Seagate ST3146854LC - Cheetah 146.8 GB Hard Drive Specifications

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vConsolidate performance on multi-processor
Intel and AMD processor-based servers
TEST REPORT
SEPTEMBER 2007
KEY FINDINGS
z The Inspur* NF520D2 server delivered 100.5
percent more performance with the optimum
number of CSUs than the Dual-Core Intel®
Xeon® processor 7140M -based server (see
Figure 1).
z The Inspur NF520D2 server delivered 108.5
percent more performance with the optimum
number of CSUs than the Quad-Core Intel
Xeon processor X5365-based server (see
Figure 1).
z The Inspur NF520D2 server delivered 85.8
percent more performance with the optimum
number of CSUs than the Dual-Core AMD*
Opteron* processor 8222 SE-based server
(see Figure 1).
Executive summary
Intel® Corporation (Intel) commissioned Principled
Technologies (PT) to measure performance with Intel’s
vConsolidate beta 2 workload on the following dual- and
quad-processor servers:
A server with four Dual-Core AMD* Opteron*
processors 8222 SE (3.00GHz, 120W)
A server with four Dual-Core Intel Xeon®
processors 7140M (3.40GHz, 150W)
A server with two Quad-Core Intel Xeon
processors X5365 (3.00GHz, 120W)
An Inspur* NF520D2 server with four Quad-Core
Intel Xeon processors X7350 (2.93GHz, 130W)
Figure 1 provides a normalized comparison for the test
servers with the optimum vConsolidate work units, which it
calls consolidation stack units (CSUs). (See the Workload
and later sections for more on CSUs.) This chart
normalizes the results to the lowest single one-CSU result.
That system’s score is thus 1.00. Normalizing makes each
data point in the chart a comparative number, with higher numbers indicating better performance.
In this section, we discuss the best results for all servers. For complete details of the performance of each server
with varying CSUs, see the Test results section.
As Figure 1 illustrates, the Inspur NF520D2 server delivered the highest performance at the four-CSU
vConsolidate workload,
delivering a 105.9 percent
performance increase over
the Dual-Core Intel Xeon
processor 7140M-based
server and the Quad-Core
Intel Xeon processor
X5365-based server,
which delivered their
highest results with three
and two CSUs,
respectively.
Furthermore, the Inspur
NF520D2 server delivered
an 84.2 percent
performance increase over
the Dual-Core AMD
Opteron processor 8222
SE-based server, which
delivered maximum
performance with three
CSUs.
vCon results
0.00
0.50
1.00
1.50
2.00
2.50
3.00
3.50
4.00
Processor/number of CSUs
Normalized score
Two Quad-Core Intel Xeon
pro cessors X5365
Four Dual-Co re Intel Xeon
processors 7140M
Four Dual-Co re AM D Opteron
processors 8222 SE
Four Quad-Core Intel Xeon
pro cessors X7350
3 CSUs
3 CSUs
2 CSUs
4 CSUs
Figure 1: vConsolidate results at the optimal number of CSUs for the four servers we tested.
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Summary of Contents

Page 1 - SEPTEMBER 2007

vConsolidate performance on multi-processor Intel and AMD processor-based servers TEST REPORTSEPTEMBER 2007 KEY FINDINGS z The Inspur* NF

Page 2 - Workload

10 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers 1. Within the Virtual Infrast

Page 3 - Test results

11 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers The following subsections det

Page 4

12 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers 11. Close the Add or Remove P

Page 5

13 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers g. At the Read to Complete sc

Page 6 - Test methodology

14 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers 5. Right-click the WebServer1

Page 7 - Hardware

15 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers Installing Certificate Server

Page 8 - Server installation

16 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers 4. In the pending request fol

Page 9

17 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers Installing SPECjbb2005 1. Co

Page 10 - Creating a virtual machine

18 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers • "C:\Program Files\Java

Page 11

19 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers 3. Accept the license agreeme

Page 12

2 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers Workload Intel defined, impleme

Page 13

20 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers • Virtual processors: 1 • Vi

Page 14 - Installing WebBench 5.0

21 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers Client installation In additio

Page 15

22 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers 17. Select the Workload tab.

Page 16

23 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers • Number of Smart Folders: 3

Page 17 - Modifying SPECjbb2005

24 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers <Name>1 CSU</Name>

Page 18

25 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers 15. Click OK on the pop-up me

Page 19

26 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers Locating and interpreting the

Page 20 - Registry changes

27 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers Appendix A – Test system confi

Page 21 - Client installation

28 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers Servers Dual-Core AMD Opteron

Page 22 - Configuring LoadSim 2003

29 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers Servers Dual-Core AMD Opteron

Page 23

3 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers • number of virtual CPUs (vCP

Page 24 - Running vConsolidate

30 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers Disclaimer of Warra

Page 25

4 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers Figure 4: vConsolidate median r

Page 26

5 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers Dual-Core AMD Opteron process

Page 27 - Servers

6 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers Figure 9 shows the four-CSU tes

Page 28

7 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers or extremely close to 100 perce

Page 29

8 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers Server installation We con

Page 30

9 Principled Technologies, Inc.: vConsolidate performance on multi-processor Intel and AMD processor-based servers 7. Click Next to accept the pa

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