If any of those roles is given the permission to "delete a stream," Chris can delete the Test stream.
如果这些角色中的任意一个被赋予了“Delete astream”的权限,那么Chris就能删除Test stream了。
This makes Team C the governing team area for Test Stream and the operations that can be performed on that stream.
这就使得团队C 成为Test Stream的管理团队区域,以及可以对流执行的操作。
The activities are integrated one at a time to an integration stream after which they are built and deployed to appropriate test environments.
这些活动一次集成一个从而形成一个集成流,此后他们被构建并部署到适当的测试环境中。
Even if your team does reserve a long or late period for system test, it is important in a Value Stream Map to distinguish between the time spent doing actual testing and the time fixing code.
就算团队为系统测试保留了很长或者晚期的时间,那么在价值流图中区分花在实际测试与花在代码修复上的时间就非常的重要了。
If your Value Stream Map reveals long test "cycles" in the end game, it's very likely that you are guaranteeing wastefulness.
如果您的价值流图揭示了长期测试的“循环”,那么就能保证其中无效率内容的存在了。
The Power test executes a single stream of database queries in sequential order.
能力测试将以连续的次序执行一个数据库查询流。
The Throughput test executes multiple concurrent streams of database queries, with each stream executing the queries in sequential order.
吞吐量测试将执行多条并发的数据库查询流,而每条查询流同样以连续的次序执行查询。
Figure 3 shows the network stream throughput and CPU utilization for the bidirectional scalability test runs while using the system board Ethernet adapters on 1, 2, and 4 nodes of the SUT.
图3显示双向可伸缩性测试的网络流吞吐量和系统cpu利用率,分别使用SUT中1、2和4个节点上的系统板载以太网适配器。
Figure 1: File changes are based on activities, which are integrated one at a time to an integration stream, after which they are built and deployed to appropriate test environments.
图1:基于活动的文件变更,这些活动一次集成一个集成流,此后他们被构建并部署到适当的测试环境中。
Figure 6 shows the network stream throughput and CPU utilization for the bidirectional scalability test runs while using the system board Ethernet adapters on 1, 2, and 4 nodes of the SUT.
图6显示双向可伸缩性测试的网络流吞吐量和系统cpu利用率,分别使用SUT中1、2和4个节点上的系统板载以太网适配器。
Figure 12 shows the network stream throughput and CPU utilization for the test runs while using the system board Ethernet adapters on 1, 2, and 4 nodes of the SUT.
图12显示测试的网络流吞吐量和系统cpu利用率,分别使用SUT中1、2和4个节点上的系统板载以太网适配器。
Each full test run for each environment consisted of 3-minute stream tests for each of 15 send message sizes ranging from 64 bytes to 256kb.
每个环境的完整测试对于从64字节到256kb的15种消息大小分别执行3分钟的流测试。
Figure 1 shows the network stream throughput and CPU utilization for the netserver scalability test runs while using the system board Ethernet adapters on 1, 2, and 4 nodes of the SUT.
图1显示netserver可伸缩性测试的网络流吞吐量和系统cpu利用率,分别使用SUT中1、2和4个节点上的系统板载以太网适配器。
Figure 11 shows the network stream throughput and CPU utilization for the netperf scalability test runs while utilizing the system board Ethernet adapters on 1, 2, and 4 nodes of the SUT.
图11显示netperf可伸缩性测试的网络流吞吐量和系统cpu利用率,分别使用SUT中1、2和4个节点上的系统板载以太网适配器。
Figure 10 shows the network stream throughput and CPU utilization for the netserver scalability test runs while utilizing the system board Ethernet adapters on 1, 2, and 4 nodes of the SUT.
图10显示netserver可伸缩性测试的网络流吞吐量和系统cpu利用率,分别使用SUT中1、2和4个节点上的系统板载以太网适配器。
Figure 4 shows the network stream throughput and CPU utilization for the netserver scalability test runs while utilizing the system board Ethernet adapters on 1, 2, and 4 nodes of the SUT.
图4显示netserver可伸缩性测试的网络流吞吐量和系统cpu利用率,分别使用SUT中1、2和4个节点上的系统板载以太网适配器。
Figure 7 shows the network stream throughput and CPU utilization for the netserver scalability test runs while using the system board Ethernet adapters on 1, 2, and 4 nodes of the SUT.
图7显示netserver可伸缩性测试的网络流吞吐量和系统cpu利用率,分别使用SUT中1、2和4个节点上的系统板载以太网适配器。
Figure 5 shows the network stream throughput and CPU utilization for the netperf scalability test runs while using the system board Ethernet adapters on 1, 2, and 4 nodes of the SUT.
图5显示netperf可伸缩性测试的网络流吞吐量和系统cpu利用率,分别使用SUT中1、2和4个节点上的系统板载以太网适配器。
Figure 8 shows the network stream throughput and CPU utilization for the netperf scalability test runs while utilizing the system board Ethernet adapters on 1, 2, and 4 nodes of the SUT.
图8显示netperf可伸缩性测试的网络流吞吐量和系统cpu利用率,分别使用SUT中1、2和4个节点上的系统板载以太网适配器。
Figure 2 shows the network stream throughput and CPU utilization for the netperf scalability test runs while utilizing the system board Ethernet adapters on 1, 2, and 4 nodes of the SUT.
图2显示netperf可伸缩性测试的网络流吞吐量和系统cpu利用率,分别使用SUT中1、2和4个节点上的系统板载以太网适配器。
He was, of course, referring to the Large Hadron Collider that just conducted its first successful test, firing a stream of particles under the Alps.
他指的当然是LHC(大型强子对撞机)。在阿尔卑斯山脚下,LHC成功发射粒子束,进行了第一次试验。
The more black box, work-stream driven the test organization is, the more effectively primary use case documents can be applied to sizing.
如果测试组织被越多黑盒、工作流所驱动,主要的用例文档就越能有效地在估计中运用。
The full test run measured network stream throughput and system CPU utilization for 15 different send message sizes for 3 minutes per message size.
完整测试使用15种不同的消息大小,对于每种消息大小执行3分钟的测试,并度量网络流吞吐量和系统cpu利用率。
The flexible BIOS structure provides instruction stream to micro-processor, meanwhile program the components in the soft environment to create the test scenarios.
利用活芯BIOS结构给处理器提供指令流,同时通过编程验证环境中的组成单元来构造验证场景。
Objective:To study the value of umbilical blood stream examination and descending test of fetal head on antenatal diagnosis of cord around neck and perinatal prognosis.
目的:探讨胎儿脐血流检测及胎头下降试验对脐带绕颈的诊断及预测其胎儿预后的价值。
This thesis discusses SIP performance test method and criterion, putting forward test schemes based on basic call flows and analyzing the problem of SIP signaling and media stream traversing the NAT.
本文探讨了SIP协议性能测试方法与评价标准,提出了基于基本呼叫流程的测试方案,并对测试方案中SIP信令和媒体流的NAT穿越问题作了深入的分析。
Hypersonic viscous interaction effects on measurement of free stream pressure in test section are studied through theoretical analysis, experiment measurement and numerical simulation.
通过理论分析、实验测量和数值模拟,研究高超声速粘性相互作用对实验段自由流静压测量的影响。
Objective To evaluate the function of the vas endothelium cell by the peripheral artery blood stream drawing before and after the cold pressor test.
目的探讨通过冷激发(冷加压)试验前后描记末梢动脉血流图这一无创性检测来评估血管内皮细胞的功能。
Through side-stream test, the result of butadiene removal by DD-1, service life, butene loss, and the influences of reaction velocity and reaction temperature on the catalyst are analyzed.
通过侧流试验分析了DD - 1脱除丁二烯的效果、使用寿命和丁烯损耗情况、反应空速和反应温度对催化剂的影响。
Based on seismic lines, hydrocarbon source rock, lithology, thermal stream and test data, a two dimensional forward model of the basin has been made.
以地震主测线为格架,结合烃源岩、岩性、热流、测试分析资料为依据,采用正演法开展二维盆地模拟工作。
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