This commit made the following changes to sync all bootcount scripts:
1. use boot() instead of start()
This script only needs to be executed once when boot is complete.
use boot() to make this explicit.
2. drop sourcing of /lib/functions.sh
This is aready done in /etc/rc.common.
3. ramips: replace board name checking with a case
Signed-off-by: Chuanhong Guo <gch981213@gmail.com>
The AVM Fritz!Box 7530 (and probably other AVM IPQ4019 NAND devices)
has it's caldata not stored consistently, but instead at currently
3 known possible offsets.
As we get a non-zero exit code from fritz_cal_extract, simply try all
three possible offsets on both bootloader partitions, until a matching
caldata for each radio is found.
Reported-by: Hauke Mehrtens <hauke@hauke-m.de>
Signed-off-by: David Bauer <mail@david-bauer.net>
This changes size and offset set for WiFi caldata extraction and
MAC address adjustment to hexadecimal notation.
This will be much clearer for the reader when numbers are big, and
will also match the style used for mtd-cal-data in DTS files.
Since dd cannot deal with hexadecimal notation, one has to convert
back to decimal by simple $(($hexnum)).
Acked-by: Alexander Couzens <lynxis@fe80.eu>
Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
This changes the offsets for the MAC address location in
mtd_get_mac_binary* and mtd_get_mac_text to hexadecimal notation.
This will be much clearer for the reader when numbers are big, and
will also match the style used for mtd-mac-address in DTS files.
(e.g. 0x1006 and 0x5006 are much more useful than 4102 and 20486)
Acked-by: Alexander Couzens <lynxis@fe80.eu>
Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
The [devm_]mdiobus_alloc[_size()] functions are creating
the array of interrupt numbers as well as initializing
them to POLLING.
Signed-off-by: Christian Lamparter <chunkeey@gmail.com>
The MDIO node will become more important in the future.
Hence, this patch adds DT labels to make the properties
inside the various subnodes more accessible.
Signed-off-by: Christian Lamparter <chunkeey@gmail.com>
1) nand_do_upgrade() is always called by a target code
2) nand_do_upgrade() starts with calling platform_nand_pre_upgrade()
It means there is no need for the platform_nand_pre_upgrade() callback
at all. All code that was present there could bo moved & simplly called
by a target right before the nand_do_upgrade().
Signed-off-by: Rafał Miłecki <rafal@milecki.pl>
When OEM volumes are present in the [alt_]firmware partition,
sysupgrade will write a new kernel, but will fail to write
the root file system. The next boot will hang indefinitely
Waiting for root device /dev/ubiblock0_0...
Modified ipq40xx/base-files/lib/upgrade/linksys.sh
to remove both `squashfs` and `ubifs` if found
on the target firmware partition's UBI device.
Run-tested-on: Linksys EA8300
Signed-off-by: Jeff Kletsky <git-commits@allycomm.com>
Signed-off-by: Christian Lamparter <chunkeey@gmail.com>
[applied some shellcheck suggestions as well]
Lets bump kernel to 4.19 on targets which were run tested or got ACKed
so we've enough time to make it ready for next release:
armvirt/32 (runtested in qemu)
armvirt/64 (runtested in qemu)
ath79/generic (runtested on Carambola2)
gemini/generic (runtested on DIR-685, DNS-313, SQ201, SL93512R)
imx6/generic (runtested on Apalis)
ipq40xx/generic (runtested on nbg6617)
malta/be64 (runtested in qemu)
malta/be (runtested in qemu)
malta/le (runtested in qemu)
malta/le64 (runtested in qemu)
mpc85xx/generic (runtested on TL-WDR4900)
mpc85xx/p2020 (runtested on P2020RDB)
mvebu/cortexa53
mvebu/cortexa72
mvebu/cortexa10
octeon/generic (runtested on EdgeRouter Lite)
sunxi/cortexa53 (build tested only)
sunxi/cortexa7 (runtested on Lime2-K)
sunxi/cortexa8 (build tested only)
tegra/generic
x86/64 (runtested in qemu)
Acked-by: Zoltan HERPAI <wigyori@uid0.hu> [sunxi]
Tested-by: Linus Walleij <linus.walleij@linaro.org> [gemini]
Tested-by: Tomasz Maciej Nowak <tomek_n@o2.pl> [mvebu, tegra]
Tested-by: Daniel Engberg <daniel.engberg.lists@pyret.net> [octeon]
Tested-by: Pawel Dembicki <paweldembicki@gmail.com> [mpc85xx/generic mpc85xx/p2020]
Signed-off-by: Stijn Tintel <stijn@linux-ipv6.be>
Signed-off-by: Petr Štetiar <ynezz@true.cz>
Cherry-picked from CAF QSDK repo.
see 090-ipq40xx-fix-high-resolution-timer.patch
Original commit message:
The kernel is failing in switching the timer for high resolution
mode and clock source operates in 10ms resolution. The always-on
property needs to be given for timer device tree node to make
clock source working in 1ns resolution.
Signed-off-by: Pavel Kubelun <be.dissent@gmail.com>
Signed-off-by: Christian Lamparter <chunkeey@gmail.com>
[changed authorship of main patch to pavel and cherry-picked
patch to Abhishek Sahu]
This should align opp table with what it was before converting to OPP v2.
Signed-off-by: Pavel Kubelun <be.dissent@gmail.com>
Signed-off-by: Christian Lamparter <chunkeey@gmail.com>
The Linksys EA8300 is based on QCA4019 and QCA9888 and provides three,
independent radios. NAND provides two, alternate kernel/firmware
images with fail-over provided by the OEM U-Boot.
Installation:
"Factory" images may be installed directly through the OEM GUI.
Hardware Highlights:
* IPQ4019 at 717 MHz (4 CPUs)
* 256 MB NAND (Winbond W29N02GV, 8-bit parallel)
* 256 MB RAM
* Three, fully-functional radios; `iw phy` reports (FCC/US, -CT):
* 2.4 GHz radio at 30 dBm
* 5 GHz radio on ch. 36-64 at 23 dBm
* 5 GHz radio on ch. 100-144 at 23 dBm (DFS), 149-165 at 30 dBm
#{ managed } <= 16, #{ AP, mesh point } <= 16, #{ IBSS } <= 1
* All two-stream, MCS 0-9
* 4x GigE LAN, 1x GigE Internet Ethernet jacks with port lights
* USB3, single port on rear with LED
* WPS and reset buttons
* Four status lights on top
* Serial pads internal (unpopulated)
"Linksys Dallas WiFi AP router based on Qualcomm AP DK07.1-c1"
Implementation Notes:
The OEM flash layout is preserved at this time with 3 MB kernel and
~69 MB UBIFS for each firmware version. The sysdiag (1 MB) and
syscfg (56 MB) partitions are untouched, available as read-only.
Serial Connectivity:
Serial connectivity is *not* required to flash.
Serial may be accessed by opening the device and connecting
a 3.3-V adapter using 115200, 8n1. U-Boot access is good,
including the ability to load images over TFTP and
either run or flash them.
Looking at the top of the board, from the front of the unit,
J3 can be found on the right edge of the board, near the rear
|
J3 |
|-| |
|O| | (3.3V seen, open-circuit)
|O| | TXD
|O| | RXD
|O| |
|O| | GND
|-| |
|
Unimplemented:
* serial1 "ttyQHS0" (serial0 works as console)
* Bluetooth; Qualcomm CSR8811 (potentially conected to serial1)
Other Notes:
https://wikidevi.com/wiki/Linksys_EA8300 states
FCC docs also cover the Linksys EA8250. According to the
RF Test Report BT BR+EDR, "All models are identical except
for the EA8300 supports 256QAM and the EA8250 disable 256QAM."
Signed-off-by: Jeff Kletsky <git-commits@allycomm.com>
Consistently handle boot-count reset and upgrade across
ipq40xx, ipq806x, kirkwood, mvebu
Dual-firmware devices often utilize a specific MTD partition
to record the number of times the boot loader has initiated boot.
Most of these devices are NAND, typically with a 2k erase size.
When this code was ported to the ipq40xx platform, the device in hand
used NOR for this partition, with a 16-byte "record" size. As the
implementation of `mtd resetbc` is by-platform, the hard-coded nature
of this change prevented proper operation of a NAND-based device.
* Unified the "NOR" variant with the rest of the Linksys variants
* Added logging to indicate success and failure
* Provided a meaningful return value for scripting
* "Protected" the use of `mtd resetbc` in start-up scripts so that
failure does not end the boot sequence
* Moved Linksys-specific actions into common `/etc/init.d/bootcount`
For upgrade, these devices need to determine which partition to flash,
as well as set certain U-Boot envirnment variables to change the next
boot to the newly flashed version.
* Moved upgrade-related environment changes out of bootcount
* Combined multiple flashes of environment into single one
* Current-partition detection now handles absence of `boot_part`
Runtime-tested: Linksys EA8300
Signed-off-by: Jeff Kletsky <git-commits@allycomm.com>
Signed-off-by: Christian Lamparter <chunkeey@gmail.com>
[checkpatch.pl fixes, traded split strings for 80+ chars per line]
This moves some new configuration options to the generic kernel
configuration instead of configuring them for each target on our own.
Signed-off-by: Hauke Mehrtens <hauke@hauke-m.de>
Extended mksenaofw to support new "capwap" header structure.
This supports flashing from factory 3.0.0, 3.0.1, 3.1.0 and 3.5.5
firmware.
Note that the factory image format changes for 3.1 and later firmware,
and that the 3.1.0 and 3.5.5 Engenius firmware will refuse the
factory_30.bin file. Similarly, the 3.0.0 and 3.0.1 Engenius firmware
will refuse the factory_35.bin file.
Flashing from the Engenius 3.1.0 firmware with the factory_35.bin
firmware has not been tested, as 3.1.0 firmware (Engenius "middleFW")
is only intended as part of the upgrade path to 3.5.5 firmware.
Modified ipq40xx image Makefile to appropriately invoke mksenaofw
with new parameters to configure the capwap header.
Note that there is currently no method to return to factory firmware,
so this is a one-way street.
Path from factory 3.0.0 and 3.0.1 (EnGenius) software to OpenWrt is
to navigate to 192.168.1.1 on the stock firmware and navigate to the
firmware menu. Then copy the URL you have for that page, something like
http://192.168.1.1/cgi-bin/luci/;stok=12345abcdef/admin/system/flashops
and replace the trailing /admin/system/flashops with just /easyflashops
You should then be presented with a simple "Firmware Upgrade" page.
On that page, BE SURE TO CLEAR the "Keep Settings:" checkbox.
Choose the openwrt-ipq40xx-engenius_ens620ext-squashfs-factory_30.bin,
click "Upgrade" and on the following page select "Proceed".
Path from factory 3.5.5 (EnGenius) software to OpenWrt is simply to
use the stock firmware update menu. Choose the
openwrt-ipq40xx-engenius_ens620ext-squashfs-factory_35.bin and click
"Upload" and "Proceed".
The device should then flash the OpenWrt firmware and reboot. Note
that this resets the device to a default configuration with Wi-Fi
disabled, LAN1/PoE acting as a WAN port (running DHCP client) and LAN2
acting as a LAN port with a DHCP server on 192.168.1.x (AP is at
192.168.1.1)
Signed-off-by: Steve Glennon <s.glennon@cablelabs.com>
Signed-off-by: Christian Lamparter <chunkeey@gmail.com>
[sorry, for unfixing the 80-lines eyesores.]
This patch works around an issue where reboot would cause the AP
to power down and not reboot.
The ipq4019 restart controller reboot causes the system
to power down and not recover. Fix is to disable the restart
controller in the device tree and the device reverts to
using the watchdog to perform the reset.
The real problem is due to the buggy bootloader that ships
with the device. Steve Glennon reported in the PR for this
patch: <https://github.com/openwrt/openwrt/pull/2009> that:
"the problem was due to a bad u-boot that ships with the device.
Using the u-boot that comes with 3.5.5.3 EnGenius factory
software now allows the old code (using the do_msm_reboot)
to reboot successfully.
On to the bad news:
Well 3.5.5.3 is a bad path. Finally managed to recover. You
CANNOT use prior EnGenius firmware to downgrade.
Findings:
* They now password protect the serial console with a new, unkown
password.
* They changed the protection on their walled-garden. I have to
use the ssh admin@ip /bin/sh --login to get out of their
walled-garden.
* Attempts to flash the original 3.0.0 or 3.0.1 EnGenius firmware
fail through the UI and sysupgrade. Their firmware update GUI now
seem to detect regular openwrt images, but they fail to flash
Attempts to flash a normal OpenWrt image with sysupgrade fail.
[..]
Attempts to sysupgrade with EnGenius firmware fail with the same
"mandatory section(s) missing" error, so you cannot downgrade to
3.0.0 or 3.0.1."
Signed-off-by: Steve Glennon <s.glennon@cablelabs.com>
Signed-off-by: Christian Lamparter <chunkeey@gmail.com> [added valuable
findings from github discussion]
If the target supports a newer kernel version that is not used by default
yet, it can be enabled with this option
Signed-off-by: Felix Fietkau <nbd@nbd.name>
This patch adds a ChromiumOS 3.18 patch [0] that fixes memory
allocation issues under memory pressure by keeping track
of missed allocs and rectify the omission at a later date.
It also adds ethtool counters for memory allocation
failures accounting so this can be verified.
[0] <d4e1e4ce68>
Reported-by: Chen Minqiang <ptpt52@gmail.com>
Signed-off-by: Christian Lamparter <chunkeey@gmail.com>
Hardware
--------
CPU: Qualcomm IPQ4018
RAM: 256M
FLASH: 32M SPI NOR W25Q256
ETH: QCA8075
WiFi2: IPQ4018 2T2R 2SS b/g/n
WiFi5: IPQ4018 2T2R 2SS n/ac
LED: - Power amber
- LAN1(PoE) green
- LAN2 green
- Wi-Fi 2.4GHz green
- Wi-Fi 5GHz green
BTN: - WPS
UART: 115200n8 3.3V J1
VCC(1) - GND(2) - TX(3) - RX(4)
Added basic support to get the device up and running for a sysupgrade
image only.
There is currently no way back to factory firmware, so this is a one-way
street to OpenWRT.
Install from factory condition is convoluted, and may brick your device:
1) Enable SSH and disable the CLI on the factory device from the web user
interface (Management->Advanced)
2) Reboot the device
3) Override the default, limited SSH shell:
a) Get into the ssh shell:
ssh admin@192.168.1.1 /bin/sh --login
b) Change the dropbear script to disable the limited shell. At the
empty command prompt type:
sed -i '/login_ssh/s/^/#/g’ dropbear
/etc/init.d/dropbear restart
exit
4) ssh in to a (now-) normal OpenWRT SSH session
5) Flash your built image
a) scp openwrt-ipq40xx-engenius_ens620ext-squashfs-sysupgrade.bin
admin@192.168.1.1:/tmp/
b) ssh admin@192.168.1.1
c) sysupgrade -n
/tmp/openwrt-ipq40xx-engenius_ens620ext-squashfs-sysupgrade.bin
6) After flash completes (it may say "Upgrade failed" followed by
"Upgrade completed") and device reboots, log in to newly flashed
system. Note you will now need to ssh as root rather than admin.
Signed-off-by: Steve Glennon <s.glennon@cablelabs.com>
[whitespace fixes, reordered partitions, removed rng node from 4.14,
fixed 901-arm-boot-add-dts-files.patch]
Signed-off-by: Christian Lamparter <chunkeey@gmail.com>
Hardware
--------
CPU: Qualcomm IPQ4019
RAM: 256M (NANYA NT5CC128M16JR-EK)
FLASH: 128M NAND (Macronix MX30LF1G18AC-XKI)
ETH: Qualcomm QCA8072
WiFi2: IPQ4019 2T2R 2SS b/g/n
WiFi5: IPQ4019 2T2R 2SS n/ac
WiFi5: QCA9984 4T4R 4SS n/ac
LED: - Connect green/blue/red
- Power green
BTN: WPS/Connect
UART: 115200n8 3.3V
VCC - RX - TX - GND (Square is VCC)
Installation
------------
1. Grab the uboot for the Device from the 'u-boot-fritz3000'
subdirectory. Place it in the same directory as the 'eva_ramboot.py'
script. It is located in the 'scripts/flashing' subdirectory of the
OpenWRT tree.
2. Assign yourself the IP address 192.168.178.10/24. Connect your
Computer to one of the boxes LAN ports.
3. Connect Power to the Box. As soon as the LAN port of your computer
shows link, load the U-Boot to the box using following command.
> ./eva_ramboot.py --offset 0x85000000 192.168.178.1 uboot-fritz3000.bin
4. The U-Boot will now start. Now assign yourself the IP address
192.168.1.70/24. Copy the OpenWRT initramfs (!) image to a TFTP
server root directory and rename it to 'FRITZ3000.bin'.
5. The Box will now boot OpenWRT from RAM. This can take up to two
minutes.
6. Copy the U-Boot and the OpenWRT sysupgrade (!) image to the Box using
scp. SSH into the Box and first write the Bootloader to both previous
kernel partitions.
> mtd write /path/to/uboot-fritz3000.bin uboot0
> mtd write /path/to/uboot-fritz3000.bin uboot1
7. Remove the AVM filesystem partitions to make room for our kernel +
rootfs + overlayfs.
> ubirmvol /dev/ubi0 --name=avm_filesys_0
> ubirmvol /dev/ubi0 --name=avm_filesys_1
8. Flash OpenWRT peristently using sysupgrade.
> sysupgrade -n /path/to/openwrt-sysupgrade.bin
Signed-off-by: David Bauer <mail@david-bauer.net>
AVM devices based on Qualcomm IPQ40xx do not store sector health
information in the OOB area. Make this check optional to support this
platform.
Signed-off-by: David Bauer <mail@david-bauer.net>
This removes the 'cs-gpios' property from the AVM FRITZ!Box 7530 NAND
controller node. As pointed out by Christian Lamparter, the property is
not needed by the Qualcomm NAND controller driver.
Signed-off-by: David Bauer <mail@david-bauer.net>
This patch fixes a problem that was discovered during DSA
development. On the MR33, the link change events from the
external AR8035-PHY would never make it to the qca8k driver.
The issue turned out to be a misplaced memcpy that was copying
over the zero-initialized irq table, when it should have been
set to PHY_POLL. Hence this patch moves the memcpy after the
array has been initialized.
Signed-off-by: Christian Lamparter <chunkeey@gmail.com>
Backport below changes for I2C QUP driver from v4.17:
0668bc44a426 i2c: qup: fix copyrights and update to SPDX identifier
7239872fb340 i2c: qup: fixed releasing dma without flush operation completion
eb422b539c1f i2c: qup: minor code reorganization for use_dma
6d5f37f166bb i2c: qup: remove redundant variables for BAM SG count
c5adc0fa63a9 i2c: qup: schedule EOT and FLUSH tags at the end of transfer
7e6c35fe602d i2c: qup: fix the transfer length for BAM RX EOT FLUSH tags
3f450d3eea14 i2c: qup: proper error handling for i2c error in BAM mode
08f15963bc75 i2c: qup: use the complete transfer length to choose DMA mode
ecb6e1e5f435 i2c: qup: change completion timeout according to transfer length
6f2f0f6465ac i2c: qup: fix buffer overflow for multiple msg of maximum xfer len
f7714b4e451b i2c: qup: send NACK for last read sub transfers
fbfab1ab0658 i2c: qup: reorganization of driver code to remove polling for qup v1
7545c7dba169 i2c: qup: reorganization of driver code to remove polling for qup v2
This fixes various I2C issues observed on AP120C-AC board equipped with
Atmel/Microchip AT97SC3205T TPM module.
Tested-by: Christian Lamparter <chunkeey@gmail.com>
Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
Use 'ath10k-calibration-variant' (with the value sent upstream) for the
second (5 GHz) radio in AP120C-AC board DTS. First radio uses the same
BDF as in one of Qualcomm reference designs.
Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
Hardware
--------
CPU: Qualcomm IPQ4019
RAM: 256M
FLASH: 128M NAND
ETH: QCA8075
VDSL: Intel/Lantiq VRX518 PCIe attached
currently not supported
DECT: Dialog SC14448
currently not supported
WiFi2: IPQ4019 2T2R 2SS b/g/n
WiFi5: IPQ4019 2T2R 2SS n/ac
LED: - Power/DSL green
- WLAN green
- FON/DECT green
- Connect/WPS green
- Info green
- Info red
BTN: - WLAN
- FON
- WPS/Connect
UART: 115200n8 3.3V (located under the Dialog chip)
VCC - RX - TX - GND (Square is VCC)
Installation
------------
1. Grab the uboot for the Device from the 'u-boot-fritz7530'
subdirectory. Place it in the same directory as the 'eva_ramboot.py'
script. It is located in the 'scripts/flashing' subdirectory of the
OpenWRT tree.
2. Assign yourself the IP address 192.168.178.10/24. Connect your
Computer to one of the boxes LAN ports.
3. Connect Power to the Box. As soon as the LAN port of your computer
shows link, load the U-Boot to the box using following command.
> ./eva_ramboot.py --offset 0x85000000 192.168.178.1 uboot-fritz7530.bin
4. The U-Boot will now start. Now assign yourself the IP address
192.168.1.70/24. Copy the OpenWRT initramfs (!) image to a TFTP
server root directory and rename it to 'FRITZ7530.bin'.
5. The Box will now boot OpenWRT from RAM. This can take up to two
minutes.
6. Copy the U-Boot and the OpenWRT sysupgrade (!) image to the Box using
scp. SSH into the Box and first write the Bootloader to both previous
kernel partitions.
> mtd write /path/to/uboot-fritz7530.bin uboot0
> mtd write /path/to/uboot-fritz7530.bin uboot1
7. Remove the AVM filesystem partitions to make room for our kernel +
rootfs + overlayfs.
> ubirmvol /dev/ubi0 --name=avm_filesys_0
> ubirmvol /dev/ubi0 --name=avm_filesys_1
8. Flash OpenWRT peristently using sysupgrade.
> sysupgrade -n /path/to/openwrt-sysupgrade.bin
Signed-off-by: David Bauer <mail@david-bauer.net>
[removed pcie-dts range node, refreshed on top of AP120-AC/E2600AC]
Signed-off-by: Christian Lamparter <chunkeey@gmail.com>
From: Niklas Cassel <niklas.cassel@linaro.org>
|The databook clearly states that the MSI IRQ (msi_ctrl_int) is a level
|triggered interrupt.
|
|The msi_ctrl_int will be high for as long as any MSI status bit is set,
|thus the IRQ type should be set to IRQ_TYPE_LEVEL_HIGH, causing the
|IRQ handler to keep getting called, as long as any MSI status bit is set.
|[...]
|Not having the correct IRQ type defined will cause us to lose interrupts,
|which in turn causes timeouts in the PCIe endpoint drivers.
|
|Signed-off-by: Niklas Cassel <niklas.cassel@linaro.org>
|Reviewed-by: Bjorn Andersson <bjorn.andersson@linaro.org>
Signed-off-by: Christian Lamparter <chunkeey@gmail.com>
David Bauer reported that the VDSL modem (attached via PCIe)
on his AVM Fritz!Box 7530 was complaining about not having
enough space in the BAR. A closer inspection of the old
qcom-ipq40xx.dtsi pulled from the GL-iNet repository listed:
| qcom,pcie@80000 {
| compatible = "qcom,msm_pcie";
| reg = <0x80000 0x2000>,
| <0x99000 0x800>,
| <0x40000000 0xf1d>,
| <0x40000f20 0xa8>,
| <0x40100000 0x1000>,
| <0x40200000 0x100000>,
| <0x40300000 0xd00000>;
| reg-names = "parf", "phy", "dm_core", "elbi",
| "conf", "io", "bars";
Matching the reg-names with the listed reg leads to
<0xd00000> as the size for the "bars".
BugLink: https://www.mail-archive.com/openwrt-devel@lists.openwrt.org/msg45212.html
Reported-by: David Bauer <mail@david-bauer.net>
Signed-off-by: Christian Lamparter <chunkeey@gmail.com>
Qxwlan E2600AC C1 based on IPQ4019
Specifications:
SOC: Qualcomm IPQ4019
DRAM: 256 MiB
FLASH: 32 MiB Winbond W25Q256
ETH: Qualcomm QCA8075
WLAN: 5G + 5G/2.4G
* 2T2R 2.4/5 GHz
- QCA4019 hw1.0 (SoC)
* 2T2R 5 GHz
- QCA4019 hw1.0 (SoC)
INPUT: Reset buutton
LED: 1x Power ,6 driven by gpio
SERIAL: UART (J5)
UUSB: USB3.0
POWER: 1x DC jack for main power input (9-24 V)
SLOT: Pcie (J25), sim card (J11), SD card (J51)
Flash instruction (using U-Boot CLI and tftp server):
- Configure PC with static IP 192.168.1.10 and tftp server.
- Rename "sysupgrade" filename to "firmware.bin" and place it in tftp
server directory.
- Connect PC with one of RJ45 ports, power up the board and press
"enter" key to access U-Boot CLI.
- Use the following command to update the device to OpenWrt: "run lfw".
Flash instruction (using U-Boot web-based recovery):
- Configure PC with static IP 192.168.1.xxx(2-254)/24.
- Connect PC with one of RJ45 ports, press the reset button, power up
the board and keep button pressed for around 6-7 seconds, until LEDs
start flashing.
- Open your browser and enter 192.168.1.1, select "sysupgrade" image
and click the upgrade button.
Qxwlan E2600AC C2 based on IPQ4019
Specifications:
SOC: Qualcomm IPQ4019
DRAM: 256 MiB
NOR: 16 MiB Winbond W25Q128
NAND: 128MiB Micron MT29F1G08ABAEAWP
ETH: Qualcomm QCA8075
WLAN: 5G + 5G/2.4G
* 2T2R 2.4/5 GHz
- QCA4019 hw1.0 (SoC)
* 2T2R 5 GHz
- QCA4019 hw1.0 (SoC)
INPUT: Reset buutton
LED: 1x Power, 6 driven by gpio
SERIAL: UART (J5)
USB: USB3.0
POWER: 1x DC jack for main power input (9-24 V)
SLOT: Pcie (J25), sim card (J11), SD card (J51)
Flash instruction (using U-Boot CLI and tftp server):
- Configure PC with static IP 192.168.1.10 and tftp server.
- Rename "ubi" filename to "ubi-firmware.bin" and place it in tftp
server directory.
- Connect PC with one of RJ45 ports, power up the board and press
"enter" key to access U-Boot CLI.
- Use the following command to update the device to OpenWrt: "run lfw".
Flash instruction (using U-Boot web-based recovery):
- Configure PC with static IP 192.168.1.xxx(2-254)/24.
- Connect PC with one of RJ45 ports, press the reset button, power up
the board and keep button pressed for around 6-7 seconds, until LEDs
start flashing.
- Open your browser and enter 192.168.1.1, select "ubi" image
and click the upgrade button.
Signed-off-by: 张鹏 <sd20@qxwlan.com>
[ added rng node. whitespace fixes, ported 02_network,
ipq-wifi Makefile, misc dts fixes, trivial message changes ]
Signed-off-by: Christian Lamparter <chunkeey@gmail.com>
ALFA Network AP120C-AC is a dual-band ceiling AP, based on Qualcomm
IPQ4018 + QCA8075 platform.
Specification:
- Qualcomm IPQ4018 (717 MHz)
- 256 MB of RAM (DDR3)
- 16 MB (SPI NOR) + 128 MB (SPI NAND) of flash
- 2x Gbps Ethernet, with 802.3af PoE support in one port
- 2T2R 2.4/5 GHz (IPQ4018), with ext. FEMs (QFE1952, QFE1922)
- 3x U.FL connectors
- 1x 1.8 dBi (Bluetooth) and 2x 3/5 dBi dual-band (Wi-Fi) antennas
- Atmel/Microchip AT97SC3205T TPM module (I2C bus)
- TI CC2540 Bluetooth LE module (USB 2.0 bus)
- 4x LED (all driven by GPIO)
- 1x button (reset)
- 1x USB 2.0 (optional, not installed in indoor version)
- DC jack for main power input (12 V)
- UART header available on PCB (2.0 mm pitch)
Flash instruction:
1. This board uses dual-image feature (128 MB NAND is divided into two
64 MB partitions: 'rootfs1' and 'rootfs2').
2. Before update, make sure your device is running firmware no older
than v1.1 (previous versions have incompatible U-Boot).
3. Use 'factory' image in vendor GUI or for sysupgrade tool, without
preserving settings.
Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
Without a proper SPI NAND support (SPI NAND framework is available in
kernel >= 4.19) the only way to make such flash working is to include
it in raw/parallel NAND subsystem support and combine with mt29f staging
driver. Obviously, this approach isn't going to be accepted by upstream
(similar support for Winbond W25N01GV was rejected).
Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
Reading and writing to and from flash storage is slow and currently,
the ath10kcal_extract() scripts are even more at an disadvantage
because they use a block size of 1 to be able skip.
This patch reworks the extraction scripts to be much faster and
efficient by reading and writing the calibration data in possibly
one big block.
before: (Tested on a RT-AC58U, which has SPI-NAND).
# time dd if=/dev/ubi0_1 of=/lib/firmware/... bs=1 skip=4096 count=12064
12064+0 records in
12064+0 records out
real 0m 0.28s
user 0m 0.02s
sys 0m 0.24s
after:
# time dd if=/dev/ubi0_1 of=/lib/firmware/... bs=12064 skip=4096 count=1 iflag=skip_bytes
1+0 records in
1+0 records out
real 0m 0.01s
user 0m 0.00s
sys 0m 0.00s
Signed-off-by: Christian Lamparter <chunkeey@gmail.com>
This commit fixes the script that sets the MAC address of the LAN
switch. The LAN MAC address should be the WAN MAC address plus one.
Without this patch the WAN and the LAN interface will use the same
MAC address and an error will be generated.
With this patch all interfaces will have a different MAC address,
consecutive in the following order: WAN, LAN, radio0 and radio1.
Signed-off-by: Oever González <notengobattery@gmail.com>
SoC: Qualcomm IPQ4019 (Dakota) 717 MHz, 4 cores
RAM: 256 MiB (Nanya NT5CC128M16IP-DI)
FLASH: 128 MiB (Macronix NAND)
WiFi0: Qualcomm IPQ4019 b/g/n 2x2
WiFi1: Qualcomm IPQ4019 a/n/ac 2x2
WiFi2: Qualcomm Atheros QCA9886 a/n/ac
BT: Atheros AR3012
IN: WPS Button, Reset Button
OUT: RGB-LED via TI LP5523 9-channel Controller
UART: Front of Device - 115200 N-8
Pinout 3.3v - RX - TX - GND (Square is VCC)
Installation:
1. Transfer OpenWRT-initramfs image to the device via SSH to /tmp.
Login credentials are identical to the Web UI.
2. Login to the device via SSH.
3. Flash the initramfs image using
> mtd-write -d linux -i openwrt-image-file
4. Power-cycle the device and wait for OpenWRT to boot.
5. From there flash the OpenWRT-sysupgrade image.
Ethernet-Ports: Although labeled identically, the port next to
the power socket is the LAN port and the other one is WAN. This
is the same behavior as in the stock firmware.
Signed-off-by: Marius Genheimer <mail@f0wl.cc>
[Dropped setup_mac 02_network in favour of 05_set_iface_mac_ipq40xx.sh,
reorderd 02_network entries, added board.bin WA for the QCA9886 from ath79,
minor dts touchup, added rng to 4.19 dts]
Signed-off-by: Christian Lamparter <chunkeey@gmail.com>
Robert Marko made a big effort to enable the rng on all
ipq40xx for 4.19, so let's continue the quest.
Signed-off-by: Christian Lamparter <chunkeey@gmail.com>
This patch fixes the ASUS' RT-AC58U port order by
unifying the configuration with the NBG6617.
Reported-by: Roberto Socrates (rtac58u-user on the forum)
Signed-off-by: Christian Lamparter <chunkeey@gmail.com>
This patch splits the big board case switch in 02_network in
two functions ipq40xx_setup_interfaces() and ipq40xx_setup_macs()
just like ath79 and ramips do.
Signed-off-by: Christian Lamparter <chunkeey@gmail.com>
Specifications:
SOC: Qualcomm IPQ4018
RAM: 256 MiB Samsung K4B2G1646F-BYK0
FLASH1: MX25L1605D 2 MB
FLASH2: Winbond W25N01GV 128Mb
ETH: Qualcomm QCA8075
WLAN0: Qualcomm Atheros QCA4018 2.4GHz 802.11b/g/n 2x2
WLAN1: Qualcomm Atheros QCA4018 5GHz 802.11n/ac W2 2x2
INPUT: WPS, Reset
LED: Status - Green
SERIAL: Header at J19, Beneath DC Power Jack
1-VCC ; 2-TX ; 3-RX; 4-GND;
Serial 115200-8-N-1.
Tested and working:
- USB (requires extra packages)
- LAN Ethernet (Correct MAC-address)
- WAN Ethernet (Correct MAC-address)
- 2.4 GHz WiFi (Correct MAC-address)
- 5 GHz WiFi (Correct MAC-address)
- Factory installation from Web UI
- OpenWRT sysupgrade
- LED
- Reset Button
Need Testing:
- WPS button
Install via Web UI:
- Attach to a LAN port on the router.
- Connect to the Linksys Smart WiFi Page (default 192.168.1.1) and login
- Select the connectivity tab on the left
- In the manual update box on the right
- Select browse, and browse to
openwrt-ipq40xx-linksys_ea6350v3-squashfs-factory.bin
- Click update.
- Read and accept the warning
- The router LED will start blinking. When the router LED goes solid, you
can now navigate to 192.168.1.1 to your new OpenWrt installation.
Sysupgrade:
- Flash the sysupgrade image as usual. Please: try to do a reset everytime
you can (doing it with LuCI is easy and can be done in the same step).
Recovery (Automatic):
- If the device fails to boot after install or upgrade, whilst the unit is
turned on:
1 - Wait 15 seconds
2 - Switch Off and Wait 10 seconds
3 - Switch on
4 - Repeat steps 1 to 3, 3 times then go to 5.
5 - U-boot will have now erased the failed update and switched back to the
last working firmware - you should be able to access your router on
LAN.
Recovery (Manual):
- The steps for manual recovery are the same as the generic u-boot tftp
client method.
Back To Stock:
- Use the generic recovery using the tftp client method to flash the
"civic.img". Also you can strip-and-pad the original image and use
the generic "mtd" method by flashing over the "kernel" partition.
* Just be careful to flash in the partition that the device is currently
booted.
Signed-off-by: Ryan Pannell <ryan@osukl.com>
Signed-off-by: Oever González <notengobattery@gmail.com>
[minor edits, removed second compatible of nand, added dtb entry to 4.19]
Signed-off-by: Christian Lamparter <chunkeey@gmail.com>
The unit address should be wifi@1,0 since the device is located
at 0000:01:00.0.
Reported-by: Sven Eckelmann <sven@narfation.org>
Signed-off-by: Christian Lamparter <chunkeey@gmail.com>
This removes the misplaced UCI-network configuration for the MR33. The
LAN port is set in 01_leds while it is already correctly defined in
02_network.
This was most likely an oversight as no network configuration belongs
into 01_leds.
Signed-off-by: David Bauer <mail@david-bauer.net>