The Design and Implementation of the FreeBSD Operating System, Second Edition
Now available: The Design and Implementation of the FreeBSD Operating System (Second Edition)


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FreeBSD/Linux Kernel Cross Reference
sys/dev/wtap/if_wtapioctl.h

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    1 /*-
    2  * SPDX-License-Identifier: BSD-2-Clause-FreeBSD
    3  *
    4  * Copyright (c) 2010-2011 Monthadar Al Jaberi, TerraNet AB
    5  * All rights reserved.
    6  *
    7  * Copyright (c) 2002-2009 Sam Leffler, Errno Consulting
    8  * All rights reserved.
    9  *
   10  * Redistribution and use in source and binary forms, with or without
   11  * modification, are permitted provided that the following conditions
   12  * are met:
   13  * 1. Redistributions of source code must retain the above copyright
   14  *    notice, this list of conditions and the following disclaimer,
   15  *    without modification.
   16  * 2. Redistributions in binary form must reproduce at minimum a disclaimer
   17  *    similar to the "NO WARRANTY" disclaimer below ("Disclaimer") and any
   18  *    redistribution must be conditioned upon including a substantially
   19  *    similar Disclaimer requirement for further binary redistribution.
   20  *
   21  * NO WARRANTY
   22  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
   23  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
   24  * LIMITED TO, THE IMPLIED WARRANTIES OF NONINFRINGEMENT, MERCHANTIBILITY
   25  * AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL
   26  * THE COPYRIGHT HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY,
   27  * OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
   28  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
   29  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER
   30  * IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
   31  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
   32  * THE POSSIBILITY OF SUCH DAMAGES.
   33  *
   34  * $FreeBSD$
   35  */
   36 
   37 /*
   38  * Ioctl-related defintions for the Wireless TAP
   39  * based on Atheros Wireless LAN controller driver.
   40  */
   41 
   42 #ifndef _DEV_WTAP_WTAPIOCTL_H
   43 #define _DEV_WTAP_WTAPIOCTL_H
   44 
   45 #include <sys/param.h>
   46 #include <net80211/ieee80211_radiotap.h>
   47 
   48 #define SIOCGATHSTATS   _IOWR('i', 137, struct ifreq)
   49 #define SIOCZATHSTATS   _IOWR('i', 139, struct ifreq)
   50 
   51 #define WTAPIOCTLCRT    _IOW('W', 1, int)
   52 #define WTAPIOCTLDEL    _IOW('W', 2, int)
   53 
   54 struct wtap_stats {
   55         u_int32_t       ast_watchdog;   /* device reset by watchdog */
   56         u_int32_t       ast_hardware;   /* fatal hardware error interrupts */
   57         u_int32_t       ast_bmiss;      /* beacon miss interrupts */
   58         u_int32_t       ast_bmiss_phantom;/* beacon miss interrupts */
   59         u_int32_t       ast_bstuck;     /* beacon stuck interrupts */
   60         u_int32_t       ast_rxorn;      /* rx overrun interrupts */
   61         u_int32_t       ast_rxeol;      /* rx eol interrupts */
   62         u_int32_t       ast_txurn;      /* tx underrun interrupts */
   63         u_int32_t       ast_mib;        /* mib interrupts */
   64         u_int32_t       ast_intrcoal;   /* interrupts coalesced */
   65         u_int32_t       ast_tx_packets; /* packet sent on the interface */
   66         u_int32_t       ast_tx_mgmt;    /* management frames transmitted */
   67         u_int32_t       ast_tx_discard; /* frames discarded prior to assoc */
   68         u_int32_t       ast_tx_qstop;   /* output stopped 'cuz no buffer */
   69         u_int32_t       ast_tx_encap;   /* tx encapsulation failed */
   70         u_int32_t       ast_tx_nonode;  /* tx failed 'cuz no node */
   71         u_int32_t       ast_tx_nombuf;  /* tx failed 'cuz no mbuf */
   72         u_int32_t       ast_tx_nomcl;   /* tx failed 'cuz no cluster */
   73         u_int32_t       ast_tx_linear;  /* tx linearized to cluster */
   74         u_int32_t       ast_tx_nodata;  /* tx discarded empty frame */
   75         u_int32_t       ast_tx_busdma;  /* tx failed for dma resrcs */
   76         u_int32_t       ast_tx_xretries;/* tx failed 'cuz too many retries */
   77         u_int32_t       ast_tx_fifoerr; /* tx failed 'cuz FIFO underrun */
   78         u_int32_t       ast_tx_filtered;/* tx failed 'cuz xmit filtered */
   79         u_int32_t       ast_tx_shortretry;/* tx on-chip retries (short) */
   80         u_int32_t       ast_tx_longretry;/* tx on-chip retries (long) */
   81         u_int32_t       ast_tx_badrate; /* tx failed 'cuz bogus xmit rate */
   82         u_int32_t       ast_tx_noack;   /* tx frames with no ack marked */
   83         u_int32_t       ast_tx_rts;     /* tx frames with rts enabled */
   84         u_int32_t       ast_tx_cts;     /* tx frames with cts enabled */
   85         u_int32_t       ast_tx_shortpre;/* tx frames with short preamble */
   86         u_int32_t       ast_tx_altrate; /* tx frames with alternate rate */
   87         u_int32_t       ast_tx_protect; /* tx frames with protection */
   88         u_int32_t       ast_tx_ctsburst;/* tx frames with cts and bursting */
   89         u_int32_t       ast_tx_ctsext;  /* tx frames with cts extension */
   90         u_int32_t       ast_rx_nombuf;  /* rx setup failed 'cuz no mbuf */
   91         u_int32_t       ast_rx_busdma;  /* rx setup failed for dma resrcs */
   92         u_int32_t       ast_rx_orn;     /* rx failed 'cuz of desc overrun */
   93         u_int32_t       ast_rx_crcerr;  /* rx failed 'cuz of bad CRC */
   94         u_int32_t       ast_rx_fifoerr; /* rx failed 'cuz of FIFO overrun */
   95         u_int32_t       ast_rx_badcrypt;/* rx failed 'cuz decryption */
   96         u_int32_t       ast_rx_badmic;  /* rx failed 'cuz MIC failure */
   97         u_int32_t       ast_rx_phyerr;  /* rx failed 'cuz of PHY err */
   98         u_int32_t       ast_rx_phy[32]; /* rx PHY error per-code counts */
   99         u_int32_t       ast_rx_tooshort;/* rx discarded 'cuz frame too short */
  100         u_int32_t       ast_rx_toobig;  /* rx discarded 'cuz frame too large */
  101         u_int32_t       ast_rx_packets; /* packet recv on the interface */
  102         u_int32_t       ast_rx_mgt;     /* management frames received */
  103         u_int32_t       ast_rx_ctl;     /* rx discarded 'cuz ctl frame */
  104         int8_t          ast_tx_rssi;    /* tx rssi of last ack */
  105         int8_t          ast_rx_rssi;    /* rx rssi from histogram */
  106         u_int8_t        ast_tx_rate;    /* IEEE rate of last unicast tx */
  107         u_int32_t       ast_be_xmit;    /* beacons transmitted */
  108         u_int32_t       ast_be_nombuf;  /* beacon setup failed 'cuz no mbuf */
  109         u_int32_t       ast_per_cal;    /* periodic calibration calls */
  110         u_int32_t       ast_per_calfail;/* periodic calibration failed */
  111         u_int32_t       ast_per_rfgain; /* periodic calibration rfgain reset */
  112         u_int32_t       ast_rate_calls; /* rate control checks */
  113         u_int32_t       ast_rate_raise; /* rate control raised xmit rate */
  114         u_int32_t       ast_rate_drop;  /* rate control dropped xmit rate */
  115         u_int32_t       ast_ant_defswitch;/* rx/default antenna switches */
  116         u_int32_t       ast_ant_txswitch;/* tx antenna switches */
  117         u_int32_t       ast_ant_rx[8];  /* rx frames with antenna */
  118         u_int32_t       ast_ant_tx[8];  /* tx frames with antenna */
  119         u_int32_t       ast_cabq_xmit;  /* cabq frames transmitted */
  120         u_int32_t       ast_cabq_busy;  /* cabq found busy */
  121         u_int32_t       ast_tx_raw;     /* tx frames through raw api */
  122         u_int32_t       ast_ff_txok;    /* fast frames tx'd successfully */
  123         u_int32_t       ast_ff_txerr;   /* fast frames tx'd w/ error */
  124         u_int32_t       ast_ff_rx;      /* fast frames rx'd */
  125         u_int32_t       ast_ff_flush;   /* fast frames flushed from staging q */
  126         u_int32_t       ast_tx_qfull;   /* tx dropped 'cuz of queue limit */
  127         int8_t          ast_rx_noise;   /* rx noise floor */
  128         u_int32_t       ast_tx_nobuf;   /* tx dropped 'cuz no ath buffer */
  129         u_int32_t       ast_tdma_update;/* TDMA slot timing updates */
  130         u_int32_t       ast_tdma_timers;/* TDMA slot update set beacon timers */
  131         u_int32_t       ast_tdma_tsf;   /* TDMA slot update set TSF */
  132         u_int16_t       ast_tdma_tsfadjp;/* TDMA slot adjust+ (usec, smoothed)*/
  133         u_int16_t       ast_tdma_tsfadjm;/* TDMA slot adjust- (usec, smoothed)*/
  134         u_int32_t       ast_tdma_ack;   /* TDMA tx failed 'cuz ACK required */
  135         u_int32_t       ast_tx_raw_fail;/* raw tx failed 'cuz h/w down */
  136         u_int32_t       ast_tx_nofrag;  /* tx dropped 'cuz no ath frag buffer */
  137         u_int32_t       ast_be_missed;  /* missed beacons */
  138         u_int32_t       ast_pad[13];
  139 };
  140 
  141 /*
  142  * Radio capture format.
  143  */
  144 #define WTAP_RX_RADIOTAP_PRESENT (              \
  145         0)
  146 
  147 struct wtap_rx_radiotap_header {
  148         struct ieee80211_radiotap_header wr_ihdr;
  149 #if 0
  150         u_int64_t       wr_tsf;
  151         u_int8_t        wr_flags;
  152         u_int8_t        wr_rate;
  153         int8_t          wr_antsignal;
  154         int8_t          wr_antnoise;
  155         u_int8_t        wr_antenna;
  156         u_int8_t        wr_pad[3];
  157         u_int32_t       wr_chan_flags;
  158         u_int16_t       wr_chan_freq;
  159         u_int8_t        wr_chan_ieee;
  160         int8_t          wr_chan_maxpow;
  161 #endif
  162 } __packed __aligned(8);
  163 
  164 #define WTAP_TX_RADIOTAP_PRESENT (              \
  165         0)
  166 
  167 struct wtap_tx_radiotap_header {
  168         struct ieee80211_radiotap_header wt_ihdr;
  169 #if 0
  170         u_int8_t        wt_flags;
  171         u_int8_t        wt_rate;
  172         u_int8_t        wt_txpower;
  173         u_int8_t        wt_antenna;
  174         u_int32_t       wt_chan_flags;
  175         u_int16_t       wt_chan_freq;
  176         u_int8_t        wt_chan_ieee;
  177         int8_t          wt_chan_maxpow;
  178 #endif
  179 } __packed;
  180 
  181 #endif

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