Internet Performance Dynamics.ppt
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1、Internet Performance Dynamics,Boston University Computer Science Department,http:/cs-people.bu.edu/barford/,Fall, 2000,Paul Barford,Motivation,What are the root causes of long response times in wide area services like the Web? Servers? Networks? Server/network interaction?,A Challenge,Histograms of
2、file transfer latency for 500KB files transferred between Denver and Boston,Day 1,Day 2,HS mean = 8.3 sec. LS Mean = 13.0 sec.,HS mean = 5.8 sec. LS Mean = 3.4 sec.,Precise separation of server effects from network effects is difficult,HS mean = 8.3 sec. LS mean = 13.0 sec.,HS,LS,HS,LS,HS mean = 5.8
3、 sec. LS mean = 3.4 sec.,What is needed?,A laboratory enabling detailed examination of Web transactions (Web “microscope”) Wide Area Web Measurement (WAWM) project testbed Technique for analyzing transactions to separate and identify causes of delay Critical path analysis of TCP,Web Transactions “un
4、der a microscope”,WebServer,Distributed Clients,Global Internet,Generating Realistic Server Workloads,Approaches: Trace-based: Pros: Exactly mimics known workload Cons: “black box” approach, cant easily change parameters of interest Analytic: synthetically create a workload Pros: Explicit models can
5、 be inspected and parameters can be varied Cons: Difficult to identify, collect, model and generate workload components,SURGE: Scalable URL Reference Generator,Analytic Web workload generator Based on 12 empirically derived distributions Explicit, parameterized models Captures “heavy-tailed” (highly
6、 variable) properties of Web workloads SURGE components: Statistical distribution generator Hyper Text Transfer Protocol (HTTP) request generator Currently being used at over 130 academic and industrial sites world wide Adopted by W3C for HTTP-NG testbed,Seven workload characteristics captured in SU
7、RGE,Characteristic Component Model System Impact,File Size Base file - body Lognormal File System *Base file - tail Pareto *Embedded file Lognormal *Single file1 Lognormal *Single file 2 Lognormal * Request Size Body Lognormal Network *Tail Pareto * Document Popularity Zipf Caches, buffers Temporal
8、Locality Lognormal Caches, buffers OFF Times Pareto * Embedded References Pareto ON Times * Session Lengths Inverse Gaussian Connection times,* Model developed during the SURGE project,BF,EF1,EF2,Off time,SF,Off time,BF,EF1,HTTP request generator,Supports both HTTP/1.0 and HTTP/1.1 ON/OFF thread is
9、a “user equivalent”,SURGE Client System,SURGE Client System,SURGE Client System,Network,ON/OFF Thread,ON/OFF Thread,ON/OFF Thread,Web Server System,SURGE and SPECWeb96 exercise servers very differently,Surge,SPECWeb96,SURGEs flexibility allows easy experimentation,HTTP/1.0,HTTP/1.1,Web Transactions
10、“under a microscope”,WebServer,Distributed Clients,Global Internet,WAWM Infrastructure,13 clients distributed around the global Internet Execute transactions of interest One server cluster at BU Local load generators running SURGE enable server to be placed under any load condition Active and passiv
11、e measurements from both server and clients Packet capture via “tcpdump” GPS timers,WAWM client systems,Harvard University, MA Purdue University, IN University of Denver, CO ACIRI, Berkeley, CA HP, Palo Alto, CA University of Saskatchewan, Canada University Federal de Minas Gerais, Brazil University
12、 Simon Bolivar, VenezuelaEpicRealm - Dallas, TX EpicRealm Atlanta, GA EpicRealm - London, England EpicRealm - Tokyo, JapanInternet2/SurveyorOthers?,What is needed?,A laboratory enabling detailed examination of Web transactions (Web “microscope”) Wide Area Web Measurement (WAWM) project testbed Techn
13、ique for analyzing transactions to separate and identify causes of delay Critical path analysis of TCP,Identifying root causes of response time,Delays can occur at many points along the end-to-end path simultaneously Pinpointing where delays occur and which delays matter is difficult Our goal is to
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