mirror of https://github.com/arendst/Tasmota.git
183 lines
6.3 KiB
C++
183 lines
6.3 KiB
C++
/*
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xsns_18_pms5003.ino - PMS5003-7003 particle concentration sensor support for Sonoff-Tasmota
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Copyright (C) 2018 Theo Arends
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#ifdef USE_PMS5003
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/*********************************************************************************************\
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* PlanTower PMS5003 and PMS7003 particle concentration sensor
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* For background information see http://aqicn.org/sensor/pms5003-7003/
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\*********************************************************************************************/
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#include <TasmotaSerial.h>
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TasmotaSerial *PmsSerial;
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uint8_t pms_type = 1;
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uint8_t pms_valid = 0;
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struct pms5003data {
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uint16_t framelen;
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uint16_t pm10_standard, pm25_standard, pm100_standard;
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uint16_t pm10_env, pm25_env, pm100_env;
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uint16_t particles_03um, particles_05um, particles_10um, particles_25um, particles_50um, particles_100um;
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uint16_t unused;
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uint16_t checksum;
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} pms_data;
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boolean PmsReadData()
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{
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if (! PmsSerial->available()) {
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return false;
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}
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while ((PmsSerial->peek() != 0x42) && PmsSerial->available()) {
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PmsSerial->read();
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}
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if (PmsSerial->available() < 32) {
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return false;
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}
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uint8_t buffer[32];
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uint16_t sum = 0;
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PmsSerial->readBytes(buffer, 32);
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PmsSerial->flush(); // Make room for another burst
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AddLogSerial(LOG_LEVEL_DEBUG_MORE, buffer, 32);
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// get checksum ready
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for (uint8_t i = 0; i < 30; i++) {
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sum += buffer[i];
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}
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// The data comes in endian'd, this solves it so it works on all platforms
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uint16_t buffer_u16[15];
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for (uint8_t i = 0; i < 15; i++) {
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buffer_u16[i] = buffer[2 + i*2 + 1];
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buffer_u16[i] += (buffer[2 + i*2] << 8);
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}
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if (sum != buffer_u16[14]) {
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AddLog_P(LOG_LEVEL_DEBUG, PSTR("PMS: " D_CHECKSUM_FAILURE));
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return false;
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}
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memcpy((void *)&pms_data, (void *)buffer_u16, 30);
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pms_valid = 10;
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return true;
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}
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/*********************************************************************************************/
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void PmsSecond() // Every second
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{
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if (PmsReadData()) {
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pms_valid = 10;
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} else {
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if (pms_valid) {
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pms_valid--;
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}
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}
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}
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/*********************************************************************************************/
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void PmsInit()
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{
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pms_type = 0;
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if (pin[GPIO_PMS5003] < 99) {
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PmsSerial = new TasmotaSerial(pin[GPIO_PMS5003], -1);
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if (PmsSerial->begin()) {
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pms_type = 1;
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}
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}
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}
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#ifdef USE_WEBSERVER
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const char HTTP_PMS5003_SNS[] PROGMEM = "%s"
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// "{s}PMS5003 " D_STANDARD_CONCENTRATION " 1 " D_UNIT_MICROMETER "{m}%d " D_UNIT_MICROGRAM_PER_CUBIC_METER "{e}"
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// "{s}PMS5003 " D_STANDARD_CONCENTRATION " 2.5 " D_UNIT_MICROMETER "{m}%d " D_UNIT_MICROGRAM_PER_CUBIC_METER "{e}"
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// "{s}PMS5003 " D_STANDARD_CONCENTRATION " 10 " D_UNIT_MICROMETER "{m}%d " D_UNIT_MICROGRAM_PER_CUBIC_METER "{e}"
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"{s}PMS5003 " D_ENVIRONMENTAL_CONCENTRATION " 1 " D_UNIT_MICROMETER "{m}%d " D_UNIT_MICROGRAM_PER_CUBIC_METER "{e}"
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"{s}PMS5003 " D_ENVIRONMENTAL_CONCENTRATION " 2.5 " D_UNIT_MICROMETER "{m}%d " D_UNIT_MICROGRAM_PER_CUBIC_METER "{e}"
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"{s}PMS5003 " D_ENVIRONMENTAL_CONCENTRATION " 10 " D_UNIT_MICROMETER "{m}%d " D_UNIT_MICROGRAM_PER_CUBIC_METER "{e}"
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"{s}PMS5003 " D_PARTICALS_BEYOND " 0.3 " D_UNIT_MICROMETER "{m}%d " D_UNIT_PARTS_PER_DECILITER "{e}"
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"{s}PMS5003 " D_PARTICALS_BEYOND " 0.5 " D_UNIT_MICROMETER "{m}%d " D_UNIT_PARTS_PER_DECILITER "{e}"
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"{s}PMS5003 " D_PARTICALS_BEYOND " 1 " D_UNIT_MICROMETER "{m}%d " D_UNIT_PARTS_PER_DECILITER "{e}"
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"{s}PMS5003 " D_PARTICALS_BEYOND " 2.5 " D_UNIT_MICROMETER "{m}%d " D_UNIT_PARTS_PER_DECILITER "{e}"
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"{s}PMS5003 " D_PARTICALS_BEYOND " 5 " D_UNIT_MICROMETER "{m}%d " D_UNIT_PARTS_PER_DECILITER "{e}"
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"{s}PMS5003 " D_PARTICALS_BEYOND " 10 " D_UNIT_MICROMETER "{m}%d " D_UNIT_PARTS_PER_DECILITER "{e}"; // {s} = <tr><th>, {m} = </th><td>, {e} = </td></tr>
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#endif // USE_WEBSERVER
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void PmsShow(boolean json)
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{
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if (pms_valid) {
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if (json) {
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snprintf_P(mqtt_data, sizeof(mqtt_data), PSTR("%s,\"PMS5003\":{\"CF1\":%d,\"CF2.5\":%d,\"CF10\":%d,\"PM1\":%d,\"PM2.5\":%d,\"PM10\":%d,\"PB0.3\":%d,\"PB0.5\":%d,\"PB1\":%d,\"PB2.5\":%d,\"PB5\":%d,\"PB10\":%d}"), mqtt_data,
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pms_data.pm10_standard, pms_data.pm25_standard, pms_data.pm100_standard,
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pms_data.pm10_env, pms_data.pm25_env, pms_data.pm100_env,
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pms_data.particles_03um, pms_data.particles_05um, pms_data.particles_10um, pms_data.particles_25um, pms_data.particles_50um, pms_data.particles_100um);
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#ifdef USE_DOMOTICZ
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if (0 == tele_period) {
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DomoticzSensor(DZ_COUNT, pms_data.pm10_env); // PM1
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DomoticzSensor(DZ_VOLTAGE, pms_data.pm25_env); // PM2.5
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DomoticzSensor(DZ_CURRENT, pms_data.pm100_env); // PM10
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}
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#endif // USE_DOMOTICZ
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#ifdef USE_WEBSERVER
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} else {
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snprintf_P(mqtt_data, sizeof(mqtt_data), HTTP_PMS5003_SNS, mqtt_data,
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// pms_data.pm10_standard, pms_data.pm25_standard, pms_data.pm100_standard,
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pms_data.pm10_env, pms_data.pm25_env, pms_data.pm100_env,
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pms_data.particles_03um, pms_data.particles_05um, pms_data.particles_10um, pms_data.particles_25um, pms_data.particles_50um, pms_data.particles_100um);
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#endif // USE_WEBSERVER
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}
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}
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}
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/*********************************************************************************************\
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* Interface
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\*********************************************************************************************/
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#define XSNS_18
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boolean Xsns18(byte function)
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{
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boolean result = false;
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if (pms_type) {
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switch (function) {
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case FUNC_INIT:
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PmsInit();
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break;
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case FUNC_EVERY_SECOND:
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PmsSecond();
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break;
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case FUNC_JSON_APPEND:
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PmsShow(1);
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break;
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#ifdef USE_WEBSERVER
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case FUNC_WEB_APPEND:
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PmsShow(0);
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break;
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#endif // USE_WEBSERVER
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}
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}
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return result;
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}
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#endif // USE_PMS5003
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