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build.go
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build.go
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package main
import (
"archive/tar"
"archive/zip"
"bytes"
"compress/gzip"
"errors"
"flag"
"fmt"
"io"
"io/ioutil"
"log"
"os"
"os/exec"
"path"
"path/filepath"
"runtime"
"strings"
)
var verbose bool
var host string
var autopointPath string
var folders = []string{"openssl", "libevent", "zlib", "xz", "tor"}
var absCurrDir = getAbsCurrDir()
var numJobs = fmt.Sprintf("-j%d", runtime.NumCPU())
func main() {
flag.BoolVar(&verbose, "verbose", false, "Whether to show command output")
flag.StringVar(&host, "host", "", "Host option, useful for cross-compilation")
flag.StringVar(&autopointPath, "autopoint-path", "/usr/local/opt/gettext/bin", "OSX: Directory that contains autopoint binary")
flag.Parse()
if len(flag.Args()) != 1 {
log.Fatal("Missing command. Can be build-all, build-<folder>, clean-all, clean-<folder>, show-libs, or package-libs")
}
if err := run(flag.Args()[0]); err != nil {
log.Fatal(err)
}
}
func run(cmd string) error {
if err := validateEnvironment(); err != nil {
return err
}
switch {
case strings.HasPrefix(cmd, "build-"):
return build(cmd[6:])
case strings.HasPrefix(cmd, "clean-"):
return clean(cmd[6:])
case cmd == "show-libs":
return showLibs()
case cmd == "package-libs":
return packageLibs()
default:
return fmt.Errorf("Invalid command: %v. Should be build-all, build-<folder>, clean-all, clean-<folder>, show-libs, or package-libs", cmd)
}
}
func getAbsCurrDir() string {
var err error
absCurrDir, err := filepath.Abs(".")
if err != nil {
panic(err)
}
if runtime.GOOS == "windows" {
volume := filepath.VolumeName(absCurrDir)
absCurrDir = "/" + strings.TrimSuffix(volume, ":") + "/" + filepath.ToSlash(absCurrDir[len(volume)+1:])
}
return absCurrDir
}
func validateEnvironment() error {
// Make sure all the folders are there
for _, folder := range folders {
if info, err := os.Stat(folder); err != nil || !info.IsDir() {
return fmt.Errorf("%v is not a dir", folder)
}
}
switch runtime.GOOS {
// On windows, have to verify MinGW
case "windows":
// Confirm it is MinGW 64
if byts, err := exec.Command("uname", "-a").CombinedOutput(); err != nil {
return fmt.Errorf("This has to be run in a MSYS or MinGW shell, uname failed: %v", err)
} else if !bytes.HasPrefix(byts, []byte("MINGW64")) && !bytes.HasPrefix(byts, []byte("MSYS2")) {
return fmt.Errorf("This has to be run in a MSYS or MinGW64 shell, uname output: %v", string(byts))
}
case "linux":
// Make sure it's not MinGW
if byts, err := exec.Command("uname", "-a").CombinedOutput(); err != nil {
return fmt.Errorf("Failed running uname -a")
} else if bytes.HasPrefix(byts, []byte("MINGW")) {
return fmt.Errorf("MinGW should not use Linux Go binary, but instead a Windows go.exe to run the build")
}
}
return nil
}
func build(folder string) error {
log.Printf("*** Building %v ***", folder)
defer log.Printf("*** Done building %v ***", folder)
pwd := absCurrDir + "/" + folder
switch folder {
case "all":
for _, subFolder := range folders {
if err := build(subFolder); err != nil {
return err
}
}
return nil
case "openssl":
prefix := pwd + "/dist"
cmds := [][]string{
{"sh", "./config", "--prefix=" + prefix, "--openssldir=" + prefix, "no-shared", "no-dso", "no-zlib"},
{"make", "depend"},
{"make", numJobs},
{"make", "install_sw"},
}
if runtime.GOOS == "windows" {
cmds[0] = append(cmds[0], "mingw64")
cmds[0][0] = "perl"
cmds[0][1] = "./Configure"
} else if runtime.GOOS == "darwin" {
cmds[0][0] = "perl"
cmds[0][1] = "./Configure"
byts, err := exec.Command("uname", "-m").CombinedOutput()
if err != nil {
return err
}
var defaultOSCompiler string
switch string(byts) {
case "x86_64\n":
defaultOSCompiler = "darwin64-x86_64-cc"
case "arm64\n":
defaultOSCompiler = "darwin64-arm64-cc"
}
if host != "" {
switch {
case strings.HasPrefix(host, "x86_64"):
defaultOSCompiler = "darwin64-x86_64-cc"
case strings.HasPrefix(host, "arm64"):
defaultOSCompiler = "darwin64-arm64-cc"
default:
return errors.New("unsupported architecture")
}
}
cmds[0] = append(cmds[0], defaultOSCompiler)
}
return runCmds(folder, nil, cmds)
case "libevent":
cmds := [][]string{
{"sh", "-l", "./autogen.sh"},
{"sh", "./configure", "--prefix=" + pwd + "/dist",
"--disable-shared", "--enable-static", "--with-pic", "--disable-samples", "--disable-libevent-regress",
"CPPFLAGS=-I../openssl/dist/include", "LDFLAGS=-L../openssl/dist/lib"},
{"make", numJobs},
{"make", "install"},
}
if host != "" {
cmds[1] = append(cmds[1], "--host="+host)
}
return runCmds(folder, nil, cmds)
case "zlib":
var env []string
cmds := [][]string{
{"sh", "./configure", "--prefix=" + pwd + "/dist", "--static"},
{"make", numJobs},
{"make", "install"},
}
if runtime.GOOS == "windows" {
env = []string{"PREFIX=" + pwd + "/dist", "BINARY_PATH=" + pwd + "/dist/bin",
"INCLUDE_PATH=" + pwd + "/dist/include", "LIBRARY_PATH=" + pwd + "/dist/lib"}
cmds = [][]string{{"make", "-fwin32/Makefile.gcc"}, {"make", "install", "-fwin32/Makefile.gcc"}}
}
return runCmds(folder, env, cmds)
case "xz":
var env []string
if runtime.GOOS == "darwin" {
env = []string{"PATH=" + autopointPath + ":" + os.Getenv("PATH")}
}
cmds := [][]string{
{"sh", "-l", "./autogen.sh"},
{"sh", "./configure", "--prefix=" + pwd + "/dist", "--disable-shared", "--enable-static",
"--disable-doc", "--disable-scripts", "--disable-xz", "--disable-xzdec", "--disable-lzmadec",
"--disable-lzmainfo", "--disable-lzma-links"},
{"make", numJobs},
{"make", "install"},
}
if host != "" {
cmds[1] = append(cmds[1], "--host="+host)
}
return runCmds(folder, env, cmds)
case "tor":
var env = []string{"LDFLAGS=-s"}
var torConf []string
if runtime.GOOS == "windows" {
env = append(env, "LIBS=-lcrypt32 -lgdi32")
}
torConf = []string{"sh", "./configure", "--prefix=" + pwd + "/dist",
"--disable-gcc-hardening", "--disable-system-torrc", "--disable-asciidoc",
"--enable-static-libevent", "--with-libevent-dir=" + pwd + "/../libevent/dist",
"--enable-static-openssl", "--with-openssl-dir=" + pwd + "/../openssl/dist",
"--enable-static-zlib", "--with-zlib-dir=" + pwd + "/../zlib/dist",
"--disable-systemd", "--disable-lzma", "--disable-seccomp"}
if host != "" {
torConf = append(torConf, "--host="+host)
}
if runtime.GOOS == "darwin" {
torConf = append(torConf, []string{"--disable-zstd", "--disable-libscrypt"}...)
if host != "" {
torConf = append(torConf, "--disable-tool-name-check")
}
}
if runtime.GOOS != "darwin" {
torConf = append(torConf, "--enable-static-tor")
}
if runtime.GOOS == "windows" {
torConf = append(torConf, "--disable-zstd")
}
return runCmds(folder, env, [][]string{
{"sh", "-l", "./autogen.sh"},
torConf,
{"make", numJobs},
{"make", "install"},
})
default:
return fmt.Errorf("Unrecognized folder: %v", folder)
}
}
func clean(folder string) (err error) {
log.Printf("*** Cleaning %v ***", folder)
defer log.Printf("*** Done cleaning %v ***", folder)
switch folder {
case "all":
for _, subFolder := range folders {
if err = clean(subFolder); err != nil {
break
}
}
default:
args := []string{"clean"}
env := []string{}
makefile := "Makefile"
switch folder {
// OpenSSL needs to have the dist folder removed first
case "openssl":
if err := os.RemoveAll("openssl/dist/lib"); err != nil {
return fmt.Errorf("Unable to remove openssl/dist/lib: %v", err)
}
// Zlib needs to have a prefix and needs a special windows makefile
case "zlib":
env = append(env, "PREFIX="+absCurrDir+"/zlib/dist")
if runtime.GOOS == "windows" {
makefile = "win32/Makefile.gcc"
args = append(args, "-fwin32/Makefile.gcc")
}
}
if dir, err := os.Stat(folder); err != nil || !dir.IsDir() {
return fmt.Errorf("%v is not a directory", folder)
} else if _, err := os.Stat(path.Join(folder, makefile)); os.IsNotExist(err) {
log.Printf("Skipping clean, makefile not present")
return nil
}
err = runCmd(folder, env, "make", args...)
}
return err
}
func runCmds(folder string, env []string, cmdsAndArgs [][]string) error {
for _, cmdAndArgs := range cmdsAndArgs {
if err := runCmd(folder, env, cmdAndArgs[0], cmdAndArgs[1:]...); err != nil {
return err
}
}
return nil
}
func runCmd(folder string, env []string, cmd string, args ...string) error {
log.Printf("Running in folder %v: %v %v", folder, cmd, strings.Join(args, " "))
c := exec.Command(cmd, args...)
if len(env) > 0 {
c.Env = append(os.Environ(), env...)
}
c.Dir = folder
if verbose {
c.Stdout = os.Stdout
c.Stderr = os.Stderr
}
return c.Run()
}
type libSet struct {
dir string
libs []string
}
// Results in recommended linker order
func getLibSets() ([]*libSet, error) {
// Ask Tor for their libs
cmd := exec.Command("make", "show-libs")
cmd.Dir = "tor"
out, err := cmd.Output()
if err != nil {
return nil, fmt.Errorf("Failed 'make show-libs' in tor: %v", err)
}
// Load them all
libSets := []*libSet{}
libSetsByDir := map[string]*libSet{}
for _, lib := range strings.Split(strings.TrimSpace(string(out)), " ") {
dir, file := path.Split(lib)
dir = path.Join("tor", dir)
set := libSetsByDir[dir]
if set == nil {
set = &libSet{dir: dir}
libSets = append(libSets, set)
libSetsByDir[dir] = set
}
set.libs = append(set.libs, strings.TrimPrefix(strings.TrimSuffix(file, ".a"), "lib"))
}
// Add the rest of the known libs
libSets = append(libSets,
&libSet{"libevent/dist/lib", []string{"event"}},
&libSet{"xz/dist/lib", []string{"lzma"}},
&libSet{"zlib/dist/lib", []string{"z"}},
&libSet{"openssl/dist/lib", []string{"ssl", "crypto"}},
)
return libSets, nil
}
func showLibs() error {
libSets, err := getLibSets()
if err != nil {
return err
}
for _, libSet := range libSets {
fmt.Print("-L" + libSet.dir)
for _, lib := range libSet.libs {
fmt.Print(" -l" + lib)
}
fmt.Println()
}
return nil
}
func packageLibs() error {
// Make both a libs.tar.gz and a libs.zip...
// Get lib sets
libSets, err := getLibSets()
if err != nil {
return err
}
// Create tar writer
var tw *tar.Writer
if tf, err := os.Create("libs.tar.gz"); err != nil {
return err
} else {
defer tf.Close()
gw := gzip.NewWriter(tf)
defer gw.Close()
tw = tar.NewWriter(gw)
defer tw.Close()
}
tarWrite := func(path string, b []byte, i os.FileInfo) error {
th, err := tar.FileInfoHeader(i, "")
if err == nil {
th.Name = path
if err = tw.WriteHeader(th); err == nil {
_, err = tw.Write(b)
}
}
return err
}
// Create zip writer
var zw *zip.Writer
if zf, err := os.Create("libs.zip"); err != nil {
return err
} else {
defer zf.Close()
zw = zip.NewWriter(zf)
defer zw.Close()
}
zipWrite := func(path string, b []byte, i os.FileInfo) error {
zh, err := zip.FileInfoHeader(i)
if err == nil {
zh.Name = path
zh.Method = zip.Deflate
var w io.Writer
if w, err = zw.CreateHeader(zh); err == nil {
_, err = w.Write(b)
}
}
return err
}
// Copy over each lib
fileBytesAndInfo := func(name string) (b []byte, i os.FileInfo, err error) {
f, err := os.Open(name)
if err != nil {
return nil, nil, err
}
defer f.Close()
if i, err = f.Stat(); err == nil {
b, err = ioutil.ReadAll(f)
}
return
}
copyFile := func(filePath string) error {
if b, i, err := fileBytesAndInfo(filePath); err != nil {
return err
} else if err := tarWrite(filePath, b, i); err != nil {
return err
} else {
return zipWrite(filePath, b, i)
}
}
for _, libSet := range libSets {
for _, lib := range libSet.libs {
if err := copyFile(path.Join(libSet.dir, "lib"+lib+".a")); err != nil {
return err
}
}
}
// Also copy over tor_api.h
return copyFile("tor/src/feature/api/tor_api.h")
}