mirror of
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0bff6a5af8
It contains many fixes, including bounds checking, buffer overflows (in SLIP and bittok2str_internal), buffer over-reads, and infinite loops. One other notable change: Do not use getprotobynumber() for protocol name resolution. Do not do any protocol name resolution if -n is specified. Submitted by: gordon Reviewed by: delphij, emaste, glebius MFC after: 1 week Relnotes: Yes Security: CVE-2017-11108, CVE-2017-11541, CVE-2017-11542 Security: CVE-2017-11543, CVE-2017-12893, CVE-2017-12894 Security: CVE-2017-12895, CVE-2017-12896, CVE-2017-12897 Security: CVE-2017-12898, CVE-2017-12899, CVE-2017-12900 Security: CVE-2017-12901, CVE-2017-12902, CVE-2017-12985 Security: CVE-2017-12986, CVE-2017-12987, CVE-2017-12988 Security: CVE-2017-12989, CVE-2017-12990, CVE-2017-12991 Security: CVE-2017-12992, CVE-2017-12993, CVE-2017-12994 Security: CVE-2017-12995, CVE-2017-12996, CVE-2017-12997 Security: CVE-2017-12998, CVE-2017-12999, CVE-2017-13000 Security: CVE-2017-13001, CVE-2017-13002, CVE-2017-13003 Security: CVE-2017-13004, CVE-2017-13005, CVE-2017-13006 Security: CVE-2017-13007, CVE-2017-13008, CVE-2017-13009 Security: CVE-2017-13010, CVE-2017-13011, CVE-2017-13012 Security: CVE-2017-13013, CVE-2017-13014, CVE-2017-13015 Security: CVE-2017-13016, CVE-2017-13017, CVE-2017-13018 Security: CVE-2017-13019, CVE-2017-13020, CVE-2017-13021 Security: CVE-2017-13022, CVE-2017-13023, CVE-2017-13024 Security: CVE-2017-13025, CVE-2017-13026, CVE-2017-13027 Security: CVE-2017-13028, CVE-2017-13029, CVE-2017-13030 Security: CVE-2017-13031, CVE-2017-13032, CVE-2017-13033 Security: CVE-2017-13034, CVE-2017-13035, CVE-2017-13036 Security: CVE-2017-13037, CVE-2017-13038, CVE-2017-13039 Security: CVE-2017-13040, CVE-2017-13041, CVE-2017-13042 Security: CVE-2017-13043, CVE-2017-13044, CVE-2017-13045 Security: CVE-2017-13046, CVE-2017-13047, CVE-2017-13048 Security: CVE-2017-13049, CVE-2017-13050, CVE-2017-13051 Security: CVE-2017-13052, CVE-2017-13053, CVE-2017-13054 Security: CVE-2017-13055, CVE-2017-13687, CVE-2017-13688 Security: CVE-2017-13689, CVE-2017-13690, CVE-2017-13725 Differential Revision: https://reviews.freebsd.org/D12404
224 lines
5.5 KiB
C
224 lines
5.5 KiB
C
/*
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* Copyright (c) 2009
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* Siemens AG, All rights reserved.
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* Dmitry Eremin-Solenikov (dbaryshkov@gmail.com)
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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: (1) source code distributions
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* retain the above copyright notice and this paragraph in its entirety, (2)
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* distributions including binary code include the above copyright notice and
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* this paragraph in its entirety in the documentation or other materials
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* provided with the distribution, and (3) all advertising materials mentioning
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* features or use of this software display the following acknowledgement:
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* ``This product includes software developed by the University of California,
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* Lawrence Berkeley Laboratory and its contributors.'' Neither the name of
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* the University nor the names of its contributors may be used to endorse
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* or promote products derived from this software without specific prior
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* written permission.
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* THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR IMPLIED
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* WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED WARRANTIES OF
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* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
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*/
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/* \summary: IEEE 802.15.4 printer */
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#ifdef HAVE_CONFIG_H
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#include "config.h"
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#endif
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#include <netdissect-stdinc.h>
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#include "netdissect.h"
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#include "addrtoname.h"
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#include "extract.h"
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static const char *ftypes[] = {
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"Beacon", /* 0 */
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"Data", /* 1 */
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"ACK", /* 2 */
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"Command", /* 3 */
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"Reserved (0x4)", /* 4 */
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"Reserved (0x5)", /* 5 */
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"Reserved (0x6)", /* 6 */
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"Reserved (0x7)", /* 7 */
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};
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/*
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* Frame Control subfields.
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*/
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#define FC_FRAME_TYPE(fc) ((fc) & 0x7)
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#define FC_SECURITY_ENABLED 0x0008
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#define FC_FRAME_PENDING 0x0010
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#define FC_ACK_REQUEST 0x0020
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#define FC_PAN_ID_COMPRESSION 0x0040
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#define FC_DEST_ADDRESSING_MODE(fc) (((fc) >> 10) & 0x3)
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#define FC_FRAME_VERSION(fc) (((fc) >> 12) & 0x3)
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#define FC_SRC_ADDRESSING_MODE(fc) (((fc) >> 14) & 0x3)
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#define FC_ADDRESSING_MODE_NONE 0x00
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#define FC_ADDRESSING_MODE_RESERVED 0x01
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#define FC_ADDRESSING_MODE_SHORT 0x02
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#define FC_ADDRESSING_MODE_LONG 0x03
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u_int
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ieee802_15_4_if_print(netdissect_options *ndo,
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const struct pcap_pkthdr *h, const u_char *p)
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{
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u_int caplen = h->caplen;
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u_int hdrlen;
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uint16_t fc;
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uint8_t seq;
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uint16_t panid = 0;
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if (caplen < 3) {
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ND_PRINT((ndo, "[|802.15.4]"));
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return caplen;
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}
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hdrlen = 3;
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fc = EXTRACT_LE_16BITS(p);
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seq = EXTRACT_LE_8BITS(p + 2);
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p += 3;
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caplen -= 3;
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ND_PRINT((ndo,"IEEE 802.15.4 %s packet ", ftypes[FC_FRAME_TYPE(fc)]));
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if (ndo->ndo_vflag)
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ND_PRINT((ndo,"seq %02x ", seq));
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/*
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* Destination address and PAN ID, if present.
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*/
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switch (FC_DEST_ADDRESSING_MODE(fc)) {
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case FC_ADDRESSING_MODE_NONE:
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if (fc & FC_PAN_ID_COMPRESSION) {
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/*
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* PAN ID compression; this requires that both
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* the source and destination addresses be present,
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* but the destination address is missing.
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*/
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ND_PRINT((ndo, "[|802.15.4]"));
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return hdrlen;
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}
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if (ndo->ndo_vflag)
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ND_PRINT((ndo,"none "));
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break;
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case FC_ADDRESSING_MODE_RESERVED:
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if (ndo->ndo_vflag)
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ND_PRINT((ndo,"reserved destination addressing mode"));
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return hdrlen;
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case FC_ADDRESSING_MODE_SHORT:
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if (caplen < 2) {
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ND_PRINT((ndo, "[|802.15.4]"));
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return hdrlen;
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}
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panid = EXTRACT_LE_16BITS(p);
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p += 2;
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caplen -= 2;
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hdrlen += 2;
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if (caplen < 2) {
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ND_PRINT((ndo, "[|802.15.4]"));
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return hdrlen;
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}
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if (ndo->ndo_vflag)
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ND_PRINT((ndo,"%04x:%04x ", panid, EXTRACT_LE_16BITS(p)));
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p += 2;
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caplen -= 2;
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hdrlen += 2;
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break;
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case FC_ADDRESSING_MODE_LONG:
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if (caplen < 2) {
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ND_PRINT((ndo, "[|802.15.4]"));
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return hdrlen;
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}
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panid = EXTRACT_LE_16BITS(p);
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p += 2;
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caplen -= 2;
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hdrlen += 2;
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if (caplen < 8) {
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ND_PRINT((ndo, "[|802.15.4]"));
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return hdrlen;
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}
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if (ndo->ndo_vflag)
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ND_PRINT((ndo,"%04x:%s ", panid, le64addr_string(ndo, p)));
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p += 8;
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caplen -= 8;
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hdrlen += 8;
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break;
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}
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if (ndo->ndo_vflag)
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ND_PRINT((ndo,"< "));
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/*
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* Source address and PAN ID, if present.
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*/
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switch (FC_SRC_ADDRESSING_MODE(fc)) {
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case FC_ADDRESSING_MODE_NONE:
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if (ndo->ndo_vflag)
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ND_PRINT((ndo,"none "));
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break;
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case FC_ADDRESSING_MODE_RESERVED:
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if (ndo->ndo_vflag)
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ND_PRINT((ndo,"reserved source addressing mode"));
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return 0;
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case FC_ADDRESSING_MODE_SHORT:
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if (!(fc & FC_PAN_ID_COMPRESSION)) {
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/*
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* The source PAN ID is not compressed out, so
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* fetch it. (Otherwise, we'll use the destination
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* PAN ID, fetched above.)
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*/
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if (caplen < 2) {
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ND_PRINT((ndo, "[|802.15.4]"));
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return hdrlen;
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}
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panid = EXTRACT_LE_16BITS(p);
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p += 2;
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caplen -= 2;
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hdrlen += 2;
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}
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if (caplen < 2) {
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ND_PRINT((ndo, "[|802.15.4]"));
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return hdrlen;
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}
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if (ndo->ndo_vflag)
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ND_PRINT((ndo,"%04x:%04x ", panid, EXTRACT_LE_16BITS(p)));
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p += 2;
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caplen -= 2;
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hdrlen += 2;
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break;
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case FC_ADDRESSING_MODE_LONG:
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if (!(fc & FC_PAN_ID_COMPRESSION)) {
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/*
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* The source PAN ID is not compressed out, so
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* fetch it. (Otherwise, we'll use the destination
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* PAN ID, fetched above.)
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*/
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if (caplen < 2) {
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ND_PRINT((ndo, "[|802.15.4]"));
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return hdrlen;
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}
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panid = EXTRACT_LE_16BITS(p);
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p += 2;
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caplen -= 2;
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hdrlen += 2;
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}
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if (caplen < 8) {
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ND_PRINT((ndo, "[|802.15.4]"));
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return hdrlen;
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}
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if (ndo->ndo_vflag)
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ND_PRINT((ndo,"%04x:%s ", panid, le64addr_string(ndo, p)));
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p += 8;
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caplen -= 8;
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hdrlen += 8;
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break;
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}
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if (!ndo->ndo_suppress_default_print)
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ND_DEFAULTPRINT(p, caplen);
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return hdrlen;
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}
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