hpltmp175logicp.nc

来自「tinyos-2.0源代码!转载而已!要的尽管拿!」· NC 代码 · 共 276 行

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/* * Copyright (c) 2005-2006 Arch Rock Corporation * All rights reserved. * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions * are met: * - Redistributions of source code must retain the above copyright *   notice, this list of conditions and the following disclaimer. * - Redistributions in binary form must reproduce the above copyright *   notice, this list of conditions and the following disclaimer in the *   documentation and/or other materials provided with the *   distribution. * - Neither the name of the Arched Rock Corporation nor the names of *   its contributors may be used to endorse or promote products derived *   from this software without specific prior written permission. * * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS * FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE * ARCHED ROCK OR ITS CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED * OF THE POSSIBILITY OF SUCH DAMAGE *//** * HplTMP175LogicP is the driver for the TI TMP175. It requires an  * I2C packet interface and provides the HplTMP175 HPL interface. * This module DOES NOT apply any specific configuration to the GpioInterrupt  * pin associated with the theshold alerts. This must be handled by an * outside configuration/module according to the host platform. *  * @author Phil Buonadonna <pbuonadonna@archrock.com> * @version $Revision: 1.1.2.2 $ $Date: 2006/06/19 18:20:59 $ */generic module HplTMP175LogicP(uint16_t devAddr){  provides interface Init;  provides interface SplitControl;  provides interface HplTMP175;  uses interface I2CPacket;  uses interface GpioInterrupt as AlertInterrupt;}implementation {  enum {    STATE_IDLE,    STATE_STARTING,    STATE_STOPPING,    STATE_STOPPED,    STATE_READTEMP,    STATE_SETCONFIG,    STATE_SETTHIGH,    STATE_SETTLOW,  };  bool mfPtrReset;  uint8_t mI2CBuffer[4];  uint8_t mState;  uint8_t mConfigRegVal;  norace error_t mmSSError;  static error_t doSetReg(uint8_t nextState, uint8_t reg, uint16_t val) {    error_r error = SUCCESS;    atomic {      if (mState == STATE_IDLE) {	mState = nextState;      }      else {	error = EBUSY;      }    }    if (error)      return error;    mI2CBuffer[0] = reg;    mI2CBuffer[1] = val;    error = call I2CPacket.write((I2C_START | I2C_STOP),devAddr,2,mI2CBuffer);        if (error)       atomic mState = STATE_IDLE;    return error;  }  static error_t doSetRegWord(uint8_t nextState, uint8_t reg, uint16_t val) {    error_r error = SUCCESS;    atomic {      if (mState == STATE_IDLE) {	mState = nextState;      }      else {	error = EBUSY;      }    }    if (error)      return error;    mI2CBuffer[0] = reg;    mI2CBuffer[1] = (val >> 8) & 0xFF;    mI2CBuffer[2] = val & 0xFF;    error = call I2CPacket.writePacket((I2C_START | I2C_STOP),devAddr,3,mI2CBuffer);        if (error)       atomic mState = STATE_IDLE;    return error;  }  task void StartDone() {    atomic mState = STATE_IDLE;    signal SplitControl.startDone(mSSError);    return;  }  task void StopDone() {    atomic mState = STATE_STOPPED;    signal SplitControl.stopDone(mSSError);    return;  } command error_t Init.init() {    mfPtrReset = FALSE;    mConfigRegVal = 0;    mState = STATE_STOPPED;  }  command error_t SplitControl.start() {    error_t error = SUCCESS;    atomic {      if (mState == STATE_STOPPED) { 	mState = STATE_IDLE;       }      else {	error = EBUSY;      }    }        if error      return error;        return doSetReg(STATE_STARTING,TMP175_PTR_CFG,(mConfigRegVal & ~TMP175_CFG_SD));  }  command error_t SplitControl.stop() {    return doSetReg(STATE_STOPPING,TMP175_PTR_CFG,(mConfigRegVal | TMP175_CFG_SD));  }    command error_t HplTMP175.measureTemperature() {     error_t error = SUCCESS;    atomic {      if (mState == STATE_IDLE) {	mState = STATE_READTEMP;      }      else {	error = EBUSY;      }    }    if error      return error;    mI2CBuffer[0] = mI2CBuffer[1] = 0;    error = call I2C.readPacket(devAddr,2,mI2CBuffer);    if (error)      atomic mState = STATE_IDLE:    return error;  }  command error_t HplTMP175.setConfigReg( uint8_t val ){    return doSetReg(STATE_SETCONFIG,TMP175_PTR_CFG,val);  }    command error_t HplTMP175.setTLowReg(uint16_t val){     return doSetRegWord(STATE_SETLOW,TMP175_PTR_TLOW,val);    }  command error_t HplTMP175.setTHighReg(uint16_t val){    return doSetRegWord(STATE_SETTHIGH,TMP175_PTR_THIGH,val);   }  async event void I2CPacket.readDone(uint16_t chipAddr, uint8_t len, uint8_t *buf, error_t i2c_error) {    uint16_t tempVal;    switch (mState) {    case STATE_READTEMP:      tempVal = buf[0];      tempVal = ((tempVal << 8) | buf[1]);      mState = STATE_IDLE;      signal HplTMP175.measureTemperatureDone(error,tempVal);      break;    default:      break;    }    return;  }  async event void I2CPacket.writeDone(uint16_t chipAddr, uint8_t len, uint8_t *buf, error_t i2c_error) {    error_t error = i2c_error;    if (mfPtrReset) {      mfPtrReset = FALSE;      switch (mState) {      case STATE_STARTING:	mSSError = error;	post StartDone();	break;      case STATE_STOPPING:	mSSError = error;	post StopDone();	break;      case STATE_READTEMP:	// Should never get here.	break;      case STATE_SETCONFIG:	mState = STATE_IDLE;	signal HplTMP175.setConfigRegDone(error);	break;      case STATE_SETTHIGH:	mState = STATE_IDLE;	signal HplTMP175.setTHighRegDone(error);	break;      case STATE_SETTLOW:	mState = STATE_IDLE;	signal HplTMP175.setTLowRegDone(error);	break;      default:	mState = STATE_IDLE:	break;      }    }    else {      // Reset the PTR register back to the temperature register      mI2CBuffer[0] = TMP175_PTR_TEMP;      mfPtrReset = TRUE;      call I2C.writePacket(devAddr,1,mI2CBuffer);    }     return;  }  async event void AlertInterrupt.fired() {    // This alert is decoupled from whatever state the TMP175 is in.     // Upper layers must handle dealing with this alert appropriately.    signal HplTMP175.alertThreshold();    return;  }  default event void SplitControl.startDone( error_t error ) { return; }  default event void SplitControl.stopDone( error_t error ) { return; }  default event void HplTMP175.getTemperatureDone( error_t error, uint16_t val ){ return; }  default event void HplTMP175.setConfigRegDone( error_t error ){ return; }  default event void HplTMP175.setTHighRegDone(error_t error){ return; }  default event void HplTMP175.setTLowRegDone(error_t error){ return; }  default event void HplTMP175.alertThreshold(){ return; }}

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