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AN2282 Datasheet(PDF) 13 Page - STMicroelectronics |
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AN2282 Datasheet(HTML) 13 Page - STMicroelectronics |
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13 / 19 page ![]() AN2282 Firmware 13/19 The uIP main features are as follows: ● Very small code size ● Very low RAM usage, configurable at compile time ● ARP, SLIP, IP, UDP, ICMP (ping) and TCP protocols ● Includes a set of example applications: web server, web client, e-mail sender (SMTP client), Telnet server, DNS hostname resolver ● Any number of concurrently active TCP connections, maximum amount configurable at compile time ● Any number of passively listening (server) TCP connections, maximum amount configurable at compile time ● Free for both commercial and non-commercial use ● RFC compliant TCP and IP protocol implementations, including flow control, fragment reassembly and retransmission time-out estimation The total memory requirement (ROM+RAM) is less then 21.3 KB. The uIP stack does not use explicit dynamic memory allocation. Instead, it uses a single global buffer (uip_buf) for holding packets and has a fixed table for holding connection states. The global packet buffer is large enough to contain one packet of maximum size. When a packet is received, the device driver places it in the global buffer, updates the global variable uip_len with the value of the received packet dimension and calls the TCP/IP stack. If the packet contains data, the TCP/IP stack will notify the corresponding application. In uIP, the same global packet buffer is also used for the TCP/IP headers of outgoing data. If the application sends dynamic data, it may use the parts of the global packet buffer that are not used for headers as a temporary storage buffer. To send the data, the application passes a pointer to the data as well as the length of the data to the stack. The data is not queued for retransmissions; instead, the application has to reproduce the data if a retransmission is necessary. uIP uses an event driven interface where the application is invoked in response to certain events. The application must be implemented as a C function, UIP_APPCALL(), that uIP calls whenever an event occurs. uIP calls the application when data is received, when data has been successfully delivered to the other end of the connection, when a new connection has been set up, or when data has to be retransmitted. The application is also periodically polled for new data. The application provides only one callback function; it is up to the application to deal with mapping different network services to different ports and connections. Figure 8 shows the uIP main control loop flow diagram. |
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