📄 hplcc1000spip.nc
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// $Id: HplCC1000SpiP.nc,v 1.1 2008/06/12 14:02:43 klueska Exp $/* tab:4 * "Copyright (c) 2000-2003 The Regents of the University of California. * All rights reserved. * * Permission to use, copy, modify, and distribute this software and its * documentation for any purpose, without fee, and without written agreement is * hereby granted, provided that the above copyright notice, the following * two paragraphs and the author appear in all copies of this software. * * IN NO EVENT SHALL THE UNIVERSITY OF CALIFORNIA BE LIABLE TO ANY PARTY FOR * DIRECT, INDIRECT, SPECIAL, INCIDENTAL, OR CONSEQUENTIAL DAMAGES ARISING OUT * OF THE USE OF THIS SOFTWARE AND ITS DOCUMENTATION, EVEN IF THE UNIVERSITY OF * CALIFORNIA HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. * * THE UNIVERSITY OF CALIFORNIA SPECIFICALLY DISCLAIMS ANY WARRANTIES, * INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY * AND FITNESS FOR A PARTICULAR PURPOSE. THE SOFTWARE PROVIDED HEREUNDER IS * ON AN "AS IS" BASIS, AND THE UNIVERSITY OF CALIFORNIA HAS NO OBLIGATION TO * PROVIDE MAINTENANCE, SUPPORT, UPDATES, ENHANCEMENTS, OR MODIFICATIONS." * * Copyright (c) 2002-2003 Intel Corporation * All rights reserved. * * This file is distributed under the terms in the attached INTEL-LICENSE * file. If you do not find these files, copies can be found by writing to * Intel Research Berkeley, 2150 Shattuck Avenue, Suite 1300, Berkeley, CA, * 94704. Attention: Intel License Inquiry. *//** * Low-level functions to access the CC1000 bus. Built using the mica2 * hardware SPI. * * @author Jaein Jeong * @author Philip buonadonna */module HplCC1000SpiP { provides interface Init as PlatformInit; provides interface HplCC1000Spi; //uses interface PowerManagement; uses { interface GeneralIO as SpiSck; interface GeneralIO as SpiMiso; interface GeneralIO as SpiMosi; interface GeneralIO as OC1C; interface PlatformInterrupt; }}implementation{ uint8_t outgoingByte; command error_t PlatformInit.init() { call SpiSck.makeInput(); call OC1C.makeInput(); call HplCC1000Spi.rxMode(); return SUCCESS; } AVR_ATOMIC_HANDLER(SIG_SPI) { register uint8_t temp = SPDR; SPDR = outgoingByte; signal HplCC1000Spi.dataReady(temp); call PlatformInterrupt.postAmble(); } default async event void HplCC1000Spi.dataReady(uint8_t data) { } async command void HplCC1000Spi.writeByte(uint8_t data) { atomic outgoingByte = data; } async command bool HplCC1000Spi.isBufBusy() { return bit_is_clear(SPSR, SPIF); } async command uint8_t HplCC1000Spi.readByte() { return SPDR; } async command void HplCC1000Spi.enableIntr() { //sbi(SPCR,SPIE); SPCR = 0xc0; CLR_BIT(DDRB, 0); //call PowerManagement.adjustPower(); } async command void HplCC1000Spi.disableIntr() { CLR_BIT(SPCR, SPIE); SET_BIT(DDRB, 0); CLR_BIT(PORTB, 0); //call PowerManagement.adjustPower(); } async command void HplCC1000Spi.initSlave() { atomic { CLR_BIT(SPCR, CPOL); // Set proper polarity... CLR_BIT(SPCR, CPHA); // ...and phase SET_BIT(SPCR, SPIE); // enable spi port SET_BIT(SPCR, SPE); } } async command void HplCC1000Spi.txMode() { call SpiMiso.makeOutput(); call SpiMosi.makeOutput(); } async command void HplCC1000Spi.rxMode() { call SpiMiso.makeInput(); call SpiMosi.makeInput(); }}
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