硬件环境

2*Intel(R) Xeon(R) Gold 5122 CPU @ 3.60GHz

12*HPE SmartMemory DDR4-2666 RDIMM 16GiB

iLO 5 1.37 Oct 25 2018

System ROM U30 v1.46 (10/02/2018)

Intelligent Platform Abstraction Data 7.2.0 Build 30

System Programmable Logic Device 0x2A

Power Management Controller Firmware 1.0.4

NVMe Backplane Firmware 1.20

Power Supply Firmware 1.00

Power Supply Firmware 1.00

Innovation Engine (IE) Firmware 0.1.6.1

Server Platform Services (SPS) Firmware 4.0.4.288

Redundant System ROM U30 v1.42 (06/20/2018)

Intelligent Provisioning 3.20.154

Power Management Controller FW Bootloader 1.1

HPE Smart Storage Battery 1 Firmware 0.60

HPE Eth 10/25Gb 2p 631FLR-SFP28 Adptr 212.0.103001

HPE Ethernet 1Gb 4-port 331i Adapter – NIC 20.12.41

HPE Smart Array P816i-a SR Gen10 1.65

HPE 100Gb 1p OP101 QSFP28 x16 OPA Adptr 1.5.2.0.0

HPE InfiniBand EDR/Ethernet 100Gb 2-port 840QSF 12.22.40.30

Embedded Video Controller 2.5

软件环境

CentOS Linux release 7.6.1810 (Core)

Linux yaoge123 3.10.0-957.el7.x86_64 #1 SMP Thu Nov 8 23:39:32 UTC 2018 x86_64 x86_64 x86_64 GNU/Linux

Intel(R) Memory Latency Checker – v3.6

测试命令

./mlc_avx512;./mlc_avx512 -Y;./mlc_avx512 -Z

只取后两次测试结果

结果

Advanced ECC

Workload Profile: General Power Efficient Compute

Intel (R) Hyperthreading Options: Disabled

Enabled Cores per Processor: 0

Processor x2APIC Support: Disabled

Intel(R) Virtualization Technology (Intel VT): Disabled

Intel (R) VT-d: Disabled

SR-IOV: Disabled

Advanced Memory Protection: Advanced ECC

Power Regulator: Dynamic Power Savings Mode

total used free shared buff/cache available

Mem: 188G 1.5G 186G 9.7M 222M 186G

Swap: 4.0G 0B 4.0G

./mlc_avx512 -Y

Intel(R) Memory Latency Checker - v3.6

Measuring idle latencies (in ns)...

Numa node

Numa node 0 1

0 81.7 136.6

1 133.1 76.9

Measuring Peak Injection Memory Bandwidths for the system

Bandwidths are in MB/sec (1 MB/sec = 1,000,000 Bytes/sec)

Using all the threads from each core if Hyper-threading is enabled

Using traffic with the following read-write ratios

ALL Reads :99954.8

3:1 Reads-Writes :145189.0

2:1 Reads-Writes :151137.4

1:1 Reads-Writes :150854.9

Stream-triad like:101469.8

Measuring Memory Bandwidths between nodes within system

Bandwidths are in MB/sec (1 MB/sec = 1,000,000 Bytes/sec)

Using all the threads from each core if Hyper-threading is enabled

Using Read-only traffic type

Numa node

Numa node 0 1

049976.531093.5

130873.750050.0

Measuring Loaded Latencies for the system

Using all the threads from each core if Hyper-threading is enabled

Using Read-only traffic type

InjectLatencyBandwidth

Delay(ns)MB/sec

==========================

00000 88.68 89235.1

00002 88.73 89335.3

00008 88.65 89217.6

00015 88.76 88243.5

00050 89.40 85207.4

00100 84.77 66373.2

00200 83.76 45796.8

00300 83.08 35407.3

00400 82.67 28352.7

00500 82.29 23883.3

00700 81.76 17950.3

01000 81.61 13123.4

01300 81.48 10414.7

01700 81.54 8249.4

02500 81.43 5930.9

03500 81.43 4481.2

05000 81.47 3384.8

09000 81.63 2226.1

20000 81.44 1440.1

Measuring cache-to-cache transfer latency (in ns)...

Local Socket L2->L2 HIT latency47.4

Local Socket L2->L2 HITM latency47.5

Remote Socket L2->L2 HITM latency (data address homed in writer socket)

Reader Numa Node

Writer Numa Node 0 1

0 - 112.5

1 114.0 -

Remote Socket L2->L2 HITM latency (data address homed in reader socket)

Reader Numa Node

Writer Numa Node 0 1

0 - 178.3

1 180.4 -

./mlc_avx512 -Z

Intel(R) Memory Latency Checker - v3.6

Measuring idle latencies (in ns)...

Numa node

Numa node 0 1

0 81.6 137.7

1 133.3 77.5

Measuring Peak Injection Memory Bandwidths for the system

Bandwidths are in MB/sec (1 MB/sec = 1,000,000 Bytes/sec)

Using all the threads from each core if Hyper-threading is enabled

Using traffic with the following read-write ratios

ALL Reads :104428.9

3:1 Reads-Writes :138213.4

2:1 Reads-Writes :148680.5

1:1 Reads-Writes :148760.9

Stream-triad like:97657.5

Measuring Memory Bandwidths between nodes within system

Bandwidths are in MB/sec (1 MB/sec = 1,000,000 Bytes/sec)

Using all the threads from each core if Hyper-threading is enabled

Using Read-only traffic type

Numa node

Numa node 0 1

052281.331156.8

131071.851930.0

Measuring Loaded Latencies for the system

Using all the threads from each core if Hyper-threading is enabled

Using Read-only traffic type

InjectLatencyBandwidth

Delay(ns)MB/sec

==========================

00000 88.14 92987.7

00002 88.07 92861.1

00008 86.46 87868.3

00015 87.76 87068.6

00050 89.06 84397.9

00100 84.80 65169.7

00200 83.98 45178.1

00300 83.05 34780.6

00400 82.47 27854.5

00500 82.08 23249.2

00700 81.80 17532.0

01000 81.58 12815.7

01300 81.51 10190.1

01700 81.51 8062.1

02500 81.35 5794.3

03500 81.40 4386.5

05000 81.29 3314.9

09000 81.06 2193.8

20000 80.98 1427.2

Measuring cache-to-cache transfer latency (in ns)...

Local Socket L2->L2 HIT latency47.4

Local Socket L2->L2 HITM latency47.4

Remote Socket L2->L2 HITM latency (data address homed in writer socket)

Reader Numa Node

Writer Numa Node 0 1

0 - 112.5

1 114.1 -

Remote Socket L2->L2 HITM latency (data address homed in reader socket)

Reader Numa Node

Writer Numa Node 0 1

0 - 178.7

1 180.7 -

Online Spare Memory with Advanced ECC Support

Workload Profile: General Power Efficient Compute

Intel (R) Hyperthreading Options: Disabled

Enabled Cores per Processor: 0

Processor x2APIC Support: Disabled

Intel(R) Virtualization Technology (Intel VT): Disabled

Intel (R) VT-d: Disabled

SR-IOV: Disabled

Advanced Memory Protection: Online Spare Memory with Advanced ECC Support

Power Regulator: Dynamic Power Savings Mode

total used free shared buff/cache available

Mem: 93G 998M 92G 9.7M 169M 92G

Swap: 4.0G 0B 4.0G

./mlc_avx512 -Y

Intel(R) Memory Latency Checker - v3.6

Measuring idle latencies (in ns)...

Numa node

Numa node 0 1

0 81.5 137.3

1 132.9 81.6

Measuring Peak Injection Memory Bandwidths for the system

Bandwidths are in MB/sec (1 MB/sec = 1,000,000 Bytes/sec)

Using all the threads from each core if Hyper-threading is enabled

Using traffic with the following read-write ratios

ALL Reads :101550.7

3:1 Reads-Writes :122423.5

2:1 Reads-Writes :123643.4

1:1 Reads-Writes :123946.9

Stream-triad like:100338.1

Measuring Memory Bandwidths between nodes within system

Bandwidths are in MB/sec (1 MB/sec = 1,000,000 Bytes/sec)

Using all the threads from each core if Hyper-threading is enabled

Using Read-only traffic type

Numa node

Numa node 0 1

051795.630250.4

130170.050789.5

Measuring Loaded Latencies for the system

Using all the threads from each core if Hyper-threading is enabled

Using Read-only traffic type

InjectLatencyBandwidth

Delay(ns)MB/sec

==========================

00000 93.47 91710.7

00002 93.39 91768.5

00008 93.48 91771.5

00015 93.49 91460.7

00050 93.60 86147.5

00100 88.45 66769.2

00200 85.89 45695.5

00300 85.45 35209.2

00400 85.12 28174.0

00500 84.18 23784.2

00700 82.89 17896.0

01000 82.07 13104.8

01300 81.90 10377.9

01700 81.71 8247.6

02500 81.66 5928.2

03500 81.65 4451.3

05000 81.60 3383.5

09000 81.45 2228.4

20000 81.19 1443.0

Measuring cache-to-cache transfer latency (in ns)...

Local Socket L2->L2 HIT latency47.4

Local Socket L2->L2 HITM latency47.4

Remote Socket L2->L2 HITM latency (data address homed in writer socket)

Reader Numa Node

Writer Numa Node 0 1

0 - 112.6

1 114.1 -

Remote Socket L2->L2 HITM latency (data address homed in reader socket)

Reader Numa Node

Writer Numa Node 0 1

0 - 179.0

1 178.1 -

./mlc_avx512 -Z

Intel(R) Memory Latency Checker - v3.6

Measuring idle latencies (in ns)...

Numa node

Numa node 0 1

0 81.7 136.3

1 132.6 75.8

Measuring Peak Injection Memory Bandwidths for the system

Bandwidths are in MB/sec (1 MB/sec = 1,000,000 Bytes/sec)

Using all the threads from each core if Hyper-threading is enabled

Using traffic with the following read-write ratios

ALL Reads :103224.0

3:1 Reads-Writes :117884.1

2:1 Reads-Writes :123197.6

1:1 Reads-Writes :122909.9

Stream-triad like:95929.5

Measuring Memory Bandwidths between nodes within system

Bandwidths are in MB/sec (1 MB/sec = 1,000,000 Bytes/sec)

Using all the threads from each core if Hyper-threading is enabled

Using Read-only traffic type

Numa node

Numa node 0 1

051349.030597.5

130340.851559.5

Measuring Loaded Latencies for the system

Using all the threads from each core if Hyper-threading is enabled

Using Read-only traffic type

InjectLatencyBandwidth

Delay(ns)MB/sec

==========================

00000 92.20 91895.3

00002 92.26 91902.1

00008 91.58 87681.6

00015 92.70 88728.1

00050 91.73 83071.0

00100 87.27 64608.4

00200 87.20 44479.3

00300 85.37 34295.7

00400 85.13 27746.6

00500 83.84 22966.0

00700 82.59 17352.7

01000 81.45 12820.3

01300 80.62 10185.6

01700 80.86 8072.0

02500 80.20 5805.8

03500 79.78 4404.5

05000 79.43 3335.5

09000 78.53 2219.9

20000 77.91 1458.6

Measuring cache-to-cache transfer latency (in ns)...

Local Socket L2->L2 HIT latency47.4

Local Socket L2->L2 HITM latency47.5

Remote Socket L2->L2 HITM latency (data address homed in writer socket)

Reader Numa Node

Writer Numa Node 0 1

0 - 112.6

1 114.1 -

Remote Socket L2->L2 HITM latency (data address homed in reader socket)

Reader Numa Node

Writer Numa Node 0 1

0 - 176.1

1 178.1 -

Static High Performance Mode

Workload Profile: High Performance Compute (HPC)

Intel (R) Hyperthreading Options: Disabled

Enabled Cores per Processor: 0

Processor x2APIC Support: Disabled

Intel(R) Virtualization Technology (Intel VT): Disabled

Intel (R) VT-d: Disabled

SR-IOV: Disabled

Advanced Memory Protection: Advanced ECC

Power Regulator: Static High Performance Mode

NUMA Group Size Optimization: Clustered

Sub-NUMA Clustering: Disabled

total used free shared buff/cache available

Mem: 188G 1.5G 186G 9.7M 174M 186G

Swap: 4.0G 0B 4.0G

./mlc_avx512 -Y

Intel(R) Memory Latency Checker - v3.6

Measuring idle latencies (in ns)...

Numa node

Numa node 0 1

0 81.5 136.6

1 133.0 80.8

Measuring Peak Injection Memory Bandwidths for the system

Bandwidths are in MB/sec (1 MB/sec = 1,000,000 Bytes/sec)

Using all the threads from each core if Hyper-threading is enabled

Using traffic with the following read-write ratios

ALL Reads :99671.7

3:1 Reads-Writes :144913.0

2:1 Reads-Writes :151828.4

1:1 Reads-Writes :150604.2

Stream-triad like:101510.8

Measuring Memory Bandwidths between nodes within system

Bandwidths are in MB/sec (1 MB/sec = 1,000,000 Bytes/sec)

Using all the threads from each core if Hyper-threading is enabled

Using Read-only traffic type

Numa node

Numa node 0 1

050065.030928.7

130822.449750.0

Measuring Loaded Latencies for the system

Using all the threads from each core if Hyper-threading is enabled

Using Read-only traffic type

InjectLatencyBandwidth

Delay(ns)MB/sec

==========================

00000 88.36 88426.0

00002 88.28 88513.4

00008 88.39 88376.7

00015 88.86 87479.0

00050 91.10 84842.5

00100 85.64 65520.4

00200 84.52 45690.0

00300 84.02 35335.0

00400 82.86 28333.1

00500 82.59 23871.6

00700 81.90 17939.0

01000 81.59 13122.1

01300 81.42 10415.4

01700 81.48 8250.4

02500 81.36 5931.9

03500 81.35 4482.6

05000 81.22 3387.9

09000 81.06 2233.0

20000 80.91 1445.8

Measuring cache-to-cache transfer latency (in ns)...

Local Socket L2->L2 HIT latency47.2

Local Socket L2->L2 HITM latency47.3

Remote Socket L2->L2 HITM latency (data address homed in writer socket)

Reader Numa Node

Writer Numa Node 0 1

0 - 112.6

1 113.9 -

Remote Socket L2->L2 HITM latency (data address homed in reader socket)

Reader Numa Node

Writer Numa Node 0 1

0 - 176.2

1 177.6 -

./mlc_avx512 -Z

Intel(R) Memory Latency Checker - v3.6

Measuring idle latencies (in ns)...

Numa node

Numa node 0 1

0 81.5 136.6

1 133.0 80.8

Measuring Peak Injection Memory Bandwidths for the system

Bandwidths are in MB/sec (1 MB/sec = 1,000,000 Bytes/sec)

Using all the threads from each core if Hyper-threading is enabled

Using traffic with the following read-write ratios

ALL Reads :103610.7

3:1 Reads-Writes :138387.8

2:1 Reads-Writes :149094.5

1:1 Reads-Writes :149883.0

Stream-triad like:97603.1

Measuring Memory Bandwidths between nodes within system

Bandwidths are in MB/sec (1 MB/sec = 1,000,000 Bytes/sec)

Using all the threads from each core if Hyper-threading is enabled

Using Read-only traffic type

Numa node

Numa node 0 1

051908.031130.9

131021.351681.4

Measuring Loaded Latencies for the system

Using all the threads from each core if Hyper-threading is enabled

Using Read-only traffic type

InjectLatencyBandwidth

Delay(ns)MB/sec

==========================

00000 87.97 92148.1

00002 87.94 91946.7

00008 86.79 87489.0

00015 88.32 87027.6

00050 90.93 84764.9

00100 85.72 66075.6

00200 84.60 45281.3

00300 83.64 34671.7

00400 83.08 27878.4

00500 82.57 23317.8

00700 81.79 17534.7

01000 81.58 12821.8

01300 81.56 10186.6

01700 81.61 8061.2

02500 81.48 5795.0

03500 81.40 4387.2

05000 81.27 3317.6

09000 81.06 2194.2

20000 80.94 1427.7

Measuring cache-to-cache transfer latency (in ns)...

Local Socket L2->L2 HIT latency47.2

Local Socket L2->L2 HITM latency47.3

Remote Socket L2->L2 HITM latency (data address homed in writer socket)

Reader Numa Node

Writer Numa Node 0 1

0 - 112.6

1 113.9 -

Remote Socket L2->L2 HITM latency (data address homed in reader socket)

Reader Numa Node

Writer Numa Node 0 1

0 - 176.5

1 178.1 -

Static High Performance Mode – Sub-NUMA

Workload Profile: High Performance Compute (HPC)

Intel (R) Hyperthreading Options: Disabled

Enabled Cores per Processor: 0

Processor x2APIC Support: Disabled

Intel(R) Virtualization Technology (Intel VT): Disabled

Intel (R) VT-d: Disabled

SR-IOV: Disabled

Advanced Memory Protection: Advanced ECC

Power Regulator: Static High Performance Mode

NUMA Group Size Optimization: Clustered

Sub-NUMA Clustering: Enabled

total used free shared buff/cache available

Mem: 188G 1.5G 186G 9.7M 176M 186G

Swap: 4.0G 0B 4.0G

./mlc_avx512 -Y

Intel(R) Memory Latency Checker - v3.6

Measuring idle latencies (in ns)...

Numa node

Numa node 0 1 2 3

0 73.2 81.9 131.4 139.6

1 81.4 73.2 132.8 140.7

2 128.6 138.5 73.1 81.4

3 132.4 140.6 81.4 80.0

Measuring Peak Injection Memory Bandwidths for the system

Bandwidths are in MB/sec (1 MB/sec = 1,000,000 Bytes/sec)

Using all the threads from each core if Hyper-threading is enabled

Using traffic with the following read-write ratios

ALL Reads :113325.1

3:1 Reads-Writes :153852.5

2:1 Reads-Writes :158538.8

1:1 Reads-Writes :163349.2

Stream-triad like:106597.2

Measuring Memory Bandwidths between nodes within system

Bandwidths are in MB/sec (1 MB/sec = 1,000,000 Bytes/sec)

Using all the threads from each core if Hyper-threading is enabled

Using Read-only traffic type

Numa node

Numa node 0 1 2 3

028097.426815.318072.417292.1

127017.828428.918125.017314.9

218003.617296.828663.126939.6

317851.017180.226850.628090.9

Measuring Loaded Latencies for the system

Using all the threads from each core if Hyper-threading is enabled

Using Read-only traffic type

InjectLatencyBandwidth

Delay(ns)MB/sec

==========================

00000 77.56 100595.6

00002 77.57 100674.4

00008 77.55 100718.8

00015 77.55 99986.2

00050 77.43 92388.9

00100 75.33 76544.3

00200 74.09 45915.4

00300 74.25 36109.2

00400 74.10 28748.0

00500 74.02 24010.9

00700 73.74 18067.8

01000 73.61 13237.0

01300 73.53 10535.6

01700 73.40 8344.6

02500 73.25 6023.4

03500 73.16 4569.0

05000 73.13 3474.4

09000 73.11 2318.4

20000 73.07 1530.5

Measuring cache-to-cache transfer latency (in ns)...

Local Socket L2->L2 HIT latency45.5

Local Socket L2->L2 HITM latency45.6

Remote Socket L2->L2 HITM latency (data address homed in writer socket)

Reader Numa Node

Writer Numa Node 0 1 2 3

0 - 47.9 108.0 110.0

1 47.5 - 114.1 116.1

2 108.4 109.3 - 45.4

3 114.7 115.4 45.6 -

Remote Socket L2->L2 HITM latency (data address homed in reader socket)

Reader Numa Node

Writer Numa Node 0 1 2 3

0 - 47.3 169.9 177.3

1 45.6 - 168.8 176.3

2 173.2 177.3 - 48.4

3 173.7 177.7 48.6 -

./mlc_avx512 -Z

Intel(R) Memory Latency Checker - v3.6

Measuring idle latencies (in ns)...

Numa node

Numa node 0 1 2 3

0 73.2 81.6 131.0 139.6

1 81.4 73.2 132.8 140.7

2 128.6 138.5 73.1 81.4

3 132.4 140.6 81.4 80.0

Measuring Peak Injection Memory Bandwidths for the system

Bandwidths are in MB/sec (1 MB/sec = 1,000,000 Bytes/sec)

Using all the threads from each core if Hyper-threading is enabled

Using traffic with the following read-write ratios

ALL Reads :116063.6

3:1 Reads-Writes :146797.3

2:1 Reads-Writes :155021.3

1:1 Reads-Writes :160334.0

Stream-triad like:102302.4

Measuring Memory Bandwidths between nodes within system

Bandwidths are in MB/sec (1 MB/sec = 1,000,000 Bytes/sec)

Using all the threads from each core if Hyper-threading is enabled

Using Read-only traffic type

Numa node

Numa node 0 1 2 3

028901.727470.717819.717063.9

127885.729067.017830.917038.7

217677.716976.029378.927692.9

317582.016918.827642.728928.8

Measuring Loaded Latencies for the system

Using all the threads from each core if Hyper-threading is enabled

Using Read-only traffic type

InjectLatencyBandwidth

Delay(ns)MB/sec

==========================

00000 76.67 103298.6

00002 76.67 103133.2

00008 76.59 97928.7

00015 77.14 99307.7

00050 77.64 91830.6

00100 75.32 76645.1

00200 74.28 45323.2

00300 74.23 35625.3

00400 74.10 28168.6

00500 74.55 23432.3

00700 73.77 17619.9

01000 73.59 12901.8

01300 73.53 10270.0

01700 73.48 8151.9

02500 73.26 5880.3

03500 73.16 4477.2

05000 73.12 3403.2

09000 73.10 2279.6

20000 73.09 1512.5

Measuring cache-to-cache transfer latency (in ns)...

Local Socket L2->L2 HIT latency45.5

Local Socket L2->L2 HITM latency45.6

Remote Socket L2->L2 HITM latency (data address homed in writer socket)

Reader Numa Node

Writer Numa Node 0 1 2 3

0 - 47.9 108.0 109.9

1 47.4 - 114.1 116.1

2 108.4 109.3 - 45.4

3 114.7 115.4 45.6 -

Remote Socket L2->L2 HITM latency (data address homed in reader socket)

Reader Numa Node

Writer Numa Node 0 1 2 3

0 - 47.3 169.9 177.4

1 45.6 - 168.8 176.3

2 173.3 177.3 - 48.4

3 173.7 177.7 48.6 -

hp服务器bios如何改高性能,HPE ProLiant DL380 Gen10 不同BIOS设置内存性能测试相关推荐

  1. hp服务器通过ilo5安装系统,HPE ProLiant Gen10 通过iLO 5(v1.15) web界面多种方式更新服务器固件,包含升级系统恢复集方法...

    一.iLO web界面固件&操作系统软件界面简单介绍 1.固件 这个界面可以查看服务器安装的固件版本,可以查看以下类型的固件: u电源管理控制器Power Management Control ...

  2. dl380 g10 linux,HPE ProLiant DL380 Gen10 服务器

    技术规格 处理器类型 Intel 处理器系列 英特尔® 至强® 可扩展处理器 8100/8200 系列:英特尔® 至强® 可扩展处理器 6100/6200 系列:英特尔® 至强® 可扩展处理器 510 ...

  3. hp刀片服务器系统flex-10,HPE ProLiant BL460c Gen10 刀片服务器

    您是否希望通过融合的基础设施来提升业务效率呢?你是否希望安全的驱动传统和创新混合的工作负载呢? 优化基础设施以提升经济效益 HPE ProLiant BL460c Gen10刀片服务器可以助您打造现代 ...

  4. hpe最新服务器型号,HPE ProLiant DL580 Gen10

    HPE ProLiant DL580 Gen10 服务器 想要一个高度可扩展的.耐用的服务器来处理数据库.存储和图形密集型应用程序? HPE ProLiant DL580 Gen10服务器采用4U机箱 ...

  5. 服务器硬件oid,HPE ProLiant DL580 Gen10 服务器

    用可扩展 4U 外形提供可扩展性能 HPE ProLiant DL580 Gen10 服务器支持多达四个英特尔至强铂金和金牌处理器,与上一代英特尔® 至强® 可扩展处理器相比,每个内核的性能提升高达 ...

  6. hp服务器增加raid卡,惠普ProLiant服务器Raid卡配置过程详解

    [IT168 技术]Raid(Redundant Array of Independent Disk)独立冗余磁盘阵列,就是将多个硬盘通过Raid控制器整合成虚拟的单个大容量的硬盘.Raid是服务器数 ...

  7. 旧无线路由器能变打印机服务器,旧路由器改wifi放大器_当wifi扩展器怎么设置?-192路由网...

    问:旧路由器改成wifi放大器怎么设置? 听说可以把旧路由器当成wifi放大器用,我家里刚好有一个旧的无线路由器,请问具体怎么设置? 答:如果你家现在有一个路由器可以上网,想把原来的旧路由器利用起来, ...

  8. H3C的HPE ProLiant DL380 Gen9 ILO、RAID、OS安装配置

    1.配置ILO 1.1设置远程管理IP 自检中--按F9,进入BIOS System Configuration--回车 选择Ilo4 Configuration Utility--回车 Networ ...

  9. hpe服务器有哪些型号,HPE ProLiant DL80 Gen9 服务器 - 惠普服务器配置参数

    HPE ProLiant DL80 Gen9 服务器 - 惠普服务器配置参数 产品型号:HPE ProLiant DL80 Gen9 关注次数: 返回>> 满足成本敏感型中小型企业的基本I ...

最新文章

  1. 如果你是Python初学者,就从这个开始
  2. postgresql创建只读账号
  3. torch分布式训练学习笔记
  4. python读数据-如何用Python读取开放数据?
  5. 食品行业ERP选型 需把握关键的20%
  6. C# 获取utc时间,以及utc datetime 互相转化
  7. 575. Distribute Candies 平均分糖果,但要求种类最多
  8. bootstarp js设置列隐藏_Bootstrap框架----DataTables列表移动端适配定义隐藏列
  9. 设计一个4*4魔方程序,让魔方的各行值的和等于各列值的和,并且等于两对角线的和,例如以下魔方,各行各列及两对角线值的和都是64.
  10. java反显是什么_卡西欧反显是什么意思
  11. 前台 时不时报 could not proxy request_长春中考成绩不理想可以报的高中
  12. 关于LD_PRELOAD在Android API HOOK中的应用
  13. python辗转相除法求最大公约数_vb编程实现用辗转相除法求两个数a和b的最大公约数...
  14. python类方法在类外定义_第7.15节 Python中classmethod定义的类方法详解
  15. 3D打印:FDM打印湿度对打印件及打印机的影响和调整
  16. uni-app设置原生标题栏渐变色
  17. 360极速浏览器安装chrome插件教程
  18. 乐鑫Esp32学习之旅 23 安信可 esp32-a1s 音频开发板移植最新 esp-adf 音频框架,小试牛刀如何实现在线文字转语音播放。
  19. linux 流量 脚本,实时查看linux网卡流量脚本
  20. 地表最强之Android微信语音/腾讯会议通话录音

热门文章

  1. JVM 调优系列 1:“精通 JVM 调优,有过 JVM 调优经验”,简历敢写吗?薪资涨 5k 的技巧!
  2. java毕业设计基于的企业办公管理系统设计与实现mybatis+源码+调试部署+系统+数据库+lw
  3. docker 中配置网易镜像
  4. StringBuffer和StringBuild的使用
  5. Docker 配置阿里镜像加速(mac)
  6. ArcGIS不同图层的线要素合并
  7. jersey初学者资源
  8. 1.5 08:多边形内角和
  9. html导航栏字体颜色怎么换,在WordPress的默认主题TwentyTen中修改导航条的颜色
  10. mybatis 模糊匹配