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https://github.com/subsurface/subsurface.git
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5bf86f6042
When reading a pre-v3 XML file, we now do reverse geo lookups on the GPS coordinates and add the country to the dive site notes. Eventually this wants to be a tag (once we implement tags for dive sites). This is going to add quite a bit of delay when people open a V2 XML file - depending on how many distinct GPS fixes they have. In my case with 127 GPS fixes it took about 20 seconds to open the file... Signed-off-by: Dirk Hohndel <dirk@hohndel.org>
382 lines
11 KiB
C++
382 lines
11 KiB
C++
#include "qthelper.h"
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#include "helpers.h"
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#include "gettextfromc.h"
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#include "statistics.h"
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#include "subsurfacewebservices.h"
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#include "usersurvey.h"
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#include "membuffer.h"
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#include <exif.h>
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#include "file.h"
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#include <QFile>
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#include <QRegExp>
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#include <QDir>
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#include <QDebug>
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#include <QSettings>
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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 <libxslt/documents.h>
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#define translate(_context, arg) trGettext(arg)
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static const QString DEGREE_SIGNS("dD" UTF8_DEGREE);
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QString weight_string(int weight_in_grams)
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{
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QString str;
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if (get_units()->weight == units::KG) {
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int gr = weight_in_grams % 1000;
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int kg = weight_in_grams / 1000;
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if (kg >= 20.0) {
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str = QString("0");
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} else {
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str = QString("%1.%2").arg(kg).arg((unsigned)(gr) / 100);
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}
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} else {
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double lbs = grams_to_lbs(weight_in_grams);
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str = QString("%1").arg(lbs, 0, 'f', lbs >= 40.0 ? 0 : 1);
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}
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return (str);
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}
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extern "C" const char *printGPSCoords(int lat, int lon)
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{
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unsigned int latdeg, londeg;
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unsigned int latmin, lonmin;
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double latsec, lonsec;
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QString lath, lonh, result;
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if (!lat && !lon)
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return strdup("");
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lath = lat >= 0 ? translate("gettextFromC", "N") : translate("gettextFromC", "S");
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lonh = lon >= 0 ? translate("gettextFromC", "E") : translate("gettextFromC", "W");
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lat = abs(lat);
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lon = abs(lon);
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latdeg = lat / 1000000U;
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londeg = lon / 1000000U;
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latmin = (lat % 1000000U) * 60U;
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lonmin = (lon % 1000000U) * 60U;
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latsec = (latmin % 1000000) * 60;
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lonsec = (lonmin % 1000000) * 60;
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result.sprintf("%u%s%02d\'%06.3f\"%s %u%s%02d\'%06.3f\"%s",
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latdeg, UTF8_DEGREE, latmin / 1000000, latsec / 1000000, lath.toUtf8().data(),
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londeg, UTF8_DEGREE, lonmin / 1000000, lonsec / 1000000, lonh.toUtf8().data());
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return strdup(result.toUtf8().data());
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}
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static bool parseCoord(const QString& txt, int& pos, const QString& positives,
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const QString& negatives, const QString& others,
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double& value)
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{
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bool numberDefined = false, degreesDefined = false,
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minutesDefined = false, secondsDefined = false;
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double number = 0.0;
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int posBeforeNumber = pos;
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int sign = 0;
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value = 0.0;
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while (pos < txt.size()) {
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if (txt[pos].isDigit()) {
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if (numberDefined)
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return false;
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QRegExp numberRe("(\\d+(?:[\\.,]\\d+)?).*");
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if (!numberRe.exactMatch(txt.mid(pos)))
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return false;
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number = numberRe.cap(1).toDouble();
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numberDefined = true;
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posBeforeNumber = pos;
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pos += numberRe.cap(1).size() - 1;
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} else if (positives.indexOf(txt[pos].toUpper()) >= 0) {
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if (sign != 0)
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return false;
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sign = 1;
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if (degreesDefined || numberDefined) {
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//sign after the degrees =>
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//at the end of the coordinate
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++pos;
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break;
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}
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} else if (negatives.indexOf(txt[pos].toUpper()) >= 0) {
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if (sign != 0) {
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if (others.indexOf(txt[pos]) >= 0)
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//special case for the '-' sign => next coordinate
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break;
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return false;
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}
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sign = -1;
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if (degreesDefined || numberDefined) {
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//sign after the degrees =>
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//at the end of the coordinate
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++pos;
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break;
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}
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} else if (others.indexOf(txt[pos].toUpper()) >= 0) {
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//we are at the next coordinate.
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break;
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} else if (DEGREE_SIGNS.indexOf(txt[pos]) >= 0) {
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if (!numberDefined)
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return false;
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if (degreesDefined) {
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//next coordinate => need to put back the number
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pos = posBeforeNumber;
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numberDefined = false;
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break;
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}
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value += number;
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numberDefined = false;
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degreesDefined = true;
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} else if (txt[pos] == '\'') {
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if (!numberDefined || minutesDefined)
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return false;
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value += number / 60.0;
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numberDefined = false;
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minutesDefined = true;
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} else if (txt[pos] == '"') {
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if (!numberDefined || secondsDefined)
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return false;
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value += number / 3600.0;
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numberDefined = false;
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secondsDefined = true;
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} else if (txt[pos] == ' ' || txt[pos] == '\t') {
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//ignore spaces
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} else {
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return false;
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}
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++pos;
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}
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if (!degreesDefined && numberDefined) {
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value = number; //just a single number => degrees
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numberDefined = false;
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degreesDefined = true;
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}
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if (!degreesDefined || numberDefined)
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return false;
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if (sign == -1) value *= -1.0;
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return true;
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}
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bool parseGpsText(const QString &gps_text, double *latitude, double *longitude)
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{
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const QString trimmed = gps_text.trimmed();
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if (trimmed.isEmpty()) {
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*latitude = 0.0;
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*longitude = 0.0;
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return true;
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}
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int pos = 0;
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static const QString POS_LAT = QString("+N") + translate("gettextFromC", "N");
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static const QString NEG_LAT = QString("-S") + translate("gettextFromC", "S");
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static const QString POS_LON = QString("+E") + translate("gettextFromC", "E");
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static const QString NEG_LON = QString("-W") + translate("gettextFromC", "W");
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return parseCoord(gps_text, pos, POS_LAT, NEG_LAT, POS_LON + NEG_LON, *latitude) &&
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parseCoord(gps_text, pos, POS_LON, NEG_LON, "", *longitude) &&
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pos == gps_text.size();
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}
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#if 0 // we'll need something like this for the dive site management, eventually
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bool gpsHasChanged(struct dive *dive, struct dive *master, const QString &gps_text, bool *parsed_out)
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{
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double latitude, longitude;
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int latudeg, longudeg;
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bool ignore;
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bool *parsed = parsed_out ?: &ignore;
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*parsed = true;
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/* if we have a master and the dive's gps address is different from it,
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* don't change the dive */
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if (master && (master->latitude.udeg != dive->latitude.udeg ||
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master->longitude.udeg != dive->longitude.udeg))
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return false;
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if (!(*parsed = parseGpsText(gps_text, &latitude, &longitude)))
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return false;
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latudeg = rint(1000000 * latitude);
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longudeg = rint(1000000 * longitude);
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/* if dive gps didn't change, nothing changed */
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if (dive->latitude.udeg == latudeg && dive->longitude.udeg == longudeg)
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return false;
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/* ok, update the dive and mark things changed */
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dive->latitude.udeg = latudeg;
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dive->longitude.udeg = longudeg;
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return true;
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}
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#endif
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QList<int> getDivesInTrip(dive_trip_t *trip)
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{
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QList<int> ret;
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int i;
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struct dive *d;
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for_each_dive (i, d) {
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if (d->divetrip == trip) {
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ret.push_back(get_divenr(d));
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}
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}
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return ret;
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}
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// we need this to be uniq, but also make sure
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// it doesn't change during the life time of a Subsurface session
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// oh, and it has no meaning whatsoever - that's why we have the
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// silly initial number and increment by 3 :-)
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int dive_getUniqID(struct dive *d)
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{
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static QSet<int> ids;
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static int maxId = 83529;
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int id = d->id;
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if (id) {
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if (!ids.contains(id)) {
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qDebug() << "WTF - only I am allowed to create IDs";
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ids.insert(id);
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}
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return id;
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}
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maxId += 3;
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id = maxId;
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Q_ASSERT(!ids.contains(id));
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ids.insert(id);
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return id;
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}
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static xmlDocPtr get_stylesheet_doc(const xmlChar *uri, xmlDictPtr, int, void *, xsltLoadType)
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{
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QFile f(QLatin1String(":/xslt/") + (const char *)uri);
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if (!f.open(QIODevice::ReadOnly))
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return NULL;
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/* Load and parse the data */
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QByteArray source = f.readAll();
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xmlDocPtr doc = xmlParseMemory(source, source.size());
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return doc;
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}
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extern "C" xsltStylesheetPtr get_stylesheet(const char *name)
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{
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// this needs to be done only once, but doesn't hurt to run every time
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xsltSetLoaderFunc(get_stylesheet_doc);
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// get main document:
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xmlDocPtr doc = get_stylesheet_doc((const xmlChar *)name, NULL, 0, NULL, XSLT_LOAD_START);
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if (!doc)
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return NULL;
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// xsltSetGenericErrorFunc(stderr, NULL);
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xsltStylesheetPtr xslt = xsltParseStylesheetDoc(doc);
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if (!xslt) {
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xmlFreeDoc(doc);
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return NULL;
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}
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return xslt;
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}
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extern "C" void picture_load_exif_data(struct picture *p, timestamp_t *timestamp)
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{
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EXIFInfo exif;
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memblock mem;
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if (readfile(p->filename, &mem) <= 0)
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goto picture_load_exit;
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if (exif.parseFrom((const unsigned char *)mem.buffer, (unsigned)mem.size) != PARSE_EXIF_SUCCESS)
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goto picture_load_exit;
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*timestamp = exif.epoch();
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p->longitude.udeg= lrint(1000000.0 * exif.GeoLocation.Longitude);
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p->latitude.udeg = lrint(1000000.0 * exif.GeoLocation.Latitude);
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picture_load_exit:
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free(mem.buffer);
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return;
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}
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extern "C" char *get_file_name(const char *fileName)
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{
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QFileInfo fileInfo(fileName);
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return strdup(fileInfo.fileName().toUtf8());
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}
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extern "C" void copy_image_and_overwrite(const char *cfileName, const char *cnewName)
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{
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QString fileName = QString::fromUtf8(cfileName);
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QString newName = QString::fromUtf8(cnewName);
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newName += QFileInfo(cfileName).fileName();
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QFile file(newName);
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if (file.exists())
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file.remove();
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QFile::copy(fileName, newName);
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}
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extern "C" bool string_sequence_contains(const char *string_sequence, const char *text)
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{
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if (same_string(text, "") || same_string(string_sequence, ""))
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return false;
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QString stringSequence(string_sequence);
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QStringList strings = stringSequence.split(",", QString::SkipEmptyParts);
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Q_FOREACH (const QString& string, strings) {
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if (string.trimmed().compare(QString(text).trimmed(), Qt::CaseInsensitive) == 0)
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return true;
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}
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return false;
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}
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static bool lessThan(const QPair<QString, int> &a, const QPair<QString, int> &b)
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{
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return a.second < b.second;
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}
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void selectedDivesGasUsed(QVector<QPair<QString, int> > &gasUsedOrdered)
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{
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int i, j;
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struct dive *d;
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QMap<QString, int> gasUsed;
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for_each_dive (i, d) {
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if (!d->selected)
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continue;
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volume_t diveGases[MAX_CYLINDERS] = {};
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get_gas_used(d, diveGases);
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for (j = 0; j < MAX_CYLINDERS; j++)
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if (diveGases[j].mliter) {
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QString gasName = gasname(&d->cylinder[j].gasmix);
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gasUsed[gasName] += diveGases[j].mliter;
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}
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}
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Q_FOREACH(const QString& gas, gasUsed.keys()) {
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gasUsedOrdered.append(qMakePair(gas, gasUsed[gas]));
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}
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qSort(gasUsedOrdered.begin(), gasUsedOrdered.end(), lessThan);
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}
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extern "C" void reverseGeoLookup(degrees_t latitude, degrees_t longitude, uint32_t uuid)
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{
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QNetworkRequest request;
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QNetworkAccessManager *rgl = new QNetworkAccessManager();
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request.setUrl(QString("http://open.mapquestapi.com/nominatim/v1/reverse.php?format=json&accept-language=%1&lat=%2&lon=%3")
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.arg(uiLanguage(NULL)).arg(latitude.udeg / 1000000.0).arg(longitude.udeg / 1000000.0));
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request.setRawHeader("Accept", "text/json");
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request.setRawHeader("User-Agent", UserSurvey::getUserAgent().toUtf8());
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QNetworkReply *reply = rgl->get(request);
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QEventLoop loop;
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QObject::connect(reply, SIGNAL(finished()), &loop, SLOT(quit()));
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loop.exec();
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QJsonParseError errorObject;
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QJsonDocument jsonDoc = QJsonDocument::fromJson(reply->readAll(), &errorObject);
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if (errorObject.error != QJsonParseError::NoError) {
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qDebug() << errorObject.errorString();
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} else {
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QJsonObject obj = jsonDoc.object();
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QJsonObject address = obj.value("address").toObject();
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qDebug() << "found country:" << address.value("country").toString();
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struct dive_site *ds = get_dive_site_by_uuid(uuid);
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ds->notes = add_to_string(ds->notes, "countrytag: %s", address.value("country").toString().toUtf8().data());
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}
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}
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