Dynamic App Services in Containerized Environments
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1 Dynamic App Services in Containerized Environments F5 Government Technology Symposium Mark Dittmer Sr Product Management Engineer
2 Understanding the Container Market and Customer Challenges
3 1 Organization are evolving and apps are transforming 2 3 Container adoption driven by agile app dev., DevOps teams using microservices, and faster time to market Container environments brings new customer challenges and opportunities for F5
4
5 Long lived Monolithic and built on a single stack Development is iterative and constant Built from loosely coupled components Deployed to a single server Deployed to a multitude of servers
6 Cloud is here: Currently 85% Multi- Cloud 41% of workloads in cloud Benefits: Faster infrastructure, greater scalability 53% optimizing clouds 52% moving workloads to clouds Modular application construction is now dominant Emergence of development integrated with operations Shared ownership of applications is beginning to take root Automation is key Containerized microservices gaining popularity Orchestration is part of the application landscape Kubernetes, OpenShift, Cloud Foundry, Mesos Analytics now built into applications
7 Gen 0 Hardware Gen 1 Virtualized Gen 2 Cloud Gen 3 Resource Pool Data Center Provides Hardware server running single service/app Virtualized server running single service/app Self-serve virtualized server running single service/app Pools of CPU, memory, storage + PaaS Framework Automation None Little Mixed 100% Service Creation Time Weeks/Ticket Days/Ticket Minutes/Self-Serve + Autoscale Sub-second Service Lifetime Years Years Months/Years Seconds Key Products Dell, HP, BIG-IP Hardware VMWare, Xen, BIG-IP VE AWS, OpenStack, Cisco ACI Kubernetes, OpenShift, Mesos, Docker
8 Lightweight alternative for app development App runs without guest VMs Portability: Easy lift and shift to clouds or vice versa Review Using Docker Container Technology with F5 Products and Services on F5.com.
9 2016: 8% deployed, 76% eval. 2017: 45% deployed, 55% eval. Future: containers become dominant AppDev platform
10 How can I support new container environments? How do I support DevOps needs for speed and agility? How do I respond to constant requests for container app services? How can I maintain compliance across container environments? How can I secure containers without upfront IT investments? How can I drive operational and cost efficiencies?
11 Rethink Container Environments with F5 App Services
12 1 Understand the new application architectures 2 3 F5 Dynamic App Services for Containerized Environments enables self-services and automation for DevOps process Learn about container environments to help you recommend the best solutions
13 App Disruption: New Architectures NetOps Centric Architecture DevOps Centric Architecture Monolithic Application CHEF MESOS ANSIBLE KUBERNETES PUPPET REDHAT OPENSHIFT Automation Orchestration DOCKER RKT OSV Container Formats ADC ADC Physical/Virtual Infrastructure Network Compute Storage Physical/Virtual Infrastructure Network Compute Storage Internet Internet Transition Is A Continuum - Models Will Co-Exist
14 Container Environments Platform-as-a-Service (PaaS) Container-as-a-Service (CaaS) Open-Source app development environments Enhanced agility and scaling Platform independence & portability - containers can be transferred between public and private clouds Platform automatically packages software into containers and provides compute resources Allows developers to focus on writing code for greater agility Provide container engines, orchestration tools and compute resources Requires the developer to package software into containers
15 Application Services North-South Traffic Generally speaking: Traffic across network Client to app server Front-door services Examples: App Services Into containers ADC and Ingress Control Generally speaking: Machine-to-machine Application-to-application Disaggregated service bus Examples: Application data exchange VM-to-VM, Container traffic API traffic Application Services Across Containers and PaaS ADC Ingress Point Orchestration Container Environment
16 What s the difference? Ingress can refer to HTTP Routing or a collection of rules to reach the cluster services and ingress refers to inbound connections, app load balancing, programmability and security services. Ingress = HTTP routing: Currently defined as only HTTP routing (L7) Kubernetes/OpenShift Resource Handled by Ingress Controller: Container Connector + BIG-IP ingress = Access into the container environment: L4 traffic UDP traffic management Non-HTTP L7 routing Handled by ingress controller: Container Connector + BIG-IP
17 Introducing Dynamic App Services for Containerized and PaaS Environments F5 Container Connector Native open-source integration in container environments for F5 BIG-IP Ingress control Enable self-service selection in orchestration for app services Scale and secure apps through automated event discovery and service insertion 2018 F5 Networks
18 Reduced hops/latency - Route traffic directly to application front end Enable IPv6 clients to use IPv4 containerized applications Apply advanced services such as WAF and DDoS mitigation TLS Offload Re-encrypt with self-signed certificates Leverage advanced traffic management capabilities: LBing methods, health monitors, programmability etc. Application acceleration Hybrid Container/VM External Service Endpoints or VIP-targeting-VIP
19 Service Mesh Enterprise Service Mesh Built on Istio
20 THEN NOW
21 FORWARD PROXY
22 REVERSE PROXY
23 SIDECAR PROXY
24 Building a Service Mesh
25 A SERVICE MESH A network of sidecar proxies that form a reliable method of scale that includes: HTTP Routing Auto-Retries Circuit breakers Health monitoring
26 Aspen Mesh is a fully supported enterprise service mesh that provides observability, analytics and security
27 The Aspen Mesh Contacts and Distribution success on your microservices journey.
28 Highlighting F5 Application Services for Containers F5 Container Connector for RedHat OpenShift
29 F5 BIG-IP Load Balancer Master Master Master Node Node Persistent Storage RHEL VM RHEL VM RHEL VM RHEL VM RHEL VM Node Node RHEL VM RHEL VM Node RHEL VM Hypervisor
30 External Requests VIP OpenShift-Master Outbound-VIP SNAT X ocp3-master-vip.lab.fp.f5net.com Pool List ocp3-master ocp3-master1:8443 ocp3-master2:8443 ocp3-master3:8443 Masters RHEL VM Nodes RHEL VM
31 Node 1 Container Environment Node 2 Apps Container Orchestration Apps Visibility and Analytics Traffic Integration User BIG-IP Application Performance and Security Services Container Connector
32 VM Network f5-bigip-node Internal vxlan f5-bigip-float vxlan-float tunnel openshift_vlan VM Network f5-bigip-node Internal vxlan oc get hostsubnet NAME HOST HOST IP SUBNET f5-bigip-float f5-bigip-float /23 f5-bigip-node01. f5-bigip-node /23 f5-bigip-node02. f5-bigip-node /23 tunnel openshift_vlan local address secondary address tunnel openshift_vlan local address secondary address Container Node 1 Environments Node 2 Orchestration F5 Container Connector
33 Showcase F5 Solutions in Container Environments Kubernetes, Red Hat OpenShift, Pivotal Cloud Foundry, and Mesos
34 Highlight F5 container integrations to Kubernetes, Red Hat OpenShift, Pivotal Cloud Foundry, and Mesos Showcase the value of F5 integrations to container orchestration Stress data stream export in a Splunk or SIEM compatible format for visibility and analytics Share the value of container integration solutions focus
35 Dynamic App Services Across Kubernetes or OpenShift App Services Across Network Integrate and enable container app services in Kubernetes or OpenShift Tip: Your SEs have access to blueprint environment in UDF for Kubernetes or OpenShift demos Easily configure ingress control on BIG-IP with app routing, automatic traffic policy creation, and health monitoring Node 1 Kubernetes or OpenShift Node 2 Orchestration Enables app routing, availability, and scale across Kubernetes container environments F5 Container Connector Subscribes to Kubernetes or OpenShift events to automatically create, scale, or remove app performance and security services Traffic visibility via data stream export for analytics review Visibility and Analytics F5 BIG-IP App Performance and Security Services
36 Rapid App Services Selection in Kubernetes Automated discovery and services insertion Scale apps and enable security services 2018 F5 Networks
37 Application Services Across Network Pivotal Cloud Foundry Scale and secure container apps in Pivotal Cloud Foundry PaaS Node 1 Node 2 Orchestration Easily configure ingress control on BIG-IP with app routing, SSL, automatic policy creation, and health monitoring GoRouter GoRouter F5 Container Connector Subscribes to Cloud Foundry routes to automatically scale app traffic with Layer 7 policies Visibility and Analytics F5 BIG-IP App Performance and Security Services Deploy app performance faster with pre-defined policy templates on BIG-IP Traffic visibility via data stream export for analytics review
38 App Services Across Network Enable app self-services and automation in Mesos Improve app availability through integration with existing native Mesos container app workflows Mesos Cluster F5 Container Connector Marathon Orchestration Scale app performance with BIG-IP across network with app routing, programmability, and monitoring Enable security services access control, app encryption and protection Gain end to end visibility and analytics by exporting data metrics from BIG-IP Visibility and Analytics F5 BIG-IP App Delivery and Security Services Tip: Your SEs have access to blueprint environment in UDF for Mesos demos
39 Automated discovery and services insertion Scale apps and enable security services
40 Enables end-to-end visibility, analytics, and insights for fast resolution of container traffic anomalies Export data stream from BIG-IP
41 F5 CONTAINER CONNECTOR SERVICE MESH VISUALIZATION AND ANALYTICS PROGRAMMABILITY AND INTEGRATION Location Location Future F5 BIG-IP F5 irules LX F5 DevCentral Container Connector Application Services Proxy (End of Sale May 31, 2018) REST API Future Future Future
42 Containers Strengths Weakness F5 s Value Mesos / Mesosphere Kubernetes Integrated internal traffic management (using HAProxy), their preference is to partner with F5 as we increase deal velocity. Integrated internal traffic management (using IP Tables). Leading container environment with industry moving toward standardizing on. Overall traffic management capabilities needed from front-end traffic management are limited. No SSL offload to HW, limited LB methods, limited as the Ingress point (HAProxy at the heart), no DDoS protection, etc. Overall traffic management capabilities needed from front-end traffic management are limited. No SSL offload to HW, limited LB methods, no DDoS protection, etc. Through the Container Connector we integrate the BIG-IP fronting the containerized environment to provide the rich set of application delivery/performance services we offer the set of services our customers really want. Through the Container Connector we integrate the BIG-IP fronting the containerized environment to provide the rich set of application delivery/ingress control services we offer the set of services our customers really want. RedHat OpenShift Pivotal Cloud Foundry Integrated internal traffic management (using IP Tables). Full Platform as a Service (PaaS) stack. Strong RedHat and F5 partnership sharing deals. Container Connector is referenced on the RedHat Marketplace. Integrated internal traffic management (using Go Router). Container Connector is referenced on the Pivnet marketplace. Overall traffic management capabilities needed from front-end traffic management are limited. No SSL offload to HW, limited LB methods, no DDoS protection, etc. Overall traffic management capabilities needed from front-end traffic management are limited. No SSL offload to HW, limited LB methods, no DDoS protection, etc. Through the Container Connector we integrate the BIG-IP fronting the containerized environment to provide the rich set of application delivery/ingress control services we offer the set of services our customers really want. Through the Container Connector we integrate the BIG-IP fronting the containerized environment to provide the rich set of application delivery/ingress control services we offer the set of services our customers really want. Docker DC/ Swarm Integrated internal traffic management (using L3 routing) Overall traffic management capabilities needed from front-end traffic management are limited. No SSL offload to HW, limited LB methods, no DDoS protection, etc. Future Integration
43 How Customer Obtains F5
44 Simplified Container Integrations ordering by selecting no charge solutions for quick adoption Platforms: Create great customer value with blended platform options for pull through revenue Licensing: Choose flexible options for BIG-IP across Good, Better, and Best offerings Services: Select a variety of F5 services and support options to help customers succeed
45 Clouddocs.f5.com Kubernetes Concepts 2018 F5 Networks
46 Good, Better, Best Platforms 25M 200M 1Gbps 3Gbps 5Gbps 10Gbps VIPRION 2200 VIPRION 2400 i2000 series* i4000 series i5000 Series i7000 Series i10000/i11000 Series *i2600 does not support GBB Note: iseries does not support AAM module Virtual F5 Virtual Editions Provide flexible deployment options for virtual environments and the cloud Virtual ADC is best for: Accelerated deployment Maximizing data center efficiency Private and public cloud deployments Application or tenant-based pods Keeping security close to the app Lab, test, and QA deployments License Management with BIG-IQ Physical F5 physical ADCs High-performance w/dedicated hardware Physical ADC is best for: Fastest performance Highest scale SSL offload, compression, and accelerated DoS mitigation An all F5 solution: integrated HW+SW Edge and ingress control front door services Purpose-built isolation for application delivery workloads iseries have FPGA based TurboFlex for chip-level customization VIPRION 4480 VIPRION 4800 Hybrid Physical + virtual = hybrid ADC infrastructure Ultimate flexibility and performance Hybrid ADC is best for: Transitioning from physical to virtual and private data center to cloud Cloud bursting Splitting large workloads Tiered levels of service Private Cloud
47
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