Skip to main content

dotvault — Python bindings

Python bindings for dotvault's public client API. They let a Python program read the per-user secrets a dotvault daemon enrolled and keeps current — talking to the same Vault, resolving a token the same way, and reading from the exact kv/users/<user>/... path dotvault writes to.

The package is a thin ctypes wrapper over dotvault's Go client package compiled to a shared library with go build -buildmode=c-shared. Connectivity, token precedence, the OS-user identity convention, and the path layout all come from the one canonical Go implementation rather than being re-derived in Python, so a consumer can't silently diverge from the daemon. The native bridge imports only the public Go client package — never dotvault's internals.

Scope

This package exposes the read-only + cached-auth subset of the Go facade, plus the socket-forwarded peer actions:

  • Client(config_path=None, identity=None) — load config, build the client.
  • authenticate_cached(timeout=None) — resolve a token (DOTVAULT_TOKEN → token file → the local daemon's API socket when api.enabled → a peer socket when vault.token_socket is configured) and validate it. The local socket is tried first because it outlives the SSH session a forwarded peer socket depends on. The socket borrow is a plain read with no browser or prompt, so a host with no local token but a live peer socket authenticates without an interactive login. Never prompts.
  • identity_name(), token().
  • read_user_secret(service, field, timeout=None), read_kv_field(mount, path, field, timeout=None).
  • browse(url, timeout=None), notify(level, title, body="", action_url="", timeout=None), clipboard(text, timeout=None) — ask the vault.token_socket peer to open a URL in a browser, raise a native desktop notification, or put text on the clipboard, on the workstation. For the headless topology: a Python program on a machine with no browser hands a URL, a notification, or a value to paste (a one-time token for a page browse just opened) back over the same forwarded socket it borrows tokens from. These need no local token. The peer validates/sanitizes the input; there is no local fallback (an unreachable peer raises PeerUnavailable). notify levels: info, warning, error, attention; the optional action_url is an http/https link the notification opens when clicked (on Windows; appended to the body on macOS/Linux). clipboard text is written verbatim (non-empty UTF-8, no NUL bytes, ≤ 64 KiB) and the peer logs only its length, never the content.

Interactive login (OIDC browser pop, LDAP password + MFA terminal prompts) is deliberately out of scope — driving it across an FFI boundary from inside a Python process is awkward and not what a library caller wants. Provision a token out of band (dotvault login, or the daemon) and these bindings consume it.

Install

Released wheels are published to PyPI (Linux manylinux_2_28, macOS arm64, Windows x86_64):

pip install dotvault          # or: uv pip install dotvault

The wheel is tagged py3-none-<platform>: it carries a native shared library (so it is platform-specific) but contains no CPython C-extension — it is pure ctypes — so a single wheel per OS installs on any Python ≥ 3.9, not one wheel per interpreter version. Its version is derived from the repo's git tags by setuptools-scm (the same tags that version the daemon); dotvault.__version__ reports it.

Wheels are built for glibc Linux x86_64 (manylinux_2_28), Apple-Silicon macOS, and Windows x86_64. There are currently no wheels for Linux aarch64, musl/Alpine, Intel macOS, or Windows arm64 — pip install on those reports "no matching distribution"; build from a checkout instead.

To build from a checkout instead — the tooling is uv:

make python-wheel               # -> python/dist/dotvault-*.whl  (runs `uv build`)
uv pip install python/dist/dotvault-*.whl

or an editable install (requires Go on PATH, since the bridge is compiled on install):

cd python && uv pip install -e .

Building from source needs the Go toolchain and a C compiler — go build -buildmode=c-shared is the one place dotvault uses cgo (CGO_ENABLED=1). The main dotvault binaries remain pure-Go static builds; only this binding links libc. On Windows the C compiler must be a mingw-w64 gcc (the c-shared build does not work with MSVC); GitHub's windows-latest runners ship one, but a local Windows build needs it on PATH.

Concurrency note: set DOTVAULT_TOKEN before the first use of a Client, not concurrently with reads from another thread. The bridge re-reads the facade's env vars from libc on each token-resolving call; that read/write is serialised internally, but it cannot be made safe against the host process mutating its own environment from another thread.

Quick start

import dotvault

# Defaults: dotvault's system config path, identity = the OS user.
with dotvault.Client() as c:
    try:
        c.authenticate_cached(timeout=5)          # env -> token file; no prompt
    except dotvault.LoginRequired:
        raise SystemExit("run `dotvault login` first")
    except dotvault.Unreachable:
        raise SystemExit("vault is unreachable; retry later")

    token = c.read_user_secret("gh", "oauth_token")   # -> str | None
    if token is None:
        raise SystemExit("github enrolment not present")
    use(token)

A read returns the field value, or None when the secret or field is absent — a missing path and a missing field are not distinguished (both are "not there"), matching the Go facade. Transport/authorisation failures raise instead.

Identity is the OS user, not the Vault token

dotvault derives the <user> segment of kv/users/<user>/... from the OS account the process runs as (with any DOMAIN\ prefix stripped), not from the Vault token's display_name or entity. By default a consumer must therefore run as the same OS user as the dotvault that populated the secrets — normally true for a per-user daemon.

If your process runs as a different user (a service account, a container), pass identity= to read that user's secrets:

dotvault.Client(identity="alice")

A wrong identity reads a non-existent path, which surfaces as a None read — not an error.

Errors

Every failure is a DotvaultError or a subclass:

Exception Meaning What to do
LoginRequired No usable cached token. Provision a token (dotvault login).
Unreachable Vault down / 5xx / timeout. Retry, back off.
Denied Vault rejected the read (401/403). Fail closed; the token lacks the policy.
AuthFailed A login ran but failed. Surface the auth problem (rare on this surface).
PeerUnavailable browse/notify/clipboard: no socket, peer down, or the action failed. Retry, or fall back to your own handling.
DotvaultError Anything else (config load, closed client, a peer-rejected request). Fail closed.

A not-found read is None, never an exception.

Environment variables

The bindings honour the same variables as dotvault: DOTVAULT_TOKEN (a token supplied via the environment) and VAULT_NAMESPACE. VAULT_TOKEN is deliberately ignored — it belongs to the vault CLI and must not leak into dotvault's session; use DOTVAULT_TOKEN.

The Go runtime snapshots its environment at load time, so the bridge re-reads these two variables from the live process environment on each call. That means setting os.environ["DOTVAULT_TOKEN"] after import dotvault works as you'd expect.

Development

make python-lib     # build the native bridge into the package for local use
make python-test    # build the bridge + run the Python test suite (via `uv run`)
go test ./python/bridge/...   # the Go-side bridge unit tests

make python-test and make python-wheel shell out to uv, which provisions Python and the test/build dependencies; only the Go toolchain and a C compiler need to be present beforehand.

The Python tests run fully offline — they point at a closed Vault port and assert the error categorisation — so no live Vault is needed.

Releasing

Publishing a GitHub Release with a vX.Y.Z tag drives both the Go release (release.yml) and the Python wheels: the .github/workflows/python.yml publish job builds the per-OS wheels and uploads them to PyPI via the official pypa/gh-action-pypi-publish action using Trusted Publishing (OIDC — no stored token). One-time setup before the first release: register a pending publisher on PyPI for project dotvault pointing at this repository, workflow python.yml, and environment pypi. A dev/untagged build produces a PEP 440 local version that PyPI rejects, so only exact tagged releases publish. Consider a one-off TestPyPI dry run (temporarily pointing the action at TestPyPI) before the first real release to validate the OIDC/publisher wiring.

Download files

Download the file for your platform. If you're not sure which to choose, learn more about installing packages.

Source Distributions

No source distribution files available for this release.See tutorial on generating distribution archives.

Built Distributions

If you're not sure about the file name format, learn more about wheel file names.

dotvault-0.30.0-py3-none-win_amd64.whl (10.8 MB view details)

Uploaded Python 3Windows x86-64

dotvault-0.30.0-py3-none-manylinux1_x86_64.manylinux_2_28_x86_64.manylinux_2_5_x86_64.whl (10.9 MB view details)

Uploaded Python 3manylinux: glibc 2.28+ x86-64manylinux: glibc 2.5+ x86-64

dotvault-0.30.0-py3-none-macosx_26_0_arm64.whl (5.5 MB view details)

Uploaded Python 3macOS 26.0+ ARM64

File details

Details for the file dotvault-0.30.0-py3-none-win_amd64.whl.

File metadata

  • Download URL: dotvault-0.30.0-py3-none-win_amd64.whl
  • Upload date:
  • Size: 10.8 MB
  • Tags: Python 3, Windows x86-64
  • Uploaded using Trusted Publishing? Yes
  • Uploaded via: twine/7.0.0 CPython/3.13.14

File hashes

Hashes for dotvault-0.30.0-py3-none-win_amd64.whl
Algorithm Hash digest
SHA256 fe211cac6898627dbd899b7b3a7505f09ba2913151598a9c573beafa2763a080
MD5 7e2ac8b35bc3a5d49a7c477fbf62d5fa
BLAKE2b-256 9bc82be4710b1d3729fc93dd4ec045df24fd481f234dbdc606cec0b49f5ea1f6

See more details on using hashes here.

Provenance

The following attestation bundles were made for dotvault-0.30.0-py3-none-win_amd64.whl:

Publisher: python.yml on goodtune/dotvault

Attestations: Values shown here reflect the state when the release was signed and may no longer be current.

File details

Details for the file dotvault-0.30.0-py3-none-manylinux1_x86_64.manylinux_2_28_x86_64.manylinux_2_5_x86_64.whl.

File metadata

File hashes

Hashes for dotvault-0.30.0-py3-none-manylinux1_x86_64.manylinux_2_28_x86_64.manylinux_2_5_x86_64.whl
Algorithm Hash digest
SHA256 ba2b518e23ae432090162d6f600739143d8622444e16facdb8ff9050f37d7c31
MD5 261fa55478aa274264a23b6fa98e4577
BLAKE2b-256 c808d056b1b8893d5e30b60c97a2dc3e16ad429a9a813f1150487c6d1f0386d5

See more details on using hashes here.

Provenance

The following attestation bundles were made for dotvault-0.30.0-py3-none-manylinux1_x86_64.manylinux_2_28_x86_64.manylinux_2_5_x86_64.whl:

Publisher: python.yml on goodtune/dotvault

Attestations: Values shown here reflect the state when the release was signed and may no longer be current.

File details

Details for the file dotvault-0.30.0-py3-none-macosx_26_0_arm64.whl.

File metadata

File hashes

Hashes for dotvault-0.30.0-py3-none-macosx_26_0_arm64.whl
Algorithm Hash digest
SHA256 55e6acae28d7123d37130452bfaa9d54e175f444ca4e04a8c2ef05916b619e29
MD5 a94991f1a412d349887824dc57bb16e8
BLAKE2b-256 999e6b30ff9e56d181d00d8aafe4b1c74eb5317b643e517e425e8bc4e2c7ff54

See more details on using hashes here.

Provenance

The following attestation bundles were made for dotvault-0.30.0-py3-none-macosx_26_0_arm64.whl:

Publisher: python.yml on goodtune/dotvault

Attestations: Values shown here reflect the state when the release was signed and may no longer be current.

Supported by

AWS Cloud computing and Security Sponsor Datadog Monitoring Depot Continuous Integration Fastly CDN Google Download Analytics Sentry Error logging StatusPage Status page