Merge pull request 'cloud_debug' (#78) from cloud_debug into master
Reviewed-on: https://git.shs.tools/SHS/pip/pulls/78
This commit was merged in pull request #78.
This commit is contained in:
@@ -25,23 +25,35 @@ PICloudClient::PICloudClient(const PIString & path, PIIODevice::DeviceMode mode)
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tcp.setRole(PICloud::TCP::Client);
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setName("cloud_client");
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is_connected = false;
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is_deleted = false;
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// setReopenEnabled(false);
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CONNECTL(ð, connected, [this](){opened_ = true; tcp.sendStart();});
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CONNECTU(&streampacker, packetReceiveEvent, this, _readed);
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CONNECTL(ð, disconnected, [this](bool){
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// piCoutObj << "disconnected";
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if (is_deleted) return;
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//piCoutObj << "eth disconnected";
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static_cast<PIThread*>(ð)->stop();
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opened_ = false;
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if (is_connected) disconnected();
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internalDisconnect();
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piMSleep(100);
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//piCoutObj << "eth disconnected done";
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});
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}
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PICloudClient::~PICloudClient() {
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eth.close();
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//piCoutObj << "~PICloudClient()";
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PIThread::stop();
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//eth.close();
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if (is_connected) disconnected();
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internalDisconnect();
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is_connected = false;
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close();
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stop();
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//piCoutObj << "~PICloudClient() closed";
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internalDisconnect();
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// stop(false);
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is_deleted = true;
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internalDisconnect();
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//piCoutObj << "~PICloudClient() done";
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}
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@@ -57,41 +69,44 @@ void PICloudClient::setKeepConnection(bool on) {
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bool PICloudClient::openDevice() {
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// piCout << "PICloudClient open device" << path();
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//piCoutObj << "open";// << path();
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bool op = eth.connect(PIEthernet::Address::resolve(path()), false);
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if (op) {
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mutex_buff.lock();
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mutex_connect.lock();
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eth.startThreadedRead();
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bool conn_ok = cond_connect.waitFor(mutex_buff, (int)eth.readTimeout());
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// piCoutObj << "conn_ok" << conn_ok;
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mutex_buff.unlock();
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//piCoutObj << "connecting...";
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bool conn_ok = cond_connect.waitFor(mutex_connect, (int)eth.readTimeout());
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//piCoutObj << "conn_ok" << conn_ok << is_connected;
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mutex_connect.unlock();
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if (!conn_ok) {
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mutex_connect.lock();
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eth.stop();
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eth.close();
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piMSleep(100);
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mutex_connect.unlock();
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}
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return isConnected();
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return is_connected;
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} else {
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eth.close();
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//eth.close();
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return false;
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}
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}
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bool PICloudClient::closeDevice() {
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PIThread::stop(false);
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//PIThread::stop();
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if (is_connected) {
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internalDisconnect();
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}
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eth.stop();
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if (eth.isOpened()) eth.close();
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eth.close();
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return true;
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}
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int PICloudClient::readDevice(void * read_to, int max_size) {
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if (is_deleted) return -1;
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//piCoutObj << "readDevice";
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if (!is_connected) return -1;
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if (!is_connected && eth.isClosed()) openDevice();
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int sz = -1;
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mutex_buff.lock();
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cond_buff.wait(mutex_buff, [this](){return !buff.isEmpty() || !is_connected;});
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@@ -101,11 +116,14 @@ int PICloudClient::readDevice(void * read_to, int max_size) {
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buff.remove(0, sz);
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}
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mutex_buff.unlock();
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if (!is_connected) opened_ = false;
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//piCoutObj << "readDevice done" << sz;
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return sz;
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}
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int PICloudClient::writeDevice(const void * data, int size) {
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if (is_deleted) return -1;
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// piCoutObj << "writeDevice";
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return tcp.sendData(PIByteArray(data, size));
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}
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@@ -119,25 +137,30 @@ void PICloudClient::internalDisconnect() {
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void PICloudClient::_readed(PIByteArray & ba) {
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mutex_buff.lock();
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if (is_deleted) return;
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//piCoutObj << "_readed";
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PIPair<PICloud::TCP::Type, PICloud::TCP::Role> hdr = tcp.parseHeader(ba);
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if (hdr.second == tcp.role()) {
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switch (hdr.first) {
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case PICloud::TCP::Connect:
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if (tcp.parseConnect(ba) == 1) {
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mutex_connect.lock();
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is_connected = true;
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connected();
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mutex_connect.unlock();
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cond_connect.notifyOne();
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}
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break;
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case PICloud::TCP::Disconnect:
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is_connected = false;
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static_cast<PIThread*>(ð)->stop();
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opened_ = false;
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eth.close();
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break;
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case PICloud::TCP::Data:
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if (is_connected) {
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mutex_buff.lock();
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buff.append(ba);
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mutex_buff.unlock();
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cond_buff.notifyOne();
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}
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break;
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@@ -146,7 +169,7 @@ void PICloudClient::_readed(PIByteArray & ba) {
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}
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//piCoutObj << "readed" << ba.toHex();
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}
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mutex_buff.unlock();
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while (buff.size_s() > threadedReadBufferSize()) piMSleep(100); // FIXME: sleep here is bad
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//piCoutObj << "_readed done";
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}
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@@ -26,10 +26,12 @@ PICloudServer::PICloudServer(const PIString & path, PIIODevice::DeviceMode mode)
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tcp.setServerName(server_name);
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setName("cloud_server__" + server_name);
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CONNECTU(&streampacker, packetReceiveEvent, this, _readed);
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CONNECTL(ð, connected, [this](){tcp.sendStart();});
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CONNECTL(ð, connected, [this](){opened_ = true; tcp.sendStart();});
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CONNECTL(ð, disconnected, [this](bool){
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piCoutObj << "disconnected";
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//piCoutObj << "disconnected";
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static_cast<PIThread*>(ð)->stop();
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opened_ = false;
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ping_timer.stop(false);
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piMSleep(100);
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});
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CONNECTL(&ping_timer, tickEvent, [this] (void *, int){
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@@ -57,14 +59,14 @@ PIVector<PICloudServer::Client *> PICloudServer::clients() const {
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bool PICloudServer::openDevice() {
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piCout << "PICloudServer open device" << path();
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//piCout << "PICloudServer open device" << path();
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bool op = eth.connect(PIEthernet::Address::resolve(path()), false);
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if (op) {
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eth.startThreadedRead();
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ping_timer.start(5000);
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return true;
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}
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ping_timer.stop();
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ping_timer.stop(false);
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eth.close();
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return false;
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}
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@@ -72,6 +74,7 @@ bool PICloudServer::openDevice() {
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bool PICloudServer::closeDevice() {
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eth.stop();
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ping_timer.stop(false);
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clients_mutex.lock();
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for (auto c : clients_) {
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c->close();
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@@ -87,7 +90,8 @@ bool PICloudServer::closeDevice() {
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int PICloudServer::readDevice(void * read_to, int max_size) {
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//piCoutObj << "readDevice";
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piMSleep(eth.readTimeout());
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if (!opened_) openDevice();
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else piMSleep(eth.readTimeout());
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return -1;
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}
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@@ -183,7 +187,7 @@ void PICloudServer::_readed(PIByteArray & ba) {
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if (oc) {
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tcp.sendDisconnected(id);
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} else {
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piCoutObj << "new Client" << id;
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//piCoutObj << "new Client" << id;
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Client * c = new Client(this, id);
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CONNECTU(c, deleted, this, clientDeleted);
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clients_mutex.lock();
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@@ -195,7 +199,7 @@ void PICloudServer::_readed(PIByteArray & ba) {
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} break;
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case PICloud::TCP::Disconnect: {
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uint id = tcp.parseDisconnect(ba);
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piCoutObj << "remove Client" << id;
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//piCoutObj << "remove Client" << id;
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clients_mutex.lock();
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Client * oc = index_clients.value(id, nullptr);
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clients_mutex.unlock();
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@@ -60,6 +60,7 @@ private:
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PIConditionVariable cond_buff;
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PIConditionVariable cond_connect;
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std::atomic_bool is_connected;
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std::atomic_bool is_deleted;
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};
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#endif // PICLOUDCLIENT_H
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@@ -25,7 +25,7 @@
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#include "pithread.h"
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#define WAIT_FOR_EXIT while (!PIKbdListener::exiting) piMSleep(PIP_MIN_MSLEEP*5);
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#define WAIT_FOR_EXIT while (!PIKbdListener::exiting) piMSleep(PIP_MIN_MSLEEP*5); // TODO: rewrite with condvar
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class PIP_EXPORT PIKbdListener: public PIThread
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@@ -700,8 +700,7 @@ PIObject::Deleter::Deleter() {
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stopping = started = posted = false;
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CONNECTL(&(PRIVATE->thread), started, [this](){proc();});
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PRIVATE->thread.startOnce();
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while (!started)
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piMSleep(1);
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while (!started) piMSleep(1);
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}
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@@ -710,8 +709,7 @@ PIObject::Deleter::~Deleter() {
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stopping = true;
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PRIVATE->cond_var.notifyAll();
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#ifndef WINDOWS
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while (PRIVATE->thread.isRunning())
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piMSleep(1);
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while (PRIVATE->thread.isRunning()) piMSleep(1);
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#endif
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deleteAll();
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//piCout << "~Deleter ok";
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@@ -774,12 +772,9 @@ void PIObject::Deleter::deleteObject(PIObject * o) {
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//piCout << "[Deleter] delete" << (uintptr_t)o << "...";
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if (o->isPIObject()) {
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//piCout << "[Deleter] delete" << (uintptr_t)o << "wait atomic ...";
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while (o->isInEvent()) {
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piMSleep(1);
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}
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while (o->isInEvent()) piMSleep(1);
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//piCout << "[Deleter] delete" << (uintptr_t)o << "wait atomic done";
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if (o->isPIObject())
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delete o;
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if (o->isPIObject()) delete o;
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}
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//piCout << "[Deleter] delete" << (uintptr_t)o << "done";
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}
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@@ -181,7 +181,7 @@ bool PIBinaryLog::threadedRead(uchar *readed, int size) {
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pausemutex.lock();
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if (is_pause) {
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pausemutex.unlock();
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piMSleep(100);
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piMSleep(100); // TODO: rewrite with condvar
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return false;
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} else if (pause_time > PISystemTime()) {
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startlogtime += pause_time;
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@@ -204,22 +204,22 @@ bool PIBinaryLog::threadedRead(uchar *readed, int size) {
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int dtc;
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if (is_started) {
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if (is_pause) {
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piMSleep(100);
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piMSleep(100); // TODO: rewrite with condvar
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return false;
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}
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if (delay > 0) {
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cdelay = delay * play_speed;
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dtc = int(cdelay) /100;
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cdelay = delay * play_speed;// TODO: rewrite with condvar
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dtc = int(cdelay) / 100;// TODO: rewrite with condvar
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if (play_speed <= 0.) dtc = 2;
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//piCout << play_speed << dtc;
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for (int j=0; j<dtc; j++) {
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cdelay = delay * play_speed;
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dtc = int(cdelay) /100;
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piMSleep(100);
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cdelay = delay * play_speed;// TODO: rewrite with condvar
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dtc = int(cdelay) / 100;// TODO: rewrite with condvar
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piMSleep(100);// TODO: rewrite with condvar
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if (play_speed <= 0.) {dtc = 2; j = 0;}
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//piCout << " " << play_speed << dtc << j;
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}
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cdelay = cdelay - dtc*100;
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cdelay = cdelay - dtc*100;// TODO: rewrite with condvar
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PISystemTime::fromMilliseconds(cdelay).sleep();
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}
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} else is_started = true;
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@@ -228,7 +228,7 @@ bool PIBinaryLog::threadedRead(uchar *readed, int size) {
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case PlayStaticDelay:
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if (is_started) {
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if (is_pause) {
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piMSleep(100);
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piMSleep(100);// TODO: rewrite with condvar
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return false;
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}
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play_delay.sleep();
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@@ -239,7 +239,7 @@ void PIIODevice::check_start(void * data, int delim) {
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//cout << "check " << tread_started_ << endl;
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if (open()) {
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thread_started_ = true;
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timer.stop();
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timer.stop(false);
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}
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}
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4
main.cpp
4
main.cpp
@@ -32,8 +32,8 @@ int main(int argc, char * argv[]) {
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piCout << "[Client] data:" << str;
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if (str == "ping_S") c.write(PIString("pong_S").toByteArray());
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}));
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CONNECTL(&c, connected, ([&](){piCout << "connected";}));
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CONNECTL(&c, disconnected, ([&](){piCout << "disconnected";}));
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CONNECTL(&c, connected, ([](){piCout << "connected";}));
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CONNECTL(&c, disconnected, ([](){piCout << "disconnected";}));
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CONNECTL(&s, newConnection, ([&](PICloudServer::Client * cl){
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piCout << "[Server] new client:" << cl;
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clients << cl;
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