16d49e1aeSJan Lentfer /*
23ff40c12SJohn Marino * TLS v1.0/v1.1/v1.2 client (RFC 2246, RFC 4346, RFC 5246)
3*a1157835SDaniel Fojt * Copyright (c) 2006-2019, Jouni Malinen <j@w1.fi>
46d49e1aeSJan Lentfer *
53ff40c12SJohn Marino * This software may be distributed under the terms of the BSD license.
63ff40c12SJohn Marino * See README for more details.
76d49e1aeSJan Lentfer */
86d49e1aeSJan Lentfer
96d49e1aeSJan Lentfer #include "includes.h"
106d49e1aeSJan Lentfer
116d49e1aeSJan Lentfer #include "common.h"
123ff40c12SJohn Marino #include "crypto/sha1.h"
133ff40c12SJohn Marino #include "crypto/tls.h"
14*a1157835SDaniel Fojt #include "x509v3.h"
156d49e1aeSJan Lentfer #include "tlsv1_common.h"
166d49e1aeSJan Lentfer #include "tlsv1_record.h"
176d49e1aeSJan Lentfer #include "tlsv1_client.h"
186d49e1aeSJan Lentfer #include "tlsv1_client_i.h"
196d49e1aeSJan Lentfer
206d49e1aeSJan Lentfer /* TODO:
216d49e1aeSJan Lentfer * Support for a message fragmented across several records (RFC 2246, 6.2.1)
226d49e1aeSJan Lentfer */
236d49e1aeSJan Lentfer
246d49e1aeSJan Lentfer
tls_alert(struct tlsv1_client * conn,u8 level,u8 description)256d49e1aeSJan Lentfer void tls_alert(struct tlsv1_client *conn, u8 level, u8 description)
266d49e1aeSJan Lentfer {
276d49e1aeSJan Lentfer conn->alert_level = level;
286d49e1aeSJan Lentfer conn->alert_description = description;
296d49e1aeSJan Lentfer }
306d49e1aeSJan Lentfer
316d49e1aeSJan Lentfer
tlsv1_client_free_dh(struct tlsv1_client * conn)326d49e1aeSJan Lentfer void tlsv1_client_free_dh(struct tlsv1_client *conn)
336d49e1aeSJan Lentfer {
346d49e1aeSJan Lentfer os_free(conn->dh_p);
356d49e1aeSJan Lentfer os_free(conn->dh_g);
366d49e1aeSJan Lentfer os_free(conn->dh_ys);
376d49e1aeSJan Lentfer conn->dh_p = conn->dh_g = conn->dh_ys = NULL;
386d49e1aeSJan Lentfer }
396d49e1aeSJan Lentfer
406d49e1aeSJan Lentfer
tls_derive_pre_master_secret(u8 * pre_master_secret)416d49e1aeSJan Lentfer int tls_derive_pre_master_secret(u8 *pre_master_secret)
426d49e1aeSJan Lentfer {
436d49e1aeSJan Lentfer WPA_PUT_BE16(pre_master_secret, TLS_VERSION);
446d49e1aeSJan Lentfer if (os_get_random(pre_master_secret + 2,
456d49e1aeSJan Lentfer TLS_PRE_MASTER_SECRET_LEN - 2))
466d49e1aeSJan Lentfer return -1;
476d49e1aeSJan Lentfer return 0;
486d49e1aeSJan Lentfer }
496d49e1aeSJan Lentfer
506d49e1aeSJan Lentfer
tls_derive_keys(struct tlsv1_client * conn,const u8 * pre_master_secret,size_t pre_master_secret_len)516d49e1aeSJan Lentfer int tls_derive_keys(struct tlsv1_client *conn,
526d49e1aeSJan Lentfer const u8 *pre_master_secret, size_t pre_master_secret_len)
536d49e1aeSJan Lentfer {
546d49e1aeSJan Lentfer u8 seed[2 * TLS_RANDOM_LEN];
556d49e1aeSJan Lentfer u8 key_block[TLS_MAX_KEY_BLOCK_LEN];
566d49e1aeSJan Lentfer u8 *pos;
576d49e1aeSJan Lentfer size_t key_block_len;
586d49e1aeSJan Lentfer
596d49e1aeSJan Lentfer if (pre_master_secret) {
606d49e1aeSJan Lentfer wpa_hexdump_key(MSG_MSGDUMP, "TLSv1: pre_master_secret",
616d49e1aeSJan Lentfer pre_master_secret, pre_master_secret_len);
626d49e1aeSJan Lentfer os_memcpy(seed, conn->client_random, TLS_RANDOM_LEN);
636d49e1aeSJan Lentfer os_memcpy(seed + TLS_RANDOM_LEN, conn->server_random,
646d49e1aeSJan Lentfer TLS_RANDOM_LEN);
653ff40c12SJohn Marino if (tls_prf(conn->rl.tls_version,
663ff40c12SJohn Marino pre_master_secret, pre_master_secret_len,
676d49e1aeSJan Lentfer "master secret", seed, 2 * TLS_RANDOM_LEN,
686d49e1aeSJan Lentfer conn->master_secret, TLS_MASTER_SECRET_LEN)) {
696d49e1aeSJan Lentfer wpa_printf(MSG_DEBUG, "TLSv1: Failed to derive "
706d49e1aeSJan Lentfer "master_secret");
716d49e1aeSJan Lentfer return -1;
726d49e1aeSJan Lentfer }
736d49e1aeSJan Lentfer wpa_hexdump_key(MSG_MSGDUMP, "TLSv1: master_secret",
746d49e1aeSJan Lentfer conn->master_secret, TLS_MASTER_SECRET_LEN);
756d49e1aeSJan Lentfer }
766d49e1aeSJan Lentfer
776d49e1aeSJan Lentfer os_memcpy(seed, conn->server_random, TLS_RANDOM_LEN);
786d49e1aeSJan Lentfer os_memcpy(seed + TLS_RANDOM_LEN, conn->client_random, TLS_RANDOM_LEN);
793ff40c12SJohn Marino key_block_len = 2 * (conn->rl.hash_size + conn->rl.key_material_len);
803ff40c12SJohn Marino if (conn->rl.tls_version == TLS_VERSION_1)
813ff40c12SJohn Marino key_block_len += 2 * conn->rl.iv_size;
823ff40c12SJohn Marino if (tls_prf(conn->rl.tls_version,
833ff40c12SJohn Marino conn->master_secret, TLS_MASTER_SECRET_LEN,
846d49e1aeSJan Lentfer "key expansion", seed, 2 * TLS_RANDOM_LEN,
856d49e1aeSJan Lentfer key_block, key_block_len)) {
866d49e1aeSJan Lentfer wpa_printf(MSG_DEBUG, "TLSv1: Failed to derive key_block");
876d49e1aeSJan Lentfer return -1;
886d49e1aeSJan Lentfer }
896d49e1aeSJan Lentfer wpa_hexdump_key(MSG_MSGDUMP, "TLSv1: key_block",
906d49e1aeSJan Lentfer key_block, key_block_len);
916d49e1aeSJan Lentfer
926d49e1aeSJan Lentfer pos = key_block;
936d49e1aeSJan Lentfer
946d49e1aeSJan Lentfer /* client_write_MAC_secret */
956d49e1aeSJan Lentfer os_memcpy(conn->rl.write_mac_secret, pos, conn->rl.hash_size);
966d49e1aeSJan Lentfer pos += conn->rl.hash_size;
976d49e1aeSJan Lentfer /* server_write_MAC_secret */
986d49e1aeSJan Lentfer os_memcpy(conn->rl.read_mac_secret, pos, conn->rl.hash_size);
996d49e1aeSJan Lentfer pos += conn->rl.hash_size;
1006d49e1aeSJan Lentfer
1016d49e1aeSJan Lentfer /* client_write_key */
1026d49e1aeSJan Lentfer os_memcpy(conn->rl.write_key, pos, conn->rl.key_material_len);
1036d49e1aeSJan Lentfer pos += conn->rl.key_material_len;
1046d49e1aeSJan Lentfer /* server_write_key */
1056d49e1aeSJan Lentfer os_memcpy(conn->rl.read_key, pos, conn->rl.key_material_len);
1066d49e1aeSJan Lentfer pos += conn->rl.key_material_len;
1076d49e1aeSJan Lentfer
1083ff40c12SJohn Marino if (conn->rl.tls_version == TLS_VERSION_1) {
1096d49e1aeSJan Lentfer /* client_write_IV */
1106d49e1aeSJan Lentfer os_memcpy(conn->rl.write_iv, pos, conn->rl.iv_size);
1116d49e1aeSJan Lentfer pos += conn->rl.iv_size;
1126d49e1aeSJan Lentfer /* server_write_IV */
1136d49e1aeSJan Lentfer os_memcpy(conn->rl.read_iv, pos, conn->rl.iv_size);
1143ff40c12SJohn Marino } else {
1153ff40c12SJohn Marino /*
1163ff40c12SJohn Marino * Use IV field to set the mask value for TLS v1.1. A fixed
1173ff40c12SJohn Marino * mask of zero is used per the RFC 4346, 6.2.3.2 CBC Block
1183ff40c12SJohn Marino * Cipher option 2a.
1193ff40c12SJohn Marino */
1203ff40c12SJohn Marino os_memset(conn->rl.write_iv, 0, conn->rl.iv_size);
1213ff40c12SJohn Marino }
1226d49e1aeSJan Lentfer
1236d49e1aeSJan Lentfer return 0;
1246d49e1aeSJan Lentfer }
1256d49e1aeSJan Lentfer
1266d49e1aeSJan Lentfer
1276d49e1aeSJan Lentfer /**
1286d49e1aeSJan Lentfer * tlsv1_client_handshake - Process TLS handshake
1296d49e1aeSJan Lentfer * @conn: TLSv1 client connection data from tlsv1_client_init()
1306d49e1aeSJan Lentfer * @in_data: Input data from TLS peer
1316d49e1aeSJan Lentfer * @in_len: Input data length
1326d49e1aeSJan Lentfer * @out_len: Length of the output buffer.
1336d49e1aeSJan Lentfer * @appl_data: Pointer to application data pointer, or %NULL if dropped
1346d49e1aeSJan Lentfer * @appl_data_len: Pointer to variable that is set to appl_data length
1353ff40c12SJohn Marino * @need_more_data: Set to 1 if more data would be needed to complete
1363ff40c12SJohn Marino * processing
1376d49e1aeSJan Lentfer * Returns: Pointer to output data, %NULL on failure
1386d49e1aeSJan Lentfer */
tlsv1_client_handshake(struct tlsv1_client * conn,const u8 * in_data,size_t in_len,size_t * out_len,u8 ** appl_data,size_t * appl_data_len,int * need_more_data)1396d49e1aeSJan Lentfer u8 * tlsv1_client_handshake(struct tlsv1_client *conn,
1406d49e1aeSJan Lentfer const u8 *in_data, size_t in_len,
1416d49e1aeSJan Lentfer size_t *out_len, u8 **appl_data,
1423ff40c12SJohn Marino size_t *appl_data_len, int *need_more_data)
1436d49e1aeSJan Lentfer {
1446d49e1aeSJan Lentfer const u8 *pos, *end;
1453ff40c12SJohn Marino u8 *msg = NULL, *in_msg = NULL, *in_pos, *in_end, alert, ct;
1466d49e1aeSJan Lentfer size_t in_msg_len;
1476d49e1aeSJan Lentfer int no_appl_data;
1483ff40c12SJohn Marino int used;
1493ff40c12SJohn Marino
1503ff40c12SJohn Marino if (need_more_data)
1513ff40c12SJohn Marino *need_more_data = 0;
1526d49e1aeSJan Lentfer
1536d49e1aeSJan Lentfer if (conn->state == CLIENT_HELLO) {
1546d49e1aeSJan Lentfer if (in_len)
1556d49e1aeSJan Lentfer return NULL;
1566d49e1aeSJan Lentfer return tls_send_client_hello(conn, out_len);
1576d49e1aeSJan Lentfer }
1586d49e1aeSJan Lentfer
1593ff40c12SJohn Marino if (conn->partial_input) {
1603ff40c12SJohn Marino if (wpabuf_resize(&conn->partial_input, in_len) < 0) {
1613ff40c12SJohn Marino wpa_printf(MSG_DEBUG, "TLSv1: Failed to allocate "
1623ff40c12SJohn Marino "memory for pending record");
1633ff40c12SJohn Marino tls_alert(conn, TLS_ALERT_LEVEL_FATAL,
1643ff40c12SJohn Marino TLS_ALERT_INTERNAL_ERROR);
1653ff40c12SJohn Marino goto failed;
1663ff40c12SJohn Marino }
1673ff40c12SJohn Marino wpabuf_put_data(conn->partial_input, in_data, in_len);
1683ff40c12SJohn Marino in_data = wpabuf_head(conn->partial_input);
1693ff40c12SJohn Marino in_len = wpabuf_len(conn->partial_input);
1703ff40c12SJohn Marino }
1713ff40c12SJohn Marino
1726d49e1aeSJan Lentfer if (in_data == NULL || in_len == 0)
1736d49e1aeSJan Lentfer return NULL;
1746d49e1aeSJan Lentfer
1756d49e1aeSJan Lentfer pos = in_data;
1766d49e1aeSJan Lentfer end = in_data + in_len;
1776d49e1aeSJan Lentfer in_msg = os_malloc(in_len);
1786d49e1aeSJan Lentfer if (in_msg == NULL)
1796d49e1aeSJan Lentfer return NULL;
1806d49e1aeSJan Lentfer
1816d49e1aeSJan Lentfer /* Each received packet may include multiple records */
1826d49e1aeSJan Lentfer while (pos < end) {
1836d49e1aeSJan Lentfer in_msg_len = in_len;
1843ff40c12SJohn Marino used = tlsv1_record_receive(&conn->rl, pos, end - pos,
1853ff40c12SJohn Marino in_msg, &in_msg_len, &alert);
1863ff40c12SJohn Marino if (used < 0) {
1876d49e1aeSJan Lentfer wpa_printf(MSG_DEBUG, "TLSv1: Processing received "
1886d49e1aeSJan Lentfer "record failed");
1896d49e1aeSJan Lentfer tls_alert(conn, TLS_ALERT_LEVEL_FATAL, alert);
1906d49e1aeSJan Lentfer goto failed;
1916d49e1aeSJan Lentfer }
1923ff40c12SJohn Marino if (used == 0) {
1933ff40c12SJohn Marino struct wpabuf *partial;
1943ff40c12SJohn Marino wpa_printf(MSG_DEBUG, "TLSv1: Need more data");
1953ff40c12SJohn Marino partial = wpabuf_alloc_copy(pos, end - pos);
1963ff40c12SJohn Marino wpabuf_free(conn->partial_input);
1973ff40c12SJohn Marino conn->partial_input = partial;
1983ff40c12SJohn Marino if (conn->partial_input == NULL) {
1993ff40c12SJohn Marino wpa_printf(MSG_DEBUG, "TLSv1: Failed to "
2003ff40c12SJohn Marino "allocate memory for pending "
2013ff40c12SJohn Marino "record");
2023ff40c12SJohn Marino tls_alert(conn, TLS_ALERT_LEVEL_FATAL,
2033ff40c12SJohn Marino TLS_ALERT_INTERNAL_ERROR);
2043ff40c12SJohn Marino goto failed;
2053ff40c12SJohn Marino }
2063ff40c12SJohn Marino os_free(in_msg);
2073ff40c12SJohn Marino if (need_more_data)
2083ff40c12SJohn Marino *need_more_data = 1;
2093ff40c12SJohn Marino return NULL;
2103ff40c12SJohn Marino }
2116d49e1aeSJan Lentfer ct = pos[0];
2126d49e1aeSJan Lentfer
2136d49e1aeSJan Lentfer in_pos = in_msg;
2146d49e1aeSJan Lentfer in_end = in_msg + in_msg_len;
2156d49e1aeSJan Lentfer
2166d49e1aeSJan Lentfer /* Each received record may include multiple messages of the
2176d49e1aeSJan Lentfer * same ContentType. */
2186d49e1aeSJan Lentfer while (in_pos < in_end) {
2196d49e1aeSJan Lentfer in_msg_len = in_end - in_pos;
2206d49e1aeSJan Lentfer if (tlsv1_client_process_handshake(conn, ct, in_pos,
2216d49e1aeSJan Lentfer &in_msg_len,
2226d49e1aeSJan Lentfer appl_data,
2236d49e1aeSJan Lentfer appl_data_len) < 0)
2246d49e1aeSJan Lentfer goto failed;
2256d49e1aeSJan Lentfer in_pos += in_msg_len;
2266d49e1aeSJan Lentfer }
2276d49e1aeSJan Lentfer
2283ff40c12SJohn Marino pos += used;
2296d49e1aeSJan Lentfer }
2306d49e1aeSJan Lentfer
2316d49e1aeSJan Lentfer os_free(in_msg);
2326d49e1aeSJan Lentfer in_msg = NULL;
2336d49e1aeSJan Lentfer
2346d49e1aeSJan Lentfer no_appl_data = appl_data == NULL || *appl_data == NULL;
2356d49e1aeSJan Lentfer msg = tlsv1_client_handshake_write(conn, out_len, no_appl_data);
2366d49e1aeSJan Lentfer
2376d49e1aeSJan Lentfer failed:
2386d49e1aeSJan Lentfer os_free(in_msg);
2396d49e1aeSJan Lentfer if (conn->alert_level) {
2403ff40c12SJohn Marino wpabuf_free(conn->partial_input);
2413ff40c12SJohn Marino conn->partial_input = NULL;
2426d49e1aeSJan Lentfer conn->state = FAILED;
2436d49e1aeSJan Lentfer os_free(msg);
2446d49e1aeSJan Lentfer msg = tlsv1_client_send_alert(conn, conn->alert_level,
2456d49e1aeSJan Lentfer conn->alert_description,
2466d49e1aeSJan Lentfer out_len);
2476d49e1aeSJan Lentfer } else if (msg == NULL) {
2486d49e1aeSJan Lentfer msg = os_zalloc(1);
2496d49e1aeSJan Lentfer *out_len = 0;
2506d49e1aeSJan Lentfer }
2516d49e1aeSJan Lentfer
2523ff40c12SJohn Marino if (need_more_data == NULL || !(*need_more_data)) {
2533ff40c12SJohn Marino wpabuf_free(conn->partial_input);
2543ff40c12SJohn Marino conn->partial_input = NULL;
2553ff40c12SJohn Marino }
2563ff40c12SJohn Marino
2576d49e1aeSJan Lentfer return msg;
2586d49e1aeSJan Lentfer }
2596d49e1aeSJan Lentfer
2606d49e1aeSJan Lentfer
2616d49e1aeSJan Lentfer /**
2626d49e1aeSJan Lentfer * tlsv1_client_encrypt - Encrypt data into TLS tunnel
2636d49e1aeSJan Lentfer * @conn: TLSv1 client connection data from tlsv1_client_init()
2646d49e1aeSJan Lentfer * @in_data: Pointer to plaintext data to be encrypted
2656d49e1aeSJan Lentfer * @in_len: Input buffer length
2666d49e1aeSJan Lentfer * @out_data: Pointer to output buffer (encrypted TLS data)
2676d49e1aeSJan Lentfer * @out_len: Maximum out_data length
2686d49e1aeSJan Lentfer * Returns: Number of bytes written to out_data, -1 on failure
2696d49e1aeSJan Lentfer *
2706d49e1aeSJan Lentfer * This function is used after TLS handshake has been completed successfully to
2716d49e1aeSJan Lentfer * send data in the encrypted tunnel.
2726d49e1aeSJan Lentfer */
tlsv1_client_encrypt(struct tlsv1_client * conn,const u8 * in_data,size_t in_len,u8 * out_data,size_t out_len)2736d49e1aeSJan Lentfer int tlsv1_client_encrypt(struct tlsv1_client *conn,
2746d49e1aeSJan Lentfer const u8 *in_data, size_t in_len,
2756d49e1aeSJan Lentfer u8 *out_data, size_t out_len)
2766d49e1aeSJan Lentfer {
2776d49e1aeSJan Lentfer size_t rlen;
2786d49e1aeSJan Lentfer
2796d49e1aeSJan Lentfer wpa_hexdump_key(MSG_MSGDUMP, "TLSv1: Plaintext AppData",
2806d49e1aeSJan Lentfer in_data, in_len);
2816d49e1aeSJan Lentfer
2826d49e1aeSJan Lentfer if (tlsv1_record_send(&conn->rl, TLS_CONTENT_TYPE_APPLICATION_DATA,
2833ff40c12SJohn Marino out_data, out_len, in_data, in_len, &rlen) < 0) {
2846d49e1aeSJan Lentfer wpa_printf(MSG_DEBUG, "TLSv1: Failed to create a record");
2856d49e1aeSJan Lentfer tls_alert(conn, TLS_ALERT_LEVEL_FATAL,
2866d49e1aeSJan Lentfer TLS_ALERT_INTERNAL_ERROR);
2876d49e1aeSJan Lentfer return -1;
2886d49e1aeSJan Lentfer }
2896d49e1aeSJan Lentfer
2906d49e1aeSJan Lentfer return rlen;
2916d49e1aeSJan Lentfer }
2926d49e1aeSJan Lentfer
2936d49e1aeSJan Lentfer
2946d49e1aeSJan Lentfer /**
2956d49e1aeSJan Lentfer * tlsv1_client_decrypt - Decrypt data from TLS tunnel
2966d49e1aeSJan Lentfer * @conn: TLSv1 client connection data from tlsv1_client_init()
2976d49e1aeSJan Lentfer * @in_data: Pointer to input buffer (encrypted TLS data)
2986d49e1aeSJan Lentfer * @in_len: Input buffer length
2993ff40c12SJohn Marino * @need_more_data: Set to 1 if more data would be needed to complete
3003ff40c12SJohn Marino * processing
3013ff40c12SJohn Marino * Returns: Decrypted data or %NULL on failure
3026d49e1aeSJan Lentfer *
3036d49e1aeSJan Lentfer * This function is used after TLS handshake has been completed successfully to
3046d49e1aeSJan Lentfer * receive data from the encrypted tunnel.
3056d49e1aeSJan Lentfer */
tlsv1_client_decrypt(struct tlsv1_client * conn,const u8 * in_data,size_t in_len,int * need_more_data)3063ff40c12SJohn Marino struct wpabuf * tlsv1_client_decrypt(struct tlsv1_client *conn,
3076d49e1aeSJan Lentfer const u8 *in_data, size_t in_len,
3083ff40c12SJohn Marino int *need_more_data)
3096d49e1aeSJan Lentfer {
3106d49e1aeSJan Lentfer const u8 *in_end, *pos;
3113ff40c12SJohn Marino int used;
3123ff40c12SJohn Marino u8 alert, *out_pos, ct;
3136d49e1aeSJan Lentfer size_t olen;
3143ff40c12SJohn Marino struct wpabuf *buf = NULL;
3153ff40c12SJohn Marino
3163ff40c12SJohn Marino if (need_more_data)
3173ff40c12SJohn Marino *need_more_data = 0;
3183ff40c12SJohn Marino
3193ff40c12SJohn Marino if (conn->partial_input) {
3203ff40c12SJohn Marino if (wpabuf_resize(&conn->partial_input, in_len) < 0) {
3213ff40c12SJohn Marino wpa_printf(MSG_DEBUG, "TLSv1: Failed to allocate "
3223ff40c12SJohn Marino "memory for pending record");
3233ff40c12SJohn Marino alert = TLS_ALERT_INTERNAL_ERROR;
3243ff40c12SJohn Marino goto fail;
3253ff40c12SJohn Marino }
3263ff40c12SJohn Marino wpabuf_put_data(conn->partial_input, in_data, in_len);
3273ff40c12SJohn Marino in_data = wpabuf_head(conn->partial_input);
3283ff40c12SJohn Marino in_len = wpabuf_len(conn->partial_input);
3293ff40c12SJohn Marino }
3306d49e1aeSJan Lentfer
3316d49e1aeSJan Lentfer pos = in_data;
3326d49e1aeSJan Lentfer in_end = in_data + in_len;
3336d49e1aeSJan Lentfer
3346d49e1aeSJan Lentfer while (pos < in_end) {
3353ff40c12SJohn Marino ct = pos[0];
3363ff40c12SJohn Marino if (wpabuf_resize(&buf, in_end - pos) < 0) {
3373ff40c12SJohn Marino alert = TLS_ALERT_INTERNAL_ERROR;
3383ff40c12SJohn Marino goto fail;
3396d49e1aeSJan Lentfer }
3403ff40c12SJohn Marino out_pos = wpabuf_put(buf, 0);
3413ff40c12SJohn Marino olen = wpabuf_tailroom(buf);
3423ff40c12SJohn Marino used = tlsv1_record_receive(&conn->rl, pos, in_end - pos,
3436d49e1aeSJan Lentfer out_pos, &olen, &alert);
3443ff40c12SJohn Marino if (used < 0) {
3456d49e1aeSJan Lentfer wpa_printf(MSG_DEBUG, "TLSv1: Record layer processing "
3466d49e1aeSJan Lentfer "failed");
3473ff40c12SJohn Marino goto fail;
3483ff40c12SJohn Marino }
3493ff40c12SJohn Marino if (used == 0) {
3503ff40c12SJohn Marino struct wpabuf *partial;
3513ff40c12SJohn Marino wpa_printf(MSG_DEBUG, "TLSv1: Need more data");
3523ff40c12SJohn Marino partial = wpabuf_alloc_copy(pos, in_end - pos);
3533ff40c12SJohn Marino wpabuf_free(conn->partial_input);
3543ff40c12SJohn Marino conn->partial_input = partial;
3553ff40c12SJohn Marino if (conn->partial_input == NULL) {
3563ff40c12SJohn Marino wpa_printf(MSG_DEBUG, "TLSv1: Failed to "
3573ff40c12SJohn Marino "allocate memory for pending "
3583ff40c12SJohn Marino "record");
3593ff40c12SJohn Marino alert = TLS_ALERT_INTERNAL_ERROR;
3603ff40c12SJohn Marino goto fail;
3613ff40c12SJohn Marino }
3623ff40c12SJohn Marino if (need_more_data)
3633ff40c12SJohn Marino *need_more_data = 1;
3643ff40c12SJohn Marino return buf;
3653ff40c12SJohn Marino }
3663ff40c12SJohn Marino
3673ff40c12SJohn Marino if (ct == TLS_CONTENT_TYPE_ALERT) {
3683ff40c12SJohn Marino if (olen < 2) {
3693ff40c12SJohn Marino wpa_printf(MSG_DEBUG, "TLSv1: Alert "
3703ff40c12SJohn Marino "underflow");
3713ff40c12SJohn Marino alert = TLS_ALERT_DECODE_ERROR;
3723ff40c12SJohn Marino goto fail;
3733ff40c12SJohn Marino }
3743ff40c12SJohn Marino wpa_printf(MSG_DEBUG, "TLSv1: Received alert %d:%d",
3753ff40c12SJohn Marino out_pos[0], out_pos[1]);
3763ff40c12SJohn Marino if (out_pos[0] == TLS_ALERT_LEVEL_WARNING) {
3773ff40c12SJohn Marino /* Continue processing */
3783ff40c12SJohn Marino pos += used;
3793ff40c12SJohn Marino continue;
3803ff40c12SJohn Marino }
3813ff40c12SJohn Marino
3823ff40c12SJohn Marino alert = out_pos[1];
3833ff40c12SJohn Marino goto fail;
3843ff40c12SJohn Marino }
3853ff40c12SJohn Marino
3863ff40c12SJohn Marino if (ct != TLS_CONTENT_TYPE_APPLICATION_DATA) {
3873ff40c12SJohn Marino wpa_printf(MSG_DEBUG, "TLSv1: Unexpected content type "
3883ff40c12SJohn Marino "0x%x when decrypting application data",
3893ff40c12SJohn Marino pos[0]);
3903ff40c12SJohn Marino alert = TLS_ALERT_UNEXPECTED_MESSAGE;
3913ff40c12SJohn Marino goto fail;
3923ff40c12SJohn Marino }
3933ff40c12SJohn Marino
3943ff40c12SJohn Marino wpabuf_put(buf, olen);
3953ff40c12SJohn Marino
3963ff40c12SJohn Marino pos += used;
3973ff40c12SJohn Marino }
3983ff40c12SJohn Marino
3993ff40c12SJohn Marino wpabuf_free(conn->partial_input);
4003ff40c12SJohn Marino conn->partial_input = NULL;
4013ff40c12SJohn Marino return buf;
4023ff40c12SJohn Marino
4033ff40c12SJohn Marino fail:
4043ff40c12SJohn Marino wpabuf_free(buf);
4053ff40c12SJohn Marino wpabuf_free(conn->partial_input);
4063ff40c12SJohn Marino conn->partial_input = NULL;
4076d49e1aeSJan Lentfer tls_alert(conn, TLS_ALERT_LEVEL_FATAL, alert);
4083ff40c12SJohn Marino return NULL;
4096d49e1aeSJan Lentfer }
4106d49e1aeSJan Lentfer
4116d49e1aeSJan Lentfer
4126d49e1aeSJan Lentfer /**
4136d49e1aeSJan Lentfer * tlsv1_client_global_init - Initialize TLSv1 client
4146d49e1aeSJan Lentfer * Returns: 0 on success, -1 on failure
4156d49e1aeSJan Lentfer *
4166d49e1aeSJan Lentfer * This function must be called before using any other TLSv1 client functions.
4176d49e1aeSJan Lentfer */
tlsv1_client_global_init(void)4186d49e1aeSJan Lentfer int tlsv1_client_global_init(void)
4196d49e1aeSJan Lentfer {
4206d49e1aeSJan Lentfer return crypto_global_init();
4216d49e1aeSJan Lentfer }
4226d49e1aeSJan Lentfer
4236d49e1aeSJan Lentfer
4246d49e1aeSJan Lentfer /**
4256d49e1aeSJan Lentfer * tlsv1_client_global_deinit - Deinitialize TLSv1 client
4266d49e1aeSJan Lentfer *
4276d49e1aeSJan Lentfer * This function can be used to deinitialize the TLSv1 client that was
4286d49e1aeSJan Lentfer * initialized by calling tlsv1_client_global_init(). No TLSv1 client functions
4296d49e1aeSJan Lentfer * can be called after this before calling tlsv1_client_global_init() again.
4306d49e1aeSJan Lentfer */
tlsv1_client_global_deinit(void)4316d49e1aeSJan Lentfer void tlsv1_client_global_deinit(void)
4326d49e1aeSJan Lentfer {
4336d49e1aeSJan Lentfer crypto_global_deinit();
4346d49e1aeSJan Lentfer }
4356d49e1aeSJan Lentfer
4366d49e1aeSJan Lentfer
4376d49e1aeSJan Lentfer /**
4386d49e1aeSJan Lentfer * tlsv1_client_init - Initialize TLSv1 client connection
4396d49e1aeSJan Lentfer * Returns: Pointer to TLSv1 client connection data or %NULL on failure
4406d49e1aeSJan Lentfer */
tlsv1_client_init(void)4416d49e1aeSJan Lentfer struct tlsv1_client * tlsv1_client_init(void)
4426d49e1aeSJan Lentfer {
4436d49e1aeSJan Lentfer struct tlsv1_client *conn;
4446d49e1aeSJan Lentfer size_t count;
4456d49e1aeSJan Lentfer u16 *suites;
4466d49e1aeSJan Lentfer
4476d49e1aeSJan Lentfer conn = os_zalloc(sizeof(*conn));
4486d49e1aeSJan Lentfer if (conn == NULL)
4496d49e1aeSJan Lentfer return NULL;
4506d49e1aeSJan Lentfer
4516d49e1aeSJan Lentfer conn->state = CLIENT_HELLO;
4526d49e1aeSJan Lentfer
4536d49e1aeSJan Lentfer if (tls_verify_hash_init(&conn->verify) < 0) {
4546d49e1aeSJan Lentfer wpa_printf(MSG_DEBUG, "TLSv1: Failed to initialize verify "
4556d49e1aeSJan Lentfer "hash");
4566d49e1aeSJan Lentfer os_free(conn);
4576d49e1aeSJan Lentfer return NULL;
4586d49e1aeSJan Lentfer }
4596d49e1aeSJan Lentfer
4606d49e1aeSJan Lentfer count = 0;
4616d49e1aeSJan Lentfer suites = conn->cipher_suites;
462*a1157835SDaniel Fojt suites[count++] = TLS_DHE_RSA_WITH_AES_256_CBC_SHA256;
4633ff40c12SJohn Marino suites[count++] = TLS_RSA_WITH_AES_256_CBC_SHA256;
464*a1157835SDaniel Fojt suites[count++] = TLS_DHE_RSA_WITH_AES_256_CBC_SHA;
4656d49e1aeSJan Lentfer suites[count++] = TLS_RSA_WITH_AES_256_CBC_SHA;
466*a1157835SDaniel Fojt suites[count++] = TLS_DHE_RSA_WITH_AES_128_CBC_SHA256;
4673ff40c12SJohn Marino suites[count++] = TLS_RSA_WITH_AES_128_CBC_SHA256;
468*a1157835SDaniel Fojt suites[count++] = TLS_DHE_RSA_WITH_AES_128_CBC_SHA;
4696d49e1aeSJan Lentfer suites[count++] = TLS_RSA_WITH_AES_128_CBC_SHA;
470*a1157835SDaniel Fojt suites[count++] = TLS_DHE_RSA_WITH_3DES_EDE_CBC_SHA;
4716d49e1aeSJan Lentfer suites[count++] = TLS_RSA_WITH_3DES_EDE_CBC_SHA;
4726d49e1aeSJan Lentfer suites[count++] = TLS_RSA_WITH_RC4_128_SHA;
4736d49e1aeSJan Lentfer suites[count++] = TLS_RSA_WITH_RC4_128_MD5;
4746d49e1aeSJan Lentfer conn->num_cipher_suites = count;
4756d49e1aeSJan Lentfer
4763ff40c12SJohn Marino conn->rl.tls_version = TLS_VERSION;
4773ff40c12SJohn Marino
4786d49e1aeSJan Lentfer return conn;
4796d49e1aeSJan Lentfer }
4806d49e1aeSJan Lentfer
4816d49e1aeSJan Lentfer
4826d49e1aeSJan Lentfer /**
4836d49e1aeSJan Lentfer * tlsv1_client_deinit - Deinitialize TLSv1 client connection
4846d49e1aeSJan Lentfer * @conn: TLSv1 client connection data from tlsv1_client_init()
4856d49e1aeSJan Lentfer */
tlsv1_client_deinit(struct tlsv1_client * conn)4866d49e1aeSJan Lentfer void tlsv1_client_deinit(struct tlsv1_client *conn)
4876d49e1aeSJan Lentfer {
4886d49e1aeSJan Lentfer crypto_public_key_free(conn->server_rsa_key);
4896d49e1aeSJan Lentfer tlsv1_record_set_cipher_suite(&conn->rl, TLS_NULL_WITH_NULL_NULL);
4906d49e1aeSJan Lentfer tlsv1_record_change_write_cipher(&conn->rl);
4916d49e1aeSJan Lentfer tlsv1_record_change_read_cipher(&conn->rl);
4926d49e1aeSJan Lentfer tls_verify_hash_free(&conn->verify);
4936d49e1aeSJan Lentfer os_free(conn->client_hello_ext);
4946d49e1aeSJan Lentfer tlsv1_client_free_dh(conn);
4956d49e1aeSJan Lentfer tlsv1_cred_free(conn->cred);
4963ff40c12SJohn Marino wpabuf_free(conn->partial_input);
497*a1157835SDaniel Fojt x509_certificate_chain_free(conn->server_cert);
4986d49e1aeSJan Lentfer os_free(conn);
4996d49e1aeSJan Lentfer }
5006d49e1aeSJan Lentfer
5016d49e1aeSJan Lentfer
5026d49e1aeSJan Lentfer /**
5036d49e1aeSJan Lentfer * tlsv1_client_established - Check whether connection has been established
5046d49e1aeSJan Lentfer * @conn: TLSv1 client connection data from tlsv1_client_init()
5056d49e1aeSJan Lentfer * Returns: 1 if connection is established, 0 if not
5066d49e1aeSJan Lentfer */
tlsv1_client_established(struct tlsv1_client * conn)5076d49e1aeSJan Lentfer int tlsv1_client_established(struct tlsv1_client *conn)
5086d49e1aeSJan Lentfer {
5096d49e1aeSJan Lentfer return conn->state == ESTABLISHED;
5106d49e1aeSJan Lentfer }
5116d49e1aeSJan Lentfer
5126d49e1aeSJan Lentfer
5136d49e1aeSJan Lentfer /**
5146d49e1aeSJan Lentfer * tlsv1_client_prf - Use TLS-PRF to derive keying material
5156d49e1aeSJan Lentfer * @conn: TLSv1 client connection data from tlsv1_client_init()
5166d49e1aeSJan Lentfer * @label: Label (e.g., description of the key) for PRF
517*a1157835SDaniel Fojt * @context: Optional extra upper-layer context (max len 2^16)
518*a1157835SDaniel Fojt * @context_len: The length of the context value
5196d49e1aeSJan Lentfer * @server_random_first: seed is 0 = client_random|server_random,
5206d49e1aeSJan Lentfer * 1 = server_random|client_random
5216d49e1aeSJan Lentfer * @out: Buffer for output data from TLS-PRF
5226d49e1aeSJan Lentfer * @out_len: Length of the output buffer
5236d49e1aeSJan Lentfer * Returns: 0 on success, -1 on failure
5246d49e1aeSJan Lentfer */
tlsv1_client_prf(struct tlsv1_client * conn,const char * label,const u8 * context,size_t context_len,int server_random_first,u8 * out,size_t out_len)5256d49e1aeSJan Lentfer int tlsv1_client_prf(struct tlsv1_client *conn, const char *label,
526*a1157835SDaniel Fojt const u8 *context, size_t context_len,
5276d49e1aeSJan Lentfer int server_random_first, u8 *out, size_t out_len)
5286d49e1aeSJan Lentfer {
529*a1157835SDaniel Fojt u8 *seed, *pos;
530*a1157835SDaniel Fojt size_t seed_len = 2 * TLS_RANDOM_LEN;
531*a1157835SDaniel Fojt int res;
5326d49e1aeSJan Lentfer
5336d49e1aeSJan Lentfer if (conn->state != ESTABLISHED)
5346d49e1aeSJan Lentfer return -1;
5356d49e1aeSJan Lentfer
536*a1157835SDaniel Fojt if (context_len > 65535)
537*a1157835SDaniel Fojt return -1;
538*a1157835SDaniel Fojt
539*a1157835SDaniel Fojt if (context)
540*a1157835SDaniel Fojt seed_len += 2 + context_len;
541*a1157835SDaniel Fojt
542*a1157835SDaniel Fojt seed = os_malloc(seed_len);
543*a1157835SDaniel Fojt if (!seed)
544*a1157835SDaniel Fojt return -1;
545*a1157835SDaniel Fojt
5466d49e1aeSJan Lentfer if (server_random_first) {
5476d49e1aeSJan Lentfer os_memcpy(seed, conn->server_random, TLS_RANDOM_LEN);
5486d49e1aeSJan Lentfer os_memcpy(seed + TLS_RANDOM_LEN, conn->client_random,
5496d49e1aeSJan Lentfer TLS_RANDOM_LEN);
5506d49e1aeSJan Lentfer } else {
5516d49e1aeSJan Lentfer os_memcpy(seed, conn->client_random, TLS_RANDOM_LEN);
5526d49e1aeSJan Lentfer os_memcpy(seed + TLS_RANDOM_LEN, conn->server_random,
5536d49e1aeSJan Lentfer TLS_RANDOM_LEN);
5546d49e1aeSJan Lentfer }
5556d49e1aeSJan Lentfer
556*a1157835SDaniel Fojt if (context) {
557*a1157835SDaniel Fojt pos = seed + 2 * TLS_RANDOM_LEN;
558*a1157835SDaniel Fojt WPA_PUT_BE16(pos, context_len);
559*a1157835SDaniel Fojt pos += 2;
560*a1157835SDaniel Fojt os_memcpy(pos, context, context_len);
561*a1157835SDaniel Fojt }
562*a1157835SDaniel Fojt
563*a1157835SDaniel Fojt res = tls_prf(conn->rl.tls_version,
5643ff40c12SJohn Marino conn->master_secret, TLS_MASTER_SECRET_LEN,
565*a1157835SDaniel Fojt label, seed, seed_len, out, out_len);
566*a1157835SDaniel Fojt os_free(seed);
567*a1157835SDaniel Fojt return res;
5686d49e1aeSJan Lentfer }
5696d49e1aeSJan Lentfer
5706d49e1aeSJan Lentfer
5716d49e1aeSJan Lentfer /**
5726d49e1aeSJan Lentfer * tlsv1_client_get_cipher - Get current cipher name
5736d49e1aeSJan Lentfer * @conn: TLSv1 client connection data from tlsv1_client_init()
5746d49e1aeSJan Lentfer * @buf: Buffer for the cipher name
5756d49e1aeSJan Lentfer * @buflen: buf size
5766d49e1aeSJan Lentfer * Returns: 0 on success, -1 on failure
5776d49e1aeSJan Lentfer *
5786d49e1aeSJan Lentfer * Get the name of the currently used cipher.
5796d49e1aeSJan Lentfer */
tlsv1_client_get_cipher(struct tlsv1_client * conn,char * buf,size_t buflen)5806d49e1aeSJan Lentfer int tlsv1_client_get_cipher(struct tlsv1_client *conn, char *buf,
5816d49e1aeSJan Lentfer size_t buflen)
5826d49e1aeSJan Lentfer {
5836d49e1aeSJan Lentfer char *cipher;
5846d49e1aeSJan Lentfer
5856d49e1aeSJan Lentfer switch (conn->rl.cipher_suite) {
5866d49e1aeSJan Lentfer case TLS_RSA_WITH_RC4_128_MD5:
5876d49e1aeSJan Lentfer cipher = "RC4-MD5";
5886d49e1aeSJan Lentfer break;
5896d49e1aeSJan Lentfer case TLS_RSA_WITH_RC4_128_SHA:
5906d49e1aeSJan Lentfer cipher = "RC4-SHA";
5916d49e1aeSJan Lentfer break;
5926d49e1aeSJan Lentfer case TLS_RSA_WITH_DES_CBC_SHA:
5936d49e1aeSJan Lentfer cipher = "DES-CBC-SHA";
5946d49e1aeSJan Lentfer break;
5956d49e1aeSJan Lentfer case TLS_RSA_WITH_3DES_EDE_CBC_SHA:
5966d49e1aeSJan Lentfer cipher = "DES-CBC3-SHA";
5976d49e1aeSJan Lentfer break;
598*a1157835SDaniel Fojt case TLS_DHE_RSA_WITH_DES_CBC_SHA:
599*a1157835SDaniel Fojt cipher = "DHE-RSA-DES-CBC-SHA";
600*a1157835SDaniel Fojt break;
601*a1157835SDaniel Fojt case TLS_DHE_RSA_WITH_3DES_EDE_CBC_SHA:
602*a1157835SDaniel Fojt cipher = "DHE-RSA-DES-CBC3-SHA";
603*a1157835SDaniel Fojt break;
604*a1157835SDaniel Fojt case TLS_DH_anon_WITH_RC4_128_MD5:
605*a1157835SDaniel Fojt cipher = "ADH-RC4-MD5";
606*a1157835SDaniel Fojt break;
607*a1157835SDaniel Fojt case TLS_DH_anon_WITH_DES_CBC_SHA:
608*a1157835SDaniel Fojt cipher = "ADH-DES-SHA";
609*a1157835SDaniel Fojt break;
610*a1157835SDaniel Fojt case TLS_DH_anon_WITH_3DES_EDE_CBC_SHA:
611*a1157835SDaniel Fojt cipher = "ADH-DES-CBC3-SHA";
612*a1157835SDaniel Fojt break;
613*a1157835SDaniel Fojt case TLS_RSA_WITH_AES_128_CBC_SHA:
614*a1157835SDaniel Fojt cipher = "AES-128-SHA";
615*a1157835SDaniel Fojt break;
616*a1157835SDaniel Fojt case TLS_DHE_RSA_WITH_AES_128_CBC_SHA:
617*a1157835SDaniel Fojt cipher = "DHE-RSA-AES-128-SHA";
6183ff40c12SJohn Marino break;
6196d49e1aeSJan Lentfer case TLS_DH_anon_WITH_AES_128_CBC_SHA:
6206d49e1aeSJan Lentfer cipher = "ADH-AES-128-SHA";
6216d49e1aeSJan Lentfer break;
6226d49e1aeSJan Lentfer case TLS_RSA_WITH_AES_256_CBC_SHA:
6236d49e1aeSJan Lentfer cipher = "AES-256-SHA";
6246d49e1aeSJan Lentfer break;
625*a1157835SDaniel Fojt case TLS_DHE_RSA_WITH_AES_256_CBC_SHA:
626*a1157835SDaniel Fojt cipher = "DHE-RSA-AES-256-SHA";
6273ff40c12SJohn Marino break;
628*a1157835SDaniel Fojt case TLS_DH_anon_WITH_AES_256_CBC_SHA:
629*a1157835SDaniel Fojt cipher = "ADH-AES-256-SHA";
6306d49e1aeSJan Lentfer break;
6313ff40c12SJohn Marino case TLS_RSA_WITH_AES_128_CBC_SHA256:
6323ff40c12SJohn Marino cipher = "AES-128-SHA256";
6333ff40c12SJohn Marino break;
634*a1157835SDaniel Fojt case TLS_RSA_WITH_AES_256_CBC_SHA256:
635*a1157835SDaniel Fojt cipher = "AES-256-SHA256";
636*a1157835SDaniel Fojt break;
637*a1157835SDaniel Fojt case TLS_DHE_RSA_WITH_AES_128_CBC_SHA256:
638*a1157835SDaniel Fojt cipher = "DHE-RSA-AES-128-SHA256";
639*a1157835SDaniel Fojt break;
640*a1157835SDaniel Fojt case TLS_DHE_RSA_WITH_AES_256_CBC_SHA256:
641*a1157835SDaniel Fojt cipher = "DHE-RSA-AES-256-SHA256";
642*a1157835SDaniel Fojt break;
643*a1157835SDaniel Fojt case TLS_DH_anon_WITH_AES_128_CBC_SHA256:
644*a1157835SDaniel Fojt cipher = "ADH-AES-128-SHA256";
645*a1157835SDaniel Fojt break;
646*a1157835SDaniel Fojt case TLS_DH_anon_WITH_AES_256_CBC_SHA256:
647*a1157835SDaniel Fojt cipher = "ADH-AES-256-SHA256";
648*a1157835SDaniel Fojt break;
6496d49e1aeSJan Lentfer default:
6506d49e1aeSJan Lentfer return -1;
6516d49e1aeSJan Lentfer }
6526d49e1aeSJan Lentfer
6536d49e1aeSJan Lentfer if (os_strlcpy(buf, cipher, buflen) >= buflen)
6546d49e1aeSJan Lentfer return -1;
6556d49e1aeSJan Lentfer return 0;
6566d49e1aeSJan Lentfer }
6576d49e1aeSJan Lentfer
6586d49e1aeSJan Lentfer
6596d49e1aeSJan Lentfer /**
6606d49e1aeSJan Lentfer * tlsv1_client_shutdown - Shutdown TLS connection
6616d49e1aeSJan Lentfer * @conn: TLSv1 client connection data from tlsv1_client_init()
6626d49e1aeSJan Lentfer * Returns: 0 on success, -1 on failure
6636d49e1aeSJan Lentfer */
tlsv1_client_shutdown(struct tlsv1_client * conn)6646d49e1aeSJan Lentfer int tlsv1_client_shutdown(struct tlsv1_client *conn)
6656d49e1aeSJan Lentfer {
6666d49e1aeSJan Lentfer conn->state = CLIENT_HELLO;
6676d49e1aeSJan Lentfer
6686d49e1aeSJan Lentfer if (tls_verify_hash_init(&conn->verify) < 0) {
6696d49e1aeSJan Lentfer wpa_printf(MSG_DEBUG, "TLSv1: Failed to re-initialize verify "
6706d49e1aeSJan Lentfer "hash");
6716d49e1aeSJan Lentfer return -1;
6726d49e1aeSJan Lentfer }
6736d49e1aeSJan Lentfer
6746d49e1aeSJan Lentfer tlsv1_record_set_cipher_suite(&conn->rl, TLS_NULL_WITH_NULL_NULL);
6756d49e1aeSJan Lentfer tlsv1_record_change_write_cipher(&conn->rl);
6766d49e1aeSJan Lentfer tlsv1_record_change_read_cipher(&conn->rl);
6776d49e1aeSJan Lentfer
6786d49e1aeSJan Lentfer conn->certificate_requested = 0;
6796d49e1aeSJan Lentfer crypto_public_key_free(conn->server_rsa_key);
6806d49e1aeSJan Lentfer conn->server_rsa_key = NULL;
6816d49e1aeSJan Lentfer conn->session_resumed = 0;
6826d49e1aeSJan Lentfer
6836d49e1aeSJan Lentfer return 0;
6846d49e1aeSJan Lentfer }
6856d49e1aeSJan Lentfer
6866d49e1aeSJan Lentfer
6876d49e1aeSJan Lentfer /**
6886d49e1aeSJan Lentfer * tlsv1_client_resumed - Was session resumption used
6896d49e1aeSJan Lentfer * @conn: TLSv1 client connection data from tlsv1_client_init()
6906d49e1aeSJan Lentfer * Returns: 1 if current session used session resumption, 0 if not
6916d49e1aeSJan Lentfer */
tlsv1_client_resumed(struct tlsv1_client * conn)6926d49e1aeSJan Lentfer int tlsv1_client_resumed(struct tlsv1_client *conn)
6936d49e1aeSJan Lentfer {
6946d49e1aeSJan Lentfer return !!conn->session_resumed;
6956d49e1aeSJan Lentfer }
6966d49e1aeSJan Lentfer
6976d49e1aeSJan Lentfer
6986d49e1aeSJan Lentfer /**
6996d49e1aeSJan Lentfer * tlsv1_client_hello_ext - Set TLS extension for ClientHello
7006d49e1aeSJan Lentfer * @conn: TLSv1 client connection data from tlsv1_client_init()
7016d49e1aeSJan Lentfer * @ext_type: Extension type
7026d49e1aeSJan Lentfer * @data: Extension payload (%NULL to remove extension)
7036d49e1aeSJan Lentfer * @data_len: Extension payload length
7046d49e1aeSJan Lentfer * Returns: 0 on success, -1 on failure
7056d49e1aeSJan Lentfer */
tlsv1_client_hello_ext(struct tlsv1_client * conn,int ext_type,const u8 * data,size_t data_len)7066d49e1aeSJan Lentfer int tlsv1_client_hello_ext(struct tlsv1_client *conn, int ext_type,
7076d49e1aeSJan Lentfer const u8 *data, size_t data_len)
7086d49e1aeSJan Lentfer {
7096d49e1aeSJan Lentfer u8 *pos;
7106d49e1aeSJan Lentfer
7116d49e1aeSJan Lentfer conn->session_ticket_included = 0;
7126d49e1aeSJan Lentfer os_free(conn->client_hello_ext);
7136d49e1aeSJan Lentfer conn->client_hello_ext = NULL;
7146d49e1aeSJan Lentfer conn->client_hello_ext_len = 0;
7156d49e1aeSJan Lentfer
7166d49e1aeSJan Lentfer if (data == NULL || data_len == 0)
7176d49e1aeSJan Lentfer return 0;
7186d49e1aeSJan Lentfer
719*a1157835SDaniel Fojt pos = conn->client_hello_ext = os_malloc(4 + data_len);
7206d49e1aeSJan Lentfer if (pos == NULL)
7216d49e1aeSJan Lentfer return -1;
7226d49e1aeSJan Lentfer
7236d49e1aeSJan Lentfer WPA_PUT_BE16(pos, ext_type);
7246d49e1aeSJan Lentfer pos += 2;
7256d49e1aeSJan Lentfer WPA_PUT_BE16(pos, data_len);
7266d49e1aeSJan Lentfer pos += 2;
7276d49e1aeSJan Lentfer os_memcpy(pos, data, data_len);
728*a1157835SDaniel Fojt conn->client_hello_ext_len = 4 + data_len;
7296d49e1aeSJan Lentfer
7306d49e1aeSJan Lentfer if (ext_type == TLS_EXT_PAC_OPAQUE) {
7316d49e1aeSJan Lentfer conn->session_ticket_included = 1;
7326d49e1aeSJan Lentfer wpa_printf(MSG_DEBUG, "TLSv1: Using session ticket");
7336d49e1aeSJan Lentfer }
7346d49e1aeSJan Lentfer
7356d49e1aeSJan Lentfer return 0;
7366d49e1aeSJan Lentfer }
7376d49e1aeSJan Lentfer
7386d49e1aeSJan Lentfer
7396d49e1aeSJan Lentfer /**
740*a1157835SDaniel Fojt * tlsv1_client_get_random - Get random data from TLS connection
7416d49e1aeSJan Lentfer * @conn: TLSv1 client connection data from tlsv1_client_init()
742*a1157835SDaniel Fojt * @keys: Structure of random data (filled on success)
7436d49e1aeSJan Lentfer * Returns: 0 on success, -1 on failure
7446d49e1aeSJan Lentfer */
tlsv1_client_get_random(struct tlsv1_client * conn,struct tls_random * keys)745*a1157835SDaniel Fojt int tlsv1_client_get_random(struct tlsv1_client *conn, struct tls_random *keys)
7466d49e1aeSJan Lentfer {
7476d49e1aeSJan Lentfer os_memset(keys, 0, sizeof(*keys));
7486d49e1aeSJan Lentfer if (conn->state == CLIENT_HELLO)
7496d49e1aeSJan Lentfer return -1;
7506d49e1aeSJan Lentfer
7516d49e1aeSJan Lentfer keys->client_random = conn->client_random;
7526d49e1aeSJan Lentfer keys->client_random_len = TLS_RANDOM_LEN;
7536d49e1aeSJan Lentfer
7546d49e1aeSJan Lentfer if (conn->state != SERVER_HELLO) {
7556d49e1aeSJan Lentfer keys->server_random = conn->server_random;
7566d49e1aeSJan Lentfer keys->server_random_len = TLS_RANDOM_LEN;
7576d49e1aeSJan Lentfer }
7586d49e1aeSJan Lentfer
7596d49e1aeSJan Lentfer return 0;
7606d49e1aeSJan Lentfer }
7616d49e1aeSJan Lentfer
7626d49e1aeSJan Lentfer
7636d49e1aeSJan Lentfer /**
7646d49e1aeSJan Lentfer * tlsv1_client_get_keyblock_size - Get TLS key_block size
7656d49e1aeSJan Lentfer * @conn: TLSv1 client connection data from tlsv1_client_init()
7666d49e1aeSJan Lentfer * Returns: Size of the key_block for the negotiated cipher suite or -1 on
7676d49e1aeSJan Lentfer * failure
7686d49e1aeSJan Lentfer */
tlsv1_client_get_keyblock_size(struct tlsv1_client * conn)7696d49e1aeSJan Lentfer int tlsv1_client_get_keyblock_size(struct tlsv1_client *conn)
7706d49e1aeSJan Lentfer {
7716d49e1aeSJan Lentfer if (conn->state == CLIENT_HELLO || conn->state == SERVER_HELLO)
7726d49e1aeSJan Lentfer return -1;
7736d49e1aeSJan Lentfer
7746d49e1aeSJan Lentfer return 2 * (conn->rl.hash_size + conn->rl.key_material_len +
7756d49e1aeSJan Lentfer conn->rl.iv_size);
7766d49e1aeSJan Lentfer }
7776d49e1aeSJan Lentfer
7786d49e1aeSJan Lentfer
7796d49e1aeSJan Lentfer /**
7806d49e1aeSJan Lentfer * tlsv1_client_set_cipher_list - Configure acceptable cipher suites
7816d49e1aeSJan Lentfer * @conn: TLSv1 client connection data from tlsv1_client_init()
7826d49e1aeSJan Lentfer * @ciphers: Zero (TLS_CIPHER_NONE) terminated list of allowed ciphers
7836d49e1aeSJan Lentfer * (TLS_CIPHER_*).
7846d49e1aeSJan Lentfer * Returns: 0 on success, -1 on failure
7856d49e1aeSJan Lentfer */
tlsv1_client_set_cipher_list(struct tlsv1_client * conn,u8 * ciphers)7866d49e1aeSJan Lentfer int tlsv1_client_set_cipher_list(struct tlsv1_client *conn, u8 *ciphers)
7876d49e1aeSJan Lentfer {
7886d49e1aeSJan Lentfer size_t count;
7896d49e1aeSJan Lentfer u16 *suites;
7906d49e1aeSJan Lentfer
7916d49e1aeSJan Lentfer /* TODO: implement proper configuration of cipher suites */
7926d49e1aeSJan Lentfer if (ciphers[0] == TLS_CIPHER_ANON_DH_AES128_SHA) {
7936d49e1aeSJan Lentfer count = 0;
7946d49e1aeSJan Lentfer suites = conn->cipher_suites;
7953ff40c12SJohn Marino suites[count++] = TLS_DH_anon_WITH_AES_256_CBC_SHA256;
7966d49e1aeSJan Lentfer suites[count++] = TLS_DH_anon_WITH_AES_256_CBC_SHA;
7973ff40c12SJohn Marino suites[count++] = TLS_DH_anon_WITH_AES_128_CBC_SHA256;
7986d49e1aeSJan Lentfer suites[count++] = TLS_DH_anon_WITH_AES_128_CBC_SHA;
7996d49e1aeSJan Lentfer suites[count++] = TLS_DH_anon_WITH_3DES_EDE_CBC_SHA;
8006d49e1aeSJan Lentfer suites[count++] = TLS_DH_anon_WITH_RC4_128_MD5;
8016d49e1aeSJan Lentfer suites[count++] = TLS_DH_anon_WITH_DES_CBC_SHA;
8026d49e1aeSJan Lentfer
8036d49e1aeSJan Lentfer /*
8046d49e1aeSJan Lentfer * Cisco AP (at least 350 and 1200 series) local authentication
8056d49e1aeSJan Lentfer * server does not know how to search cipher suites from the
8066d49e1aeSJan Lentfer * list and seem to require that the last entry in the list is
8076d49e1aeSJan Lentfer * the one that it wants to use. However, TLS specification
8086d49e1aeSJan Lentfer * requires the list to be in the client preference order. As a
8096d49e1aeSJan Lentfer * workaround, add anon-DH AES-128-SHA1 again at the end of the
8106d49e1aeSJan Lentfer * list to allow the Cisco code to find it.
8116d49e1aeSJan Lentfer */
8126d49e1aeSJan Lentfer suites[count++] = TLS_DH_anon_WITH_AES_128_CBC_SHA;
8136d49e1aeSJan Lentfer conn->num_cipher_suites = count;
8146d49e1aeSJan Lentfer }
8156d49e1aeSJan Lentfer
8166d49e1aeSJan Lentfer return 0;
8176d49e1aeSJan Lentfer }
8186d49e1aeSJan Lentfer
8196d49e1aeSJan Lentfer
8206d49e1aeSJan Lentfer /**
8216d49e1aeSJan Lentfer * tlsv1_client_set_cred - Set client credentials
8226d49e1aeSJan Lentfer * @conn: TLSv1 client connection data from tlsv1_client_init()
8236d49e1aeSJan Lentfer * @cred: Credentials from tlsv1_cred_alloc()
8246d49e1aeSJan Lentfer * Returns: 0 on success, -1 on failure
8256d49e1aeSJan Lentfer *
8266d49e1aeSJan Lentfer * On success, the client takes ownership of the credentials block and caller
8276d49e1aeSJan Lentfer * must not free it. On failure, caller is responsible for freeing the
8286d49e1aeSJan Lentfer * credential block.
8296d49e1aeSJan Lentfer */
tlsv1_client_set_cred(struct tlsv1_client * conn,struct tlsv1_credentials * cred)8306d49e1aeSJan Lentfer int tlsv1_client_set_cred(struct tlsv1_client *conn,
8316d49e1aeSJan Lentfer struct tlsv1_credentials *cred)
8326d49e1aeSJan Lentfer {
8336d49e1aeSJan Lentfer tlsv1_cred_free(conn->cred);
8346d49e1aeSJan Lentfer conn->cred = cred;
8356d49e1aeSJan Lentfer return 0;
8366d49e1aeSJan Lentfer }
8376d49e1aeSJan Lentfer
8386d49e1aeSJan Lentfer
839*a1157835SDaniel Fojt /**
840*a1157835SDaniel Fojt * tlsv1_client_set_flags - Set connection flags
841*a1157835SDaniel Fojt * @conn: TLSv1 client connection data from tlsv1_client_init()
842*a1157835SDaniel Fojt * @flags: TLS_CONN_* bitfield
843*a1157835SDaniel Fojt */
tlsv1_client_set_flags(struct tlsv1_client * conn,unsigned int flags)844*a1157835SDaniel Fojt void tlsv1_client_set_flags(struct tlsv1_client *conn, unsigned int flags)
8453ff40c12SJohn Marino {
846*a1157835SDaniel Fojt conn->flags = flags;
8473ff40c12SJohn Marino }
8483ff40c12SJohn Marino
8493ff40c12SJohn Marino
tlsv1_client_set_session_ticket_cb(struct tlsv1_client * conn,tlsv1_client_session_ticket_cb cb,void * ctx)8506d49e1aeSJan Lentfer void tlsv1_client_set_session_ticket_cb(struct tlsv1_client *conn,
8516d49e1aeSJan Lentfer tlsv1_client_session_ticket_cb cb,
8526d49e1aeSJan Lentfer void *ctx)
8536d49e1aeSJan Lentfer {
8546d49e1aeSJan Lentfer wpa_printf(MSG_DEBUG, "TLSv1: SessionTicket callback set %p (ctx %p)",
8556d49e1aeSJan Lentfer cb, ctx);
8566d49e1aeSJan Lentfer conn->session_ticket_cb = cb;
8576d49e1aeSJan Lentfer conn->session_ticket_cb_ctx = ctx;
8586d49e1aeSJan Lentfer }
859*a1157835SDaniel Fojt
860*a1157835SDaniel Fojt
tlsv1_client_set_cb(struct tlsv1_client * conn,void (* event_cb)(void * ctx,enum tls_event ev,union tls_event_data * data),void * cb_ctx,int cert_in_cb)861*a1157835SDaniel Fojt void tlsv1_client_set_cb(struct tlsv1_client *conn,
862*a1157835SDaniel Fojt void (*event_cb)(void *ctx, enum tls_event ev,
863*a1157835SDaniel Fojt union tls_event_data *data),
864*a1157835SDaniel Fojt void *cb_ctx,
865*a1157835SDaniel Fojt int cert_in_cb)
866*a1157835SDaniel Fojt {
867*a1157835SDaniel Fojt conn->event_cb = event_cb;
868*a1157835SDaniel Fojt conn->cb_ctx = cb_ctx;
869*a1157835SDaniel Fojt conn->cert_in_cb = !!cert_in_cb;
870*a1157835SDaniel Fojt }
871*a1157835SDaniel Fojt
872*a1157835SDaniel Fojt
tlsv1_client_get_version(struct tlsv1_client * conn,char * buf,size_t buflen)873*a1157835SDaniel Fojt int tlsv1_client_get_version(struct tlsv1_client *conn, char *buf,
874*a1157835SDaniel Fojt size_t buflen)
875*a1157835SDaniel Fojt {
876*a1157835SDaniel Fojt if (!conn)
877*a1157835SDaniel Fojt return -1;
878*a1157835SDaniel Fojt switch (conn->rl.tls_version) {
879*a1157835SDaniel Fojt case TLS_VERSION_1:
880*a1157835SDaniel Fojt os_strlcpy(buf, "TLSv1", buflen);
881*a1157835SDaniel Fojt break;
882*a1157835SDaniel Fojt case TLS_VERSION_1_1:
883*a1157835SDaniel Fojt os_strlcpy(buf, "TLSv1.1", buflen);
884*a1157835SDaniel Fojt break;
885*a1157835SDaniel Fojt case TLS_VERSION_1_2:
886*a1157835SDaniel Fojt os_strlcpy(buf, "TLSv1.2", buflen);
887*a1157835SDaniel Fojt break;
888*a1157835SDaniel Fojt default:
889*a1157835SDaniel Fojt return -1;
890*a1157835SDaniel Fojt }
891*a1157835SDaniel Fojt
892*a1157835SDaniel Fojt return 0;
893*a1157835SDaniel Fojt }
894