#!/bin/bash # Copyright 2018 The Go Authors. All rights reserved. # Use of this source code is governed by a BSD-style # license that can be found in the LICENSE file. REPO_ROOT="$(cd "$(dirname "${BASH_SOURCE[0]}")" && pwd)" function print() { echo -e "\x1b[1m> $@\x1b[0m"; } # The test directory contains the Go and protobuf toolchains used for testing. # The bin directory contains symlinks to each tool by version. # It is safe to delete this directory and run the test script from scratch. TEST_DIR=$REPO_ROOT/.cache mkdir -p $TEST_DIR/bin function register_binary() { rm -f $TEST_DIR/bin/$1 # best-effort delete ln -s $TEST_DIR/$2 $TEST_DIR/bin/$1 } export PATH=$TEST_DIR/bin:$PATH cd $TEST_DIR # install toolchains relative to test directory # Download and build the protobuf toolchain. # We avoid downloading the pre-compiled binaries since they do not contain # the conformance test runner. PROTOBUF_VERSION=3.6.1 PROTOBUF_DIR="protobuf-$PROTOBUF_VERSION" if [ ! -d $PROTOBUF_DIR ]; then print "download and build $PROTOBUF_DIR" (curl -s -L https://github.com/google/protobuf/releases/download/v$PROTOBUF_VERSION/protobuf-all-$PROTOBUF_VERSION.tar.gz | tar -zxf -) || exit 1 (cd $PROTOBUF_DIR && ./configure && make && cd conformance && make) || exit 1 fi register_binary conformance-test-runner $PROTOBUF_DIR/conformance/conformance-test-runner register_binary protoc $PROTOBUF_DIR/src/protoc # Allow protoc to find google/protobuf/*.proto. rm -rf $PROTOBUF_DIR/src/include mkdir -p $PROTOBUF_DIR/src/include ln -s ../google $PROTOBUF_DIR/src/include/google # Download each Go toolchain version. GO_LATEST=go1.11 GO_VERSIONS=(go1.9.7 go1.10.3 $GO_LATEST) for GO_VERSION in ${GO_VERSIONS[@]}; do if [ ! -d $GO_VERSION ]; then print "download $GO_VERSION" GOOS=$(uname | tr '[:upper:]' '[:lower:]') (mkdir $GO_VERSION && curl -s -L https://dl.google.com/go/$GO_VERSION.$GOOS-amd64.tar.gz | tar -zxf - -C $GO_VERSION --strip-components 1) || exit 1 fi register_binary $GO_VERSION $GO_VERSION/bin/go done register_binary go $GO_LATEST/bin/go register_binary gofmt $GO_LATEST/bin/gofmt # Travis-CI sets GOROOT, which confuses later invocations of the Go toolchains. # Explicitly clear GOROOT, so each toolchain uses their default GOROOT. unset GOROOT # Setup GOPATH for pre-module support. export GOPATH=$TEST_DIR/gopath MODULE_PATH=$(cd $REPO_ROOT && go list -m -f "{{.Path}}") rm -rf gopath/src # best-effort delete mkdir -p gopath/src/$(dirname $MODULE_PATH) (cd gopath/src/$(dirname $MODULE_PATH) && ln -s $REPO_ROOT $(basename $MODULE_PATH)) # Download dependencies using modules. # For pre-module support, dump the dependencies in a vendor directory. (cd $REPO_ROOT && go mod tidy && go mod vendor) || exit 1 # Run tests across every supported version of Go. LABELS=() PIDS=() OUTS=() function cleanup() { for OUT in ${OUTS[@]}; do rm $OUT; done; } trap cleanup EXIT for GO_VERSION in ${GO_VERSIONS[@]}; do # Run the go command in a background process. function go() { # Use a per-version Go cache to work around bugs in Go build caching. # See https://golang.org/issue/26883 GO_CACHE="$TEST_DIR/cache.$GO_VERSION" LABELS+=("$(echo "$GO_VERSION $@")") OUT=$(mktemp) (cd $GOPATH/src/$MODULE_PATH && GOCACHE=$GO_CACHE $GO_VERSION "$@" &> $OUT) & PIDS+=($!) OUTS+=($OUT) } go build ./... go test ./... go test -race ./... go test -race -tags purego ./... go test -race -tags proto1_legacy ./... unset go # to avoid confusing later invocations of "go" done # Wait for all processes to finish. RET=0 for I in ${!PIDS[@]}; do print "${LABELS[$I]}" if ! wait ${PIDS[$I]}; then cat ${OUTS[$I]} # only output upon error RET=1 fi done # Run commands that produce output when there is a failure. function check() { OUT=$(cd $REPO_ROOT && "$@" 2>&1) if [ ! -z "$OUT" ]; then print "$@" echo "$OUT" RET=1 fi } # Check for stale or unformatted source files. check go run ./internal/cmd/generate-types check gofmt -d $(cd $REPO_ROOT && git ls-files '*.go') # Check for changed or untracked files. check git diff --no-prefix HEAD check git ls-files --others --exclude-standard # Print termination status. if [ $RET -eq 0 ]; then echo -e "\x1b[32;1mPASS\x1b[0m" else echo -e "\x1b[31;1mFAIL\x1b[0m" fi exit $RET