1691dbe0d3
19914: boards: complete SD Card MTD definition for several bords r=benpicco a=gschorcht ### Contribution description This PR completes the MTD definition for the following boards: - `seeedstudio-gd32` - `sipeed-longan-nano` including `sipeed-longan-nano-tft` - `waveshare-nrf52840-eval-kit` - ESP32x boards that have an SPI SD Card interface and use `mtd_sdcard_default` ### Testing procedure Green CI ### Issues/PRs references#19465 Prerequisite for PR #19465 19915: drivers/lcd: support MCU 8080 8-bit parallel mode r=benpicco a=gschorcht ### Contribution description LCD driver ICs usually support - SPI serial mode, - MCU 8080 8-bit parallel mode and - MCU 8080 16-bit parallel mode. This PR extends the LCD display driver API to support the MCU 8080 8-/16-bit parallel modes and implements a GPIO-driven MCU 8080 8-bit parallel mode. The following features are already working locally and will be provided as follow-on PRs for which this PR is a prerequisite. - GPIO-driven bit-banging implementation of the 16-bit mode of the MCU 8080 parallel interface - Enabling the display on `stm32f723e-disco` and `stm32l496g-disco` using the feature above - Definition of a low-level API for the parallel modes using the LCD controller of the MCU - Using FMC for the display on `stm32f723e-disco` and `stm32l496g-disco` - Using LCD controller for the display of `esp32-wt32-sc01-plus` (PR #19917) ### Testing procedure The PR can be tested with PR #19917 on top of this PR. ``` BOARD=esp32s3-wt32-sc01-plus make -j8 -C tests/drivers/st77xx flash ``` The following video shows the test. **Please note** The test is pretty slow because the display has 480 x 320 pixels and the MCU 8080 8-bit parallel interface is realized by a GPIO-driven bit-banging implementation where each GPIO of the data bus is set separately. A follow-up PR will use the ESP32-S3 LCD controller and DMA for this board. This PR just defines the extension of the driver by the parallel interface and provides the bit-banging implementation for MCUs that don't have a LCD controller on chip. https://github.com/RIOT-OS/RIOT/assets/31932013/c1e3e3d7-05d9-4ca5-8fff-9a5eaca50fba ### Issues/PRs references Co-authored-by: Gunar Schorcht <gunar@schorcht.net> |
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fuzzing | ||
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CODEOWNERS | ||
CODING_CONVENTIONS_C++.md | ||
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CONTRIBUTING.md | ||
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LICENSE | ||
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SUBSYSTEMS.md | ||
uncrustify-riot.cfg | ||
Vagrantfile |
The friendly Operating System for IoT!
RIOT is a real-time multi-threading operating system that supports a range of devices that are typically found in the Internet of Things (IoT): 8-bit, 16-bit and 32-bit microcontrollers.
RIOT is based on the following design principles: energy-efficiency, real-time capabilities, small memory footprint, modularity, and uniform API access, independent of the underlying hardware (this API offers partial POSIX compliance).
RIOT is developed by an international open source community which is independent of specific vendors (e.g. similarly to the Linux community). RIOT is licensed with LGPLv2.1, a copyleft license which fosters indirect business models around the free open-source software platform provided by RIOT, e.g. it is possible to link closed-source code with the LGPL code.
FEATURES
RIOT provides features including, but not limited to:
- a preemptive, tickless scheduler with priorities
- flexible memory management
- high resolution, long-term timers
- MTD abstraction layer
- File System integration
- support 200+ boards based on AVR, MSP430, ESP8266, ESP32, RISC-V, ARM7 and ARM Cortex-M
- the native port allows to run RIOT as-is on Linux and BSD. Multiple instances of RIOT running on a single machine can also be interconnected via a simple virtual Ethernet bridge or via a simulated IEEE 802.15.4 network (ZEP)
- IPv6
- 6LoWPAN (RFC4944, RFC6282, and RFC6775)
- UDP
- RPL (storing mode, P2P mode)
- CoAP
- OTA updates via SUIT
- MQTT
- USB (device mode)
- Display / Touchscreen support
- CCN-Lite
- LoRaWAN
- UWB
- Bluetooth (BLE) via NimBLE
GETTING RIOT
The most convenient way to get RIOT is to clone it via Git
$ git clone https://github.com/RIOT-OS/RIOT
this will ensure that you get all the newest features and bug fixes with the caveat of an ever changing work environment.
If you prefer things more stable, you can download the source code of one of our quarter annual releases via Github as ZIP file or tarball. You can also checkout a release in a cloned Git repository using
$ git pull --tags
$ git checkout <YYYY.MM>
For more details on our release cycle, check our documentation.
GETTING STARTED
- You want to start the RIOT? Just follow our quickstart guide or try this tutorial. For specific toolchain installation, follow instructions in the getting started page.
- The RIOT API itself can be built from the code using doxygen. The latest version of the documentation is uploaded daily to doc.riot-os.org.
FORUM
Do you have a question, want to discuss a new feature, or just want to present your latest project using RIOT? Come over to our forum and post to your hearts content.
CONTRIBUTE
To contribute something to RIOT, please refer to our contributing document.
MAILING LISTS
- RIOT commits: commits@riot-os.org
- Github notifications: notifications@riot-os.org
LICENSE
- Most of the code developed by the RIOT community is licensed under the GNU Lesser General Public License (LGPL) version 2.1 as published by the Free Software Foundation.
- Some external sources, especially files developed by SICS are published under a separate license.
All code files contain licensing information.
For more information, see the RIOT website: