2 * Copyright (c) 2016-2017, Mellanox Technologies. All rights reserved.
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34 #ifndef _TLS_OFFLOAD_H
35 #define _TLS_OFFLOAD_H
37 #include <linux/types.h>
38 #include <asm/byteorder.h>
39 #include <linux/crypto.h>
40 #include <linux/socket.h>
41 #include <linux/tcp.h>
43 #include <net/strparser.h>
45 #include <uapi/linux/tls.h>
48 /* Maximum data size carried in a TLS record */
49 #define TLS_MAX_PAYLOAD_SIZE ((size_t)1 << 14)
51 #define TLS_HEADER_SIZE 5
52 #define TLS_NONCE_OFFSET TLS_HEADER_SIZE
54 #define TLS_CRYPTO_INFO_READY(info) ((info)->cipher_type)
56 #define TLS_RECORD_TYPE_DATA 0x17
58 #define TLS_AAD_SPACE_SIZE 13
59 #define TLS_DEVICE_NAME_MAX 32
62 * This structure defines the routines for Inline TLS driver.
63 * The following routines are optional and filled with a
64 * null pointer if not defined.
66 * @name: Its the name of registered Inline tls device
67 * @dev_list: Inline tls device list
68 * int (*feature)(struct tls_device *device);
69 * Called to return Inline TLS driver capability
71 * int (*hash)(struct tls_device *device, struct sock *sk);
72 * This function sets Inline driver for listen and program
73 * device specific functioanlity as required
75 * void (*unhash)(struct tls_device *device, struct sock *sk);
76 * This function cleans listen state set by Inline TLS driver
79 char name[TLS_DEVICE_NAME_MAX];
80 struct list_head dev_list;
81 int (*feature)(struct tls_device *device);
82 int (*hash)(struct tls_device *device, struct sock *sk);
83 void (*unhash)(struct tls_device *device, struct sock *sk);
86 struct tls_sw_context_tx {
87 struct crypto_aead *aead_send;
88 struct crypto_wait async_wait;
90 char aad_space[TLS_AAD_SPACE_SIZE];
92 unsigned int sg_plaintext_size;
93 int sg_plaintext_num_elem;
94 struct scatterlist sg_plaintext_data[MAX_SKB_FRAGS];
96 unsigned int sg_encrypted_size;
97 int sg_encrypted_num_elem;
98 struct scatterlist sg_encrypted_data[MAX_SKB_FRAGS];
100 /* AAD | sg_plaintext_data | sg_tag */
101 struct scatterlist sg_aead_in[2];
102 /* AAD | sg_encrypted_data (data contain overhead for hdr&iv&tag) */
103 struct scatterlist sg_aead_out[2];
106 struct tls_sw_context_rx {
107 struct crypto_aead *aead_recv;
108 struct crypto_wait async_wait;
110 struct strparser strp;
111 void (*saved_data_ready)(struct sock *sk);
112 unsigned int (*sk_poll)(struct file *file, struct socket *sock,
113 struct poll_table_struct *wait);
114 struct sk_buff *recv_pkt;
118 char rx_aad_ciphertext[TLS_AAD_SPACE_SIZE];
119 char rx_aad_plaintext[TLS_AAD_SPACE_SIZE];
123 struct tls_record_info {
124 struct list_head list;
128 skb_frag_t frags[MAX_SKB_FRAGS];
131 struct tls_offload_context {
132 struct crypto_aead *aead_send;
133 spinlock_t lock; /* protects records list */
134 struct list_head records_list;
135 struct tls_record_info *open_record;
136 struct tls_record_info *retransmit_hint;
138 u64 unacked_record_sn;
140 struct scatterlist sg_tx_data[MAX_SKB_FRAGS];
141 void (*sk_destruct)(struct sock *sk);
143 /* The TLS layer reserves room for driver specific state
144 * Currently the belief is that there is not enough
145 * driver specific state to justify another layer of indirection
147 #define TLS_DRIVER_STATE_SIZE (max_t(size_t, 8, sizeof(void *)))
150 #define TLS_OFFLOAD_CONTEXT_SIZE \
151 (ALIGN(sizeof(struct tls_offload_context), sizeof(void *)) + \
152 TLS_DRIVER_STATE_SIZE)
155 TLS_PENDING_CLOSED_RECORD
158 struct cipher_context {
170 struct tls_crypto_info crypto_send;
171 struct tls12_crypto_info_aes_gcm_128 crypto_send_aes_gcm_128;
174 struct tls_crypto_info crypto_recv;
175 struct tls12_crypto_info_aes_gcm_128 crypto_recv_aes_gcm_128;
178 struct list_head list;
179 struct net_device *netdev;
188 struct cipher_context tx;
189 struct cipher_context rx;
191 struct scatterlist *partially_sent_record;
192 u16 partially_sent_offset;
194 bool in_tcp_sendpages;
196 u16 pending_open_record_frags;
197 int (*push_pending_record)(struct sock *sk, int flags);
199 void (*sk_write_space)(struct sock *sk);
200 void (*sk_proto_close)(struct sock *sk, long timeout);
202 int (*setsockopt)(struct sock *sk, int level,
203 int optname, char __user *optval,
204 unsigned int optlen);
205 int (*getsockopt)(struct sock *sk, int level,
206 int optname, char __user *optval,
208 int (*hash)(struct sock *sk);
209 void (*unhash)(struct sock *sk);
212 int wait_on_pending_writer(struct sock *sk, long *timeo);
213 int tls_sk_query(struct sock *sk, int optname, char __user *optval,
215 int tls_sk_attach(struct sock *sk, int optname, char __user *optval,
216 unsigned int optlen);
219 int tls_set_sw_offload(struct sock *sk, struct tls_context *ctx, int tx);
220 int tls_sw_sendmsg(struct sock *sk, struct msghdr *msg, size_t size);
221 int tls_sw_sendpage(struct sock *sk, struct page *page,
222 int offset, size_t size, int flags);
223 void tls_sw_close(struct sock *sk, long timeout);
224 void tls_sw_free_resources_tx(struct sock *sk);
225 void tls_sw_free_resources_rx(struct sock *sk);
226 int tls_sw_recvmsg(struct sock *sk, struct msghdr *msg, size_t len,
227 int nonblock, int flags, int *addr_len);
228 unsigned int tls_sw_poll(struct file *file, struct socket *sock,
229 struct poll_table_struct *wait);
230 ssize_t tls_sw_splice_read(struct socket *sock, loff_t *ppos,
231 struct pipe_inode_info *pipe,
232 size_t len, unsigned int flags);
234 int tls_set_device_offload(struct sock *sk, struct tls_context *ctx);
235 int tls_device_sendmsg(struct sock *sk, struct msghdr *msg, size_t size);
236 int tls_device_sendpage(struct sock *sk, struct page *page,
237 int offset, size_t size, int flags);
238 void tls_device_sk_destruct(struct sock *sk);
239 void tls_device_init(void);
240 void tls_device_cleanup(void);
242 struct tls_record_info *tls_get_record(struct tls_offload_context *context,
243 u32 seq, u64 *p_record_sn);
245 static inline bool tls_record_is_start_marker(struct tls_record_info *rec)
247 return rec->len == 0;
250 static inline u32 tls_record_start_seq(struct tls_record_info *rec)
252 return rec->end_seq - rec->len;
255 void tls_sk_destruct(struct sock *sk, struct tls_context *ctx);
256 int tls_push_sg(struct sock *sk, struct tls_context *ctx,
257 struct scatterlist *sg, u16 first_offset,
259 int tls_push_pending_closed_record(struct sock *sk, struct tls_context *ctx,
260 int flags, long *timeo);
262 static inline bool tls_is_pending_closed_record(struct tls_context *ctx)
264 return test_bit(TLS_PENDING_CLOSED_RECORD, &ctx->flags);
267 static inline int tls_complete_pending_work(struct sock *sk,
268 struct tls_context *ctx,
269 int flags, long *timeo)
273 if (unlikely(sk->sk_write_pending))
274 rc = wait_on_pending_writer(sk, timeo);
276 if (!rc && tls_is_pending_closed_record(ctx))
277 rc = tls_push_pending_closed_record(sk, ctx, flags, timeo);
282 static inline bool tls_is_partially_sent_record(struct tls_context *ctx)
284 return !!ctx->partially_sent_record;
287 static inline bool tls_is_pending_open_record(struct tls_context *tls_ctx)
289 return tls_ctx->pending_open_record_frags;
292 static inline bool tls_is_sk_tx_device_offloaded(struct sock *sk)
294 return sk_fullsock(sk) &&
295 /* matches smp_store_release in tls_set_device_offload */
296 smp_load_acquire(&sk->sk_destruct) == &tls_device_sk_destruct;
299 static inline void tls_err_abort(struct sock *sk, int err)
302 sk->sk_error_report(sk);
305 static inline bool tls_bigint_increment(unsigned char *seq, int len)
309 for (i = len - 1; i >= 0; i--) {
318 static inline void tls_advance_record_sn(struct sock *sk,
319 struct cipher_context *ctx)
321 if (tls_bigint_increment(ctx->rec_seq, ctx->rec_seq_size))
322 tls_err_abort(sk, EBADMSG);
323 tls_bigint_increment(ctx->iv + TLS_CIPHER_AES_GCM_128_SALT_SIZE,
327 static inline void tls_fill_prepend(struct tls_context *ctx,
329 size_t plaintext_len,
330 unsigned char record_type)
332 size_t pkt_len, iv_size = ctx->tx.iv_size;
334 pkt_len = plaintext_len + iv_size + ctx->tx.tag_size;
336 /* we cover nonce explicit here as well, so buf should be of
337 * size KTLS_DTLS_HEADER_SIZE + KTLS_DTLS_NONCE_EXPLICIT_SIZE
339 buf[0] = record_type;
340 buf[1] = TLS_VERSION_MINOR(ctx->crypto_send.version);
341 buf[2] = TLS_VERSION_MAJOR(ctx->crypto_send.version);
342 /* we can use IV for nonce explicit according to spec */
343 buf[3] = pkt_len >> 8;
344 buf[4] = pkt_len & 0xFF;
345 memcpy(buf + TLS_NONCE_OFFSET,
346 ctx->tx.iv + TLS_CIPHER_AES_GCM_128_SALT_SIZE, iv_size);
349 static inline void tls_make_aad(char *buf,
351 char *record_sequence,
352 int record_sequence_size,
353 unsigned char record_type)
355 memcpy(buf, record_sequence, record_sequence_size);
357 buf[8] = record_type;
358 buf[9] = TLS_1_2_VERSION_MAJOR;
359 buf[10] = TLS_1_2_VERSION_MINOR;
361 buf[12] = size & 0xFF;
364 static inline struct tls_context *tls_get_ctx(const struct sock *sk)
366 struct inet_connection_sock *icsk = inet_csk(sk);
368 return icsk->icsk_ulp_data;
371 static inline struct tls_sw_context_rx *tls_sw_ctx_rx(
372 const struct tls_context *tls_ctx)
374 return (struct tls_sw_context_rx *)tls_ctx->priv_ctx_rx;
377 static inline struct tls_sw_context_tx *tls_sw_ctx_tx(
378 const struct tls_context *tls_ctx)
380 return (struct tls_sw_context_tx *)tls_ctx->priv_ctx_tx;
383 static inline struct tls_offload_context *tls_offload_ctx(
384 const struct tls_context *tls_ctx)
386 return (struct tls_offload_context *)tls_ctx->priv_ctx_tx;
389 int tls_proccess_cmsg(struct sock *sk, struct msghdr *msg,
390 unsigned char *record_type);
391 void tls_register_device(struct tls_device *device);
392 void tls_unregister_device(struct tls_device *device);
394 struct sk_buff *tls_validate_xmit_skb(struct sock *sk,
395 struct net_device *dev,
396 struct sk_buff *skb);
398 int tls_sw_fallback_init(struct sock *sk,
399 struct tls_offload_context *offload_ctx,
400 struct tls_crypto_info *crypto_info);
402 #endif /* _TLS_OFFLOAD_H */