mirror of
https://github.com/OpenVPN/openvpn.git
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564a21094e
git-svn-id: http://svn.openvpn.net/projects/openvpn/branches/BETA21/openvpn@5599 e7ae566f-a301-0410-adde-c780ea21d3b5
336 lines
8.7 KiB
C
336 lines
8.7 KiB
C
/*
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* OpenVPN -- An application to securely tunnel IP networks
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* over a single TCP/UDP port, with support for SSL/TLS-based
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* session authentication and key exchange,
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* packet encryption, packet authentication, and
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* packet compression.
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*
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* Copyright (C) 2002-2010 OpenVPN Technologies, Inc. <sales@openvpn.net>
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License version 2
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* as published by the Free Software Foundation.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program (see the file COPYING included with this
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* distribution); if not, write to the Free Software Foundation, Inc.,
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* 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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*/
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/*
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* These routines are designed to catch replay attacks,
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* where a man-in-the-middle captures packets and then
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* attempts to replay them back later.
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*/
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#ifdef USE_CRYPTO
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#ifndef PACKET_ID_H
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#define PACKET_ID_H
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#include "circ_list.h"
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#include "buffer.h"
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#include "error.h"
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#include "otime.h"
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/*
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* Enables OpenVPN to be compiled in special packet_id test mode.
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*/
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/*#define PID_TEST*/
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#if 1
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/*
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* These are the types that members of
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* a struct packet_id_net are converted
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* to for network transmission.
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*/
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typedef uint32_t packet_id_type;
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typedef uint32_t net_time_t;
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/*
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* In TLS mode, when a packet ID gets to this level,
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* start thinking about triggering a new
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* SSL/TLS handshake.
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*/
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#define PACKET_ID_WRAP_TRIGGER 0xFF000000
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/* convert a packet_id_type from host to network order */
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#define htonpid(x) htonl(x)
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/* convert a packet_id_type from network to host order */
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#define ntohpid(x) ntohl(x)
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/* convert a time_t in host order to a net_time_t in network order */
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#define htontime(x) htonl((net_time_t)x)
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/* convert a net_time_t in network order to a time_t in host order */
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#define ntohtime(x) ((time_t)ntohl(x))
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#else
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/*
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* DEBUGGING ONLY.
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* Make packet_id_type and net_time_t small
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* to test wraparound logic and corner cases.
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*/
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typedef uint8_t packet_id_type;
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typedef uint16_t net_time_t;
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#define PACKET_ID_WRAP_TRIGGER 0x80
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#define htonpid(x) (x)
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#define ntohpid(x) (x)
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#define htontime(x) htons((net_time_t)x)
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#define ntohtime(x) ((time_t)ntohs(x))
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#endif
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/*
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* Printf formats for special types
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*/
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#define packet_id_format "%u"
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typedef unsigned int packet_id_print_type;
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/*
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* Maximum allowed backtrack in
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* sequence number due to packets arriving
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* out of order.
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*/
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#define MIN_SEQ_BACKTRACK 0
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#define MAX_SEQ_BACKTRACK 65536
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#define DEFAULT_SEQ_BACKTRACK 64
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/*
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* Maximum allowed backtrack in
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* seconds due to packets arriving
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* out of order.
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*/
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#define MIN_TIME_BACKTRACK 0
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#define MAX_TIME_BACKTRACK 600
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#define DEFAULT_TIME_BACKTRACK 15
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/*
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* Do a reap pass through the sequence number
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* array once every n seconds in order to
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* expire sequence numbers which can no longer
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* be accepted because they would violate
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* TIME_BACKTRACK.
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*/
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#define SEQ_REAP_INTERVAL 5
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CIRC_LIST (seq_list, time_t);
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/*
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* This is the data structure we keep on the receiving side,
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* to check that no packet-id (i.e. sequence number + optional timestamp)
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* is accepted more than once.
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*/
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struct packet_id_rec
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{
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time_t last_reap; /* last call of packet_id_reap */
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time_t time; /* highest time stamp received */
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packet_id_type id; /* highest sequence number received */
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int seq_backtrack; /* set from --replay-window */
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int time_backtrack; /* set from --replay-window */
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bool initialized; /* true if packet_id_init was called */
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struct seq_list *seq_list; /* packet-id "memory" */
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};
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/*
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* file to facilitate cross-session persistence
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* of time/id
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*/
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struct packet_id_persist
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{
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const char *filename;
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int fd;
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time_t time; /* time stamp */
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packet_id_type id; /* sequence number */
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time_t time_last_written;
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packet_id_type id_last_written;
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};
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struct packet_id_persist_file_image
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{
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time_t time; /* time stamp */
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packet_id_type id; /* sequence number */
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};
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/*
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* Keep a record of our current packet-id state
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* on the sending side.
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*/
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struct packet_id_send
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{
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packet_id_type id;
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time_t time;
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};
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/*
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* Communicate packet-id over the wire.
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* A short packet-id is just a 32 bit
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* sequence number. A long packet-id
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* includes a timestamp as well.
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*
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* Long packet-ids are used as IVs for
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* CFB/OFB ciphers.
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*
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* This data structure is always sent
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* over the net in network byte order,
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* by calling htonpid, ntohpid,
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* htontime, and ntohtime on the
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* data elements to change them
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* to and from standard sizes.
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*
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* In addition, time is converted to
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* a net_time_t before sending,
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* since openvpn always
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* uses a 32-bit time_t but some
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* 64 bit platforms use a
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* 64 bit time_t.
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*/
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struct packet_id_net
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{
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packet_id_type id;
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time_t time; /* converted to net_time_t before transmission */
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};
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struct packet_id
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{
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struct packet_id_send send;
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struct packet_id_rec rec;
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};
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void packet_id_init (struct packet_id *p, int seq_backtrack, int time_backtrack);
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void packet_id_free (struct packet_id *p);
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/* should we accept an incoming packet id ? */
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bool packet_id_test (const struct packet_id_rec *p,
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const struct packet_id_net *pin);
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/* change our current state to reflect an accepted packet id */
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void packet_id_add (struct packet_id_rec *p,
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const struct packet_id_net *pin);
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/* expire TIME_BACKTRACK sequence numbers */
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void packet_id_reap (struct packet_id_rec *p);
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/*
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* packet ID persistence
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*/
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/* initialize the packet_id_persist structure in a disabled state */
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void packet_id_persist_init (struct packet_id_persist *p);
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/* close the file descriptor if it is open, and switch to disabled state */
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void packet_id_persist_close (struct packet_id_persist *p);
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/* load persisted rec packet_id (time and id) only once from file, and set state to enabled */
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void packet_id_persist_load (struct packet_id_persist *p, const char *filename);
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/* save persisted rec packet_id (time and id) to file (only if enabled state) */
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void packet_id_persist_save (struct packet_id_persist *p);
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/* transfer packet_id_persist -> packet_id */
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void packet_id_persist_load_obj (const struct packet_id_persist *p, struct packet_id* pid);
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/* return an ascii string representing a packet_id_persist object */
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const char *packet_id_persist_print (const struct packet_id_persist *p, struct gc_arena *gc);
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/*
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* Read/write a packet ID to/from the buffer. Short form is sequence number
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* only. Long form is sequence number and timestamp.
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*/
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bool packet_id_read (struct packet_id_net *pin, struct buffer *buf, bool long_form);
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bool packet_id_write (const struct packet_id_net *pin, struct buffer *buf, bool long_form, bool prepend);
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/*
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* Inline functions.
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*/
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/* are we in enabled state? */
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static inline bool
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packet_id_persist_enabled (const struct packet_id_persist *p)
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{
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return p->fd >= 0;
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}
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/* transfer packet_id -> packet_id_persist */
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static inline void
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packet_id_persist_save_obj (struct packet_id_persist *p, const struct packet_id* pid)
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{
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if (packet_id_persist_enabled (p) && pid->rec.time)
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{
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p->time = pid->rec.time;
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p->id = pid->rec.id;
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}
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}
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const char* packet_id_net_print(const struct packet_id_net *pin, bool print_timestamp, struct gc_arena *gc);
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#ifdef PID_TEST
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void packet_id_interactive_test();
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#endif
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static inline int
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packet_id_size (bool long_form)
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{
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return sizeof (packet_id_type) + (long_form ? sizeof (net_time_t) : 0);
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}
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static inline bool
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packet_id_close_to_wrapping (const struct packet_id_send *p)
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{
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return p->id >= PACKET_ID_WRAP_TRIGGER;
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}
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/*
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* Allocate an outgoing packet id.
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* Sequence number ranges from 1 to 2^32-1.
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* In long_form, a time_t is added as well.
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*/
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static inline void
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packet_id_alloc_outgoing (struct packet_id_send *p, struct packet_id_net *pin, bool long_form)
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{
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if (!p->time)
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p->time = now;
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pin->id = ++p->id;
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if (!pin->id)
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{
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ASSERT (long_form);
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p->time = now;
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pin->id = p->id = 1;
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}
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pin->time = p->time;
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}
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static inline bool
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check_timestamp_delta (time_t remote, unsigned int max_delta)
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{
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unsigned int abs;
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const time_t local_now = now;
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if (local_now >= remote)
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abs = local_now - remote;
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else
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abs = remote - local_now;
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return abs <= max_delta;
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}
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static inline void
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packet_id_reap_test (struct packet_id_rec *p)
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{
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if (p->last_reap + SEQ_REAP_INTERVAL <= now)
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packet_id_reap (p);
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}
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#endif /* PACKET_ID_H */
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#endif /* USE_CRYPTO */
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