WRT3200ACM + snapshot

Hi ...

Hows the 3200acm and snapshot working now-a-days?

Thanks

Works fine.

1 Like

`k :slight_smile:

And WiFi too?

Everything is working great for me.

WiFi LEDs as well?

No. Wifi LEDs do not work. There have been no new wifi driver and nobody has figured out how to control the LEDs.

But the kernel version jump to 4.9 has gone well and the router works ok.

I've done very limited testing so far (btw, why did revision go from r3770 to r18 for mvebu snapshots), but I couldn't get radio0 to work on any channel (including auto) except 36.

I should have elaborated on the WiFi LEDs question. I meant to ask is if enabling LEDs on WiFi still kills WiFi and looks like it still does.

‎To be honest, I dont care much if the LEDs work or not. As long as I can tweak the router to do what I want as fast as it can. I could care less if they are all off. offer. Just my opinion.

Sent from my BlackBerry 10 smartphone on the Rogers network.From: StanSent: Monday, March 20, 2017 12:30 AMTo: mark.deadman@rogers.comReply To: LEDE Project ForumSubject: [LEDE Project Forum] [Installing and Using LEDE] WRT3200ACM + snapshot

stangriStan

March 20


mojolacerator:

Everything is working great for me.

WiFi LEDs as well?


Visit Topic or reply to this email to respond.


In Reply To

mojolaceratormark deadman

March 19Everything is working great for me.


Visit Topic or reply to this email to respond.

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With how wide channel? 20/40/80/160?
In many countries the DFS (radar detection) settings in the regulatory domain settings prevent using higher channels at least with 80/160 width.

width: 160. Shouldn't "auto" then be limited to supported reg domain channels only?

Also having problems configuring third radio in uci-defaults script.

Isn't "auto" limited to just that for you, if it always switches to 36 that works...

Just check with "iw list" the details and see if you have other consecutive 160 Mhz areas available (than the one starting from 36)

I can't enable 160 at all, as there is no consecutive non-DFS block available that is 160 MHz wide. And for 80 I have in practice the block starting from channel 36 or 149...

        Frequencies:
                * 5180 MHz [36] (23.0 dBm)
                * 5200 MHz [40] (23.0 dBm)
                * 5220 MHz [44] (23.0 dBm)
                * 5240 MHz [48] (23.0 dBm)
                * 5260 MHz [52] (23.0 dBm) (radar detection)
                * 5280 MHz [56] (23.0 dBm) (radar detection)
                * 5300 MHz [60] (23.0 dBm) (radar detection)
                * 5320 MHz [64] (23.0 dBm) (radar detection)
                * 5500 MHz [100] (23.0 dBm) (radar detection)
                * 5520 MHz [104] (23.0 dBm) (radar detection)
                * 5540 MHz [108] (23.0 dBm) (radar detection)
                * 5560 MHz [112] (23.0 dBm) (radar detection)
                * 5580 MHz [116] (23.0 dBm) (radar detection)
                * 5600 MHz [120] (23.0 dBm) (radar detection)
                * 5620 MHz [124] (23.0 dBm) (radar detection)
                * 5640 MHz [128] (23.0 dBm) (radar detection)
                * 5660 MHz [132] (23.0 dBm) (radar detection)
                * 5680 MHz [136] (23.0 dBm) (radar detection)
                * 5700 MHz [140] (23.0 dBm) (radar detection)
                * 5720 MHz [144] (23.0 dBm) (radar detection)
                * 5745 MHz [149] (30.0 dBm)
                * 5765 MHz [153] (30.0 dBm)
                * 5785 MHz [157] (30.0 dBm)
                * 5805 MHz [161] (30.0 dBm)

Uhm, my iw list output is pretty similar:

# iw list
Wiphy phy2
	max # scan SSIDs: 10
	max scan IEs length: 256 bytes
	max # sched scan SSIDs: 10
	max # match sets: 10
	max # scan plans: 1
	max scan plan interval: -1
	max scan plan iterations: 0
	Fragmentation threshold: 2346
	RTS threshold: 2347
	Retry short limit: 9
	Retry long limit: 4
	Coverage class: 0 (up to 0m)
	Device supports AP-side u-APSD.
	Device supports T-DLS.
	Available Antennas: TX 0x1 RX 0x1
	Configured Antennas: TX 0x1 RX 0x1
	Supported interface modes:
		 * IBSS
		 * managed
		 * AP
		 * P2P-client
		 * P2P-GO
	Band 1:
		Capabilities: 0x17f
			RX LDPC
			HT20/HT40
			SM Power Save disabled
			RX Greenfield
			RX HT20 SGI
			RX HT40 SGI
			RX STBC 1-stream
			Max AMSDU length: 3839 bytes
			No DSSS/CCK HT40
		Maximum RX AMPDU length 65535 bytes (exponent: 0x003)
		Minimum RX AMPDU time spacing: No restriction (0x00)
		HT TX/RX MCS rate indexes supported: 0-7, 32
		VHT Capabilities (0x33c07130):
			Max MPDU length: 3895
			Supported Channel Width: neither 160 nor 80+80
			RX LDPC
			short GI (80 MHz)
			SU Beamformee
			+HTC-VHT
			RX antenna pattern consistency
			TX antenna pattern consistency
		VHT RX MCS set:
			1 streams: MCS 0-9
			2 streams: not supported
			3 streams: not supported
			4 streams: not supported
			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: not supported
			3 streams: not supported
			4 streams: not supported
			5 streams: not supported
			6 streams: not supported
			7 streams: not supported
			8 streams: not supported
		VHT TX highest supported: 0 Mbps
		Frequencies:
			* 2412 MHz [1] (30.0 dBm)
			* 2417 MHz [2] (30.0 dBm)
			* 2422 MHz [3] (30.0 dBm)
			* 2427 MHz [4] (30.0 dBm)
			* 2432 MHz [5] (30.0 dBm)
			* 2437 MHz [6] (30.0 dBm)
			* 2442 MHz [7] (30.0 dBm)
			* 2447 MHz [8] (30.0 dBm)
			* 2452 MHz [9] (30.0 dBm)
			* 2457 MHz [10] (30.0 dBm)
			* 2462 MHz [11] (30.0 dBm)
			* 2467 MHz [12] (disabled)
			* 2472 MHz [13] (disabled)
			* 2484 MHz [14] (disabled)
	Band 2:
		Capabilities: 0x17f
			RX LDPC
			HT20/HT40
			SM Power Save disabled
			RX Greenfield
			RX HT20 SGI
			RX HT40 SGI
			RX STBC 1-stream
			Max AMSDU length: 3839 bytes
			No DSSS/CCK HT40
		Maximum RX AMPDU length 65535 bytes (exponent: 0x003)
		Minimum RX AMPDU time spacing: No restriction (0x00)
		HT TX/RX MCS rate indexes supported: 0-7, 32
		VHT Capabilities (0x33c07130):
			Max MPDU length: 3895
			Supported Channel Width: neither 160 nor 80+80
			RX LDPC
			short GI (80 MHz)
			SU Beamformee
			+HTC-VHT
			RX antenna pattern consistency
			TX antenna pattern consistency
		VHT RX MCS set:
			1 streams: MCS 0-9
			2 streams: not supported
			3 streams: not supported
			4 streams: not supported
			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: not supported
			3 streams: not supported
			4 streams: not supported
			5 streams: not supported
			6 streams: not supported
			7 streams: not supported
			8 streams: not supported
		VHT TX highest supported: 0 Mbps
		Frequencies:
			* 5040 MHz [8] (disabled)
			* 5060 MHz [12] (disabled)
			* 5080 MHz [16] (disabled)
			* 5170 MHz [34] (disabled)
			* 5190 MHz [38] (23.0 dBm)
			* 5210 MHz [42] (23.0 dBm)
			* 5230 MHz [46] (23.0 dBm)
			* 5180 MHz [36] (23.0 dBm)
			* 5200 MHz [40] (23.0 dBm)
			* 5220 MHz [44] (23.0 dBm)
			* 5240 MHz [48] (23.0 dBm)
			* 5260 MHz [52] (23.0 dBm) (radar detection)
			* 5280 MHz [56] (23.0 dBm) (radar detection)
			* 5300 MHz [60] (23.0 dBm) (radar detection)
			* 5320 MHz [64] (23.0 dBm) (radar detection)
			* 5500 MHz [100] (23.0 dBm) (radar detection)
			* 5520 MHz [104] (23.0 dBm) (radar detection)
			* 5540 MHz [108] (23.0 dBm) (radar detection)
			* 5560 MHz [112] (23.0 dBm) (radar detection)
			* 5580 MHz [116] (23.0 dBm) (radar detection)
			* 5600 MHz [120] (23.0 dBm) (radar detection)
			* 5620 MHz [124] (23.0 dBm) (radar detection)
			* 5640 MHz [128] (23.0 dBm) (radar detection)
			* 5660 MHz [132] (23.0 dBm) (radar detection)
			* 5680 MHz [136] (23.0 dBm) (radar detection)
			* 5700 MHz [140] (23.0 dBm) (radar detection)
			* 5745 MHz [149] (30.0 dBm)
			* 5765 MHz [153] (30.0 dBm)
			* 5785 MHz [157] (30.0 dBm)
			* 5805 MHz [161] (30.0 dBm)
			* 5825 MHz [165] (30.0 dBm)
	valid interface combinations:
		 * #{ managed, AP, P2P-client, P2P-GO } <= 3,
		   total <= 3, #channels <= 1, STA/AP BI must match, radar detect widths: { 20 MHz (no HT), 20 MHz, 40 MHz, 80 MHz }

	Coalesce support:
		 * Maximum 8 coalesce rules supported
		 * Each rule contains upto 4 patterns of 1-40 bytes,
		   maximum packet offset 100 bytes
		 * Maximum supported coalescing delay 100 msecs
Wiphy phy1
	max # scan SSIDs: 4
	max scan IEs length: 2242 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 T-DLS.
	Available Antennas: TX 0 RX 0
	Supported interface modes:
		 * managed
		 * AP
		 * AP/VLAN
		 * monitor
	Band 1:
		Capabilities: 0x106f
			RX LDPC
			HT20/HT40
			SM Power Save disabled
			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: 4 usec (0x05)
		HT TX/RX MCS rate indexes supported: 0-23, 32
		VHT Capabilities (0x33837974):
			Max MPDU length: 3895
			Supported Channel Width: 160 MHz
			RX LDPC
			short GI (80 MHz)
			short GI (160/80+80 MHz)
			SU Beamformer
			SU 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: not supported
			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: not supported
			5 streams: not supported
			6 streams: not supported
			7 streams: not supported
			8 streams: not supported
		VHT TX highest supported: 0 Mbps
		Frequencies:
			* 2412 MHz [1] (30.0 dBm)
			* 2417 MHz [2] (30.0 dBm)
			* 2422 MHz [3] (30.0 dBm)
			* 2427 MHz [4] (30.0 dBm)
			* 2432 MHz [5] (30.0 dBm)
			* 2437 MHz [6] (30.0 dBm)
			* 2442 MHz [7] (30.0 dBm)
			* 2447 MHz [8] (30.0 dBm)
			* 2452 MHz [9] (30.0 dBm)
			* 2457 MHz [10] (30.0 dBm)
			* 2462 MHz [11] (30.0 dBm)
			* 2467 MHz [12] (disabled)
			* 2472 MHz [13] (disabled)
			* 2484 MHz [14] (disabled)
	valid interface combinations:
		 * #{ AP } <= 16, #{ managed } <= 1,
		   total <= 16, #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
Wiphy phy0
	max # scan SSIDs: 4
	max scan IEs length: 2247 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 T-DLS.
	Available Antennas: TX 0 RX 0
	Supported interface modes:
		 * managed
		 * AP
		 * AP/VLAN
		 * monitor
	Band 2:
		Capabilities: 0x106f
			RX LDPC
			HT20/HT40
			SM Power Save disabled
			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: 4 usec (0x05)
		HT TX/RX MCS rate indexes supported: 0-23, 32
		VHT Capabilities (0x33837974):
			Max MPDU length: 3895
			Supported Channel Width: 160 MHz
			RX LDPC
			short GI (80 MHz)
			short GI (160/80+80 MHz)
			SU Beamformer
			SU 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: not supported
			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: not supported
			5 streams: not supported
			6 streams: not supported
			7 streams: not supported
			8 streams: not supported
		VHT TX highest supported: 0 Mbps
		Frequencies:
			* 5180 MHz [36] (23.0 dBm)
			* 5200 MHz [40] (23.0 dBm)
			* 5220 MHz [44] (23.0 dBm)
			* 5240 MHz [48] (23.0 dBm)
			* 5260 MHz [52] (23.0 dBm) (radar detection)
			* 5280 MHz [56] (23.0 dBm) (radar detection)
			* 5300 MHz [60] (23.0 dBm) (radar detection)
			* 5320 MHz [64] (23.0 dBm) (radar detection)
			* 5500 MHz [100] (23.0 dBm) (radar detection)
			* 5520 MHz [104] (23.0 dBm) (radar detection)
			* 5540 MHz [108] (23.0 dBm) (radar detection)
			* 5560 MHz [112] (23.0 dBm) (radar detection)
			* 5580 MHz [116] (23.0 dBm) (radar detection)
			* 5600 MHz [120] (23.0 dBm) (radar detection)
			* 5620 MHz [124] (23.0 dBm) (radar detection)
			* 5640 MHz [128] (23.0 dBm) (radar detection)
			* 5660 MHz [132] (23.0 dBm) (radar detection)
			* 5680 MHz [136] (23.0 dBm) (radar detection)
			* 5700 MHz [140] (23.0 dBm) (radar detection)
			* 5720 MHz [144] (23.0 dBm) (radar detection)
			* 5745 MHz [149] (30.0 dBm)
			* 5765 MHz [153] (30.0 dBm)
			* 5785 MHz [157] (30.0 dBm)
			* 5805 MHz [161] (30.0 dBm)
	valid interface combinations:
		 * #{ AP } <= 16, #{ managed } <= 1,
		   total <= 16, #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

I'm confused by it. Does that mean that I should be able to use even channels 36-48 and 149,153,157,161,165 on VHT80/VHT160 on radio2 and channels 36,40,44,48 and 149,153,157,161 on VHT80/VHT160 on radio0?

@hnyman - When you said it "works fine", I'm curious how you got the wifi issue fixed? I'm talking about these wifi issues:

https://forum.openwrt.org/viewtopic.php?pid=343566#p343566

https://github.com/kaloz/mwlwifi/issues/118

No special fix for that. Everybody is using the same wifi driver, so no differences there.

I was mostly referring to the recent kernel bump to 4.9, DTS changes, led changes etc. as those are the differences between the various source trees.

I haven't stumbled into major wifi problems, but that may be due to relatively modest wifi usage.

But let's hope that the wifi driver gets improvements via further development to fix the problems mentioned in that thread and elsewhere.