# nesc mit Homebrew, MacPorts installieren

Prüfe Installationswege, Executables, Metadaten und Sicherheitshinweise für nesc in AI-Agent-Workflows.

## Installation

```sh
sudo av install brew:nesc
```

Weitere Installationsbefehle:

### macOS

- Homebrew (100%):

```sh
brew install nesc
```

  Evidenz: local Homebrew formula metadata

- MacPorts (94%):

```sh
sudo port install nesc
```

  Evidenz: MacPorts ports tree: lang/nesc/Portfile from https://api.github.com/repos/macports/macports-ports/git/trees/master?recursive=1

## Paketfakten

- **Paketschlüssel:** brew:nesc
- **Paketmanager:** Homebrew
- **Version:** 1.4.0
- **Quellzusammenfassung:** Programming language for deeply networked systems
- **Homepage:** <https://github.com/tinyos/nesc>
- **Repository:** <https://github.com/tinyos/nesc>
- **Zuletzt aktualisiert:** 2026-06-22T14:05:36-07:00
- **Generiert:** 2026-08-03T19:37:03+00:00

## Executables

- nescc (Alias)
- nescc-mig (Alias)
- nescc-ncg (Alias)
- nescc-wiring (Alias)

## Installationsverhalten

- Bottle: nicht verfügbar

## Version und Aktualität

- Seite generiert: 2026-08-03
- Manager-Version: 1.4.0
## Projektgeschichte und Nutzung

nesC is an extension of C designed for TinyOS and deeply networked embedded systems, especially wireless sensor-network motes. It is historically significant because it was the programming language that embodied TinyOS's component model, event-driven execution, split-phase operations, and whole-program analysis for extremely memory-constrained devices.

### Projektgeschichte

The nesC home page defines it as a C extension designed to embody TinyOS structuring concepts and execution model. TinyOS targeted sensor network nodes with very limited resources; the nesC page gives examples such as 8 KB of program memory and 512 bytes of RAM. The language built programs from wired components with provided and used interfaces, bidirectional commands/events, static linking, and whole-program compilation.

The 2003 PLDI paper by David Gay, Philip Levis, Robert von Behren, Matt Welsh, Eric Brewer, and David Culler presented nesC as a systems language for motes: tiny low-power nodes running concurrent reactive programs under severe memory and power constraints. The paper states that nesC had been used to implement TinyOS and significant sensor applications, and that nesC and TinyOS had been adopted by a large number of sensor-network research groups. In the introduction it says TinyOS was in use by more than 100 research groups worldwide.

The GitHub repository appears to be a later master repository: GitHub metadata retrieved on 2026-07-01 shows it created on 2012-12-17, archived, written mostly in C, with 107 stars and 54 forks. That repository status reflects the post-peak maintenance state, not the language's early-2000s research impact.

### Adoptionsgeschichte

nesC's adoption followed TinyOS adoption in academic and embedded-sensor research. It was not a general-purpose C successor; it was a domain-specific language for mote applications where static allocation, event callbacks, interrupt-driven execution, and compile-time race checks mattered. Its examples and papers connect it to TinyDB, Mate, Surge, and other sensor-network applications.

In package-manager terms, nesC is a legacy research/runtime tool kept installable for people building old TinyOS code or studying sensor-network systems. The av.db source record shows Homebrew and MacPorts packaging. The Homebrew formula API reported stable version 1.4.0 and 1 install-on-request event in the prior 30 days when checked on 2026-07-01.

### Wie es verwendet wird

Users invoke `nescc` to compile TinyOS/nesC applications, with helper tools such as `nescc-mig`, `nescc-ncg`, and `nescc-wiring` for message/interface generation and wiring inspection. Practical use is mostly historical TinyOS development, reproducing academic sensor-network projects, and maintaining code for mote platforms.

### Warum Paket-Nerds sich dafür interessieren

nesC is important less because of present install volume and more because it records a complete research-era software stack: a language, compiler, operating system, component model, and hardware class co-designed for wireless sensor networks. It is the opposite of a random CLI; it is a fossil with real lineage.

### Zeitleiste

- 2003: PLDI paper 'The nesC Language: A Holistic Approach to Networked Embedded Systems' published.
- 2012-12-17: tinyos/nesc GitHub repository created as the master repository.
- 2018-12-16: GitHub metadata showed the repository's last push date when checked on 2026-07-01.
- 2026-07-01: Homebrew API reported stable version 1.4.0.

### Related projects

- TinyOS
- TinyDB
- Mate
- Surge
- wireless sensor networks
- motes

### Quellen

- <https://api.github.com/repos/tinyos/nesc>
- <https://csl.stanford.edu/~pal/pubs/nesc-pldi03.pdf>
- <https://formulae.brew.sh/api/formula/nesc.json>
- <https://github.com/tinyos/nesc>
- <https://nescc.sourceforge.net/>


## Sicherheitshinweise

broad file, network, media, or database tool signal. generalized runtime or code generation signal.

- **Geiger-Risiko:** yellow / mittel
- broad file, network, media, or database tool signal
- generalized runtime or code generation signal

## Andere Paketmanager-Einträge

- MacPorts - nesc: normalized package name match | MacPorts ports tree: lang/nesc/Portfile from https://api.github.com/repos/macports/macports-ports/git/trees/master?recursive=1


## Combined YAML source

View the package source record on GitHub. [combined/nesc.yml](https://github.com/mxcl/pkgdb/blob/main/combined/nesc.yml)


## Quellen

- pkg.so package database
- Geiger risk classifier
- curated package history
- pkgdb category and tag curation
- external package-manager database matches
- cross-ecosystem install command graph
