SOURCE = $(shell ls -1 *.go | grep -v _test.go) PROJECT_NAME := goreplay SOURCE_PATH = /go/src/github.com/buger/goreplay/ PORT = 8000 FADDR = :8000 DIST_PATH = dist CONTAINER_AMD=gor-amd64 CONTAINER_ARM=gor-arm64 RUN = docker run --rm -v `pwd`:$(SOURCE_PATH) -e AWS_ACCESS_KEY_ID=$(AWS_ACCESS_KEY_ID) -e AWS_SECRET_ACCESS_KEY=$(AWS_SECRET_ACCESS_KEY) -p 0.0.0.0:$(PORT):$(PORT) -t -i $(CONTAINER_AMD) BENCHMARK = BenchmarkRAWInput TEST = TestRawListenerBench BIN_NAME = gor VERSION := DEV-$(shell date +%s) LDFLAGS = -ldflags "-X main.VERSION=$(VERSION) -extldflags \"-static\" -X main.DEMO=$(DEMO)" MAC_LDFLAGS = -ldflags "-X main.VERSION=$(VERSION) -X main.DEMO=$(DEMO)" DOCKER_FPM_CMD := docker run --rm -t -v `pwd`:/src -w /src fleetdm/fpm FPM_COMMON= \ --name $(PROJECT_NAME) \ --description "GoReplay is an open-source network monitoring tool which can record your live traffic, and use it for shadowing, load testing, monitoring and detailed analysis." \ -v $(VERSION) \ --vendor "Leonid Bugaev" \ -m "" \ --url "https://goreplay.org" \ -s dir release: clean release-linux-amd64 release-linux-arm64 release-mac-amd64 release-mac-arm64 release-windows .PHONY: vendor vendor: go mod vendor release-bin-linux-amd64: vendor docker run --platform linux/amd64 --rm -v `pwd`:$(SOURCE_PATH) -t --env GOOS=linux --env GOARCH=amd64 -i $(CONTAINER_AMD) go build -mod=vendor -o $(BIN_NAME) -tags netgo $(LDFLAGS) ./cmd/gor/ release-bin-linux-arm64: vendor docker run --platform linux/arm64 --rm -v `pwd`:$(SOURCE_PATH) -t --env GOOS=linux --env GOARCH=arm64 -i $(CONTAINER_ARM) go build -mod=vendor -o $(BIN_NAME) -tags netgo $(LDFLAGS) ./cmd/gor/ release-bin-mac-amd64: vendor GOOS=darwin go build -mod=vendor -o $(BIN_NAME) $(MAC_LDFLAGS) ./cmd/gor/ release-bin-mac-arm64: vendor GOOS=darwin GOARCH=arm64 CGO_ENABLED=1 go build -mod=vendor -o $(BIN_NAME) $(MAC_LDFLAGS) release-bin-windows: vendor docker run -it --rm -v `pwd`:$(SOURCE_PATH) -w $(SOURCE_PATH) -e CGO_ENABLED=1 docker.elastic.co/beats-dev/golang-crossbuild:1.19.2-main --build-cmd "make VERSION=$(VERSION) build" -p "windows/amd64" ./cmd/gor/ mv $(BIN_NAME) "$(BIN_NAME).exe" release-linux-amd64: dist release-bin-linux-amd64 tar -czf $(DIST_PATH)/gor_$(VERSION)_linux_amd64.tar.gz $(BIN_NAME) $(DOCKER_FPM_CMD) $(FPM_COMMON) -f -t deb -a arm64 -p ./$(DIST_PATH) ./gor=/usr/local/bin $(DOCKER_FPM_CMD) $(FPM_COMMON) -f -t rpm -a arm64 -p ./$(DIST_PATH) ./gor=/usr/local/bin rm -rf $(BIN_NAME) release-linux-arm64: dist release-bin-linux-arm64 tar -czf $(DIST_PATH)/gor_$(VERSION)_linux_arm64.tar.gz $(BIN_NAME) $(DOCKER_FPM_CMD) $(FPM_COMMON) -f -t deb -a arm64 -p ./$(DIST_PATH) ./gor=/usr/local/bin $(DOCKER_FPM_CMD) $(FPM_COMMON) -f -t rpm -a arm64 -p ./$(DIST_PATH) ./gor=/usr/local/bin rm -rf $(BIN_NAME) release-mac-amd64: dist release-bin-mac-amd64 tar -czf $(DIST_PATH)/gor_$(VERSION)_darwin_amd64.tar.gz $(BIN_NAME) fpm $(FPM_COMMON) -f -t osxpkg -a amd64 -p ./$(DIST_PATH) ./gor=/usr/local/bin mv ./$(DIST_PATH)/$(PROJECT_NAME)-$(VERSION).pkg ./$(DIST_PATH)/$(PROJECT_NAME)-$(VERSION)-amd64.pkg rm -rf $(BIN_NAME) release-mac-arm64: dist release-bin-mac-arm64 tar -czf $(DIST_PATH)/gor_$(VERSION)_darwin_arm64.tar.gz $(BIN_NAME) fpm $(FPM_COMMON) -f -t osxpkg -a arm64 -p ./$(DIST_PATH) ./gor=/usr/local/bin mv ./$(DIST_PATH)/$(PROJECT_NAME)-$(VERSION).pkg ./$(DIST_PATH)/$(PROJECT_NAME)-$(VERSION)-arm64.pkg rm -rf $(BIN_NAME) release-windows: dist release-bin-windows zip $(DIST_PATH)/gor-$(VERSION)_windows.zip "$(BIN_NAME).exe" rm -rf "$(BIN_NAME).exe" clean: rm -rf $(DIST_PATH) build: go build -mod=vendor -o $(BIN_NAME) $(LDFLAGS) install: go install $(MAC_LDFLAGS) build-env: build-amd64-env build-arm64-env build-amd64-env: docker buildx build --platform linux/amd64 -t $(CONTAINER_AMD) -f Dockerfile.dev . build-arm64-env: docker buildx build --platform linux/arm64 -t $(CONTAINER_ARM) -f Dockerfile.dev . build-docker: docker build -t gor-dev -f Dockerfile . profile: go build && ./$(BIN_NAME) --output-http="http://localhost:9000" --input-dummy 0 --input-raw :9000 --input-http :9000 --memprofile=./mem.out --cpuprofile=./cpu.out --stats --output-http-stats --output-http-timeout 100ms lint: $(RUN) golint $(PKG) race: $(RUN) go test ./... $(ARGS) -v -race -timeout 15s test: $(RUN) go test ./. -timeout 120s $(LDFLAGS) $(ARGS) -v test_all: $(RUN) go test ./... -timeout 120s $(LDFLAGS) $(ARGS) -v testone: $(RUN) go test ./. -timeout 60s $(LDFLAGS) -run $(TEST) $(ARGS) -v cover: $(RUN) go test $(ARGS) -race -v -timeout 15s -coverprofile=coverage.out go tool cover -html=coverage.out fmt: $(RUN) gofmt -w -s ./.. vet: $(RUN) go vet bench: $(RUN) go test $(LDFLAGS) -v -run NOT_EXISTING -bench $(BENCHMARK) -benchtime 5s profile_test: $(RUN) go test $(LDFLAGS) -run $(TEST) ./capture/. $(ARGS) -memprofile mem.mprof -cpuprofile cpu.out $(RUN) go test $(LDFLAGS) -run $(TEST) ./capture/. $(ARGS) -c # Used mainly for debugging, because docker container do not have access to parent machine ports run: $(RUN) go run $(LDFLAGS) $(SOURCE) --input-dummy=0 --output-http="http://localhost:9000" --input-raw-track-response --input-raw 127.0.0.1:9000 --verbose 0 --middleware "./examples/middleware/echo.sh" --output-file requests.gor run-2: $(RUN) go run $(LDFLAGS) $(SOURCE) --input-raw :8000 --input-raw-bpf-filter "dst port 8000" --output-stdout --output-http "http://localhost:8000" --input-dummy=0 run-3: sudo -E go run $(SOURCE) --input-tcp :27001 --output-stdout run-arg: sudo -E go run $(SOURCE) $(ARGS) file-server: go run $(SOURCE) file-server $(FADDR) readpcap: go run $(SOURCE) --input-raw $(FILE) --input-raw-track-response --input-raw-engine pcap_file --output-stdout record: $(RUN) go run $(SOURCE) --input-dummy=0 --output-file=requests.gor --verbose --debug replay: $(RUN) go run $(SOURCE) --input-file=requests.bin --output-tcp=:9000 --verbose -h bash: $(RUN) /bin/bash dist: mkdir -p $(DIST_PATH)