mirror of
https://github.com/hyperion-project/hyperion.ng.git
synced 2023-10-10 13:36:59 +02:00
efc2046ab5
* LedDevice - Address clang findings * Fix Windows Warnings * Ensure newInput is initialised * Clean-up unused elements for Plaform Capture * Fix initialization problem and spellings * Address clang findings and spelling corrections * LedDevice clean-ups * Cleanups * Align that getLedCount is int * Have "display" as default for Grabbers * Fix config during start-up for missing elements * Framegrabber Clean-up - Remove non supported grabbers from selection, filter valid options * Typo * Framegrabber.json - Fix property numbering * Preselect active Grabbertype * Sort Grabbernames * Align options with selected element * Fix deletion of pointer to incomplete type 'BonjourBrowserWrapper' * Address macOS compile warnings * Have default layout = 1 LED only to avoid errors as in #673 * Address lgtm findings * Address finding that params passed to LedDevice discovery were not considered * Cleanups after merging with latest master * Update Changelog * Address lgtm findings * Fix comment * Test Fix * Fix Python Warning * Handle Dummy Device assignment correctly * Address delete called on non-final 'commandline::Option' that has virtual functions but non-virtual destructor * Correct that QTimer.start accepts only int * Have Release Python GIL & reset threat state chnage downward compatible * Correct format specifier * LedDevice - add assertions * Readonly DB - Fix merge issue * Smoothing - Fix wrong defaults * LedDevice - correct assertion * Show smoothing config set# in debug and related values. * Suppress error on windows, if default file is "/dev/null" * CMAKE - Allow to define QT_BASE_DIR dynamically via environment-variable * Ignore Visual Studio specific files Co-authored-by: Paulchen Panther <16664240+Paulchen-Panther@users.noreply.github.com>
601 lines
17 KiB
C++
601 lines
17 KiB
C++
// Local-Hyperion includes
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#include "LedDeviceNanoleaf.h"
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#include <ssdp/SSDPDiscover.h>
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#include <utils/QStringUtils.h>
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// Qt includes
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#include <QEventLoop>
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#include <QNetworkReply>
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#include <QtEndian>
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//std includes
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#include <sstream>
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#include <iomanip>
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// Constants
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namespace {
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const bool verbose = false;
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const bool verbose3 = false;
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// Configuration settings
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const char CONFIG_ADDRESS[] = "host";
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//const char CONFIG_PORT[] = "port";
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const char CONFIG_AUTH_TOKEN[] = "token";
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const char CONFIG_PANEL_ORDER_TOP_DOWN[] = "panelOrderTopDown";
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const char CONFIG_PANEL_ORDER_LEFT_RIGHT[] = "panelOrderLeftRight";
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const char CONFIG_PANEL_START_POS[] = "panelStartPos";
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// Panel configuration settings
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const char PANEL_LAYOUT[] = "layout";
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const char PANEL_NUM[] = "numPanels";
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const char PANEL_ID[] = "panelId";
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const char PANEL_POSITIONDATA[] = "positionData";
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const char PANEL_SHAPE_TYPE[] = "shapeType";
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//const char PANEL_ORIENTATION[] = "0";
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const char PANEL_POS_X[] = "x";
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const char PANEL_POS_Y[] = "y";
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// List of State Information
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const char STATE_ON[] = "on";
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const char STATE_ONOFF_VALUE[] = "value";
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const char STATE_VALUE_TRUE[] = "true";
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const char STATE_VALUE_FALSE[] = "false";
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// Device Data elements
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const char DEV_DATA_NAME[] = "name";
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const char DEV_DATA_MODEL[] = "model";
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const char DEV_DATA_MANUFACTURER[] = "manufacturer";
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const char DEV_DATA_FIRMWAREVERSION[] = "firmwareVersion";
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// Nanoleaf Stream Control elements
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//const char STREAM_CONTROL_IP[] = "streamControlIpAddr";
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const char STREAM_CONTROL_PORT[] = "streamControlPort";
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//const char STREAM_CONTROL_PROTOCOL[] = "streamControlProtocol";
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const quint16 STREAM_CONTROL_DEFAULT_PORT = 60222; //Fixed port for Canvas;
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// Nanoleaf OpenAPI URLs
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const int API_DEFAULT_PORT = 16021;
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const char API_BASE_PATH[] = "/api/v1/%1/";
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const char API_ROOT[] = "";
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//const char API_EXT_MODE_STRING_V1[] = "{\"write\" : {\"command\" : \"display\", \"animType\" : \"extControl\"}}";
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const char API_EXT_MODE_STRING_V2[] = "{\"write\" : {\"command\" : \"display\", \"animType\" : \"extControl\", \"extControlVersion\" : \"v2\"}}";
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const char API_STATE[] = "state";
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const char API_PANELLAYOUT[] = "panelLayout";
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const char API_EFFECT[] = "effects";
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//Nanoleaf Control data stream
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const int STREAM_FRAME_PANEL_NUM_SIZE = 2;
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const int STREAM_FRAME_PANEL_INFO_SIZE = 8;
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// Nanoleaf ssdp services
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const char SSDP_ID[] = "ssdp:all";
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const char SSDP_FILTER_HEADER[] = "ST";
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const char SSDP_CANVAS[] = "nanoleaf:nl29";
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const char SSDP_LIGHTPANELS[] = "nanoleaf_aurora:light";
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} //End of constants
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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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};
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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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};
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LedDeviceNanoleaf::LedDeviceNanoleaf(const QJsonObject& deviceConfig)
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: ProviderUdp(deviceConfig)
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, _restApi(nullptr)
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, _apiPort(API_DEFAULT_PORT)
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, _topDown(true)
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, _leftRight(true)
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, _startPos(0)
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, _endPos(0)
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, _extControlVersion(EXTCTRLVER_V2),
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_panelLedCount(0)
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{
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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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}
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LedDeviceNanoleaf::~LedDeviceNanoleaf()
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{
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delete _restApi;
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_restApi = nullptr;
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}
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bool LedDeviceNanoleaf::init(const QJsonObject& deviceConfig)
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{
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// Overwrite non supported/required features
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setLatchTime(0);
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setRewriteTime(0);
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if (deviceConfig["rewriteTime"].toInt(0) > 0)
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{
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Info(_log, "Device Nanoleaf does not require rewrites. Refresh time is ignored.");
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}
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DebugIf(verbose, _log, "deviceConfig: [%s]", QString(QJsonDocument(_devConfig).toJson(QJsonDocument::Compact)).toUtf8().constData());
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bool isInitOK = false;
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if (LedDevice::init(deviceConfig))
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{
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int configuredLedCount = this->getLedCount();
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Debug(_log, "DeviceType : %s", QSTRING_CSTR(this->getActiveDeviceType()));
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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, "RewriteTime : %d", this->getRewriteTime());
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Debug(_log, "LatchTime : %d", this->getLatchTime());
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// Read panel organisation configuration
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if (deviceConfig[CONFIG_PANEL_ORDER_TOP_DOWN].isString())
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{
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_topDown = deviceConfig[CONFIG_PANEL_ORDER_TOP_DOWN].toString().toInt() == 0;
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}
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else
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{
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_topDown = deviceConfig[CONFIG_PANEL_ORDER_TOP_DOWN].toInt() == 0;
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}
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if (deviceConfig[CONFIG_PANEL_ORDER_LEFT_RIGHT].isString())
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{
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_leftRight = deviceConfig[CONFIG_PANEL_ORDER_LEFT_RIGHT].toString().toInt() == 0;
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}
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else
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{
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_leftRight = deviceConfig[CONFIG_PANEL_ORDER_LEFT_RIGHT].toInt() == 0;
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}
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_startPos = deviceConfig[CONFIG_PANEL_START_POS].toInt(0);
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// TODO: Allow to handle port dynamically
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//Set hostname as per configuration and_defaultHost default port
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_hostname = deviceConfig[CONFIG_ADDRESS].toString();
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_apiPort = API_DEFAULT_PORT;
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_authToken = deviceConfig[CONFIG_AUTH_TOKEN].toString();
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//If host not configured the init failed
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if (_hostname.isEmpty())
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{
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this->setInError("No target hostname nor IP defined");
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isInitOK = false;
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}
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else
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{
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if (initRestAPI(_hostname, _apiPort, _authToken))
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{
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// Read LedDevice configuration and validate against device configuration
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if (initLedsConfiguration())
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{
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// Set UDP streaming host and port
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_devConfig["host"] = _hostname;
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_devConfig["port"] = STREAM_CONTROL_DEFAULT_PORT;
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isInitOK = ProviderUdp::init(_devConfig);
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Debug(_log, "Hostname/IP : %s", QSTRING_CSTR(_hostname));
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Debug(_log, "Port : %d", _port);
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}
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}
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}
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}
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return isInitOK;
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}
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bool LedDeviceNanoleaf::initLedsConfiguration()
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{
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bool isInitOK = true;
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//Get Nanoleaf device details and configuration
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// Read Panel count and panel Ids
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_restApi->setPath(API_ROOT);
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httpResponse response = _restApi->get();
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if (response.error())
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{
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this->setInError(response.getErrorReason());
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isInitOK = false;
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}
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else
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{
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QJsonObject jsonAllPanelInfo = response.getBody().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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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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int panelNum = jsonLayout[PANEL_NUM].toInt();
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QJsonArray positionData = jsonLayout[PANEL_POSITIONDATA].toArray();
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std::map<int, std::map<int, int>> panelMap;
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// Loop over all children.
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foreach(const QJsonValue & value, positionData)
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{
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QJsonObject panelObj = value.toObject();
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int panelId = panelObj[PANEL_ID].toInt();
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int panelX = panelObj[PANEL_POS_X].toInt();
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int panelY = panelObj[PANEL_POS_Y].toInt();
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int panelshapeType = panelObj[PANEL_SHAPE_TYPE].toInt();
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//int panelOrientation = panelObj[PANEL_ORIENTATION].toInt();
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DebugIf(verbose, _log, "Panel [%d] (%d,%d) - Type: [%d]", panelId, panelX, panelY, panelshapeType);
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// Skip Rhythm panels
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if (panelshapeType != RHYTM)
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{
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panelMap[panelY][panelX] = panelId;
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}
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else
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{ // Reset non support/required features
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Info(_log, "Rhythm panel skipped.");
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}
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}
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// Travers panels top down
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for (auto posY = panelMap.crbegin(); posY != panelMap.crend(); ++posY)
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{
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// Sort panels left to right
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if (_leftRight)
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{
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for (auto posX = posY->second.cbegin(); posX != posY->second.cend(); ++posX)
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{
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DebugIf(verbose3, _log, "panelMap[%d][%d]=%d", posY->first, posX->first, posX->second);
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if (_topDown)
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{
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_panelIds.push_back(posX->second);
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}
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else
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{
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_panelIds.push_front(posX->second);
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}
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}
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}
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else
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{
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// Sort panels right to left
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for (auto posX = posY->second.crbegin(); posX != posY->second.crend(); ++posX)
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{
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DebugIf(verbose3, _log, "panelMap[%d][%d]=%d", posY->first, posX->first, posX->second);
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if (_topDown)
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{
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_panelIds.push_back(posX->second);
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}
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else
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{
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_panelIds.push_front(posX->second);
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}
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}
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}
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}
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this->_panelLedCount = _panelIds.size();
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_devConfig["hardwareLedCount"] = _panelLedCount;
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Debug(_log, "PanelsNum : %d", panelNum);
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Debug(_log, "PanelLedCount : %d", _panelLedCount);
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// Check. if enough panels were found.
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int configuredLedCount = this->getLedCount();
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_endPos = _startPos + configuredLedCount - 1;
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Debug(_log, "Sort Top>Down : %d", _topDown);
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Debug(_log, "Sort Left>Right: %d", _leftRight);
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Debug(_log, "Start Panel Pos: %d", _startPos);
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Debug(_log, "End Panel Pos : %d", _endPos);
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if (_panelLedCount < configuredLedCount)
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{
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QString errorReason = QString("Not enough panels [%1] for configured LEDs [%2] found!")
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.arg(_panelLedCount)
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.arg(configuredLedCount);
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this->setInError(errorReason);
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isInitOK = false;
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}
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else
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{
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if (_panelLedCount > this->getLedCount())
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{
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Info(_log, "%s: More panels [%d] than configured LEDs [%d].", QSTRING_CSTR(this->getActiveDeviceType()), _panelLedCount, configuredLedCount);
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}
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// Check, if start position + number of configured LEDs is greater than number of panels available
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if (_endPos >= _panelLedCount)
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{
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QString errorReason = QString("Start panel [%1] out of range. Start panel position can be max [%2] given [%3] panel available!")
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.arg(_startPos).arg(_panelLedCount - configuredLedCount).arg(_panelLedCount);
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this->setInError(errorReason);
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isInitOK = false;
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}
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}
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}
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return isInitOK;
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}
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bool LedDeviceNanoleaf::initRestAPI(const QString& hostname, int port, const QString& token)
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{
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bool isInitOK = false;
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if (_restApi == nullptr)
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{
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_restApi = new ProviderRestApi(hostname, port);
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//Base-path is api-path + authentication token
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_restApi->setBasePath(QString(API_BASE_PATH).arg(token));
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isInitOK = true;
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}
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return isInitOK;
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}
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int LedDeviceNanoleaf::open()
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{
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int retval = -1;
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_isDeviceReady = false;
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QJsonDocument responseDoc = changeToExternalControlMode();
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// Resolve port for Light Panels
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QJsonObject jsonStreamControllInfo = responseDoc.object();
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if (!jsonStreamControllInfo.isEmpty())
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{
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//Set default streaming port
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_port = static_cast<uchar>(jsonStreamControllInfo[STREAM_CONTROL_PORT].toInt());
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}
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if (ProviderUdp::open() == 0)
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{
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// Everything is OK, device is ready
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_isDeviceReady = true;
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retval = 0;
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}
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return retval;
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}
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QJsonObject LedDeviceNanoleaf::discover(const QJsonObject& /*params*/)
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{
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QJsonObject devicesDiscovered;
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devicesDiscovered.insert("ledDeviceType", _activeDeviceType);
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QJsonArray deviceList;
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// Discover Nanoleaf Devices
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SSDPDiscover discover;
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// Search for Canvas and Light-Panels
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QString searchTargetFilter = QString("%1|%2").arg(SSDP_CANVAS, SSDP_LIGHTPANELS);
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discover.setSearchFilter(searchTargetFilter, SSDP_FILTER_HEADER);
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QString searchTarget = SSDP_ID;
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if (discover.discoverServices(searchTarget) > 0)
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{
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deviceList = discover.getServicesDiscoveredJson();
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}
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devicesDiscovered.insert("devices", deviceList);
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Debug(_log, "devicesDiscovered: [%s]", QString(QJsonDocument(devicesDiscovered).toJson(QJsonDocument::Compact)).toUtf8().constData());
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return devicesDiscovered;
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}
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QJsonObject LedDeviceNanoleaf::getProperties(const QJsonObject& params)
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{
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Debug(_log, "params: [%s]", QString(QJsonDocument(params).toJson(QJsonDocument::Compact)).toUtf8().constData());
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QJsonObject properties;
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// Get Nanoleaf device properties
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QString host = params["host"].toString("");
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if (!host.isEmpty())
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{
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QString authToken = params["token"].toString("");
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QString filter = params["filter"].toString("");
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// Resolve hostname and port (or use default API port)
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QStringList addressparts = QStringUtils::split(host, ":", QStringUtils::SplitBehavior::SkipEmptyParts);
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QString apiHost = addressparts[0];
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int apiPort;
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if (addressparts.size() > 1)
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{
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apiPort = addressparts[1].toInt();
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}
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else
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{
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apiPort = API_DEFAULT_PORT;
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}
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initRestAPI(apiHost, apiPort, authToken);
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_restApi->setPath(filter);
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// Perform request
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httpResponse response = _restApi->get();
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if (response.error())
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{
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Warning(_log, "%s get properties failed with error: '%s'", QSTRING_CSTR(_activeDeviceType), QSTRING_CSTR(response.getErrorReason()));
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}
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properties.insert("properties", response.getBody().object());
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Debug(_log, "properties: [%s]", QString(QJsonDocument(properties).toJson(QJsonDocument::Compact)).toUtf8().constData());
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}
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return properties;
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}
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void LedDeviceNanoleaf::identify(const QJsonObject& params)
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{
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Debug(_log, "params: [%s]", QString(QJsonDocument(params).toJson(QJsonDocument::Compact)).toUtf8().constData());
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QString host = params["host"].toString("");
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if (!host.isEmpty())
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{
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QString authToken = params["token"].toString("");
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// Resolve hostname and port (or use default API port)
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QStringList addressparts = QStringUtils::split(host, ":", QStringUtils::SplitBehavior::SkipEmptyParts);
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QString apiHost = addressparts[0];
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int apiPort;
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if (addressparts.size() > 1)
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{
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apiPort = addressparts[1].toInt();
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}
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else
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{
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apiPort = API_DEFAULT_PORT;
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}
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initRestAPI(apiHost, apiPort, authToken);
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_restApi->setPath("identify");
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// Perform request
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httpResponse response = _restApi->put();
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if (response.error())
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{
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Warning(_log, "%s identification failed with error: '%s'", QSTRING_CSTR(_activeDeviceType), QSTRING_CSTR(response.getErrorReason()));
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}
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|
}
|
|
}
|
|
|
|
bool LedDeviceNanoleaf::powerOn()
|
|
{
|
|
if (_isDeviceReady)
|
|
{
|
|
changeToExternalControlMode();
|
|
|
|
//Power-on Nanoleaf device
|
|
_restApi->setPath(API_STATE);
|
|
_restApi->put(getOnOffRequest(true));
|
|
}
|
|
return true;
|
|
}
|
|
|
|
bool LedDeviceNanoleaf::powerOff()
|
|
{
|
|
if (_isDeviceReady)
|
|
{
|
|
//Power-off the Nanoleaf device physically
|
|
_restApi->setPath(API_STATE);
|
|
_restApi->put(getOnOffRequest(false));
|
|
}
|
|
return true;
|
|
}
|
|
|
|
QString LedDeviceNanoleaf::getOnOffRequest(bool isOn) const
|
|
{
|
|
QString state = isOn ? STATE_VALUE_TRUE : STATE_VALUE_FALSE;
|
|
return QString("{\"%1\":{\"%2\":%3}}").arg(STATE_ON, STATE_ONOFF_VALUE, state);
|
|
}
|
|
|
|
QJsonDocument LedDeviceNanoleaf::changeToExternalControlMode()
|
|
{
|
|
Debug(_log, "Set Nanoleaf to External Control (UDP) streaming mode");
|
|
_extControlVersion = EXTCTRLVER_V2;
|
|
//Enable UDP Mode v2
|
|
|
|
_restApi->setPath(API_EFFECT);
|
|
httpResponse response = _restApi->put(API_EXT_MODE_STRING_V2);
|
|
|
|
return response.getBody();
|
|
}
|
|
|
|
int LedDeviceNanoleaf::write(const std::vector<ColorRgb>& ledValues)
|
|
{
|
|
int retVal = 0;
|
|
|
|
//
|
|
// 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)
|
|
|
|
int udpBufferSize = STREAM_FRAME_PANEL_NUM_SIZE + _panelLedCount * STREAM_FRAME_PANEL_INFO_SIZE;
|
|
|
|
QByteArray udpbuffer;
|
|
udpbuffer.resize(udpBufferSize);
|
|
|
|
int i = 0;
|
|
|
|
// Set number of panels
|
|
qToBigEndian<quint16>(static_cast<quint16>(_panelLedCount), udpbuffer.data() + i);
|
|
i += 2;
|
|
|
|
ColorRgb color;
|
|
|
|
//Maintain LED counter independent from PanelCounter
|
|
int ledCounter = 0;
|
|
for (int panelCounter = 0; panelCounter < _panelLedCount; panelCounter++)
|
|
{
|
|
int panelID = _panelIds[panelCounter];
|
|
|
|
// Set panels configured
|
|
if (panelCounter >= _startPos && panelCounter <= _endPos) {
|
|
color = static_cast<ColorRgb>(ledValues.at(ledCounter));
|
|
++ledCounter;
|
|
}
|
|
else
|
|
{
|
|
// Set panels not configured to black;
|
|
color = ColorRgb::BLACK;
|
|
DebugIf(verbose3, _log, "[%d] >= panelLedCount [%d] => Set to BLACK", panelCounter, _panelLedCount);
|
|
}
|
|
|
|
// Set panelID
|
|
qToBigEndian<quint16>(static_cast<quint16>(panelID), udpbuffer.data() + i);
|
|
i += 2;
|
|
|
|
// Set panel's color LEDs
|
|
udpbuffer[i++] = static_cast<char>(color.red);
|
|
udpbuffer[i++] = static_cast<char>(color.green);
|
|
udpbuffer[i++] = static_cast<char>(color.blue);
|
|
|
|
// 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
|
|
qToBigEndian<quint16>(static_cast<quint16>(tranitionTime), udpbuffer.data() + i);
|
|
i += 2;
|
|
|
|
DebugIf(verbose3, _log, "[%u] Color: {%u,%u,%u}", panelCounter, color.red, color.green, color.blue);
|
|
}
|
|
|
|
if (verbose3)
|
|
{
|
|
Debug(_log, "UDP-Address [%s], UDP-Port [%u], udpBufferSize[%d], Bytes to send [%d]", QSTRING_CSTR(_address.toString()), _port, udpBufferSize, i);
|
|
Debug( _log, "packet: [%s]", QSTRING_CSTR(toHex(udpbuffer, 64)));
|
|
}
|
|
|
|
retVal = writeBytes(udpbuffer);
|
|
return retVal;
|
|
}
|