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In-circuit emulation (ICE) is the use of a hardware device or in-circuit emulator used to debug the software of an embedded system. It operates by using a processor with the additional ability to support debugging operations, as well as to carry out the main function of the system.
MPLAB X is the first version of the IDE to include cross-platform support for macOS and Linux operating systems, in addition to Microsoft Windows. It supports editing, very buggy debugging and programming of Microchip 8-bit, 16-bit and 32-bit PIC microcontrollers.
Embeetle IDE - free, fast (non-eclipse) IDE. Works both on Linux and Windows. [16] emIDE by emide – free Visual Studio Style IDE including GNU Tools for ARM [17] GNU ARM Eclipse – A family of Eclipse CDT extensions and tools for GNU ARM development [13] GNU Tools (aka GCC) for ARM Embedded Processors by ARM Ltd – free GCC for bare metal ...
x64dbg is a free and open-source [1] debugging software available on Windows-based systems.It is used to analyze 64-bit executable files, while its counterpart, x32dbg, is used to analyze 32-bit executable files.
A shareware debugger, but free to use, OllyDbg is a 32-bit assembler-level debugger from Oleh Yuschuk. However, it can only be used for user-mode debugging. An open source kernel debugger similar to SoftICE named Rasta Ring 0 Debugger (RR0D) is available. [4] [5] It provides low-level debugging for Microsoft Windows, Linux, OpenBSD, NetBSD, and ...
Background debug mode (BDM) interface is an electronic interface that allows debugging of embedded systems. Specifically, it provides in-circuit debugging functionality in microcontrollers. It requires a single wire and specialized electronics in the system being debugged.
Free Pascal and the Lazarus IDE can use LLDB as backend for their own FpDebug engine. The LLDB debugger is known to work on macOS, Linux, FreeBSD, NetBSD and Windows, [4] and supports i386, x86-64, and ARM instruction sets. [5] LLDB is the default debugger for Xcode 5 and later. Android Studio also uses LLDB for debug. [6]
The SDK handles the software that will execute on the embedded system. Powered by the GNU toolchain (GNU Compiler Collection, GNU Debugger), the SDK enables programmers to write, compile, and debug C/C++ applications for their embedded system. Xilinx's tools provides the possibility of running software in simulation, or using a suitable FPGA ...