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vcoppe committed 2026-10-07 19:38:21 +02:00
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@@ -1,13 +1,332 @@
use crate::{Apply, CommandError, State};
use std::rc::Rc;
use crate::{
Apply, CommandError, File, State, Track, TrackSegment, Waypoints, copy_segment, copy_track,
copy_waypoint,
};
use super::route::find_target;
/// What is cut in two where the trackpoint is.
#[derive(Debug, Clone, Copy, PartialEq, Eq)]
pub enum SplitType {
/// The file becomes two files, which both have the waypoints (copies, in the second one).
Files,
/// The track becomes two tracks.
Tracks,
/// The segment becomes two segments.
Segments,
}
/// Cuts the file, the track or the segment of the trackpoint `at` of the selection (see
/// `RoutingBuffer`) in two, there: the trackpoint is the last one of the first part and the first
/// one of the second part.
///
/// The first part keeps the ids of what is cut, the second one has new ids, as the elements that
/// come after the trackpoint (the following segments of the track, the following tracks of the
/// file), which are moved to it. When the file is cut, the new file comes right after it. The
/// selection does not change.
#[derive(Debug)]
pub struct Split {
pub at: u32,
pub split_type: SplitType,
}
impl Apply for Split {
fn apply(self, _state: &mut State) -> Result<(), CommandError> {
// TODO
Err(CommandError::NotImplemented("split"))
fn apply(self, state: &mut State) -> Result<(), CommandError> {
let at = self.at as usize;
let target = find_target(state, at, at)?.ok_or(CommandError::NothingToDo)?;
let location = target.location;
let (file_id, trk, seg, index) =
(location.file_id, location.trk, location.seg, target.start);
let mut file = (*state.files[&file_id]).clone();
if index >= file.trk[trk].trkseg[seg].len() {
return Err(CommandError::InvalidData(
"trackpoint out of the segment".into(),
));
}
let track = file.trk[trk].clone();
let segment = &track.trkseg[seg];
let (first, second) = (keep_up_to(segment, index), keep_from(segment, index));
// the track is cut: what is before the segment, and its first part, then the second part
// and what is after it
let split_track = || {
let mut first_track = track.clone();
first_track.trkseg.truncate(seg);
first_track.trkseg.push(first.clone());
let mut second_track = Track {
id: Default::default(),
trkseg: vec![second.clone()],
..track.clone()
};
second_track
.trkseg
.extend(track.trkseg[seg + 1..].iter().map(copy_segment));
(first_track, second_track)
};
match self.split_type {
SplitType::Segments => {
file.trk[trk].trkseg.splice(seg..=seg, [first, second]);
}
SplitType::Tracks => {
let (first_track, second_track) = split_track();
file.trk.splice(trk..=trk, [first_track, second_track]);
}
SplitType::Files => {
let (first_track, second_track) = split_track();
let mut second_file = File {
id: Default::default(),
trk: vec![second_track],
wpt: Waypoints::default(),
..file.clone()
};
second_file
.trk
.extend(file.trk[trk + 1..].iter().map(copy_track));
second_file
.wpt
.insert_at(0, file.wpt.iter().map(copy_waypoint).collect());
file.trk.truncate(trk);
file.trk.push(first_track);
let position = state.order.0.iter().position(|id| *id == file_id);
state.order.0.insert(
position.map_or(state.order.0.len(), |p| p + 1),
second_file.id,
);
state.files.insert(second_file.id, Rc::new(second_file));
}
}
state.files.insert(file_id, Rc::new(file));
Ok(())
}
}
/// The trackpoints of the segment up to `index` (included), in the same segment.
fn keep_up_to(segment: &TrackSegment, index: usize) -> TrackSegment {
let mut part = segment.clone();
let len = part.len();
part.splice(index + 1, len, vec![]);
part.rev_id = Default::default();
part
}
/// The trackpoints of the segment from `index` (included), in a new segment.
fn keep_from(segment: &TrackSegment, index: usize) -> TrackSegment {
let mut part = copy_segment(segment);
part.splice(0, index, vec![]);
part.rev_id = Default::default();
part
}
#[cfg(test)]
mod tests {
use std::collections::HashSet;
use crate::{FileId, Load, Selection, TrackSegmentId, engine::command::fixture::Fixture};
use super::*;
fn loaded() -> (Fixture, FileId) {
let mut fx = Fixture::default();
let data = std::fs::read("data/with_tracks_and_segments.gpx").unwrap();
Load {
data: &data,
name: "file",
}
.apply(&mut fx.state())
.unwrap();
let id = fx.order.0[0];
fx.selection = Selection::File {
file_ids: HashSet::from([id]),
};
(fx, id)
}
fn split(at: u32, split_type: SplitType) -> Split {
Split { at, split_type }
}
fn lngs(segment: &TrackSegment) -> Vec<f64> {
segment.iter().map(|p| p.coordinates.lng).collect()
}
fn path(file: &File) -> Vec<f64> {
file.trk
.iter()
.flat_map(|t| &t.trkseg)
.flat_map(lngs)
.collect()
}
/// The index in the selection of the trackpoint `local` of the segment `seg` of the track `trk`.
fn index(file: &File, trk: usize, seg: usize, local: usize) -> u32 {
let before: usize = file
.trk
.iter()
.enumerate()
.flat_map(|(t, track)| {
track
.trkseg
.iter()
.enumerate()
.map(move |(s, segment)| ((t, s), segment.len()))
})
.take_while(|((t, s), _)| (*t, *s) != (trk, seg))
.map(|(_, len)| len)
.sum();
(before + local) as u32
}
/// A segment with enough trackpoints, and its position.
fn long_segment(file: &File) -> (usize, usize) {
file.trk
.iter()
.enumerate()
.flat_map(|(t, track)| (0..track.trkseg.len()).map(move |s| (t, s)))
.find(|(t, s)| file.trk[*t].trkseg[*s].len() > 4)
.unwrap()
}
#[test]
fn test_split_segments() {
let (mut fx, id) = loaded();
let before = fx.files[&id].clone();
let (trk, seg) = long_segment(&before);
let original = &before.trk[trk].trkseg[seg];
let len = original.len();
split(index(&before, trk, seg, 2), SplitType::Segments)
.apply(&mut fx.state())
.unwrap();
let after = &fx.files[&id];
assert_eq!(after.trk.len(), before.trk.len());
let segments = &after.trk[trk].trkseg;
assert_eq!(segments.len(), before.trk[trk].trkseg.len() + 1);
let (a, b) = (&segments[seg], &segments[seg + 1]);
// the point is the end of the first part and the start of the second
assert_eq!(lngs(a), lngs(original)[..=2]);
assert_eq!(lngs(b), lngs(original)[2..]);
assert_eq!(a.len() + b.len(), len + 1);
// the first part keeps the id, the second one is new
assert_eq!(a.id, original.id);
assert_ne!(b.id, original.id);
assert_ne!(a.rev_id, original.rev_id);
// the ends are anchors
assert_eq!(a[a.len() - 1].anchor, Some(0));
assert_eq!(b[0].anchor, Some(0));
// the rest of the file is untouched
for (i, segment) in before.trk[trk].trkseg.iter().enumerate() {
if i != seg {
let moved = if i > seg { i + 1 } else { i };
assert_eq!(segments[moved].rev_id, segment.rev_id);
}
}
}
#[test]
fn test_split_tracks() {
let (mut fx, id) = loaded();
let before = fx.files[&id].clone();
let (trk, seg) = long_segment(&before);
split(index(&before, trk, seg, 3), SplitType::Tracks)
.apply(&mut fx.state())
.unwrap();
let after = &fx.files[&id];
assert_eq!(after.trk.len(), before.trk.len() + 1);
let (a, b) = (&after.trk[trk], &after.trk[trk + 1]);
assert_eq!(a.id, before.trk[trk].id);
assert_ne!(b.id, a.id);
// the segments before are in the first track, the ones after in the second one
assert_eq!(a.trkseg.len(), seg + 1);
assert_eq!(b.trkseg.len(), before.trk[trk].trkseg.len() - seg);
assert_eq!(a.trkseg[..seg], before.trk[trk].trkseg[..seg]);
// new ids for everything that moved, so that they are unique
let ids: HashSet<TrackSegmentId> = after
.trk
.iter()
.flat_map(|t| t.trkseg.iter().map(|s| s.id))
.collect();
assert_eq!(
ids.len(),
after.trk.iter().map(|t| t.trkseg.len()).sum::<usize>()
);
// the path goes on, with the point twice
let mut expected = path(&before);
let at = index(&before, trk, seg, 3) as usize;
expected.insert(at, expected[at]);
assert_eq!(path(after), expected);
// the info of the track is the same
assert_eq!(a.info, b.info);
}
#[test]
fn test_split_files() {
let (mut fx, id) = loaded();
let mut file = (*fx.files[&id]).clone();
let wpt = crate::Waypoint {
name: Some("w".into()),
..Default::default()
};
file.wpt.insert_at(0, vec![wpt.clone()]);
fx.files.insert(id, Rc::new(file));
let before = fx.files[&id].clone();
let (trk, seg) = long_segment(&before);
let at = index(&before, trk, seg, 1);
split(at, SplitType::Files).apply(&mut fx.state()).unwrap();
assert_eq!(fx.files.len(), 2);
let second_id = fx.order.0[1];
assert_eq!(fx.order.0[0], id);
assert_ne!(second_id, id);
let (a, b) = (&fx.files[&id], &fx.files[&second_id]);
// the first file stops at the point, the second one starts there
let all = path(&before);
assert_eq!(path(a), all[..=at as usize]);
assert_eq!(path(b), all[at as usize..]);
assert_eq!(a.info, b.info);
// each has the waypoints, the copy has its own ids
assert_eq!(a.wpt.len(), 1);
assert_eq!(b.wpt.len(), 1);
assert_ne!(a.wpt[0].id, b.wpt[0].id);
assert_eq!(b.wpt[0].name, wpt.name);
// nothing is shared by id between the two
let ids = |f: &File| -> HashSet<_> {
f.trk
.iter()
.flat_map(|t| std::iter::once(t.id.0).chain(t.trkseg.iter().map(|s| s.id.0)))
.collect()
};
assert!(ids(a).is_disjoint(&ids(b)));
// the selection is the same
assert!(matches!(&fx.selection, Selection::File { file_ids } if file_ids.contains(&id)));
}
#[test]
fn test_invalid_or_nothing() {
let (mut fx, id) = loaded();
let before = fx.files[&id].clone();
let total = path(&before).len() as u32;
assert!(matches!(
split(total + 5, SplitType::Segments).apply(&mut fx.state()),
Err(CommandError::InvalidData(_))
));
// after the last trackpoint: appending, not a trackpoint
assert!(matches!(
split(total, SplitType::Segments).apply(&mut fx.state()),
Err(CommandError::InvalidData(_))
));
fx.selection = Selection::Empty;
assert_eq!(
split(0, SplitType::Files).apply(&mut fx.state()),
Err(CommandError::NothingToDo)
);
assert!(Rc::ptr_eq(&fx.files[&id], &before));
}
}
+28 -2
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@@ -23,6 +23,25 @@ pub enum MergeType {
Group,
}
/// What a split cuts in two.
#[wasm_bindgen]
#[derive(Clone, Copy)]
pub enum SplitType {
Files,
Tracks,
Segments,
}
impl From<SplitType> for engine::SplitType {
fn from(t: SplitType) -> Self {
match t {
SplitType::Files => Self::Files,
SplitType::Tracks => Self::Tracks,
SplitType::Segments => Self::Segments,
}
}
}
#[wasm_bindgen]
#[derive(Clone, Copy)]
pub enum CleanType {
@@ -582,9 +601,16 @@ pub fn crop(start: u32, end: u32) -> bool {
start <= end && edit(Command::Crop(engine::Crop { start, end }))
}
/// Cuts the file, the track or the segment (see `SplitType`) of the trackpoint `at` of the
/// selection in two, there: the trackpoint ends the first part and starts the second one. Does
/// nothing, and returns false, if the revision of the routing buffers is not the given one.
#[wasm_bindgen]
pub fn split(at: u32) -> bool {
edit(Command::Split(engine::Split { at }))
pub fn split(revision: u32, at: u32, split_type: SplitType) -> bool {
routing_revision_is(revision)
&& edit(Command::Split(engine::Split {
at,
split_type: split_type.into(),
}))
}
#[wasm_bindgen]
@@ -20,7 +20,7 @@ import { isSegmentHidden, isWaypointHidden } from '$lib/file-visibility';
import { settings } from '$lib/logic/settings';
import { currentTool, Tool } from '$lib/components/toolbar/tools';
import { fileActions } from '$lib/logic/file-actions';
import { splitAs } from '$lib/components/toolbar/tools/scissors/scissors';
import { splitAtPoint } from '$lib/components/toolbar/tools/scissors/scissors';
import { mapCursor, MapCursorState } from '$lib/logic/map-cursor';
import { ANCHOR_LAYER_KEY } from '$lib/components/map/style';
@@ -415,7 +415,7 @@ export class GPXLayer {
layerOnClick(e: MapLayerMouseEvent) {
const properties = e.features![0].properties!;
const { trackId, segmentId, trackIndex, segmentIndex } = properties;
const { trackId, segmentId } = properties;
const selectionType = this.selectionState.type;
if (
@@ -436,11 +436,7 @@ export class GPXLayer {
return;
}
// TODO the engine can split (Command::Split) but needs the index of the trackpoint
// fileActions.split(get(splitAs), this.fileId, trackIndex, segmentIndex, {
// lat: e.lngLat.lat,
// lon: e.lngLat.lng,
// });
splitAtPoint(segmentId, { lng: e.lngLat.lng, lat: e.lngLat.lat });
return;
}
@@ -1,21 +1,18 @@
<script lang="ts">
import { splitAs, SplitType } from '$lib/components/toolbar/tools/scissors/scissors';
import Help from '$lib/components/Help.svelte';
import { ListRootItem } from '$lib/components/file-list/file-list';
import { Label } from '$lib/components/ui/label/index.js';
import { Button } from '$lib/components/ui/button';
import { Slider } from '$lib/components/ui/slider';
import * as Select from '$lib/components/ui/select';
import { Separator } from '$lib/components/ui/separator';
import { map } from '$lib/components/map/map';
import { get } from 'svelte/store';
import { i18n } from '$lib/i18n.svelte';
import { onDestroy, onMount, untrack } from 'svelte';
import { Crop } from '@lucide/svelte';
import { SplitControls } from './split-controls';
import { getURLForLanguage } from '$lib/utils';
import { selection } from '$lib/logic/selection';
import { gpxStatistics, slicedGPXStatistics } from '$lib/logic/statistics';
import { slicedStatistics } from '$lib/logic/selection-statistics';
import { engine } from '$lib/engine';
let props: {
@@ -24,15 +21,35 @@
let splitControls: SplitControls | undefined = undefined;
const selection = engine.selection;
const statistics = engine.statistics;
// the tool works on files, tracks and segments, not on waypoints
let validSelection = $derived(
$selection.hasAnyChildren(new ListRootItem(), true, ['waypoints']) &&
$gpxStatistics.global.length > 0
($selection.type === 'file' ||
$selection.type === 'track' ||
$selection.type === 'segment') &&
$statistics.length > 0
);
let maxSliderValue = $derived(
validSelection && $gpxStatistics.global.length > 0 ? $gpxStatistics.global.length - 1 : 1
);
let sliderValues = $derived([0, maxSliderValue]);
let canCrop = $derived(sliderValues[0] != 0 || sliderValues[1] != maxSliderValue);
// The slider does work for each of its steps every time it changes, which is too slow with
// the thousands of trackpoints of a long track: it has a limited number of steps, which are
// spread over the trackpoints.
const MAX_STEPS = 500;
let length = $derived($statistics.length);
let steps = $derived(validSelection ? Math.min(length - 1, MAX_STEPS) : 1);
let sliderValues = $state([0, 1]);
/** The index of the trackpoint of a step of the slider. */
function toIndex(step: number) {
return steps <= 0 || steps >= length - 1 ? step : Math.round((step * (length - 1)) / steps);
}
/** The step of the slider that is the closest to a trackpoint. */
function toStep(index: number) {
return steps <= 0 || steps >= length - 1
? index
: Math.round((index * steps) / (length - 1));
}
onMount(() => {
if ($map) {
@@ -40,42 +57,33 @@
}
});
function updateSlicedGPXStatistics() {
if (validSelection && canCrop) {
$slicedGPXStatistics = [
get(gpxStatistics).sliced(sliderValues[0], sliderValues[1]),
sliderValues[0],
sliderValues[1],
];
/** The user moved the slider: the part of the selection between its bounds is highlighted. */
function updateSlicedStatistics([startStep, endStep]: number[]) {
if (validSelection && (startStep !== 0 || endStep !== steps)) {
const [start, end] = [toIndex(startStep), toIndex(endStep)];
const global = $statistics.slice(start, end);
slicedStatistics.set(global && { global, start, end });
} else {
$slicedGPXStatistics = undefined;
}
}
function updateSliderValues() {
if ($slicedGPXStatistics !== undefined) {
sliderValues = [$slicedGPXStatistics[1], $slicedGPXStatistics[2]];
slicedStatistics.set(undefined);
}
}
// The slider follows the highlighted part, which can also be chosen on the elevation profile or
// reset (when the selection changes): it covers the whole selection when there is none.
// It only goes this way, the slider tells about its own changes (`onValueChange`).
$effect(() => {
if (sliderValues) {
untrack(() => updateSlicedGPXStatistics());
}
});
$effect(() => {
if (
$slicedGPXStatistics !== undefined &&
($slicedGPXStatistics[1] !== sliderValues[0] ||
$slicedGPXStatistics[2] !== sliderValues[1])
) {
untrack(() => updateSliderValues());
}
const sliced = $slicedStatistics;
const max = steps;
untrack(() => {
const bounds = sliced ? [toStep(sliced.start), toStep(sliced.end)] : [0, max];
if (sliderValues[0] !== bounds[0] || sliderValues[1] !== bounds[1]) {
sliderValues = bounds;
}
});
});
onDestroy(() => {
$slicedGPXStatistics = undefined;
slicedStatistics.set(undefined);
if (splitControls) {
splitControls.destroy();
}
@@ -86,7 +94,8 @@
<div class="p-2">
<Slider
bind:value={sliderValues}
max={maxSliderValue}
onValueChange={updateSlicedStatistics}
max={steps}
step={1}
type="multiple"
disabled={!validSelection}
@@ -94,8 +103,9 @@
</div>
<Button
variant="outline"
disabled={!validSelection || !canCrop}
onclick={() => engine.crop(sliderValues[0], sliderValues[1])}
disabled={!validSelection || !$slicedStatistics}
onclick={() =>
$slicedStatistics && engine.crop($slicedStatistics.start, $slicedStatistics.end)}
>
<Crop size="16" />{i18n._('toolbar.scissors.crop')}
</Button>
@@ -1,9 +1,32 @@
import { writable, type Writable } from 'svelte/store';
import { get, writable, type Writable } from 'svelte/store';
import { engine, type SplitType as EngineSplitType } from '$lib/engine';
import { closestPointIndexIn } from '$lib/closest-point';
export enum SplitType {
FILES = 'files',
TRACKS = 'tracks',
SEGMENTS = 'segments',
}
/** What a split cuts in two, the values being the ones of the engine. */
export const SplitType = {
FILES: 'files',
TRACKS: 'tracks',
SEGMENTS: 'segments',
} as const satisfies Record<string, EngineSplitType>;
export type SplitType = (typeof SplitType)[keyof typeof SplitType];
export let splitAs: Writable<SplitType> = writable(SplitType.FILES);
/**
* Splits at the trackpoint of a selected segment that is the closest to `point`, as `splitAs` says.
* The statistics of the engine need to have the anchors (the scissors tool asks for them).
*/
export function splitAtPoint(segmentId: string, point: { lng: number; lat: number }) {
const statistics = get(engine.statistics);
const anchors = statistics.anchors;
const segment = anchors?.segmentIds.indexOf(segmentId) ?? -1;
if (!anchors || segment < 0) {
return;
}
const starts = anchors.segmentStarts;
const end = segment + 1 < starts.length ? starts[segment + 1] : statistics.length;
const index = closestPointIndexIn(statistics.lng, statistics.lat, starts[segment], end, point);
if (index !== undefined) {
engine.split(anchors.revision, index, get(splitAs));
}
}
@@ -1,22 +1,32 @@
import { ListTrackSegmentItem } from '$lib/components/file-list/file-list';
import { currentTool, Tool } from '$lib/components/toolbar/tools';
import { splitAs } from '$lib/components/toolbar/tools/scissors/scissors';
import { Scissors } from 'lucide-static';
import { selection } from '$lib/logic/selection';
import { gpxStatistics } from '$lib/logic/statistics';
import { get } from 'svelte/store';
import { fileStateCollection } from '$lib/logic/file-state';
import { fileActions } from '$lib/logic/file-actions';
import { mapCursor, MapCursorState } from '$lib/logic/map-cursor';
import type { GeoJSONSource } from 'maplibre-gl';
import { ANCHOR_LAYER_KEY } from '$lib/components/map/style';
import type { MapLayerEventManager } from '$lib/components/map/map-layer-event-manager';
import { loadSVGIcon } from '$lib/utils';
import {
engine,
type Selection,
type SelectionStatistics,
type StatisticsRequest,
} from '$lib/engine';
/**
* The anchors inside the segments of the selection, where a click splits the file, the track or
* the segment: a command of the engine, which finds them by the index of their trackpoint in the
* selection.
*/
export class SplitControls {
map: maplibregl.Map;
layerEventManager: MapLayerEventManager;
unsubscribes: Function[] = [];
/** What the tool needs from the engine, while it shows the anchors. */
request: StatisticsRequest = engine.requestStatistics();
selection: Selection = { type: 'empty' };
statistics: SelectionStatistics | undefined = undefined;
layerOnMouseEnterBinded: (e: any) => void = this.layerOnMouseEnter.bind(this);
layerOnMouseLeaveBinded: () => void = this.layerOnMouseLeave.bind(this);
@@ -36,13 +46,29 @@ export class SplitControls {
</svg>`
);
this.unsubscribes.push(gpxStatistics.subscribe(this.addIfNeeded.bind(this)));
this.unsubscribes.push(
engine.statistics.subscribe((statistics) => {
this.statistics = statistics;
this.addIfNeeded();
})
);
this.unsubscribes.push(currentTool.subscribe(this.addIfNeeded.bind(this)));
this.unsubscribes.push(selection.subscribe(this.addIfNeeded.bind(this)));
this.unsubscribes.push(
engine.selection.subscribe((selection) => {
this.selection = selection;
this.addIfNeeded();
})
);
}
addIfNeeded() {
let scissors = get(currentTool) === Tool.SCISSORS;
// the tool works on files, tracks and segments, not on waypoints
const scissors =
get(currentTool) === Tool.SCISSORS &&
(this.selection.type === 'file' ||
this.selection.type === 'track' ||
this.selection.type === 'segment');
this.request.set(scissors ? ['anchors'] : []);
if (!scissors) {
this.remove();
return;
@@ -51,44 +77,42 @@ export class SplitControls {
this.updateControls();
}
updateControls() {
let data: GeoJSON.FeatureCollection = {
type: 'FeatureCollection',
features: [],
};
selection.applyToOrderedSelectedItemsFromFile((fileId, level, items) => {
let file = fileStateCollection.getFile(fileId);
if (file) {
file.forEachSegment((segment, trackIndex, segmentIndex) => {
if (
get(selection).hasAnyParent(
new ListTrackSegmentItem(fileId, trackIndex, segmentIndex)
)
) {
for (let i = 1; i < segment.trkpt.length - 1; i++) {
let point = segment.trkpt[i];
if (point._data.anchor) {
data.features.push({
type: 'Feature',
geometry: {
type: 'Point',
coordinates: [point.getLongitude(), point.getLatitude()],
},
properties: {
fileId: fileId,
trackIndex: trackIndex,
segmentIndex: segmentIndex,
pointIndex: i,
minZoom: point._data.zoom,
},
});
}
}
}
/** The anchors that are inside a segment, which is not where it starts or ends. */
inner(): GeoJSON.Feature[] {
const statistics = this.statistics;
const anchors = statistics?.anchors;
if (!statistics || !anchors) {
return [];
}
const starts = anchors.segmentStarts;
const features: GeoJSON.Feature[] = [];
let segment = 0;
for (let i = 0; i < anchors.indices.length; i++) {
const index = anchors.indices[i];
// the anchors are sorted: the segment can only be the same or a following one
while (segment + 1 < starts.length && starts[segment + 1] <= index) {
segment++;
}
const end = segment + 1 < starts.length ? starts[segment + 1] : statistics.length;
if (index > starts[segment] && index < end - 1) {
features.push({
type: 'Feature',
geometry: {
type: 'Point',
coordinates: [statistics.lng[index], statistics.lat[index]],
},
properties: { index, minZoom: anchors.zooms[i] },
});
}
}, false);
}
return features;
}
updateControls() {
const data: GeoJSON.FeatureCollection = {
type: 'FeatureCollection',
features: this.inner(),
};
try {
let source = this.map.getSource('split-controls') as GeoJSONSource | undefined;
@@ -161,19 +185,15 @@ export class SplitControls {
}
layerOnClick(e: maplibregl.MapLayerMouseEvent) {
let coordinates = (e.features![0].geometry as GeoJSON.Point).coordinates;
fileActions.split(
get(splitAs),
e.features![0].properties!.fileId,
e.features![0].properties!.trackIndex,
e.features![0].properties!.segmentIndex,
{ lon: coordinates[0], lat: coordinates[1] },
e.features![0].properties!.pointIndex
);
const revision = this.statistics?.anchors?.revision;
if (revision !== undefined) {
engine.split(revision, e.features![0].properties!.index, get(splitAs));
}
}
destroy() {
this.remove();
this.request.release();
this.unsubscribes.forEach((unsubscribe) => unsubscribe());
}
}
+23
View File
@@ -32,6 +32,9 @@ export type {
type Wasm = typeof import('gpx-rs');
/** What a split cuts in two: the file, the track or the segment of the trackpoint. */
export type SplitType = 'files' | 'tracks' | 'segments';
/**
* How elements combine with the current selection: they `replace` it, are `add`ed to it, or are
* `toggle`d (the ones already selected are removed). Adding and toggling only merge with elements
@@ -645,6 +648,26 @@ class Engine {
return this.run((w) => w.reverse());
}
/**
* Cuts the file, the track or the segment (see `SplitType`) of the trackpoint `at` of the
* selection in two, there: the trackpoint ends the first part and starts the second one. The
* first part keeps the ids, the second one (and what follows) gets new ones. `revision` is the
* one of `SelectionAnchors`, which `at` is an index of.
*/
split(revision: number, at: number, splitType: SplitType) {
return this.run((w) =>
w.split(
revision,
at,
{
files: w.SplitType.Files,
tracks: w.SplitType.Tracks,
segments: w.SplitType.Segments,
}[splitType]
)
);
}
/**
* Keeps the trackpoints `start` to `end` (both included) of the selection, counted over its
* segments one after the other, and removes the others, with the segments, tracks and files
+1 -66
View File
@@ -2,7 +2,6 @@ import { fileStateCollection } from '$lib/logic/file-state';
import { fileActionManager } from '$lib/logic/file-action-manager';
import { applyToOrderedItemsFromFile, copied, cut, selection } from '$lib/logic/selection';
import { currentTool, Tool } from '$lib/components/toolbar/tools';
import { SplitType } from '$lib/components/toolbar/tools/scissors/scissors';
import {
ListFileItem,
ListLevel,
@@ -20,13 +19,12 @@ import {
TrackPoint,
TrackSegment,
Waypoint,
type Coordinates,
type LineStyleExtension,
type WaypointType,
} from 'gpx';
import { get } from 'svelte/store';
import { settings } from '$lib/logic/settings';
import { getClosestLinePoint, getClosestTrackSegments, getElevation } from '$lib/utils';
import { getClosestTrackSegments, getElevation } from '$lib/utils';
import { gpxStatistics } from '$lib/logic/statistics';
import { boundsManager } from './bounds';
import { engine } from '$lib/engine';
@@ -333,69 +331,6 @@ export const fileActions = {
});
});
},
split(
splitType: SplitType,
fileId: string,
trackIndex: number,
segmentIndex: number,
coordinates: Coordinates,
trkptIndex?: number
) {
return fileActionManager.applyGlobal((draft) => {
let file = fileStateCollection.getFile(fileId);
if (file) {
let segment = file.trk[trackIndex].trkseg[segmentIndex];
let minIndex = 0;
if (trkptIndex === undefined) {
// Find the point closest to split
let closest = getClosestLinePoint(segment.trkpt, coordinates);
minIndex = closest._data.index;
} else {
minIndex = trkptIndex;
}
let absoluteIndex = minIndex;
file.forEachSegment((seg, trkIndex, segIndex) => {
if (
(trkIndex < trackIndex && splitType === SplitType.FILES) ||
(trkIndex === trackIndex && segIndex < segmentIndex)
) {
absoluteIndex += seg.trkpt.length;
}
});
if (splitType === SplitType.FILES) {
let newFile = draft.get(fileId);
if (newFile) {
newFile.crop(0, absoluteIndex);
let newFile2 = file.clone();
newFile2._data.id = getFileIds(1)[0];
newFile2.crop(absoluteIndex, file.getNumberOfTrackPoints() - 1);
draft.set(newFile2._data.id, freeze(newFile2));
}
} else if (splitType === SplitType.TRACKS) {
let newFile = draft.get(fileId);
if (newFile) {
let start = file.trk[trackIndex].clone();
start.crop(0, absoluteIndex);
let end = file.trk[trackIndex].clone();
end.crop(absoluteIndex, file.trk[trackIndex].getNumberOfTrackPoints() - 1);
newFile.replaceTracks(trackIndex, trackIndex, [start, end]);
}
} else if (splitType === SplitType.SEGMENTS) {
let newFile = draft.get(fileId);
if (newFile) {
let start = segment.clone();
start.crop(0, minIndex);
let end = segment.clone();
end.crop(minIndex, segment.trkpt.length - 1);
newFile.replaceTrackSegments(trackIndex, segmentIndex, segmentIndex, [
start,
end,
]);
}
}
}
});
},
reduce: (itemsAndPoints: Map<ListItem, TrackPoint[]>) => {
if (itemsAndPoints.size === 0) {
return;