Smart supermarket toy implementation for Networked Embedded Systems exam on Launchpad CC2650 with contiki-ng
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adamdunkels ceb2554d2f Enabled the SHT11 register readout to allow reading the low-voltage indicator bit 2008-11-10 21:10:36 +00:00
apps Bugfix: the web client previously implicitly depended on uip_buf to be larger than an HTTP GET request. This made the web client fail when uip_buf was smaller, and lead to memory corruption. Also, there was a bug when HTTP request headers would arrive when the GET request was being sent out. 2008-11-09 12:39:31 +00:00
backyard Moved unused code to backyard 2008-08-15 19:57:13 +00:00
core Enabled the SHT11 register readout to allow reading the low-voltage indicator bit 2008-11-10 21:10:36 +00:00
cpu Addition of Atmel Radio Control Board (RCB), device in RZ200 kit 2008-11-09 15:39:49 +00:00
doc tutorial update 2008-10-20 08:13:48 +00:00
examples Remove debug printouts. Increase neighbor advertisement timers. 2008-11-06 08:24:20 +00:00
platform added sd_write declaration. 2008-11-10 14:32:49 +00:00
tools Bugfix: the directory filename was wrong 2008-11-10 21:08:01 +00:00
Makefile.include Produce an error message if a TARGET= does not exist 2008-11-06 08:16:10 +00:00
README README 2007-03-29 23:42:18 +00:00
README-BUILDING Add some info on the DEFINES= / savedefines mechanism. 2008-06-12 22:13:59 +00:00
README-EXAMPLES Introduced web browser as new example using ctk fullscreen mode. 2007-12-15 22:36:50 +00:00

README

Contiki is an open source, highly portable, multi-tasking operating
system for memory-constrained networked embedded systems written by
Adam Dunkels at the Networked Embedded Systems group at the Swedish
Institute of Computer Science.

Contiki is designed for embedded systems with small amounts of
memory. A typical Contiki configuration is 2 kilobytes of RAM and 40
kilobytes of ROM. Contiki consists of an event-driven kernel on top of
which application programs are dynamically loaded and unloaded at
runtime. Contiki processes use light-weight protothreads that provide
a linear, thread-like programming style on top of the event-driven
kernel. Contiki also supports per-process optional preemptive
multi-threading, interprocess communication using message passing
through events, as well as an optional GUI subsystem with either
direct graphic support for locally connected terminals or networked
virtual display with VNC or over Telnet.

Contiki contains two communication stacks: uIP and Rime. uIP is a
small RFC-compliant TCP/IP stack that makes it possible for Contiki to
communicate over the Internet. Rime is a lightweight communication
stack designed for low-power radios. Rime provides a wide range of
communication primitives, from best-effort local area broadcast, to
reliable multi-hop bulk data flooding.

Contiki runs on a variety of platform ranging from embedded
microcontrollers such as the MSP430 and the AVR to old
homecomputers. Code footprint is on the order of kilobytes and memory
usage can be configured to be as low as tens of bytes.

Contiki is written in the C programming language and is freely
available as open source under a BSD-style license. More information
about Contiki can be found at the Contiki home page:
http://www.sics.se/contiki/