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c03694938e
Found by coverity -- CID 1301366.
647 lines
20 KiB
C
647 lines
20 KiB
C
/* Copyright (c) 2014, The Tor Project, Inc. */
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/* See LICENSE for licensing information */
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#include "or.h"
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#include "config.h"
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#include "router.h"
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#include "routerkeys.h"
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#include "torcert.h"
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/**
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* Read an ed25519 key and associated certificates from files beginning with
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* <b>fname</b>, with certificate type <b>cert_type</b>. On failure, return
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* NULL; on success return the keypair.
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*
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* If INIT_ED_KEY_CREATE is set in <b>flags</b>, then create the key (and
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* certificate if requested) if it doesn't exist, and save it to disk.
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*
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* If INIT_ED_KEY_NEEDCERT is set in <b>flags</b>, load/create a certificate
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* too and store it in *<b>cert_out</b>. Fail if the cert can't be
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* found/created. To create a certificate, <b>signing_key</b> must be set to
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* the key that should sign it; <b>now</b> to the current time, and
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* <b>lifetime</b> to the lifetime of the key.
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*
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* If INIT_ED_KEY_REPLACE is set in <b>flags</b>, then create and save new key
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* whether we can read the old one or not.
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*
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* If INIT_ED_KEY_EXTRA_STRONG is set in <b>flags</b>, set the extra_strong
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* flag when creating the secret key.
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*
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* If INIT_ED_KEY_INCLUDE_SIGNING_KEY_IN_CERT is set in <b>flags</b>, and
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* we create a new certificate, create it with the signing key embedded.
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*
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* If INIT_ED_KEY_SPLIT is set in <b>flags</b>, and we create a new key,
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* store the public key in a separate file from the secret key.
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*
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* If INIT_ED_KEY_MISSING_SECRET_OK is set in <b>flags</b>, and we find a
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* public key file but no secret key file, return successfully anyway.
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*
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* If INIT_ED_KEY_OMIT_SECRET is set in <b>flags</b>, do not even try to
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* load or return a secret key (but create and save on if needed).
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*/
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ed25519_keypair_t *
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ed_key_init_from_file(const char *fname, uint32_t flags,
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int severity,
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const ed25519_keypair_t *signing_key,
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time_t now,
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time_t lifetime,
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uint8_t cert_type,
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struct tor_cert_st **cert_out)
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{
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char *secret_fname = NULL;
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char *public_fname = NULL;
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char *cert_fname = NULL;
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int created_pk = 0, created_sk = 0, created_cert = 0;
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const int try_to_load = ! (flags & INIT_ED_KEY_REPLACE);
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char tag[8];
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tor_snprintf(tag, sizeof(tag), "type%d", (int)cert_type);
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tor_cert_t *cert = NULL;
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char *got_tag = NULL;
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ed25519_keypair_t *keypair = tor_malloc_zero(sizeof(ed25519_keypair_t));
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tor_asprintf(&secret_fname, "%s_secret_key", fname);
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tor_asprintf(&public_fname, "%s_public_key", fname);
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tor_asprintf(&cert_fname, "%s_cert", fname);
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/* Try to read the secret key. */
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const int have_secret = try_to_load &&
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!(flags & INIT_ED_KEY_OMIT_SECRET) &&
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ed25519_seckey_read_from_file(&keypair->seckey,
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&got_tag, secret_fname) == 0;
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if (have_secret) {
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if (strcmp(got_tag, tag)) {
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tor_log(severity, LD_OR, "%s has wrong tag", secret_fname);
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goto err;
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}
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/* Derive the public key */
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if (ed25519_public_key_generate(&keypair->pubkey, &keypair->seckey)<0) {
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tor_log(severity, LD_OR, "%s can't produce a public key", secret_fname);
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goto err;
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}
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}
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/* If it's absent and that's okay, try to read the pubkey. */
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int found_public = 0;
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if (!have_secret && try_to_load) {
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tor_free(got_tag);
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found_public = ed25519_pubkey_read_from_file(&keypair->pubkey,
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&got_tag, public_fname) == 0;
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if (found_public && strcmp(got_tag, tag)) {
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tor_log(severity, LD_OR, "%s has wrong tag", public_fname);
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goto err;
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}
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}
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/* If the secret key is absent and it's not allowed to be, fail. */
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if (!have_secret && found_public && !(flags & INIT_ED_KEY_MISSING_SECRET_OK))
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goto err;
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/* If it's absent, and we're not supposed to make a new keypair, fail. */
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if (!have_secret && !found_public && !(flags & INIT_ED_KEY_CREATE))
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goto err;
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/* if it's absent, make a new keypair and save it. */
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if (!have_secret && !found_public) {
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const int split = !! (flags & INIT_ED_KEY_SPLIT);
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tor_free(keypair);
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keypair = ed_key_new(signing_key, flags, now, lifetime,
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cert_type, &cert);
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if (!keypair) {
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tor_log(severity, LD_OR, "Couldn't create keypair");
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goto err;
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}
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created_pk = created_sk = created_cert = 1;
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if (ed25519_seckey_write_to_file(&keypair->seckey, secret_fname, tag) < 0
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||
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(split &&
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ed25519_pubkey_write_to_file(&keypair->pubkey, public_fname, tag) < 0)
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||
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(cert &&
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crypto_write_tagged_contents_to_file(cert_fname, "ed25519v1-cert",
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tag, cert->encoded, cert->encoded_len) < 0)) {
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tor_log(severity, LD_OR, "Couldn't write keys or cert to file.");
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goto err;
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}
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goto done;
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}
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/* If we're not supposed to get a cert, we're done. */
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if (! (flags & INIT_ED_KEY_NEEDCERT))
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goto done;
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/* Read a cert. */
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uint8_t certbuf[256];
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ssize_t cert_body_len = crypto_read_tagged_contents_from_file(
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cert_fname, "ed25519v1-cert",
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&got_tag, certbuf, sizeof(certbuf));
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if (cert_body_len >= 0 && !strcmp(got_tag, tag))
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cert = tor_cert_parse(certbuf, cert_body_len);
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/* If we got it, check it to the extent we can. */
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int bad_cert = 0;
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if (! cert) {
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tor_log(severity, LD_OR, "Cert was unparseable");
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bad_cert = 1;
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} else if (!tor_memeq(cert->signed_key.pubkey, keypair->pubkey.pubkey,
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ED25519_PUBKEY_LEN)) {
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tor_log(severity, LD_OR, "Cert was for wrong key");
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bad_cert = 1;
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} else if (tor_cert_checksig(cert, &signing_key->pubkey, now) < 0 &&
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(signing_key || cert->cert_expired)) {
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tor_log(severity, LD_OR, "Can't check certificate");
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bad_cert = 1;
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}
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if (bad_cert) {
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tor_cert_free(cert);
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cert = NULL;
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}
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/* If we got a cert, we're done. */
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if (cert)
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goto done;
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/* If we didn't get a cert, and we're not supposed to make one, fail. */
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if (!signing_key || !(flags & INIT_ED_KEY_CREATE))
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goto err;
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/* We have keys but not a certificate, so make one. */
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uint32_t cert_flags = 0;
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if (flags & INIT_ED_KEY_INCLUDE_SIGNING_KEY_IN_CERT)
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cert_flags |= CERT_FLAG_INCLUDE_SIGNING_KEY;
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cert = tor_cert_create(signing_key, cert_type,
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&keypair->pubkey,
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now, lifetime,
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cert_flags);
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if (! cert)
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goto err;
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/* Write it to disk. */
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created_cert = 1;
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if (crypto_write_tagged_contents_to_file(cert_fname, "ed25519v1-cert",
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tag, cert->encoded, cert->encoded_len) < 0) {
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tor_log(severity, LD_OR, "Couldn't write cert to disk.");
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goto err;
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}
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done:
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if (cert_out)
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*cert_out = cert;
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else
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tor_cert_free(cert);
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goto cleanup;
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err:
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memwipe(keypair, 0, sizeof(*keypair));
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tor_free(keypair);
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tor_cert_free(cert);
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if (cert_out)
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*cert_out = NULL;
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if (created_sk)
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unlink(secret_fname);
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if (created_pk)
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unlink(public_fname);
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if (created_cert)
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unlink(cert_fname);
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cleanup:
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tor_free(secret_fname);
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tor_free(public_fname);
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tor_free(cert_fname);
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return keypair;
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}
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/**
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* Create a new signing key and (optionally) certficiate; do not read or write
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* from disk. See ed_key_init_from_file() for more information.
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*/
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ed25519_keypair_t *
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ed_key_new(const ed25519_keypair_t *signing_key,
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uint32_t flags,
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time_t now,
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time_t lifetime,
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uint8_t cert_type,
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struct tor_cert_st **cert_out)
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{
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if (cert_out)
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*cert_out = NULL;
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const int extra_strong = !! (flags & INIT_ED_KEY_EXTRA_STRONG);
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ed25519_keypair_t *keypair = tor_malloc_zero(sizeof(ed25519_keypair_t));
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if (ed25519_keypair_generate(keypair, extra_strong) < 0)
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goto err;
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if (! (flags & INIT_ED_KEY_NEEDCERT))
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return keypair;
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tor_assert(signing_key);
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tor_assert(cert_out);
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uint32_t cert_flags = 0;
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if (flags & INIT_ED_KEY_INCLUDE_SIGNING_KEY_IN_CERT)
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cert_flags |= CERT_FLAG_INCLUDE_SIGNING_KEY;
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tor_cert_t *cert = tor_cert_create(signing_key, cert_type,
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&keypair->pubkey,
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now, lifetime,
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cert_flags);
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if (! cert)
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goto err;
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*cert_out = cert;
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return keypair;
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err:
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tor_free(keypair);
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return NULL;
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}
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static ed25519_keypair_t *master_identity_key = NULL;
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static ed25519_keypair_t *master_signing_key = NULL;
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static ed25519_keypair_t *current_auth_key = NULL;
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static tor_cert_t *signing_key_cert = NULL;
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static tor_cert_t *link_cert_cert = NULL;
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static tor_cert_t *auth_key_cert = NULL;
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static uint8_t *rsa_ed_crosscert = NULL;
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static size_t rsa_ed_crosscert_len = 0;
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/**
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* Running as a server: load, reload, or refresh our ed25519 keys and
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* certificates, creating and saving new ones as needed.
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*/
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int
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load_ed_keys(const or_options_t *options, time_t now)
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{
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ed25519_keypair_t *id = NULL;
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ed25519_keypair_t *sign = NULL;
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ed25519_keypair_t *auth = NULL;
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const ed25519_keypair_t *sign_signing_key_with_id = NULL;
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const ed25519_keypair_t *use_signing = NULL;
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const tor_cert_t *check_signing_cert = NULL;
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tor_cert_t *sign_cert = NULL;
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tor_cert_t *auth_cert = NULL;
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#define FAIL(msg) do { \
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log_warn(LD_OR, (msg)); \
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goto err; \
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} while (0)
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#define SET_KEY(key, newval) do { \
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ed25519_keypair_free(key); \
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key = (newval); \
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} while (0)
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#define SET_CERT(cert, newval) do { \
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tor_cert_free(cert); \
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cert = (newval); \
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} while (0)
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#define EXPIRES_SOON(cert, interval) \
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(!(cert) || (cert)->valid_until < now + (interval))
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/* XXXX support encrypted identity keys fully */
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/* First try to get the signing key to see how it is. */
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if (master_signing_key) {
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check_signing_cert = signing_key_cert;
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use_signing = master_signing_key;
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} else {
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sign = ed_key_init_from_file(
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options_get_datadir_fname2(options, "keys", "ed25519_signing"),
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INIT_ED_KEY_NEEDCERT|
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INIT_ED_KEY_INCLUDE_SIGNING_KEY_IN_CERT,
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LOG_INFO,
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NULL, 0, 0, CERT_TYPE_ID_SIGNING, &sign_cert);
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check_signing_cert = sign_cert;
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use_signing = sign;
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}
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const int need_new_signing_key =
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NULL == use_signing ||
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EXPIRES_SOON(check_signing_cert, 0);
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const int want_new_signing_key =
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need_new_signing_key ||
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EXPIRES_SOON(check_signing_cert, options->TestingSigningKeySlop);
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{
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uint32_t flags =
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(INIT_ED_KEY_CREATE|INIT_ED_KEY_SPLIT|
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INIT_ED_KEY_EXTRA_STRONG);
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if (! need_new_signing_key)
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flags |= INIT_ED_KEY_MISSING_SECRET_OK;
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if (! want_new_signing_key)
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flags |= INIT_ED_KEY_OMIT_SECRET;
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id = ed_key_init_from_file(
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options_get_datadir_fname2(options, "keys", "ed25519_master_id"),
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flags,
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LOG_WARN, NULL, 0, 0, 0, NULL);
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if (!id)
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FAIL("Missing identity key");
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if (tor_mem_is_zero((char*)id->seckey.seckey, sizeof(id->seckey)))
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sign_signing_key_with_id = NULL;
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else
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sign_signing_key_with_id = id;
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}
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if (need_new_signing_key && NULL == sign_signing_key_with_id)
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FAIL("Can't load master key make a new signing key.");
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if (want_new_signing_key && sign_signing_key_with_id) {
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uint32_t flags = (INIT_ED_KEY_CREATE|
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INIT_ED_KEY_REPLACE|
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INIT_ED_KEY_EXTRA_STRONG|
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INIT_ED_KEY_NEEDCERT|
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INIT_ED_KEY_INCLUDE_SIGNING_KEY_IN_CERT);
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sign = ed_key_init_from_file(
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options_get_datadir_fname2(options, "keys", "ed25519_signing"),
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flags, LOG_WARN,
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sign_signing_key_with_id, now,
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options->SigningKeyLifetime,
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CERT_TYPE_ID_SIGNING, &sign_cert);
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if (!sign)
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FAIL("Missing signing key");
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use_signing = sign;
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} else if (want_new_signing_key) {
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static ratelim_t missing_master = RATELIM_INIT(3600);
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log_fn_ratelim(&missing_master, LOG_WARN, LD_OR,
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"Signing key will expire soon, but I can't load the "
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"master key to sign a new one!");
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}
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tor_assert(use_signing);
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/* At this point we no longer need our secret identity key. So wipe
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* it, if we loaded it in the first place. */
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memwipe(id->seckey.seckey, 0, sizeof(id->seckey));
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if (!rsa_ed_crosscert && server_mode(options)) {
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uint8_t *crosscert;
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ssize_t crosscert_len = tor_make_rsa_ed25519_crosscert(&id->pubkey,
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get_server_identity_key(),
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now+10*365*86400,/*XXXX*/
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&crosscert);
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rsa_ed_crosscert_len = crosscert_len;
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rsa_ed_crosscert = crosscert;
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}
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if (!current_auth_key ||
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EXPIRES_SOON(auth_key_cert, options->TestingAuthKeySlop)) {
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auth = ed_key_new(use_signing, INIT_ED_KEY_NEEDCERT,
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now,
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options->TestingAuthKeyLifetime,
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CERT_TYPE_SIGNING_AUTH, &auth_cert);
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if (!auth)
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FAIL("Can't create auth key");
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}
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/* We've generated or loaded everything. Put them in memory. */
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if (! master_identity_key) {
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SET_KEY(master_identity_key, id);
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} else {
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tor_free(id);
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}
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if (sign) {
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SET_KEY(master_signing_key, sign);
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SET_CERT(signing_key_cert, sign_cert);
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}
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if (auth) {
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SET_KEY(current_auth_key, auth);
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SET_CERT(auth_key_cert, auth_cert);
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}
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return 0;
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err:
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ed25519_keypair_free(id);
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ed25519_keypair_free(sign);
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ed25519_keypair_free(auth);
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tor_cert_free(sign_cert);
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tor_cert_free(auth_cert);
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return -1;
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}
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/**DOCDOC*/
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int
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generate_ed_link_cert(const or_options_t *options, time_t now)
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{
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const tor_x509_cert_t *link = NULL, *id = NULL;
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tor_cert_t *link_cert = NULL;
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if (tor_tls_get_my_certs(1, &link, &id) < 0 || link == NULL) {
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log_warn(LD_OR, "Can't get my x509 link cert.");
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return -1;
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}
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const digests_t *digests = tor_x509_cert_get_cert_digests(link);
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if (link_cert_cert &&
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! EXPIRES_SOON(link_cert_cert, options->TestingLinkKeySlop) &&
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fast_memeq(digests->d[DIGEST_SHA256], link_cert_cert->signed_key.pubkey,
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DIGEST256_LEN)) {
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return 0;
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}
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ed25519_public_key_t dummy_key;
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memcpy(dummy_key.pubkey, digests->d[DIGEST_SHA256], DIGEST256_LEN);
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link_cert = tor_cert_create(get_master_signing_keypair(),
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CERT_TYPE_SIGNING_LINK,
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&dummy_key,
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now,
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options->TestingLinkCertLifetime, 0);
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if (link_cert) {
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SET_CERT(link_cert_cert, link_cert);
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}
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return 0;
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|
}
|
|
|
|
#undef FAIL
|
|
#undef SET_KEY
|
|
#undef SET_CERT
|
|
|
|
int
|
|
should_make_new_ed_keys(const or_options_t *options, const time_t now)
|
|
{
|
|
if (!master_identity_key ||
|
|
!master_signing_key ||
|
|
!current_auth_key ||
|
|
!link_cert_cert ||
|
|
EXPIRES_SOON(signing_key_cert, options->TestingSigningKeySlop) ||
|
|
EXPIRES_SOON(auth_key_cert, options->TestingAuthKeySlop) ||
|
|
EXPIRES_SOON(link_cert_cert, options->TestingLinkKeySlop))
|
|
return 1;
|
|
|
|
const tor_x509_cert_t *link = NULL, *id = NULL;
|
|
|
|
if (tor_tls_get_my_certs(1, &link, &id) < 0 || link == NULL)
|
|
return 1;
|
|
|
|
const digests_t *digests = tor_x509_cert_get_cert_digests(link);
|
|
|
|
if (!fast_memeq(digests->d[DIGEST_SHA256],
|
|
link_cert_cert->signed_key.pubkey,
|
|
DIGEST256_LEN)) {
|
|
return 1;
|
|
}
|
|
|
|
return 0;
|
|
}
|
|
|
|
#undef EXPIRES_SOON
|
|
|
|
const ed25519_public_key_t *
|
|
get_master_identity_key(void)
|
|
{
|
|
if (!master_identity_key)
|
|
return NULL;
|
|
return &master_identity_key->pubkey;
|
|
}
|
|
|
|
const ed25519_keypair_t *
|
|
get_master_signing_keypair(void)
|
|
{
|
|
return master_signing_key;
|
|
}
|
|
|
|
const struct tor_cert_st *
|
|
get_master_signing_key_cert(void)
|
|
{
|
|
return signing_key_cert;
|
|
}
|
|
|
|
const ed25519_keypair_t *
|
|
get_current_auth_keypair(void)
|
|
{
|
|
return current_auth_key;
|
|
}
|
|
|
|
const tor_cert_t *
|
|
get_current_link_cert_cert(void)
|
|
{
|
|
return link_cert_cert;
|
|
}
|
|
|
|
const tor_cert_t *
|
|
get_current_auth_key_cert(void)
|
|
{
|
|
return auth_key_cert;
|
|
}
|
|
|
|
void
|
|
get_master_rsa_crosscert(const uint8_t **cert_out,
|
|
size_t *size_out)
|
|
{
|
|
*cert_out = rsa_ed_crosscert;
|
|
*size_out = rsa_ed_crosscert_len;
|
|
}
|
|
|
|
/** Construct cross-certification for the master identity key with
|
|
* the ntor onion key. Store the sign of the corresponding ed25519 public key
|
|
* in *<b>sign_out</b>. */
|
|
tor_cert_t *
|
|
make_ntor_onion_key_crosscert(const curve25519_keypair_t *onion_key,
|
|
const ed25519_public_key_t *master_id_key, time_t now, time_t lifetime,
|
|
int *sign_out)
|
|
{
|
|
tor_cert_t *cert = NULL;
|
|
ed25519_keypair_t ed_onion_key;
|
|
|
|
if (ed25519_keypair_from_curve25519_keypair(&ed_onion_key, sign_out,
|
|
onion_key) < 0)
|
|
goto end;
|
|
|
|
cert = tor_cert_create(&ed_onion_key, CERT_TYPE_ONION_ID, master_id_key,
|
|
now, lifetime, 0);
|
|
|
|
end:
|
|
memwipe(&ed_onion_key, 0, sizeof(ed_onion_key));
|
|
return cert;
|
|
}
|
|
|
|
/** Construct and return an RSA signature for the TAP onion key to
|
|
* cross-certify the RSA and Ed25519 identity keys. Set <b>len_out</b> to its
|
|
* length. */
|
|
uint8_t *
|
|
make_tap_onion_key_crosscert(const crypto_pk_t *onion_key,
|
|
const ed25519_public_key_t *master_id_key,
|
|
const crypto_pk_t *rsa_id_key,
|
|
int *len_out)
|
|
{
|
|
uint8_t signature[PK_BYTES];
|
|
uint8_t signed_data[DIGEST_LEN + ED25519_PUBKEY_LEN];
|
|
|
|
*len_out = 0;
|
|
crypto_pk_get_digest(rsa_id_key, (char*)signed_data);
|
|
memcpy(signed_data + DIGEST_LEN, master_id_key->pubkey, ED25519_PUBKEY_LEN);
|
|
|
|
int r = crypto_pk_private_sign(onion_key,
|
|
(char*)signature, sizeof(signature),
|
|
(const char*)signed_data, sizeof(signed_data));
|
|
if (r < 0)
|
|
return NULL;
|
|
|
|
*len_out = r;
|
|
|
|
return tor_memdup(signature, r);
|
|
}
|
|
|
|
/** Check whether an RSA-TAP cross-certification is correct. Return 0 if it
|
|
* is, -1 if it isn't. */
|
|
int
|
|
check_tap_onion_key_crosscert(const uint8_t *crosscert,
|
|
int crosscert_len,
|
|
const crypto_pk_t *onion_pkey,
|
|
const ed25519_public_key_t *master_id_pkey,
|
|
const uint8_t *rsa_id_digest)
|
|
{
|
|
uint8_t *cc = tor_malloc(crypto_pk_keysize(onion_pkey));
|
|
int cc_len =
|
|
crypto_pk_public_checksig(onion_pkey,
|
|
(char*)cc,
|
|
crypto_pk_keysize(onion_pkey),
|
|
(const char*)crosscert,
|
|
crosscert_len);
|
|
if (cc_len < 0) {
|
|
goto err;
|
|
}
|
|
if (cc_len < DIGEST_LEN + ED25519_PUBKEY_LEN) {
|
|
log_warn(LD_DIR, "Short signature on cross-certification with TAP key");
|
|
goto err;
|
|
}
|
|
if (tor_memneq(cc, rsa_id_digest, DIGEST_LEN) ||
|
|
tor_memneq(cc + DIGEST_LEN, master_id_pkey->pubkey,
|
|
ED25519_PUBKEY_LEN)) {
|
|
log_warn(LD_DIR, "Incorrect cross-certification with TAP key");
|
|
goto err;
|
|
}
|
|
|
|
tor_free(cc);
|
|
return 0;
|
|
err:
|
|
tor_free(cc);
|
|
return -1;
|
|
}
|
|
|
|
void
|
|
routerkeys_free_all(void)
|
|
{
|
|
ed25519_keypair_free(master_identity_key);
|
|
ed25519_keypair_free(master_signing_key);
|
|
ed25519_keypair_free(current_auth_key);
|
|
tor_cert_free(signing_key_cert);
|
|
tor_cert_free(link_cert_cert);
|
|
tor_cert_free(auth_key_cert);
|
|
|
|
master_identity_key = master_signing_key = NULL;
|
|
current_auth_key = NULL;
|
|
signing_key_cert = link_cert_cert = auth_key_cert = NULL;
|
|
}
|
|
|