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/* 
 *------------------------------------------------------------------
 * Copyright (c) 2005-2016 Cisco and/or its affiliates.
 * Licensed under the Apache License, Version 2.0 (the "License");
 * you may not use this file except in compliance with the License.
 * You may obtain a copy of the License at:
 *
 *     http://www.apache.org/licenses/LICENSE-2.0
 *
 * Unless required by applicable law or agreed to in writing, software
 * distributed under the License is distributed on an "AS IS" BASIS,
 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
 * See the License for the specific language governing permissions and
 * limitations under the License.
 */

#include <stdlib.h>
#include <unistd.h>
#include <sys/stat.h>
#include <sys/fcntl.h>
#include <sys/mman.h>
#include <arpa/inet.h>
#include <stdio.h>
#include <gtk/gtk.h>
#include "g2.h"
#include <sys/types.h>
#include <sys/stat.h>
#include <fcntl.h>
#include <string.h>

/*
 * globals
 */
boolean g_little_endian;
event_t *g_events;
ulong g_nevents;
pid_sort_t *g_pids;
pid_sort_t *g_original_pids;
int g_npids;
pid_data_t *g_pid_data_list;

/*
 * locals
 */
pid_data_t **s_pidhash;

/*
 * config parameters
 */

double ticks_per_ns=1000.0;
boolean ticks_per_ns_set;

/****************************************************************************
* event_init
****************************************************************************/

void event_init(void)
{
    ulong endian;
    char *ep;
    char *askstr;
    int tmp;

    ep = (char *)&endian;
    endian = 0x12345678;
    if (*ep != 0x12)
        g_little_endian = TRUE;
    else
        g_little_endian = FALSE;

    askstr = getprop("dont_ask_ticks_per_ns_initially");
    
    if (askstr && (*askstr == 't' || *askstr == 'T')) {
        tmp = atol(getprop_default("ticks_per_ns", 0));
        if (tmp > 0) {
            ticks_per_ns = tmp;
            ticks_per_ns_set = TRUE;
        }
    }
}

/****************************************************************************
* find_or_add_pid
****************************************************************************/

pid_data_t *find_or_add_pid (ulong pid)
{
    pid_data_t *pp;
    ulong bucket;

    bucket = pid % PIDHASH_NBUCKETS;

    pp = s_pidhash[bucket];

    if (pp == 0) {
        pp = g_malloc0(sizeof(pid_data_t));
        pp->pid_value = pid;
        s_pidhash[bucket] = pp;
        g_npids++;
        return(pp);
    }
    while (pp) {
        if (pp->pid_value == pid)
            return(pp);
        pp = pp->next;
    }

    pp = g_malloc0(sizeof(pid_data_t));
    pp->pid_value = pid;
    pp->next = s_pidhash[bucket];
    s_pidhash[bucket] = pp;
    g_npids++;
    return(pp);
}

/****************************************************************************
* pid_cmp
****************************************************************************/

int pid_cmp(const void *a1, const void *a2)
{
    pid_sort_t *p1 = (pid_sort_t *)a1;
    pid_sort_t *p2 = (pid_sort_t *)a2;

    if (p1->pid_value < p2->pid_value)
        return(-1);
    else if (p1->pid_value == p2->pid_value)
        return(0);
    else
        return(1);
}

/****************************************************************************
* make_sorted_pid_vector
****************************************************************************/

static void make_sorted_pid_vector(void)
{
    pid_data_t *pp;
    pid_data_t **p_previous;
    pid_sort_t *psp;
    int i;

    psp = g_pids = g_malloc(sizeof(pid_sort_t)*g_npids);

    for (i = 0; i < PIDHASH_NBUCKETS; i++) {
        pp = s_pidhash[i];
        while(pp) {
            psp->pid = pp;
            psp->pid_value = pp->pid_value;
            psp++;
            pp = pp->next;
        }
    }

    qsort(&g_pids[0], g_npids, sizeof(pid_sort_t), pid_cmp);

    /* put the sort order into the pid objects */
    psp = g_pids;

    /*
     * This is rather gross.
     *
     * We happen to know that whenever this function is called, the hash table
     * structure itself is immediately torn down. So the "next" pointers in the
     * pid_data_t elements are about to become useless.
     *
     * So we re-use them, to link all the pid_data_t elements together into a
     * single unified linked list, with g_pid_data_list pointing to the head.
     * This means we can walk all the pid_data_t objects if we really want to.
     * Reading snapshots from disk is one example.
     *
     * Alternatively we could just leave the hash table in place; this is
     * far nicer, but as it happens, trading O(n) lookups for O(1) lookups
     * isn't actually a problem for the restricted post-tear-down usage. So for
     * now we take the memory savings and swap our hash table for a list.
     */
    p_previous = &g_pid_data_list;
    for (i = 0; i < g_npids; i++) {
        pp = psp->pid;
        pp->pid_index = i;
        *p_previous = pp;
        p_previous = &pp->next;
        psp++;
    }
    *p_previous = NULL;

    /*
     * Squirrel away original (sorted) vector, so we can
     * toggle between "chase" mode, snapshots, and the original
     * display method on short notice 
     */
    g_original_pids = g_malloc(sizeof(pid_sort_t)*g_npids);
    memcpy (g_original_pids, g_pids, sizeof(pid_sort_t)*g_npids); 
}

/****************************************************************************
* read_events
****************************************************************************/

void read_events(char *filename)
{
    ulong *ulp;
    ulong size;
    event_t *ep;
    raw_event_t *rep;
    ulonglong start_time=0ULL;
    ulonglong low_time;
    boolean once=TRUE;
    int i;
    char tmpbuf [128];

    ulp = (ulong *)mapfile(filename, &size);

    if (ulp == NULL) {
        sprintf(tmpbuf, "Couldn't open %s\n", filename);
        infobox("Read Event Log Failure", tmpbuf);
        return;
    }

    g_nevents = ntohl(*ulp);

    if (size != (g_nevents*sizeof(raw_event_t) + sizeof(g_nevents))) {
        sprintf(tmpbuf, "%s was damaged, or isn't an event log.\n", filename);
        infobox("Bad Input File", tmpbuf);
        g_nevents = 0;
        unmapfile((char *)ulp, size);
        return;
    }

    rep = (raw_event_t *)(ulp+1);

    if (g_events)
        g_free(g_events);

    g_events = (event_t *)g_malloc(g_nevents * sizeof(event_t));
    ep = g_events;

    while (g_npids > 0) {
        g_free((g_pids + g_npids-1)->pid);
        g_npids--;
    }
    if (g_pids) {
        g_free(g_pids);
        g_free(g_original_pids);
        g_pids = 0;
        g_original_pids = 0;
    }

    s_pidhash = (pid_data_t **)g_malloc0(
        PIDHASH_NBUCKETS*sizeof(pid_data_t *));

    /* $$$ add a SEGV handler... */
    for (i = 0; i < g_nevents; i++) {
        if (once) {
            once = FALSE;
            start_time = ((ulonglong)ntohl(rep->time[0]));
            start_time <<= 32;
            low_time = ntohl(rep->time[1]);
            low_time &= 0xFFFFFFFF;
            start_time |= low_time;
            ep->time = 0LL;
        } else {
            ep->time = ((ulonglong)ntohl(rep->time[0]));
            ep->time <<= 32;
            low_time = ntohl(rep->time[1]);
            low_time &= 0xFFFFFFFF;
            ep->time |= low_time;
            ep->time -= start_time;
            ep->time /= ticks_per_ns;
        }
        ep->code = ntohl(rep->code);
        ep->pid = find_or_add_pid(ntohl(rep->pid));
        ep->datum = ntohl(rep->datum);
        ep->flags = 0;
        ep++;
        rep++;
    }

    unmapfile((char *)ulp, size);
    
    make_sorted_pid_vector();
    g_free(s_pidhash);
    s_pidhash = 0;

    /* Give the view-1 world a chance to reset a few things... */
    view1_read_events_callback();
}

static event_t *add_ep;

/****************************************************************************
* cpel_event_init
****************************************************************************/
void cpel_event_init (ulong nevents)
{
    g_nevents = nevents;
    if (g_events)
        g_free(g_events);
    add_ep = g_events = (event_t *)g_malloc(g_nevents * sizeof(event_t));
    while (g_npids > 0) {
        g_free((g_pids + g_npids-1)->pid);
        g_npids--;
    }
    if (g_pids) {
        g_free(g_pids);
        g_free(g_original_pids);
        g_pids = 0;
        g_original_pids = 0;
    }
    s_pidhash = (pid_data_t **)g_malloc0(
        PIDHASH_NBUCKETS*sizeof(pid_data_t *));
}

/****************************************************************************
* add_cpel_event
****************************************************************************/

void add_cpel_event(ulonglong delta, ulong track, ulong event, ulong datum)
{
    event_t *ep;

    ep = add_ep++;
    ep->time = delta;
    ep->pid = find_or_add_pid(track);
    ep->code = event;
    ep->datum = datum;
    ep->flags = 0;
}

/****************************************************************************
* add_clib_event
****************************************************************************/

void add_clib_event(double delta, unsigned short track, 
                    unsigned short event, unsigned int index)
{
    event_t *ep;

    ep = add_ep++;
    ep->time = (ulonglong) (delta * 1e9); /* time in intger nanoseconds */
    ep->pid = find_or_add_pid(track);
    ep->code = event;
    ep->datum = index;
    ep->flags = EVENT_FLAG_CLIB;
}

/****************************************************************************
* cpel_event_finalize
****************************************************************************/

void cpel_event_finalize(void)
{
    make_sorted_pid_vector();
    g_free(s_pidhash);
    s_pidhash = 0;
    
    /* Give the view-1 world a chance to reset a few things... */
    view1_read_events_callback();
}

/****************************************************************************
* mapfile
****************************************************************************/

char *mapfile (char *file, ulong *sizep)
{
    struct stat statb;
    char *rv;
    int maphfile;
    size_t mapfsize;
    
    maphfile = open (file, O_RDONLY);

    if (maphfile < 0)
        return (NULL);

    if (fstat (maphfile, &statb) < 0) {
        return (NULL);
    }

    /* Don't try to mmap directories, FIFOs, semaphores, etc. */
    if (! (statb.st_mode & S_IFREG)) {
        return (NULL);
    }

    mapfsize = statb.st_size;

    if (mapfsize < 3) {
        close (maphfile);
        return (NULL);
    }

    rv = mmap (0, mapfsize, PROT_READ, MAP_SHARED, maphfile, 0);

    if (rv == 0) {
        g_error ("%s mapping problem, I quit...\n", file);
    }

    close (maphfile);

    if (madvise (rv, mapfsize, MADV_SEQUENTIAL) < 0) {
        return (rv);
    }

    if (sizep) {
        *sizep = mapfsize;
    }
    return (rv);
}

/****************************************************************************
* unmapfile
****************************************************************************/

boolean unmapfile (char *addr, ulong size)
{
    if (munmap (addr, size) < 0) {
        g_warning("Unmap error, addr 0x%lx size 0x%x\n", 
                  (unsigned long) addr, (unsigned int)size);
        return(FALSE);
    }
    return(TRUE);
}

/****************************************************************************
* find_event_index
* Binary search for first event whose time is >= t
****************************************************************************/

int find_event_index (ulonglong t)
{
    int index, bottom, top;
    event_t *ep;

    bottom = g_nevents-1;
    top = 0;

    while (1) {
	index = (bottom + top) / 2;

        ep = (g_events + index);

        if (ep->time == t)
            return(index);

        if (top >= bottom) {
            while (index > 0 && ep->time > t) {
                ep--;
                index--;
            }
            while (index < g_nevents && ep->time < t) {
                ep++;
                index++;
            }
            return(index);
        }

        if (ep->time < t)
            top = index + 1;
        else 
            bottom = index - 1;
    }
}

/****************************************************************************
* events_about
****************************************************************************/

void events_about (char *tmpbuf)
{
    sprintf(tmpbuf+strlen(tmpbuf), "%d total events, %.3f ticks per us\n", 
            (int)g_nevents, ticks_per_ns);
}
/span>)); /* * enable the encrypt feature for egress if this is the first addition * on this interface */ ipsec_tun_setup_tx_nodes (itp->itp_sw_if_index, itp); } hash_set_mem (idi->id_hash, itp->itp_key, itp - ipsec_tun_protect_pool); /* * walk all the adjs with the same nh on this interface * to associate them with this protection */ nh_proto = ip_address_to_46 (itp->itp_key, &nh); adj_nbr_walk_nh (itp->itp_sw_if_index, nh_proto, &nh, ipsec_tun_protect_adj_add, itp); ipsec_tun_register_nodes (FIB_PROTOCOL_IP6 == nh_proto ? AF_IP6 : AF_IP4); } } static void ipsec_tun_protect_rx_db_remove (ipsec_main_t * im, const ipsec_tun_protect_t * itp) { const ipsec_sa_t *sa; /* *INDENT-OFF* */ FOR_EACH_IPSEC_PROTECT_INPUT_SA(itp, sa, ({ if (ip46_address_is_ip4 (&itp->itp_crypto.dst)) { ipsec4_tunnel_kv_t key; clib_bihash_kv_8_16_t res, *bkey = (clib_bihash_kv_8_16_t*)&key; ipsec4_tunnel_mk_key(&key, &itp->itp_crypto.dst.ip4, clib_host_to_net_u32 (sa->spi)); if (!clib_bihash_search_8_16 (&im->tun4_protect_by_key, bkey, &res)) { clib_bihash_add_del_8_16 (&im->tun4_protect_by_key, bkey, 0); ipsec_tun_unregister_nodes(AF_IP4); } } else { ipsec6_tunnel_kv_t key = { .key = { .remote_ip = itp->itp_crypto.dst.ip6, .spi = clib_host_to_net_u32 (sa->spi), }, }; clib_bihash_kv_24_16_t res, *bkey = (clib_bihash_kv_24_16_t*)&key; if (!clib_bihash_search_24_16 (&im->tun6_protect_by_key, bkey, &res)) { clib_bihash_add_del_24_16 (&im->tun6_protect_by_key, bkey, 0); ipsec_tun_unregister_nodes(AF_IP6); } } })); /* *INDENT-ON* */ } static adj_walk_rc_t ipsec_tun_protect_adj_remove (adj_index_t ai, void *arg) { ipsec_tun_protect_t *itp = arg; adj_delegate_remove (ai, ipsec_tun_adj_delegate_type); ipsec_tun_protect_add_adj (ai, NULL); if (itp->itp_flags & IPSEC_PROTECT_ITF) ipsec_itf_adj_unstack (ai); return (ADJ_WALK_RC_CONTINUE); } static void ipsec_tun_protect_tx_db_remove (ipsec_tun_protect_t * itp) { ipsec_tun_protect_itf_db_t *idi; fib_protocol_t nh_proto; ip46_address_t nh; nh_proto = ip_address_to_46 (itp->itp_key, &nh); idi = &itp_db.id_itf[itp->itp_sw_if_index]; if (vnet_sw_interface_is_p2p (vnet_get_main (), itp->itp_sw_if_index)) { ipsec_tun_reset_tx_nodes (itp->itp_sw_if_index); idi->id_itp = INDEX_INVALID; FOR_EACH_FIB_IP_PROTOCOL (nh_proto) adj_nbr_walk (itp->itp_sw_if_index, nh_proto, ipsec_tun_protect_adj_remove, itp); } else { adj_nbr_walk_nh (itp->itp_sw_if_index, nh_proto, &nh, ipsec_tun_protect_adj_remove, itp); hash_unset_mem (idi->id_hash, itp->itp_key); if (0 == hash_elts (idi->id_hash)) { ipsec_tun_reset_tx_nodes (itp->itp_sw_if_index); hash_free (idi->id_hash); idi->id_hash = NULL; } ipsec_tun_unregister_nodes (FIB_PROTOCOL_IP6 == nh_proto ? AF_IP6 : AF_IP4); } } static void ipsec_tun_protect_set_crypto_addr (ipsec_tun_protect_t * itp) { ipsec_sa_t *sa; /* *INDENT-OFF* */ FOR_EACH_IPSEC_PROTECT_INPUT_SA(itp, sa, ({ if (ipsec_sa_is_set_IS_TUNNEL (sa)) { itp->itp_crypto.src = ip_addr_46 (&sa->tunnel.t_dst); itp->itp_crypto.dst = ip_addr_46 (&sa->tunnel.t_src); if (!(itp->itp_flags & IPSEC_PROTECT_ITF)) { ipsec_sa_set_IS_PROTECT (sa); itp->itp_flags |= IPSEC_PROTECT_ENCAPED; } } else { itp->itp_crypto.src = itp->itp_tun.src; itp->itp_crypto.dst = itp->itp_tun.dst; itp->itp_flags &= ~IPSEC_PROTECT_ENCAPED; } })); /* *INDENT-ON* */ } static void ipsec_tun_protect_config (ipsec_main_t * im, ipsec_tun_protect_t * itp, u32 sa_out, u32 * sas_in) { index_t sai; u32 ii; itp->itp_n_sa_in = vec_len (sas_in); for (ii = 0; ii < itp->itp_n_sa_in; ii++) itp->itp_in_sas[ii] = sas_in[ii]; itp->itp_out_sa = sa_out; ipsec_sa_lock (itp->itp_out_sa); if (itp->itp_flags & IPSEC_PROTECT_ITF) ipsec_sa_set_NO_ALGO_NO_DROP (ipsec_sa_get (itp->itp_out_sa)); /* *INDENT-OFF* */ FOR_EACH_IPSEC_PROTECT_INPUT_SAI(itp, sai, ({ ipsec_sa_lock(sai); })); ipsec_tun_protect_set_crypto_addr(itp); /* *INDENT-ON* */ /* * add to the DB against each SA */ ipsec_tun_protect_rx_db_add (im, itp); ipsec_tun_protect_tx_db_add (itp); ITP_DBG (itp, "configured"); } static void ipsec_tun_protect_unconfig (ipsec_main_t * im, ipsec_tun_protect_t * itp) { ipsec_sa_t *sa; index_t sai; /* *INDENT-OFF* */ FOR_EACH_IPSEC_PROTECT_INPUT_SA(itp, sa, ({ ipsec_sa_unset_IS_PROTECT (sa); })); ipsec_tun_protect_rx_db_remove (im, itp); ipsec_tun_protect_tx_db_remove (itp); ipsec_sa_unset_NO_ALGO_NO_DROP (ipsec_sa_get (itp->itp_out_sa)); ipsec_sa_unlock(itp->itp_out_sa); FOR_EACH_IPSEC_PROTECT_INPUT_SAI(itp, sai, ({ ipsec_sa_unlock(sai); })); /* *INDENT-ON* */ ITP_DBG (itp, "unconfigured"); } static void ipsec_tun_protect_update_from_teib (ipsec_tun_protect_t * itp, const teib_entry_t * ne) { if (NULL != ne) { const fib_prefix_t *pfx; pfx = teib_entry_get_nh (ne); ip46_address_copy (&itp->itp_tun.dst, &pfx->fp_addr); } else ip46_address_reset (&itp->itp_tun.dst); } int ipsec_tun_protect_update (u32 sw_if_index, const ip_address_t * nh, u32 sa_out, u32 * sas_in) { ipsec_tun_protect_t *itp; u32 itpi, ii, *saip; ipsec_main_t *im; int rv; if (NULL == nh) nh = &IP_ADDR_ALL_0; ITP_DBG2 ("update: %U/%U", format_vnet_sw_if_index_name, vnet_get_main (), sw_if_index, format_ip_address, nh); if (vec_len (sas_in) > ITP_MAX_N_SA_IN) { rv = VNET_API_ERROR_LIMIT_EXCEEDED; goto out; } rv = 0; im = &ipsec_main; itpi = ipsec_tun_protect_find (sw_if_index, nh); vec_foreach_index (ii, sas_in) { sas_in[ii] = ipsec_sa_find_and_lock (sas_in[ii]); if (~0 == sas_in[ii]) { rv = VNET_API_ERROR_INVALID_VALUE; goto out; } } sa_out = ipsec_sa_find_and_lock (sa_out); if (~0 == sa_out) { rv = VNET_API_ERROR_INVALID_VALUE; goto out; } if (INDEX_INVALID == itpi) { vnet_device_class_t *dev_class; vnet_hw_interface_t *hi; vnet_main_t *vnm; u8 is_l2; vnm = vnet_get_main (); hi = vnet_get_sup_hw_interface (vnm, sw_if_index); dev_class = vnet_get_device_class (vnm, hi->dev_class_index); if (NULL == dev_class->ip_tun_desc) { rv = VNET_API_ERROR_INVALID_SW_IF_INDEX; goto out; } pool_get_zero (ipsec_tun_protect_pool, itp); itp->itp_sw_if_index = sw_if_index; itp->itp_ai = ADJ_INDEX_INVALID; itp->itp_n_sa_in = vec_len (sas_in); for (ii = 0; ii < itp->itp_n_sa_in; ii++) itp->itp_in_sas[ii] = sas_in[ii]; itp->itp_out_sa = sa_out; itp->itp_key = clib_mem_alloc (sizeof (*itp->itp_key)); ip_address_copy (itp->itp_key, nh); rv = dev_class->ip_tun_desc (sw_if_index, &itp->itp_tun.src, &itp->itp_tun.dst, &is_l2); if (rv) goto out; if (ip46_address_is_zero (&itp->itp_tun.src)) { /* * must be one of those pesky ipsec interfaces that has no encap. * the encap then MUST come from the tunnel mode SA. */ ipsec_sa_t *sa; sa = ipsec_sa_get (itp->itp_out_sa); if (!ipsec_sa_is_set_IS_TUNNEL (sa)) { rv = VNET_API_ERROR_INVALID_DST_ADDRESS; goto out; } itp->itp_flags |= IPSEC_PROTECT_ITF; } else if (ip46_address_is_zero (&itp->itp_tun.dst)) { /* tunnel has no destination address, presumably because it's p2mp in which case we use the nh that this is protection for */ ipsec_tun_protect_update_from_teib (itp, teib_entry_find (sw_if_index, nh)); } if (is_l2) itp->itp_flags |= IPSEC_PROTECT_L2; /* * add to the tunnel DB for ingress * - if the SA is in trasnport mode, then the packates will arrive * with the IP src,dst of the protected tunnel, in which case we can * simply strip the IP header and hand the payload to the protocol * appropriate input handler * - if the SA is in tunnel mode then there are two IP headers present * one for the crytpo tunnel endpoints (described in the SA) and one * for the tunnel endpoints. The outer IP headers in the srriving * packets will have the crypto endpoints. So the DB needs to contain * the crpto endpoint. Once the crypto header is stripped, revealing, * the tunnel-IP we have 2 choices: * 1) do a tunnel lookup based on the revealed header * 2) skip the tunnel lookup and assume that the packet matches the * one that is protected here. * If we did 1) then we would allow our peer to use the SA for tunnel * X to inject traffic onto tunnel Y, this is not good. If we do 2) * then we don't verify that the peer is indeed using SA for tunnel * X and addressing tunnel X. So we take a compromise, once the SA * matches to tunnel X we veriy that the inner IP matches the value * of the tunnel we are protecting, else it's dropped. */ ipsec_tun_protect_config (im, itp, sa_out, sas_in); } else { /* updating SAs only */ itp = pool_elt_at_index (ipsec_tun_protect_pool, itpi); ipsec_tun_protect_unconfig (im, itp); ipsec_tun_protect_config (im, itp, sa_out, sas_in); } ipsec_sa_unlock (sa_out); vec_foreach (saip, sas_in) ipsec_sa_unlock (*saip); vec_free (sas_in); out: return (rv); } int ipsec_tun_protect_del (u32 sw_if_index, const ip_address_t * nh) { ipsec_tun_protect_t *itp; ipsec_main_t *im; index_t itpi; ITP_DBG2 ("delete: %U/%U", format_vnet_sw_if_index_name, vnet_get_main (), sw_if_index, format_ip_address, nh); im = &ipsec_main; if (NULL == nh) nh = &IP_ADDR_ALL_0; itpi = ipsec_tun_protect_find (sw_if_index, nh); if (INDEX_INVALID == itpi) return (VNET_API_ERROR_NO_SUCH_ENTRY); itp = ipsec_tun_protect_get (itpi); ipsec_tun_protect_unconfig (im, itp); if (ADJ_INDEX_INVALID != itp->itp_ai) adj_unlock (itp->itp_ai); clib_mem_free (itp->itp_key); pool_put (ipsec_tun_protect_pool, itp); return (0); } void ipsec_tun_protect_walk (ipsec_tun_protect_walk_cb_t fn, void *ctx) { index_t itpi; /* *INDENT-OFF* */ pool_foreach_index (itpi, ipsec_tun_protect_pool) { fn (itpi, ctx); } /* *INDENT-ON* */ } void ipsec_tun_protect_walk_itf (u32 sw_if_index, ipsec_tun_protect_walk_cb_t fn, void *ctx) { ipsec_tun_protect_itf_db_t *idi; ip_address_t *key; index_t itpi; if (vec_len (itp_db.id_itf) <= sw_if_index) return; idi = &itp_db.id_itf[sw_if_index]; /* *INDENT-OFF* */ hash_foreach(key, itpi, idi->id_hash, ({ fn (itpi, ctx); })); /* *INDENT-ON* */ if (INDEX_INVALID != idi->id_itp) fn (idi->id_itp, ctx); } static void ipsec_tun_feature_update (u32 sw_if_index, u8 arc_index, u8 is_enable, void *data) { ipsec_tun_protect_t *itp; index_t itpi; if (arc_index != feature_main.device_input_feature_arc_index) return; /* Only p2p tunnels supported */ itpi = ipsec_tun_protect_find (sw_if_index, &IP_ADDR_ALL_0); if (itpi == INDEX_INVALID) return; itp = ipsec_tun_protect_get (itpi); if (is_enable) { u32 decrypt_tun = ip46_address_is_ip4 (&itp->itp_crypto.dst) ? ipsec_main.esp4_decrypt_tun_node_index : ipsec_main.esp6_decrypt_tun_node_index; if (!(itp->itp_flags & IPSEC_PROTECT_FEAT)) { itp->itp_flags |= IPSEC_PROTECT_FEAT; vnet_feature_modify_end_node ( feature_main.device_input_feature_arc_index, sw_if_index, decrypt_tun); } } else { if (itp->itp_flags & IPSEC_PROTECT_FEAT) { itp->itp_flags &= ~IPSEC_PROTECT_FEAT; u32 eth_in = vlib_get_node_by_name (vlib_get_main (), (u8 *) "ethernet-input") ->index; vnet_feature_modify_end_node ( feature_main.device_input_feature_arc_index, sw_if_index, eth_in); } } /* Propagate flag change into lookup entries */ ipsec_tun_protect_rx_db_remove (&ipsec_main, itp); ipsec_tun_protect_rx_db_add (&ipsec_main, itp); } static void ipsec_tun_protect_adj_delegate_adj_deleted (adj_delegate_t * ad) { /* remove our delegate */ ipsec_tun_protect_add_adj (ad->ad_adj_index, NULL); adj_delegate_remove (ad->ad_adj_index, ipsec_tun_adj_delegate_type); } static void ipsec_tun_protect_adj_delegate_adj_modified (adj_delegate_t * ad) { ipsec_tun_protect_add_adj (ad->ad_adj_index, ipsec_tun_protect_get (ad->ad_index)); } static void ipsec_tun_protect_adj_delegate_adj_created (adj_index_t ai) { /* add our delegate if there is protection for this neighbour */ ip_address_t ip = IP_ADDRESS_V4_ALL_0S; ip_adjacency_t *adj; index_t itpi; if (!adj_is_midchain (ai)) return; vec_validate_init_empty (ipsec_tun_protect_sa_by_adj_index, ai, INDEX_INVALID); adj = adj_get (ai); ip_address_from_46 (&adj->sub_type.midchain.next_hop, adj->ia_nh_proto, &ip); itpi = ipsec_tun_protect_find (adj->rewrite_header.sw_if_index, &ip); if (INDEX_INVALID != itpi) ipsec_tun_protect_adj_add (ai, ipsec_tun_protect_get (itpi)); } static u8 * ipsec_tun_protect_adj_delegate_format (const adj_delegate_t * aed, u8 * s) { const ipsec_tun_protect_t *itp; itp = ipsec_tun_protect_from_const_base (aed); s = format (s, "ipsec-tun-protect:\n%U", format_ipsec_tun_protect, itp); return (s); } static void ipsec_tun_teib_entry_added (const teib_entry_t * ne) { ipsec_tun_protect_t *itp; index_t itpi; itpi = ipsec_tun_protect_find (teib_entry_get_sw_if_index (ne), teib_entry_get_peer (ne)); if (INDEX_INVALID == itpi) return; itp = ipsec_tun_protect_get (itpi); ipsec_tun_protect_rx_db_remove (&ipsec_main, itp); ipsec_tun_protect_update_from_teib (itp, ne); ipsec_tun_protect_set_crypto_addr (itp); ipsec_tun_protect_rx_db_add (&ipsec_main, itp); ITP_DBG (itp, "teib-added"); } static void ipsec_tun_teib_entry_deleted (const teib_entry_t * ne) { ipsec_tun_protect_t *itp; index_t itpi; itpi = ipsec_tun_protect_find (teib_entry_get_sw_if_index (ne), teib_entry_get_peer (ne)); if (INDEX_INVALID == itpi) return; itp = ipsec_tun_protect_get (itpi); ipsec_tun_protect_rx_db_remove (&ipsec_main, itp); ipsec_tun_protect_update_from_teib (itp, NULL); ipsec_tun_protect_set_crypto_addr (itp); ITP_DBG (itp, "teib-removed"); } /** * VFT registered with the adjacency delegate */ const static adj_delegate_vft_t ipsec_tun_adj_delegate_vft = { .adv_adj_deleted = ipsec_tun_protect_adj_delegate_adj_deleted, .adv_adj_created = ipsec_tun_protect_adj_delegate_adj_created, .adv_adj_modified = ipsec_tun_protect_adj_delegate_adj_modified, .adv_format = ipsec_tun_protect_adj_delegate_format, }; const static teib_vft_t ipsec_tun_teib_vft = { .nv_added = ipsec_tun_teib_entry_added, .nv_deleted = ipsec_tun_teib_entry_deleted, }; void ipsec_tun_table_init (ip_address_family_t af, uword table_size, u32 n_buckets) { ipsec_main_t *im; im = &ipsec_main; if (AF_IP4 == af) clib_bihash_init_8_16 (&im->tun4_protect_by_key, "IPSec IPv4 tunnels", n_buckets, table_size); else clib_bihash_init_24_16 (&im->tun6_protect_by_key, "IPSec IPv6 tunnels", n_buckets, table_size); } static clib_error_t * ipsec_tunnel_protect_init (vlib_main_t *vm) { ipsec_main_t *im; im = &ipsec_main; clib_bihash_init_24_16 (&im->tun6_protect_by_key, "IPSec IPv6 tunnels", IPSEC_TUN_DEFAULT_HASH_NUM_BUCKETS, IPSEC_TUN_DEFAULT_HASH_MEMORY_SIZE); clib_bihash_init_8_16 (&im->tun4_protect_by_key, "IPSec IPv4 tunnels", IPSEC_TUN_DEFAULT_HASH_NUM_BUCKETS, IPSEC_TUN_DEFAULT_HASH_MEMORY_SIZE); ipsec_tun_adj_delegate_type = adj_delegate_register_new_type (&ipsec_tun_adj_delegate_vft); ipsec_tun_protect_logger = vlib_log_register_class ("ipsec", "tun"); teib_register (&ipsec_tun_teib_vft); vnet_feature_register (ipsec_tun_feature_update, NULL); return 0; } VLIB_INIT_FUNCTION (ipsec_tunnel_protect_init); /* * fd.io coding-style-patch-verification: ON * * Local Variables: * eval: (c-set-style "gnu") * End: */