xref: /openwifi/README.md (revision 40773b7882a840f41a4b585d6e6866cc81fa13a9)
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23b4065baSJiao XianjunAuthor: Xianjun jiao, Michael Mehari, Wei Liu
3f1d0fee3SJiao XianjunSPDX-FileCopyrightText: 2019 UGent
4a6085186SLina CeballosSPDX-License-Identifier: AGPL-3.0-or-later
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6a6085186SLina Ceballos
70df4ca4dSimoerman# openwifi
82ee67178SXianjun Jiao<img src="./openwifi-arch.jpg" width="900">
92ee67178SXianjun Jiao
1038f76c01SJiao Xianjun**openwifi:** Linux mac80211 compatible full-stack IEEE802.11/Wi-Fi design based on SDR (Software Defined Radio).
112ee67178SXianjun Jiao
12f4c9b072SXianjun JiaoThis repository includes Linux driver and software. **openwifi-hw** repository has the FPGA design. It is **YOUR RESPONSIBILITY** to follow your **LOCAL SPECTRUM REGULATION** or use **CABLE** to avoid potential interference over the air.
13525f977bSJiao Xianjun
14a2ffb301SXianjun Jiao[[Quick start](#Quick-start)]
15a2ffb301SXianjun Jiao[[Project document](doc/README.md)]
16a2ffb301SXianjun Jiao[[Application notes](doc/app_notes/README.md)]
17dc7c18bfSJiao Xianjun[[Videos](doc/videos.md)]
184046c688SJiao Xianjun[[Publications and How to Cite](doc/publications.md)]
19a2ffb301SXianjun Jiao[[maillist](https://lists.ugent.be/wws/subscribe/openwifi)]
202ee67178SXianjun Jiao
211ee5906aSJiao XianjunOpenwifi code has dual licenses. [AGPLv3](https://github.com/open-sdr/openwifi/blob/master/LICENSE) is the opensource license. For non-opensource and advanced feature 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).
222ee67178SXianjun Jiao
232ee67178SXianjun Jiao**Features:**
242ee67178SXianjun Jiao
2594c4a85fSJiao Xianjun- 802.11a/g/n [[IEEE 802.11n (Wi-Fi 4)](doc/app_notes/ieee80211n.md)]
2681493bdcSJiao Xianjun- 20MHz bandwidth; [70 MHz to 6 GHz frequency range](doc/README.md#let-openwifi-work-at-arbitrary-frequency)
2781493bdcSJiao Xianjun- Mode tested: [Ad-hoc](doc/app_notes/ad-hoc-two-sdr.md); [Station; AP](doc/app_notes/ap-client-two-sdr.md), Monitor
2881493bdcSJiao Xianjun- [DCF (CSMA/CA) low MAC layer in FPGA (10us SIFS is achieved)](doc/app_notes/frequent_trick.md)
29a2ffb301SXianjun Jiao- [802.11 packet injection and fuzzing](doc/app_notes/inject_80211.md)
30d14d06e5SXianjun Jiao- [CSI](doc/app_notes/csi.md): Channel State Information, freq offset, equalizer to computer
31b49db4c5SXianjun Jiao- [CSI fuzzer](doc/app_notes/csi_fuzzer.md): Create artificial channel response in WiFi transmitter
32a816a273SJiao Xianjun- [CSI radar](doc/app_notes/radar-self-csi.md): Moving detection. Joint radar and communication
33d14d06e5SXianjun Jiao- [[IQ capture](doc/app_notes/iq.md)]: real-time AGC, RSSI, IQ sample to computer. [[Dual antenna version](doc/app_notes/iq_2ant.md)]
3481493bdcSJiao Xianjun- [Configurable channel access priority parameters](doc/app_notes/frequent_trick.md):
3581493bdcSJiao Xianjun  - CCA threshold, receiver sensitivity, etc
36b73660adSXianjun Jiao  - duration of RTS/CTS, CTS-to-self
37b73660adSXianjun Jiao  - SIFS/DIFS/xIFS/slot-time/CW/etc
3881493bdcSJiao Xianjun- [Time slicing based on MAC address (time gated/scheduled FPGA queues)](https://doc.ilabt.imec.be/ilabt/wilab/tutorials/openwifi.html#sdr-tx-time-slicing)
3981493bdcSJiao Xianjun- Easy to change bandwidth and [frequency](doc/README.md#let-openwifi-work-at-arbitrary-frequency):
40b73660adSXianjun Jiao  - 2MHz for 802.11ah in sub-GHz
41b73660adSXianjun Jiao  - 10MHz for 802.11p/vehicle in 5.9GHz
42a2ffb301SXianjun Jiao- **802.11ax** under development
432ee67178SXianjun Jiao
44e91d8a29SJiao Xianjun**Performance (best case: aggregation/AMPDU on):**
45e91d8a29SJiao Xianjun- iperf: TCP 40~50Mbps; UDP 50Mbps
46b9b3abd3SJiao Xianjun- EVM -38dB; MCS0 sensitivity -87dBm; MCS7 -72dBm. (FMCOMMS2 2.4GHz; cable and OTA test)
472ee67178SXianjun Jiao
48b73660adSXianjun Jiao**Supported SDR platforms:** (Check [Porting guide](#Porting-guide) for your new board if it isn't in the list)
492ee67178SXianjun Jiao
50a2ffb301SXianjun Jiaoboard_name|board combination|status|SD card img|Vivado license
51a2ffb301SXianjun Jiao-------|-------|----|----|-----
521b00373fSJiao Xianjunzc706_fmcs2|[Xilinx ZC706 board](https://www.xilinx.com/products/boards-and-kits/ek-z7-zc706-g.html) + [FMCOMMS2/3/4](https://www.analog.com/en/design-center/evaluation-hardware-and-software/evaluation-boards-kits/eval-ad-fmcomms2.html)|Done|[32bit img](https://users.ugent.be/~xjiao/openwifi-1.3.0-wilsele-32bit.img.xz)|Need
531b00373fSJiao Xianjunzed_fmcs2|[Xilinx zed board](https://www.xilinx.com/products/boards-and-kits/1-8dyf-11.html) + [FMCOMMS2/3/4](https://www.analog.com/en/design-center/evaluation-hardware-and-software/evaluation-boards-kits/eval-ad-fmcomms2.html)|Done|[32bit img](https://users.ugent.be/~xjiao/openwifi-1.3.0-wilsele-32bit.img.xz)|**NO** need
541b00373fSJiao Xianjunadrv9364z7020|[ADRV9364-Z7020 + ADRV1CRR-BOB](https://www.analog.com/en/design-center/evaluation-hardware-and-software/evaluation-boards-kits/adrv9364-z7020.html)|Done|[32bit img](https://users.ugent.be/~xjiao/openwifi-1.3.0-wilsele-32bit.img.xz)|**NO** need
551b00373fSJiao Xianjunadrv9361z7035|[ADRV9361-Z7035 + ADRV1CRR-BOB/FMC](https://www.analog.com/en/design-center/evaluation-hardware-and-software/evaluation-boards-kits/ADRV9361-Z7035.html)|Done|[32bit img](https://users.ugent.be/~xjiao/openwifi-1.3.0-wilsele-32bit.img.xz)|Need
561b00373fSJiao Xianjunzc702_fmcs2|[Xilinx ZC702 board](https://www.xilinx.com/products/boards-and-kits/ek-z7-zc702-g.html) + [FMCOMMS2/3/4](https://www.analog.com/en/design-center/evaluation-hardware-and-software/evaluation-boards-kits/eval-ad-fmcomms2.html)|Done|[32bit img](https://users.ugent.be/~xjiao/openwifi-1.3.0-wilsele-32bit.img.xz)|**NO** need
571b00373fSJiao Xianjunantsdr|[MicroPhase](https://github.com/MicroPhase/) enhanced ADALM-PLUTO [Notes](kernel_boot/boards/antsdr/notes.md)|Done|[32bit img](https://users.ugent.be/~xjiao/openwifi-1.3.0-wilsele-32bit.img.xz)|**NO** need
58d5242439SJiao Xianjunzcu102_fmcs2|[Xilinx ZCU102 board](https://www.xilinx.com/products/boards-and-kits/ek-u1-zcu102-g.html) + [FMCOMMS2/3/4](https://www.analog.com/en/design-center/evaluation-hardware-and-software/evaluation-boards-kits/eval-ad-fmcomms2.html)|Done|[64bit img](https://users.ugent.be/~xjiao/openwifi-1.3.0-wilsele-64bit.img.xz)|Need
59f65d9fc8SJiao Xianjunzcu102_9371|[Xilinx ZCU102 board](https://www.xilinx.com/products/boards-and-kits/ek-u1-zcu102-g.html) + [ADRV9371](https://www.analog.com/en/design-center/evaluation-hardware-and-software/evaluation-boards-kits/eval-adrv9371.html)|Future|Future|Need
609e696164SXianjun Jiao
61b73660adSXianjun Jiao- board_name is used to identify FPGA design in openwifi-hw/boards/
62b73660adSXianjun 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.
632ee67178SXianjun Jiao
64b73660adSXianjun Jiao[[Quick start](#Quick-start)]
65b73660adSXianjun Jiao[[Basic operations](#Basic-operations)]
66b73660adSXianjun Jiao[[Update FPGA](#Update-FPGA)]
67b73660adSXianjun Jiao[[Update Driver](#Update-Driver)]
68b73660adSXianjun Jiao[[Update sdrctl](#Update-sdrctl)]
69b73660adSXianjun Jiao[[Easy Access and etc](#Easy-Access-and-etc)]
702ee67178SXianjun Jiao
71b73660adSXianjun Jiao[[Build openwifi Linux img from scratch](#Build-openwifi-Linux-img-from-scratch)]
72b73660adSXianjun Jiao[[Special note for 11b](#Special-note-for-11b)]
73b73660adSXianjun Jiao[[Porting guide](#Porting-guide)]
74d9e94a69SJiao Xianjun[[Project document](doc/README.md)]
7575890522SJiao Xianjun[[Application notes](doc/app_notes/README.md)]
762ee67178SXianjun Jiao
77b73660adSXianjun Jiao## Quick start
781f288d27SJiao Xianjun- Restore openwifi board specific img file (from the table) into a SD card. To do this, program "Disks" in Ubuntu can be used (Install: "sudo apt install gnome-disk-utility"). After restoring, the SD card should have 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:
79b1dd94e3Sluz paz  - Copy files in **openwifi/board_name** to the base directory of BOOT partition.
80b1dd94e3Sluz paz  - Copy **openwifi/zynqmp-common/Image** (zcu102 board) or **openwifi/zynq-common/uImage** (other boards) to the base directory of BOOT partition
819d56afc0SJiao 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.
829d56afc0SJiao Xianjun- Login to the board from your PC (PC Ethernet should have IP 192.168.10.1) with password **openwifi**.
832ee67178SXianjun Jiao  ```
842ee67178SXianjun Jiao  ssh [email protected]
852ee67178SXianjun Jiao  ```
86*40773b78SXianjun Jiao- Then, run openwifi AP and the on board webserver
879d56afc0SJiao Xianjun  ```
88*40773b78SXianjun Jiao  cd openwifi
89*40773b78SXianjun Jiao  ./wgd.sh
90*40773b78SXianjun Jiao  ./fosdem.sh
91*40773b78SXianjun Jiao  (Use "./wgd.sh 1" to enable experimental AMPDU aggregation on top of 11n)
92f4c9b072SXianjun Jiao  (Use "./fosdem-11ag.sh" to force 11a/g mode)
939d56afc0SJiao Xianjun  ```
940fae09a8SJiao Xianjun  **NOTE** adrv9361z7035 has ultra low TX power in 5GHz. Move **CLOSER** when you use that board in 5GHz!!!
95b1dd94e3Sluz paz- After you see the "openwifi" SSID on your device (Phone/Laptop/etc), connect it. Browser to 192.168.13.1 on your device, you should see the webpage hosted by the webserver on board.
969d56afc0SJiao Xianjun  - Note 1: If your device doesn't support 5GHz (ch44), please change the **hostapd-openwifi.conf** on board and re-run fosdem.sh.
979d56afc0SJiao 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)
980a9ca3b0SDaniel Bovensiepen Li- To give the Wi-Fi client internet access, configure routing/NAT **on the PC**:
99b73660adSXianjun Jiao  ```
100b73660adSXianjun Jiao  sudo sysctl -w net.ipv4.ip_forward=1
101a2ffb301SXianjun Jiao  sudo iptables -t nat -A POSTROUTING -o NICY -j MASQUERADE
1022ee67178SXianjun Jiao  sudo ip route add 192.168.13.0/24 via 192.168.10.122 dev ethX
103b73660adSXianjun Jiao  ```
104a2ffb301SXianjun Jiao  **ethX** is the PC NIC name connecting the board ethernet. **NICY** is the PC NIC name connecting internet (WiFi or another ethernet).
1052ee67178SXianjun Jiao
106b73660adSXianjun Jiao  If you want, uncommenting "net.ipv4.ip_forward=1" in /etc/sysctl.conf to make IP forwarding persistent on PC.
10722dd0cc4SXianjun Jiao- To monitor **real-time CSI (Chip State Information)**, such as timestamp, frequency offset, channel state, equalizer, please refer to [[CSI notes](doc/app_notes/csi.md)].
108b73660adSXianjun Jiao
109b73660adSXianjun Jiao## Basic operations
110b73660adSXianjun 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.
111b73660adSXianjun Jiao- Bring up the openwifi NIC sdr0:
112b73660adSXianjun Jiao  ```
113b73660adSXianjun Jiao  cd ~/openwifi && ./wgd.sh
114f4c9b072SXianjun Jiao  (Use "./wgd.sh 1" to enable experimental AMPDU aggregation)
115b73660adSXianjun Jiao  ```
116b73660adSXianjun Jiao- Use openwifi as client to connect other AP (Change wpa-connect.conf on board firstly):
117b73660adSXianjun Jiao  ```
1182ee67178SXianjun Jiao  route del default gw 192.168.10.1
119b73660adSXianjun Jiao  wpa_supplicant -i sdr0 -c wpa-connect.conf &
1202ee67178SXianjun Jiao  dhclient sdr0
1212ee67178SXianjun Jiao  ```
122b73660adSXianjun Jiao- Use openwifi in ad-hoc mode: Please check **sdr-ad-hoc-up.sh** and **sdr-ad-hoc-join.sh**.
123b73660adSXianjun Jiao- Use openwifi in monitor mode: Please check **monitor_ch.sh**.
124b73660adSXianjun 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.
125b73660adSXianjun Jiao- **sdrctl** is a dedicated tool to access openwifi driver/FPGA, please check doc directory for more information.
126b73660adSXianjun Jiao
127b73660adSXianjun Jiao## Update FPGA
128b73660adSXianjun Jiao
129b1dd94e3Sluz pazSince the pre-built SD card image might not have the latest bug-fixes/updates, it is recommended to update the fpga bitstream on board.
130b73660adSXianjun Jiao
13120dd8379SJiao Xianjun- Install Vivado/SDK 2018.3 (Vivado Design Suite - HLx Editions - 2018.3 Full Product Installation. If you don't need to generate new FPGA bitstream, WebPack version without license is enough)
132b73660adSXianjun Jiao- Setup environment variables (use absolute path):
1332ee67178SXianjun Jiao  ```
13420dd8379SJiao Xianjun  export XILINX_DIR=your_Xilinx_install_directory
13520dd8379SJiao Xianjun  (Example: export XILINX_DIR=/opt/Xilinx. The Xilinx directory should include sth like: Downloads, SDK, Vivado, xic)
136abdb610fSJiao Xianjun  export OPENWIFI_HW_DIR=your_openwifi-hw_directory
13720dd8379SJiao Xianjun  (The directory where you store the open-sdr/openwifi-hw repo via git clone)
138b73660adSXianjun Jiao  export BOARD_NAME=your_board_name
1392ee67178SXianjun Jiao  ```
140abdb610fSJiao Xianjun- Pick the FPGA bitstream from openwifi-hw, and generate BOOT.BIN and transfer it on board via ssh channel:
1412ee67178SXianjun Jiao  ```
142febc5adfSXianjun Jiao  For Zynq 7000:
143abdb610fSJiao Xianjun
144abdb610fSJiao Xianjun  cd openwifi/user_space; ./boot_bin_gen.sh $OPENWIFI_HW_DIR $XILINX_DIR $BOARD_NAME
145febc5adfSXianjun Jiao
146febc5adfSXianjun Jiao  For Zynq MPSoC (like zcu102 board):
147abdb610fSJiao Xianjun  cd openwifi/user_space; ./boot_bin_gen_zynqmp.sh $OPENWIFI_HW_DIR $XILINX_DIR $BOARD_NAME
148febc5adfSXianjun Jiao
149abdb610fSJiao Xianjun  cd openwifi/kernel_boot/boards/$BOARD_NAME/output_boot_bin; scp ./BOOT.BIN [email protected]:
1502ee67178SXianjun Jiao  ```
151b73660adSXianjun Jiao- On board: Put the BOOT.BIN into the BOOT partition.
1522ee67178SXianjun Jiao  ```
153b73660adSXianjun Jiao  mount /dev/mmcblk0p1 /mnt
154b73660adSXianjun Jiao  cp ~/BOOT.BIN /mnt
155f4c9b072SXianjun Jiao  cd /mnt
156f4c9b072SXianjun Jiao  sync
157f4c9b072SXianjun Jiao  cd ~
158b73660adSXianjun Jiao  umount /mnt
15989e3e0fbSXianjun Jiao  ```
160b73660adSXianjun Jiao  **Power cycle** the board to load new FPGA bitstream.
1612ee67178SXianjun Jiao
162*40773b78SXianjun Jiao  To load FPGA dynamically without rebooting/power-cycle, check [Driver and FPGA dynamic reloading app note](./doc/app_notes/drv_fpga_dynamic_loading.md).
163*40773b78SXianjun Jiao
164b73660adSXianjun Jiao## Update Driver
1652ee67178SXianjun Jiao
166b1dd94e3Sluz pazSince the pre-built SD card image might not have the latest bug-fixes/updates, it is recommended to update the driver on board.
167b73660adSXianjun Jiao- Prepare Analog Devices Linux kernel source code (only need to run once):
1682ee67178SXianjun Jiao  ```
169abdb610fSJiao Xianjun  cd openwifi/user_space; ./prepare_kernel.sh $XILINX_DIR ARCH_BIT build
170febc5adfSXianjun Jiao  (For Zynq 7000, ARCH_BIT should be 32, for Zynq MPSoC, ARCH_BIT should be 64)
1712ee67178SXianjun Jiao  ```
172f773d8deSJiao Xianjun  **Note**: In Ubuntu, gcc-10 might have issue ('yylloc' error), so use gcc-9 if you encounter error.
173b73660adSXianjun Jiao- Compile the latest openwifi driver
1742ee67178SXianjun Jiao  ```
175abdb610fSJiao Xianjun  cd openwifi/driver; ./make_all.sh $XILINX_DIR ARCH_BIT
176febc5adfSXianjun Jiao  (For Zynq 7000, ARCH_BIT should be 32, for Zynq MPSoC, ARCH_BIT should be 64)
1771e86c1aaSXianjun Jiao  (More arguments (max 5) beyond above two will be converted to #define argument in pre_def.h for conditional compiling)
1782ee67178SXianjun Jiao  ```
179b73660adSXianjun Jiao- Copy the driver files to the board via ssh channel
1802ee67178SXianjun Jiao  ```
181abdb610fSJiao Xianjun  cd openwifi/driver; scp `find ./ -name \*.ko` [email protected]:openwifi/
182b73660adSXianjun Jiao  ```
183*40773b78SXianjun Jiao  Now you can use **wgd.sh** on board to load the new openwifi driver. **wgd.sh** also tries to reload FPGA img if system_top.bit.bin presents in the same directory.
184*40773b78SXianjun Jiao  Find more information in [Driver and FPGA dynamic reloading app note](./doc/app_notes/drv_fpga_dynamic_loading.md).
185*40773b78SXianjun Jiao
18619bec082SJiao Xianjun  **Note**: If you have symbol or version error while loadng the driver, it could be because the kernel in the SD card image is too old. In this case, you need to follow [[Build openwifi Linux img from scratch](#Build-openwifi-Linux-img-from-scratch)] to generate your new SD card image.
1879e8d5e4aSJiao Xianjun
188b73660adSXianjun Jiao## Update sdrctl
189b73660adSXianjun Jiao- Copy the sdrctl source files to the board via ssh channel
190b73660adSXianjun Jiao  ```
191abdb610fSJiao Xianjun  cd openwifi/user_space/sdrctl_src; scp `find ./ -name \*` [email protected]:openwifi/sdrctl_src/
192b73660adSXianjun Jiao  ```
193b73660adSXianjun Jiao- Compile the sdrctl **on board**:
194b73660adSXianjun Jiao  ```
195b73660adSXianjun Jiao  cd ~/openwifi/sdrctl_src/ && make && cp sdrctl ../ && cd ..
196b73660adSXianjun Jiao  ```
197b73660adSXianjun Jiao## Easy Access and etc
1989e8d5e4aSJiao Xianjun
199b73660adSXianjun Jiao- FPGA and driver on board update scripts
200981758c0SXianjun Jiao  - Setup [ftp server](https://ubuntu.com/server/docs/service-ftp) on PC, allow anonymous and change ftp root directory to the openwifi directory.
201b73660adSXianjun Jiao  - On board:
202b73660adSXianjun Jiao  ```
203b73660adSXianjun Jiao  ./sdcard_boot_update.sh $BOARD_NAME
2049e8d5e4aSJiao Xianjun  (Above command downloads uImage, BOOT.BIN and devicetree.dtb, then copy them into boot partition. Remember to power cycle)
2059e8d5e4aSJiao Xianjun  ./wgd.sh remote
2069e8d5e4aSJiao Xianjun  (Above command downloads driver files, and brings up sdr0)
207b73660adSXianjun Jiao  ```
208b73660adSXianjun Jiao- Access the board disk/rootfs like a disk:
209b73660adSXianjun Jiao   - On PC: "File manager --> Connect to Server...", input: sftp://[email protected]/root
210b73660adSXianjun Jiao   - Input password "openwifi"
2119e8d5e4aSJiao Xianjun
212b73660adSXianjun Jiao## Build openwifi Linux img from scratch
213f4c9b072SXianjun Jiao- Install the devicetree compiler -- dtc. (For Ubuntu: sudo apt install device-tree-compiler)
214f4c9b072SXianjun Jiao- Install the mkimage tool. (For Ubuntu: sudo apt install u-boot-tools)
215f4c9b072SXianjun Jiao- Download [2019_R1-2020_06_22.img.xz](http://swdownloads.analog.com/cse/2019_R1-2020_06_22.img.xz) from [Analog Devices Wiki](https://wiki.analog.com/resources/tools-software/linux-software/zynq_images). Burn it to a SD card.
216b73660adSXianjun 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):
2172ee67178SXianjun Jiao  ```
218b73660adSXianjun Jiao  export SDCARD_DIR=sdcard_mount_point
21920dd8379SJiao Xianjun  export XILINX_DIR=your_Xilinx_install_directory
220abdb610fSJiao Xianjun  export OPENWIFI_HW_DIR=your_openwifi-hw_directory
221b73660adSXianjun Jiao  export BOARD_NAME=your_board_name
222b73660adSXianjun Jiao  ```
223b73660adSXianjun Jiao- Run script to update SD card:
224b73660adSXianjun Jiao  ```
225abdb610fSJiao Xianjun  cd openwifi/user_space; ./update_sdcard.sh $OPENWIFI_HW_DIR $XILINX_DIR $BOARD_NAME $SDCARD_DIR
226b73660adSXianjun Jiao  ```
2279d56afc0SJiao Xianjun- Config your board to SD card boot mode (check the board manual). Insert the SD card to the board. Power on.
2289d56afc0SJiao Xianjun- Login to the board from your PC (PC Ethernet should have IP 192.168.10.1) with one time password **analog**.
2299d56afc0SJiao Xianjun  ```
2309d56afc0SJiao Xianjun  ssh [email protected]
2319d56afc0SJiao Xianjun  ```
2329d56afc0SJiao Xianjun- Setup routing/NAT **on the PC** for your board -- this internet connection is **important** for post installation/config.
2339d56afc0SJiao Xianjun  ```
2349d56afc0SJiao Xianjun  sudo sysctl -w net.ipv4.ip_forward=1
235a2ffb301SXianjun Jiao  sudo iptables -t nat -A POSTROUTING -o NICY -j MASQUERADE
2369d56afc0SJiao Xianjun  sudo ip route add 192.168.13.0/24 via 192.168.10.122 dev ethX
2379d56afc0SJiao Xianjun  ```
238a2ffb301SXianjun Jiao  **ethX** is the PC NIC name connecting the board ethernet. **NICY** is the PC NIC name connecting internet (WiFi or another ethernet).
2399d56afc0SJiao Xianjun
2409d56afc0SJiao Xianjun  If you want, uncommenting "net.ipv4.ip_forward=1" in /etc/sysctl.conf to make IP forwarding persistent on PC.
2419d56afc0SJiao Xianjun- Run **one time** script on board to complete post installation/config (After this, password becomes **openwifi**)
2429d56afc0SJiao Xianjun  ```
2439d56afc0SJiao Xianjun  cd ~/openwifi && ./post_config.sh
2449d56afc0SJiao Xianjun  ```
2459d56afc0SJiao Xianjun- Now you can start from [Quick start](#Quick-start) (Skip the image download and burn step)
2462ee67178SXianjun Jiao
247b73660adSXianjun Jiao## Special note for 11b
248e17fdc17Smmehari
249e17fdc17SmmehariOpenwifi 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.
250e17fdc17Smmehari
251e17fdc17SmmehariAs a solution to this problem, openwifi can be fully controlled only if communicating with APs/clients instantiated using hostapd/wpa_supplicant userspace programs respectively.
252e17fdc17Smmehari
253e17fdc17SmmehariFor 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.
254e17fdc17Smmehari
255e17fdc17SmmehariOn 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.
256e17fdc17Smmehari```
257b1633ad3SJiao Xianjunsudo apt-get install libssl1.0-dev
258abdb610fSJiao Xianjuncd openwifi/user_space; ./build_wpa_supplicant_wo11b.sh
259e17fdc17Smmehari```
260b73660adSXianjun Jiao## Porting guide
261e17fdc17Smmehari
262fbcc0b46SJiao XianjunThis section explains the porting work by showing the differences between openwifi and Analog Devices reference design. openwifi is based on 2019_R1 of [HDL Reference Designs](https://github.com/analogdevicesinc/hdl).
263b73660adSXianjun Jiao- Open the fmcomms2 + zc706 reference design at hdl/projects/fmcomms2/zc706 (Please read Analog Devices help)
264b73660adSXianjun Jiao- Open the openwifi design zc706_fmcs2 at openwifi-hw/boards/zc706_fmcs2 (Please read openwifi-hw repository)
265b73660adSXianjun Jiao- "Open Block Design", you will see the differences between openwifi and the reference design. Both in "diagram" and in "Address Editor".
266b1dd94e3Sluz paz- 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 device (FPGA blocks in our case).
267b73660adSXianjun 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.
268b73660adSXianjun 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.
269b73660adSXianjun Jiao
2706aae74b0SLina Ceballos## License
2716aae74b0SLina Ceballos
2726aae74b0SLina CeballosThis project is available as open source under the terms of the AGPL 3.0 Or later. However, some elements are being licensed under GPL 2-0 or later and BSD 3 license . For accurate information, please check individual files.
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