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https://github.com/oliverschmidt/contiki.git
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c0239b41c9
modified: platform/avr-rss2/contiki-conf.h
356 lines
14 KiB
C
356 lines
14 KiB
C
/*
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* Copyright (c) 2006, Technical University of Munich
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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* 3. Neither the name of the Institute nor the names of its contributors
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* may be used to endorse or promote products derived from this software
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* without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE INSTITUTE AND CONTRIBUTORS ``AS IS'' AND
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* ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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* ARE DISCLAIMED. IN NO EVENT SHALL THE INSTITUTE OR CONTRIBUTORS BE LIABLE
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* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
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* OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
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* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
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* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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* SUCH DAMAGE.
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*
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* This file is part of the Contiki operating system.
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*
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* @(#)$$
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*/
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/**
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* \file
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* Configuration for RSS2 (radio-sensors.com) platform
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*/
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#ifndef CONTIKI_CONF_H_
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#define CONTIKI_CONF_H_
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/* include the project config */
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/* PROJECT_CONF_H might be defined in the project Makefile */
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#ifdef PROJECT_CONF_H
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#include PROJECT_CONF_H
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#endif
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/* Platform name, type, and MCU clock rate */
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#define PLATFORM_NAME "rss2"
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#define PLATFORM_TYPE ATMEGA256RFR2
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#ifndef F_CPU
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#define F_CPU 8000000UL
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#endif
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#include <stdint.h>
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#ifndef NETSTACK_CONF_MAC
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#define NETSTACK_CONF_MAC csma_driver
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#endif
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#ifndef NETSTACK_CONF_RDC
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#define NETSTACK_CONF_RDC contikimac_driver
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#endif
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#ifndef NETSTACK_CONF_RDC_CHANNEL_CHECK_RATE
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#define NETSTACK_CONF_RDC_CHANNEL_CHECK_RATE 8
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#endif
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#ifndef NETSTACK_CONF_FRAMER
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#if NETSTACK_CONF_WITH_IPV6
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#define NETSTACK_CONF_FRAMER contikimac_framer
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#else
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#define NETSTACK_CONF_FRAMER framer_802154
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#endif
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#endif
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#ifndef NETSTACK_CONF_RADIO
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#define NETSTACK_CONF_RADIO rf230_driver
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#endif
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/* AUTOACK receive mode gives better rssi measurements, even if ACK is never requested */
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#ifndef RF230_CONF_AUTOACK
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#define RF230_CONF_AUTOACK 1
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#endif
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#define MCUCSR MCUSR
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/* The AVR tick interrupt usually is done with an 8 bit counter around 128 Hz.
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* 125 Hz needs slightly more overhead during the interrupt, as does a 32 bit
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* clock_time_t.
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*/
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/* Clock ticks per second */
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#define CLOCK_CONF_SECOND 128
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typedef unsigned long clock_time_t;
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#define CLOCK_LT(a, b) ((signed long)((a) - (b)) < 0)
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#define INFINITE_TIME 0xffffffff
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/* These routines are not part of the contiki core but can be enabled in cpu/avr/clock.c */
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void clock_delay_msec(uint16_t howlong);
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void clock_adjust_ticks(clock_time_t howmany);
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/* The radio needs to interrupt during an rtimer interrupt */
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#define RTIMER_CONF_NESTED_INTERRUPTS 1
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/* RSS2 boards has a 32768Hz on TIMER2 */
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#define AVR_CONF_USE32KCRYSTAL 1
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#define SLIP_PORT RS232_PORT_0
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/* Default baud rare on RS232 port */
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#ifndef RS232_BAUDRATE
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#define RS232_BAUDRATE USART_BAUD_38400
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#endif
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/* Pre-allocated memory for loadable modules heap space (in bytes)*/
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/* Default is 4096. Currently used only when elfloader is present. Not tested on Raven */
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/* #define MMEM_CONF_SIZE 256 */
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/* Starting address for code received via the codeprop facility. Not tested. */
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typedef unsigned long off_t;
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/* #define EEPROMFS_ADDR_CODEPROP 0x8000 */
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/* Logging adds 200 bytes to program size. RS232 output slows down webserver. */
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/* #define LOG_CONF_ENABLED 1 */
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/* RADIOSTATS is used in rf230bb, clock.c and the webserver cgi to report radio usage */
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/* It has less overhead than ENERGEST */
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#define RADIOSTATS 1
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/* More extensive stats, via main loop printfs or webserver status pages */
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#define ENERGEST_CONF_ON 1
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/* Packet statistics */
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typedef unsigned short uip_stats_t;
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#define UIP_STATISTICS 0
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/* Available watchdog timeouts depend on mcu. Default is WDTO_2S. -1 Disables the watchdog. */
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/* AVR Studio simulator tends to reboot due to clocking the WD 8 times too fast */
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/* #define WATCHDOG_CONF_TIMEOUT -1 */
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/* Debugflow macro, useful for tracing path through mac and radio interrupts */
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/* #define DEBUGFLOWSIZE 128 */
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/* Define MAX_*X_POWER to reduce tx power and ignore weak rx packets for testing a miniature multihop network.
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* Leave undefined for full power and sensitivity.
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* tx=0 (3dbm, default) to 15 (-17.2dbm)
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* RF230_CONF_AUTOACK sets the extended mode using the energy-detect register with rx=0 (-91dBm) to 84 (-7dBm)
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* else the rssi register is used having range 0 (91dBm) to 28 (-10dBm)
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* For simplicity RF230_MIN_RX_POWER is based on the energy-detect value and divided by 3 when autoack is not set.
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* On the RF230 a reduced rx power threshold will not prevent autoack if enabled and requested.
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* These numbers applied to both Raven and Jackdaw give a maximum communication distance of about 15 cm
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* and a 10 meter range to a full-sensitivity RF230 sniffer.
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*#define RF230_MAX_TX_POWER 15
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*#define RF230_MIN_RX_POWER 30
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*/
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/* The rf231 and atmega128rfa1 can use an rssi threshold for triggering rx_busy that saves 0.5ma in rx mode */
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/* 1 - 15 maps into -90 to -48 dBm; the register is written with RF230_MIN_RX_POWER/6 + 1. Undefine for -100dBm sensitivity */
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/* #define RF230_MIN_RX_POWER 0 */
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/* Network setup */
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/* TX routine passes the cca/ack result in the return parameter */
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#define RDC_CONF_HARDWARE_ACK 1
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/* TX routine does automatic cca and optional backoffs */
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#define RDC_CONF_HARDWARE_CSMA 1
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/* Allow MCU sleeping between channel checks */
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#define RDC_CONF_MCU_SLEEP 1
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#if NETSTACK_CONF_WITH_IPV6
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#ifndef NBR_TABLE_CONF_MAX_NEIGHBORS
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#define NBR_TABLE_CONF_MAX_NEIGHBORS 20
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#endif
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#ifndef UIP_CONF_MAX_ROUTES
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#define UIP_CONF_MAX_ROUTES 20
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#endif
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#ifndef UIP_CONF_BUFFER_SIZE
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#define UIP_CONF_BUFFER_SIZE 1280
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#endif
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#define LINKADDR_CONF_SIZE 8
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#define UIP_CONF_ICMP6 1
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#define UIP_CONF_UDP 1
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#ifndef UIP_CONF_TCP
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#define UIP_CONF_TCP 1
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#endif
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#define NETSTACK_CONF_NETWORK sicslowpan_driver
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#define SICSLOWPAN_CONF_COMPRESSION SICSLOWPAN_COMPRESSION_HC06
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#else
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/* ip4 should build but is largely untested */
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#define LINKADDR_CONF_SIZE 2
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#define NETSTACK_CONF_NETWORK rime_driver
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#endif
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#define UIP_CONF_LL_802154 1
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#define UIP_CONF_LLH_LEN 0
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/* 10 bytes per stateful address context - see sicslowpan.c */
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/* Default is 1 context with prefix aaaa::/64 */
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/* These must agree with all the other nodes or there will be a failure to communicate! */
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#define SICSLOWPAN_CONF_MAX_ADDR_CONTEXTS 1
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#define SICSLOWPAN_CONF_ADDR_CONTEXT_0 { addr_contexts[0].prefix[0] = 0xaa; addr_contexts[0].prefix[1] = 0xaa; }
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#define SICSLOWPAN_CONF_ADDR_CONTEXT_1 { addr_contexts[1].prefix[0] = 0xbb; addr_contexts[1].prefix[1] = 0xbb; }
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#define SICSLOWPAN_CONF_ADDR_CONTEXT_2 { addr_contexts[2].prefix[0] = 0x20; addr_contexts[2].prefix[1] = 0x01; addr_contexts[2].prefix[2] = 0x49; addr_contexts[2].prefix[3] = 0x78, addr_contexts[2].prefix[4] = 0x1d; addr_contexts[2].prefix[5] = 0xb1; }
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/* Take the default TCP maximum segment size for efficiency and simpler wireshark captures */
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/* Use this to prevent 6LowPAN fragmentation (whether or not fragmentation is enabled) */
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/* #define UIP_CONF_TCP_MSS 48 */
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#define UIP_CONF_IP_FORWARD 0
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#define UIP_CONF_FWCACHE_SIZE 0
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#define UIP_CONF_IPV6_CHECKS 1
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#define UIP_CONF_IPV6_QUEUE_PKT 1
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#define UIP_CONF_IPV6_REASSEMBLY 0
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#define UIP_CONF_UDP_CHECKSUMS 1
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#define UIP_CONF_TCP_SPLIT 1
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#define UIP_CONF_DHCP_LIGHT 1
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#if 0 /* No radio cycling */
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#define NETSTACK_CONF_MAC nullmac_driver
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#define NETSTACK_CONF_RDC sicslowmac_driver
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#define NETSTACK_CONF_FRAMER framer_802154
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/* 1 + Number of auto retry attempts 0-15 (0 implies don't use extended TX_ARET_ON mode) */
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#define RF230_CONF_FRAME_RETRIES 2
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/* Number of csma retry attempts 0-5 in extended tx mode (7 does immediate tx with no csma) */
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#define RF230_CONF_CSMA_RETRIES 5
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/* Default is one RAM buffer for received packets. More than one may benefit multiple TCP connections or ports */
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#define RF230_CONF_RX_BUFFERS 3
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#define SICSLOWPAN_CONF_FRAG 1
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/* Most browsers reissue GETs after 3 seconds which stops fragment reassembly so a longer MAXAGE does no good */
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#define SICSLOWPAN_CONF_MAXAGE 3
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/* How long to wait before terminating an idle TCP connection. Smaller to allow faster sleep. Default is 120 seconds */
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/* If wait is too short the connection can be reset as a result of multiple fragment reassembly timeouts */
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#define UIP_CONF_WAIT_TIMEOUT 20
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/* 54 bytes per queue ref buffer */
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#define QUEUEBUF_CONF_REF_NUM 2
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/* Allocate remaining RAM as desired */
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/* 30 bytes per TCP connection */
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/* 6LoWPAN does not do well with concurrent TCP streams, as new browser GETs collide with packets coming */
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/* from previous GETs, causing decreased throughput, retransmissions, and timeouts. Increase to study this. */
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/* ACKs to other ports become interleaved with computation-intensive GETs, so ACKs are particularly missed. */
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/* Increasing the number of packet receive buffers in RAM helps to keep ACKs from being lost */
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#define UIP_CONF_MAX_CONNECTIONS 4
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/* 2 bytes per TCP listening port */
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#define UIP_CONF_MAX_LISTENPORTS 4
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/* 25 bytes per UDP connection */
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#define UIP_CONF_UDP_CONNS 10
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/* See uip-ds6.h */
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#define UIP_CONF_DS6_DEFRT_NBU 2
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#define UIP_CONF_DS6_PREFIX_NBU 3
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#define UIP_CONF_DS6_ADDR_NBU 3
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#define UIP_CONF_DS6_MADDR_NBU 0
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#define UIP_CONF_DS6_AADDR_NBU 0
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#elif 1 /* Contiki-mac radio cycling */
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/* #define NETSTACK_CONF_MAC nullmac_driver */
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/* csma needed for burst mode at present. Webserver won't work without it */
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/* #define NETSTACK_CONF_MAC csma_driver */
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/* #define NETSTACK_CONF_RDC contikimac_driver */
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/* Default is two CCA separated by 500 usec */
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/* So without the header this needed for RPL mesh to form */
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#define CONTIKIMAC_FRAMER_CONF_SHORTEST_PACKET_SIZE (43 - 18) /* multicast RPL DIS length */
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/* Not tested much yet */
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#define CONTIKIMAC_CONF_WITH_PHASE_OPTIMIZATION 0
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#define CONTIKIMAC_CONF_COMPOWER 1
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#define RIMESTATS_CONF_ENABLED 0
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/* A 0 here means non-extended mode; 1 means extended mode with no retry, >1 for retrys */
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/* Contikimac strobes on its own, but hardware retries are faster */
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#define RF230_CONF_FRAME_RETRIES 1
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/* Long csma backoffs will compromise radio cycling; set to 0 for 1 csma */
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#define RF230_CONF_CSMA_RETRIES 0
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#define SICSLOWPAN_CONF_FRAG 1
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#define SICSLOWPAN_CONF_MAXAGE 3
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/* 54 bytes per queue ref buffer */
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#define QUEUEBUF_CONF_REF_NUM 2
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/* Allocate remaining RAM. Not much left due to queuebuf increase */
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#define UIP_CONF_MAX_CONNECTIONS 2
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#define UIP_CONF_MAX_LISTENPORTS 4
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#define UIP_CONF_UDP_CONNS 5
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#define UIP_CONF_DS6_DEFRT_NBU 2
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#define UIP_CONF_DS6_PREFIX_NBU 3
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#define UIP_CONF_DS6_ADDR_NBU 3
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#define UIP_CONF_DS6_MADDR_NBU 0
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#define UIP_CONF_DS6_AADDR_NBU 0
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#elif 0 /* cx-mac radio cycling */
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/* RF230 does clear-channel assessment in extended mode (autoretries>0) */
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/* These values are guesses */
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#define RF230_CONF_FRAME_RETRIES 10
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#define RF230_CONF_CSMA_RETRIES 2
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#if RF230_CONF_CSMA_RETRIES
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#define NETSTACK_CONF_MAC nullmac_driver
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#else
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#define NETSTACK_CONF_MAC csma_driver
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#endif
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#define NETSTACK_CONF_RDC cxmac_driver
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#define NETSTACK_CONF_FRAMER framer_802154
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#define SICSLOWPAN_CONF_FRAG 1
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#define SICSLOWPAN_CONF_MAXAGE 3
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#define CXMAC_CONF_ANNOUNCEMENTS 0
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/* 54 bytes per queue ref buffer */
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#define QUEUEBUF_CONF_REF_NUM 2
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/* Allocate remaining RAM. Not much left due to queuebuf increase */
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#define UIP_CONF_MAX_CONNECTIONS 2
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#define UIP_CONF_MAX_LISTENPORTS 4
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#define UIP_CONF_UDP_CONNS 5
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#define UIP_CONF_DS6_DEFRT_NBU 2
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#define UIP_CONF_DS6_PREFIX_NBU 3
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#define UIP_CONF_DS6_ADDR_NBU 3
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#define UIP_CONF_DS6_MADDR_NBU 0
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#define UIP_CONF_DS6_AADDR_NBU 0
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/* Below gives 10% duty cycle, undef for default 5% */
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/* #define CXMAC_CONF_ON_TIME (RTIMER_ARCH_SECOND / 80) */
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/* Below gives 50% duty cycle */
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/* #define CXMAC_CONF_ON_TIME (RTIMER_ARCH_SECOND / 16) */
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#else
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/* #error Network configuration not specified! */
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#endif /* Network setup */
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#ifndef QUEUEBUF_CONF_NUM
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#define QUEUEBUF_CONF_NUM 15
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#endif
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/* ************************************************************************** */
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/* #pragma mark RPL Settings */
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/* ************************************************************************** */
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#if UIP_CONF_IPV6_RPL
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#define UIP_CONF_ROUTER 1
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#define UIP_CONF_ND6_SEND_RA 0
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#define UIP_CONF_ND6_REACHABLE_TIME 600000
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#define UIP_CONF_ND6_RETRANS_TIMER 10000
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/* For slow slip connections, to prevent buffer overruns */
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/* #define UIP_CONF_RECEIVE_WINDOW 300 */
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#undef UIP_CONF_FWCACHE_SIZE
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#define UIP_CONF_FWCACHE_SIZE 30
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#define UIP_CONF_BROADCAST 1
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#define UIP_ARCH_IPCHKSUM 1
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#define UIP_CONF_PINGADDRCONF 0
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#define UIP_CONF_LOGGING 0
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#endif /* RPL */
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#define CCIF
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#define CLIF
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#ifndef CC_CONF_INLINE
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#define CC_CONF_INLINE inline
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#endif
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#endif /* CONTIKI_CONF_H_ */
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