run_env)
- agent/copilot_acp_client.py (Copilot ACP)
Child scripts can now use:
Path(os.environ.get("HERMES_REAL_HOME", os.environ.get("HOME", "")))
to reliably find the real user home regardless of profile isolation.
Closes#25114
* remove Vercel AI Gateway provider and Vercel Sandbox terminal backend
Both Vercel-hosted integrations are removed end-to-end. Users on the AI
Gateway should switch to OpenRouter or one of the other aggregators
(Nous Portal, Kilo Code). Users on the Vercel Sandbox backend should
switch to Docker, Modal, Daytona, or SSH.
What's removed:
- `plugins/model-providers/ai-gateway/` provider plugin
- `hermes_cli/vercel_auth.py` Vercel-Sandbox auth helper
- `tools/environments/vercel_sandbox.py` terminal backend
- `ai-gateway` provider wiring across auth, doctor, setup, models,
config, status, providers, main, web_server, model_normalize, dump
- `vercel_sandbox` backend wiring across terminal_tool, file_tools,
code_execution_tool, file_operations, approval, skills_tool,
environments/local, credential_files, lazy_deps, prompt_builder,
cli, gateway/run
- `AI_GATEWAY_BASE_URL` constant, `_AI_GATEWAY_HEADERS` auxiliary-client
header set, run_agent base-URL header/reasoning special-cases
- `[vercel]` pyproject extra and `vercel`/`vercel-workers` from uv.lock
- env vars: `AI_GATEWAY_API_KEY`, `AI_GATEWAY_BASE_URL`, `VERCEL_TOKEN`,
`VERCEL_PROJECT_ID`, `VERCEL_TEAM_ID`, `VERCEL_OIDC_TOKEN`,
`TERMINAL_VERCEL_RUNTIME`
- Tests: deletes test_ai_gateway_models.py and
test_vercel_sandbox_environment.py; scrubs references across 23
surviving test files (no entire tests deleted unless they were
dedicated to AI Gateway / Sandbox)
- Docs: provider tables, env-var reference, setup guides, security
notes, tool config, terminal-backend tables — English plus zh-Hans
i18n parity
- `hermes-agent` skill: provider table entry and remote-backend list
What stays (intentional):
- `popular-web-designs/templates/vercel.md` — CSS design reference,
unrelated to Vercel-the-AI-product
- `x-vercel-id` in `stream_diag.py` headers — generic Vercel CDN
response header, useful diag signal on any Vercel-hosted endpoint
- `vercel-labs/agent-browser` URL in browser config — lightpanda
browser project, different OSS effort
- `userStories.json` historical contributor entry mentioning Vercel
Sandbox — archive, not active docs
Validation:
- 1153 tests in the 22 targeted files pass (`scripts/run_tests.sh`)
- Full repo `py_compile` clean
- Live import of every touched module + invariant check (no
`ai-gateway` in `PROVIDER_REGISTRY`, no `_AI_GATEWAY_HEADERS`, no
`vercel_sandbox` in `_REMOTE_TERMINAL_BACKENDS`)
* test: convert profile-count check from change-detector to invariant
The hardcoded "== 34" assertion broke when ai-gateway was removed.
Per AGENTS.md change-detector-test guidance, assert the relationship
(registry count >= number of plugin dirs) instead of a literal count.
Counts shift when providers are added/removed; that's expected.
* feat(mcp): Nous-approved MCP catalog with interactive picker
Adds an optional-mcps/ directory mirroring optional-skills/: curated,
Nous-approved MCP servers shipped with the repo but disabled by default.
Presence in optional-mcps/ = approval. No community tier, no trust signals.
Entries are added by merging a PR.
New surface:
hermes mcp Interactive catalog picker (default)
hermes mcp catalog Plain-text list, scriptable
hermes mcp install <name> Install a catalog entry
Picker behavior:
not installed -> install (clone/bootstrap if needed, prompt for creds)
installed/off -> enable
installed/on -> menu (disable / uninstall / reinstall)
Manifest schema (manifest_version: 1) supports:
- transport: stdio (command/args, ${INSTALL_DIR} substitution) or http (url)
- install: optional git clone + bootstrap commands (for repos that need
local venv setup, like the n8n bridge); omit for npx/uvx servers
- auth: api_key (prompts -> ~/.hermes/.env), oauth (provider-mediated
or native MCP), or none
Catalog entries are never auto-updated. Users re-run `hermes mcp install`
to refresh. Credentials always go to ~/.hermes/.env (the .env-is-for-secrets
rule), never to per-server env blocks.
Ships n8n as the reference manifest (https://github.com/CyberSamuraiX/hermes-n8n-mcp).
Tests: 19 catalog tests + E2E install/uninstall round-trip via the shipped
manifest.
* feat(mcp): tool-selection checklist + Linear catalog entry
Adds install-time tool selection so users only enable the MCP tools they
actually want, and ships Linear as a second reference catalog entry to
demonstrate the http+oauth path alongside n8n's stdio+api_key+git-bootstrap.
Tool selection flow:
install (clone/auth/credentials) ->
probe server for available tools ->
curses checklist with pre-checked rows ->
write mcp_servers.<name>.tools.include
Pre-check priority:
1. user's prior tools.include (reinstall preserves selection)
2. manifest's tools.default_enabled (curated subset)
3. all probed tools (default)
Probe-failure fallback (server unreachable, OAuth not yet complete,
backing service offline):
- manifest declared default_enabled -> applied directly
- no default declared -> no filter written (all-on when reachable)
- both cases point user at hermes mcp configure <name>
Manifest schema additions:
tools:
default_enabled: [list, of, tool, names] # optional
Updates:
- optional-mcps/linear/manifest.yaml -- new reference entry (http+oauth)
- optional-mcps/n8n/manifest.yaml -- tools.default_enabled set to the
8 read-mostly tools; mutating tools (activate/deactivate, container_logs)
pruned by default
- docs: new 'Tool selection at install time' section in features/mcp.md
Tests: 7 new tests in TestToolSelection covering probe-success / probe-fail
matrix, manifest-default filtering, reinstall-preserves-selection, and
invalid-default-enabled rejection. 26 catalog tests + 32 existing
mcp_config tests passing.
* feat(mcp): polish — picker unification, include-mode convergence, hardening
Addresses review findings on PR #30870. Lands all improvements that
belong in this PR before merge; defers separate cleanup (consolidating
two probe implementations, change-detector tests) to follow-ups.
Picker UX (mcp_picker.py)
- Unifies catalog + custom (user-added) MCPs in one view with distinct
status badges (available / enabled / installed (disabled) /
custom — enabled / custom — disabled)
- Adds 'Configure tools (probe server + re-pick)' action to both the
catalog-installed and custom-row submenus — the existing
hermes mcp configure flow was previously unreachable from the picker
- Loops until ESC/q so the user can manage several entries in one
session instead of having to re-launch
- Uninstall message now mentions .env credentials are preserved with a
pointer to clean them up manually if no longer needed
- Surfaces a 'requires a newer Hermes' warning per future-manifest
entry instead of silently hiding it
Catalog (mcp_catalog.py)
- catalog_diagnostics() exposes which manifests were skipped and why
(future_manifest vs invalid) so UIs can give actionable feedback
- _do_git_install detects SHA-shaped refs (regex /[0-9a-f]{7,40}/)
and skips the doomed 'git clone --branch <sha>' attempt — clone --branch
only accepts branches/tags, so SHAs always failed noisily before
falling back to the full-clone path
- Probe-success all-tools-enabled message now mentions that new tools
the server adds later will be auto-enabled (no-filter mode)
Convergence (tools_config.py)
- _configure_mcp_tools_interactive now writes tools.include (whitelist)
instead of tools.exclude (blacklist), matching the catalog flow and
hermes mcp configure. The on-disk config shape no longer depends on
which UI the user touched last
- Two existing tests updated to assert the new include-mode contract
Discoverability
- Setup wizard final step now prints 'Browse curated MCPs: hermes mcp'
- Three tip-corpus entries pointing at the new catalog
- Docs updated with: trust model (manifests run code locally, gated by
PR review, but read before installing), runtime ${ENV_VAR} substitution
semantics, and the manifest_version forward-compat behavior
Tests
- 7 new tests covering future-manifest diagnostics, custom MCP picker
rows, SHA-ref git-install path, branch-ref git-install path, and the
tools_config include-mode write contract
- 80 MCP-related tests passing across test_mcp_catalog.py,
test_mcp_config.py, test_mcp_tools_config.py
* fix(mcp): drop setup-wizard catalog hint to satisfy supply-chain scanner
The wizard line 'Browse curated MCPs: hermes mcp' triggered the
CI supply-chain scanner because it pattern-matches on edits to any
file named hermes_cli/setup.py — that filename matches the Python
'install-hook file' heuristic even though this setup.py is the
user-facing 'hermes setup' wizard, not a packaging install hook.
The catalog is already surfaced via three tip-corpus entries in
hermes_cli/tips.py (which the scanner doesn't flag), so dropping the
wizard mention loses no discoverability. Worth revisiting after a
scanner allowlist for this specific file lands.
* fix(streaming): route mid-tool-call partial-stream-stub through length continuation (#31998)
When a stream stalls mid-tool-call (e.g. a large write_file), the
partial-stream-stub recovery used finish_reason='stop' which caused the
conversation loop to treat the turn as complete, returning only the
warning text. When users said 'continue', the model retried the same
large tool call, hit the same stale timeout, and looped indefinitely.
Changes:
- chat_completion_helpers.py: change _stub_finish_reason from 'stop' to
'length' for mid-tool-call partials. The stub still has tool_calls=None
so no tool auto-executes — the model gets a fresh API call through the
existing length-continuation machinery (bounded to 3 retries).
Also attach _dropped_tool_names to the stub for downstream use.
- conversation_loop.py: add a third continuation prompt branch for
partial-stream-stubs with dropped tool calls. Instead of the generic
'continue where you left off' (which would retry the same large call),
tell the model to break the output into smaller tool calls (~8K
tokens each) to avoid stream timeouts.
- test_partial_stream_finish_reason.py: update existing test from
finish_reason='stop' to 'length', add _dropped_tool_names assertion,
add new test_dropped_tool_call_uses_chunking_prompt for the 3-way
prompt branching.
Safety: tool_calls=None is preserved on the stub, so the conversation
loop enters the text-continuation branch (line 1513), NOT the tool-call
execution branch (line 3246). No tool auto-executes. The model simply
gets another API call with targeted guidance.
* refactor: extract constants and continuation prompt helper
- Move magic strings to hermes_constants.py (PARTIAL_STREAM_STUB_ID,
FINISH_REASON_LENGTH)
- Extract _get_continuation_prompt() in conversation_loop.py — DRYs the
3-way prompt branching and lets tests import the real function
- Trim verbose inline comments in chat_completion_helpers.py
- Tests import constants + helper instead of duplicating logic
---------
Co-authored-by: alt-glitch <balyan.sid@gmail.com>
Five call sites do os.chmod(path.parent, 0o700) without checking that
the parent resolves to a safe directory. If HERMES_HOME or another
path env var resolves to /, the chmod strips traversal permission from
the root inode and bricks the entire host.
Add secure_parent_dir() to hermes_constants.py that refuses to chmod
/ or any top-level directory (depth < 2). Replace all 5 call sites
with this helper.
Fixes#25821
Salvages #23738 by @LeonSGP43. Wheel installs were missing skills/ and
optional-skills/ because pyproject's [tool.setuptools.packages.find]
only includes Python packages — the skills directories don't have
__init__.py so they were silently dropped from the wheel.
Adds setup.py with data_files spec emitting skills/* and optional-skills/*
under hermes_agent-<v>.data/data/, and a get_bundled_skills_dir() helper
in hermes_constants that discovers the wheel-installed location via
sysconfig before falling back to a source-checkout path. tools/skills_sync
uses the helper so 'hermes update' works for pip-installed users.
Closes the last Python-on-Windows UTF-8 exposure by making every
text-mode open() call explicit about its encoding.
Before: on Windows, bare open(path, 'r') defaults to the system
locale encoding (cp1252 on US-locale installs). That means reading
any config/yaml/markdown/json file with non-ASCII content either
crashes with UnicodeDecodeError or silently mis-decodes bytes.
After: all 89 affected call sites in production code now pass
encoding='utf-8' explicitly. Works identically on every platform
and every locale, no surprise behavior.
Mechanical sweep via:
ruff check --preview --extend-select PLW1514 --unsafe-fixes --fix --exclude 'tests,venv,.venv,node_modules,website,optional-skills, skills,tinker-atropos,plugins' .
All 89 fixes have the same shape: open(x) or open(x, mode) became
open(x, encoding='utf-8') or open(x, mode, encoding='utf-8'). Nothing
else changed. Every modified file still parses and the Windows/sandbox
test suite is still green (85 passed, 14 skipped, 0 failed across
tests/tools/test_code_execution_windows_env.py +
tests/tools/test_code_execution_modes.py + tests/tools/test_env_passthrough.py +
tests/test_hermes_bootstrap.py).
Scope notes:
- tests/ excluded: test fixtures can use locale encoding intentionally
(exercising edge cases). If we want to tighten tests later that's
a separate PR.
- plugins/ excluded: plugin-specific conventions may differ; plugin
authors own their code.
- optional-skills/ and skills/ excluded: skill scripts are user-authored
and we don't want to mass-edit them.
- website/ and tinker-atropos/ excluded: vendored / generated content.
46 files touched, 89 +/- lines (symmetric replacement). No behavior
change on POSIX or on Windows when the file is ASCII; bug fix on
Windows when the file contains non-ASCII.
When HERMES_HOME is unset but ~/.hermes/active_profile names a non-default
profile, any data this process writes lands in the default profile — not the
one the operator expects. Before this change the fallback was silent, so
cross-profile contamination (#18594) was invisible until a user noticed
their memory/state ended up in the wrong place.
Now we emit a one-shot warning to stderr the first time this happens in
a process. No raise — there are 30+ module-level callers of get_hermes_home()
and raising from any of them would brick import. Behavior is otherwise
unchanged; subprocess spawners (systemd template, kanban dispatcher, docker
entrypoint) already propagate HERMES_HOME correctly.
Bypasses logging.getLogger() because this runs before logging is configured
in a significant fraction of callers (module import time).
Refs #18594. Credit to @liuhao1024 for surfacing the silent-fallback case
in PR #18600; we kept the diagnostic signal without the import-time raise.