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使用 Homebrew 安装 open-mpi

查看 open-mpi 的安装路径、可执行文件、元数据以及面向 AI 代理工作流的安全说明。

安装

其他安装命令

macOS

Homebrew已验证 · 100%
brew install open-mpi

local Homebrew formula metadata

概览

软件包摘要

High performance message passing library

命令和别名

  • mpiCC
  • mpic++
  • mpicc
  • mpicxx
  • mpiexec
  • mpif77
  • mpif90
  • mpifort
  • mpirun
  • ompi_info
  • opal_wrapper
  • oshrun

历史

项目历史与用法

Open MPI is a production-grade, open-source implementation of the Message Passing Interface specification used for parallel and distributed computing. It matters because MPI remains one of the basic portability layers for HPC applications, and Open MPI packages the compiler wrappers, launchers, runtime services, and transport components that make MPI jobs practical on clusters and workstations.

项目历史

The project was formed as a consolidation of earlier MPI implementations rather than as a small single-codebase fork. The Open MPI documentation names LAM/MPI, LA-MPI, and FT-MPI as the three prior implementations merged into Open MPI, with the University of Stuttgart team joining through FT-MPI work in late 2004; the project FAQ also describes PACX-MPI contributions as part of the initial technology base.

That origin shaped the project's design goals: a clean new implementation, peer review, vendor and researcher participation, and a component architecture that lets network, scheduler, and platform support evolve without forcing every downstream user to fork the whole MPI stack.

采用历史

Open MPI grew into one of the standard MPI choices for Linux, macOS, BSD, and HPC software stacks because it provided a permissively licensed implementation with active involvement from academic labs, vendors, and users. The project's own FAQ emphasizes third-party components and commercial or closed-source plugin compatibility as intentional collaboration mechanisms.

Package managers expose Open MPI not only as a library but as a toolchain surface: Homebrew installs compiler wrappers such as mpicc and mpicxx alongside launch commands such as mpirun and mpiexec. That packaging model reflects how developers encounter MPI in practice: by compiling code through wrappers that inject the right headers, libraries, and runtime settings.

使用方式

Developers use Open MPI to build MPI programs with wrapper compilers, launch multi-process jobs, inspect runtime configuration with ompi_info, and integrate jobs with cluster networking and process managers. Operators care about the runtime's transport and component selection because MPI performance depends heavily on the fabric, scheduler, host layout, and collective-communication choices.

On a laptop or CI machine Open MPI is often used to test parallel code paths at small process counts. On clusters it becomes part of the site software stack, where application teams expect stable mpirun/mpiexec behavior and admins tune the runtime for the interconnect and batch system.

为什么软件包爱好者会关心

Open MPI is package-nerd interesting because a formula is not just shipping a library: it ships a parallel-programming ABI, compiler wrappers, launchers, runtime daemons, Fortran/C/C++ surfaces, and configuration files. Small packaging changes can affect build reproducibility, linked MPI ABI compatibility, and runtime behavior across many scientific applications.

Its history also explains why it has many moving parts. The project's component model and merger lineage were a deliberate answer to duplicated MPI implementation work, so packagers inherit a system designed to absorb many platforms and hardware transports behind one familiar MPI interface.

时间线

  • 1994: MPI-1.0 was published by the MPI Forum, establishing the standard API family that Open MPI implements.
  • Late 2004: the University of Stuttgart team became effectively part of the Open MPI effort through FT-MPI work, according to Open MPI's history page.
  • After version 1.0: the project expanded beyond the founding implementation teams to broader contributor participation, according to the Open MPI FAQ.
  • 2026-06-13: the Open MPI FAQ page used for this enrichment was last modified by the project.

Related projects

  • LAM/MPI, LA-MPI, FT-MPI, and PACX-MPI are the important historical parents of Open MPI.
  • The MPI Forum is the standards body whose MPI specifications define the programming model Open MPI implements.

安全态势

风险级别:绿色

library-like package without higher-risk signals.

风险分类器

绿色 风险 · 低 置信度 · appliance

原因

  • library-like package without higher-risk signals

信号

  • metadata:library-like

安装行为

  • 未记录 Homebrew bottle 元数据。

建议审查

在无人值守的代理使用前,请检查该工具是否读取明文凭据、写入远程状态、发布制品或调用插件。

local files

Configuration and credential file locations

These source-backed paths show where this package keeps local settings or durable credentials. Automic Vault can use them as review targets for secret scanning, migration, and command approval.

Configuration files

Config paths the tool may read or write during local use.

Unix
~/.openmpi/mca-params.conf$prefix/etc/openmpi-mca-params.conf

可执行文件

已安装的可执行文件

命令类型暴露范围备注
mpiCC可执行文件已索引可执行文件从本地可执行文件索引发现。
mpic++可执行文件已索引可执行文件从本地可执行文件索引发现。
mpicc可执行文件已索引可执行文件从本地可执行文件索引发现。
mpicxx可执行文件已索引可执行文件从本地可执行文件索引发现。
mpiexec可执行文件已索引可执行文件从本地可执行文件索引发现。
mpif77可执行文件已索引可执行文件从本地可执行文件索引发现。
mpif90可执行文件已索引可执行文件从本地可执行文件索引发现。
mpifort可执行文件已索引可执行文件从本地可执行文件索引发现。
mpirun可执行文件已索引可执行文件从本地可执行文件索引发现。
ompi_info可执行文件已索引可执行文件从本地可执行文件索引发现。
opal_wrapper可执行文件已索引可执行文件从本地可执行文件索引发现。
oshrun可执行文件已索引可执行文件从本地可执行文件索引发现。

新鲜度

版本和新鲜度

这些信号区分页生成时间、软件包管理器活动和上游发布比较。只有存在证据 URL 和可比较版本时,才会提示版本落后。

页面生成时间2026-08-03
管理器版本5.0.9
管理器更新时间2026-07-24
本地数据未知
上游不可用
检测到的最新版本未检测到
  • OK没有生成新鲜度警告。

安装元数据

软件包元数据

软件包键brew:open-mpi
版本5.0.9
软件包管理器Homebrew
主页https://www.open-mpi.org/
仓库https://github.com/open-mpi/ompi
最后更新2026-07-24T14:35:33Z
Pulseupdated
Bottle未记录
服务未声明

来源线索

由仓库数据生成

此页面由 av-webscripts/generate-pkg-sqlite.py 生成的私有软件包 SQLite 工件提供。

使用的来源

  • Geiger risk classifier
  • cross-ecosystem install command graph
  • curated configuration and credential file locations
  • curated package history
  • pkg.so package database
  • pkgdb category and tag curation