r-builds/README.md
Greg Lin 7d2f5ee7cc Update SLES 12 installation for Science repository removal
The Science repo no longer supports SLES 12. Switch to using the
Python backports repository on SLES 12 for openblas-devel.
2020-04-24 13:29:10 -05:00

242 lines
7.5 KiB
Markdown

# r-builds
This repository orchestrates tools to produce R binaries. The binaries are available as a
community resource, **they are not professionally supported by RStudio**.
The R language is open source, please see the official documentation at https://www.r-project.org/.
These binaries are not a replacement to existing binary distributions for R.
The binaries were built with the following considerations:
- They use a minimal set of [build and runtime dependencies](builder).
- They are designed to be used side-by-side, e.g., on [RStudio Server Pro](https://docs.rstudio.com/ide/server-pro/r-versions.html#using-multiple-versions-of-r-concurrently).
- They give users a consistent option for accessing R across different Linux distributions.
These binaries have been extensively tested, and are used in production everyday
on [RStudio Cloud](https://rstudio.cloud) and
[shinyapps.io](https://shinyapps.io). Please open an issue to report a specific
bug, or ask questions on [RStudio Community](https://community.rstudio.com).
## Supported Platforms
R binaries are built for the following Linux operating systems:
- Ubuntu 16.04, 18.04
- Debian 9
- CentOS / Red Hat Enterprise Linux 6, 7, 8
- openSUSE 42.3, 15.0
- SUSE Linux Enterprise 12, 15
## Quick Installation
To use our quick install script to install R, simply run the following
command. To use the quick installer, you must have root or sudo privileges,
and `curl` must be installed.
```sh
bash -c "$(curl -L https://rstd.io/r-install)"
```
## Manual Installation
### Specify R version
Define the version of R that you want to install. Available versions
of R can be found here: https://cdn.rstudio.com/r/versions.json
```bash
R_VERSION=3.5.3
```
### Download and install R
#### Ubuntu/Debian Linux
Download the deb package:
```bash
# Ubuntu 16.04
wget https://cdn.rstudio.com/r/ubuntu-1604/pkgs/r-${R_VERSION}_1_amd64.deb
# Ubuntu 18.04
wget https://cdn.rstudio.com/r/ubuntu-1804/pkgs/r-${R_VERSION}_1_amd64.deb
# Debian 9
wget https://cdn.rstudio.com/r/debian-9/pkgs/r-${R_VERSION}_1_amd64.deb
```
Then install the package:
```bash
sudo apt-get install gdebi-core
sudo gdebi r-${R_VERSION}_1_amd64.deb
```
#### RHEL/CentOS Linux
Enable the [Extra Packages for Enterprise Linux](https://fedoraproject.org/wiki/EPEL)
repository (RHEL/CentOS 6 and 7 only):
```bash
# CentOS / RHEL 6
sudo yum install https://dl.fedoraproject.org/pub/epel/epel-release-latest-6.noarch.rpm
# CentOS / RHEL 7
sudo yum install https://dl.fedoraproject.org/pub/epel/epel-release-latest-7.noarch.rpm
```
> Note that on RHEL 7, you may also need to enable the Optional repository:
> ```bash
> # For RHEL 7 users with certificate subscriptions:
> sudo subscription-manager repos --enable "rhel-*-optional-rpms"
>
> # Or alternatively, using yum:
> sudo yum install yum-utils
> sudo yum-config-manager --enable "rhel-*-optional-rpms"
> ```
Download the rpm package:
```bash
# CentOS / RHEL 6
wget https://cdn.rstudio.com/r/centos-6/pkgs/R-${R_VERSION}-1-1.x86_64.rpm
# CentOS / RHEL 7
wget https://cdn.rstudio.com/r/centos-7/pkgs/R-${R_VERSION}-1-1.x86_64.rpm
# CentOS / RHEL 8
wget https://cdn.rstudio.com/r/centos-8/pkgs/R-${R_VERSION}-1-1.x86_64.rpm
```
Then install the package:
```bash
sudo yum install R-${R_VERSION}-1-1.x86_64.rpm
```
#### SUSE Linux
Enable the Python backports repository (SLES 12 only):
```bash
# SLES 12
VERSION="SLE_$(grep "^VERSION=" /etc/os-release | sed -e 's/VERSION=//' -e 's/"//g' -e 's/-/_/')"
sudo zypper --gpg-auto-import-keys addrepo https://download.opensuse.org/repositories/devel:/languages:/python:/backports/$VERSION/devel:languages:python:backports.repo
```
Download the rpm package:
```bash
# openSUSE 42.3 / SLES 12
wget https://cdn.rstudio.com/r/opensuse-42/pkgs/R-${R_VERSION}-1-1.x86_64.rpm
# openSUSE 15.0 / SLES 15
wget https://cdn.rstudio.com/r/opensuse-15/pkgs/R-${R_VERSION}-1-1.x86_64.rpm
```
Then install the package:
```bash
sudo zypper --no-gpg-checks install R-${R_VERSION}-1-1.x86_64.rpm
```
### Verify R installation
Test that R was successfully installed by running:
```bash
/opt/R/${R_VERSION}/bin/R --version
```
### Add R to the system path
To ensure that R is available on the system path, create symbolic links to
the version of R that you installed:
```bash
sudo ln -s /opt/R/${R_VERSION}/bin/R /usr/local/bin/R
sudo ln -s /opt/R/${R_VERSION}/bin/Rscript /usr/local/bin/Rscript
```
### Optional post-installation steps
You may want to install additional system dependencies for R packages.
We recommend installing a TeX distribution (such as [TinyTeX](https://yihui.name/tinytex/)
or TeX Live) and Pandoc. For more information on system dependencies, see
[system requirements for R packages](https://github.com/rstudio/r-system-requirements).
If you want to install multiple versions of R on the same system, you can
repeat these steps to install a different version of R alongside existing versions.
---
# Developer Documentation
This repository orchestrates builds using a variety of tools. The
instructions below outline the components in the stack and describe how to add a
new platform or inspect an existing platform.
## Adding a new platform.
### Dockerfile
Create a `builder/Dockerfile.platform-version` (where `platform-version` is `ubuntu-1604` or `centos-7`, etc.) This file must contain four major tasks:
1. an `OS_IDENTIFIER` env with the `platform-version`.
2. a step which ensures the R source build dependencies are installed
3. The `awscli`, most likely installed via `pip` for uploading tarballs to S3
4. `COPY` and `ENTRYPOINT` for the `build.sh` file in `builder/`.
### docker-compose.yml
A new service in the docker-compose file named according to the `platform-version` and containing the proper entries:
```
command: ./build.sh
environment:
- R_VERSION=${R_VERSION} # for testing out R builds locally
- LOCAL_STORE=/tmp/output # ensures that output tarballs are persisted locally
build:
context: .
dockerfile: Dockerfile.debian-9
image: r-builds:debian-9
volumes:
- ./integration/tmp:/tmp/output # path to output tarballs
```
### Job definition
IN `serverless-resources.yml` you'll need to add a job definition that points to the ECR image.
```
rBuildsBatchJobDefinitionDebian9:
Type: AWS::Batch::JobDefinition
Properties:
Type: container
ContainerProperties:
Command:
- ./build.sh
Vcpus: 4
Memory: 4096
JobRoleArn:
"Fn::GetAtt": [ rBuildsEcsTaskIamRole, Arn ]
Image: #{AWS::AccountId}.dkr.ecr.#{AWS::Region}.amazonaws.com/r-builds:debian-9
```
### Environment variables in the serverless.yml functions.
The serverless functions which trigger R builds need to be informed of new platforms.
1. Add a `JOB_DEFINITION_ARN_PlatformVersion` env variable with a ref to the Job definition above.
2. Append the `platform-version` to `SUPPORTED_PLATFORMS`.
```
environment:
# snip
JOB_DEFINITION_ARN_debian_9:
Ref: rBuildsBatchJobDefinitionDebian9
SUPPORTED_PLATFORMS: ubuntu-1604,ubuntu-1804,debian-9,centos-6,centos-7,centos-8,opensuse-42,opensuse-15
```
### Makefile
In order for the makefile to push these new platforms to ECR, add them to the PLATFORMS variable near the top of the Makefile
### Submit a Pull Request
Once you've followed the steps above, submit a pull request. On successful merge, builds for this platform will begin to be available from the CDN.
## "Break Glass"
Periodically, someone with access to these resources may need to re-trigger every R version/platform combination. This quite easy with the `serverless` tool installed.
```
serverless invoke stepf -n rBuilds -d '{"force": true}'
```