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Makefile
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# VERSION defines the project version for the bundle.
# Update this value when you upgrade the version of your project.
# To re-generate a bundle for another specific version without changing the standard setup, you can:
# - use the VERSION as arg of the bundle target (e.g make bundle VERSION=0.0.2)
# - use environment variables to overwrite this value (e.g export VERSION=0.0.2)
VERSION ?= 0.0.1
# CHANNELS define the bundle channels used in the bundle.
# Add a new line here if you would like to change its default config. (E.g CHANNELS = "candidate,fast,stable")
# To re-generate a bundle for other specific channels without changing the standard setup, you can:
# - use the CHANNELS as arg of the bundle target (e.g make bundle CHANNELS=candidate,fast,stable)
# - use environment variables to overwrite this value (e.g export CHANNELS="candidate,fast,stable")
ifneq ($(origin CHANNELS), undefined)
BUNDLE_CHANNELS := --channels=$(CHANNELS)
endif
CRDDESC_OVERRIDE ?= :maxDescLen=0
# DEFAULT_CHANNEL defines the default channel used in the bundle.
# Add a new line here if you would like to change its default config. (E.g DEFAULT_CHANNEL = "stable")
# To re-generate a bundle for any other default channel without changing the default setup, you can:
# - use the DEFAULT_CHANNEL as arg of the bundle target (e.g make bundle DEFAULT_CHANNEL=stable)
# - use environment variables to overwrite this value (e.g export DEFAULT_CHANNEL="stable")
ifneq ($(origin DEFAULT_CHANNEL), undefined)
BUNDLE_DEFAULT_CHANNEL := --default-channel=$(DEFAULT_CHANNEL)
endif
BUNDLE_METADATA_OPTS ?= $(BUNDLE_CHANNELS) $(BUNDLE_DEFAULT_CHANNEL)
# IMAGE_TAG_BASE defines the docker.io namespace and part of the image name for remote images.
# This variable is used to construct full image tags for bundle and catalog images.
#
# For example, running 'make bundle-build bundle-push catalog-build catalog-push' will build and push both
# openstack.org/cinder-operator-bundle:$VERSION and openstack.org/cinder-operator-catalog:$VERSION.
IMAGE_TAG_BASE ?= quay.io/$(USER)/cinder-operator
# BUNDLE_IMG defines the image:tag used for the bundle.
# You can use it as an arg. (E.g make bundle-build BUNDLE_IMG=<some-registry>/<project-name-bundle>:<tag>)
BUNDLE_IMG ?= $(IMAGE_TAG_BASE)-bundle:v$(VERSION)
# BUNDLE_GEN_FLAGS are the flags passed to the operator-sdk generate bundle command
BUNDLE_GEN_FLAGS ?= -q --overwrite --version $(VERSION) $(BUNDLE_METADATA_OPTS)
VERIFY_TLS ?= true
# GOWORK
GOWORK ?= off
export GOWORK := $(GOWORK)
# USE_IMAGE_DIGESTS defines if images are resolved via tags or digests
# You can enable this value if you would like to use SHA Based Digests
# To enable set flag to true
USE_IMAGE_DIGESTS ?= false
ifeq ($(USE_IMAGE_DIGESTS), true)
BUNDLE_GEN_FLAGS += --use-image-digests
endif
# Image URL to use all building/pushing image targets
DEFAULT_IMG ?= quay.io/openstack-k8s-operators/cinder-operator:latest
IMG ?= $(DEFAULT_IMG)
# ENVTEST_K8S_VERSION refers to the version of kubebuilder assets to be downloaded by envtest binary.
ENVTEST_K8S_VERSION = 1.25.0
# Get the currently used golang install path (in GOPATH/bin, unless GOBIN is set)
ifeq (,$(shell go env GOBIN))
GOBIN=$(shell go env GOPATH)/bin
else
GOBIN=$(shell go env GOBIN)
endif
# Project is OpenShift centered, so we use oc instead of kubectl, but the
# operator-sdk uses kubectl.
# To avoid errors try to create a kubectl symlink to oc when there's no kubectl.
# Won't create it if oc is in a dir requiring sudo to write.
ifeq ($(shell which kubectl 2>/dev/null),)
ifeq ($(shell which oc 2>/dev/null),)
res := $(warning Command "oc" and "kubectl" missing, some targets may fail)
else
res := $(shell ln -s oc `dirname \`which oc\``/kubectl)
endif
endif
# Setting SHELL to bash allows bash commands to be executed by recipes.
# This is a requirement for 'setup-envtest.sh' in the test target.
# Options are set to exit when a recipe line exits non-zero or a piped command fails.
SHELL = /usr/bin/env bash -o pipefail
.SHELLFLAGS = -ec
.PHONY: all
all: build
##@ General
# The help target prints out all targets with their descriptions organized
# beneath their categories. The categories are represented by '##@' and the
# target descriptions by '##'. The awk commands is responsible for reading the
# entire set of makefiles included in this invocation, looking for lines of the
# file as xyz: ## something, and then pretty-format the target and help. Then,
# if there's a line with ##@ something, that gets pretty-printed as a category.
# More info on the usage of ANSI control characters for terminal formatting:
# https://en.wikipedia.org/wiki/ANSI_escape_code#SGR_parameters
# More info on the awk command:
# http://linuxcommand.org/lc3_adv_awk.php
.PHONY: help
help: ## Display this help.
@awk 'BEGIN {FS = ":.*##"; printf "\nUsage:\n make \033[36m<target>\033[0m\n"} /^[a-zA-Z_0-9-]+:.*?##/ { printf " \033[36m%-15s\033[0m %s\n", $$1, $$2 } /^##@/ { printf "\n\033[1m%s\033[0m\n", substr($$0, 5) } ' $(MAKEFILE_LIST)
##@ Development
.PHONY: manifests
manifests: controller-gen ## Generate WebhookConfiguration, ClusterRole and CustomResourceDefinition objects.
$(CONTROLLER_GEN) rbac:roleName=manager-role crd$(CRDDESC_OVERRIDE) webhook paths="./..." output:crd:artifacts:config=config/crd/bases && \
rm -f api/bases/* && cp -a config/crd/bases api/
.PHONY: generate
generate: controller-gen ## Generate code containing DeepCopy, DeepCopyInto, and DeepCopyObject method implementations.
$(CONTROLLER_GEN) object:headerFile="hack/boilerplate.go.txt" paths="./..."
.PHONY: fmt
fmt: ## Run go fmt against code.
go fmt ./...
.PHONY: vet
vet: export GOWORK=
vet: gowork ## Run go vet against code.
go vet ./...
go vet ./api/...
.PHONY: test
test: manifests generate fmt vet envtest ## Run tests.
KUBEBUILDER_ASSETS="$(shell $(ENVTEST) use $(ENVTEST_K8S_VERSION) --bin-dir $(LOCALBIN) -p path)" go test ./... -coverprofile cover.out
.PHONY: gowork
gowork: export GOWORK=
gowork: ## Generate go.work file to support our multi module repository
test -f go.work || go work init
go work use .
go work use ./api
go work sync
##@ Build
.PHONY: build
build: generate fmt vet ## Build manager binary.
go build -o bin/manager main.go
.PHONY: run
run: manifests generate fmt vet ## Run a controller from your host.
go run ./main.go
.PHONY: docker-build
docker-build: test ## Build docker image with the manager.
podman build --build-arg GOWORK=$(GOWORK) -t ${IMG} .
.PHONY: docker-push
docker-push: ## Push docker image with the manager.
ifeq ($(IMG), $(DEFAULT_IMG))
$(error As a precaution this target cannot push the default image. If that's really your intentention you'll need to do it manually.)
endif
podman push --tls-verify=${VERIFY_TLS} ${IMG}
# PLATFORMS defines the target platforms for the manager image be build to provide support to multiple
# architectures. (i.e. make docker-buildx IMG=myregistry/mypoperator:0.0.1). To use this option you need to:
# - able to use docker buildx . More info: https://docs.docker.com/build/buildx/
# - have enable BuildKit, More info: https://docs.docker.com/develop/develop-images/build_enhancements/
# - be able to push the image for your registry (i.e. if you do not inform a valid value via IMG=<myregistry/image:<tag>> than the export will fail)
# To properly provided solutions that supports more than one platform you should use this option.
PLATFORMS ?= linux/arm64,linux/amd64,linux/s390x,linux/ppc64le
.PHONY: docker-buildx
docker-buildx: test ## Build and push docker image for the manager for cross-platform support
# copy existing Dockerfile and insert --platform=${BUILDPLATFORM} into Dockerfile.cross, and preserve the original Dockerfile
sed -e '1 s/\(^FROM\)/FROM --platform=\$$\{BUILDPLATFORM\}/; t' -e ' 1,// s//FROM --platform=\$$\{BUILDPLATFORM\}/' Dockerfile > Dockerfile.cross
- docker buildx create --name project-v3-builder
docker buildx use project-v3-builder
- docker buildx build --push --platform=$(PLATFORMS) --tag ${IMG} -f Dockerfile.cross
- docker buildx rm project-v3-builder
rm Dockerfile.cross
##@ Deployment
ifndef ignore-not-found
ignore-not-found = false
endif
.PHONY: install
install: manifests kustomize ## Install CRDs and RBAC into the K8s cluster specified in ~/.kube/config.
$(KUSTOMIZE) build config/dev | kubectl apply -f -
.PHONY: uninstall
uninstall: manifests kustomize ## Uninstall CRDs and RBAC from the K8s cluster specified in ~/.kube/config. Call with ignore-not-found=true to ignore resource not found errors during deletion.
$(KUSTOMIZE) build config/dev | kubectl delete --ignore-not-found=$(ignore-not-found) -f -
.PHONY: deploy
deploy: manifests kustomize ## Deploy controller to the K8s cluster specified in ~/.kube/config.
cd config/manager && $(KUSTOMIZE) edit set image controller=${IMG}
$(KUSTOMIZE) build config/default | kubectl apply -f -
.PHONY: undeploy
undeploy: ## Undeploy controller from the K8s cluster specified in ~/.kube/config. Call with ignore-not-found=true to ignore resource not found errors during deletion.
$(KUSTOMIZE) build config/default | kubectl delete --ignore-not-found=$(ignore-not-found) -f -
##@ Build Dependencies
## Location to install dependencies to
LOCALBIN ?= $(shell pwd)/bin
$(LOCALBIN):
mkdir -p $(LOCALBIN)
## Tool Binaries
KUSTOMIZE ?= $(LOCALBIN)/kustomize
CONTROLLER_GEN ?= $(LOCALBIN)/controller-gen
ENVTEST ?= $(LOCALBIN)/setup-envtest
## Tool Versions
KUSTOMIZE_VERSION ?= v3.8.7
CONTROLLER_TOOLS_VERSION ?= v0.10.0
KUSTOMIZE_INSTALL_SCRIPT ?= "https://raw.githubusercontent.com/kubernetes-sigs/kustomize/master/hack/install_kustomize.sh"
.PHONY: kustomize
kustomize: $(KUSTOMIZE) ## Download kustomize locally if necessary.
$(KUSTOMIZE): $(LOCALBIN)
rm -f $(LOCALBIN)/kustomize || true
test -s $(LOCALBIN)/kustomize || curl -s $(KUSTOMIZE_INSTALL_SCRIPT) | bash -s -- $(subst v,,$(KUSTOMIZE_VERSION)) $(LOCALBIN)
.PHONY: controller-gen
controller-gen: $(CONTROLLER_GEN) ## Download controller-gen locally if necessary.
$(CONTROLLER_GEN): $(LOCALBIN)
test -s $(LOCALBIN)/controller-gen || GOBIN=$(LOCALBIN) go install sigs.k8s.io/controller-tools/cmd/controller-gen@$(CONTROLLER_TOOLS_VERSION)
.PHONY: envtest
envtest: $(ENVTEST) ## Download envtest-setup locally if necessary.
$(ENVTEST): $(LOCALBIN)
test -s $(LOCALBIN)/setup-envtest || GOBIN=$(LOCALBIN) go install sigs.k8s.io/controller-runtime/tools/setup-envtest@latest
.PHONY: bundle
bundle: manifests kustomize ## Generate bundle manifests and metadata, then validate generated files.
operator-sdk generate kustomize manifests -q
cd config/manager && $(KUSTOMIZE) edit set image controller=$(IMG)
$(KUSTOMIZE) build config/manifests | operator-sdk generate bundle $(BUNDLE_GEN_FLAGS)
operator-sdk bundle validate ./bundle
.PHONY: bundle-build
bundle-build: ## Build the bundle image.
podman build -f bundle.Dockerfile -t $(BUNDLE_IMG) .
.PHONY: bundle-push
bundle-push: ## Push the bundle image.
$(MAKE) docker-push IMG=$(BUNDLE_IMG)
.PHONY: opm
OPM = ./bin/opm
opm: ## Download opm locally if necessary.
ifeq (,$(wildcard $(OPM)))
ifeq (,$(shell which opm 2>/dev/null))
@{ \
set -e ;\
mkdir -p $(dir $(OPM)) ;\
OS=$(shell go env GOOS) && ARCH=$(shell go env GOARCH) && \
curl -sSLo $(OPM) https://github.com/operator-framework/operator-registry/releases/download/v1.23.0/$${OS}-$${ARCH}-opm ;\
chmod +x $(OPM) ;\
}
else
OPM = $(shell which opm)
endif
endif
# A comma-separated list of bundle images (e.g. make catalog-build BUNDLE_IMGS=example.com/operator-bundle:v0.1.0,example.com/operator-bundle:v0.2.0).
# These images MUST exist in a registry and be pull-able.
BUNDLE_IMGS ?= $(BUNDLE_IMG)
# The image tag given to the resulting catalog image (e.g. make catalog-build CATALOG_IMG=example.com/operator-catalog:v0.2.0).
CATALOG_IMG ?= $(IMAGE_TAG_BASE)-index:v$(VERSION)
# Set CATALOG_BASE_IMG to an existing catalog image tag to add $BUNDLE_IMGS to that image.
ifneq ($(origin CATALOG_BASE_IMG), undefined)
FROM_INDEX_OPT := --from-index $(CATALOG_BASE_IMG)
endif
# Build a catalog image by adding bundle images to an empty catalog using the operator package manager tool, 'opm'.
# This recipe invokes 'opm' in 'semver' bundle add mode. For more information on add modes, see:
# https://github.com/operator-framework/community-operators/blob/7f1438c/docs/packaging-operator.md#updating-your-existing-operator
.PHONY: catalog-build
catalog-build: opm ## Build a catalog image.
$(OPM) index add --container-tool podman --mode semver --tag $(CATALOG_IMG) --bundles $(BUNDLE_IMGS) $(FROM_INDEX_OPT)
# Push the catalog image.
.PHONY: catalog-push
catalog-push: ## Push a catalog image.
$(MAKE) docker-push IMG=$(CATALOG_IMG)
# CI tools repo for running tests
CI_TOOLS_REPO := https://github.com/openstack-k8s-operators/openstack-k8s-operators-ci
CI_TOOLS_REPO_DIR = $(shell pwd)/CI_TOOLS_REPO
.PHONY: get-ci-tools
get-ci-tools:
if [ -d "$(CI_TOOLS_REPO_DIR)" ]; then \
echo "Ci tools exists"; \
pushd "$(CI_TOOLS_REPO_DIR)"; \
git pull --rebase; \
popd; \
else \
git clone $(CI_TOOLS_REPO) "$(CI_TOOLS_REPO_DIR)"; \
fi
# Run go fmt against code
gofmt: get-ci-tools
$(CI_TOOLS_REPO_DIR)/test-runner/gofmt.sh
$(CI_TOOLS_REPO_DIR)/test-runner/gofmt.sh ./api
# Run go vet against code
govet: get-ci-tools
$(CI_TOOLS_REPO_DIR)/test-runner/govet.sh
$(CI_TOOLS_REPO_DIR)/test-runner/govet.sh ./api
# Run go test against code
gotest: get-ci-tools
$(CI_TOOLS_REPO_DIR)/test-runner/gotest.sh
$(CI_TOOLS_REPO_DIR)/test-runner/gotest.sh ./api
# Run golangci-lint test against code
golangci: get-ci-tools
$(CI_TOOLS_REPO_DIR)/test-runner/golangci.sh
$(CI_TOOLS_REPO_DIR)/test-runner/golangci.sh ./api
# Run go lint against code
golint: get-ci-tools
PATH=$(GOBIN):$(PATH); $(CI_TOOLS_REPO_DIR)/test-runner/golint.sh
PATH=$(GOBIN):$(PATH); $(CI_TOOLS_REPO_DIR)/test-runner/golint.sh ./api
.PHONY: operator-lint
operator-lint: export GOWORK=
operator-lint: $(LOCALBIN) gowork
GOBIN=$(LOCALBIN) go install github.com/gibizer/[email protected]
go vet -vettool=$(LOCALBIN)/operator-lint ./... ./api/...
# Used for webhook testing
# Please ensure the cinder-controller-manager deployment and
# webhook definitions are removed from the csv before running
# this. Also, cleanup the webhook configuration for local testing
# before deplying with olm again.
# $oc delete -n openstack validatingwebhookconfiguration/vcinder.kb.io
# $oc delete -n openstack mutatingwebhookconfiguration/mcinder.kb.io
SKIP_CERT ?=false
.PHONY: run-with-webhook
run-with-webhook: export CINDER_API_IMAGE_URL_DEFAULT=quay.io/tripleozedcentos9/openstack-cinder-api:current-tripleo
run-with-webhook: export CINDER_BACKUP_IMAGE_URL_DEFAULT=quay.io/tripleozedcentos9/openstack-cinder-backup:current-tripleo
run-with-webhook: export CINDER_SCHEDULER_IMAGE_URL_DEFAULT=quay.io/tripleozedcentos9/openstack-cinder-scheduler:current-tripleo
run-with-webhook: export CINDER_VOLUME_IMAGE_URL_DEFAULT=quay.io/tripleozedcentos9/openstack-cinder-volume:current-tripleo
run-with-webhook: manifests generate fmt vet ## Run a controller from your host.
/bin/bash hack/configure_local_webhook.sh
go run ./main.go