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ddd376978b
Taking this task in the same patch.
376 lines
12 KiB
Plaintext
376 lines
12 KiB
Plaintext
Background
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==========
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- Priority scale: High, Medium and Low
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- Complexity scale: C1, C2, C4 and C8. The complexity scale is exponential,
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with complexity 1 being the lowest complexity. Complexity is a function
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of both task 'complexity' and task 'scope'.
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The general rule of thumb is that a complexity 1 task should take 1-2 weeks
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for a person very familiar with the codebase. Higher complexity tasks
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require more time and have higher uncertainty.
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Higher complexity tasks should be refined into several lower complexity tasks
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once the task is better understood.
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mac80211_hwsim
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==============
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- Add support for HWSIM_CMD_SET_RADIO command
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To allow modifying an existing radio, add the HWSIM_CMD_SET_RADIO. The
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first possible feature should be to emulate the hardware RFKILL switch.
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It might be required to add a HWSIM_ATTR_RADIO_HW_RFKILL attribute flag
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to the HWSIM_CMD_NEW_RADIO to enable virtual radios with a hardware
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level RFKILL switch.
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Priority: Medium
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Complexity: C1
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- Allow configuration of MAC address or list of MAC addresses
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The radios are auto-generating a fake MAC address. It would be useful
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to allow specifying a MAC address to be used. In certain cases it might
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be also useful to provide a list of MAC addresses so that for example
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with secondary interfaces these can be used.
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Priority: Low
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Complexity: C2
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- Move mac80211_hwsim.h header file to UAPI includes
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The mac80211_hwsim.h is the public API description of this netlink
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interface and thus it should be provided via UAPI includes.
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For this work work the mac80211_hwsim.h header needs to be modified
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so that it also compiles from userspace. At the moment it throws
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errors. And it needs to become part of the UAPI headers of the
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Linux kernel.
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In addition it should provide HWSIM_GENL_NAME that provides the
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generic netlink "MAC82011_HWSIM" family string.
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Priority: Low
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Complexity: C1
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- Provide kernel option to allow defining the number of initial radios
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By default the mac80211_hwsim modules creates 2 radios by default unless
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it is overwritten with the radios=x module parameter.
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To allow loading the mac80211_hwsim by default and even with accidental
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loading of the module, it would be good to provide a kernel configuration
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option that allows changing the default value here.
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For our testing we want to load mac80211_hwsim without any radios. Maybe
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this should be the default for the new kernel option.
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If the default of initial radios can be changed to zero, then it is also
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possible to add MODULE_ALIAS_GENL_FAMILY to support auto-loading of
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the mac80211_hwsim kernel module.
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Priority: Low
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Complexity: C1
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- New configuration options for radios
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At the moment the radios created are all equal and feature rich. However
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for testing we want to create radios with different emulated hardware
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capabilities. Provide new attributes or flags that allow enabling or
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disabling certain mac80211 features.
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For example AP mode, P2P mode, number of interface combinations, TDLS
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support, number of Scan SSIDs, supported ciphers and so on.
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Priority: Low
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Complexity: C2
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cfg80211 / nl80211
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==================
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- Disconnect from network / station when client crashes
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When associating or connecting to a network, it should be possible to
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bind this transaction to a specific netlink client. So that in case
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this client terminates without, any connection will be also terminated.
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This should affect NL80211_CMD_ASSOCIATE and NL80211_CMD_CONNECT. It
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seems that this is not needed for NL80211_CMD_AUTHENTICATE since that
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command will eventually time out, but it might be a good idea to even
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support it there.
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Maybe a new attribute similar to NL80211_ATTR_IFACE_SOCKET_OWNER should
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be used for this behavior.
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Priority: High
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Complexity: C4
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- Add missing support for NL80211_CMD_GET_INTERFACE filtering
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The NL80211_CMD_GET_INTERFACE command description indicates that you
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can filter results based NL80211_ATTR_WIPHY. This feature has never
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been implemented.
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Either remove that feature from the description since it does not exist
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or actually implemented the filtering on wiphy. Johannes indicated that
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fixing the description might be the better approach. If the feature is
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easy to add, then it should be added. However if filtering on wiphy is
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a rather complicated task, then better just update the description to
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match the reality.
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Priority: Low
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Complexity: C2
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Wireless monitor
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================
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- Add support for Information Element (IE) decoding
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Several netlink attributes provide binary blobs representing IEs. Add
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support for decoding them inline using the src/ie.c infrastructure.
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Priority: Medium
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Complexity: C1
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Owner: Patrik Flykt <patrik.flykt@linux.intel.com>
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- Add support for PACKET_RECV_OUTPUT socket option of AF_PACKET
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Instead of having to switch every interface manually into promiscuous
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mode, it would be useful to set PACKET_RECV_OUTPUT to receive also
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the traffic that leaves the system.
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This would make tracing PAE / EAPoL traffic easy and provides better
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sniffing capabilities.
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Priority: High
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Complexity: C1
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- Subscribe to all nl80211 multicast groups at startup
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It seems the nlmon packets are limited to actual subscribed mutlicast
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groups. To get a complete picture of all the nl80211 commands and
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events, it is required that iwmon adds membership to all multicast
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groups that the nl80211 lists.
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This means that the netlink socket used for resolving nl80211 family
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name needs to be kept open and actively processed since it will also
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receive these multicast events. However the event itself can be dropped
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since the one from nlmon with the proper kernel level timestamps should
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be taken into account.
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An alternative is to fix the netlink_deliver_tap() function in the
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kernel netlink layer to not be affected by the broadcast filtering.
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Priority: Medium
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Complexity: C1
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- Add support for receiving kernel side timestamps
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When packets are received from nlmon, they should be marked with an
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appropiate timestamp. Enable SO_TIMESTAMP socket option.
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Priority: Medium
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Complexity: C1
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- Colorize the command, response and event packets
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Use terminal colors to separate command, response and event packets
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with different colors.
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Priority: Medium
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Complexity: C1
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- Add support for writing PCAP files
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The new -w <file> option should allow for writing PCAP files with the
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Linux SLL link type.
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When creating PCAP files using tcpdump a lot of extra information from
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all netlink sockets are written. This write support should only write
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the information related to nl80211. However parts from the generic
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netlink control channel from resolving the nl80211 family name must
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be included as well.
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It might be also beneficial to include RTNL messages related to the
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wireless network interfaces. Currently these are all filtered out.
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Priority: Medium
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Complexity: C2
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- Track RTNL messages for wireless network interface
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The RTNL messages indicate operation state changes and with are also
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relevant for a complete picture of the userspace kernel communication.
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However the complicated part is to identify which network interfaces
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are wireless related and which are not. Obviously the non-wireless
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network interfaces need to be filtered out.
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Priority: Medium
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Complexity: C2
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Owner: Ravi kumar Veeramally <ravikumar.veeramally@linux.intel.com>
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- Handle netlink core control messages correctly
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The core control netlink messages for NLMSG_ERROR and NLMSG_DONE are
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not decoded properly. Add detailed decoding and also decode all the
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flags that are related to the core control messages.
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Priority: High
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Complexity: C1
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Owner: Ravi kumar Veeramally <ravikumar.veeramally@linux.intel.com>
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Wireless simulator
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==================
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- Add support for builtin wireless access point emulator
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When creating a pair of mac80211_hwsim radios, allow one to operate as
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access point. The hwsim utility will emulate the access point on the
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second interface for as long as it is running. Which means that from
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the first interface it is possible to scan and connect to this access
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point using standard wireless tools (including iwd and iwctl).
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Code for the AP mode can be shared from iwd feature for access point
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operation once that has been implemented.
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Priority: Medium
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Complexity: C8
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Wireless daemon
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===============
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- Parsing 802.11 authentications management frames
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Parse authentication and deauthentication managements frames: its
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header and content. Provide a core API to decode such frame into
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some easily handled structure, keeping in mind other type of frames
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will come so it has to provide a generic infrastructure which can be
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extended for future use. Focus on open and PSK based authentication
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networks first.
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Priority: High
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Complexity: C2
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Owner: Tomasz Bursztyka <tomasz.bursztyka@linux.intel.com>
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- Building 802.11 authentications management frames
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The other way round, provide a core API to encode an authentication
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or deauthentication frame from a generic structure representing the
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MPDU.
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Priority: High
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Complexity: C2
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Owner: Tomasz Bursztyka <tomasz.bursztyka@linux.intel.com>
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- Handle the relevant logic of the authentication management frames
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When an authentication management frame is received, such frame needs
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to be understood and handled properly.
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Priority: High
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Complexity: C2
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- Add support for 4-way handshake authentication and key generation
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The 4-way handshake key generation for pre-shared keys (PSK) should be
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a standalone feature (independent from EAP).
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It is also important to have extensive unit test support for 4-way
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handshake messages and key generation itself.
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Priority: High
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Complexity: C4
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Owner: Denis Kenzior <denkenz@gmail.com>
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- Add support for EAP based authentication and key generation
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Provide full EAP support for enterprise wireless. However it should be
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possible to build wireless daemon without EAP support.
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It is also intended that this EAP code can be utilized as shared library
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and be beneficial for systemd-networkd for wired authentication.
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Priority: Low
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Complexity: C8
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- Create a document to doc describing general architecture and relation
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between different objects.
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Current understanding is that diffrent relation between elements
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looks probably like this:
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Manager->Wiphy->NetDevice->AvailableNetwork
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Wiphy is the actual physical device, NetDevice is the network interface
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and AvailableNetwork is {SSID, security} combo. Each network can have
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a list of BSSs.
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Consider also multi-wifi device scenarios. If user has multiple USB
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WiFi dongles and switches between those cards, all previously configured
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networks should still be available.
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Priority: High
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Complexity: C2
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- Centralize scanning logic and handling into scan.c.
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There can be passive, active, listening (P2P) scanning to handle.
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We need to handle background scan for roaming. Also scheduled scan
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might need to be simulated when hw does not support it.
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All scanning operations should be cancellable.
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Priority: High
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Complexity: C4
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- Implement agent support in iwd.
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If something needs to be asked from user, like passphrase etc.
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a DBus agent interface can be registered by the user.
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This is similar as what is implemented in ConnMan and BlueZ.
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Priority: Medium
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Complexity: C2
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- Implement ARC4 cipher in iwd
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ARC4 is used to encrypt EAPoL frames that are exchanged during WPA
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authentication.
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Priority: High
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Complexity: C1
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Owner: Denis Kenzior <denkenz@gmail.com>
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- Implement AES cipher in iwd
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AES is used to encrypt EAPoL frames that are exchanged during WPA2
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authentication.
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Priority: High
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Complexity: C1
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Owner: Denis Kenzior <denkenz@gmail.com>
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- Coalesce BSS and security parameters into Network object
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Coalesce all the BSS with the same SSID and security parameters into one
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Network object in wiphy.c
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Priority: High
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Complexity: C2
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Owner: Jukka Rissanen <jukka.rissanen@linux.intel.com>
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Client
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======
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- Remove kdbus left-overs, and implement the client properly with ell
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library.
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Priority: Low
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Complexity: C1
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