VS Code: MCUXpresso Installer

VS Code is managing its extensions (see VS Code: MCUXpresso Extension). But to make it usable for embedded development, you need more tools: compiler, linker, debugger, libraries, build system, debug probe support, …

For the experts, this is not a big deal: you know where to get them, and you install them, as shown with another tutorial. But for a class full of students or newcomers to VS Code, this can be a a time consuming and daunting task.

To make the installation easier, NXP has released a ‘dependency checker and installer’ along with their VS Code extension, which makes the setup much easier and simpler.

MCUXpresso Installer
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VS Code: MCUXpresso Extension

In essence, VS Code is only a text editor, although with very nice features. An editor which can be enhanced with so called extensions. With the right set of extensions, VS Code can be specialized for web development, or even LaTeX documenting. Or as in the case of this article series, for embedded development.

Installed VS Code Extensions
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VS Code: Getting Started, literally

This is another article in my series about Visual Studio Code. After having it installed (see VS Code: IDE Installation), this one is about starting the IDE

I can start the IDE from the shortcut (if created during the installation) or by typing code in console/command prompt shell (e.g. Windows PowerShell). To be able to use the code command requires VS Code to be present in the PATH.

Starting VS Code
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VS Code: Uninstall completely

Nothing has to last forever, and VS Code might not be the right thing for everyone. VS Code can go overboard with all the extensions and things it had proposed to install. Up to a point that one needs to get re-started again. Or because you tasted VS Code, but you did not like it.

That’s OK, you can uninstall it, after you have installed it (see VS Code: IDE Installation). The catch is: the uninstall does not a full removal, as settings and extensions do not get removed.

This article shows how to fully uninstall VS Code.

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RS-485 with NXP LPC55S69

I’m using the RS-485 field bus in many of my projects: it is very reliable and robust, and easy to implement. And with ModBus there is standardized protocol used in building automation or industrial control applications. For example I’m using the protocol to communicate between battery systems and an EV Charger.

NXP LPC55S69-EVK with RS-485

In this article I show you with an example, how the NXP LPC55S69 can be used with RS-485.

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Data Converter for MCUXpresso Energy Measurement Data

The combination of the NXP MCUXpresso IDE with the NXP MCU-Link Pro debug probe implements a nifty power and energy measurement tool (see New “MCU-Link Pro”: Debug Probe with Energy Measurement). The eclipse based IDE provides a dedicated view to inspect the data collected. It can export and import data, but it is in a binary format. In this article I present a way to export and then convert the data into .csv or any other format for processing or visualizing it in different ways.

Exporting data to gnuplot and csvplot

Using an open source command line tool, the binary data gets converted into a csv format, which then can be consumed by many tools, e.g. gnuplot.

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GNU Linker Wizardry: Wrapping printf() with Timestamps

If one is using a dedicated logger module like the McuLog, then you don’t have to worry or care about timestamp support. But if your application is using normal printf() calls for for logging purpose, you will face issues to adding timestamps to it. You might consider to change all prinft() calls. This might be a lot of work, or not possible in all cases if you cannot change the source code.

But there is a really cool feature of the GNU linker to solve that problem. It allows to ‘wrap’ around any symbol or function, including the ones in the standard library. That way I can add my mode to the printf() code as a wrapper, for example adding a timestamp for every call.

In the example below you can see this in action:

printf() calls with added timestamps

In this article I’ll show how you can wrap any function with custom code.

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LittleFS File System with MCU Internal FLASH Memory

In many of my embedded projects I need persistent data or storage for settings. If using an SD card, then FatFS is usually my choice for the file system. But if using an external FLASH memory device, then my preferred choice is usually LittleFS: it is a little fail-safe filesystem, designed for micro-controllers, which I’m using with external flash memory devices.

In the case where there is enough MCU flash, or if there is no external FLASH device available in a design, it can use the MCU internal FLASH as storage storage too. This is the topic of this article:

LittleFS File System Data
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