Merge the new smoke test to master #25
4 changed files with 75 additions and 14 deletions
23
README.md
23
README.md
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@ -20,17 +20,24 @@ Our main use case is to provide a distributed storage layer for small-scale self
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We propose the following quickstart to setup a full dev. environment as quickly as possible:
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1. Setup a rust/cargo environment and install s3cmd. eg. `dnf install rust cargo s3cmd`
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2. Run `cargo build` to build the project
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3. Run `./script/dev-cluster.sh` to launch a test cluster (feel free to read the script)
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4. Run `./script/dev-configure.sh` to configure your test cluster with default values (same datacenter, 100 tokens)
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5. Run `./script/dev-bucket.sh` to create a bucket named `éprouvette` and an API key that will be stored in `/tmp/garage.s3`
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6. Run `source ./script/dev-env.sh` to configure your CLI environment
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7. You can use `garage` to manage the cluster. Try `garage --help`.
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8. You can use `s3grg` to add, remove, and delete files. Try `s3grg --help`, `s3grg put /proc/cpuinfo s3://éprouvette/cpuinfo.txt`, `s3grg ls s3://éprouvette`. `s3grg` is a wrapper on `s3cmd` configured with the previously generated API key (the one in `/tmp/garage.s3`).
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1. Setup a rust/cargo environment. eg. `dnf install rust cargo`
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2. Install awscli v2 by following the guide [here](https://docs.aws.amazon.com/cli/latest/userguide/install-cliv2.html).
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3. Run `cargo build` to build the project
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4. Run `./script/dev-cluster.sh` to launch a test cluster (feel free to read the script)
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5. Run `./script/dev-configure.sh` to configure your test cluster with default values (same datacenter, 100 tokens)
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6. Run `./script/dev-bucket.sh` to create a bucket named `eprouvette` and an API key that will be stored in `/tmp/garage.s3`
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7. Run `source ./script/dev-env-aws.sh` to configure your CLI environment
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8. You can use `garage` to manage the cluster. Try `garage --help`.
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9. You can use the `awsgrg` alias to add, remove, and delete files. Try `awsgrg help`, `awsgrg cp /proc/cpuinfo s3://eprouvette/cpuinfo.txt`, or `awsgrg ls s3://eprouvette`. `awsgrg` is a wrapper on the `aws s3` command pre-configured with the previously generated API key (the one in `/tmp/garage.s3`) and localhost as the endpoint.
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Now you should be ready to start hacking on garage!
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## S3 compatibility
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Only a subset of S3 is supported: adding, listing, getting and deleting files in a bucket.
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Bucket management, ACL and other advanced features are not (yet?) handled through the S3 API but through the `garage` CLI.
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We primarily test `garage` against the `awscli` tool and `nextcloud`.
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## Setting up Garage
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Use the `genkeys.sh` script to generate TLS keys for encrypting communications between Garage nodes.
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14
script/dev-env-aws.sh
Normal file
14
script/dev-env-aws.sh
Normal file
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@ -0,0 +1,14 @@
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#!/bin/bash
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SCRIPT_FOLDER="`dirname \"${BASH_SOURCE[0]}\"`"
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REPO_FOLDER="${SCRIPT_FOLDER}/../"
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GARAGE_DEBUG="${REPO_FOLDER}/target/debug/"
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GARAGE_RELEASE="${REPO_FOLDER}/target/release/"
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PATH="${GARAGE_DEBUG}:${GARAGE_RELEASE}:$PATH"
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export AWS_ACCESS_KEY_ID=`cat /tmp/garage.s3 |cut -d' ' -f1`
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export AWS_SECRET_ACCESS_KEY=`cat /tmp/garage.s3 |cut -d' ' -f2`
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export AWS_DEFAULT_REGION='garage'
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alias awsgrg="aws s3 \
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--endpoint-url http://127.0.0.1:3911"
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script/dev-env.sh → script/dev-env-s3cmd.sh
Executable file → Normal file
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script/dev-env.sh → script/dev-env-s3cmd.sh
Executable file → Normal file
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@ -11,12 +11,52 @@ ${SCRIPT_FOLDER}/dev-clean.sh
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${SCRIPT_FOLDER}/dev-cluster.sh > /tmp/garage.log 2>&1 &
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${SCRIPT_FOLDER}/dev-configure.sh
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${SCRIPT_FOLDER}/dev-bucket.sh
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source ${SCRIPT_FOLDER}/dev-env.sh
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source ${SCRIPT_FOLDER}/dev-env-aws.sh
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source ${SCRIPT_FOLDER}/dev-env-s3cmd.sh
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dd if=/dev/urandom of=/tmp/garage.rnd bs=1M count=10
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garage status
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garage key list
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garage bucket list
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s3grg put /tmp/garage.rnd s3://eprouvette/
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s3grg ls s3://eprouvette
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s3grg get s3://eprouvette/garage.rnd /tmp/garage.dl
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dd if=/dev/urandom of=/tmp/garage.1.rnd bs=1k count=2 # < INLINE_THRESHOLD = 3072 bytes
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dd if=/dev/urandom of=/tmp/garage.2.rnd bs=1M count=5
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dd if=/dev/urandom of=/tmp/garage.3.rnd bs=1M count=10
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diff /tmp/garage.rnd /tmp/garage.dl
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for idx in $(seq 1 3); do
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# AWS sends
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awsgrg cp /tmp/garage.$idx.rnd s3://eprouvette/garage.$idx.aws
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awsgrg ls s3://eprouvette
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awsgrg cp s3://eprouvette/garage.$idx.aws /tmp/garage.$idx.dl
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diff /tmp/garage.$idx.rnd /tmp/garage.$idx.dl
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rm /tmp/garage.$idx.dl
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s3grg get s3://eprouvette/garage.$idx.aws /tmp/garage.$idx.dl
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diff /tmp/garage.$idx.rnd /tmp/garage.$idx.dl
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rm /tmp/garage.$idx.dl
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awsgrg rm s3://eprouvette/garage.$idx.aws
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# S3CMD sends
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s3grg put /tmp/garage.$idx.rnd s3://eprouvette/garage.$idx.s3cmd
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s3grg ls s3://eprouvette
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s3grg get s3://eprouvette/garage.$idx.s3cmd /tmp/garage.$idx.dl
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diff /tmp/garage.$idx.rnd /tmp/garage.$idx.dl
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rm /tmp/garage.$idx.dl
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awsgrg cp s3://eprouvette/garage.$idx.s3cmd /tmp/garage.$idx.dl
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diff /tmp/garage.$idx.rnd /tmp/garage.$idx.dl
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rm /tmp/garage.$idx.dl
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s3grg rm s3://eprouvette/garage.$idx.s3cmd
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done
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rm /tmp/garage.{1,2,3}.rnd
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garage bucket deny --read --write eprouvette --key $AWS_ACCESS_KEY_ID
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garage bucket delete --yes eprouvette
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garage key delete --yes $AWS_ACCESS_KEY_ID
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echo "success"
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