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* ath79: enable UART in SoC DTSI filesAdrian Schmutzler2021-02-241-4/+0
| | | | | | | | | | | | | | | The uart node is enabled on all devices except one (GL-USB150 *). Thus, let's not have a few hundred nodes to enable it, but do not disable it in the first place. Where the majority of devices is using it, also move the serial0 alias to the DTSI. *) Since GL-USB150 even defines serial0 alias, the missing uart is probably just a mistake. Anyway, disable it for now so this patch stays cosmetic. Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ath79: drop num-cs for SPI controllerAdrian Schmutzler2020-12-041-2/+0
| | | | | | | | None of the spi drivers on ath79 uses the num-cs property. Cc: Chuanhong Guo <gch981213@gmail.com> Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de> Acked-by: Chuanhong Guo <gch981213@gmail.com>
* ath79: remove model name from LED labelsAdrian Schmutzler2020-10-021-3/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Currently, we request LED labels in OpenWrt to follow the scheme modelname:color:function However, specifying the modelname at the beginning is actually entirely useless for the devices we support in OpenWrt. On the contrary, having this part actually introduces inconvenience in several aspects: - We need to ensure/check consistency with the DTS compatible - We have various exceptions where not the model name is used, but the vendor name (like tp-link), which is hard to track and justify even for core-developers - Having model-based components will not allow to share identical LED definitions in DTSI files - The inconsistency in what's used for the model part complicates several scripts, e.g. board.d/01_leds or LED migrations from ar71xx where this was even more messy Apart from our needs, upstream has deprecated the label property entirely and introduced new properties to specify color and function properties separately. However, the implementation does not appear to be ready and probably won't become ready and/or match our requirements in the foreseeable future. However, the limitation of generic LEDs to color and function properties follows the same idea pointed out above. Generic LEDs will get names like "green:status" or "red:indicator" then, and if a "devicename" is prepended, it will be the one of an internal device, like "phy1:amber:status". With this patch, we move into the same direction, and just drop the boardname from the LED labels. This allows to consolidate a few definitions in DTSI files (will be much more on ramips), and to drop a few migrations compared to ar71xx that just changed the boardname. But mainly, it will liberate us from a completely useless subject to take care of for device support review and maintenance. To also drop the boardname from existing configurations, a simple migration routine is added unconditionally. Although this seems unfamiliar at first look, a quick check in kernel for the arm/arm64 dts files revealed that while 1033 lines have labels with three parts *:*:*, still 284 actually use a two-part labelling *:*, and thus is also acceptable and not even rare there. Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ath79: move dts-v1 statement to ath79.dtsiAdrian Schmutzler2020-09-251-3/+2
| | | | | | | | | | | | | | | | | | | The "/dts-v1/;" identifier is supposed to be present once at the top of a device tree file after the includes have been processed. In ath79, we therefore requested to have in the DTS files so far, and omit it in the DTSI files. However, essentially the syntax of the parent ath79.dtsi file already determines the DTS version, so putting it into the DTS files is just a useless repetition. Consequently, this patch puts the dts-v1 statement into the parent ath79.dtsi, which is (indirectly) included by all DTS files. All other occurences are removed. Since the dts-v1 statement needs to be before any other definitions, this also moves the includes to make sure the ath79.dtsi or its descendants are always included first. Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ath79: DTS file style update and harmonizationAdrian Schmutzler2019-11-061-5/+6
| | | | | | | | | | | | | | | | | | This applies several style adjustments that have been requested in recent reviews to older DTS files. Despite making the code base more consistent, this will also help to reduce review time when DTSes are copy/pasted. Applied changes: - Rename gpio-keys/gpio-leds to keys/leds - Remove node labels that are not used - Use label property for partitions - Prefix led node labels with "led_" - Remove redundant includes - Harmonize new lines after status property - Several smaller style fixes Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ath79: convert devices to interrupt-driven gpio-keysAdrian Schmutzler2019-09-221-2/+1
| | | | | | | | | | | | | This converts all remaining devices to use interrupt-driven gpio-keys compatible instead of gpio-keys-polled. The poll-interval is removed. Only ar7240_netgear_wnr612-v2 is kept at gpio-keys-polled, as this one is using ath9k keys. Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de> Tested-by: Karl Palsson <karlp@etactica.com> Tested-by: Dmitry Tunin <hanipouspilot@gmail.com>
* ath79: dts: fix ja76pf2 spi frequencyTomasz Maciej Nowak2019-09-011-1/+1
| | | | | | | | | | | The frequency was filled acording the information from datasheet for particular chip (Winbond 25Q128BVFG). Unfortunately this led to coruption and introduced bad blocks on the chip. Reducing the frequency to commonly used in ath79, made the board more stable and no new bad blocks were spoted. Fixes: b3a0c97 ("ath79: add support for jjPlus JA76PF2") Signed-off-by: Tomasz Maciej Nowak <tomek_n@o2.pl>
* ath79: add support for jjPlus JA76PF2Tomasz Maciej Nowak2019-03-181-0/+126
jjPlus JA76PF2 (marketed as IntellusPro2) is a network embedded board. Specification SoC: Atheros AR7161 RAM: 64 MB DDR Flash: 16 MB SPI NOR Ethernet: 2x 10/100/1000 Mbps AR8316 LAN (CN11), WAN/PoE (CN6 - close to power barrel connector, 48 V) MiniPCI: 2x LEDS: 4x, which 3 are GPIO controlled Buttons: 2x GPIO controlled Reset (SW1, closer to ethernet ports), WPS (SW2) Serial: 1x (only RX and TX are wired) baud: 115200, parity: none, flow control: none Currently there is one caveat compared to ar71xx target images as the MAC addresses are random on every reboot. To remedy this one needs to store the WAN MAC address in RedBoot configuration. OpenWrt on first boot, after flashing, will read out the address and assign proper ones to both WAN and LAN ports. It is iportant to NOT keep the old configuration when doing sysupgrade from ar71xx. Upgrading from OpenWrt ar71xx image 1. Connect to serial port, 2. Download OpenWrt sysupgrade image to /tmp directory and flash it with: sysupgrade -n <openwrt_sysupgrade_image_name> 3. After writing new image OpenWrt will reboot, now interrupt boot process and enter RedBoot (bootloader) command line by pressing Ctrl+C, 4. Enter following commands (replace variable accordingly), set_mac (to view MAC addresses) alias ethaddr <wan_port_mac_adress> (confirm storing the value by inputting y and pressing Enter) reset 5. Now board should restart and boot OpenWrt with proper MAC addresses. Installation 1. Prepare TFTP server with OpenWrt initramfs image, 2. Connect to WAN ethernet port, 3. Connect to serial port, 4. Power on the board and enter RedBoot (bootloader) command line by pressing Ctrl+C, 5. Enter following commands (replace variables accordingly): set_mac (to view MAC addresses) alias ethaddr <wan_port_mac_address> (confirm storing the value by inputting y and pressing Enter) ip_adress -l <board_ip_adress>/24 -h <tftp_server_ip_adress> load -r -b 0x80060000 <openwrt_initramfs_image_name> exec -c "" 6. Now board should boot OpenWrt initramfs image, 7. Download OpenWrt sysupgrade image to /tmp directory and flash it with: sysupgrade <openwrt_sysupgrade_image_name> 8. Wait few minutes, after the D2 LED will stop blinking, the board is ready for configuration. Signed-off-by: Tomasz Maciej Nowak <tomek_n@o2.pl>