Abstract
Services oriented architecture (SOA) is changing as it moves away from a stack and into an ESB services computing environment that relies on transport. The value of SOA is that it leverages a services bus computing environment that relies on transport. IBM WebSphereMQ is the defacto message transport standard. WebSphereMQ becomes a significant aspect of SOA because it is so good at managing decoupled messages.
The situation was not clear a year ago. There was indication that the stack would be more valuable. But, as SOA takes hold, the value of the robust highly evolved WebSphereMQ becomes apparent. Open systems products and competitive products do not have the market penetration of WebSpherMQ. None of the SOAP, JMS, MSMQ, or other messaging systems have the decoupling functions evolved for WebSphereMQ so they are not positioned to compete effectively in the mission critical messaging market.
Messages are currency. If the messages are not managed in a secure manner, it is like throwing $1000 dollar bills out the window of a skyscraper. Once and only once delivery is fundamental to evolving a secure transaction network system. As the Internet evolves as the premier business channel, it is fundamental to have secure messaging systems that do not falter ever.
IBM WebSphere handles quadrillions of transaction messages a day because it is secure. The software is transparent. It is easy to set up. WebSphereMQ is a brand that is set to last for a long time because its robust functionality that protects transactions in the context of systems going down, servers not being available, and routers diverting information to obscure locations.
SOA is fundamentally a bus, a transport layer, pulling WebSphere MQ, Tibco Rendezvous, and Sonic into the core of the middleware offering that is able to support all range of functionality needed for flexibility provided by SOA.
IBM WebSphere MQ message nodes are positioned to replace APIs as integration connection points because they are more stable over a period of time. APIs are not stable over the long term and tend to be brittle, while MQ nodes are reliable over a long period of years, positioning those nodes as a connection point for integration systems.
Worldwide backbone connectivity messaging services market share analysis indicates that all the large outsourcing consulting companies participate in the ser vices market, but that IBM has strategic advantage in this segment because of the WebSphere brand and product functionality used by all the large enterprise IT departments worldwide.
Worldwide backbone connectivity messaging markets at $2 billion in 2005 were $1.1 billion in the first half 2006, indicating some growth in the first half. The mission critical messaging markets are a subset of backbone connectivity markets that include database messaging, SOAP, JMS, and Scada. Markets are anticipated to continue to be strong because messaging is such a fundamental part of networking.
Worldwide mission critical messaging license and maintenance market steady growth is anticipated, as the Internet emerges as a distribution, supply chain and retail channel par excellence. Network computing does not just stay within the core enterprise, it is a way to move information between partners, colleagues, distributors, and branch offices.
Worldwide mission critical messaging license and maintenance market forecasts are based on the assumption of 16.5% growth overall. Markets at $718.5 million in 2006 are anticipated to reach $2.2 billion by 2013.
Research Methodology
WinterGreen Research authors use a structured, consistent, and detailed research approach. The methodology supports an analytical approach to market research. In depth comparisons are made of many aspects of the market. Data relating to Industry segments is developed to permit presentation of forecasts and market share positioned to have substantive value.
Research has been automated using automation of interactive surveys that implement delta trend analysis and instant messaging in combination with e-mail. Automation is made possible because of a proprietary engine that implements multilayered cell based analysis. Modular systems support dynamic computing that use a graphical configuration engine to reach more people in a research modality.
Full spectrum research and information services, including market reports, customized research, and customer interviewing are available, reports and research are positioned to provide strategic value to industry participants, strategic planners, and product managers.
New systems combine sales tools and independent industry analysis, seeking to leverage the expertise of the sales force and combine it with the skepticism of the analysts to provide accurate return on investment analysis.
Table of Contents
MISSION CRITICAL MIDDLEWARE MESSAGING EXECUTIVE SUMMARY
- SOA ESB Moves From Stack To Decoupled Message Transport
- WebSphereMQ and Tibco Transport Layer Achieve Mission Critical Functionality
- SOA Moves Away From Stack And Into A Services Bus Computing Environment That Relies On Transport
- Messaging Core Business Capability Drives Enterprise Networks
- SOA Integration Of E-Business
- Mission Critical Messaging Market Shares
- SOAP and JMS Message Containers
- Eclipse Tools
- Worldwide Mission Critical Messaging License and Maintenance Market Forecasts
1. MISSION CRITICAL MESSAGING MIDDLEWARE MARKET DEFINITION
- 1.1 Mission Critical Messaging As A Base For Services Oriented Architecture (SOA)
- 1.2 Mission Critical Messaging As A Base For Application Integration
- 1.2.1 IBM WebSphere MQ
- 1.3 OASIS Secure, Reliable Transaction Web Services Messaging
Architecture
- 1.3.1 Reliable Message-Based Web Services Communication
- 1.4 Mission Critical Middleware Messaging
- 1.4.1 Messaging Solutions
- 1.5 MQ Message Trends
- 1.6 Mission Critical Messaging Market Dynamics
- 1.6.1 Mission-Critical Functionality
- 1.6.2 Mission Critical MQ Messaging
- 1.7 Messaging Software
- 1.7.1 Linking Internal Operations
- 1.7.2 Distributing Information
- 1.8 Information Technology Environments Increasingly Complex
- 1.8.1 Heterogeneous Computing Environments
- 1.8.2 Technology Challenges
- 1.9 Types of Mission Critical Messaging
- 1.9.1 Middleware Messaging
- 1.9.2 Event-Driven Applications
- 1.9.3 Publish-Subscribe
- 1.9.4 Subject-Based Addressing
- 1.9.5 Location Transparency
- 1.9.6 Self-Describing Data
- 1.9.7 IP Multicast
- 1.9.8 Transaction Delivery Networks
- 1.9.9 Multicast
- 1.9.10 Multicast Adapters
- 1.9.11 SOA Web Services
- 1.10 Support For Network Computing
- 1.10.1 Growth of Organization-Wide Networks
- 1.10.2 Network Computing
- 1.10.3 Network Utilization
- 1.10.4 Moving Transactions
- 1.10.5 Interconnecting E-Mail Systems
- 1.10.6 Open Middleware Systems
- 1.11 Mission Critical Messaging Provides the Base Application
Integration
- 1.11.1 Application Server and Application Integration Depend on Mission Critical Messaging
- 1.12 Businesses Process Engineering
- 1.12.1 Key Component of Business Process Management
- 1.12.2 Difference between Business Process Management (BPM) and Workflow
- 1.13 High Performance
- 1.13.1 Scalability
- 1.13.2 Automatic Configuration
- 1.13.3 Reliable, Robust Systems
- 1.14 MQ Message Trends
- 1.15 Mission Critical Messaging Market Dynamics
2. MISSION CRITICAL MESSAGING MARKET SHARES AND FORECASTS
- 2.1 SOA ESB Moves From Stack To Decoupled Message Transport
- 2.1.1 WebSphereMQ and Tibco Transport Layer Achieve Mission Critical Functionality
- 2.1.2 SOA Integration Of E-Business
- 2.1.3 Market Driving Forces For Real Time Exchange of Information
- 2.1.4 Mission Critical Messaging Growth Factors
- 2.2 Mission Critical Messaging Market Shares
- 2.2.1 Worldwide Mission Critical Messaging Services Market Shares
- 2.3 Worldwide Mission Critical Messaging License and Maintenance Market
Forecasts
- 2.3.1 Worldwide Mission Critical Messaging Unit Shipments
- 2.3.2 IBM Offers Full Range Of Backbone Connectivity Across All Platforms with Open Systems
- 2.3.3 .NET Microsoft Web Services Strategy Integrated Across The Microsoft Platform
- 2.3.4 Difference Between Open Systems Backbone Connectivity Across All Platforms and Messaging Integrated Across The Microsoft Platform
- 2.4 Distributed Messaging Markets
- 2.4.1 Publish Subscribe
- 2.4.2 Mission Critical Messaging Applications
- 2.5 Mission Critical Messaging Regional Analysis
3. MISSION CRITICAL MESSAGING PRODUCT DESCRIPTION
- 3.1 Mission Critical Messaging Products
- 3.1.1 Mission Critical Middleware Messaging
- 3.1.2 Message Store-And-Forward Capability
- 3.1.3 Publish-And-Subscribe Service Structure
- 3.1.4 Mission Critical Messaging Supports Internet Computing
- 3.1.5 IBM WebSphere MQ Middleware Messaging De Facto Industry Standard
- 3.2 IBM WebSphere MQ
- 3.2.1 IBM Web Sphere MQ Security
- 3.2.2 IBM WebSphere MQ JMS and SSL Capability
- 3.4.6 IBM WebSphere® MQ Operating Systems Supported
- 3.2.4 IBM WebSphere MQ Features
- 3.2.5 IBM WebSphere MQ Mission Critical Functions
- 3.4.11 IBM WebSphere® MQ Mission Critical Messaging Features
- 3.2.7 IBM WebSphere MQ Transport
- 3.4.2 IBM WebSphere Software
- 3.4.7 IBM WebSphereMQ Software Functions
- 3.4.8 IBM WebSphere MQ Security Functions
- 3.4.9 IBM WebSphere MQ Framework Functions
- 3.4.10 IBM WebSphere MQ Everyplace Functions
- 3.4.12 IBM WebSphere MQ Time-Independent Processing
- 3.4.13 IBM WebSphere Message Queue Interface
- 3.4.14 IBM WebSphere MQ Support For Open Standards
- 3.4.15 IBM WebSphere MQ Wide-Scale Messaging
- 3.2.17 IBM WebSphere MQ for z/OS
- 3.2.18 IBM WebSphere MQ Product Positioning
- 3.2.19 IBM® WebSphere® MQ SupportPacs™ Library
- 3.2.20 WebSphereMQ SupportPacs Category 1 - Fee based services
- 3.2.21 WebSphereMQ SupportPacs Category 2 - As-is
- 3.2.22 WebSphereMQ SupportPacs Category 3 - Product Extensions
- 3.2.23 WebSphereMQ SupportPacs - Third Party Contributions
- 3.3 Tibco Messaging Integrated With EAI Components
- 3.3.1 Tibco Mainframe Messaging
- 3.3.2 Tibco Complete Set of Messaging Options
- 3.3.3 Tibco Java-Based Messaging
- 3.3.4 Tibco Distributed Messaging Solutions
- 3.3.5 Tibco Enterprise™ for JMS
- 3.3.6 Tibco Support for .NET and Wireless Service
- 3.3.7 Tibco Enterprise Message Service
- 3.3.8 Tibco Messaging Scalability And Fault-Tolerance
- 3.3.9 Tibco Messaging Support for Standards
- 3.3.10 Tibco Integration of Technologies
- 3.3.11 Tibco Rendezvous™ TX
- 3.3.12 Tibco Scalable Guaranteed Transactional Messaging
- 3.3.13 Tibco Rendezvous TX Architecture
- 3.3.14 Tibco Messaging
- 3.3.15 Tibco Rendezvous Positioning
- 3.3.16 Tibco Rendezvous™
- 3.3.17 Tibco SmartSockets
- 3.3.18 TIBCO SmartPGM
- 3.3.19 TIBCO SmartPGM FX
- 3.4 Microsoft MSMQ
- 3.4.1 Microsoft BizTalk Adapter for MSMQ
- 3.4.2 Microsoft BizTalk Server
- 3.4.3 Microsoft Proprietary Middleware
- 3.4.4 Microsoft .Net BizTalk MSMQ
- 3.4.5 Microsoft .Net Biztalk Messaging
- 3.4.6 Microsoft .Net BizTalk Messaging Manager objects
- 3.4.7 Microsoft .Net BizTalk Messaging Ports
- 3.4.8 Microsoft .Net BizTalk Document Definitions
- 3.4.9 Microsoft .Net BizTalk Envelopes
- 3.4.10 Microsoft .Net BizTalk Distribution Lists
- 3.5 Progress Software Sonic MQ
- 3.5.1 Progress Software SonicMQ
- 3.5.2 Progress Software Sonic SOA Targets TIBCO EAI
- 3.5.3 Progress Software Sonic Software Sonic MQ
- 3.5.4 Progress Software Sonic Software Sonic SOA Suite
- 3.5.5 Sonic SOA Suite
- 3.5.6 SonicMQ Clustering / Multiple Server Support
- 3.5.7 SonicMQ Bridges
- 3.5.8 SonicXQ™
- 3.5.9 SonicMQ Distributed 2-Phase Transaction Support
- 3.5.10 SonicMQ Advanced Clustering Technology
- 3.5.11 SonicMQ Dynamic Routing Architecture
- 3.5.12 SonicMQ Encryption
- 3.5.13 SonicMQ Authentication and Authorization
- 3.5.14 Sonic ESB
- 3.5.15 Sonic XML Server
- 3.5.16 Sonic Workbench
- 3.5.17 Sonic Software Positioning
- 3.5.18 Charles River Development/Sonic Enterprise Message
- 3.6 Publish Subscribe Systems
- 3.6.1 IBM WebSphere MQ Publish / Subscribe Messaging Domain
- 3.6.2 Tibco BusinessWorks Use Of Rendezvous™ Messaging
- 3.6.3 Tibco® BusinessWorks Features
- 3.6.4 Kabira
- 3.6.5 Kabira Wire Speed Messaging Solution
- 3.6.6 Kabira Transaction Switch
- 3.6.7 Kabira Infrastructure System Foundation
4. MISSION CRITICAL MESSAGING MIDDLEWARE TECHNOLOGY
- 4.1 Mission Critical Messaging As A Base For Services Oriented Architecture (SOA)
- 4.2 Mission Critical Messaging As A Base For Application Integration
- 4.2.1 IBM WebSphere MQ
- 4.3 OASIS Secure, Reliable Transaction Web Services Messaging
Architecture
- 4.3.1 Reliable Message-Based Web Services Communication
- 4.3.2 WS-RM to OASIS Completed
- 4.4 Streams For Messaging and Data Access
- 4.5 Message Queuing
- 4.5.1 Database Message Queuing
- 4.5.2 Data and Message Transformation
- 4.6 Componentization
- 4.7 Speed, Flexibility, and Scalability
- 4.8 Mission Critical Message Throughput
- 4.8.1 Message Persistence
- 4.8.2 Message Size
- 4.8.3 Data Format
- 4.8.4 Message Flow Complexity
- 4.9 Message Input To Output Ratio
- 4.10 Required Message Rate
- 4.11 Parallel Message Processing
- 4.11.1 Serial Message Processing
- 4.11.2 Recovery Requirements
- 4.12 Typical Message Patterns
- 4.13 Processors Manage Specified Message Flows
- 4.14 Middleware Messaging Technology Issues
- 4.14.1 Report Messages Functions
- 4.14.2 Real-Time Technology Issues
- 4.14.3 MCA Exit Chaining
- 4.14.4 Remove Channel Process Definition
- 4.14.5 Improved Stop Channel Command
- 4.14.6 AMI Objects From LDAP
- 4.15 Secure Sockets Layer (SSL)
- 4.16 Dynamic Systems
- 4.17 Robust, Enterprise-quality Fault Tolerance
- 4.17.1 Cache / Queue
- 4.18 Multicast
- 4.19 Performance Optimization
- 4.19.1 Fault Tolerance
- 4.19.2 Gateways
- 5.10 Novell
- 5.10.1 JBoss Enterprise Middleware System from Novell
- 5.10.2 Novell Revenue
- 5.11 Oracle
- 5.11.1 Oracle Business
- 5.11.2 Oracle Recent Acquisitions
- 5.11.3 Oracle Middleware Products and Services
- 5.11.4 Oracle Acquires Oblix
- 5.11.5 Oblix Identity Management Products and Services
- 5.11.6 Oracle Buys Open Source Software Company Sleepycat
- 5.11.7 Oracle Revenue 2006
- 5.11.8 Oracle Corporation Q2 Fiscal 2007 Quarter Revenue
- 5.11.9 Oracle Buys Open Source Software Company Sleepycat
- 5.12 PolarLake
- 5.13 Progress Software
- 5.13.1 Progress Software Products
- 5.13.2 Progress Software Partners and Customers
- 5.13.3 Progress Software / NEON Systems
- 5.13.4 Progress Software First Quarter Revenue 2007
- 5.13.5 Progress Software Customer and Partners
- 5.13.6 Progress Software 2005 Revenue
- 5.14 Red Hat
- 5.14.1 Red Hat Business Strategy
- 5.14.2 Red Hat Vendors To The Large Enterprise
- 5.14.3 Red Hat Partners
- 5.14.4 Red Hat Acquires JBoss
- 5.14.5 Red Hat Revenue
- 5.14.6 Red Hat Subscription Revenue
- 5.14.7 Red Hat Training And Services Revenue
- 5.14.8 Red Hat JBoss Revenue
- 5.14.9 Red Hat Subscription Enterprise Technologies
- 5.14.10 Red Hat Sales By Geography
- 5.14.11 Red Hat Linux And Open Source Solutions
- 5.15 SOA Software
- 5.15.1 Customers
- 5.15.2 Partners
- 5.15.3 Products
- 5.15.4 Solutions
- 5.15.5 SOA Software Acquires Blue Titan
- 5.15.6 Blue Titan Products
- 5.15.7 Blue Titan Customers
- 5.15.8 Blue Titan Partners
- 5.15.9 SOA Software 2005 Revenue
- 5.16 Savvion
- 5.16.1 Savvion BPM
- 5.17 Tibco
- 5.17.1 Tibco Products
- 5.17.2 Tibco SOA
- 5.17.3 Tibco BPM
- 5.17.4 Tibco MDM
- 5.17.5 Tibco Business Optimization
- 5.17.6 Tibco Professional Services
- 5.17.7 Tibco Partners
- 5.17.8 HP / Tibco
- 5.17.9 Tibco / IDS Scheer
- 5.17.10 Tibco Financial Data
- 5.17.11 Tibco Software 2006 Fourth Quarter Revenue
- 5.17.12 Tibco Software Reports Fourth Quarter Financial Results With License Revenues Up 32%
- 5.17.13 Tibco Industry Solutions
- 5.18 Vitria
- 5.18.1 Vitria Solutions
- 5.18.2 Vitria Fourth Quarter 2006 Revenue
- 5.19 webMethods
- 5.19.1 webMethods Fabric
- 5.19.2 webMethods Enterprise Services Platform
- 5.19.3 webMethods Business Process Management
- 5.19.4 webMethods is Business Activity Monitoring
- 5.19.5 webMethods Composite Application Framework
- 5.19.6 webMethods is Business Process Productivity Solutions
- 5.19.7 webMethods for Financial Services
- 5.19.8 webMethods for the Demand-Driven Enterprise
- 5.19.9 webMethods Second Quarter Fiscal 2007 Revenue
- 5.19.10 webMethods / Infravio
- 5.19.11 Professional Services Revenue
- 5.19.12 webMethods Regional Segment Information
- 5.20 Zeus Technology
- 5.20.1 Zeus Powers Over 1 Million Sites
List of Tables and Figures
- Table ES-1
- Value of Decoupled Mission Critical Messages
- Figure ES-2
- Worldwide Mission Critical Messaging Market Shares, License and Maintenance, Shipments, Dollars, 2006
- Figure ES-3
- Worldwide Mission Critical Messaging License and Maintenance Market Forecasts, Dollars, 2007-2013
- Table 1-1
- Mission Critical Messaging As A Base For SOA Software Used to Implement Process Flexibility
- Table 1-2
- Mission Critical Messaging ESB Functions
- Table 1-3
- Mission Critical Messaging As A Base For Integration Software Provides A Base For Application Connectivity
- Table 1-4
- Mission Critical Messaging Integration Functions
- Table 1-5
- MQ Middleware Messaging Trends
- Table 1-6
- Mission Critical Messaging Market Dynamics
- Table 1-7
- Enterprise Messaging Integration Functions
- Table 1-8
- Internal Enterprise Application Integration Tasks
- Table 1-9
- Advantages Of Real-Time Communication Of Information
- Table 1-10
- Messaging Middleware Functionality
- Table 1-11
- Middleware Messaging Trends
- Table 1-12
- Mission Critical Messaging Market Dynamics
- Table 2-1
- Services Oriented Architecture (SOA) Middleware Messaging Market Driving Forces
- Table 2-2
- SOA Market Driving Forces For Real Time Computing
- Table 2-3
- Mission Critical Messaging Growth Factors
- Table 2-4
- Messaging Middleware Market Driving Forces
- Figure 2-5
- Worldwide Mission Critical Messaging Market License and Maintenance, Licenses and Services Market Shares, Dollars, 2006
- Table 2-6
- Worldwide Mission Critical Messaging, Licenses and Maintenance Market Shares, Dollars, 2006
- Figure 2-7
- Worldwide Mission Critical Messaging Market Shares, License and Maintenance, Dollars, 2005
- Table 2-8
- Worldwide Mission Critical Messaging Market Shares, Licenses and Services, Dollars, 2005
- Figure 2-9
- Worldwide Mission Critical Messaging Market Shares, License and Maintenance, Dollars, 2004
- Table 2-10
- Worldwide Mission Critical Messaging Market Shares, License and Maintenance, Dollars, 2004
- Table 2-11
- Worldwide Mission Critical Messaging Market Shares, Services, Dollars, 2006
- Table 2-12
- Worldwide Mission Critical Messaging Services Engagements Market Shares, Dollars, 2006
- Figure 2-13
- Worldwide Mission Critical Messaging License and Maintenance Market Forecasts, Dollars, 2007-2013
- Figure 2-14
- Worldwide Mission Critical Messaging License and Maintenance Market Forecasts, Units, 2007-2013
- Table 2-15
- Worldwide Mission Critical Messaging New Software License Market Forecasts, Shipments, Units, 2007-2013
- Table 2-16
- Worldwide Mission Critical Messaging Software Installed Base Market Forecasts, Units, 2007-2013
- Table 2-17
- Mission Critical Messaging Financial Services Applications
- Table 2-18
- Mission Critical Telecommunications Messaging Applications
- Table 2-19
- Mission Critical Government Messaging Applications
- Figure 2-20
- Worldwide Mission Critical Messaging Regional Market Segments, Dollars, 2006
- Figure 2-21
- Worldwide Mission Critical Messaging Regional Analysis, Dollars, 2006
- Table 3-1
- Messaging Middleware Integration Functions
- Table 3-2
- IBM WebSphere Business Integration Back-End System Connectivity Functions
- Table 3-3
- IBM WebSphere MQ Harmonized Features
- Table 3-4
- IBM WebSphereR MQ Operating Systems Supported
- Table 3-5
- IBM WebSphereR MQ Platforms Supported
- Table 3-6
- IBM WebSphere MQ Once, And Once Only, Message Features
- Table 3-7
- WebSphereR MQ Any-To-Any Connectivity Features
- Table 3-8
- WebSphere MQ Mission Critical Messaging Features
- Table 3-9
- WebSphere MQ Data Functions
- Table 3-10
- IBM WebSphereR MQ Enhancements
- Table 3-11
- IBM WebSphere MQ Functions
- Table 3-12
- WebSphere MQ Security Functions
- Table 3-13
- MQSeries Everyplace Functions
- Table 3-14
- WebSphere MQ Messaging Functions
- Table 3-15
- IBM WebSphere MQ Messaging Platforms
- Table 3-16
- WebSphere MQ Messaging Features
- Table 3-17
- IBM Websphere MQ Family Software Component Aspects
- Table 3-18
- IBM Websphere MQ Family Software E-Business Positioning
- Table 3-19
- Tibco RendezvousR for z/OS and Enterprise Message Service-Compliant Message Functions
- Table 3-20
- Tibco Messaging Software Benefits
- Figure 3-21
- Tibco Messaging Solution
- Table 3-22
- TIBCO' s Enterprise Messaging Solutions
- Table 3-23
- Tibco Enterprise Message Service Features
- Table 3-24
- Tibco Messaging Platforms
- Table 3-25
- Tibco Messaging Solutions Benefits
- Table 3-26
- Tibco Rendezvous Features
- Table 3-27
- Tibco Rendezvous Architecture
- Table 3-28
- Tibco Rendezvous TX™ Messaging Benefits
- Table 3-29
- Tibco Rendezvous TX™ Messaging Features
- Table 3-30
- Tibco Rendezvous TX Architecture
- Table 3-31
- Tibco Messaging Benefits
- Table 3-32
- Tibco Messaging Key Features
- Table 3-33
- HTTP-based TIBCO Rendezvous Administrative Console Benefits
- Table 3-34
- HTTP-based TIBCO Rendezvous Administrative Console Features
- Table 3-35
- HTTP-based TIBCO Rendezvous Administrative Console Architecture
- Table 3-36
- Tibco Smart Sockets
- Table 3-37
- Microsoft BizTalk Adapter for Message Queuing MSMQ Functions
- Table 3-38
- Microsoft BizTalk Server Functions
- Table 3-39
- Microsoft BizTalk Message Oriented Middleware (MOM) Functions
- Table 3-40
- Microsoft BizTalk Integration Features
- Table 3-41
- Microsoft .Net MSMQ Messaging Middleware System Functions
- Table 3-42
- Progress Software SonicMQ Messaging Functions
- Table 3-43
- Progress Software SonicMQ Benefits
- Table 3-44
- Progress Software Sonic SOA Suite Capabilities
- Table 3-45
- Progress Software SonicMQR Features
- Table 3-46
- Progress Software SonicMQ Standards-based Functions
- Table 3-47
- Progress Software SonicMQ Standards-Based Features
- Table 3-48
- Progress Software SonicMQ Standards-Based Components
- Table 3-49
- Progress Software Topics And Queues Available Clusterwide
- Table 3-50
- SonicMQ Message Level Encryption
- Table 3-51
- SonicMQ Message Authentication And Authorization
- Table 3-52
- SonicMQ Functions
- Table 3-53
- TibcoR Publish Subscribe Benefits
- Table 3-54
- TibcoR BusinessWorks Features
- Figure 3-55
- TibcoR BusinessWorks Features
- Table 3-56
- Tibco Rendezvous Benefits
- Table 3-57
- Kabira Solution Framework Functions
- Table 3-58
- Kabira Transaction Switch Configurable Network Flow Framework
- Table 3-59
- Kabira Infrastructure System
- Table 3-60
- Kabira Programming Business Models And Flows
- Table 4-1
- Mission Critical Messaging As A Base For SOA Software Used to Implement Process Flexibility
- Table 4-2
- Mission Critical Messaging ESB Functions
- Table 4-3
- Mission Critical Messaging As A Base For Integration Software Provides A Base For Application Connectivity
- Table 4-4
- Mission Critical Messaging Integration Functions
- Table 4-5
- Aspects Of Data Streaming Management
- Table 4-6
- Mission Critical Message Throughput Variables
- Table 4-7
- Typical Message Flow Characteristics
- Table 4-8
- Middleware Messaging Technology Issues
- Table 4-9
- Automatic Detection And Recovery From Network And System Failure
- Table 4-10
- High Performance And Real-Time Message Throughput
- Table 4-11
- Fault Tolerance Features
- Table 5-1
- Art Technology Group ATG Software Positioning
- Table 5-2
- Cape Clear Product
- Table 5-3
- Cape Clear Customers
- Table 5-4
- Fiorano Partner Categories
- Table 5-5
- IBM WebSphere Product Categories
- Table 5-6
- Novell Product Set
- Table 5-7
- Progress Software' s Product Categories

