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Author SHA1 Message Date
jenkins bc07dd93d5 Update SOLUTION.md explanation document 2023-06-25 22:08:35 +02:00
jenkins c6df41a50a Add service manifest 2023-06-25 22:08:30 +02:00
jenkins f53d46c441 Update matchlabels in both deployments 2023-06-25 22:08:30 +02:00
jenkins be9f66f1dc Add green deployment 2023-06-25 22:08:30 +02:00
jenkins 14d3b7a7da Add new vehicle to list 2023-06-25 22:08:30 +02:00
jenkins c0ffe81714 Serve to 0.0.0.0 instead of localhost only 2023-06-25 22:08:30 +02:00
jenkins f228f6a8ea Add SOLUTION.md explanation document 2023-06-25 22:08:30 +02:00
jenkins 62fc19e8fe Rename blue deployment 2023-06-25 22:08:30 +02:00
5 changed files with 63 additions and 4 deletions
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# Intro
This document decribes a blue-green deployment using a simple Go web app and Minikube.
To get started, you will need to:
- Install minikube
- Execute `minikube start` to start the cluster
# Deploying the first version of our application
Using the Dockerfile a container image is built. We pushed this image to our container registry.
First, we apply the 'blue' deployment by running `kubectl apply -f deployment-blue.yaml` and `kubectl apply -f service.yaml`.
his deploys a pod with a 3 containers running v1.0 of the application. This version contains 5 vehicles in the list.
We get the service URL by running `minikube service vehicles-service --url`
Use curl to make a GET request to the `/vehicles` endpoint. We now get the list of 5 vehicles as a response.
# Updating our application
We now make a change to the application, for example by adding a new vehicle to the list. This new version is given version number 1.1. We build the container image again, now with tag 1.1.
We now apply the "green" deployment by running `kubectl apply -f deployment-green.yaml`. When the deployment is running without issues, we can update our service manifest to now point to our new version 1.1 of the application. This can be done by updating the values under `selector`. The value of `app` will now become the same as `matchLabels.app` in the `deployment-green.yaml` file, which is `vehicles-green` in this case.
After applying the updated service manifest, we can get the URL again, use curl to call the `/vehicles` endpoint. We can now see the newly added vehicle in the list.
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apiVersion: apps/v1 apiVersion: apps/v1
kind: Deployment kind: Deployment
metadata: metadata:
name: vehicles name: vehicles-blue
spec: spec:
replicas: 3 replicas: 3
selector: selector:
matchLabels: matchLabels:
app: vehicles app: vehicles-blue
template: template:
metadata: metadata:
labels: labels:
app: vehicles app: vehicles-blue
version: "1.0" version: "1.0"
spec: spec:
containers: containers:
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apiVersion: apps/v1
kind: Deployment
metadata:
name: vehicles-green
spec:
replicas: 3
selector:
matchLabels:
app: vehicles-green
template:
metadata:
labels:
app: vehicles-green
version: "1.1"
spec:
containers:
- name: vehicles-green
image: git.bngrs.net/jan/devops-release:1.1
ports:
- name: http
containerPort: 8080
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---
apiVersion: v1
kind: Service # Type of kubernetes resource
metadata:
name: vehicles-service
spec:
type: NodePort # A port is opened on each node in your cluster via Kube proxy.
ports: # Take incoming HTTP requests on port 9090 and forward them to the targetPort of 8080
- name: http
port: 8080
targetPort: 8080
selector:
app: vehicles-blue
+2 -1
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@@ -18,6 +18,7 @@ var vehicles = []Vehicle{
{ID: "3", Model: "Fiat 500e", Maker: "Fiat"}, {ID: "3", Model: "Fiat 500e", Maker: "Fiat"},
{ID: "4", Model: "Peugeot e-208", Maker: "Peugeot"}, {ID: "4", Model: "Peugeot e-208", Maker: "Peugeot"},
{ID: "5", Model: "Volkswagen ID.4", Maker: "Volkswagen"}, {ID: "5", Model: "Volkswagen ID.4", Maker: "Volkswagen"},
{ID: "6", Model: "iX1", Maker: "BMW"},
} }
func setupRouter() *gin.Engine { func setupRouter() *gin.Engine {
@@ -31,7 +32,7 @@ func setupRouter() *gin.Engine {
func main() { func main() {
router := setupRouter() router := setupRouter()
router.Run("localhost:8080") router.Run("0.0.0.0:8080")
} }
func getHealthz(c *gin.Context) { func getHealthz(c *gin.Context) {