Daiki Kato / mbed-os-lychee

Dependents:   mbed-os-example-blinky-gr-lychee GR-Boads_Camera_sample GR-Boards_Audio_Recoder GR-Boads_Camera_DisplayApp ... more

Committer:
dkato
Date:
Fri Feb 02 05:42:23 2018 +0000
Revision:
0:f782d9c66c49
mbed-os for GR-LYCHEE

Who changed what in which revision?

UserRevisionLine numberNew contents of line
dkato 0:f782d9c66c49 1 /**
dkato 0:f782d9c66c49 2 * @file
dkato 0:f782d9c66c49 3 * Statistics API (to be used from TCPIP thread)
dkato 0:f782d9c66c49 4 */
dkato 0:f782d9c66c49 5
dkato 0:f782d9c66c49 6 /*
dkato 0:f782d9c66c49 7 * Copyright (c) 2001-2004 Swedish Institute of Computer Science.
dkato 0:f782d9c66c49 8 * All rights reserved.
dkato 0:f782d9c66c49 9 *
dkato 0:f782d9c66c49 10 * Redistribution and use in source and binary forms, with or without modification,
dkato 0:f782d9c66c49 11 * are permitted provided that the following conditions are met:
dkato 0:f782d9c66c49 12 *
dkato 0:f782d9c66c49 13 * 1. Redistributions of source code must retain the above copyright notice,
dkato 0:f782d9c66c49 14 * this list of conditions and the following disclaimer.
dkato 0:f782d9c66c49 15 * 2. Redistributions in binary form must reproduce the above copyright notice,
dkato 0:f782d9c66c49 16 * this list of conditions and the following disclaimer in the documentation
dkato 0:f782d9c66c49 17 * and/or other materials provided with the distribution.
dkato 0:f782d9c66c49 18 * 3. The name of the author may not be used to endorse or promote products
dkato 0:f782d9c66c49 19 * derived from this software without specific prior written permission.
dkato 0:f782d9c66c49 20 *
dkato 0:f782d9c66c49 21 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
dkato 0:f782d9c66c49 22 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
dkato 0:f782d9c66c49 23 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT
dkato 0:f782d9c66c49 24 * SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
dkato 0:f782d9c66c49 25 * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT
dkato 0:f782d9c66c49 26 * OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
dkato 0:f782d9c66c49 27 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
dkato 0:f782d9c66c49 28 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
dkato 0:f782d9c66c49 29 * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY
dkato 0:f782d9c66c49 30 * OF SUCH DAMAGE.
dkato 0:f782d9c66c49 31 *
dkato 0:f782d9c66c49 32 * This file is part of the lwIP TCP/IP stack.
dkato 0:f782d9c66c49 33 *
dkato 0:f782d9c66c49 34 * Author: Adam Dunkels <adam@sics.se>
dkato 0:f782d9c66c49 35 *
dkato 0:f782d9c66c49 36 */
dkato 0:f782d9c66c49 37 #ifndef LWIP_HDR_STATS_H
dkato 0:f782d9c66c49 38 #define LWIP_HDR_STATS_H
dkato 0:f782d9c66c49 39
dkato 0:f782d9c66c49 40 #include "lwip/opt.h"
dkato 0:f782d9c66c49 41
dkato 0:f782d9c66c49 42 #include "lwip/mem.h"
dkato 0:f782d9c66c49 43 #include "lwip/memp.h"
dkato 0:f782d9c66c49 44
dkato 0:f782d9c66c49 45 #ifdef __cplusplus
dkato 0:f782d9c66c49 46 extern "C" {
dkato 0:f782d9c66c49 47 #endif
dkato 0:f782d9c66c49 48
dkato 0:f782d9c66c49 49 #if LWIP_STATS
dkato 0:f782d9c66c49 50
dkato 0:f782d9c66c49 51 #ifndef LWIP_STATS_LARGE
dkato 0:f782d9c66c49 52 #define LWIP_STATS_LARGE 0
dkato 0:f782d9c66c49 53 #endif
dkato 0:f782d9c66c49 54
dkato 0:f782d9c66c49 55 #if LWIP_STATS_LARGE
dkato 0:f782d9c66c49 56 #define STAT_COUNTER u32_t
dkato 0:f782d9c66c49 57 #define STAT_COUNTER_F U32_F
dkato 0:f782d9c66c49 58 #else
dkato 0:f782d9c66c49 59 #define STAT_COUNTER u16_t
dkato 0:f782d9c66c49 60 #define STAT_COUNTER_F U16_F
dkato 0:f782d9c66c49 61 #endif
dkato 0:f782d9c66c49 62
dkato 0:f782d9c66c49 63 /** Protocol related stats */
dkato 0:f782d9c66c49 64 struct stats_proto {
dkato 0:f782d9c66c49 65 STAT_COUNTER xmit; /* Transmitted packets. */
dkato 0:f782d9c66c49 66 STAT_COUNTER recv; /* Received packets. */
dkato 0:f782d9c66c49 67 STAT_COUNTER fw; /* Forwarded packets. */
dkato 0:f782d9c66c49 68 STAT_COUNTER drop; /* Dropped packets. */
dkato 0:f782d9c66c49 69 STAT_COUNTER chkerr; /* Checksum error. */
dkato 0:f782d9c66c49 70 STAT_COUNTER lenerr; /* Invalid length error. */
dkato 0:f782d9c66c49 71 STAT_COUNTER memerr; /* Out of memory error. */
dkato 0:f782d9c66c49 72 STAT_COUNTER rterr; /* Routing error. */
dkato 0:f782d9c66c49 73 STAT_COUNTER proterr; /* Protocol error. */
dkato 0:f782d9c66c49 74 STAT_COUNTER opterr; /* Error in options. */
dkato 0:f782d9c66c49 75 STAT_COUNTER err; /* Misc error. */
dkato 0:f782d9c66c49 76 STAT_COUNTER cachehit;
dkato 0:f782d9c66c49 77 };
dkato 0:f782d9c66c49 78
dkato 0:f782d9c66c49 79 /** IGMP stats */
dkato 0:f782d9c66c49 80 struct stats_igmp {
dkato 0:f782d9c66c49 81 STAT_COUNTER xmit; /* Transmitted packets. */
dkato 0:f782d9c66c49 82 STAT_COUNTER recv; /* Received packets. */
dkato 0:f782d9c66c49 83 STAT_COUNTER drop; /* Dropped packets. */
dkato 0:f782d9c66c49 84 STAT_COUNTER chkerr; /* Checksum error. */
dkato 0:f782d9c66c49 85 STAT_COUNTER lenerr; /* Invalid length error. */
dkato 0:f782d9c66c49 86 STAT_COUNTER memerr; /* Out of memory error. */
dkato 0:f782d9c66c49 87 STAT_COUNTER proterr; /* Protocol error. */
dkato 0:f782d9c66c49 88 STAT_COUNTER rx_v1; /* Received v1 frames. */
dkato 0:f782d9c66c49 89 STAT_COUNTER rx_group; /* Received group-specific queries. */
dkato 0:f782d9c66c49 90 STAT_COUNTER rx_general; /* Received general queries. */
dkato 0:f782d9c66c49 91 STAT_COUNTER rx_report; /* Received reports. */
dkato 0:f782d9c66c49 92 STAT_COUNTER tx_join; /* Sent joins. */
dkato 0:f782d9c66c49 93 STAT_COUNTER tx_leave; /* Sent leaves. */
dkato 0:f782d9c66c49 94 STAT_COUNTER tx_report; /* Sent reports. */
dkato 0:f782d9c66c49 95 };
dkato 0:f782d9c66c49 96
dkato 0:f782d9c66c49 97 /** Memory stats */
dkato 0:f782d9c66c49 98 struct stats_mem {
dkato 0:f782d9c66c49 99 #if defined(LWIP_DEBUG) || LWIP_STATS_DISPLAY
dkato 0:f782d9c66c49 100 const char *name;
dkato 0:f782d9c66c49 101 #endif /* defined(LWIP_DEBUG) || LWIP_STATS_DISPLAY */
dkato 0:f782d9c66c49 102 STAT_COUNTER err;
dkato 0:f782d9c66c49 103 mem_size_t avail;
dkato 0:f782d9c66c49 104 mem_size_t used;
dkato 0:f782d9c66c49 105 mem_size_t max;
dkato 0:f782d9c66c49 106 STAT_COUNTER illegal;
dkato 0:f782d9c66c49 107 };
dkato 0:f782d9c66c49 108
dkato 0:f782d9c66c49 109 /** System element stats */
dkato 0:f782d9c66c49 110 struct stats_syselem {
dkato 0:f782d9c66c49 111 STAT_COUNTER used;
dkato 0:f782d9c66c49 112 STAT_COUNTER max;
dkato 0:f782d9c66c49 113 STAT_COUNTER err;
dkato 0:f782d9c66c49 114 };
dkato 0:f782d9c66c49 115
dkato 0:f782d9c66c49 116 /** System stats */
dkato 0:f782d9c66c49 117 struct stats_sys {
dkato 0:f782d9c66c49 118 struct stats_syselem sem;
dkato 0:f782d9c66c49 119 struct stats_syselem mutex;
dkato 0:f782d9c66c49 120 struct stats_syselem mbox;
dkato 0:f782d9c66c49 121 };
dkato 0:f782d9c66c49 122
dkato 0:f782d9c66c49 123 /** SNMP MIB2 stats */
dkato 0:f782d9c66c49 124 struct stats_mib2 {
dkato 0:f782d9c66c49 125 /* IP */
dkato 0:f782d9c66c49 126 u32_t ipinhdrerrors;
dkato 0:f782d9c66c49 127 u32_t ipinaddrerrors;
dkato 0:f782d9c66c49 128 u32_t ipinunknownprotos;
dkato 0:f782d9c66c49 129 u32_t ipindiscards;
dkato 0:f782d9c66c49 130 u32_t ipindelivers;
dkato 0:f782d9c66c49 131 u32_t ipoutrequests;
dkato 0:f782d9c66c49 132 u32_t ipoutdiscards;
dkato 0:f782d9c66c49 133 u32_t ipoutnoroutes;
dkato 0:f782d9c66c49 134 u32_t ipreasmoks;
dkato 0:f782d9c66c49 135 u32_t ipreasmfails;
dkato 0:f782d9c66c49 136 u32_t ipfragoks;
dkato 0:f782d9c66c49 137 u32_t ipfragfails;
dkato 0:f782d9c66c49 138 u32_t ipfragcreates;
dkato 0:f782d9c66c49 139 u32_t ipreasmreqds;
dkato 0:f782d9c66c49 140 u32_t ipforwdatagrams;
dkato 0:f782d9c66c49 141 u32_t ipinreceives;
dkato 0:f782d9c66c49 142
dkato 0:f782d9c66c49 143 /* TCP */
dkato 0:f782d9c66c49 144 u32_t tcpactiveopens;
dkato 0:f782d9c66c49 145 u32_t tcppassiveopens;
dkato 0:f782d9c66c49 146 u32_t tcpattemptfails;
dkato 0:f782d9c66c49 147 u32_t tcpestabresets;
dkato 0:f782d9c66c49 148 u32_t tcpoutsegs;
dkato 0:f782d9c66c49 149 u32_t tcpretranssegs;
dkato 0:f782d9c66c49 150 u32_t tcpinsegs;
dkato 0:f782d9c66c49 151 u32_t tcpinerrs;
dkato 0:f782d9c66c49 152 u32_t tcpoutrsts;
dkato 0:f782d9c66c49 153
dkato 0:f782d9c66c49 154 /* UDP */
dkato 0:f782d9c66c49 155 u32_t udpindatagrams;
dkato 0:f782d9c66c49 156 u32_t udpnoports;
dkato 0:f782d9c66c49 157 u32_t udpinerrors;
dkato 0:f782d9c66c49 158 u32_t udpoutdatagrams;
dkato 0:f782d9c66c49 159
dkato 0:f782d9c66c49 160 /* ICMP */
dkato 0:f782d9c66c49 161 u32_t icmpinmsgs;
dkato 0:f782d9c66c49 162 u32_t icmpinerrors;
dkato 0:f782d9c66c49 163 u32_t icmpindestunreachs;
dkato 0:f782d9c66c49 164 u32_t icmpintimeexcds;
dkato 0:f782d9c66c49 165 u32_t icmpinparmprobs;
dkato 0:f782d9c66c49 166 u32_t icmpinsrcquenchs;
dkato 0:f782d9c66c49 167 u32_t icmpinredirects;
dkato 0:f782d9c66c49 168 u32_t icmpinechos;
dkato 0:f782d9c66c49 169 u32_t icmpinechoreps;
dkato 0:f782d9c66c49 170 u32_t icmpintimestamps;
dkato 0:f782d9c66c49 171 u32_t icmpintimestampreps;
dkato 0:f782d9c66c49 172 u32_t icmpinaddrmasks;
dkato 0:f782d9c66c49 173 u32_t icmpinaddrmaskreps;
dkato 0:f782d9c66c49 174 u32_t icmpoutmsgs;
dkato 0:f782d9c66c49 175 u32_t icmpouterrors;
dkato 0:f782d9c66c49 176 u32_t icmpoutdestunreachs;
dkato 0:f782d9c66c49 177 u32_t icmpouttimeexcds;
dkato 0:f782d9c66c49 178 u32_t icmpoutechos; /* can be incremented by user application ('ping') */
dkato 0:f782d9c66c49 179 u32_t icmpoutechoreps;
dkato 0:f782d9c66c49 180 };
dkato 0:f782d9c66c49 181
dkato 0:f782d9c66c49 182 /**
dkato 0:f782d9c66c49 183 * @ingroup netif_mib2
dkato 0:f782d9c66c49 184 * SNMP MIB2 interface stats
dkato 0:f782d9c66c49 185 */
dkato 0:f782d9c66c49 186 struct stats_mib2_netif_ctrs {
dkato 0:f782d9c66c49 187 /** The total number of octets received on the interface, including framing characters */
dkato 0:f782d9c66c49 188 u32_t ifinoctets;
dkato 0:f782d9c66c49 189 /** The number of packets, delivered by this sub-layer to a higher (sub-)layer, which were
dkato 0:f782d9c66c49 190 * not addressed to a multicast or broadcast address at this sub-layer */
dkato 0:f782d9c66c49 191 u32_t ifinucastpkts;
dkato 0:f782d9c66c49 192 /** The number of packets, delivered by this sub-layer to a higher (sub-)layer, which were
dkato 0:f782d9c66c49 193 * addressed to a multicast or broadcast address at this sub-layer */
dkato 0:f782d9c66c49 194 u32_t ifinnucastpkts;
dkato 0:f782d9c66c49 195 /** The number of inbound packets which were chosen to be discarded even though no errors had
dkato 0:f782d9c66c49 196 * been detected to prevent their being deliverable to a higher-layer protocol. One possible
dkato 0:f782d9c66c49 197 * reason for discarding such a packet could be to free up buffer space */
dkato 0:f782d9c66c49 198 u32_t ifindiscards;
dkato 0:f782d9c66c49 199 /** For packet-oriented interfaces, the number of inbound packets that contained errors
dkato 0:f782d9c66c49 200 * preventing them from being deliverable to a higher-layer protocol. For character-
dkato 0:f782d9c66c49 201 * oriented or fixed-length interfaces, the number of inbound transmission units that
dkato 0:f782d9c66c49 202 * contained errors preventing them from being deliverable to a higher-layer protocol. */
dkato 0:f782d9c66c49 203 u32_t ifinerrors;
dkato 0:f782d9c66c49 204 /** For packet-oriented interfaces, the number of packets received via the interface which
dkato 0:f782d9c66c49 205 * were discarded because of an unknown or unsupported protocol. For character-oriented
dkato 0:f782d9c66c49 206 * or fixed-length interfaces that support protocol multiplexing the number of transmission
dkato 0:f782d9c66c49 207 * units received via the interface which were discarded because of an unknown or unsupported
dkato 0:f782d9c66c49 208 * protocol. For any interface that does not support protocol multiplexing, this counter will
dkato 0:f782d9c66c49 209 * always be 0 */
dkato 0:f782d9c66c49 210 u32_t ifinunknownprotos;
dkato 0:f782d9c66c49 211 /** The total number of octets transmitted out of the interface, including framing characters. */
dkato 0:f782d9c66c49 212 u32_t ifoutoctets;
dkato 0:f782d9c66c49 213 /** The total number of packets that higher-level protocols requested be transmitted, and
dkato 0:f782d9c66c49 214 * which were not addressed to a multicast or broadcast address at this sub-layer, including
dkato 0:f782d9c66c49 215 * those that were discarded or not sent. */
dkato 0:f782d9c66c49 216 u32_t ifoutucastpkts;
dkato 0:f782d9c66c49 217 /** The total number of packets that higher-level protocols requested be transmitted, and which
dkato 0:f782d9c66c49 218 * were addressed to a multicast or broadcast address at this sub-layer, including
dkato 0:f782d9c66c49 219 * those that were discarded or not sent. */
dkato 0:f782d9c66c49 220 u32_t ifoutnucastpkts;
dkato 0:f782d9c66c49 221 /** The number of outbound packets which were chosen to be discarded even though no errors had
dkato 0:f782d9c66c49 222 * been detected to prevent their being transmitted. One possible reason for discarding
dkato 0:f782d9c66c49 223 * such a packet could be to free up buffer space. */
dkato 0:f782d9c66c49 224 u32_t ifoutdiscards;
dkato 0:f782d9c66c49 225 /** For packet-oriented interfaces, the number of outbound packets that could not be transmitted
dkato 0:f782d9c66c49 226 * because of errors. For character-oriented or fixed-length interfaces, the number of outbound
dkato 0:f782d9c66c49 227 * transmission units that could not be transmitted because of errors. */
dkato 0:f782d9c66c49 228 u32_t ifouterrors;
dkato 0:f782d9c66c49 229 };
dkato 0:f782d9c66c49 230
dkato 0:f782d9c66c49 231 /** lwIP stats container */
dkato 0:f782d9c66c49 232 struct stats_ {
dkato 0:f782d9c66c49 233 #if LINK_STATS
dkato 0:f782d9c66c49 234 /** Link level */
dkato 0:f782d9c66c49 235 struct stats_proto link;
dkato 0:f782d9c66c49 236 #endif
dkato 0:f782d9c66c49 237 #if ETHARP_STATS
dkato 0:f782d9c66c49 238 /** ARP */
dkato 0:f782d9c66c49 239 struct stats_proto etharp;
dkato 0:f782d9c66c49 240 #endif
dkato 0:f782d9c66c49 241 #if IPFRAG_STATS
dkato 0:f782d9c66c49 242 /** Fragmentation */
dkato 0:f782d9c66c49 243 struct stats_proto ip_frag;
dkato 0:f782d9c66c49 244 #endif
dkato 0:f782d9c66c49 245 #if IP_STATS
dkato 0:f782d9c66c49 246 /** IP */
dkato 0:f782d9c66c49 247 struct stats_proto ip;
dkato 0:f782d9c66c49 248 #endif
dkato 0:f782d9c66c49 249 #if ICMP_STATS
dkato 0:f782d9c66c49 250 /** ICMP */
dkato 0:f782d9c66c49 251 struct stats_proto icmp;
dkato 0:f782d9c66c49 252 #endif
dkato 0:f782d9c66c49 253 #if IGMP_STATS
dkato 0:f782d9c66c49 254 /** IGMP */
dkato 0:f782d9c66c49 255 struct stats_igmp igmp;
dkato 0:f782d9c66c49 256 #endif
dkato 0:f782d9c66c49 257 #if UDP_STATS
dkato 0:f782d9c66c49 258 /** UDP */
dkato 0:f782d9c66c49 259 struct stats_proto udp;
dkato 0:f782d9c66c49 260 #endif
dkato 0:f782d9c66c49 261 #if TCP_STATS
dkato 0:f782d9c66c49 262 /** TCP */
dkato 0:f782d9c66c49 263 struct stats_proto tcp;
dkato 0:f782d9c66c49 264 #endif
dkato 0:f782d9c66c49 265 #if MEM_STATS
dkato 0:f782d9c66c49 266 /** Heap */
dkato 0:f782d9c66c49 267 struct stats_mem mem;
dkato 0:f782d9c66c49 268 #endif
dkato 0:f782d9c66c49 269 #if MEMP_STATS
dkato 0:f782d9c66c49 270 /** Internal memory pools */
dkato 0:f782d9c66c49 271 struct stats_mem *memp[MEMP_MAX];
dkato 0:f782d9c66c49 272 #endif
dkato 0:f782d9c66c49 273 #if SYS_STATS
dkato 0:f782d9c66c49 274 /** System */
dkato 0:f782d9c66c49 275 struct stats_sys sys;
dkato 0:f782d9c66c49 276 #endif
dkato 0:f782d9c66c49 277 #if IP6_STATS
dkato 0:f782d9c66c49 278 /** IPv6 */
dkato 0:f782d9c66c49 279 struct stats_proto ip6;
dkato 0:f782d9c66c49 280 #endif
dkato 0:f782d9c66c49 281 #if ICMP6_STATS
dkato 0:f782d9c66c49 282 /** ICMP6 */
dkato 0:f782d9c66c49 283 struct stats_proto icmp6;
dkato 0:f782d9c66c49 284 #endif
dkato 0:f782d9c66c49 285 #if IP6_FRAG_STATS
dkato 0:f782d9c66c49 286 /** IPv6 fragmentation */
dkato 0:f782d9c66c49 287 struct stats_proto ip6_frag;
dkato 0:f782d9c66c49 288 #endif
dkato 0:f782d9c66c49 289 #if MLD6_STATS
dkato 0:f782d9c66c49 290 /** Multicast listener discovery */
dkato 0:f782d9c66c49 291 struct stats_igmp mld6;
dkato 0:f782d9c66c49 292 #endif
dkato 0:f782d9c66c49 293 #if ND6_STATS
dkato 0:f782d9c66c49 294 /** Neighbor discovery */
dkato 0:f782d9c66c49 295 struct stats_proto nd6;
dkato 0:f782d9c66c49 296 #endif
dkato 0:f782d9c66c49 297 #if MIB2_STATS
dkato 0:f782d9c66c49 298 /** SNMP MIB2 */
dkato 0:f782d9c66c49 299 struct stats_mib2 mib2;
dkato 0:f782d9c66c49 300 #endif
dkato 0:f782d9c66c49 301 };
dkato 0:f782d9c66c49 302
dkato 0:f782d9c66c49 303 /** Global variable containing lwIP internal statistics. Add this to your debugger's watchlist. */
dkato 0:f782d9c66c49 304 extern struct stats_ lwip_stats;
dkato 0:f782d9c66c49 305
dkato 0:f782d9c66c49 306 /** Init statistics */
dkato 0:f782d9c66c49 307 void stats_init(void);
dkato 0:f782d9c66c49 308
dkato 0:f782d9c66c49 309 #define STATS_INC(x) ++lwip_stats.x
dkato 0:f782d9c66c49 310 #define STATS_DEC(x) --lwip_stats.x
dkato 0:f782d9c66c49 311 #define STATS_INC_USED(x, y) do { lwip_stats.x.used += y; \
dkato 0:f782d9c66c49 312 if (lwip_stats.x.max < lwip_stats.x.used) { \
dkato 0:f782d9c66c49 313 lwip_stats.x.max = lwip_stats.x.used; \
dkato 0:f782d9c66c49 314 } \
dkato 0:f782d9c66c49 315 } while(0)
dkato 0:f782d9c66c49 316 #define STATS_GET(x) lwip_stats.x
dkato 0:f782d9c66c49 317 #else /* LWIP_STATS */
dkato 0:f782d9c66c49 318 #define stats_init()
dkato 0:f782d9c66c49 319 #define STATS_INC(x)
dkato 0:f782d9c66c49 320 #define STATS_DEC(x)
dkato 0:f782d9c66c49 321 #define STATS_INC_USED(x)
dkato 0:f782d9c66c49 322 #endif /* LWIP_STATS */
dkato 0:f782d9c66c49 323
dkato 0:f782d9c66c49 324 #if TCP_STATS
dkato 0:f782d9c66c49 325 #define TCP_STATS_INC(x) STATS_INC(x)
dkato 0:f782d9c66c49 326 #define TCP_STATS_DISPLAY() stats_display_proto(&lwip_stats.tcp, "TCP")
dkato 0:f782d9c66c49 327 #else
dkato 0:f782d9c66c49 328 #define TCP_STATS_INC(x)
dkato 0:f782d9c66c49 329 #define TCP_STATS_DISPLAY()
dkato 0:f782d9c66c49 330 #endif
dkato 0:f782d9c66c49 331
dkato 0:f782d9c66c49 332 #if UDP_STATS
dkato 0:f782d9c66c49 333 #define UDP_STATS_INC(x) STATS_INC(x)
dkato 0:f782d9c66c49 334 #define UDP_STATS_DISPLAY() stats_display_proto(&lwip_stats.udp, "UDP")
dkato 0:f782d9c66c49 335 #else
dkato 0:f782d9c66c49 336 #define UDP_STATS_INC(x)
dkato 0:f782d9c66c49 337 #define UDP_STATS_DISPLAY()
dkato 0:f782d9c66c49 338 #endif
dkato 0:f782d9c66c49 339
dkato 0:f782d9c66c49 340 #if ICMP_STATS
dkato 0:f782d9c66c49 341 #define ICMP_STATS_INC(x) STATS_INC(x)
dkato 0:f782d9c66c49 342 #define ICMP_STATS_DISPLAY() stats_display_proto(&lwip_stats.icmp, "ICMP")
dkato 0:f782d9c66c49 343 #else
dkato 0:f782d9c66c49 344 #define ICMP_STATS_INC(x)
dkato 0:f782d9c66c49 345 #define ICMP_STATS_DISPLAY()
dkato 0:f782d9c66c49 346 #endif
dkato 0:f782d9c66c49 347
dkato 0:f782d9c66c49 348 #if IGMP_STATS
dkato 0:f782d9c66c49 349 #define IGMP_STATS_INC(x) STATS_INC(x)
dkato 0:f782d9c66c49 350 #define IGMP_STATS_DISPLAY() stats_display_igmp(&lwip_stats.igmp, "IGMP")
dkato 0:f782d9c66c49 351 #else
dkato 0:f782d9c66c49 352 #define IGMP_STATS_INC(x)
dkato 0:f782d9c66c49 353 #define IGMP_STATS_DISPLAY()
dkato 0:f782d9c66c49 354 #endif
dkato 0:f782d9c66c49 355
dkato 0:f782d9c66c49 356 #if IP_STATS
dkato 0:f782d9c66c49 357 #define IP_STATS_INC(x) STATS_INC(x)
dkato 0:f782d9c66c49 358 #define IP_STATS_DISPLAY() stats_display_proto(&lwip_stats.ip, "IP")
dkato 0:f782d9c66c49 359 #else
dkato 0:f782d9c66c49 360 #define IP_STATS_INC(x)
dkato 0:f782d9c66c49 361 #define IP_STATS_DISPLAY()
dkato 0:f782d9c66c49 362 #endif
dkato 0:f782d9c66c49 363
dkato 0:f782d9c66c49 364 #if IPFRAG_STATS
dkato 0:f782d9c66c49 365 #define IPFRAG_STATS_INC(x) STATS_INC(x)
dkato 0:f782d9c66c49 366 #define IPFRAG_STATS_DISPLAY() stats_display_proto(&lwip_stats.ip_frag, "IP_FRAG")
dkato 0:f782d9c66c49 367 #else
dkato 0:f782d9c66c49 368 #define IPFRAG_STATS_INC(x)
dkato 0:f782d9c66c49 369 #define IPFRAG_STATS_DISPLAY()
dkato 0:f782d9c66c49 370 #endif
dkato 0:f782d9c66c49 371
dkato 0:f782d9c66c49 372 #if ETHARP_STATS
dkato 0:f782d9c66c49 373 #define ETHARP_STATS_INC(x) STATS_INC(x)
dkato 0:f782d9c66c49 374 #define ETHARP_STATS_DISPLAY() stats_display_proto(&lwip_stats.etharp, "ETHARP")
dkato 0:f782d9c66c49 375 #else
dkato 0:f782d9c66c49 376 #define ETHARP_STATS_INC(x)
dkato 0:f782d9c66c49 377 #define ETHARP_STATS_DISPLAY()
dkato 0:f782d9c66c49 378 #endif
dkato 0:f782d9c66c49 379
dkato 0:f782d9c66c49 380 #if LINK_STATS
dkato 0:f782d9c66c49 381 #define LINK_STATS_INC(x) STATS_INC(x)
dkato 0:f782d9c66c49 382 #define LINK_STATS_DISPLAY() stats_display_proto(&lwip_stats.link, "LINK")
dkato 0:f782d9c66c49 383 #else
dkato 0:f782d9c66c49 384 #define LINK_STATS_INC(x)
dkato 0:f782d9c66c49 385 #define LINK_STATS_DISPLAY()
dkato 0:f782d9c66c49 386 #endif
dkato 0:f782d9c66c49 387
dkato 0:f782d9c66c49 388 #if MEM_STATS
dkato 0:f782d9c66c49 389 #define MEM_STATS_AVAIL(x, y) lwip_stats.mem.x = y
dkato 0:f782d9c66c49 390 #define MEM_STATS_INC(x) STATS_INC(mem.x)
dkato 0:f782d9c66c49 391 #define MEM_STATS_INC_USED(x, y) STATS_INC_USED(mem, y)
dkato 0:f782d9c66c49 392 #define MEM_STATS_DEC_USED(x, y) lwip_stats.mem.x -= y
dkato 0:f782d9c66c49 393 #define MEM_STATS_DISPLAY() stats_display_mem(&lwip_stats.mem, "HEAP")
dkato 0:f782d9c66c49 394 #else
dkato 0:f782d9c66c49 395 #define MEM_STATS_AVAIL(x, y)
dkato 0:f782d9c66c49 396 #define MEM_STATS_INC(x)
dkato 0:f782d9c66c49 397 #define MEM_STATS_INC_USED(x, y)
dkato 0:f782d9c66c49 398 #define MEM_STATS_DEC_USED(x, y)
dkato 0:f782d9c66c49 399 #define MEM_STATS_DISPLAY()
dkato 0:f782d9c66c49 400 #endif
dkato 0:f782d9c66c49 401
dkato 0:f782d9c66c49 402 #if MEMP_STATS
dkato 0:f782d9c66c49 403 #define MEMP_STATS_DEC(x, i) STATS_DEC(memp[i]->x)
dkato 0:f782d9c66c49 404 #define MEMP_STATS_DISPLAY(i) stats_display_memp(lwip_stats.memp[i], i)
dkato 0:f782d9c66c49 405 #define MEMP_STATS_GET(x, i) STATS_GET(memp[i]->x)
dkato 0:f782d9c66c49 406 #else
dkato 0:f782d9c66c49 407 #define MEMP_STATS_DEC(x, i)
dkato 0:f782d9c66c49 408 #define MEMP_STATS_DISPLAY(i)
dkato 0:f782d9c66c49 409 #define MEMP_STATS_GET(x, i) 0
dkato 0:f782d9c66c49 410 #endif
dkato 0:f782d9c66c49 411
dkato 0:f782d9c66c49 412 #if SYS_STATS
dkato 0:f782d9c66c49 413 #define SYS_STATS_INC(x) STATS_INC(sys.x)
dkato 0:f782d9c66c49 414 #define SYS_STATS_DEC(x) STATS_DEC(sys.x)
dkato 0:f782d9c66c49 415 #define SYS_STATS_INC_USED(x) STATS_INC_USED(sys.x, 1)
dkato 0:f782d9c66c49 416 #define SYS_STATS_DISPLAY() stats_display_sys(&lwip_stats.sys)
dkato 0:f782d9c66c49 417 #else
dkato 0:f782d9c66c49 418 #define SYS_STATS_INC(x)
dkato 0:f782d9c66c49 419 #define SYS_STATS_DEC(x)
dkato 0:f782d9c66c49 420 #define SYS_STATS_INC_USED(x)
dkato 0:f782d9c66c49 421 #define SYS_STATS_DISPLAY()
dkato 0:f782d9c66c49 422 #endif
dkato 0:f782d9c66c49 423
dkato 0:f782d9c66c49 424 #if IP6_STATS
dkato 0:f782d9c66c49 425 #define IP6_STATS_INC(x) STATS_INC(x)
dkato 0:f782d9c66c49 426 #define IP6_STATS_DISPLAY() stats_display_proto(&lwip_stats.ip6, "IPv6")
dkato 0:f782d9c66c49 427 #else
dkato 0:f782d9c66c49 428 #define IP6_STATS_INC(x)
dkato 0:f782d9c66c49 429 #define IP6_STATS_DISPLAY()
dkato 0:f782d9c66c49 430 #endif
dkato 0:f782d9c66c49 431
dkato 0:f782d9c66c49 432 #if ICMP6_STATS
dkato 0:f782d9c66c49 433 #define ICMP6_STATS_INC(x) STATS_INC(x)
dkato 0:f782d9c66c49 434 #define ICMP6_STATS_DISPLAY() stats_display_proto(&lwip_stats.icmp6, "ICMPv6")
dkato 0:f782d9c66c49 435 #else
dkato 0:f782d9c66c49 436 #define ICMP6_STATS_INC(x)
dkato 0:f782d9c66c49 437 #define ICMP6_STATS_DISPLAY()
dkato 0:f782d9c66c49 438 #endif
dkato 0:f782d9c66c49 439
dkato 0:f782d9c66c49 440 #if IP6_FRAG_STATS
dkato 0:f782d9c66c49 441 #define IP6_FRAG_STATS_INC(x) STATS_INC(x)
dkato 0:f782d9c66c49 442 #define IP6_FRAG_STATS_DISPLAY() stats_display_proto(&lwip_stats.ip6_frag, "IPv6 FRAG")
dkato 0:f782d9c66c49 443 #else
dkato 0:f782d9c66c49 444 #define IP6_FRAG_STATS_INC(x)
dkato 0:f782d9c66c49 445 #define IP6_FRAG_STATS_DISPLAY()
dkato 0:f782d9c66c49 446 #endif
dkato 0:f782d9c66c49 447
dkato 0:f782d9c66c49 448 #if MLD6_STATS
dkato 0:f782d9c66c49 449 #define MLD6_STATS_INC(x) STATS_INC(x)
dkato 0:f782d9c66c49 450 #define MLD6_STATS_DISPLAY() stats_display_igmp(&lwip_stats.mld6, "MLDv1")
dkato 0:f782d9c66c49 451 #else
dkato 0:f782d9c66c49 452 #define MLD6_STATS_INC(x)
dkato 0:f782d9c66c49 453 #define MLD6_STATS_DISPLAY()
dkato 0:f782d9c66c49 454 #endif
dkato 0:f782d9c66c49 455
dkato 0:f782d9c66c49 456 #if ND6_STATS
dkato 0:f782d9c66c49 457 #define ND6_STATS_INC(x) STATS_INC(x)
dkato 0:f782d9c66c49 458 #define ND6_STATS_DISPLAY() stats_display_proto(&lwip_stats.nd6, "ND")
dkato 0:f782d9c66c49 459 #else
dkato 0:f782d9c66c49 460 #define ND6_STATS_INC(x)
dkato 0:f782d9c66c49 461 #define ND6_STATS_DISPLAY()
dkato 0:f782d9c66c49 462 #endif
dkato 0:f782d9c66c49 463
dkato 0:f782d9c66c49 464 #if MIB2_STATS
dkato 0:f782d9c66c49 465 #define MIB2_STATS_INC(x) STATS_INC(x)
dkato 0:f782d9c66c49 466 #else
dkato 0:f782d9c66c49 467 #define MIB2_STATS_INC(x)
dkato 0:f782d9c66c49 468 #endif
dkato 0:f782d9c66c49 469
dkato 0:f782d9c66c49 470 /* Display of statistics */
dkato 0:f782d9c66c49 471 #if LWIP_STATS_DISPLAY
dkato 0:f782d9c66c49 472 void stats_display(void);
dkato 0:f782d9c66c49 473 void stats_display_proto(struct stats_proto *proto, const char *name);
dkato 0:f782d9c66c49 474 void stats_display_igmp(struct stats_igmp *igmp, const char *name);
dkato 0:f782d9c66c49 475 void stats_display_mem(struct stats_mem *mem, const char *name);
dkato 0:f782d9c66c49 476 void stats_display_memp(struct stats_mem *mem, int index);
dkato 0:f782d9c66c49 477 void stats_display_sys(struct stats_sys *sys);
dkato 0:f782d9c66c49 478 #else /* LWIP_STATS_DISPLAY */
dkato 0:f782d9c66c49 479 #define stats_display()
dkato 0:f782d9c66c49 480 #define stats_display_proto(proto, name)
dkato 0:f782d9c66c49 481 #define stats_display_igmp(igmp, name)
dkato 0:f782d9c66c49 482 #define stats_display_mem(mem, name)
dkato 0:f782d9c66c49 483 #define stats_display_memp(mem, index)
dkato 0:f782d9c66c49 484 #define stats_display_sys(sys)
dkato 0:f782d9c66c49 485 #endif /* LWIP_STATS_DISPLAY */
dkato 0:f782d9c66c49 486
dkato 0:f782d9c66c49 487 #ifdef __cplusplus
dkato 0:f782d9c66c49 488 }
dkato 0:f782d9c66c49 489 #endif
dkato 0:f782d9c66c49 490
dkato 0:f782d9c66c49 491 #endif /* LWIP_HDR_STATS_H */