Add libgpiod support to libnymea-gpio

This commit is contained in:
Simon Stürz 2025-12-19 11:33:46 +01:00
parent f151646295
commit 4059bb0172
8 changed files with 414 additions and 5 deletions

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@ -6,8 +6,10 @@ Standards-Version: 4.6.0
Vcs-Git: https://github.com/nymea/nymea-gpio.git Vcs-Git: https://github.com/nymea/nymea-gpio.git
Build-Depends: debhelper, Build-Depends: debhelper,
dpkg-dev, dpkg-dev,
pkg-config,
qt5-qmake, qt5-qmake,
qtbase5-dev, qtbase5-dev,
libgpiod-dev,
qtbase5-dev-tools qtbase5-dev-tools
@ -38,6 +40,7 @@ Multi-Arch: same
Depends: ${shlibs:Depends}, Depends: ${shlibs:Depends},
${misc:Depends}, ${misc:Depends},
pkg-config, pkg-config,
libgpiod-dev,
libnymea-gpio (= ${binary:Version}) libnymea-gpio (= ${binary:Version})
Description: Qt based library for GPIO interaction - development files Description: Qt based library for GPIO interaction - development files
Development files for Qt based GPIO library. Development files for Qt based GPIO library.

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@ -6,7 +6,9 @@ Standards-Version: 4.7.2
Vcs-Git: https://github.com/nymea/nymea-gpio.git Vcs-Git: https://github.com/nymea/nymea-gpio.git
Build-Depends: debhelper, Build-Depends: debhelper,
dpkg-dev, dpkg-dev,
pkg-config,
qt6-base-dev, qt6-base-dev,
libgpiod-dev,
qt6-base-dev-tools, qt6-base-dev-tools,
@ -37,6 +39,7 @@ Multi-Arch: same
Depends: ${shlibs:Depends}, Depends: ${shlibs:Depends},
${misc:Depends}, ${misc:Depends},
pkg-config, pkg-config,
libgpiod-dev,
libnymea-gpio (= ${binary:Version}) libnymea-gpio (= ${binary:Version})
Description: Qt based library for GPIO interaction - development files Description: Qt based library for GPIO interaction - development files
Development files for Qt based GPIO library. Development files for Qt based GPIO library.

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@ -126,14 +126,100 @@
#include "gpio.h" #include "gpio.h"
#include <QFile>
#include <QTextStream>
#ifndef NYMEA_GPIO_USE_SYSFS
#include <errno.h>
#include <gpiod.h>
#include <string.h>
#endif
Q_LOGGING_CATEGORY(dcGpio, "Gpio") Q_LOGGING_CATEGORY(dcGpio, "Gpio")
#ifndef NYMEA_GPIO_USE_SYSFS
namespace {
constexpr const char *kGpioConsumer = "nymea-gpio";
bool readIntFile(const QString &path, int *value)
{
QFile file(path);
if (!file.open(QIODevice::ReadOnly | QIODevice::Text))
return false;
const QByteArray data = file.readAll();
bool ok = false;
const int parsed = QString::fromLatin1(data).trimmed().toInt(&ok);
if (!ok)
return false;
*value = parsed;
return true;
}
bool resolveLineFromSysfs(int gpioNumber, QString *chipName, unsigned int *offset)
{
QDir gpioDir("/sys/class/gpio");
if (!gpioDir.exists())
return false;
const QStringList entries = gpioDir.entryList(QStringList() << "gpiochip*", QDir::Dirs | QDir::NoDotAndDotDot);
for (const QString &entry : entries) {
int base = 0;
int ngpio = 0;
if (!readIntFile(gpioDir.filePath(entry + "/base"), &base) || !readIntFile(gpioDir.filePath(entry + "/ngpio"), &ngpio)) {
continue;
}
if (gpioNumber >= base && gpioNumber < base + ngpio) {
*chipName = entry;
*offset = static_cast<unsigned int>(gpioNumber - base);
return true;
}
}
return false;
}
bool resolveLineSequential(int gpioNumber, QString *chipName, unsigned int *offset)
{
if (gpioNumber < 0)
return false;
gpiod_chip_iter *iter = gpiod_chip_iter_new();
if (!iter)
return false;
gpiod_chip *chip = nullptr;
unsigned int base = 0;
gpiod_foreach_chip(iter, chip)
{
const unsigned int numLines = gpiod_chip_num_lines(chip);
if (static_cast<unsigned int>(gpioNumber) < base + numLines) {
*chipName = QString::fromLatin1(gpiod_chip_name(chip));
*offset = static_cast<unsigned int>(gpioNumber) - base;
gpiod_chip_iter_free(iter);
return true;
}
base += numLines;
}
gpiod_chip_iter_free(iter);
return false;
}
} // namespace
#endif
/*! Constructs a Gpio object to represent a GPIO with the given \a gpio number and \a parent. */ /*! Constructs a Gpio object to represent a GPIO with the given \a gpio number and \a parent. */
Gpio::Gpio(int gpio, QObject *parent) Gpio::Gpio(int gpio, QObject *parent)
: QObject(parent) : QObject(parent)
, m_gpio(gpio) , m_gpio(gpio)
, m_direction(Gpio::DirectionInvalid) , m_direction(Gpio::DirectionInvalid)
#ifdef NYMEA_GPIO_USE_SYSFS
, m_gpioDirectory(QDir(QString("/sys/class/gpio/gpio%1").arg(QString::number(gpio)))) , m_gpioDirectory(QDir(QString("/sys/class/gpio/gpio%1").arg(QString::number(gpio))))
#endif
{ {
qRegisterMetaType<Gpio::Value>(); qRegisterMetaType<Gpio::Value>();
} }
@ -144,16 +230,33 @@ Gpio::~Gpio()
unexportGpio(); unexportGpio();
} }
/*! Returns true if the directories \tt {/sys/class/gpio} and \tt {/sys/class/gpio/export} do exist. */ /*! Returns true if GPIO support is available on this system. */
bool Gpio::isAvailable() bool Gpio::isAvailable()
{ {
#ifdef NYMEA_GPIO_USE_SYSFS
return QFile("/sys/class/gpio/export").exists(); return QFile("/sys/class/gpio/export").exists();
#else
gpiod_chip_iter *iter = gpiod_chip_iter_new();
if (!iter)
return false;
gpiod_chip *chip = gpiod_chip_iter_next(iter);
const bool available = chip != nullptr;
gpiod_chip_iter_free(iter);
return available;
#endif
} }
/*! Returns the directory \tt {/sys/class/gpio/gpio<number>} of this Gpio. */ /*! Returns the GPIO directory for sysfs builds or the gpiochip device path for libgpiod builds. */
QString Gpio::gpioDirectory() const QString Gpio::gpioDirectory() const
{ {
#ifdef NYMEA_GPIO_USE_SYSFS
return m_gpioDirectory.canonicalPath(); return m_gpioDirectory.canonicalPath();
#else
if (m_chipName.isEmpty())
return QString();
return QString("/dev/%1").arg(m_chipName);
#endif
} }
/*! Returns the number of this Gpio. /*! Returns the number of this Gpio.
@ -164,10 +267,11 @@ int Gpio::gpioNumber() const
return m_gpio; return m_gpio;
} }
/*! Returns true if this Gpio could be exported in the system file \tt {/sys/class/gpio/export}. If this Gpio is already exported, this function will return true. */ /*! Returns true if this Gpio could be prepared for use. If this Gpio is already prepared, this function will return true. */
bool Gpio::exportGpio() bool Gpio::exportGpio()
{ {
qCDebug(dcGpio()) << "Export GPIO" << m_gpio; qCDebug(dcGpio()) << "Export GPIO" << m_gpio;
#ifdef NYMEA_GPIO_USE_SYSFS
// Check if already exported // Check if already exported
if (m_gpioDirectory.exists()) { if (m_gpioDirectory.exists()) {
qCDebug(dcGpio()) << "GPIO" << m_gpio << "already exported."; qCDebug(dcGpio()) << "GPIO" << m_gpio << "already exported.";
@ -184,13 +288,41 @@ bool Gpio::exportGpio()
out << m_gpio; out << m_gpio;
exportFile.close(); exportFile.close();
return true; return true;
#else
if (m_line && m_chip) {
qCDebug(dcGpio()) << "GPIO" << m_gpio << "already opened.";
return true;
}
if (!resolveLine()) {
qCWarning(dcGpio()) << "Could not resolve GPIO" << m_gpio << "to a gpiochip.";
return false;
}
const QByteArray chipName = m_chipName.toLatin1();
m_chip = gpiod_chip_open_by_name(chipName.constData());
if (!m_chip) {
qCWarning(dcGpio()) << "Could not open gpiochip" << m_chipName << ":" << strerror(errno);
return false;
}
m_line = gpiod_chip_get_line(m_chip, m_lineOffset);
if (!m_line) {
qCWarning(dcGpio()) << "Could not get line" << m_lineOffset << "from" << m_chipName << ":" << strerror(errno);
gpiod_chip_close(m_chip);
m_chip = nullptr;
return false;
}
return true;
#endif
} }
/*! Returns true if this Gpio could be unexported in the system file \tt {/sys/class/gpio/unexport}. */ /*! Returns true if this Gpio could be released. */
bool Gpio::unexportGpio() bool Gpio::unexportGpio()
{ {
qCDebug(dcGpio()) << "Unexport GPIO" << m_gpio; qCDebug(dcGpio()) << "Unexport GPIO" << m_gpio;
#ifdef NYMEA_GPIO_USE_SYSFS
QFile unexportFile("/sys/class/gpio/unexport"); QFile unexportFile("/sys/class/gpio/unexport");
if (!unexportFile.open(QIODevice::WriteOnly | QIODevice::Text)) { if (!unexportFile.open(QIODevice::WriteOnly | QIODevice::Text)) {
qCWarning(dcGpio()) << "Could not open GPIO unexport file:" << unexportFile.errorString(); qCWarning(dcGpio()) << "Could not open GPIO unexport file:" << unexportFile.errorString();
@ -201,6 +333,22 @@ bool Gpio::unexportGpio()
out << m_gpio; out << m_gpio;
unexportFile.close(); unexportFile.close();
return true; return true;
#else
if (m_line) {
if (gpiod_line_is_requested(m_line))
gpiod_line_release(m_line);
m_line = nullptr;
}
if (m_chip) {
gpiod_chip_close(m_chip);
m_chip = nullptr;
}
m_direction = Gpio::DirectionInvalid;
m_edge = Gpio::EdgeNone;
return true;
#endif
} }
/*! Returns true if the \a direction of this GPIO could be set. \sa Gpio::Direction, */ /*! Returns true if the \a direction of this GPIO could be set. \sa Gpio::Direction, */
@ -212,6 +360,7 @@ bool Gpio::setDirection(Gpio::Direction direction)
return false; return false;
} }
#ifdef NYMEA_GPIO_USE_SYSFS
QFile directionFile(m_gpioDirectory.path() + QDir::separator() + "direction"); QFile directionFile(m_gpioDirectory.path() + QDir::separator() + "direction");
if (!directionFile.open(QIODevice::WriteOnly | QIODevice::Text)) { if (!directionFile.open(QIODevice::WriteOnly | QIODevice::Text)) {
qCWarning(dcGpio()) << "Could not open GPIO" << m_gpio << "direction file:" << directionFile.errorString(); qCWarning(dcGpio()) << "Could not open GPIO" << m_gpio << "direction file:" << directionFile.errorString();
@ -234,11 +383,35 @@ bool Gpio::setDirection(Gpio::Direction direction)
directionFile.close(); directionFile.close();
return true; return true;
#else
if (!m_line && !exportGpio()) {
qCWarning(dcGpio()) << "GPIO" << m_gpio << "is not available.";
return false;
}
int outputValue = 0;
if (m_line && gpiod_line_is_requested(m_line)) {
const int current = gpiod_line_get_value(m_line);
if (current >= 0)
outputValue = current;
}
if (!requestLine(direction, EdgeNone, outputValue)) {
qCWarning(dcGpio()) << "Could not request GPIO" << m_gpio << "direction" << direction << ":" << strerror(errno);
return false;
}
m_direction = direction;
if (direction == DirectionOutput)
m_edge = EdgeNone;
return true;
#endif
} }
/*! Returns the direction of this Gpio. */ /*! Returns the direction of this Gpio. */
Gpio::Direction Gpio::direction() Gpio::Direction Gpio::direction()
{ {
#ifdef NYMEA_GPIO_USE_SYSFS
QFile directionFile(m_gpioDirectory.path() + QDir::separator() + "direction"); QFile directionFile(m_gpioDirectory.path() + QDir::separator() + "direction");
if (!directionFile.open(QIODevice::ReadOnly | QIODevice::Text)) { if (!directionFile.open(QIODevice::ReadOnly | QIODevice::Text)) {
qCWarning(dcGpio()) << "Could not open GPIO" << m_gpio << "direction file:" << directionFile.fileName() << directionFile.errorString(); qCWarning(dcGpio()) << "Could not open GPIO" << m_gpio << "direction file:" << directionFile.fileName() << directionFile.errorString();
@ -259,6 +432,9 @@ Gpio::Direction Gpio::direction()
} }
return Gpio::DirectionInvalid; return Gpio::DirectionInvalid;
#else
return m_direction;
#endif
} }
/*! Returns true if the digital \a value of this Gpio could be set correctly. */ /*! Returns true if the digital \a value of this Gpio could be set correctly. */
@ -283,6 +459,7 @@ bool Gpio::setValue(Gpio::Value value)
return false; return false;
} }
#ifdef NYMEA_GPIO_USE_SYSFS
QFile valueFile(m_gpioDirectory.path() + QDir::separator() + "value"); QFile valueFile(m_gpioDirectory.path() + QDir::separator() + "value");
if (!valueFile.open(QIODevice::WriteOnly | QIODevice::Text)) { if (!valueFile.open(QIODevice::WriteOnly | QIODevice::Text)) {
qCWarning(dcGpio()) << "Could not open GPIO" << m_gpio << "value file:" << valueFile.errorString(); qCWarning(dcGpio()) << "Could not open GPIO" << m_gpio << "value file:" << valueFile.errorString();
@ -304,11 +481,29 @@ bool Gpio::setValue(Gpio::Value value)
valueFile.close(); valueFile.close();
return true; return true;
#else
if (!m_line || !gpiod_line_is_requested(m_line)) {
qCWarning(dcGpio()) << "GPIO" << m_gpio << "is not requested.";
return false;
}
const int physicalValue = logicalToPhysicalValue(value);
if (physicalValue < 0)
return false;
if (gpiod_line_set_value(m_line, physicalValue) < 0) {
qCWarning(dcGpio()) << "Could not set GPIO" << m_gpio << "value:" << strerror(errno);
return false;
}
return true;
#endif
} }
/*! Returns the current digital value of this Gpio. */ /*! Returns the current digital value of this Gpio. */
Gpio::Value Gpio::value() Gpio::Value Gpio::value()
{ {
#ifdef NYMEA_GPIO_USE_SYSFS
QFile valueFile(m_gpioDirectory.path() + QDir::separator() + "value"); QFile valueFile(m_gpioDirectory.path() + QDir::separator() + "value");
if (!valueFile.open(QIODevice::ReadOnly | QIODevice::Text)) { if (!valueFile.open(QIODevice::ReadOnly | QIODevice::Text)) {
qCWarning(dcGpio()) << "Could not open GPIO" << m_gpio << "value file:" << valueFile.errorString(); qCWarning(dcGpio()) << "Could not open GPIO" << m_gpio << "value file:" << valueFile.errorString();
@ -327,6 +522,20 @@ Gpio::Value Gpio::value()
} }
return Gpio::ValueInvalid; return Gpio::ValueInvalid;
#else
if (!m_line || !gpiod_line_is_requested(m_line)) {
qCWarning(dcGpio()) << "GPIO" << m_gpio << "is not requested.";
return Gpio::ValueInvalid;
}
const int value = gpiod_line_get_value(m_line);
if (value < 0) {
qCWarning(dcGpio()) << "Could not read GPIO" << m_gpio << "value:" << strerror(errno);
return Gpio::ValueInvalid;
}
return physicalToLogicalValue(value);
#endif
} }
/*! This method allows to invert the logic of this Gpio. Returns true, if the GPIO could be set \a activeLow. */ /*! This method allows to invert the logic of this Gpio. Returns true, if the GPIO could be set \a activeLow. */
@ -334,6 +543,7 @@ bool Gpio::setActiveLow(bool activeLow)
{ {
qCDebug(dcGpio()) << "Set GPIO" << m_gpio << "active low" << activeLow; qCDebug(dcGpio()) << "Set GPIO" << m_gpio << "active low" << activeLow;
#ifdef NYMEA_GPIO_USE_SYSFS
QFile activeLowFile(m_gpioDirectory.path() + QDir::separator() + "active_low"); QFile activeLowFile(m_gpioDirectory.path() + QDir::separator() + "active_low");
if (!activeLowFile.open(QIODevice::WriteOnly | QIODevice::Text)) { if (!activeLowFile.open(QIODevice::WriteOnly | QIODevice::Text)) {
qCWarning(dcGpio()) << "Could not open GPIO" << m_gpio << "active_low file:" << activeLowFile.errorString(); qCWarning(dcGpio()) << "Could not open GPIO" << m_gpio << "active_low file:" << activeLowFile.errorString();
@ -349,11 +559,16 @@ bool Gpio::setActiveLow(bool activeLow)
activeLowFile.close(); activeLowFile.close();
return true; return true;
#else
m_activeLow = activeLow;
return true;
#endif
} }
/*! Returns true if the logic of this Gpio is inverted (1 = low, 0 = high). */ /*! Returns true if the logic of this Gpio is inverted (1 = low, 0 = high). */
bool Gpio::activeLow() bool Gpio::activeLow()
{ {
#ifdef NYMEA_GPIO_USE_SYSFS
QFile activeLowFile(m_gpioDirectory.path() + QDir::separator() + "active_low"); QFile activeLowFile(m_gpioDirectory.path() + QDir::separator() + "active_low");
if (!activeLowFile.open(QIODevice::ReadOnly | QIODevice::Text)) { if (!activeLowFile.open(QIODevice::ReadOnly | QIODevice::Text)) {
qCWarning(dcGpio()) << "Could not open GPIO" << m_gpio << "active_low file:" << activeLowFile.errorString(); qCWarning(dcGpio()) << "Could not open GPIO" << m_gpio << "active_low file:" << activeLowFile.errorString();
@ -369,6 +584,9 @@ bool Gpio::activeLow()
return true; return true;
return false; return false;
#else
return m_activeLow;
#endif
} }
/*! Returns true if the \a edge of this GPIO could be set correctly. The \a edge parameter specifies, when an interrupt occurs. */ /*! Returns true if the \a edge of this GPIO could be set correctly. The \a edge parameter specifies, when an interrupt occurs. */
@ -380,6 +598,7 @@ bool Gpio::setEdgeInterrupt(Gpio::Edge edge)
} }
qCDebug(dcGpio()) << "Set GPIO" << m_gpio << "edge interrupt" << edge; qCDebug(dcGpio()) << "Set GPIO" << m_gpio << "edge interrupt" << edge;
#ifdef NYMEA_GPIO_USE_SYSFS
QFile edgeFile(m_gpioDirectory.path() + QDir::separator() + "edge"); QFile edgeFile(m_gpioDirectory.path() + QDir::separator() + "edge");
if (!edgeFile.open(QIODevice::WriteOnly | QIODevice::Text)) { if (!edgeFile.open(QIODevice::WriteOnly | QIODevice::Text)) {
qCWarning(dcGpio()) << "Could not open GPIO" << m_gpio << "edge file:" << edgeFile.errorString(); qCWarning(dcGpio()) << "Could not open GPIO" << m_gpio << "edge file:" << edgeFile.errorString();
@ -404,11 +623,27 @@ bool Gpio::setEdgeInterrupt(Gpio::Edge edge)
edgeFile.close(); edgeFile.close();
return true; return true;
#else
if (!m_line && !exportGpio()) {
qCWarning(dcGpio()) << "GPIO" << m_gpio << "is not available.";
return false;
}
if (!requestLine(DirectionInput, edge, 0)) {
qCWarning(dcGpio()) << "Could not request GPIO" << m_gpio << "edge interrupt:" << strerror(errno);
return false;
}
m_direction = DirectionInput;
m_edge = edge;
return true;
#endif
} }
/*! Returns the edge interrupt of this Gpio. */ /*! Returns the edge interrupt of this Gpio. */
Gpio::Edge Gpio::edgeInterrupt() Gpio::Edge Gpio::edgeInterrupt()
{ {
#ifdef NYMEA_GPIO_USE_SYSFS
QFile edgeFile(m_gpioDirectory.path() + QDir::separator() + "edge"); QFile edgeFile(m_gpioDirectory.path() + QDir::separator() + "edge");
if (!edgeFile.open(QIODevice::ReadOnly | QIODevice::Text)) { if (!edgeFile.open(QIODevice::ReadOnly | QIODevice::Text)) {
qCWarning(dcGpio()) << "Could not open GPIO" << m_gpio << "edge file:" << edgeFile.errorString(); qCWarning(dcGpio()) << "Could not open GPIO" << m_gpio << "edge file:" << edgeFile.errorString();
@ -431,8 +666,88 @@ Gpio::Edge Gpio::edgeInterrupt()
} }
return Gpio::EdgeNone; return Gpio::EdgeNone;
#else
return m_edge;
#endif
} }
#ifndef NYMEA_GPIO_USE_SYSFS
bool Gpio::resolveLine()
{
if (!m_chipName.isEmpty())
return true;
if (resolveLineFromSysfs(m_gpio, &m_chipName, &m_lineOffset))
return true;
if (resolveLineSequential(m_gpio, &m_chipName, &m_lineOffset))
return true;
return false;
}
bool Gpio::requestLine(Gpio::Direction direction, Gpio::Edge edge, int outputValue)
{
if (!m_line)
return false;
if (gpiod_line_is_requested(m_line))
gpiod_line_release(m_line);
int ret = 0;
if (direction == DirectionOutput) {
ret = gpiod_line_request_output_flags(m_line, kGpioConsumer, 0, outputValue);
} else {
switch (edge) {
case EdgeRising:
ret = gpiod_line_request_rising_edge_events_flags(m_line, kGpioConsumer, 0);
break;
case EdgeFalling:
ret = gpiod_line_request_falling_edge_events_flags(m_line, kGpioConsumer, 0);
break;
case EdgeBoth:
ret = gpiod_line_request_both_edges_events_flags(m_line, kGpioConsumer, 0);
break;
case EdgeNone:
ret = gpiod_line_request_input_flags(m_line, kGpioConsumer, 0);
break;
}
}
return ret == 0;
}
int Gpio::logicalToPhysicalValue(Gpio::Value value) const
{
switch (value) {
case ValueLow:
return m_activeLow ? 1 : 0;
case ValueHigh:
return m_activeLow ? 0 : 1;
default:
return -1;
}
}
Gpio::Value Gpio::physicalToLogicalValue(int value) const
{
if (value < 0)
return ValueInvalid;
const bool physicalHigh = value != 0;
const bool logicalHigh = m_activeLow ? !physicalHigh : physicalHigh;
return logicalHigh ? ValueHigh : ValueLow;
}
int Gpio::eventFd() const
{
if (!m_line)
return -1;
return gpiod_line_event_get_fd(m_line);
}
#endif
/*! Prints the given \a gpio to \a debug. */ /*! Prints the given \a gpio to \a debug. */
QDebug operator<<(QDebug debug, Gpio *gpio) QDebug operator<<(QDebug debug, Gpio *gpio)
{ {

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@ -35,10 +35,17 @@
Q_DECLARE_LOGGING_CATEGORY(dcGpio) Q_DECLARE_LOGGING_CATEGORY(dcGpio)
class GpioMonitor;
struct gpiod_chip;
struct gpiod_line;
class Gpio : public QObject class Gpio : public QObject
{ {
Q_OBJECT Q_OBJECT
friend class GpioMonitor;
public: public:
enum Direction { enum Direction {
DirectionInvalid, DirectionInvalid,
@ -86,9 +93,25 @@ public:
Gpio::Edge edgeInterrupt(); Gpio::Edge edgeInterrupt();
private: private:
#ifndef NYMEA_GPIO_USE_SYSFS
bool resolveLine();
bool requestLine(Gpio::Direction direction, Gpio::Edge edge, int outputValue);
int logicalToPhysicalValue(Gpio::Value value) const;
Gpio::Value physicalToLogicalValue(int value) const;
int eventFd() const;
QString m_chipName;
unsigned int m_lineOffset = 0;
gpiod_chip *m_chip = nullptr;
gpiod_line *m_line = nullptr;
bool m_activeLow = false;
Gpio::Edge m_edge = Gpio::EdgeNone;
#endif
int m_gpio = 0; int m_gpio = 0;
Gpio::Direction m_direction = Gpio::DirectionOutput; Gpio::Direction m_direction = Gpio::DirectionOutput;
#ifdef NYMEA_GPIO_USE_SYSFS
QDir m_gpioDirectory; QDir m_gpioDirectory;
#endif
}; };
QDebug operator<<(QDebug debug, Gpio *gpio); QDebug operator<<(QDebug debug, Gpio *gpio);

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@ -70,12 +70,20 @@
#include "gpiomonitor.h" #include "gpiomonitor.h"
#ifndef NYMEA_GPIO_USE_SYSFS
#include <errno.h>
#include <gpiod.h>
#include <string.h>
#endif
/*! Constructs a \l{GpioMonitor} object with the given \a gpio number and \a parent. */ /*! Constructs a \l{GpioMonitor} object with the given \a gpio number and \a parent. */
GpioMonitor::GpioMonitor(int gpio, QObject *parent) GpioMonitor::GpioMonitor(int gpio, QObject *parent)
: QObject(parent) : QObject(parent)
, m_gpioNumber(gpio) , m_gpioNumber(gpio)
{ {
#ifdef NYMEA_GPIO_USE_SYSFS
m_valueFile.setFileName("/sys/class/gpio/gpio" + QString::number(m_gpioNumber) + "/value"); m_valueFile.setFileName("/sys/class/gpio/gpio" + QString::number(m_gpioNumber) + "/value");
#endif
} }
/*! Returns true if this \l{GpioMonitor} could be enabled successfully. With the \a activeLow parameter the values can be inverted. /*! Returns true if this \l{GpioMonitor} could be enabled successfully. With the \a activeLow parameter the values can be inverted.
@ -91,6 +99,7 @@ bool GpioMonitor::enable(bool activeLow, Gpio::Edge edgeInterrupt)
return false; return false;
} }
#ifdef NYMEA_GPIO_USE_SYSFS
if (!m_valueFile.open(QFile::ReadOnly)) { if (!m_valueFile.open(QFile::ReadOnly)) {
qWarning(dcGpio()) << "GpioMonitor: Could not open value file for gpio monitor" << m_gpio->gpioNumber(); qWarning(dcGpio()) << "GpioMonitor: Could not open value file for gpio monitor" << m_gpio->gpioNumber();
return false; return false;
@ -98,6 +107,23 @@ bool GpioMonitor::enable(bool activeLow, Gpio::Edge edgeInterrupt)
m_notifier = new QSocketNotifier(m_valueFile.handle(), QSocketNotifier::Exception); m_notifier = new QSocketNotifier(m_valueFile.handle(), QSocketNotifier::Exception);
connect(m_notifier, &QSocketNotifier::activated, this, &GpioMonitor::readyReady); connect(m_notifier, &QSocketNotifier::activated, this, &GpioMonitor::readyReady);
#else
m_eventFd = m_gpio->eventFd();
if (m_eventFd < 0) {
qCWarning(dcGpio()) << "GpioMonitor: Could not get event file descriptor for GPIO" << m_gpio->gpioNumber();
return false;
}
m_notifier = new QSocketNotifier(m_eventFd, QSocketNotifier::Read);
connect(m_notifier, &QSocketNotifier::activated, this, &GpioMonitor::readyReady);
const Gpio::Value initialValue = m_gpio->value();
if (initialValue == Gpio::ValueInvalid) {
qCWarning(dcGpio()) << "GpioMonitor: Could not read initial value for GPIO" << m_gpio->gpioNumber();
return false;
}
m_currentValue = (initialValue == Gpio::ValueHigh);
#endif
qCDebug(dcGpio()) << "Socket notififier started"; qCDebug(dcGpio()) << "Socket notififier started";
m_notifier->setEnabled(true); m_notifier->setEnabled(true);
@ -113,7 +139,11 @@ void GpioMonitor::disable()
m_notifier = 0; m_notifier = 0;
m_gpio = 0; m_gpio = 0;
#ifdef NYMEA_GPIO_USE_SYSFS
m_valueFile.close(); m_valueFile.close();
#else
m_eventFd = -1;
#endif
} }
/*! Returns true if this \l{GpioMonitor} is running. */ /*! Returns true if this \l{GpioMonitor} is running. */
@ -141,6 +171,7 @@ void GpioMonitor::readyReady(const int &ready)
{ {
Q_UNUSED(ready) Q_UNUSED(ready)
#ifdef NYMEA_GPIO_USE_SYSFS
m_valueFile.seek(0); m_valueFile.seek(0);
QByteArray data = m_valueFile.readAll(); QByteArray data = m_valueFile.readAll();
@ -155,4 +186,22 @@ void GpioMonitor::readyReady(const int &ready)
m_currentValue = value; m_currentValue = value;
emit valueChanged(value); emit valueChanged(value);
#else
if (m_eventFd < 0)
return;
gpiod_line_event event;
if (gpiod_line_event_read_fd(m_eventFd, &event) < 0) {
qCWarning(dcGpio()) << "GpioMonitor: Could not read GPIO event:" << strerror(errno);
return;
}
const Gpio::Value current = m_gpio ? m_gpio->value() : Gpio::ValueInvalid;
if (current == Gpio::ValueInvalid)
return;
const bool value = current == Gpio::ValueHigh;
m_currentValue = value;
emit valueChanged(value);
#endif
} }

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@ -56,6 +56,9 @@ private:
QSocketNotifier *m_notifier; QSocketNotifier *m_notifier;
QFile m_valueFile; QFile m_valueFile;
bool m_currentValue; bool m_currentValue;
#ifndef NYMEA_GPIO_USE_SYSFS
int m_eventFd = -1;
#endif
signals: signals:
void valueChanged(const bool &value); void valueChanged(const bool &value);

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@ -13,6 +13,12 @@ SOURCES += \
gpiobutton.cpp \ gpiobutton.cpp \
gpiomonitor.cpp gpiomonitor.cpp
!contains(CONFIG, nymea_gpio_sysfs) {
CONFIG += link_pkgconfig
PKGCONFIG += libgpiod
QMAKE_PKGCONFIG_REQUIRES += libgpiod
}
target.path = $$[QT_INSTALL_LIBS] target.path = $$[QT_INSTALL_LIBS]
INSTALLS += target INSTALLS += target

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@ -11,6 +11,13 @@ greaterThan(QT_MAJOR_VERSION, 5) {
DEFINES += QT_DISABLE_DEPRECATED_UP_TO=0x050F00 DEFINES += QT_DISABLE_DEPRECATED_UP_TO=0x050F00
} }
contains(CONFIG, nymea_gpio_sysfs) {
message("Building with legacy sysfs GPIO backend")
DEFINES += NYMEA_GPIO_USE_SYSFS
} else {
message("Building with libgpiod GPIO backend")
}
QMAKE_CXXFLAGS += -Werror -g QMAKE_CXXFLAGS += -Werror -g
gcc { gcc {