CI/CD Pipelines
Hearthforge runs pipelines in Docker or Podman containers. A pipeline is
described by a .hearthforge-ci.toml file at the root of the repository.
The Pipelines tab of a repository shows the run history, a short
reference, and a link to the full template.
How a run works
- A push, a tag, or the Run pipeline button creates a run. The config is read from the pushed commit, so every branch can carry its own pipeline.
- Hearthforge pulls
image, creates the cache volumes, and starts one container namedhearthforge-ci-<run id>withwork_diras its working directory. Files listed under[[copy]]are taken from their source images first. - The commit is exported with
git archiveon the host and uploaded intoclone_project_to. The image needs no git. No.gitdirectory reaches the container. - Steps run in file order, in that one container, so files and installed
packages persist from step to step. Each step is one
docker execofshellwithshell_setupprepended. - Published files are copied out of the container into
$DATA_DIR/ci/artifacts/<run id>/. The container is removed. Cache volumes stay.
Everything up to the first step is shown as the step pipeline setup.
Setup
Hearthforge talks to the container engine over its Unix socket. It checks, in order:
CI_DOCKER_SOCKET, when set/var/run/docker.sock/run/podman/podman.sock/run/user/<uid>/podman/podman.sock
Without a socket the Pipelines tab still works, and every run ends in one
skipped pipeline setup step that names the problem.
Host install
Docker needs no extra setup. Rootless Podman needs the API socket enabled:
systemctl --user enable --now podman.socket
Hearthforge in a container
The socket must be mounted into the Hearthforge container. compose.yml
carries commented-out bindings for both engines. Mount the socket at
/var/run/docker.sock and the auto-detection finds it, or mount it elsewhere
and set CI_DOCKER_SOCKET.
Mounting the socket gives Hearthforge full control over the container engine. That is equivalent to root on the host for Docker, and to the socket owner's account for rootless Podman.
Cache volumes, image pulls, and the CI containers live on the engine side. Nothing about them refers to paths inside the Hearthforge container, so a containerised Hearthforge works the same as a host install.
Server settings
| Variable | Default | Description |
|---|---|---|
CI_DOCKER_SOCKET |
(auto-detected) | Path to the Docker/Podman socket |
CI_MAX_CONCURRENT |
2 |
Runs executed at once. Further runs wait in a queue. |
CI_MAX_HISTORY |
50 |
Runs kept per repository, artifacts included |
CI_DEFAULT_TIMEOUT |
3600 |
Step timeout in seconds when the config sets none |
Example
image = "docker.io/debian:stable"
work_dir = "/ci/build"
clone_project_to = "/ci/build/project" # must be absolute
shell_setup = "set -euo pipefail"
timeout = 3600 # per-step default, in seconds
memory_limit = "2g"
cache = [
{ path = "/root/.cache/pip", max_size = "1g" },
]
[on]
push = ["main", "release/*"] # branch globs, or ["*"]. `*` does not cross a `/`
tag = true
[variables]
[variables.PYTHON]
default = "3.12"
description = "Interpreter version, overridable from the Run pipeline form"
[[steps]]
name = "setup"
run_sh = "apt-get update -qq && apt-get install -y --no-install-recommends python3 python3-pip"
timeout = 300
[[steps]]
name = "test"
run_sh = "cd project && python3 -m pytest"
[[steps]]
name = "package"
run_if = 'test -n "${CI_COMMIT_TAG}"'
run_sh = "cd project && python3 -m build"
publish_gzip = ["/ci/build/project/dist/"]
[[steps]]
name = "report"
always = true
run_sh = "cat /ci/build/project/.pytest_cache/v/cache/lastfailed || true"
The template in the Pipelines tab lists every key with a comment.
Step options
| Key | Effect |
|---|---|
run_sh |
The command. Runs through shell, after shell_setup. |
timeout |
Seconds. Falls back to the top-level timeout, then CI_DEFAULT_TIMEOUT. |
run_if |
Shell expression. A non-zero exit skips the step. |
always |
Run even after an earlier step failed. |
warn_on_fail |
A failure marks the step warning and the run continues. |
clear |
Delete clone_project_to and extract a fresh checkout before the step. |
publish_* |
publish_file, publish_tar, publish_gzip, publish_zstd, publish_zip |
Environment
Every step sees CI=true plus:
| Variable | Value |
|---|---|
CI_PIPELINE_ID |
numeric run ID |
CI_REPO_NAME |
repository name |
CI_SERVER_URL |
Hearthforge BASE_URL |
CI_TRIGGER_SOURCE |
push, tag, or manual |
CI_COMMIT_SHA |
full commit hash |
CI_COMMIT_SHORT_SHA |
first 8 characters |
CI_COMMIT_BRANCH |
branch name, empty for tags |
CI_COMMIT_TAG |
tag name, empty for branches |
CI_COMMIT_REF_NAME |
branch or tag name |
[variables] defaults come next, then overrides from the Run pipeline
form, then secrets. A later source wins on a name clash.
Secrets
Admins add secrets under Repository settings → CI Secrets. They are
injected as environment variables. Their values are replaced with [MASKED]
in step logs. The masking is a plain text match: a secret printed in encoded
or split form is not caught.
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Caches
Each cache path becomes a named volume, hearthforge-ci-cache-<hash>,
labelled com.hearthforge.repo=<repository>. The volume is mounted at the
same path in every run of that repository.
- A cache without
max_sizegrows without bound. - A cache with
max_sizeis deleted after the run that takes it over the limit. The run detail page shows acachestep naming the dropped volume. The next run starts cold. Size the cap at about twice the working set. - A volume the current config no longer lists is deleted after a run on the default branch. Other branches keep it.
- Purge caches on the Pipelines tab deletes all volumes of the repository. Deleting or renaming a repository does the same.
- Everything else needs the engine's own tools:
docker volume ls --filter label=com.hearthforge.repo=REPO_NAME
docker volume rm $(docker volume ls -q --filter label=com.hearthforge.repo) # all Hearthforge caches
The size check reads the daemon's reported usage. A daemon that does not report volume sizes never triggers the cap.
Gotchas
clone_project_tomust be absolute, and nocachepath may lie inside it or above it. The checkout is extracted over that directory and aclearstep deletes it. The config is rejected otherwise.- The image needs no git, and the checkout has no
.git.git describeor a version from the log needs a step that installs git and fetches the history itself, for example over the forge's HTTP clone URL. Pushing back from a pipeline needs the admin's credentials, kept as a secret. - The image is pulled on every run. Even with a local copy, the daemon contacts the registry. There is no registry authentication, so private images must already be present and pullable without login. Pin a tag; a moving tag changes the toolchain under the pipeline.
- Match the libc for
[[copy]]. A binary from an-alpineimage is musl and fails on a glibc image with an error that looks like a missing file. publish_*uses tools inside the image.publish_gzip,publish_tar, andpublish_zstdneedtar(pluszstd).publish_zipneedszip.publish_fileneeds nothing.- Steps share one container. A file left behind by one step is visible to
the next. Use
clearon a step that must start from a clean tree. Do notrm -rfwork_diritself: the container's working directory is gone and every later step fails to start. - Logs are cut at 2 MB per step. Redirect verbose output to a file and publish the file instead.
- A Hearthforge restart cancels running runs. Their containers are
force-removed on startup. The runs show as
cancelledand can be retried. - The container is on the engine's default network. It reaches the
internet and any other container on that network. Set
cpu_limitandmemory_limit; there are no defaults. - Old runs are deleted. Only the newest
CI_MAX_HISTORYruns per repository are kept, and their artifacts go with them. Attach anything permanent to a release.