added support for enhanced protocol

This commit is contained in:
john30
2018-05-13 20:26:39 +02:00
parent 12d5140605
commit d3120760bc
2 changed files with 125 additions and 41 deletions
+107 -19
View File
@@ -47,6 +47,17 @@ namespace ebusd {
#define POLLRDHUP 0
#endif
// ebusd enhanced protocol IDs:
//TODO use this:
#define ENH_INIT ((symbol_t)0x00)
#define ENH_RESETTED ((symbol_t)0x00)
#define ENH_SEND ((symbol_t)0x01)
#define ENH_RECEIVED ((symbol_t)0x01)
#define ENH_START ((symbol_t)0x02)
#define ENH_STARTED ((symbol_t)0x02)
#define ENH_FAILED ((symbol_t)0x82)
Device::~Device() {
close();
}
@@ -55,8 +66,13 @@ Device* Device::create(const char* name, bool checkDevice, bool readOnly, bool i
if (strchr(name, '/') == nullptr && strchr(name, ':') != nullptr) {
char* in = strdup(name);
bool udp = false;
bool enhanced = false;
char* addrpos = in;
char* portpos = strchr(addrpos, ':');
if (portpos >= addrpos+3 && strncmp(addrpos, "enh", 3) == 0) {
enhanced = true;
addrpos += 3;
}
if (portpos == addrpos+3 && (strncmp(addrpos, "tcp", 3) == 0 || (udp=(strncmp(addrpos, "udp", 3) == 0)))) {
addrpos += 4;
portpos = strchr(addrpos, ':');
@@ -85,7 +101,7 @@ Device* Device::create(const char* name, bool checkDevice, bool readOnly, bool i
free(in);
address.sin_family = AF_INET;
address.sin_port = (in_port_t)htons((uint16_t)port);
return new NetworkDevice(name, address, readOnly, initialSend, udp);
return new NetworkDevice(name, address, readOnly, initialSend, udp, enhanced);
}
return new SerialDevice(name, checkDevice, readOnly, initialSend);
}
@@ -111,7 +127,7 @@ result_t Device::send(symbol_t value) {
if (!isValid()) {
return RESULT_ERR_DEVICE;
}
if (m_readOnly || write(value) != 1) {
if (m_readOnly || !write(value)) {
return RESULT_ERR_SEND;
}
if (m_listener != nullptr) {
@@ -170,19 +186,21 @@ result_t Device::recv(unsigned int timeout, symbol_t* value, ArbitrationState* a
}
// directly read byte from device
ssize_t nbytes = read(value);
if (nbytes == 0) {
return RESULT_ERR_EOF;
}
if (nbytes < 0) {
if (!read(value, m_enhancedProto ? arbitrationState : nullptr)) {
close();
return RESULT_ERR_DEVICE;
}
if (*value != SYN || m_arbitrationMaster == SYN) {
ArbitrationState prevState = m_enhancedProto && arbitrationState ? *arbitrationState : as_none;
if (*value != SYN || m_arbitrationMaster == SYN || m_enhancedProto) {
if (m_listener != nullptr) {
m_listener->notifyDeviceData(*value, true);
}
if (m_arbitrationMaster != SYN) {
if (m_enhancedProto) {
if (arbitrationState && *arbitrationState != prevState) {
m_arbitrationMaster = SYN;
m_arbitrationCheck = false;
}
} else if (m_arbitrationMaster != SYN) {
if (m_arbitrationCheck) {
*arbitrationState = *value == m_arbitrationMaster ? as_won : as_lost;
m_arbitrationMaster = SYN;
@@ -193,11 +211,11 @@ result_t Device::recv(unsigned int timeout, symbol_t* value, ArbitrationState* a
}
return RESULT_OK;
}
ssize_t wcnt = write(m_arbitrationMaster); // send as fast as possible
bool wrote = write(m_arbitrationMaster); // send as fast as possible
if (m_listener != nullptr) {
m_listener->notifyDeviceData(*value, true);
}
if (wcnt != 1) {
if (!wrote) {
*arbitrationState = as_error;
m_arbitrationMaster = SYN;
m_arbitrationCheck = false;
@@ -211,6 +229,35 @@ result_t Device::recv(unsigned int timeout, symbol_t* value, ArbitrationState* a
return RESULT_OK;
}
result_t Device::startArbitration(symbol_t masterAddress) {
if (m_arbitrationCheck) {
return RESULT_ERR_DUPLICATE;
}
if (m_readOnly) {
return RESULT_ERR_SEND;
}
m_arbitrationCheck = false;
m_arbitrationMaster = masterAddress;
if (m_enhancedProto) {
if (!write(masterAddress, true)) {
m_arbitrationMaster = SYN;
m_arbitrationCheck = false;
return RESULT_ERR_SEND;
}
m_arbitrationCheck = true;
return RESULT_OK;
}
return RESULT_OK;
}
bool Device::write(symbol_t value, bool startArbitration) {
return ::write(m_fd, &value, 1) == 1;
}
bool Device::read(symbol_t* value, ArbitrationState* arbitrationState) {
return ::read(m_fd, value, 1) == 1;
}
result_t SerialDevice::open() {
if (m_fd != -1) {
@@ -266,7 +313,7 @@ result_t SerialDevice::open() {
// set serial device into blocking mode
fcntl(m_fd, F_SETFL, fcntl(m_fd, F_GETFL) & ~O_NONBLOCK);
if (m_initialSend && write(ESC) != 1) {
if (m_initialSend && !write(ESC)) {
return RESULT_ERR_SEND;
}
return RESULT_OK;
@@ -337,7 +384,7 @@ result_t NetworkDevice::open() {
}
}
m_bufLen = 0;
if (m_initialSend && write(ESC) != 1) {
if (m_initialSend && !write(ESC)) {
return RESULT_ERR_SEND;
}
return RESULT_OK;
@@ -359,29 +406,70 @@ bool NetworkDevice::available() {
return m_buffer && m_bufLen > 0;
}
ssize_t NetworkDevice::write(symbol_t value) {
bool NetworkDevice::write(symbol_t value, bool startArbitration) {
m_bufLen = 0; // flush read buffer
if (m_bufSize > 0 && m_enhancedProto) {
m_buffer[0] = startArbitration ? ENH_START : ENH_SEND;
m_buffer[1] = value;
return ::write(m_fd, m_buffer, 2) == 2;
}
return Device::write(value);
}
ssize_t NetworkDevice::read(symbol_t* value) {
bool NetworkDevice::read(symbol_t* value, ArbitrationState* arbitrationState) {
if (available()) {
*value = m_buffer[m_bufPos];
m_bufPos = (m_bufPos+1)%m_bufSize;
m_bufLen--;
return 1;
return true;
}
if (m_bufSize > 0) {
ssize_t size = ::read(m_fd, m_buffer, m_bufSize);
if (size <= 0) {
return size;
return false;
}
if (m_enhancedProto) {
symbol_t* buf = m_buffer;
m_bufPos = 0;
m_bufLen = 0;
while (size > 0) {
buf++;
size--;
switch (*buf) {
case ENH_STARTED:
if (arbitrationState) {
*arbitrationState = as_won;
}
break;
case ENH_FAILED:
if (arbitrationState) {
*arbitrationState = as_error;
}
break;
case ENH_RECEIVED:
m_buffer[m_bufPos++] = *buf;
m_bufLen++;
break;
case ENH_RESETTED: // TODO
break;
default:
return false;
}
}
if (m_bufLen > 0) {
*value = m_buffer[0];
m_bufPos = 1;
m_bufLen--;
return true;
}
return false;
}
*value = m_buffer[0];
m_bufPos = 1;
m_bufLen = size-1;
return size;
return true;
}
return Device::read(value);
return Device::read(value, arbitrationState);
}
} // namespace ebusd
+18 -22
View File
@@ -79,10 +79,12 @@ class Device {
* @param checkDevice whether to regularly check the device availability (only for serial devices).
* @param readOnly whether to allow read access to the device only.
* @param initialSend whether to send an initial @a ESC symbol in @a open().
* @param enhancedProto whether the device supports the ebusd enhanced protocol.
*/
Device(const char* name, bool checkDevice, bool readOnly, bool initialSend)
: m_name(name), m_checkDevice(checkDevice), m_readOnly(readOnly), m_initialSend(initialSend), m_fd(-1),
m_listener(nullptr), m_arbitrationMaster(SYN), m_arbitrationCheck(false) {}
Device(const char* name, bool checkDevice, bool readOnly, bool initialSend, bool enhancedProto=false)
: m_name(name), m_checkDevice(checkDevice), m_readOnly(readOnly), m_initialSend(initialSend),
m_enhancedProto(enhancedProto), m_fd(-1), m_listener(nullptr), m_arbitrationMaster(SYN),
m_arbitrationCheck(false) {}
/**
* Destructor.
@@ -141,17 +143,7 @@ class Device {
* @param masterAddress the master address, or @a SYN to cancel a previous arbitration request.
* @return the result_t code.
*/
result_t startArbitration(symbol_t masterAddress) {
if (m_arbitrationCheck) {
return RESULT_ERR_DUPLICATE;
}
if (m_readOnly) {
return RESULT_ERR_SEND;
}
m_arbitrationCheck = false;
m_arbitrationMaster = masterAddress;
return RESULT_OK;
}
result_t startArbitration(symbol_t masterAddress);
bool isArbitrating() const { return m_arbitrationMaster != SYN; };
@@ -195,16 +187,16 @@ class Device {
/**
* Write a single byte.
* @param value the byte value to write.
* @return the number of bytes written, or -1 on error.
* @return true on success, false on error.
*/
virtual ssize_t write(symbol_t value) { return ::write(m_fd, &value, 1); }
virtual bool write(symbol_t value, bool startArbitration=false);
/**
* Read a single byte.
* @param value the reference in which the read byte value is stored.
* @return the number of bytes read, or -1 on error.
* @return true on success, false on error.
*/
virtual ssize_t read(symbol_t* value) { return ::read(m_fd, value, 1); }
virtual bool read(symbol_t* value, ArbitrationState* arbitrationState=nullptr);
/** the device name (e.g. "/dev/ttyUSB0" for serial, "127.0.0.1:1234" for network). */
const char* m_name;
@@ -218,6 +210,9 @@ class Device {
/** whether to send an initial @a ESC symbol in @a open(). */
const bool m_initialSend;
/** whether the device supports the ebusd enhanced protocol. */
const bool m_enhancedProto;
/** the opened file descriptor, or -1. */
int m_fd;
@@ -277,10 +272,11 @@ class NetworkDevice : public Device {
* @param readOnly whether to allow read access to the device only.
* @param initialSend whether to send an initial @a ESC symbol in @a open().
* @param udp true for UDP, false to TCP.
* @param enhancedProto whether the device supports the ebusd enhanced protocol.
*/
NetworkDevice(const char* name, const struct sockaddr_in& address, bool readOnly, bool initialSend,
bool udp)
: Device(name, true, readOnly, initialSend), m_address(address), m_udp(udp),
bool udp, bool enhancedProto=false)
: Device(name, true, readOnly, initialSend, enhancedProto), m_address(address), m_udp(udp),
m_buffer(nullptr), m_bufSize(0), m_bufLen(0), m_bufPos(0) {}
/**
@@ -309,10 +305,10 @@ class NetworkDevice : public Device {
bool available() override;
// @copydoc
ssize_t write(symbol_t value) override;
bool write(symbol_t value, bool startArbitration=false) override;
// @copydoc
ssize_t read(symbol_t* value) override;
bool read(symbol_t* value, ArbitrationState* arbitrationState=nullptr) override;
private: