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# Image URL to use all building/pushing image targets
IMG ?= docker.io/netbirdio/kubernetes-operator:latest
# 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
# CONTAINER_TOOL defines the container tool to be used for building images.
# Be aware that the target commands are only tested with Docker which is
# scaffolded by default. However, you might want to replace it to use other
# tools. (i.e. podman)
CONTAINER_TOOL ?= docker
# Setting SHELL to bash allows bash commands to be executed by recipes.
# 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 command 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($$0, 5) } ' $( MAKEFILE_LIST)
##@ Development
.PHONY : manifests
manifests : controller -gen ## Generate WebhookConfiguration, ClusterRole and CustomResourceDefinition objects.
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$( CONTROLLER_GEN) crd paths = "./..." output:crd:artifacts:config= crds
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.PHONY : generate
generate : controller -gen ## Generate code containing DeepCopy, DeepCopyInto, and DeepCopyObject method implementations.
$( CONTROLLER_GEN) object:headerFile= "hack/boilerplate.go.txt" paths = "./..."
.PHONY : fmt
fmt : ## Run go fmt against code.
go fmt ./...
.PHONY : vet
vet : ## Run go vet against code.
go vet ./...
.PHONY : test
test : manifests fmt vet setup -envtest ## Run tests.
KUBEBUILDER_ASSETS = " $( shell $( ENVTEST) use $( ENVTEST_K8S_VERSION) --bin-dir $( LOCALBIN) -p path) " go test -v $$ ( go list ./... | grep -v /e2e) -coverprofile cover.out
.PHONY : test -e 2e
test-e2e : manifests fmt vet ## Run the e2e tests. Expected an isolated environment using Kind.
@command -v kind >/dev/null 2>& 1 || { \
echo "Kind is not installed. Please install Kind manually." ; \
exit 1; \
}
@kind get clusters | grep -q 'kind' || { \
echo "No Kind cluster is running. Please start a Kind cluster before running the e2e tests." ; \
exit 1; \
}
go test ./test/e2e/ -v -ginkgo.v
.PHONY : lint
lint : golangci -lint ## Run golangci-lint linter
$( GOLANGCI_LINT) run
.PHONY : lint -fix
lint-fix : golangci -lint ## Run golangci-lint linter and perform fixes
$( GOLANGCI_LINT) run --fix
.PHONY : lint -config
lint-config : golangci -lint ## Verify golangci-lint linter configuration
$( GOLANGCI_LINT) config verify
##@ Build
.PHONY : build
build : manifests fmt vet ## Build manager binary.
go build -o bin/manager cmd/main.go
.PHONY : run
run : manifests fmt vet ## Run a controller from your host.
go run ./cmd/main.go
# If you wish to build the manager image targeting other platforms you can use the --platform flag.
# (i.e. docker build --platform linux/arm64). However, you must enable docker buildKit for it.
# More info: https://docs.docker.com/develop/develop-images/build_enhancements/
.PHONY : docker -build
docker-build : ## Build docker image with the manager.
$( CONTAINER_TOOL) build -t ${ IMG } .
.PHONY : docker -push
docker-push : ## Push docker image with the manager.
$( CONTAINER_TOOL) push ${ IMG }
# PLATFORMS defines the target platforms for the manager image be built to provide support to multiple
# architectures. (i.e. make docker-buildx IMG=myregistry/mypoperator:0.0.1). To use this option you need to:
# - be able to use docker buildx. More info: https://docs.docker.com/build/buildx/
# - have enabled BuildKit. More info: https://docs.docker.com/develop/develop-images/build_enhancements/
# - be able to push the image to your registry (i.e. if you do not set a valid value via IMG=<myregistry/image:<tag>> then the export will fail)
# To adequately provide solutions that are compatible with multiple platforms, you should consider using this option.
PLATFORMS ?= linux/arm64,linux/amd64,linux/s390x,linux/ppc64le
.PHONY : docker -buildx
docker-buildx : ## Build and push docker image for the manager for cross-platform support
# copy existing Dockerfile and insert --platform=${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
- $( CONTAINER_TOOL) buildx create --name operator-builder
$( CONTAINER_TOOL) buildx use operator-builder
- $( CONTAINER_TOOL) buildx build --push --platform= $( PLATFORMS) --tag ${ IMG } -f Dockerfile.cross .
- $( CONTAINER_TOOL) buildx rm operator-builder
rm Dockerfile.cross
##@ Deployment
ifndef ignore-not-found
ignore-not-found = false
endif
.PHONY : deploy
deploy : manifests ## Deploy controller to the K8s cluster specified in ~/.kube/config.
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$( HELM) install -n netbird --create-namespace kubernetes-operator --set operator.image.tag= $( word 2,$( subst :, ,${ IMG } )) --repo https://netbirdio.github.io/helms kubernetes-operator
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.PHONY : deploy -e 2e
deploy-e2e : manifests ## Deploy controller to the K8s cluster specified in ~/.kube/config.
$( HELM) install -n netbird --create-namespace kubernetes-operator -f ./test/utils/values.yaml --set operator.image.tag= $( word 2,$( subst :, ,${ IMG } )) --set managementURL = ${ MGMT_HOST } --repo https://netbirdio.github.io/helms kubernetes-operator
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.PHONY : undeploy
undeploy : ## Undeploy controller from the K8s cluster specified in ~/.kube/config. Call with ignore-not-found=true to ignore resource not found errors during deletion.
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$( HELM) uninstall -n netbird kubernetes-operator --no-hooks
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.PHONY : undeploy -e 2e
undeploy-e2e : ## Undeploy controller from the K8s cluster specified in ~/.kube/config. Call with ignore-not-found=true to ignore resource not found errors during deletion.
$( HELM) uninstall -n netbird kubernetes-operator --no-hooks || true
kubectl get NBResource -n default -o "custom-columns=NAME:.metadata.name" --no-headers | xargs -r -n 1 kubectl patch NBResource -n default -p '{"metadata":{"finalizers":null}}' --type= merge
kubectl get NBGroup -n default -o "custom-columns=NAME:.metadata.name" --no-headers | xargs -r -n 1 kubectl patch NBGroup -n default -p '{"metadata":{"finalizers":null}}' --type= merge
kubectl get NBGroup -n netbird -o "custom-columns=NAME:.metadata.name" --no-headers | xargs -r -n 1 kubectl patch NBGroup -n netbird -p '{"metadata":{"finalizers":null}}' --type= merge
kubectl get NBRoutingPeer -n netbird -o "custom-columns=NAME:.metadata.name" --no-headers | xargs -r -n 1 kubectl patch NBRoutingPeer -n netbird -p '{"metadata":{"finalizers":null}}' --type= merge
kubectl get NBPolicy -o "custom-columns=NAME:.metadata.name" --no-headers | xargs -r -n 1 kubectl patch NBPolicy -p '{"metadata":{"finalizers":null}}' --type= merge
kubectl delete NBGroup -A --all
kubectl delete NBResource -A --all
kubectl delete NBRoutingPeer -A --all
kubectl delete NBPolicy --all
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##@ Dependencies
## Location to install dependencies to
LOCALBIN ?= $( shell pwd ) /bin
$(LOCALBIN) :
mkdir -p $( LOCALBIN)
## Tool Binaries
KUBECTL ?= kubectl
CONTROLLER_GEN ?= $( LOCALBIN) /controller-gen
ENVTEST ?= $( LOCALBIN) /setup-envtest
GOLANGCI_LINT = $( LOCALBIN) /golangci-lint
HELM ?= helm
## Tool Versions
CONTROLLER_TOOLS_VERSION ?= v0.17.1
#ENVTEST_VERSION is the version of controller-runtime release branch to fetch the envtest setup script (i.e. release-0.20)
ENVTEST_VERSION ?= $( shell go list -m -f "{{ .Version }}" sigs.k8s.io/controller-runtime | awk -F'[v.]' '{printf "release-%d.%d", $$2, $$3}' )
#ENVTEST_K8S_VERSION is the version of Kubernetes to use for setting up ENVTEST binaries (i.e. 1.31)
ENVTEST_K8S_VERSION ?= $( shell go list -m -f "{{ .Version }}" k8s.io/api | awk -F'[v.]' '{printf "1.%d", $$3}' )
GOLANGCI_LINT_VERSION ?= v1.63.4
.PHONY : controller -gen
controller-gen : $( CONTROLLER_GEN ) ## Download controller-gen locally if necessary.
$(CONTROLLER_GEN) : $( LOCALBIN )
$( call go-install-tool,$( CONTROLLER_GEN) ,sigs.k8s.io/controller-tools/cmd/controller-gen,$( CONTROLLER_TOOLS_VERSION))
.PHONY : setup -envtest
setup-envtest : envtest ## Download the binaries required for ENVTEST in the local bin directory.
@echo "Setting up envtest binaries for Kubernetes version $( ENVTEST_K8S_VERSION) ..."
@$( ENVTEST) use $( ENVTEST_K8S_VERSION) --bin-dir $( LOCALBIN) -p path || { \
echo "Error: Failed to set up envtest binaries for version $( ENVTEST_K8S_VERSION) ." ; \
exit 1; \
}
.PHONY : envtest
envtest : $( ENVTEST ) ## Download setup-envtest locally if necessary.
$(ENVTEST) : $( LOCALBIN )
$( call go-install-tool,$( ENVTEST) ,sigs.k8s.io/controller-runtime/tools/setup-envtest,$( ENVTEST_VERSION))
.PHONY : golangci -lint
golangci-lint : $( GOLANGCI_LINT ) ## Download golangci-lint locally if necessary.
$(GOLANGCI_LINT) : $( LOCALBIN )
$( call go-install-tool,$( GOLANGCI_LINT) ,github.com/golangci/golangci-lint/cmd/golangci-lint,$( GOLANGCI_LINT_VERSION))
# go-install-tool will 'go install' any package with custom target and name of binary, if it doesn't exist
# $1 - target path with name of binary
# $2 - package url which can be installed
# $3 - specific version of package
define go-install-tool
@[ -f "$(1)-$(3)" ] || { \
set -e; \
package = $( 2) @$( 3) ; \
echo "Downloading $$ {package}" ; \
rm -f $( 1) || true ; \
GOBIN = $( LOCALBIN) go install $$ { package} ; \
mv $( 1) $( 1) -$( 3) ; \
} ; \
ln -sf $( 1) - $( 3) $( 1)
endef