staticstruct sctp_hmac sctp_hmac_list[SCTP_AUTH_NUM_HMACS] = {
{ /* id 0 is reserved. as all 0 */
.hmac_id = SCTP_AUTH_HMAC_ID_RESERVED_0,
},
{
.hmac_id = SCTP_AUTH_HMAC_ID_SHA1,
.hmac_name = "hmac(sha1)",
.hmac_len = SCTP_SHA1_SIG_SIZE,
},
{ /* id 2 is reserved as well */
.hmac_id = SCTP_AUTH_HMAC_ID_RESERVED_2,
}, #if IS_ENABLED(CONFIG_CRYPTO_SHA256)
{
.hmac_id = SCTP_AUTH_HMAC_ID_SHA256,
.hmac_name = "hmac(sha256)",
.hmac_len = SCTP_SHA256_SIG_SIZE,
} #endif
};
void sctp_auth_key_put(struct sctp_auth_bytes *key)
{ if (!key) return;
if (refcount_dec_and_test(&key->refcnt)) {
kfree_sensitive(key);
SCTP_DBG_OBJCNT_DEC(keys);
}
}
/* Create a new key structure of a given length */ staticstruct sctp_auth_bytes *sctp_auth_create_key(__u32 key_len, gfp_t gfp)
{ struct sctp_auth_bytes *key;
/* Verify that we are not going to overflow INT_MAX */ if (key_len > (INT_MAX - sizeof(struct sctp_auth_bytes))) return NULL;
/* Allocate the shared key */
key = kmalloc(sizeof(struct sctp_auth_bytes) + key_len, gfp); if (!key) return NULL;
/* Create a new shared key container with a give key id */ struct sctp_shared_key *sctp_auth_shkey_create(__u16 key_id, gfp_t gfp)
{ struct sctp_shared_key *new;
/* Allocate the shared key container */ new = kzalloc(sizeof(struct sctp_shared_key), gfp); if (!new) return NULL;
/* Destroy the entire key list. This is done during the *associonandendpointfreeprocess.
*/ void sctp_auth_destroy_keys(struct list_head *keys)
{ struct sctp_shared_key *ep_key; struct sctp_shared_key *tmp;
/* Check to see if the longer number is *lead-zeropadded.Ifitisnot,it *isautomaticallylargernumerically.
*/ for (i = 0; i < abs(diff); i++) { if (longer[i] != 0) return diff;
}
}
/* lengths are the same, compare numbers */ return memcmp(vector1->data, vector2->data, vector1->len);
}
/* Make a key vector based on our local parameters */ staticstruct sctp_auth_bytes *sctp_auth_make_local_vector( conststruct sctp_association *asoc,
gfp_t gfp)
{ return sctp_auth_make_key_vector(
(struct sctp_random_param *)asoc->c.auth_random,
(struct sctp_chunks_param *)asoc->c.auth_chunks,
(struct sctp_hmac_algo_param *)asoc->c.auth_hmacs, gfp);
}
/* Make a key vector based on peer's parameters */ staticstruct sctp_auth_bytes *sctp_auth_make_peer_vector( conststruct sctp_association *asoc,
gfp_t gfp)
{ return sctp_auth_make_key_vector(asoc->peer.peer_random,
asoc->peer.peer_chunks,
asoc->peer.peer_hmacs,
gfp);
}
/* Set the value of the association shared key base on the parameters *given.Thealgorithmis: *Fromtheendpointpairsharedkeysandthekeyvectorsthe *associationsharedkeysarecomputed.Thisisperformedbyselecting *thenumericallysmallerkeyvectorandconcatenatingittothe *endpointpairsharedkey,andthenconcatenatingthenumerically *largerkeyvectortothat.Theresultoftheconcatenationisthe *associationsharedkey.
*/ staticstruct sctp_auth_bytes *sctp_auth_asoc_set_secret( struct sctp_shared_key *ep_key, struct sctp_auth_bytes *first_vector, struct sctp_auth_bytes *last_vector,
gfp_t gfp)
{ struct sctp_auth_bytes *secret;
__u32 offset = 0;
__u32 auth_len;
auth_len = first_vector->len + last_vector->len; if (ep_key->key)
auth_len += ep_key->key->len;
secret = sctp_auth_create_key(auth_len, gfp); if (!secret) return NULL;
if (ep_key->key) {
memcpy(secret->data, ep_key->key->data, ep_key->key->len);
offset += ep_key->key->len;
}
/* Create an association shared key. Follow the algorithm *describedinSCTP-AUTH,Section6.1
*/ staticstruct sctp_auth_bytes *sctp_auth_asoc_create_secret( conststruct sctp_association *asoc, struct sctp_shared_key *ep_key,
gfp_t gfp)
{ struct sctp_auth_bytes *local_key_vector; struct sctp_auth_bytes *peer_key_vector; struct sctp_auth_bytes *first_vector,
*last_vector; struct sctp_auth_bytes *secret = NULL; int cmp;
/* Now we need to build the key vectors *SCTP-AUTH,Section6.1 *TheRANDOMparameter,theCHUNKSparameterandtheHMAC-ALGO *parametersentbyeachendpointareconcatenatedasbytevectors. *Theseparametersincludetheparametertype,parameterlength,and *theparametervalue,butpaddingisomitted;allpaddingMUSTbe *removedfromthisconcatenationbeforeproceedingwithfurther *computationofkeys.Parameterswhichwerenotsentaresimply *omittedfromtheconcatenationprocess.Theresultingtwovectors *arecalledthetwokeyvectors.
*/
/* Public interface to create the association shared key. *Seecodeaboveforthealgorithm.
*/ int sctp_auth_asoc_init_active_key(struct sctp_association *asoc, gfp_t gfp)
{ struct sctp_auth_bytes *secret; struct sctp_shared_key *ep_key; struct sctp_chunk *chunk;
/* If we don't support AUTH, or peer is not capable *wedon'tneedtodoanything.
*/ if (!asoc->peer.auth_capable) return0;
/* If the key_id is non-zero and we couldn't find an *endpointpairsharedkey,wecan'tcomputethe *secret. *Forkey_id0,endpointpairsharedkeyisaNULLkey.
*/
ep_key = sctp_auth_get_shkey(asoc, asoc->active_key_id);
BUG_ON(!ep_key);
secret = sctp_auth_asoc_create_secret(asoc, ep_key, gfp); if (!secret) return -ENOMEM;
/* Update send queue in case any chunk already in there now *needsauthenticating
*/
list_for_each_entry(chunk, &asoc->outqueue.out_chunk_list, list) { if (sctp_auth_send_cid(chunk->chunk_hdr->type, asoc)) {
chunk->auth = 1; if (!chunk->shkey) {
chunk->shkey = asoc->shkey;
sctp_auth_shkey_hold(chunk->shkey);
}
}
}
return0;
}
/* Find the endpoint pair shared key based on the key_id */ struct sctp_shared_key *sctp_auth_get_shkey( conststruct sctp_association *asoc,
__u16 key_id)
{ struct sctp_shared_key *key;
/* First search associations set of endpoint pair shared keys */
key_for_each(key, &asoc->endpoint_shared_keys) { if (key->key_id == key_id) { if (!key->deactivated) return key; break;
}
}
/* If the transforms are already allocated, we are done */ if (ep->auth_hmacs) return0;
/* Allocated the array of pointers to transorms */
ep->auth_hmacs = kcalloc(SCTP_AUTH_NUM_HMACS, sizeof(struct crypto_shash *),
gfp); if (!ep->auth_hmacs) return -ENOMEM;
for (id = 0; id < SCTP_AUTH_NUM_HMACS; id++) {
/* See is we support the id. Supported IDs have name and *lengthfieldsset,sothatwecanallocatedanduse *them.Wecansafelyjustcheckforname,forwithoutthe *name,wecan'tallocatetheTFM.
*/ if (!sctp_hmac_list[id].hmac_name) continue;
/* If this TFM has been allocated, we are all set */ if (ep->auth_hmacs[id]) continue;
/* Allocate the ID */
tfm = crypto_alloc_shash(sctp_hmac_list[id].hmac_name, 0, 0); if (IS_ERR(tfm)) goto out_err;
ep->auth_hmacs[id] = tfm;
}
return0;
out_err: /* Clean up any successful allocations */
sctp_auth_destroy_hmacs(ep->auth_hmacs);
ep->auth_hmacs = NULL; return -ENOMEM;
}
/* Destroy the hmac tfm array */ void sctp_auth_destroy_hmacs(struct crypto_shash *auth_hmacs[])
{ int i;
if (!auth_hmacs) return;
for (i = 0; i < SCTP_AUTH_NUM_HMACS; i++) {
crypto_free_shash(auth_hmacs[i]);
}
kfree(auth_hmacs);
}
/* Get an hmac description information that we can use to build *theAUTHchunk
*/ struct sctp_hmac *sctp_auth_asoc_get_hmac(conststruct sctp_association *asoc)
{ struct sctp_hmac_algo_param *hmacs;
__u16 n_elt;
__u16 id = 0; int i;
/* If we have a default entry, use it */ if (asoc->default_hmac_id) return &sctp_hmac_list[asoc->default_hmac_id];
/* Since we do not have a default entry, find the first entry *wesupportandreturnthat.Donotcachethatid.
*/
hmacs = asoc->peer.peer_hmacs; if (!hmacs) return NULL;
n_elt = (ntohs(hmacs->param_hdr.length) - sizeof(struct sctp_paramhdr)) >> 1; for (i = 0; i < n_elt; i++) {
id = ntohs(hmacs->hmac_ids[i]);
/* Check the id is in the supported range. And *seeifwesupporttheid.SupportedIDshavenameand *lengthfieldsset,sothatwecanallocateanduse *them.Wecansafelyjustcheckforname,forwithoutthe *name,wecan'tallocatetheTFM.
*/ if (id > SCTP_AUTH_HMAC_ID_MAX ||
!sctp_hmac_list[id].hmac_name) {
id = 0; continue;
}
break;
}
if (id == 0) return NULL;
return &sctp_hmac_list[id];
}
staticint __sctp_auth_find_hmacid(__be16 *hmacs, int n_elts, __be16 hmac_id)
{ int found = 0; int i;
for (i = 0; i < n_elts; i++) { if (hmac_id == hmacs[i]) {
found = 1; break;
}
}
return found;
}
/* See if the HMAC_ID is one that we claim as supported */ int sctp_auth_asoc_verify_hmac_id(conststruct sctp_association *asoc,
__be16 hmac_id)
{ struct sctp_hmac_algo_param *hmacs;
__u16 n_elt;
/* Cache the default HMAC id. This to follow this text from SCTP-AUTH: *Section6.1: *ThereceiverofaHMAC-ALGOparameterSHOULDusethefirstlisted *algorithmitsupports.
*/ void sctp_auth_asoc_set_default_hmac(struct sctp_association *asoc, struct sctp_hmac_algo_param *hmacs)
{ struct sctp_endpoint *ep;
__u16 id; int i; int n_params;
/* if the default id is already set, use it */ if (asoc->default_hmac_id) return;
n_params = (ntohs(hmacs->param_hdr.length) - sizeof(struct sctp_paramhdr)) >> 1;
ep = asoc->ep; for (i = 0; i < n_params; i++) {
id = ntohs(hmacs->hmac_ids[i]);
/* Check the id is in the supported range */ if (id > SCTP_AUTH_HMAC_ID_MAX) continue;
/* If this TFM has been allocated, use this id */ if (ep->auth_hmacs[id]) {
asoc->default_hmac_id = id; break;
}
}
}
/* Check to see if the given chunk is supposed to be authenticated */ staticint __sctp_auth_cid(enum sctp_cid chunk, struct sctp_chunks_param *param)
{ unsignedshort len; int found = 0; int i;
if (!param || param->param_hdr.length == 0) return0;
len = ntohs(param->param_hdr.length) - sizeof(struct sctp_paramhdr);
/* SCTP-AUTH, Section 3.2 *ThechunktypesforINIT,INIT-ACK,SHUTDOWN-COMPLETEandAUTH *chunksMUSTNOTbelistedintheCHUNKSparameter.However,if *aCHUNKSparameterisreceivedthenthetypesforINIT,INIT-ACK, *SHUTDOWN-COMPLETEandAUTHchunksMUSTbeignored.
*/ for (i = 0; !found && i < len; i++) { switch (param->chunks[i]) { case SCTP_CID_INIT: case SCTP_CID_INIT_ACK: case SCTP_CID_SHUTDOWN_COMPLETE: case SCTP_CID_AUTH: break;
default: if (param->chunks[i] == chunk)
found = 1; break;
}
}
return found;
}
/* Check if peer requested that this chunk is authenticated */ int sctp_auth_send_cid(enum sctp_cid chunk, conststruct sctp_association *asoc)
{ if (!asoc) return0;
/* Check if we requested that peer authenticate this chunk. */ int sctp_auth_recv_cid(enum sctp_cid chunk, conststruct sctp_association *asoc)
{ if (!asoc) return0;
crypto_shash_tfm_digest(tfm, (u8 *)auth, end - (unsignedchar *)auth,
digest);
free: if (free_key)
sctp_auth_key_put(asoc_key);
}
/* API Helpers */
/* Add a chunk to the endpoint authenticated chunk list */ int sctp_auth_ep_add_chunkid(struct sctp_endpoint *ep, __u8 chunk_id)
{ struct sctp_chunks_param *p = ep->auth_chunk_list;
__u16 nchunks;
__u16 param_len;
/* If this chunk is already specified, we are done */ if (__sctp_auth_cid(chunk_id, p)) return0;
/* Check if we can add this chunk to the array */
param_len = ntohs(p->param_hdr.length);
nchunks = param_len - sizeof(struct sctp_paramhdr); if (nchunks == SCTP_NUM_CHUNK_TYPES) return -EINVAL;
/* Add hmac identifires to the endpoint list of supported hmac ids */ int sctp_auth_ep_set_hmacs(struct sctp_endpoint *ep, struct sctp_hmacalgo *hmacs)
{ int has_sha1 = 0;
__u16 id; int i;
/* Scan the list looking for unsupported id. Also make sure that *SHA1isspecified.
*/ for (i = 0; i < hmacs->shmac_num_idents; i++) {
id = hmacs->shmac_idents[i];
if (id > SCTP_AUTH_HMAC_ID_MAX) return -EOPNOTSUPP;
if (SCTP_AUTH_HMAC_ID_SHA1 == id)
has_sha1 = 1;
if (!sctp_hmac_list[id].hmac_name) return -EOPNOTSUPP;
}
if (!has_sha1) return -EINVAL;
for (i = 0; i < hmacs->shmac_num_idents; i++)
ep->auth_hmacs_list->hmac_ids[i] =
htons(hmacs->shmac_idents[i]);
ep->auth_hmacs_list->param_hdr.length =
htons(sizeof(struct sctp_paramhdr) +
hmacs->shmac_num_idents * sizeof(__u16)); return0;
}
/* Set a new shared key on either endpoint or association. If the *keywithasameIDalreadyexists,replacethekey(removethe *oldkeyandaddanewone).
*/ int sctp_auth_set_key(struct sctp_endpoint *ep, struct sctp_association *asoc, struct sctp_authkey *auth_key)
{ struct sctp_shared_key *cur_key, *shkey; struct sctp_auth_bytes *key; struct list_head *sh_keys; int replace = 0;
/* Try to find the given key id to see if *wearedoingareplace,oraddinganewkey
*/ if (asoc) { if (!asoc->peer.auth_capable) return -EACCES;
sh_keys = &asoc->endpoint_shared_keys;
} else { if (!ep->auth_enable) return -EACCES;
sh_keys = &ep->endpoint_shared_keys;
}
cur_key = sctp_auth_shkey_create(auth_key->sca_keynumber, GFP_KERNEL); if (!cur_key) return -ENOMEM;
/* Create a new key data based on the info passed in */
key = sctp_auth_create_key(auth_key->sca_keylength, GFP_KERNEL); if (!key) {
kfree(cur_key); return -ENOMEM;
}
int sctp_auth_set_active_key(struct sctp_endpoint *ep, struct sctp_association *asoc,
__u16 key_id)
{ struct sctp_shared_key *key; struct list_head *sh_keys; int found = 0;
/* The key identifier MUST correst to an existing key */ if (asoc) { if (!asoc->peer.auth_capable) return -EACCES;
sh_keys = &asoc->endpoint_shared_keys;
} else { if (!ep->auth_enable) return -EACCES;
sh_keys = &ep->endpoint_shared_keys;
}
key_for_each(key, sh_keys) { if (key->key_id == key_id) {
found = 1; break;
}
}
if (!found || key->deactivated) return -EINVAL;
if (asoc) {
__u16 active_key_id = asoc->active_key_id;
int sctp_auth_del_key_id(struct sctp_endpoint *ep, struct sctp_association *asoc,
__u16 key_id)
{ struct sctp_shared_key *key; struct list_head *sh_keys; int found = 0;
/* The key identifier MUST NOT be the current active key *ThekeyidentifierMUSTcorresttoanexistingkey
*/ if (asoc) { if (!asoc->peer.auth_capable) return -EACCES; if (asoc->active_key_id == key_id) return -EINVAL;
sh_keys = &asoc->endpoint_shared_keys;
} else { if (!ep->auth_enable) return -EACCES; if (ep->active_key_id == key_id) return -EINVAL;
sh_keys = &ep->endpoint_shared_keys;
}
key_for_each(key, sh_keys) { if (key->key_id == key_id) {
found = 1; break;
}
}
if (!found) return -EINVAL;
/* Delete the shared key */
list_del_init(&key->key_list);
sctp_auth_shkey_release(key);
return0;
}
int sctp_auth_deact_key_id(struct sctp_endpoint *ep, struct sctp_association *asoc, __u16 key_id)
{ struct sctp_shared_key *key; struct list_head *sh_keys; int found = 0;
/* The key identifier MUST NOT be the current active key *ThekeyidentifierMUSTcorresttoanexistingkey
*/ if (asoc) { if (!asoc->peer.auth_capable) return -EACCES; if (asoc->active_key_id == key_id) return -EINVAL;
sh_keys = &asoc->endpoint_shared_keys;
} else { if (!ep->auth_enable) return -EACCES; if (ep->active_key_id == key_id) return -EINVAL;
sh_keys = &ep->endpoint_shared_keys;
}
key_for_each(key, sh_keys) { if (key->key_id == key_id) {
found = 1; break;
}
}
if (!found) return -EINVAL;
/* refcnt == 1 and !list_empty mean it's not being used anywhere *anddeactivatedwillbeset,soit'stimetonotifyuserland *thatthisshkeycanbefreed.
*/ if (asoc && !list_empty(&key->key_list) &&
refcount_read(&key->refcnt) == 1) { struct sctp_ulpevent *ev;
ev = sctp_ulpevent_make_authkey(asoc, key->key_id,
SCTP_AUTH_FREE_KEY, GFP_KERNEL); if (ev)
asoc->stream.si->enqueue_event(&asoc->ulpq, ev);
}
key->deactivated = 1;
return0;
}
int sctp_auth_init(struct sctp_endpoint *ep, gfp_t gfp)
{ int err = -ENOMEM;
/* Allocate space for HMACS and CHUNKS authentication *variables.Therearearraysthatweencodedirectly *intoparameterstomaketherestoftheoperationseasier.
*/ if (!ep->auth_hmacs_list) { struct sctp_hmac_algo_param *auth_hmacs;
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