stellio: define the GL-AR750 / GL-AR750-5 Wi-Fi networks the radios reference
6d06356 pointed wlan0/wlan1 at these SSIDs but wifi.networks still only
declared WhiteHouse, so hostapd evaluation failed on a null network. One
SSID per band on lan, named like the GL-AR750 being replaced; passphrases
come from the wifi-GL-AR750-passphrase / wifi-GL-AR750-5-passphrase prompts.
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+10
-7
@@ -52,16 +52,19 @@ in
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};
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};
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stagingPort = "lan5";
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stagingPort = "lan5";
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# Both MT7976 radios broadcast the site SSID (same name and passphrase
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# Both MT7976 radios serve lan as an untagged access port, one SSID per
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# as the liminix router's "WhiteHouse"/"WhiteHouse-5", merged into one
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# band named like the GL-AR750 it stands in for ("GL-AR750" on 2.4 GHz,
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# dual-band SSID) as an untagged access port on lan. Passphrase is the
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# "GL-AR750-5" on 5 GHz) so clients roam over unchanged. Passphrases
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# `wifi-WhiteHouse-passphrase` vars prompt. Channels as on the old
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# are the `wifi-GL-AR750-passphrase` / `wifi-GL-AR750-5-passphrase`
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# router. Check the band mapping with `iw phy` (mt7986: phy0/wlan0 =
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# vars prompts. Channels as on the old router. Check the band mapping
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# 2.4 GHz, phy1/wlan1 = 5 GHz).
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# with `iw phy` (mt7986: phy0/wlan0 = 2.4 GHz, phy1/wlan1 = 5 GHz).
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wifi = {
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wifi = {
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enable = true;
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enable = true;
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countryCode = "TH";
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countryCode = "TH";
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networks.WhiteHouse.vlan = "lan";
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networks = {
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"GL-AR750".vlan = "lan";
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"GL-AR750-5".vlan = "lan";
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};
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radios = {
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radios = {
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wlan0 = {
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wlan0 = {
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band = "2g";
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band = "2g";
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