mirror of
https://github.com/hyperion-project/hyperion.ng.git
synced 2025-03-01 10:33:28 +00:00
Stop LedDevice:write for disabled devices + Nanoleaf Fixes (#629)
* Handle Exceptions in main & Pythoninit * Have SSDPDiscover generic again * Have SSDPDiscover generic again * Change Info- to Debug logs as technical service messages * Nanoleaf - When switched on, ensure UDP mode * Include SQL Database in Cross-Compile instructions * Fix Clazy (QT code checker) and clang Warnings * Stop LedDevice:write for disabled device * Nanoleaf: Fix uint printfs * NanoLeaf: Fix indents to tabs * NanoLeaf - Add debug verbosity switches * Device switchability support, FileDevice with timestamp support * Nanoleaf Light Panels now support External Control V2 * Enhance LedDeviceFile by Timestamp + fix readyness * Stop color stream, if LedDevice disabled * Nanoleaf - remove switchability
This commit is contained in:
committed by
Paulchen Panther
parent
f917f0fceb
commit
ce7c99d2cd
@@ -8,6 +8,14 @@
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#include <QEventLoop>
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#include <QNetworkReply>
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//std includes
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#include <sstream>
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#include <iomanip>
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//
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static const bool verbose = false;
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static const bool verbose3 = false;
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// Controller configuration settings
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static const char CONFIG_ADDRESS[] = "output";
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//static const char CONFIG_PORT[] = "port";
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@@ -45,7 +53,7 @@ const quint16 STREAM_CONTROL_DEFAULT_PORT = 60222; //Fixed port for Canvas;
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static const char API_DEFAULT_PORT[] = "16021";
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static const char API_URL_FORMAT[] = "http://%1:%2/api/v1/%3/%4";
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static const char API_ROOT[] = "";
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static const char API_EXT_MODE_STRING_V1[] = "{\"write\" : {\"command\" : \"display\", \"animType\" : \"extControl\"}}";
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//static const char API_EXT_MODE_STRING_V1[] = "{\"write\" : {\"command\" : \"display\", \"animType\" : \"extControl\"}}";
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static const char API_EXT_MODE_STRING_V2[] = "{\"write\" : {\"command\" : \"display\", \"animType\" : \"extControl\", \"extControlVersion\" : \"v2\"}}";
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static const char API_STATE[] ="state";
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static const char API_PANELLAYOUT[] = "panelLayout";
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@@ -58,184 +66,179 @@ const int SSDP_TIMEOUT = 5000; // timout in ms
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// Nanoleaf Panel Shapetypes
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enum SHAPETYPES {
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TRIANGLE,
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RHYTM,
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SQUARE,
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CONTROL_SQUARE_PRIMARY,
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CONTROL_SQUARE_PASSIVE,
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POWER_SUPPLY,
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TRIANGLE,
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RHYTM,
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SQUARE,
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CONTROL_SQUARE_PRIMARY,
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CONTROL_SQUARE_PASSIVE,
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POWER_SUPPLY,
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};
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// Nanoleaf external control versions
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enum EXTCONTROLVERSIONS {
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EXTCTRLVER_V1 = 1,
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EXTCTRLVER_V2
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EXTCTRLVER_V1 = 1,
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EXTCTRLVER_V2
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};
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LedDevice* LedDeviceNanoleaf::construct(const QJsonObject &deviceConfig)
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{
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return new LedDeviceNanoleaf(deviceConfig);
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return new LedDeviceNanoleaf(deviceConfig);
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}
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LedDeviceNanoleaf::LedDeviceNanoleaf(const QJsonObject &deviceConfig)
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: ProviderUdp()
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: ProviderUdp()
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{
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init(deviceConfig);
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_deviceReady = init(deviceConfig);
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}
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bool LedDeviceNanoleaf::init(const QJsonObject &deviceConfig) {
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LedDevice::init(deviceConfig);
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LedDevice::init(deviceConfig);
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uint configuredLedCount = static_cast<uint>(this->getLedCount());
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Debug(_log, "ActiveDevice : %s", QSTRING_CSTR( this->getActiveDevice() ));
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Debug(_log, "LedCount : %d", configuredLedCount);
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Debug(_log, "ColorOrder : %s", QSTRING_CSTR( this->getColorOrder() ));
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Debug(_log, "LatchTime : %d", this->getLatchTime());
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Debug(_log, "DeviceType : %s", QSTRING_CSTR( this->getActiveDeviceType() ));
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Debug(_log, "LedCount : %u", configuredLedCount);
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Debug(_log, "ColorOrder : %s", QSTRING_CSTR( this->getColorOrder() ));
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Debug(_log, "LatchTime : %d", this->getLatchTime());
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//Set hostname as per configuration and default port
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_hostname = deviceConfig[ CONFIG_ADDRESS ].toString();
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_api_port = API_DEFAULT_PORT;
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_auth_token = deviceConfig[ CONFIG_AUTH_TOKEN ].toString();
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//Set hostname as per configuration and default port
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_hostname = deviceConfig[ CONFIG_ADDRESS ].toString();
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_api_port = API_DEFAULT_PORT;
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_auth_token = deviceConfig[ CONFIG_AUTH_TOKEN ].toString();
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//If host not configured then discover device
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if ( _hostname.isEmpty() )
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//Discover Nanoleaf device
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if ( !discoverNanoleafDevice() ) {
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throw std::runtime_error("No target IP defined nor Nanoleaf device discovered");
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}
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//If host not configured then discover device
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if ( _hostname.isEmpty() )
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//Discover Nanoleaf device
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if ( !discoverNanoleafDevice() ) {
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throw std::runtime_error("No target IP defined nor Nanoleaf device discovered");
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}
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//Get Nanoleaf device details and configuration
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_networkmanager = new QNetworkAccessManager();
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//Get Nanoleaf device details and configuration
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_networkmanager = new QNetworkAccessManager();
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// Read Panel count and panel Ids
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QString url = getUrl(_hostname, _api_port, _auth_token, API_ROOT );
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QJsonDocument doc = getJson( url );
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// Read Panel count and panel Ids
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QString url = getUrl(_hostname, _api_port, _auth_token, API_ROOT );
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QJsonDocument doc = getJson( url );
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QJsonObject jsonAllPanelInfo = doc.object();
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QJsonObject jsonAllPanelInfo = doc.object();
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QString deviceName = jsonAllPanelInfo[DEV_DATA_NAME].toString();
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_deviceModel = jsonAllPanelInfo[DEV_DATA_MODEL].toString();
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QString deviceManufacturer = jsonAllPanelInfo[DEV_DATA_MANUFACTURER].toString();
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_deviceFirmwareVersion = jsonAllPanelInfo[DEV_DATA_FIRMWAREVERSION].toString();
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QString deviceName = jsonAllPanelInfo[DEV_DATA_NAME].toString();
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_deviceModel = jsonAllPanelInfo[DEV_DATA_MODEL].toString();
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QString deviceManufacturer = jsonAllPanelInfo[DEV_DATA_MANUFACTURER].toString();
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_deviceFirmwareVersion = jsonAllPanelInfo[DEV_DATA_FIRMWAREVERSION].toString();
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Debug(_log, "Name : %s", QSTRING_CSTR( deviceName ));
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Debug(_log, "Model : %s", QSTRING_CSTR( _deviceModel ));
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Debug(_log, "Manufacturer : %s", QSTRING_CSTR( deviceManufacturer ));
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Debug(_log, "FirmwareVersion: %s", QSTRING_CSTR( _deviceFirmwareVersion));
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Debug(_log, "Name : %s", QSTRING_CSTR( deviceName ));
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Debug(_log, "Model : %s", QSTRING_CSTR( _deviceModel ));
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Debug(_log, "Manufacturer : %s", QSTRING_CSTR( deviceManufacturer ));
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Debug(_log, "FirmwareVersion: %s", QSTRING_CSTR( _deviceFirmwareVersion));
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// Get panel details from /panelLayout/layout
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QJsonObject jsonPanelLayout = jsonAllPanelInfo[API_PANELLAYOUT].toObject();
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QJsonObject jsonLayout = jsonPanelLayout[PANEL_LAYOUT].toObject();
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// Get panel details from /panelLayout/layout
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QJsonObject jsonPanelLayout = jsonAllPanelInfo[API_PANELLAYOUT].toObject();
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QJsonObject jsonLayout = jsonPanelLayout[PANEL_LAYOUT].toObject();
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int panelNum = jsonLayout[PANEL_NUM].toInt();
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QJsonArray positionData = jsonLayout[PANEL_POSITIONDATA].toArray();
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uint panelNum = static_cast<uint>(jsonLayout[PANEL_NUM].toInt());
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QJsonArray positionData = jsonLayout[PANEL_POSITIONDATA].toArray();
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std::map<uint, std::map<uint, uint>> panelMap;
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// Loop over all children.
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foreach (const QJsonValue & value, positionData) {
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QJsonObject panelObj = value.toObject();
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// Loop over all children.
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foreach (const QJsonValue & value, positionData) {
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QJsonObject panelObj = value.toObject();
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unsigned int panelId = static_cast<uint>(panelObj[PANEL_ID].toInt());
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unsigned int panelX = static_cast<uint>(panelObj[PANEL_POS_X].toInt());
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unsigned int panelY = static_cast<uint>(panelObj[PANEL_POS_Y].toInt());
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unsigned int panelshapeType = static_cast<uint>(panelObj[PANEL_SHAPE_TYPE].toInt());
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//int panelOrientation = panelObj[PANEL_ORIENTATION].toInt();
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//std::cout << "Panel [" << panelId << "]" << " (" << panelX << "," << panelY << ") - Type: [" << panelshapeType << "]" << std::endl;
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uint panelId = static_cast<uint>(panelObj[PANEL_ID].toInt());
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uint panelX = static_cast<uint>(panelObj[PANEL_POS_X].toInt());
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uint panelY = static_cast<uint>(panelObj[PANEL_POS_Y].toInt());
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uint panelshapeType = static_cast<uint>(panelObj[PANEL_SHAPE_TYPE].toInt());
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//uint panelOrientation = static_cast<uint>(panelObj[PANEL_ORIENTATION].toInt());
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// Skip Rhythm panels
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if ( panelshapeType != RHYTM ) {
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panelMap[panelY][panelX] = panelId;
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} else {
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Info(_log, "Rhythm panel skipped.");
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}
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}
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DebugIf(verbose, _log, "Panel [%u] (%u,%u) - Type: [%u]", panelId, panelX, panelY, panelshapeType );
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// Sort panels top down, left right
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for(auto posY = panelMap.crbegin(); posY != panelMap.crend(); ++posY) {
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// posY.first is the first key
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// Skip Rhythm panels
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if ( panelshapeType != RHYTM ) {
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panelMap[panelY][panelX] = panelId;
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} else {
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Info(_log, "Rhythm panel skipped.");
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}
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}
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// Sort panels top down, left right
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for(auto posY = panelMap.crbegin(); posY != panelMap.crend(); ++posY) {
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// posY.first is the first key
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for(auto const &posX : posY->second) {
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// posX.first is the second key, posX.second is the data
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//std::cout << "panelMap[" << posY->first << "][" << posX.first << "]=" << posX.second << std::endl;
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_panelIds.push_back(posX.second);
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}
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}
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// posX.first is the second key, posX.second is the data
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DebugIf(verbose3, _log, "panelMap[%u][%u]=%u", posY->first, posX.first, posX.second );
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_panelIds.push_back(posX.second);
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}
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}
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this->_panelLedCount = static_cast<uint>(_panelIds.size());
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Debug(_log, "PanelsNum : %d", panelNum);
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Debug(_log, "PanelLedCount : %d", _panelLedCount);
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Debug(_log, "PanelsNum : %u", panelNum);
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Debug(_log, "PanelLedCount : %u", _panelLedCount);
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// Check. if enough panelds were found.
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if (_panelLedCount < configuredLedCount) {
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// Check. if enough panelds were found.
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if (_panelLedCount < configuredLedCount) {
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throw std::runtime_error ( (QString ("Not enough panels [%1] for configured LEDs [%2] found!").arg(_panelLedCount).arg(configuredLedCount)).toStdString() );
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} else {
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throw std::runtime_error ( (QString ("Not enough panels [%1] for configured LEDs [%2] found!").arg(_panelLedCount).arg(configuredLedCount)).toStdString() );
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} else {
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if ( _panelLedCount > static_cast<uint>(this->getLedCount()) ) {
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Warning(_log, "Nanoleaf: More panels [%d] than configured LEDs [%d].", _panelLedCount, configuredLedCount );
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}
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}
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Warning(_log, "Nanoleaf: More panels [%u] than configured LEDs [%u].", _panelLedCount, configuredLedCount );
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}
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}
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// Set UDP streaming port
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_port = STREAM_CONTROL_DEFAULT_PORT;
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_defaultHost = _hostname;
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switchOn();
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switchOn();
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ProviderUdp::init(deviceConfig);
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ProviderUdp::init(deviceConfig);
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Debug(_log, "Started successfully" );
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return true;
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Debug(_log, "Started successfully" );
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return true;
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}
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bool LedDeviceNanoleaf::discoverNanoleafDevice() {
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bool isDeviceFound (false);
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// device searching by ssdp
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QString address;
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SSDPDiscover discover;
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bool isDeviceFound (false);
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// device searching by ssdp
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QString address;
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SSDPDiscover discover;
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// Discover Canvas device
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address = discover.getFirstService(STY_WEBSERVER, SSDP_CANVAS, SSDP_TIMEOUT);
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// Discover Canvas device
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address = discover.getFirstService(STY_WEBSERVER, SSDP_CANVAS, SSDP_TIMEOUT);
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//No Canvas device not found
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if ( address.isEmpty() ) {
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// Discover Light Panels (Aurora) device
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address = discover.getFirstService(STY_WEBSERVER, SSDP_LIGHTPANELS, SSDP_TIMEOUT);
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//No Canvas device not found
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if ( address.isEmpty() ) {
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// Discover Light Panels (Aurora) device
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address = discover.getFirstService(STY_WEBSERVER, SSDP_LIGHTPANELS, SSDP_TIMEOUT);
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if ( address.isEmpty() ) {
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Warning(_log, "No Nanoleaf device discovered");
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}
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}
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if ( address.isEmpty() ) {
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Warning(_log, "No Nanoleaf device discovered");
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}
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}
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// Canvas or Light Panels found
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if ( ! address.isEmpty() ) {
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Info(_log, "Nanoleaf device discovered at [%s]", QSTRING_CSTR( address ));
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isDeviceFound = true;
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QStringList addressparts = address.split(":", QString::SkipEmptyParts);
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_hostname = addressparts[0];
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_api_port = addressparts[1];
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}
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return isDeviceFound;
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// Canvas or Light Panels found
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if ( ! address.isEmpty() ) {
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Info(_log, "Nanoleaf device discovered at [%s]", QSTRING_CSTR( address ));
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isDeviceFound = true;
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QStringList addressparts = address.split(":", QString::SkipEmptyParts);
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_hostname = addressparts[0];
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_api_port = addressparts[1];
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}
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return isDeviceFound;
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}
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QJsonDocument LedDeviceNanoleaf::changeToExternalControlMode() {
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QString url = getUrl(_hostname, _api_port, _auth_token, API_EFFECT );
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QJsonDocument jsonDoc;
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// If device model is Light Panels (Aurora)
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if ( _deviceModel == "NL22") {
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_extControlVersion = EXTCTRLVER_V1;
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//Enable UDP Mode v1
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jsonDoc = putJson(url, API_EXT_MODE_STRING_V1);
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}
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else {
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_extControlVersion = EXTCTRLVER_V2;
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//Enable UDP Mode v2
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jsonDoc= putJson(url, API_EXT_MODE_STRING_V2);
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}
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return jsonDoc;
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QString url = getUrl(_hostname, _api_port, _auth_token, API_EFFECT );
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QJsonDocument jsonDoc;
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_extControlVersion = EXTCTRLVER_V2;
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//Enable UDP Mode v2
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jsonDoc= putJson(url, API_EXT_MODE_STRING_V2);
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return jsonDoc;
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}
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QString LedDeviceNanoleaf::getUrl(QString host, QString port, QString auth_token, QString endpoint) const {
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@@ -244,230 +247,203 @@ QString LedDeviceNanoleaf::getUrl(QString host, QString port, QString auth_token
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QJsonDocument LedDeviceNanoleaf::getJson(QString url) const {
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Debug(_log, "GET: [%s]", QSTRING_CSTR( url ));
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Debug(_log, "GET: [%s]", QSTRING_CSTR( url ));
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// Perfrom request
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QNetworkRequest request(url);
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QNetworkReply* reply = _networkmanager->get(request);
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// Connect requestFinished signal to quit slot of the loop.
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QEventLoop loop;
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loop.connect(reply, SIGNAL(finished()), SLOT(quit()));
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// Go into the loop until the request is finished.
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loop.exec();
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// Perfrom request
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QNetworkRequest request(url);
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QNetworkReply* reply = _networkmanager->get(request);
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// Connect requestFinished signal to quit slot of the loop.
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QEventLoop loop;
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loop.connect(reply, SIGNAL(finished()), SLOT(quit()));
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// Go into the loop until the request is finished.
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loop.exec();
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QJsonDocument jsonDoc;
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if(reply->operation() == QNetworkAccessManager::GetOperation)
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{
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jsonDoc = handleReply( reply );
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}
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// Free space.
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reply->deleteLater();
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// Return response
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return jsonDoc;
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QJsonDocument jsonDoc;
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if(reply->operation() == QNetworkAccessManager::GetOperation)
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{
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jsonDoc = handleReply( reply );
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}
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// Free space.
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reply->deleteLater();
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// Return response
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return jsonDoc;
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}
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QJsonDocument LedDeviceNanoleaf::putJson(QString url, QString json) const {
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Debug(_log, "PUT: [%s] [%s]", QSTRING_CSTR( url ), QSTRING_CSTR( json ) );
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// Perfrom request
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QNetworkRequest request(url);
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QNetworkReply* reply = _networkmanager->put(request, json.toUtf8());
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// Connect requestFinished signal to quit slot of the loop.
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QEventLoop loop;
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loop.connect(reply, SIGNAL(finished()), SLOT(quit()));
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// Go into the loop until the request is finished.
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loop.exec();
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Debug(_log, "PUT: [%s] [%s]", QSTRING_CSTR( url ), QSTRING_CSTR( json ) );
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// Perfrom request
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QNetworkRequest request(url);
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QNetworkReply* reply = _networkmanager->put(request, json.toUtf8());
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// Connect requestFinished signal to quit slot of the loop.
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QEventLoop loop;
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loop.connect(reply, SIGNAL(finished()), SLOT(quit()));
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// Go into the loop until the request is finished.
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loop.exec();
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QJsonDocument jsonDoc;
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if(reply->operation() == QNetworkAccessManager::PutOperation)
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{
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jsonDoc = handleReply( reply );
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}
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// Free space.
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reply->deleteLater();
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QJsonDocument jsonDoc;
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if(reply->operation() == QNetworkAccessManager::PutOperation)
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{
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jsonDoc = handleReply( reply );
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}
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// Free space.
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reply->deleteLater();
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// Return response
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return jsonDoc;
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// Return response
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return jsonDoc;
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}
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QJsonDocument LedDeviceNanoleaf::handleReply(QNetworkReply* const &reply ) const {
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QJsonDocument jsonDoc;
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QJsonDocument jsonDoc;
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|
||||
int httpStatusCode = reply->attribute( QNetworkRequest::HttpStatusCodeAttribute ).toInt();
|
||||
if(reply->error() ==
|
||||
QNetworkReply::NoError)
|
||||
{
|
||||
int httpStatusCode = reply->attribute( QNetworkRequest::HttpStatusCodeAttribute ).toInt();
|
||||
Debug(_log, "Reply.httpStatusCode [%d]", httpStatusCode );
|
||||
|
||||
if ( httpStatusCode != 204 ){
|
||||
QByteArray response = reply->readAll();
|
||||
QJsonParseError error;
|
||||
jsonDoc = QJsonDocument::fromJson(response, &error);
|
||||
if (error.error != QJsonParseError::NoError)
|
||||
{
|
||||
Error (_log, "Got invalid response");
|
||||
throw std::runtime_error("");
|
||||
}
|
||||
else {
|
||||
//Debug
|
||||
// QString strJson(jsonDoc.toJson(QJsonDocument::Compact));
|
||||
// std::cout << strJson.toUtf8().constData() << std::endl;
|
||||
}
|
||||
}
|
||||
}
|
||||
else
|
||||
{
|
||||
QString errorReason;
|
||||
if ( httpStatusCode > 0 ) {
|
||||
QString httpReason = reply->attribute( QNetworkRequest::HttpReasonPhraseAttribute ).toString();
|
||||
QString advise;
|
||||
switch ( httpStatusCode ) {
|
||||
case 400:
|
||||
advise = "Check Request Body";
|
||||
break;
|
||||
case 401:
|
||||
advise = "Check Authentication Token (API Key)";
|
||||
break;
|
||||
case 404:
|
||||
advise = "Check Resource given";
|
||||
break;
|
||||
default:
|
||||
break;
|
||||
}
|
||||
if(reply->error() ==
|
||||
QNetworkReply::NoError)
|
||||
{
|
||||
if ( httpStatusCode != 204 ){
|
||||
QByteArray response = reply->readAll();
|
||||
QJsonParseError error;
|
||||
jsonDoc = QJsonDocument::fromJson(response, &error);
|
||||
if (error.error != QJsonParseError::NoError)
|
||||
{
|
||||
Error (_log, "Got invalid response");
|
||||
throw std::runtime_error("");
|
||||
}
|
||||
else {
|
||||
//Debug
|
||||
QString strJson(jsonDoc.toJson(QJsonDocument::Compact));
|
||||
DebugIf(verbose, _log, "Reply: [%s]", strJson.toUtf8().constData() );
|
||||
}
|
||||
}
|
||||
}
|
||||
else
|
||||
{
|
||||
QString errorReason;
|
||||
if ( httpStatusCode > 0 ) {
|
||||
QString httpReason = reply->attribute( QNetworkRequest::HttpReasonPhraseAttribute ).toString();
|
||||
QString advise;
|
||||
switch ( httpStatusCode ) {
|
||||
case 400:
|
||||
advise = "Check Request Body";
|
||||
break;
|
||||
case 401:
|
||||
advise = "Check Authentication Token (API Key)";
|
||||
break;
|
||||
case 404:
|
||||
advise = "Check Resource given";
|
||||
break;
|
||||
default:
|
||||
break;
|
||||
}
|
||||
errorReason = QString ("%1:%2 [%3 %4] - %5").arg(_hostname, _api_port, QString(httpStatusCode) , httpReason);
|
||||
}
|
||||
}
|
||||
else {
|
||||
errorReason = QString ("%1:%2 - %3").arg(_hostname, _api_port, reply->errorString());
|
||||
}
|
||||
Error (_log, "%s", QSTRING_CSTR( errorReason ));
|
||||
throw std::runtime_error("Network Error");
|
||||
}
|
||||
// Return response
|
||||
return jsonDoc;
|
||||
}
|
||||
Error (_log, "%s", QSTRING_CSTR( errorReason ));
|
||||
throw std::runtime_error("Network Error");
|
||||
}
|
||||
// Return response
|
||||
return jsonDoc;
|
||||
}
|
||||
|
||||
|
||||
LedDeviceNanoleaf::~LedDeviceNanoleaf()
|
||||
{
|
||||
delete _networkmanager;
|
||||
delete _networkmanager;
|
||||
}
|
||||
|
||||
int LedDeviceNanoleaf::write(const std::vector<ColorRgb> & ledValues)
|
||||
{
|
||||
|
||||
int retVal = 0;
|
||||
uint udpBufferSize;
|
||||
int retVal = 0;
|
||||
uint udpBufferSize;
|
||||
|
||||
//Light Panels
|
||||
// nPanels 1B
|
||||
// nFrames 1B
|
||||
// panelID 1B
|
||||
// <R> <G> <B> 3B
|
||||
// <W> 1B
|
||||
// tranitionTime 1B
|
||||
//
|
||||
//Canvas
|
||||
//In order to support the much larger number of panels on Canvas, the size of the nPanels,
|
||||
//panelId and tranitionTime fields have been been increased from 1B to 2B.
|
||||
//The nFrames field has been dropped as it was set to 1 in v1 anyway
|
||||
//
|
||||
// nPanels 2B
|
||||
// panelID 2B
|
||||
// <R> <G> <B> 3B
|
||||
// <W> 1B
|
||||
// tranitionTime 2B
|
||||
|
||||
|
||||
//udpBufferSize = _panelLedCount * 7 + 1; // Buffersize for LightPanels
|
||||
//
|
||||
// nPanels 2B
|
||||
// panelID 2B
|
||||
// <R> <G> <B> 3B
|
||||
// <W> 1B
|
||||
// tranitionTime 2B
|
||||
//
|
||||
// Note: Nanoleaf Light Panels (Aurora) now support External Control V2 (tested with FW 3.2.0)
|
||||
|
||||
udpBufferSize = _panelLedCount * 8 + 2;
|
||||
std::vector<uint8_t> udpbuffer;
|
||||
udpbuffer.resize(udpBufferSize);
|
||||
|
||||
uchar lowByte; // lower byte
|
||||
uchar highByte; // upper byte
|
||||
uchar lowByte; // lower byte
|
||||
uchar highByte; // upper byte
|
||||
|
||||
uint i=0;
|
||||
uint i=0;
|
||||
|
||||
// Set number of panels
|
||||
// Set number of panels
|
||||
highByte = static_cast<uchar>(_panelLedCount >>8 );
|
||||
lowByte = static_cast<uchar>(_panelLedCount & 0xFF);
|
||||
|
||||
if ( _extControlVersion == EXTCTRLVER_V2 ) {
|
||||
udpbuffer[i++] = highByte;
|
||||
}
|
||||
udpbuffer[i++] = lowByte;
|
||||
udpbuffer[i++] = highByte;
|
||||
udpbuffer[i++] = lowByte;
|
||||
|
||||
ColorRgb color;
|
||||
ColorRgb color;
|
||||
for ( uint panelCounter=0; panelCounter < _panelLedCount; panelCounter++ )
|
||||
{
|
||||
{
|
||||
uint panelID = _panelIds[panelCounter];
|
||||
|
||||
highByte = static_cast<uchar>(panelID >>8 );
|
||||
lowByte = static_cast<uchar>(panelID & 0xFF);
|
||||
|
||||
// Set panels configured
|
||||
// Set panels configured
|
||||
if( panelCounter < static_cast<uint>(this->getLedCount()) ) {
|
||||
color = static_cast<ColorRgb>(ledValues.at(panelCounter));
|
||||
}
|
||||
else
|
||||
{
|
||||
// Set panels not configed to black;
|
||||
color = ColorRgb::BLACK;
|
||||
//printf ("panelCounter [%d] >= panelLedCount [%d]\n", panelCounter, _panelLedCount );
|
||||
}
|
||||
}
|
||||
else
|
||||
{
|
||||
// Set panels not configed to black;
|
||||
color = ColorRgb::BLACK;
|
||||
DebugIf(verbose3, _log, "[%u] >= panelLedCount [%u] => Set to BLACK", panelCounter, _panelLedCount );
|
||||
}
|
||||
|
||||
// Set panelID
|
||||
if ( _extControlVersion == EXTCTRLVER_V2 ) {
|
||||
udpbuffer[i++] = highByte;
|
||||
}
|
||||
udpbuffer[i++] = lowByte;
|
||||
// Set panelID
|
||||
udpbuffer[i++] = highByte;
|
||||
udpbuffer[i++] = lowByte;
|
||||
|
||||
// Set number of frames - V1 only
|
||||
if ( _extControlVersion == EXTCTRLVER_V1 ) {
|
||||
udpbuffer[i++] = 1; // No of Frames
|
||||
}
|
||||
// Set panel's color LEDs
|
||||
udpbuffer[i++] = color.red;
|
||||
udpbuffer[i++] = color.green;
|
||||
udpbuffer[i++] = color.blue;
|
||||
|
||||
// Set panel's color LEDs
|
||||
udpbuffer[i++] = color.red;
|
||||
udpbuffer[i++] = color.green;
|
||||
udpbuffer[i++] = color.blue;
|
||||
// Set white LED
|
||||
udpbuffer[i++] = 0; // W not set manually
|
||||
|
||||
// Set white LED
|
||||
udpbuffer[i++] = 0; // W not set manually
|
||||
|
||||
// Set transition time
|
||||
unsigned char tranitionTime = 1; // currently fixed at value 1 which corresponds to 100ms
|
||||
// Set transition time
|
||||
unsigned char tranitionTime = 1; // currently fixed at value 1 which corresponds to 100ms
|
||||
|
||||
highByte = static_cast<uchar>(tranitionTime >>8 );
|
||||
lowByte = static_cast<uchar>(tranitionTime & 0xFF);
|
||||
|
||||
if ( _extControlVersion == EXTCTRLVER_V2 ) {
|
||||
udpbuffer[i++] = highByte;
|
||||
}
|
||||
udpbuffer[i++] = lowByte;
|
||||
udpbuffer[i++] = highByte;
|
||||
udpbuffer[i++] = lowByte;
|
||||
DebugIf(verbose3, _log, "[%u] Color: {%u,%u,%u}", panelCounter, color.red, color.green, color.blue );
|
||||
|
||||
//std::cout << "[" << panelCounter << "]" << " Color: " << color << std::endl;
|
||||
}
|
||||
|
||||
// printf ("udpBufferSize[%d], Bytes to send [%d]\n", udpBufferSize, i);
|
||||
// for ( uint c= 0; c < udpBufferSize;c++ )
|
||||
// {
|
||||
// printf ("%x ", static_cast<uchar>(udpbuffer[c]));
|
||||
// }
|
||||
// printf("\n");
|
||||
}
|
||||
DebugIf(verbose3, _log, "UDP-Address [%s], UDP-Port [%u], udpBufferSize[%u], Bytes to send [%u]", QSTRING_CSTR(_address.toString()), _port, udpBufferSize, i);
|
||||
DebugIf(verbose3, _log, "[%s]", uint8_vector_to_hex_string(udpbuffer).c_str() );
|
||||
|
||||
retVal &= writeBytes( i , udpbuffer.data());
|
||||
return retVal;
|
||||
DebugIf(verbose3, _log, "writeBytes(): [%d]",retVal);
|
||||
return retVal;
|
||||
}
|
||||
|
||||
QString LedDeviceNanoleaf::getOnOffRequest (bool isOn ) const {
|
||||
QString state = isOn ? STATE_VALUE_TRUE : STATE_VALUE_FALSE;
|
||||
QString state = isOn ? STATE_VALUE_TRUE : STATE_VALUE_FALSE;
|
||||
return QString( "{\"%1\":{\"%2\":%3}}" ).arg(STATE_ON, STATE_ONOFF_VALUE, state);
|
||||
}
|
||||
|
||||
int LedDeviceNanoleaf::switchOn() {
|
||||
Debug(_log, "switchOn()");
|
||||
Debug(_log, "switchOn()");
|
||||
|
||||
// Set Nanoleaf to External Control (UDP) mode
|
||||
Debug(_log, "Set Nanoleaf to External Control (UDP) streaming mode");
|
||||
@@ -478,22 +454,35 @@ int LedDeviceNanoleaf::switchOn() {
|
||||
_port = static_cast<uchar>(jsonStreamControllInfo[STREAM_CONTROL_PORT].toInt());
|
||||
}
|
||||
|
||||
//Switch on Nanoleaf device
|
||||
QString url = getUrl(_hostname, _api_port, _auth_token, API_STATE );
|
||||
putJson(url, this->getOnOffRequest(true) );
|
||||
//Switch on Nanoleaf device
|
||||
QString url = getUrl(_hostname, _api_port, _auth_token, API_STATE );
|
||||
putJson(url, this->getOnOffRequest(true) );
|
||||
|
||||
return 0;
|
||||
return 0;
|
||||
}
|
||||
|
||||
int LedDeviceNanoleaf::switchOff() {
|
||||
Debug(_log, "switchOff()");
|
||||
Debug(_log, "switchOff()");
|
||||
|
||||
//Set all LEDs to Black
|
||||
LedDevice::switchOff();
|
||||
//Set all LEDs to Black
|
||||
int rc = writeBlack();
|
||||
|
||||
//Switch off Nanoleaf device physically
|
||||
QString url = getUrl(_hostname, _api_port, _auth_token, API_STATE );
|
||||
putJson(url, getOnOffRequest(false) );
|
||||
//Switch off Nanoleaf device physically
|
||||
QString url = getUrl(_hostname, _api_port, _auth_token, API_STATE );
|
||||
putJson(url, getOnOffRequest(false) );
|
||||
|
||||
return _deviceReady ? write(std::vector<ColorRgb>(static_cast<uint>(_ledCount), ColorRgb::BLACK )) : -1;
|
||||
return rc;
|
||||
}
|
||||
|
||||
std::string LedDeviceNanoleaf:: uint8_vector_to_hex_string( const std::vector<uint8_t>& buffer ) const
|
||||
{
|
||||
std::stringstream ss;
|
||||
ss << std::hex << std::setfill('0');
|
||||
std::vector<uint8_t>::const_iterator it;
|
||||
|
||||
for (it = buffer.begin(); it != buffer.end(); it++)
|
||||
{
|
||||
ss << " " << std::setw(2) << static_cast<unsigned>(*it);
|
||||
}
|
||||
return ss.str();
|
||||
}
|
||||
|
@@ -145,4 +145,12 @@ private:
|
||||
/// @exception runtime_error for network or request errors
|
||||
///
|
||||
QJsonDocument handleReply(QNetworkReply* const &reply ) const;
|
||||
|
||||
|
||||
///
|
||||
/// convert vector to hex string
|
||||
///
|
||||
/// @param uint8_t vector
|
||||
/// @return vector as string of hex values
|
||||
std::string uint8_vector_to_hex_string( const std::vector<uint8_t>& buffer ) const;
|
||||
};
|
||||
|
Reference in New Issue
Block a user