PX30.Core is an EDIMM SOM based on Rockchip PX30 from Engicam.
EDIMM2.2 Starter Kit is an EDIMM 2.2 Form Factor Capacitive
Evaluation Board from Engicam.
PX30.Core needs to mount on top of this Evaluation board for
creating complete PX30.Core EDIMM2.2 Starter Kit.
Add support for it.
Signed-off-by: Jagan Teki <jagan@amarulasolutions.com>
Signed-off-by: Suniel Mahesh <sunil@amarulasolutions.com>
Reviewed-by: Kever Yang<kever.yang@rock-chips.com>
The existing common code for Engicam boards uses i.MX6,
so attach that into i.MX6 Engicam boards so-that adding
new SoC variants of Engicam boards become meaningful.
Add support for it.
Cc: Stefano Babic <sbabic@denx.de>
Signed-off-by: Jagan Teki <jagan@amarulasolutions.com>
Reviewed-by: Kever Yang<kever.yang@rock-chips.com>
TARGET_EVB_PX30 can be possible to use other px30 boards.
Add the help text for existing EVB, so-that the new boards
which are resuing this config option can mention their board
help text.
This would help to track which boards are using EVB_PX30 config.
Signed-off-by: Jagan Teki <jagan@amarulasolutions.com>
Reviewed-by: Kever Yang <kever.yang@rock-chips.com>
PX30.Core is an EDIMM SOM based on Rockchip PX30 from Engicam.
General features:
- Rockchip PX30
- Up to 2GB DDR4
- eMMC 4 GB expandible
- rest of PX30 features
PX30.Core needs to mount on top of Engicam baseboards for creating
complete platform boards.
Possible baseboards are,
- EDIMM2.2
- C.TOUCH 2.0
Add support for it.
Signed-off-by: Jagan Teki <jagan@amarulasolutions.com>
Signed-off-by: Michael Trimarchi <michael@amarulasolutions.com>
Reviewed-by: Kever Yang <kever.yang@rock-chips.com>
Engicam EDIMM2.2 Starter Kit is an EDIMM 2.2 Form Factor Capacitive
Evaluation Board.
Genaral features:
- LCD 7" C.Touch
- microSD slot
- Ethernet 1Gb
- Wifi/BT
- 2x LVDS Full HD interfaces
- 3x USB 2.0
- 1x USB 3.0
- HDMI Out
- Mini PCIe
- MIPI CSI
- 2x CAN
- Audio Out
SOM's like PX30.Core needs to mount on top of this Evaluation board
for creating complete PX30.Core EDIMM2.2 Starter Kit.
Add support for it.
Signed-off-by: Jagan Teki <jagan@amarulasolutions.com>
Signed-off-by: Michael Trimarchi <michael@amarulasolutions.com>
Reviewed-by: Kever Yang <kever.yang@rock-chips.com>
The Rockchip boot ROM expects little-endian values in the image header.
When running mkimage on a big-endian machine, these values need to be
byteswapped before writing or verifying the header.
This change fixes cross-compiling U-Boot SPL for the RK3399 SoC from a
big-endian ppc64 host machine.
Signed-off-by: Samuel Holland <samuel@sholland.org>
Reviewed-by: Kever Yang<kever.yang@rock-chips.com>
Enable Console multiplexing in ROCKPi N8 which would is
required to video out the console buffer.
Enable it.
Signed-off-by: Jagan Teki <jagan@amarulasolutions.com>
Reviewed-by: Kever Yang<kever.yang@rock-chips.com>
Like, rk3399 the rk3288 also supports 4K resolution.
So, enable it for rk3288 with HDMI platforms.
Right now, rockchip video drivers are supporting for rk3288,
rk3399 SoC families, so mark the 4K resolution by default
if it's an HDMI video out.
Signed-off-by: Jagan Teki <jagan@amarulasolutions.com>
Cc: Anatolij Gustschin <agust@denx.de>
Reviewed-by: Kever Yang<kever.yang@rock-chips.com>
Add chosen node in -u-boot.dtsi for ROCK-Pi N8 board.
This will help to get serial out messages.
Signed-off-by: Jagan Teki <jagan@amarulasolutions.com>
Reviewed-by: Kever Yang<kever.yang@rock-chips.com>
Enable Console multiplexing in ROCKPi N10 which would is
required to video out the console buffer.
Enable it.
Signed-off-by: Jagan Teki <jagan@amarulasolutions.com>
Reviewed-by: Kever Yang<kever.yang@rock-chips.com>
Found this by comparing it to the coreboot driver, a form of this call
was introduced there in their commit b9a7877568cf ("rockchip/*: refactor
edp driver"). This is copy-pasted from U-Boot's link_train_cr() slightly
above it.
Without this on a gru-kevin chromebook, I have:
clock recovery at voltage 0 pre-emphasis 0
requested signal parameters: lane 0 voltage 0.4V pre_emph 3.5dB
requested signal parameters: lane 1 voltage 0.4V pre_emph 3.5dB
requested signal parameters: lane 2 voltage 0.4V pre_emph 3.5dB
requested signal parameters: lane 3 voltage 0.4V pre_emph 3.5dB
using signal parameters: voltage 0.4V pre_emph 3.5dB
requested signal parameters: lane 0 voltage 0.4V pre_emph 3.5dB
requested signal parameters: lane 1 voltage 0.4V pre_emph 3.5dB
requested signal parameters: lane 2 voltage 0.4V pre_emph 3.5dB
requested signal parameters: lane 3 voltage 0.4V pre_emph 3.5dB
using signal parameters: voltage 0.4V pre_emph 3.5dB
requested signal parameters: lane 0 voltage 0.4V pre_emph 3.5dB
requested signal parameters: lane 1 voltage 0.4V pre_emph 3.5dB
requested signal parameters: lane 2 voltage 0.4V pre_emph 3.5dB
requested signal parameters: lane 3 voltage 0.4V pre_emph 3.5dB
using signal parameters: voltage 0.4V pre_emph 3.5dB
requested signal parameters: lane 0 voltage 0.4V pre_emph 3.5dB
requested signal parameters: lane 1 voltage 0.4V pre_emph 3.5dB
requested signal parameters: lane 2 voltage 0.4V pre_emph 3.5dB
requested signal parameters: lane 3 voltage 0.4V pre_emph 3.5dB
using signal parameters: voltage 0.4V pre_emph 3.5dB
requested signal parameters: lane 0 voltage 0.4V pre_emph 3.5dB
requested signal parameters: lane 1 voltage 0.4V pre_emph 3.5dB
requested signal parameters: lane 2 voltage 0.4V pre_emph 3.5dB
requested signal parameters: lane 3 voltage 0.4V pre_emph 3.5dB
using signal parameters: voltage 0.4V pre_emph 3.5dB
channel eq failed, ret=-5
link train failed!
rk_vop_probe() Device failed: ret=-5
With this, it looks like training succeeds:
clock recovery at voltage 0 pre-emphasis 0
requested signal parameters: lane 0 voltage 0.4V pre_emph 3.5dB
requested signal parameters: lane 1 voltage 0.4V pre_emph 3.5dB
requested signal parameters: lane 2 voltage 0.4V pre_emph 3.5dB
requested signal parameters: lane 3 voltage 0.4V pre_emph 3.5dB
using signal parameters: voltage 0.4V pre_emph 3.5dB
requested signal parameters: lane 0 voltage 0.4V pre_emph 6dB
requested signal parameters: lane 1 voltage 0.4V pre_emph 6dB
requested signal parameters: lane 2 voltage 0.4V pre_emph 6dB
requested signal parameters: lane 3 voltage 0.4V pre_emph 6dB
using signal parameters: voltage 0.4V pre_emph 6dB
requested signal parameters: lane 0 voltage 0.4V pre_emph 0dB
requested signal parameters: lane 1 voltage 0.4V pre_emph 0dB
requested signal parameters: lane 2 voltage 0.4V pre_emph 0dB
requested signal parameters: lane 3 voltage 0.4V pre_emph 0dB
using signal parameters: voltage 0.4V pre_emph 0dB
channel eq at voltage 0 pre-emphasis 0
config video failed
rk_vop_probe() Device failed: ret=-110
The "config video failed" error also goes away when I disable higher
log levels, and it claims to have successfully probed the device.
Signed-off-by: Alper Nebi Yasak <alpernebiyasak@gmail.com>
Reviewed-by: Simon Glass <sjg@chromium.org>
Reviewed-by: Kever Yang<kever.yang@rock-chips.com>
The SRAM on the PX30 is not big enough to hold multiple DDR configs
so it needs to be selected during build.
So far simply the DDR3 config was always selected and getting DDR4
or LPDDR2/3 initialized would require a code modification.
So add Kconfig options similar to RK3399 to allow selecting the DDR4
and LPDDR2/3 options instead, while DDR3 stays the default as before.
Signed-off-by: Heiko Stuebner <heiko.stuebner@theobroma-systems.com>
Reviewed-by: Jagan Teki <jagan@amarulasolutions.com>
Reviewed-by: Kever Yang<kever.yang@rock-chips.com>
Fix up USB config options so keyboards and other USB devices work.
Signed-off-by: Peter Robinson <pbrobinson@gmail.com>
Reviewed-by: Kever Yang<kever.yang@rock-chips.com>
Change-Id: I34b0696e0ac7303186f20c83278dde340399b690
The property reg-shift with the same value is present in the base
device tree already. Remove unnecessary node from rk3288-tinker.dts.
Signed-off-by: Stefan Agner <stefan@agner.ch>
Reviewed-by: Kever Yang <kever.yang@rock-chips.com>
The I2C EEPROM is present on Tinker Board S as well. Move the i2c node
to the shared, U-Boot specific rk3288-tinker-u-boot.dtsi device tree.
Cc: Jonas Karlman <jonas@kwiboo.se>
Signed-off-by: Stefan Agner <stefan@agner.ch>
Reviewed-by: Kever Yang <kever.yang@rock-chips.com>
In order to correctly calculate the designware watchdog
timeouts, the watchdog clock is required. Implement required
clocks to facilitate this.
Signed-off-by: Jack Mitchell <ml@embed.me.uk>
Reviewed-by: Philipp Tomsich <philipp.tomsich@theobroma-systems.com>
Reviewed-by: Kever Yang <kever.yang@rock-chips.com>
The cfi-flash driver uses an open-coded version of the generic
algorithm to decode and translate multiple frames of a "reg" property.
This starts off the wrong foot by using the address-cells and size-cells
properties of *this* very node, and not of the parent. This somewhat
happened to work back when we were using a wrong default size of 2,
but broke about a year ago with commit 0ba41ce1b7 ("libfdt: return
correct value if #size-cells property is not present").
Instead of fixing the reinvented wheel, just use the generic function
that does all of this properly.
This fixes U-Boot on QEMU (-arm64), which was crashing due to decoding
a wrong flash base address:
DRAM: 1 GiB
Flash: "Synchronous Abort" handler, esr 0x96000044
elr: 00000000000211dc lr : 00000000000211b0 (reloc)
elr: 000000007ff5e1dc lr : 000000007ff5e1b0
x0 : 00000000000000f0 x1 : 000000007ff5e1d8
x2 : 000000007edfbc48 x3 : 0000000000000000
x4 : 0000000000000000 x5 : 00000000000000f0
x6 : 000000007edfbc2c x7 : 0000000000000000
x8 : 000000007ffd8d70 x9 : 000000000000000c
x10: 0400000000000003 x11: 0000000000000055
^^^^^^^^^^^^^^^^
Signed-off-by: Andre Przywara <andre.przywara@arm.com>
Reviewed-by: Stefan Roese <sr@denx.de>
When possible use DMA for reading from CFI flash, this provides upto 5x
improvement in read performance with high speed CFI compliant flashes
like HyperFlash.
Code will gracefully fallback to CPU copy when DMA is unavailable.
Signed-off-by: Vignesh Raghavendra <vigneshr@ti.com>
Reviewed-by: Stefan Roese <sr@denx.de>
Caller would need gracefully handle failures of dma_get_device(),
therefore reduce pr_err() to pr_debug() when DMA device is not found.
Signed-off-by: Vignesh Raghavendra <vigneshr@ti.com>
Reviewed-by: Stefan Roese <sr@denx.de>
- mips: octeon: add support for DWC3 USB
- mips: octeon: add support for booting Linux
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Merge tag 'mips-pull-2020-10-07' of https://gitlab.denx.de/u-boot/custodians/u-boot-mips
- mips: octeon: add support for DDR4 memory controller
- mips: octeon: add support for DWC3 USB
- mips: octeon: add support for booting Linux
Octeon needs a platform specific cmd to boot the Linux kernel, as
specific parameters need to be passed and special handling for the
multiple cores (SMP) is needed.
Co-developed-by: Stefan Roese <sr@denx.de>
Signed-off-by: Aaron Williams <awilliams@marvell.com>
Signed-off-by: Stefan Roese <sr@denx.de>
[use gd->ram_base instead of gd->bd->bi_memstart]
Signed-off-by: Daniel Schwierzeck <daniel.schwierzeck@gmail.com>
This is needed for Linux booting, as the memory infos need to be passed
in this bootmem format to the Linux kernel.
Signed-off-by: Aaron Williams <awilliams@marvell.com>
Signed-off-by: Stefan Roese <sr@denx.de>
Add header to handle bootinfo support, needed for Octeon Linux kernel
booting.
Signed-off-by: Aaron Williams <awilliams@marvell.com>
Signed-off-by: Stefan Roese <sr@denx.de>
This header includes the Octeon feature detection used in many Octeon
drivers.
Signed-off-by: Aaron Williams <awilliams@marvell.com>
Signed-off-by: Stefan Roese <sr@denx.de>
This header includes common register defines and accessor functions.
Signed-off-by: Aaron Williams <awilliams@marvell.com>
Signed-off-by: Stefan Roese <sr@denx.de>
This patch adds the necessary lowlevel init code, to enable SMP Linux
booting. This code will be used with the platform specific Octeon Linux
boot command "bootoctlinux", which starts a configurable number of cores
into Linux.
Additionally some erratas and lowlevel register initializations are
copied from the original Cavium / Marvell U-Boot source code, enabling
booting into the Linux kernel.
Signed-off-by: Stefan Roese <sr@denx.de>
As noticed while working on the USB xHCI support, Octeon needs to flush
all pending writes so that the values are present in the memory. Add
this "syncw" instruction (twice) to flush_dcache_range().
Signed-off-by: Stefan Roese <sr@denx.de>
Import platform specific mangle-port.h header, allowing a area specific
swapping, which is needed on Octeon for USB & PCI areas.
Imported from Linux v5.7.
Signed-off-by: Stefan Roese <sr@denx.de>
Import octeon_should_swizzle_table[] which is needed for the area
specific swapping. It will be used by the platform specific
mangle-port.h header.
Imported from Linux v5.7.
Signed-off-by: Stefan Roese <sr@denx.de>
This patch adds the glue layer for the MIPS Octeon SoCs. It's ported
mainly from the Linux code.
Signed-off-by: Stefan Roese <sr@denx.de>
Reviewed-by: Bin Meng <bmeng.cn@gmail.com>
Cc: Bin Meng <bmeng.cn@gmail.com>
Cc: Marek Vasut <marex@denx.de>
Octeon uses mapped addresses for virtual and physical memory. It's not
that easy to calculate the resulting addresses here. So let's remove
this BUG_ON() completely, as it's not really helpful.
Please also note, that BUG_ON() is not recommended any more in the Linux
kernel.
Signed-off-by: Stefan Roese <sr@denx.de>
Reviewed-by: Bin Meng <bmeng.cn@gmail.com>
Cc: Bin Meng <bmeng.cn@gmail.com>
Cc: Marek Vasut <marex@denx.de>
On MIPS platforms, mapping of the base address is needed. This patch
switches from dev_get_addr() to dev_remap_addr() to get the mapped base
address of the xHCI controller.
Signed-off-by: Stefan Roese <sr@denx.de>
Reviewed-by: Bin Meng <bmeng.cn@gmail.com>
Cc: Bin Meng <bmeng.cn@gmail.com>
Cc: Marek Vasut <marex@denx.de>
This patch adds the board specific configuration (struct) for the
Octeon 3 EBB7304 EVK. This struct is ported from the 2013er Cavium /
Marvell U-Boot repository. Also, the Octeon RAM driver is enabled in
the board defconfig for its usage.
Tested with one and two DIMMs on the EBB7304 EVK (8 & 16 GiB).
Signed-off-by: Stefan Roese <sr@denx.de>
This patch adds the initialization call for the Octeon RAM driver to
the Octeon platforms code. So if enabled via Kconfig, the DDR driver
will be called and the RAM will be configured and used. If the RAM
driver is not enabled, the L2 cache is still used as RAM.
Signed-off-by: Stefan Roese <sr@denx.de>
This Octeon 3 DDR driver is ported from the 2013 Cavium / Marvell U-Boot
repository. It currently supports DDR4 on Octeon 3. It can be later
extended to support also DDR3 and Octeon 2 platforms.
Part 3 includes the DIMM SPD handling code and the Kconfig / Makefile
integration.
Signed-off-by: Aaron Williams <awilliams@marvell.com>
Signed-off-by: Stefan Roese <sr@denx.de>
This Octeon 3 DDR driver is ported from the 2013 Cavium / Marvell U-Boot
repository. It currently supports DDR4 on Octeon 3. It can be later
extended to support also DDR3 and Octeon 2 platforms.
Part 2 includes the very complex Octeon 3 DDR4 configuration
Signed-off-by: Aaron Williams <awilliams@marvell.com>
Signed-off-by: Stefan Roese <sr@denx.de>
This Octeon 3 DDR driver is ported from the 2013 Cavium / Marvell U-Boot
repository. It currently supports DDR4 on Octeon 3. It can be later
extended to support also DDR3 and Octeon 2 platforms.
Part 1 adds the base U-Boot RAM driver, which will be instantiated by
the DT based probing.
Signed-off-by: Aaron Williams <awilliams@marvell.com>
Signed-off-by: Stefan Roese <sr@denx.de>
This header will be used by the DDR driver (lmc). Its ported from the
2013 Cavium / Marvell U-Boot repository.
Signed-off-by: Aaron Williams <awilliams@marvell.com>
Signed-off-by: Stefan Roese <sr@denx.de>
This header will be used by the DDR driver (lmc). Its ported from the
2013 Cavium / Marvell U-Boot repository.
Signed-off-by: Aaron Williams <awilliams@marvell.com>
Signed-off-by: Stefan Roese <sr@denx.de>
This header is used by the upcoming DDR driver and potentially by other
drivers ported from the 2013 Cavium / Marvell U-Boot repository.
Signed-off-by: Aaron Williams <awilliams@marvell.com>
Signed-off-by: Stefan Roese <sr@denx.de>
This patch adds the memory controller (LMC) DT node to the Octeon 3 dtsi
file. It also adds the L2C DT node, as this is referenced by the DDR
driver.
Signed-off-by: Stefan Roese <sr@denx.de>
When using SDL for input the SDL key codes are first converted to Linux key
codes and then to matrix entries of the cross wired keyboard.
We must not map any key code to two different places on the keyboard. So
comment out one backslash position.
Update the rest of the file from Linux 5.7.
Signed-off-by: Heinrich Schuchardt <xypron.glpk@gmx.de>
Reviewed-by: Simon Glass <sjg@chromium.org>