forked from cerc-io/plugeth
289b30715d
This commit converts the dependency management from Godeps to the vendor folder, also switching the tool from godep to trash. Since the upstream tool lacks a few features proposed via a few PRs, until those PRs are merged in (if), use github.com/karalabe/trash. You can update dependencies via trash --update. All dependencies have been updated to their latest version. Parts of the build system are reworked to drop old notions of Godeps and invocation of the go vet command so that it doesn't run against the vendor folder, as that will just blow up during vetting. The conversion drops OpenCL (and hence GPU mining support) from ethash and our codebase. The short reasoning is that there's noone to maintain and having opencl libs in our deps messes up builds as go install ./... tries to build them, failing with unsatisfied link errors for the C OpenCL deps. golang.org/x/net/context is not vendored in. We expect it to be fetched by the user (i.e. using go get). To keep ci.go builds reproducible the package is "vendored" in build/_vendor.
497 lines
14 KiB
Go
497 lines
14 KiB
Go
// Copyright 2016 The go-ethereum Authors
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// This file is part of the go-ethereum library.
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//
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// The go-ethereum library is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Lesser General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// The go-ethereum library is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU Lesser General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public License
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// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
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// +build none
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/*
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The ci command is called from Continuous Integration scripts.
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Usage: go run ci.go <command> <command flags/arguments>
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Available commands are:
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install [ packages... ] -- builds packages and executables
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test [ -coverage ] [ -vet ] [ packages... ] -- runs the tests
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archive [ -type zip|tar ] -- archives build artefacts
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importkeys -- imports signing keys from env
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debsrc [ -sign key-id ] [ -upload dest ] -- creates a debian source package
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xgo [ options ] -- cross builds according to options
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For all commands, -n prevents execution of external programs (dry run mode).
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*/
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package main
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import (
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"bytes"
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"encoding/base64"
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"flag"
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"fmt"
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"io/ioutil"
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"log"
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"os"
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"os/exec"
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"path/filepath"
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"runtime"
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"strings"
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"time"
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"../internal/build"
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)
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var (
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// Files that end up in the geth*.zip archive.
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gethArchiveFiles = []string{
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"COPYING",
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executablePath("geth"),
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}
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// Files that end up in the geth-alltools*.zip archive.
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allToolsArchiveFiles = []string{
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"COPYING",
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executablePath("abigen"),
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executablePath("evm"),
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executablePath("geth"),
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executablePath("rlpdump"),
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}
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// A debian package is created for all executables listed here.
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debExecutables = []debExecutable{
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{
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Name: "geth",
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Description: "Ethereum CLI client.",
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},
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{
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Name: "rlpdump",
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Description: "Developer utility tool that prints RLP structures.",
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},
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{
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Name: "evm",
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Description: "Developer utility version of the EVM (Ethereum Virtual Machine) that is capable of running bytecode snippets within a configurable environment and execution mode.",
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},
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{
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Name: "abigen",
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Description: "Source code generator to convert Ethereum contract definitions into easy to use, compile-time type-safe Go packages.",
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},
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}
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// Distros for which packages are created.
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// Note: vivid is unsupported because there is no golang-1.6 package for it.
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debDistros = []string{"trusty", "wily", "xenial", "yakkety"}
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)
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var GOBIN, _ = filepath.Abs(filepath.Join("build", "bin"))
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func executablePath(name string) string {
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if runtime.GOOS == "windows" {
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name += ".exe"
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}
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return filepath.Join(GOBIN, name)
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}
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func main() {
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log.SetFlags(log.Lshortfile)
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if _, err := os.Stat(filepath.Join("build", "ci.go")); os.IsNotExist(err) {
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log.Fatal("this script must be run from the root of the repository")
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}
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if len(os.Args) < 2 {
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log.Fatal("need subcommand as first argument")
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}
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switch os.Args[1] {
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case "install":
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doInstall(os.Args[2:])
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case "test":
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doTest(os.Args[2:])
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case "archive":
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doArchive(os.Args[2:])
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case "debsrc":
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doDebianSource(os.Args[2:])
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case "xgo":
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doXgo(os.Args[2:])
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default:
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log.Fatal("unknown command ", os.Args[1])
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}
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}
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// Compiling
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func doInstall(cmdline []string) {
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flag.CommandLine.Parse(cmdline)
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env := build.Env()
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// Check Go version. People regularly open issues about compilation
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// failure with outdated Go. This should save them the trouble.
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if runtime.Version() < "go1.4" && !strings.HasPrefix(runtime.Version(), "devel") {
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log.Println("You have Go version", runtime.Version())
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log.Println("go-ethereum requires at least Go version 1.4 and cannot")
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log.Println("be compiled with an earlier version. Please upgrade your Go installation.")
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os.Exit(1)
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}
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// Compile packages given as arguments, or everything if there are no arguments.
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packages := []string{"./..."}
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if flag.NArg() > 0 {
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packages = flag.Args()
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}
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goinstall := goTool("install", buildFlags(env)...)
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goinstall.Args = append(goinstall.Args, "-v")
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goinstall.Args = append(goinstall.Args, packages...)
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build.MustRun(goinstall)
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}
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func buildFlags(env build.Environment) (flags []string) {
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if os.Getenv("GO_OPENCL") != "" {
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flags = append(flags, "-tags", "opencl")
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}
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// Since Go 1.5, the separator char for link time assignments
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// is '=' and using ' ' prints a warning. However, Go < 1.5 does
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// not support using '='.
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sep := " "
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if runtime.Version() > "go1.5" || strings.Contains(runtime.Version(), "devel") {
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sep = "="
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}
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// Set gitCommit constant via link-time assignment.
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if env.Commit != "" {
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flags = append(flags, "-ldflags", "-X main.gitCommit"+sep+env.Commit)
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}
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return flags
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}
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func goTool(subcmd string, args ...string) *exec.Cmd {
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gocmd := filepath.Join(runtime.GOROOT(), "bin", "go")
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cmd := exec.Command(gocmd, subcmd)
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cmd.Args = append(cmd.Args, args...)
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cmd.Env = []string{
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"GO15VENDOREXPERIMENT=1",
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"GOPATH=" + build.GOPATH(),
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"GOBIN=" + GOBIN,
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}
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for _, e := range os.Environ() {
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if strings.HasPrefix(e, "GOPATH=") || strings.HasPrefix(e, "GOBIN=") {
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continue
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}
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cmd.Env = append(cmd.Env, e)
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}
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return cmd
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}
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// Running The Tests
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//
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// "tests" also includes static analysis tools such as vet.
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func doTest(cmdline []string) {
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var (
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vet = flag.Bool("vet", false, "Whether to run go vet")
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coverage = flag.Bool("coverage", false, "Whether to record code coverage")
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)
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flag.CommandLine.Parse(cmdline)
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packages := []string{"./..."}
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if len(flag.CommandLine.Args()) > 0 {
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packages = flag.CommandLine.Args()
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}
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if len(packages) == 1 && packages[0] == "./..." {
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// Resolve ./... manually since go vet will fail on vendored stuff
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out, err := goTool("list", "./...").CombinedOutput()
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if err != nil {
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log.Fatalf("package listing failed: %v\n%s", err, string(out))
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}
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packages = []string{}
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for _, line := range strings.Split(string(out), "\n") {
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if !strings.Contains(line, "vendor") {
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packages = append(packages, strings.TrimSpace(line))
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}
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}
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}
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// Run analysis tools before the tests.
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if *vet {
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build.MustRun(goTool("vet", packages...))
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}
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// Run the actual tests.
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gotest := goTool("test")
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// Test a single package at a time. CI builders are slow
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// and some tests run into timeouts under load.
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gotest.Args = append(gotest.Args, "-p", "1")
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if *coverage {
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gotest.Args = append(gotest.Args, "-covermode=atomic", "-cover")
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}
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gotest.Args = append(gotest.Args, packages...)
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build.MustRun(gotest)
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}
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// Release Packaging
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func doArchive(cmdline []string) {
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var (
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atype = flag.String("type", "zip", "Type of archive to write (zip|tar)")
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ext string
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)
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flag.CommandLine.Parse(cmdline)
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switch *atype {
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case "zip":
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ext = ".zip"
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case "tar":
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ext = ".tar.gz"
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default:
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log.Fatal("unknown archive type: ", atype)
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}
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env := build.Env()
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maybeSkipArchive(env)
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base := archiveBasename(env)
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if err := build.WriteArchive("geth-"+base, ext, gethArchiveFiles); err != nil {
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log.Fatal(err)
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}
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if err := build.WriteArchive("geth-alltools-"+base, ext, allToolsArchiveFiles); err != nil {
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log.Fatal(err)
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}
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}
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func archiveBasename(env build.Environment) string {
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// date := time.Now().UTC().Format("200601021504")
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platform := runtime.GOOS + "-" + runtime.GOARCH
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archive := platform + "-" + build.VERSION()
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if env.Commit != "" {
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archive += "-" + env.Commit[:8]
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}
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return archive
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}
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// skips archiving for some build configurations.
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func maybeSkipArchive(env build.Environment) {
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if env.IsPullRequest {
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log.Printf("skipping because this is a PR build")
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os.Exit(0)
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}
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if env.Branch != "develop" && !strings.HasPrefix(env.Tag, "v1.") {
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log.Printf("skipping because branch %q, tag %q is not on the whitelist", env.Branch, env.Tag)
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os.Exit(0)
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}
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}
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// Debian Packaging
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func doDebianSource(cmdline []string) {
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var (
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signer = flag.String("signer", "", `Signing key name, also used as package author`)
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upload = flag.String("upload", "", `Where to upload the source package (usually "ppa:ethereum/ethereum")`)
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workdir = flag.String("workdir", "", `Output directory for packages (uses temp dir if unset)`)
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now = time.Now()
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)
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flag.CommandLine.Parse(cmdline)
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*workdir = makeWorkdir(*workdir)
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env := build.Env()
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maybeSkipArchive(env)
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// Import the signing key.
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if b64key := os.Getenv("PPA_SIGNING_KEY"); b64key != "" {
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key, err := base64.StdEncoding.DecodeString(b64key)
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if err != nil {
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log.Fatal("invalid base64 PPA_SIGNING_KEY")
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}
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gpg := exec.Command("gpg", "--import")
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gpg.Stdin = bytes.NewReader(key)
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build.MustRun(gpg)
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}
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// Create the packages.
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for _, distro := range debDistros {
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meta := newDebMetadata(distro, *signer, env, now)
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pkgdir := stageDebianSource(*workdir, meta)
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debuild := exec.Command("debuild", "-S", "-sa", "-us", "-uc")
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debuild.Dir = pkgdir
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build.MustRun(debuild)
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changes := fmt.Sprintf("%s_%s_source.changes", meta.Name(), meta.VersionString())
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changes = filepath.Join(*workdir, changes)
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if *signer != "" {
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build.MustRunCommand("debsign", changes)
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}
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if *upload != "" {
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build.MustRunCommand("dput", *upload, changes)
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}
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}
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}
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func makeWorkdir(wdflag string) string {
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var err error
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if wdflag != "" {
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err = os.MkdirAll(wdflag, 0744)
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} else {
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wdflag, err = ioutil.TempDir("", "eth-deb-build-")
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}
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if err != nil {
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log.Fatal(err)
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}
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return wdflag
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}
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func isUnstableBuild(env build.Environment) bool {
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if env.Branch != "develop" && env.Tag != "" {
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return false
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}
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return true
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}
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type debMetadata struct {
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Env build.Environment
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// go-ethereum version being built. Note that this
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// is not the debian package version. The package version
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// is constructed by VersionString.
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Version string
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Author string // "name <email>", also selects signing key
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Distro, Time string
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Executables []debExecutable
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}
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type debExecutable struct {
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Name, Description string
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}
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func newDebMetadata(distro, author string, env build.Environment, t time.Time) debMetadata {
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if author == "" {
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// No signing key, use default author.
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author = "Ethereum Builds <fjl@ethereum.org>"
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}
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return debMetadata{
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Env: env,
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Author: author,
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Distro: distro,
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Version: build.VERSION(),
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Time: t.Format(time.RFC1123Z),
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Executables: debExecutables,
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}
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}
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// Name returns the name of the metapackage that depends
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// on all executable packages.
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func (meta debMetadata) Name() string {
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if isUnstableBuild(meta.Env) {
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return "ethereum-unstable"
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}
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return "ethereum"
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}
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// VersionString returns the debian version of the packages.
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func (meta debMetadata) VersionString() string {
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vsn := meta.Version
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if meta.Env.Buildnum != "" {
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vsn += "+build" + meta.Env.Buildnum
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}
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if meta.Distro != "" {
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vsn += "+" + meta.Distro
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}
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return vsn
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}
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// ExeList returns the list of all executable packages.
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func (meta debMetadata) ExeList() string {
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names := make([]string, len(meta.Executables))
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for i, e := range meta.Executables {
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names[i] = meta.ExeName(e)
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}
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return strings.Join(names, ", ")
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}
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// ExeName returns the package name of an executable package.
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func (meta debMetadata) ExeName(exe debExecutable) string {
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if isUnstableBuild(meta.Env) {
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return exe.Name + "-unstable"
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}
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return exe.Name
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}
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// ExeConflicts returns the content of the Conflicts field
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// for executable packages.
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func (meta debMetadata) ExeConflicts(exe debExecutable) string {
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if isUnstableBuild(meta.Env) {
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// Set up the conflicts list so that the *-unstable packages
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// cannot be installed alongside the regular version.
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//
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// https://www.debian.org/doc/debian-policy/ch-relationships.html
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// is very explicit about Conflicts: and says that Breaks: should
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// be preferred and the conflicting files should be handled via
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// alternates. We might do this eventually but using a conflict is
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// easier now.
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return "ethereum, " + exe.Name
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}
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return ""
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}
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func stageDebianSource(tmpdir string, meta debMetadata) (pkgdir string) {
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pkg := meta.Name() + "-" + meta.VersionString()
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pkgdir = filepath.Join(tmpdir, pkg)
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if err := os.Mkdir(pkgdir, 0755); err != nil {
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log.Fatal(err)
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}
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// Copy the source code.
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build.MustRunCommand("git", "checkout-index", "-a", "--prefix", pkgdir+string(filepath.Separator))
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// Put the debian build files in place.
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debian := filepath.Join(pkgdir, "debian")
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build.Render("build/deb.rules", filepath.Join(debian, "rules"), 0755, meta)
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build.Render("build/deb.changelog", filepath.Join(debian, "changelog"), 0644, meta)
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build.Render("build/deb.control", filepath.Join(debian, "control"), 0644, meta)
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build.Render("build/deb.copyright", filepath.Join(debian, "copyright"), 0644, meta)
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build.RenderString("8\n", filepath.Join(debian, "compat"), 0644, meta)
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build.RenderString("3.0 (native)\n", filepath.Join(debian, "source/format"), 0644, meta)
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for _, exe := range meta.Executables {
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install := filepath.Join(debian, meta.ExeName(exe)+".install")
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docs := filepath.Join(debian, meta.ExeName(exe)+".docs")
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build.Render("build/deb.install", install, 0644, exe)
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build.Render("build/deb.docs", docs, 0644, exe)
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}
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return pkgdir
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}
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// Cross compilation
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func doXgo(cmdline []string) {
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flag.CommandLine.Parse(cmdline)
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env := build.Env()
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// Make sure xgo is available for cross compilation
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gogetxgo := goTool("get", "github.com/karalabe/xgo")
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build.MustRun(gogetxgo)
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// Execute the actual cross compilation
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xgo := xgoTool(append(buildFlags(env), flag.Args()...))
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build.MustRun(xgo)
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}
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func xgoTool(args []string) *exec.Cmd {
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cmd := exec.Command(filepath.Join(GOBIN, "xgo"), args...)
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cmd.Env = []string{
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"GOPATH=" + build.GOPATH(),
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"GOBIN=" + GOBIN,
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}
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for _, e := range os.Environ() {
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if strings.HasPrefix(e, "GOPATH=") || strings.HasPrefix(e, "GOBIN=") {
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continue
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}
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cmd.Env = append(cmd.Env, e)
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}
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return cmd
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}
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