267 lines
8.3 KiB
Groovy
267 lines
8.3 KiB
Groovy
pipeline {
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agent any
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environment {
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GITEA_REPO = 'https://code.jacquesingram.online/lenape/nvhi-atsila-microservice.git'
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GITEA_CREDS = '52ee0829-6e65-4951-925b-4186254c3f21'
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SONAR_HOST = 'https://sonar.jacquesingram.online'
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SONAR_TOKEN = credentials('sonar-token')
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AWS_CRED_ID = 'aws-ci'
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AWS_ACCOUNT_ID = credentials('AWS_ACCOUNT_ID')
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AWS_REGION = 'us-east-2'
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ECR_REPO = 'nvhi-atsila-microservice'
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// Backend configuration
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TF_BACKEND_BUCKET = 'nvhi-atsila-tf-state'
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TF_BACKEND_PREFIX = 'ecs/terraform.tfstate'
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TF_DDB_TABLE = 'nvhi-atsila-locks'
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SSH_CRED_ID = 'jenkins-ssh'
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// Application variables
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TF_VAR_cluster_name = 'nvhi-atsila-cluster'
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TF_VAR_vpc_cidr = '10.0.0.0/16'
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TF_VAR_public_subnets = '10.0.1.0/24,10.0.2.0/24'
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TF_VAR_instance_type = 't2.micro'
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TF_VAR_key_pair_name = 'nvhi-atsila-deployer'
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TF_VAR_jenkins_ip_cidr = "${JENKINS_SSH_CIDR}/32"
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TF_VAR_aws_region = "${AWS_REGION}"
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IMAGE_NAME = "${AWS_ACCOUNT_ID}.dkr.ecr.${AWS_REGION}.amazonaws.com/${ECR_REPO}"
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IMAGE_TAG = "v1.0.${BUILD_NUMBER}"
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}
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stages {
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stage('Checkout') {
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steps {
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checkout scm
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}
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}
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stage('SonarQube Scan') {
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steps {
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script {
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def scannerHome = tool 'SonarQubeScanner'
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withSonarQubeEnv('SonarQube') {
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sh """
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${scannerHome}/bin/sonar-scanner \
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-Dsonar.projectKey=nvhi-atsila-microservice \
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-Dsonar.sources=.
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"""
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}
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}
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}
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}
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stage('Login to ECR') {
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steps {
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withCredentials([[
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$class: 'AmazonWebServicesCredentialsBinding',
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credentialsId: env.AWS_CRED_ID
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]]) {
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sh '''
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aws ecr get-login-password --region $AWS_REGION \
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| docker login --username AWS --password-stdin $AWS_ACCOUNT_ID.dkr.ecr.$AWS_REGION.amazonaws.com
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'''
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}
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}
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}
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stage('Build & Push Docker Image') {
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steps {
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script {
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def img = docker.build("${IMAGE_NAME}:${IMAGE_TAG}")
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img.push()
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}
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}
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}
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stage('Bootstrap Backend Infrastructure') {
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steps {
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withCredentials([[
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$class: 'AmazonWebServicesCredentialsBinding',
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credentialsId: env.AWS_CRED_ID
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]]) {
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dir('terraform-backend') {
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script {
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// Check if backend resources exist
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def backendExists = sh(
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script: '''
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if aws s3api head-bucket --bucket $TF_BACKEND_BUCKET 2>/dev/null && \
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aws dynamodb describe-table --table-name $TF_DDB_TABLE 2>/dev/null; then
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echo "true"
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else
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echo "false"
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fi
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''',
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returnStdout: true
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).trim()
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if (backendExists == "false") {
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echo "Backend infrastructure doesn't exist. Creating..."
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sh '''
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terraform init
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terraform plan -out=backend.tfplan \
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-var="aws_region=$AWS_REGION" \
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-var="backend_bucket_name=$TF_BACKEND_BUCKET" \
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-var="lock_table_name=$TF_DDB_TABLE"
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terraform apply backend.tfplan
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'''
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} else {
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echo "Backend infrastructure already exists. Skipping creation."
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}
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}
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}
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}
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}
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}
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stage('Deploy Application Infrastructure') {
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steps {
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withCredentials([[
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$class: 'AmazonWebServicesCredentialsBinding',
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credentialsId: env.AWS_CRED_ID
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]]) {
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dir('terraform') {
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sh '''
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# Initialize with remote backend
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terraform init \
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-backend-config="bucket=${TF_BACKEND_BUCKET}" \
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-backend-config="key=${TF_BACKEND_PREFIX}" \
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-backend-config="region=${AWS_REGION}" \
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-backend-config="dynamodb_table=${TF_DDB_TABLE}"
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# Plan the deployment
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terraform plan -out=main.tfplan \
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-var="cluster_name=${TF_VAR_cluster_name}" \
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-var="vpc_cidr=${TF_VAR_vpc_cidr}" \
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-var="public_subnets=${TF_VAR_public_subnets}" \
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-var="instance_type=${TF_VAR_instance_type}" \
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-var="key_pair_name=${TF_VAR_key_pair_name}" \
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-var="jenkins_ip_cidr=${TF_VAR_jenkins_ip_cidr}" \
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-var="aws_region=${TF_VAR_aws_region}"
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# Apply the deployment
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terraform apply main.tfplan
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'''
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}
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}
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}
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}
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stage('Configure EC2 with Ansible') {
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steps {
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script {
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def ec2_ip = sh(
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script: "terraform -chdir=terraform output -raw ecs_instance_public_ip",
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returnStdout: true
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).trim()
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echo "EC2 Instance IP: ${ec2_ip}"
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// Changed from ubuntu to ec2-user for Amazon Linux
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writeFile file: 'ansible/hosts', text: "[inventory_hosts]\n${ec2_ip} ansible_user=ec2-user"
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}
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ansiblePlaybook(
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playbook: 'ansible/configure_ecs.yml',
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inventory: 'ansible/hosts',
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credentialsId: env.SSH_CRED_ID
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)
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}
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}
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stage('Register & Deploy to ECS') {
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steps {
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withCredentials([[
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$class: 'AmazonWebServicesCredentialsBinding',
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credentialsId: env.AWS_CRED_ID
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]]) {
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sh """
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# Register new task definition
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aws ecs register-task-definition \
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--family ${TF_VAR_cluster_name} \
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--network-mode bridge \
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--container-definitions '[{
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"name":"health-workload",
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"image":"${IMAGE_NAME}:${IMAGE_TAG}",
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"essential":true,
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"memory":512,
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"portMappings":[{"containerPort":8080,"hostPort":8080}],
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"logConfiguration": {
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"logDriver": "awslogs",
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"options": {
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"awslogs-group": "/ecs/${TF_VAR_cluster_name}",
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"awslogs-region": "${AWS_REGION}",
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"awslogs-stream-prefix": "ecs"
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}
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}
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}]' \
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--region ${AWS_REGION}
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# Update service with new task definition
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aws ecs update-service \
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--cluster ${TF_VAR_cluster_name} \
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--service ${TF_VAR_cluster_name}-service \
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--force-new-deployment \
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--region ${AWS_REGION}
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# Wait for service to stabilize
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echo "Waiting for service deployment to complete..."
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aws ecs wait services-stable \
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--cluster ${TF_VAR_cluster_name} \
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--services ${TF_VAR_cluster_name}-service \
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--region ${AWS_REGION}
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echo "Deployment completed successfully!"
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"""
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}
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}
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}
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stage('Health Check') {
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steps {
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script {
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def ec2_ip = sh(
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script: "terraform -chdir=terraform output -raw ecs_instance_public_ip",
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returnStdout: true
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).trim()
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echo "Performing health check on http://${ec2_ip}:8080/health"
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// Wait for the service to be available
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timeout(time: 5, unit: 'MINUTES') {
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waitUntil {
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script {
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def response = sh(
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script: "curl -s -o /dev/null -w '%{http_code}' http://${ec2_ip}:8080/health || echo '000'",
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returnStdout: true
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).trim()
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echo "Health check response: ${response}"
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return response == "200"
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}
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}
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}
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echo "Health check passed! Application is running successfully."
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}
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}
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}
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}
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post {
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always {
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// Clean up workspace
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cleanWs()
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}
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success {
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echo "Pipeline completed successfully!"
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}
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failure {
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echo "Pipeline failed. Check the logs for details."
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}
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}
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} |