Files
mesh-catalog/modules/pacman/cmd/pacman-tools/machine.go
T
jochen d9336d11d0 pacman: the package manager's configuration, mirrors and cache as a module
Mirrors were generated once and never again and caches never cleaned. The
module holds node-package-manager (hq ADR 0207), declares pacman itself, owns
/etc/pacman.conf whole — [options] cannot take an appended block — with the
union of the enabled repositories and improved options, proven by pacman-conf
in its test, and enables reflector.timer (its config owned) and
paccache.timer. Fifteen tools from a Go bundle; transactions run as transient
units so a call's timeout never kills pacman mid-transaction (to-be 42).
2026-10-04 12:50:20 +02:00

290 lines
8.8 KiB
Go

package main
// The commands this bundle runs on its machine, and who runs them.
//
// Who asks. The node's tool runtime runs as the operator account, not root (novox/hq ADR 0175 §4),
// and launches this binary as a process of its own (ADR 0188, ADR 0193) with the runtime's words —
// HOME, a PATH, MESH_OPERATOR_ACCOUNT — and no session words. Reading needs nothing more; what only
// root may do goes through `sudo -n`, as the packet filter's, the service manager's and the
// intrusion prevention's tools do (to-be 38 WP4), and the `sudo` module is what declares that the
// account may (to-be 42, research 027). A refusal is named by how it failed, never read as an
// empty answer.
//
// The runner is injected, so every tool is tested over a fake one without the machine.
import (
"bytes"
"context"
"errors"
"fmt"
"io/fs"
"os"
"os/exec"
"strings"
"time"
)
// Ran is what one command did: its output, its exit status, and why it never ran to an answer.
type Ran struct {
Stdout string
Stderr string
Status int
// Err is "ENOENT" when the program is not there, or that it was ended for taking too long.
Err string
}
// Runner runs one command, so the tools can be tested without the machine.
type Runner func(ctx context.Context, name string, args ...string) Ran
// CallTimeout is how long one command may take: below the runtime's thirty-second call limit, so a
// command that hangs is answered as such rather than as a call the runtime gave up on.
const CallTimeout = 20 * time.Second
// outputLimit bounds what one command may hand back, so a runaway listing cannot exhaust the
// process; well above anything a tool answers.
const outputLimit = 16 << 20
type bounded struct {
bytes.Buffer
cut bool
}
func (b *bounded) Write(p []byte) (int, error) {
if room := outputLimit - b.Len(); room < len(p) {
if room > 0 {
b.Buffer.Write(p[:room])
}
b.cut = true
return len(p), nil
}
return b.Buffer.Write(p)
}
// ExecRunner runs a command on this machine, in the C locale so what is parsed is one language.
func ExecRunner(ctx context.Context, name string, args ...string) Ran {
ctx, cancel := context.WithTimeout(ctx, CallTimeout)
defer cancel()
cmd := exec.CommandContext(ctx, name, args...)
cmd.Env = append(os.Environ(), "LC_ALL=C")
var out, errb bounded
cmd.Stdout, cmd.Stderr = &out, &errb
err := cmd.Run()
r := Ran{Stdout: out.String(), Stderr: errb.String()}
if ctx.Err() == context.DeadlineExceeded {
r.Status, r.Err = 124, fmt.Sprintf("no answer within %d s", int(CallTimeout.Seconds()))
return r
}
var exit *exec.ExitError
switch {
case err == nil:
case errors.As(err, &exit):
r.Status = exit.ExitCode()
case errors.Is(err, exec.ErrNotFound) || errors.Is(err, fs.ErrNotExist):
r.Status, r.Err = 127, "ENOENT"
default:
r.Status, r.Err = 126, err.Error()
}
return r
}
// Escalated is the command as it is run: as given when this process is root, else through sudo
// without a prompt.
func Escalated(uid int, name string, args ...string) (string, []string) {
if uid == 0 {
return name, args
}
return "sudo", append([]string{"-n", name}, args...)
}
// Machine is this machine as the tools see it: a runner, who this process is, and its files.
type Machine struct {
Run Runner
UID int
User string
Account string
ReadFile func(path string) ([]byte, error)
Now func() time.Time
Sleep func(time.Duration)
}
// ThisMachine is the machine the runtime launched this bundle on.
func ThisMachine() *Machine {
user := os.Getenv("USER")
if user == "" {
user = os.Getenv("LOGNAME")
}
account := strings.TrimSpace(os.Getenv("MESH_OPERATOR_ACCOUNT"))
if account == "" {
account = user
}
return &Machine{Run: ExecRunner, UID: os.Getuid(), User: user, Account: account, ReadFile: os.ReadFile, Now: time.Now, Sleep: time.Sleep}
}
// Out runs a command that only reads, and fails with what went wrong named.
func (m *Machine) Out(name string, args ...string) (string, error) {
r := m.Run(context.Background(), name, args...)
if r.Status == 0 && r.Err == "" {
return r.Stdout, nil
}
return r.Stdout, failure(name, name, r)
}
// Root runs a command that needs root, escalated when this process is not.
func (m *Machine) Root(name string, args ...string) (string, error) {
program, argv := Escalated(m.UID, name, args...)
r := m.Run(context.Background(), program, argv...)
if r.Status == 0 && r.Err == "" {
return r.Stdout, nil
}
return r.Stdout, failure(name, program, r)
}
// RootRan is Root's raw answer, for a command whose non-zero status is itself an answer.
func (m *Machine) RootRan(name string, args ...string) (Ran, error) {
program, argv := Escalated(m.UID, name, args...)
r := m.Run(context.Background(), program, argv...)
if r.Err != "" || (program == "sudo" && sudoRefused(r)) {
return r, failure(name, program, r)
}
return r, nil
}
func sudoRefused(r Ran) bool {
return strings.HasPrefix(strings.TrimSpace(r.Stderr), "sudo:")
}
// failure names what failed by how it failed: the program missing is a spawn error, sudo missing
// or refusing speaks for itself, and the rest is the command's own first line.
func failure(cmd, program string, r Ran) error {
said := strings.TrimSpace(r.Stderr + "\n" + r.Stdout)
if r.Err == "ENOENT" {
if program == "sudo" {
return fmt.Errorf("%s needs root for this, and sudo is not installed here for the runtime's account to escalate with", cmd)
}
return fmt.Errorf("%s is not installed on this machine", cmd)
}
if r.Err != "" {
return fmt.Errorf("%s did not answer: %s", cmd, r.Err)
}
if program == "sudo" && sudoRefused(r) {
if strings.Contains(said, "command not found") {
return fmt.Errorf("%s is not installed on this machine", cmd)
}
return fmt.Errorf("%s needs root for this and the runtime's account may not run it without a prompt: %s", cmd, firstLine(said))
}
if line := firstLine(said); line != "" {
return fmt.Errorf("%s failed (%d): %s", cmd, r.Status, line)
}
return fmt.Errorf("%s failed with status %d", cmd, r.Status)
}
func firstLine(text string) string {
for _, l := range strings.Split(text, "\n") {
if l = strings.TrimSpace(l); l != "" {
return l
}
}
return ""
}
func lines(text string) []string {
var out []string
for _, l := range strings.Split(text, "\n") {
if l = strings.TrimRight(l, "\r"); strings.TrimSpace(l) != "" {
out = append(out, l)
}
}
return out
}
// text is a string argument; required says whether it may be absent. It is never something a
// command would read as an option, which under sudo would be root's option.
func text(args map[string]any, key string, required bool) (string, error) {
raw, present := args[key]
if !present || raw == nil {
if required {
return "", fmt.Errorf("%s is required", key)
}
return "", nil
}
s, ok := raw.(string)
if !ok {
return "", fmt.Errorf("%s must be a string", key)
}
s = strings.TrimSpace(s)
if required && s == "" {
return "", fmt.Errorf("%s is required", key)
}
if strings.HasPrefix(s, "-") || strings.ContainsRune(s, 0) || strings.ContainsAny(s, "\n\r") {
return "", fmt.Errorf("%s %q is not a value this tool passes on", key, s)
}
return s, nil
}
// whole is a whole-number argument with a default, kept within bounds.
func whole(args map[string]any, key string, def, least, most int) (int, error) {
raw, present := args[key]
if !present || raw == nil {
return def, nil
}
f, ok := raw.(float64)
if !ok || f != float64(int(f)) {
return 0, fmt.Errorf("%s must be a whole number", key)
}
n := int(f)
if n < least {
return 0, fmt.Errorf("%s must be at least %d", key, least)
}
if n > most {
n = most
}
return n, nil
}
// flag is a boolean argument, false when absent.
func flag(args map[string]any, key string) (bool, error) {
raw, present := args[key]
if !present || raw == nil {
return false, nil
}
b, ok := raw.(bool)
if !ok {
return false, fmt.Errorf("%s must be true or false", key)
}
return b, nil
}
// schema is a tool's input: its properties and the ones it requires.
func schema(properties map[string]any, required ...string) map[string]any {
s := map[string]any{"type": "object", "properties": properties}
if len(required) > 0 {
s["required"] = required
}
return s
}
// unitProps reads a unit's properties as systemctl shows them.
func (m *Machine) unitProps(unit string, props ...string) (map[string]string, error) {
args := []string{"show", unit, "--no-pager"}
for _, p := range props {
args = append(args, "--property="+p)
}
out, err := m.Out("systemctl", args...)
if err != nil {
return nil, err
}
return keyValues(out, "="), nil
}
// keyValues reads `key<sep>value` lines; a line without the separator is skipped.
func keyValues(out, sep string) map[string]string {
kv := map[string]string{}
for _, l := range strings.Split(out, "\n") {
k, v, ok := strings.Cut(l, sep)
if ok {
kv[strings.TrimSpace(k)] = strings.TrimSpace(v)
}
}
return kv
}