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vcoppe committed 2026-10-07 18:54:00 +02:00
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@@ -1,14 +1,335 @@
use crate::{Apply, CommandError, State}; use std::{
collections::{HashMap, HashSet},
rc::Rc,
};
use crate::{
Apply, CommandError, File, FileId, SegmentLocation, Selection, State, TrackSegment,
TrackSegmentId,
};
/// Keeps the trackpoints `start` to `end` (both included) of the selection, which are counted
/// over its segments one after the other (as in the `RoutingBuffer`), and removes the others.
///
/// The segments that have no trackpoint left are removed. So are the tracks that have no segment
/// left, if tracks or files are selected (not if only segments are), and the files that have no
/// trackpoint left, if files are selected. A range that goes past the last trackpoint stops at it.
#[derive(Debug)] #[derive(Debug)]
pub struct Crop { pub struct Crop {
pub start: u32, pub start: u32,
pub end: u32, pub end: u32,
} }
/// What happens to a selected segment.
struct Plan {
location: SegmentLocation,
/// The trackpoints that are kept, `None` if the segment goes away.
keep: Option<(usize, usize)>,
len: usize,
}
impl Apply for Crop { impl Apply for Crop {
fn apply(self, _state: &mut State) -> Result<(), CommandError> { fn apply(self, state: &mut State) -> Result<(), CommandError> {
// TODO let (start, end) = (self.start as usize, self.end as usize);
Err(CommandError::NotImplemented("crop")) if start > end {
return Err(CommandError::InvalidData(
"invalid trackpoints range".into(),
));
}
let mut offset = 0;
let plans: Vec<Plan> = state
.selection
.segment_locations(state.files, &state.order.0)
.into_iter()
.map(|location| {
let len =
state.files[&location.file_id].trk[location.trk].trkseg[location.seg].len();
let keep = (len > 0 && start < offset + len && end >= offset)
.then(|| (start.saturating_sub(offset), (end - offset).min(len - 1)));
offset += len;
Plan {
location,
keep,
len,
}
})
.collect();
if plans
.iter()
.all(|plan| plan.keep == Some((0, plan.len.saturating_sub(1))))
{
// everything is kept as it is, or there is nothing
return Err(CommandError::NothingToDo);
}
// the files and tracks to prune, the segments to remove
let (prune_tracks, prune_files) = match &*state.selection {
Selection::File { .. } => (true, true),
Selection::Track { .. } => (true, false),
_ => (false, false),
};
let mut files: HashMap<FileId, File> = HashMap::new();
let mut removed: HashSet<TrackSegmentId> = HashSet::new();
let mut had_points: HashSet<FileId> = HashSet::new();
for plan in &plans {
let SegmentLocation { file_id, trk, seg } = plan.location;
let file = files
.entry(file_id)
.or_insert_with(|| (*state.files[&file_id]).clone());
if plan.len > 0 {
had_points.insert(file_id);
}
let segment = &mut file.trk[trk].trkseg[seg];
match plan.keep {
None => {
removed.insert(segment.id);
}
Some((from, to)) => crop_segment(segment, from, to),
}
}
let mut gone: Vec<FileId> = vec![];
for (file_id, file) in files.iter_mut() {
// the tracks that lost segments
let touched: Vec<bool> = file
.trk
.iter_mut()
.map(|track| {
let before = track.trkseg.len();
track
.trkseg
.retain(|segment| !removed.contains(&segment.id));
before != track.trkseg.len()
})
.collect();
if prune_tracks {
let mut touched = touched.into_iter();
file.trk
.retain(|track| !(touched.next().unwrap() && track.trkseg.is_empty()));
}
if prune_files && file.trk.is_empty() && had_points.contains(file_id) {
gone.push(*file_id);
}
}
for (file_id, file) in files {
if gone.contains(&file_id) {
state.files.remove(&file_id);
state.order.0.retain(|id| *id != file_id);
} else {
state.files.insert(file_id, Rc::new(file));
}
}
Ok(())
}
}
/// Keeps the trackpoints `from` to `to` of a segment, which are in it. Only the chunks at the ends
/// are changed.
fn crop_segment(segment: &mut TrackSegment, from: usize, to: usize) {
let len = segment.len();
if from == 0 && to + 1 >= len {
return;
}
segment.splice(to + 1, len, vec![]);
segment.splice(0, from, vec![]);
segment.rev_id = Default::default();
}
#[cfg(test)]
mod tests {
use crate::{Load, engine::command::fixture::Fixture};
use super::*;
fn loaded(path: &str) -> (Fixture, FileId) {
let mut fx = Fixture::default();
let data = std::fs::read(path).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 crop(start: u32, end: u32) -> Crop {
Crop { start, end }
}
/// The longitudes of the trackpoints of a file, one list per segment.
fn paths(file: &File) -> Vec<Vec<f64>> {
file.trk
.iter()
.flat_map(|track| &track.trkseg)
.map(|segment| segment.iter().map(|p| p.coordinates.lng).collect())
.collect()
}
#[test]
fn test_crop_a_file_keeps_the_range_over_its_segments() {
let (mut fx, id) = loaded("data/with_tracks_and_segments.gpx");
let before = paths(&fx.files[&id]);
let flat: Vec<f64> = before.iter().flatten().copied().collect();
let (start, end) = (2, flat.len() - 3);
crop(start as u32, end as u32)
.apply(&mut fx.state())
.unwrap();
let after: Vec<f64> = paths(&fx.files[&id]).iter().flatten().copied().collect();
assert_eq!(after, flat[start..=end]);
// the ends of the segments that are left are anchors
for track in &fx.files[&id].trk {
for segment in &track.trkseg {
assert!(!segment.is_empty());
assert_eq!(segment[0].anchor, Some(0));
assert_eq!(segment[segment.len() - 1].anchor, Some(0));
}
}
}
#[test]
fn test_what_is_outside_goes_away() {
let (mut fx, id) = loaded("data/with_tracks_and_segments.gpx");
let file = fx.files[&id].clone();
let lens: Vec<Vec<usize>> = file
.trk
.iter()
.map(|t| t.trkseg.iter().map(|segment| segment.len()).collect())
.collect();
assert!(lens.len() >= 2);
// from the start of the last track to the end
let before_last: usize = lens[..lens.len() - 1].iter().flatten().sum();
crop(before_last as u32, u32::MAX)
.apply(&mut fx.state())
.unwrap();
let after = &fx.files[&id];
// the other tracks are gone, the last one is whole
assert_eq!(after.trk.len(), 1);
assert_eq!(after.trk[0].id, file.trk.last().unwrap().id);
assert_eq!(
after.trk[0]
.trkseg
.iter()
.map(|segment| segment.len())
.collect::<Vec<_>>(),
*lens.last().unwrap()
);
// the selection followed
assert!(matches!(&fx.selection, Selection::File { .. }));
}
#[test]
fn test_crop_inside_a_segment_changes_it_only() {
let (mut fx, id) = loaded("data/with_tracks_and_segments.gpx");
let file = fx.files[&id].clone();
let trk = &file.trk[0];
assert!(trk.trkseg.len() >= 2);
fx.selection = Selection::TrackSegment {
file_id: id,
trk_id: trk.id,
trkseg_ids: HashSet::from([trk.trkseg[1].id]),
};
let len = trk.trkseg[1].len();
assert!(len > 4);
crop(1, len as u32 - 2).apply(&mut fx.state()).unwrap();
let after = &fx.files[&id].trk[0];
assert_eq!(after.trkseg[1].len(), len - 2);
assert_ne!(after.trkseg[1].rev_id, trk.trkseg[1].rev_id);
// the other segments are not in the selection, whatever the range
assert_eq!(after.trkseg[0].rev_id, trk.trkseg[0].rev_id);
assert_eq!(fx.files[&id].trk.len(), file.trk.len());
}
#[test]
fn test_segments_out_of_the_range_are_removed_but_not_their_track() {
let (mut fx, id) = loaded("data/with_tracks_and_segments.gpx");
let trk = fx.files[&id].trk[0].clone();
assert!(trk.trkseg.len() >= 2);
fx.selection = Selection::TrackSegment {
file_id: id,
trk_id: trk.id,
trkseg_ids: trk.trkseg.iter().map(|s| s.id).collect(),
};
// only the first segment, entirely
let first = trk.trkseg[0].len();
crop(0, first as u32 - 1).apply(&mut fx.state()).unwrap();
let after = &fx.files[&id].trk[0];
assert_eq!(after.trkseg.len(), 1);
assert_eq!(after.trkseg[0].id, trk.trkseg[0].id);
// nothing at all: the segments go, the track stays
crop(100_000, 100_001).apply(&mut fx.state()).unwrap();
assert!(fx.files[&id].trk[0].trkseg.is_empty());
}
#[test]
fn test_files_out_of_the_range_are_deleted() {
let (mut fx, first) = loaded("data/simple.gpx");
let data = std::fs::read("data/with_time.gpx").unwrap();
Load {
data: &data,
name: "second",
}
.apply(&mut fx.state())
.unwrap();
let second = fx.order.0[1];
fx.selection = Selection::File {
file_ids: HashSet::from([first, second]),
};
let first_len: usize = fx.files[&first]
.trk
.iter()
.flat_map(|t| &t.trkseg)
.map(|segment| segment.len())
.sum();
crop(first_len as u32 + 1, u32::MAX)
.apply(&mut fx.state())
.unwrap();
assert!(!fx.files.contains_key(&first));
assert_eq!(fx.order.0, [second]);
let kept: usize = fx.files[&second]
.trk
.iter()
.flat_map(|t| &t.trkseg)
.map(|segment| segment.len())
.sum();
assert!(kept > 0);
}
#[test]
fn test_nothing_to_do_or_invalid() {
let (mut fx, id) = loaded("data/simple.gpx");
let before = fx.files[&id].clone();
// the whole selection
assert_eq!(
crop(0, u32::MAX).apply(&mut fx.state()),
Err(CommandError::NothingToDo)
);
assert!(matches!(
crop(5, 2).apply(&mut fx.state()),
Err(CommandError::InvalidData(_))
));
fx.selection = Selection::Empty;
assert_eq!(
crop(0, 3).apply(&mut fx.state()),
Err(CommandError::NothingToDo)
);
fx.selection = Selection::Waypoints { file_id: id };
assert_eq!(
crop(0, 3).apply(&mut fx.state()),
Err(CommandError::NothingToDo)
);
assert!(Rc::ptr_eq(&fx.files[&id], &before));
} }
} }
+2
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@@ -575,6 +575,8 @@ pub fn update_waypoint(
} }
} }
/// Keeps the trackpoints `start` to `end` (both included) of the selection, counted over its
/// segments one after the other, and removes the others (and what is left empty).
#[wasm_bindgen] #[wasm_bindgen]
pub fn crop(start: u32, end: u32) -> bool { pub fn crop(start: u32, end: u32) -> bool {
start <= end && edit(Command::Crop(engine::Crop { start, end })) start <= end && edit(Command::Crop(engine::Crop { start, end }))
@@ -15,8 +15,8 @@
import { SplitControls } from './split-controls'; import { SplitControls } from './split-controls';
import { getURLForLanguage } from '$lib/utils'; import { getURLForLanguage } from '$lib/utils';
import { selection } from '$lib/logic/selection'; import { selection } from '$lib/logic/selection';
import { fileActions } from '$lib/logic/file-actions';
import { gpxStatistics, slicedGPXStatistics } from '$lib/logic/statistics'; import { gpxStatistics, slicedGPXStatistics } from '$lib/logic/statistics';
import { engine } from '$lib/engine';
let props: { let props: {
class?: string; class?: string;
@@ -95,7 +95,7 @@
<Button <Button
variant="outline" variant="outline"
disabled={!validSelection || !canCrop} disabled={!validSelection || !canCrop}
onclick={() => fileActions.cropSelection(sliderValues[0], sliderValues[1])} onclick={() => engine.crop(sliderValues[0], sliderValues[1])}
> >
<Crop size="16" />{i18n._('toolbar.scissors.crop')} <Crop size="16" />{i18n._('toolbar.scissors.crop')}
</Button> </Button>
+10
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@@ -645,6 +645,16 @@ class Engine {
return this.run((w) => w.reverse()); return this.run((w) => w.reverse());
} }
/**
* 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
* that are left empty (tracks and files only if they are selected). Resolves to `false` when
* the range covers the whole selection.
*/
crop(start: number, end: number) {
return this.run((w) => w.crop(Math.max(start, 0), Math.max(end, 0)));
}
/** /**
* Makes each selected segment (or the segments of the selected files and tracks) come back to * Makes each selected segment (or the segments of the selected files and tracks) come back to
* where it started: a reversed copy of it is added after its last trackpoint (which is not * where it started: a reversed copy of it is added after its last trackpoint (which is not
-33
View File
@@ -249,39 +249,6 @@ export const fileActions = {
} }
}); });
}, },
cropSelection: (start: number, end: number) => {
if (get(selection).size === 0) {
return;
}
fileActionManager.applyGlobal((draft) => {
selection.applyToOrderedSelectedItemsFromFile((fileId, level, items) => {
let file = draft.get(fileId);
if (file) {
if (level === ListLevel.FILE) {
let length = file.getNumberOfTrackPoints();
if (start >= length || end < 0) {
draft.delete(fileId);
} else if (start > 0 || end < length - 1) {
file.crop(Math.max(0, start), Math.min(length - 1, end));
}
start -= length;
end -= length;
} else if (level === ListLevel.TRACK) {
let trackIndices = items.map((item) =>
(item as ListTrackItem).getTrackIndex()
);
file.crop(start, end, trackIndices);
} else if (level === ListLevel.SEGMENT) {
let trackIndices = [(items[0] as ListTrackSegmentItem).getTrackIndex()];
let segmentIndices = items.map((item) =>
(item as ListTrackSegmentItem).getSegmentIndex()
);
file.crop(start, end, trackIndices, segmentIndices);
}
}
}, false);
});
},
extractSelection: () => { extractSelection: () => {
return fileActionManager.applyGlobal((draft) => { return fileActionManager.applyGlobal((draft) => {
selection.applyToOrderedSelectedItemsFromFile((fileId, level, items) => { selection.applyToOrderedSelectedItemsFromFile((fileId, level, items) => {