Add support to DHT11 and add some comments.
Change function names. read->-read11() support DHT11 ->read22() support DHT21 DHT22
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@ -1,34 +1,43 @@
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-- ***************************************************************************
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-- DHT22 module for ESP8266 with nodeMCU
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-- DHTxx(11,21,22) module for ESP8266 with nodeMCU
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--
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-- Written by Javier Yanez
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-- Written by Javier Yanez mod by Martin
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-- but based on a script of Pigs Fly from ESP8266.com forum
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--
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-- MIT license, http://opensource.org/licenses/MIT
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-- ***************************************************************************
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--Support list:
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--DHT11 Tested ->read11
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--DHT21 Not Tested->read22
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--DHT22 Tested->read22
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--==========================Module Part======================
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local moduleName = ...
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local M = {}
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_G[moduleName] = M
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--==========================Local the UMI and TEMP===========
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local humidity
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local temperature
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--==========================Local the bitStream==============
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local bitStream = {}
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function M.read(pin)
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local checksum
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local checksumTest
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---------------------------Read bitStream from DHTXX--------------------------
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local function read(pin)
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local bitlength = 0
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humidity = 0
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temperature = 0
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checksum = 0
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-- Use Markus Gritsch trick to speed up read/write on GPIO
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local gpio_read = gpio.read
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local bitStream = {}
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for j = 1, 40, 1 do
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bitStream[j] = 0
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end
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local bitlength = 0
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-- Step 1: send out start signal to DHT22
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gpio.mode(pin, gpio.OUTPUT)
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@ -39,7 +48,7 @@ function M.read(pin)
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gpio.write(pin, gpio.HIGH)
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gpio.mode(pin, gpio.INPUT)
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-- Step 2: DHT22 send response signal
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-- Step 2: Receive bitStream from DHT11/22
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-- bus will always let up eventually, don't bother with timeout
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while (gpio_read(pin) == 0 ) do end
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local c=0
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@ -59,8 +68,53 @@ function M.read(pin)
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-- bus will always let up eventually, don't bother with timeout
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while (gpio_read(pin) == 0) do end
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end
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end
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---------------------------Convert the bitStream into Number through DHT11 Ways--------------------------
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function M.read11(pin)
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--As for DHT11 40Bit is consisit of 5Bytes
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--First byte->Humidity Data's Int part
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--Sencond byte->Humidity Data's Float Part(Which should be empty)
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--Third byte->Temp Data;s Intpart
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--Forth byte->Temp Data's Float Part(Which should be empty)
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--Fifth byte->SUM Byte, Humi+Temp
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read(pin)
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local checksum = 0
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local checksumTest
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--DHT data acquired, process.
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for i = 1, 8, 1 do -- Byte[0]
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if (bitStream[i] > 3) then
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humidity = humidity + 2 ^ (8 - i)
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end
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end
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for i = 1, 8, 1 do -- Byte[2]
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if (bitStream[i + 16] > 3) then
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temperature = temperature + 2 ^ (8 - i)
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end
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end
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for i = 1, 8, 1 do --Byte[4]
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if (bitStream[i + 32] > 3) then
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checksum = checksum + 2 ^ (8 - i)
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end
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end
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if(checksum ~= humidity+temperature) then
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humidity = nil
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temperature = nil
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end
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end
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---------------------------Convert the bitStream into Number through DHT22 Ways--------------------------
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function M.read22( pin )
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--As for DHT22 40Bit is consisit of 5Bytes
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--First byte->Humidity Data's High Bit
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--Sencond byte->Humidity Data's Low Bit(And if over 0x8000, use complement)
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--Third byte->Temp Data's High Bit
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--Forth byte->Temp Data's Low Bit
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--Fifth byte->SUM Byte
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read(pin)
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local checksum = 0
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local checksumTest
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--DHT data acquired, process.
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for i = 1, 16, 1 do
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if (bitStream[i] > 3) then
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humidity = humidity + 2 ^ (16 - i)
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@ -91,6 +145,7 @@ function M.read(pin)
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end
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end
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---------------------------Check out the data--------------------------
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function M.getTemperature()
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return temperature
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end
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