Files
ETcontroller_PRO/lib/SENECA/S50140_Driver.cpp
2025-07-12 23:00:21 +02:00

114 lines
2.9 KiB
C++

#include <S50140_Driver.h>
namespace drivers
{
S50140::S50140(drivers::MODBUS &bus, const uint8_t address) : m_bus(bus), m_address(address)
{
}
S50140::~S50140()
{
}
const S50140::powerinfo_t S50140::getAll()
{
powerinfo_t info;
info.v = getV();
info.a = getA();
info.pAct = getPact();
info.pApp = getPapp();
info.pRea = getPrea();
info.f = getF();
info.whTot = getWhTot();
info.whPar = getWhPar();
return info;
}
const float_t S50140::getV()
{
return readFloatReg(REG_V);
}
const float_t S50140::getA()
{
return readFloatReg(REG_A);
}
const float_t S50140::getPact()
{
return readFloatReg(REG_Pact);
}
const float_t S50140::getPapp()
{
return readFloatReg(REG_Papp);
}
const float_t S50140::getPrea()
{
return readFloatReg(REG_Prea);
}
const float_t S50140::getF()
{
return readFloatReg(REG_Freq);
}
const float_t S50140::getWhTot()
{
return readFloatReg(REG_WhTot);
}
const float_t S50140::getWhPar()
{
return readFloatReg(REG_WhPart);
}
void S50140::resetTotalCounters()
{
uint8_t retries(0);
const uint16_t resetAll = 0x0000;
while (retries++ < maxRetries)
{
if (m_bus.writeRegister(m_address, REG_TotCount, resetAll))
return;
LOG_ERROR("Unable to Reset Powermeter Total Counters, device", m_address);
delay(10);
}
return;
}
void S50140::resetPartialCounters()
{
uint8_t retries(0);
const uint16_t resetAll = 0x0A03;
const uint16_t stopAll = 0x0A02;
const uint16_t startAll = 0x0A01;
while (retries++ < maxRetries)
{
bool ok(true);
ok &= m_bus.writeRegister(m_address, REG_TotCount, stopAll);
delay(10);
ok &= m_bus.writeRegister(m_address, REG_TotCount, resetAll);
delay(10);
ok &= m_bus.writeRegister(m_address, REG_TotCount, startAll);
if (ok)
return;
LOG_ERROR("Unable to Reset Powermeter Partial Counters, device", m_address);
delay(10);
}
return;
}
float_t S50140::readFloatReg(const uint16_t reg)
{
uint8_t retries(0);
std::vector<uint16_t> values;
while (retries++ < maxRetries)
{
if (m_bus.readHoldingRegisters(m_address, reg, dataWords, values) && values.size() == dataWords)
{
floatval_t fv; // potrebbe essere il contrario, vedremo
fv.hi = values[0]; // magari va invertita ancora l'endianness
fv.lo = values[1];
return fv.f;
}
LOG_ERROR("Unable to Read Powermeter values, device", m_address);
}
return MAXFLOAT;
}
}