ff8945fd2f
Add a new module containing key-related functions and schemata from all over, code moved is not changed as much as possible. Requires adapting some 'use' statements across proxmox-backup-client and putting the XDG helpers quite cozily into proxmox_client_tools/mod.rs Signed-off-by: Stefan Reiter <s.reiter@proxmox.com>
499 lines
16 KiB
Rust
499 lines
16 KiB
Rust
use std::convert::TryFrom;
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use std::path::PathBuf;
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use anyhow::{bail, format_err, Error};
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use serde_json::Value;
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use proxmox::api::api;
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use proxmox::api::cli::{
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format_and_print_result_full, get_output_format, CliCommand, CliCommandMap, ColumnConfig,
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OUTPUT_FORMAT,
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};
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use proxmox::api::router::ReturnType;
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use proxmox::sys::linux::tty;
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use proxmox::tools::fs::{file_get_contents, replace_file, CreateOptions};
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use proxmox_backup::{
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api2::types::{Kdf, KeyInfo, RsaPubKeyInfo, PASSWORD_HINT_SCHEMA},
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backup::{rsa_decrypt_key_config, KeyConfig},
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tools,
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tools::paperkey::{generate_paper_key, PaperkeyFormat},
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};
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use crate::proxmox_client_tools::key_source::{
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find_default_encryption_key, find_default_master_pubkey, get_encryption_key_password,
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place_default_encryption_key, place_default_master_pubkey,
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};
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#[api(
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input: {
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properties: {
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kdf: {
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type: Kdf,
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optional: true,
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},
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path: {
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description:
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"Output file. Without this the key will become the new default encryption key.",
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optional: true,
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},
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hint: {
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schema: PASSWORD_HINT_SCHEMA,
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optional: true,
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},
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},
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},
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)]
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/// Create a new encryption key.
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fn create(kdf: Option<Kdf>, path: Option<String>, hint: Option<String>) -> Result<(), Error> {
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let path = match path {
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Some(path) => PathBuf::from(path),
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None => {
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let path = place_default_encryption_key()?;
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println!("creating default key at: {:?}", path);
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path
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}
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};
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let kdf = kdf.unwrap_or_default();
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let mut key = [0u8; 32];
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proxmox::sys::linux::fill_with_random_data(&mut key)?;
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match kdf {
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Kdf::None => {
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if hint.is_some() {
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bail!("password hint not allowed for Kdf::None");
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}
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let key_config = KeyConfig::without_password(key)?;
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key_config.store(path, false)?;
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}
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Kdf::Scrypt | Kdf::PBKDF2 => {
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// always read passphrase from tty
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if !tty::stdin_isatty() {
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bail!("unable to read passphrase - no tty");
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}
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let password = tty::read_and_verify_password("Encryption Key Password: ")?;
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let mut key_config = KeyConfig::with_key(&key, &password, kdf)?;
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key_config.hint = hint;
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key_config.store(&path, false)?;
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}
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}
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Ok(())
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}
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#[api(
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input: {
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properties: {
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"master-keyfile": {
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description: "(Private) master key to use.",
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},
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"encrypted-keyfile": {
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description: "RSA-encrypted keyfile to import.",
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},
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kdf: {
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type: Kdf,
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optional: true,
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},
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"path": {
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description:
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"Output file. Without this the key will become the new default encryption key.",
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optional: true,
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},
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hint: {
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schema: PASSWORD_HINT_SCHEMA,
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optional: true,
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},
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},
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},
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)]
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/// Import an encrypted backup of an encryption key using a (private) master key.
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async fn import_with_master_key(
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master_keyfile: String,
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encrypted_keyfile: String,
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kdf: Option<Kdf>,
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path: Option<String>,
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hint: Option<String>,
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) -> Result<(), Error> {
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let path = match path {
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Some(path) => PathBuf::from(path),
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None => {
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let path = place_default_encryption_key()?;
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if path.exists() {
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bail!("Please remove default encryption key at {:?} before importing to default location (or choose a non-default one).", path);
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}
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println!("Importing key to default location at: {:?}", path);
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path
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}
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};
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let encrypted_key = file_get_contents(&encrypted_keyfile)?;
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let master_key = file_get_contents(&master_keyfile)?;
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let password = tty::read_password("Master Key Password: ")?;
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let master_key = openssl::pkey::PKey::private_key_from_pem_passphrase(&master_key, &password)
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.map_err(|err| format_err!("failed to read PEM-formatted private key - {}", err))?
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.rsa()
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.map_err(|err| format_err!("not a valid private RSA key - {}", err))?;
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let (key, created, _fingerprint) =
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rsa_decrypt_key_config(master_key, &encrypted_key, &get_encryption_key_password)?;
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let kdf = kdf.unwrap_or_default();
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match kdf {
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Kdf::None => {
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if hint.is_some() {
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bail!("password hint not allowed for Kdf::None");
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}
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let mut key_config = KeyConfig::without_password(key)?;
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key_config.created = created; // keep original value
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key_config.store(path, true)?;
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}
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Kdf::Scrypt | Kdf::PBKDF2 => {
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let password = tty::read_and_verify_password("New Password: ")?;
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let mut new_key_config = KeyConfig::with_key(&key, &password, kdf)?;
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new_key_config.created = created; // keep original value
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new_key_config.hint = hint;
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new_key_config.store(path, true)?;
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}
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}
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Ok(())
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}
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#[api(
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input: {
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properties: {
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kdf: {
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type: Kdf,
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optional: true,
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},
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path: {
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description: "Key file. Without this the default key's password will be changed.",
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optional: true,
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},
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hint: {
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schema: PASSWORD_HINT_SCHEMA,
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optional: true,
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},
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},
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},
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)]
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/// Change the encryption key's password.
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fn change_passphrase(
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kdf: Option<Kdf>,
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path: Option<String>,
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hint: Option<String>,
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) -> Result<(), Error> {
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let path = match path {
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Some(path) => PathBuf::from(path),
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None => {
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let path = find_default_encryption_key()?.ok_or_else(|| {
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format_err!("no encryption file provided and no default file found")
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})?;
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println!("updating default key at: {:?}", path);
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path
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}
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};
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let kdf = kdf.unwrap_or_default();
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if !tty::stdin_isatty() {
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bail!("unable to change passphrase - no tty");
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}
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let key_config = KeyConfig::load(&path)?;
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let (key, created, _fingerprint) = key_config.decrypt(&get_encryption_key_password)?;
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match kdf {
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Kdf::None => {
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if hint.is_some() {
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bail!("password hint not allowed for Kdf::None");
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}
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let mut key_config = KeyConfig::without_password(key)?;
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key_config.created = created; // keep original value
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key_config.store(&path, true)?;
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}
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Kdf::Scrypt | Kdf::PBKDF2 => {
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let password = tty::read_and_verify_password("New Password: ")?;
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let mut new_key_config = KeyConfig::with_key(&key, &password, kdf)?;
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new_key_config.created = created; // keep original value
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new_key_config.hint = hint;
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new_key_config.store(&path, true)?;
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}
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}
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Ok(())
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}
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#[api(
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input: {
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properties: {
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path: {
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description: "Key file. Without this the default key's metadata will be shown.",
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optional: true,
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},
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"output-format": {
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schema: OUTPUT_FORMAT,
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optional: true,
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},
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},
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},
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)]
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/// Print the encryption key's metadata.
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fn show_key(path: Option<String>, param: Value) -> Result<(), Error> {
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let path = match path {
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Some(path) => PathBuf::from(path),
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None => find_default_encryption_key()?
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.ok_or_else(|| format_err!("no encryption file provided and no default file found"))?,
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};
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let config: KeyConfig = serde_json::from_slice(&file_get_contents(path.clone())?)?;
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let output_format = get_output_format(¶m);
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let mut info: KeyInfo = (&config).into();
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info.path = Some(format!("{:?}", path));
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let options = proxmox::api::cli::default_table_format_options()
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.column(ColumnConfig::new("path"))
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.column(ColumnConfig::new("kdf"))
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.column(ColumnConfig::new("created").renderer(tools::format::render_epoch))
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.column(ColumnConfig::new("modified").renderer(tools::format::render_epoch))
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.column(ColumnConfig::new("fingerprint"))
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.column(ColumnConfig::new("hint"));
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let return_type = ReturnType::new(false, &KeyInfo::API_SCHEMA);
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format_and_print_result_full(
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&mut serde_json::to_value(info)?,
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&return_type,
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&output_format,
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&options,
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);
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Ok(())
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}
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#[api(
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input: {
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properties: {
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path: {
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description: "Path to the PEM formatted RSA public key.",
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},
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},
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},
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)]
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/// Import an RSA public key used to put an encrypted version of the symmetric backup encryption
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/// key onto the backup server along with each backup.
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///
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/// The imported key will be used as default master key for future invocations by the same local
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/// user.
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fn import_master_pubkey(path: String) -> Result<(), Error> {
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let pem_data = file_get_contents(&path)?;
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match openssl::pkey::PKey::public_key_from_pem(&pem_data) {
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Ok(key) => {
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let info = RsaPubKeyInfo::try_from(key.rsa()?)?;
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println!("Found following key at {:?}", path);
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println!("Modulus: {}", info.modulus);
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println!("Exponent: {}", info.exponent);
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println!("Length: {}", info.length);
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}
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Err(err) => bail!("Unable to decode PEM data - {}", err),
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};
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let target_path = place_default_master_pubkey()?;
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replace_file(&target_path, &pem_data, CreateOptions::new())?;
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println!("Imported public master key to {:?}", target_path);
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Ok(())
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}
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#[api]
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/// Create an RSA public/private key pair used to put an encrypted version of the symmetric backup
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/// encryption key onto the backup server along with each backup.
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fn create_master_key() -> Result<(), Error> {
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// we need a TTY to query the new password
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if !tty::stdin_isatty() {
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bail!("unable to create master key - no tty");
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}
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let bits = 4096;
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println!("Generating {}-bit RSA key..", bits);
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let rsa = openssl::rsa::Rsa::generate(bits)?;
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let public =
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openssl::rsa::Rsa::from_public_components(rsa.n().to_owned()?, rsa.e().to_owned()?)?;
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let info = RsaPubKeyInfo::try_from(public)?;
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println!("Modulus: {}", info.modulus);
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println!("Exponent: {}", info.exponent);
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println!();
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let pkey = openssl::pkey::PKey::from_rsa(rsa)?;
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let password = String::from_utf8(tty::read_and_verify_password("Master Key Password: ")?)?;
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let pub_key: Vec<u8> = pkey.public_key_to_pem()?;
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let filename_pub = "master-public.pem";
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println!("Writing public master key to {}", filename_pub);
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replace_file(filename_pub, pub_key.as_slice(), CreateOptions::new())?;
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let cipher = openssl::symm::Cipher::aes_256_cbc();
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let priv_key: Vec<u8> =
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pkey.private_key_to_pem_pkcs8_passphrase(cipher, password.as_bytes())?;
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let filename_priv = "master-private.pem";
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println!("Writing private master key to {}", filename_priv);
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replace_file(filename_priv, priv_key.as_slice(), CreateOptions::new())?;
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Ok(())
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}
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#[api(
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input: {
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properties: {
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path: {
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description: "Path to the PEM formatted RSA public key. Default location will be used if not specified.",
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optional: true,
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},
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"output-format": {
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schema: OUTPUT_FORMAT,
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optional: true,
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},
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},
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},
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)]
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/// List information about master key
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fn show_master_pubkey(path: Option<String>, param: Value) -> Result<(), Error> {
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let path = match path {
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Some(path) => PathBuf::from(path),
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None => find_default_master_pubkey()?
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.ok_or_else(|| format_err!("No path specified and no default master key available."))?,
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};
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let path = path.canonicalize()?;
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let output_format = get_output_format(¶m);
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let pem_data = file_get_contents(path.clone())?;
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let rsa = openssl::rsa::Rsa::public_key_from_pem(&pem_data)?;
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let mut info = RsaPubKeyInfo::try_from(rsa)?;
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info.path = Some(path.display().to_string());
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let options = proxmox::api::cli::default_table_format_options()
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.column(ColumnConfig::new("path"))
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.column(ColumnConfig::new("modulus"))
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.column(ColumnConfig::new("exponent"))
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.column(ColumnConfig::new("length"));
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let return_type = ReturnType::new(false, &RsaPubKeyInfo::API_SCHEMA);
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format_and_print_result_full(
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&mut serde_json::to_value(info)?,
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&return_type,
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&output_format,
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&options,
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);
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Ok(())
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}
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#[api(
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input: {
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properties: {
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path: {
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description: "Key file. Without this the default key's will be used.",
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optional: true,
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},
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subject: {
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description: "Include the specified subject as title text.",
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optional: true,
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},
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"output-format": {
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type: PaperkeyFormat,
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optional: true,
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},
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},
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},
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)]
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/// Generate a printable, human readable text file containing the encryption key.
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///
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/// This also includes a scanable QR code for fast key restore.
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fn paper_key(
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path: Option<String>,
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subject: Option<String>,
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output_format: Option<PaperkeyFormat>,
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) -> Result<(), Error> {
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let path = match path {
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Some(path) => PathBuf::from(path),
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None => find_default_encryption_key()?
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.ok_or_else(|| format_err!("no encryption file provided and no default file found"))?,
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};
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let data = file_get_contents(&path)?;
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let data = String::from_utf8(data)?;
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generate_paper_key(std::io::stdout(), &data, subject, output_format)
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}
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pub fn cli() -> CliCommandMap {
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let key_create_cmd_def = CliCommand::new(&API_METHOD_CREATE)
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.arg_param(&["path"])
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.completion_cb("path", tools::complete_file_name);
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let key_import_with_master_key_cmd_def = CliCommand::new(&API_METHOD_IMPORT_WITH_MASTER_KEY)
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.arg_param(&["master-keyfile"])
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.completion_cb("master-keyfile", tools::complete_file_name)
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.arg_param(&["encrypted-keyfile"])
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.completion_cb("encrypted-keyfile", tools::complete_file_name)
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.arg_param(&["path"])
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.completion_cb("path", tools::complete_file_name);
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let key_change_passphrase_cmd_def = CliCommand::new(&API_METHOD_CHANGE_PASSPHRASE)
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.arg_param(&["path"])
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.completion_cb("path", tools::complete_file_name);
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let key_create_master_key_cmd_def = CliCommand::new(&API_METHOD_CREATE_MASTER_KEY);
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let key_import_master_pubkey_cmd_def = CliCommand::new(&API_METHOD_IMPORT_MASTER_PUBKEY)
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.arg_param(&["path"])
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.completion_cb("path", tools::complete_file_name);
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let key_show_master_pubkey_cmd_def = CliCommand::new(&API_METHOD_SHOW_MASTER_PUBKEY)
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.arg_param(&["path"])
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.completion_cb("path", tools::complete_file_name);
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let key_show_cmd_def = CliCommand::new(&API_METHOD_SHOW_KEY)
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.arg_param(&["path"])
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.completion_cb("path", tools::complete_file_name);
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let paper_key_cmd_def = CliCommand::new(&API_METHOD_PAPER_KEY)
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.arg_param(&["path"])
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.completion_cb("path", tools::complete_file_name);
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CliCommandMap::new()
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.insert("create", key_create_cmd_def)
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.insert("import-with-master-key", key_import_with_master_key_cmd_def)
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.insert("create-master-key", key_create_master_key_cmd_def)
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.insert("import-master-pubkey", key_import_master_pubkey_cmd_def)
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.insert("change-passphrase", key_change_passphrase_cmd_def)
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.insert("show", key_show_cmd_def)
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.insert("show-master-pubkey", key_show_master_pubkey_cmd_def)
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.insert("paperkey", paper_key_cmd_def)
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}
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