/* CapacitiveSense.h - Capacitive Sensing Library for 'duino / Wiring https://github.com/PaulStoffregen/CapacitiveSensor http://www.pjrc.com/teensy/td_libs_CapacitiveSensor.html http://playground.arduino.cc/Main/CapacitiveSensor Copyright (c) 2009 Paul Bagder Updates for other hardare by Paul Stoffregen, 2010-2016 Several modifications to better suit OpeNITHM by Jonathan Montineri, 2019 vim: set ts=4: Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions: The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software. THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */ #if ARDUINO >= 100 #include "Arduino.h" #else #include "WProgram.h" #include "pins_arduino.h" #include "WConstants.h" #endif #include "CapacitiveSensor.h" // Constructor ///////////////////////////////////////////////////////////////// // Function that handles the creation and setup of instances CapacitiveSensor::CapacitiveSensor(uint8_t sendPin, uint8_t receivePin1, uint8_t receivePin2) { // initialize this instance's variables error = 1; retVal = new unsigned int[2]; loopTimingFactor = 310; // determined empirically - a hack CS_Timeout_Millis = (200 * (float)loopTimingFactor * (float)F_CPU) / 16000000; // get pin mapping and port for send Pin - from PinMode function in core #ifdef NUM_DIGITAL_PINS if (sendPin >= NUM_DIGITAL_PINS) error = -1; if (receivePin1 >= NUM_DIGITAL_PINS) error = -1; if (receivePin2 >= NUM_DIGITAL_PINS) error = -1; #endif pinMode(sendPin, OUTPUT); // sendpin to OUTPUT pinMode(receivePin1, INPUT); // receivePins to INPUT pinMode(receivePin2, INPUT); // Get pin bitmask and registers sBit = PIN_TO_BITMASK(sendPin); sReg = PIN_TO_BASEREG(sendPin); r1Bit = PIN_TO_BITMASK(receivePin1); r1Reg = PIN_TO_BASEREG(receivePin1); r2Bit = PIN_TO_BITMASK(receivePin2); r2Reg = PIN_TO_BASEREG(receivePin2); } // Public Methods ////////////////////////////////////////////////////////////// // Functions available in Wiring sketches, this library, and other libraries unsigned int* CapacitiveSensor::sense(uint8_t samples) { total1 = 0; total2 = 0; // This code has very strict timing - disable interrupts //noInterrupts(); for (uint8_t i = 0; i < samples; i++) { if (!SenseOneCycle()) return nullptr; // Poll capacitive sensors repeatedly } //interrupts(); retVal[0] = total1; retVal[1] = total2; // Return the pair of values for the 2 sensors that were polled return retVal; } // Private Methods ///////////////////////////////////////////////////////////// // Functions only available to other functions in this library int CapacitiveSensor::SenseOneCycle(void) { DIRECT_WRITE_LOW(sReg, sBit); // sendPin Register low DIRECT_MODE_INPUT(r1Reg, r1Bit); // receivePin to input (pullups ar1e off) DIRECT_MODE_OUTPUT(r1Reg, r1Bit); // receivePin to OUTPUT DIRECT_WRITE_LOW(r1Reg, r1Bit); // pin is now LOW AND OUTPUT delayMicroseconds(10); DIRECT_MODE_INPUT(r1Reg, r1Bit); // receivePin to input (pullups ar1e off) DIRECT_MODE_INPUT(r2Reg, r2Bit); // receivePin to input (pullups ar2e off) DIRECT_MODE_OUTPUT(r2Reg, r2Bit); // receivePin to OUTPUT DIRECT_WRITE_LOW(r2Reg, r2Bit); // pin is now LOW AND OUTPUT delayMicroseconds(10); DIRECT_MODE_INPUT(r2Reg, r2Bit); // receivePin to input (pullups ar2e off) DIRECT_WRITE_HIGH(sReg, sBit); // sendPin High while (total1 < CS_Timeout_Millis) { // while total is positive value // Poll both pins at once pin1State = DIRECT_READ(r1Reg, r1Bit); pin2State = DIRECT_READ(r2Reg, r2Bit); total1 += !pin1State; total2 += !pin2State; // Break once both pins are high if (pin1State && pin2State) break; } if (total1 > CS_Timeout_Millis) { return -2; // We timed out - should never happen with this implementation } // set receive pin HIGH briefly to charge up fully - because the while loop above will exit when pin is ~ 2.5V DIRECT_WRITE_HIGH(r1Reg, r1Bit); DIRECT_MODE_OUTPUT(r1Reg, r1Bit); // receivePin to OUTPUT - pin is now HIGH AND OUTPUT DIRECT_MODE_OUTPUT(r2Reg, r2Bit); // receivePin to OUTPUT - pin is now HIGH AND OUTPUT DIRECT_WRITE_HIGH(r1Reg, r1Bit); DIRECT_WRITE_HIGH(r2Reg, r2Bit); DIRECT_MODE_INPUT(r1Reg, r1Bit); // receivePin to INPUT (pullup is off) DIRECT_MODE_INPUT(r2Reg, r2Bit); // receivePin to INPUT (pullup is off) DIRECT_WRITE_LOW(sReg, sBit); // sendPin LOW // Same loop as above, but measuring capacitor discharge time instead while ( (total1 < CS_Timeout_Millis) ) { pin1State = DIRECT_READ(r1Reg, r1Bit); pin2State = DIRECT_READ(r2Reg, r2Bit); total1 += pin1State; total2 += pin2State; if (!(pin1State || pin2State)) break; } if (total1 >= CS_Timeout_Millis) { return -2; } else { return 1; } }