321 lines
8.9 KiB
HCL
321 lines
8.9 KiB
HCL
# Specify the provider and access details
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provider "aws" {
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shared_credentials_file = var.shared_credentials_file
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region = var.region
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profile = var.profile
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}
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# Create a VPC to launch our instances into
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resource "aws_vpc" "default" {
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cidr_block = "192.168.0.0/16"
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tags = var.custom-tags
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}
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# Create an internet gateway to give our subnet access to the outside world
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resource "aws_internet_gateway" "default" {
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vpc_id = aws_vpc.default.id
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tags = var.custom-tags
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}
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# Grant the VPC internet access on its main route table
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resource "aws_route" "internet_access" {
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route_table_id = aws_vpc.default.main_route_table_id
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destination_cidr_block = "0.0.0.0/0"
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gateway_id = aws_internet_gateway.default.id
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}
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# Create a subnet to launch our instances into
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resource "aws_subnet" "default" {
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vpc_id = aws_vpc.default.id
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cidr_block = "192.168.38.0/24"
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availability_zone = var.availability_zone
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map_public_ip_on_launch = true
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tags = var.custom-tags
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}
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# Adjust VPC DNS settings to not conflict with lab
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resource "aws_vpc_dhcp_options" "default" {
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domain_name = "windomain.local"
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domain_name_servers = concat([aws_instance.dc.private_ip], var.external_dns_servers)
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netbios_name_servers = [aws_instance.dc.private_ip]
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tags = var.custom-tags
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}
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resource "aws_vpc_dhcp_options_association" "default" {
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vpc_id = aws_vpc.default.id
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dhcp_options_id = aws_vpc_dhcp_options.default.id
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}
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# Our default security group for the logger host
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resource "aws_security_group" "logger" {
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name = "logger_security_group"
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description = "DetectionLab: Security Group for the logger host"
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vpc_id = aws_vpc.default.id
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tags = var.custom-tags
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# SSH access
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ingress {
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from_port = 22
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to_port = 22
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protocol = "tcp"
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cidr_blocks = var.ip_whitelist
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}
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# Splunk access
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ingress {
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from_port = 8000
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to_port = 8000
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protocol = "tcp"
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cidr_blocks = var.ip_whitelist
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}
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# Fleet access
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ingress {
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from_port = 8412
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to_port = 8412
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protocol = "tcp"
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cidr_blocks = var.ip_whitelist
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}
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# Guacamole access
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ingress {
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from_port = 8080
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to_port = 8080
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protocol = "tcp"
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cidr_blocks = var.ip_whitelist
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}
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ingress {
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from_port = 8443
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to_port = 8443
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protocol = "tcp"
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cidr_blocks = var.ip_whitelist
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}
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# Velociraptor access
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ingress {
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from_port = 9999
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to_port = 9999
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protocol = "tcp"
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cidr_blocks = var.ip_whitelist
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}
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# Allow all traffic from the private subnet
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ingress {
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from_port = 0
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to_port = 0
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protocol = "-1"
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cidr_blocks = ["192.168.38.0/24"]
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}
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# outbound internet access
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egress {
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from_port = 0
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to_port = 0
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protocol = "-1"
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cidr_blocks = ["0.0.0.0/0"]
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}
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}
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resource "aws_security_group" "windows" {
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name = "windows_security_group"
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description = "DetectionLab: Security group for the Windows hosts"
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vpc_id = aws_vpc.default.id
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tags = var.custom-tags
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# RDP
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ingress {
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from_port = 3389
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to_port = 3389
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protocol = "tcp"
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cidr_blocks = var.ip_whitelist
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}
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# WinRM
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ingress {
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from_port = 5985
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to_port = 5986
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protocol = "tcp"
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cidr_blocks = var.ip_whitelist
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}
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# Windows ATA
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ingress {
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from_port = 443
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to_port = 443
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protocol = "tcp"
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cidr_blocks = var.ip_whitelist
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}
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# Allow all traffic from the private subnet
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ingress {
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from_port = 0
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to_port = 0
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protocol = "-1"
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cidr_blocks = ["192.168.38.0/24"]
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}
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# outbound internet access
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egress {
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from_port = 0
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to_port = 0
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protocol = "-1"
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cidr_blocks = ["0.0.0.0/0"]
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}
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}
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resource "aws_key_pair" "auth" {
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key_name = var.public_key_name
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public_key = file(var.public_key_path)
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}
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resource "aws_instance" "logger" {
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instance_type = "t3.medium"
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ami = coalesce(var.logger_ami, data.aws_ami.logger_ami.image_id)
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tags = merge(var.custom-tags, map(
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"Name", "${var.instance_name_prefix}logger"
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))
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subnet_id = aws_subnet.default.id
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vpc_security_group_ids = [aws_security_group.logger.id]
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key_name = aws_key_pair.auth.key_name
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private_ip = "192.168.38.105"
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# Provision the AWS Ubuntu 18.04 AMI from scratch.
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provisioner "remote-exec" {
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inline = [
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"sudo apt-get -qq update && sudo apt-get -qq install -y git",
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"echo 'logger' | sudo tee /etc/hostname && sudo hostnamectl set-hostname logger",
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"sudo adduser --disabled-password --gecos \"\" vagrant && echo 'vagrant:vagrant' | sudo chpasswd",
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"sudo mkdir /home/vagrant/.ssh && sudo cp /home/ubuntu/.ssh/authorized_keys /home/vagrant/.ssh/authorized_keys && sudo chown -R vagrant:vagrant /home/vagrant/.ssh",
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"echo 'vagrant ALL=(ALL:ALL) NOPASSWD:ALL' | sudo tee -a /etc/sudoers",
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"sudo git clone https://github.com/clong/DetectionLab.git /opt/DetectionLab",
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"sudo sed -i 's/eth1/ens5/g' /opt/DetectionLab/Vagrant/bootstrap.sh",
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"sudo sed -i 's/ETH1/ens5/g' /opt/DetectionLab/Vagrant/bootstrap.sh",
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"sudo sed -i 's/eth1/ens5/g' /opt/DetectionLab/Vagrant/resources/suricata/suricata.yaml",
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"sudo sed -i 's#/vagrant/resources#/opt/DetectionLab/Vagrant/resources#g' /opt/DetectionLab/Vagrant/bootstrap.sh",
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"sudo sed -i 's/PasswordAuthentication no/PasswordAuthentication yes/g' /etc/ssh/sshd_config",
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"sudo service ssh restart",
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"sudo chmod +x /opt/DetectionLab/Vagrant/bootstrap.sh",
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"sudo apt-get -qq update",
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"sudo /opt/DetectionLab/Vagrant/bootstrap.sh",
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]
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connection {
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host = coalesce(self.public_ip, self.private_ip)
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type = "ssh"
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user = "ubuntu"
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private_key = file(var.private_key_path)
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}
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}
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root_block_device {
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delete_on_termination = true
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volume_size = 64
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}
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}
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resource "aws_instance" "dc" {
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instance_type = "t3.medium"
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provisioner "remote-exec" {
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inline = [
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"choco install -force -y winpcap",
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"ipconfig /renew",
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"powershell.exe -c \"Add-Content 'c:\\windows\\system32\\drivers\\etc\\hosts' ' 192.168.38.103 wef.windomain.local'\"",
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]
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connection {
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type = "winrm"
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user = "vagrant"
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password = "vagrant"
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host = coalesce(self.public_ip, self.private_ip)
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}
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}
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# Uses the local variable if external data source resolution fails
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ami = coalesce(var.dc_ami, data.aws_ami.dc_ami.image_id)
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tags = merge(var.custom-tags, map(
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"Name", "${var.instance_name_prefix}dc.windomain.local"
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))
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subnet_id = aws_subnet.default.id
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vpc_security_group_ids = [aws_security_group.windows.id]
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private_ip = "192.168.38.102"
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root_block_device {
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delete_on_termination = true
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}
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}
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resource "aws_instance" "wef" {
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instance_type = "t3.medium"
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provisioner "remote-exec" {
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inline = [
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"choco install -force -y winpcap",
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"powershell.exe -c \"Add-Content 'c:\\windows\\system32\\drivers\\etc\\hosts' ' 192.168.38.102 dc.windomain.local'\"",
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"powershell.exe -c \"Add-Content 'c:\\windows\\system32\\drivers\\etc\\hosts' ' 192.168.38.102 windomain.local'\"",
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"ipconfig /renew",
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]
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connection {
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type = "winrm"
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user = "vagrant"
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password = "vagrant"
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host = coalesce(self.public_ip, self.private_ip)
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}
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}
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# Uses the local variable if external data source resolution fails
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ami = coalesce(var.wef_ami, data.aws_ami.wef_ami.image_id)
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tags = merge(var.custom-tags, map(
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"Name", "${var.instance_name_prefix}wef.windomain.local"
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))
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subnet_id = aws_subnet.default.id
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vpc_security_group_ids = [aws_security_group.windows.id]
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private_ip = "192.168.38.103"
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root_block_device {
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delete_on_termination = true
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}
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}
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resource "aws_instance" "win10" {
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instance_type = "t2.medium"
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provisioner "remote-exec" {
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inline = [
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"choco install -force -y winpcap",
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"powershell.exe -c \"Add-Content 'c:\\windows\\system32\\drivers\\etc\\hosts' ' 192.168.38.102 dc.windomain.local'\"",
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"powershell.exe -c \"Add-Content 'c:\\windows\\system32\\drivers\\etc\\hosts' ' 192.168.38.102 windomain.local'\"",
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"ipconfig /renew",
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]
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connection {
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type = "winrm"
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user = "vagrant"
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password = "vagrant"
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host = coalesce(self.public_ip, self.private_ip)
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}
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}
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# Uses the local variable if external data source resolution fails
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ami = coalesce(var.win10_ami, data.aws_ami.win10_ami.image_id)
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tags = merge(var.custom-tags, map(
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"Name", "${var.instance_name_prefix}win10.windomain.local"
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))
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subnet_id = aws_subnet.default.id
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vpc_security_group_ids = [aws_security_group.windows.id]
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private_ip = "192.168.38.104"
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root_block_device {
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delete_on_termination = true
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}
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}
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