xref: /openwifi/README.md (revision 9d56afc0c82cae31eaf3e37236e5308ed7b531f3)
10df4ca4dSimoerman# openwifi
22ee67178SXianjun Jiao<img src="./openwifi-arch.jpg" width="900">
32ee67178SXianjun Jiao
438f76c01SJiao Xianjun**openwifi:** Linux mac80211 compatible full-stack IEEE802.11/Wi-Fi design based on SDR (Software Defined Radio).
52ee67178SXianjun Jiao
6db5fcd35SJiao XianjunThis repository includes Linux driver and software. [openwifi-hw](https://github.com/open-sdr/openwifi-hw) repository has the FPGA design. [[Project document](https://github.com/open-sdr/openwifi/tree/master/doc)]
72ee67178SXianjun Jiao
8b73660adSXianjun Jiao[Demo [video](https://youtu.be/NpjEaszd5u4) and video [download](https://users.ugent.be/~xjiao/openwifi-low-aac.mp4)]   [openwifi [maillist](https://lists.ugent.be/wws/subscribe/openwifi)] [[Cite openwifi project](#Cite-openwifi-project)]
92ee67178SXianjun Jiao
102c8fb6e0SJiao XianjunOpenwifi code has dual licenses. AGPLv3 is the opensource license. For non-opensource license, please contact [email protected]. Openwifi project also leverages some 3rd party modules. It is user's duty to check and follow licenses of those modules according to the purpose/usage. You can find [an example explanation from Analog Devices](https://github.com/analogdevicesinc/hdl/blob/master/LICENSE) for this compound license conditions. [[How to contribute]](https://github.com/open-sdr/openwifi/blob/master/CONTRIBUTING.md).
112ee67178SXianjun Jiao
122ee67178SXianjun Jiao**Features:**
132ee67178SXianjun Jiao
14b73660adSXianjun Jiao- 802.11a/g
15b73660adSXianjun Jiao- 802.11n MCS 0~7 (Only PHY rx for now. Full system support of 802.11n will come soon)
16b73660adSXianjun Jiao- 20MHz bandwidth; 70 MHz to 6 GHz frequency range
17b73660adSXianjun Jiao- Mode tested: Ad-hoc; Station; AP, Monitor
18b73660adSXianjun Jiao- DCF (CSMA/CA) low MAC layer in FPGA (10us SIFS is achieved)
19b73660adSXianjun Jiao- Configurable channel access priority parameters:
20b73660adSXianjun Jiao  - duration of RTS/CTS, CTS-to-self
21b73660adSXianjun Jiao  - SIFS/DIFS/xIFS/slot-time/CW/etc
22b73660adSXianjun Jiao- Time slicing based on MAC address
23b73660adSXianjun Jiao- Easy to change bandwidth and frequency:
24b73660adSXianjun Jiao  - 2MHz for 802.11ah in sub-GHz
25b73660adSXianjun Jiao  - 10MHz for 802.11p/vehicle in 5.9GHz
26b73660adSXianjun Jiao- On roadmap: **802.11ax**
272ee67178SXianjun Jiao
28b73660adSXianjun Jiao**Performance (AP: openwifi at channel 44, client: TL-WDN4200 N900 USB Dongle):**
29b73660adSXianjun Jiao- AP --> client: 30.6Mbps(TCP), 38.8Mbps(UDP)
30b73660adSXianjun Jiao- client --> AP: 17.0Mbps(TCP), 21.5Mbps(UDP)
312ee67178SXianjun Jiao
32b73660adSXianjun Jiao**Supported SDR platforms:** (Check [Porting guide](#Porting-guide) for your new board if it isn't in the list)
332ee67178SXianjun Jiao
34b73660adSXianjun Jiaoboard_name|board combination|status
359e696164SXianjun Jiao-------|-------|----
36821084f4SJiao Xianjunzc706_fmcs2|Xilinx ZC706 dev board + FMCOMMS2/3/4|Done
37b73660adSXianjun Jiaozed_fmcs2|Xilinx zed board + FMCOMMS2/3/4|Done
38febc5adfSXianjun Jiaoadrv9364z7020|ADRV9364Z7020 SOM|Done
39febc5adfSXianjun Jiaoadrv9361z7035|ADRV9361Z7035 SOM|Done
40b73660adSXianjun Jiaozc702_fmcs2|Xilinx ZC702 dev board + FMCOMMS2/3/4|Done
41febc5adfSXianjun Jiaozcu102_fmcs2|Xilinx ZCU102 dev board + FMCOMMS2/3/4|Done
42821084f4SJiao Xianjunzcu102_9371|Xilinx ZCU102 dev board + ADRV9371|Future
439e696164SXianjun Jiao
44b73660adSXianjun Jiao- board_name is used to identify FPGA design in openwifi-hw/boards/
45b73660adSXianjun Jiao- Don't have any boards? Or you like JTAG boot instead of SD card? Check our test bed [w-iLab.t](https://doc.ilabt.imec.be/ilabt/wilab/tutorials/openwifi.html) tutorial.
462ee67178SXianjun Jiao
47b73660adSXianjun Jiao[[Quick start](#Quick-start)]
48b73660adSXianjun Jiao[[Basic operations](#Basic-operations)]
49b73660adSXianjun Jiao[[Update FPGA](#Update-FPGA)]
50b73660adSXianjun Jiao[[Update Driver](#Update-Driver)]
51b73660adSXianjun Jiao[[Update sdrctl](#Update-sdrctl)]
52b73660adSXianjun Jiao[[Easy Access and etc](#Easy-Access-and-etc)]
532ee67178SXianjun Jiao
54b73660adSXianjun Jiao[[Build openwifi Linux img from scratch](#Build-openwifi-Linux-img-from-scratch)]
55b73660adSXianjun Jiao[[Special note for 11b](#Special-note-for-11b)]
56b73660adSXianjun Jiao[[Porting guide](#Porting-guide)]
57b73660adSXianjun Jiao[[Cite openwifi project](#Cite-openwifi-project)]
582ee67178SXianjun Jiao
59b73660adSXianjun Jiao## Quick start
60*9d56afc0SJiao Xianjun- Burn openwifi [64bit img](https://users.ugent.be/~xjiao/openwifi-1.1.0-taiyuan-2-64bit.img.xz) (for Zynq MPSoC FPGA, like zcu102 board) or [32bit img](https://users.ugent.be/~xjiao/openwifi-1.1.0-taiyuan-2-32bit.img.xz) (for other boards, Zynq7000 FPGA) into a SD card ("Open With Disk Image Writer". Or "dd" command after unzip). The SD card has two partitions: BOOT and rootfs. You need to config the **correct files in the BOOT partition** according to the **board you have** by operation on your computer:
61febc5adfSXianjun Jiao  - Copy files in **openwifi/board_name** to the base directory of BOOT partiton.
62febc5adfSXianjun Jiao  - Copy **openwifi/zynqmp-common/Image** (zcu102 board) or **openwifi/zynq-common/uImage** (other boards) to the base directory of BOOT partiton
63*9d56afc0SJiao Xianjun- Connect two antennas to RXA/TXA ports. Config the board to SD card boot mode (check the board manual). Insert the SD card to the board. Power on.
64*9d56afc0SJiao Xianjun- Login to the board from your PC (PC Ethernet should have IP 192.168.10.1) with password **openwifi**.
652ee67178SXianjun Jiao  ```
662ee67178SXianjun Jiao  ssh [email protected]
672ee67178SXianjun Jiao  ```
68*9d56afc0SJiao Xianjun- On board, run openwifi AP and the on board webserver
69*9d56afc0SJiao Xianjun  ```
70*9d56afc0SJiao Xianjun  ~/openwifi/fosdem.sh
71*9d56afc0SJiao Xianjun  ```
72*9d56afc0SJiao Xianjun- After you see the "openwifi" SSID on your device (Phone/Laptop/etc), connect it. Browser to 192.168.13.1 on your deivce, you should see the webpage hosted by the webserver on board.
73*9d56afc0SJiao Xianjun  - Note 1: If your device doesn't support 5GHz (ch44), please change the **hostapd-openwifi.conf** on board and re-run fosdem.sh.
74*9d56afc0SJiao Xianjun  - Note 2: After ~2 hours, the Viterbi decoder will halt (Xilinx Evaluation License). Just power cycle the board if it happens. (If output of "./sdrctl dev sdr0 get reg rx 20" is always the same, it means the decoder halts)
75*9d56afc0SJiao Xianjun- To give the Wi-Fii client internet access, configure routing/NAT **on the PC**:
76b73660adSXianjun Jiao  ```
77b73660adSXianjun Jiao  sudo sysctl -w net.ipv4.ip_forward=1
782ee67178SXianjun Jiao  sudo iptables -t nat -A POSTROUTING -o ethY -j MASQUERADE
792ee67178SXianjun Jiao  sudo ip route add 192.168.13.0/24 via 192.168.10.122 dev ethX
80b73660adSXianjun Jiao  ```
81b73660adSXianjun Jiao  **ethX** is the PC NIC name connecting the board. **ethY** is the PC NIC name connecting internet.
822ee67178SXianjun Jiao
83b73660adSXianjun Jiao  If you want, uncommenting "net.ipv4.ip_forward=1" in /etc/sysctl.conf to make IP forwarding persistent on PC.
84b73660adSXianjun Jiao
85b73660adSXianjun Jiao## Basic operations
86b73660adSXianjun JiaoThe board actually is an Linux/Ubuntu computer which is running **hostapd** to offer Wi-Fi AP functionality over the Wi-Fi Network Interface (NIC). The NIC is implemented by openwifi-hw FPGA design. We use the term **"On board"** to indicate that the commands should be executed after ssh login to the board. **"On PC"** means the commands should run on PC.
87b73660adSXianjun Jiao- Bring up the openwifi NIC sdr0:
88b73660adSXianjun Jiao  ```
89b73660adSXianjun Jiao  cd ~/openwifi && ./wgd.sh
90b73660adSXianjun Jiao  ```
91b73660adSXianjun Jiao- Use openwifi as client to connect other AP (Change wpa-connect.conf on board firstly):
92b73660adSXianjun Jiao  ```
932ee67178SXianjun Jiao  route del default gw 192.168.10.1
94b73660adSXianjun Jiao  wpa_supplicant -i sdr0 -c wpa-connect.conf &
952ee67178SXianjun Jiao  dhclient sdr0
962ee67178SXianjun Jiao  ```
97b73660adSXianjun Jiao- Use openwifi in ad-hoc mode: Please check **sdr-ad-hoc-up.sh** and **sdr-ad-hoc-join.sh**.
98b73660adSXianjun Jiao- Use openwifi in monitor mode: Please check **monitor_ch.sh**.
99b73660adSXianjun Jiao- The Linux native Wi-Fi tools/Apps (iwconfig/ifconfig/iwlist/iw/hostapd/wpa_supplicant/etc) can run over openwifi NIC in the same way as commercial Wi-Fi chip.
100b73660adSXianjun Jiao- **sdrctl** is a dedicated tool to access openwifi driver/FPGA, please check doc directory for more information.
101b73660adSXianjun Jiao
102b73660adSXianjun Jiao## Update FPGA
103b73660adSXianjun Jiao
104b73660adSXianjun JiaoSince the pre-built SD card image might not have the latest bug-fixes/updates, it is recommended to udpate the fpga bitstream on board.
105b73660adSXianjun Jiao
106b73660adSXianjun Jiao- Install Vivado/SDK 2017.4.1 (If you don't need to generate new FPGA bitstream, WebPack version without license is enough)
107b73660adSXianjun Jiao- Setup environment variables (use absolute path):
1082ee67178SXianjun Jiao  ```
1092ee67178SXianjun Jiao  export XILINX_DIR=your_Xilinx_directory
1102ee67178SXianjun Jiao  export OPENWIFI_DIR=your_openwifi_directory
111b73660adSXianjun Jiao  export BOARD_NAME=your_board_name
1122ee67178SXianjun Jiao  ```
113b73660adSXianjun Jiao- Get the latest FPGA bitstream from openwifi-hw, generate BOOT.BIN and transfer it on board via ssh channel:
1142ee67178SXianjun Jiao  ```
115b73660adSXianjun Jiao  $OPENWIFI_DIR/user_space/get_fpga.sh $OPENWIFI_DIR
116febc5adfSXianjun Jiao
117febc5adfSXianjun Jiao  For Zynq 7000:
118b73660adSXianjun Jiao  $OPENWIFI_DIR/user_space/boot_bin_gen.sh $OPENWIFI_DIR $XILINX_DIR $BOARD_NAME
119febc5adfSXianjun Jiao
120febc5adfSXianjun Jiao  For Zynq MPSoC (like zcu102 board):
121febc5adfSXianjun Jiao  $OPENWIFI_DIR/user_space/boot_bin_gen_zynqmp.sh $OPENWIFI_DIR $XILINX_DIR $BOARD_NAME
122febc5adfSXianjun Jiao
123b73660adSXianjun Jiao  scp $OPENWIFI_DIR/kernel_boot/boards/$BOARD_NAME/output_boot_bin/BOOT.BIN [email protected]:
1242ee67178SXianjun Jiao  ```
125b73660adSXianjun Jiao- On board: Put the BOOT.BIN into the BOOT partition.
1262ee67178SXianjun Jiao  ```
127b73660adSXianjun Jiao  mount /dev/mmcblk0p1 /mnt
128b73660adSXianjun Jiao  cp ~/BOOT.BIN /mnt
129b73660adSXianjun Jiao  umount /mnt
13089e3e0fbSXianjun Jiao  ```
131b73660adSXianjun Jiao  **Power cycle** the board to load new FPGA bitstream.
1322ee67178SXianjun Jiao
133b73660adSXianjun Jiao## Update Driver
1342ee67178SXianjun Jiao
135b73660adSXianjun JiaoSince the pre-built SD card image might not have the latest bug-fixes/updates, it is recommended to udpate the driver on board.
136b73660adSXianjun Jiao- Prepare Analog Devices Linux kernel source code (only need to run once):
1372ee67178SXianjun Jiao  ```
138febc5adfSXianjun Jiao  $OPENWIFI_DIR/user_space/prepare_kernel.sh $OPENWIFI_DIR $XILINX_DIR ARCH_BIT
139febc5adfSXianjun Jiao  (For Zynq 7000, ARCH_BIT should be 32, for Zynq MPSoC, ARCH_BIT should be 64)
1402ee67178SXianjun Jiao  ```
141b73660adSXianjun Jiao- Compile the latest openwifi driver
1422ee67178SXianjun Jiao  ```
143febc5adfSXianjun Jiao  $OPENWIFI_DIR/driver/make_all.sh $OPENWIFI_DIR $XILINX_DIR ARCH_BIT
144febc5adfSXianjun Jiao  (For Zynq 7000, ARCH_BIT should be 32, for Zynq MPSoC, ARCH_BIT should be 64)
1452ee67178SXianjun Jiao  ```
146b73660adSXianjun Jiao- Copy the driver files to the board via ssh channel
1472ee67178SXianjun Jiao  ```
148b73660adSXianjun Jiao  scp `find $OPENWIFI_DIR/driver/ -name \*.ko` [email protected]:openwifi/
149b73660adSXianjun Jiao  ```
150b73660adSXianjun Jiao  Now you can use **wgd.sh** on board to load the new openwifi driver.
1519e8d5e4aSJiao Xianjun
152b73660adSXianjun Jiao## Update sdrctl
153b73660adSXianjun Jiao- Copy the sdrctl source files to the board via ssh channel
154b73660adSXianjun Jiao  ```
155b73660adSXianjun Jiao  scp `find $OPENWIFI_DIR/user_space/sdrctl_src/ -name \*.*` [email protected]:openwifi/sdrctl_src/
156b73660adSXianjun Jiao  ```
157b73660adSXianjun Jiao- Compile the sdrctl **on board**:
158b73660adSXianjun Jiao  ```
159b73660adSXianjun Jiao  cd ~/openwifi/sdrctl_src/ && make && cp sdrctl ../ && cd ..
160b73660adSXianjun Jiao  ```
161b73660adSXianjun Jiao## Easy Access and etc
1629e8d5e4aSJiao Xianjun
163b73660adSXianjun Jiao- FPGA and driver on board update scripts
164b73660adSXianjun Jiao  - Setup [ftp server](https://help.ubuntu.com/lts/serverguide/ftp-server.html) on PC, allow anonymous and change ftp root directory to $OPENWIFI_DIR.
165b73660adSXianjun Jiao  - On board:
166b73660adSXianjun Jiao  ```
167b73660adSXianjun Jiao  ./sdcard_boot_update.sh $BOARD_NAME
1689e8d5e4aSJiao Xianjun  (Above command downloads uImage, BOOT.BIN and devicetree.dtb, then copy them into boot partition. Remember to power cycle)
1699e8d5e4aSJiao Xianjun  ./wgd.sh remote
1709e8d5e4aSJiao Xianjun  (Above command downloads driver files, and brings up sdr0)
171b73660adSXianjun Jiao  ```
172b73660adSXianjun Jiao- Access the board disk/rootfs like a disk:
173b73660adSXianjun Jiao   - On PC: "File manager --> Connect to Server...", input: sftp://[email protected]/root
174b73660adSXianjun Jiao   - Input password "openwifi"
1759e8d5e4aSJiao Xianjun
176b73660adSXianjun Jiao## Build openwifi Linux img from scratch
177febc5adfSXianjun Jiao- Download [2019_R1-2020_02_04.img.xz](swdownloads.analog.com/cse/2019_R1-2020_02_04.img.xz) from [Analog Devices Wiki](https://wiki.analog.com/resources/tools-software/linux-software/zynq_images). Burn it to a SD card.
178b73660adSXianjun Jiao- Insert the SD card to your Linux PC. Find out the mount point (that has two sub directories BOOT and rootfs), and setup environment variables (use absolute path):
1792ee67178SXianjun Jiao  ```
180b73660adSXianjun Jiao  export SDCARD_DIR=sdcard_mount_point
181b73660adSXianjun Jiao  export XILINX_DIR=your_Xilinx_directory
182b73660adSXianjun Jiao  export OPENWIFI_DIR=your_openwifi_directory
183b73660adSXianjun Jiao  export BOARD_NAME=your_board_name
184b73660adSXianjun Jiao  ```
185b73660adSXianjun Jiao- Run script to update SD card:
186b73660adSXianjun Jiao  ```
187b73660adSXianjun Jiao  $OPENWIFI_DIR/user_space/update_sdcard.sh $OPENWIFI_DIR $XILINX_DIR $BOARD_NAME $SDCARD_DIR
188b73660adSXianjun Jiao  ```
189*9d56afc0SJiao Xianjun- Config your board to SD card boot mode (check the board manual). Insert the SD card to the board. Power on.
190*9d56afc0SJiao Xianjun- Login to the board from your PC (PC Ethernet should have IP 192.168.10.1) with one time password **analog**.
191*9d56afc0SJiao Xianjun  ```
192*9d56afc0SJiao Xianjun  ssh [email protected]
193*9d56afc0SJiao Xianjun  ```
194*9d56afc0SJiao Xianjun- Setup routing/NAT **on the PC** for your board -- this internet connection is **important** for post installation/config.
195*9d56afc0SJiao Xianjun  ```
196*9d56afc0SJiao Xianjun  sudo sysctl -w net.ipv4.ip_forward=1
197*9d56afc0SJiao Xianjun  sudo iptables -t nat -A POSTROUTING -o ethY -j MASQUERADE
198*9d56afc0SJiao Xianjun  sudo ip route add 192.168.13.0/24 via 192.168.10.122 dev ethX
199*9d56afc0SJiao Xianjun  ```
200*9d56afc0SJiao Xianjun  **ethX** is the PC NIC name connecting the board. **ethY** is the PC NIC name connecting internet.
201*9d56afc0SJiao Xianjun
202*9d56afc0SJiao Xianjun  If you want, uncommenting "net.ipv4.ip_forward=1" in /etc/sysctl.conf to make IP forwarding persistent on PC.
203*9d56afc0SJiao Xianjun- Run **one time** script on board to complete post installation/config (After this, password becomes **openwifi**)
204*9d56afc0SJiao Xianjun  ```
205*9d56afc0SJiao Xianjun  cd ~/openwifi && ./post_config.sh
206*9d56afc0SJiao Xianjun  ```
207*9d56afc0SJiao Xianjun- Now you can start from [Quick start](#Quick-start) (Skip the image download and burn step)
2082ee67178SXianjun Jiao
209b73660adSXianjun Jiao## Special note for 11b
210e17fdc17Smmehari
211e17fdc17SmmehariOpenwifi only applies OFDM as its modulation scheme and as a result, it is not backward compatible with 802.11b clients or modes of operation. This is usually the case during beacon transmission, connection establishment, and robust communication.
212e17fdc17Smmehari
213e17fdc17SmmehariAs a solution to this problem, openwifi can be fully controlled only if communicating with APs/clients instantiated using hostapd/wpa_supplicant userspace programs respectively.
214e17fdc17Smmehari
215e17fdc17SmmehariFor hostapd program, 802.11b rates can be suppressed using configuration commands (i.e. supported_rates, basic_rates) and an example configuration file is provided (i.e. hostapd-openwifi.conf). One small caveat to this one comes from fullMAC Wi-Fi cards as they must implement the *NL80211_TXRATE_LEGACY* NetLink handler at the device driver level.
216e17fdc17Smmehari
217e17fdc17SmmehariOn the other hand, the wpa_supplicant program on the client side (commercial Wi-Fi dongle/board) cannot suppress 802.11b rates out of the box in 2.4GHz band, so there will be an issue when connecting openwifi (OFDM only). A patched wpa_supplicant should be used at the client side.
218e17fdc17Smmehari```
219b1633ad3SJiao Xianjunsudo apt-get install libssl1.0-dev
220b73660adSXianjun Jiao$OPENWIFI_DIR/user_space/build_wpa_supplicant_wo11b.sh $OPENWIFI_DIR
221e17fdc17Smmehari```
222b73660adSXianjun Jiao## Porting guide
223e17fdc17Smmehari
224febc5adfSXianjun JiaoThis section explains the porting work by showing the differences between openwifi and Analog Devices reference design. openwifi is based on f61d9707 (2019 r1) of [HDL Reference Designs](https://github.com/analogdevicesinc/hdl).
225b73660adSXianjun Jiao- Open the fmcomms2 + zc706 reference design at hdl/projects/fmcomms2/zc706 (Please read Analog Devices help)
226b73660adSXianjun Jiao- Open the openwifi design zc706_fmcs2 at openwifi-hw/boards/zc706_fmcs2 (Please read openwifi-hw repository)
227b73660adSXianjun Jiao- "Open Block Design", you will see the differences between openwifi and the reference design. Both in "diagram" and in "Address Editor".
228b73660adSXianjun Jiao- The address/interrupts of FPGA blocks hooked to the ARM bus should be put/aligned to the devicetree file openwifi/kernel_boot/boards/zc706_fmcs2/devicetree.dts. Linux will parse the devicetree.dtb when booting to know information of attached deivce (FPGA blocks in our case).
229b73660adSXianjun Jiao- We use dtc command to get devicetree.dts converted from devicetree.dtb in [Analog Devices Linux image](https://wiki.analog.com/resources/tools-software/linux-software/zynq_images), then do modification according to what we have added/modified to the reference design.
230b73660adSXianjun Jiao- Please learn the script in [[Build openwifi Linux img from scratch](#Build-openwifi-Linux-img-from-scratch)] to understand how we generate devicetree.dtb, BOOT.BIN and Linux kernel uImage and put them together to build the full SD card image.
231b73660adSXianjun Jiao
232b73660adSXianjun Jiao## Cite openwifi project
23344dff4bdSJiao Xianjun
23444dff4bdSJiao XianjunAny use of openwifi project which results in a publication should include a citation via (bibtex example):
23544dff4bdSJiao Xianjun```
23644dff4bdSJiao Xianjun@electronic{openwifigithub,
23744dff4bdSJiao Xianjun            author = {Xianjun, Jiao and Wei, Liu and Michael, Mehari},
23844dff4bdSJiao Xianjun            title = {open-source IEEE802.11/Wi-Fi baseband chip/FPGA design},
23944dff4bdSJiao Xianjun            url = {https://github.com/open-sdr/openwifi},
24044dff4bdSJiao Xianjun            year = {2019},
24144dff4bdSJiao Xianjun}
24244dff4bdSJiao Xianjun```
243b73660adSXianjun JiaoOpenwifi was born in [ORCA project](https://www.orca-project.eu/) (EU's Horizon2020 programme under agreement number 732174).
244