Files
OpenTracks/src/main/java/de/dennisguse/opentracks/settings/PreferenceHelper.java
T

146 lines
7.0 KiB
Java

package de.dennisguse.opentracks.settings;
import android.content.Context;
import de.dennisguse.opentracks.R;
import de.dennisguse.opentracks.util.PreferencesUtils;
import de.dennisguse.opentracks.util.UnitConversions;
final class PreferenceHelper {
static String[] getMinRecordingIntervalEntries(Context context) {
String[] entryValues = context.getResources().getStringArray(R.array.min_recording_interval_values);
String[] entries = new String[entryValues.length];
for (int i = 0; i < entryValues.length; i++) {
int value = Integer.parseInt(entryValues[i]);
if (value == PreferencesUtils.getMinRecordingIntervalAdaptAccuracy(context)) {
entries[i] = context.getString(R.string.value_adapt_accuracy);
} else if (value == PreferencesUtils.getMinRecordingIntervalAdaptBatteryLife(context)) {
entries[i] = context.getString(R.string.value_adapt_battery_life);
} else if (value == PreferencesUtils.getMinRecordingIntervalDefault(context)) {
entries[i] = context.getString(R.string.value_smallest_recommended);
} else {
entries[i] = value < 60 ? context.getString(R.string.value_integer_second, value) : context.getString(R.string.value_integer_minute, value / 60);
}
}
return entries;
}
static String[] getRecordingDistanceIntervalEntries(Context context, boolean metricUnits) {
String[] entryValues = context.getResources().getStringArray(R.array.recording_distance_interval_values);
String[] entries = new String[entryValues.length];
final int recordingDistanceIntervalDefault = PreferencesUtils.getRecordingDistanceIntervalDefault(context);
for (int i = 0; i < entryValues.length; i++) {
int value = Integer.parseInt(entryValues[i]);
String displayValue;
if (metricUnits) {
displayValue = context.getString(R.string.value_integer_meter, value);
if (value == recordingDistanceIntervalDefault) {
entries[i] = context.getString(R.string.value_integer_meter_recommended, value);
} else {
entries[i] = displayValue;
}
} else {
int feet = (int) (value * UnitConversions.M_TO_FT);
displayValue = context.getString(R.string.value_integer_feet, feet);
if (value == recordingDistanceIntervalDefault) {
entries[i] = context.getString(R.string.value_integer_feet_recommended, feet);
} else {
entries[i] = displayValue;
}
}
}
return entries;
}
static String[] getMaxRecordingDistanceEntries(Context context, boolean metricUnits) {
String[] entryValues = context.getResources().getStringArray(R.array.max_recording_distance_values);
String[] entries = new String[entryValues.length];
final int maxRecordingDistanceDefault = Integer.parseInt(context.getResources().getString(R.string.max_recording_distance_default));
for (int i = 0; i < entryValues.length; i++) {
int value = Integer.parseInt(entryValues[i]);
String displayValue;
if (metricUnits) {
displayValue = context.getString(R.string.value_integer_meter, value);
if (value == maxRecordingDistanceDefault) {
entries[i] = context.getString(R.string.value_integer_meter_recommended, value);
} else {
entries[i] = displayValue;
}
} else {
int feet = (int) (value * UnitConversions.M_TO_FT);
if (feet < 2000) {
displayValue = context.getString(R.string.value_integer_feet, feet);
if (value == maxRecordingDistanceDefault) {
entries[i] = context.getString(R.string.value_integer_feet_recommended, feet);
} else {
entries[i] = displayValue;
}
} else {
double mile = feet * UnitConversions.FT_TO_MI;
displayValue = context.getString(R.string.value_float_mile, mile);
entries[i] = displayValue;
}
}
}
return entries;
}
static String[] getRecordingGpsAccuracyEntries(Context context, boolean metricUnits) {
String[] entryValues = context.getResources().getStringArray(R.array.recording_gps_accuracy_values);
String[] entries = new String[entryValues.length];
final int recordingGPSAccuracyDefault = Integer.parseInt(context.getResources().getString(R.string.recording_gps_accuracy_default));
final int recordingGPSAccuracyExcellent = Integer.parseInt(context.getResources().getString(R.string.recording_gps_accuracy_excellent));
final int recordingGPSAccuracyPoor = Integer.parseInt(context.getResources().getString(R.string.recording_gps_accuracy_poor));
for (int i = 0; i < entryValues.length; i++) {
int value = Integer.parseInt(entryValues[i]);
String displayValue;
if (metricUnits) {
displayValue = context.getString(R.string.value_integer_meter, value);
if (value == recordingGPSAccuracyDefault) {
entries[i] = context.getString(R.string.value_integer_meter_recommended, value);
} else if (value == recordingGPSAccuracyExcellent) {
entries[i] = context.getString(R.string.value_integer_meter_excellent_gps, value);
} else if (value == recordingGPSAccuracyPoor) {
entries[i] = context.getString(R.string.value_integer_meter_poor_gps, value);
} else {
entries[i] = displayValue;
}
} else {
int feet = (int) (value * UnitConversions.M_TO_FT);
if (feet < 2000) {
displayValue = context.getString(R.string.value_integer_feet, feet);
if (value == recordingGPSAccuracyDefault) {
entries[i] = context.getString(R.string.value_integer_feet_recommended, feet);
} else if (value == recordingGPSAccuracyExcellent) {
entries[i] = context.getString(R.string.value_integer_feet_excellent_gps, feet);
} else {
entries[i] = displayValue;
}
} else {
double mile = feet * UnitConversions.FT_TO_MI;
displayValue = context.getString(R.string.value_float_mile, mile);
if (value == recordingGPSAccuracyPoor) {
entries[i] = context.getString(R.string.value_float_mile_poor_gps, mile);
} else {
entries[i] = displayValue;
}
}
}
}
return entries;
}
}