Add optional define LM75AD_SKIP_NULL_SENSOR
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@ -28,20 +28,22 @@
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* I2C Address: 0x48 - 0x4F
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\*********************************************************************************************/
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#define XSNS_26 26
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#define XI2C_20 20 // See I2CDEVICES.md
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#define XSNS_26 26
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#define XI2C_20 20 // See I2CDEVICES.md
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#ifndef LM75AD_MAX_SENSORS
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#define LM75AD_MAX_SENSORS 8
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#define LM75AD_MAX_SENSORS 8
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#endif
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#define LM75AD_ADDRESS 0x48 // Start address
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#define LM75AD_COUNT 8 // Number of sequential addresses
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//#define LM75AD_SKIP_NULL_SENSOR // Skip sensor instead of reporting null value
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#define LM75_TEMP_REGISTER 0x00
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#define LM75_CONF_REGISTER 0x01
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#define LM75_THYST_REGISTER 0x02
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#define LM75_TOS_REGISTER 0x03
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#define LM75AD_ADDRESS 0x48 // Start address
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#define LM75AD_COUNT 8 // Number of sequential addresses
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#define LM75_TEMP_REGISTER 0x00
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#define LM75_CONF_REGISTER 0x01 // Power On State is 0x00
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#define LM75_THYST_REGISTER 0x02 // Power On state is 0x4B00 = 75C - Used for I2C device detection
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#define LM75_TOS_REGISTER 0x03 // Power On State is 0x5000 = 80C
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struct {
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uint8_t address[LM75AD_MAX_SENSORS];
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@ -53,7 +55,7 @@ void LM75ADDetect(void) {
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if ((LM75AD_MAX_SENSORS < 1) || (LM75AD_MAX_SENSORS > 16)) { return; } // Safeguard user changed LM75AD_MAX_SENSORS out of bounds
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for (uint32_t bus = 0; bus < 2; bus++) {
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for (uint32_t address = LM75AD_ADDRESS; address < LM75AD_ADDRESS + LM75AD_COUNT; address++) {
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if (!I2cSetDevice(address, bus)) { continue; } // Do not make the next step without a confirmed device on the bus
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if (!I2cSetDevice(address, bus)) { continue; } // Do not make the next step without a confirmed device on the bus
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uint16_t buffer;
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if (I2cValidRead16(&buffer, address, LM75_THYST_REGISTER, bus)) {
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if (buffer == 0x4B00) {
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@ -72,14 +74,14 @@ float LM75ADGetTemp(uint32_t sensor) {
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uint16_t t;
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if (I2cValidRead16(&t, Lm75.address[sensor], LM75_TEMP_REGISTER, Lm75.bus[sensor])) {
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int16_t sign = 1;
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if (t & 0x8000) { // We are getting a negative temperature value
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if (t & 0x8000) { // We are getting a negative temperature value
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t = (~t) +0x20;
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sign = -1;
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}
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t = t >> 5; // Shift value into place (5 LSB not used)
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t = t >> 5; // Shift value into place (5 LSB not used, expect 11-bit resolution)
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return ConvertTemp(sign * t * 0.125f);
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}
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return NAN; // Will be changed to "null" by ext_vsprintf_P()
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return NAN; // Will be changed to "null" by ext_vsprintf_P()
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}
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void LM75ADShow(bool json) {
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@ -87,6 +89,9 @@ void LM75ADShow(bool json) {
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for (uint32_t sensor = 0; sensor < Lm75.count; sensor++) {
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// Takes 2ms / LM75
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float t = LM75ADGetTemp(sensor);
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#ifdef LM75AD_SKIP_NULL_SENSOR
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if (isnan(t)) { continue; } // Skip sensor instead of reporting null value
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#endif // LM75AD_SKIP_NULL_SENSOR
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char name[16];
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strlcpy(name, "LM75AD", sizeof(name)); // LM75AD
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@ -118,8 +123,7 @@ void LM75ADShow(bool json) {
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* Interface
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\*********************************************************************************************/
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bool Xsns26(uint32_t function)
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{
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bool Xsns26(uint32_t function) {
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if (!I2cEnabled(XI2C_20)) { return false; }
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bool result = false;
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@ -132,11 +136,11 @@ bool Xsns26(uint32_t function)
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case FUNC_JSON_APPEND:
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LM75ADShow(1);
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break;
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#ifdef USE_WEBSERVER
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#ifdef USE_WEBSERVER
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case FUNC_WEB_SENSOR:
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LM75ADShow(0);
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break;
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#endif // USE_WEBSERVER
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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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