1 /* $OpenBSD: if_media.h,v 1.32 2014/12/05 15:50:04 mpi Exp $ */ 2 /* $NetBSD: if_media.h,v 1.22 2000/02/17 21:53:16 sommerfeld Exp $ */ 3 4 /*- 5 * Copyright (c) 1998, 2000 The NetBSD Foundation, Inc. 6 * All rights reserved. 7 * 8 * This code is derived from software contributed to The NetBSD Foundation 9 * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility, 10 * NASA Ames Research Center. 11 * 12 * Redistribution and use in source and binary forms, with or without 13 * modification, are permitted provided that the following conditions 14 * are met: 15 * 1. Redistributions of source code must retain the above copyright 16 * notice, this list of conditions and the following disclaimer. 17 * 2. Redistributions in binary form must reproduce the above copyright 18 * notice, this list of conditions and the following disclaimer in the 19 * documentation and/or other materials provided with the distribution. 20 * 21 * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS 22 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED 23 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 24 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS 25 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 26 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 27 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 28 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 29 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 30 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 31 * POSSIBILITY OF SUCH DAMAGE. 32 */ 33 34 /* 35 * Copyright (c) 1997 36 * Jonathan Stone and Jason R. Thorpe. All rights reserved. 37 * 38 * This software is derived from information provided by Matt Thomas. 39 * 40 * Redistribution and use in source and binary forms, with or without 41 * modification, are permitted provided that the following conditions 42 * are met: 43 * 1. Redistributions of source code must retain the above copyright 44 * notice, this list of conditions and the following disclaimer. 45 * 2. Redistributions in binary form must reproduce the above copyright 46 * notice, this list of conditions and the following disclaimer in the 47 * documentation and/or other materials provided with the distribution. 48 * 3. All advertising materials mentioning features or use of this software 49 * must display the following acknowledgement: 50 * This product includes software developed by Jonathan Stone 51 * and Jason R. Thorpe for the NetBSD Project. 52 * 4. The names of the authors may not be used to endorse or promote products 53 * derived from this software without specific prior written permission. 54 * 55 * THIS SOFTWARE IS PROVIDED BY THE AUTHORS ``AS IS'' AND ANY EXPRESS OR 56 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 57 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 58 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 59 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, 60 * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; 61 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED 62 * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, 63 * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 64 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 65 * SUCH DAMAGE. 66 */ 67 68 #ifndef _NET_IF_MEDIA_H_ 69 #define _NET_IF_MEDIA_H_ 70 71 /* 72 * Prototypes and definitions for BSD/OS-compatible network interface 73 * media selection. 74 * 75 * Where it is safe to do so, this code strays slightly from the BSD/OS 76 * design. Software which uses the API (device drivers, basically) 77 * shouldn't notice any difference. 78 * 79 * Many thanks to Matt Thomas for providing the information necessary 80 * to implement this interface. 81 */ 82 83 #ifdef _KERNEL 84 85 struct ifnet; 86 87 #include <sys/queue.h> 88 /* 89 * Driver callbacks for media status and change requests. 90 */ 91 typedef int (*ifm_change_cb_t)(struct ifnet *); 92 typedef void (*ifm_stat_cb_t)(struct ifnet *, struct ifmediareq *); 93 94 /* 95 * In-kernel representation of a single supported media type. 96 */ 97 struct ifmedia_entry { 98 TAILQ_ENTRY(ifmedia_entry) ifm_list; 99 u_int ifm_media; /* description of this media attachment */ 100 u_int ifm_data; /* for driver-specific use */ 101 void *ifm_aux; /* for driver-specific use */ 102 }; 103 104 /* 105 * One of these goes into a network interface's softc structure. 106 * It is used to keep general media state. 107 */ 108 struct ifmedia { 109 u_int ifm_mask; /* mask of changes we don't care about */ 110 u_int ifm_media; /* current user-set media word */ 111 struct ifmedia_entry *ifm_cur; /* currently selected media */ 112 TAILQ_HEAD(, ifmedia_entry) ifm_list; /* list of all supported media */ 113 ifm_change_cb_t ifm_change; /* media change driver callback */ 114 ifm_stat_cb_t ifm_status; /* media status driver callback */ 115 }; 116 117 /* Initialize an interface's struct if_media field. */ 118 void ifmedia_init(struct ifmedia *, int, ifm_change_cb_t, 119 ifm_stat_cb_t); 120 121 /* Add one supported medium to a struct ifmedia. */ 122 void ifmedia_add(struct ifmedia *, int, int, void *); 123 124 /* Add an array (of ifmedia_entry) media to a struct ifmedia. */ 125 void ifmedia_list_add(struct ifmedia *, struct ifmedia_entry *, 126 int); 127 128 /* Set default media type on initialization. */ 129 void ifmedia_set(struct ifmedia *, int); 130 131 /* Common ioctl function for getting/setting media, called by driver. */ 132 int ifmedia_ioctl(struct ifnet *, struct ifreq *, struct ifmedia *, 133 u_long); 134 135 /* Locate a media entry */ 136 struct ifmedia_entry *ifmedia_match(struct ifmedia *, u_int, u_int); 137 138 /* Delete all media for a given media instance */ 139 void ifmedia_delete_instance(struct ifmedia *, u_int); 140 141 /* Compute baudrate for a given media. */ 142 u_int64_t ifmedia_baudrate(int); 143 #endif /*_KERNEL */ 144 145 /* 146 * if_media Options word: 147 * Bits Use 148 * ---- ------- 149 * 0-4 Media subtype MAX SUBTYPE == 31! 150 * 5-7 Media type 151 * 8-15 Type specific options 152 * 16-19 RFU 153 * 20-27 Shared (global) options 154 * 28-31 Instance 155 */ 156 157 /* 158 * Ethernet 159 */ 160 #define IFM_ETHER 0x00000020 161 #define IFM_10_T 3 /* 10BaseT - RJ45 */ 162 #define IFM_10_2 4 /* 10Base2 - Thinnet */ 163 #define IFM_10_5 5 /* 10Base5 - AUI */ 164 #define IFM_100_TX 6 /* 100BaseTX - RJ45 */ 165 #define IFM_100_FX 7 /* 100BaseFX - Fiber */ 166 #define IFM_100_T4 8 /* 100BaseT4 - 4 pair cat 3 */ 167 #define IFM_100_VG 9 /* 100VG-AnyLAN */ 168 #define IFM_100_T2 10 /* 100BaseT2 */ 169 #define IFM_1000_SX 11 /* 1000BaseSX - multi-mode fiber */ 170 #define IFM_10_STP 12 /* 10BaseT over shielded TP */ 171 #define IFM_10_FL 13 /* 10BaseFL - Fiber */ 172 #define IFM_1000_LX 14 /* 1000baseLX - single-mode fiber */ 173 #define IFM_1000_CX 15 /* 1000baseCX - 150ohm STP */ 174 #define IFM_1000_T 16 /* 1000baseT - 4 pair cat 5 */ 175 #define IFM_1000_TX IFM_1000_T /* for backwards compatibility */ 176 #define IFM_HPNA_1 17 /* HomePNA 1.0 (1Mb/s) */ 177 #define IFM_10G_LR 18 /* 10GBase-LR - single-mode fiber */ 178 #define IFM_10G_SR 19 /* 10GBase-SR - multi-mode fiber */ 179 #define IFM_10G_CX4 20 /* 10GBase-CX4 - copper */ 180 #define IFM_2500_SX 21 /* 2500baseSX - multi-mode fiber */ 181 #define IFM_10G_T 22 /* 10GbaseT cat 6 */ 182 #define IFM_10G_SFP_CU 23 /* 10G SFP+ direct attached cable */ 183 184 #define IFM_ETH_MASTER 0x00000100 /* master mode (1000baseT) */ 185 #define IFM_ETH_RXPAUSE 0x00000200 /* receive PAUSE frames */ 186 #define IFM_ETH_TXPAUSE 0x00000400 /* transmit PAUSE frames */ 187 188 /* 189 * FDDI 190 */ 191 #define IFM_FDDI 0x00000060 192 #define IFM_FDDI_SMF 3 /* Single-mode fiber */ 193 #define IFM_FDDI_MMF 4 /* Multi-mode fiber */ 194 #define IFM_FDDI_UTP 5 /* CDDI / UTP */ 195 #define IFM_FDDI_DA 0x00000100 /* Dual attach / single attach */ 196 197 /* 198 * IEEE 802.11 Wireless 199 */ 200 #define IFM_IEEE80211 0x00000080 201 #define IFM_IEEE80211_FH1 3 /* Frequency Hopping 1Mbps */ 202 #define IFM_IEEE80211_FH2 4 /* Frequency Hopping 2Mbps */ 203 #define IFM_IEEE80211_DS2 5 /* Direct Sequence 2Mbps */ 204 #define IFM_IEEE80211_DS5 6 /* Direct Sequence 5Mbps*/ 205 #define IFM_IEEE80211_DS11 7 /* Direct Sequence 11Mbps*/ 206 #define IFM_IEEE80211_DS1 8 /* Direct Sequence 1Mbps*/ 207 #define IFM_IEEE80211_DS22 9 /* Direct Sequence 22Mbps */ 208 #define IFM_IEEE80211_OFDM6 10 /* OFDM 6Mbps */ 209 #define IFM_IEEE80211_OFDM9 11 /* OFDM 9Mbps */ 210 #define IFM_IEEE80211_OFDM12 12 /* OFDM 12Mbps */ 211 #define IFM_IEEE80211_OFDM18 13 /* OFDM 18Mbps */ 212 #define IFM_IEEE80211_OFDM24 14 /* OFDM 24Mbps */ 213 #define IFM_IEEE80211_OFDM36 15 /* OFDM 36Mbps */ 214 #define IFM_IEEE80211_OFDM48 16 /* OFDM 48Mbps */ 215 #define IFM_IEEE80211_OFDM54 17 /* OFDM 54Mbps */ 216 #define IFM_IEEE80211_OFDM72 18 /* OFDM 72Mbps */ 217 218 #define IFM_IEEE80211_ADHOC 0x100 /* Operate in Adhoc mode */ 219 #define IFM_IEEE80211_HOSTAP 0x200 /* Operate in Host AP mode */ 220 #define IFM_IEEE80211_IBSS 0x400 /* Operate in IBSS mode */ 221 #define IFM_IEEE80211_IBSSMASTER 0x800 /* Operate as an IBSS master */ 222 #define IFM_IEEE80211_MONITOR 0x1000 /* Operate in Monitor mode */ 223 #define IFM_IEEE80211_TURBO 0x2000 /* Operate in Turbo mode */ 224 225 /* operating mode for multi-mode devices */ 226 #define IFM_IEEE80211_11A 0x00010000 /* 5GHz, OFDM mode */ 227 #define IFM_IEEE80211_11B 0x00020000 /* Direct Sequence mode */ 228 #define IFM_IEEE80211_11G 0x00030000 /* 2GHz, CCK mode */ 229 #define IFM_IEEE80211_FH 0x00040000 /* 2GHz, GFSK mode */ 230 231 /* 232 * Digitally multiplexed "Carrier" Serial Interfaces 233 */ 234 #define IFM_TDM 0x000000a0 235 #define IFM_TDM_T1 3 /* T1 B8ZS+ESF 24 ts */ 236 #define IFM_TDM_T1_AMI 4 /* T1 AMI+SF 24 ts */ 237 #define IFM_TDM_E1 5 /* E1 HDB3+G.703 clearchannel 32 ts */ 238 #define IFM_TDM_E1_G704 6 /* E1 HDB3+G.703+G.704 channelized 31 ts */ 239 #define IFM_TDM_E1_AMI 7 /* E1 AMI+G.703 32 ts */ 240 #define IFM_TDM_E1_AMI_G704 8 /* E1 AMI+G.703+G.704 31 ts */ 241 #define IFM_TDM_T3 9 /* T3 B3ZS+C-bit 672 ts */ 242 #define IFM_TDM_T3_M13 10 /* T3 B3ZS+M13 672 ts */ 243 #define IFM_TDM_E3 11 /* E3 HDB3+G.751 512? ts */ 244 #define IFM_TDM_E3_G751 12 /* E3 G.751 512 ts */ 245 #define IFM_TDM_E3_G832 13 /* E3 G.832 512 ts */ 246 #define IFM_TDM_E1_G704_CRC4 14 /* E1 HDB3+G.703+G.704 31 ts + CRC4 */ 247 /* 248 * 6 major ways that networks talk: Drivers enforce independent selection, 249 * meaning, a driver will ensure that only one of these is set at a time. 250 * Default is cisco hdlc mode with 32 bit CRC. 251 */ 252 #define IFM_TDM_HDLC_CRC16 0x0100 /* Use 16-bit CRC for HDLC instead */ 253 #define IFM_TDM_PPP 0x0200 /* SPPP (dumb) */ 254 #define IFM_TDM_FR_ANSI 0x0400 /* Frame Relay + LMI ANSI "Annex D" */ 255 #define IFM_TDM_FR_CISCO 0x0800 /* Frame Relay + LMI Cisco */ 256 #define IFM_TDM_FR_ITU 0x1000 /* Frame Relay + LMI ITU "Q933A" */ 257 258 /* operating mode */ 259 #define IFM_TDM_MASTER 0x00010000 /* aka clock source internal */ 260 261 /* 262 * Common Access Redundancy Protocol 263 */ 264 #define IFM_CARP 0x000000c0 265 266 /* 267 * Shared media sub-types 268 */ 269 #define IFM_AUTO 0 /* Autoselect best media */ 270 #define IFM_MANUAL 1 /* Jumper/dipswitch selects media */ 271 #define IFM_NONE 2 /* Deselect all media */ 272 273 /* 274 * Shared options 275 */ 276 #define IFM_FDX 0x00100000 /* Force full duplex */ 277 #define IFM_HDX 0x00200000 /* Force half duplex */ 278 #define IFM_FLOW 0x00400000 /* enable hardware flow control */ 279 #define IFM_FLAG0 0x01000000 /* Driver defined flag */ 280 #define IFM_FLAG1 0x02000000 /* Driver defined flag */ 281 #define IFM_FLAG2 0x04000000 /* Driver defined flag */ 282 #define IFM_LOOP 0x08000000 /* Put hardware in loopback */ 283 284 /* 285 * Masks 286 */ 287 #define IFM_NMASK 0x000000e0 /* Network type */ 288 #define IFM_TMASK 0x0000001f /* Media sub-type */ 289 #define IFM_IMASK 0xf0000000 /* Instance */ 290 #define IFM_ISHIFT 28 /* Instance shift */ 291 #define IFM_OMASK 0x0000ff00 /* Type specific options */ 292 #define IFM_MMASK 0x00070000 /* Mode */ 293 #define IFM_MSHIFT 16 /* Mode shift */ 294 #define IFM_GMASK 0x0ff00000 /* Global options */ 295 296 /* Ethernet flow control mask */ 297 #define IFM_ETH_FMASK (IFM_FLOW|IFM_ETH_RXPAUSE|IFM_ETH_TXPAUSE) 298 299 #define IFM_NMIN IFM_ETHER /* lowest Network type */ 300 #define IFM_NMAX IFM_NMASK /* highest Network type */ 301 302 /* 303 * Status bits 304 */ 305 #define IFM_AVALID 0x00000001 /* Active bit valid */ 306 #define IFM_ACTIVE 0x00000002 /* Interface attached to working net */ 307 308 /* Mask of "status valid" bits, for ifconfig(8). */ 309 #define IFM_STATUS_VALID IFM_AVALID 310 311 /* List of "status valid" bits, for ifconfig(8). */ 312 #define IFM_STATUS_VALID_LIST { \ 313 IFM_AVALID, \ 314 0 \ 315 } 316 317 /* 318 * Macros to extract various bits of information from the media word. 319 */ 320 #define IFM_TYPE(x) ((x) & IFM_NMASK) 321 #define IFM_SUBTYPE(x) ((x) & IFM_TMASK) 322 #define IFM_INST(x) (((x) & IFM_IMASK) >> IFM_ISHIFT) 323 #define IFM_OPTIONS(x) ((x) & (IFM_OMASK|IFM_GMASK)) 324 #define IFM_MODE(x) ((x) & IFM_MMASK) 325 326 #define IFM_INST_MAX IFM_INST(IFM_IMASK) 327 #define IFM_INST_ANY ((u_int) -1) 328 329 /* 330 * Macro to create a media word. 331 */ 332 #define IFM_MAKEWORD(type, subtype, options, instance) \ 333 ((type) | (subtype) | (options) | ((instance) << IFM_ISHIFT)) 334 #define IFM_MAKEMODE(mode) \ 335 (((mode) << IFM_MSHIFT) & IFM_MMASK) 336 /* 337 * NetBSD extension not defined in the BSDI API. This is used in various 338 * places to get the canonical description for a given type/subtype. 339 * 340 * In the subtype and mediaopt descriptions, the valid TYPE bits are OR'd 341 * in to indicate which TYPE the subtype/option corresponds to. If no 342 * TYPE is present, it is a shared media/mediaopt. 343 * 344 * Note that these are parsed case-insensitive. 345 * 346 * Order is important. The first matching entry is the canonical name 347 * for a media type; subsequent matches are aliases. 348 */ 349 struct ifmedia_description { 350 int ifmt_word; /* word value; may be masked */ 351 const char *ifmt_string; /* description */ 352 }; 353 354 #define IFM_TYPE_DESCRIPTIONS { \ 355 { IFM_ETHER, "Ethernet" }, \ 356 { IFM_ETHER, "ether" }, \ 357 { IFM_FDDI, "FDDI" }, \ 358 { IFM_IEEE80211, "IEEE802.11" }, \ 359 { IFM_TDM, "TDM" }, \ 360 { IFM_CARP, "CARP" }, \ 361 { 0, NULL }, \ 362 } 363 364 #define IFM_TYPE_MATCH(dt, t) \ 365 (IFM_TYPE((dt)) == 0 || IFM_TYPE((dt)) == IFM_TYPE((t))) 366 367 #define IFM_SUBTYPE_DESCRIPTIONS { \ 368 { IFM_AUTO, "autoselect" }, \ 369 { IFM_AUTO, "auto" }, \ 370 { IFM_MANUAL, "manual" }, \ 371 { IFM_NONE, "none" }, \ 372 \ 373 { IFM_ETHER|IFM_10_T, "10baseT" }, \ 374 { IFM_ETHER|IFM_10_T, "10baseT/UTP" }, \ 375 { IFM_ETHER|IFM_10_T, "UTP" }, \ 376 { IFM_ETHER|IFM_10_T, "10UTP" }, \ 377 { IFM_ETHER|IFM_10_2, "10base2" }, \ 378 { IFM_ETHER|IFM_10_2, "10base2/BNC" }, \ 379 { IFM_ETHER|IFM_10_2, "BNC" }, \ 380 { IFM_ETHER|IFM_10_2, "10BNC" }, \ 381 { IFM_ETHER|IFM_10_5, "10base5" }, \ 382 { IFM_ETHER|IFM_10_5, "10base5/AUI" }, \ 383 { IFM_ETHER|IFM_10_5, "AUI" }, \ 384 { IFM_ETHER|IFM_10_5, "10AUI" }, \ 385 { IFM_ETHER|IFM_100_TX, "100baseTX" }, \ 386 { IFM_ETHER|IFM_100_TX, "100TX" }, \ 387 { IFM_ETHER|IFM_100_FX, "100baseFX" }, \ 388 { IFM_ETHER|IFM_100_FX, "100FX" }, \ 389 { IFM_ETHER|IFM_100_T4, "100baseT4" }, \ 390 { IFM_ETHER|IFM_100_T4, "100T4" }, \ 391 { IFM_ETHER|IFM_100_VG, "100baseVG" }, \ 392 { IFM_ETHER|IFM_100_VG, "100VG" }, \ 393 { IFM_ETHER|IFM_100_T2, "100baseT2" }, \ 394 { IFM_ETHER|IFM_100_T2, "100T2" }, \ 395 { IFM_ETHER|IFM_1000_SX, "1000baseSX" }, \ 396 { IFM_ETHER|IFM_1000_SX, "1000SX" }, \ 397 { IFM_ETHER|IFM_10_STP, "10baseSTP" }, \ 398 { IFM_ETHER|IFM_10_STP, "STP" }, \ 399 { IFM_ETHER|IFM_10_STP, "10STP" }, \ 400 { IFM_ETHER|IFM_10_FL, "10baseFL" }, \ 401 { IFM_ETHER|IFM_10_FL, "FL" }, \ 402 { IFM_ETHER|IFM_10_FL, "10FL" }, \ 403 { IFM_ETHER|IFM_1000_LX, "1000baseLX" }, \ 404 { IFM_ETHER|IFM_1000_LX, "1000LX" }, \ 405 { IFM_ETHER|IFM_1000_CX, "1000baseCX" }, \ 406 { IFM_ETHER|IFM_1000_CX, "1000CX" }, \ 407 { IFM_ETHER|IFM_1000_T, "1000baseT" }, \ 408 { IFM_ETHER|IFM_1000_T, "1000T" }, \ 409 { IFM_ETHER|IFM_1000_T, "1000baseTX" }, \ 410 { IFM_ETHER|IFM_1000_T, "1000TX" }, \ 411 { IFM_ETHER|IFM_HPNA_1, "HomePNA1" }, \ 412 { IFM_ETHER|IFM_HPNA_1, "HPNA1" }, \ 413 { IFM_ETHER|IFM_10G_LR, "10GbaseLR" }, \ 414 { IFM_ETHER|IFM_10G_LR, "10GLR" }, \ 415 { IFM_ETHER|IFM_10G_LR, "10GBASE-LR" }, \ 416 { IFM_ETHER|IFM_10G_SR, "10GbaseSR" }, \ 417 { IFM_ETHER|IFM_10G_SR, "10GSR" }, \ 418 { IFM_ETHER|IFM_10G_SR, "10GBASE-SR" }, \ 419 { IFM_ETHER|IFM_10G_CX4, "10GbaseCX4" }, \ 420 { IFM_ETHER|IFM_10G_CX4, "10GCX4" }, \ 421 { IFM_ETHER|IFM_10G_CX4, "10GBASE-CX4" }, \ 422 { IFM_ETHER|IFM_2500_SX, "2500baseSX" }, \ 423 { IFM_ETHER|IFM_2500_SX, "2500SX" }, \ 424 { IFM_ETHER|IFM_10G_T, "10GbaseT" }, \ 425 { IFM_ETHER|IFM_10G_T, "10GT" }, \ 426 { IFM_ETHER|IFM_10G_T, "10GBASE-T" }, \ 427 { IFM_ETHER|IFM_10G_SFP_CU, "10GSFP+Cu" }, \ 428 { IFM_ETHER|IFM_10G_SFP_CU, "10GCu" }, \ 429 \ 430 { IFM_FDDI|IFM_FDDI_SMF, "Single-mode" }, \ 431 { IFM_FDDI|IFM_FDDI_SMF, "SMF" }, \ 432 { IFM_FDDI|IFM_FDDI_MMF, "Multi-mode" }, \ 433 { IFM_FDDI|IFM_FDDI_MMF, "MMF" }, \ 434 { IFM_FDDI|IFM_FDDI_UTP, "UTP" }, \ 435 { IFM_FDDI|IFM_FDDI_UTP, "CDDI" }, \ 436 \ 437 { IFM_IEEE80211|IFM_IEEE80211_FH1, "FH1" }, \ 438 { IFM_IEEE80211|IFM_IEEE80211_FH2, "FH2" }, \ 439 { IFM_IEEE80211|IFM_IEEE80211_DS2, "DS2" }, \ 440 { IFM_IEEE80211|IFM_IEEE80211_DS5, "DS5" }, \ 441 { IFM_IEEE80211|IFM_IEEE80211_DS11, "DS11" }, \ 442 { IFM_IEEE80211|IFM_IEEE80211_DS1, "DS1" }, \ 443 { IFM_IEEE80211|IFM_IEEE80211_DS22, "DS22" }, \ 444 { IFM_IEEE80211|IFM_IEEE80211_OFDM6, "OFDM6" }, \ 445 { IFM_IEEE80211|IFM_IEEE80211_OFDM9, "OFDM9" }, \ 446 { IFM_IEEE80211|IFM_IEEE80211_OFDM12, "OFDM12" }, \ 447 { IFM_IEEE80211|IFM_IEEE80211_OFDM18, "OFDM18" }, \ 448 { IFM_IEEE80211|IFM_IEEE80211_OFDM24, "OFDM24" }, \ 449 { IFM_IEEE80211|IFM_IEEE80211_OFDM36, "OFDM36" }, \ 450 { IFM_IEEE80211|IFM_IEEE80211_OFDM48, "OFDM48" }, \ 451 { IFM_IEEE80211|IFM_IEEE80211_OFDM54, "OFDM54" }, \ 452 { IFM_IEEE80211|IFM_IEEE80211_OFDM72, "OFDM72" }, \ 453 \ 454 { IFM_TDM|IFM_TDM_T1, "t1" }, \ 455 { IFM_TDM|IFM_TDM_T1_AMI, "t1-ami" }, \ 456 { IFM_TDM|IFM_TDM_E1, "e1" }, \ 457 { IFM_TDM|IFM_TDM_E1_G704, "e1-g.704" }, \ 458 { IFM_TDM|IFM_TDM_E1_AMI, "e1-ami" }, \ 459 { IFM_TDM|IFM_TDM_E1_AMI_G704, "e1-ami-g.704" }, \ 460 { IFM_TDM|IFM_TDM_T3, "t3" }, \ 461 { IFM_TDM|IFM_TDM_T3_M13, "t3-m13" }, \ 462 { IFM_TDM|IFM_TDM_E3, "e3" }, \ 463 { IFM_TDM|IFM_TDM_E3_G751, "e3-g.751" }, \ 464 { IFM_TDM|IFM_TDM_E3_G832, "e3-g.832" }, \ 465 { IFM_TDM|IFM_TDM_E1_G704_CRC4, "e1-g.704-crc4" }, \ 466 \ 467 { 0, NULL }, \ 468 } 469 470 #define IFM_MODE_DESCRIPTIONS { \ 471 { IFM_AUTO, "autoselect" }, \ 472 { IFM_AUTO, "auto" }, \ 473 { IFM_IEEE80211|IFM_IEEE80211_11A, "11a" }, \ 474 { IFM_IEEE80211|IFM_IEEE80211_11B, "11b" }, \ 475 { IFM_IEEE80211|IFM_IEEE80211_11G, "11g" }, \ 476 { IFM_IEEE80211|IFM_IEEE80211_FH, "fh" }, \ 477 { IFM_TDM|IFM_TDM_MASTER, "master" }, \ 478 { 0, NULL }, \ 479 } 480 481 #define IFM_OPTION_DESCRIPTIONS { \ 482 { IFM_FDX, "full-duplex" }, \ 483 { IFM_FDX, "fdx" }, \ 484 { IFM_HDX, "half-duplex" }, \ 485 { IFM_HDX, "hdx" }, \ 486 { IFM_FLAG0, "flag0" }, \ 487 { IFM_FLAG1, "flag1" }, \ 488 { IFM_FLAG2, "flag2" }, \ 489 { IFM_LOOP, "loopback" }, \ 490 { IFM_LOOP, "hw-loopback"}, \ 491 { IFM_LOOP, "loop" }, \ 492 \ 493 { IFM_ETHER|IFM_ETH_MASTER, "master" }, \ 494 { IFM_ETHER|IFM_ETH_RXPAUSE, "rxpause" }, \ 495 { IFM_ETHER|IFM_ETH_TXPAUSE, "txpause" }, \ 496 \ 497 { IFM_FDDI|IFM_FDDI_DA, "dual-attach" }, \ 498 { IFM_FDDI|IFM_FDDI_DA, "das" }, \ 499 \ 500 { IFM_IEEE80211|IFM_IEEE80211_ADHOC, "adhoc" }, \ 501 { IFM_IEEE80211|IFM_IEEE80211_HOSTAP, "hostap" }, \ 502 { IFM_IEEE80211|IFM_IEEE80211_IBSS, "ibss" }, \ 503 { IFM_IEEE80211|IFM_IEEE80211_IBSSMASTER, "ibss-master" }, \ 504 { IFM_IEEE80211|IFM_IEEE80211_MONITOR, "monitor" }, \ 505 { IFM_IEEE80211|IFM_IEEE80211_TURBO, "turbo" }, \ 506 \ 507 { IFM_TDM|IFM_TDM_HDLC_CRC16, "hdlc-crc16" }, \ 508 { IFM_TDM|IFM_TDM_PPP, "ppp" }, \ 509 { IFM_TDM|IFM_TDM_FR_ANSI, "framerelay-ansi" }, \ 510 { IFM_TDM|IFM_TDM_FR_CISCO, "framerelay-cisco" }, \ 511 { IFM_TDM|IFM_TDM_FR_ANSI, "framerelay-itu" }, \ 512 \ 513 { 0, NULL }, \ 514 } 515 516 /* 517 * Baudrate descriptions for the various media types. 518 */ 519 struct ifmedia_baudrate { 520 int ifmb_word; /* media word */ 521 u_int64_t ifmb_baudrate; /* corresponding baudrate */ 522 }; 523 524 #define IFM_BAUDRATE_DESCRIPTIONS { \ 525 { IFM_ETHER|IFM_10_T, IF_Mbps(10) }, \ 526 { IFM_ETHER|IFM_10_2, IF_Mbps(10) }, \ 527 { IFM_ETHER|IFM_10_5, IF_Mbps(10) }, \ 528 { IFM_ETHER|IFM_100_TX, IF_Mbps(100) }, \ 529 { IFM_ETHER|IFM_100_FX, IF_Mbps(100) }, \ 530 { IFM_ETHER|IFM_100_T4, IF_Mbps(100) }, \ 531 { IFM_ETHER|IFM_100_VG, IF_Mbps(100) }, \ 532 { IFM_ETHER|IFM_100_T2, IF_Mbps(100) }, \ 533 { IFM_ETHER|IFM_1000_SX, IF_Mbps(1000) }, \ 534 { IFM_ETHER|IFM_10_STP, IF_Mbps(10) }, \ 535 { IFM_ETHER|IFM_10_FL, IF_Mbps(10) }, \ 536 { IFM_ETHER|IFM_1000_LX, IF_Mbps(1000) }, \ 537 { IFM_ETHER|IFM_1000_CX, IF_Mbps(1000) }, \ 538 { IFM_ETHER|IFM_1000_T, IF_Mbps(1000) }, \ 539 { IFM_ETHER|IFM_HPNA_1, IF_Mbps(1) }, \ 540 { IFM_ETHER|IFM_10G_LR, IF_Gbps(10) }, \ 541 { IFM_ETHER|IFM_10G_SR, IF_Gbps(10) }, \ 542 { IFM_ETHER|IFM_10G_CX4, IF_Gbps(10) }, \ 543 { IFM_ETHER|IFM_2500_SX, IF_Mbps(2500) }, \ 544 { IFM_ETHER|IFM_10G_T, IF_Gbps(10) }, \ 545 { IFM_ETHER|IFM_10G_SFP_CU, IF_Gbps(10) }, \ 546 \ 547 { IFM_FDDI|IFM_FDDI_SMF, IF_Mbps(100) }, \ 548 { IFM_FDDI|IFM_FDDI_MMF, IF_Mbps(100) }, \ 549 { IFM_FDDI|IFM_FDDI_UTP, IF_Mbps(100) }, \ 550 \ 551 { IFM_IEEE80211|IFM_IEEE80211_FH1, IF_Mbps(1) }, \ 552 { IFM_IEEE80211|IFM_IEEE80211_FH2, IF_Mbps(2) }, \ 553 { IFM_IEEE80211|IFM_IEEE80211_DS1, IF_Mbps(1) }, \ 554 { IFM_IEEE80211|IFM_IEEE80211_DS2, IF_Mbps(2) }, \ 555 { IFM_IEEE80211|IFM_IEEE80211_DS5, IF_Mbps(5) }, \ 556 { IFM_IEEE80211|IFM_IEEE80211_DS11, IF_Mbps(11) }, \ 557 { IFM_IEEE80211|IFM_IEEE80211_DS22, IF_Mbps(22) }, \ 558 { IFM_IEEE80211|IFM_IEEE80211_OFDM6, IF_Mbps(6) }, \ 559 { IFM_IEEE80211|IFM_IEEE80211_OFDM9, IF_Mbps(9) }, \ 560 { IFM_IEEE80211|IFM_IEEE80211_OFDM12, IF_Mbps(12) }, \ 561 { IFM_IEEE80211|IFM_IEEE80211_OFDM18, IF_Mbps(18) }, \ 562 { IFM_IEEE80211|IFM_IEEE80211_OFDM24, IF_Mbps(24) }, \ 563 { IFM_IEEE80211|IFM_IEEE80211_OFDM36, IF_Mbps(36) }, \ 564 { IFM_IEEE80211|IFM_IEEE80211_OFDM48, IF_Mbps(48) }, \ 565 { IFM_IEEE80211|IFM_IEEE80211_OFDM54, IF_Mbps(54) }, \ 566 { IFM_IEEE80211|IFM_IEEE80211_OFDM72, IF_Mbps(72) }, \ 567 \ 568 { IFM_TDM|IFM_TDM_T1, IF_Kbps(1536) }, \ 569 { IFM_TDM|IFM_TDM_T1_AMI, IF_Kbps(1536) }, \ 570 { IFM_TDM|IFM_TDM_E1, IF_Kbps(2048) }, \ 571 { IFM_TDM|IFM_TDM_E1_G704, IF_Kbps(2048) }, \ 572 { IFM_TDM|IFM_TDM_E1_AMI, IF_Kbps(2048) }, \ 573 { IFM_TDM|IFM_TDM_E1_AMI_G704, IF_Kbps(2048) }, \ 574 { IFM_TDM|IFM_TDM_T3, IF_Kbps(44736) }, \ 575 { IFM_TDM|IFM_TDM_T3_M13, IF_Kbps(44736) }, \ 576 { IFM_TDM|IFM_TDM_E3, IF_Kbps(34368) }, \ 577 { IFM_TDM|IFM_TDM_E3_G751, IF_Kbps(34368) }, \ 578 { IFM_TDM|IFM_TDM_E3_G832, IF_Kbps(34368) }, \ 579 { IFM_TDM|IFM_TDM_E1_G704_CRC4, IF_Kbps(2048) }, \ 580 \ 581 { 0, 0 }, \ 582 } 583 584 /* 585 * Status bit descriptions for the various media types. 586 */ 587 struct ifmedia_status_description { 588 int ifms_type; 589 int ifms_valid; 590 int ifms_bit; 591 const char *ifms_string[2]; 592 }; 593 594 #define IFM_STATUS_DESC(ifms, bit) \ 595 (ifms)->ifms_string[((ifms)->ifms_bit & (bit)) ? 1 : 0] 596 597 #define IFM_STATUS_DESCRIPTIONS { \ 598 { IFM_ETHER, IFM_AVALID, IFM_ACTIVE, \ 599 { "no carrier", "active" } }, \ 600 { IFM_FDDI, IFM_AVALID, IFM_ACTIVE, \ 601 { "no ring", "inserted" } }, \ 602 { IFM_IEEE80211, IFM_AVALID, IFM_ACTIVE, \ 603 { "no network", "active" } }, \ 604 { IFM_TDM, IFM_AVALID, IFM_ACTIVE, \ 605 { "no carrier", "active" } }, \ 606 { IFM_CARP, IFM_AVALID, IFM_ACTIVE, \ 607 { "backup", "master" } }, \ 608 { 0, 0, 0, \ 609 { NULL, NULL } } \ 610 } 611 #endif /* _NET_IF_MEDIA_H_ */ 612