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WIP doc
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@ -19,4 +19,26 @@ sudo docker pull lxpz/garage_amd64:v0.1.1d
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## From source
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## From source
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Garage is a standard Rust project.
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First, you need `rust` and `cargo`.
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On Debian:
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```bash
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sudo apt-get update
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sudo apt-get install -y rustc cargo
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```
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Then, you can ask cargo to install the binary for you:
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```bash
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cargo install garage
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```
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That's all, `garage` should be in `$HOME/.cargo/bin`.
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You can add this folder to your `$PATH` or copy the binary somewhere else on your system.
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For the following, we will assume you copied it in `/usr/local/bin/garage`:
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```bash
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sudo cp $HOME/.cargo/bin/garage /usr/local/bin/garage
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```
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@ -2,14 +2,14 @@
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Garage is a software that can be run only in a cluster and requires at least 3 instances.
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Garage is a software that can be run only in a cluster and requires at least 3 instances.
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In our getting started guide, we document two deployment types:
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In our getting started guide, we document two deployment types:
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- [Single machine deployment](#single-machine-deployment) though `docker-compose`
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- [Test deployment](#test-deployment) though `docker-compose`
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- [Multiple machine deployment](#multiple-machine-deployment) through `docker` or `systemd`
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- [Real-world deployment](#real-world-deployment) through `docker` or `systemd`
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In any case, you first need to generate TLS certificates, as traffic is encrypted between Garage's nodes.
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In any case, you first need to generate TLS certificates, as traffic is encrypted between Garage's nodes.
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## Generating a TLS Certificate
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## Generating a TLS Certificate
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Next, to generate your TLS certificates, run on your machine:
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To generate your TLS certificates, run on your machine:
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```
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```
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wget https://git.deuxfleurs.fr/Deuxfleurs/garage/raw/branch/master/genkeys.sh
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wget https://git.deuxfleurs.fr/Deuxfleurs/garage/raw/branch/master/genkeys.sh
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@ -19,9 +19,18 @@ chmod +x genkeys.sh
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It will creates a folder named `pki` containing the keys that you will used for the cluster.
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It will creates a folder named `pki` containing the keys that you will used for the cluster.
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### Single machine deployment
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## Test deployment
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Single machine deployment is only described through docker compose.
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Single machine deployment is only described through `docker-compose`.
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Before starting, we recommend you create a folder for our deployment:
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```bash
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mkdir garage-single
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cd garage-single
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```
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We start by creating a file named `docker-compose.yml` describing our network and our containers:
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```yml
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```yml
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version: '3.4'
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version: '3.4'
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@ -54,7 +63,7 @@ services:
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*We define a static network here which is not considered as a best practise on Docker.
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*We define a static network here which is not considered as a best practise on Docker.
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The rational is that Garage only supports IP address and not domain names in its configuration, so we need to know the IP address in advance.*
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The rational is that Garage only supports IP address and not domain names in its configuration, so we need to know the IP address in advance.*
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and then create the `config.toml` file as follow:
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and then create the `config.toml` file next to it as follow:
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```toml
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```toml
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metadata_dir = "/garage/meta"
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metadata_dir = "/garage/meta"
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@ -104,7 +113,9 @@ Not found
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Not found
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Not found
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```
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```
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### Multiple machine deployment
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That's all, you are ready to [configure your cluster!](./cluster.md).
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## Real-world deployment
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Before deploying garage on your infrastructure, you must inventory your machines.
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Before deploying garage on your infrastructure, you must inventory your machines.
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For our example, we will suppose the following infrastructure:
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For our example, we will suppose the following infrastructure:
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@ -116,8 +127,14 @@ For our example, we will suppose the following infrastructure:
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| London | Earth | fc00:1::2 | 2 To |
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| London | Earth | fc00:1::2 | 2 To |
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| Brussels | Mars | fc00:B::1 | 1.5 To |
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| Brussels | Mars | fc00:B::1 | 1.5 To |
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First, you need to setup your machines/VMs by copying on them the `pki` folder in `/etc/garage/pki`.
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On each machine, we will have a similar setup, especially you must consider the following folders/files:
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All your machines will also share the same configuration file, stored in `/etc/garage/config.toml`:
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- `/etc/garage/pki`: Garage certificates, must be generated on your computer and copied on the servers
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- `/etc/garage/config.toml`: Garage daemon's configuration (defined below)
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- `/etc/systemd/system/garage.service`: Service file to start garage at boot automatically (defined below, not required if you use docker)
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- `/var/lib/garage/meta`: Contains Garage's metadata, put this folder on a SSD if possible
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- `/var/lib/garage/data`: Contains Garage's data, this folder will grows and must be on a large storage, possibly big HDDs.
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A valid `/etc/garage/config.toml` for our cluster would be:
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```toml
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```toml
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metadata_dir = "/var/lib/garage/meta"
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metadata_dir = "/var/lib/garage/meta"
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@ -131,9 +148,9 @@ bootstrap_peers = [
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]
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]
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[rpc_tls]
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[rpc_tls]
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ca_cert = "/pki/garage-ca.crt"
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ca_cert = "/etc/garage/pki/garage-ca.crt"
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node_cert = "/pki/garage.crt"
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node_cert = "/etc/garage/pki/garage.crt"
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node_key = "/pki/garage.key"
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node_key = "/etc/garage/pki/garage.key"
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[s3_api]
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[s3_api]
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s3_region = "garage"
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s3_region = "garage"
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index = "index.html"
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index = "index.html"
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```
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```
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Please make sure to change `bootstrap_peers` to **your** IP addresses!
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### For docker users
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On each machine, you can run the daemon with:
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```bash
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docker run \
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-d \
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--restart always \
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--network host \
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-v /etc/garage/pki:/etc/garage/pki \
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-v /etc/garage/config.toml:/garage/config.toml \
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-v /var/lib/garage/meta:/var/lib/garage/meta \
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-v /var/lib/garage/data:/var/lib/garage/data \
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lxpz/garage_amd64:v0.1.1d
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```
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It should be restart automatically at each reboot.
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Please note that we use host networking as otherwise Docker containers can no communicate with IPv6.
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To upgrade, simply stop and remove this container and start again the command with a new version of garage.
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### For systemd/raw binary users
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