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subsurface/core/divesitehelpers.cpp: In member function 'virtual void ReverseGeoLookupThread::run()': subsurface/core/divesitehelpers.cpp:128:12: error: invalid use of incomplete type 'class QDebug' qDebug() << "no reverse geo lookup; geonames returned\n" << fullReply; ^ Signed-off-by: Alex Blasche <alexander.blasche@qt.io>
210 lines
7.3 KiB
C++
210 lines
7.3 KiB
C++
// SPDX-License-Identifier: GPL-2.0
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//
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// infrastructure to deal with dive sites
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//
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#include "divesitehelpers.h"
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#include "divesite.h"
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#include "helpers.h"
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#include "membuffer.h"
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#include <QDebug>
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#include <QJsonDocument>
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#include <QJsonArray>
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#include <QJsonObject>
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#include <QNetworkReply>
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#include <QNetworkRequest>
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#include <QNetworkAccessManager>
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#include <QUrlQuery>
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#include <QEventLoop>
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#include <QTimer>
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struct GeoLookupInfo {
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degrees_t lat;
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degrees_t lon;
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uint32_t uuid;
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};
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QVector<GeoLookupInfo> geo_lookup_data;
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ReverseGeoLookupThread* ReverseGeoLookupThread::instance() {
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static ReverseGeoLookupThread* self = new ReverseGeoLookupThread();
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return self;
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}
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ReverseGeoLookupThread::ReverseGeoLookupThread(QObject *obj) : QThread(obj)
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{
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}
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void ReverseGeoLookupThread::run() {
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if (geo_lookup_data.isEmpty())
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return;
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QNetworkRequest request;
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QNetworkAccessManager *rgl = new QNetworkAccessManager();
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QEventLoop loop;
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QString mapquestURL("http://open.mapquestapi.com/nominatim/v1/reverse.php?format=json&accept-language=%1&lat=%2&lon=%3");
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QString geonamesURL("http://api.geonames.org/findNearbyPlaceNameJSON?language=%1&lat=%2&lng=%3&radius=50&username=dirkhh");
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QString geonamesOceanURL("http://api.geonames.org/oceanJSON?language=%1&lat=%2&lng=%3&radius=50&username=dirkhh");
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QString divelogsURL("https://www.divelogs.de/mapsearch_divespotnames.php?lat=%1&lng=%2&radius=50");
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QTimer timer;
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request.setRawHeader("Accept", "text/json");
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request.setRawHeader("User-Agent", getUserAgent().toUtf8());
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connect(&timer, SIGNAL(timeout()), &loop, SLOT(quit()));
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Q_FOREACH (const GeoLookupInfo& info, geo_lookup_data ) {
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struct dive_site *ds = info.uuid ? get_dive_site_by_uuid(info.uuid) : &displayed_dive_site;
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// first check the findNearbyPlaces API from geonames - that should give us country, state, city
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request.setUrl(geonamesURL.arg(uiLanguage(NULL)).arg(info.lat.udeg / 1000000.0).arg(info.lon.udeg / 1000000.0));
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QNetworkReply *reply = rgl->get(request);
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timer.setSingleShot(true);
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connect(reply, SIGNAL(finished()), &loop, SLOT(quit()));
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timer.start(5000); // 5 secs. timeout
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loop.exec();
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if(timer.isActive()) {
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timer.stop();
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if(reply->error() > 0) {
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report_error("got error accessing geonames.org: %s", qPrintable(reply->errorString()));
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goto clear_reply;
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}
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int v = reply->attribute(QNetworkRequest::HttpStatusCodeAttribute).toInt();
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if (v < 200 || v >= 300)
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goto clear_reply;
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QByteArray fullReply = reply->readAll();
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QJsonParseError errorObject;
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QJsonDocument jsonDoc = QJsonDocument::fromJson(fullReply, &errorObject);
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if (errorObject.error != QJsonParseError::NoError) {
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report_error("error parsing geonames.org response: %s", qPrintable(errorObject.errorString()));
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goto clear_reply;
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}
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QJsonObject obj = jsonDoc.object();
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QVariant geoNamesObject = obj.value("geonames").toVariant();
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QVariantList geoNames = geoNamesObject.toList();
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if (geoNames.count() > 0) {
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QVariantMap firstData = geoNames.at(0).toMap();
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int ri = 0, l3 = -1, lt = -1;
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if (ds->taxonomy.category == NULL) {
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ds->taxonomy.category = alloc_taxonomy();
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} else {
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// clear out the data (except for the ocean data)
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int ocean;
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if ((ocean = taxonomy_index_for_category(&ds->taxonomy, TC_OCEAN)) > 0) {
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ds->taxonomy.category[0] = ds->taxonomy.category[ocean];
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ds->taxonomy.nr = 1;
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} else {
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// ocean is -1 if there is no such entry, and we didn't copy above
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// if ocean is 0, so the following gets us the correct count
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ds->taxonomy.nr = ocean + 1;
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}
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}
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// get all the data - OCEAN is special, so start at COUNTRY
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for (int j = TC_COUNTRY; j < TC_NR_CATEGORIES; j++) {
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if (firstData[taxonomy_api_names[j]].isValid()) {
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ds->taxonomy.category[ri].category = j;
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ds->taxonomy.category[ri].origin = taxonomy::GEOCODED;
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free((void*)ds->taxonomy.category[ri].value);
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ds->taxonomy.category[ri].value = copy_string(qPrintable(firstData[taxonomy_api_names[j]].toString()));
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ri++;
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}
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}
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ds->taxonomy.nr = ri;
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l3 = taxonomy_index_for_category(&ds->taxonomy, TC_ADMIN_L3);
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lt = taxonomy_index_for_category(&ds->taxonomy, TC_LOCALNAME);
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if (l3 == -1 && lt != -1) {
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// basically this means we did get a local name (what we call town), but just like most places
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// we didn't get an adminName_3 - which in some regions is the actual city that town belongs to,
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// then we copy the town into the city
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ds->taxonomy.category[ri].value = copy_string(ds->taxonomy.category[lt].value);
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ds->taxonomy.category[ri].origin = taxonomy::COPIED;
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ds->taxonomy.category[ri].category = TC_ADMIN_L3;
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ds->taxonomy.nr++;
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}
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mark_divelist_changed(true);
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} else {
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report_error("geonames.org did not provide reverse lookup information");
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qDebug() << "no reverse geo lookup; geonames returned\n" << fullReply;
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}
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} else {
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report_error("timeout accessing geonames.org");
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disconnect(reply, SIGNAL(finished()), &loop, SLOT(quit()));
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reply->abort();
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}
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// next check the oceans API to figure out the body of water
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request.setUrl(geonamesOceanURL.arg(uiLanguage(NULL)).arg(info.lat.udeg / 1000000.0).arg(info.lon.udeg / 1000000.0));
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reply = rgl->get(request);
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connect(reply, SIGNAL(finished()), &loop, SLOT(quit()));
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timer.start(5000); // 5 secs. timeout
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loop.exec();
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if(timer.isActive()) {
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timer.stop();
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if(reply->error() > 0) {
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report_error("got error accessing oceans API of geonames.org: %s", qPrintable(reply->errorString()));
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goto clear_reply;
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}
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int v = reply->attribute(QNetworkRequest::HttpStatusCodeAttribute).toInt();
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if (v < 200 || v >= 300)
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goto clear_reply;
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QByteArray fullReply = reply->readAll();
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QJsonParseError errorObject;
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QJsonDocument jsonDoc = QJsonDocument::fromJson(fullReply, &errorObject);
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if (errorObject.error != QJsonParseError::NoError) {
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report_error("error parsing geonames.org response: %s", qPrintable(errorObject.errorString()));
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goto clear_reply;
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}
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QJsonObject obj = jsonDoc.object();
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QVariant oceanObject = obj.value("ocean").toVariant();
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QVariantMap oceanName = oceanObject.toMap();
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if (oceanName["name"].isValid()) {
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int idx;
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if (ds->taxonomy.category == NULL)
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ds->taxonomy.category = alloc_taxonomy();
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idx = taxonomy_index_for_category(&ds->taxonomy, TC_OCEAN);
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if (idx == -1)
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idx = ds->taxonomy.nr;
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if (idx < TC_NR_CATEGORIES) {
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ds->taxonomy.category[idx].category = TC_OCEAN;
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ds->taxonomy.category[idx].origin = taxonomy::GEOCODED;
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ds->taxonomy.category[idx].value = copy_string(qPrintable(oceanName["name"].toString()));
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if (idx == ds->taxonomy.nr)
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ds->taxonomy.nr++;
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}
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mark_divelist_changed(true);
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}
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} else {
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report_error("timeout accessing geonames.org");
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disconnect(reply, SIGNAL(finished()), &loop, SLOT(quit()));
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reply->abort();
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}
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clear_reply:
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reply->deleteLater();
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}
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rgl->deleteLater();
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}
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void ReverseGeoLookupThread::lookup(dive_site *ds)
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{
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if (!ds)
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return;
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GeoLookupInfo info;
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info.lat = ds->latitude;
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info.lon = ds->longitude;
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info.uuid = ds->uuid;
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geo_lookup_data.clear();
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geo_lookup_data.append(info);
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run();
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}
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extern "C" void add_geo_information_for_lookup(degrees_t latitude, degrees_t longitude, uint32_t uuid) {
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GeoLookupInfo info;
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info.lat = latitude;
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info.lon = longitude;
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info.uuid = uuid;
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geo_lookup_data.append(info);
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}
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