2ip test
Author: p | 2025-04-25
2IP Speed Test and my IP add สำหรับ Android การดาวน์โหลดฟรีและปลอดภัย 2IP Speed Test and my IP add เวอร์ชันล่าสุด ถ้าคุณเป็นเกมเมอร์หรือนักพัฒนาหรื
2IP Livestream Test Broadcast - YouTube
Input match interface output collect counter packets collect counter bytes! show flow monitor cache Router# show flow monitor TEST_IPV6_MONITOR cacheCache type: Normal (Platform cache) Cache size: 16384 Current entries: 2 Flows added: 0 Flows aged: 0IPV6 NEXT HEADER: 59IPV6 SOURCE ADDRESS: 2001:192:168:1::1IPV6 DESTINATION ADDRESS: 2001:DB8::1TRNS SOURCE PORT: 0TRNS DESTINATION PORT: 0INTERFACE INPUT: Gi0/0/4INTERFACE OUTPUT: Gi0/0/4IP TOS: 0x03counter bytes: 233697724counter packets: 191242IPV6 NEXT HEADER: 59IPV6 SOURCE ADDRESS: 2001:192:168:1::2IPV6 DESTINATION ADDRESS: 2001:DB8::2TRNS SOURCE PORT: 0TRNS DESTINATION PORT: 0INTERFACE INPUT: Gi0/0/4IP TOS: 0x03counter bytes: 233697724counter packets: 191242...!Router# show flow monitor TEST_IPV6_MONITOR cache format csv Cache type: Normal (Platform cache) Cache size: 16384 Current entries: 2 Flows added: 0 Flows aged: 0IPV6 NEXT HEADER,IPV6 SRC ADDR,IPV6 DST ADDR,TRNS SRC PORT,TRNS DST PORT,INTF INPUT,IP TOS,bytes,pkts59,2001:192:168:1::1,2001:DB8::1,0,0,Gi0/0/4,0x03,574518412,47014659,2001:192:168:1::2,2001:DB8::2,0,0,Gi0/0/4,0x03,574518412,470146...! Verifying Netflow Monitoring for IPv4 traffic on EFP interfaces Use these commands to verify netlfow monitoring for IPv4 traffic on EFP interfaces. show run interfaces Router# #show run interfaces gigabitEthernet 0/0/2Building configuration...Current configuration : 8880 bytes!interface GigabitEthernet0/0/2 no ip address negotiation auto service instance 151 ethernet encapsulation dot1q 151 rewrite ingress tag pop 1 symmetric bridge-domain 151 ip flow monitor fnf_151_v4_in input... show run flow monitor Router# show run flow monitor fnf_151_v4_inCurrent configuration:!flow monitor fnf_151_v4_in exporter TEST6 record TEST6!Router# show run flow exporter TEST6Current configuration:!flow exporter TEST6 destination 10.10.10.100 source Loopback1 dscp 23 ttl 7 transport udp 9999 template data timeout 60! show run flow record Router# show run flow record TEST6Current configuration:!flow record TEST6 match ipv4 source address match ipv4 destination address match ipv4 protocol match interface input match interface outputmatch transport source-port match transport destination-port match ipv4 tos collect counter packets collect counter bytes! show flow service instance id Router# show flow service instance id 151 interface GigabitEthernet 0/0/2 FNF: monitor: fnf_151_v4_in direction: Input traffic(ip): onRouter# show flow monitor fnf_151_v4_in cache Cache type: Normal (Platform cache) Cache size: 16384 Current entries: 100 Flows added: 7900 Flows aged: 7800 - Immediate aged 7800IPV4 SOURCE ADDRESS: 192.168.1.201IPV4 DESTINATION ADDRESS: 192.168.1.100TRNS SOURCE PORT: 4000TRNS DESTINATION PORT: 5000INTERFACE INPUT: Gi0/0/2INTERFACE OUTPUT: Gi0/0/2IP TOS: 0x00IP PROTOCOL: 6counter bytes: 1943500counter packets: 3887IPV4 SOURCE ADDRESS: 192.168.1.203IPV4 DESTINATION ADDRESS: 192.168.1.100TRNS SOURCE PORT: 4000TRNS DESTINATION PORT: 5000INTERFACE INPUT: Gi0/0/2IP TOS: 0x00IP PROTOCOL: 6counter bytes: 1944500counter packets: 3889IPV4 SOURCE ADDRESS: 192.168.1.200IPV4 DESTINATION ADDRESS: 192.168.1.100TRNS SOURCE PORT: 4000TRNS DESTINATION PORT: 5000INTERFACE INPUT: Gi0/0/2IP TOS: 0x00IP PROTOCOL: 6counter bytes: 1944500counter packets: 3889...!Router# show flow monitor fnf_151_v4_in cache format csv Cache type: Normal (Platform cache) Cache size: 16384 Current entries: 100. 2IP Speed Test and my IP add สำหรับ Android การดาวน์โหลดฟรีและปลอดภัย 2IP Speed Test and my IP add เวอร์ชันล่าสุด ถ้าคุณเป็นเกมเมอร์หรือนักพัฒนาหรื 2IP Speed Test and my IP add for Android, free and safe download. 2IP Speed Test and my IP add latest version: A free app for Android, by 2IP.ua. I We analyzed the 2IP strength using the 2IP test across 3 trials to determine whether it was affected by repeated testing. Results Two hundred thirty-eight patients met the inclusion 2ip ua СПІДТЕСТ онлайн ☝ Дізнатись швидкість інтернету через сервіс 2ip ️ Тест швидкості на 2ip ua ⏩ PING. A smartphone connected Ethernet network analyzer and cable tester that fits into your pocketA tool designed for IT adminsPockethernet comes with 15+ features that are essential for anybody working with Ethernet networksFunctionsCable testerFind cable faults and verify installationsNetwork toolCheck the Layer 2IP analyzerAll the way to the internetReportingDocument your findingsHave all networking features in one appThe Pockethernet smartphone app, created for use with the Pockethernet hardware, is the control center for the hardware. The app is easy to use and has an intuitive UI. You can individually select which tests you’d like Pockethernet to perform, and conveniently run multiple, consecutive tests in order to generate a complete measurement report. Once you're finished, you can export your results with the press of a button in PDF.Buy nowIn stockDelivery time is about 2-6 business days.All the featuresWiremapUsing the remote wiremap adapter, check whether pins on RJ45 jacks have been crimped in the correctly. Pockethernet also tests the shield for continuity.TDRAdvanced cable testing with only one end connected to Pockethernet. Determine how long a cable is and if it contains any short circuits, split pairs or bad terminations.Graphical TDRGenerate a graph of signal reflections and crosstalk throughout the entire cable length. You can view the length of connected cables and any imperfections they may have (such as extenders or patch panels).PoEMeasure the presence and voltage of Power over Ethernet to ensure a sufficient power supply for your PoE devices. Checks Power Supply (PSE) type (AF/AT/BT) and maximum class. Shows open circuit and loaded voltage, also for passive injectors.Link speed detection up to 10GFind out the Ethernet capabilities of the connected port including speed and duplex. Pockethernet detects autonegotiation advertisements from 10M to 10G.Link establishment test (10/100/1000)Determine whether a link can be established at different speeds and make sure the wiring is up to date for gigabit.Network discovery (CDP, LLDP)View the content of CDP and LLDP messages to identify network ports more easily. If the switch port supports it, you can instantly view the connected chassis and port ID as well as the native VLAN.VLAN supportSet the VLAN tags for outgoing packets to performComments
Input match interface output collect counter packets collect counter bytes! show flow monitor cache Router# show flow monitor TEST_IPV6_MONITOR cacheCache type: Normal (Platform cache) Cache size: 16384 Current entries: 2 Flows added: 0 Flows aged: 0IPV6 NEXT HEADER: 59IPV6 SOURCE ADDRESS: 2001:192:168:1::1IPV6 DESTINATION ADDRESS: 2001:DB8::1TRNS SOURCE PORT: 0TRNS DESTINATION PORT: 0INTERFACE INPUT: Gi0/0/4INTERFACE OUTPUT: Gi0/0/4IP TOS: 0x03counter bytes: 233697724counter packets: 191242IPV6 NEXT HEADER: 59IPV6 SOURCE ADDRESS: 2001:192:168:1::2IPV6 DESTINATION ADDRESS: 2001:DB8::2TRNS SOURCE PORT: 0TRNS DESTINATION PORT: 0INTERFACE INPUT: Gi0/0/4IP TOS: 0x03counter bytes: 233697724counter packets: 191242...!Router# show flow monitor TEST_IPV6_MONITOR cache format csv Cache type: Normal (Platform cache) Cache size: 16384 Current entries: 2 Flows added: 0 Flows aged: 0IPV6 NEXT HEADER,IPV6 SRC ADDR,IPV6 DST ADDR,TRNS SRC PORT,TRNS DST PORT,INTF INPUT,IP TOS,bytes,pkts59,2001:192:168:1::1,2001:DB8::1,0,0,Gi0/0/4,0x03,574518412,47014659,2001:192:168:1::2,2001:DB8::2,0,0,Gi0/0/4,0x03,574518412,470146...! Verifying Netflow Monitoring for IPv4 traffic on EFP interfaces Use these commands to verify netlfow monitoring for IPv4 traffic on EFP interfaces. show run interfaces Router# #show run interfaces gigabitEthernet 0/0/2Building configuration...Current configuration : 8880 bytes!interface GigabitEthernet0/0/2 no ip address negotiation auto service instance 151 ethernet encapsulation dot1q 151 rewrite ingress tag pop 1 symmetric bridge-domain 151 ip flow monitor fnf_151_v4_in input... show run flow monitor Router# show run flow monitor fnf_151_v4_inCurrent configuration:!flow monitor fnf_151_v4_in exporter TEST6 record TEST6!Router# show run flow exporter TEST6Current configuration:!flow exporter TEST6 destination 10.10.10.100 source Loopback1 dscp 23 ttl 7 transport udp 9999 template data timeout 60! show run flow record Router# show run flow record TEST6Current configuration:!flow record TEST6 match ipv4 source address match ipv4 destination address match ipv4 protocol match interface input match interface outputmatch transport source-port match transport destination-port match ipv4 tos collect counter packets collect counter bytes! show flow service instance id Router# show flow service instance id 151 interface GigabitEthernet 0/0/2 FNF: monitor: fnf_151_v4_in direction: Input traffic(ip): onRouter# show flow monitor fnf_151_v4_in cache Cache type: Normal (Platform cache) Cache size: 16384 Current entries: 100 Flows added: 7900 Flows aged: 7800 - Immediate aged 7800IPV4 SOURCE ADDRESS: 192.168.1.201IPV4 DESTINATION ADDRESS: 192.168.1.100TRNS SOURCE PORT: 4000TRNS DESTINATION PORT: 5000INTERFACE INPUT: Gi0/0/2INTERFACE OUTPUT: Gi0/0/2IP TOS: 0x00IP PROTOCOL: 6counter bytes: 1943500counter packets: 3887IPV4 SOURCE ADDRESS: 192.168.1.203IPV4 DESTINATION ADDRESS: 192.168.1.100TRNS SOURCE PORT: 4000TRNS DESTINATION PORT: 5000INTERFACE INPUT: Gi0/0/2IP TOS: 0x00IP PROTOCOL: 6counter bytes: 1944500counter packets: 3889IPV4 SOURCE ADDRESS: 192.168.1.200IPV4 DESTINATION ADDRESS: 192.168.1.100TRNS SOURCE PORT: 4000TRNS DESTINATION PORT: 5000INTERFACE INPUT: Gi0/0/2IP TOS: 0x00IP PROTOCOL: 6counter bytes: 1944500counter packets: 3889...!Router# show flow monitor fnf_151_v4_in cache format csv Cache type: Normal (Platform cache) Cache size: 16384 Current entries: 100
2025-03-30A smartphone connected Ethernet network analyzer and cable tester that fits into your pocketA tool designed for IT adminsPockethernet comes with 15+ features that are essential for anybody working with Ethernet networksFunctionsCable testerFind cable faults and verify installationsNetwork toolCheck the Layer 2IP analyzerAll the way to the internetReportingDocument your findingsHave all networking features in one appThe Pockethernet smartphone app, created for use with the Pockethernet hardware, is the control center for the hardware. The app is easy to use and has an intuitive UI. You can individually select which tests you’d like Pockethernet to perform, and conveniently run multiple, consecutive tests in order to generate a complete measurement report. Once you're finished, you can export your results with the press of a button in PDF.Buy nowIn stockDelivery time is about 2-6 business days.All the featuresWiremapUsing the remote wiremap adapter, check whether pins on RJ45 jacks have been crimped in the correctly. Pockethernet also tests the shield for continuity.TDRAdvanced cable testing with only one end connected to Pockethernet. Determine how long a cable is and if it contains any short circuits, split pairs or bad terminations.Graphical TDRGenerate a graph of signal reflections and crosstalk throughout the entire cable length. You can view the length of connected cables and any imperfections they may have (such as extenders or patch panels).PoEMeasure the presence and voltage of Power over Ethernet to ensure a sufficient power supply for your PoE devices. Checks Power Supply (PSE) type (AF/AT/BT) and maximum class. Shows open circuit and loaded voltage, also for passive injectors.Link speed detection up to 10GFind out the Ethernet capabilities of the connected port including speed and duplex. Pockethernet detects autonegotiation advertisements from 10M to 10G.Link establishment test (10/100/1000)Determine whether a link can be established at different speeds and make sure the wiring is up to date for gigabit.Network discovery (CDP, LLDP)View the content of CDP and LLDP messages to identify network ports more easily. If the switch port supports it, you can instantly view the connected chassis and port ID as well as the native VLAN.VLAN supportSet the VLAN tags for outgoing packets to perform
2025-04-16Westno ip domain-lookupenable secret ciscoline console 0logging synchronouspassword ciscologinline vty 0 15password ciscologinservice password-encryptionbanner motd @Authorized acces only.@interface serial 0/0/1bandwidth 128ip address 192.168.100.38 255.255.255.252description 2-Centralip ospf message-digest-key 1 md5 xyz_OSPFip ospf authentication message-digestno shutdowninterface gi 0/1no shutdowninterface gi 0/1.2encapsulation dot1q 2ip address 10.10.2.1 255.255.255.0interface gi 0/1.4encapsulation dot1q 4ip address 10.10.4.1 255.255.255.0interface gi 0/1.8encapsulation dot1q 8ip address 10.10.8.1 255.255.255.0interface gi 0/1.15encapsulation dot1q 15ip address 10.10.15.1 255.255.255.0interface gi 0/1.25encapsulation dot1q 25ip address 10.10.25.1 255.255.255.0exit— OSPFrouter ospf 1router-id 3.3.3.3passive-interface GigabitEthernet0/1network 192.168.100.36 0.0.0.3 area 0network 10.10.2.0 0.0.0.255 area 2network 10.10.4.0 0.0.0.255 area 2network 10.10.8.0 0.0.0.255 area 2network 10.10.15.0 0.0.0.255 area 2no auto-summarypassive-interface g0/1.2passive-interface g0/1.4passive-interface g0/1.8passive-interface g0/1.15exit– ROUTE SUMMARIZATIONinterface serial 0/0/1ip summary-address eigrp 100 10.10.0.0 255.255.240.0– DHCPip dhcp excluded-address 10.10.2.1 10.10.2.5ip dhcp excluded-address 10.10.4.1 10.10.4.5ip dhcp excluded-address 10.10.8.1 10.10.8.5ip dhcp pool vlan2poolnetwork 10.10.2.0 255.255.255.0default-router 10.10.2.1dns-server 192.168.200.225ip dhcp pool vlan4poolnetwork 10.10.4.0 255.255.255.0default-router 10.10.4.1dns-server 192.168.200.225ip dhcp pool vlan8poolnetwork 10.10.8.0 255.255.255.0default-router 10.10.8.1dns-server 192.168.200.225exit–ACCESS LISTaccess-list 1 permit 10.10.15.0 0.0.0.255interface gi0/1.25ip access-group 1 out#######–SW-Ahostname Bldg1no ip domain-lookupenable secret ciscoline console 0logging synchronouspassword ciscologinline vty 0 15password ciscologinservice password-encryptionbanner motd @Authorized acces only!@ip default-gateway 10.10.25.1vlan 2name salesvlan 4name prodvlan 8name acctvlan 15name adminvlan 25name SVI-NETvlan 99name nullinterface vlan 25ip address 10.10.25.254 255.255.255.0no shutdowninterface fa0/5switchport mode accesswitchport acces vlan 2interface fa0/10switchport mode accesswitchport acces vlan 4interface fa0/15switchport mode accesswitchport acces vlan 8interface fa0/24switchport mode accesswitchport acces vlan 15interface range fa0/6-9,fa0/11-14,fa0/16-23switchport mode accesswitchport acces vlan 99shutdowninterface range gi1/1-2switchport mode accesswitchport acces vlan 99shutdown– ETHERCHANNELinterface range fa0/1-2channel-group 1 mode activeinterface port-channel 1switchport mode trunkinterface range fa0/3-4channel-group 2 mode activeinterface port-channel 2switchport mode trunkexit–PVST+spanning-tree mode rapid-pvstspanning-tree vlan 2 root primaryspanning-tree vlan 4 root primaryspanning-tree vlan 8 root secondaryspanning-tree vlan 15 root secondary–SECURITYinterface fa0/5switchport port-securityswitchport port-security violation restrictswitchport port-security maximum 2switchport port-security mac-address stickyinterface fa0/10switchport port-securityswitchport port-security violation restrictswitchport port-security maximum 2switchport port-security mac-address stickyinterface fa0/15switchport port-securityswitchport port-security violation restrictswitchport port-security maximum 2switchport port-security mac-address stickyinterface fa0/24switchport port-securityswitchport port-security violation restrictswitchport port-security maximum 2switchport port-security mac-address sticky#######–SW-Bhostname Bldg2no ip domain-lookupenable secret ciscoline console 0logging synchronouspassword ciscologinline vty 0 15password ciscologinservice password-encryptionbanner motd @Authorized acces only!@– SSHip ssh version 2ip domain-name ccnaPTSA.comcrypto key generate rsausername netadmin password SSH_secret9line vty 0 4login localtransport input sshline vty 5 15login localtransport input sship default-gateway 10.10.25.1vlan 2name salesvlan 4name prodvlan 8name acctvlan 15name adminvlan 25name SVI-NETvlan 99name nullinterface vlan 25ip address 10.10.25.253 255.255.255.0no shutdowninterface gi 1/1switchport mode trunk– ETHERCHANNELinterface range fa0/3-4channel-group 2 mode activeinterface port-channel 2switchport mode trunkinterface range fa0/5-6channel-group 3 mode activeinterface port-channel 3switchport mode trunk–PVST+spanning-tree mode rapid-pvst#########– SW-Chostname Bldg3no ip domain-lookupenable secret ciscoline console 0logging synchronouspassword ciscologinline vty 0 15password ciscologinservice password-encryptionbanner motd @Authorized acces only !@ip default-gateway 10.10.25.1vlan 2name salesvlan 4name prodvlan 8name acctvlan 15name adminvlan 25name SVI-NETvlan 99name nullinterface vlan 25ip address 10.10.25.252 255.255.255.0no shutdowninterface fa0/7switchport mode accesswitchport acces vlan 2interface fa0/10switchport mode accesswitchport acces vlan 4interface fa0/15switchport mode accesswitchport acces vlan 8interface fa0/24switchport mode accesswitchport acces vlan 15– ETHERCHANNELinterface range fa0/1-2channel-group 1 mode activeno shutdowninterface port-channel 1switchport mode trunkinterface range fa0/5-6channel-group 3 mode passiveno shutdowninterface port-channel 3switchport mode trunk–PVST+spanning-tree mode rapid-pvstspanning-tree vlan 2 root secondaryspanning-tree vlan 4 root secondaryspanning-tree vlan 8 root primaryspanning-tree vlan 15 root
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2025-04-10Mode is enabled, the Red Hat Enterprise Linux CoreOS (RHCOS) machines that OpenShift Container Platform runs on bypass the default Kubernetes cryptography suite and use the cryptography modules that are provided with RHCOS instead. Create a customized initramfs file to boot the machine, by running the following command: $ coreos-installer pxe customize \ /root/rhcos-bootfiles/rhcos--live-initramfs.s390x.img \ --dest-device /dev/disk/by-id/scsi- --dest-karg-append \ ip=::::::none \ --dest-karg-append nameserver= \ --dest-karg-append rd.neednet=1 -o \ /root/rhcos-bootfiles/-initramfs.s390x.img Before first boot, you must customize the initramfs for each node in the cluster, and add PXE kernel parameters. Create a parameter file that includes ignition.platform.id=metal and ignition.firstboot. Example kernel parameter file for the control plane machinecio_ignore=all,!condev rd.neednet=1 \console=ttysclp0 \ignition.firstboot ignition.platform.id=metal \coreos.inst.ignition_url= \1coreos.live.rootfs_url= \2ip=::::::none nameserver= \rd.znet=qeth,0.0.bdd0,0.0.bdd1,0.0.bdd2,layer2=1 \rd.zfcp=0.0.5677,0x600606680g7f0056,0x034F000000000000 \zfcp.allow_lun_scan=0 1 Specify the location of the Ignition config file. Use master.ign or worker.ign. Only HTTP and HTTPS protocols are supported. 2 Specify the location of the rootfs artifact for the kernel and initramfs you are booting. Only HTTP and HTTPS protocols are supported. Write all options in the parameter file as a single line and make sure you have no newline characters. 2.5.6.3. Fast-track installation by using a prepackaged QCOW2 disk image Complete the following steps to create the machines in a fast-track installation of Red Hat Enterprise Linux CoreOS (RHCOS), importing a prepackaged Red Hat Enterprise Linux CoreOS (RHCOS) QEMU copy-on-write (QCOW2) disk image. Prerequisites At least one LPAR running on RHEL 8.6 or later with KVM, referred to as RHEL KVM host in this procedure. The KVM/QEMU hypervisor is installed on the RHEL KVM host. A domain name server (DNS) that can perform hostname and reverse lookup for the nodes. A DHCP server that provides IP addresses. Procedure Obtain the RHEL QEMU copy-on-write (QCOW2) disk image file from the Product Downloads page on the Red Hat Customer Portal or from the RHCOS image mirror page. The RHCOS images might not change with every release of OpenShift Container Platform. You must download images with the highest version that is less than or equal to the OpenShift Container Platform version that you install. Only use the appropriate RHCOS QCOW2 image described in the
2025-04-01