RUVIDEO
Поделитесь видео 🙏

RIP Routing protocol Bangla Tutorial

#CCNA #CCNP #CCIE #RHCSA #RHCE #MCSA #MCSE #WINDOWS #LINUX
Dynamic Routing, Advance Routing
RIP Routing protocol Bangla Tutorial.
OSPF Routing Protocol Bangla Tutorial.
BGP Routing Protocol Bangla Tutorial (Border Gateway Protocol)

Routing Information Protocol (RIP) uses hop count as the metric to rate the value of different routes. The hop count is the number of devices that can be traversed in a route. A directly connected network has a metric of zero; an unreachable network has a metric of 16. This limited metric range makes RIP unsuitable for large networks.
The Routing Information Protocol (RIP) uses broadcast UDP data packets to exchange routing information. Cisco software sends routing information updates every 30 seconds, which is termed advertising. If a device does not receive an update from another device for 180 seconds or more, the receiving device marks the routes served by the nonupdating device as unusable. If there is still no update after 240 seconds, the device removes all routing table entries for the nonupdating device.

A device that is running RIP can receive a default network via an update from another device that is running RIP, or the device can source the default network using RIP. In both cases, the default network is advertised through RIP to other RIP neighbors.

The Cisco implementation of RIP Version 2 (RIPv2) supports plain text and message digest algorithm 5 (MD5) authentication, route summarization, classless interdomain routing (CIDR), and variable-length subnet masks (VLSMs).
The Routing Information Protocol (RIP) sends routing-update messages at regular intervals and when the network topology changes. When a device receives a RIP routing update that includes changes to an entry, the device updates its routing table to reflect the new route. The metric value for the path is increased by 1, and the sender is indicated as the next hop. RIP devices maintain only the best route (the route with the lowest metric value) to a destination. After updating its routing table, the device immediately begins transmitting RIP routing updates to inform other network devices of the change. These updates are sent independently of the regularly scheduled updates that RIP devices send.
The Routing Information Protocol (RIP) uses a single routing metric to measure the distance between the source and the destination network. Each hop in a path from the source to the destination is assigned a hop-count value, which is typically 1. When a device receives a routing update that contains a new or changed destination network entry, the device adds 1 to the metric value indicated in the update and enters the network in the routing table. The IP address of the sender is used as the next hop. If an interface network is not specified in the routing table, it will not be advertised in any RIP update.
The Cisco implementation of the Routing Information Protocol (RIP) Version 2 (RIPv2) supports authentication, key management, route summarization, classless interdomain routing (CIDR), and variable-length subnet masks (VLSMs).

By default, the software receives RIP Version 1 (RIPv1) and RIPv2 packets, but sends only RIPv1 packets. You can configure the software to receive and send only RIPv1 packets. Alternatively, you can configure the software to receive and send only RIPv2 packets. To override the default behavior, you can configure the RIP version that an interface sends. Similarly, you can also control how packets received from an interface are processed.

RIPv1 does not support authentication. If you are sending and receiving RIP v2 packets, you can enable RIP authentication on an interface.

The key chain determines the set of keys that can be used on the interface. Authentication, including default authentication, is performed on that interface only if a key chain is configured. For more information on key chains and their configuration, see the “Managing Authentication Keys” section in the “Configuring IP Routing Protocol-Independent Features” chapter in the Cisco IOS IP Routing: Protocol-Independent Configuration Guide.

Cisco supports two modes of authentication on an interface on which RIP is enabled: plain-text authentication and message digest algorithm 5 (MD5) authentication. Plain-text authentication is the default authentication in every RIPv2 packet.

Что делает видео по-настоящему запоминающимся? Наверное, та самая атмосфера, которая заставляет забыть о времени. Когда вы заходите на RUVIDEO, чтобы посмотреть онлайн «RIP Routing protocol Bangla Tutorial», вы рассчитываете на нечто большее, чем просто загрузку плеера. И мы это понимаем. Контент такого уровня заслуживает того, чтобы его смотрели в HD 1080, без дрожания картинки и бесконечного буферизации.

Честно говоря, Rutube сегодня — это кладезь уникальных находок, которые часто теряются в общем шуме. Мы же вытаскиваем на поверхность самое интересное. Будь то динамичный экшн, глубокий разбор темы от любимого автора или просто уютное видео для настроения — всё это доступно здесь бесплатно и без лишних формальностей. Никаких «заполните анкету, чтобы продолжить». Только вы, ваш экран и качественный поток.

Если вас зацепило это видео, не забудьте взглянуть на похожие материалы в блоке справа. Мы откалибровали наши алгоритмы так, чтобы они подбирали контент не просто «по тегам», а по настроению и смыслу. Ведь в конечном итоге, онлайн-кинотеатр — это не склад файлов, а место, где каждый вечер можно найти свою историю. Приятного вам отдыха на RUVIDEO!

Видео взято из открытых источников Rutube. Если вы правообладатель, обратитесь к первоисточнику.