Sync forked Git repositories with their origin.
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from: https://github.com/siemens/kas
to: https://github.com/tiacsys/kas
A setup tool for bitbake based projects.
-
from: https://github.com/wei/git-sync
to: https://github.com/tiacsys/git-sync
A GitHub Action for syncing between two independent repositories using force push.
-
from: https://github.com/MrSquaare/ssh-setup-action
to: https://github.com/tiacsys/ssh-setup
A GitHub Action helps you to setup SSH mainly for access SSH server by key-pair.
-
from: https://github.com/zephyrproject-rtos/action-zephyr-setup
to: https://github.com/tiacsys/zephyr-setup
A GitHub Action helps you to initializes a Zephyr based project, downloading the Zephyr SDK and the necessary modules.
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from: https://github.com/CANnectivity/cannectivity
to: https://github.com/tiacsys/cannectivity
The CANnectivity Project is a USB to CAN adapter firmware. It implements the Geschwister Schneider USB/CAN device protocol (often referred to as
gs_usb). This protocol is supported by the Linux kernel SocketCAN gs_usb driver, by python-can, and by many other software packages. The firmware, which is based on the Zephyr RTOS, allows turning your favorite microcontroller development board into a full-fledged USB to CAN adapter.
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from: https://github.com/zephyrproject-rtos/zephyr
to: https://github.com/tiacsys/zephyr
The Zephyr Project's scalable real-time operating system (RTOS).
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from: https://github.com/zephyrproject-rtos/twister
to: https://github.com/tiacsys/twister
The Zephyr Project's test runner script V2 (twister) – NOT (YET) FOR PRODUCTION – (still under development).
-
from: https://github.com/melexis/robot2rst
to: https://github.com/tiacsys/robot2rst
The robot2rst tool converts your
.robotfiles from Robot Framework to reStructuredText (.rst) files with traceable items. This allows you to connect your requirements to test cases.
-
from: https://github.com/melexis/xunit2rst
to: https://github.com/tiacsys/xunit2rst
The xunit2rst tool converts your xUnit/JUnit XML files to reStructuredText (
.rst) files with traceable items. This allows you to connect your requirements to test cases.
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from: https://github.com/openwch/ch32f20x
to: https://github.com/tiacsys/openwch-ch32f20x
The ch32f20x is the SDK and HDK for CH32F202/8 chips (Cortex-M3 MCU).
purposes: industrial-grade enhanced low-power general-purpose (wireless) microcontroller
SDK in:
EVT/EXAM/SRC/StdPeriphDriverHDK in:
EVT/PUB -
from: https://github.com/openwch/ch32l103
to: https://github.com/tiacsys/openwch-ch32l103
The ch32l103 is the SDK and HDK for CH32L103 chips based on (Highland Barley) Qingke 32-bit RISC-V4C core (RV32IMAC).
purposes: industrial-grade low-power general-purpose microcontroller
SDK in:
EVT/EXAM/SRC/StdPeriphDriverHDK in:
EVT/PUB -
from: https://github.com/openwch/ch32m030
to: https://github.com/tiacsys/openwch-ch32m030
The ch32m030 is the SDK and HDK for CH32M030 chips based on (Highland Barley) Qingke 32-bit RISC-V3B core (RV32IMCB).
purposes: industrial-grade motor microcontroller
SDK in:
EVT/EXAM/SRC/PeripheralHDK in:
EVT/PUB -
from: https://github.com/openwch/ch32v002_004_005_006_007
to: https://github.com/tiacsys/openwch-ch32v002_004_005_006_007
The ch32v002_004_005_006_007 is the SDK and HDK for CH32V002, CH32V004, CH32V005, CH32V006, CH32V007, and CH32M007 chips based on (Highland Barley) Qingke 32-bit RISC-V2C core (RV32EMC).
purposes: industrial-grade general-purpose microcontrollers
SDK in:
EVT/EXAM/SRC/PeripheralHDK in:
EVT/PUB -
from: https://github.com/openwch/ch32v003
to: https://github.com/tiacsys/openwch-ch32v003
The ch32v003 is the SDK and HDK for CH32V003 chips based on (Highland Barley) Qingke 32-bit RISC-V2A core (RV32EMC).
purposes: industrial-grade general-purpose microcontrollers
SDK in:
EVT/EXAM/SRC/PeripheralHDK in:
EVT/PUB -
from: https://github.com/openwch/ch32v103
to: https://github.com/tiacsys/openwch-ch32v103
The ch32v103 is the SDK and HDK for CH32V103 chips based on (Highland Barley) Qingke 32-bit RISC-V3A core (RV32IMAC).
purposes: general-purpose microcontrollers
SDK in:
EVT/EXAM/SRC/PeripheralHDK in:
EVT/PUB -
from: https://github.com/openwch/ch32v20x
to: https://github.com/tiacsys/openwch-ch32v20x
The ch32v20x is the SDK and HDK for CH32V203 chips based on (Highland Barley) Qingke 32-bit RISC-V4B core (RV32IMAC) and CH32V208 chips based on Qingke 32-bit RISC-V4C core (RV32IMAC).
purposes: industrial-grade enhanced low-power general-purpose microcontrollers
SDK in:
EVT/EXAM/SRC/PeripheralHDK in:
EVT/PUB -
from: https://github.com/openwch/ch32v307
to: https://github.com/tiacsys/openwch-ch32v307
The ch32v307 is the SDK and HDK for CH32V305/7 chips based on (Highland Barley) Qingke 32-bit RISC-V4F core (RV32IMACF).
purposes: interconnected microcontrollers
SDK in:
EVT/EXAM/SRC/PeripheralHDK in:
EVT/PUB -
from: https://github.com/openwch/ch32x035
to: https://github.com/tiacsys/openwch-ch32x035
The ch32x035 is the SDK and HDK for CH32X035 chips based on (Highland Barley) Qingke 32-bit RISC-V4C core (RV32IMAC).
purposes: industrial-grade microcontrollers
SDK in:
EVT/EXAM/SRC/PeripheralHDK in:
EVT/PUB -
from: https://github.com/openwch/ch569
to: https://github.com/tiacsys/openwch-ch569
The ch569 is the SDK and HDK for CH565/9 chips based on (Highland Barley) Qingke 32-bit RISC-V3A core (RV32IMAC).
purposes: super-high-speed USB 3.0 Gigabit Ethernet microcontrollers
SDK in:
EVT/EXAM/SRC/PeripheralHDK in:
EVT/PUB -
from: https://github.com/openwch/ch570
to: https://github.com/tiacsys/openwch-ch570
The ch570 is the SDK and HDK for CH570/2 chips based on (Highland Barley) Qingke 32-bit RISC-V3C core (RV32IMCB).
purposes: full-speed USB 2.0 BLE 5.0 / 2.4GHz RF link microcontrollers
SDK in:
EVT/EXAM/SRC/StdPeriphDriverHDK in:
EVT/PUB -
from: https://github.com/openwch/ch583
to: https://github.com/tiacsys/openwch-ch583
The ch583 is the SDK and HDK for CH581/2/3 chips based on (Highland Barley) Qingke 32-bit RISC-V4A core (RV32IMAC).
purposes: full-speed USB 2.0 BLE 5.3 / 2.4GHz RF link microcontrollers
SDK in:
EVT/EXAM/SRC/StdPeriphDriverHDK in:
EVT/PUB -
from: https://github.com/openwch/ch585
to: https://github.com/tiacsys/openwch-ch585
The ch585 is the SDK and HDK for CH584/5 chips based on (Highland Barley) Qingke 32-bit RISC-V3C core (RV32IMCB).
purposes: high-speed USB 2.0 BLE 5.4 / 2.4GHz RF link microcontrollers
SDK in:
EVT/EXAM/SRC/StdPeriphDriverHDK in:
EVT/PUB -
from: https://github.com/openwch/ch592
to: https://github.com/tiacsys/openwch-ch592
The ch592 is the SDK and HDK for CH591/2 chips based on (Highland Barley) Qingke 32-bit RISC-V4C core (RV32IMAC).
purposes: full-speed USB 2.0 BLE 5.4 / 2.4GHz RF link microcontrollers
SDK in:
EVT/EXAM/SRC/StdPeriphDriverHDK in:
EVT/PUB -
from: https://github.com/openwch/ch641
to: https://github.com/tiacsys/openwch-ch641
The ch641 is the SDK and HDK for CH641 chips based on (Highland Barley) Qingke 32-bit RISC-V2A core (RV32EC).
purposes: USB-PD BC1.2 DCP HV and wireless charging microcontrollers
SDK in:
EVT/EXAM/SRC/PeripheralHDK in:
EVT/PUB -
from: https://github.com/openwch/ch643
to: https://github.com/tiacsys/openwch-ch643
The ch643 is the SDK and HDK for CH643 chips based on (Highland Barley) Qingke 32-bit RISC-V4C core (RV32IMAC).
purposes: RGB display industrial-grade full-speed USB 2.0 (USB-PD) microcontrollers
SDK in:
EVT/EXAM/SRC/PeripheralHDK in:
EVT/PUB
-
from: https://github.com/u-blox/ubxlib
to: https://github.com/tiacsys/ubxlib
The ubxlib is a portable C library which provide APIs to build applications with u-blox products and services. Delivered as add-on to existing microcontroller and RTOS SDKs.
-
from: https://github.com/analogdevicesinc/TMC-API
to: https://github.com/tiacsys/TMC-API
The TMC-API is a portable C library for working with Trinamic ICs in embedded projects. It is CPU-independent and self-contained (no external dependencies).
-
from: https://github.com/analogdevicesinc/TMC-EvalSystem
to: https://github.com/tiacsys/TMC-EvalSystem
The TMC-EvalSystem is the bare-metal firmware for working with Trinamic Evaluation Systems.
-
from: https://github.com/QuantumLeaps/qpc
to: https://github.com/tiacsys/qpc
The QP/C Project's active objects (actors) and hierarchical state machines for embedded RTOS.
-
from: https://github.com/lua/lua
to: https://github.com/tiacsys/lua
The Lua Project's powerful, efficient, lightweight, embeddable scripting language.
-
from: https://gitlab.com/kicad/libraries/kicad-symbols
to: https://github.com/tiacsys/kicad-symbols
The KiCad symbol libraries are the individual
.libfiles, with the corresponding.dcmfiles containing symbol metadata. -
from: https://gitlab.com/kicad/libraries/kicad-footprints
to: https://github.com/tiacsys/kicad-footprints
The KiCad footprint libraries are the individual
.prettydirectories. -
from: https://gitlab.com/kicad/libraries/kicad-packages3D
to: https://github.com/tiacsys/kicad-packages3D
The KiCad 3D model libraries are the individual
.3dshapesdirectories. -
from: https://gitlab.com/kicad/libraries/kicad-packages3D-source
to: https://github.com/tiacsys/kicad-packages3D-source
The KiCad 3D model library sources are the individual
.3dshapesdirectories. -
from: https://gitlab.com/kicad/libraries/kicad-library-utils
to: https://github.com/tiacsys/kicad-library-utils
check_symbol.py: Script for checking KLC compliance of symbol files.
check_footprint.py: Script for checking KLC compliance of footprint files.
check_3d_coverage.py: Script for checking which KiCad footprints in a
.prettylibrary have 3D models. It also shows unused 3D model files.comparelibs.py: Script to compare two versions of the same library. Used as part of the
kicad-symbolsCI. -
from: https://gitlab.com/kicad/libraries/kicad-templates
to: https://github.com/tiacsys/kicad-templates
The KiCad templates are the individual project and worksheet template directories.
-
from: https://github.com/NASA-SW-VnV/ikos
to: https://github.com/tiacsys/ikos
Static analyzer for C/C++ based on the theory of Abstract Interpretation, see: NASA ARC-16789-1: Inference Kernel for Open Static (IKOS) Analyzers
-
from: https://github.com/NASA-SW-VnV/fret
to: https://github.com/tiacsys/fret
A framework for the elicitation, specification, formalization and understanding of requirements. NASA ARC-18066-1: FRET : Formal Requirements Elicitation Tool
-
from: https://github.com/attakei/sphinx-revealjs
to: https://github.com/tiacsys/sphinx-revealjs
A Sphinx extension with theme to generate Reveal.js presentations.