9ffa96777e
change 38496 o add ipsec_osdep.h that holds os-specific definitions for portability o s/KASSERT/IPSEC_ASSERT/ for portability o s/SPLASSERT/IPSEC_SPLASSERT/ for portability o remove function names from ASSERT strings since line#+file pinpints the location o use __func__ uniformly to reduce string storage o convert some random #ifdef DIAGNOSTIC code to assertions o remove some debuggging assertions no longer needed change 38498 o replace numerous bogus panic's with equally bogus assertions that at least go away on a production system change 38502 + 38530 o change explicit mtx operations to #defines to simplify future changes to a different lock type change 38531 o hookup ipv4 ctlinput paths to a noop routine; we should be handling path mtu changes at least o correct potential null pointer deref in ipsec4_common_input_cb chnage 38685 o fix locking for bundled SA's and for when key exchange is required change 38770 o eliminate recursion on the SAHTREE lock change 38804 o cleanup some types: long -> time_t o remove refrence to dead #define change 38805 o correct some types: long -> time_t o add scan generation # to secpolicy to deal with locking issues change 38806 o use LIST_FOREACH_SAFE instead of handrolled code o change key_flush_spd to drop the sptree lock before purging an entry to avoid lock recursion and to avoid holding the lock over a long-running operation o misc cleanups of tangled and twisty code There is still much to do here but for now things look to be working again. Supported by: FreeBSD Foundation
751 lines
18 KiB
C
751 lines
18 KiB
C
/* $FreeBSD$ */
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/* $KAME: key_debug.c,v 1.26 2001/06/27 10:46:50 sakane Exp $ */
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/*
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* Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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* 3. Neither the name of the project nor the names of its contributors
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* may be used to endorse or promote products derived from this software
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* without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
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* ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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* ARE DISCLAIMED. IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
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* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
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* OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
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* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
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* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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* SUCH DAMAGE.
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*/
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#ifdef _KERNEL
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#include "opt_inet.h"
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#include "opt_inet6.h"
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#include "opt_ipsec.h"
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#endif
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#include <sys/types.h>
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#include <sys/param.h>
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#ifdef _KERNEL
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#include <sys/systm.h>
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#include <sys/mbuf.h>
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#include <sys/queue.h>
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#endif
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#include <sys/socket.h>
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#include <net/route.h>
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#include <netipsec/key_var.h>
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#include <netipsec/key_debug.h>
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#include <netinet/in.h>
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#include <netipsec/ipsec.h>
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#ifndef _KERNEL
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#include <ctype.h>
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#include <stdio.h>
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#include <stdlib.h>
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#endif /* !_KERNEL */
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static void kdebug_sadb_prop __P((struct sadb_ext *));
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static void kdebug_sadb_identity __P((struct sadb_ext *));
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static void kdebug_sadb_supported __P((struct sadb_ext *));
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static void kdebug_sadb_lifetime __P((struct sadb_ext *));
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static void kdebug_sadb_sa __P((struct sadb_ext *));
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static void kdebug_sadb_address __P((struct sadb_ext *));
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static void kdebug_sadb_key __P((struct sadb_ext *));
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static void kdebug_sadb_x_sa2 __P((struct sadb_ext *));
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#ifdef _KERNEL
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static void kdebug_secreplay __P((struct secreplay *));
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#endif
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#ifndef _KERNEL
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#define panic(param) { printf(param); exit(-1); }
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#endif
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/* NOTE: host byte order */
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/* %%%: about struct sadb_msg */
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void
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kdebug_sadb(base)
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struct sadb_msg *base;
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{
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struct sadb_ext *ext;
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int tlen, extlen;
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/* sanity check */
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if (base == NULL)
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panic("%s: NULL pointer was passed.\n", __func__);
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printf("sadb_msg{ version=%u type=%u errno=%u satype=%u\n",
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base->sadb_msg_version, base->sadb_msg_type,
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base->sadb_msg_errno, base->sadb_msg_satype);
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printf(" len=%u reserved=%u seq=%u pid=%u\n",
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base->sadb_msg_len, base->sadb_msg_reserved,
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base->sadb_msg_seq, base->sadb_msg_pid);
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tlen = PFKEY_UNUNIT64(base->sadb_msg_len) - sizeof(struct sadb_msg);
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ext = (struct sadb_ext *)((caddr_t)base + sizeof(struct sadb_msg));
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while (tlen > 0) {
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printf("sadb_ext{ len=%u type=%u }\n",
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ext->sadb_ext_len, ext->sadb_ext_type);
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if (ext->sadb_ext_len == 0) {
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printf("%s: invalid ext_len=0 was passed.\n", __func__);
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return;
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}
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if (ext->sadb_ext_len > tlen) {
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printf("%s: ext_len too big (%u > %u).\n",
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__func__, ext->sadb_ext_len, tlen);
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return;
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}
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switch (ext->sadb_ext_type) {
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case SADB_EXT_SA:
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kdebug_sadb_sa(ext);
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break;
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case SADB_EXT_LIFETIME_CURRENT:
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case SADB_EXT_LIFETIME_HARD:
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case SADB_EXT_LIFETIME_SOFT:
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kdebug_sadb_lifetime(ext);
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break;
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case SADB_EXT_ADDRESS_SRC:
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case SADB_EXT_ADDRESS_DST:
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case SADB_EXT_ADDRESS_PROXY:
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kdebug_sadb_address(ext);
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break;
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case SADB_EXT_KEY_AUTH:
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case SADB_EXT_KEY_ENCRYPT:
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kdebug_sadb_key(ext);
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break;
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case SADB_EXT_IDENTITY_SRC:
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case SADB_EXT_IDENTITY_DST:
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kdebug_sadb_identity(ext);
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break;
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case SADB_EXT_SENSITIVITY:
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break;
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case SADB_EXT_PROPOSAL:
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kdebug_sadb_prop(ext);
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break;
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case SADB_EXT_SUPPORTED_AUTH:
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case SADB_EXT_SUPPORTED_ENCRYPT:
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kdebug_sadb_supported(ext);
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break;
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case SADB_EXT_SPIRANGE:
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case SADB_X_EXT_KMPRIVATE:
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break;
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case SADB_X_EXT_POLICY:
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kdebug_sadb_x_policy(ext);
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break;
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case SADB_X_EXT_SA2:
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kdebug_sadb_x_sa2(ext);
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break;
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default:
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printf("%s: invalid ext_type %u\n", __func__,
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ext->sadb_ext_type);
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return;
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}
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extlen = PFKEY_UNUNIT64(ext->sadb_ext_len);
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tlen -= extlen;
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ext = (struct sadb_ext *)((caddr_t)ext + extlen);
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}
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return;
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}
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static void
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kdebug_sadb_prop(ext)
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struct sadb_ext *ext;
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{
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struct sadb_prop *prop = (struct sadb_prop *)ext;
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struct sadb_comb *comb;
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int len;
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/* sanity check */
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if (ext == NULL)
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panic("%s: NULL pointer was passed.\n", __func__);
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len = (PFKEY_UNUNIT64(prop->sadb_prop_len) - sizeof(*prop))
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/ sizeof(*comb);
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comb = (struct sadb_comb *)(prop + 1);
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printf("sadb_prop{ replay=%u\n", prop->sadb_prop_replay);
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while (len--) {
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printf("sadb_comb{ auth=%u encrypt=%u "
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"flags=0x%04x reserved=0x%08x\n",
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comb->sadb_comb_auth, comb->sadb_comb_encrypt,
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comb->sadb_comb_flags, comb->sadb_comb_reserved);
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printf(" auth_minbits=%u auth_maxbits=%u "
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"encrypt_minbits=%u encrypt_maxbits=%u\n",
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comb->sadb_comb_auth_minbits,
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comb->sadb_comb_auth_maxbits,
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comb->sadb_comb_encrypt_minbits,
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comb->sadb_comb_encrypt_maxbits);
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printf(" soft_alloc=%u hard_alloc=%u "
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"soft_bytes=%lu hard_bytes=%lu\n",
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comb->sadb_comb_soft_allocations,
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comb->sadb_comb_hard_allocations,
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(unsigned long)comb->sadb_comb_soft_bytes,
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(unsigned long)comb->sadb_comb_hard_bytes);
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printf(" soft_alloc=%lu hard_alloc=%lu "
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"soft_bytes=%lu hard_bytes=%lu }\n",
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(unsigned long)comb->sadb_comb_soft_addtime,
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(unsigned long)comb->sadb_comb_hard_addtime,
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(unsigned long)comb->sadb_comb_soft_usetime,
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(unsigned long)comb->sadb_comb_hard_usetime);
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comb++;
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}
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printf("}\n");
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return;
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}
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static void
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kdebug_sadb_identity(ext)
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struct sadb_ext *ext;
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{
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struct sadb_ident *id = (struct sadb_ident *)ext;
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int len;
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/* sanity check */
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if (ext == NULL)
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panic("%s: NULL pointer was passed.\n", __func__);
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len = PFKEY_UNUNIT64(id->sadb_ident_len) - sizeof(*id);
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printf("sadb_ident_%s{",
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id->sadb_ident_exttype == SADB_EXT_IDENTITY_SRC ? "src" : "dst");
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switch (id->sadb_ident_type) {
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default:
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printf(" type=%d id=%lu",
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id->sadb_ident_type, (u_long)id->sadb_ident_id);
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if (len) {
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#ifdef _KERNEL
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ipsec_hexdump((caddr_t)(id + 1), len); /*XXX cast ?*/
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#else
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char *p, *ep;
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printf("\n str=\"");
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p = (char *)(id + 1);
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ep = p + len;
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for (/*nothing*/; *p && p < ep; p++) {
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if (isprint(*p))
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printf("%c", *p & 0xff);
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else
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printf("\\%03o", *p & 0xff);
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}
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#endif
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printf("\"");
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}
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break;
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}
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printf(" }\n");
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return;
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}
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static void
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kdebug_sadb_supported(ext)
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struct sadb_ext *ext;
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{
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struct sadb_supported *sup = (struct sadb_supported *)ext;
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struct sadb_alg *alg;
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int len;
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/* sanity check */
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if (ext == NULL)
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panic("%s: NULL pointer was passed.\n", __func__);
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len = (PFKEY_UNUNIT64(sup->sadb_supported_len) - sizeof(*sup))
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/ sizeof(*alg);
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alg = (struct sadb_alg *)(sup + 1);
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printf("sadb_sup{\n");
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while (len--) {
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printf(" { id=%d ivlen=%d min=%d max=%d }\n",
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alg->sadb_alg_id, alg->sadb_alg_ivlen,
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alg->sadb_alg_minbits, alg->sadb_alg_maxbits);
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alg++;
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}
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printf("}\n");
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return;
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}
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static void
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kdebug_sadb_lifetime(ext)
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struct sadb_ext *ext;
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{
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struct sadb_lifetime *lft = (struct sadb_lifetime *)ext;
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/* sanity check */
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if (ext == NULL)
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printf("%s: NULL pointer was passed.\n", __func__);
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printf("sadb_lifetime{ alloc=%u, bytes=%u\n",
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lft->sadb_lifetime_allocations,
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(u_int32_t)lft->sadb_lifetime_bytes);
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printf(" addtime=%u, usetime=%u }\n",
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(u_int32_t)lft->sadb_lifetime_addtime,
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(u_int32_t)lft->sadb_lifetime_usetime);
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return;
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}
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static void
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kdebug_sadb_sa(ext)
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struct sadb_ext *ext;
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{
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struct sadb_sa *sa = (struct sadb_sa *)ext;
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/* sanity check */
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if (ext == NULL)
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panic("%s: NULL pointer was passed.\n", __func__);
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printf("sadb_sa{ spi=%u replay=%u state=%u\n",
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(u_int32_t)ntohl(sa->sadb_sa_spi), sa->sadb_sa_replay,
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sa->sadb_sa_state);
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printf(" auth=%u encrypt=%u flags=0x%08x }\n",
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sa->sadb_sa_auth, sa->sadb_sa_encrypt, sa->sadb_sa_flags);
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return;
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}
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static void
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kdebug_sadb_address(ext)
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struct sadb_ext *ext;
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{
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struct sadb_address *addr = (struct sadb_address *)ext;
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/* sanity check */
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if (ext == NULL)
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panic("%s: NULL pointer was passed.\n", __func__);
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printf("sadb_address{ proto=%u prefixlen=%u reserved=0x%02x%02x }\n",
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addr->sadb_address_proto, addr->sadb_address_prefixlen,
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((u_char *)&addr->sadb_address_reserved)[0],
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((u_char *)&addr->sadb_address_reserved)[1]);
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kdebug_sockaddr((struct sockaddr *)((caddr_t)ext + sizeof(*addr)));
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return;
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}
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static void
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kdebug_sadb_key(ext)
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struct sadb_ext *ext;
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{
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struct sadb_key *key = (struct sadb_key *)ext;
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/* sanity check */
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if (ext == NULL)
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panic("%s: NULL pointer was passed.\n", __func__);
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printf("sadb_key{ bits=%u reserved=%u\n",
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key->sadb_key_bits, key->sadb_key_reserved);
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printf(" key=");
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/* sanity check 2 */
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if ((key->sadb_key_bits >> 3) >
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(PFKEY_UNUNIT64(key->sadb_key_len) - sizeof(struct sadb_key))) {
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printf("%s: key length mismatch, bit:%d len:%ld.\n",
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__func__,
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key->sadb_key_bits >> 3,
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(long)PFKEY_UNUNIT64(key->sadb_key_len) - sizeof(struct sadb_key));
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}
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ipsec_hexdump((caddr_t)key + sizeof(struct sadb_key),
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key->sadb_key_bits >> 3);
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printf(" }\n");
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return;
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}
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static void
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kdebug_sadb_x_sa2(ext)
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struct sadb_ext *ext;
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{
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struct sadb_x_sa2 *sa2 = (struct sadb_x_sa2 *)ext;
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/* sanity check */
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if (ext == NULL)
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panic("%s: NULL pointer was passed.\n", __func__);
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printf("sadb_x_sa2{ mode=%u reqid=%u\n",
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sa2->sadb_x_sa2_mode, sa2->sadb_x_sa2_reqid);
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printf(" reserved1=%u reserved2=%u sequence=%u }\n",
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sa2->sadb_x_sa2_reserved1, sa2->sadb_x_sa2_reserved2,
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sa2->sadb_x_sa2_sequence);
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return;
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}
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void
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kdebug_sadb_x_policy(ext)
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struct sadb_ext *ext;
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{
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struct sadb_x_policy *xpl = (struct sadb_x_policy *)ext;
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struct sockaddr *addr;
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/* sanity check */
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if (ext == NULL)
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panic("%s: NULL pointer was passed.\n", __func__);
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printf("sadb_x_policy{ type=%u dir=%u id=%x }\n",
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xpl->sadb_x_policy_type, xpl->sadb_x_policy_dir,
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xpl->sadb_x_policy_id);
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if (xpl->sadb_x_policy_type == IPSEC_POLICY_IPSEC) {
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int tlen;
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struct sadb_x_ipsecrequest *xisr;
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tlen = PFKEY_UNUNIT64(xpl->sadb_x_policy_len) - sizeof(*xpl);
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xisr = (struct sadb_x_ipsecrequest *)(xpl + 1);
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while (tlen > 0) {
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printf(" { len=%u proto=%u mode=%u level=%u reqid=%u\n",
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xisr->sadb_x_ipsecrequest_len,
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xisr->sadb_x_ipsecrequest_proto,
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xisr->sadb_x_ipsecrequest_mode,
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xisr->sadb_x_ipsecrequest_level,
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xisr->sadb_x_ipsecrequest_reqid);
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if (xisr->sadb_x_ipsecrequest_len > sizeof(*xisr)) {
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addr = (struct sockaddr *)(xisr + 1);
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kdebug_sockaddr(addr);
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addr = (struct sockaddr *)((caddr_t)addr
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+ addr->sa_len);
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kdebug_sockaddr(addr);
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}
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printf(" }\n");
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/* prevent infinite loop */
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if (xisr->sadb_x_ipsecrequest_len <= 0) {
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printf("%s: wrong policy struct.\n", __func__);
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return;
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}
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/* prevent overflow */
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if (xisr->sadb_x_ipsecrequest_len > tlen) {
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printf("%s: invalid ipsec policy length "
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"(%u > %u)\n", __func__,
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xisr->sadb_x_ipsecrequest_len, tlen);
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return;
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}
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tlen -= xisr->sadb_x_ipsecrequest_len;
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xisr = (struct sadb_x_ipsecrequest *)((caddr_t)xisr
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+ xisr->sadb_x_ipsecrequest_len);
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}
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if (tlen != 0)
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panic("%s: wrong policy struct.\n", __func__);
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}
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return;
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}
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#ifdef _KERNEL
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/* %%%: about SPD and SAD */
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void
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kdebug_secpolicy(sp)
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struct secpolicy *sp;
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{
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/* sanity check */
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if (sp == NULL)
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panic("%s: NULL pointer was passed.\n", __func__);
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printf("secpolicy{ refcnt=%u state=%u policy=%u\n",
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sp->refcnt, sp->state, sp->policy);
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kdebug_secpolicyindex(&sp->spidx);
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switch (sp->policy) {
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case IPSEC_POLICY_DISCARD:
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printf(" type=discard }\n");
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break;
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case IPSEC_POLICY_NONE:
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printf(" type=none }\n");
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break;
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case IPSEC_POLICY_IPSEC:
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{
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struct ipsecrequest *isr;
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for (isr = sp->req; isr != NULL; isr = isr->next) {
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printf(" level=%u\n", isr->level);
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kdebug_secasindex(&isr->saidx);
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if (isr->sav != NULL)
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kdebug_secasv(isr->sav);
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}
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printf(" }\n");
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}
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break;
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case IPSEC_POLICY_BYPASS:
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printf(" type=bypass }\n");
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break;
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case IPSEC_POLICY_ENTRUST:
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printf(" type=entrust }\n");
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break;
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default:
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printf("%s: Invalid policy found. %d\n", __func__, sp->policy);
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break;
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}
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return;
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}
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void
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kdebug_secpolicyindex(spidx)
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struct secpolicyindex *spidx;
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{
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/* sanity check */
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if (spidx == NULL)
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panic("%s: NULL pointer was passed.\n", __func__);
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printf("secpolicyindex{ dir=%u prefs=%u prefd=%u ul_proto=%u\n",
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spidx->dir, spidx->prefs, spidx->prefd, spidx->ul_proto);
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ipsec_hexdump((caddr_t)&spidx->src,
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((struct sockaddr *)&spidx->src)->sa_len);
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printf("\n");
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ipsec_hexdump((caddr_t)&spidx->dst,
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((struct sockaddr *)&spidx->dst)->sa_len);
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printf("}\n");
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return;
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}
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void
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kdebug_secasindex(saidx)
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struct secasindex *saidx;
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{
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/* sanity check */
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if (saidx == NULL)
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panic("%s: NULL pointer was passed.\n", __func__);
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printf("secasindex{ mode=%u proto=%u\n",
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saidx->mode, saidx->proto);
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ipsec_hexdump((caddr_t)&saidx->src,
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((struct sockaddr *)&saidx->src)->sa_len);
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printf("\n");
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ipsec_hexdump((caddr_t)&saidx->dst,
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((struct sockaddr *)&saidx->dst)->sa_len);
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printf("\n");
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return;
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}
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void
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kdebug_secasv(sav)
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struct secasvar *sav;
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{
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/* sanity check */
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if (sav == NULL)
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panic("%s: NULL pointer was passed.\n", __func__);
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printf("secas{");
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kdebug_secasindex(&sav->sah->saidx);
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printf(" refcnt=%u state=%u auth=%u enc=%u\n",
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sav->refcnt, sav->state, sav->alg_auth, sav->alg_enc);
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printf(" spi=%u flags=%u\n",
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(u_int32_t)ntohl(sav->spi), sav->flags);
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if (sav->key_auth != NULL)
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kdebug_sadb_key((struct sadb_ext *)sav->key_auth);
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if (sav->key_enc != NULL)
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kdebug_sadb_key((struct sadb_ext *)sav->key_enc);
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if (sav->iv != NULL) {
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printf(" iv=");
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ipsec_hexdump(sav->iv, sav->ivlen ? sav->ivlen : 8);
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printf("\n");
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}
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if (sav->replay != NULL)
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kdebug_secreplay(sav->replay);
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if (sav->lft_c != NULL)
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kdebug_sadb_lifetime((struct sadb_ext *)sav->lft_c);
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if (sav->lft_h != NULL)
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kdebug_sadb_lifetime((struct sadb_ext *)sav->lft_h);
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if (sav->lft_s != NULL)
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kdebug_sadb_lifetime((struct sadb_ext *)sav->lft_s);
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#if notyet
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/* XXX: misc[123] ? */
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#endif
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return;
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}
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static void
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kdebug_secreplay(rpl)
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struct secreplay *rpl;
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{
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int len, l;
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/* sanity check */
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if (rpl == NULL)
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panic("%s: NULL pointer was passed.\n", __func__);
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printf(" secreplay{ count=%u wsize=%u seq=%u lastseq=%u",
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rpl->count, rpl->wsize, rpl->seq, rpl->lastseq);
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if (rpl->bitmap == NULL) {
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printf(" }\n");
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return;
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}
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printf("\n bitmap { ");
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for (len = 0; len < rpl->wsize; len++) {
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for (l = 7; l >= 0; l--)
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printf("%u", (((rpl->bitmap)[len] >> l) & 1) ? 1 : 0);
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}
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printf(" }\n");
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return;
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}
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void
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kdebug_mbufhdr(m)
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struct mbuf *m;
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{
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/* sanity check */
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if (m == NULL)
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return;
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printf("mbuf(%p){ m_next:%p m_nextpkt:%p m_data:%p "
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"m_len:%d m_type:0x%02x m_flags:0x%02x }\n",
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m, m->m_next, m->m_nextpkt, m->m_data,
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m->m_len, m->m_type, m->m_flags);
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if (m->m_flags & M_PKTHDR) {
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printf(" m_pkthdr{ len:%d rcvif:%p }\n",
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m->m_pkthdr.len, m->m_pkthdr.rcvif);
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}
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if (m->m_flags & M_EXT) {
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printf(" m_ext{ ext_buf:%p ext_free:%p "
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"ext_size:%u ref_cnt:%p }\n",
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m->m_ext.ext_buf, m->m_ext.ext_free,
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m->m_ext.ext_size, m->m_ext.ref_cnt);
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}
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return;
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}
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void
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kdebug_mbuf(m0)
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struct mbuf *m0;
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{
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struct mbuf *m = m0;
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int i, j;
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for (j = 0; m; m = m->m_next) {
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kdebug_mbufhdr(m);
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printf(" m_data:\n");
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for (i = 0; i < m->m_len; i++) {
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if (i && i % 32 == 0)
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printf("\n");
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if (i % 4 == 0)
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printf(" ");
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printf("%02x", mtod(m, u_char *)[i]);
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j++;
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}
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printf("\n");
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}
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return;
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}
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#endif /* _KERNEL */
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void
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kdebug_sockaddr(addr)
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struct sockaddr *addr;
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{
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struct sockaddr_in *sin4;
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#ifdef INET6
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struct sockaddr_in6 *sin6;
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#endif
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/* sanity check */
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if (addr == NULL)
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panic("%s: NULL pointer was passed.\n", __func__);
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/* NOTE: We deal with port number as host byte order. */
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printf("sockaddr{ len=%u family=%u", addr->sa_len, addr->sa_family);
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switch (addr->sa_family) {
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case AF_INET:
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sin4 = (struct sockaddr_in *)addr;
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printf(" port=%u\n", ntohs(sin4->sin_port));
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ipsec_hexdump((caddr_t)&sin4->sin_addr, sizeof(sin4->sin_addr));
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break;
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#ifdef INET6
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case AF_INET6:
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sin6 = (struct sockaddr_in6 *)addr;
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printf(" port=%u\n", ntohs(sin6->sin6_port));
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printf(" flowinfo=0x%08x, scope_id=0x%08x\n",
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sin6->sin6_flowinfo, sin6->sin6_scope_id);
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ipsec_hexdump((caddr_t)&sin6->sin6_addr,
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sizeof(sin6->sin6_addr));
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break;
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#endif
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}
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printf(" }\n");
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return;
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}
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void
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ipsec_bindump(buf, len)
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caddr_t buf;
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int len;
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{
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int i;
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for (i = 0; i < len; i++)
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printf("%c", (unsigned char)buf[i]);
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return;
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}
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void
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ipsec_hexdump(buf, len)
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caddr_t buf;
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int len;
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{
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int i;
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for (i = 0; i < len; i++) {
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if (i != 0 && i % 32 == 0) printf("\n");
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if (i % 4 == 0) printf(" ");
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printf("%02x", (unsigned char)buf[i]);
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}
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#if 0
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if (i % 32 != 0) printf("\n");
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#endif
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return;
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}
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