Files
worker/internal/sshinstall/plan_test.go
Gleb Tv bd6070ee1f
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feat(installer): build worker source over SSH
2026-08-13 00:07:43 +03:00

275 строки
8.3 KiB
Go

package sshinstall
import (
"strings"
"testing"
)
func TestGoArch(t *testing.T) {
cases := map[string]string{
"x86_64": "amd64",
"X86_64": "amd64",
"amd64": "amd64",
"aarch64": "arm64",
"arm64": "arm64",
"armv7l": "armv6l",
"armv6l": "armv6l",
"i686": "386",
"i386": "386",
"loongarch64": "loong64",
"mips": "mips",
"mipsel": "mipsle",
"mips64": "mips64",
"mips64el": "mips64le",
"ppc64": "ppc64",
"ppc64le": "ppc64le",
"riscv64": "riscv64",
"s390x": "s390x",
}
for in, want := range cases {
got, err := GoArch(in)
if err != nil || got != want {
t.Fatalf("GoArch(%q) = %q, %v; want %q", in, got, err, want)
}
}
for _, bad := range []string{"", "sparc", "x86", "mips64el-le"} {
if _, err := GoArch(bad); err == nil {
t.Fatalf("GoArch(%q) succeeded", bad)
}
}
}
// TestToolchainTableConsistentWithGoArch keeps GoArch and toolchainSHA in
// sync: every `uname -m` mapping must resolve to a pinned checksum, and
// every pinned checksum must be reachable through some `uname -m` value.
func TestToolchainTableConsistentWithGoArch(t *testing.T) {
// unameExamples maps a Go archive suffix to a real `uname -m` value
// that GoArch accepts for it.
unameExamples := map[string]string{
"amd64": "x86_64",
"arm64": "aarch64",
"armv6l": "armv7l",
"386": "i686",
"loong64": "loongarch64",
"mips": "mips",
"mipsle": "mipsel",
"mips64": "mips64",
"mips64le": "mips64el",
"ppc64": "ppc64",
"ppc64le": "ppc64le",
"riscv64": "riscv64",
"s390x": "s390x",
}
for archSuffix, unameValue := range unameExamples {
tc, err := ToolchainFor(archSuffix, DefaultGoVersion)
if err != nil {
t.Fatalf("GoArch(%q) = %q has no pinned checksum: %v", unameValue, archSuffix, err)
}
if tc.SHA256 == "" || tc.Arch != "linux-"+archSuffix {
t.Fatalf("ToolchainFor(%q) = %+v", archSuffix, tc)
}
}
for suffix := range toolchainSHA {
arch := strings.TrimPrefix(suffix, "linux-")
if _, ok := unameExamples[arch]; !ok {
t.Fatalf("checksum %q is not reachable through any GoArch `uname -m` mapping", suffix)
}
}
}
func TestToolchainFor(t *testing.T) {
tc, err := ToolchainFor("amd64", "")
if err != nil {
t.Fatal(err)
}
if tc.Version != DefaultGoVersion {
t.Fatalf("version = %q, want %q", tc.Version, DefaultGoVersion)
}
if tc.Arch != "linux-amd64" {
t.Fatalf("arch = %q, want linux-amd64", tc.Arch)
}
if tc.URL != "https://go.dev/dl/go1.26.0.linux-amd64.tar.gz" {
t.Fatalf("url = %q", tc.URL)
}
if len(tc.SHA256) != 64 {
t.Fatalf("sha = %q, want 64 hex chars", tc.SHA256)
}
for _, c := range tc.SHA256 {
hexDigit := c >= '0' && c <= '9' || c >= 'a' && c <= 'f'
if !hexDigit {
t.Fatalf("sha %q contains non-lowercase-hex char", tc.SHA256)
}
}
}
func TestToolchainForArm64Pinned(t *testing.T) {
tc, err := ToolchainFor("arm64", DefaultGoVersion)
if err != nil {
t.Fatal(err)
}
if tc.SHA256 == "" || tc.Arch != "linux-arm64" {
t.Fatalf("arm64 toolchain not pinned: %+v", tc)
}
}
func TestToolchainForRejectsUnpinnedVersion(t *testing.T) {
if _, err := ToolchainFor("amd64", "1.27.0"); err == nil {
t.Fatal("unpinned Go version accepted")
}
if _, err := ToolchainFor("sparc", ""); err == nil {
t.Fatal("unknown architecture accepted")
}
}
func TestPlanSourceAlpine(t *testing.T) {
d := Detect("ID=alpine\n", prober("/sbin/openrc"))
p, err := PlanSource(d, SourceOptions{UnameM: "x86_64"})
if err != nil {
t.Fatal(err)
}
if p.Repo != DefaultRepo || p.Branch != "" {
t.Fatalf("plan defaults wrong: %+v", p)
}
if p.Toolchain.Arch != "linux-amd64" {
t.Fatalf("toolchain = %+v", p.Toolchain)
}
if len(p.Packages) != 5 || p.Packages[0] != "git" {
t.Fatalf("alpine packages = %v", p.Packages)
}
if p.InitSystem != InitOpenRC {
t.Fatalf("init = %q, want openrc", p.InitSystem)
}
steps := p.Steps()
if len(steps) != 6 {
t.Fatalf("steps = %d, want 6", len(steps))
}
if steps[0].Kind != StepInstallPackages || steps[1].Kind != StepInstallToolchain {
t.Fatalf("step order wrong: %+v", steps)
}
if !strings.Contains(steps[1].Detail, "Go 1.26.0") || !strings.Contains(steps[1].Detail, "linux-amd64") {
t.Fatalf("toolchain step detail = %q", steps[1].Detail)
}
if !strings.Contains(steps[5].Detail, "openrc") {
t.Fatalf("install step detail = %q", steps[5].Detail)
}
}
func TestPlanSourceUbuntuArch(t *testing.T) {
ubuntu := Detect("ID=ubuntu\n", prober("/usr/lib/systemd/system"))
p, err := PlanSource(ubuntu, SourceOptions{UnameM: "aarch64"})
if err != nil {
t.Fatal(err)
}
if p.Toolchain.Arch != "linux-arm64" || p.InitSystem != InitSystemd {
t.Fatalf("ubuntu plan = %+v", p)
}
arch := Detect("ID=arch\n", prober("/usr/lib/systemd/system"))
p, err = PlanSource(arch, SourceOptions{UnameM: "x86_64"})
if err != nil {
t.Fatal(err)
}
if p.Packages[0] != "git" || p.InitSystem != InitSystemd {
t.Fatalf("arch plan = %+v", p)
}
}
func TestPlanSourceExplicitOverrides(t *testing.T) {
d := Detect("ID=ubuntu\n", nil)
p, err := PlanSource(d, SourceOptions{
Repo: "https://example.test/worker.git",
Branch: "release-1.0",
GoArch: "arm64",
BuildDir: "/srv/rsmon",
GoModuleProxy: "https://proxy.golang.org,direct",
})
if err != nil {
t.Fatal(err)
}
if p.Repo != "https://example.test/worker.git" || p.Branch != "release-1.0" ||
p.BuildDir != "/srv/rsmon" || p.GoModuleProxy != "https://proxy.golang.org,direct" {
t.Fatalf("overrides not applied: %+v", p)
}
if p.Toolchain.Arch != "linux-arm64" {
t.Fatalf("toolchain = %+v", p.Toolchain)
}
}
func TestPlanSourceErrors(t *testing.T) {
unknown := Detect("ID=weirdos\n", nil)
if _, err := PlanSource(unknown, SourceOptions{UnameM: "x86_64"}); err == nil {
t.Fatal("unknown distro planned")
}
ubuntu := Detect("ID=ubuntu\n", nil)
if _, err := PlanSource(ubuntu, SourceOptions{}); err == nil {
t.Fatal("missing architecture planned")
}
for _, repo := range []string{"file:///tmp/worker.git", "not-a-url", "https://ex ample/x"} {
if _, err := PlanSource(ubuntu, SourceOptions{UnameM: "x86_64", Repo: repo}); err == nil {
t.Fatalf("invalid repo %q planned", repo)
}
}
if _, err := PlanSource(ubuntu, SourceOptions{UnameM: "x86_64", BuildDir: "relative"}); err == nil {
t.Fatal("relative build dir planned")
}
}
func TestPackagePrereqsNeverIncludeCompiler(t *testing.T) {
for _, pkg := range []PackageManager{PkgApk, PkgApt, PkgPacman, PkgDnf} {
for _, name := range packagePrereqs(pkg) {
switch name {
case "build-essential", "gcc", "g++", "base-devel", "gcc-c++", "make":
t.Fatalf("plan includes compiler package %q", name)
}
}
}
if got := packagePrereqs(PkgUnknown); len(got) != 0 {
t.Fatalf("unknown package manager planned packages %v", got)
}
}
func TestValidateRepoURLSchemes(t *testing.T) {
for _, ok := range []string{"https://rocketgit.ru/rsmon/worker.git", "https://example.test/r"} {
if err := validateRepoURL(ok); err != nil {
t.Fatalf("validateRepoURL(%q): %v", ok, err)
}
}
for _, bad := range []string{
"ssh://h@x/r", "s3://bucket/key", "x y", "", "http://x/y", "git://example.test/r",
"https://user:pass@example.test/r", "https://token@example.test/r", "file:///tmp/r",
} {
if err := validateRepoURL(bad); err == nil {
t.Fatalf("validateRepoURL(%q) succeeded", bad)
}
}
}
func TestPlanSourceRejectsUnsafeCharset(t *testing.T) {
ubuntu := Detect("ID=ubuntu\n", nil)
for _, goarch := range []string{"amd64;rm", "x;rm -rf", "$(id)", "..", "a b"} {
if _, err := PlanSource(ubuntu, SourceOptions{UnameM: "x86_64", GoArch: goarch}); err == nil {
t.Fatalf("unsafe GoArch %q planned", goarch)
}
}
for _, version := range []string{"1.26;rm", "$(id)", "1.26.0 x", "a/b"} {
if _, err := PlanSource(ubuntu, SourceOptions{UnameM: "x86_64", GoVersion: version}); err == nil {
t.Fatalf("unsafe GoVersion %q planned", version)
}
}
if !ValidGoVersion("1.26.0") || !ValidGoArch("amd64") {
t.Fatal("valid version/arch rejected")
}
}
func TestPlanSourceEmptyBranchSteps(t *testing.T) {
ubuntu := Detect("ID=ubuntu\n", nil)
p, err := PlanSource(ubuntu, SourceOptions{UnameM: "x86_64"})
if err != nil {
t.Fatal(err)
}
if !strings.Contains(p.Steps()[3].Detail, "remote default branch") {
t.Fatalf("checkout step detail for empty branch = %q", p.Steps()[3].Detail)
}
}