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Makefile
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# Copyright (c) 2018 Zededa, Inc.
# SPDX-License-Identifier: Apache-2.0
#
# Run make (with no arguments) to see help on what targets are available
GOVER ?= 1.12.4
PKGBASE=github.com/lf-edge/eve
GOMODULE=$(PKGBASE)/pkg/pillar
GOTREE=$(CURDIR)/pkg/pillar
PATH:=$(CURDIR)/build-tools/bin:$(PATH)
export CGO_ENABLED GOOS GOARCH PATH
# A set of tweakable knobs for our build needs (tweak at your risk!)
# Which version to assign to snapshot builds (0.0.0 if built locally, 0.0.0-snapshot if on CI/CD)
EVE_SNAPSHOT_VERSION=0.0.0
# which language bindings to generate for EVE API
PROTO_LANGS=go python
# The default hypervisor is Xen. Use 'make HV=acrn' to build ACRN images (AMD64 only) or 'make HV=kvm'
HV=xen
# How large to we want the disk to be in Mb
MEDIA_SIZE=8192
# Image type for final disk images
IMG_FORMAT=qcow2
# Filesystem type for rootfs image
ROOTFS_FORMAT=squash
# Image type for installer image
INSTALLER_IMG_FORMAT=raw
# SSH port to use for running images live
SSH_PORT=2222
# ports to proxy into a running EVE instance (in ssh notation with -L)
SSH_PROXY=-L6000:localhost:6000
# ssh key to be used for getting into an EVE instance
SSH_KEY=$(CONF_DIR)/ssh.key
# Use QEMU H/W accelearation (any non-empty value will trigger using it)
ACCEL=
# Location of the EVE configuration folder to be used in builds
CONF_DIR=conf
UNAME_S := $(shell uname -s)
USER = $(shell id -u -n)
GROUP = $(shell id -g -n)
UID = $(shell id -u)
GID = $(shell id -g)
#for MacOS - use predefined user and group IDs
ifeq ($(UNAME_S),Darwin)
USER = eve
GROUP = eve
UID = 1001
GID = 1001
endif
REPO_BRANCH=$(shell git rev-parse --abbrev-ref HEAD | tr / _)
REPO_SHA=$(shell git describe --match v --abbrev=8 --always --dirty)
REPO_TAG=$(shell git describe --always | grep -E '[0-9]*\.[0-9]*\.[0-9]*' || echo snapshot)
REPO_DIRTY_TAG=$(if $(findstring -dirty,$(REPO_SHA)),-$(shell date -u +"%Y-%m-%d.%H.%M"))
EVE_TREE_TAG = $(shell git describe --abbrev=8 --always --dirty)
ROOTFS_VERSION:=$(if $(findstring snapshot,$(REPO_TAG)),$(EVE_SNAPSHOT_VERSION)-$(REPO_BRANCH)-$(REPO_SHA)$(REPO_DIRTY_TAG),$(REPO_TAG))
APIDIRS = $(shell find ./api/* -maxdepth 1 -type d -exec basename {} \;)
HOSTARCH:=$(subst aarch64,arm64,$(subst x86_64,amd64,$(shell uname -m)))
# by default, take the host architecture as the target architecture, but can override with `make ZARCH=foo`
# assuming that the toolchain supports it, of course...
ZARCH ?= $(HOSTARCH)
export ZARCH
# warn if we are cross-compiling and track it
CROSS ?=
ifneq ($(HOSTARCH),$(ZARCH))
CROSS = 1
$(warning "WARNING: We are assembling an $(ZARCH) image on $(HOSTARCH). Things may break.")
endif
DOCKER_ARCH_TAG=$(ZARCH)
# where we store outputs
DIST=$(CURDIR)/dist/$(ZARCH)
DOCKER_DIST=/eve/dist/$(ZARCH)
BIOS_IMG=$(DIST)/OVMF.fd $(DIST)/OVMF_CODE.fd $(DIST)/OVMF_VARS.fd
LIVE=$(DIST)/live
LIVE_IMG=$(DIST)/live.$(IMG_FORMAT)
TARGET_IMG=$(DIST)/target.img
INSTALLER=$(DIST)/installer
INSTALLER_IMG=$(INSTALLER).$(INSTALLER_IMG_FORMAT)
ROOTFS=$(INSTALLER)/rootfs
ROOTFS_FULL_NAME=$(INSTALLER)/rootfs-$(ROOTFS_VERSION)
ROOTFS_IMG=$(ROOTFS).img
CONFIG_IMG=$(INSTALLER)/config.img
INITRD_IMG=$(INSTALLER)/initrd.img
EFI_PART=$(INSTALLER)/EFI
BOOT_PART=$(INSTALLER)/boot
DEVICETREE_DTB_amd64=
DEVICETREE_DTB_arm64=$(DIST)/dtb/eve.dtb
DEVICETREE_DTB=$(DEVICETREE_DTB_$(ZARCH))
CONF_FILES=$(shell ls -d $(CONF_DIR)/*)
PART_SPEC_=efi conf imga
PART_SPEC_rpi=boot conf imga
PART_SPEC=$(PART_SPEC_$(findstring rpi,$(HV)))
# public cloud settings (only CGP is supported for now)
# note how GCP doesn't like dots so we replace them with -
CLOUD_IMG_NAME=$(subst .,-,live-$(ROOTFS_VERSION)-$(HV)-$(ZARCH))
CLOUD_PROJECT=-project lf-edge-eve
CLOUD_BUCKET=-bucket eve-live
CLOUD_INSTANCE=-zone us-west1-a -machine n1-standard-1
# qemu settings
QEMU_SYSTEM_arm64=qemu-system-aarch64
QEMU_SYSTEM_amd64=qemu-system-x86_64
QEMU_SYSTEM=$(QEMU_SYSTEM_$(ZARCH))
QEMU_ACCEL_Y_Darwin=-M accel=hvf --cpu host
QEMU_ACCEL_Y_Linux=-enable-kvm
QEMU_ACCEL:=$(QEMU_ACCEL_$(ACCEL:%=Y)_$(shell uname -s))
QEMU_OPTS_NET1=192.168.1.0/24
QEMU_OPTS_NET1_FIRST_IP=192.168.1.10
QEMU_OPTS_NET2=192.168.2.0/24
QEMU_OPTS_NET2_FIRST_IP=192.168.2.10
QEMU_MEMORY:=4096
ifeq ($(PFLASH),)
QEMU_OPTS_BIOS=-bios $(DIST)/OVMF.fd
else
QEMU_OPTS_BIOS=-drive if=pflash,format=raw,unit=0,readonly,file=$(DIST)/OVMF_CODE.fd -drive if=pflash,format=raw,unit=1,file=$(DIST)/OVMF_VARS.fd
endif
QEMU_OPTS_arm64= -machine virt,gic_version=3 -machine virtualization=true -cpu cortex-a57 -machine type=virt -drive file=fat:rw:$(dir $(DEVICETREE_DTB)),label=QEMU_DTB,format=vvfat
QEMU_OPTS_amd64= -cpu SandyBridge $(QEMU_ACCEL)
QEMU_OPTS_COMMON= -smbios type=1,serial=31415926 -m $(QEMU_MEMORY) -smp 4 -display none $(QEMU_OPTS_BIOS) \
-serial mon:stdio \
-rtc base=utc,clock=rt \
-netdev user,id=eth0,net=$(QEMU_OPTS_NET1),dhcpstart=$(QEMU_OPTS_NET1_FIRST_IP),hostfwd=tcp::$(SSH_PORT)-:22 -device virtio-net-pci,netdev=eth0 \
-netdev user,id=eth1,net=$(QEMU_OPTS_NET2),dhcpstart=$(QEMU_OPTS_NET2_FIRST_IP) -device virtio-net-pci,netdev=eth1
QEMU_OPTS_CONF_PART=$(shell [ -d "$(CONF_PART)" ] && echo '-drive file=fat:rw:$(CONF_PART),format=raw')
QEMU_OPTS=$(QEMU_OPTS_COMMON) $(QEMU_OPTS_$(ZARCH)) $(QEMU_OPTS_CONF_PART)
GOOS=linux
CGO_ENABLED=1
GOBUILDER=eve-build-$(shell echo $(USER) | tr A-Z a-z)
# if proxy is set, use it when building docker builder
ifneq ($(HTTP_PROXY),)
DOCKER_HTTP_PROXY:=--build-arg http_proxy=$(HTTP_PROXY)
endif
ifneq ($(HTTPS_PROXY),)
DOCKER_HTTPS_PROXY:=--build-arg https_proxy=$(HTTPS_PROXY)
endif
ifneq ($(NO_PROXY),)
DOCKER_NO_PROXY:=--build-arg no_proxy=$(NO_PROXY)
endif
ifneq ($(ALL_PROXY),)
DOCKER_ALL_PROXY:=--build-arg all_proxy=$(ALL_PROXY)
endif
DOCKER_UNPACK= _() { C=`docker create $$1 fake` ; shift ; docker export $$C | tar -xf - "$$@" ; docker rm $$C ; } ; _
DOCKER_GO = _() { mkdir -p $(CURDIR)/.go/src/$${3:-dummy} ; mkdir -p $(CURDIR)/.go/bin ; \
docker run $$DOCKER_GO_ARGS -i --rm -u $(USER) -w /go/src/$${3:-dummy} \
-v $(CURDIR)/.go:/go -v $$2:/go/src/$${3:-dummy} -v $${4:-$(CURDIR)/.go/bin}:/go/bin -v $(CURDIR)/:/eve -v $${HOME}:/home/$(USER) \
-e GOOS -e GOARCH -e CGO_ENABLED -e BUILD=local $(GOBUILDER) bash --noprofile --norc -c "$$1" ; } ; _
PARSE_PKGS=$(if $(strip $(EVE_HASH)),EVE_HASH=)$(EVE_HASH) DOCKER_ARCH_TAG=$(DOCKER_ARCH_TAG) ./tools/parse-pkgs.sh
LINUXKIT=$(CURDIR)/build-tools/bin/linuxkit
LINUXKIT_OPTS=--disable-content-trust $(if $(strip $(EVE_HASH)),--hash) $(EVE_HASH) $(if $(strip $(EVE_REL)),--release) $(EVE_REL) $(FORCE_BUILD)
LINUXKIT_PKG_TARGET=build
RESCAN_DEPS=FORCE
FORCE_BUILD=--force
ifeq ($(LINUXKIT_PKG_TARGET),push)
EVE_REL:=$(REPO_TAG)
ifneq ($(EVE_REL),snapshot)
EVE_HASH:=$(EVE_REL)
EVE_REL:=$(shell [ "`git tag | grep -E '[0-9]*\.[0-9]*\.[0-9]*' | sort -t. -n -k1,1 -k2,2 -k3,3 | tail -1`" = $(EVE_HASH) ] && echo latest)
endif
endif
# We are currently filtering out a few packages from bulk builds
# since they are not getting published in Docker HUB
PKGS=$(shell ls -d pkg/* | grep -Ev "eve|test-microsvcs")
# Top-level targets
all: help
test: $(GOBUILDER) | $(DIST)
@echo Running tests on $(GOMODULE)
@$(DOCKER_GO) "gotestsum --junitfile $(DOCKER_DIST)/results.xml" $(GOTREE) $(GOMODULE)
itest: $(GOBUILDER) run-proxy | $(DIST)
@echo Running integration tests
@cd tests/integration ; CGO_ENABLED=0 GOOS= go test -v -run "$(ITESTS)" .
clean:
rm -rf $(DIST) images/*.yml pkg/pillar/Dockerfile pkg/qrexec-lib/Dockerfile pkg/qrexec-dom0/Dockerfile pkg/xen-tools/Dockerfile
yetus:
@echo Running yetus
build-tools/src/yetus/test-patch.sh
build-tools: $(LINUXKIT)
@echo Done building $<
$(BIOS_IMG): $(LINUXKIT) | $(DIST)
cd $| ; $(DOCKER_UNPACK) $(shell $(LINUXKIT) pkg show-tag pkg/uefi)-$(DOCKER_ARCH_TAG) $(notdir $@)
$(DEVICETREE_DTB): $(BIOS_IMG) | $(DIST)
mkdir $(dir $@) 2>/dev/null || :
$(QEMU_SYSTEM) $(QEMU_OPTS) -machine dumpdtb=$@
$(EFI_PART): $(LINUXKIT) | $(INSTALLER)
cd $| ; $(DOCKER_UNPACK) $(shell $(LINUXKIT) pkg show-tag pkg/grub)-$(DOCKER_ARCH_TAG) $(notdir $@)
$(BOOT_PART): $(LINUXKIT) | $(INSTALLER)
cd $| ; $(DOCKER_UNPACK) $(shell $(LINUXKIT) pkg show-tag pkg/u-boot)-$(DOCKER_ARCH_TAG) $(notdir $@)
$(INITRD_IMG): $(LINUXKIT) | $(INSTALLER)
cd $| ; $(DOCKER_UNPACK) $(shell $(LINUXKIT) pkg show-tag pkg/mkimage-raw-efi)-$(DOCKER_ARCH_TAG) $(notdir $@ $(EFI_PART))
# run-installer
#
# This creates an image equivalent to live.img (called target.img)
# through the installer. It's the long road to live.img. Good for
# testing.
#
run-installer-iso: $(BIOS_IMG) $(DEVICETREE_DTB)
qemu-img create -f ${IMG_FORMAT} $(TARGET_IMG) ${MEDIA_SIZE}M
$(QEMU_SYSTEM) -drive file=$(TARGET_IMG),format=$(IMG_FORMAT) -cdrom $(INSTALLER).iso -boot d $(QEMU_OPTS)
run-installer-raw: $(BIOS_IMG) $(DEVICETREE_DTB)
qemu-img create -f ${IMG_FORMAT} $(TARGET_IMG) ${MEDIA_SIZE}M
$(QEMU_SYSTEM) -drive file=$(TARGET_IMG),format=$(IMG_FORMAT) -drive file=$(INSTALLER).raw,format=raw $(QEMU_OPTS)
run-live run: $(BIOS_IMG) $(DEVICETREE_DTB)
$(QEMU_SYSTEM) $(QEMU_OPTS) -drive file=$(LIVE_IMG),format=$(IMG_FORMAT)
run-target: $(BIOS_IMG) $(DEVICETREE_DTB)
$(QEMU_SYSTEM) $(QEMU_OPTS) -drive file=$(TARGET_IMG),format=$(IMG_FORMAT)
run-rootfs: $(BIOS_IMG) $(EFI_PART) $(DEVICETREE_DTB)
(echo 'set devicetree="(hd0,msdos1)/eve.dtb"' ; echo 'set rootfs_root=/dev/vdb' ; echo 'set root=hd1' ; echo 'export rootfs_root' ; echo 'export devicetree' ; echo 'configfile /EFI/BOOT/grub.cfg' ) > $(EFI_PART)/BOOT/grub.cfg
$(QEMU_SYSTEM) $(QEMU_OPTS) -drive file=$(ROOTFS_IMG),format=raw -drive file=fat:rw:$(EFI_PART)/..,label=CONFIG,format=vvfat
run-grub: $(BIOS_IMG) $(EFI_PART) $(DEVICETREE_DTB)
[ -f $(EFI_PART)/BOOT/grub.cfg ] && mv $(EFI_PART)/BOOT/grub.cfg $(EFI_PART)/BOOT/grub.cfg.$(notdir $(shell mktemp))
$(QEMU_SYSTEM) $(QEMU_OPTS) -drive format=vvfat,label=EVE,file=fat:rw:$(EFI_PART)/..
run-compose: images/docker-compose.yml images/version.yml
docker-compose -f $< run storage-init sh -c 'rm -rf /run/* /config/* ; cp -Lr /conf/* /config/ ; echo IMGA > /run/eve.id'
docker-compose -f $< up
run-proxy:
ssh $(SSH_PROXY) -N -i $(SSH_KEY) -p $(SSH_PORT) -o StrictHostKeyChecking=no -o GlobalKnownHostsFile=/dev/null -o UserKnownHostsFile=/dev/null root@localhost &
# alternatively (and if you want greater control) you can replace the first command with
# gcloud auth activate-service-account --key-file=-
# gcloud compute images create $(CLOUD_IMG_NAME) --project=lf-edge-eve
# --source-uri=https://storage.googleapis.com/eve-live/live.img.tar.gz
# --licenses="https://www.googleapis.com/compute/v1/projects/vm-options/global/licenses/enable-vmx"
run-live-gcp: $(LINUXKIT) | $(LIVE).img.tar.gz
if gcloud compute images list -$(CLOUD_PROJECT) --filter="name=$(CLOUD_IMG_NAME)" 2>&1 | grep -q 'Listed 0 items'; then \
$^ push gcp -nested-virt -img-name $(CLOUD_IMG_NAME) $(CLOUD_PROJECT) $(CLOUD_BUCKET) $| ;\
fi
$^ run gcp $(CLOUD_PROJECT) $(CLOUD_INSTANCE) $(CLOUD_IMG_NAME)
live-gcp-upload: $(LINUXKIT) | $(LIVE).img.tar.gz
if gcloud compute images list -$(CLOUD_PROJECT) --filter="name=$(CLOUD_IMG_NAME)" 2>&1 | grep -q 'Listed 0 items'; then \
$^ push gcp -nested-virt -img-name $(CLOUD_IMG_NAME) $(CLOUD_PROJECT) $(CLOUD_BUCKET) $| ;\
echo "Uploaded $(CLOUD_IMG_NAME)"; \
else \
echo "Image $(CLOUD_IMG_NAME) already exists in GCP" ;\
fi
# ensure the dist directory exists
$(DIST) $(INSTALLER):
mkdir -p $@
# convenience targets - so you can do `make config` instead of `make dist/config.img`, and `make installer` instead of `make dist/amd64/installer.img
initrd: $(INITRD_IMG)
config: $(CONFIG_IMG)
ssh-key: $(SSH_KEY)
rootfs: $(ROOTFS_IMG)
rootfs-%: $(ROOTFS)-%.img ;
live: $(LIVE_IMG)
live-%: $(LIVE).% ;
installer: $(INSTALLER_IMG)
installer-%: $(INSTALLER).% ;
$(SSH_KEY):
rm -f $@*
ssh-keygen -P "" -f $@
mv [email protected] $(CONF_DIR)/authorized_keys
$(CONFIG_IMG): $(CONF_FILES) | $(INSTALLER)
./tools/makeconfig.sh $@ $(CONF_FILES)
$(ROOTFS)-%.img: $(ROOTFS_FULL_NAME)-%-$(ZARCH).$(ROOTFS_FORMAT)
@rm -f $@ && ln -s $(notdir $<) $@
$(ROOTFS_IMG): $(ROOTFS)-$(HV).img
@rm -f $@ && ln -s $(notdir $<) $@
$(LIVE).raw: $(BOOT_PART) $(EFI_PART) $(ROOTFS_IMG) $(CONFIG_IMG) | $(INSTALLER)
./tools/makeflash.sh -C 350 $| $@ $(PART_SPEC)
$(INSTALLER).raw: $(EFI_PART) $(ROOTFS_IMG) $(INITRD_IMG) $(CONFIG_IMG) | $(INSTALLER)
./tools/makeflash.sh -C 350 $| $@ "conf_win installer inventory_win"
$(INSTALLER).iso: $(EFI_PART) $(ROOTFS_IMG) $(INITRD_IMG) $(CONFIG_IMG) | $(INSTALLER)
./tools/makeiso.sh $| $@
# top-level linuxkit packages targets, note the one enforcing ordering between packages
pkgs: RESCAN_DEPS=
pkgs: FORCE_BUILD=
pkgs: build-tools $(PKGS)
@echo Done building packages
pkg/pillar: pkg/dnsmasq pkg/strongswan pkg/gpt-tools eve-pillar
@true
pkg/xen-tools: pkg/uefi eve-xen-tools
@true
pkg/qrexec-dom0: pkg/qrexec-lib pkg/xen-tools eve-qrexec-dom0
@true
pkg/qrexec-lib: pkg/xen-tools eve-qrexec-lib
@true
pkg/%: eve-% FORCE
@true
eve: $(BIOS_IMG) $(EFI_PART) $(CONFIG_IMG) $(INITRD_IMG) $(ROOTFS_IMG) $(if $(findstring rpi,$(HV)),$(BOOT_PART)) | $(DIST)
cp pkg/eve/build.yml pkg/eve/runme.sh images/*.yml $|
$(PARSE_PKGS) pkg/eve/Dockerfile.in > $|/Dockerfile
$(LINUXKIT) pkg $(LINUXKIT_PKG_TARGET) --disable-content-trust --hash-path $(CURDIR) --hash $(ROOTFS_VERSION)-$(HV) $(if $(strip $(EVE_REL)),--release) $(EVE_REL) $(FORCE_BUILD) $|
proto-vendor:
@$(DOCKER_GO) "cd pkg/pillar ; go mod vendor" $(CURDIR) proto
proto-diagram: $(GOBUILDER)
@$(DOCKER_GO) "/usr/local/bin/protodot -src ./api/proto/config/devconfig.proto -output devconfig && cp ~/protodot/generated/devconfig.* ./api/images && dot ./api/images/devconfig.dot -Tpng -o ./api/images/devconfig.png && echo generated ./api/images/devconfig.*" $(CURDIR) api
proto: $(GOBUILDER) api/go api/python proto-diagram
@echo Done building protobuf, you may want to vendor it into pillar by running proto-vendor
api/%: $(GOBUILDER)
rm -rf $@/*/; mkdir -p $@ # building $@
@$(DOCKER_GO) "protoc -I./proto --$(@F)_out=paths=source_relative:./$(@F) \
proto/*/*.proto" $(CURDIR)/api api
patch:
@if ! echo $(REPO_BRANCH) | grep -Eq '^[0-9]+\.[0-9]+$$'; then echo "ERROR: must be on a release branch X.Y"; exit 1; fi
@if ! echo $(EVE_TREE_TAG) | grep -Eq '^$(REPO_BRANCH).[0-9]+-'; then echo "ERROR: can't find previous release's tag X.Y.Z"; exit 1; fi
@TAG=$(REPO_BRANCH).$$((`echo $(EVE_TREE_TAG) | sed -e 's#-.*$$##' | cut -f3 -d.` + 1)) &&\
git tag -a -m"Release $$TAG" $$TAG &&\
echo "Done tagging $$TAG patch release. Check the branch with git log and then run" &&\
echo " git push origin $(REPO_BRANCH) $$TAG"
release:
@bail() { echo "ERROR: $$@" ; exit 1 ; } ;\
X=`echo $(VERSION) | cut -s -d. -f1` ; Y=`echo $(VERSION) | cut -s -d. -f2` ; Z=`echo $(VERSION) | cut -s -d. -f3` ;\
[ -z "$$X" -o -z "$$Y" -o -z "$$Z" ] && bail "VERSION missing (or incorrect). Re-run as: make VERSION=x.y.z $@" ;\
(git fetch && [ `git diff origin/master..master | wc -l` -eq 0 ]) || bail "origin/master is different from master" ;\
if git checkout $$X.$$Y 2>/dev/null ; then \
echo "WARNING: branch $$X.$$Y already exists: you may want to run make patch instead" ;\
git merge origin/master ;\
else \
git checkout master -b $$X.$$Y && echo zedcloud.zededa.net > conf/server &&\
git commit -m"Setting default server to prod" conf/server ;\
fi || bail "Can't create $$X.$$Y branch" ;\
git tag -a -m"Release $$X.$$Y.$$Z" $$X.$$Y.$$Z &&\
echo "Done tagging $$X.$$Y.$$Z release. Check the branch with git log and then run" &&\
echo " git push origin $$X.$$Y $$X.$$Y.$$Z"
shell: $(GOBUILDER)
@DOCKER_GO_ARGS=-t ; $(DOCKER_GO) bash $(GOTREE) $(GOMODULE)
#
# Utility targets in support of our Dockerized build infrastrucutre
#
$(LINUXKIT): CGO_ENABLED=0
$(LINUXKIT): GOOS=$(shell uname -s | tr '[A-Z]' '[a-z]')
$(LINUXKIT): $(CURDIR)/build-tools/src/linuxkit/Gopkg.lock $(CURDIR)/build-tools/bin/manifest-tool | $(GOBUILDER)
@$(DOCKER_GO) "unset GOFLAGS ; unset GO111MODULE ; go build -ldflags '-X version.GitCommit=$(EVE_TREE_TAG)' -o /go/bin/linuxkit \
vendor/github.com/linuxkit/linuxkit/src/cmd/linuxkit" $(dir $<) / $(dir $@)
$(CURDIR)/build-tools/bin/manifest-tool: $(CURDIR)/build-tools/src/manifest-tool/Gopkg.lock | $(GOBUILDER)
@$(DOCKER_GO) "unset GOFLAGS ; unset GO111MODULE ; go build -ldflags '-X main.gitCommit=$(EVE_TREE_TAG)' -o /go/bin/manifest-tool \
vendor/github.com/estesp/manifest-tool" $(dir $<) / $(dir $@)
$(GOBUILDER):
ifneq ($(BUILD),local)
@echo "Creating go builder image for user $(USER)"
@docker build --build-arg GOVER=$(GOVER) --build-arg USER=$(USER) --build-arg GROUP=$(GROUP) \
--build-arg UID=$(UID) --build-arg GID=$(GID) \
$(DOCKER_HTTP_PROXY) $(DOCKER_HTTPS_PROXY) $(DOCKER_NO_PROXY) $(DOCKER_ALL_PROXY) \
-t $@ build-tools/src/scripts > /dev/null
@echo "$@ docker container is ready to use"
endif
#
# Common, generalized rules
#
%.gcp: %.raw | $(DIST)
cp $< $@
dd of=$@ bs=1 seek=$$(($(MEDIA_SIZE) * 1024 * 1024)) count=0
rm -f $(dir $@)/disk.raw ; ln -s $(notdir $@) $(dir $@)/disk.raw
$(DOCKER_GO) "tar --mode=644 --owner=root --group=root -S -h -czvf $(notdir $*).img.tar.gz disk.raw" $(DIST) dist
rm -f $(dir $@)/disk.raw
%.qcow2: %.raw | $(DIST)
qemu-img convert -c -f raw -O qcow2 $< $@
qemu-img resize $@ ${MEDIA_SIZE}M
%.yml: %.yml.in build-tools $(RESCAN_DEPS)
@$(PARSE_PKGS) $< > $@
%/Dockerfile: %/Dockerfile.in build-tools $(RESCAN_DEPS)
@$(PARSE_PKGS) $< > $@
eve-%: pkg/%/Dockerfile build-tools $(RESCAN_DEPS)
@$(LINUXKIT) pkg $(LINUXKIT_PKG_TARGET) $(LINUXKIT_OPTS) pkg/$*
images/rootfs-%.yml.in: images/rootfs.yml.in FORCE
@if [ -e [email protected] ]; then patch -p0 -o [email protected] < [email protected] ;else cp $< [email protected] ;fi
@sed -e 's#EVE_VERSION#$(ROOTFS_VERSION)-$*-$(ZARCH)#' < [email protected] > $@ || rm $@ [email protected]
$(ROOTFS_FULL_NAME)-adam-kvm-$(ZARCH).$(ROOTFS_FORMAT): $(ROOTFS_FULL_NAME)-kvm-adam-$(ZARCH).$(ROOTFS_FORMAT)
$(ROOTFS_FULL_NAME)-kvm-adam-$(ZARCH).$(ROOTFS_FORMAT): images/rootfs-%.yml $(SSH_KEY) | $(INSTALLER)
./tools/makerootfs.sh $< $@ $(ROOTFS_FORMAT)
$(ROOTFS_FULL_NAME)-%-$(ZARCH).$(ROOTFS_FORMAT): images/rootfs-%.yml | $(INSTALLER)
./tools/makerootfs.sh $< $@ $(ROOTFS_FORMAT)
@[ $$(wc -c < "$@") -gt $$(( 250 * 1024 * 1024 )) ] && \
echo "ERROR: size of $@ is greater than 250MB (bigger than allocated partition)" && exit 1 || :
%-show-tag:
@$(LINUXKIT) pkg show-tag pkg/$*
%Gopkg.lock: %Gopkg.toml | $(GOBUILDER)
@$(DOCKER_GO) "dep ensure -update $(GODEP_NAME)" $(dir $@)
@echo Done updating $@
docker-old-images:
./tools/oldimages.sh
docker-image-clean:
docker rmi -f $(shell ./tools/oldimages.sh)
.PRECIOUS: rootfs-% $(ROOTFS)-%.img $(ROOTFS_FULL_NAME)-%-$(ZARCH).$(ROOTFS_FORMAT)
.PHONY: all clean test run pkgs help build-tools live rootfs config installer live FORCE $(DIST) HOSTARCH
FORCE:
help:
@echo "EVE is Edge Virtualization Engine"
@echo
@echo "This Makefile automates commons tasks of building and running"
@echo " * EVE"
@echo " * Installer of EVE"
@echo " * linuxkit command line tools"
@echo "We currently support two platforms: x86_64 and aarch64. There is"
@echo "even rudimentary support for cross-compiling that can be triggered"
@echo "by forcing a particular architecture via adding ZARCH=[x86_64|aarch64]"
@echo "to the make's command line. You can also run in a cross- way since"
@echo "all the execution is done via qemu."
@echo
@echo "Commonly used maintenance and development targets:"
@echo " test run EVE tests"
@echo " clean clean build artifacts in a current directory (doesn't clean Docker)"
@echo " release prepare branch for a release (VERSION=x.y.z required)"
@echo " patch make a patch release on a current branch (must be a release branch)"
@echo " proto generates Go and Python source from protobuf API definitions"
@echo " proto-vendor update vendored API in packages that require it (e.g. pkg/pillar)"
@echo " shell drop into docker container setup for Go development"
@echo " yetus run Apache Yetus to check the quality of the source tree"
@echo
@echo "Commonly used build targets:"
@echo " build-tools builds linuxkit and manifest-tool utilities under build-tools/bin"
@echo " config builds a bundle with initial EVE configs"
@echo " pkgs builds all EVE packages"
@echo " pkg/XXX builds XXX EVE package"
@echo " rootfs builds default EVE rootfs image (upload it to the cloud as BaseImage)"
@echo " rootfs-XXX builds a particular kind of EVE rootfs image (xen, kvm, rpi)"
@echo " live builds a full disk image of EVE which can be function as a virtual device"
@echo " live-XXX builds a particular kind of EVE live image (raw, qcow2, gcp)"
@echo " installer builds raw disk installer image (to be installed on bootable media)"
@echo " installer-iso builds an ISO installers image (to be installed on bootable media)"
@echo
@echo "Commonly used run targets (note they don't automatically rebuild images they run):"
@echo " run-compose runs all EVE microservices via docker-compose deployment"
@echo " run-live runs a full fledged virtual device on qemu (as close as it gets to actual h/w)"
@echo " run-live-gcp runs a full fledged virtual device on Google Compute Platform (provide your account details)"
@echo " run-rootfs runs a rootfs.img (limited usefulness e.g. quick test before cloud upload)"
@echo " run-grub runs our copy of GRUB bootloader and nothing else (very limited usefulness)"
@echo " run-installer-iso runs installer.iso (via qemu) and 'installs' EVE into (initially blank) target.img"
@echo " run-installer-raw runs installer.raw (via qemu) and 'installs' EVE into (initially blank) target.img"
@echo " run-target runs a full fledged virtual device on qemu from target.img (similar to run-live)"
@echo
@echo "make run is currently an alias for make run-live"
@echo