init
This commit is contained in:
324
Makefile
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324
Makefile
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# VERSION defines the project version for the bundle.
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# Update this value when you upgrade the version of your project.
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# To re-generate a bundle for another specific version without changing the standard setup, you can:
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# - use the VERSION as arg of the bundle target (e.g make bundle VERSION=0.0.2)
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# - use environment variables to overwrite this value (e.g export VERSION=0.0.2)
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VERSION ?= 0.0.1
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# CHANNELS define the bundle channels used in the bundle.
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# Add a new line here if you would like to change its default config. (E.g CHANNELS = "candidate,fast,stable")
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# To re-generate a bundle for other specific channels without changing the standard setup, you can:
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# - use the CHANNELS as arg of the bundle target (e.g make bundle CHANNELS=candidate,fast,stable)
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# - use environment variables to overwrite this value (e.g export CHANNELS="candidate,fast,stable")
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ifneq ($(origin CHANNELS), undefined)
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BUNDLE_CHANNELS := --channels=$(CHANNELS)
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endif
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# DEFAULT_CHANNEL defines the default channel used in the bundle.
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# Add a new line here if you would like to change its default config. (E.g DEFAULT_CHANNEL = "stable")
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# To re-generate a bundle for any other default channel without changing the default setup, you can:
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# - use the DEFAULT_CHANNEL as arg of the bundle target (e.g make bundle DEFAULT_CHANNEL=stable)
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# - use environment variables to overwrite this value (e.g export DEFAULT_CHANNEL="stable")
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ifneq ($(origin DEFAULT_CHANNEL), undefined)
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BUNDLE_DEFAULT_CHANNEL := --default-channel=$(DEFAULT_CHANNEL)
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endif
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BUNDLE_METADATA_OPTS ?= $(BUNDLE_CHANNELS) $(BUNDLE_DEFAULT_CHANNEL)
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# IMAGE_TAG_BASE defines the docker.io namespace and part of the image name for remote images.
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# This variable is used to construct full image tags for bundle and catalog images.
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#
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# For example, running 'make bundle-build bundle-push catalog-build catalog-push' will build and push both
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# acooldomain.co/kubernetes-operator-bundle:$VERSION and acooldomain.co/kubernetes-operator-catalog:$VERSION.
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IMAGE_TAG_BASE ?= acooldomain.co/kubernetes-operator
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# BUNDLE_IMG defines the image:tag used for the bundle.
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# You can use it as an arg. (E.g make bundle-build BUNDLE_IMG=<some-registry>/<project-name-bundle>:<tag>)
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BUNDLE_IMG ?= $(IMAGE_TAG_BASE)-bundle:v$(VERSION)
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# BUNDLE_GEN_FLAGS are the flags passed to the operator-sdk generate bundle command
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BUNDLE_GEN_FLAGS ?= -q --overwrite --version $(VERSION) $(BUNDLE_METADATA_OPTS)
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# USE_IMAGE_DIGESTS defines if images are resolved via tags or digests
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# You can enable this value if you would like to use SHA Based Digests
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# To enable set flag to true
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USE_IMAGE_DIGESTS ?= false
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ifeq ($(USE_IMAGE_DIGESTS), true)
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BUNDLE_GEN_FLAGS += --use-image-digests
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endif
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# Set the Operator SDK version to use. By default, what is installed on the system is used.
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# This is useful for CI or a project to utilize a specific version of the operator-sdk toolkit.
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OPERATOR_SDK_VERSION ?= unknown
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# Image URL to use all building/pushing image targets
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IMG ?= controller:latest
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# ENVTEST_K8S_VERSION refers to the version of kubebuilder assets to be downloaded by envtest binary.
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ENVTEST_K8S_VERSION = 1.31.0
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# Get the currently used golang install path (in GOPATH/bin, unless GOBIN is set)
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ifeq (,$(shell go env GOBIN))
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GOBIN=$(shell go env GOPATH)/bin
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else
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GOBIN=$(shell go env GOBIN)
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endif
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# CONTAINER_TOOL defines the container tool to be used for building images.
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# Be aware that the target commands are only tested with Docker which is
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# scaffolded by default. However, you might want to replace it to use other
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# tools. (i.e. podman)
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CONTAINER_TOOL ?= docker
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# Setting SHELL to bash allows bash commands to be executed by recipes.
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# Options are set to exit when a recipe line exits non-zero or a piped command fails.
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SHELL = /usr/bin/env bash -o pipefail
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.SHELLFLAGS = -ec
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.PHONY: all
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all: build
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##@ General
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# The help target prints out all targets with their descriptions organized
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# beneath their categories. The categories are represented by '##@' and the
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# target descriptions by '##'. The awk command is responsible for reading the
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# entire set of makefiles included in this invocation, looking for lines of the
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# file as xyz: ## something, and then pretty-format the target and help. Then,
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# if there's a line with ##@ something, that gets pretty-printed as a category.
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# More info on the usage of ANSI control characters for terminal formatting:
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# https://en.wikipedia.org/wiki/ANSI_escape_code#SGR_parameters
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# More info on the awk command:
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# http://linuxcommand.org/lc3_adv_awk.php
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.PHONY: help
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help: ## Display this help.
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@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($$0, 5) } ' $(MAKEFILE_LIST)
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##@ Development
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.PHONY: manifests
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manifests: controller-gen ## Generate WebhookConfiguration, ClusterRole and CustomResourceDefinition objects.
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$(CONTROLLER_GEN) rbac:roleName=manager-role crd webhook paths="./..." output:crd:artifacts:config=config/crd/bases
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.PHONY: generate
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generate: controller-gen ## Generate code containing DeepCopy, DeepCopyInto, and DeepCopyObject method implementations.
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$(CONTROLLER_GEN) object:headerFile="hack/boilerplate.go.txt" paths="./..."
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.PHONY: fmt
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fmt: ## Run go fmt against code.
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go fmt ./...
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.PHONY: vet
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vet: ## Run go vet against code.
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go vet ./...
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.PHONY: test
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test: manifests generate fmt vet envtest ## Run tests.
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KUBEBUILDER_ASSETS="$(shell $(ENVTEST) use $(ENVTEST_K8S_VERSION) --bin-dir $(LOCALBIN) -p path)" go test $$(go list ./... | grep -v /e2e) -coverprofile cover.out
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# Utilize Kind or modify the e2e tests to load the image locally, enabling compatibility with other vendors.
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.PHONY: test-e2e # Run the e2e tests against a Kind k8s instance that is spun up.
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test-e2e:
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go test ./test/e2e/ -v -ginkgo.v
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.PHONY: lint
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lint: golangci-lint ## Run golangci-lint linter
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$(GOLANGCI_LINT) run
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.PHONY: lint-fix
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lint-fix: golangci-lint ## Run golangci-lint linter and perform fixes
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$(GOLANGCI_LINT) run --fix
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##@ Build
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.PHONY: build
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build: manifests generate fmt vet ## Build manager binary.
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go build -o bin/manager cmd/main.go
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.PHONY: run
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run: manifests generate fmt vet ## Run a controller from your host.
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go run ./cmd/main.go
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# If you wish to build the manager image targeting other platforms you can use the --platform flag.
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# (i.e. docker build --platform linux/arm64). However, you must enable docker buildKit for it.
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# More info: https://docs.docker.com/develop/develop-images/build_enhancements/
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.PHONY: docker-build
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docker-build: ## Build docker image with the manager.
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$(CONTAINER_TOOL) build -t ${IMG} .
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.PHONY: docker-push
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docker-push: ## Push docker image with the manager.
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$(CONTAINER_TOOL) push ${IMG}
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# PLATFORMS defines the target platforms for the manager image be built to provide support to multiple
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# architectures. (i.e. make docker-buildx IMG=myregistry/mypoperator:0.0.1). To use this option you need to:
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# - be able to use docker buildx. More info: https://docs.docker.com/build/buildx/
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# - have enabled BuildKit. More info: https://docs.docker.com/develop/develop-images/build_enhancements/
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# - be able to push the image to your registry (i.e. if you do not set a valid value via IMG=<myregistry/image:<tag>> then the export will fail)
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# To adequately provide solutions that are compatible with multiple platforms, you should consider using this option.
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PLATFORMS ?= linux/arm64,linux/amd64,linux/s390x,linux/ppc64le
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.PHONY: docker-buildx
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docker-buildx: ## Build and push docker image for the manager for cross-platform support
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# copy existing Dockerfile and insert --platform=${BUILDPLATFORM} into Dockerfile.cross, and preserve the original Dockerfile
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sed -e '1 s/\(^FROM\)/FROM --platform=\$$\{BUILDPLATFORM\}/; t' -e ' 1,// s//FROM --platform=\$$\{BUILDPLATFORM\}/' Dockerfile > Dockerfile.cross
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- $(CONTAINER_TOOL) buildx create --name kubernetes-operator-builder
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$(CONTAINER_TOOL) buildx use kubernetes-operator-builder
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- $(CONTAINER_TOOL) buildx build --push --platform=$(PLATFORMS) --tag ${IMG} -f Dockerfile.cross .
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- $(CONTAINER_TOOL) buildx rm kubernetes-operator-builder
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rm Dockerfile.cross
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.PHONY: build-installer
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build-installer: manifests generate kustomize ## Generate a consolidated YAML with CRDs and deployment.
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mkdir -p dist
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cd config/manager && $(KUSTOMIZE) edit set image controller=${IMG}
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$(KUSTOMIZE) build config/default > dist/install.yaml
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##@ Deployment
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ifndef ignore-not-found
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ignore-not-found = false
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endif
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.PHONY: install
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install: manifests kustomize ## Install CRDs into the K8s cluster specified in ~/.kube/config.
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$(KUSTOMIZE) build config/crd | $(KUBECTL) apply -f -
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.PHONY: uninstall
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uninstall: manifests kustomize ## Uninstall CRDs from the K8s cluster specified in ~/.kube/config. Call with ignore-not-found=true to ignore resource not found errors during deletion.
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$(KUSTOMIZE) build config/crd | $(KUBECTL) delete --ignore-not-found=$(ignore-not-found) -f -
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.PHONY: deploy
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deploy: manifests kustomize ## Deploy controller to the K8s cluster specified in ~/.kube/config.
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cd config/manager && $(KUSTOMIZE) edit set image controller=${IMG}
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$(KUSTOMIZE) build config/default | $(KUBECTL) apply -f -
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.PHONY: undeploy
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undeploy: kustomize ## Undeploy controller from the K8s cluster specified in ~/.kube/config. Call with ignore-not-found=true to ignore resource not found errors during deletion.
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$(KUSTOMIZE) build config/default | $(KUBECTL) delete --ignore-not-found=$(ignore-not-found) -f -
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##@ Dependencies
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## Location to install dependencies to
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LOCALBIN ?= $(shell pwd)/bin
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$(LOCALBIN):
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mkdir -p $(LOCALBIN)
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## Tool Binaries
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KUBECTL ?= kubectl
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KUSTOMIZE ?= $(LOCALBIN)/kustomize
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CONTROLLER_GEN ?= $(LOCALBIN)/controller-gen
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ENVTEST ?= $(LOCALBIN)/setup-envtest
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GOLANGCI_LINT = $(LOCALBIN)/golangci-lint
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## Tool Versions
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KUSTOMIZE_VERSION ?= v5.4.3
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CONTROLLER_TOOLS_VERSION ?= v0.16.1
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ENVTEST_VERSION ?= release-0.19
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GOLANGCI_LINT_VERSION ?= v1.59.1
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.PHONY: kustomize
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kustomize: $(KUSTOMIZE) ## Download kustomize locally if necessary.
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$(KUSTOMIZE): $(LOCALBIN)
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$(call go-install-tool,$(KUSTOMIZE),sigs.k8s.io/kustomize/kustomize/v5,$(KUSTOMIZE_VERSION))
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.PHONY: controller-gen
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controller-gen: $(CONTROLLER_GEN) ## Download controller-gen locally if necessary.
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$(CONTROLLER_GEN): $(LOCALBIN)
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$(call go-install-tool,$(CONTROLLER_GEN),sigs.k8s.io/controller-tools/cmd/controller-gen,$(CONTROLLER_TOOLS_VERSION))
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.PHONY: envtest
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envtest: $(ENVTEST) ## Download setup-envtest locally if necessary.
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$(ENVTEST): $(LOCALBIN)
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$(call go-install-tool,$(ENVTEST),sigs.k8s.io/controller-runtime/tools/setup-envtest,$(ENVTEST_VERSION))
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.PHONY: golangci-lint
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golangci-lint: $(GOLANGCI_LINT) ## Download golangci-lint locally if necessary.
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$(GOLANGCI_LINT): $(LOCALBIN)
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$(call go-install-tool,$(GOLANGCI_LINT),github.com/golangci/golangci-lint/cmd/golangci-lint,$(GOLANGCI_LINT_VERSION))
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# go-install-tool will 'go install' any package with custom target and name of binary, if it doesn't exist
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# $1 - target path with name of binary
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# $2 - package url which can be installed
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# $3 - specific version of package
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define go-install-tool
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@[ -f "$(1)-$(3)" ] || { \
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set -e; \
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package=$(2)@$(3) ;\
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echo "Downloading $${package}" ;\
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rm -f $(1) || true ;\
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GOBIN=$(LOCALBIN) go install $${package} ;\
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mv $(1) $(1)-$(3) ;\
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} ;\
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ln -sf $(1)-$(3) $(1)
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endef
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.PHONY: operator-sdk
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OPERATOR_SDK ?= $(LOCALBIN)/operator-sdk
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operator-sdk: ## Download operator-sdk locally if necessary.
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ifeq (,$(wildcard $(OPERATOR_SDK)))
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ifeq (, $(shell which operator-sdk 2>/dev/null))
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@{ \
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set -e ;\
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mkdir -p $(dir $(OPERATOR_SDK)) ;\
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OS=$(shell go env GOOS) && ARCH=$(shell go env GOARCH) && \
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curl -sSLo $(OPERATOR_SDK) https://github.com/operator-framework/operator-sdk/releases/download/$(OPERATOR_SDK_VERSION)/operator-sdk_$${OS}_$${ARCH} ;\
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chmod +x $(OPERATOR_SDK) ;\
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}
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else
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OPERATOR_SDK = $(shell which operator-sdk)
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endif
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endif
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.PHONY: bundle
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bundle: manifests kustomize operator-sdk ## Generate bundle manifests and metadata, then validate generated files.
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$(OPERATOR_SDK) generate kustomize manifests -q
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cd config/manager && $(KUSTOMIZE) edit set image controller=$(IMG)
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$(KUSTOMIZE) build config/manifests | $(OPERATOR_SDK) generate bundle $(BUNDLE_GEN_FLAGS)
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$(OPERATOR_SDK) bundle validate ./bundle
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.PHONY: bundle-build
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bundle-build: ## Build the bundle image.
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docker build -f bundle.Dockerfile -t $(BUNDLE_IMG) .
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.PHONY: bundle-push
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bundle-push: ## Push the bundle image.
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$(MAKE) docker-push IMG=$(BUNDLE_IMG)
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.PHONY: opm
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OPM = $(LOCALBIN)/opm
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opm: ## Download opm locally if necessary.
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ifeq (,$(wildcard $(OPM)))
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ifeq (,$(shell which opm 2>/dev/null))
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@{ \
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set -e ;\
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mkdir -p $(dir $(OPM)) ;\
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OS=$(shell go env GOOS) && ARCH=$(shell go env GOARCH) && \
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curl -sSLo $(OPM) https://github.com/operator-framework/operator-registry/releases/download/v1.23.0/$${OS}-$${ARCH}-opm ;\
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chmod +x $(OPM) ;\
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}
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else
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OPM = $(shell which opm)
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endif
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endif
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# 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).
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# These images MUST exist in a registry and be pull-able.
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BUNDLE_IMGS ?= $(BUNDLE_IMG)
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# The image tag given to the resulting catalog image (e.g. make catalog-build CATALOG_IMG=example.com/operator-catalog:v0.2.0).
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CATALOG_IMG ?= $(IMAGE_TAG_BASE)-catalog:v$(VERSION)
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# Set CATALOG_BASE_IMG to an existing catalog image tag to add $BUNDLE_IMGS to that image.
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ifneq ($(origin CATALOG_BASE_IMG), undefined)
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FROM_INDEX_OPT := --from-index $(CATALOG_BASE_IMG)
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endif
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# Build a catalog image by adding bundle images to an empty catalog using the operator package manager tool, 'opm'.
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# This recipe invokes 'opm' in 'semver' bundle add mode. For more information on add modes, see:
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# https://github.com/operator-framework/community-operators/blob/7f1438c/docs/packaging-operator.md#updating-your-existing-operator
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.PHONY: catalog-build
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catalog-build: opm ## Build a catalog image.
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$(OPM) index add --container-tool docker --mode semver --tag $(CATALOG_IMG) --bundles $(BUNDLE_IMGS) $(FROM_INDEX_OPT)
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# Push the catalog image.
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.PHONY: catalog-push
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catalog-push: ## Push a catalog image.
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$(MAKE) docker-push IMG=$(CATALOG_IMG)
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Block a user