Add stm32h7s8-dk board support for nsh running out of internal flash,
including LEDs and user button.
Signed-off-by: Peter Barada <peter.barada@gmail.com>
Add board support for the EK-RA8M1 evaluation kit with nsh and
nsh-leds configurations, linker script, LED support and bring-up.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Signed-off-by: leocafonso <leocafonso@gmail.com>
Add NSH bringup for the Espressif ESP8684-DevKitM. The nsh defconfig
uses a 26 MHz XTAL, 4 MB flash, and debug features for the MINI-1 module.
Assisted-by: Claude:claude-opus-5
Signed-off-by: Marcio Ribeiro <marcio.ribeiro@espressif.com>
Add linker scripts and shared board drivers reused by ESP32-C2 boards,
and wire common Kconfig into the board configuration tree.
Assisted-by: Claude:claude-opus-5
Signed-off-by: Marcio Ribeiro <marcio.ribeiro@espressif.com>
Add an initial port for the AIFoundry Erbium Minion core running on the
public ET-platform system emulator (erbium_emu). NuttX boots directly
from a firmware ELF at 0x40000200, runs in machine mode on hart 0 with
SMP disabled, and parks secondary harts before they touch memory.
The chip layer provides startup, PLIC interrupts, the UART0 console
driver and the machine timer. Context switching, FPU save/restore,
heap, idle and timer handling reuse the common RISC-V code. Atomics use
interrupt masking because the core does not implement the A extension.
Erbium implements the F extension but executes fdiv/fsqrt and FENCE.I
in microcode, which a standalone image does not provide. The board build
files pass -mno-fdiv to GCC when the FPU is enabled, so those operations
use software helpers. Startup initializes the FPU without the common
FENCE.I sequence, and the board configurations disable the dynamic ELF
loader, which also relies on FENCE.I.
Add minion:nsh and minion:ostest configurations, Make and CMake
support, CMake CI build entries, and a host script that runs prebuilt
images in the emulator and checks the console and OS test results.
Tested with emulator revision 836a4ab600e9 and xPack GCC 14.3.0: both
configurations build with Make and CMake, ostest exits with status 0
including the FPU tests, and the NSH console, procfs, timer and UART
receive paths work. Silicon, SMP, protected builds and reboot are not
covered by this initial port.
Signed-off-by: Afonso Oliveira <afonso.oliveira707@gmail.com>
A MIMXRT1176 flight controller built to the Pixhawk FMUv6X-RT standard, so
the port also covers the NXP MR-VMU-RT1176.
Board data comes from PX4, which already carries it as a NuttX board config:
the clock tree, the LPUART1 pinmux, and the Macronix octal flash
configuration block the boot ROM reads at offset 0x400.
The board ships with the PX4 bootloader in the first 128 KB of QSPI, so the
image links at 0x30020000 and is loaded by it rather than written to the
flash base. The console is CDC/ACM as on teensy-4.x, so a USB cable is the
only thing needed to run NuttX here.
Signed-off-by: Royyan Zahir <royzah@gmail.com>
Add the rtl8730e_evb (RTL8730E Evaluation Board) with an nsh configuration
that demonstrates the RTL8730E baseline feature set:
- Dual-core SMP (CONFIG_SMP=y, CONFIG_SMP_NCPUS=2)
- Wi-Fi station and SoftAP via wapi
- DHCP client (wlan0) and DHCP server (wlan1/AP mode)
- littlefs persistent storage at /data on SPI NOR flash
- iperf2 TCP/UDP throughput measurement
- NSH console over the LOG-UART
Board formerly named ca32-evb; renamed to follow the rtlXXXX_evb
convention used by all other Ameba boards.
Signed-off-by: dechao_gong <dechao_gong@realsil.com.cn>
Assisted-by: Claude Sonnet 4.6 <noreply@anthropic.com>
Add NuttX support for the Realtek AmebaSmart (RTL8730E) running on the
CA32 (Cortex-A32) application core, with the KM4/KM0 cores kept as
vendor firmware (KM4 acts as the WiFi network processor over WHC IPC).
Stage 1 bring-up, hardware verified:
- CA32 boot / exception vectors / MMU + page allocator / heap
- LOGUART console (RX via KM0-owned IPC + shared memory)
- IRQ controller, timer, serial
- On-chip SPI NOR flash MTD -> littlefs mounted at /data
- WHC-host WiFi netdev (STA): scan / connect / DHCP, verified end to
end (association -> 4-way -> DHCP -> ping, bidirectional TCP)
IC-agnostic Ameba glue is shared from arch/arm/src/common/ameba via a
relative VPATH entry (matching the rtl8721dx pattern), which also avoids
the empty mkdeps --dep-path that a leading-":" VPATH entry produced and
which intermittently broke parallel .ddc dependency generation.
The FIP packaging / flash image assembly is driven by
common/ameba/tools/ameba_smart_flash.sh from the board scripts.
Vendor blobs and build artefacts under the board prebuilt/ directory are
kept out of the tree via prebuilt/.gitignore.
Signed-off-by: dechao_gong <dechao_gong@realsil.com.cn>
This adds the initial board configurattions for building NuttX for imxrt1189-evk.
Also add a script building the NXP container image for bootloaders (m33 images)
The board boots on Cortex-M33 core, for which there are two m33 targets: nsh-m33 and bl.
- "bl" target does basic initialization of ELE and TRDC and just releases the M7 to run
at 0x20080000.
- "nsh-m33" target just boots nuttx into nsh shell on m33
- The "nsh" target is for M7 core. It can be flashed at 0x20080000, and
it boots to nsh shell with a proper bootloader on m33 (the bl target does this).
Signed-off-by: Jukka Laitinen <jukka.laitinen@tii.ae>
This commit add support to GD32VW553-HMQ board based on GigaDevice
GD32VM553K_START as base.
No AI used for this board, the but GD32VM553K_START was developed
by Jorge Guzman with help from Claude Code.
Signed-off-by: Alan C. Assis <acassis@gmail.com>
Add initial Apache NuttX support for the Allwinner D1 / T-Head C906
running in supervisor mode under OpenSBI.
Add support for:
- RV64 D1 architecture definitions
- Lichee RV 86 Panel board configuration
- UART0 console at 115200 baud
- D1 PLIC interrupt controller
- native D1 Timer1 scheduler tick
- early inherited-watchdog disable
- FLAT S-mode NSH configuration
The port has been tested on physical Sipeed Lichee RV / 86 Panel
hardware and boots to an interactive NuttShell.
The scheduler tick uses OSC24M Timer1 at 1000 Hz. The Timer1 interval
register is programmed with 23999 to produce exactly 24000 input clocks
per tick on the physical D1.
Assisted-by: OpenAI Codex:gpt-5.6-sol
Signed-off-by: Lance Harvie <lanceharvie@gmail.com>
Add initial NuttX port for the original (white) BeagleBone board, which is
powered by the TI AM335x Sitara Cortex-A8 processor.
This commit includes:
- Board documentation
- Board support package files derived from BeagleBone black
- Architecture-specific page allocator for memory management in kernel build.
- Default configurations for both flat (`nsh`) and kernel (`knsh`) builds
running via U-Boot from a microSD card.
Signed-off-by: Lwazi Dube <lwazeh@gmail.com>
ESWIN's own evaluation board for this SoC. Where the StarPro64 is a
single board computer built around the chip, the EVB brings out most of
the SoC's interfaces.
Everything shared with the StarPro64 is already in the common directory,
so this carries the board's own facts: which UART reaches which connector,
which pads carry the boot straps, where its memory sits, and a
configuration starting from the same place the StarPro64's does.
The summary tables on sheet 3 of both boards' schematics are inherited
from ESWIN's reference design and describe that design rather than either
board. On this board the console is UART0 through the FT4232 bridge,
UART1 goes to the M.2 socket and a header, and UART2 reaches the RS232
port.
The documentation page follows the board template: a photograph, the
board's features, the console and its port on the FT4232 bridge, power,
the build and TFTP boot procedure, and what NuttX drives so far.
Boots to an NSH prompt over UART0 with all four harts running.
Assisted-by: Claude:claude-opus-5
Signed-off-by: Justin Hammond <justin@dynam.ac>
The port had one board directory holding one board, with everything in it
whether it described the SoC or the PCB. A second EIC7700X board follows,
so this adopts the common-plus-board layout NuttX provides, as mpfs uses.
boards/risc-v/eic7700x/common holds what is true of the SoC: the boot path
that mounts the RAM disk and /proc before calling the board's own bring
up, the linker script, the start up scripts and the image builder.
ARCH_CHIP_EIC7700X selects ARCH_BOARD_COMMON, so the symlinks the build
makes always point at code that compiles.
The board directory keeps what is a fact about the PCB: its own board.h
and board_memorymap.h, since the include fallback is all or nothing, a
bring up that owns the order its devices register in, and a board_config.h
declaring what that bring up may call.
The image builder moves to common/tools and derives its output name from
the configuration. It computes the padding between the kernel and the RAM
disk from _ebss rather than assuming 64 KiB, which fails once BSS grows
past it: the disk lands below _ebss and the BSS clear zeroes it before
anything searches for it.
The StarPro64 configuration gains what the port now needs: four harts,
960 MiB of RAM, a larger task stack, a backtrace on assert, the system log
in RAM for dmesg, and ELF applications, for which ARCH_CHIP_EIC7700X now
selects ARCH_HAVE_ELF_EXECUTABLE.
board.h loses its LED definitions. CONFIG_ARCH_LEDS is not set, nothing
implements board_autoled_on(), and the indices they gave named no LED.
The documentation pages gain the tags the template asks for.
Assisted-by: Claude:claude-opus-5
Signed-off-by: Justin Hammond <justin@dynam.ac>
Supports the UNIX setuid-on-exec sudo helper. Documents the model,
generates an extra ROMFS user and /etc/sudoers for a non-root test,
reports BINFS modes from the builtin table so ls -l matches execute
bits, and skips NULL environment entries when sanitizing a setuid exec.
Signed-off-by: Abhishek Mishra <mishra.abhishek2808@gmail.com>
Add a P0 skeleton port for the Realtek RTL8721F (SDK codename Green2 /
amebagreen2). Structurally the RTL8721F is a twin of the RTL8720F -- the
AP/host core is km4tz (ARMv8-M.main, TrustZone secure) and the WiFi MAC/PHY
runs on the km4ns network-processor core -- so this port is modelled on the
RTL8720F one and shares the IC-agnostic ameba glue in
arch/arm/src/common/ameba.
This is the "configures and links" skeleton (rtl8721f_evb:nsh builds an
image end to end). Four differences from the RTL8720F template were needed
to make the empty shell link against amebagreen2:
* km4tz has no FPU (cmsis_cpu.h defines __FPU_PRESENT 0), so the chip does
not select ARCH_HAVE_FPU and the image is built soft-float.
* ameba_app_start.c matches amebagreen2's ram_km4tz silicon init: the
nocache MPU map, the non-secure ROM BSS clear, OSC4M (not OSC2M)
calibration gated on EFUSE cut >= B and CHIP_TYPE_ASIC_POSTSIM.
* amebagreen2 ships no lib_rom.a, so the ROM archive whole-archive link is
dropped; the WiFi/OS/non-secure ROM symbols come from the SDK
ameba_rom_symbol_acut{,_wifi,_os}.ld maps appended to the image2 linker
script, exactly as green2's own image2 link does.
* the AP WiFi security lib is lib_wifi_common.a (was lib_wifi_com_sec.a).
The per-chip IRQ vector table (irq.h) and the RAM_START/RAM_SIZE layout
still carry RTL8720F values and are refined in the follow-up bring-up work.
Signed-off-by: dechao_gong <dechao_gong@realsil.com.cn>
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
BOARD_ETC_ROMFS_PASSWD_ENABLE now depends on FSUTILS_PASSWD and a
cryptodev backend so PBKDF2 passwd autogen cannot be enabled without
the runtime login stack. Fixes#19573.
Signed-off-by: Abhishek Mishra <mishra.abhishek2808@gmail.com>
The Pimoroni Pico Plus 2 W is a Pico form-factor board built around the
RP2350B, the 80-pin part with 48 GPIOs, carrying 16MB of flash, 8MB of PSRAM
and a Raspberry Pi RM2 module for 2.4GHz WiFi. The RM2 houses an Infineon
CYW43439, wired to the same pins the Raspberry Pi Pico W uses: GPIO 23 for
power enable, 24 for the shared gSPI data and interrupt line, 25 for chip
select and 29 for the clock.
Three configurations are provided: nsh and usbnsh without the wireless chip,
and wifi, which brings up wlan0 in station mode with WAPI, a DHCP client and
ping. The CYW43439 firmware and CLM blob are linked in from the pico-sdk at
build time, as on the Pico W; CONFIG_CYW43439_FIRMWARE_BIN_PATH selects the
file and the board documentation covers converting it out of the C header that
pico-sdk 2.x ships in place of the binary. rp23xx_firmware.c is placed in the
common source directory so that a future board with the same chip can reuse
it, and unlike rp2040 the blob is staged for the CMake build as well.
Two board details are worth calling out:
- The only LED is wired to GPIO 0 of the CYW43439 rather than to a pin of
the RP2350, so driving it means an iovar request over the gSPI bus. That
works for CONFIG_USERLED but not for CONFIG_ARCH_LEDS, whose
board_autoled_on() is called from interrupt handlers and from assertion
handling, so a build selecting CONFIG_ARCH_LEDS is rejected with an
explicit message. The LED also only responds once wlan0 has been brought
up, because that is when the chip's firmware is downloaded.
- The BOOT button is also wired to GPIO 45, so it can be read as an ordinary
user button once NuttX is running. Its internal pull-up is enabled
deliberately: erratum RP2350-E9 means a floating Bank 0 input on RP2350 A2
leaks enough current to settle around 2.2V, which the internal pull-down
cannot overcome.
Tested on the board with a Raspberry Pi Debug Probe: nsh and wifi boot on
UART0, wlan0 reports the MAC read from the chip, wapi scan lists access
points, and association to a WPA2 network followed by DHCP gives a working
route with ping succeeding to both a literal address and a resolved name.
The LED and the BOOT button were confirmed by hand.
Assisted-by: Claude Code:claude-opus-5
Signed-off-by: Marco Casaroli <marco.casaroli@gmail.com>
Document PBKDF2-HMAC-SHA256 ROMFS passwd generation and update board
Kconfig help text accordingly. Set the documented sim/login CI credential
in GitHub Actions.
Enable CONFIG_CODECS_BASE64 and CONFIG_NETUTILS_CODECS on sim:dropbear for
link compatibility with dropbear's bundled libtomcrypt.
Signed-off-by: Abhishek Mishra <mishra.abhishek2808@gmail.com>
Add NSH and OSTest configurations, the DRAM linker script, and the minimal board initialization and reset hooks for RK3588S.
Signed-off-by: Emre Cecanpunar <emreleno@gmail.com>
New RISC-V chip port for the GigaDevice GD32VW55x (Nuclei N307, Wi-Fi 6
and BLE 5.3 combo), with the GD32VW553K-START board.
Core:
- ECLIC interrupt controller, clock tree (160 MHz / 40 MHz HXTAL),
64-bit machine timer, serial (USART0/UART1/UART2) and RTC.
- The instruction cache must be enabled in head.S or the UART drops
characters under load; the mask ROM uses the first 0x200 bytes of SRAM
so the image is linked at 0x20000200; the RTC needs PMU_CTL0.BKPWEN or
the register writes are silently discarded.
- The ECLIC only auto-clears the interrupt pending bit in hardware-vectored
mode, so the trap dispatch clears it for edge-triggered sources or they
re-fire forever (level-triggered peripherals clear their own).
Peripherals: DMA (8 channels), GPIO + EXTI, SPI (optional DMA), I2C0/I2C1
(the new STM32-v2-style IP, not the GD32F4 one), ADC, PWM and input
capture on the timers, both watchdogs, PROGMEM, TRNG and CRC. All use
the standard NuttX lower-half interfaces and direct register access, not
the vendor SPL. Three user LEDs (GPIOC), and a software reset through the
Nuclei SysTimer.
Internal flash: it is a system-in-package NOR die behind the real-time
decryption block, so it is not programmed through the FMC registers -- the
driver goes through the mask ROM API (rom_flash_*), the same way the
vendor code does. PROGMEM can be mounted as LittleFS; the region sits
below the Wi-Fi NVDS and must not overlap it.
Wi-Fi (wlan0), station and softAP:
- The MAC/PHY, RF and WPA supplicant are linked as prebuilt BSD-3
libraries. They are RTOS-agnostic, so the OS binding is a sys_* facade
on NuttX primitives (gdwifi/wrapper_nuttx.c). Critical sections mask by
ECLIC priority threshold, not by disabling every interrupt, or the MAC
misses its microsecond deadlines.
- The lwIP stack of the SDK is not used: the interface is a
netdev_lowerhalf driver driven by the standard tools (wapi, ifup, renew,
ping, dhcpd). EAPOL is handed to the supplicant instead of the IP
stack. The lowerhalf "priority" field is the work-queue id (HPWORK/
LPWORK), not a task priority -- a wrong value makes receive() never run
and every packet is dropped.
- The vendor gives the radio 32 KB of shared SRAM as an extra heap; this
needs CONFIG_MM_REGIONS >= 2 or the kernel silently drops the region.
- The DHCP client needs CONFIG_NETUTILS_DHCPC_BOOTP_FLAGS=0x8000 so the
server answers the OFFER by broadcast.
- softAP (wapi master mode -> wifi_management_ap_start): the single-VIF
firmware does station or AP at a time. Use WPA2, not WPA3: the SAE
handshake is deep on the stack and overflows the elliptic-curve crypto
with the default task stacks, so the Wi-Fi configs raise
CONFIG_INIT_STACKSIZE/DEFAULT_TASK_STACKSIZE.
Vendor SDK: cloned by the build at "context" time, pinned to a validated
commit and patched in place -- so CI can build with nothing preinstalled,
the same pattern as esp-hal-3rdparty. The prebuilt libraries are built
for the hard-float ilp32f ABI.
BLE 5.3, marked EXPERIMENTAL and off by default: the prebuilt libble is an
all-in-one controller plus RivieraWaves host (GAP/GATT/SMP inside the blob)
with no HCI transport, so the port drives the vendor host directly
(ble_adp_*, ble_adv_*, ble_gap_*) instead of registering a bt_driver_s.
The SDK's radio interrupt handlers must be attached to the NuttX IRQ table
(they are reached through the ECLIC hardware vector table in the vendor
build); attaching also keeps --gc-sections from dropping them. It ships
with no configuration; enabling it advertises as "NuttX", connectable.
Boards: gd32vw553k-start with nsh, wapi, sta_softap, periph and littlefs
configurations, and the board added to the CI build list.
Tested on hardware (GD32VW553K-START): NSH, the peripheral drivers
(TRNG entropy and the LEDs exercised), LittleFS (write, read, survives a
reboot), the full Wi-Fi station path (scan, WPA2, DHCP, ping to the
internet), the softAP (a client associates with WPA2, gets an address
from the board's DHCP server, and pings the board), and BLE (advertises as
"NuttX"; a central connects and enumerates the GATT database).
Assisted-by: Claude Opus 4.8
Signed-off-by: Jorge Guzman <jorge.gzm@gmail.com>
This commit introduces a rudimentary architecture and board port for the
MIPS Creator CI20, featuring the dual core Ingenic JZ4780 SoC (MIPS32).
Included in this initial implementation:
- Basic architectural initialization and startup code for the JZ4780 Core 0.
- Minimal configuration required to execute from RAM.
- Early UART/serial console support for basic debugging and NSH output.
- Minimal board-specific configuration for the CI20 target.
- Console output is routed via UART0 on the expansion header.
This establishes basic support for running NuttX on the MIPS CI20.
Further peripherals, optimization, and extended documentation are left for
future iterations or community contributions.
Build and Runtime Deployment Info:
----------------------------------
The baseline can be configured, compiled using the MIPS MTI toolchain,
and loaded via U-Boot using the following commands (replace
<tftp_dir> with your local TFTP root directory).
./tools/configure.sh -l ci20/nsh
make CROSSDEV=mips-mti-elf-
mkimage -A mips -O linux -T kernel -C none -a 0x80000180 -e 0x800004ac \
-n "nx" -d nuttx.bin <tftp_dir>/nuttx.umg
Note: U-Boot must be properly configured for networking (e.g., valid ipaddr,
serverip, and ethaddr environment variables) to fetch the image over TFTP.
Run this from U-Boot prompt:
tftp nuttx.umg && bootm $fileaddr
Signed-off-by: Lwazi Dube <lwazeh@gmail.com>
Wire the remaining STM32 families (L5, U5, WB, WL5, N6, H5) to the shared
boards/arm/common/stm32 board-common directory.
No functional change: these boards do not yet use any shared driver, but the
shared board-common features are now available to the families.
Signed-off-by: raiden00pl <raiden00@railab.me>
Wire the STM32H7 family to the shared boards/arm/common/stm32 board-common
directory.
Drop the local copies that are already provided by the shared directory:
- stm32_reset.c from nucleo-h723zg, nucleo-h743zi, nucleo-h743zi2,
nucleo-h753zi, stm32h745i-disco and stm32h750b-dk
- stm32_romfs_initialize.c and stm32_romfs.h from nucleo-h743zi (identical
to the shared versions)
Enable CONFIG_ARCH_BOARD_COMMON=y in the configs that use CONFIG_BOARDCTL_RESET
or CONFIG_STM32_ROMFS so board_reset()/romfs are pulled from the shared
directory.
Signed-off-by: raiden00pl <raiden00@railab.me>
Support NUTTX_ROMFS_PASSWD_PASSWORD via update_romfs_password.sh for
configs that enable ROMFS passwd without a defconfig password (sim/login
CI). Enable RANDOMIZE_KEYS in sim/login defconfig. Update mkpasswd.c
header, platform docs, and the mkpasswd_autogen guide.
Signed-off-by: Abhishek Mishra <mishra.abhishek2808@gmail.com>
Remove implicit default credentials and add build-time validation.
Add check_passwd_keys.sh and gen_passwd_keys.sh; run key setup via
passwd_keys.mk before config.h is generated. Mirror the same logic in
cmake/nuttx_add_romfs.cmake for CMake builds.
BREAKING CHANGE: Builds with CONFIG_BOARD_ETC_ROMFS_PASSWD_ENABLE=y now
require an explicit admin password and non-default TEA keys. The
Kconfig default password "Administrator" and default TEA keys are no
longer accepted. Fix: run make menuconfig, set Admin password under
Board Selection -> Auto-generate /etc/passwd, enable random TEA keys or
set CONFIG_FSUTILS_PASSWD_KEY1..4 manually, and use NSH login with
Encrypted password file verification.
Signed-off-by: Abhishek Mishra <mishra.abhishek2808@gmail.com>
switch stm32f7 board common to boards/arm/common/stm32.
Move the STM32F7-only board-common features into the shared directory
so they are available to every STM32 family:
- bmi270, cs4344, can_setup, cansock_setup, reset, romfs_initialize and
spitest
- the duplicate stm32_bh1750 is removed (already present in common).
Signed-off-by: raiden00pl <raiden00@railab.me>
This port adds support for the M5Stack Cardputer (M5Stamp S3 /
ESP32-S3FN8, dual Xtensa LX7 @ 240 MHz, 8 MB flash, no PSRAM).
It reuses the common ESP32-S3 board helpers and ships these
configurations:
- nsh: NuttShell over the USB-Serial-JTAG console
- sdcard: microSD card on SPI3 (FAT)
- fb: ST7789 240x135 display exposed as a framebuffer
- wifi: Wi-Fi station
- softap: Wi-Fi SoftAP with DHCP server
- lvgl: LVGL graphics on the ST7789 (lvgldemo)
Signed-off-by: Jorge Guzman <jorge.gzm@gmail.com>
Add board-level support for two Realtek Ameba WHC evaluation boards:
- pke8721daf (RTL8721Dx)
- rtl8720f_evb (RTL8720F)
Each board provides:
- defconfig for NSH with WiFi networking support
- CMakeLists.txt (make-only build helper that fails fast on cmake)
- Board-specific bring-up and initialization (leds, SDIO, flash)
- Scripts/Make.defs including the IC-level build fragment and the
make flash target (tools/ameba/Config.mk)
Signed-off-by: raul_chen <raul_chen@realsil.com.cn>
Move the stm32l1 sources, headers and boards into arch/arm/src/stm32l1,
arch/arm/include/stm32l1 and boards/arm/stm32l1, then finalize the split:
source each split family directly in arch/arm/Kconfig and boards/Kconfig and
remove the now-empty combined arch/arm/src/stm32 and boards/arm/stm32 trees.
BREAKING CHANGE: The legacy STM32 architecture and board paths were split into
stm32f1, stm32l1, stm32f2, stm32f3, stm32f4, and stm32g4 directories.
Out-of-tree boards must move from stm32 to the matching split family.
Signed-off-by: raiden00pl <raiden00@railab.me>
Move the stm32c0 sources, headers and boards into arch/arm/src/stm32c0,
arch/arm/include/stm32c0 and boards/arm/stm32c0, then finalize the split:
source each split family directly in arch/arm/Kconfig and boards/Kconfig and
remove the now-empty combined arch/arm/src/stm32f0l0g0 and
boards/arm/stm32f0l0g0 trees.
BREAKING CHANGE: The combined STM32F0/L0/G0/C0 architecture and board
paths were split into stm32f0, stm32l0, stm32g0, and stm32c0 directories.
Out-of-tree boards, include paths, source paths, and defconfigs must move
from stm32f0l0g0 to the matching split family.
Signed-off-by: raiden00pl <raiden00@railab.me>
BREAKING CHANGE: Move the existing STM32 board common sources to
boards/arm/common/stm32 and fold in the common STM32F0/L0/G0/C0
board helpers so split STM32 board families can share one source
tree.
Signed-off-by: raiden00pl <raiden00@railab.me>
Add initial board support for BeaglePlay and PocketBeagle2, including
defconfigs, linker scripts, board initialization, procfs bring-up, and
LED stubs. BeaglePlay provides the validated runtime target for this
bring-up series.
Signed-off-by: Piyush Patle <piyushpatle228@gmail.com>