The entry point for adopting something already running, and the half that was missing. The store has carried the distinction since the beginning — a module secret records whether it was `made` or `accepted`, and refuses to invent a replacement for the second — and AcceptSecretForModule existed, with exactly one caller: the broker account issued to a build machine. Nothing else could write one. Without it every module secret is generated, which against a database that already exists puts 32 random bytes where a working credential was. The machine applies it, reports success, and whatever reads it fails to authenticate somewhere else entirely, with the mesh insisting the secret was delivered — which it was. The value is read from a file or from standard input, never from an argument: a value on the command line is in the shell's history and in the process list. Same path a model-access key already takes, and no new dependency — the first version reached for x/term and the existing one needed nothing. Sealed on the way in, plaintext discarded, and not printed back. The only difference from a generated secret is where the value came from. Two rules with a test each, and the second is the one that would have been got wrong: only the line ending is removed, never surrounding space. Trimming both ends is the obvious thing and would deliver a password chosen with a leading space as a different password, silently. Both were briefly untested for different reasons — the trimming lived where no test could reach it, and then a -run filter matched neither test. Extracted, and injected against the whole suite.
120 lines
4.4 KiB
Go
120 lines
4.4 KiB
Go
package main
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import (
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"bufio"
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"context"
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"errors"
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"flag"
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"fmt"
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"io"
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"os"
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"strings"
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)
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// secretCommand gives the mesh a value it must carry and could not have invented.
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//
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// **Every other secret in this mesh is one the mesh made** — generated, sealed to the machine that
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// will use it, and never readable again. That is right for something coming into existence, and
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// wrong for something that already exists: a database created last year has the password it was
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// created with, and generating a new one puts 32 random bytes where a working credential was.
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// The machine applies it, reports success, and whatever reads it fails to authenticate somewhere
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// else entirely — with the mesh insisting the secret was delivered, which it was.
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//
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// So this is the entry point for **adopting** something already running. The store has carried
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// the distinction since the beginning: a module secret records whether it was `made` or
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// `accepted`, and refuses to invent a replacement for the second. Nothing until now could write
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// one, so the only accepted secret in the mesh was the broker account issued to a build machine.
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//
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// The value is sealed on the way in and the plaintext discarded, exactly as a generated one is.
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// **The only difference between the two is where the value came from.**
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func secretCommand(ctx context.Context, args []string) error {
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if len(args) == 0 || args[0] != "accept" {
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return errors.New("secret accept <node> <module> <name> [--from <file>]")
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}
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set := flag.NewFlagSet("secret accept", flag.ContinueOnError)
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from := set.String("from", "",
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"read the value from this file instead of asking (use - for standard input)")
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if err := set.Parse(args[1:]); err != nil {
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return err
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}
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rest := set.Args()
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if len(rest) != 3 {
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return errors.New("secret accept <node> <module> <name> [--from <file>]")
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}
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node, module, name := rest[0], rest[1], rest[2]
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value, err := valueFor(node, module, name, *from)
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if err != nil {
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return err
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}
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value = asSupplied(value)
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if value == "" {
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return errors.New("there is nothing to seal")
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}
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open, err := openStores(ctx)
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if err != nil {
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return err
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}
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defer open.Close()
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if err := open.inventory.AcceptSecretForModule(ctx, node, module, name, value); err != nil {
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return err
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}
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// Not printed back, and there is nowhere it could be printed from: it is sealed to that
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// machine and the mesh cannot read it again.
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fmt.Printf("%s on %s now holds %q, sealed to that machine.\n", module, node, name)
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fmt.Printf(" the mesh cannot read it back, and will not replace it with one of its own\n")
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fmt.Printf(" run `push %s` to send it\n", node)
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return nil
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}
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// asSupplied is the value with its line ending removed and nothing else.
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//
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// **A file has a trailing newline and a password does not**, so the ending goes — a credential
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// wrong by one byte fails in a way nobody connects to how it was supplied.
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//
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// **And only the ending.** Trimming both ends is the obvious thing and it is wrong: a password
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// chosen with a leading space is one the mesh would then deliver as a different password, silently,
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// with the operator certain they had supplied it correctly.
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func asSupplied(raw string) string {
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return strings.TrimRight(raw, "\r\n")
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}
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// valueFor gets the secret without putting it somewhere it can be read afterwards.
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//
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// **Not an argument, and there is no flag that takes one.** A value on the command line is in the
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// shell's history, in the process list for as long as it runs, and in whatever collects either.
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// The paths here are a file the operator already has, or a prompt that does not echo — the same
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// two ways a model-access key is supplied (novox/hq ADR 0024).
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func valueFor(node, module, name, from string) (string, error) {
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switch {
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case from == "-":
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body, err := io.ReadAll(os.Stdin)
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if err != nil {
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return "", err
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}
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return string(body), nil
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case from != "":
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body, err := os.ReadFile(from)
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if err != nil {
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return "", err
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}
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return string(body), nil
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default:
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// The same path a model-access key takes, and for the same reason: a value given as an
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// argument is in the shell's history and in the process list. Read from standard input,
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// echoed nowhere by this program.
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fmt.Fprintf(os.Stderr,
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"reading %s's %q for %s from standard input; it is not echoed anywhere\n",
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module, name, node)
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line, err := bufio.NewReader(os.Stdin).ReadString('\n')
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if err != nil && line == "" {
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return "", fmt.Errorf("nothing was given on standard input: %w", err)
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}
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return line, nil
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}
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}
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