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	tls: support for Inline tls record
Facility to register Inline TLS drivers to net/tls. Setup TLS_HW_RECORD prot to listen on offload device. Cases handled - Inline TLS device exists, setup prot for TLS_HW_RECORD - Atleast one Inline TLS exists, sets TLS_HW_RECORD. - If non-inline device establish connection, move to TLS_SW_TX Signed-off-by: Atul Gupta <atul.gupta@chelsio.com> Reviewed-by: Steve Wise <swise@opengridcomputing.com> Signed-off-by: David S. Miller <davem@davemloft.net>
This commit is contained in:
		
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						commit
						dd0bed1665
					
				
					 2 changed files with 142 additions and 4 deletions
				
			
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					@ -56,6 +56,32 @@
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#define TLS_RECORD_TYPE_DATA		0x17
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					#define TLS_RECORD_TYPE_DATA		0x17
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#define TLS_AAD_SPACE_SIZE		13
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					#define TLS_AAD_SPACE_SIZE		13
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					#define TLS_DEVICE_NAME_MAX		32
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					/*
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					 * This structure defines the routines for Inline TLS driver.
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					 * The following routines are optional and filled with a
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					 * null pointer if not defined.
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					 *
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					 * @name: Its the name of registered Inline tls device
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					 * @dev_list: Inline tls device list
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					 * int (*feature)(struct tls_device *device);
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					 *     Called to return Inline TLS driver capability
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					 *
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					 * int (*hash)(struct tls_device *device, struct sock *sk);
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					 *     This function sets Inline driver for listen and program
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					 *     device specific functioanlity as required
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					 *
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					 * void (*unhash)(struct tls_device *device, struct sock *sk);
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					 *     This function cleans listen state set by Inline TLS driver
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					 */
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					struct tls_device {
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						char name[TLS_DEVICE_NAME_MAX];
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						struct list_head dev_list;
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						int  (*feature)(struct tls_device *device);
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						int  (*hash)(struct tls_device *device, struct sock *sk);
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						void (*unhash)(struct tls_device *device, struct sock *sk);
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					};
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struct tls_sw_context {
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					struct tls_sw_context {
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	struct crypto_aead *aead_send;
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						struct crypto_aead *aead_send;
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					@ -114,7 +140,7 @@ struct tls_context {
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	void *priv_ctx;
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						void *priv_ctx;
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	u8 conf:2;
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						u8 conf:3;
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	struct cipher_context tx;
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						struct cipher_context tx;
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	struct cipher_context rx;
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						struct cipher_context rx;
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					@ -135,6 +161,8 @@ struct tls_context {
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	int  (*getsockopt)(struct sock *sk, int level,
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						int  (*getsockopt)(struct sock *sk, int level,
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			   int optname, char __user *optval,
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								   int optname, char __user *optval,
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			   int __user *optlen);
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								   int __user *optlen);
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						int  (*hash)(struct sock *sk);
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						void (*unhash)(struct sock *sk);
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};
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					};
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int wait_on_pending_writer(struct sock *sk, long *timeo);
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					int wait_on_pending_writer(struct sock *sk, long *timeo);
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					@ -283,5 +311,7 @@ static inline struct tls_offload_context *tls_offload_ctx(
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int tls_proccess_cmsg(struct sock *sk, struct msghdr *msg,
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					int tls_proccess_cmsg(struct sock *sk, struct msghdr *msg,
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		      unsigned char *record_type);
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							      unsigned char *record_type);
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					void tls_register_device(struct tls_device *device);
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					void tls_unregister_device(struct tls_device *device);
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#endif /* _TLS_OFFLOAD_H */
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					#endif /* _TLS_OFFLOAD_H */
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					@ -38,6 +38,7 @@
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#include <linux/highmem.h>
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					#include <linux/highmem.h>
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#include <linux/netdevice.h>
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					#include <linux/netdevice.h>
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#include <linux/sched/signal.h>
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					#include <linux/sched/signal.h>
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					#include <linux/inetdevice.h>
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#include <net/tls.h>
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					#include <net/tls.h>
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					@ -56,11 +57,14 @@ enum {
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	TLS_SW_TX,
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						TLS_SW_TX,
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	TLS_SW_RX,
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						TLS_SW_RX,
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	TLS_SW_RXTX,
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						TLS_SW_RXTX,
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						TLS_HW_RECORD,
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	TLS_NUM_CONFIG,
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						TLS_NUM_CONFIG,
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};
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					};
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static struct proto *saved_tcpv6_prot;
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					static struct proto *saved_tcpv6_prot;
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static DEFINE_MUTEX(tcpv6_prot_mutex);
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					static DEFINE_MUTEX(tcpv6_prot_mutex);
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					static LIST_HEAD(device_list);
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					static DEFINE_MUTEX(device_mutex);
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static struct proto tls_prots[TLS_NUM_PROTS][TLS_NUM_CONFIG];
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					static struct proto tls_prots[TLS_NUM_PROTS][TLS_NUM_CONFIG];
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static struct proto_ops tls_sw_proto_ops;
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					static struct proto_ops tls_sw_proto_ops;
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					@ -241,8 +245,12 @@ static void tls_sk_proto_close(struct sock *sk, long timeout)
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	lock_sock(sk);
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						lock_sock(sk);
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	sk_proto_close = ctx->sk_proto_close;
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						sk_proto_close = ctx->sk_proto_close;
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						if (ctx->conf == TLS_HW_RECORD)
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							goto skip_tx_cleanup;
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	if (ctx->conf == TLS_BASE) {
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						if (ctx->conf == TLS_BASE) {
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		kfree(ctx);
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							kfree(ctx);
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							ctx = NULL;
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		goto skip_tx_cleanup;
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							goto skip_tx_cleanup;
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	}
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						}
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					@ -276,6 +284,11 @@ static void tls_sk_proto_close(struct sock *sk, long timeout)
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skip_tx_cleanup:
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					skip_tx_cleanup:
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	release_sock(sk);
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						release_sock(sk);
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	sk_proto_close(sk, timeout);
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						sk_proto_close(sk, timeout);
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						/* free ctx for TLS_HW_RECORD, used by tcp_set_state
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						 * for sk->sk_prot->unhash [tls_hw_unhash]
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						 */
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						if (ctx && ctx->conf == TLS_HW_RECORD)
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							kfree(ctx);
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}
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					}
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static int do_tls_getsockopt_tx(struct sock *sk, char __user *optval,
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					static int do_tls_getsockopt_tx(struct sock *sk, char __user *optval,
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					@ -493,6 +506,79 @@ static int tls_setsockopt(struct sock *sk, int level, int optname,
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	return do_tls_setsockopt(sk, optname, optval, optlen);
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						return do_tls_setsockopt(sk, optname, optval, optlen);
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}
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					}
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					static struct tls_context *create_ctx(struct sock *sk)
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					{
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						struct inet_connection_sock *icsk = inet_csk(sk);
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						struct tls_context *ctx;
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						ctx = kzalloc(sizeof(*ctx), GFP_KERNEL);
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						if (!ctx)
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							return NULL;
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						icsk->icsk_ulp_data = ctx;
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						return ctx;
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					}
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					static int tls_hw_prot(struct sock *sk)
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					{
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						struct tls_context *ctx;
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						struct tls_device *dev;
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						int rc = 0;
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						mutex_lock(&device_mutex);
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						list_for_each_entry(dev, &device_list, dev_list) {
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							if (dev->feature && dev->feature(dev)) {
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								ctx = create_ctx(sk);
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								if (!ctx)
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									goto out;
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								ctx->hash = sk->sk_prot->hash;
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								ctx->unhash = sk->sk_prot->unhash;
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								ctx->sk_proto_close = sk->sk_prot->close;
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								ctx->conf = TLS_HW_RECORD;
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								update_sk_prot(sk, ctx);
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								rc = 1;
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								break;
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							}
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						}
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					out:
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						mutex_unlock(&device_mutex);
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						return rc;
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					}
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					static void tls_hw_unhash(struct sock *sk)
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					{
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						struct tls_context *ctx = tls_get_ctx(sk);
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						struct tls_device *dev;
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						mutex_lock(&device_mutex);
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						list_for_each_entry(dev, &device_list, dev_list) {
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							if (dev->unhash)
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								dev->unhash(dev, sk);
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						}
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						mutex_unlock(&device_mutex);
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						ctx->unhash(sk);
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					}
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					static int tls_hw_hash(struct sock *sk)
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					{
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						struct tls_context *ctx = tls_get_ctx(sk);
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						struct tls_device *dev;
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						int err;
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						err = ctx->hash(sk);
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						mutex_lock(&device_mutex);
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						list_for_each_entry(dev, &device_list, dev_list) {
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							if (dev->hash)
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								err |= dev->hash(dev, sk);
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						}
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						mutex_unlock(&device_mutex);
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						if (err)
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							tls_hw_unhash(sk);
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						return err;
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					}
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static void build_protos(struct proto *prot, struct proto *base)
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					static void build_protos(struct proto *prot, struct proto *base)
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{
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					{
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	prot[TLS_BASE] = *base;
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						prot[TLS_BASE] = *base;
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					@ -511,15 +597,22 @@ static void build_protos(struct proto *prot, struct proto *base)
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	prot[TLS_SW_RXTX] = prot[TLS_SW_TX];
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						prot[TLS_SW_RXTX] = prot[TLS_SW_TX];
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	prot[TLS_SW_RXTX].recvmsg	= tls_sw_recvmsg;
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						prot[TLS_SW_RXTX].recvmsg	= tls_sw_recvmsg;
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	prot[TLS_SW_RXTX].close		= tls_sk_proto_close;
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						prot[TLS_SW_RXTX].close		= tls_sk_proto_close;
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						prot[TLS_HW_RECORD] = *base;
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						prot[TLS_HW_RECORD].hash	= tls_hw_hash;
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						prot[TLS_HW_RECORD].unhash	= tls_hw_unhash;
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						prot[TLS_HW_RECORD].close	= tls_sk_proto_close;
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}
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					}
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static int tls_init(struct sock *sk)
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					static int tls_init(struct sock *sk)
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{
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					{
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	int ip_ver = sk->sk_family == AF_INET6 ? TLSV6 : TLSV4;
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						int ip_ver = sk->sk_family == AF_INET6 ? TLSV6 : TLSV4;
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	struct inet_connection_sock *icsk = inet_csk(sk);
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	struct tls_context *ctx;
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						struct tls_context *ctx;
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	int rc = 0;
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						int rc = 0;
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						if (tls_hw_prot(sk))
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							goto out;
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	/* The TLS ulp is currently supported only for TCP sockets
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						/* The TLS ulp is currently supported only for TCP sockets
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	 * in ESTABLISHED state.
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						 * in ESTABLISHED state.
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	 * Supporting sockets in LISTEN state will require us
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						 * Supporting sockets in LISTEN state will require us
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					@ -530,12 +623,11 @@ static int tls_init(struct sock *sk)
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		return -ENOTSUPP;
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							return -ENOTSUPP;
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	/* allocate tls context */
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						/* allocate tls context */
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	ctx = kzalloc(sizeof(*ctx), GFP_KERNEL);
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						ctx = create_ctx(sk);
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	if (!ctx) {
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						if (!ctx) {
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		rc = -ENOMEM;
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							rc = -ENOMEM;
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		goto out;
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							goto out;
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	}
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						}
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	icsk->icsk_ulp_data = ctx;
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	ctx->setsockopt = sk->sk_prot->setsockopt;
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						ctx->setsockopt = sk->sk_prot->setsockopt;
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	ctx->getsockopt = sk->sk_prot->getsockopt;
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						ctx->getsockopt = sk->sk_prot->getsockopt;
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	ctx->sk_proto_close = sk->sk_prot->close;
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						ctx->sk_proto_close = sk->sk_prot->close;
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					@ -557,6 +649,22 @@ static int tls_init(struct sock *sk)
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	return rc;
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						return rc;
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}
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					}
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					void tls_register_device(struct tls_device *device)
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					{
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						mutex_lock(&device_mutex);
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						list_add_tail(&device->dev_list, &device_list);
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						mutex_unlock(&device_mutex);
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					}
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					EXPORT_SYMBOL(tls_register_device);
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					void tls_unregister_device(struct tls_device *device)
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					{
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						mutex_lock(&device_mutex);
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						list_del(&device->dev_list);
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						mutex_unlock(&device_mutex);
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					}
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					EXPORT_SYMBOL(tls_unregister_device);
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static struct tcp_ulp_ops tcp_tls_ulp_ops __read_mostly = {
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					static struct tcp_ulp_ops tcp_tls_ulp_ops __read_mostly = {
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	.name			= "tls",
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						.name			= "tls",
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	.uid			= TCP_ULP_TLS,
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						.uid			= TCP_ULP_TLS,
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