dotfiles/nixos/systems/blowhole/hostapd.nix

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{ pkgs, config,lib, ... }:
with lib;
let
in
{
# giturl="https://raw.githubusercontent.com/openwrt/openwrt/75b83e94a395fedeb4d308f42013a72c6fee2df4/package/network/services/hostapd/patches/"
# for patch in *.patch
# do
# nix-prefetch-url "$giturl$patch" 2>/dev/null | \
# sed -e 's~^~{ url = "'"$giturl$patch"'"; sha256 = "~' | sed -e 's~$~"; \}~'
# done
services.hashicorp.vault-agent.settings.template = singleton {
source = pkgs.writeText "hostapd_wpa_psk.vtmpl" ''
{{ with secret "kv/data/homelab-1/blowhole/hostapd/wpa_psk" -}}
{{ range $key, $value := .Data.data -}}
{{ with $data := $value -}}
{{ $data.mac_address }} {{ $data.psk }}
{{ end -}}
{{ end -}}
{{ end -}}
'';
destination = "/run/secrets/hostapd_wpa_psk";
};
systemd.services.hostapd.unitConfig = {
ConditionPathExists = "/run/secrets/hostapd_wpa_psk";
};
services.hostapd = {
interface = "wlp10s0";
driver = "nl80211";
ssid = "nothing";
wpa = false;
hwMode = "a";
channel = 149;
countryCode = "NL";
enable = true;
extraConfig = ''
wpa=2
wpa_psk_file=/run/secrets/hostapd_wpa_psk
ieee80211d=1
ieee80211h=1
intel_lar=1
noscan=0
beacon_int=100
channel=149
chanlist=149
tx_queue_data2_burst=2.0
ieee80211n=1
ht_coex=0
ht_capab=[HT40+][LDPC][SHORT-GI-20][SHORT-GI-40][TX-STBC][RX-STBC1][MAX-AMSDU-7935][DSSS_CCK-40]
ieee80211ac=1
vht_oper_chwidth=1
vht_oper_centr_freq_seg0_idx=155
vht_capab=[RXLDPC][SHORT-GI-80][SHORT-GI-160][TX-STBC-2BY1][SU-BEAMFORMEE][MU-BEAMFORMEE][RX-STBC-1][BF-ANTENNA-4][VHT160][MAX-MPDU-11454][MAX-A-MPDU-LEN-EXP7]
ieee80211ax=1
he_oper_chwidth=1
he_oper_centr_freq_seg0_idx=155
he_default_pe_duration=4
he_rts_threshold=1023
he_mu_edca_qos_info_param_count=0
he_mu_edca_qos_info_q_ack=0
he_mu_edca_qos_info_queue_request=0
he_mu_edca_qos_info_txop_request=0
he_mu_edca_ac_be_aifsn=8
he_mu_edca_ac_be_aci=0
he_mu_edca_ac_be_ecwmin=9
he_mu_edca_ac_be_ecwmax=10
he_mu_edca_ac_be_timer=255
he_mu_edca_ac_bk_aifsn=15
he_mu_edca_ac_bk_aci=1
he_mu_edca_ac_bk_ecwmin=9
he_mu_edca_ac_bk_ecwmax=10
he_mu_edca_ac_bk_timer=255
he_mu_edca_ac_vi_ecwmin=5
he_mu_edca_ac_vi_ecwmax=7
he_mu_edca_ac_vi_aifsn=5
he_mu_edca_ac_vi_aci=2
he_mu_edca_ac_vi_timer=255
he_mu_edca_ac_vo_aifsn=5
he_mu_edca_ac_vo_aci=3
he_mu_edca_ac_vo_ecwmin=5
he_mu_edca_ac_vo_ecwmax=7
he_mu_edca_ac_vo_timer=255
ap_isolate=1
bss_load_update_period=60
chan_util_avg_period=600
disassoc_low_ack=1
skip_inactivity_poll=0
preamble=1
wmm_enabled=1
ignore_broadcast_ssid=0
uapsd_advertisement_enabled=1
utf8_ssid=1
multi_ap=0
auth_algs=1
wpa=2
wpa_pairwise=CCMP
wpa_disable_eapol_key_retries=0
wpa_key_mgmt=WPA-PSK
okc=0
disable_pmksa_caching=1
bssid=e0:d0:45:81:50:00
# bss=wlp10s1
# ssid=nothing2
# bssid=e0:d0:45:81:50:01
# hw_mode=g
# channel=9
# vht_capab=
# ht_capab=
# auth_algs=1
# wpa=2
# wpa_pairwise=CCMP
# wpa_disable_eapol_key_retries=0
# wpa_key_mgmt=WPA-PSK
# okc=0
# disable_pmksa_caching=1
# wpa_passphrase=${config.services.hostapd.wpaPassphrase}
'';
};
nixpkgs.overlays = singleton
(final: prev:
{
hostapd = prev.hostapd.overrideAttrs (old: {
buildInputs = old.buildInputs ++ (with pkgs; [
libubox
ubus
]);
src = pkgs.fetchgit {
url = "http://w1.fi/hostap.git";
rev = "cff80b4f7d3c0a47c052e8187d671710f48939e4";
sha256 = "sha256-DQ1SiaMP3CbmPFtKKpJe9ASdal3Y5+D3cBHUauKDjGg=";
};
extraConfig = ''
# Example hostapd build time configuration
#
# This file lists the configuration options that are used when building the
# hostapd binary. All lines starting with # are ignored. Configuration option
# lines must be commented out complete, if they are not to be included, i.e.,
# just setting VARIABLE=n is not disabling that variable.
#
# This file is included in Makefile, so variables like CFLAGS and LIBS can also
# be modified from here. In most cass, these lines should use += in order not
# to override previous values of the variables.
# Driver interface for Host AP driver
#CONFIG_DRIVER_HOSTAP=y
# Driver interface for wired authenticator
CONFIG_DRIVER_WIRED=y
# Driver interface for drivers using the nl80211 kernel interface
CONFIG_DRIVER_NL80211=y
# QCA vendor extensions to nl80211
#CONFIG_DRIVER_NL80211_QCA=y
# driver_nl80211.c requires libnl. If you are compiling it yourself
# you may need to point hostapd to your version of libnl.
#
#CFLAGS += -I$<path to libnl include files>
#LIBS += -L$<path to libnl library files>
# Use libnl v2.0 (or 3.0) libraries.
#CONFIG_LIBNL20=y
# Use libnl 3.2 libraries (if this is selected, CONFIG_LIBNL20 is ignored)
#CONFIG_LIBNL32=y
# Driver interface for FreeBSD net80211 layer (e.g., Atheros driver)
#CONFIG_DRIVER_BSD=y
#CFLAGS += -I/usr/local/include
#LIBS += -L/usr/local/lib
#LIBS_p += -L/usr/local/lib
#LIBS_c += -L/usr/local/lib
# Driver interface for no driver (e.g., RADIUS server only)
#CONFIG_DRIVER_NONE=y
# IEEE 802.11F/IAPP
CONFIG_IAPP=y
# WPA2/IEEE 802.11i RSN pre-authentication
CONFIG_RSN_PREAUTH=y
# IEEE 802.11w (management frame protection)
#CONFIG_IEEE80211W=y
# Support Operating Channel Validation
#CONFIG_OCV=y
# Integrated EAP server
CONFIG_EAP=y
# EAP Re-authentication Protocol (ERP) in integrated EAP server
CONFIG_ERP=y
# EAP-MD5 for the integrated EAP server
CONFIG_EAP_MD5=y
# EAP-TLS for the integrated EAP server
CONFIG_EAP_TLS=y
# EAP-MSCHAPv2 for the integrated EAP server
CONFIG_EAP_MSCHAPV2=y
# EAP-PEAP for the integrated EAP server
CONFIG_EAP_PEAP=y
# EAP-GTC for the integrated EAP server
CONFIG_EAP_GTC=y
# EAP-TTLS for the integrated EAP server
CONFIG_EAP_TTLS=y
# EAP-SIM for the integrated EAP server
#CONFIG_EAP_SIM=y
# EAP-AKA for the integrated EAP server
#CONFIG_EAP_AKA=y
# EAP-AKA' for the integrated EAP server
# This requires CONFIG_EAP_AKA to be enabled, too.
#CONFIG_EAP_AKA_PRIME=y
# EAP-PAX for the integrated EAP server
#CONFIG_EAP_PAX=y
# EAP-PSK for the integrated EAP server (this is _not_ needed for WPA-PSK)
#CONFIG_EAP_PSK=y
# EAP-pwd for the integrated EAP server (secure authentication with a password)
#CONFIG_EAP_PWD=y
# EAP-SAKE for the integrated EAP server
#CONFIG_EAP_SAKE=y
# EAP-GPSK for the integrated EAP server
#CONFIG_EAP_GPSK=y
# Include support for optional SHA256 cipher suite in EAP-GPSK
#CONFIG_EAP_GPSK_SHA256=y
# EAP-FAST for the integrated EAP server
CONFIG_EAP_FAST=y
# EAP-TEAP for the integrated EAP server
# Note: The current EAP-TEAP implementation is experimental and should not be
# enabled for production use. The IETF RFC 7170 that defines EAP-TEAP has number
# of conflicting statements and missing details and the implementation has
# vendor specific workarounds for those and as such, may not interoperate with
# any other implementation. This should not be used for anything else than
# experimentation and interoperability testing until those issues has been
# resolved.
#CONFIG_EAP_TEAP=y
# Wi-Fi Protected Setup (WPS)
CONFIG_WPS=y
# Enable UPnP support for external WPS Registrars
#CONFIG_WPS_UPNP=y
# Enable WPS support with NFC config method
#CONFIG_WPS_NFC=y
# EAP-IKEv2
#CONFIG_EAP_IKEV2=y
# Trusted Network Connect (EAP-TNC)
#CONFIG_EAP_TNC=y
# EAP-EKE for the integrated EAP server
#CONFIG_EAP_EKE=y
# PKCS#12 (PFX) support (used to read private key and certificate file from
# a file that usually has extension .p12 or .pfx)
CONFIG_PKCS12=y
# RADIUS authentication server. This provides access to the integrated EAP
# server from external hosts using RADIUS.
#CONFIG_RADIUS_SERVER=y
# Build IPv6 support for RADIUS operations
CONFIG_IPV6=y
# IEEE Std 802.11r-2008 (Fast BSS Transition)
CONFIG_IEEE80211R=y
# Use the hostapd's IEEE 802.11 authentication (ACL), but without
# the IEEE 802.11 Management capability (e.g., FreeBSD/net80211)
#CONFIG_DRIVER_RADIUS_ACL=y
# IEEE 802.11n (High Throughput) support
CONFIG_IEEE80211N=y
# Wireless Network Management (IEEE Std 802.11v-2011)
# Note: This is experimental and not complete implementation.
CONFIG_WNM=y
# IEEE 802.11ac (Very High Throughput) support
CONFIG_IEEE80211AC=y
# IEEE 802.11ax HE support
# Note: This is experimental and work in progress. The definitions are still
# subject to change and this should not be expected to interoperate with the
# final IEEE 802.11ax version.
CONFIG_IEEE80211AX=y
# Remove debugging code that is printing out debug messages to stdout.
# This can be used to reduce the size of the hostapd considerably if debugging
# code is not needed.
#CONFIG_NO_STDOUT_DEBUG=y
# Add support for writing debug log to a file: -f /tmp/hostapd.log
# Disabled by default.
#CONFIG_DEBUG_FILE=y
# Send debug messages to syslog instead of stdout
CONFIG_DEBUG_SYSLOG=y
# Add support for sending all debug messages (regardless of debug verbosity)
# to the Linux kernel tracing facility. This helps debug the entire stack by
# making it easy to record everything happening from the driver up into the
# same file, e.g., using trace-cmd.
#CONFIG_DEBUG_LINUX_TRACING=y
# Remove support for RADIUS accounting
#CONFIG_NO_ACCOUNTING=y
# Remove support for RADIUS
#CONFIG_NO_RADIUS=y
# Remove support for VLANs
#CONFIG_NO_VLAN=y
# Enable support for fully dynamic VLANs. This enables hostapd to
# automatically create bridge and VLAN interfaces if necessary.
CONFIG_FULL_DYNAMIC_VLAN=y
# Use netlink-based kernel API for VLAN operations instead of ioctl()
# Note: This requires libnl 3.1 or newer.
#CONFIG_VLAN_NETLINK=y
# Remove support for dumping internal state through control interface commands
# This can be used to reduce binary size at the cost of disabling a debugging
# option.
CONFIG_NO_DUMP_STATE=y
# Enable tracing code for developer debugging
# This tracks use of memory allocations and other registrations and reports
# incorrect use with a backtrace of call (or allocation) location.
#CONFIG_WPA_TRACE=y
# For BSD, comment out these.
#LIBS += -lexecinfo
#LIBS_p += -lexecinfo
#LIBS_c += -lexecinfo
# Use libbfd to get more details for developer debugging
# This enables use of libbfd to get more detailed symbols for the backtraces
# generated by CONFIG_WPA_TRACE=y.
#CONFIG_WPA_TRACE_BFD=y
# For BSD, comment out these.
#LIBS += -lbfd -liberty -lz
#LIBS_p += -lbfd -liberty -lz
#LIBS_c += -lbfd -liberty -lz
# hostapd depends on strong random number generation being available from the
# operating system. os_get_random() function is used to fetch random data when
# needed, e.g., for key generation. On Linux and BSD systems, this works by
# reading /dev/urandom. It should be noted that the OS entropy pool needs to be
# properly initialized before hostapd is started. This is important especially
# on embedded devices that do not have a hardware random number generator and
# may by default start up with minimal entropy available for random number
# generation.
#
# As a safety net, hostapd is by default trying to internally collect
# additional entropy for generating random data to mix in with the data
# fetched from the OS. This by itself is not considered to be very strong, but
# it may help in cases where the system pool is not initialized properly.
# However, it is very strongly recommended that the system pool is initialized
# with enough entropy either by using hardware assisted random number
# generator or by storing state over device reboots.
#
# hostapd can be configured to maintain its own entropy store over restarts to
# enhance random number generation. This is not perfect, but it is much more
# secure than using the same sequence of random numbers after every reboot.
# This can be enabled with -e<entropy file> command line option. The specified
# file needs to be readable and writable by hostapd.
#
# If the os_get_random() is known to provide strong random data (e.g., on
# Linux/BSD, the board in question is known to have reliable source of random
# data from /dev/urandom), the internal hostapd random pool can be disabled.
# This will save some in binary size and CPU use. However, this should only be
# considered for builds that are known to be used on devices that meet the
# requirements described above.
CONFIG_NO_RANDOM_POOL=y
# Should we attempt to use the getrandom(2) call that provides more reliable
# yet secure randomness source than /dev/random on Linux 3.17 and newer.
# Requires glibc 2.25 to build, falls back to /dev/random if unavailable.
CONFIG_GETRANDOM=y
# Should we use poll instead of select? Select is used by default.
#CONFIG_ELOOP_POLL=y
# Should we use epoll instead of select? Select is used by default.
CONFIG_ELOOP_EPOLL=y
# Should we use kqueue instead of select? Select is used by default.
#CONFIG_ELOOP_KQUEUE=y
# Select TLS implementation
# openssl = OpenSSL (default)
# gnutls = GnuTLS
# internal = Internal TLSv1 implementation (experimental)
# linux = Linux kernel AF_ALG and internal TLSv1 implementation (experimental)
# none = Empty template
CONFIG_TLS=openssl
# TLS-based EAP methods require at least TLS v1.0. Newer version of TLS (v1.1)
# can be enabled to get a stronger construction of messages when block ciphers
# are used.
#CONFIG_TLSV11=y
# TLS-based EAP methods require at least TLS v1.0. Newer version of TLS (v1.2)
# can be enabled to enable use of stronger crypto algorithms.
#CONFIG_TLSV12=y
# Select which ciphers to use by default with OpenSSL if the user does not
# specify them.
#CONFIG_TLS_DEFAULT_CIPHERS="DEFAULT:!EXP:!LOW"
# If CONFIG_TLS=internal is used, additional library and include paths are
# needed for LibTomMath. Alternatively, an integrated, minimal version of
# LibTomMath can be used. See beginning of libtommath.c for details on benefits
# and drawbacks of this option.
CONFIG_INTERNAL_LIBTOMMATH=y
#ifndef CONFIG_INTERNAL_LIBTOMMATH
#LTM_PATH=/usr/src/libtommath-0.39
#CFLAGS += -I$(LTM_PATH)
#LIBS += -L$(LTM_PATH)
#LIBS_p += -L$(LTM_PATH)
#endif
# At the cost of about 4 kB of additional binary size, the internal LibTomMath
# can be configured to include faster routines for exptmod, sqr, and div to
# speed up DH and RSA calculation considerably
#CONFIG_INTERNAL_LIBTOMMATH_FAST=y
# Interworking (IEEE 802.11u)
# This can be used to enable functionality to improve interworking with
# external networks.
CONFIG_INTERWORKING=y
# Hotspot 2.0
#CONFIG_HS20=y
# Enable SQLite database support in hlr_auc_gw, EAP-SIM DB, and eap_user_file
#CONFIG_SQLITE=y
# Enable Fast Session Transfer (FST)
#CONFIG_FST=y
# Enable CLI commands for FST testing
#CONFIG_FST_TEST=y
# Testing options
# This can be used to enable some testing options (see also the example
# configuration file) that are really useful only for testing clients that
# connect to this hostapd. These options allow, for example, to drop a
# certain percentage of probe requests or auth/(re)assoc frames.
#
#CONFIG_TESTING_OPTIONS=y
# Automatic Channel Selection
# This will allow hostapd to pick the channel automatically when channel is set
# to "acs_survey" or "0". Eventually, other ACS algorithms can be added in
# similar way.
#
# Automatic selection is currently only done through initialization, later on
# we hope to do background checks to keep us moving to more ideal channels as
# time goes by. ACS is currently only supported through the nl80211 driver and
# your driver must have survey dump capability that is filled by the driver
# during scanning.
#
# You can customize the ACS survey algorithm with the hostapd.conf variable
# acs_num_scans.
#
# Supported ACS drivers:
# * ath9k
# * ath5k
# * ath10k
#
# For more details refer to:
# http://wireless.kernel.org/en/users/Documentation/acs
#
#CONFIG_ACS=y
# Multiband Operation support
# These extentions facilitate efficient use of multiple frequency bands
# available to the AP and the devices that may associate with it.
#CONFIG_MBO=y
# Client Taxonomy
# Has the AP retain the Probe Request and (Re)Association Request frames from
# a client, from which a signature can be produced which can identify the model
# of client device like "Nexus 6P" or "iPhone 5s".
CONFIG_TAXONOMY=y
# Fast Initial Link Setup (FILS) (IEEE 802.11ai)
#CONFIG_FILS=y
# FILS shared key authentication with PFS
#CONFIG_FILS_SK_PFS=y
# Include internal line edit mode in hostapd_cli. This can be used to provide
# limited command line editing and history support.
#CONFIG_WPA_CLI_EDIT=y
# Opportunistic Wireless Encryption (OWE)
# Experimental implementation of draft-harkins-owe-07.txt
#CONFIG_OWE=y
# Airtime policy support
CONFIG_AIRTIME_POLICY=y
# Proxy ARP support
CONFIG_PROXYARP=y
# Override default value for the wpa_disable_eapol_key_retries configuration
# parameter. See that parameter in hostapd.conf for more details.
#CFLAGS += -DDEFAULT_WPA_DISABLE_EAPOL_KEY_RETRIES=1
# uBus IPC/RPC System
# Services can connect to the bus and provide methods
# that can be called by other services or clients.
CONFIG_UBUS=y
# OpenWrt patch 380-disable-ctrl-iface-mib.patch
# leads to the MIB only being compiled in if
# CONFIG_CTRL_IFACE_MIB is enabled.
CONFIG_CTRL_IFACE_MIB=y
'';
postPatch = ''
cp ${pkgs.fetchurl {
url = "https://raw.githubusercontent.com/openwrt/openwrt/75b83e94a395fedeb4d308f42013a72c6fee2df4/package/network/services/hostapd/src/src/ap/ubus.h";
sha256 = "sha256-qA+ISdYJkAEmojmHjWJCBCMngYPpZRGNRstdYP5JTcc=";
}} src/ap/ubus.h
cp ${pkgs.fetchurl {
url = "https://raw.githubusercontent.com/openwrt/openwrt/75b83e94a395fedeb4d308f42013a72c6fee2df4/package/network/services/hostapd/src/src/ap/ubus.c";
sha256 = "sha256-ZaMx+D6e02soQZIjBDs3T7BNhMcEJ9iWq1mbSbjyuUU=";
}} src/ap/ubus.c
cp ${pkgs.fetchurl {
url = "https://raw.githubusercontent.com/openwrt/openwrt/75b83e94a395fedeb4d308f42013a72c6fee2df4/package/network/services/hostapd/src/src/utils/build_features.h";
sha256 = "sha256-KW8RKVQAWr91ach/F1k9XQH2rQCiQNfcNiDqUbNVrkc=";
}} src/utils/build_features.h
'';
patches = (map pkgs.fetchurl [
{ url = "https://raw.githubusercontent.com/openwrt/openwrt/75b83e94a395fedeb4d308f42013a72c6fee2df4/package/network/services/hostapd/patches/001-wolfssl-init-RNG-with-ECC-key.patch"; sha256 = "1h4wqn6dpc5vw19428v6s49i3xsdqc1ikwv6gvdhs2ly98cxwb91"; }
{ url = "https://raw.githubusercontent.com/openwrt/openwrt/75b83e94a395fedeb4d308f42013a72c6fee2df4/package/network/services/hostapd/patches/010-mesh-Allow-DFS-channels-to-be-selected-if-dfs-is-ena.patch"; sha256 = "06limshm4zprqd2cnjf2911k8dg2rc5wvdkqcdlxw49r5ihb4wmh"; }
{ url = "https://raw.githubusercontent.com/openwrt/openwrt/75b83e94a395fedeb4d308f42013a72c6fee2df4/package/network/services/hostapd/patches/011-mesh-use-deterministic-channel-on-channel-switch.patch"; sha256 = "1nkp8kmq1dxhrf19cz346jyaxh888vgvl9hnlsdqak5cb5g0k0a6"; }
{ url = "https://raw.githubusercontent.com/openwrt/openwrt/75b83e94a395fedeb4d308f42013a72c6fee2df4/package/network/services/hostapd/patches/021-fix-sta-add-after-previous-connection.patch"; sha256 = "1nj4h8z8kz335cwz6qq1qd0k0h5c47nhqvpb6n4k0mabw3q19rd5"; }
{ url = "https://raw.githubusercontent.com/openwrt/openwrt/75b83e94a395fedeb4d308f42013a72c6fee2df4/package/network/services/hostapd/patches/022-hostapd-fix-use-of-uninitialized-stack-variables.patch"; sha256 = "1sfy9j86550g90gw5w80773dgf6i1w22sidichxjqgkhdm507kz7"; }
{ url = "https://raw.githubusercontent.com/openwrt/openwrt/75b83e94a395fedeb4d308f42013a72c6fee2df4/package/network/services/hostapd/patches/023-ndisc_snoop-call-dl_list_del-before-freeing-ipv6-add.patch"; sha256 = "03pq0h5lmlgn05dkd5vf0v3abaa30vza962vbp9kc66jbga38113"; }
{ url = "https://raw.githubusercontent.com/openwrt/openwrt/75b83e94a395fedeb4d308f42013a72c6fee2df4/package/network/services/hostapd/patches/030-driver_nl80211-rewrite-neigh-code-to-not-depend-on-l.patch"; sha256 = "0vl3v7b2p17maxnz02jiy89rz6jbmj54sqxkw14j1s6mxji0x510"; }
{ url = "https://raw.githubusercontent.com/openwrt/openwrt/75b83e94a395fedeb4d308f42013a72c6fee2df4/package/network/services/hostapd/patches/040-mesh-allow-processing-authentication-frames-in-block.patch"; sha256 = "0w56gr3lp6h2y88vc1g6ddjvrymrg9sv65bhq46dcjjc6i6fgq96"; }
{ url = "https://raw.githubusercontent.com/openwrt/openwrt/75b83e94a395fedeb4d308f42013a72c6fee2df4/package/network/services/hostapd/patches/050-build_fix.patch"; sha256 = "19km2glb39nqd3a25dsh2mnv57yj8mywi0kln86rizncyv0wbp5f"; }
{ url = "https://raw.githubusercontent.com/openwrt/openwrt/75b83e94a395fedeb4d308f42013a72c6fee2df4/package/network/services/hostapd/patches/100-daemonize_fix.patch"; sha256 = "1wsxnanirdjf75zqdp6ff5yny8vaxnlb9ss2b3zwwca9ixl41fr1"; }
{ url = "https://raw.githubusercontent.com/openwrt/openwrt/75b83e94a395fedeb4d308f42013a72c6fee2df4/package/network/services/hostapd/patches/200-multicall.patch"; sha256 = "0y305476mq8zp83hy45spsb16aw8a7720s3cnmc1msj1wx0axvl2"; }
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]) ++ [
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];
});
}
);
}