112f961f4SSam Leffler /*- 27a314dffSSam Leffler * Copyright (c) 2002-2007 Sam Leffler, Errno Consulting 312f961f4SSam Leffler * All rights reserved. 412f961f4SSam Leffler * 512f961f4SSam Leffler * Redistribution and use in source and binary forms, with or without 612f961f4SSam Leffler * modification, are permitted provided that the following conditions 712f961f4SSam Leffler * are met: 812f961f4SSam Leffler * 1. Redistributions of source code must retain the above copyright 912f961f4SSam Leffler * notice, this list of conditions and the following disclaimer, 1012f961f4SSam Leffler * without modification. 1112f961f4SSam Leffler * 2. Redistributions in binary form must reproduce at minimum a disclaimer 1212f961f4SSam Leffler * similar to the "NO WARRANTY" disclaimer below ("Disclaimer") and any 1312f961f4SSam Leffler * redistribution must be conditioned upon including a substantially 1412f961f4SSam Leffler * similar Disclaimer requirement for further binary redistribution. 1512f961f4SSam Leffler * 1612f961f4SSam Leffler * NO WARRANTY 1712f961f4SSam Leffler * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 1812f961f4SSam Leffler * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 1912f961f4SSam Leffler * LIMITED TO, THE IMPLIED WARRANTIES OF NONINFRINGEMENT, MERCHANTIBILITY 2012f961f4SSam Leffler * AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL 2112f961f4SSam Leffler * THE COPYRIGHT HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY, 2212f961f4SSam Leffler * OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 2312f961f4SSam Leffler * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 2412f961f4SSam Leffler * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER 2512f961f4SSam Leffler * IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 2612f961f4SSam Leffler * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF 2712f961f4SSam Leffler * THE POSSIBILITY OF SUCH DAMAGES. 2812f961f4SSam Leffler * 2912f961f4SSam Leffler * $FreeBSD$ 3012f961f4SSam Leffler */ 3112f961f4SSam Leffler 3212f961f4SSam Leffler /* 332f549d72SSam Leffler * ath statistics class. 3412f961f4SSam Leffler */ 3512f961f4SSam Leffler #include <sys/types.h> 3612f961f4SSam Leffler #include <sys/file.h> 3712f961f4SSam Leffler #include <sys/sockio.h> 3812f961f4SSam Leffler #include <sys/socket.h> 3912f961f4SSam Leffler #include <net/if.h> 4012f961f4SSam Leffler #include <net/if_media.h> 4112f961f4SSam Leffler #include <net/if_var.h> 4212f961f4SSam Leffler 4312f961f4SSam Leffler #include <stdio.h> 4412f961f4SSam Leffler #include <signal.h> 452f549d72SSam Leffler #include <string.h> 462f549d72SSam Leffler #include <unistd.h> 472f549d72SSam Leffler #include <err.h> 4812f961f4SSam Leffler 4944301bc9SSam Leffler #include "../../../../sys/contrib/dev/ath/ah_desc.h" 5044301bc9SSam Leffler #include "../../../../sys/net80211/ieee80211_ioctl.h" 5144301bc9SSam Leffler #include "../../../../sys/net80211/ieee80211_radiotap.h" 5244301bc9SSam Leffler #include "../../../../sys/dev/ath/if_athioctl.h" 5312f961f4SSam Leffler 542f549d72SSam Leffler #include "athstats.h" 552f549d72SSam Leffler 562f549d72SSam Leffler #define NOTPRESENT { 0, "", "" } 572f549d72SSam Leffler 582f549d72SSam Leffler static const struct fmt athstats[] = { 592f549d72SSam Leffler #define S_INPUT 0 602f549d72SSam Leffler { 8, "input", "input", "data frames received" }, 612f549d72SSam Leffler #define S_OUTPUT 1 622f549d72SSam Leffler { 8, "output", "output", "data frames transmit" }, 632f549d72SSam Leffler #define S_TX_ALTRATE 2 642f549d72SSam Leffler { 7, "altrate", "altrate", "tx frames with an alternate rate" }, 652f549d72SSam Leffler #define S_TX_SHORTRETRY 3 662f549d72SSam Leffler { 7, "short", "short", "short on-chip tx retries" }, 672f549d72SSam Leffler #define S_TX_LONGRETRY 4 682f549d72SSam Leffler { 7, "long", "long", "long on-chip tx retries" }, 692f549d72SSam Leffler #define S_TX_XRETRIES 5 702f549d72SSam Leffler { 6, "xretry", "xretry", "tx failed 'cuz too many retries" }, 712f549d72SSam Leffler #define S_MIB 6 722f549d72SSam Leffler { 5, "mib", "mib", "mib overflow interrupts" }, 732f549d72SSam Leffler #ifndef __linux__ 742f549d72SSam Leffler #define S_TX_LINEAR 7 752f549d72SSam Leffler { 5, "txlinear", "txlinear", "tx linearized to cluster" }, 762f549d72SSam Leffler #define S_BSTUCK 8 772f549d72SSam Leffler { 5, "bstuck", "bstuck", "stuck beacon conditions" }, 782f549d72SSam Leffler #define S_INTRCOAL 9 792f549d72SSam Leffler { 5, "intrcoal", "intrcoal", "interrupts coalesced" }, 802f549d72SSam Leffler #else 812f549d72SSam Leffler NOTPRESENT, NOTPRESENT, NOTPRESENT, 822f549d72SSam Leffler #endif 832f549d72SSam Leffler #define S_RATE 10 842f549d72SSam Leffler { 4, "rate", "rate", "current transmit rate" }, 852f549d72SSam Leffler #define S_WATCHDOG 11 862f549d72SSam Leffler { 5, "wdog", "wdog", "watchdog timeouts" }, 872f549d72SSam Leffler #define S_FATAL 12 882f549d72SSam Leffler { 5, "fatal", "fatal", "hardware error interrupts" }, 892f549d72SSam Leffler #define S_BMISS 13 902f549d72SSam Leffler { 5, "bmiss", "bmiss", "beacon miss interrupts" }, 912f549d72SSam Leffler #define S_RXORN 14 922f549d72SSam Leffler { 5, "rxorn", "rxorn", "recv overrun interrupts" }, 932f549d72SSam Leffler #define S_RXEOL 15 942f549d72SSam Leffler { 5, "rxeol", "rxeol", "recv eol interrupts" }, 952f549d72SSam Leffler #define S_TXURN 16 962f549d72SSam Leffler { 5, "txurn", "txurn", "txmit underrun interrupts" }, 972f549d72SSam Leffler #define S_TX_MGMT 17 982f549d72SSam Leffler { 5, "txmgt", "txmgt", "tx management frames" }, 992f549d72SSam Leffler #define S_TX_DISCARD 18 1002f549d72SSam Leffler { 5, "txdisc", "txdisc", "tx frames discarded prior to association" }, 1012f549d72SSam Leffler #define S_TX_INVALID 19 1022f549d72SSam Leffler { 5, "txinv", "txinv", "tx invalid (19)" }, 1032f549d72SSam Leffler #define S_TX_QSTOP 20 1042f549d72SSam Leffler { 5, "qstop", "qstop", "tx stopped 'cuz no xmit buffer" }, 1052f549d72SSam Leffler #define S_TX_ENCAP 21 1062f549d72SSam Leffler { 5, "txencode", "txencode", "tx encapsulation failed" }, 1072f549d72SSam Leffler #define S_TX_NONODE 22 1082f549d72SSam Leffler { 5, "txnonode", "txnonode", "tx failed 'cuz no node" }, 1092f549d72SSam Leffler #define S_TX_NOMBUF 23 1102f549d72SSam Leffler { 5, "txnombuf", "txnombuf", "tx failed 'cuz mbuf allocation failed" }, 1112f549d72SSam Leffler #ifndef __linux__ 1122f549d72SSam Leffler #define S_TX_NOMCL 24 1132f549d72SSam Leffler { 5, "txnomcl", "txnomcl", "tx failed 'cuz cluster allocation failed" }, 1142f549d72SSam Leffler #else 1152f549d72SSam Leffler NOTPRESENT, 1162f549d72SSam Leffler #endif 1172f549d72SSam Leffler #define S_TX_FIFOERR 25 1182f549d72SSam Leffler { 5, "efifo", "efifo", "tx failed 'cuz FIFO underrun" }, 1192f549d72SSam Leffler #define S_TX_FILTERED 26 1202f549d72SSam Leffler { 5, "efilt", "efilt", "tx failed 'cuz destination filtered" }, 1212f549d72SSam Leffler #define S_TX_BADRATE 27 1222f549d72SSam Leffler { 5, "txbadrate", "txbadrate", "tx failed 'cuz bogus xmit rate" }, 1232f549d72SSam Leffler #define S_TX_NOACK 28 1242f549d72SSam Leffler { 5, "noack", "noack", "tx frames with no ack marked" }, 1252f549d72SSam Leffler #define S_TX_RTS 29 1262f549d72SSam Leffler { 5, "rts", "rts", "tx frames with rts enabled" }, 1272f549d72SSam Leffler #define S_TX_CTS 30 1282f549d72SSam Leffler { 5, "cts", "cts", "tx frames with cts enabled" }, 1292f549d72SSam Leffler #define S_TX_SHORTPRE 31 1302f549d72SSam Leffler { 5, "shpre", "shpre", "tx frames with short preamble" }, 1312f549d72SSam Leffler #define S_TX_PROTECT 32 1322f549d72SSam Leffler { 5, "protect", "protect", "tx frames with 11g protection" }, 1332f549d72SSam Leffler #define S_RX_ORN 33 1342f549d72SSam Leffler { 5, "rxorn", "rxorn", "rx failed 'cuz of desc overrun" }, 1352f549d72SSam Leffler #define S_RX_CRC_ERR 34 1362f549d72SSam Leffler { 6, "crcerr", "crcerr", "rx failed 'cuz of bad CRC" }, 1372f549d72SSam Leffler #define S_RX_FIFO_ERR 35 1382f549d72SSam Leffler { 5, "rxfifo", "rxfifo", "rx failed 'cuz of FIFO overrun" }, 1392f549d72SSam Leffler #define S_RX_CRYPTO_ERR 36 1402f549d72SSam Leffler { 5, "crypt", "crypt", "rx failed 'cuz decryption" }, 1412f549d72SSam Leffler #define S_RX_MIC_ERR 37 1422f549d72SSam Leffler { 4, "mic", "mic", "rx failed 'cuz MIC failure" }, 1432f549d72SSam Leffler #define S_RX_TOOSHORT 38 1442f549d72SSam Leffler { 5, "rxshort", "rxshort", "rx failed 'cuz frame too short" }, 1452f549d72SSam Leffler #define S_RX_NOMBUF 39 1462f549d72SSam Leffler { 5, "rxnombuf", "rxnombuf", "rx setup failed 'cuz no mbuf" }, 1472f549d72SSam Leffler #define S_RX_MGT 40 1482f549d72SSam Leffler { 5, "rxmgt", "rxmgt", "rx management frames" }, 1492f549d72SSam Leffler #define S_RX_CTL 41 1502f549d72SSam Leffler { 5, "rxctl", "rxctl", "rx control frames" }, 1512f549d72SSam Leffler #define S_RX_PHY_ERR 42 1522f549d72SSam Leffler { 7, "phyerr", "phyerr", "rx failed 'cuz of PHY err" }, 1532f549d72SSam Leffler #define S_RX_PHY_UNDERRUN 43 1542f549d72SSam Leffler { 6, "phyund", "phyund", "transmit underrun" }, 1552f549d72SSam Leffler #define S_RX_PHY_TIMING 44 1562f549d72SSam Leffler { 6, "phytim", "phytim", "timing error" }, 1572f549d72SSam Leffler #define S_RX_PHY_PARITY 45 1582f549d72SSam Leffler { 6, "phypar", "phypar", "illegal parity" }, 1592f549d72SSam Leffler #define S_RX_PHY_RATE 46 1602f549d72SSam Leffler { 6, "phyrate", "phyrate", "illegal rate" }, 1612f549d72SSam Leffler #define S_RX_PHY_LENGTH 47 1622f549d72SSam Leffler { 6, "phylen", "phylen", "illegal length" }, 1632f549d72SSam Leffler #define S_RX_PHY_RADAR 48 1642f549d72SSam Leffler { 6, "phyradar", "phyradar", "radar detect" }, 1652f549d72SSam Leffler #define S_RX_PHY_SERVICE 49 1662f549d72SSam Leffler { 6, "physervice", "physervice", "illegal service" }, 1672f549d72SSam Leffler #define S_RX_PHY_TOR 50 1682f549d72SSam Leffler { 6, "phytor", "phytor", "transmit override receive" }, 1692f549d72SSam Leffler #define S_RX_PHY_OFDM_TIMING 51 1702f549d72SSam Leffler { 6, "ofdmtim", "ofdmtim", "OFDM timing" }, 1712f549d72SSam Leffler #define S_RX_PHY_OFDM_SIGNAL_PARITY 52 1722f549d72SSam Leffler { 6, "ofdmsig", "ofdmsig", "OFDM illegal parity" }, 1732f549d72SSam Leffler #define S_RX_PHY_OFDM_RATE_ILLEGAL 53 1742f549d72SSam Leffler { 6, "ofdmrate", "ofdmrate", "OFDM illegal rate" }, 1752f549d72SSam Leffler #define S_RX_PHY_OFDM_POWER_DROP 54 1762f549d72SSam Leffler { 6, "ofdmpow", "ofdmpow", "OFDM power drop" }, 1772f549d72SSam Leffler #define S_RX_PHY_OFDM_SERVICE 55 1782f549d72SSam Leffler { 6, "ofdmservice", "ofdmservice", "OFDM illegal service" }, 1792f549d72SSam Leffler #define S_RX_PHY_OFDM_RESTART 56 1802f549d72SSam Leffler { 6, "ofdmrestart", "ofdmrestart", "OFDM restart" }, 1812f549d72SSam Leffler #define S_RX_PHY_CCK_TIMING 57 1822f549d72SSam Leffler { 6, "ccktim", "ccktim", "CCK timing" }, 1832f549d72SSam Leffler #define S_RX_PHY_CCK_HEADER_CRC 58 1842f549d72SSam Leffler { 6, "cckhead", "cckhead", "CCK header crc" }, 1852f549d72SSam Leffler #define S_RX_PHY_CCK_RATE_ILLEGAL 59 1862f549d72SSam Leffler { 6, "cckrate", "cckrate", "CCK illegal rate" }, 1872f549d72SSam Leffler #define S_RX_PHY_CCK_SERVICE 60 1882f549d72SSam Leffler { 6, "cckservice", "cckservice", "CCK illegal service" }, 1892f549d72SSam Leffler #define S_RX_PHY_CCK_RESTART 61 1902f549d72SSam Leffler { 6, "cckrestar", "cckrestar", "CCK restart" }, 1912f549d72SSam Leffler #define S_BE_NOMBUF 62 1922f549d72SSam Leffler { 4, "benombuf", "benombuf", "beacon setup failed 'cuz no mbuf" }, 1932f549d72SSam Leffler #define S_BE_XMIT 63 1942f549d72SSam Leffler { 7, "bexmit", "bexmit", "beacons transmitted" }, 1952f549d72SSam Leffler #define S_PER_CAL 64 1962f549d72SSam Leffler { 4, "pcal", "pcal", "periodic calibrations" }, 1972f549d72SSam Leffler #define S_PER_CALFAIL 65 1982f549d72SSam Leffler { 4, "pcalf", "pcalf", "periodic calibration failures" }, 1992f549d72SSam Leffler #define S_PER_RFGAIN 66 2002f549d72SSam Leffler { 4, "prfga", "prfga", "rfgain value change" }, 2012f549d72SSam Leffler #if 0 2022f549d72SSam Leffler #define S_TDMA_UPDATE 67 2032f549d72SSam Leffler { 5, "tdmau", "tdmau", "TDMA slot timing updates" }, 2042f549d72SSam Leffler #define S_TDMA_TIMERS 68 2052f549d72SSam Leffler { 5, "tdmab", "tdmab", "TDMA slot update set beacon timers" }, 2062f549d72SSam Leffler #define S_TDMA_TSF 69 2072f549d72SSam Leffler { 5, "tdmat", "tdmat", "TDMA slot update set TSF" }, 2082f549d72SSam Leffler #else 2092f549d72SSam Leffler NOTPRESENT, NOTPRESENT, NOTPRESENT, 2102f549d72SSam Leffler #endif 2112f549d72SSam Leffler #define S_RATE_CALLS 70 2122f549d72SSam Leffler { 5, "ratec", "ratec", "rate control checks" }, 2132f549d72SSam Leffler #define S_RATE_RAISE 71 2142f549d72SSam Leffler { 5, "rate+", "rate+", "rate control raised xmit rate" }, 2152f549d72SSam Leffler #define S_RATE_DROP 72 2162f549d72SSam Leffler { 5, "rate-", "rate-", "rate control dropped xmit rate" }, 2172f549d72SSam Leffler #define S_TX_RSSI 73 2182f549d72SSam Leffler { 4, "arssi", "arssi", "rssi of last ack" }, 2192f549d72SSam Leffler #define S_RX_RSSI 74 2202f549d72SSam Leffler { 4, "rssi", "rssi", "avg recv rssi" }, 2212f549d72SSam Leffler #define S_RX_NOISE 75 2222f549d72SSam Leffler { 5, "noise", "noise", "rx noise floor" }, 2232f549d72SSam Leffler #define S_BMISS_PHANTOM 76 2242f549d72SSam Leffler { 5, "bmissphantom", "bmissphantom", "phantom beacon misses" }, 2252f549d72SSam Leffler #define S_TX_RAW 77 2262f549d72SSam Leffler { 5, "txraw", "txraw", "tx frames through raw api" }, 2272f549d72SSam Leffler #define S_RX_TOOBIG 78 2282f549d72SSam Leffler { 5, "rx2big", "rx2big", "rx failed 'cuz frame too large" }, 2292f549d72SSam Leffler #ifndef __linux__ 2302f549d72SSam Leffler #define S_CABQ_XMIT 79 2312f549d72SSam Leffler { 5, "cabxmit", "cabxmit", "cabq frames transmitted" }, 2322f549d72SSam Leffler #define S_CABQ_BUSY 80 2332f549d72SSam Leffler { 5, "cabqbusy", "cabqbusy", "cabq xmit overflowed beacon interval" }, 2342f549d72SSam Leffler #define S_TX_NODATA 81 2352f549d72SSam Leffler { 5, "txnodata", "txnodata", "tx discarded empty frame" }, 2362f549d72SSam Leffler #define S_TX_BUSDMA 82 2372f549d72SSam Leffler { 5, "txbusdma", "txbusdma", "tx failed for dma resrcs" }, 2382f549d72SSam Leffler #define S_RX_BUSDMA 83 2392f549d72SSam Leffler { 5, "rxbusdma", "rxbusdma", "rx setup failed for dma resrcs" }, 2402f549d72SSam Leffler #else 2412f549d72SSam Leffler NOTPRESENT, NOTPRESENT, NOTPRESENT, NOTPRESENT, NOTPRESENT, 2422f549d72SSam Leffler #endif 2432f549d72SSam Leffler #if 0 2442f549d72SSam Leffler #define S_FF_TXOK 84 2452f549d72SSam Leffler { 5, "fftxok", "fftxok", "fast frames xmit successfully" }, 2462f549d72SSam Leffler #define S_FF_TXERR 85 2472f549d72SSam Leffler { 5, "fftxerr", "fftxerr", "fast frames not xmit due to error" }, 2482f549d72SSam Leffler #define S_FF_RX 86 2492f549d72SSam Leffler { 5, "ffrx", "ffrx", "fast frames received" }, 2502f549d72SSam Leffler #define S_FF_FLUSH 87 2512f549d72SSam Leffler { 5, "ffflush", "ffflush", "fast frames flushed from staging q" }, 2522f549d72SSam Leffler #else 2532f549d72SSam Leffler NOTPRESENT, NOTPRESENT, NOTPRESENT, NOTPRESENT, 2542f549d72SSam Leffler #endif 2552f549d72SSam Leffler #define S_ANT_DEFSWITCH 88 2562f549d72SSam Leffler { 5, "defsw", "defsw", "switched default/rx antenna" }, 2572f549d72SSam Leffler #define S_ANT_TXSWITCH 89 2582f549d72SSam Leffler { 5, "txsw", "txsw", "tx used alternate antenna" }, 2592f549d72SSam Leffler #define S_ANT_TX0 90 2602f549d72SSam Leffler { 8, "tx0", "ant0(tx)", "frames tx on antenna 0" }, 2612f549d72SSam Leffler #define S_ANT_TX1 91 2622f549d72SSam Leffler { 8, "tx1", "ant1(tx)", "frames tx on antenna 1" }, 2632f549d72SSam Leffler #define S_ANT_TX2 92 2642f549d72SSam Leffler { 8, "tx2", "ant2(tx)", "frames tx on antenna 2" }, 2652f549d72SSam Leffler #define S_ANT_TX3 93 2662f549d72SSam Leffler { 8, "tx3", "ant3(tx)", "frames tx on antenna 3" }, 2672f549d72SSam Leffler #define S_ANT_TX4 94 2682f549d72SSam Leffler { 8, "tx4", "ant4(tx)", "frames tx on antenna 4" }, 2692f549d72SSam Leffler #define S_ANT_TX5 95 2702f549d72SSam Leffler { 8, "tx5", "ant5(tx)", "frames tx on antenna 5" }, 2712f549d72SSam Leffler #define S_ANT_TX6 96 2722f549d72SSam Leffler { 8, "tx6", "ant6(tx)", "frames tx on antenna 6" }, 2732f549d72SSam Leffler #define S_ANT_TX7 97 2742f549d72SSam Leffler { 8, "tx7", "ant7(tx)", "frames tx on antenna 7" }, 2752f549d72SSam Leffler #define S_ANT_RX0 98 2762f549d72SSam Leffler { 8, "rx0", "ant0(rx)", "frames rx on antenna 0" }, 2772f549d72SSam Leffler #define S_ANT_RX1 99 2782f549d72SSam Leffler { 8, "rx1", "ant1(rx)", "frames rx on antenna 1" }, 2792f549d72SSam Leffler #define S_ANT_RX2 100 2802f549d72SSam Leffler { 8, "rx2", "ant2(rx)", "frames rx on antenna 2" }, 2812f549d72SSam Leffler #define S_ANT_RX3 101 2822f549d72SSam Leffler { 8, "rx3", "ant3(rx)", "frames rx on antenna 3" }, 2832f549d72SSam Leffler #define S_ANT_RX4 102 2842f549d72SSam Leffler { 8, "rx4", "ant4(rx)", "frames rx on antenna 4" }, 2852f549d72SSam Leffler #define S_ANT_RX5 103 2862f549d72SSam Leffler { 8, "rx5", "ant5(rx)", "frames rx on antenna 5" }, 2872f549d72SSam Leffler #define S_ANT_RX6 104 2882f549d72SSam Leffler { 8, "rx6", "ant6(rx)", "frames rx on antenna 6" }, 2892f549d72SSam Leffler #define S_ANT_RX7 105 2902f549d72SSam Leffler { 8, "rx7", "ant7(rx)", "frames rx on antenna 7" }, 2912f549d72SSam Leffler #define S_TX_SIGNAL 106 2922f549d72SSam Leffler { 4, "asignal", "asig", "signal of last ack (dBm)" }, 2932f549d72SSam Leffler #define S_RX_SIGNAL 107 2942f549d72SSam Leffler { 4, "signal", "sig", "avg recv signal (dBm)" }, 29512f961f4SSam Leffler }; 2962f549d72SSam Leffler #define S_PHY_MIN S_RX_PHY_UNDERRUN 2972f549d72SSam Leffler #define S_PHY_MAX S_RX_PHY_CCK_RESTART 2982f549d72SSam Leffler #define S_LAST S_ANT_TX0 2992f549d72SSam Leffler #define S_MAX S_ANT_RX7+1 30012f961f4SSam Leffler 3012f549d72SSam Leffler struct athstatfoo_p { 3022f549d72SSam Leffler struct athstatfoo base; 30312f961f4SSam Leffler int s; 30412f961f4SSam Leffler struct ifreq ifr; 3052f549d72SSam Leffler struct ath_stats cur; 3062f549d72SSam Leffler struct ath_stats total; 3072f549d72SSam Leffler }; 30812f961f4SSam Leffler 3092f549d72SSam Leffler static void 3102f549d72SSam Leffler ath_setifname(struct athstatfoo *wf0, const char *ifname) 3112f549d72SSam Leffler { 3122f549d72SSam Leffler struct athstatfoo_p *wf = (struct athstatfoo_p *) wf0; 31312f961f4SSam Leffler 3142f549d72SSam Leffler strncpy(wf->ifr.ifr_name, ifname, sizeof (wf->ifr.ifr_name)); 31512f961f4SSam Leffler } 31612f961f4SSam Leffler 3172f549d72SSam Leffler static void 3182f549d72SSam Leffler ath_collect(struct athstatfoo_p *wf, struct ath_stats *stats) 3192f549d72SSam Leffler { 3202f549d72SSam Leffler wf->ifr.ifr_data = (caddr_t) stats; 3212f549d72SSam Leffler if (ioctl(wf->s, SIOCGATHSTATS, &wf->ifr) < 0) 3222f549d72SSam Leffler err(1, wf->ifr.ifr_name); 32312f961f4SSam Leffler } 3242f549d72SSam Leffler 3252f549d72SSam Leffler static void 3262f549d72SSam Leffler ath_collect_cur(struct statfoo *sf) 3272f549d72SSam Leffler { 3282f549d72SSam Leffler struct athstatfoo_p *wf = (struct athstatfoo_p *) sf; 3292f549d72SSam Leffler 3302f549d72SSam Leffler ath_collect(wf, &wf->cur); 3312f549d72SSam Leffler } 3322f549d72SSam Leffler 3332f549d72SSam Leffler static void 3342f549d72SSam Leffler ath_collect_tot(struct statfoo *sf) 3352f549d72SSam Leffler { 3362f549d72SSam Leffler struct athstatfoo_p *wf = (struct athstatfoo_p *) sf; 3372f549d72SSam Leffler 3382f549d72SSam Leffler ath_collect(wf, &wf->total); 3392f549d72SSam Leffler } 3402f549d72SSam Leffler 3412f549d72SSam Leffler static void 3422f549d72SSam Leffler ath_update_tot(struct statfoo *sf) 3432f549d72SSam Leffler { 3442f549d72SSam Leffler struct athstatfoo_p *wf = (struct athstatfoo_p *) sf; 3452f549d72SSam Leffler 3462f549d72SSam Leffler wf->total = wf->cur; 3472f549d72SSam Leffler } 3482f549d72SSam Leffler 3492f549d72SSam Leffler static int 3502f549d72SSam Leffler ath_get_curstat(struct statfoo *sf, int s, char b[], size_t bs) 3512f549d72SSam Leffler { 3522f549d72SSam Leffler struct athstatfoo_p *wf = (struct athstatfoo_p *) sf; 3532f549d72SSam Leffler #define STAT(x) \ 3542f549d72SSam Leffler snprintf(b, bs, "%u", wf->cur.ast_##x - wf->total.ast_##x); return 1 3552f549d72SSam Leffler #define PHY(x) \ 3562f549d72SSam Leffler snprintf(b, bs, "%u", wf->cur.ast_rx_phy[x] - wf->total.ast_rx_phy[x]); return 1 3572f549d72SSam Leffler #define TXANT(x) \ 3582f549d72SSam Leffler snprintf(b, bs, "%u", wf->cur.ast_ant_tx[x] - wf->total.ast_ant_tx[x]); return 1 3592f549d72SSam Leffler #define RXANT(x) \ 3602f549d72SSam Leffler snprintf(b, bs, "%u", wf->cur.ast_ant_rx[x] - wf->total.ast_ant_rx[x]); return 1 3612f549d72SSam Leffler 3622f549d72SSam Leffler switch (s) { 3632f549d72SSam Leffler case S_INPUT: 3642f549d72SSam Leffler snprintf(b, bs, "%lu", 3652f549d72SSam Leffler (wf->cur.ast_rx_packets - wf->total.ast_rx_packets) - 3662f549d72SSam Leffler (wf->cur.ast_rx_mgt - wf->total.ast_rx_mgt)); 3672f549d72SSam Leffler return 1; 3682f549d72SSam Leffler case S_OUTPUT: 3692f549d72SSam Leffler snprintf(b, bs, "%lu", 3702f549d72SSam Leffler wf->cur.ast_tx_packets - wf->total.ast_tx_packets); 3712f549d72SSam Leffler return 1; 3722f549d72SSam Leffler case S_RATE: 3732f549d72SSam Leffler snprintf(b, bs, "%uM", wf->cur.ast_tx_rate / 2); 3742f549d72SSam Leffler return 1; 3752f549d72SSam Leffler case S_WATCHDOG: STAT(watchdog); 3762f549d72SSam Leffler case S_FATAL: STAT(hardware); 3772f549d72SSam Leffler case S_BMISS: STAT(bmiss); 3782f549d72SSam Leffler case S_BMISS_PHANTOM: STAT(bmiss_phantom); 3792f549d72SSam Leffler #ifdef S_BSTUCK 3802f549d72SSam Leffler case S_BSTUCK: STAT(bstuck); 3812f549d72SSam Leffler #endif 3822f549d72SSam Leffler case S_RXORN: STAT(rxorn); 3832f549d72SSam Leffler case S_RXEOL: STAT(rxeol); 3842f549d72SSam Leffler case S_TXURN: STAT(txurn); 3852f549d72SSam Leffler case S_MIB: STAT(mib); 3862f549d72SSam Leffler #ifdef S_INTRCOAL 3872f549d72SSam Leffler case S_INTRCOAL: STAT(intrcoal); 3882f549d72SSam Leffler #endif 3892f549d72SSam Leffler case S_TX_MGMT: STAT(tx_mgmt); 3902f549d72SSam Leffler case S_TX_DISCARD: STAT(tx_discard); 3912f549d72SSam Leffler case S_TX_QSTOP: STAT(tx_qstop); 3922f549d72SSam Leffler case S_TX_ENCAP: STAT(tx_encap); 3932f549d72SSam Leffler case S_TX_NONODE: STAT(tx_nonode); 3942f549d72SSam Leffler case S_TX_NOMBUF: STAT(tx_nombuf); 3952f549d72SSam Leffler #ifdef S_TX_NOMCL 3962f549d72SSam Leffler case S_TX_NOMCL: STAT(tx_nomcl); 3972f549d72SSam Leffler case S_TX_LINEAR: STAT(tx_linear); 3982f549d72SSam Leffler case S_TX_NODATA: STAT(tx_nodata); 3992f549d72SSam Leffler case S_TX_BUSDMA: STAT(tx_busdma); 4002f549d72SSam Leffler #endif 4012f549d72SSam Leffler case S_TX_XRETRIES: STAT(tx_xretries); 4022f549d72SSam Leffler case S_TX_FIFOERR: STAT(tx_fifoerr); 4032f549d72SSam Leffler case S_TX_FILTERED: STAT(tx_filtered); 4042f549d72SSam Leffler case S_TX_SHORTRETRY: STAT(tx_shortretry); 4052f549d72SSam Leffler case S_TX_LONGRETRY: STAT(tx_longretry); 4062f549d72SSam Leffler case S_TX_BADRATE: STAT(tx_badrate); 4072f549d72SSam Leffler case S_TX_NOACK: STAT(tx_noack); 4082f549d72SSam Leffler case S_TX_RTS: STAT(tx_rts); 4092f549d72SSam Leffler case S_TX_CTS: STAT(tx_cts); 4102f549d72SSam Leffler case S_TX_SHORTPRE: STAT(tx_shortpre); 4112f549d72SSam Leffler case S_TX_ALTRATE: STAT(tx_altrate); 4122f549d72SSam Leffler case S_TX_PROTECT: STAT(tx_protect); 4132f549d72SSam Leffler case S_RX_NOMBUF: STAT(rx_nombuf); 4142f549d72SSam Leffler #ifdef S_RX_BUSDMA 4152f549d72SSam Leffler case S_RX_BUSDMA: STAT(rx_busdma); 4162f549d72SSam Leffler #endif 4172f549d72SSam Leffler case S_RX_ORN: STAT(rx_orn); 4182f549d72SSam Leffler case S_RX_CRC_ERR: STAT(rx_crcerr); 4192f549d72SSam Leffler case S_RX_FIFO_ERR: STAT(rx_fifoerr); 4202f549d72SSam Leffler case S_RX_CRYPTO_ERR: STAT(rx_badcrypt); 4212f549d72SSam Leffler case S_RX_MIC_ERR: STAT(rx_badmic); 4222f549d72SSam Leffler case S_RX_PHY_ERR: STAT(rx_phyerr); 4232f549d72SSam Leffler case S_RX_PHY_UNDERRUN: PHY(HAL_PHYERR_UNDERRUN); 4242f549d72SSam Leffler case S_RX_PHY_TIMING: PHY(HAL_PHYERR_TIMING); 4252f549d72SSam Leffler case S_RX_PHY_PARITY: PHY(HAL_PHYERR_PARITY); 4262f549d72SSam Leffler case S_RX_PHY_RATE: PHY(HAL_PHYERR_RATE); 4272f549d72SSam Leffler case S_RX_PHY_LENGTH: PHY(HAL_PHYERR_LENGTH); 4282f549d72SSam Leffler case S_RX_PHY_RADAR: PHY(HAL_PHYERR_RADAR); 4292f549d72SSam Leffler case S_RX_PHY_SERVICE: PHY(HAL_PHYERR_SERVICE); 4302f549d72SSam Leffler case S_RX_PHY_TOR: PHY(HAL_PHYERR_TOR); 4312f549d72SSam Leffler case S_RX_PHY_OFDM_TIMING: PHY(HAL_PHYERR_OFDM_TIMING); 4322f549d72SSam Leffler case S_RX_PHY_OFDM_SIGNAL_PARITY: PHY(HAL_PHYERR_OFDM_SIGNAL_PARITY); 4332f549d72SSam Leffler case S_RX_PHY_OFDM_RATE_ILLEGAL: PHY(HAL_PHYERR_OFDM_RATE_ILLEGAL); 4342f549d72SSam Leffler case S_RX_PHY_OFDM_POWER_DROP: PHY(HAL_PHYERR_OFDM_POWER_DROP); 4352f549d72SSam Leffler case S_RX_PHY_OFDM_SERVICE: PHY(HAL_PHYERR_OFDM_SERVICE); 4362f549d72SSam Leffler case S_RX_PHY_OFDM_RESTART: PHY(HAL_PHYERR_OFDM_RESTART); 4372f549d72SSam Leffler case S_RX_PHY_CCK_TIMING: PHY(HAL_PHYERR_CCK_TIMING); 4382f549d72SSam Leffler case S_RX_PHY_CCK_HEADER_CRC: PHY(HAL_PHYERR_CCK_HEADER_CRC); 4392f549d72SSam Leffler case S_RX_PHY_CCK_RATE_ILLEGAL: PHY(HAL_PHYERR_CCK_RATE_ILLEGAL); 4402f549d72SSam Leffler case S_RX_PHY_CCK_SERVICE: PHY(HAL_PHYERR_CCK_SERVICE); 4412f549d72SSam Leffler case S_RX_PHY_CCK_RESTART: PHY(HAL_PHYERR_CCK_RESTART); 4422f549d72SSam Leffler case S_RX_TOOSHORT: STAT(rx_tooshort); 4432f549d72SSam Leffler case S_RX_TOOBIG: STAT(rx_toobig); 4442f549d72SSam Leffler case S_RX_MGT: STAT(rx_mgt); 4452f549d72SSam Leffler case S_RX_CTL: STAT(rx_ctl); 4462f549d72SSam Leffler case S_TX_RSSI: 4472f549d72SSam Leffler snprintf(b, bs, "%d", wf->cur.ast_tx_rssi); 4482f549d72SSam Leffler return 1; 4492f549d72SSam Leffler case S_RX_RSSI: 4502f549d72SSam Leffler snprintf(b, bs, "%d", wf->cur.ast_rx_rssi); 4512f549d72SSam Leffler return 1; 4522f549d72SSam Leffler case S_BE_XMIT: STAT(be_xmit); 4532f549d72SSam Leffler case S_BE_NOMBUF: STAT(be_nombuf); 4542f549d72SSam Leffler case S_PER_CAL: STAT(per_cal); 4552f549d72SSam Leffler case S_PER_CALFAIL: STAT(per_calfail); 4562f549d72SSam Leffler case S_PER_RFGAIN: STAT(per_rfgain); 4572f549d72SSam Leffler #ifdef S_TDMA_UPDATE 4582f549d72SSam Leffler case S_TDMA_UPDATE: STAT(tdma_update); 4592f549d72SSam Leffler case S_TDMA_TIMERS: STAT(tdma_timers); 4602f549d72SSam Leffler case S_TDMA_TSF: STAT(tdma_tsf); 4612f549d72SSam Leffler #endif 4622f549d72SSam Leffler case S_RATE_CALLS: STAT(rate_calls); 4632f549d72SSam Leffler case S_RATE_RAISE: STAT(rate_raise); 4642f549d72SSam Leffler case S_RATE_DROP: STAT(rate_drop); 4652f549d72SSam Leffler case S_ANT_DEFSWITCH: STAT(ant_defswitch); 4662f549d72SSam Leffler case S_ANT_TXSWITCH: STAT(ant_txswitch); 4672f549d72SSam Leffler case S_ANT_TX0: TXANT(0); 4682f549d72SSam Leffler case S_ANT_TX1: TXANT(1); 4692f549d72SSam Leffler case S_ANT_TX2: TXANT(2); 4702f549d72SSam Leffler case S_ANT_TX3: TXANT(3); 4712f549d72SSam Leffler case S_ANT_TX4: TXANT(4); 4722f549d72SSam Leffler case S_ANT_TX5: TXANT(5); 4732f549d72SSam Leffler case S_ANT_TX6: TXANT(6); 4742f549d72SSam Leffler case S_ANT_TX7: TXANT(7); 4752f549d72SSam Leffler case S_ANT_RX0: RXANT(0); 4762f549d72SSam Leffler case S_ANT_RX1: RXANT(1); 4772f549d72SSam Leffler case S_ANT_RX2: RXANT(2); 4782f549d72SSam Leffler case S_ANT_RX3: RXANT(3); 4792f549d72SSam Leffler case S_ANT_RX4: RXANT(4); 4802f549d72SSam Leffler case S_ANT_RX5: RXANT(5); 4812f549d72SSam Leffler case S_ANT_RX6: RXANT(6); 4822f549d72SSam Leffler case S_ANT_RX7: RXANT(7); 4832f549d72SSam Leffler #ifdef S_CABQ_XMIT 4842f549d72SSam Leffler case S_CABQ_XMIT: STAT(cabq_xmit); 4852f549d72SSam Leffler case S_CABQ_BUSY: STAT(cabq_busy); 4862f549d72SSam Leffler #endif 4872f549d72SSam Leffler #ifdef S_FF_TXOK 4882f549d72SSam Leffler case S_FF_TXOK: STAT(ff_txok); 4892f549d72SSam Leffler case S_FF_TXERR: STAT(ff_txerr); 4902f549d72SSam Leffler case S_FF_FLUSH: STAT(ff_flush); 4912f549d72SSam Leffler case S_FF_QFULL: STAT(ff_qfull); 4922f549d72SSam Leffler #endif 4932f549d72SSam Leffler case S_RX_NOISE: 4942f549d72SSam Leffler snprintf(b, bs, "%d", wf->cur.ast_rx_noise); 4952f549d72SSam Leffler return 1; 4962f549d72SSam Leffler case S_TX_SIGNAL: 4972f549d72SSam Leffler snprintf(b, bs, "%d", 4982f549d72SSam Leffler wf->cur.ast_tx_rssi + wf->cur.ast_rx_noise); 4992f549d72SSam Leffler return 1; 5002f549d72SSam Leffler case S_RX_SIGNAL: 5012f549d72SSam Leffler snprintf(b, bs, "%d", 5022f549d72SSam Leffler wf->cur.ast_rx_rssi + wf->cur.ast_rx_noise); 5032f549d72SSam Leffler return 1; 5042f549d72SSam Leffler } 5052f549d72SSam Leffler b[0] = '\0'; 50612f961f4SSam Leffler return 0; 5072f549d72SSam Leffler #undef RXANT 5082f549d72SSam Leffler #undef TXANT 5092f549d72SSam Leffler #undef PHY 5102f549d72SSam Leffler #undef STAT 5112f549d72SSam Leffler } 5122f549d72SSam Leffler 5132f549d72SSam Leffler static int 5142f549d72SSam Leffler ath_get_totstat(struct statfoo *sf, int s, char b[], size_t bs) 5152f549d72SSam Leffler { 5162f549d72SSam Leffler struct athstatfoo_p *wf = (struct athstatfoo_p *) sf; 5172f549d72SSam Leffler #define STAT(x) \ 5182f549d72SSam Leffler snprintf(b, bs, "%u", wf->total.ast_##x); return 1 5192f549d72SSam Leffler #define PHY(x) \ 5202f549d72SSam Leffler snprintf(b, bs, "%u", wf->total.ast_rx_phy[x]); return 1 5212f549d72SSam Leffler #define TXANT(x) \ 5222f549d72SSam Leffler snprintf(b, bs, "%u", wf->total.ast_ant_tx[x]); return 1 5232f549d72SSam Leffler #define RXANT(x) \ 5242f549d72SSam Leffler snprintf(b, bs, "%u", wf->total.ast_ant_rx[x]); return 1 5252f549d72SSam Leffler 5262f549d72SSam Leffler switch (s) { 5272f549d72SSam Leffler case S_INPUT: 5282f549d72SSam Leffler snprintf(b, bs, "%lu", 5292f549d72SSam Leffler wf->total.ast_rx_packets - wf->total.ast_rx_mgt); 5302f549d72SSam Leffler return 1; 5312f549d72SSam Leffler case S_OUTPUT: 5322f549d72SSam Leffler snprintf(b, bs, "%lu", wf->total.ast_tx_packets); 5332f549d72SSam Leffler return 1; 5342f549d72SSam Leffler case S_RATE: 5352f549d72SSam Leffler snprintf(b, bs, "%uM", wf->total.ast_tx_rate / 2); 5362f549d72SSam Leffler return 1; 5372f549d72SSam Leffler case S_WATCHDOG: STAT(watchdog); 5382f549d72SSam Leffler case S_FATAL: STAT(hardware); 5392f549d72SSam Leffler case S_BMISS: STAT(bmiss); 5402f549d72SSam Leffler case S_BMISS_PHANTOM: STAT(bmiss_phantom); 5412f549d72SSam Leffler #ifdef S_BSTUCK 5422f549d72SSam Leffler case S_BSTUCK: STAT(bstuck); 5432f549d72SSam Leffler #endif 5442f549d72SSam Leffler case S_RXORN: STAT(rxorn); 5452f549d72SSam Leffler case S_RXEOL: STAT(rxeol); 5462f549d72SSam Leffler case S_TXURN: STAT(txurn); 5472f549d72SSam Leffler case S_MIB: STAT(mib); 5482f549d72SSam Leffler #ifdef S_INTRCOAL 5492f549d72SSam Leffler case S_INTRCOAL: STAT(intrcoal); 5502f549d72SSam Leffler #endif 5512f549d72SSam Leffler case S_TX_MGMT: STAT(tx_mgmt); 5522f549d72SSam Leffler case S_TX_DISCARD: STAT(tx_discard); 5532f549d72SSam Leffler case S_TX_QSTOP: STAT(tx_qstop); 5542f549d72SSam Leffler case S_TX_ENCAP: STAT(tx_encap); 5552f549d72SSam Leffler case S_TX_NONODE: STAT(tx_nonode); 5562f549d72SSam Leffler case S_TX_NOMBUF: STAT(tx_nombuf); 5572f549d72SSam Leffler #ifdef S_TX_NOMCL 5582f549d72SSam Leffler case S_TX_NOMCL: STAT(tx_nomcl); 5592f549d72SSam Leffler case S_TX_LINEAR: STAT(tx_linear); 5602f549d72SSam Leffler case S_TX_NODATA: STAT(tx_nodata); 5612f549d72SSam Leffler case S_TX_BUSDMA: STAT(tx_busdma); 5622f549d72SSam Leffler #endif 5632f549d72SSam Leffler case S_TX_XRETRIES: STAT(tx_xretries); 5642f549d72SSam Leffler case S_TX_FIFOERR: STAT(tx_fifoerr); 5652f549d72SSam Leffler case S_TX_FILTERED: STAT(tx_filtered); 5662f549d72SSam Leffler case S_TX_SHORTRETRY: STAT(tx_shortretry); 5672f549d72SSam Leffler case S_TX_LONGRETRY: STAT(tx_longretry); 5682f549d72SSam Leffler case S_TX_BADRATE: STAT(tx_badrate); 5692f549d72SSam Leffler case S_TX_NOACK: STAT(tx_noack); 5702f549d72SSam Leffler case S_TX_RTS: STAT(tx_rts); 5712f549d72SSam Leffler case S_TX_CTS: STAT(tx_cts); 5722f549d72SSam Leffler case S_TX_SHORTPRE: STAT(tx_shortpre); 5732f549d72SSam Leffler case S_TX_ALTRATE: STAT(tx_altrate); 5742f549d72SSam Leffler case S_TX_PROTECT: STAT(tx_protect); 5752f549d72SSam Leffler case S_RX_NOMBUF: STAT(rx_nombuf); 5762f549d72SSam Leffler #ifdef S_RX_BUSDMA 5772f549d72SSam Leffler case S_RX_BUSDMA: STAT(rx_busdma); 5782f549d72SSam Leffler #endif 5792f549d72SSam Leffler case S_RX_ORN: STAT(rx_orn); 5802f549d72SSam Leffler case S_RX_CRC_ERR: STAT(rx_crcerr); 5812f549d72SSam Leffler case S_RX_FIFO_ERR: STAT(rx_fifoerr); 5822f549d72SSam Leffler case S_RX_CRYPTO_ERR: STAT(rx_badcrypt); 5832f549d72SSam Leffler case S_RX_MIC_ERR: STAT(rx_badmic); 5842f549d72SSam Leffler case S_RX_PHY_ERR: STAT(rx_phyerr); 5852f549d72SSam Leffler case S_RX_PHY_UNDERRUN: PHY(HAL_PHYERR_UNDERRUN); 5862f549d72SSam Leffler case S_RX_PHY_TIMING: PHY(HAL_PHYERR_TIMING); 5872f549d72SSam Leffler case S_RX_PHY_PARITY: PHY(HAL_PHYERR_PARITY); 5882f549d72SSam Leffler case S_RX_PHY_RATE: PHY(HAL_PHYERR_RATE); 5892f549d72SSam Leffler case S_RX_PHY_LENGTH: PHY(HAL_PHYERR_LENGTH); 5902f549d72SSam Leffler case S_RX_PHY_RADAR: PHY(HAL_PHYERR_RADAR); 5912f549d72SSam Leffler case S_RX_PHY_SERVICE: PHY(HAL_PHYERR_SERVICE); 5922f549d72SSam Leffler case S_RX_PHY_TOR: PHY(HAL_PHYERR_TOR); 5932f549d72SSam Leffler case S_RX_PHY_OFDM_TIMING: PHY(HAL_PHYERR_OFDM_TIMING); 5942f549d72SSam Leffler case S_RX_PHY_OFDM_SIGNAL_PARITY: PHY(HAL_PHYERR_OFDM_SIGNAL_PARITY); 5952f549d72SSam Leffler case S_RX_PHY_OFDM_RATE_ILLEGAL: PHY(HAL_PHYERR_OFDM_RATE_ILLEGAL); 5962f549d72SSam Leffler case S_RX_PHY_OFDM_POWER_DROP: PHY(HAL_PHYERR_OFDM_POWER_DROP); 5972f549d72SSam Leffler case S_RX_PHY_OFDM_SERVICE: PHY(HAL_PHYERR_OFDM_SERVICE); 5982f549d72SSam Leffler case S_RX_PHY_OFDM_RESTART: PHY(HAL_PHYERR_OFDM_RESTART); 5992f549d72SSam Leffler case S_RX_PHY_CCK_TIMING: PHY(HAL_PHYERR_CCK_TIMING); 6002f549d72SSam Leffler case S_RX_PHY_CCK_HEADER_CRC: PHY(HAL_PHYERR_CCK_HEADER_CRC); 6012f549d72SSam Leffler case S_RX_PHY_CCK_RATE_ILLEGAL: PHY(HAL_PHYERR_CCK_RATE_ILLEGAL); 6022f549d72SSam Leffler case S_RX_PHY_CCK_SERVICE: PHY(HAL_PHYERR_CCK_SERVICE); 6032f549d72SSam Leffler case S_RX_PHY_CCK_RESTART: PHY(HAL_PHYERR_CCK_RESTART); 6042f549d72SSam Leffler case S_RX_TOOSHORT: STAT(rx_tooshort); 6052f549d72SSam Leffler case S_RX_TOOBIG: STAT(rx_toobig); 6062f549d72SSam Leffler case S_RX_MGT: STAT(rx_mgt); 6072f549d72SSam Leffler case S_RX_CTL: STAT(rx_ctl); 6082f549d72SSam Leffler case S_TX_RSSI: 6092f549d72SSam Leffler snprintf(b, bs, "%d", wf->total.ast_tx_rssi); 6102f549d72SSam Leffler return 1; 6112f549d72SSam Leffler case S_RX_RSSI: 6122f549d72SSam Leffler snprintf(b, bs, "%d", wf->total.ast_rx_rssi); 6132f549d72SSam Leffler return 1; 6142f549d72SSam Leffler case S_BE_XMIT: STAT(be_xmit); 6152f549d72SSam Leffler case S_BE_NOMBUF: STAT(be_nombuf); 6162f549d72SSam Leffler case S_PER_CAL: STAT(per_cal); 6172f549d72SSam Leffler case S_PER_CALFAIL: STAT(per_calfail); 6182f549d72SSam Leffler case S_PER_RFGAIN: STAT(per_rfgain); 6192f549d72SSam Leffler #ifdef S_TDMA_UPDATE 6202f549d72SSam Leffler case S_TDMA_UPDATE: STAT(tdma_update); 6212f549d72SSam Leffler case S_TDMA_TIMERS: STAT(tdma_timers); 6222f549d72SSam Leffler case S_TDMA_TSF: STAT(tdma_tsf); 6232f549d72SSam Leffler #endif 6242f549d72SSam Leffler case S_RATE_CALLS: STAT(rate_calls); 6252f549d72SSam Leffler case S_RATE_RAISE: STAT(rate_raise); 6262f549d72SSam Leffler case S_RATE_DROP: STAT(rate_drop); 6272f549d72SSam Leffler case S_ANT_DEFSWITCH: STAT(ant_defswitch); 6282f549d72SSam Leffler case S_ANT_TXSWITCH: STAT(ant_txswitch); 6292f549d72SSam Leffler case S_ANT_TX0: TXANT(0); 6302f549d72SSam Leffler case S_ANT_TX1: TXANT(1); 6312f549d72SSam Leffler case S_ANT_TX2: TXANT(2); 6322f549d72SSam Leffler case S_ANT_TX3: TXANT(3); 6332f549d72SSam Leffler case S_ANT_TX4: TXANT(4); 6342f549d72SSam Leffler case S_ANT_TX5: TXANT(5); 6352f549d72SSam Leffler case S_ANT_TX6: TXANT(6); 6362f549d72SSam Leffler case S_ANT_TX7: TXANT(7); 6372f549d72SSam Leffler case S_ANT_RX0: RXANT(0); 6382f549d72SSam Leffler case S_ANT_RX1: RXANT(1); 6392f549d72SSam Leffler case S_ANT_RX2: RXANT(2); 6402f549d72SSam Leffler case S_ANT_RX3: RXANT(3); 6412f549d72SSam Leffler case S_ANT_RX4: RXANT(4); 6422f549d72SSam Leffler case S_ANT_RX5: RXANT(5); 6432f549d72SSam Leffler case S_ANT_RX6: RXANT(6); 6442f549d72SSam Leffler case S_ANT_RX7: RXANT(7); 6452f549d72SSam Leffler #ifdef S_CABQ_XMIT 6462f549d72SSam Leffler case S_CABQ_XMIT: STAT(cabq_xmit); 6472f549d72SSam Leffler case S_CABQ_BUSY: STAT(cabq_busy); 6482f549d72SSam Leffler #endif 6492f549d72SSam Leffler #ifdef S_FF_TXOK 6502f549d72SSam Leffler case S_FF_TXOK: STAT(ff_txok); 6512f549d72SSam Leffler case S_FF_TXERR: STAT(ff_txerr); 6522f549d72SSam Leffler case S_FF_FLUSH: STAT(ff_flush); 6532f549d72SSam Leffler case S_FF_QFULL: STAT(ff_qfull); 6542f549d72SSam Leffler #endif 6552f549d72SSam Leffler case S_RX_NOISE: 6562f549d72SSam Leffler snprintf(b, bs, "%d", wf->total.ast_rx_noise); 6572f549d72SSam Leffler return 1; 6582f549d72SSam Leffler case S_TX_SIGNAL: 6592f549d72SSam Leffler snprintf(b, bs, "%d", 6602f549d72SSam Leffler wf->total.ast_tx_rssi + wf->total.ast_rx_noise); 6612f549d72SSam Leffler return 1; 6622f549d72SSam Leffler case S_RX_SIGNAL: 6632f549d72SSam Leffler snprintf(b, bs, "%d", 6642f549d72SSam Leffler wf->total.ast_rx_rssi + wf->total.ast_rx_noise); 6652f549d72SSam Leffler return 1; 6662f549d72SSam Leffler } 6672f549d72SSam Leffler b[0] = '\0'; 6682f549d72SSam Leffler return 0; 6692f549d72SSam Leffler #undef RXANT 6702f549d72SSam Leffler #undef TXANT 6712f549d72SSam Leffler #undef PHY 6722f549d72SSam Leffler #undef STAT 6732f549d72SSam Leffler } 6742f549d72SSam Leffler 6752f549d72SSam Leffler static void 6762f549d72SSam Leffler ath_print_verbose(struct statfoo *sf, FILE *fd) 6772f549d72SSam Leffler { 6782f549d72SSam Leffler struct athstatfoo_p *wf = (struct athstatfoo_p *) sf; 6792f549d72SSam Leffler #define isphyerr(i) (S_PHY_MIN <= i && i <= S_PHY_MAX) 6802f549d72SSam Leffler char s[32]; 6812f549d72SSam Leffler const char *indent; 6822f549d72SSam Leffler int i; 6832f549d72SSam Leffler 6842f549d72SSam Leffler for (i = 0; i < S_LAST; i++) { 6852f549d72SSam Leffler if (ath_get_totstat(sf, i, s, sizeof(s)) && strcmp(s, "0")) { 6862f549d72SSam Leffler if (isphyerr(i)) 6872f549d72SSam Leffler indent = " "; 6882f549d72SSam Leffler else 6892f549d72SSam Leffler indent = ""; 6902f549d72SSam Leffler fprintf(fd, "%s%s %s\n", indent, s, athstats[i].desc); 6912f549d72SSam Leffler } 6922f549d72SSam Leffler } 6932f549d72SSam Leffler fprintf(fd, "Antenna profile:\n"); 6942f549d72SSam Leffler for (i = 0; i < 8; i++) 6952f549d72SSam Leffler if (wf->total.ast_ant_rx[i] || wf->total.ast_ant_tx[i]) 6962f549d72SSam Leffler fprintf(fd, "[%u] tx %8u rx %8u\n", i, 6972f549d72SSam Leffler wf->total.ast_ant_tx[i], 6982f549d72SSam Leffler wf->total.ast_ant_rx[i]); 6992f549d72SSam Leffler #undef isphyerr 7002f549d72SSam Leffler } 7012f549d72SSam Leffler 7022f549d72SSam Leffler STATFOO_DEFINE_BOUNCE(athstatfoo) 7032f549d72SSam Leffler 7042f549d72SSam Leffler struct athstatfoo * 7052f549d72SSam Leffler athstats_new(const char *ifname, const char *fmtstring) 7062f549d72SSam Leffler { 7072f549d72SSam Leffler #define N(a) (sizeof(a) / sizeof(a[0])) 7082f549d72SSam Leffler struct athstatfoo_p *wf; 7092f549d72SSam Leffler 7102f549d72SSam Leffler wf = calloc(1, sizeof(struct athstatfoo_p)); 7112f549d72SSam Leffler if (wf != NULL) { 7122f549d72SSam Leffler statfoo_init(&wf->base.base, "athstats", athstats, N(athstats)); 7132f549d72SSam Leffler /* override base methods */ 7142f549d72SSam Leffler wf->base.base.collect_cur = ath_collect_cur; 7152f549d72SSam Leffler wf->base.base.collect_tot = ath_collect_tot; 7162f549d72SSam Leffler wf->base.base.get_curstat = ath_get_curstat; 7172f549d72SSam Leffler wf->base.base.get_totstat = ath_get_totstat; 7182f549d72SSam Leffler wf->base.base.update_tot = ath_update_tot; 7192f549d72SSam Leffler wf->base.base.print_verbose = ath_print_verbose; 7202f549d72SSam Leffler 7212f549d72SSam Leffler /* setup bounce functions for public methods */ 7222f549d72SSam Leffler STATFOO_BOUNCE(wf, athstatfoo); 7232f549d72SSam Leffler 7242f549d72SSam Leffler /* setup our public methods */ 7252f549d72SSam Leffler wf->base.setifname = ath_setifname; 7262f549d72SSam Leffler #if 0 7272f549d72SSam Leffler wf->base.setstamac = wlan_setstamac; 7282f549d72SSam Leffler #endif 7292f549d72SSam Leffler wf->s = socket(AF_INET, SOCK_DGRAM, 0); 7302f549d72SSam Leffler if (wf->s < 0) 7312f549d72SSam Leffler err(1, "socket"); 7322f549d72SSam Leffler 7332f549d72SSam Leffler ath_setifname(&wf->base, ifname); 7342f549d72SSam Leffler wf->base.setfmt(&wf->base, fmtstring); 7352f549d72SSam Leffler } 7362f549d72SSam Leffler return &wf->base; 7372f549d72SSam Leffler #undef N 73812f961f4SSam Leffler } 739