W ogóle nie są a chciałbym aby były.
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eko.one.pl → Posty przez gotcha0
W ogóle nie są a chciałbym aby były.
Stan obecny:
Ruter 1 - fritz z adresacją 192.168.188.x, bez dostępu do internetu, Wifi w trybie AP obsługuje urządzenia IoT
Ruter 2 - OpenWrt z adresacją 192.168.1.x, z dostępem do internetu, Wifi wyłączone.
Co chcę uzyskać?
Aby podłączając się do rutera nr 2 mieć dostęp do urządzeń IoT.
Jak skonfigurować Wifi?
Czyli jeśli nie jestem zadowolony z wydajności to pozostaje powrót do 19.07?
Włączony ale transfery nie takie jakie były w 19.07.
Coś należy doinstalować czy dodatkowo skonfigurować?
Dziękuję, pomogło.
Do RouterStation Pro z kartami:
00:11.0 Ethernet controller: Qualcomm Atheros AR5413/AR5414 Wireless Network Adapter [AR5006X(S) 802.11abg] (rev 01)
00:12.0 Network controller: Qualcomm Atheros AR5416 Wireless Network Adapter [AR5008 802.11(a)bgn] (rev 01)
wgrany: luci-19.07-snapshot-r11225-14903d9d8c-ath79-generic-ubnt_routerstation-pro-squashfs-sysupgrade
i nie działa Wifi.
cat /etc/config/wireless
config wifi-device 'radio0'
option type 'mac80211'
option path 'virtual/mac80211_hwsim/hwsim0'
option country 'PL'
option hwmode '11g'
option htmode 'HT40'
option noscan '1'
option legacy_rates '0'
option txpower '20'
option channel '6'
config wifi-iface 'default_radio0'
option device 'radio0'
option network 'lan'
option mode 'ap'
option encryption 'none'
option ssid 'OpenWrt-2.4'
config wifi-device 'radio1'
option type 'mac80211'
option path 'virtual/mac80211_hwsim/hwsim1'
option country 'PL'
option htmode 'HT20'
option hwmode '11g'
option channel '3'
config wifi-iface 'default_radio1'
option device 'radio1'
option network 'lan'
option mode 'ap'
option encryption 'none'
option ssid 'OpenWrt-5GHz'iw list
Wiphy phy1
max # scan SSIDs: 4
max scan IEs length: 2189 bytes
max # sched scan SSIDs: 0
max # match sets: 0
max # scan plans: 1
max scan plan interval: -1
max scan plan iterations: 0
Retry short limit: 7
Retry long limit: 4
Coverage class: 0 (up to 0m)
Device supports AP-side u-APSD.
Device supports T-DLS.
Available Antennas: TX 0 RX 0
Supported interface modes:
* IBSS
* managed
* AP
* AP/VLAN
* monitor
* mesh point
* P2P-client
* P2P-GO
* P2P-device
Band 1:
Capabilities: 0x107e
HT20/HT40
SM Power Save disabled
RX Greenfield
RX HT20 SGI
RX HT40 SGI
No RX STBC
Max AMSDU length: 3839 bytes
DSSS/CCK HT40
Maximum RX AMPDU length 65535 bytes (exponent: 0x003)
Minimum RX AMPDU time spacing: 8 usec (0x06)
HT TX/RX MCS rate indexes supported: 0-15
Frequencies:
* 2412 MHz [1] (20.0 dBm)
* 2417 MHz [2] (20.0 dBm)
* 2422 MHz [3] (20.0 dBm)
* 2427 MHz [4] (20.0 dBm)
* 2432 MHz [5] (20.0 dBm)
* 2437 MHz [6] (20.0 dBm)
* 2442 MHz [7] (20.0 dBm)
* 2447 MHz [8] (20.0 dBm)
* 2452 MHz [9] (20.0 dBm)
* 2457 MHz [10] (20.0 dBm)
* 2462 MHz [11] (20.0 dBm)
* 2467 MHz [12] (20.0 dBm)
* 2472 MHz [13] (20.0 dBm)
* 2484 MHz [14] (disabled)
Band 2:
Capabilities: 0x107e
HT20/HT40
SM Power Save disabled
RX Greenfield
RX HT20 SGI
RX HT40 SGI
No RX STBC
Max AMSDU length: 3839 bytes
DSSS/CCK HT40
Maximum RX AMPDU length 65535 bytes (exponent: 0x003)
Minimum RX AMPDU time spacing: 8 usec (0x06)
HT TX/RX MCS rate indexes supported: 0-15
VHT Capabilities (0x038004fa):
Max MPDU length: 11454
Supported Channel Width: 160 MHz, 80+80 MHz
RX LDPC
short GI (80 MHz)
short GI (160/80+80 MHz)
TX STBC
VHT RX MCS set:
1 streams: MCS 0-9
2 streams: MCS 0-9
3 streams: MCS 0-9
4 streams: MCS 0-9
5 streams: MCS 0-9
6 streams: MCS 0-9
7 streams: MCS 0-9
8 streams: MCS 0-9
VHT RX highest supported: 0 Mbps
VHT TX MCS set:
1 streams: MCS 0-9
2 streams: MCS 0-9
3 streams: MCS 0-9
4 streams: MCS 0-9
5 streams: MCS 0-9
6 streams: MCS 0-9
7 streams: MCS 0-9
8 streams: MCS 0-9
VHT TX highest supported: 0 Mbps
Frequencies:
* 5180 MHz [36] (20.0 dBm)
* 5200 MHz [40] (20.0 dBm)
* 5220 MHz [44] (20.0 dBm)
* 5240 MHz [48] (20.0 dBm)
* 5260 MHz [52] (20.0 dBm) (radar detection)
* 5280 MHz [56] (20.0 dBm) (radar detection)
* 5300 MHz [60] (20.0 dBm) (radar detection)
* 5320 MHz [64] (20.0 dBm) (radar detection)
* 5500 MHz [100] (20.0 dBm) (radar detection)
* 5520 MHz [104] (20.0 dBm) (radar detection)
* 5540 MHz [108] (20.0 dBm) (radar detection)
* 5560 MHz [112] (20.0 dBm) (radar detection)
* 5580 MHz [116] (20.0 dBm) (radar detection)
* 5600 MHz [120] (20.0 dBm) (radar detection)
* 5620 MHz [124] (20.0 dBm) (radar detection)
* 5640 MHz [128] (20.0 dBm) (radar detection)
* 5660 MHz [132] (20.0 dBm) (radar detection)
* 5680 MHz [136] (20.0 dBm) (radar detection)
* 5700 MHz [140] (20.0 dBm) (radar detection)
* 5745 MHz [149] (13.0 dBm)
* 5765 MHz [153] (13.0 dBm)
* 5785 MHz [157] (13.0 dBm)
* 5805 MHz [161] (13.0 dBm)
* 5825 MHz [165] (13.0 dBm)
* 5845 MHz [169] (13.0 dBm)
valid interface combinations:
* #{ IBSS } <= 1, #{ managed, AP, mesh point, P2P-client, P2P-GO } <= 2048, #{ P2P-device } <= 1,
total <= 2048, #channels <= 1, radar detect widths: { 20 MHz (no HT), 20 MHz, 40 MHz, 80 MHz, 160 MHz }
HT Capability overrides:
* MCS: ff ff ff ff ff ff ff ff ff ff
* maximum A-MSDU length
* supported channel width
* short GI for 40 MHz
* max A-MPDU length exponent
* min MPDU start spacing
Supported extended features:
* [ VHT_IBSS ]: VHT-IBSS
* [ RRM ]: RRM
* [ CQM_RSSI_LIST ]: multiple CQM_RSSI_THOLD records
* [ CONTROL_PORT_OVER_NL80211 ]: control port over nl80211
Wiphy phy0
max # scan SSIDs: 4
max scan IEs length: 2189 bytes
max # sched scan SSIDs: 0
max # match sets: 0
max # scan plans: 1
max scan plan interval: -1
max scan plan iterations: 0
Retry short limit: 7
Retry long limit: 4
Coverage class: 0 (up to 0m)
Device supports AP-side u-APSD.
Device supports T-DLS.
Available Antennas: TX 0 RX 0
Supported interface modes:
* IBSS
* managed
* AP
* AP/VLAN
* monitor
* mesh point
* P2P-client
* P2P-GO
* P2P-device
Band 1:
Capabilities: 0x107e
HT20/HT40
SM Power Save disabled
RX Greenfield
RX HT20 SGI
RX HT40 SGI
No RX STBC
Max AMSDU length: 3839 bytes
DSSS/CCK HT40
Maximum RX AMPDU length 65535 bytes (exponent: 0x003)
Minimum RX AMPDU time spacing: 8 usec (0x06)
HT TX/RX MCS rate indexes supported: 0-15
Frequencies:
* 2412 MHz [1] (20.0 dBm)
* 2417 MHz [2] (20.0 dBm)
* 2422 MHz [3] (20.0 dBm)
* 2427 MHz [4] (20.0 dBm)
* 2432 MHz [5] (20.0 dBm)
* 2437 MHz [6] (20.0 dBm)
* 2442 MHz [7] (20.0 dBm)
* 2447 MHz [8] (20.0 dBm)
* 2452 MHz [9] (20.0 dBm)
* 2457 MHz [10] (20.0 dBm)
* 2462 MHz [11] (20.0 dBm)
* 2467 MHz [12] (20.0 dBm)
* 2472 MHz [13] (20.0 dBm)
* 2484 MHz [14] (disabled)
Band 2:
Capabilities: 0x107e
HT20/HT40
SM Power Save disabled
RX Greenfield
RX HT20 SGI
RX HT40 SGI
No RX STBC
Max AMSDU length: 3839 bytes
DSSS/CCK HT40
Maximum RX AMPDU length 65535 bytes (exponent: 0x003)
Minimum RX AMPDU time spacing: 8 usec (0x06)
HT TX/RX MCS rate indexes supported: 0-15
VHT Capabilities (0x038004fa):
Max MPDU length: 11454
Supported Channel Width: 160 MHz, 80+80 MHz
RX LDPC
short GI (80 MHz)
short GI (160/80+80 MHz)
TX STBC
VHT RX MCS set:
1 streams: MCS 0-9
2 streams: MCS 0-9
3 streams: MCS 0-9
4 streams: MCS 0-9
5 streams: MCS 0-9
6 streams: MCS 0-9
7 streams: MCS 0-9
8 streams: MCS 0-9
VHT RX highest supported: 0 Mbps
VHT TX MCS set:
1 streams: MCS 0-9
2 streams: MCS 0-9
3 streams: MCS 0-9
4 streams: MCS 0-9
5 streams: MCS 0-9
6 streams: MCS 0-9
7 streams: MCS 0-9
8 streams: MCS 0-9
VHT TX highest supported: 0 Mbps
Frequencies:
* 5180 MHz [36] (20.0 dBm)
* 5200 MHz [40] (20.0 dBm)
* 5220 MHz [44] (20.0 dBm)
* 5240 MHz [48] (20.0 dBm)
* 5260 MHz [52] (20.0 dBm) (radar detection)
* 5280 MHz [56] (20.0 dBm) (radar detection)
* 5300 MHz [60] (20.0 dBm) (radar detection)
* 5320 MHz [64] (20.0 dBm) (radar detection)
* 5500 MHz [100] (20.0 dBm) (radar detection)
* 5520 MHz [104] (20.0 dBm) (radar detection)
* 5540 MHz [108] (20.0 dBm) (radar detection)
* 5560 MHz [112] (20.0 dBm) (radar detection)
* 5580 MHz [116] (20.0 dBm) (radar detection)
* 5600 MHz [120] (20.0 dBm) (radar detection)
* 5620 MHz [124] (20.0 dBm) (radar detection)
* 5640 MHz [128] (20.0 dBm) (radar detection)
* 5660 MHz [132] (20.0 dBm) (radar detection)
* 5680 MHz [136] (20.0 dBm) (radar detection)
* 5700 MHz [140] (20.0 dBm) (radar detection)
* 5745 MHz [149] (13.0 dBm)
* 5765 MHz [153] (13.0 dBm)
* 5785 MHz [157] (13.0 dBm)
* 5805 MHz [161] (13.0 dBm)
* 5825 MHz [165] (13.0 dBm)
* 5845 MHz [169] (13.0 dBm)
valid interface combinations:
* #{ IBSS } <= 1, #{ managed, AP, mesh point, P2P-client, P2P-GO } <= 2048, #{ P2P-device } <= 1,
total <= 2048, #channels <= 1, radar detect widths: { 20 MHz (no HT), 20 MHz, 40 MHz, 80 MHz, 160 MHz }
HT Capability overrides:
* MCS: ff ff ff ff ff ff ff ff ff ff
* maximum A-MSDU length
* supported channel width
* short GI for 40 MHz
* max A-MPDU length exponent
* min MPDU start spacing
Supported extended features:
* [ VHT_IBSS ]: VHT-IBSS
* [ RRM ]: RRM
* [ CQM_RSSI_LIST ]: multiple CQM_RSSI_THOLD records
* [ CONTROL_PORT_OVER_NL80211 ]: control port over nl80211Na 18.06 było dobrze ale zachciało mi się przetestować NAT Offloading.
Gdzie szukać przyczyny?
Używam wyświetlacza LCD podłączonego do portu USB - sterowany za pomocą LCDd i lcdproc - co pewien czas rozłącza urządzenie, w logach pojawia się:
usb 4-2: USB disconnect, Aby naprawić wystarczy że zresetuje LCDd, szukam pomysłu jak to zautomatyzować.
Modem się nie przełącza, widoczny tylko wirtualny CD, co dopisać do /etc/usb-mode.json?
Chyba że istnieje sposób na trwałe przełączenie.
TL-WR1043NDv1 z wgranym aktualnym LEDE.
Modem:
Manufacturer: Option N.V.
Model: GI0505
Revision: 3.19.0
"0af0:d055"
A lcdproc da się w ogóle sterować tak po prostu przez wysłanie czegoś czy on ma predefinowane ekrany które wyświetla?
lcdproc nie, ale LCDd jest serwerem który nasłuchuje na porcie TCP:
http://lcdproc.sourceforge.net/docs/cur … l#language
Jak wysłać na LCD temperatury zebrane przez owfs?
OpenWrt nie ma, ciekawych informacji można dowiedzieć się stąd:
https://sites.google.com/site/woytekm/h … -3764-page
Skrypt jest uruchamiany z prawami www-data
*/5 * * * * www-data /var/www/html/plugins/weathermap/output/video01/video01.sh > /dev/null 2>&1Cacti z wtyczką Weathermap i skryptem ze strony
http://forums.cacti.net/viewtopic.php?f=16&t=54535
Skrypt uruchamiany z cron`a kopiuje do katalogu tymczasowego nie wszystkie pliki (ok 250 z 570), uruchomiony ręcznie kopiuje wszystkie.
Skrypt:
#!/bin/sh
SRC_MAP="/var/www/html/plugins/weathermap/output/1469ef6f3dfe8ab3260f.png"
HISTORY_DIR="/var/www/html/plugins/weathermap/output/video01/"
TMP_DIR="/var/www/html/plugins/weathermap/output/video01/tmp/"
VIDEO_DIR="/var/www/html/plugins/weathermap/output/"
FULLHOUR=`date '+%M'`
DATE=`date '+%y%m%d%H%M'`
sleep 5
cp $SRC_MAP $HISTORY_DIR/$DATE.png
find $HISTORY_DIR -name '*.png' -mtime +1 -type f -exec rm {} \;
if [ $FULLHOUR -eq 01 ]; then
x=0
for i in $HISTORY_DIR/*.png
do
cp $i $TMP_DIR/`printf "%06d.png" $x`
x=$(($x+1))
done
`nice ffmpeg -f image2 -sameq -b 1800 -r 1 -i $TMP_DIR/%06d.png $VIDEO_DIR/video01_tmp.mp4`
mv -f $VIDEO_DIR/video01_tmp.mp4 $VIDEO_DIR/JC_Infrastructure_Map.mp4
chown apache:apache $VIDEO_DIR/JC_Infrastructure_Map.mp4
rm -f $TMP_DIR/*.png
fiGdzie jest bug?
# hcitool info 00:1b:58:00:xx:yy
Requesting information ...
BD Address: 00:1b:58:00:32:ff
Device Name: ACECAD SD1 Controller
LMP Version: 2.1 (0x4) LMP Subversion: 0x1735
Manufacturer: Cambridge Silicon Radio (10)
Features page 0: 0xff 0xff 0x8f 0xfe 0x9b 0xff 0x59 0x83
<3-slot packets> <5-slot packets> <encryption> <slot offset>
<timing accuracy> <role switch> <hold mode> <sniff mode>
<park state> <RSSI> <channel quality> <SCO link> <HV2 packets>
<HV3 packets> <u-law log> <A-law log> <CVSD> <paging scheme>
<power control> <transparent SCO> <broadcast encrypt>
<EDR ACL 2 Mbps> <EDR ACL 3 Mbps> <enhanced iscan>
<interlaced iscan> <interlaced pscan> <inquiry with RSSI>
<extended SCO> <EV4 packets> <EV5 packets> <AFH cap. slave>
<AFH class. slave> <3-slot EDR ACL> <5-slot EDR ACL>
<sniff subrating> <pause encryption> <AFH cap. master>
<AFH class. master> <EDR eSCO 2 Mbps> <EDR eSCO 3 Mbps>
<3-slot EDR eSCO> <extended inquiry> <simple pairing>
<encapsulated PDU> <non-flush flag> <LSTO> <inquiry TX power>
<extended features>
Features page 1: 0xff 0xff 0x8f 0xfe 0x9b 0xff 0x59 0x83W Windows zgłasza się jako zestaw słuchawkowy.
TL-WR1043ND, Chaos Calmer 15.05.1 (r49087), bluetooth na USB
Posiadam pilota Bluetooth:
Acecad
Chiałbym go użyć do sterowania MPD, na podstawie wątku http://eko.one.pl/forum/viewtopic.php?id=1199 zakładam że powinien użyć triggerhappy.
Zaistalowałem obsługe USB, Bluetooth, Hid.
hcitool skanuje i "widzi" pilota tylko nie wiem jak sie z nim połączyć (sparować).
Próbowałem "hcitool cc" ale "hcitool con" nie widzi połączenia.
Którędy dalej?
Robiłem wg tego poradnika:
http://blog.quindorian.org/2014/05/a-gu … ering.html
ad 1)
PCty wpięte w switch.
iperf version 1.7.0 (13 Mar 2003) win32 threadsSerwer:
iperf -s -w 1MBKlient:
iperf.exe -c 192.168.11.19 -w 1MB -t 12 -i 3 -r -P 8------------------------------------------------------------
Server listening on TCP port 5001
TCP window size: 1.00 MByte
------------------------------------------------------------
------------------------------------------------------------
Client connecting to 192.168.11.19, TCP port 5001
TCP window size: 1.00 MByte
------------------------------------------------------------
[608] local 192.168.11.17 port 2607 connected with 192.168.11.19 port 5001
[ ID] Interval Transfer Bandwidth
[SUM] 0.0-12.1 sec 1.32 GBytes 934 Mbits/sec
[528] local 192.168.11.17 port 5001 connected with 192.168.11.19 port 50513
[ ID] Interval Transfer Bandwidth
[SUM] 0.0-12.1 sec 1.21 GBytes 856 Mbits/secad 2)
Serwer (192.168.11.19) podłączony do LAN (192.168.11.1) routera, klient (192.168.1.10) podłączony do WAN (192.168.1.1).
Zrobione przekierowanie dla portu 5001.
ad 3)
Serwer:
iperf -s -w 1MBKlient:
iperf.exe -c 192.168.1.1 -w 1MB -t 12 -i 3 -r -P 8------------------------------------------------------------
Server listening on TCP port 5001
TCP window size: 1.00 MByte
------------------------------------------------------------
------------------------------------------------------------
Client connecting to 192.168.1.1, TCP port 5001
TCP window size: 1.00 MByte
------------------------------------------------------------
[612] local 192.168.1.10 port 2655 connected with 192.168.1.1 port 5001
[ ID] Interval Transfer Bandwidth
[SUM] 0.0- 3.0 sec 68.0 MBytes 190 Mbits/sec
[SUM] 3.0- 6.0 sec 61.2 MBytes 171 Mbits/sec
[SUM] 6.0- 9.0 sec 64.4 MBytes 180 Mbits/sec
[SUM] 9.0-12.0 sec 63.5 MBytes 178 Mbits/sec
[SUM] 0.0-12.4 sec 257 MBytes 174 Mbits/sec
[528] local 192.168.1.10 port 5001 connected with 192.168.1.1 port 50562
[ ID] Interval Transfer Bandwidth
[SUM] 0.0- 3.0 sec 59.7 MBytes 167 Mbits/sec
[SUM] 3.0- 6.0 sec 60.7 MBytes 170 Mbits/sec
[SUM] 6.0- 9.0 sec 61.0 MBytes 171 Mbits/sec
[SUM] 9.0-12.0 sec 60.6 MBytes 169 Mbits/sec
[SUM] 0.0-12.4 sec 250 MBytes 169 Mbits/secgotcha0 napisał/a:PC1 -- (WAN) router (LAN) -- PC2
Iperf z nakładką jperf.To jest zdecydowanie za mało informacji.
Jakie szczegóły podać?
PC1 -- (WAN) router (LAN) -- PC2
Iperf z nakładką jperf.
Temat wraca co jakiś czas więc proponuję utworzyć tabelę z zestawieniem sprzętów obsługujących OpenWRT.
Na początek:
TP-Link TL-WR1043ND v1 Chaos Calmer 15.05 (r46531) 129Mb Można by również ujednolicić procedurę testową.
Pod Windowsem można użyć nakładki jperf.
Karta miniPCI XN-625 (AR9227) zamontowana w 411 po załadowaniu sterownika ath9k powoduje:
[ 15.060000] Data bus error, epc == 86c6178c, ra == 86c61788
[ 15.060000] Oops[#1]:
[ 15.060000] CPU: 0 PID: 811 Comm: kmodloader Not tainted 3.18.21 #6
[ 15.060000] task: 87bfe6c0 ti: 87054000 task.ti: 87054000
[ 15.060000] $ 0 : 00000000 00000000 deadc0de 86c61654
[ 15.060000] $ 4 : b0008048 b0000000 02000020 00000000
[ 15.060000] $ 8 : 00000000 00e5c13f 00000000 00000000
[ 15.060000] $12 : 00000000 00000031 00000000 32206265
[ 15.060000] $16 : ffffffff 00008048 873bd720 02000020
[ 15.060000] $20 : 0000016d 00000002 00000000 00007894
[ 15.060000] $24 : 00000001 00000000
[ 15.060000] $28 : 87054000 870559d8 ffbfffff 86c61788
[ 15.060000] Hi : 00000000
[ 15.060000] Lo : 9e29c000
[ 15.060000] epc : 86c6178c ath_start_rfkill_poll+0x2f0/0x41c [ath9k]
[ 15.060000] Not tainted
[ 15.060000] ra : 86c61788 ath_start_rfkill_poll+0x2ec/0x41c [ath9k]
[ 15.060000] Status: 1000fc03 KERNEL EXL IE
[ 15.060000] Cause : 1080001c
[ 15.060000] PrId : 00019374 (MIPS 24Kc)
[ 15.060000] Modules linked in: ath9k(+) ath9k_common pppoe ppp_async option iptable_nat cdc_mbim ath9k_hw ath usb_wwan sierra_net sierra rndis_host qmi_wwan pptp pppox ppp_mppe ppp_generic nf_nat_ipv4 nf_conntrack_ipv6 nf_conntrack_ipv4 mac80211 ipt_REJECT ipt_MASQUERADE huawei_cdc_ncm cfg80211 cdc_ncm cdc_ether xt_time xt_tcpudp xt_tcpmss xt_statistic xt_state xt_recent xt_nat xt_multiport xt_mark xt_mac xt_limit xt_length xt_id xt_hl xt_helper xt_ecn xt_dscp xt_conntrack xt_connmark xt_connlimit xt_connbytes xt_comment xt_TCPMSS xt_REDIRECT xt_LOG xt_HL xt_DSCP xt_CT xt_CLASSIFY usbserial usbnet usblp slhc nf_reject_ipv4 nf_nat_masquerade_ipv4 nf_nat_ftp nf_nat nf_log_ipv4 nf_defrag_ipv6 nf_defrag_ipv4 nf_conntrack_rtcache nf_conntrack_ftp nf_conntrack iptable_raw iptable_mangle iptable_filter ipt_ECN ip_tables crc_ccitt compat cdc_wdm cdc_acm fuse sch_teql sch_tbf sch_sfq sch_red sch_prio sch_pie sch_netem sch_htb sch_gred sch_fq sch_dsmark sch_codel em_text em_nbyte em_meta em_cmp cls_basic act_police act_ipt act_skbedit act_mirred em_u32 cls_u32 cls_tcindex cls_flow cls_route cls_fw sch_hfsc sch_ingress ledtrig_usbdev ip6t_REJECT nf_reject_ipv6 nf_log_ipv6 nf_log_common ip6table_raw ip6table_mangle ip6table_filter ip6_tables x_tables ip_gre gre ifb ip_tunnel vfat fat nls_iso8859_1 nls_cp437 ipv6 sha1_generic ecb arc4 crypto_blkcipher usb_storage ohci_platform ohci_hcd ehci_platform ehci_hcd sd_mod scsi_mod gpio_button_hotplug ext4 jbd2 mbcache usbcore nls_base usb_common crc16 mii aead crypto_hash
[ 15.060000] Process kmodloader (pid: 811, threadinfo=87054000, task=87bfe6c0, tls=7773f440)
[ 15.060000] Stack : 87054000 87055a00 ffbfffff 878f6010 00000004 878f6010 00000004 878f6300
00000002 86c8dc58 00000000 00049b58 00000001 86c83ee0 000002c7 00000008
878f6010 878f6300 878f6038 00000000 00000000 00049b58 00000001 00000000
00000003 86c86df4 00010000 00002080 00000000 00102200 09b409b4 09b40002
00000000 00e5c13f 00000003 817ade38 00000000 20000000 00000000 00000141
...
[ 15.060000] Call Trace:
[ 15.060000] [<86c6178c>] ath_start_rfkill_poll+0x2f0/0x41c [ath9k]
[ 15.060000] [<86c61788>] ath_start_rfkill_poll+0x2ec/0x41c [ath9k]
[ 15.060000]
[ 15.060000]
Code: 0c06ecb4 00852021 8e4509bc <00501024> 00538025 02002021 0c06ecba 00b12821 8fbf0024
[ 15.360000] ---[ end trace 25a39eec706a20d9 ]---root@OpenWrt:/# dmesg|grep pci
[ 2.765977] pci_bus 0000:00: root bus resource [mem 0x10000000-0x16ffffff]
[ 2.772827] pci_bus 0000:00: root bus resource [io 0x0000]
[ 2.778299] pci_bus 0000:00: root bus resource [??? 0x00000000 flags 0x0]
[ 2.785031] pci_bus 0000:00: No busn resource found for root bus, will use [bus 00-ff]
[ 2.792922] pci 0000:00:11.0: [1814:0201] type 00 class 0x028000
[ 2.792952] pci 0000:00:11.0: reg 0x10: [mem 0xffffe000-0xffffffff]
[ 2.793173] pci_bus 0000:00: busn_res: [bus 00-ff] end is updated to 00
[ 2.793201] pci 0000:00:11.0: BAR 0: assigned [mem 0x10000000-0x10001fff]
[ 2.799894] pci 0000:00:11.0: using irq 40 for pin 1Czy ten objaw może mieć związek z tym:
https://dev.openwrt.org/ticket/7759
CC 15.05, sterownik rt2500pci;
nie można się połączyć w trybie AP:
Fri Oct 9 13:08:55 2015 daemon.notice hostapd: wlan1: STA 4c:80:93:5d:78:3e IEEE 802.11: did not acknowledge authentication responsez zabezpieczeniami jak i bez.
W trybie klienta też nie:
[20771.990000] wlan1: authenticate with 12:e6:fc:98:6b:86
[20772.030000] wlan1: direct probe to 12:e6:fc:98:6b:86 (try 1/3)
[20772.240000] wlan1: direct probe to 12:e6:fc:98:6b:86 (try 2/3)
[20772.450000] wlan1: direct probe to 12:e6:fc:98:6b:86 (try 3/3)
[20772.660000] wlan1: authentication with 12:e6:fc:98:6b:86 timed out /etc/config/wireless
config wifi-device 'radio0'
option type 'mac80211'
option hwmode '11g'
option path 'pci0000:00/0000:00:12.0'
option country 'PL'
option txpower '20'
option disabled '0'
option channel '2'
config wifi-iface
option device 'radio0'
option ssid 'Wifi'
option mode 'ap'
option network 'lan'
option encryption 'none'Czegoś brakuje?
eko.one.pl → Posty przez gotcha0
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