Chris Riesbeck, Fall 2007 Internetworking Topics –Client-server programming model –Networks –Internetworks –Global IP Internet IP addresses Domain names.

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Chris Riesbeck, Fall 2007 Internetworking Topics –Client-server programming model –Networks –Internetworks –Global IP Internet IP addresses Domain names Connections

EECS 213 Introduction to Computer Systems Northwestern University A Client-Server Transaction Client process Server process 1. Client sends request 2. Server handles request 3. Server sends response 4. Client handles response Resource Every network application is based on the client- server model: –A server process and one or more client processes –Server manages some resource. –Server provides service by manipulating resource for clients. Note: clients and servers are processes running on hosts (can be the same or different hosts).

EECS 213 Introduction to Computer Systems Northwestern University Hardware Org of a Network Host main memory I/O bridge MI ALU register file CPU chip system busmemory bus disk controller graphics adapter USB controller mousekeyboardmonitor disk I/O bus Expansion slots network adapter network

EECS 213 Introduction to Computer Systems Northwestern University Computer Networks A network is a hierarchical system of boxes and wires organized by geographical proximity –LAN (local area network) spans a building or campus. Ethernet is most prominent example. –WAN (wide-area network) spans country or world. Typically high-speed point-to-point phone lines. An internetwork (internet) is an interconnected set of networks. –The Gobal IP Internet (uppercase “I”) is the most famous example of an internet (lowercase “i”) Let’s see how we would build an internet from the ground up.

EECS 213 Introduction to Computer Systems Northwestern University Lowest Level: Ethernet Segment Ethernet segment consists of a collection of hosts connected by wires (twisted pairs) to a hub. Spans room or floor in a building. Operation –Each Ethernet adapter has a unique 48-bit address. –Hosts send bits to any other host in chunks called frames. –Hub slavishly copies each bit from each port to every other port. Every host sees every bit. host hub 100 Mb/s ports

EECS 213 Introduction to Computer Systems Northwestern University Next Level: Bridged Ethernet Segment Spans building or campus. Bridges learn which hosts are reachable from which ports in order to be selective about copying frames from port to port. host hub bridge 100 Mb/s host hub 100 Mb/s 1 Gb/s host bridge host hub AB C X Y

EECS 213 Introduction to Computer Systems Northwestern University Conceptual View of LANs For simplicity, hubs, bridges, and wires are often shown as a collection of hosts attached to a single wire: host...

EECS 213 Introduction to Computer Systems Northwestern University Next Level: internets Multiple incompatible LANs can be physically connected by specialized computers called routers. The connected networks are called an internet. host LAN 1... host LAN 2... router WAN LAN 1 and LAN 2 might be completely different, totally incompatible LANs (e.g., Ethernet and ATM)

EECS 213 Introduction to Computer Systems Northwestern University The Notion of an internet Protocol How is it possible to send bits across incompatible LANs and WANs? Solution: protocol software running on each host and router smoothes out the differences between the different networks. An internet protocol (set of rules) governs how hosts and routers should cooperate when they transfer data from network to network. TCP/IP is the protocol for the global IP Internet.

EECS 213 Introduction to Computer Systems Northwestern University What Does an internet Protocol Do? 1. Provides a naming scheme –An internet protocol defines a uniform format for host addresses. –Each host (and router) is assigned at least one of these internet addresses that uniquely identifies it. 2. Provides a delivery mechanism –An internet protocol defines a standard transfer unit (packet) –Packet consists of header and payload Header: contains info such as packet size, source and destination addresses. Payload: contains data bits sent from source host.

EECS 213 Introduction to Computer Systems Northwestern University Transferring Data Over an internet protocol software client LAN1 adapter Host A data PHFH1 dataPH dataPHFH2 LAN1 LAN2 data PH FH1 dataPHFH2 (1) (2) (3) (4) (5) (6) (7) (8) internet packet LAN2 frame protocol software LAN1 adapter LAN2 adapter Router FH1 LAN1 frame dataPHFH2 protocol software server LAN2 adapter Host B

EECS 213 Introduction to Computer Systems Northwestern University Other Issues Many important questions: –What if different networks have different maximum frame sizes? (segmentation) –How do routers know where to forward frames? –How are routers informed when the network topology changes? –What if packets get lost? These (and other) questions are addressed by the area of systems known as computer networking. Topic of EECS 340

EECS 213 Introduction to Computer Systems Northwestern University Global IP Internet Most famous example of an internet. Based on the TCP/IP protocol family –IP (Internet protocol) Provides basic naming scheme and unreliable delivery capability of packets (datagrams) from host-to-host. –UDP (Unreliable Datagram Protocol) Uses IP to provide unreliable datagram delivery from process-to-process. –TCP (Transmission Control Protocol) Uses IP to provide reliable byte streams from process-to- process over connections. Accessed via a mix of Unix file I/O and functions from the sockets interface.

EECS 213 Introduction to Computer Systems Northwestern University Organization of an Internet Application TCP/IP Client Network adapter Global IP Internet TCP/IP Server Network adapter Internet client hostInternet server host Sockets interface (system calls) Hardware interface (interrupts) User code Kernel code Hardware and firmware

EECS 213 Introduction to Computer Systems Northwestern University Basic Internet Components An Internet backbone is a collection of routers (nationwide or worldwide) connected by high- speed point-to-point networks. A Network Access Point (NAP) is a router that connects multiple backbones (sometimes referred to as peers). Regional networks are smaller backbones that cover smaller geographical areas (e.g., cities or states) A point of presence (POP) is a machine that is connected to the Internet. Internet Service Providers (ISPs) provide dial- up or direct access to POPs.

EECS 213 Introduction to Computer Systems Northwestern University The Internet Circa 1993 In 1993, the Internet was one backbone (NSFNET) that connected 13 sites via 45 Mbs T3 links. –Merit (Univ of Mich), NCSA (Illinois), Cornell Theory Center, Pittsburgh Supercomputing Center, San Diego Supercomputing Center, John von Neumann Center (Princeton), BARRNet (Palo Alto), MidNet (Lincoln, NE), WestNet (Salt Lake City), NorthwestNet (Seattle), SESQUINET (Rice), SURANET (Georgia Tech). Connecting to the Internet involved connecting one of your routers to a router at a backbone site, or to a regional network that was already connected to the backbone.

EECS 213 Introduction to Computer Systems Northwestern University NSFNET Internet Backbone source:

EECS 213 Introduction to Computer Systems Northwestern University Current NAP-Based Internet Architecture In the early 90’s, commercial outfits built their own high- speed backbones, connecting to NSFNET, and selling access to their POPs to companies, ISPs, and individuals. In 1995, NSF decommissioned NSFNET, and fostered creation of a collection of NAPs to connect the commercial backbones. Currently in the US there are about 50 commercial backbones connected by ~12 NAPs (peering points). Similar architecture worldwide connects national networks to the Internet.

EECS 213 Introduction to Computer Systems Northwestern University Internet Connection Hierarchy NAP Backbone NAP POP Regional net POP Small Business Big BusinessISP POP Pgh employee dialup DC employee POP T3 T1 ISP (for individuals) POP dialup T1 Colocation sites Private “peering” agreements between two backbone companies often bypass NAP

EECS 213 Introduction to Computer Systems Northwestern University Network Access Points (NAPs) Source: Boardwatch.com Note: Peers in this context are commercial backbones..droh

EECS 213 Introduction to Computer Systems Northwestern University Source: Boardwatch.com MCI/WorldCom/UUNET Global Backbone

EECS 213 Introduction to Computer Systems Northwestern University A Programmer’s View of the Internet 1. Hosts mapped to 32-bit IP addresses. – IP addresses mapped to identifiers called Internet domain names. – is eecs.northwestern.edu 3. A process on one Internet host communicates with a process on another Internet host over a connection.

EECS 213 Introduction to Computer Systems Northwestern University IP Addresses 32-bit IP addresses are stored in an IP address struct –IP addresses are always stored in memory in network byte order (big-endian byte order) –True in general for any integer transferred in a packet header from one machine to another. E.g., the port number used to identify an Internet connection. /* Internet address structure */ struct in_addr { unsigned int s_addr; /* network byte order (big-endian) */ }; Handy network byte-order conversion functions: htonl: convert long int from host to network byte order. htons: convert short int from host to network byte order. ntohl: convert long int from network to host byte order. ntohs: convert short int from network to host byte order.

EECS 213 Introduction to Computer Systems Northwestern University Dotted Decimal Notation By convention, each byte in a 32-bit IP address is represented by its decimal value and separated by a period IP address 0x8002C2F2 = Functions for converting between binary IP addresses and dotted decimal strings: –inet_aton : converts a dotted decimal string to an IP address in network byte order. –inet_ntoa : converts an IP address in network by order to its corresponding dotted decimal string. –“n” denotes network representation. “a” denotes application representation.

EECS 213 Introduction to Computer Systems Northwestern University IP Address quiz Complete this table: Hex addressDotted-decimal address 0x0 0xFFFFFFFF 0x7F

EECS 213 Introduction to Computer Systems Northwestern University Internet Domain Names miledugovcom northwestern berkeley mit eecscs www unnamed root ftp amazon www First-level domain names Second-level domain names Third-level domain names www

EECS 213 Introduction to Computer Systems Northwestern University Domain Naming System (DNS) The Internet maintains a mapping between IP addresses and domain names in a huge worldwide distributed database called DNS. –Conceptually, programmers can view the DNS database as a collection of millions of host entry structures: Functions for retrieving host entries from DNS: –gethostbyname : query key is a DNS domain name. –gethostbyaddr: query key is an IP address. /* DNS host entry structure */ struct hostent { char *h_name; /* official domain name of host */ char **h_aliases; /* null-terminated array of domain names */ int h_addrtype; /* host address type (AF_INET) */ int h_length; /* length of an address, in bytes */ char **h_addr_list; /* null-terminated array of in_addr structs */ };

EECS 213 Introduction to Computer Systems Northwestern University Properties of DNS Host Entries Each host entry is an equivalence class of domain names and IP addresses. Each host has a locally defined domain name localhost which always maps to the loopback address Different kinds of mappings are possible: –Simple case: 1-1 mapping between domain name and IP addr: kittyhawk.cmcl.cs.cmu.edu maps to –Multiple domain names mapped to the same IP address: eecs.mit.edu and cs.mit.edu both map to –Multiple domain names mapped to multiple IP addresses: aol.com and map to multiple IP addrs. –Some valid domain names don’t map to any IP address: for example: cmcl.cs.cmu.edu

EECS 213 Introduction to Computer Systems Northwestern University A Program That Queries DNS int main(int argc, char **argv) { /* argv[1] is a domain name char **pp; * or dotted decimal IP addr */ struct in_addr addr; struct hostent *hostp; if (inet_aton(argv[1], &addr) != 0) hostp = Gethostbyaddr((const char *)&addr, sizeof(addr), AF_INET); else hostp = Gethostbyname(argv[1]); printf("official hostname: %s\n", hostp->h_name); for (pp = hostp->h_aliases; *pp != NULL; pp++) printf("alias: %s\n", *pp); for (pp = hostp->h_addr_list; *pp != NULL; pp++) { addr.s_addr = *((unsigned int *)*pp); printf("address: %s\n", inet_ntoa(addr)); }

EECS 213 Introduction to Computer Systems Northwestern University Querying DNS from the Command Line Domain Information Groper ( dig ) provides a scriptable command line interface to DNS. linux> dig +short kittyhawk.cmcl.cs.cmu.edu linux> dig +short -x KITTYHAWK.CMCL.CS.CMU.EDU. linux> dig +short aol.com linux> dig +short -x aol-v5.websys.aol.com.

EECS 213 Introduction to Computer Systems Northwestern University Internet Connections Clients and servers communicate by sending streams of bytes over connections: –Point-to-point, full-duplex (2-way communication), and reliable. A socket is an endpoint of a connection –Socket address is an IPaddress:port pair A port is a 16-bit integer that identifies a process: –Ephemeral port: Assigned automatically on client when client makes a connection request –Well-known port: Associated with some service provided by a server (e.g., port 80 is associated with Web servers) A connection is uniquely identified by the socket addresses of its endpoints (socket pair) –(cliaddr:cliport, servaddr:servport)

EECS 213 Introduction to Computer Systems Northwestern University Putting it all Together Connection socket pair ( :51213, :80) Server (port 80) Client Client socket address :51213 Server socket address :80 Client host address Server host address