зеркало из https://github.com/github/putty.git
125 строки
4.0 KiB
C
125 строки
4.0 KiB
C
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/*
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* Data structure managing host keys in sessions based on GSSAPI KEX.
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*
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* In a session we started with a GSSAPI key exchange, the concept of
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* 'host key' has completely different lifetime and security semantics
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* from the usual ones. Per RFC 4462 section 2.1, we assume that any
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* host key delivered to us in the course of a GSSAPI key exchange is
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* _solely_ there to use as a transient fallback within the same
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* session, if at the time of a subsequent rekey the GSS credentials
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* are temporarily invalid and so a non-GSS KEX method has to be used.
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*
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* In particular, in a GSS-based SSH deployment, host keys may not
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* even _be_ persistent identities for the server; it would be
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* legitimate for a server to generate a fresh one routinely if it
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* wanted to, like SSH-1 server keys.
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*
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* So, in this mode, we never touch the persistent host key cache at
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* all, either to check keys against it _or_ to store keys in it.
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* Instead, we maintain an in-memory cache of host keys that have been
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* mentioned in GSS key exchanges within this particular session, and
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* we permit precisely those host keys in non-GSS rekeys.
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*/
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#include <assert.h>
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#include "putty.h"
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#include "ssh.h"
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struct ssh_transient_hostkey_cache {
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tree234 *cache;
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};
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struct ssh_transient_hostkey_cache_entry {
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const ssh_keyalg *alg;
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strbuf *pub_blob;
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};
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static int ssh_transient_hostkey_cache_cmp(void *av, void *bv)
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{
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const struct ssh_transient_hostkey_cache_entry
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*a = (const struct ssh_transient_hostkey_cache_entry *)av,
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*b = (const struct ssh_transient_hostkey_cache_entry *)bv;
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return strcmp(a->alg->ssh_id, b->alg->ssh_id);
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}
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static int ssh_transient_hostkey_cache_find(void *av, void *bv)
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{
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const ssh_keyalg *aalg = (const ssh_keyalg *)av;
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const struct ssh_transient_hostkey_cache_entry
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*b = (const struct ssh_transient_hostkey_cache_entry *)bv;
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return strcmp(aalg->ssh_id, b->alg->ssh_id);
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}
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ssh_transient_hostkey_cache *ssh_transient_hostkey_cache_new(void)
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{
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ssh_transient_hostkey_cache *thc = snew(ssh_transient_hostkey_cache);
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thc->cache = newtree234(ssh_transient_hostkey_cache_cmp);
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return thc;
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}
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void ssh_transient_hostkey_cache_free(ssh_transient_hostkey_cache *thc)
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{
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struct ssh_transient_hostkey_cache_entry *ent;
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while ((ent = delpos234(thc->cache, 0)) != NULL) {
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strbuf_free(ent->pub_blob);
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sfree(ent);
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}
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freetree234(thc->cache);
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}
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void ssh_transient_hostkey_cache_add(
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ssh_transient_hostkey_cache *thc, ssh_key *key)
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{
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struct ssh_transient_hostkey_cache_entry *ent, *retd;
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if ((ent = find234(thc->cache, (void *)ssh_key_alg(key),
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ssh_transient_hostkey_cache_find)) != NULL) {
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strbuf_free(ent->pub_blob);
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sfree(ent);
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}
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ent = snew(struct ssh_transient_hostkey_cache_entry);
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ent->alg = ssh_key_alg(key);
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ent->pub_blob = strbuf_new();
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ssh_key_public_blob(key, BinarySink_UPCAST(ent->pub_blob));
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retd = add234(thc->cache, ent);
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assert(retd == ent);
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}
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int ssh_transient_hostkey_cache_verify(
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ssh_transient_hostkey_cache *thc, ssh_key *key)
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{
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struct ssh_transient_hostkey_cache_entry *ent;
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int toret = FALSE;
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if ((ent = find234(thc->cache, (void *)ssh_key_alg(key),
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ssh_transient_hostkey_cache_find)) != NULL) {
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strbuf *this_blob = strbuf_new();
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ssh_key_public_blob(key, BinarySink_UPCAST(this_blob));
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if (this_blob->len == ent->pub_blob->len &&
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!memcmp(this_blob->s, ent->pub_blob->s,
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this_blob->len))
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toret = TRUE;
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strbuf_free(this_blob);
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}
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return toret;
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}
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int ssh_transient_hostkey_cache_has(
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ssh_transient_hostkey_cache *thc, const ssh_keyalg *alg)
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{
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struct ssh_transient_hostkey_cache_entry *ent =
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find234(thc->cache, (void *)alg,
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ssh_transient_hostkey_cache_find);
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return ent != NULL;
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}
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int ssh_transient_hostkey_cache_non_empty(ssh_transient_hostkey_cache *thc)
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{
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return count234(thc->cache) > 0;
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}
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