FTF-IND-F Multi-core processing for Safe and Secure Industrial applications Solutions from Freescale
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1 FTF-IND-F Multi-core processing for Safe and Secure Industrial applications Solutions from Freescale
2 Agenda Trends Power Architecture Multi-Core technology Software Components Case Studies and Summary 2009 Wind River Systems, Inc. The Wind River logo is a trademark of Wind River Systems, Inc,. And Wind River and VxWorks are registered trademarks of Wind River Systems. Inc. 03/09
3 Agenda Trends Power Architecture Multi-Core technology Software Components Case Studies and Summary
4 Vision: Global leadership in in embedded processing and connectivity solutions Leadership in chosen markets/sub-segments Target markets: Automotive, Consumer, Industrial, Networking, Wireless Target position: #1, #2 or #3 in all chosen segments IDC ranks Freescale #1 in Power Architecture communications market at 52% and predicts that comm processors will outperform other networking silicon categories Jan 20, 2009
5 You touch us every day.
6 A New Era Where Every Connection Matters At Home Richer Consumer Experience In the Office Improved Business Productivity On the Road Global Mobility Architecting the next wave of collaboration Friend-to-friend, supplier-to-consumer, peer-to-peer Rapid service introduction and flexible implementations, assured security and privacy Delivery of a seamless new service experience: Grows with our preferences, behaviors, and capabilities Flexibility to craft, integrate, and introduce new services that enhance our productivity and collaboration. Application complexity drives scalable software-based solutions that preserve and extend the user experience through new services.
7 The Industrial Market - Trends Aerospace Power / Energy Transportation CENELEC-5012 Medical CDRH938,585 DO-178B/254 Openess Consolidation Connectivity Safety / Security Process Automation IEC61511 IEC61513 Control Automation IEC61508
8 Challenge: Balancing Business & Market Demands Business Constraints Time-to-market pressure Price erosion Fewer resources Lower cost Government Regulations Technology Enablers Multicore Adoption Choice: SMP, AMP, and Virtualization Performance & Scalability Offload strategies Improved separation, safety, and security Market Demands Increased functionality Lower SWaP Lower operations cost Increased safety and security Business Constraints Market Demands Business Drivers & Benefits 1. Performance: Throughput, Scalability, Power 2. Cost: Consolidation, Migration/Evolution (Reuse), Safety and Security Certification 3. Robustness
9 Agenda Trends Power Architecture Multi-Core technology Software Components Case Studies and Summary
10 The Right Core Matters for Multicore Frequency does still matter Higher efficiency (IPC) means higher performance Cache size impacts performance Cache stashing and warming Branch Unit Integer Unit (2) e500mc Core I-Cache/ SRAM (32KB) I-Fetcher Dispatch Unit GPR Complete Unit Ld/St Unit MMU APUs FPU D-Cache/ SRAM (32KB) Hypervisor hardware Floating point is useful in many applications Performance monitoring and instruction trace are keys to debug Address Processor Interface Unit Read-1 Read-2 Write e500mc Core Complex
11 Why Multicore Network Integration and Consolidation Service providers and enterprises are looking to reduce power and cost Firewall WAN Optimizer IPS SSL Termination Server Load Balancer Network node consolidation Routers adding appliance services Discrete devices being integrated into single SoC, driving system cost down Multicore processors becoming a true networking system on a chip Integrated Access Router Secure Load Balancer Integrated Service Switch CPU Shared Bus CPU Shared Bus CPU CPU CPU CPU DRAM DRAM DRAM DRAM Bridge DRAM DRAM Bridge Shared Bus Shared Bus Accel I/O I/O Accel Accel I/O I/O Accel I/O I/O
12 Platform Interconnect is Critical to Delivering Multicore Scalability Multicore interconnects must address: Scalability of CPU cores, memory and I/O bandwidth Flexible inter-processor communication programming models QoS differentiation for control/data plane and network traffic Efficient memory subsystem, including caching and hardware coherency The CoreNet interconnect fabric on the QorIQ P4080 addresses the scalability needs of multicore processors P4080 Aggregated interface bandwidth (MB/s) Read Bandwidth 1 core 2 cores 8 cores P4080
13 Power Architecture Technology Platform Roadmap Increasing Performance, Reducing Power First Generation 45 nm Second Generation 32 nm Third Generation 22 nm MPC86XX QorIQ P5 QorIQ - T5 QorIQ X5 Decreasing Power Increasing Performance PowerQUICC III PowerQUICC II Pro PowerQUICC II QorIQ P4 QorIQ P3 QorIQ P2 QorIQ T4 QorIQ - T3 QorIQ - T2 QorIQ X4 QorIQ - X3 QorIQ - X2 PowerQUICC I QorIQ P1 QorIQ - T1 QorIQ - X1 Increasing Performance (Frequency, System Performance)
14 In the News: Three 45 nm SOI Products Sampling Now PowerQUICC MPC8569 Flip chip PBGA 130 M transistors >1B vias and contacts StarCore MSC8156 DSP Flip chip PBGA 0.5 B transistors 2.5 B vias and contacts >2 miles of interconnect QorIQ P2020 Wire bond TEPBGA-II ~100 M transistors >1B vias and contacts Single 1.33 GHz e500 core with quad core QUICC Engine modules Designed for broadband access equipment Currently sampling Six 1 GHz SC3850 DSP cores with MAPLE-B baseband accelerator Designed for next-generation wireless standards (LTE, WiMAX, HSPA+ and TDD-LTE) Currently sampling Dual 1.2 GHz e500 V2 processor cores Designed for networking, Industrial wireless infrastructure and telecommunications architecture Currently sampling 14
15 45 nm SOI Process Power Savings Provides 50% savings in static and dynamic power over 90nm SOI SOI provides lower Ceff, allowing improved performance/power trade-off Multi-V TH transistor options Multiple performance/power transistor options available Example of power savings for a typical PowerQUICC product FSL 90SOI Fmax = 1.33GHz PWR = 11 W 90SOI Vdd=1.0V Design flow and tools make use of Multi-V TH transistors to optimize performance/leakage Transistor and gate-oxide optimization Optimization of transistor and gate dielectric provides reduced static power FSL 45SOI Fmax = 1.65GHz PWR = 6.6 W FSL 45SOI Fmax = 1.33GHz PWR = 5.5 W 45SOI Vdd=1.0V 45SOI Vdd=1.0V Freq= % Pwr = % or Freq= 0% Pwr = -50% 15
16 Power Architecture Product Roadmap Scaleable Price, Performance and Features for your Applications MPC86XX e600 SOC (5 Families) * e600 core (800 to 1500 MHz) * Backside L2 256K to 1MB * Single and Dual Core * GbE, USB, PCI, PCI-e, DDR2, srio QorIQ P5 QorIQ P4 QorIQ P4 (1 Family] * e500 core (1000 to 1500MHz) * 8 Cores, Tri-level Cache * GbE, PCI-e, DDR2/3, IEEE 1588 * Encryption, Hypervisor Decreasing Power Increasing Performance PowerQUICC III PowerQUICC II Pro PowerQUICC II PowerQUICC I PQIII (12Families) * e500 core (667 to 1500MHz) * < 4W to 17W * Single and Dual Core * GbE, USB, PCI, PCI-e, DDR2/3, Encryption, RIO PQII Pro Platform (13 Families) * e300 core (266 to 800MHz) * < 2W to 6W * QuiccEngine, GbE, USB, PCI * PCI-e, SATA, DDR2, IEEE 1588 PQII Platform (15 Families) * 603 core (166 to 450MHz) * < 1W to 2.8W * CPM, 100bT, USB, PCI, Encryption PQI Platform (16 Families) * 50 to 133MHz * <1W * QUICC, 100bT, USB, QorIQ P3 QorIQ P2 QorIQ P1 QorIQ P2 (2 Families) * e500 core (800 to 1200 MHz) * Single and Dual Core * GbE, PCI-e, DDR2/3, IEEE 1588 * Encryption, SPI, SD/MMC QorIQ P1 (2 Families) * e500 core (533 to 800 MHz) * Single and Dual Core * GbE, PCI-e, DDR2/3, IEEE 1588 * Encryption, TDM. USB Increasing Performance
17 QorIQ P1 Platform
18 QorIQ P2 Platform
19 QorIQ P4080 Block Diagram
20 Agenda Trends Power Architecture Multi-Core technology Software Components Case Studies and Summary
21 QorIQ Platforms Ecosystem Functional Model Applications Multicore Operating System Optimized High-Speed Drivers Hypervisor API Simics Virtualized Development Environment Performance Model IDE (compiler / debugger / build tools) Applications Multicore Operating System Optimized High-Speed Drivers Hypervisor Freescale QorIQ Silicon Simulation to Hardware: Same Software Multicore enablement Freescale-supplied SDK items
22 Single Board Computer Partners Subset of a comprehensive partner ecosystem COM-express ATCA Blades AMC Compact PCI PMC s Freescale Actis KONTRON Emerson EuroTech GE Fanuc Interphase Mercury Radisys TQ Embedded ATCA AMC COMexpress Compact- PCI VME PMC s ATX,uATX
23 In The News: Curtiss Wright Adopts QorIQ Processor Announces plan to develop a family of rugged, single board computers (SBCs) based on Freescale s QorIQ P4080 eight-core communications processor SBCs are engineered to leverage the flexibility Security enhancements Providing a trusted computing environment even in harsh military and aerospace applications. The performance, low-power operation and robust functionality of Freescale s QorIQ P4080 device takes embedded multicore processing to entirely new levels, said Lynn Patterson, vice president and general manager of Modular Solutions, Curtiss-Wright Controls Embedded Computing.
24 In The News: GE FANUC Adopts QorIQ Processor GE Fanuc Intelligent Platforms Announces Plans for new Products Based on Freescale QorIQ Processors Will feature in VME-based, 3U VPX-based, 6U VPX-based, 3U CPCI-based singleboard computers Support for eight core P4080 and dual core P2020 processors... a growing family of Power Architecture s that have enabled our customers to take advantage of the latest processing technologies, keeping their systems at the leading edge of performance with minimum integration effort, and minimizing long term cost of ownership, said Peter Cavill, General Manager, Military & Aerospace Products, GE Fanuc Intelligent Platforms.
25 Agenda Trends Power Architecture Multi-Core technology Software Components Case Studies and Summary
26 How Wind River Can Address Challenges and Trends Development... Life Cycle Management Device-Specific Platforms Industry-Specific Platforms Operating System Platforms Operating Systems Kernels Mobile, Infotainment Platform for Network Equipment, Platform for Industrial Devices, Platform for Consumer Devices Cert, ARINC 653 VxWorks, Wind River Linux VxWorks, Wind River Linux
27 Enabling Software QorIQ QorIQ QorIQ
28 Safety Solution Automation, Medical, Transport Automation Platform (SIL2) (IEC61508 / CENELEC 50128, FDA, IEC62304) Medical Therapy (Class 2-3) -NA Driven FDA 510(k) -EMEA Driven IEC Transport (SIL2) Driver Desk Esterel Safe and Secure Applications Wind River Partner ECO System Tilcon Non-Safe Applications KW-SW, Acontis,Rockwell, Tilcon Automation or Transport IEC Customer Control/Safety Applications VxWorks 6.6 CERT IEC Safety & Control VxWorks Medical Safety Applications VxWorks 6.6 CERT DO-178B Safety & Control VxWorks External Communication, Lightweight SCADA Integrated Graphics, Consumer Connectivity Linux BT, WiFi, Consumer Connectivity OR VxWorks PID SOAP, XML, OPC, CAN Linux (PCD, GPP) or VxWorks WRS Hypervisor Core 0 or Core 0.. n Freescale QorIQ SIL 1/SIL 2 -Time Separation
29 20 Years of Communications Processing Evolution MC K core AIM Alliance Started 1991 First silicon 1992 PowerPC 603e PowerPC 75X First PowerQUICC communications processors Includes Communications Processor Module (CPM) Dual-core processor MPC8641D with e600 Power cores Dual-core with integrated content processing MPC8572E with e500 Power core PowerQUICC III e500 Power core QUICC MC K core PowerQUICC II 603e Power core Security integration with PowerQUICC line PowerQUICC II Pro e300 Power core GPON processor Integrated DSP + Power core In Production Power Architecture Host Processors MPC7xxx e600 core QUICC Engine Next-gen CPM / dual RISC engines
30 In the News: Freescale Introduces Product Longevity Program The embedded market needs long-term product support, which allows OEMs to provide assurance to their customers. Freescale has a longstanding track record of providing long-term production support for our products. We are now pleased to announce that we are introducing a formal product longevity program for the market segments we serve. In the automotive and medical segments, Freescale will manufacture select devices for a minimum period of 15 years. For all other market segments in which Freescale participates, Freescale will manufacture select devices for a minimum period of 10 years. A list of applicable Freescale products is available for quick access at
31 Summary Multicore along with Virtualization technologies / Hypervisor has a immediate return on ROI, through Reduce size and weight - Reduce hardware costs - Reduce energy consumption - Reduce hardware and software development costs - Reduce software complexity on multicore - Freescale and Partner s multicore technologies address the Business and Market drivers for safe and secure applications in the Industrial Market.
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