139beb93cSSam Leffler /* 2*f05cddf9SRui Paulo * TLS v1.0/v1.1/v1.2 server (RFC 2246, RFC 4346, RFC 5246) 3*f05cddf9SRui Paulo * Copyright (c) 2006-2011, Jouni Malinen <j@w1.fi> 439beb93cSSam Leffler * 5*f05cddf9SRui Paulo * This software may be distributed under the terms of the BSD license. 6*f05cddf9SRui Paulo * See README for more details. 739beb93cSSam Leffler */ 839beb93cSSam Leffler 939beb93cSSam Leffler #include "includes.h" 1039beb93cSSam Leffler 1139beb93cSSam Leffler #include "common.h" 12e28a4053SRui Paulo #include "crypto/sha1.h" 13e28a4053SRui Paulo #include "crypto/tls.h" 1439beb93cSSam Leffler #include "tlsv1_common.h" 1539beb93cSSam Leffler #include "tlsv1_record.h" 1639beb93cSSam Leffler #include "tlsv1_server.h" 1739beb93cSSam Leffler #include "tlsv1_server_i.h" 1839beb93cSSam Leffler 1939beb93cSSam Leffler /* TODO: 2039beb93cSSam Leffler * Support for a message fragmented across several records (RFC 2246, 6.2.1) 2139beb93cSSam Leffler */ 2239beb93cSSam Leffler 2339beb93cSSam Leffler 2439beb93cSSam Leffler void tlsv1_server_alert(struct tlsv1_server *conn, u8 level, u8 description) 2539beb93cSSam Leffler { 2639beb93cSSam Leffler conn->alert_level = level; 2739beb93cSSam Leffler conn->alert_description = description; 2839beb93cSSam Leffler } 2939beb93cSSam Leffler 3039beb93cSSam Leffler 3139beb93cSSam Leffler int tlsv1_server_derive_keys(struct tlsv1_server *conn, 3239beb93cSSam Leffler const u8 *pre_master_secret, 3339beb93cSSam Leffler size_t pre_master_secret_len) 3439beb93cSSam Leffler { 3539beb93cSSam Leffler u8 seed[2 * TLS_RANDOM_LEN]; 3639beb93cSSam Leffler u8 key_block[TLS_MAX_KEY_BLOCK_LEN]; 3739beb93cSSam Leffler u8 *pos; 3839beb93cSSam Leffler size_t key_block_len; 3939beb93cSSam Leffler 4039beb93cSSam Leffler if (pre_master_secret) { 4139beb93cSSam Leffler wpa_hexdump_key(MSG_MSGDUMP, "TLSv1: pre_master_secret", 4239beb93cSSam Leffler pre_master_secret, pre_master_secret_len); 4339beb93cSSam Leffler os_memcpy(seed, conn->client_random, TLS_RANDOM_LEN); 4439beb93cSSam Leffler os_memcpy(seed + TLS_RANDOM_LEN, conn->server_random, 4539beb93cSSam Leffler TLS_RANDOM_LEN); 46*f05cddf9SRui Paulo if (tls_prf(conn->rl.tls_version, 47*f05cddf9SRui Paulo pre_master_secret, pre_master_secret_len, 4839beb93cSSam Leffler "master secret", seed, 2 * TLS_RANDOM_LEN, 4939beb93cSSam Leffler conn->master_secret, TLS_MASTER_SECRET_LEN)) { 5039beb93cSSam Leffler wpa_printf(MSG_DEBUG, "TLSv1: Failed to derive " 5139beb93cSSam Leffler "master_secret"); 5239beb93cSSam Leffler return -1; 5339beb93cSSam Leffler } 5439beb93cSSam Leffler wpa_hexdump_key(MSG_MSGDUMP, "TLSv1: master_secret", 5539beb93cSSam Leffler conn->master_secret, TLS_MASTER_SECRET_LEN); 5639beb93cSSam Leffler } 5739beb93cSSam Leffler 5839beb93cSSam Leffler os_memcpy(seed, conn->server_random, TLS_RANDOM_LEN); 5939beb93cSSam Leffler os_memcpy(seed + TLS_RANDOM_LEN, conn->client_random, TLS_RANDOM_LEN); 6039beb93cSSam Leffler key_block_len = 2 * (conn->rl.hash_size + conn->rl.key_material_len + 6139beb93cSSam Leffler conn->rl.iv_size); 62*f05cddf9SRui Paulo if (tls_prf(conn->rl.tls_version, 63*f05cddf9SRui Paulo conn->master_secret, TLS_MASTER_SECRET_LEN, 6439beb93cSSam Leffler "key expansion", seed, 2 * TLS_RANDOM_LEN, 6539beb93cSSam Leffler key_block, key_block_len)) { 6639beb93cSSam Leffler wpa_printf(MSG_DEBUG, "TLSv1: Failed to derive key_block"); 6739beb93cSSam Leffler return -1; 6839beb93cSSam Leffler } 6939beb93cSSam Leffler wpa_hexdump_key(MSG_MSGDUMP, "TLSv1: key_block", 7039beb93cSSam Leffler key_block, key_block_len); 7139beb93cSSam Leffler 7239beb93cSSam Leffler pos = key_block; 7339beb93cSSam Leffler 7439beb93cSSam Leffler /* client_write_MAC_secret */ 7539beb93cSSam Leffler os_memcpy(conn->rl.read_mac_secret, pos, conn->rl.hash_size); 7639beb93cSSam Leffler pos += conn->rl.hash_size; 7739beb93cSSam Leffler /* server_write_MAC_secret */ 7839beb93cSSam Leffler os_memcpy(conn->rl.write_mac_secret, pos, conn->rl.hash_size); 7939beb93cSSam Leffler pos += conn->rl.hash_size; 8039beb93cSSam Leffler 8139beb93cSSam Leffler /* client_write_key */ 8239beb93cSSam Leffler os_memcpy(conn->rl.read_key, pos, conn->rl.key_material_len); 8339beb93cSSam Leffler pos += conn->rl.key_material_len; 8439beb93cSSam Leffler /* server_write_key */ 8539beb93cSSam Leffler os_memcpy(conn->rl.write_key, pos, conn->rl.key_material_len); 8639beb93cSSam Leffler pos += conn->rl.key_material_len; 8739beb93cSSam Leffler 8839beb93cSSam Leffler /* client_write_IV */ 8939beb93cSSam Leffler os_memcpy(conn->rl.read_iv, pos, conn->rl.iv_size); 9039beb93cSSam Leffler pos += conn->rl.iv_size; 9139beb93cSSam Leffler /* server_write_IV */ 9239beb93cSSam Leffler os_memcpy(conn->rl.write_iv, pos, conn->rl.iv_size); 9339beb93cSSam Leffler pos += conn->rl.iv_size; 9439beb93cSSam Leffler 9539beb93cSSam Leffler return 0; 9639beb93cSSam Leffler } 9739beb93cSSam Leffler 9839beb93cSSam Leffler 9939beb93cSSam Leffler /** 10039beb93cSSam Leffler * tlsv1_server_handshake - Process TLS handshake 10139beb93cSSam Leffler * @conn: TLSv1 server connection data from tlsv1_server_init() 10239beb93cSSam Leffler * @in_data: Input data from TLS peer 10339beb93cSSam Leffler * @in_len: Input data length 10439beb93cSSam Leffler * @out_len: Length of the output buffer. 10539beb93cSSam Leffler * Returns: Pointer to output data, %NULL on failure 10639beb93cSSam Leffler */ 10739beb93cSSam Leffler u8 * tlsv1_server_handshake(struct tlsv1_server *conn, 10839beb93cSSam Leffler const u8 *in_data, size_t in_len, 10939beb93cSSam Leffler size_t *out_len) 11039beb93cSSam Leffler { 11139beb93cSSam Leffler const u8 *pos, *end; 11239beb93cSSam Leffler u8 *msg = NULL, *in_msg, *in_pos, *in_end, alert, ct; 11339beb93cSSam Leffler size_t in_msg_len; 114*f05cddf9SRui Paulo int used; 11539beb93cSSam Leffler 11639beb93cSSam Leffler if (in_data == NULL || in_len == 0) { 11739beb93cSSam Leffler wpa_printf(MSG_DEBUG, "TLSv1: No input data to server"); 11839beb93cSSam Leffler return NULL; 11939beb93cSSam Leffler } 12039beb93cSSam Leffler 12139beb93cSSam Leffler pos = in_data; 12239beb93cSSam Leffler end = in_data + in_len; 12339beb93cSSam Leffler in_msg = os_malloc(in_len); 12439beb93cSSam Leffler if (in_msg == NULL) 12539beb93cSSam Leffler return NULL; 12639beb93cSSam Leffler 12739beb93cSSam Leffler /* Each received packet may include multiple records */ 12839beb93cSSam Leffler while (pos < end) { 12939beb93cSSam Leffler in_msg_len = in_len; 130*f05cddf9SRui Paulo used = tlsv1_record_receive(&conn->rl, pos, end - pos, 131*f05cddf9SRui Paulo in_msg, &in_msg_len, &alert); 132*f05cddf9SRui Paulo if (used < 0) { 13339beb93cSSam Leffler wpa_printf(MSG_DEBUG, "TLSv1: Processing received " 13439beb93cSSam Leffler "record failed"); 13539beb93cSSam Leffler tlsv1_server_alert(conn, TLS_ALERT_LEVEL_FATAL, alert); 13639beb93cSSam Leffler goto failed; 13739beb93cSSam Leffler } 138*f05cddf9SRui Paulo if (used == 0) { 139*f05cddf9SRui Paulo /* need more data */ 140*f05cddf9SRui Paulo wpa_printf(MSG_DEBUG, "TLSv1: Partial processing not " 141*f05cddf9SRui Paulo "yet supported"); 142*f05cddf9SRui Paulo tlsv1_server_alert(conn, TLS_ALERT_LEVEL_FATAL, alert); 143*f05cddf9SRui Paulo goto failed; 144*f05cddf9SRui Paulo } 14539beb93cSSam Leffler ct = pos[0]; 14639beb93cSSam Leffler 14739beb93cSSam Leffler in_pos = in_msg; 14839beb93cSSam Leffler in_end = in_msg + in_msg_len; 14939beb93cSSam Leffler 15039beb93cSSam Leffler /* Each received record may include multiple messages of the 15139beb93cSSam Leffler * same ContentType. */ 15239beb93cSSam Leffler while (in_pos < in_end) { 15339beb93cSSam Leffler in_msg_len = in_end - in_pos; 15439beb93cSSam Leffler if (tlsv1_server_process_handshake(conn, ct, in_pos, 15539beb93cSSam Leffler &in_msg_len) < 0) 15639beb93cSSam Leffler goto failed; 15739beb93cSSam Leffler in_pos += in_msg_len; 15839beb93cSSam Leffler } 15939beb93cSSam Leffler 160*f05cddf9SRui Paulo pos += used; 16139beb93cSSam Leffler } 16239beb93cSSam Leffler 16339beb93cSSam Leffler os_free(in_msg); 16439beb93cSSam Leffler in_msg = NULL; 16539beb93cSSam Leffler 16639beb93cSSam Leffler msg = tlsv1_server_handshake_write(conn, out_len); 16739beb93cSSam Leffler 16839beb93cSSam Leffler failed: 16939beb93cSSam Leffler os_free(in_msg); 17039beb93cSSam Leffler if (conn->alert_level) { 17139beb93cSSam Leffler if (conn->state == FAILED) { 17239beb93cSSam Leffler /* Avoid alert loops */ 17339beb93cSSam Leffler wpa_printf(MSG_DEBUG, "TLSv1: Drop alert loop"); 17439beb93cSSam Leffler os_free(msg); 17539beb93cSSam Leffler return NULL; 17639beb93cSSam Leffler } 17739beb93cSSam Leffler conn->state = FAILED; 17839beb93cSSam Leffler os_free(msg); 17939beb93cSSam Leffler msg = tlsv1_server_send_alert(conn, conn->alert_level, 18039beb93cSSam Leffler conn->alert_description, 18139beb93cSSam Leffler out_len); 18239beb93cSSam Leffler } 18339beb93cSSam Leffler 18439beb93cSSam Leffler return msg; 18539beb93cSSam Leffler } 18639beb93cSSam Leffler 18739beb93cSSam Leffler 18839beb93cSSam Leffler /** 18939beb93cSSam Leffler * tlsv1_server_encrypt - Encrypt data into TLS tunnel 19039beb93cSSam Leffler * @conn: TLSv1 server connection data from tlsv1_server_init() 19139beb93cSSam Leffler * @in_data: Pointer to plaintext data to be encrypted 19239beb93cSSam Leffler * @in_len: Input buffer length 19339beb93cSSam Leffler * @out_data: Pointer to output buffer (encrypted TLS data) 19439beb93cSSam Leffler * @out_len: Maximum out_data length 19539beb93cSSam Leffler * Returns: Number of bytes written to out_data, -1 on failure 19639beb93cSSam Leffler * 19739beb93cSSam Leffler * This function is used after TLS handshake has been completed successfully to 19839beb93cSSam Leffler * send data in the encrypted tunnel. 19939beb93cSSam Leffler */ 20039beb93cSSam Leffler int tlsv1_server_encrypt(struct tlsv1_server *conn, 20139beb93cSSam Leffler const u8 *in_data, size_t in_len, 20239beb93cSSam Leffler u8 *out_data, size_t out_len) 20339beb93cSSam Leffler { 20439beb93cSSam Leffler size_t rlen; 20539beb93cSSam Leffler 20639beb93cSSam Leffler wpa_hexdump_key(MSG_MSGDUMP, "TLSv1: Plaintext AppData", 20739beb93cSSam Leffler in_data, in_len); 20839beb93cSSam Leffler 20939beb93cSSam Leffler if (tlsv1_record_send(&conn->rl, TLS_CONTENT_TYPE_APPLICATION_DATA, 210*f05cddf9SRui Paulo out_data, out_len, in_data, in_len, &rlen) < 0) { 21139beb93cSSam Leffler wpa_printf(MSG_DEBUG, "TLSv1: Failed to create a record"); 21239beb93cSSam Leffler tlsv1_server_alert(conn, TLS_ALERT_LEVEL_FATAL, 21339beb93cSSam Leffler TLS_ALERT_INTERNAL_ERROR); 21439beb93cSSam Leffler return -1; 21539beb93cSSam Leffler } 21639beb93cSSam Leffler 21739beb93cSSam Leffler return rlen; 21839beb93cSSam Leffler } 21939beb93cSSam Leffler 22039beb93cSSam Leffler 22139beb93cSSam Leffler /** 22239beb93cSSam Leffler * tlsv1_server_decrypt - Decrypt data from TLS tunnel 22339beb93cSSam Leffler * @conn: TLSv1 server connection data from tlsv1_server_init() 22439beb93cSSam Leffler * @in_data: Pointer to input buffer (encrypted TLS data) 22539beb93cSSam Leffler * @in_len: Input buffer length 22639beb93cSSam Leffler * @out_data: Pointer to output buffer (decrypted data from TLS tunnel) 22739beb93cSSam Leffler * @out_len: Maximum out_data length 22839beb93cSSam Leffler * Returns: Number of bytes written to out_data, -1 on failure 22939beb93cSSam Leffler * 23039beb93cSSam Leffler * This function is used after TLS handshake has been completed successfully to 23139beb93cSSam Leffler * receive data from the encrypted tunnel. 23239beb93cSSam Leffler */ 23339beb93cSSam Leffler int tlsv1_server_decrypt(struct tlsv1_server *conn, 23439beb93cSSam Leffler const u8 *in_data, size_t in_len, 23539beb93cSSam Leffler u8 *out_data, size_t out_len) 23639beb93cSSam Leffler { 23739beb93cSSam Leffler const u8 *in_end, *pos; 238*f05cddf9SRui Paulo int used; 239*f05cddf9SRui Paulo u8 alert, *out_end, *out_pos, ct; 24039beb93cSSam Leffler size_t olen; 24139beb93cSSam Leffler 24239beb93cSSam Leffler pos = in_data; 24339beb93cSSam Leffler in_end = in_data + in_len; 24439beb93cSSam Leffler out_pos = out_data; 24539beb93cSSam Leffler out_end = out_data + out_len; 24639beb93cSSam Leffler 24739beb93cSSam Leffler while (pos < in_end) { 248*f05cddf9SRui Paulo ct = pos[0]; 249*f05cddf9SRui Paulo olen = out_end - out_pos; 250*f05cddf9SRui Paulo used = tlsv1_record_receive(&conn->rl, pos, in_end - pos, 251*f05cddf9SRui Paulo out_pos, &olen, &alert); 252*f05cddf9SRui Paulo if (used < 0) { 253*f05cddf9SRui Paulo wpa_printf(MSG_DEBUG, "TLSv1: Record layer processing " 254*f05cddf9SRui Paulo "failed"); 255*f05cddf9SRui Paulo tlsv1_server_alert(conn, TLS_ALERT_LEVEL_FATAL, alert); 256*f05cddf9SRui Paulo return -1; 257*f05cddf9SRui Paulo } 258*f05cddf9SRui Paulo if (used == 0) { 259*f05cddf9SRui Paulo /* need more data */ 260*f05cddf9SRui Paulo wpa_printf(MSG_DEBUG, "TLSv1: Partial processing not " 261*f05cddf9SRui Paulo "yet supported"); 262*f05cddf9SRui Paulo tlsv1_server_alert(conn, TLS_ALERT_LEVEL_FATAL, alert); 263*f05cddf9SRui Paulo return -1; 264*f05cddf9SRui Paulo } 265*f05cddf9SRui Paulo 266*f05cddf9SRui Paulo if (ct == TLS_CONTENT_TYPE_ALERT) { 267*f05cddf9SRui Paulo if (olen < 2) { 268*f05cddf9SRui Paulo wpa_printf(MSG_DEBUG, "TLSv1: Alert " 269*f05cddf9SRui Paulo "underflow"); 270*f05cddf9SRui Paulo tlsv1_server_alert(conn, TLS_ALERT_LEVEL_FATAL, 271*f05cddf9SRui Paulo TLS_ALERT_DECODE_ERROR); 272*f05cddf9SRui Paulo return -1; 273*f05cddf9SRui Paulo } 274*f05cddf9SRui Paulo wpa_printf(MSG_DEBUG, "TLSv1: Received alert %d:%d", 275*f05cddf9SRui Paulo out_pos[0], out_pos[1]); 276*f05cddf9SRui Paulo if (out_pos[0] == TLS_ALERT_LEVEL_WARNING) { 277*f05cddf9SRui Paulo /* Continue processing */ 278*f05cddf9SRui Paulo pos += used; 279*f05cddf9SRui Paulo continue; 280*f05cddf9SRui Paulo } 281*f05cddf9SRui Paulo 282*f05cddf9SRui Paulo tlsv1_server_alert(conn, TLS_ALERT_LEVEL_FATAL, 283*f05cddf9SRui Paulo out_pos[1]); 284*f05cddf9SRui Paulo return -1; 285*f05cddf9SRui Paulo } 286*f05cddf9SRui Paulo 287*f05cddf9SRui Paulo if (ct != TLS_CONTENT_TYPE_APPLICATION_DATA) { 28839beb93cSSam Leffler wpa_printf(MSG_DEBUG, "TLSv1: Unexpected content type " 28939beb93cSSam Leffler "0x%x", pos[0]); 29039beb93cSSam Leffler tlsv1_server_alert(conn, TLS_ALERT_LEVEL_FATAL, 29139beb93cSSam Leffler TLS_ALERT_UNEXPECTED_MESSAGE); 29239beb93cSSam Leffler return -1; 29339beb93cSSam Leffler } 29439beb93cSSam Leffler 29539beb93cSSam Leffler out_pos += olen; 29639beb93cSSam Leffler if (out_pos > out_end) { 29739beb93cSSam Leffler wpa_printf(MSG_DEBUG, "TLSv1: Buffer not large enough " 29839beb93cSSam Leffler "for processing the received record"); 29939beb93cSSam Leffler tlsv1_server_alert(conn, TLS_ALERT_LEVEL_FATAL, 30039beb93cSSam Leffler TLS_ALERT_INTERNAL_ERROR); 30139beb93cSSam Leffler return -1; 30239beb93cSSam Leffler } 30339beb93cSSam Leffler 304*f05cddf9SRui Paulo pos += used; 30539beb93cSSam Leffler } 30639beb93cSSam Leffler 30739beb93cSSam Leffler return out_pos - out_data; 30839beb93cSSam Leffler } 30939beb93cSSam Leffler 31039beb93cSSam Leffler 31139beb93cSSam Leffler /** 31239beb93cSSam Leffler * tlsv1_server_global_init - Initialize TLSv1 server 31339beb93cSSam Leffler * Returns: 0 on success, -1 on failure 31439beb93cSSam Leffler * 31539beb93cSSam Leffler * This function must be called before using any other TLSv1 server functions. 31639beb93cSSam Leffler */ 31739beb93cSSam Leffler int tlsv1_server_global_init(void) 31839beb93cSSam Leffler { 31939beb93cSSam Leffler return crypto_global_init(); 32039beb93cSSam Leffler } 32139beb93cSSam Leffler 32239beb93cSSam Leffler 32339beb93cSSam Leffler /** 32439beb93cSSam Leffler * tlsv1_server_global_deinit - Deinitialize TLSv1 server 32539beb93cSSam Leffler * 32639beb93cSSam Leffler * This function can be used to deinitialize the TLSv1 server that was 32739beb93cSSam Leffler * initialized by calling tlsv1_server_global_init(). No TLSv1 server functions 32839beb93cSSam Leffler * can be called after this before calling tlsv1_server_global_init() again. 32939beb93cSSam Leffler */ 33039beb93cSSam Leffler void tlsv1_server_global_deinit(void) 33139beb93cSSam Leffler { 33239beb93cSSam Leffler crypto_global_deinit(); 33339beb93cSSam Leffler } 33439beb93cSSam Leffler 33539beb93cSSam Leffler 33639beb93cSSam Leffler /** 33739beb93cSSam Leffler * tlsv1_server_init - Initialize TLSv1 server connection 33839beb93cSSam Leffler * @cred: Pointer to server credentials from tlsv1_server_cred_alloc() 33939beb93cSSam Leffler * Returns: Pointer to TLSv1 server connection data or %NULL on failure 34039beb93cSSam Leffler */ 34139beb93cSSam Leffler struct tlsv1_server * tlsv1_server_init(struct tlsv1_credentials *cred) 34239beb93cSSam Leffler { 34339beb93cSSam Leffler struct tlsv1_server *conn; 34439beb93cSSam Leffler size_t count; 34539beb93cSSam Leffler u16 *suites; 34639beb93cSSam Leffler 34739beb93cSSam Leffler conn = os_zalloc(sizeof(*conn)); 34839beb93cSSam Leffler if (conn == NULL) 34939beb93cSSam Leffler return NULL; 35039beb93cSSam Leffler 35139beb93cSSam Leffler conn->cred = cred; 35239beb93cSSam Leffler 35339beb93cSSam Leffler conn->state = CLIENT_HELLO; 35439beb93cSSam Leffler 35539beb93cSSam Leffler if (tls_verify_hash_init(&conn->verify) < 0) { 35639beb93cSSam Leffler wpa_printf(MSG_DEBUG, "TLSv1: Failed to initialize verify " 35739beb93cSSam Leffler "hash"); 35839beb93cSSam Leffler os_free(conn); 35939beb93cSSam Leffler return NULL; 36039beb93cSSam Leffler } 36139beb93cSSam Leffler 36239beb93cSSam Leffler count = 0; 36339beb93cSSam Leffler suites = conn->cipher_suites; 36439beb93cSSam Leffler suites[count++] = TLS_RSA_WITH_AES_256_CBC_SHA; 36539beb93cSSam Leffler suites[count++] = TLS_RSA_WITH_AES_128_CBC_SHA; 36639beb93cSSam Leffler suites[count++] = TLS_RSA_WITH_3DES_EDE_CBC_SHA; 36739beb93cSSam Leffler suites[count++] = TLS_RSA_WITH_RC4_128_SHA; 36839beb93cSSam Leffler suites[count++] = TLS_RSA_WITH_RC4_128_MD5; 36939beb93cSSam Leffler conn->num_cipher_suites = count; 37039beb93cSSam Leffler 37139beb93cSSam Leffler return conn; 37239beb93cSSam Leffler } 37339beb93cSSam Leffler 37439beb93cSSam Leffler 37539beb93cSSam Leffler static void tlsv1_server_clear_data(struct tlsv1_server *conn) 37639beb93cSSam Leffler { 37739beb93cSSam Leffler tlsv1_record_set_cipher_suite(&conn->rl, TLS_NULL_WITH_NULL_NULL); 37839beb93cSSam Leffler tlsv1_record_change_write_cipher(&conn->rl); 37939beb93cSSam Leffler tlsv1_record_change_read_cipher(&conn->rl); 38039beb93cSSam Leffler tls_verify_hash_free(&conn->verify); 38139beb93cSSam Leffler 38239beb93cSSam Leffler crypto_public_key_free(conn->client_rsa_key); 38339beb93cSSam Leffler conn->client_rsa_key = NULL; 38439beb93cSSam Leffler 38539beb93cSSam Leffler os_free(conn->session_ticket); 38639beb93cSSam Leffler conn->session_ticket = NULL; 38739beb93cSSam Leffler conn->session_ticket_len = 0; 38839beb93cSSam Leffler conn->use_session_ticket = 0; 38939beb93cSSam Leffler 39039beb93cSSam Leffler os_free(conn->dh_secret); 39139beb93cSSam Leffler conn->dh_secret = NULL; 39239beb93cSSam Leffler conn->dh_secret_len = 0; 39339beb93cSSam Leffler } 39439beb93cSSam Leffler 39539beb93cSSam Leffler 39639beb93cSSam Leffler /** 39739beb93cSSam Leffler * tlsv1_server_deinit - Deinitialize TLSv1 server connection 39839beb93cSSam Leffler * @conn: TLSv1 server connection data from tlsv1_server_init() 39939beb93cSSam Leffler */ 40039beb93cSSam Leffler void tlsv1_server_deinit(struct tlsv1_server *conn) 40139beb93cSSam Leffler { 40239beb93cSSam Leffler tlsv1_server_clear_data(conn); 40339beb93cSSam Leffler os_free(conn); 40439beb93cSSam Leffler } 40539beb93cSSam Leffler 40639beb93cSSam Leffler 40739beb93cSSam Leffler /** 40839beb93cSSam Leffler * tlsv1_server_established - Check whether connection has been established 40939beb93cSSam Leffler * @conn: TLSv1 server connection data from tlsv1_server_init() 41039beb93cSSam Leffler * Returns: 1 if connection is established, 0 if not 41139beb93cSSam Leffler */ 41239beb93cSSam Leffler int tlsv1_server_established(struct tlsv1_server *conn) 41339beb93cSSam Leffler { 41439beb93cSSam Leffler return conn->state == ESTABLISHED; 41539beb93cSSam Leffler } 41639beb93cSSam Leffler 41739beb93cSSam Leffler 41839beb93cSSam Leffler /** 41939beb93cSSam Leffler * tlsv1_server_prf - Use TLS-PRF to derive keying material 42039beb93cSSam Leffler * @conn: TLSv1 server connection data from tlsv1_server_init() 42139beb93cSSam Leffler * @label: Label (e.g., description of the key) for PRF 42239beb93cSSam Leffler * @server_random_first: seed is 0 = client_random|server_random, 42339beb93cSSam Leffler * 1 = server_random|client_random 42439beb93cSSam Leffler * @out: Buffer for output data from TLS-PRF 42539beb93cSSam Leffler * @out_len: Length of the output buffer 42639beb93cSSam Leffler * Returns: 0 on success, -1 on failure 42739beb93cSSam Leffler */ 42839beb93cSSam Leffler int tlsv1_server_prf(struct tlsv1_server *conn, const char *label, 42939beb93cSSam Leffler int server_random_first, u8 *out, size_t out_len) 43039beb93cSSam Leffler { 43139beb93cSSam Leffler u8 seed[2 * TLS_RANDOM_LEN]; 43239beb93cSSam Leffler 43339beb93cSSam Leffler if (conn->state != ESTABLISHED) 43439beb93cSSam Leffler return -1; 43539beb93cSSam Leffler 43639beb93cSSam Leffler if (server_random_first) { 43739beb93cSSam Leffler os_memcpy(seed, conn->server_random, TLS_RANDOM_LEN); 43839beb93cSSam Leffler os_memcpy(seed + TLS_RANDOM_LEN, conn->client_random, 43939beb93cSSam Leffler TLS_RANDOM_LEN); 44039beb93cSSam Leffler } else { 44139beb93cSSam Leffler os_memcpy(seed, conn->client_random, TLS_RANDOM_LEN); 44239beb93cSSam Leffler os_memcpy(seed + TLS_RANDOM_LEN, conn->server_random, 44339beb93cSSam Leffler TLS_RANDOM_LEN); 44439beb93cSSam Leffler } 44539beb93cSSam Leffler 446*f05cddf9SRui Paulo return tls_prf(conn->rl.tls_version, 447*f05cddf9SRui Paulo conn->master_secret, TLS_MASTER_SECRET_LEN, 44839beb93cSSam Leffler label, seed, 2 * TLS_RANDOM_LEN, out, out_len); 44939beb93cSSam Leffler } 45039beb93cSSam Leffler 45139beb93cSSam Leffler 45239beb93cSSam Leffler /** 45339beb93cSSam Leffler * tlsv1_server_get_cipher - Get current cipher name 45439beb93cSSam Leffler * @conn: TLSv1 server connection data from tlsv1_server_init() 45539beb93cSSam Leffler * @buf: Buffer for the cipher name 45639beb93cSSam Leffler * @buflen: buf size 45739beb93cSSam Leffler * Returns: 0 on success, -1 on failure 45839beb93cSSam Leffler * 45939beb93cSSam Leffler * Get the name of the currently used cipher. 46039beb93cSSam Leffler */ 46139beb93cSSam Leffler int tlsv1_server_get_cipher(struct tlsv1_server *conn, char *buf, 46239beb93cSSam Leffler size_t buflen) 46339beb93cSSam Leffler { 46439beb93cSSam Leffler char *cipher; 46539beb93cSSam Leffler 46639beb93cSSam Leffler switch (conn->rl.cipher_suite) { 46739beb93cSSam Leffler case TLS_RSA_WITH_RC4_128_MD5: 46839beb93cSSam Leffler cipher = "RC4-MD5"; 46939beb93cSSam Leffler break; 47039beb93cSSam Leffler case TLS_RSA_WITH_RC4_128_SHA: 47139beb93cSSam Leffler cipher = "RC4-SHA"; 47239beb93cSSam Leffler break; 47339beb93cSSam Leffler case TLS_RSA_WITH_DES_CBC_SHA: 47439beb93cSSam Leffler cipher = "DES-CBC-SHA"; 47539beb93cSSam Leffler break; 47639beb93cSSam Leffler case TLS_RSA_WITH_3DES_EDE_CBC_SHA: 47739beb93cSSam Leffler cipher = "DES-CBC3-SHA"; 47839beb93cSSam Leffler break; 47939beb93cSSam Leffler case TLS_DH_anon_WITH_AES_128_CBC_SHA: 48039beb93cSSam Leffler cipher = "ADH-AES-128-SHA"; 48139beb93cSSam Leffler break; 48239beb93cSSam Leffler case TLS_RSA_WITH_AES_256_CBC_SHA: 48339beb93cSSam Leffler cipher = "AES-256-SHA"; 48439beb93cSSam Leffler break; 48539beb93cSSam Leffler case TLS_RSA_WITH_AES_128_CBC_SHA: 48639beb93cSSam Leffler cipher = "AES-128-SHA"; 48739beb93cSSam Leffler break; 48839beb93cSSam Leffler default: 48939beb93cSSam Leffler return -1; 49039beb93cSSam Leffler } 49139beb93cSSam Leffler 49239beb93cSSam Leffler if (os_strlcpy(buf, cipher, buflen) >= buflen) 49339beb93cSSam Leffler return -1; 49439beb93cSSam Leffler return 0; 49539beb93cSSam Leffler } 49639beb93cSSam Leffler 49739beb93cSSam Leffler 49839beb93cSSam Leffler /** 49939beb93cSSam Leffler * tlsv1_server_shutdown - Shutdown TLS connection 50039beb93cSSam Leffler * @conn: TLSv1 server connection data from tlsv1_server_init() 50139beb93cSSam Leffler * Returns: 0 on success, -1 on failure 50239beb93cSSam Leffler */ 50339beb93cSSam Leffler int tlsv1_server_shutdown(struct tlsv1_server *conn) 50439beb93cSSam Leffler { 50539beb93cSSam Leffler conn->state = CLIENT_HELLO; 50639beb93cSSam Leffler 50739beb93cSSam Leffler if (tls_verify_hash_init(&conn->verify) < 0) { 50839beb93cSSam Leffler wpa_printf(MSG_DEBUG, "TLSv1: Failed to re-initialize verify " 50939beb93cSSam Leffler "hash"); 51039beb93cSSam Leffler return -1; 51139beb93cSSam Leffler } 51239beb93cSSam Leffler 51339beb93cSSam Leffler tlsv1_server_clear_data(conn); 51439beb93cSSam Leffler 51539beb93cSSam Leffler return 0; 51639beb93cSSam Leffler } 51739beb93cSSam Leffler 51839beb93cSSam Leffler 51939beb93cSSam Leffler /** 52039beb93cSSam Leffler * tlsv1_server_resumed - Was session resumption used 52139beb93cSSam Leffler * @conn: TLSv1 server connection data from tlsv1_server_init() 52239beb93cSSam Leffler * Returns: 1 if current session used session resumption, 0 if not 52339beb93cSSam Leffler */ 52439beb93cSSam Leffler int tlsv1_server_resumed(struct tlsv1_server *conn) 52539beb93cSSam Leffler { 52639beb93cSSam Leffler return 0; 52739beb93cSSam Leffler } 52839beb93cSSam Leffler 52939beb93cSSam Leffler 53039beb93cSSam Leffler /** 53139beb93cSSam Leffler * tlsv1_server_get_keys - Get master key and random data from TLS connection 53239beb93cSSam Leffler * @conn: TLSv1 server connection data from tlsv1_server_init() 53339beb93cSSam Leffler * @keys: Structure of key/random data (filled on success) 53439beb93cSSam Leffler * Returns: 0 on success, -1 on failure 53539beb93cSSam Leffler */ 53639beb93cSSam Leffler int tlsv1_server_get_keys(struct tlsv1_server *conn, struct tls_keys *keys) 53739beb93cSSam Leffler { 53839beb93cSSam Leffler os_memset(keys, 0, sizeof(*keys)); 53939beb93cSSam Leffler if (conn->state == CLIENT_HELLO) 54039beb93cSSam Leffler return -1; 54139beb93cSSam Leffler 54239beb93cSSam Leffler keys->client_random = conn->client_random; 54339beb93cSSam Leffler keys->client_random_len = TLS_RANDOM_LEN; 54439beb93cSSam Leffler 54539beb93cSSam Leffler if (conn->state != SERVER_HELLO) { 54639beb93cSSam Leffler keys->server_random = conn->server_random; 54739beb93cSSam Leffler keys->server_random_len = TLS_RANDOM_LEN; 54839beb93cSSam Leffler keys->master_key = conn->master_secret; 54939beb93cSSam Leffler keys->master_key_len = TLS_MASTER_SECRET_LEN; 55039beb93cSSam Leffler } 55139beb93cSSam Leffler 55239beb93cSSam Leffler return 0; 55339beb93cSSam Leffler } 55439beb93cSSam Leffler 55539beb93cSSam Leffler 55639beb93cSSam Leffler /** 55739beb93cSSam Leffler * tlsv1_server_get_keyblock_size - Get TLS key_block size 55839beb93cSSam Leffler * @conn: TLSv1 server connection data from tlsv1_server_init() 55939beb93cSSam Leffler * Returns: Size of the key_block for the negotiated cipher suite or -1 on 56039beb93cSSam Leffler * failure 56139beb93cSSam Leffler */ 56239beb93cSSam Leffler int tlsv1_server_get_keyblock_size(struct tlsv1_server *conn) 56339beb93cSSam Leffler { 56439beb93cSSam Leffler if (conn->state == CLIENT_HELLO || conn->state == SERVER_HELLO) 56539beb93cSSam Leffler return -1; 56639beb93cSSam Leffler 56739beb93cSSam Leffler return 2 * (conn->rl.hash_size + conn->rl.key_material_len + 56839beb93cSSam Leffler conn->rl.iv_size); 56939beb93cSSam Leffler } 57039beb93cSSam Leffler 57139beb93cSSam Leffler 57239beb93cSSam Leffler /** 57339beb93cSSam Leffler * tlsv1_server_set_cipher_list - Configure acceptable cipher suites 57439beb93cSSam Leffler * @conn: TLSv1 server connection data from tlsv1_server_init() 57539beb93cSSam Leffler * @ciphers: Zero (TLS_CIPHER_NONE) terminated list of allowed ciphers 57639beb93cSSam Leffler * (TLS_CIPHER_*). 57739beb93cSSam Leffler * Returns: 0 on success, -1 on failure 57839beb93cSSam Leffler */ 57939beb93cSSam Leffler int tlsv1_server_set_cipher_list(struct tlsv1_server *conn, u8 *ciphers) 58039beb93cSSam Leffler { 58139beb93cSSam Leffler size_t count; 58239beb93cSSam Leffler u16 *suites; 58339beb93cSSam Leffler 58439beb93cSSam Leffler /* TODO: implement proper configuration of cipher suites */ 58539beb93cSSam Leffler if (ciphers[0] == TLS_CIPHER_ANON_DH_AES128_SHA) { 58639beb93cSSam Leffler count = 0; 58739beb93cSSam Leffler suites = conn->cipher_suites; 58839beb93cSSam Leffler suites[count++] = TLS_RSA_WITH_AES_256_CBC_SHA; 58939beb93cSSam Leffler suites[count++] = TLS_RSA_WITH_AES_128_CBC_SHA; 59039beb93cSSam Leffler suites[count++] = TLS_RSA_WITH_3DES_EDE_CBC_SHA; 59139beb93cSSam Leffler suites[count++] = TLS_RSA_WITH_RC4_128_SHA; 59239beb93cSSam Leffler suites[count++] = TLS_RSA_WITH_RC4_128_MD5; 59339beb93cSSam Leffler suites[count++] = TLS_DH_anon_WITH_AES_256_CBC_SHA; 59439beb93cSSam Leffler suites[count++] = TLS_DH_anon_WITH_AES_128_CBC_SHA; 59539beb93cSSam Leffler suites[count++] = TLS_DH_anon_WITH_3DES_EDE_CBC_SHA; 59639beb93cSSam Leffler suites[count++] = TLS_DH_anon_WITH_RC4_128_MD5; 59739beb93cSSam Leffler suites[count++] = TLS_DH_anon_WITH_DES_CBC_SHA; 59839beb93cSSam Leffler conn->num_cipher_suites = count; 59939beb93cSSam Leffler } 60039beb93cSSam Leffler 60139beb93cSSam Leffler return 0; 60239beb93cSSam Leffler } 60339beb93cSSam Leffler 60439beb93cSSam Leffler 60539beb93cSSam Leffler int tlsv1_server_set_verify(struct tlsv1_server *conn, int verify_peer) 60639beb93cSSam Leffler { 60739beb93cSSam Leffler conn->verify_peer = verify_peer; 60839beb93cSSam Leffler return 0; 60939beb93cSSam Leffler } 61039beb93cSSam Leffler 61139beb93cSSam Leffler 61239beb93cSSam Leffler void tlsv1_server_set_session_ticket_cb(struct tlsv1_server *conn, 61339beb93cSSam Leffler tlsv1_server_session_ticket_cb cb, 61439beb93cSSam Leffler void *ctx) 61539beb93cSSam Leffler { 61639beb93cSSam Leffler wpa_printf(MSG_DEBUG, "TLSv1: SessionTicket callback set %p (ctx %p)", 61739beb93cSSam Leffler cb, ctx); 61839beb93cSSam Leffler conn->session_ticket_cb = cb; 61939beb93cSSam Leffler conn->session_ticket_cb_ctx = ctx; 62039beb93cSSam Leffler } 621