[英文字幕] [2013 FA] Stanford CS144 Introduction to Computer Networking

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2019-01-08 08:01:09
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1.0 The Internet and IP
02:07
1.1 A Day in the Life of an Application
12:12
1.2 The 4-Layer Internet Model
13:23
1.3 The IP Service Model
17:47
1.4 A Day in the Life of a Packet
12:01
1.6 Layering Principle
09:59
1.7 Encapsulation Principle
08:12
1.8.1 Memory Layout and Endianness
02:14
1.8.2 Quiz Introduction
00:12
1.8.3 Quiz Explanation
01:47
1.8.4 Network Byte Order and Packet Formats
05:35
1.9.1 IPv4 Addresses
03:13
1.9.2 Quiz Introduction
00:09
1.9.3 Quiz Explanation
01:05
1.9.4 Classless Inter-Domain Routing (CIDR)
03:40
1.10.1 Longest Prefix Match (LPM) Algorithm
02:30
1.10.2 Quiz Introduction
00:09
1.10.3 Quiz Explanation
01:44
1.11 Address Resolution Protocol (ARP)
10:24
1.12 The Internet and IP Recap
04:17
1.13 SIP -- Jon Peterson
18:48
2.0 Transport (intro)
01:39
2.1 TCP service model
16:28
2.2 UDP service level
06:42
2.3 ICMP service model
14:12
2.4 End-to-end principle
10:34
2.5 Finite State Machines
15:13
2.6.1 Finite State Machines
07:52
2.6.2 Quiz
00:42
2.6.3 Quiz explanation 1
00:31
2.6.4 Quiz explanation 2 & end of FSM lecture
03:51
2.7 Reliable Communications - Stop and wait
08:11
2.8 Reliable Communications - Sliding window
19:26
2.9 Reliable Communications - Retransmission strategies
09:46
2.10 Reliable Communications - TCP header
07:52
2.11 Reliable Communications - Connection setup and teardown
19:50
2.12 Transport (recap)
04:32
2.13 TCPIP -- Kevin Fall
09:36
3.0 Packet Switching
02:33
3.1 The History of Networks; History of the Internet
12:41
3.2 What is Packet Switching
16:10
3.3 Terminology, End to End Delay and Queueing Delay
20:41
3.4 Playback Buffers
14:46
3.5.1 Simple Deterministic Queue Model
17:46
3.5.2 Simple Deterministic Queue Model (example)
06:17
3.6 Queueing Model Properties
18:20
3.7 Switching and Forwarding (1)
17:16
3.8 Switching and Forwarding (2)
11:54
3.9 Rate Guarantees
19:49
3.10.1 Delay Guarantees
22:53
3.10.2 Delay Guarantees Example
02:46
3.11 Packet Switching (recap)
09:09
3.13 DC Switches -- Tom Edsall
22:30
4.0 Congestion Control
03:20
4.1 Congestion Control - Basics
19:16
4.2 Congestion Control - Approaches
19:23
4.3.1 Congestion Control - Dynamics of a single AIMD flow
15:42
4.3.2 Dynamics of a single AIMD flow example
03:54
4.4 Congestion Control - Multiple AIMD flow
12:39
4.5 Congestion Control - TCP Tahoe
15:31
4.6 Congestion Control - RTT Estimation and Self-Clocking
09:35
4.7 Congestion Control - TCP Reno and New Reno
10:09
4.8 Congestion Control - AIMD
07:18
4.9 Reading an RFC
12:40
4.10 Congestion Control
07:01
4.11 Nandita Dukkipati
18:54
5.0 Applications and NATs
03:05
5.1 Network Address Translation
12:20
5.2 NATs - Types
15:33
5.3 NATs - Implications
14:48
5.4 NATs - Operation
16:12
5.5.1 HTTP
13:00
5.5.2 Quiz Introduction
00:13
5.5.3 Quiz Explanation
01:09
5.5.4 Quiz Introducton
00:15
5.5.5 Quiz Explanation
03:22
5.6 HTTP 1.1 Keep-alive
05:14
5.7 BitTorrent
07:57
5.8 DNS 1
15:45
5.9 Names and addresses - DNS 2
19:18
5.10 DNS 3
11:53
5.11 DHCP
12:25
5.12 Applications and NATs (recap)
08:09
6.0 Routing
04:24
6.1 Flooding, source routing and spanning trees
17:56
6.2 Bellman Ford
16:49
6.3 Dijkstra
11:34
6.4 Internet (RIP, OSPF) AS's
21:57
6.5 BGP
16:39
6.6 Multicast
18:37
6.7 Spanning Tree
15:04
6.8 IPv6
12:25
6.9 Routing
07:06
6.10 Routing Today -- David Ward
31:40
6.11 BGP Past, Present and Future -- Jennifer Rexford
19:35
7.0 Lower Layers
04:45
7.1 Shannon Capacity and Modulation
24:38
7.2 Bit Errors
13:32
7.3 Clocks and Clock Recovery
26:24
7.4 FEC and Reed-Solomon
18:35
7.5 MAC and CSMA CD
23:03
7.6 Ethernet
19:41
7.7 Wireless is Different
13:18
7.8 Medium Access Control
04:37
7.9 CSMA CA
09:09
7.10 RTS CTS
07:04
7.11 WiFi
10:14
7.12 IP Fragmentation
11:28
7.13 Lower Layers (recap)
06:06
7.14 Cloud Managed Wifi -- Sanjit Biswas
18:25
8.0 Security
03:52
8.1 Introduction to Network Security
08:16
8.2 Layer 2 Attacks
06:07
8.2a Demo MAC Overflow Attack
02:29
8.2b DHCP DNS Masquerade Attack
05:32
8.3 Layer 3 Attacks
10:03
8.4 Denial of Service
13:28
8.5 Security Principles
08:19
8.6.1 Confidentiality
03:17
8.6.2 Quiz Introduction
00:26
8.6.3 Quiz Explanation
00:45
8.6.4 Ciphers
04:11
8.6.5 Quiz Introduction
00:30
8.6.6 Quiz Explanation
01:13
8.6.7 Using Block Ciphers
04:02
8.6.8 Quiz Explanation
00:17
8.7 Integrity
10:45
8.8 Public Key Cryptography
07:35
8.9 Certificates
07:34
8.10.1 TLS 1
07:05
8.10.2 Quiz Introduction
01:04
8.10.3 Quiz Answer
00:28
8.10.4 TLS 2
02:48
8.11 Security
04:55
8.12 Security and Openness -- Reed Hunt
36:13
8.13 Security -- Dan Boneh
14:37
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