testów już nie zrobię bo zwróciłem The GL-MT6000
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eko.one.pl → Posty przez bulgar71
testów już nie zrobię bo zwróciłem The GL-MT6000
laptop Intel(R) Wi-Fi 6 AX201 160MHz sterownik 23.90.0.2
Windows 10 Pro
wczoraj testowałem
wzrost w speedteście, który nie przekracza 520 Mbps, z tymi wszystkimi bajerami
dodatkowo potwierdzam:
"updated but now lost wifi connection, not first time it happens, needed to reset it last time, dunno why this happens."
tak
Dla stojących przed wyborem zakupu ww. routerów.
Porównując te dwa routery z całą pewnością mogę stwierdzić, że Asus ma lepszy zasięg i możliwości uzyskiwania większych prędkość WIFI.
Stosując te same wartości w konfiguracji obu routerów na wersji snapshot w warunkach domowych Asus wypada zdecydowanie lepiej
dla porównania
na wifi 5GHz (WLAN Hardware MT7986AV, MT7976DA) w speedteście Download oscylował w granicach 750 - 800 Mbps natomiast Upload 550-650 Mbps.
Flint 2 (2.4GHz: MT7976GN 4T4R, 5GHz: MT7976AN 4T4R) to marne 380 -480 Mbps, co jest mocno poniżej moich oczekiwań.
W takim przypadku jedyna różnica to pamięć RAM na korzyść flint 2.
Mam do sprzedania używany kilka miesięcy ASUS TUF AX 6000 oczywiście z openwrt.
Sprzedaje bo kupiłem GL.iNet GL-MT6000
jest jeszcze Asus TUF AX6000
Witam,
chciałbym poruszyć temat skalowania procesora 4 rdzeniowego w routerze ASUS TUF AX6000, czy jest w ogóle taka możliwość?
stosowałem taki zabieg na routerze r7800 (2 rdzeniowym ) i było ok.
pytanie czy na CPU MT7986 taktowanym na 2000 MHz można coś zmienić?
/etc$ cat /proc/cpuinfo
processor : 0
BogoMIPS : 26.00
Features : fp asimd evtstrm aes pmull sha1 sha2 crc32 cpuid
CPU implementer : 0x41
CPU architecture: 8
CPU variant : 0x0
CPU part : 0xd03
CPU revision : 4
processor : 1
BogoMIPS : 26.00
Features : fp asimd evtstrm aes pmull sha1 sha2 crc32 cpuid
CPU implementer : 0x41
CPU architecture: 8
CPU variant : 0x0
CPU part : 0xd03
CPU revision : 4
processor : 2
BogoMIPS : 26.00
Features : fp asimd evtstrm aes pmull sha1 sha2 crc32 cpuid
CPU implementer : 0x41
CPU architecture: 8
CPU variant : 0x0
CPU part : 0xd03
CPU revision : 4
processor : 3
BogoMIPS : 26.00
Features : fp asimd evtstrm aes pmull sha1 sha2 crc32 cpuid
CPU implementer : 0x41
CPU architecture: 8
CPU variant : 0x0
CPU part : 0xd03
CPU revision : 4
dla uzupełnienia info jak wgrać obraz z firmware asus-a
https://forum.openwrt.org/t/asus-tuf-ga … 163002/714
jak robisz upgrade to najlepiej na "czysto" bez zachowania obecnej konfiguracji
wtedy wszystko od nowa będziesz musiał poustawiać (ewentualnie zrobić kopię wrażliwych plików konfiguracyjnych)
Terminal Upgrade Process
If you don't have a GUI (LuCI) available, you can alternatively upgrade via the command line. There are two command line methods for upgrading:
sysupgrade
mtd
Note: It is important that you put the firmware image into the RAM disk (/tmp) before you start flashing.
Sysupgrade
Login as root via SSH on 192.168.1.1, then enter the following commands:
cd /tmp
wget https://downloads.openwrt.org/snapshots … pgrade.bin
sysupgrade /tmp/asus_tuf-ax6000-squashfs-sysupgrade.bin
musisz pobrać obraz systemu i zrobić to albo przez konsolę lub web luci
nadmienię, że problem z wifi '5g' występuje na wyższych kanałach w paśmie 160 MHz
bez względu czy ustawię country na PL, US, PA...
/etc/config$ iw list
Wiphy phy1
wiphy index: 1
max # scan SSIDs: 4
max scan IEs length: 2190 bytes
max # sched scan SSIDs: 0
max # match sets: 0
Retry short limit: 7
Retry long limit: 4
Coverage class: 0 (up to 0m)
Device supports RSN-IBSS.
Device supports AP-side u-APSD.
Device supports T-DLS.
Supported Ciphers:
* WEP40 (00-0f-ac:1)
* WEP104 (00-0f-ac:5)
* TKIP (00-0f-ac:2)
* CCMP-128 (00-0f-ac:4)
* CCMP-256 (00-0f-ac:10)
* GCMP-128 (00-0f-ac:8)
* GCMP-256 (00-0f-ac:9)
* CMAC (00-0f-ac:6)
* CMAC-256 (00-0f-ac:13)
* GMAC-128 (00-0f-ac:11)
* GMAC-256 (00-0f-ac:12)
Available Antennas: TX 0xf RX 0xf
Configured Antennas: TX 0xf RX 0xf
Supported interface modes:
* IBSS
* managed
* AP
* AP/VLAN
* monitor
* mesh point
* P2P-client
* P2P-GO
Band 2:
Capabilities: 0x9ff
RX LDPC
HT20/HT40
SM Power Save disabled
RX Greenfield
RX HT20 SGI
RX HT40 SGI
TX STBC
RX STBC 1-stream
Max AMSDU length: 7935 bytes
No DSSS/CCK HT40
Maximum RX AMPDU length 65535 bytes (exponent: 0x003)
Minimum RX AMPDU time spacing: 2 usec (0x04)
HT TX/RX MCS rate indexes supported: 0-31
VHT Capabilities (0x339b79f6):
Max MPDU length: 11454
Supported Channel Width: 160 MHz
RX LDPC
short GI (80 MHz)
short GI (160/80+80 MHz)
TX STBC
SU Beamformer
SU Beamformee
MU Beamformer
MU Beamformee
RX antenna pattern consistency
TX antenna pattern consistency
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: not supported
6 streams: not supported
7 streams: not supported
8 streams: not supported
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: not supported
6 streams: not supported
7 streams: not supported
8 streams: not supported
VHT TX highest supported: 0 Mbps
VHT extended NSS: supported
HE Iftypes: managed
HE MAC Capabilities (0x08011a000040):
+HTC HE Supported
Trigger Frame MAC Padding Duration: 2
OM Control
Maximum A-MPDU Length Exponent: 3
A-MSDU in A-MPDU
HE PHY Capabilities: (0x4c70ce926d1bf3164e3f00):
HE40/HE80/5GHz
HE160/5GHz
242 tone RUs/5GHz
Device Class: 1
LDPC Coding in Payload
HE SU PPDU with 1x HE-LTF and 0.8us GI
NDP with 4x HE-LTF and 3.2us GI
STBC Tx <= 80MHz
STBC Rx <= 80MHz
Full Bandwidth UL MU-MIMO
Partial Bandwidth UL MU-MIMO
DCM Max Constellation: 2
DCM Max Constellation Rx: 2
SU Beamformer
SU Beamformee
Beamformee STS <= 80Mhz: 3
Beamformee STS > 80Mhz: 3
Sounding Dimensions <= 80Mhz: 3
Sounding Dimensions > 80Mhz: 3
Codebook Size SU Feedback
Codebook Size MU Feedback
Triggered CQI Feedback
Partial Bandwidth Extended Range
Partial Bandwidth DL MU-MIMO
PPE Threshold Present
Power Boost Factor ar
HE SU PPDU & HE PPDU 4x HE-LTF 0.8us GI
Max NC: 2
20MHz in 40MHz HE PPDU 2.4GHz
20MHz in 160/80+80MHz HE PPDU
80MHz in 160/80+80MHz HE PPDU
DCM Max BW: 1
Longer Than 16HE SIG-B OFDM Symbols
Non-Triggered CQI Feedback
TX 1024-QAM
RX 1024-QAM
RX Full BW SU Using HE MU PPDU with Compression SIGB
RX Full BW SU Using HE MU PPDU with Non-Compression SIGB
HE RX MCS and NSS set <= 80 MHz
1 streams: MCS 0-11
2 streams: MCS 0-11
3 streams: MCS 0-11
4 streams: MCS 0-11
5 streams: not supported
6 streams: not supported
7 streams: not supported
8 streams: not supported
HE TX MCS and NSS set <= 80 MHz
1 streams: MCS 0-11
2 streams: MCS 0-11
3 streams: MCS 0-11
4 streams: MCS 0-11
5 streams: not supported
6 streams: not supported
7 streams: not supported
8 streams: not supported
HE RX MCS and NSS set 160 MHz
1 streams: MCS 0-11
2 streams: MCS 0-11
3 streams: MCS 0-11
4 streams: MCS 0-11
5 streams: not supported
6 streams: not supported
7 streams: not supported
8 streams: not supported
HE TX MCS and NSS set 160 MHz
1 streams: MCS 0-11
2 streams: MCS 0-11
3 streams: MCS 0-11
4 streams: MCS 0-11
5 streams: not supported
6 streams: not supported
7 streams: not supported
8 streams: not supported
PPE Threshold 0x3b 0x1c 0xc7 0x71 0x1c 0xc7 0x71 0x1c 0xc7 0x71
HE Iftypes: AP
HE MAC Capabilities (0x00051a081044):
+HTC HE Supported
TWT Responder
BSR
OM Control
Maximum A-MPDU Length Exponent: 3
BQR
A-MSDU in A-MPDU
OM Control UL MU Data Disable RX
HE PHY Capabilities: (0x0c20ce926f1bafd0000c00):
HE40/HE80/5GHz
HE160/5GHz
LDPC Coding in Payload
NDP with 4x HE-LTF and 3.2us GI
STBC Tx <= 80MHz
STBC Rx <= 80MHz
Full Bandwidth UL MU-MIMO
Partial Bandwidth UL MU-MIMO
DCM Max Constellation: 2
DCM Max Constellation Rx: 2
SU Beamformer
SU Beamformee
MU Beamformer
Beamformee STS <= 80Mhz: 3
Beamformee STS > 80Mhz: 3
Sounding Dimensions <= 80Mhz: 3
Sounding Dimensions > 80Mhz: 3
Codebook Size SU Feedback
Codebook Size MU Feedback
Triggered SU Beamforming Feedback
Triggered MU Beamforming Feedback
Partial Bandwidth Extended Range
PPE Threshold Present
Max NC: 2
STBC Tx > 80MHz
STBC Rx > 80MHz
TX 1024-QAM
RX 1024-QAM
HE RX MCS and NSS set <= 80 MHz
1 streams: MCS 0-11
2 streams: MCS 0-11
3 streams: MCS 0-11
4 streams: MCS 0-11
5 streams: not supported
6 streams: not supported
7 streams: not supported
8 streams: not supported
HE TX MCS and NSS set <= 80 MHz
1 streams: MCS 0-11
2 streams: MCS 0-11
3 streams: MCS 0-11
4 streams: MCS 0-11
5 streams: not supported
6 streams: not supported
7 streams: not supported
8 streams: not supported
HE RX MCS and NSS set 160 MHz
1 streams: MCS 0-11
2 streams: MCS 0-11
3 streams: MCS 0-11
4 streams: MCS 0-11
5 streams: not supported
6 streams: not supported
7 streams: not supported
8 streams: not supported
HE TX MCS and NSS set 160 MHz
1 streams: MCS 0-11
2 streams: MCS 0-11
3 streams: MCS 0-11
4 streams: MCS 0-11
5 streams: not supported
6 streams: not supported
7 streams: not supported
8 streams: not supported
PPE Threshold 0x3b 0x1c 0xc7 0x71 0x1c 0xc7 0x71 0x1c 0xc7 0x71
HE Iftypes: mesh point
HE MAC Capabilities (0x00011a000040):
+HTC HE Supported
OM Control
Maximum A-MPDU Length Exponent: 3
A-MSDU in A-MPDU
HE PHY Capabilities: (0x0c200c0000000000008000):
HE40/HE80/5GHz
HE160/5GHz
LDPC Coding in Payload
STBC Tx <= 80MHz
STBC Rx <= 80MHz
HE RX MCS and NSS set <= 80 MHz
1 streams: MCS 0-11
2 streams: MCS 0-11
3 streams: MCS 0-11
4 streams: MCS 0-11
5 streams: not supported
6 streams: not supported
7 streams: not supported
8 streams: not supported
HE TX MCS and NSS set <= 80 MHz
1 streams: MCS 0-11
2 streams: MCS 0-11
3 streams: MCS 0-11
4 streams: MCS 0-11
5 streams: not supported
6 streams: not supported
7 streams: not supported
8 streams: not supported
HE RX MCS and NSS set 160 MHz
1 streams: MCS 0-11
2 streams: MCS 0-11
3 streams: MCS 0-11
4 streams: MCS 0-11
5 streams: not supported
6 streams: not supported
7 streams: not supported
8 streams: not supported
HE TX MCS and NSS set 160 MHz
1 streams: MCS 0-11
2 streams: MCS 0-11
3 streams: MCS 0-11
4 streams: MCS 0-11
5 streams: not supported
6 streams: not supported
7 streams: not supported
8 streams: not supported
Bitrates (non-HT):
* 6.0 Mbps
* 9.0 Mbps
* 12.0 Mbps
* 18.0 Mbps
* 24.0 Mbps
* 36.0 Mbps
* 48.0 Mbps
* 54.0 Mbps
Frequencies:
* 5180.0 MHz [36] (32.0 dBm)
* 5200.0 MHz [40] (32.0 dBm)
* 5220.0 MHz [44] (32.0 dBm)
* 5240.0 MHz [48] (32.0 dBm)
* 5260.0 MHz [52] (30.0 dBm)
* 5280.0 MHz [56] (30.0 dBm)
* 5300.0 MHz [60] (30.0 dBm)
* 5320.0 MHz [64] (30.0 dBm)
* 5500.0 MHz [100] (30.0 dBm)
* 5520.0 MHz [104] (30.0 dBm)
* 5540.0 MHz [108] (30.0 dBm)
* 5560.0 MHz [112] (30.0 dBm)
* 5580.0 MHz [116] (30.0 dBm)
* 5600.0 MHz [120] (30.0 dBm)
* 5620.0 MHz [124] (30.0 dBm)
* 5640.0 MHz [128] (30.0 dBm)
* 5660.0 MHz [132] (30.0 dBm)
* 5680.0 MHz [136] (30.0 dBm)
* 5700.0 MHz [140] (30.0 dBm)
* 5720.0 MHz [144] (30.0 dBm)
* 5745.0 MHz [149] (32.0 dBm)
* 5765.0 MHz [153] (32.0 dBm)
* 5785.0 MHz [157] (32.0 dBm)
* 5805.0 MHz [161] (32.0 dBm)
* 5825.0 MHz [165] (32.0 dBm)
* 5845.0 MHz [169] (disabled)
* 5865.0 MHz [173] (disabled)
* 5885.0 MHz [177] (disabled)
Supported commands:
* new_interface
* set_interface
* new_key
* start_ap
* new_station
* new_mpath
* set_mesh_config
* set_bss
* authenticate
* associate
* deauthenticate
* disassociate
* join_ibss
* join_mesh
* remain_on_channel
* set_tx_bitrate_mask
* frame
* frame_wait_cancel
* set_wiphy_netns
* set_channel
* tdls_mgmt
* tdls_oper
* probe_client
* set_noack_map
* register_beacons
* start_p2p_device
* set_mcast_rate
* connect
* disconnect
* channel_switch
* set_qos_map
* set_multicast_to_unicast
* set_sar_specs
software interface modes (can always be added):
* AP/VLAN
* monitor
valid interface combinations:
* #{ IBSS } <= 1, #{ AP, mesh point } <= 16, #{ managed } <= 19,
total <= 19, #channels <= 1, STA/AP BI must match, 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
Device supports TX status socket option.
Device supports HT-IBSS.
Device supports SAE with AUTHENTICATE command
Device supports low priority scan.
Device supports scan flush.
Device supports AP scan.
Device supports per-vif TX power setting
Driver supports full state transitions for AP/GO clients
Driver supports a userspace MPM
Device supports active monitor (which will ACK incoming frames)
Driver/device bandwidth changes during BSS lifetime (AP/GO mode)
Device supports configuring vdev MAC-addr on create.
max # scan plans: 1
max scan plan interval: -1
max scan plan iterations: 0
Supported TX frame types:
* IBSS: 0x00 0x10 0x20 0x30 0x40 0x50 0x60 0x70 0x80 0x90 0xa0 0xb0 0xc0 0xd0 0xe0 0xf0
* managed: 0x00 0x10 0x20 0x30 0x40 0x50 0x60 0x70 0x80 0x90 0xa0 0xb0 0xc0 0xd0 0xe0 0xf0
* AP: 0x00 0x10 0x20 0x30 0x40 0x50 0x60 0x70 0x80 0x90 0xa0 0xb0 0xc0 0xd0 0xe0 0xf0
* AP/VLAN: 0x00 0x10 0x20 0x30 0x40 0x50 0x60 0x70 0x80 0x90 0xa0 0xb0 0xc0 0xd0 0xe0 0xf0
* mesh point: 0x00 0x10 0x20 0x30 0x40 0x50 0x60 0x70 0x80 0x90 0xa0 0xb0 0xc0 0xd0 0xe0 0xf0
* P2P-client: 0x00 0x10 0x20 0x30 0x40 0x50 0x60 0x70 0x80 0x90 0xa0 0xb0 0xc0 0xd0 0xe0 0xf0
* P2P-GO: 0x00 0x10 0x20 0x30 0x40 0x50 0x60 0x70 0x80 0x90 0xa0 0xb0 0xc0 0xd0 0xe0 0xf0
* P2P-device: 0x00 0x10 0x20 0x30 0x40 0x50 0x60 0x70 0x80 0x90 0xa0 0xb0 0xc0 0xd0 0xe0 0xf0
Supported RX frame types:
* IBSS: 0x40 0xb0 0xc0 0xd0
* managed: 0x40 0xb0 0xd0
* AP: 0x00 0x20 0x40 0xa0 0xb0 0xc0 0xd0
* AP/VLAN: 0x00 0x20 0x40 0xa0 0xb0 0xc0 0xd0
* mesh point: 0xb0 0xc0 0xd0
* P2P-client: 0x40 0xd0
* P2P-GO: 0x00 0x20 0x40 0xa0 0xb0 0xc0 0xd0
* P2P-device: 0x40 0xd0
Supported extended features:
* [ VHT_IBSS ]: VHT-IBSS
* [ RRM ]: RRM
* [ BEACON_RATE_LEGACY ]: legacy beacon rate setting
* [ BEACON_RATE_HT ]: HT beacon rate setting
* [ BEACON_RATE_VHT ]: VHT beacon rate setting
* [ FILS_STA ]: STA FILS (Fast Initial Link Setup)
* [ CQM_RSSI_LIST ]: multiple CQM_RSSI_THOLD records
* [ CONTROL_PORT_OVER_NL80211 ]: control port over nl80211
* [ ACK_SIGNAL_SUPPORT ]: ack signal level support
* [ TXQS ]: FQ-CoDel-enabled intermediate TXQs
* [ SCAN_RANDOM_SN ]: use random sequence numbers in scans
* [ SCAN_MIN_PREQ_CONTENT ]: use probe request with only rate IEs in scans
* [ CAN_REPLACE_PTK0 ]: can safely replace PTK 0 when rekeying
* [ AIRTIME_FAIRNESS ]: airtime fairness scheduling
* [ STA_TX_PWR ]: TX power control per station
* [ AQL ]: Airtime Queue Limits (AQL)
* [ CONTROL_PORT_NO_PREAUTH ]: disable pre-auth over nl80211 control port support
* [ DEL_IBSS_STA ]: deletion of IBSS station support
* [ SCAN_FREQ_KHZ ]: scan on kHz frequency support
* [ CONTROL_PORT_OVER_NL80211_TX_STATUS ]: tx status for nl80211 control port support
* [ FILS_DISCOVERY ]: FILS discovery frame transmission support
* [ UNSOL_BCAST_PROBE_RESP ]: unsolicated broadcast probe response transmission support
* [ BEACON_RATE_HE ]: HE beacon rate support (AP/mesh)
* [ BSS_COLOR ]: BSS coloring support
* [ RADAR_BACKGROUND ]: Radar background support
* [ POWERED_ADDR_CHANGE ]: can change MAC address while up
Wiphy phy0
wiphy index: 0
max # scan SSIDs: 4
max scan IEs length: 2200 bytes
max # sched scan SSIDs: 0
max # match sets: 0
Retry short limit: 7
Retry long limit: 4
Coverage class: 0 (up to 0m)
Device supports RSN-IBSS.
Device supports AP-side u-APSD.
Device supports T-DLS.
Supported Ciphers:
* WEP40 (00-0f-ac:1)
* WEP104 (00-0f-ac:5)
* TKIP (00-0f-ac:2)
* CCMP-128 (00-0f-ac:4)
* CCMP-256 (00-0f-ac:10)
* GCMP-128 (00-0f-ac:8)
* GCMP-256 (00-0f-ac:9)
* CMAC (00-0f-ac:6)
* CMAC-256 (00-0f-ac:13)
* GMAC-128 (00-0f-ac:11)
* GMAC-256 (00-0f-ac:12)
Available Antennas: TX 0xf RX 0xf
Configured Antennas: TX 0xf RX 0xf
Supported interface modes:
* IBSS
* managed
* AP
* AP/VLAN
* monitor
* mesh point
* P2P-client
* P2P-GO
Band 1:
Capabilities: 0x9ff
RX LDPC
HT20/HT40
SM Power Save disabled
RX Greenfield
RX HT20 SGI
RX HT40 SGI
TX STBC
RX STBC 1-stream
Max AMSDU length: 7935 bytes
No DSSS/CCK HT40
Maximum RX AMPDU length 65535 bytes (exponent: 0x003)
Minimum RX AMPDU time spacing: 2 usec (0x04)
HT TX/RX MCS rate indexes supported: 0-31
HE Iftypes: managed
HE MAC Capabilities (0x08011a000040):
+HTC HE Supported
Trigger Frame MAC Padding Duration: 2
OM Control
Maximum A-MPDU Length Exponent: 3
A-MSDU in A-MPDU
HE PHY Capabilities: (0x2270ce926d1bf3164e3f00):
HE40/2.4GHz
242 tone RUs/2.4GHz
Device Class: 1
LDPC Coding in Payload
HE SU PPDU with 1x HE-LTF and 0.8us GI
NDP with 4x HE-LTF and 3.2us GI
STBC Tx <= 80MHz
STBC Rx <= 80MHz
Full Bandwidth UL MU-MIMO
Partial Bandwidth UL MU-MIMO
DCM Max Constellation: 2
DCM Max Constellation Rx: 2
SU Beamformer
SU Beamformee
Beamformee STS <= 80Mhz: 3
Beamformee STS > 80Mhz: 3
Sounding Dimensions <= 80Mhz: 3
Sounding Dimensions > 80Mhz: 3
Codebook Size SU Feedback
Codebook Size MU Feedback
Triggered CQI Feedback
Partial Bandwidth Extended Range
Partial Bandwidth DL MU-MIMO
PPE Threshold Present
Power Boost Factor ar
HE SU PPDU & HE PPDU 4x HE-LTF 0.8us GI
Max NC: 2
20MHz in 40MHz HE PPDU 2.4GHz
20MHz in 160/80+80MHz HE PPDU
80MHz in 160/80+80MHz HE PPDU
DCM Max BW: 1
Longer Than 16HE SIG-B OFDM Symbols
Non-Triggered CQI Feedback
TX 1024-QAM
RX 1024-QAM
RX Full BW SU Using HE MU PPDU with Compression SIGB
RX Full BW SU Using HE MU PPDU with Non-Compression SIGB
HE RX MCS and NSS set <= 80 MHz
1 streams: MCS 0-11
2 streams: MCS 0-11
3 streams: MCS 0-11
4 streams: MCS 0-11
5 streams: not supported
6 streams: not supported
7 streams: not supported
8 streams: not supported
HE TX MCS and NSS set <= 80 MHz
1 streams: MCS 0-11
2 streams: MCS 0-11
3 streams: MCS 0-11
4 streams: MCS 0-11
5 streams: not supported
6 streams: not supported
7 streams: not supported
8 streams: not supported
PPE Threshold 0x3b 0x1c 0xc7 0x71 0x1c 0xc7 0x71 0x1c 0xc7 0x71
HE Iftypes: AP
HE MAC Capabilities (0x00051a081044):
+HTC HE Supported
TWT Responder
BSR
OM Control
Maximum A-MPDU Length Exponent: 3
BQR
A-MSDU in A-MPDU
OM Control UL MU Data Disable RX
HE PHY Capabilities: (0x0220ce926f1bafd0000c00):
HE40/2.4GHz
LDPC Coding in Payload
NDP with 4x HE-LTF and 3.2us GI
STBC Tx <= 80MHz
STBC Rx <= 80MHz
Full Bandwidth UL MU-MIMO
Partial Bandwidth UL MU-MIMO
DCM Max Constellation: 2
DCM Max Constellation Rx: 2
SU Beamformer
SU Beamformee
MU Beamformer
Beamformee STS <= 80Mhz: 3
Beamformee STS > 80Mhz: 3
Sounding Dimensions <= 80Mhz: 3
Sounding Dimensions > 80Mhz: 3
Codebook Size SU Feedback
Codebook Size MU Feedback
Triggered SU Beamforming Feedback
Triggered MU Beamforming Feedback
Partial Bandwidth Extended Range
PPE Threshold Present
Max NC: 2
STBC Tx > 80MHz
STBC Rx > 80MHz
TX 1024-QAM
RX 1024-QAM
HE RX MCS and NSS set <= 80 MHz
1 streams: MCS 0-11
2 streams: MCS 0-11
3 streams: MCS 0-11
4 streams: MCS 0-11
5 streams: not supported
6 streams: not supported
7 streams: not supported
8 streams: not supported
HE TX MCS and NSS set <= 80 MHz
1 streams: MCS 0-11
2 streams: MCS 0-11
3 streams: MCS 0-11
4 streams: MCS 0-11
5 streams: not supported
6 streams: not supported
7 streams: not supported
8 streams: not supported
PPE Threshold 0x3b 0x1c 0xc7 0x71 0x1c 0xc7 0x71 0x1c 0xc7 0x71
HE Iftypes: mesh point
HE MAC Capabilities (0x00011a000040):
+HTC HE Supported
OM Control
Maximum A-MPDU Length Exponent: 3
A-MSDU in A-MPDU
HE PHY Capabilities: (0x02200c0000000000008000):
HE40/2.4GHz
LDPC Coding in Payload
STBC Tx <= 80MHz
STBC Rx <= 80MHz
HE RX MCS and NSS set <= 80 MHz
1 streams: MCS 0-11
2 streams: MCS 0-11
3 streams: MCS 0-11
4 streams: MCS 0-11
5 streams: not supported
6 streams: not supported
7 streams: not supported
8 streams: not supported
HE TX MCS and NSS set <= 80 MHz
1 streams: MCS 0-11
2 streams: MCS 0-11
3 streams: MCS 0-11
4 streams: MCS 0-11
5 streams: not supported
6 streams: not supported
7 streams: not supported
8 streams: not supported
Bitrates (non-HT):
* 1.0 Mbps (short preamble supported)
* 2.0 Mbps (short preamble supported)
* 5.5 Mbps (short preamble supported)
* 11.0 Mbps (short preamble supported)
* 6.0 Mbps
* 9.0 Mbps
* 12.0 Mbps
* 18.0 Mbps
* 24.0 Mbps
* 36.0 Mbps
* 48.0 Mbps
* 54.0 Mbps
Frequencies:
* 2412.0 MHz [1] (34.0 dBm)
* 2417.0 MHz [2] (34.0 dBm)
* 2422.0 MHz [3] (34.0 dBm)
* 2427.0 MHz [4] (34.0 dBm)
* 2432.0 MHz [5] (34.0 dBm)
* 2437.0 MHz [6] (34.0 dBm)
* 2442.0 MHz [7] (34.0 dBm)
* 2447.0 MHz [8] (34.0 dBm)
* 2452.0 MHz [9] (34.0 dBm)
* 2457.0 MHz [10] (34.0 dBm)
* 2462.0 MHz [11] (34.0 dBm)
* 2467.0 MHz [12] (34.0 dBm)
* 2472.0 MHz [13] (34.0 dBm)
* 2484.0 MHz [14] (disabled)
Supported commands:
* new_interface
* set_interface
* new_key
* start_ap
* new_station
* new_mpath
* set_mesh_config
* set_bss
* authenticate
* associate
* deauthenticate
* disassociate
* join_ibss
* join_mesh
* remain_on_channel
* set_tx_bitrate_mask
* frame
* frame_wait_cancel
* set_wiphy_netns
* set_channel
* tdls_mgmt
* tdls_oper
* probe_client
* set_noack_map
* register_beacons
* start_p2p_device
* set_mcast_rate
* connect
* disconnect
* channel_switch
* set_qos_map
* set_multicast_to_unicast
* set_sar_specs
software interface modes (can always be added):
* AP/VLAN
* monitor
valid interface combinations:
* #{ IBSS } <= 1, #{ AP, mesh point } <= 16, #{ managed } <= 19,
total <= 19, #channels <= 1, STA/AP BI must match, 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
Device supports TX status socket option.
Device supports HT-IBSS.
Device supports SAE with AUTHENTICATE command
Device supports low priority scan.
Device supports scan flush.
Device supports AP scan.
Device supports per-vif TX power setting
Driver supports full state transitions for AP/GO clients
Driver supports a userspace MPM
Device supports active monitor (which will ACK incoming frames)
Driver/device bandwidth changes during BSS lifetime (AP/GO mode)
Device supports configuring vdev MAC-addr on create.
max # scan plans: 1
max scan plan interval: -1
max scan plan iterations: 0
Supported TX frame types:
* IBSS: 0x00 0x10 0x20 0x30 0x40 0x50 0x60 0x70 0x80 0x90 0xa0 0xb0 0xc0 0xd0 0xe0 0xf0
* managed: 0x00 0x10 0x20 0x30 0x40 0x50 0x60 0x70 0x80 0x90 0xa0 0xb0 0xc0 0xd0 0xe0 0xf0
* AP: 0x00 0x10 0x20 0x30 0x40 0x50 0x60 0x70 0x80 0x90 0xa0 0xb0 0xc0 0xd0 0xe0 0xf0
* AP/VLAN: 0x00 0x10 0x20 0x30 0x40 0x50 0x60 0x70 0x80 0x90 0xa0 0xb0 0xc0 0xd0 0xe0 0xf0
* mesh point: 0x00 0x10 0x20 0x30 0x40 0x50 0x60 0x70 0x80 0x90 0xa0 0xb0 0xc0 0xd0 0xe0 0xf0
* P2P-client: 0x00 0x10 0x20 0x30 0x40 0x50 0x60 0x70 0x80 0x90 0xa0 0xb0 0xc0 0xd0 0xe0 0xf0
* P2P-GO: 0x00 0x10 0x20 0x30 0x40 0x50 0x60 0x70 0x80 0x90 0xa0 0xb0 0xc0 0xd0 0xe0 0xf0
* P2P-device: 0x00 0x10 0x20 0x30 0x40 0x50 0x60 0x70 0x80 0x90 0xa0 0xb0 0xc0 0xd0 0xe0 0xf0
Supported RX frame types:
* IBSS: 0x40 0xb0 0xc0 0xd0
* managed: 0x40 0xb0 0xd0
* AP: 0x00 0x20 0x40 0xa0 0xb0 0xc0 0xd0
* AP/VLAN: 0x00 0x20 0x40 0xa0 0xb0 0xc0 0xd0
* mesh point: 0xb0 0xc0 0xd0
* P2P-client: 0x40 0xd0
* P2P-GO: 0x00 0x20 0x40 0xa0 0xb0 0xc0 0xd0
* P2P-device: 0x40 0xd0
Supported extended features:
* [ VHT_IBSS ]: VHT-IBSS
* [ RRM ]: RRM
* [ BEACON_RATE_LEGACY ]: legacy beacon rate setting
* [ BEACON_RATE_HT ]: HT beacon rate setting
* [ BEACON_RATE_VHT ]: VHT beacon rate setting
* [ FILS_STA ]: STA FILS (Fast Initial Link Setup)
* [ CQM_RSSI_LIST ]: multiple CQM_RSSI_THOLD records
* [ CONTROL_PORT_OVER_NL80211 ]: control port over nl80211
* [ ACK_SIGNAL_SUPPORT ]: ack signal level support
* [ TXQS ]: FQ-CoDel-enabled intermediate TXQs
* [ SCAN_RANDOM_SN ]: use random sequence numbers in scans
* [ SCAN_MIN_PREQ_CONTENT ]: use probe request with only rate IEs in scans
* [ CAN_REPLACE_PTK0 ]: can safely replace PTK 0 when rekeying
* [ AIRTIME_FAIRNESS ]: airtime fairness scheduling
* [ STA_TX_PWR ]: TX power control per station
* [ AQL ]: Airtime Queue Limits (AQL)
* [ CONTROL_PORT_NO_PREAUTH ]: disable pre-auth over nl80211 control port support
* [ DEL_IBSS_STA ]: deletion of IBSS station support
* [ SCAN_FREQ_KHZ ]: scan on kHz frequency support
* [ CONTROL_PORT_OVER_NL80211_TX_STATUS ]: tx status for nl80211 control port support
* [ FILS_DISCOVERY ]: FILS discovery frame transmission support
* [ UNSOL_BCAST_PROBE_RESP ]: unsolicated broadcast probe response transmission support
* [ BEACON_RATE_HE ]: HE beacon rate support (AP/mesh)
* [ BSS_COLOR ]: BSS coloring support
* [ RADAR_BACKGROUND ]: Radar background support
* [ POWERED_ADDR_CHANGE ]: can change MAC address while up
Cieszę się, że mogłem pomóc.
co do problemów z wifi to proponuje zrobić upgrade firmware lub sterowniki do radia
mt7986-wo-firmware
kmod-mt76-connac
kmod-mt76-core
kmod-mt7915e
kmod-mt7986-firmware
Wifi u mnie na poniższym configu działa..więc polecam przetestować
config wifi-device 'radio0'
option type 'mac80211'
option path 'platform/soc/18000000.wifi'
option noscan '1'
option wmm '1'
option cell_density '0'
option channel '11'
option band '2g'
option htmode 'HE40'
option disabled '0'
option country 'PA'
option txpower '20'
option itxbfen '1'
config wifi-iface 'default_radio0'
option device 'radio0'
option network 'lan111'
option mode 'ap'
option ssid 'optout'
option encryption 'psk2+tkip+ccmp'
option macfilter 'allow'
option key 'password'
option disassoc_low_ack '0'
option skip_inactivity_poll '1'
config wifi-device 'radio1'
option type 'mac80211'
option path 'platform/soc/18000000.wifi+1'
option channel '44'
option band '5g'
option htmode 'HE160'
option country 'PA'
option cell_density '0'
option txpower '20'
option he_basic_mcs_nss_set '65530'
option he_mu_beamformer '1'
option he_su_beamformer '1'
option he_su_beamformee '1'
option he_bss_color '44'
option itxbfen '1'
config wifi-iface 'default_radio1'
option device 'radio1'
option network 'lan222'
option mode 'ap'
option ssid 'WIFI_6’
option encryption 'psk2+ccmp'
option key 'passwd'
option macfilter 'allow'
option skip_inactivity_poll '1'
option disassoc_low_ack '0'
option time_zone 'CET-1CEST,M3.5.0,M10.5.0/3'
option bss_transition '1'
option multicast_to_unicast_all '1'
dzięki raz jeszcze
działa po zastosowaniu
wget --http-user=admin --http-password=12345 http://ejemplo.com/archivo.mp3
Jakiś sukces jest ale nie wiem gdzie wpsiać autentykację użytkownika
wget http://192.168.150.158:48888/Web/ALLOW.txt --no-check-certificate
--2024-09-02 21:26:15-- http://192.168.150.158:48888/Web/ALLOW.txt
Connecting to 192.168.150.158:48888... connected.
HTTP request sent, awaiting response... 401 Unauthorized
Username/Password Authentication Failed.
root@OpenWrt:~#
dzięki będę coś kombinował
mam go udostępnionego po sambie
Witajcie,
poszukuję wsparcia w sprawie pobierania jednego pliku txt, który jest w folderze backup na Qnapie.
(Router i Qnap są w różnych podsieciach z włączonym routingiem)
chcę aby ten plik był z poziomu routera pobierany raz w tygodniu według ustawień w cronie na routerze.
Pytanie czym to pobrać najlepiej przez konsolę. i jakiego protokołu użyć wget? curl? scp?
Czy macie jakiś sprawdzony patent?
dzięki za odpowiedź
Korzytająć z poprzednich wersji openwrt gdzie był iptables oraz ipset
stosowałem z powodzeniem rozwiązanie, które blokowało ruch przychodzący z określonych klas adresów ip
iptables -t mangle -I PREROUTING -i lan1 -m set --match-set ASIA src -j DROP
Obecnie jest pewna funkcjonalność w fw4 gdzie można dodać statycznie zestaw ipset
Pytanie moje jak coś takiego ustawić w fw4?
config rule
option name 'ASIA'
option src '*'
option ipset 'ASIA'
option target 'DROP'
option family 'ipv4'
list proto 'all'
config ipset
option family 'ipv4'
option name 'ASIA'
option loadfile '/etc/luci-uploads/asia.txt'
option counters '1'
option comment 'ASIA'
list match 'src_net'
list entry '192.168.200.200/24'
też tak miałem i to na wydaniu z kernelem wersji 6...
zrobiłem config wifi ponowemu tzn. odświerzyłem to co miałem
dodatkowo w ASUS TUF AX 6000 zastosowałem w
config wifi-device 'radio1'
...
option he_su_beamformee '1'
option he_bss_color '8'
oraz w /etc/modules.conf dopisałem: options mt7915e wed_enable=Y
restart i jest już ok choć wynik zawsze mógłby być lepszy bo ten model jest wstanie wyciągnąć po wifi więcej niż 700 Mbit
a przesiadłem się właśnie z R7800
eko.one.pl → Posty przez bulgar71
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