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MPLS ( Multi-Protocol Label Switching ) 屬於第三代網路架構,是新一代的 IP 高速骨幹 網路交換標準,由 IETF ( Internet Engineering Task Force ,網際網路工程專案小 組 ) 所提出,由 Cisco 、 3Com 等網路設備大.

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Presentation on theme: "MPLS ( Multi-Protocol Label Switching ) 屬於第三代網路架構,是新一代的 IP 高速骨幹 網路交換標準,由 IETF ( Internet Engineering Task Force ,網際網路工程專案小 組 ) 所提出,由 Cisco 、 3Com 等網路設備大."— Presentation transcript:

1 MPLS ( Multi-Protocol Label Switching ) 屬於第三代網路架構,是新一代的 IP 高速骨幹 網路交換標準,由 IETF ( Internet Engineering Task Force ,網際網路工程專案小 組 ) 所提出,由 Cisco 、 3Com 等網路設備大 廠所主導。 MPLS 的運作原理是提供每個 IP 封 包一個標籤,由此決定封包的路徑以及優先順 序,與 MPLS 相容的路由器,會將封包轉送到 其路徑前,僅讀取封包標籤,無須讀取每個封 包的 IP 位址以及標頭,因此網路速度便會加快 許多,同時藉由 QoS ( Quality of Service ) 的 機制對所傳送的封包加以分級,進而大幅提升 網路服務品質並且提供更多樣化的服務。

2 MPLS Related Protocols Data forwarding Label encapsulation Label operations: PUSH, SWAP and POP Label distribution protocols ( RFC 3036) Provide procedures by which one LSR informs another of the label/FEC binding Extensions to routing protocols Existing routing protocols can be extended to distribute traffic engineering information

3 Key Terminology in MPLS FEC (Forwarding Equivalence Class) A group of IP packets which are forwarded in the same manner ( 同類轉送等級,每一類 FEC 內的封包,都將以同樣的服務品質傳 送到同樣的目的地 ) Label A short fixed length identifier which is used to identify a FEC Label Swapping Looking up the incoming label to determine the outgoing label, encapsulation and port Label Switched Path (LSP) Path through one or more LSRs for a particular FEC Label Switching Router (LSR) An MPLS capable router

4 What is a Label The label can be carried in a layer 2 header (e.g., ATM and frame relay) or in a “ shim ” that sits between the layer 2 header and IP (e.g., LAN and PPP) PayloadIP“shim”Layer 2 Label value (20 bits)ExpSTTL Exp: Experimental (3 bits) S: Bottom of label stack (1 bit) TTL: Time-To-Live (8 bits) 4 Octets

5 MPLS Header Label – locally significant 20-bit label Experimental – 3-bits that are often used for priority Stack – 1-bit bottom of stack indicator TTL – brought from the IP header to support TTL even though MPLS does not examine IP header

6 Data Forwarding Edge LSR (Ingress) Edge LSR (Egress) LSR Label IP LSR (Penultimate) PUSHPOPSWAP L2 header

7 Ingress and Transit Operation Port 1Port 4 Ingress LSR LSR Port 2Port 3 FEC Output 10.60.0.0/16 port 4 PUSH label 40 To: 10.60.30.4 InputOutput port 2 label 40port 3 SWAP label 45 Label: 40 Label: 45

8 Egress Operation Port 1Port 4 Egress LSR Input Output port 1 label 45 POP Label: 45 To: 10.60.30.4 FEC OutputNext Hop 10.60.0.0/16 Port 4 10.1.2.6 The egress router has to do two table lookups There is a concern that this might cause a performance penalty on the egress router

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