distribution/circle.yml

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# Pony-up!
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machine:
pre:
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# Install gvm
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- bash < <(curl -s -S -L https://raw.githubusercontent.com/moovweb/gvm/1.0.22/binscripts/gvm-installer)
Storage Driver: Ceph Object Storage (RADOS) This driver implements the storagedriver.StorageDriver interface and uses Ceph Object Storage as storage backend. Since RADOS is an object storage and no hierarchy notion, the following convention is used to keep the filesystem notions stored in this backend: * All the objects data are stored with opaque UUID names prefixed (e.g. "blob:d3d232ff-ab3a-4046-9ab7-930228d4c164). * All the hierarchy information are stored in rados omaps, where the omap object identifier is the virtual directory name, the keys in a specific are the relative filenames and the values the blob object identifier (or empty value for a sub directory). e.g. For the following hierarchy: /directory1 /directory1/object1 /directory1/object2 /directory1/directory2/object3 The omap "/directory1" will contains the following key / values: - "object1" "blob:d3d232ff-ab3a-4046-9ab7-930228d4c164" - "object2" "blob:db2e359d-4af0-4bfb-ba1d-d2fd029866a0" - "directory2" "" The omap "/directory1/directory2" will contains: - "object3" "blob:9ae2371c-81fc-4945-80ac-8bf7f566a5d9" * The MOVE is implemented by changing the reference to a specific blob in its parent virtual directory omap. This driver stripes rados objects to a fixed size (e.g. 4M). The idea is to keep small objects (as done by RBD on the top of RADOS) that will be easily synchronized accross OSDs. The information of the original object (i.e total size of the chunks) is stored as a Xattr in the first chunk object. Signed-off-by: Vincent Giersch <vincent.giersch@ovh.net>
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# Install ceph to test rados driver & create pool
- sudo -i ~/distribution/contrib/ceph/ci-setup.sh
- ceph osd pool create docker-distribution 1
# Install codecov for coverage
- pip install --user codecov
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post:
# go
- gvm install go1.5 --prefer-binary --name=stable
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environment:
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# Convenient shortcuts to "common" locations
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CHECKOUT: /home/ubuntu/$CIRCLE_PROJECT_REPONAME
BASE_DIR: src/github.com/$CIRCLE_PROJECT_USERNAME/$CIRCLE_PROJECT_REPONAME
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# Trick circle brainflat "no absolute path" behavior
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BASE_STABLE: ../../../$HOME/.gvm/pkgsets/stable/global/$BASE_DIR
DOCKER_BUILDTAGS: "include_rados include_oss include_gcs"
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# Workaround Circle parsing dumb bugs and/or YAML wonkyness
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CIRCLE_PAIN: "mode: set"
Storage Driver: Ceph Object Storage (RADOS) This driver implements the storagedriver.StorageDriver interface and uses Ceph Object Storage as storage backend. Since RADOS is an object storage and no hierarchy notion, the following convention is used to keep the filesystem notions stored in this backend: * All the objects data are stored with opaque UUID names prefixed (e.g. "blob:d3d232ff-ab3a-4046-9ab7-930228d4c164). * All the hierarchy information are stored in rados omaps, where the omap object identifier is the virtual directory name, the keys in a specific are the relative filenames and the values the blob object identifier (or empty value for a sub directory). e.g. For the following hierarchy: /directory1 /directory1/object1 /directory1/object2 /directory1/directory2/object3 The omap "/directory1" will contains the following key / values: - "object1" "blob:d3d232ff-ab3a-4046-9ab7-930228d4c164" - "object2" "blob:db2e359d-4af0-4bfb-ba1d-d2fd029866a0" - "directory2" "" The omap "/directory1/directory2" will contains: - "object3" "blob:9ae2371c-81fc-4945-80ac-8bf7f566a5d9" * The MOVE is implemented by changing the reference to a specific blob in its parent virtual directory omap. This driver stripes rados objects to a fixed size (e.g. 4M). The idea is to keep small objects (as done by RBD on the top of RADOS) that will be easily synchronized accross OSDs. The information of the original object (i.e total size of the chunks) is stored as a Xattr in the first chunk object. Signed-off-by: Vincent Giersch <vincent.giersch@ovh.net>
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# Ceph config
RADOS_POOL: "docker-distribution"
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hosts:
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# Not used yet
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fancy: 127.0.0.1
dependencies:
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pre:
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# Copy the code to the gopath of all go versions
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- >
gvm use stable &&
mkdir -p "$(dirname $BASE_STABLE)" &&
cp -R "$CHECKOUT" "$BASE_STABLE"
override:
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# Install dependencies for every copied clone/go version
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- gvm use stable && go get github.com/tools/godep:
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pwd: $BASE_STABLE
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post:
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# For the stable go version, additionally install linting tools
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- >
gvm use stable &&
go get github.com/axw/gocov/gocov github.com/golang/lint/golint
# Disabling goveralls for now
# go get github.com/axw/gocov/gocov github.com/mattn/goveralls github.com/golang/lint/golint
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test:
pre:
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# Output the go versions we are going to test
# - gvm use old && go version
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- gvm use stable && go version
# First thing: build everything. This will catch compile errors, and it's
# also necessary for go vet to work properly (see #807).
- gvm use stable && godep go install ./...:
pwd: $BASE_STABLE
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# FMT
- gvm use stable && test -z "$(gofmt -s -l . | grep -v Godeps/_workspace/src/ | tee /dev/stderr)":
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pwd: $BASE_STABLE
# VET
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- gvm use stable && go vet ./...:
pwd: $BASE_STABLE
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# LINT
- gvm use stable && test -z "$(golint ./... | grep -v Godeps/_workspace/src/ | tee /dev/stderr)":
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pwd: $BASE_STABLE
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override:
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# Test stable, and report
# Preset the goverall report file
# - echo "$CIRCLE_PAIN" > ~/goverage.report
- gvm use stable; go list ./... | xargs -L 1 -I{} rm -f $GOPATH/src/{}/coverage.out:
pwd: $BASE_STABLE
- gvm use stable; go list -tags "$DOCKER_BUILDTAGS" ./... | xargs -L 1 -I{} godep go test -tags "$DOCKER_BUILDTAGS" -test.short -coverprofile=$GOPATH/src/{}/coverage.out -covermode=count {}:
timeout: 600
pwd: $BASE_STABLE
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post:
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# Aggregate and report to coveralls
- bash <(curl -s https://codecov.io/bash):
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pwd: $BASE_STABLE
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## Notes
# Disabled coveralls reporting: build breaking sending coverage data to coveralls
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# Disabled the -race detector due to massive memory usage.
# Do we want these as well?
# - go get code.google.com/p/go.tools/cmd/goimports
# - test -z "$(goimports -l -w ./... | tee /dev/stderr)"
# http://labix.org/gocheck