Apply patch from Geoffrey D. Bennett to fix handle RADIUS Class attribute.
Bump heartbeat version to handle Class entry in session (v6). Re-arrange session struct to remove padding. Update cluster code to handle v6 packets. Drop compatability for pre-v5.
This commit is contained in:
parent
750e15fc6c
commit
d2848cebc4
6 changed files with 104 additions and 81 deletions
6
Changes
6
Changes
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@ -1,8 +1,12 @@
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* Thu Jan 20 2011 Brendan O'Dea <bod@optus.net> 2.2.x
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* Sun Sep 11 2011 Brendan O'Dea <bod@optus.net> 2.2.x
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- Apply MLPPP patch from Muhammad Tayseer Alquoatli.
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- Apply patch from Michael O to avoid sending multiple CDNs.
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- Apply patch from Cyril Elkaim to fix an issue with MacOS.
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- Apply patch from Geoffrey D. Bennett to fix retry of control packets.
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- Apply patch from Geoffrey D. Bennett to fix handle RADIUS Class attribute.
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- Bump heartbeat version to handle Class entry in session (v6).
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- Re-arrange session struct to remove padding.
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- Update cluster code to handle v6 packets. Drop compatability for pre-v5.
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* Mon Dec 18 2006 Brendan O'Dea <bod@optus.net> 2.2.0
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- Only poll clifd if successfully bound.
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1
THANKS
1
THANKS
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@ -31,3 +31,4 @@ Graham Maltby <gmaltby+l2tpns@iig.com.au>
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Rhys Kidd <rhys.kidd@staff.westnet.com.au>
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Muhammad Tayseer Alquoatli <idoit.ief@gmail.com>
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Cyril Elkaim <cyrelk@users.sourceforge.net>
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Geoffry D. Bennett <g_bennett@users.sourceforge.net>
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133
cluster.c
133
cluster.c
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@ -426,12 +426,6 @@ void master_update_counts(void)
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if (!config->cluster_master_address) // If we don't have a master, skip it for a while.
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return;
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// C_BYTES format changed in 2.1.0 (cluster version 5)
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// during upgrade from previous versions, hang onto our counters
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// for a bit until the new master comes up
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if (config->cluster_last_hb_ver < 5)
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return;
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i = MAX_B_RECS * 5; // Examine max 3000 sessions;
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if (config->cluster_highest_sessionid > i)
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i = config->cluster_highest_sessionid;
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@ -1311,54 +1305,62 @@ static int cluster_recv_tunnel(int more, uint8_t *p)
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}
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// pre v5 heartbeat session structure
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// pre v6 heartbeat session structure
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struct oldsession {
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sessionidt next;
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sessionidt far;
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tunnelidt tunnel;
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uint8_t flags;
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struct {
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uint8_t phase;
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uint8_t lcp:4;
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uint8_t ipcp:4;
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uint8_t ipv6cp:4;
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uint8_t ccp:4;
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} ppp;
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char reserved_1[2];
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in_addr_t ip;
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int ip_pool_index;
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unsigned long unique_id;
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uint16_t nr;
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uint16_t ns;
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uint32_t unique_id;
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char reserved_2[4];
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uint32_t magic;
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uint32_t cin, cout;
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uint32_t pin, pout;
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uint32_t total_cin;
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uint32_t total_cout;
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uint32_t id;
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uint32_t cin, cout;
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uint32_t cin_wrap, cout_wrap;
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uint32_t cin_delta, cout_delta;
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uint16_t throttle_in;
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uint16_t throttle_out;
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uint8_t filter_in;
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uint8_t filter_out;
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uint16_t mru;
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clockt opened;
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clockt die;
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uint32_t session_timeout;
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uint32_t idle_timeout;
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time_t last_packet;
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time_t last_data;
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in_addr_t dns1, dns2;
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routet route[MAXROUTE];
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uint16_t radius;
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uint16_t mru;
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uint16_t tbf_in;
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uint16_t tbf_out;
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uint8_t l2tp_flags;
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uint8_t reserved_old_snoop;
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uint8_t walled_garden;
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uint8_t flags1;
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char random_vector[MAXTEL];
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int random_vector_length;
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char user[129];
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uint8_t random_vector[MAXTEL];
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char user[MAXUSER];
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char called[MAXTEL];
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char calling[MAXTEL];
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uint32_t tx_connect_speed;
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uint32_t rx_connect_speed;
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uint32_t flags;
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#define SF_IPCP_ACKED 1 // Has this session seen an IPCP Ack?
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#define SF_LCP_ACKED 2 // LCP negotiated
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#define SF_CCP_ACKED 4 // CCP negotiated
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clockt timeout;
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uint32_t mrru;
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uint8_t mssf;
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epdist epdis;
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bundleidt bundle;
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in_addr_t snoop_ip;
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uint16_t snoop_port;
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uint16_t sid;
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uint8_t filter_in;
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uint8_t filter_out;
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char reserved[18];
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uint8_t walled_garden;
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uint8_t ipv6prefixlen;
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struct in6_addr ipv6route;
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char reserved_3[11];
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};
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static uint8_t *convert_session(struct oldsession *old)
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@ -1371,17 +1373,24 @@ static uint8_t *convert_session(struct oldsession *old)
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new.next = old->next;
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new.far = old->far;
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new.tunnel = old->tunnel;
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new.flags = old->l2tp_flags;
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new.flags = old->flags;
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new.ppp.phase = old->ppp.phase;
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new.ppp.lcp = old->ppp.lcp;
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new.ppp.ipcp = old->ppp.ipcp;
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new.ppp.ipv6cp = old->ppp.ipv6cp;
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new.ppp.ccp = old->ppp.ccp;
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new.ip = old->ip;
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new.ip_pool_index = old->ip_pool_index;
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new.unique_id = old->unique_id;
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new.magic = old->magic;
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new.pin = old->pin;
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new.pout = old->pout;
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new.cin = old->total_cin;
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new.cout = old->total_cout;
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new.cin_delta = old->cin;
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new.cout_delta = old->cout;
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new.cin = old->cin;
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new.cout = old->cout;
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new.cin_wrap = old->cin_wrap;
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new.cout_wrap = old->cout_wrap;
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new.cin_delta = old->cin_delta;
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new.cout_delta = old->cout_delta;
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new.throttle_in = old->throttle_in;
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new.throttle_out = old->throttle_out;
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new.filter_in = old->filter_in;
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@ -1389,7 +1398,10 @@ static uint8_t *convert_session(struct oldsession *old)
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new.mru = old->mru;
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new.opened = old->opened;
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new.die = old->die;
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new.session_timeout = old->session_timeout;
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new.idle_timeout = old->idle_timeout;
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new.last_packet = old->last_packet;
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new.last_data = old->last_data;
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new.dns1 = old->dns1;
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new.dns2 = old->dns2;
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new.tbf_in = old->tbf_in;
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@ -1397,9 +1409,16 @@ static uint8_t *convert_session(struct oldsession *old)
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new.random_vector_length = old->random_vector_length;
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new.tx_connect_speed = old->tx_connect_speed;
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new.rx_connect_speed = old->rx_connect_speed;
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new.timeout = old->timeout;
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new.mrru = old->mrru;
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new.mssf = old->mssf;
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new.epdis = old->epdis;
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new.bundle = old->bundle;
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new.snoop_ip = old->snoop_ip;
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new.snoop_port = old->snoop_port;
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new.walled_garden = old->walled_garden;
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new.ipv6prefixlen = old->ipv6prefixlen;
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new.ipv6route = old->ipv6route;
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memcpy(new.random_vector, old->random_vector, sizeof(new.random_vector));
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memcpy(new.user, old->user, sizeof(new.user));
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@ -1409,30 +1428,13 @@ static uint8_t *convert_session(struct oldsession *old)
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for (i = 0; i < MAXROUTE; i++)
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memcpy(&new.route[i], &old->route[i], sizeof(new.route[i]));
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if (new.opened)
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{
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new.ppp.phase = Establish;
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if (old->flags & (SF_IPCP_ACKED|SF_LCP_ACKED))
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{
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new.ppp.phase = Network;
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new.ppp.lcp = Opened;
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new.ppp.ipcp = (old->flags & SF_IPCP_ACKED) ? Opened : Starting;
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new.ppp.ccp = (old->flags & SF_CCP_ACKED) ? Opened : Stopped;
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}
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// no PPPv6 in old session
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new.ppp.ipv6cp = Stopped;
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}
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return (uint8_t *) &new;
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}
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//
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// Process a heartbeat..
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//
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// v3: added interval, timeout
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// v4: added table_version
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// v5: added ipv6, re-ordered session structure
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// v6: added RADIUS class attribute, re-ordered session structure
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static int cluster_process_heartbeat(uint8_t *data, int size, int more, uint8_t *p, in_addr_t addr)
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{
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heartt *h;
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@ -1440,12 +1442,12 @@ static int cluster_process_heartbeat(uint8_t *data, int size, int more, uint8_t
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int i, type;
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int hb_ver = more;
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#if HB_VERSION != 5
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#if HB_VERSION != 6
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# error "need to update cluster_process_heartbeat()"
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#endif
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// we handle versions 3 through 5
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if (hb_ver < 3 || hb_ver > HB_VERSION) {
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// we handle versions 5 through 6
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if (hb_ver < 5 || hb_ver > HB_VERSION) {
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LOG(0, 0, 0, "Received a heartbeat version that I don't support (%d)!\n", hb_ver);
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return -1; // Ignore it??
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}
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@ -1474,18 +1476,17 @@ static int cluster_process_heartbeat(uint8_t *data, int size, int more, uint8_t
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return -1; // Skip it.
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}
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if (hb_ver >= 4) {
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if (h->table_version > config->cluster_table_version) {
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LOG(0, 0, 0, "They've seen more state changes (%" PRIu64 " vs my %" PRIu64 ") so I'm gone!\n",
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if (h->table_version > config->cluster_table_version) {
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LOG(0, 0, 0, "They've seen more state changes (%" PRIu64 " vs my %" PRIu64 ") so I'm gone!\n",
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h->table_version, config->cluster_table_version);
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kill(0, SIGTERM);
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exit(1);
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}
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if (h->table_version < config->cluster_table_version)
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return -1;
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kill(0, SIGTERM);
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exit(1);
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}
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if (h->table_version < config->cluster_table_version)
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return -1;
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if (basetime > h->basetime) {
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LOG(0, 0, 0, "They're an older master than me so I'm gone!\n");
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kill(0, SIGTERM);
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@ -1607,7 +1608,7 @@ static int cluster_process_heartbeat(uint8_t *data, int size, int more, uint8_t
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s -= (p - orig_p);
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// session struct changed with v5
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if (hb_ver < 5)
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if (hb_ver < 6)
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{
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if (size != sizeof(struct oldsession)) {
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LOG(0, 0, 0, "DANGER: Received a v%d CSESSION that didn't decompress correctly!\n", hb_ver);
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@ -1628,7 +1629,7 @@ static int cluster_process_heartbeat(uint8_t *data, int size, int more, uint8_t
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break;
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}
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case C_SESSION:
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if (hb_ver < 5)
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if (hb_ver < 6)
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{
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if (s < sizeof(struct oldsession))
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goto shortpacket;
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@ -24,7 +24,7 @@
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#define C_BUNDLE 17 // Bundle structure.
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#define C_CBUNDLE 18 // Compressed bundle structure.
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#define HB_VERSION 5 // Protocol version number..
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#define HB_VERSION 6 // Protocol version number..
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#define HB_MAX_SEQ (1<<30) // Maximum sequence number. (MUST BE A POWER OF 2!)
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#define HB_HISTORY_SIZE 64 // How many old heartbeats we remember?? (Must be a factor of HB_MAX_SEQ)
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27
l2tpns.h
27
l2tpns.h
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@ -40,6 +40,7 @@
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#define MAXTEL 96 // telephone number
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#define MAXUSER 128 // username
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#define MAXPASS 128 // password
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#define MAXCLASS 128 // radius class attribute size
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#define MAXPLUGINS 20 // maximum number of plugins to load
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#define MAXRADSERVER 10 // max radius servers
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#define MAXROUTE 10 // max static routes per session
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@ -272,11 +273,10 @@ typedef struct
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uint8_t ipv6cp:4; // IPV6CP state
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uint8_t ccp:4; // CCP state
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} ppp;
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char reserved_1[2]; // unused: padding
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uint16_t mru; // maximum receive unit
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in_addr_t ip; // IP of session set by RADIUS response (host byte order).
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int ip_pool_index; // index to IP pool
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uint32_t unique_id; // unique session id
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char reserved_2[4]; // unused: was ns/nr
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uint32_t magic; // ppp magic number
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uint32_t pin, pout; // packet counts
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uint32_t cin, cout; // byte counts
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@ -286,35 +286,36 @@ typedef struct
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uint16_t throttle_out; // downstream throttle rate
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uint8_t filter_in; // input filter index (to ip_filters[N-1]; 0 if none)
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uint8_t filter_out; // output filter index
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uint16_t mru; // maximum receive unit
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uint16_t snoop_port; // Interception destination port
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in_addr_t snoop_ip; // Interception destination IP
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clockt opened; // when started
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clockt die; // being closed, when to finally free
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uint32_t session_timeout; // Maximum session time in seconds
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uint32_t idle_timeout; // Maximum idle time in seconds
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uint32_t idle_timeout; // Maximum idle time in seconds
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time_t last_packet; // Last packet from the user (used for idle timeouts)
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time_t last_data; // Last data packet to/from the user (used for idle timeouts)
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time_t last_data; // Last data packet to/from the user (used for idle timeouts)
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in_addr_t dns1, dns2; // DNS servers
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routet route[MAXROUTE]; // static routes
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uint16_t tbf_in; // filter bucket for throttling in from the user.
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uint16_t tbf_out; // filter bucket for throttling out to the user.
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int random_vector_length;
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uint8_t random_vector[MAXTEL];
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char user[MAXUSER]; // user (needed in seesion for radius stop messages)
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char user[MAXUSER]; // user (needed in session for radius stop messages)
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char called[MAXTEL]; // called number
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char calling[MAXTEL]; // calling number
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uint32_t tx_connect_speed;
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uint32_t rx_connect_speed;
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clockt timeout; // Session timeout
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uint32_t mrru; // Multilink Max-Receive-Reconstructed-Unit
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uint8_t mssf; // Multilink Short Sequence Number Header Format
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epdist epdis; // Multilink Endpoint Discriminator
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bundleidt bundle; // Multilink Bundle Identifier
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in_addr_t snoop_ip; // Interception destination IP
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uint16_t snoop_port; // Interception destination port
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uint32_t mrru; // Multilink Max-Receive-Reconstructed-Unit
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epdist epdis; // Multilink Endpoint Discriminator
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bundleidt bundle; // Multilink Bundle Identifier
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uint8_t mssf; // Multilink Short Sequence Number Header Format
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uint8_t walled_garden; // is this session gardened?
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uint8_t classlen; // class (needed for radius accounting messages)
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char class[MAXCLASS];
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uint8_t ipv6prefixlen; // IPv6 route prefix length
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struct in6_addr ipv6route; // Static IPv6 route
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char reserved_3[11]; // Space to expand structure without changing HB_VERSION
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char reserved[12]; // Space to expand structure without changing HB_VERSION
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}
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sessiont;
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16
radius.c
16
radius.c
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@ -363,6 +363,13 @@ void radiussend(uint16_t r, uint8_t state)
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}
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}
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if (session[s].classlen) {
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*p = 25; // class
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p[1] = session[s].classlen + 2;
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memcpy(p + 2, session[s].class, session[s].classlen);
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p += p[1];
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}
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{
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struct param_radius_account acct = { &tunnel[session[s].tunnel], &session[s], &p };
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run_plugins(PLUGIN_RADIUS_ACCOUNT, &acct);
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@ -818,6 +825,15 @@ void processrad(uint8_t *buf, int len, char socket_index)
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session[s].ipv6prefixlen = prefixlen;
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}
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}
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else if (*p == 25)
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{
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// Class
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if (p[1] < 3) continue;
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session[s].classlen = p[1] - 2;
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if (session[s].classlen > MAXCLASS)
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session[s].classlen = MAXCLASS;
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memcpy(session[s].class, p + 2, session[s].classlen);
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}
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}
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}
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else if (r_code == AccessReject)
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Loading…
Add table
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Reference in a new issue