Make use of HTTPS urls for google services.

Fix formatting by using locale settings
This commit is contained in:
van.isacker.pieter
2011-09-09 14:49:31 +02:00
commit 20cbdccbf6
456 changed files with 59973 additions and 0 deletions
@@ -0,0 +1,41 @@
/*
* Copyright 2010 Google Inc.
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not
* use this file except in compliance with the License. You may obtain a copy of
* the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
* License for the specific language governing permissions and limitations under
* the License.
*/
package com.google.android.apps.mytracks.content;
import java.util.Vector;
/**
* An interface for an object that can generate descriptions of waypoints.
*
* @author Sandor Dornbush
*/
public interface DescriptionGenerator {
/**
* Generate a description of the waypoint.
*/
public String generateWaypointDescription(Waypoint waypoint);
/**
* Generates a description for a track (with information about the
* statistics).
*
* @param track the track
* @return a track description
*/
public String generateTrackDescription(Track track, Vector<Double> distances,
Vector<Double> elevations);
}
@@ -0,0 +1,64 @@
/*
* Copyright 2010 Google Inc.
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not
* use this file except in compliance with the License. You may obtain a copy of
* the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
* License for the specific language governing permissions and limitations under
* the License.
*/
package com.google.android.apps.mytracks.content;
import android.location.Location;
/**
* This class extends the standard Android location with extra information.
*
* @author Sandor Dornbush
*/
public class MyTracksLocation extends Location {
private Sensor.SensorDataSet sensorDataSet = null;
/**
* The id of this location from the provider.
*/
private int id = -1;
public MyTracksLocation(Location location, Sensor.SensorDataSet sd) {
super(location);
this.sensorDataSet = sd;
}
public MyTracksLocation(String provider) {
super(provider);
}
public Sensor.SensorDataSet getSensorDataSet() {
return sensorDataSet;
}
public void setSensorData(Sensor.SensorDataSet sensorData) {
this.sensorDataSet = sensorData;
}
public int getId() {
return id;
}
public void setId(int id) {
this.id = id;
}
public void reset() {
super.reset();
sensorDataSet = null;
id = -1;
}
}
@@ -0,0 +1,443 @@
/*
* Copyright 2010 Google Inc.
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not
* use this file except in compliance with the License. You may obtain a copy of
* the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
* License for the specific language governing permissions and limitations under
* the License.
*/
package com.google.android.apps.mytracks.content;
import android.content.ContentValues;
import android.content.Context;
import android.database.Cursor;
import android.location.Location;
import android.net.Uri;
import java.util.Iterator;
import java.util.List;
/**
* Utility to access data from the mytracks content provider.
*
* @author Rodrigo Damazio
*/
public interface MyTracksProviderUtils {
/**
* Authority (first part of URI) for the MyTracks content provider:
*/
public static final String AUTHORITY = "com.google.android.maps.mytracks";
/**
* Deletes all tracks (including track points) from the provider.
*/
void deleteAllTracks();
/**
* Deletes a track with the given track id.
*
* @param trackId the unique track id
*/
void deleteTrack(long trackId);
/**
* Deletes a way point with the given way point id.
* This will also correct the next statistics way point after the deleted one
* to reflect the deletion.
* The generator is needed to stitch together statistics waypoints.
*
* @param waypointId the unique way point id
* @param descriptionGenerator the class to generate descriptions
*/
void deleteWaypoint(long waypointId,
DescriptionGenerator descriptionGenerator);
/**
* Finds the next statistics waypoint after the given waypoint.
*
* @param waypoint a given waypoint
* @return the next statistics waypoint, or null if none found.
*/
Waypoint getNextStatisticsWaypointAfter(Waypoint waypoint);
/**
* Updates the waypoint in the provider.
*
* @param waypoint
* @return true if successful
*/
boolean updateWaypoint(Waypoint waypoint);
/**
* Finds the last recorded location from the location provider.
*
* @return the last location, or null if no locations available
*/
Location getLastLocation();
/**
* Finds the first recorded waypoint for a given track from the location
* provider.
* This is a special waypoint that holds the stats for current segment.
*
* @param trackId the id of the track the waypoint belongs to
* @return the first waypoint, or null if no waypoints available
*/
Waypoint getFirstWaypoint(long trackId);
/**
* Finds the given waypoint from the location provider.
*
* @param waypointId
* @return the waypoint, or null if it does not exist
*/
Waypoint getWaypoint(long waypointId);
/**
* Finds the last recorded location id from the track points provider.
*
* @param trackId find last location on this track
* @return the location id, or -1 if no locations available
*/
long getLastLocationId(long trackId);
/**
* Finds the id of the 1st waypoint for a given track.
* The 1st waypoint is special as it contains the stats for the current
* segment.
*
* @param trackId find last location on this track
* @return the waypoint id, or -1 if no waypoints are available
*/
long getFirstWaypointId(long trackId);
/**
* Finds the id of the 1st waypoint for a given track.
* The 1st waypoint is special as it contains the stats for the current
* segment.
*
* @param trackId find last location on this track
* @return the waypoint id, or -1 if no waypoints are available
*/
long getLastWaypointId(long trackId);
/**
* Finds the last recorded track from the track provider.
*
* @return the last track, or null if no tracks available
*/
Track getLastTrack();
/**
* Finds the last recorded track id from the tracks provider.
*
* @return the track id, or -1 if no tracks available
*/
long getLastTrackId();
/**
* Finds a location by given unique id.
*
* @param id the desired id
* @return a Location object, or null if not found
*/
Location getLocation(long id);
/**
* Creates a cursor over the locations in the track points provider which
* iterates over a given range of unique ids.
* Caller gets to own the returned cursor. Don't forget to close it.
*
* @param trackId the id of the track for which to get the points
* @param minTrackPointId the minimum id for the track points
* @param maxLocations maximum number of locations retrieved
* @param descending if true the results will be returned in descending id
* order (latest location first)
* @return A cursor over the selected range of locations
*/
Cursor getLocationsCursor(long trackId, long minTrackPointId,
int maxLocations, boolean descending);
/**
* Creates a cursor over the waypoints of a track.
* Caller gets to own the returned cursor. Don't forget to close it.
*
* @param trackId the id of the track for which to get the points
* @param minWaypointId the minimum id for the track points
* @param maxWaypoints the maximum number of waypoints to return
* @return A cursor over the selected range of locations
*/
Cursor getWaypointsCursor(long trackId, long minWaypointId,
int maxWaypoints);
/**
* Finds a track by given unique track id.
* Note that the returned track object does not have any track points attached.
* Use {@link #getLocationIterator(long, long, boolean, LocationFactory)} to load
* the track points.
*
* @param id desired unique track id
* @return a Track object, or null if not found
*/
Track getTrack(long id);
/**
* Retrieves all tracks without track points. If no tracks exist, an empty
* list will be returned. Use {@link #getLocationIterator(long, long, boolean, LocationFactory)}
* to load the track points.
*
* @return a list of all the recorded tracks
*/
List<Track> getAllTracks();
/**
* Creates a cursor over the tracks provider with a given selection.
* Caller gets to own the returned cursor. Don't forget to close it.
*
* @param selection a given selection
* @return a cursor of the selected tracks
*/
Cursor getTracksCursor(String selection);
/**
* Inserts a track in the tracks provider.
* Note: This does not insert any track points.
* Use {@link #insertTrackPoint(Location, long)} to insert them.
*
* @param track the track to insert
* @return the content provider URI for the inserted track
*/
Uri insertTrack(Track track);
/**
* Inserts a track point in the tracks provider.
*
* @param location the location to insert
* @return the content provider URI for the inserted track point
*/
Uri insertTrackPoint(Location location, long trackId);
/**
* Inserts multiple track points in a single operation.
*
* @param locations an array of locations to insert
* @param length the number of locations (from the beginning of the array)
* to actually insert, or -1 for all of them
* @param trackId the ID of the track to insert the points into
* @return the number of points inserted
*/
int bulkInsertTrackPoints(Location[] locations, int length, long trackId);
/**
* Inserts a waypoint in the provider.
*
* @param waypoint the waypoint to insert
* @return the content provider URI for the inserted track
*/
Uri insertWaypoint(Waypoint waypoint);
/**
* Tests if a track with given id exists.
*
* @param id the unique id
* @return true if track exists
*/
boolean trackExists(long id);
/**
* Updates a track in the content provider.
* Note: This will not update any track points.
*
* @param track a given track
*/
void updateTrack(Track track);
/**
* Creates a Track object from a given cursor.
*
* @param cursor a cursor pointing at a db or provider with tracks
* @return a new Track object
*/
Track createTrack(Cursor cursor);
/**
* Creates the ContentValues for a given Track object.
*
* Note: If the track has an id<0 the id column will not be filled.
*
* @param track a given track object
* @return a filled in ContentValues object
*/
ContentValues createContentValues(Track track);
/**
* Creates a location object from a given cursor.
*
* @param cursor a cursor pointing at a db or provider with locations
* @return a new location object
*/
Location createLocation(Cursor cursor);
/**
* Fill a location object with values from a given cursor.
*
* @param cursor a cursor pointing at a db or provider with locations
* @param location a location object to be overwritten
*/
void fillLocation(Cursor cursor, Location location);
/**
* Creates a waypoint object from a given cursor.
*
* @param cursor a cursor pointing at a db or provider with waypoints.
* @return a new waypoint object
*/
Waypoint createWaypoint(Cursor cursor);
/**
* A lightweight wrapper around the original {@link Cursor} with a method to clean up.
*/
interface LocationIterator extends Iterator<Location> {
/**
* Returns ID of the most recently retrieved track point through a call to {@link #next()}.
*
* @return the ID of the most recent track point ID.
*/
long getLocationId();
/**
* Should be called in case the underlying iterator hasn't reached the last record.
* Calling it if it has reached the last record is a no-op.
*/
void close();
}
/**
* A factory for creating new {@class Location}s.
*/
interface LocationFactory {
/**
* Creates a new {@link Location} object to be populated from the underlying database record.
* It's up to the implementing class to decide whether to create a new instance or reuse
* existing to optimize for speed.
*
* @return a {@link Location} to be populated from the database.
*/
Location createLocation();
}
/**
* The default {@class Location}s factory, which creates a new location of 'gps' type.
*/
LocationFactory DEFAULT_LOCATION_FACTORY = new LocationFactory() {
@Override
public Location createLocation() {
return new Location("gps");
}
};
/**
* A location factory which uses two location instances (one for the current location,
* and one for the previous), useful when we need to keep the last location.
*/
public class DoubleBufferedLocationFactory implements LocationFactory {
private final Location locs[] = new MyTracksLocation[] {
new MyTracksLocation("gps"),
new MyTracksLocation("gps")
};
private int lastLoc = 0;
@Override
public Location createLocation() {
lastLoc = (lastLoc + 1) % locs.length;
return locs[lastLoc];
}
}
/**
* Creates a new read-only iterator over all track points for the given track. It provides
* a lightweight way of iterating over long tracks without failing due to the underlying cursor
* limitations. Since it's a read-only iterator, {@link Iterator#remove()} always throws
* {@class UnsupportedOperationException}.
*
* Each call to {@link LocationIterator#next()} may advance to the next DB record, and if so,
* the iterator calls {@link LocationFactory#createLocation()} and populates it with information
* retrieved from the record.
*
* When done with iteration, you must call {@link LocationIterator#close()} to make sure that all
* resources are properly deallocated.
*
* Example use:
* <code>
* ...
* LocationIterator it = providerUtils.getLocationIterator(
* 1, MyTracksProviderUtils.DEFAULT_LOCATION_FACTORY);
* try {
* for (Location loc : it) {
* ... // Do something useful with the location.
* }
* } finally {
* it.close();
* }
* ...
* </code>
*
* @param trackId the ID of a track to retrieve locations for.
* @param startTrackPointId the ID of the first track point to load, or -1 to start from
* the first point.
* @param descending if true the results will be returned in descending ID
* order (latest location first).
* @param locationFactory the factory for creating new locations.
*
* @return the read-only iterator over the given track's points.
*/
LocationIterator getLocationIterator(long trackId, long startTrackPointId, boolean descending,
LocationFactory locationFactory);
/**
* A factory which can produce instances of {@link MyTracksProviderUtils},
* and can be overridden in tests (a.k.a. poor man's guice).
*/
public static class Factory {
private static Factory instance = new Factory();
/**
* Creates and returns an instance of {@link MyTracksProviderUtils} which
* uses the given context to access its data.
*/
public static MyTracksProviderUtils get(Context context) {
return instance.newForContext(context);
}
/**
* Returns the global instance of this factory.
*/
public static Factory getInstance() {
return instance;
}
/**
* Overrides the global instance for this factory, to be used for testing.
* If used, don't forget to set it back to the original value after the
* test is run.
*/
public static void overrideInstance(Factory factory) {
instance = factory;
}
/**
* Creates an instance of {@link MyTracksProviderUtils}.
*/
protected MyTracksProviderUtils newForContext(Context context) {
return new MyTracksProviderUtilsImpl(context.getContentResolver());
}
}
}
@@ -0,0 +1,883 @@
// Generated by the protocol buffer compiler. DO NOT EDIT!
// source: proto/sensor.proto
package com.google.android.apps.mytracks.content;
public final class Sensor {
private Sensor() {}
public static void registerAllExtensions(
com.google.protobuf.ExtensionRegistryLite registry) {
}
public enum SensorState
implements com.google.protobuf.Internal.EnumLite {
NONE(0, 1),
CONNECTING(1, 2),
CONNECTED(2, 3),
DISCONNECTED(3, 4),
SENDING(4, 5),
;
public final int getNumber() { return value; }
public static SensorState valueOf(int value) {
switch (value) {
case 1: return NONE;
case 2: return CONNECTING;
case 3: return CONNECTED;
case 4: return DISCONNECTED;
case 5: return SENDING;
default: return null;
}
}
public static com.google.protobuf.Internal.EnumLiteMap<SensorState>
internalGetValueMap() {
return internalValueMap;
}
private static com.google.protobuf.Internal.EnumLiteMap<SensorState>
internalValueMap =
new com.google.protobuf.Internal.EnumLiteMap<SensorState>() {
public SensorState findValueByNumber(int number) {
return SensorState.valueOf(number)
; }
};
private final int index;
private final int value;
private SensorState(int index, int value) {
this.index = index;
this.value = value;
}
// @@protoc_insertion_point(enum_scope:com.google.android.apps.mytracks.content.SensorState)
}
public static final class SensorData extends
com.google.protobuf.GeneratedMessageLite {
// Use SensorData.newBuilder() to construct.
private SensorData() {
initFields();
}
private SensorData(boolean noInit) {}
private static final SensorData defaultInstance;
public static SensorData getDefaultInstance() {
return defaultInstance;
}
public SensorData getDefaultInstanceForType() {
return defaultInstance;
}
// required .com.google.android.apps.mytracks.content.SensorState state = 1 [default = NONE];
public static final int STATE_FIELD_NUMBER = 1;
private boolean hasState;
private com.google.android.apps.mytracks.content.Sensor.SensorState state_;
public boolean hasState() { return hasState; }
public com.google.android.apps.mytracks.content.Sensor.SensorState getState() { return state_; }
// optional int32 value = 2;
public static final int VALUE_FIELD_NUMBER = 2;
private boolean hasValue;
private int value_ = 0;
public boolean hasValue() { return hasValue; }
public int getValue() { return value_; }
private void initFields() {
state_ = com.google.android.apps.mytracks.content.Sensor.SensorState.NONE;
}
public final boolean isInitialized() {
if (!hasState) return false;
return true;
}
public void writeTo(com.google.protobuf.CodedOutputStream output)
throws java.io.IOException {
getSerializedSize();
if (hasState()) {
output.writeEnum(1, getState().getNumber());
}
if (hasValue()) {
output.writeInt32(2, getValue());
}
}
private int memoizedSerializedSize = -1;
public int getSerializedSize() {
int size = memoizedSerializedSize;
if (size != -1) return size;
size = 0;
if (hasState()) {
size += com.google.protobuf.CodedOutputStream
.computeEnumSize(1, getState().getNumber());
}
if (hasValue()) {
size += com.google.protobuf.CodedOutputStream
.computeInt32Size(2, getValue());
}
memoizedSerializedSize = size;
return size;
}
public static com.google.android.apps.mytracks.content.Sensor.SensorData parseFrom(
com.google.protobuf.ByteString data)
throws com.google.protobuf.InvalidProtocolBufferException {
return newBuilder().mergeFrom(data).buildParsed();
}
public static com.google.android.apps.mytracks.content.Sensor.SensorData parseFrom(
com.google.protobuf.ByteString data,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws com.google.protobuf.InvalidProtocolBufferException {
return newBuilder().mergeFrom(data, extensionRegistry)
.buildParsed();
}
public static com.google.android.apps.mytracks.content.Sensor.SensorData parseFrom(byte[] data)
throws com.google.protobuf.InvalidProtocolBufferException {
return newBuilder().mergeFrom(data).buildParsed();
}
public static com.google.android.apps.mytracks.content.Sensor.SensorData parseFrom(
byte[] data,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws com.google.protobuf.InvalidProtocolBufferException {
return newBuilder().mergeFrom(data, extensionRegistry)
.buildParsed();
}
public static com.google.android.apps.mytracks.content.Sensor.SensorData parseFrom(java.io.InputStream input)
throws java.io.IOException {
return newBuilder().mergeFrom(input).buildParsed();
}
public static com.google.android.apps.mytracks.content.Sensor.SensorData parseFrom(
java.io.InputStream input,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws java.io.IOException {
return newBuilder().mergeFrom(input, extensionRegistry)
.buildParsed();
}
public static com.google.android.apps.mytracks.content.Sensor.SensorData parseDelimitedFrom(java.io.InputStream input)
throws java.io.IOException {
Builder builder = newBuilder();
if (builder.mergeDelimitedFrom(input)) {
return builder.buildParsed();
} else {
return null;
}
}
public static com.google.android.apps.mytracks.content.Sensor.SensorData parseDelimitedFrom(
java.io.InputStream input,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws java.io.IOException {
Builder builder = newBuilder();
if (builder.mergeDelimitedFrom(input, extensionRegistry)) {
return builder.buildParsed();
} else {
return null;
}
}
public static com.google.android.apps.mytracks.content.Sensor.SensorData parseFrom(
com.google.protobuf.CodedInputStream input)
throws java.io.IOException {
return newBuilder().mergeFrom(input).buildParsed();
}
public static com.google.android.apps.mytracks.content.Sensor.SensorData parseFrom(
com.google.protobuf.CodedInputStream input,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws java.io.IOException {
return newBuilder().mergeFrom(input, extensionRegistry)
.buildParsed();
}
public static Builder newBuilder() { return Builder.create(); }
public Builder newBuilderForType() { return newBuilder(); }
public static Builder newBuilder(com.google.android.apps.mytracks.content.Sensor.SensorData prototype) {
return newBuilder().mergeFrom(prototype);
}
public Builder toBuilder() { return newBuilder(this); }
public static final class Builder extends
com.google.protobuf.GeneratedMessageLite.Builder<
com.google.android.apps.mytracks.content.Sensor.SensorData, Builder> {
private com.google.android.apps.mytracks.content.Sensor.SensorData result;
// Construct using com.google.android.apps.mytracks.content.Sensor.SensorData.newBuilder()
private Builder() {}
private static Builder create() {
Builder builder = new Builder();
builder.result = new com.google.android.apps.mytracks.content.Sensor.SensorData();
return builder;
}
protected com.google.android.apps.mytracks.content.Sensor.SensorData internalGetResult() {
return result;
}
public Builder clear() {
if (result == null) {
throw new IllegalStateException(
"Cannot call clear() after build().");
}
result = new com.google.android.apps.mytracks.content.Sensor.SensorData();
return this;
}
public Builder clone() {
return create().mergeFrom(result);
}
public com.google.android.apps.mytracks.content.Sensor.SensorData getDefaultInstanceForType() {
return com.google.android.apps.mytracks.content.Sensor.SensorData.getDefaultInstance();
}
public boolean isInitialized() {
return result.isInitialized();
}
public com.google.android.apps.mytracks.content.Sensor.SensorData build() {
if (result != null && !isInitialized()) {
throw newUninitializedMessageException(result);
}
return buildPartial();
}
private com.google.android.apps.mytracks.content.Sensor.SensorData buildParsed()
throws com.google.protobuf.InvalidProtocolBufferException {
if (!isInitialized()) {
throw newUninitializedMessageException(
result).asInvalidProtocolBufferException();
}
return buildPartial();
}
public com.google.android.apps.mytracks.content.Sensor.SensorData buildPartial() {
if (result == null) {
throw new IllegalStateException(
"build() has already been called on this Builder.");
}
com.google.android.apps.mytracks.content.Sensor.SensorData returnMe = result;
result = null;
return returnMe;
}
public Builder mergeFrom(com.google.android.apps.mytracks.content.Sensor.SensorData other) {
if (other == com.google.android.apps.mytracks.content.Sensor.SensorData.getDefaultInstance()) return this;
if (other.hasState()) {
setState(other.getState());
}
if (other.hasValue()) {
setValue(other.getValue());
}
return this;
}
public Builder mergeFrom(
com.google.protobuf.CodedInputStream input,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws java.io.IOException {
while (true) {
int tag = input.readTag();
switch (tag) {
case 0:
return this;
default: {
if (!parseUnknownField(input, extensionRegistry, tag)) {
return this;
}
break;
}
case 8: {
int rawValue = input.readEnum();
com.google.android.apps.mytracks.content.Sensor.SensorState value = com.google.android.apps.mytracks.content.Sensor.SensorState.valueOf(rawValue);
if (value != null) {
setState(value);
}
break;
}
case 16: {
setValue(input.readInt32());
break;
}
}
}
}
// required .com.google.android.apps.mytracks.content.SensorState state = 1 [default = NONE];
public boolean hasState() {
return result.hasState();
}
public com.google.android.apps.mytracks.content.Sensor.SensorState getState() {
return result.getState();
}
public Builder setState(com.google.android.apps.mytracks.content.Sensor.SensorState value) {
if (value == null) {
throw new NullPointerException();
}
result.hasState = true;
result.state_ = value;
return this;
}
public Builder clearState() {
result.hasState = false;
result.state_ = com.google.android.apps.mytracks.content.Sensor.SensorState.NONE;
return this;
}
// optional int32 value = 2;
public boolean hasValue() {
return result.hasValue();
}
public int getValue() {
return result.getValue();
}
public Builder setValue(int value) {
result.hasValue = true;
result.value_ = value;
return this;
}
public Builder clearValue() {
result.hasValue = false;
result.value_ = 0;
return this;
}
// @@protoc_insertion_point(builder_scope:com.google.android.apps.mytracks.content.SensorData)
}
static {
defaultInstance = new SensorData(true);
com.google.android.apps.mytracks.content.Sensor.internalForceInit();
defaultInstance.initFields();
}
// @@protoc_insertion_point(class_scope:com.google.android.apps.mytracks.content.SensorData)
}
public static final class SensorDataSet extends
com.google.protobuf.GeneratedMessageLite {
// Use SensorDataSet.newBuilder() to construct.
private SensorDataSet() {
initFields();
}
private SensorDataSet(boolean noInit) {}
private static final SensorDataSet defaultInstance;
public static SensorDataSet getDefaultInstance() {
return defaultInstance;
}
public SensorDataSet getDefaultInstanceForType() {
return defaultInstance;
}
// optional uint64 creation_time = 1 [default = 0];
public static final int CREATION_TIME_FIELD_NUMBER = 1;
private boolean hasCreationTime;
private long creationTime_ = 0L;
public boolean hasCreationTime() { return hasCreationTime; }
public long getCreationTime() { return creationTime_; }
// optional .com.google.android.apps.mytracks.content.SensorData heart_rate = 2;
public static final int HEART_RATE_FIELD_NUMBER = 2;
private boolean hasHeartRate;
private com.google.android.apps.mytracks.content.Sensor.SensorData heartRate_;
public boolean hasHeartRate() { return hasHeartRate; }
public com.google.android.apps.mytracks.content.Sensor.SensorData getHeartRate() { return heartRate_; }
// optional .com.google.android.apps.mytracks.content.SensorData cadence = 3;
public static final int CADENCE_FIELD_NUMBER = 3;
private boolean hasCadence;
private com.google.android.apps.mytracks.content.Sensor.SensorData cadence_;
public boolean hasCadence() { return hasCadence; }
public com.google.android.apps.mytracks.content.Sensor.SensorData getCadence() { return cadence_; }
// optional .com.google.android.apps.mytracks.content.SensorData power = 4;
public static final int POWER_FIELD_NUMBER = 4;
private boolean hasPower;
private com.google.android.apps.mytracks.content.Sensor.SensorData power_;
public boolean hasPower() { return hasPower; }
public com.google.android.apps.mytracks.content.Sensor.SensorData getPower() { return power_; }
// optional .com.google.android.apps.mytracks.content.SensorData battery_level = 5;
public static final int BATTERY_LEVEL_FIELD_NUMBER = 5;
private boolean hasBatteryLevel;
private com.google.android.apps.mytracks.content.Sensor.SensorData batteryLevel_;
public boolean hasBatteryLevel() { return hasBatteryLevel; }
public com.google.android.apps.mytracks.content.Sensor.SensorData getBatteryLevel() { return batteryLevel_; }
private void initFields() {
heartRate_ = com.google.android.apps.mytracks.content.Sensor.SensorData.getDefaultInstance();
cadence_ = com.google.android.apps.mytracks.content.Sensor.SensorData.getDefaultInstance();
power_ = com.google.android.apps.mytracks.content.Sensor.SensorData.getDefaultInstance();
batteryLevel_ = com.google.android.apps.mytracks.content.Sensor.SensorData.getDefaultInstance();
}
public final boolean isInitialized() {
if (hasHeartRate()) {
if (!getHeartRate().isInitialized()) return false;
}
if (hasCadence()) {
if (!getCadence().isInitialized()) return false;
}
if (hasPower()) {
if (!getPower().isInitialized()) return false;
}
if (hasBatteryLevel()) {
if (!getBatteryLevel().isInitialized()) return false;
}
return true;
}
public void writeTo(com.google.protobuf.CodedOutputStream output)
throws java.io.IOException {
getSerializedSize();
if (hasCreationTime()) {
output.writeUInt64(1, getCreationTime());
}
if (hasHeartRate()) {
output.writeMessage(2, getHeartRate());
}
if (hasCadence()) {
output.writeMessage(3, getCadence());
}
if (hasPower()) {
output.writeMessage(4, getPower());
}
if (hasBatteryLevel()) {
output.writeMessage(5, getBatteryLevel());
}
}
private int memoizedSerializedSize = -1;
public int getSerializedSize() {
int size = memoizedSerializedSize;
if (size != -1) return size;
size = 0;
if (hasCreationTime()) {
size += com.google.protobuf.CodedOutputStream
.computeUInt64Size(1, getCreationTime());
}
if (hasHeartRate()) {
size += com.google.protobuf.CodedOutputStream
.computeMessageSize(2, getHeartRate());
}
if (hasCadence()) {
size += com.google.protobuf.CodedOutputStream
.computeMessageSize(3, getCadence());
}
if (hasPower()) {
size += com.google.protobuf.CodedOutputStream
.computeMessageSize(4, getPower());
}
if (hasBatteryLevel()) {
size += com.google.protobuf.CodedOutputStream
.computeMessageSize(5, getBatteryLevel());
}
memoizedSerializedSize = size;
return size;
}
public static com.google.android.apps.mytracks.content.Sensor.SensorDataSet parseFrom(
com.google.protobuf.ByteString data)
throws com.google.protobuf.InvalidProtocolBufferException {
return newBuilder().mergeFrom(data).buildParsed();
}
public static com.google.android.apps.mytracks.content.Sensor.SensorDataSet parseFrom(
com.google.protobuf.ByteString data,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws com.google.protobuf.InvalidProtocolBufferException {
return newBuilder().mergeFrom(data, extensionRegistry)
.buildParsed();
}
public static com.google.android.apps.mytracks.content.Sensor.SensorDataSet parseFrom(byte[] data)
throws com.google.protobuf.InvalidProtocolBufferException {
return newBuilder().mergeFrom(data).buildParsed();
}
public static com.google.android.apps.mytracks.content.Sensor.SensorDataSet parseFrom(
byte[] data,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws com.google.protobuf.InvalidProtocolBufferException {
return newBuilder().mergeFrom(data, extensionRegistry)
.buildParsed();
}
public static com.google.android.apps.mytracks.content.Sensor.SensorDataSet parseFrom(java.io.InputStream input)
throws java.io.IOException {
return newBuilder().mergeFrom(input).buildParsed();
}
public static com.google.android.apps.mytracks.content.Sensor.SensorDataSet parseFrom(
java.io.InputStream input,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws java.io.IOException {
return newBuilder().mergeFrom(input, extensionRegistry)
.buildParsed();
}
public static com.google.android.apps.mytracks.content.Sensor.SensorDataSet parseDelimitedFrom(java.io.InputStream input)
throws java.io.IOException {
Builder builder = newBuilder();
if (builder.mergeDelimitedFrom(input)) {
return builder.buildParsed();
} else {
return null;
}
}
public static com.google.android.apps.mytracks.content.Sensor.SensorDataSet parseDelimitedFrom(
java.io.InputStream input,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws java.io.IOException {
Builder builder = newBuilder();
if (builder.mergeDelimitedFrom(input, extensionRegistry)) {
return builder.buildParsed();
} else {
return null;
}
}
public static com.google.android.apps.mytracks.content.Sensor.SensorDataSet parseFrom(
com.google.protobuf.CodedInputStream input)
throws java.io.IOException {
return newBuilder().mergeFrom(input).buildParsed();
}
public static com.google.android.apps.mytracks.content.Sensor.SensorDataSet parseFrom(
com.google.protobuf.CodedInputStream input,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws java.io.IOException {
return newBuilder().mergeFrom(input, extensionRegistry)
.buildParsed();
}
public static Builder newBuilder() { return Builder.create(); }
public Builder newBuilderForType() { return newBuilder(); }
public static Builder newBuilder(com.google.android.apps.mytracks.content.Sensor.SensorDataSet prototype) {
return newBuilder().mergeFrom(prototype);
}
public Builder toBuilder() { return newBuilder(this); }
public static final class Builder extends
com.google.protobuf.GeneratedMessageLite.Builder<
com.google.android.apps.mytracks.content.Sensor.SensorDataSet, Builder> {
private com.google.android.apps.mytracks.content.Sensor.SensorDataSet result;
// Construct using com.google.android.apps.mytracks.content.Sensor.SensorDataSet.newBuilder()
private Builder() {}
private static Builder create() {
Builder builder = new Builder();
builder.result = new com.google.android.apps.mytracks.content.Sensor.SensorDataSet();
return builder;
}
protected com.google.android.apps.mytracks.content.Sensor.SensorDataSet internalGetResult() {
return result;
}
public Builder clear() {
if (result == null) {
throw new IllegalStateException(
"Cannot call clear() after build().");
}
result = new com.google.android.apps.mytracks.content.Sensor.SensorDataSet();
return this;
}
public Builder clone() {
return create().mergeFrom(result);
}
public com.google.android.apps.mytracks.content.Sensor.SensorDataSet getDefaultInstanceForType() {
return com.google.android.apps.mytracks.content.Sensor.SensorDataSet.getDefaultInstance();
}
public boolean isInitialized() {
return result.isInitialized();
}
public com.google.android.apps.mytracks.content.Sensor.SensorDataSet build() {
if (result != null && !isInitialized()) {
throw newUninitializedMessageException(result);
}
return buildPartial();
}
private com.google.android.apps.mytracks.content.Sensor.SensorDataSet buildParsed()
throws com.google.protobuf.InvalidProtocolBufferException {
if (!isInitialized()) {
throw newUninitializedMessageException(
result).asInvalidProtocolBufferException();
}
return buildPartial();
}
public com.google.android.apps.mytracks.content.Sensor.SensorDataSet buildPartial() {
if (result == null) {
throw new IllegalStateException(
"build() has already been called on this Builder.");
}
com.google.android.apps.mytracks.content.Sensor.SensorDataSet returnMe = result;
result = null;
return returnMe;
}
public Builder mergeFrom(com.google.android.apps.mytracks.content.Sensor.SensorDataSet other) {
if (other == com.google.android.apps.mytracks.content.Sensor.SensorDataSet.getDefaultInstance()) return this;
if (other.hasCreationTime()) {
setCreationTime(other.getCreationTime());
}
if (other.hasHeartRate()) {
mergeHeartRate(other.getHeartRate());
}
if (other.hasCadence()) {
mergeCadence(other.getCadence());
}
if (other.hasPower()) {
mergePower(other.getPower());
}
if (other.hasBatteryLevel()) {
mergeBatteryLevel(other.getBatteryLevel());
}
return this;
}
public Builder mergeFrom(
com.google.protobuf.CodedInputStream input,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws java.io.IOException {
while (true) {
int tag = input.readTag();
switch (tag) {
case 0:
return this;
default: {
if (!parseUnknownField(input, extensionRegistry, tag)) {
return this;
}
break;
}
case 8: {
setCreationTime(input.readUInt64());
break;
}
case 18: {
com.google.android.apps.mytracks.content.Sensor.SensorData.Builder subBuilder = com.google.android.apps.mytracks.content.Sensor.SensorData.newBuilder();
if (hasHeartRate()) {
subBuilder.mergeFrom(getHeartRate());
}
input.readMessage(subBuilder, extensionRegistry);
setHeartRate(subBuilder.buildPartial());
break;
}
case 26: {
com.google.android.apps.mytracks.content.Sensor.SensorData.Builder subBuilder = com.google.android.apps.mytracks.content.Sensor.SensorData.newBuilder();
if (hasCadence()) {
subBuilder.mergeFrom(getCadence());
}
input.readMessage(subBuilder, extensionRegistry);
setCadence(subBuilder.buildPartial());
break;
}
case 34: {
com.google.android.apps.mytracks.content.Sensor.SensorData.Builder subBuilder = com.google.android.apps.mytracks.content.Sensor.SensorData.newBuilder();
if (hasPower()) {
subBuilder.mergeFrom(getPower());
}
input.readMessage(subBuilder, extensionRegistry);
setPower(subBuilder.buildPartial());
break;
}
case 42: {
com.google.android.apps.mytracks.content.Sensor.SensorData.Builder subBuilder = com.google.android.apps.mytracks.content.Sensor.SensorData.newBuilder();
if (hasBatteryLevel()) {
subBuilder.mergeFrom(getBatteryLevel());
}
input.readMessage(subBuilder, extensionRegistry);
setBatteryLevel(subBuilder.buildPartial());
break;
}
}
}
}
// optional uint64 creation_time = 1 [default = 0];
public boolean hasCreationTime() {
return result.hasCreationTime();
}
public long getCreationTime() {
return result.getCreationTime();
}
public Builder setCreationTime(long value) {
result.hasCreationTime = true;
result.creationTime_ = value;
return this;
}
public Builder clearCreationTime() {
result.hasCreationTime = false;
result.creationTime_ = 0L;
return this;
}
// optional .com.google.android.apps.mytracks.content.SensorData heart_rate = 2;
public boolean hasHeartRate() {
return result.hasHeartRate();
}
public com.google.android.apps.mytracks.content.Sensor.SensorData getHeartRate() {
return result.getHeartRate();
}
public Builder setHeartRate(com.google.android.apps.mytracks.content.Sensor.SensorData value) {
if (value == null) {
throw new NullPointerException();
}
result.hasHeartRate = true;
result.heartRate_ = value;
return this;
}
public Builder setHeartRate(com.google.android.apps.mytracks.content.Sensor.SensorData.Builder builderForValue) {
result.hasHeartRate = true;
result.heartRate_ = builderForValue.build();
return this;
}
public Builder mergeHeartRate(com.google.android.apps.mytracks.content.Sensor.SensorData value) {
if (result.hasHeartRate() &&
result.heartRate_ != com.google.android.apps.mytracks.content.Sensor.SensorData.getDefaultInstance()) {
result.heartRate_ =
com.google.android.apps.mytracks.content.Sensor.SensorData.newBuilder(result.heartRate_).mergeFrom(value).buildPartial();
} else {
result.heartRate_ = value;
}
result.hasHeartRate = true;
return this;
}
public Builder clearHeartRate() {
result.hasHeartRate = false;
result.heartRate_ = com.google.android.apps.mytracks.content.Sensor.SensorData.getDefaultInstance();
return this;
}
// optional .com.google.android.apps.mytracks.content.SensorData cadence = 3;
public boolean hasCadence() {
return result.hasCadence();
}
public com.google.android.apps.mytracks.content.Sensor.SensorData getCadence() {
return result.getCadence();
}
public Builder setCadence(com.google.android.apps.mytracks.content.Sensor.SensorData value) {
if (value == null) {
throw new NullPointerException();
}
result.hasCadence = true;
result.cadence_ = value;
return this;
}
public Builder setCadence(com.google.android.apps.mytracks.content.Sensor.SensorData.Builder builderForValue) {
result.hasCadence = true;
result.cadence_ = builderForValue.build();
return this;
}
public Builder mergeCadence(com.google.android.apps.mytracks.content.Sensor.SensorData value) {
if (result.hasCadence() &&
result.cadence_ != com.google.android.apps.mytracks.content.Sensor.SensorData.getDefaultInstance()) {
result.cadence_ =
com.google.android.apps.mytracks.content.Sensor.SensorData.newBuilder(result.cadence_).mergeFrom(value).buildPartial();
} else {
result.cadence_ = value;
}
result.hasCadence = true;
return this;
}
public Builder clearCadence() {
result.hasCadence = false;
result.cadence_ = com.google.android.apps.mytracks.content.Sensor.SensorData.getDefaultInstance();
return this;
}
// optional .com.google.android.apps.mytracks.content.SensorData power = 4;
public boolean hasPower() {
return result.hasPower();
}
public com.google.android.apps.mytracks.content.Sensor.SensorData getPower() {
return result.getPower();
}
public Builder setPower(com.google.android.apps.mytracks.content.Sensor.SensorData value) {
if (value == null) {
throw new NullPointerException();
}
result.hasPower = true;
result.power_ = value;
return this;
}
public Builder setPower(com.google.android.apps.mytracks.content.Sensor.SensorData.Builder builderForValue) {
result.hasPower = true;
result.power_ = builderForValue.build();
return this;
}
public Builder mergePower(com.google.android.apps.mytracks.content.Sensor.SensorData value) {
if (result.hasPower() &&
result.power_ != com.google.android.apps.mytracks.content.Sensor.SensorData.getDefaultInstance()) {
result.power_ =
com.google.android.apps.mytracks.content.Sensor.SensorData.newBuilder(result.power_).mergeFrom(value).buildPartial();
} else {
result.power_ = value;
}
result.hasPower = true;
return this;
}
public Builder clearPower() {
result.hasPower = false;
result.power_ = com.google.android.apps.mytracks.content.Sensor.SensorData.getDefaultInstance();
return this;
}
// optional .com.google.android.apps.mytracks.content.SensorData battery_level = 5;
public boolean hasBatteryLevel() {
return result.hasBatteryLevel();
}
public com.google.android.apps.mytracks.content.Sensor.SensorData getBatteryLevel() {
return result.getBatteryLevel();
}
public Builder setBatteryLevel(com.google.android.apps.mytracks.content.Sensor.SensorData value) {
if (value == null) {
throw new NullPointerException();
}
result.hasBatteryLevel = true;
result.batteryLevel_ = value;
return this;
}
public Builder setBatteryLevel(com.google.android.apps.mytracks.content.Sensor.SensorData.Builder builderForValue) {
result.hasBatteryLevel = true;
result.batteryLevel_ = builderForValue.build();
return this;
}
public Builder mergeBatteryLevel(com.google.android.apps.mytracks.content.Sensor.SensorData value) {
if (result.hasBatteryLevel() &&
result.batteryLevel_ != com.google.android.apps.mytracks.content.Sensor.SensorData.getDefaultInstance()) {
result.batteryLevel_ =
com.google.android.apps.mytracks.content.Sensor.SensorData.newBuilder(result.batteryLevel_).mergeFrom(value).buildPartial();
} else {
result.batteryLevel_ = value;
}
result.hasBatteryLevel = true;
return this;
}
public Builder clearBatteryLevel() {
result.hasBatteryLevel = false;
result.batteryLevel_ = com.google.android.apps.mytracks.content.Sensor.SensorData.getDefaultInstance();
return this;
}
// @@protoc_insertion_point(builder_scope:com.google.android.apps.mytracks.content.SensorDataSet)
}
static {
defaultInstance = new SensorDataSet(true);
com.google.android.apps.mytracks.content.Sensor.internalForceInit();
defaultInstance.initFields();
}
// @@protoc_insertion_point(class_scope:com.google.android.apps.mytracks.content.SensorDataSet)
}
static {
}
public static void internalForceInit() {}
// @@protoc_insertion_point(outer_class_scope)
}
@@ -0,0 +1,211 @@
/*
* Copyright 2008 Google Inc.
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not
* use this file except in compliance with the License. You may obtain a copy of
* the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
* License for the specific language governing permissions and limitations under
* the License.
*/
package com.google.android.apps.mytracks.content;
import com.google.android.apps.mytracks.stats.TripStatistics;
import android.location.Location;
import android.os.Parcel;
import android.os.Parcelable;
import java.util.ArrayList;
/**
* A class representing a (GPS) Track.
*
* TODO: hashCode and equals
*
* @author Leif Hendrik Wilden
* @author Rodrigo Damazio
*/
public class Track implements Parcelable {
/**
* Creator for a Track object.
*/
public static class Creator implements Parcelable.Creator<Track> {
public Track createFromParcel(Parcel source) {
ClassLoader classLoader = getClass().getClassLoader();
Track track = new Track();
track.id = source.readLong();
track.name = source.readString();
track.description = source.readString();
track.mapId = source.readString();
track.category = source.readString();
track.startId = source.readLong();
track.stopId = source.readLong();
track.stats = source.readParcelable(classLoader);
track.numberOfPoints = source.readInt();
for (int i = 0; i < track.numberOfPoints; ++i) {
Location loc = source.readParcelable(classLoader);
track.locations.add(loc);
}
track.tableId = source.readString();
return track;
}
public Track[] newArray(int size) {
return new Track[size];
}
}
public static final Creator CREATOR = new Creator();
/**
* The track points (which may not have been loaded).
*/
private ArrayList<Location> locations = new ArrayList<Location>();
/**
* The number of location points (present even if the points themselves were
* not loaded).
*/
private int numberOfPoints = 0;
private long id = -1;
private String name = "";
private String description = "";
private String mapId = "";
private String tableId = "";
private long startId = -1;
private long stopId = -1;
private String category = "";
private TripStatistics stats = new TripStatistics();
public Track() {
}
public void writeToParcel(Parcel dest, int flags) {
dest.writeLong(id);
dest.writeString(name);
dest.writeString(description);
dest.writeString(mapId);
dest.writeString(category);
dest.writeLong(startId);
dest.writeLong(stopId);
dest.writeParcelable(stats, 0);
dest.writeInt(numberOfPoints);
for (int i = 0; i < numberOfPoints; ++i) {
dest.writeParcelable(locations.get(i), 0);
}
dest.writeString(tableId);
}
// Getters and setters:
//---------------------
public int describeContents() {
return 0;
}
public long getId() {
return id;
}
public void setId(long id) {
this.id = id;
}
public String getName() {
return name;
}
public void setName(String name) {
this.name = name;
}
public long getStartId() {
return startId;
}
public void setStartId(long startId) {
this.startId = startId;
}
public long getStopId() {
return stopId;
}
public void setStopId(long stopId) {
this.stopId = stopId;
}
public String getDescription() {
return description;
}
public void setDescription(String description) {
this.description = description;
}
public String getMapId() {
return mapId;
}
public void setMapId(String mapId) {
this.mapId = mapId;
}
public String getTableId() {
return tableId;
}
public void setTableId(String tableId) {
this.tableId = tableId;
}
public String getCategory() {
return category;
}
public void setCategory(String category) {
this.category = category;
}
public int getNumberOfPoints() {
return numberOfPoints;
}
public void setNumberOfPoints(int numberOfPoints) {
this.numberOfPoints = numberOfPoints;
}
public void addLocation(Location l) {
locations.add(l);
}
public ArrayList<Location> getLocations() {
return locations;
}
public void setLocations(ArrayList<Location> locations) {
this.locations = locations;
}
public TripStatistics getStatistics() {
return stats;
}
public void setStatistics(TripStatistics stats) {
this.stats = stats;
}
}
@@ -0,0 +1,46 @@
/*
* Copyright 2008 Google Inc.
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not
* use this file except in compliance with the License. You may obtain a copy of
* the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
* License for the specific language governing permissions and limitations under
* the License.
*/
package com.google.android.apps.mytracks.content;
import android.net.Uri;
import android.provider.BaseColumns;
/**
* Defines the URI for the track points provider and the available column names
* and content types.
*
* @author Leif Hendrik Wilden
*/
public interface TrackPointsColumns extends BaseColumns {
public static final Uri CONTENT_URI =
Uri.parse("content://com.google.android.maps.mytracks/trackpoints");
public static final String CONTENT_TYPE =
"vnd.android.cursor.dir/vnd.google.trackpoint";
public static final String CONTENT_ITEMTYPE =
"vnd.android.cursor.item/vnd.google.trackpoint";
public static final String DEFAULT_SORT_ORDER = "_id";
/* All columns */
public static final String TRACKID = "trackid";
public static final String LATITUDE = "latitude";
public static final String LONGITUDE = "longitude";
public static final String ALTITUDE = "elevation";
public static final String BEARING = "bearing";
public static final String TIME = "time";
public static final String ACCURACY = "accuracy";
public static final String SPEED = "speed";
public static final String SENSOR = "sensor";
}
@@ -0,0 +1,63 @@
/*
* Copyright 2008 Google Inc.
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not
* use this file except in compliance with the License. You may obtain a copy of
* the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
* License for the specific language governing permissions and limitations under
* the License.
*/
package com.google.android.apps.mytracks.content;
import android.net.Uri;
import android.provider.BaseColumns;
/**
* Defines the URI for the tracks provider and the available column names
* and content types.
*
* @author Leif Hendrik Wilden
*/
public interface TracksColumns extends BaseColumns {
public static final Uri CONTENT_URI =
Uri.parse("content://com.google.android.maps.mytracks/tracks");
public static final String CONTENT_TYPE =
"vnd.android.cursor.dir/vnd.google.track";
public static final String CONTENT_ITEMTYPE =
"vnd.android.cursor.item/vnd.google.track";
public static final String DEFAULT_SORT_ORDER = "_id";
/* All columns */
public static final String NAME = "name";
public static final String DESCRIPTION = "description";
public static final String CATEGORY = "category";
public static final String STARTID = "startid";
public static final String STOPID = "stopid";
public static final String STARTTIME = "starttime";
public static final String STOPTIME = "stoptime";
public static final String NUMPOINTS = "numpoints";
public static final String TOTALDISTANCE = "totaldistance";
public static final String TOTALTIME = "totaltime";
public static final String MOVINGTIME = "movingtime";
public static final String AVGSPEED = "avgspeed";
public static final String AVGMOVINGSPEED = "avgmovingspeed";
public static final String MAXSPEED = "maxspeed";
public static final String MINELEVATION = "minelevation";
public static final String MAXELEVATION = "maxelevation";
public static final String ELEVATIONGAIN = "elevationgain";
public static final String MINGRADE = "mingrade";
public static final String MAXGRADE = "maxgrade";
public static final String MINLAT = "minlat";
public static final String MAXLAT = "maxlat";
public static final String MINLON = "minlon";
public static final String MAXLON = "maxlon";
public static final String MAPID = "mapid";
public static final String TABLEID = "tableid";
}
@@ -0,0 +1,2 @@
package com.google.android.apps.mytracks.content;
parcelable Waypoint;
@@ -0,0 +1,229 @@
/*
* Copyright 2009 Google Inc.
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not
* use this file except in compliance with the License. You may obtain a copy of
* the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
* License for the specific language governing permissions and limitations under
* the License.
*/
package com.google.android.apps.mytracks.content;
import com.google.android.apps.mytracks.stats.TripStatistics;
import android.location.Location;
import android.os.Parcel;
import android.os.Parcelable;
/**
* A way point. It has a location, meta data such as name, description,
* category, and icon, plus it can store track statistics for a "sub-track".
*
* TODO: hashCode and equals
*
* @author Leif Hendrik Wilden
* @author Rodrigo Damazio
*/
public final class Waypoint implements Parcelable {
/**
* Creator for a Waypoint object
*/
public static class Creator implements Parcelable.Creator<Waypoint> {
public Waypoint createFromParcel(Parcel source) {
ClassLoader classLoader = getClass().getClassLoader();
Waypoint waypoint = new Waypoint();
waypoint.id = source.readLong();
waypoint.name = source.readString();
waypoint.description = source.readString();
waypoint.category = source.readString();
waypoint.icon = source.readString();
waypoint.trackId = source.readLong();
waypoint.type = source.readInt();
waypoint.startId = source.readLong();
waypoint.stopId = source.readLong();
byte hasStats = source.readByte();
if (hasStats > 0) {
waypoint.stats = source.readParcelable(classLoader);
}
byte hasLocation = source.readByte();
if (hasLocation > 0) {
waypoint.location = source.readParcelable(classLoader);
}
return waypoint;
}
public Waypoint[] newArray(int size) {
return new Waypoint[size];
}
}
public static final Creator CREATOR = new Creator();
public static final int TYPE_WAYPOINT = 0;
public static final int TYPE_STATISTICS = 1;
private long id = -1;
private String name = "";
private String description = "";
private String category = "";
private String icon = "";
private long trackId = -1;
private int type = 0;
private Location location;
/** Start track point id */
private long startId = -1;
/** Stop track point id */
private long stopId = -1;
private TripStatistics stats;
/** The length of the track, without smoothing. */
private double length;
/** The total duration of the track (not from the last waypoint) */
private long duration;
public void writeToParcel(Parcel dest, int flags) {
dest.writeLong(id);
dest.writeString(name);
dest.writeString(description);
dest.writeString(category);
dest.writeString(icon);
dest.writeLong(trackId);
dest.writeInt(type);
dest.writeLong(startId);
dest.writeLong(stopId);
dest.writeByte(stats == null ? (byte) 0 : (byte) 1);
if (stats != null) {
dest.writeParcelable(stats, 0);
}
dest.writeByte(location == null ? (byte) 0 : (byte) 1);
if (location != null) {
dest.writeParcelable(location, 0);
}
}
// Getters and setters:
//---------------------
public String getIcon() {
return icon;
}
public void setIcon(String icon) {
this.icon = icon;
}
public Location getLocation() {
return location;
}
public void setTrackId(long trackId) {
this.trackId = trackId;
}
public int describeContents() {
return 0;
}
public long getId() {
return id;
}
public void setId(long id) {
this.id = id;
}
public String getName() {
return name;
}
public void setName(String name) {
this.name = name;
}
public long getTrackId() {
return trackId;
}
public int getType() {
return type;
}
public void setType(int type) {
this.type = type;
}
public long getStartId() {
return startId;
}
public void setStartId(long startId) {
this.startId = startId;
}
public long getStopId() {
return stopId;
}
public void setStopId(long stopId) {
this.stopId = stopId;
}
public String getDescription() {
return description;
}
public void setDescription(String description) {
this.description = description;
}
public String getCategory() {
return category;
}
public void setCategory(String category) {
this.category = category;
}
public void setLocation(Location location) {
this.location = location;
}
public TripStatistics getStatistics() {
return stats;
}
public void setStatistics(TripStatistics stats) {
this.stats = stats;
}
// WARNING: These fields are used for internal state keeping. You probably
// want to look at getStatistics instead.
public double getLength() {
return length;
}
public void setLength(double length) {
this.length = length;
}
public long getDuration() {
return duration;
}
public void setDuration(long duration) {
this.duration = duration;
}
}
@@ -0,0 +1,2 @@
package com.google.android.apps.mytracks.content;
parcelable WaypointCreationRequest;
@@ -0,0 +1,105 @@
/*
* Copyright 2010 Google Inc.
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not
* use this file except in compliance with the License. You may obtain a copy of
* the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
* License for the specific language governing permissions and limitations under
* the License.
*/
package com.google.android.apps.mytracks.content;
import android.os.Parcel;
import android.os.Parcelable;
/**
* A request for the service to create a waypoint at the current location.
*
* @author Sandor Dornbush
*/
public class WaypointCreationRequest implements Parcelable {
public static enum WaypointType {
MARKER,
STATISTICS;
}
private WaypointType type;
private String name;
private String description;
private String iconUrl;
public final static WaypointCreationRequest DEFAULT_MARKER =
new WaypointCreationRequest(WaypointType.MARKER);
public final static WaypointCreationRequest DEFAULT_STATISTICS =
new WaypointCreationRequest(WaypointType.STATISTICS);
private WaypointCreationRequest(WaypointType type) {
this.type = type;
}
public WaypointCreationRequest(WaypointType type, String name,
String description, String iconUrl) {
this.type = type;
this.name = name;
this.description = description;
this.iconUrl = iconUrl;
}
public static class Creator implements Parcelable.Creator<WaypointCreationRequest> {
@Override
public WaypointCreationRequest createFromParcel(Parcel source) {
int i = source.readInt();
if (i > WaypointType.values().length) {
throw new IllegalArgumentException("Could not find waypoint type: " + i);
}
WaypointCreationRequest request = new WaypointCreationRequest(WaypointType.values()[i]);
request.description = source.readString();
request.iconUrl = source.readString();
request.name = source.readString();
return request;
}
public WaypointCreationRequest[] newArray(int size) {
return new WaypointCreationRequest[size];
}
}
public static final Creator CREATOR = new Creator();
@Override
public int describeContents() {
return 0;
}
@Override
public void writeToParcel(Parcel parcel, int arg1) {
parcel.writeInt(type.ordinal());
parcel.writeString(description);
parcel.writeString(iconUrl);
parcel.writeString(name);
}
public WaypointType getType() {
return type;
}
public String getName() {
return name;
}
public String getDescription() {
return description;
}
public String getIconUrl() {
return iconUrl;
}
}
@@ -0,0 +1,69 @@
/*
* Copyright 2009 Google Inc.
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not
* use this file except in compliance with the License. You may obtain a copy of
* the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
* License for the specific language governing permissions and limitations under
* the License.
*/
package com.google.android.apps.mytracks.content;
import android.net.Uri;
import android.provider.BaseColumns;
/**
* Defines the URI for the tracks provider and the available column names
* and content types.
*
* @author Leif Hendrik Wilden
*/
public interface WaypointsColumns extends BaseColumns {
public static final Uri CONTENT_URI =
Uri.parse("content://com.google.android.maps.mytracks/waypoints");
public static final String CONTENT_TYPE =
"vnd.android.cursor.dir/vnd.google.waypoint";
public static final String CONTENT_ITEMTYPE =
"vnd.android.cursor.item/vnd.google.waypoint";
public static final String DEFAULT_SORT_ORDER = "_id";
/* All columns */
public static final String NAME = "name";
public static final String DESCRIPTION = "description";
public static final String CATEGORY = "category";
public static final String ICON = "icon";
public static final String TRACKID = "trackid";
public static final String TYPE = "type";
public static final String LENGTH = "length";
public static final String DURATION = "duration";
public static final String STARTTIME = "starttime";
public static final String STARTID = "startid";
public static final String STOPID = "stopid";
public static final String LATITUDE = "latitude";
public static final String LONGITUDE = "longitude";
public static final String ALTITUDE = "elevation";
public static final String BEARING = "bearing";
public static final String TIME = "time";
public static final String ACCURACY = "accuracy";
public static final String SPEED = "speed";
public static final String TOTALDISTANCE = "totaldistance";
public static final String TOTALTIME = "totaltime";
public static final String MOVINGTIME = "movingtime";
public static final String AVGSPEED = "avgspeed";
public static final String AVGMOVINGSPEED = "avgmovingspeed";
public static final String MAXSPEED = "maxspeed";
public static final String MINELEVATION = "minelevation";
public static final String MAXELEVATION = "maxelevation";
public static final String ELEVATIONGAIN = "elevationgain";
public static final String MINGRADE = "mingrade";
public static final String MAXGRADE = "maxgrade";
}
@@ -0,0 +1,28 @@
/*
* Copyright 2010 Google Inc.
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not
* use this file except in compliance with the License. You may obtain a copy of
* the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
* License for the specific language governing permissions and limitations under
* the License.
*/
package com.google.android.apps.mytracks.lib;
/**
* Constants for the My Tracks common library.
* These constants should ideally not be used by third-party applications.
*
* @author Rodrigo Damazio
*/
public class MyTracksLibConstants {
public static final String TAG = "MyTracksLib";
private MyTracksLibConstants() {}
}
@@ -0,0 +1,82 @@
/*
* Copyright 2008 Google Inc.
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not
* use this file except in compliance with the License. You may obtain a copy of
* the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
* License for the specific language governing permissions and limitations under
* the License.
*/
package com.google.android.apps.mytracks.services;
import com.google.android.apps.mytracks.content.WaypointCreationRequest;
/**
* MyTracks service.
* This service is the process that actually records and manages tracks.
*/
interface ITrackRecordingService {
/**
* Starts recording a new track.
*
* @return the track ID of the new track
*/
long startNewTrack();
/**
* Checks and returns whether we're currently recording a track.
*/
boolean isRecording();
/**
* Returns the track ID of the track currently being recorded, or -1 if none
* is being recorded. This ID can then be used to read track data from the
* content source.
*/
long getRecordingTrackId();
/**
* Inserts a waypoint marker in the track being recorded.
*
* @param request Details for the waypoint to be inserted.
* @return the unique ID of the inserted marker
*/
long insertWaypoint(in WaypointCreationRequest request);
/**
* Inserts a location in the track being recorded.
*
* When recording, locations detected by the GPS are already automatically
* added to the track, so this should be used only for adding special points
* or for testing.
*
* @param loc the location to insert
*/
void recordLocation(in Location loc);
/**
* Stops recording the current track.
*/
void endCurrentTrack();
/**
* The current sensor data.
* The data is returned as a byte array which is a binary version of a
* Sensor.SensorDataSet object.
* @return the current sensor data or null if there is none.
*/
byte[] getSensorData();
/**
* The current state of the sensor manager.
* The value is the value of a Sensor.SensorState enum.
*/
int getSensorState();
}
@@ -0,0 +1,116 @@
/*
* Copyright 2009 Google Inc.
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not
* use this file except in compliance with the License. You may obtain a copy of
* the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
* License for the specific language governing permissions and limitations under
* the License.
*/
package com.google.android.apps.mytracks.stats;
/**
* A helper class that tracks a minimum and a maximum of a variable.
*
* @author Sandor Dornbush
*/
public class ExtremityMonitor {
/**
* The smallest value seen so far.
*/
private double min;
/**
* The largest value seen so far.
*/
private double max;
public ExtremityMonitor() {
reset();
}
/**
* Updates the min and the max with the new value.
*
* @param value the new value for the monitor
* @return true if an extremity was found
*/
public boolean update(double value) {
boolean changed = false;
if (value < min) {
min = value;
changed = true;
}
if (value > max) {
max = value;
changed = true;
}
return changed;
}
/**
* Gets the minimum value seen.
*
* @return The minimum value passed into the update() function
*/
public double getMin() {
return min;
}
/**
* Gets the maximum value seen.
*
* @return The maximum value passed into the update() function
*/
public double getMax() {
return max;
}
/**
* Resets this object to it's initial state where the min and max are unknown.
*/
public void reset() {
min = Double.POSITIVE_INFINITY;
max = Double.NEGATIVE_INFINITY;
}
/**
* Sets the minimum and maximum values.
*/
public void set(double min, double max) {
this.min = min;
this.max = max;
}
/**
* Sets the minimum value.
*/
public void setMin(double min) {
this.min = min;
}
/**
* Sets the maximum value.
*/
public void setMax(double max) {
this.max = max;
}
public boolean hasData() {
return min != Double.POSITIVE_INFINITY
&& max != Double.NEGATIVE_INFINITY;
}
@Override
public String toString() {
return "Min: " + min + " Max: " + max;
}
}
@@ -0,0 +1,2 @@
package com.google.android.apps.mytracks.stats;
parcelable TripStatistics;
@@ -0,0 +1,572 @@
/*
* Copyright 2010 Google Inc.
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not
* use this file except in compliance with the License. You may obtain a copy of
* the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
* License for the specific language governing permissions and limitations under
* the License.
*/
package com.google.android.apps.mytracks.stats;
import android.os.Parcel;
import android.os.Parcelable;
/**
* Statistical data about a trip.
* The data in this class should be filled out by {@link TripStatisticsBuilder}.
*
* TODO: hashCode and equals
*
* @author Rodrigo Damazio
*/
public class TripStatistics implements Parcelable {
/**
* The start time for the trip. This is system time which might not match gps
* time.
*/
private long startTime = -1;
/**
* The stop time for the trip. This is the system time which might not match
* gps time.
*/
private long stopTime = -1;
/**
* The total time that we believe the user was traveling in milliseconds.
*/
private long movingTime;
/**
* The total time of the trip in milliseconds.
* This is only updated when new points are received, so it may be stale.
*/
private long totalTime;
/**
* The total distance in meters that the user traveled on this trip.
*/
private double totalDistance;
/**
* The total elevation gained on this trip in meters.
*/
private double totalElevationGain;
/**
* The maximum speed in meters/second reported that we believe to be a valid
* speed.
*/
private double maxSpeed;
/**
* The min and max latitude values seen in this trip.
*/
private final ExtremityMonitor latitudeExtremities = new ExtremityMonitor();
/**
* The min and max longitude values seen in this trip.
*/
private final ExtremityMonitor longitudeExtremities = new ExtremityMonitor();
/**
* The min and max elevation seen on this trip in meters.
*/
private final ExtremityMonitor elevationExtremities = new ExtremityMonitor();
/**
* The minimum and maximum grade calculations on this trip.
*/
private final ExtremityMonitor gradeExtremities = new ExtremityMonitor();
/**
* Default constructor.
*/
public TripStatistics() {
}
/**
* Copy constructor.
*
* @param other another statistics data object to copy from
*/
public TripStatistics(TripStatistics other) {
this.maxSpeed = other.maxSpeed;
this.movingTime = other.movingTime;
this.startTime = other.startTime;
this.stopTime = other.stopTime;
this.totalDistance = other.totalDistance;
this.totalElevationGain = other.totalElevationGain;
this.totalTime = other.totalTime;
this.latitudeExtremities.set(other.latitudeExtremities.getMin(),
other.latitudeExtremities.getMax());
this.longitudeExtremities.set(other.longitudeExtremities.getMin(),
other.longitudeExtremities.getMax());
this.elevationExtremities.set(other.elevationExtremities.getMin(),
other.elevationExtremities.getMax());
this.gradeExtremities.set(other.gradeExtremities.getMin(),
other.gradeExtremities.getMax());
}
/**
* Combines these statistics with those from another object.
* This assumes that the time periods covered by each do not intersect.
*
* @param other the other waypoint
*/
public void merge(TripStatistics other) {
startTime = Math.min(startTime, other.startTime);
stopTime = Math.max(stopTime, other.stopTime);
totalTime += other.totalTime;
movingTime += other.movingTime;
totalDistance += other.totalDistance;
totalElevationGain += other.totalElevationGain;
maxSpeed = Math.max(maxSpeed, other.maxSpeed);
latitudeExtremities.update(other.latitudeExtremities.getMax());
latitudeExtremities.update(other.latitudeExtremities.getMin());
longitudeExtremities.update(other.longitudeExtremities.getMax());
longitudeExtremities.update(other.longitudeExtremities.getMin());
elevationExtremities.update(other.elevationExtremities.getMax());
elevationExtremities.update(other.elevationExtremities.getMin());
gradeExtremities.update(other.gradeExtremities.getMax());
gradeExtremities.update(other.gradeExtremities.getMin());
}
/**
* Gets the time that this track started.
*
* @return The number of milliseconds since epoch to the time when this track
* started
*/
public long getStartTime() {
return startTime;
}
/**
* Gets the time that this track stopped.
*
* @return The number of milliseconds since epoch to the time when this track
* stopped
*/
public long getStopTime() {
return stopTime;
}
/**
* Gets the total time that this track has been active.
* This statistic is only updated when a new point is added to the statistics,
* so it may be off. If you need to calculate the proper total time, use
* {@link #getStartTime} with the current time.
*
* @return The total number of milliseconds the track was active
*/
public long getTotalTime() {
return totalTime;
}
/**
* Gets the total distance the user traveled.
*
* @return The total distance traveled in meters
*/
public double getTotalDistance() {
return totalDistance;
}
/**
* Gets the the average speed the user traveled.
* This calculation only takes into account the displacement until the last
* point that was accounted for in statistics.
*
* @return The average speed in m/s
*/
public double getAverageSpeed() {
return totalDistance / ((double) totalTime / 1000);
}
/**
* Gets the the average speed the user traveled when they were actively
* moving.
*
* @return The average moving speed in m/s
*/
public double getAverageMovingSpeed() {
return totalDistance / ((double) movingTime / 1000);
}
/**
* Gets the the maximum speed for this track.
*
* @return The maximum speed in m/s
*/
public double getMaxSpeed() {
return maxSpeed;
}
/**
* Gets the moving time.
*
* @return The total number of milliseconds the user was moving
*/
public long getMovingTime() {
return movingTime;
}
/**
* Gets the total elevation gain for this trip. This is calculated as the sum
* of all positive differences in the smoothed elevation.
*
* @return The elevation gain in meters for this trip
*/
public double getTotalElevationGain() {
return totalElevationGain;
}
/**
* Returns the leftmost position (lowest longitude) of the track, in signed
* decimal degrees.
*/
public int getLeft() {
return (int) (longitudeExtremities.getMin() * 1E6);
}
/**
* Returns the rightmost position (highest longitude) of the track, in signed
* decimal degrees.
*/
public int getRight() {
return (int) (longitudeExtremities.getMax() * 1E6);
}
/**
* Returns the bottommost position (lowest latitude) of the track, in meters.
*/
public int getBottom() {
return (int) (latitudeExtremities.getMin() * 1E6);
}
/**
* Returns the topmost position (highest latitude) of the track, in meters.
*/
public int getTop() {
return (int) (latitudeExtremities.getMax() * 1E6);
}
/**
* Gets the minimum elevation seen on this trip. This is calculated from the
* smoothed elevation so this can actually be more than the current elevation.
*
* @return The smallest elevation reading for this trip in meters
*/
public double getMinElevation() {
return elevationExtremities.getMin();
}
/**
* Gets the maximum elevation seen on this trip. This is calculated from the
* smoothed elevation so this can actually be less than the current elevation.
*
* @return The largest elevation reading for this trip in meters
*/
public double getMaxElevation() {
return elevationExtremities.getMax();
}
/**
* Gets the maximum grade for this trip.
*
* @return The maximum grade for this trip as a fraction
*/
public double getMaxGrade() {
return gradeExtremities.getMax();
}
/**
* Gets the minimum grade for this trip.
*
* @return The minimum grade for this trip as a fraction
*/
public double getMinGrade() {
return gradeExtremities.getMin();
}
// Setters - to be used when restoring state or loading from the DB
/**
* Sets the start time for this trip.
*
* @param startTime the start time, in milliseconds since the epoch
*/
public void setStartTime(long startTime) {
this.startTime = startTime;
}
/**
* Sets the stop time for this trip.
*
* @param stopTime the stop time, in milliseconds since the epoch
*/
public void setStopTime(long stopTime) {
this.stopTime = stopTime;
}
/**
* Sets the total moving time.
*
* @param movingTime the moving time in milliseconds
*/
public void setMovingTime(long movingTime) {
this.movingTime = movingTime;
}
/**
* Sets the total trip time.
*
* @param totalTime the total trip time in milliseconds
*/
public void setTotalTime(long totalTime) {
this.totalTime = totalTime;
}
/**
* Sets the total trip distance.
*
* @param totalDistance the trip distance in meters
*/
public void setTotalDistance(double totalDistance) {
this.totalDistance = totalDistance;
}
/**
* Sets the total elevation variation during the trip.
*
* @param totalElevationGain the elevation variation in meters
*/
public void setTotalElevationGain(double totalElevationGain) {
this.totalElevationGain = totalElevationGain;
}
/**
* Sets the maximum speed reached during the trip.
*
* @param maxSpeed the maximum speed in meters per second
*/
public void setMaxSpeed(double maxSpeed) {
this.maxSpeed = maxSpeed;
}
/**
* Sets the minimum elevation reached during the trip.
*
* @param elevation the minimum elevation in meters
*/
public void setMinElevation(double elevation) {
elevationExtremities.setMin(elevation);
}
/**
* Sets the maximum elevation reached during the trip.
*
* @param elevation the maximum elevation in meters
*/
public void setMaxElevation(double elevation) {
elevationExtremities.setMax(elevation);
}
/**
* Sets the minimum grade obtained during the trip.
*
* @param grade the grade as a fraction (-1.0 would mean vertical downwards)
*/
public void setMinGrade(double grade) {
gradeExtremities.setMin(grade);
}
/**
* Sets the maximum grade obtained during the trip).
*
* @param grade the grade as a fraction (1.0 would mean vertical upwards)
*/
public void setMaxGrade(double grade) {
gradeExtremities.setMax(grade);
}
/**
* Sets the bounding box for this trip.
* The unit for all parameters is signed decimal degrees (degrees * 1E6).
*
* @param leftE6 the westmost longitude reached
* @param topE6 the northmost latitude reached
* @param rightE6 the eastmost longitude reached
* @param bottomE6 the southmost latitude reached
*/
public void setBounds(int leftE6, int topE6, int rightE6, int bottomE6) {
latitudeExtremities.set(bottomE6 / 1E6, topE6 / 1E6);
longitudeExtremities.set(leftE6 / 1E6, rightE6 / 1E6);
}
// Data manipulation methods
/**
* Adds to the current total distance.
*
* @param distance the distance to add in meters
*/
void addTotalDistance(double distance) {
totalDistance += distance;
}
/**
* Adds to the total elevation variation.
*
* @param gain the elevation variation in meters
*/
void addTotalElevationGain(double gain) {
totalElevationGain += gain;
}
/**
* Adds to the total moving time of the trip.
*
* @param time the time in milliseconds
*/
void addMovingTime(long time) {
movingTime += time;
}
/**
* Accounts for a new latitude value for the bounding box.
*
* @param latitude the latitude value in signed decimal degrees
*/
void updateLatitudeExtremities(double latitude) {
latitudeExtremities.update(latitude);
}
/**
* Accounts for a new longitude value for the bounding box.
*
* @param longitude the longitude value in signed decimal degrees
*/
void updateLongitudeExtremities(double longitude) {
longitudeExtremities.update(longitude);
}
/**
* Accounts for a new elevation value for the bounding box.
*
* @param elevation the elevation value in meters
*/
void updateElevationExtremities(double elevation) {
elevationExtremities.update(elevation);
}
/**
* Accounts for a new grade value.
*
* @param grade the grade value as a fraction
*/
void updateGradeExtremities(double grade) {
gradeExtremities.update(grade);
}
// String conversion
@Override
public String toString() {
return "TripStatistics { Start Time: " + getStartTime()
+ "; Total Time: " + getTotalTime()
+ "; Moving Time: " + getMovingTime()
+ "; Total Distance: " + getTotalDistance()
+ "; Elevation Gain: " + getTotalElevationGain()
+ "; Min Elevation: " + getMinElevation()
+ "; Max Elevation: " + getMaxElevation()
+ "; Average Speed: " + getAverageMovingSpeed()
+ "; Min Grade: " + getMinGrade()
+ "; Max Grade: " + getMaxGrade()
+ "}";
}
// Parcelable interface and creator
/**
* Creator of statistics data from parcels.
*/
public static class Creator
implements Parcelable.Creator<TripStatistics> {
@Override
public TripStatistics createFromParcel(Parcel source) {
TripStatistics data = new TripStatistics();
data.startTime = source.readLong();
data.movingTime = source.readLong();
data.totalTime = source.readLong();
data.totalDistance = source.readDouble();
data.totalElevationGain = source.readDouble();
data.maxSpeed = source.readDouble();
double minLat = source.readDouble();
double maxLat = source.readDouble();
data.latitudeExtremities.set(minLat, maxLat);
double minLong = source.readDouble();
double maxLong = source.readDouble();
data.longitudeExtremities.set(minLong, maxLong);
double minElev = source.readDouble();
double maxElev = source.readDouble();
data.elevationExtremities.set(minElev, maxElev);
double minGrade = source.readDouble();
double maxGrade = source.readDouble();
data.gradeExtremities.set(minGrade, maxGrade);
return data;
}
@Override
public TripStatistics[] newArray(int size) {
return new TripStatistics[size];
}
}
/**
* Creator of {@link TripStatistics} from parcels.
*/
public static final Creator CREATOR = new Creator();
@Override
public int describeContents() {
return 0;
}
@Override
public void writeToParcel(Parcel dest, int flags) {
dest.writeLong(startTime);
dest.writeLong(movingTime);
dest.writeLong(totalTime);
dest.writeDouble(totalDistance);
dest.writeDouble(totalElevationGain);
dest.writeDouble(maxSpeed);
dest.writeDouble(latitudeExtremities.getMin());
dest.writeDouble(latitudeExtremities.getMax());
dest.writeDouble(longitudeExtremities.getMin());
dest.writeDouble(longitudeExtremities.getMax());
dest.writeDouble(elevationExtremities.getMin());
dest.writeDouble(elevationExtremities.getMax());
dest.writeDouble(gradeExtremities.getMin());
dest.writeDouble(gradeExtremities.getMax());
}
}