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[dolphin.git] / src / kitemviews / kfileitemmodel.cpp
1 /*
2 * SPDX-FileCopyrightText: 2011 Peter Penz <peter.penz19@gmail.com>
3 * SPDX-FileCopyrightText: 2013 Frank Reininghaus <frank78ac@googlemail.com>
4 * SPDX-FileCopyrightText: 2013 Emmanuel Pescosta <emmanuelpescosta099@gmail.com>
5 *
6 * SPDX-License-Identifier: GPL-2.0-or-later
7 */
8
9 #include "kfileitemmodel.h"
10
11 #include "dolphin_generalsettings.h"
12 #include "dolphin_detailsmodesettings.h"
13 #include "dolphindebug.h"
14 #include "private/kfileitemmodelsortalgorithm.h"
15
16 #include <KDirLister>
17 #include <KIO/Job>
18 #include <kio_version.h>
19 #include <KLocalizedString>
20 #include <KUrlMimeData>
21
22 #include <QElapsedTimer>
23 #include <QMimeData>
24 #include <QMimeDatabase>
25 #include <QTimer>
26 #include <QWidget>
27 #include <QRecursiveMutex>
28 #include <QIcon>
29 #include <algorithm>
30 #include <klazylocalizedstring.h>
31
32 Q_GLOBAL_STATIC(QRecursiveMutex, s_collatorMutex)
33
34 // #define KFILEITEMMODEL_DEBUG
35
36 KFileItemModel::KFileItemModel(QObject* parent) :
37 KItemModelBase("text", parent),
38 m_dirLister(nullptr),
39 m_sortDirsFirst(true),
40 m_sortHiddenLast(false),
41 m_sortRole(NameRole),
42 m_sortingProgressPercent(-1),
43 m_roles(),
44 m_itemData(),
45 m_items(),
46 m_filter(),
47 m_filteredItems(),
48 m_requestRole(),
49 m_maximumUpdateIntervalTimer(nullptr),
50 m_resortAllItemsTimer(nullptr),
51 m_pendingItemsToInsert(),
52 m_groups(),
53 m_expandedDirs(),
54 m_urlsToExpand()
55 {
56 m_collator.setNumericMode(true);
57
58 loadSortingSettings();
59
60 m_dirLister = new KDirLister(this);
61 m_dirLister->setAutoErrorHandlingEnabled(false);
62 m_dirLister->setDelayedMimeTypes(true);
63
64 const QWidget* parentWidget = qobject_cast<QWidget*>(parent);
65 if (parentWidget) {
66 m_dirLister->setMainWindow(parentWidget->window());
67 }
68
69 connect(m_dirLister, &KCoreDirLister::started, this, &KFileItemModel::directoryLoadingStarted);
70 connect(m_dirLister, &KCoreDirLister::canceled, this, &KFileItemModel::slotCanceled);
71 connect(m_dirLister, &KCoreDirLister::itemsAdded, this, &KFileItemModel::slotItemsAdded);
72 connect(m_dirLister, &KCoreDirLister::itemsDeleted, this, &KFileItemModel::slotItemsDeleted);
73 connect(m_dirLister, &KCoreDirLister::refreshItems, this, &KFileItemModel::slotRefreshItems);
74 connect(m_dirLister, &KCoreDirLister::clear, this, &KFileItemModel::slotClear);
75 connect(m_dirLister, &KCoreDirLister::infoMessage, this, &KFileItemModel::infoMessage);
76 connect(m_dirLister, &KCoreDirLister::jobError, this, &KFileItemModel::slotListerError);
77 connect(m_dirLister, &KCoreDirLister::percent, this, &KFileItemModel::directoryLoadingProgress);
78 connect(m_dirLister, &KCoreDirLister::redirection, this, &KFileItemModel::directoryRedirection);
79 connect(m_dirLister, &KCoreDirLister::listingDirCompleted, this, &KFileItemModel::slotCompleted);
80
81 // Apply default roles that should be determined
82 resetRoles();
83 m_requestRole[NameRole] = true;
84 m_requestRole[IsDirRole] = true;
85 m_requestRole[IsLinkRole] = true;
86 m_roles.insert("text");
87 m_roles.insert("isDir");
88 m_roles.insert("isLink");
89 m_roles.insert("isHidden");
90
91 // For slow KIO-slaves like used for searching it makes sense to show results periodically even
92 // before the completed() or canceled() signal has been emitted.
93 m_maximumUpdateIntervalTimer = new QTimer(this);
94 m_maximumUpdateIntervalTimer->setInterval(2000);
95 m_maximumUpdateIntervalTimer->setSingleShot(true);
96 connect(m_maximumUpdateIntervalTimer, &QTimer::timeout, this, &KFileItemModel::dispatchPendingItemsToInsert);
97
98 // When changing the value of an item which represents the sort-role a resorting must be
99 // triggered. Especially in combination with KFileItemModelRolesUpdater this might be done
100 // for a lot of items within a quite small timeslot. To prevent expensive resortings the
101 // resorting is postponed until the timer has been exceeded.
102 m_resortAllItemsTimer = new QTimer(this);
103 m_resortAllItemsTimer->setInterval(500);
104 m_resortAllItemsTimer->setSingleShot(true);
105 connect(m_resortAllItemsTimer, &QTimer::timeout, this, &KFileItemModel::resortAllItems);
106
107 connect(GeneralSettings::self(), &GeneralSettings::sortingChoiceChanged, this, &KFileItemModel::slotSortingChoiceChanged);
108 }
109
110 KFileItemModel::~KFileItemModel()
111 {
112 qDeleteAll(m_itemData);
113 qDeleteAll(m_filteredItems);
114 qDeleteAll(m_pendingItemsToInsert);
115 }
116
117 void KFileItemModel::loadDirectory(const QUrl &url)
118 {
119 m_dirLister->openUrl(url);
120 }
121
122 void KFileItemModel::refreshDirectory(const QUrl &url)
123 {
124 // Refresh all expanded directories first (Bug 295300)
125 QHashIterator<QUrl, QUrl> expandedDirs(m_expandedDirs);
126 while (expandedDirs.hasNext()) {
127 expandedDirs.next();
128 m_dirLister->openUrl(expandedDirs.value(), KDirLister::Reload);
129 }
130
131 m_dirLister->openUrl(url, KDirLister::Reload);
132 }
133
134 QUrl KFileItemModel::directory() const
135 {
136 return m_dirLister->url();
137 }
138
139 void KFileItemModel::cancelDirectoryLoading()
140 {
141 m_dirLister->stop();
142 }
143
144 int KFileItemModel::count() const
145 {
146 return m_itemData.count();
147 }
148
149 QHash<QByteArray, QVariant> KFileItemModel::data(int index) const
150 {
151 if (index >= 0 && index < count()) {
152 ItemData* data = m_itemData.at(index);
153 if (data->values.isEmpty()) {
154 data->values = retrieveData(data->item, data->parent);
155 } else if (data->values.count() <= 2 && data->values.value("isExpanded").toBool()) {
156 // Special case dealt by slotRefreshItems(), avoid losing the "isExpanded" and "expandedParentsCount" state when refreshing
157 // slotRefreshItems() makes sure folders keep the "isExpanded" and "expandedParentsCount" while clearing the remaining values
158 // so this special request of different behavior can be identified here.
159 bool hasExpandedParentsCount = false;
160 const int expandedParentsCount = data->values.value("expandedParentsCount").toInt(&hasExpandedParentsCount);
161
162 data->values = retrieveData(data->item, data->parent);
163 data->values.insert("isExpanded", true);
164 if (hasExpandedParentsCount) {
165 data->values.insert("expandedParentsCount", expandedParentsCount);
166 }
167 }
168
169 return data->values;
170 }
171 return QHash<QByteArray, QVariant>();
172 }
173
174 bool KFileItemModel::setData(int index, const QHash<QByteArray, QVariant>& values)
175 {
176 if (index < 0 || index >= count()) {
177 return false;
178 }
179
180 QHash<QByteArray, QVariant> currentValues = data(index);
181
182 // Determine which roles have been changed
183 QSet<QByteArray> changedRoles;
184 QHashIterator<QByteArray, QVariant> it(values);
185 while (it.hasNext()) {
186 it.next();
187 const QByteArray role = sharedValue(it.key());
188 const QVariant value = it.value();
189
190 if (currentValues[role] != value) {
191 currentValues[role] = value;
192 changedRoles.insert(role);
193 }
194 }
195
196 if (changedRoles.isEmpty()) {
197 return false;
198 }
199
200 m_itemData[index]->values = currentValues;
201 if (changedRoles.contains("text")) {
202 QUrl url = m_itemData[index]->item.url();
203 url = url.adjusted(QUrl::RemoveFilename);
204 url.setPath(url.path() + currentValues["text"].toString());
205 m_itemData[index]->item.setUrl(url);
206 }
207
208 emitItemsChangedAndTriggerResorting(KItemRangeList() << KItemRange(index, 1), changedRoles);
209
210 return true;
211 }
212
213 void KFileItemModel::setSortDirectoriesFirst(bool dirsFirst)
214 {
215 if (dirsFirst != m_sortDirsFirst) {
216 m_sortDirsFirst = dirsFirst;
217 resortAllItems();
218 }
219 }
220
221 bool KFileItemModel::sortDirectoriesFirst() const
222 {
223 return m_sortDirsFirst;
224 }
225
226 void KFileItemModel::setSortHiddenLast(bool hiddenLast)
227 {
228 if (hiddenLast != m_sortHiddenLast) {
229 m_sortHiddenLast = hiddenLast;
230 resortAllItems();
231 }
232 }
233
234 bool KFileItemModel::sortHiddenLast() const
235 {
236 return m_sortHiddenLast;
237 }
238
239 void KFileItemModel::setShowHiddenFiles(bool show)
240 {
241 #if KIO_VERSION < QT_VERSION_CHECK(5, 100, 0)
242 m_dirLister->setShowingDotFiles(show);
243 #else
244 m_dirLister->setShowHiddenFiles(show);
245 #endif
246 m_dirLister->emitChanges();
247 if (show) {
248 dispatchPendingItemsToInsert();
249 }
250 }
251
252 bool KFileItemModel::showHiddenFiles() const
253 {
254 #if KIO_VERSION < QT_VERSION_CHECK(5, 100, 0)
255 return m_dirLister->showingDotFiles();
256 #else
257 return m_dirLister->showHiddenFiles();
258 #endif
259 }
260
261 void KFileItemModel::setShowDirectoriesOnly(bool enabled)
262 {
263 m_dirLister->setDirOnlyMode(enabled);
264 }
265
266 bool KFileItemModel::showDirectoriesOnly() const
267 {
268 return m_dirLister->dirOnlyMode();
269 }
270
271 QMimeData* KFileItemModel::createMimeData(const KItemSet& indexes) const
272 {
273 QMimeData* data = new QMimeData();
274
275 // The following code has been taken from KDirModel::mimeData()
276 // (kdelibs/kio/kio/kdirmodel.cpp)
277 // SPDX-FileCopyrightText: 2006 David Faure <faure@kde.org>
278 QList<QUrl> urls;
279 QList<QUrl> mostLocalUrls;
280 const ItemData* lastAddedItem = nullptr;
281
282 for (int index : indexes) {
283 const ItemData* itemData = m_itemData.at(index);
284 const ItemData* parent = itemData->parent;
285
286 while (parent && parent != lastAddedItem) {
287 parent = parent->parent;
288 }
289
290 if (parent && parent == lastAddedItem) {
291 // A parent of 'itemData' has been added already.
292 continue;
293 }
294
295 lastAddedItem = itemData;
296 const KFileItem& item = itemData->item;
297 if (!item.isNull()) {
298 urls << item.url();
299
300 bool isLocal;
301 mostLocalUrls << item.mostLocalUrl(&isLocal);
302 }
303 }
304
305 KUrlMimeData::setUrls(urls, mostLocalUrls, data);
306 return data;
307 }
308
309 int KFileItemModel::indexForKeyboardSearch(const QString& text, int startFromIndex) const
310 {
311 startFromIndex = qMax(0, startFromIndex);
312 for (int i = startFromIndex; i < count(); ++i) {
313 if (fileItem(i).text().startsWith(text, Qt::CaseInsensitive)) {
314 return i;
315 }
316 }
317 for (int i = 0; i < startFromIndex; ++i) {
318 if (fileItem(i).text().startsWith(text, Qt::CaseInsensitive)) {
319 return i;
320 }
321 }
322 return -1;
323 }
324
325 bool KFileItemModel::supportsDropping(int index) const
326 {
327 const KFileItem item = fileItem(index);
328 return !item.isNull() && (item.isDir() || item.isDesktopFile());
329 }
330
331 QString KFileItemModel::roleDescription(const QByteArray& role) const
332 {
333 static QHash<QByteArray, QString> description;
334 if (description.isEmpty()) {
335 int count = 0;
336 const RoleInfoMap* map = rolesInfoMap(count);
337 for (int i = 0; i < count; ++i) {
338 if (map[i].roleTranslation.isEmpty()) {
339 continue;
340 }
341 description.insert(map[i].role, map[i].roleTranslation.toString());
342 }
343 }
344
345 return description.value(role);
346 }
347
348 QList<QPair<int, QVariant> > KFileItemModel::groups() const
349 {
350 if (!m_itemData.isEmpty() && m_groups.isEmpty()) {
351 #ifdef KFILEITEMMODEL_DEBUG
352 QElapsedTimer timer;
353 timer.start();
354 #endif
355 switch (typeForRole(sortRole())) {
356 case NameRole: m_groups = nameRoleGroups(); break;
357 case SizeRole: m_groups = sizeRoleGroups(); break;
358 case ModificationTimeRole:
359 m_groups = timeRoleGroups([](const ItemData *item) {
360 return item->item.time(KFileItem::ModificationTime);
361 });
362 break;
363 case CreationTimeRole:
364 m_groups = timeRoleGroups([](const ItemData *item) {
365 return item->item.time(KFileItem::CreationTime);
366 });
367 break;
368 case AccessTimeRole:
369 m_groups = timeRoleGroups([](const ItemData *item) {
370 return item->item.time(KFileItem::AccessTime);
371 });
372 break;
373 case DeletionTimeRole:
374 m_groups = timeRoleGroups([](const ItemData *item) {
375 return item->values.value("deletiontime").toDateTime();
376 });
377 break;
378 case PermissionsRole: m_groups = permissionRoleGroups(); break;
379 case RatingRole: m_groups = ratingRoleGroups(); break;
380 default: m_groups = genericStringRoleGroups(sortRole()); break;
381 }
382
383 #ifdef KFILEITEMMODEL_DEBUG
384 qCDebug(DolphinDebug) << "[TIME] Calculating groups for" << count() << "items:" << timer.elapsed();
385 #endif
386 }
387
388 return m_groups;
389 }
390
391 KFileItem KFileItemModel::fileItem(int index) const
392 {
393 if (index >= 0 && index < count()) {
394 return m_itemData.at(index)->item;
395 }
396
397 return KFileItem();
398 }
399
400 KFileItem KFileItemModel::fileItem(const QUrl &url) const
401 {
402 const int indexForUrl = index(url);
403 if (indexForUrl >= 0) {
404 return m_itemData.at(indexForUrl)->item;
405 }
406 return KFileItem();
407 }
408
409 int KFileItemModel::index(const KFileItem& item) const
410 {
411 return index(item.url());
412 }
413
414 int KFileItemModel::index(const QUrl& url) const
415 {
416 const QUrl urlToFind = url.adjusted(QUrl::StripTrailingSlash);
417
418 const int itemCount = m_itemData.count();
419 int itemsInHash = m_items.count();
420
421 int index = m_items.value(urlToFind, -1);
422 while (index < 0 && itemsInHash < itemCount) {
423 // Not all URLs are stored yet in m_items. We grow m_items until either
424 // urlToFind is found, or all URLs have been stored in m_items.
425 // Note that we do not add the URLs to m_items one by one, but in
426 // larger blocks. After each block, we check if urlToFind is in
427 // m_items. We could in principle compare urlToFind with each URL while
428 // we are going through m_itemData, but comparing two QUrls will,
429 // unlike calling qHash for the URLs, trigger a parsing of the URLs
430 // which costs both CPU cycles and memory.
431 const int blockSize = 1000;
432 const int currentBlockEnd = qMin(itemsInHash + blockSize, itemCount);
433 for (int i = itemsInHash; i < currentBlockEnd; ++i) {
434 const QUrl nextUrl = m_itemData.at(i)->item.url();
435 m_items.insert(nextUrl, i);
436 }
437
438 itemsInHash = currentBlockEnd;
439 index = m_items.value(urlToFind, -1);
440 }
441
442 if (index < 0) {
443 // The item could not be found, even though all items from m_itemData
444 // should be in m_items now. We print some diagnostic information which
445 // might help to find the cause of the problem, but only once. This
446 // prevents that obtaining and printing the debugging information
447 // wastes CPU cycles and floods the shell or .xsession-errors.
448 static bool printDebugInfo = true;
449
450 if (m_items.count() != m_itemData.count() && printDebugInfo) {
451 printDebugInfo = false;
452
453 qCWarning(DolphinDebug) << "The model is in an inconsistent state.";
454 qCWarning(DolphinDebug) << "m_items.count() ==" << m_items.count();
455 qCWarning(DolphinDebug) << "m_itemData.count() ==" << m_itemData.count();
456
457 // Check if there are multiple items with the same URL.
458 QMultiHash<QUrl, int> indexesForUrl;
459 for (int i = 0; i < m_itemData.count(); ++i) {
460 indexesForUrl.insert(m_itemData.at(i)->item.url(), i);
461 }
462
463 const auto uniqueKeys = indexesForUrl.uniqueKeys();
464 for (const QUrl& url : uniqueKeys) {
465 if (indexesForUrl.count(url) > 1) {
466 qCWarning(DolphinDebug) << "Multiple items found with the URL" << url;
467
468 auto it = indexesForUrl.find(url);
469 while (it != indexesForUrl.end() && it.key() == url) {
470 const ItemData* data = m_itemData.at(it.value());
471 qCWarning(DolphinDebug) << "index" << it.value() << ":" << data->item;
472 if (data->parent) {
473 qCWarning(DolphinDebug) << "parent" << data->parent->item;
474 }
475 ++it;
476 }
477 }
478 }
479 }
480 }
481
482 return index;
483 }
484
485 KFileItem KFileItemModel::rootItem() const
486 {
487 return m_dirLister->rootItem();
488 }
489
490 void KFileItemModel::clear()
491 {
492 slotClear();
493 }
494
495 void KFileItemModel::setRoles(const QSet<QByteArray>& roles)
496 {
497 if (m_roles == roles) {
498 return;
499 }
500
501 const QSet<QByteArray> changedRoles = (roles - m_roles) + (m_roles - roles);
502 m_roles = roles;
503
504 if (count() > 0) {
505 const bool supportedExpanding = m_requestRole[ExpandedParentsCountRole];
506 const bool willSupportExpanding = roles.contains("expandedParentsCount");
507 if (supportedExpanding && !willSupportExpanding) {
508 // No expanding is supported anymore. Take care to delete all items that have an expansion level
509 // that is not 0 (and hence are part of an expanded item).
510 removeExpandedItems();
511 }
512 }
513
514 m_groups.clear();
515 resetRoles();
516
517 QSetIterator<QByteArray> it(roles);
518 while (it.hasNext()) {
519 const QByteArray& role = it.next();
520 m_requestRole[typeForRole(role)] = true;
521 }
522
523 if (count() > 0) {
524 // Update m_data with the changed requested roles
525 const int maxIndex = count() - 1;
526 for (int i = 0; i <= maxIndex; ++i) {
527 m_itemData[i]->values = retrieveData(m_itemData.at(i)->item, m_itemData.at(i)->parent);
528 }
529
530 Q_EMIT itemsChanged(KItemRangeList() << KItemRange(0, count()), changedRoles);
531 }
532
533 // Clear the 'values' of all filtered items. They will be re-populated with the
534 // correct roles the next time 'values' will be accessed via data(int).
535 QHash<KFileItem, ItemData*>::iterator filteredIt = m_filteredItems.begin();
536 const QHash<KFileItem, ItemData*>::iterator filteredEnd = m_filteredItems.end();
537 while (filteredIt != filteredEnd) {
538 (*filteredIt)->values.clear();
539 ++filteredIt;
540 }
541 }
542
543 QSet<QByteArray> KFileItemModel::roles() const
544 {
545 return m_roles;
546 }
547
548 bool KFileItemModel::setExpanded(int index, bool expanded)
549 {
550 if (!isExpandable(index) || isExpanded(index) == expanded) {
551 return false;
552 }
553
554 QHash<QByteArray, QVariant> values;
555 values.insert(sharedValue("isExpanded"), expanded);
556 if (!setData(index, values)) {
557 return false;
558 }
559
560 const KFileItem item = m_itemData.at(index)->item;
561 const QUrl url = item.url();
562 const QUrl targetUrl = item.targetUrl();
563 if (expanded) {
564 m_expandedDirs.insert(targetUrl, url);
565 m_dirLister->openUrl(url, KDirLister::Keep);
566
567 const QVariantList previouslyExpandedChildren = m_itemData.at(index)->values.value("previouslyExpandedChildren").value<QVariantList>();
568 for (const QVariant& var : previouslyExpandedChildren) {
569 m_urlsToExpand.insert(var.toUrl());
570 }
571 } else {
572 // Note that there might be (indirect) children of the folder which is to be collapsed in
573 // m_pendingItemsToInsert. To prevent that they will be inserted into the model later,
574 // possibly without a parent, which might result in a crash, we insert all pending items
575 // right now. All new items which would be without a parent will then be removed.
576 dispatchPendingItemsToInsert();
577
578 // Check if the index of the collapsed folder has changed. If that is the case, then items
579 // were inserted before the collapsed folder, and its index needs to be updated.
580 if (m_itemData.at(index)->item != item) {
581 index = this->index(item);
582 }
583
584 m_expandedDirs.remove(targetUrl);
585 m_dirLister->stop(url);
586 #if KIO_VERSION >= QT_VERSION_CHECK(5, 92, 0)
587 m_dirLister->forgetDirs(url);
588 #endif
589
590 const int parentLevel = expandedParentsCount(index);
591 const int itemCount = m_itemData.count();
592 const int firstChildIndex = index + 1;
593
594 QVariantList expandedChildren;
595
596 int childIndex = firstChildIndex;
597 while (childIndex < itemCount && expandedParentsCount(childIndex) > parentLevel) {
598 ItemData* itemData = m_itemData.at(childIndex);
599 if (itemData->values.value("isExpanded").toBool()) {
600 const QUrl targetUrl = itemData->item.targetUrl();
601 const QUrl url = itemData->item.url();
602 m_expandedDirs.remove(targetUrl);
603 m_dirLister->stop(url); // TODO: try to unit-test this, see https://bugs.kde.org/show_bug.cgi?id=332102#c11
604 #if KIO_VERSION >= QT_VERSION_CHECK(5, 92, 0)
605 m_dirLister->forgetDirs(url);
606 #endif
607 expandedChildren.append(targetUrl);
608 }
609 ++childIndex;
610 }
611 const int childrenCount = childIndex - firstChildIndex;
612
613 removeFilteredChildren(KItemRangeList() << KItemRange(index, 1 + childrenCount));
614 removeItems(KItemRangeList() << KItemRange(firstChildIndex, childrenCount), DeleteItemData);
615
616 m_itemData.at(index)->values.insert("previouslyExpandedChildren", expandedChildren);
617 }
618
619 return true;
620 }
621
622 bool KFileItemModel::isExpanded(int index) const
623 {
624 if (index >= 0 && index < count()) {
625 return m_itemData.at(index)->values.value("isExpanded").toBool();
626 }
627 return false;
628 }
629
630 bool KFileItemModel::isExpandable(int index) const
631 {
632 if (index >= 0 && index < count()) {
633 // Call data (instead of accessing m_itemData directly)
634 // to ensure that the value is initialized.
635 return data(index).value("isExpandable").toBool();
636 }
637 return false;
638 }
639
640 int KFileItemModel::expandedParentsCount(int index) const
641 {
642 if (index >= 0 && index < count()) {
643 return expandedParentsCount(m_itemData.at(index));
644 }
645 return 0;
646 }
647
648 QSet<QUrl> KFileItemModel::expandedDirectories() const
649 {
650 QSet<QUrl> result;
651 const auto dirs = m_expandedDirs;
652 for (const auto &dir : dirs) {
653 result.insert(dir);
654 }
655 return result;
656 }
657
658 void KFileItemModel::restoreExpandedDirectories(const QSet<QUrl> &urls)
659 {
660 m_urlsToExpand = urls;
661 }
662
663 void KFileItemModel::expandParentDirectories(const QUrl &url)
664 {
665
666 // Assure that each sub-path of the URL that should be
667 // expanded is added to m_urlsToExpand. KDirLister
668 // does not care whether the parent-URL has already been
669 // expanded.
670 QUrl urlToExpand = m_dirLister->url();
671 const int pos = urlToExpand.path().length();
672
673 // first subdir can be empty, if m_dirLister->url().path() does not end with '/'
674 // this happens if baseUrl is not root but a home directory, see FoldersPanel,
675 // so using QString::SkipEmptyParts
676 const QStringList subDirs = url.path().mid(pos).split(QDir::separator(), Qt::SkipEmptyParts);
677 for (int i = 0; i < subDirs.count() - 1; ++i) {
678 QString path = urlToExpand.path();
679 if (!path.endsWith(QLatin1Char('/'))) {
680 path.append(QLatin1Char('/'));
681 }
682 urlToExpand.setPath(path + subDirs.at(i));
683 m_urlsToExpand.insert(urlToExpand);
684 }
685
686 // KDirLister::open() must called at least once to trigger an initial
687 // loading. The pending URLs that must be restored are handled
688 // in slotCompleted().
689 QSetIterator<QUrl> it2(m_urlsToExpand);
690 while (it2.hasNext()) {
691 const int idx = index(it2.next());
692 if (idx >= 0 && !isExpanded(idx)) {
693 setExpanded(idx, true);
694 break;
695 }
696 }
697 }
698
699 void KFileItemModel::setNameFilter(const QString& nameFilter)
700 {
701 if (m_filter.pattern() != nameFilter) {
702 dispatchPendingItemsToInsert();
703 m_filter.setPattern(nameFilter);
704 applyFilters();
705 }
706 }
707
708 QString KFileItemModel::nameFilter() const
709 {
710 return m_filter.pattern();
711 }
712
713 void KFileItemModel::setMimeTypeFilters(const QStringList& filters)
714 {
715 if (m_filter.mimeTypes() != filters) {
716 dispatchPendingItemsToInsert();
717 m_filter.setMimeTypes(filters);
718 applyFilters();
719 }
720 }
721
722 QStringList KFileItemModel::mimeTypeFilters() const
723 {
724 return m_filter.mimeTypes();
725 }
726
727 void KFileItemModel::applyFilters()
728 {
729 // ===STEP 1===
730 // Check which previously shown items from m_itemData must now get
731 // hidden and hence moved from m_itemData into m_filteredItems.
732
733 QList<int> newFilteredIndexes; // This structure is good for prepending. We will want an ascending sorted Container at the end, this will do fine.
734
735 // This pointer will refer to the next confirmed shown item from the point of
736 // view of the current "itemData" in the upcoming "for" loop.
737 ItemData *itemShownBelow = nullptr;
738
739 // We will iterate backwards because it's convenient to know beforehand if the item just below is its child or not.
740 for (int index = m_itemData.count() - 1; index >= 0; --index) {
741 ItemData *itemData = m_itemData.at(index);
742
743 if (m_filter.matches(itemData->item)
744 || (itemShownBelow && itemShownBelow->parent == itemData)) {
745 // We could've entered here for two reasons:
746 // 1. This item passes the filter itself
747 // 2. This is an expanded folder that doesn't pass the filter but sees a filter-passing child just below
748
749 // So this item must remain shown.
750 // Lets register this item as the next shown item from the point of view of the next iteration of this for loop
751 itemShownBelow = itemData;
752 } else {
753 // We hide this item for now, however, for expanded folders this is not final:
754 // if after the next "for" loop we discover that its children must now be shown with the newly applied fliter, we shall re-insert it
755 newFilteredIndexes.prepend(index);
756 m_filteredItems.insert(itemData->item, itemData);
757 // indexShownBelow doesn't get updated since this item will be hidden
758 }
759 }
760
761 // This will remove the newly filtered items from m_itemData
762 removeItems(KItemRangeList::fromSortedContainer(newFilteredIndexes), KeepItemData);
763
764 // ===STEP 2===
765 // Check which hidden items from m_filteredItems should
766 // become visible again and hence moved from m_filteredItems back into m_itemData.
767
768 QList<ItemData *> newVisibleItems;
769
770 QHash<KFileItem, ItemData *> ancestorsOfNewVisibleItems; // We will make sure these also become visible in step 3.
771
772 QHash<KFileItem, ItemData *>::iterator it = m_filteredItems.begin();
773 while (it != m_filteredItems.end()) {
774 if (m_filter.matches(it.key())) {
775 newVisibleItems.append(it.value());
776
777 // If this is a child of an expanded folder, we must make sure that its whole parental chain will also be shown.
778 // We will go up through its parental chain until we either:
779 // 1 - reach the "root item" of the current view, i.e the currently opened folder on Dolphin. Their children have their ItemData::parent set to nullptr.
780 // or
781 // 2 - we reach an unfiltered parent or a previously discovered ancestor.
782 for (ItemData *parent = it.value()->parent; parent && !ancestorsOfNewVisibleItems.contains(parent->item) && m_filteredItems.contains(parent->item);
783 parent = parent->parent) {
784 // We wish we could remove this parent from m_filteredItems right now, but we are iterating over it
785 // and it would mess up the iteration. We will mark it to be removed in step 3.
786 ancestorsOfNewVisibleItems.insert(parent->item, parent);
787 }
788
789 it = m_filteredItems.erase(it);
790 } else {
791 // Item remains filtered for now
792 // However, for expanded folders this is not final, we may discover later that it has unfiltered descendants.
793 ++it;
794 }
795 }
796
797 // ===STEP 3===
798 // Handles the ancestorsOfNewVisibleItems.
799 // Now that we are done iterating through m_filteredItems we can safely move the ancestorsOfNewVisibleItems from m_filteredItems to newVisibleItems.
800 for (it = ancestorsOfNewVisibleItems.begin(); it != ancestorsOfNewVisibleItems.end(); it++) {
801 if (m_filteredItems.remove(it.key())) {
802 // m_filteredItems still contained this ancestor until now so we can be sure that we aren't adding a duplicate ancestor to newVisibleItems.
803 newVisibleItems.append(it.value());
804 }
805 }
806
807 // This will insert the newly discovered unfiltered items into m_itemData
808 insertItems(newVisibleItems);
809 }
810
811 void KFileItemModel::removeFilteredChildren(const KItemRangeList& itemRanges)
812 {
813 if (m_filteredItems.isEmpty() || !m_requestRole[ExpandedParentsCountRole]) {
814 // There are either no filtered items, or it is not possible to expand
815 // folders -> there cannot be any filtered children.
816 return;
817 }
818
819 QSet<ItemData*> parents;
820 for (const KItemRange& range : itemRanges) {
821 for (int index = range.index; index < range.index + range.count; ++index) {
822 parents.insert(m_itemData.at(index));
823 }
824 }
825
826 QHash<KFileItem, ItemData*>::iterator it = m_filteredItems.begin();
827 while (it != m_filteredItems.end()) {
828 if (parents.contains(it.value()->parent)) {
829 delete it.value();
830 it = m_filteredItems.erase(it);
831 } else {
832 ++it;
833 }
834 }
835 }
836
837 QList<KFileItemModel::RoleInfo> KFileItemModel::rolesInformation()
838 {
839 static QList<RoleInfo> rolesInfo;
840 if (rolesInfo.isEmpty()) {
841 int count = 0;
842 const RoleInfoMap* map = rolesInfoMap(count);
843 for (int i = 0; i < count; ++i) {
844 if (map[i].roleType != NoRole) {
845 RoleInfo info;
846 info.role = map[i].role;
847 info.translation = map[i].roleTranslation.toString();
848 if (!map[i].groupTranslation.isEmpty()) {
849 info.group = map[i].groupTranslation.toString();
850 } else {
851 // For top level roles, groupTranslation is 0. We must make sure that
852 // info.group is an empty string then because the code that generates
853 // menus tries to put the actions into sub menus otherwise.
854 info.group = QString();
855 }
856 info.requiresBaloo = map[i].requiresBaloo;
857 info.requiresIndexer = map[i].requiresIndexer;
858 rolesInfo.append(info);
859 }
860 }
861 }
862
863 return rolesInfo;
864 }
865
866 void KFileItemModel::onGroupedSortingChanged(bool current)
867 {
868 Q_UNUSED(current)
869 m_groups.clear();
870 }
871
872 void KFileItemModel::onSortRoleChanged(const QByteArray& current, const QByteArray& previous, bool resortItems)
873 {
874 Q_UNUSED(previous)
875 m_sortRole = typeForRole(current);
876
877 if (!m_requestRole[m_sortRole]) {
878 QSet<QByteArray> newRoles = m_roles;
879 newRoles << current;
880 setRoles(newRoles);
881 }
882
883 if (resortItems) {
884 resortAllItems();
885 }
886 }
887
888 void KFileItemModel::onSortOrderChanged(Qt::SortOrder current, Qt::SortOrder previous)
889 {
890 Q_UNUSED(current)
891 Q_UNUSED(previous)
892 resortAllItems();
893 }
894
895 void KFileItemModel::loadSortingSettings()
896 {
897 using Choice = GeneralSettings::EnumSortingChoice;
898 switch (GeneralSettings::sortingChoice()) {
899 case Choice::NaturalSorting:
900 m_naturalSorting = true;
901 m_collator.setCaseSensitivity(Qt::CaseInsensitive);
902 break;
903 case Choice::CaseSensitiveSorting:
904 m_naturalSorting = false;
905 m_collator.setCaseSensitivity(Qt::CaseSensitive);
906 break;
907 case Choice::CaseInsensitiveSorting:
908 m_naturalSorting = false;
909 m_collator.setCaseSensitivity(Qt::CaseInsensitive);
910 break;
911 default:
912 Q_UNREACHABLE();
913 }
914 // Workaround for bug https://bugreports.qt.io/browse/QTBUG-69361
915 // Force the clean state of QCollator in single thread to avoid thread safety problems in sort
916 m_collator.compare(QString(), QString());
917 }
918
919 void KFileItemModel::resortAllItems()
920 {
921 m_resortAllItemsTimer->stop();
922
923 const int itemCount = count();
924 if (itemCount <= 0) {
925 return;
926 }
927
928 #ifdef KFILEITEMMODEL_DEBUG
929 QElapsedTimer timer;
930 timer.start();
931 qCDebug(DolphinDebug) << "===========================================================";
932 qCDebug(DolphinDebug) << "Resorting" << itemCount << "items";
933 #endif
934
935 // Remember the order of the current URLs so
936 // that it can be determined which indexes have
937 // been moved because of the resorting.
938 QList<QUrl> oldUrls;
939 oldUrls.reserve(itemCount);
940 for (const ItemData* itemData : qAsConst(m_itemData)) {
941 oldUrls.append(itemData->item.url());
942 }
943
944 m_items.clear();
945 m_items.reserve(itemCount);
946
947 // Resort the items
948 sort(m_itemData.begin(), m_itemData.end());
949 for (int i = 0; i < itemCount; ++i) {
950 m_items.insert(m_itemData.at(i)->item.url(), i);
951 }
952
953 // Determine the first index that has been moved.
954 int firstMovedIndex = 0;
955 while (firstMovedIndex < itemCount
956 && firstMovedIndex == m_items.value(oldUrls.at(firstMovedIndex))) {
957 ++firstMovedIndex;
958 }
959
960 const bool itemsHaveMoved = firstMovedIndex < itemCount;
961 if (itemsHaveMoved) {
962 m_groups.clear();
963
964 int lastMovedIndex = itemCount - 1;
965 while (lastMovedIndex > firstMovedIndex
966 && lastMovedIndex == m_items.value(oldUrls.at(lastMovedIndex))) {
967 --lastMovedIndex;
968 }
969
970 Q_ASSERT(firstMovedIndex <= lastMovedIndex);
971
972 // Create a list movedToIndexes, which has the property that
973 // movedToIndexes[i] is the new index of the item with the old index
974 // firstMovedIndex + i.
975 const int movedItemsCount = lastMovedIndex - firstMovedIndex + 1;
976 QList<int> movedToIndexes;
977 movedToIndexes.reserve(movedItemsCount);
978 for (int i = firstMovedIndex; i <= lastMovedIndex; ++i) {
979 const int newIndex = m_items.value(oldUrls.at(i));
980 movedToIndexes.append(newIndex);
981 }
982
983 Q_EMIT itemsMoved(KItemRange(firstMovedIndex, movedItemsCount), movedToIndexes);
984 } else if (groupedSorting()) {
985 // The groups might have changed even if the order of the items has not.
986 const QList<QPair<int, QVariant> > oldGroups = m_groups;
987 m_groups.clear();
988 if (groups() != oldGroups) {
989 Q_EMIT groupsChanged();
990 }
991 }
992
993 #ifdef KFILEITEMMODEL_DEBUG
994 qCDebug(DolphinDebug) << "[TIME] Resorting of" << itemCount << "items:" << timer.elapsed();
995 #endif
996 }
997
998 void KFileItemModel::slotCompleted()
999 {
1000 m_maximumUpdateIntervalTimer->stop();
1001 dispatchPendingItemsToInsert();
1002
1003 if (!m_urlsToExpand.isEmpty()) {
1004 // Try to find a URL that can be expanded.
1005 // Note that the parent folder must be expanded before any of its subfolders become visible.
1006 // Therefore, some URLs in m_restoredExpandedUrls might not be visible yet
1007 // -> we expand the first visible URL we find in m_restoredExpandedUrls.
1008 // Iterate over a const copy because items are deleted and inserted within the loop
1009 const auto urlsToExpand = m_urlsToExpand;
1010 for(const QUrl &url : urlsToExpand) {
1011 const int indexForUrl = index(url);
1012 if (indexForUrl >= 0) {
1013 m_urlsToExpand.remove(url);
1014 if (setExpanded(indexForUrl, true)) {
1015 // The dir lister has been triggered. This slot will be called
1016 // again after the directory has been expanded.
1017 return;
1018 }
1019 }
1020 }
1021
1022 // None of the URLs in m_restoredExpandedUrls could be found in the model. This can happen
1023 // if these URLs have been deleted in the meantime.
1024 m_urlsToExpand.clear();
1025 }
1026
1027 Q_EMIT directoryLoadingCompleted();
1028 }
1029
1030 void KFileItemModel::slotCanceled()
1031 {
1032 m_maximumUpdateIntervalTimer->stop();
1033 dispatchPendingItemsToInsert();
1034
1035 Q_EMIT directoryLoadingCanceled();
1036 }
1037
1038 void KFileItemModel::slotItemsAdded(const QUrl &directoryUrl, const KFileItemList& items)
1039 {
1040 Q_ASSERT(!items.isEmpty());
1041
1042 const QUrl parentUrl = m_expandedDirs.value(directoryUrl, directoryUrl.adjusted(QUrl::StripTrailingSlash));
1043
1044 if (m_requestRole[ExpandedParentsCountRole]) {
1045 // If the expanding of items is enabled, the call
1046 // dirLister->openUrl(url, KDirLister::Keep) in KFileItemModel::setExpanded()
1047 // might result in emitting the same items twice due to the Keep-parameter.
1048 // This case happens if an item gets expanded, collapsed and expanded again
1049 // before the items could be loaded for the first expansion.
1050 if (index(items.first().url()) >= 0) {
1051 // The items are already part of the model.
1052 return;
1053 }
1054
1055 if (directoryUrl != directory()) {
1056 // To be able to compare whether the new items may be inserted as children
1057 // of a parent item the pending items must be added to the model first.
1058 dispatchPendingItemsToInsert();
1059 }
1060
1061 // KDirLister keeps the children of items that got expanded once even if
1062 // they got collapsed again with KFileItemModel::setExpanded(false). So it must be
1063 // checked whether the parent for new items is still expanded.
1064 const int parentIndex = index(parentUrl);
1065 if (parentIndex >= 0 && !m_itemData[parentIndex]->values.value("isExpanded").toBool()) {
1066 // The parent is not expanded.
1067 return;
1068 }
1069 }
1070
1071 const QList<ItemData*> itemDataList = createItemDataList(parentUrl, items);
1072
1073 if (!m_filter.hasSetFilters()) {
1074 m_pendingItemsToInsert.append(itemDataList);
1075 } else {
1076 QSet<ItemData *> parentsToEnsureVisible;
1077
1078 // The name or type filter is active. Hide filtered items
1079 // before inserting them into the model and remember
1080 // the filtered items in m_filteredItems.
1081 for (ItemData* itemData : itemDataList) {
1082 if (m_filter.matches(itemData->item)) {
1083 m_pendingItemsToInsert.append(itemData);
1084 if (itemData->parent) {
1085 parentsToEnsureVisible.insert(itemData->parent);
1086 }
1087 } else {
1088 m_filteredItems.insert(itemData->item, itemData);
1089 }
1090 }
1091
1092 // Entire parental chains must be shown
1093 for (ItemData *parent : parentsToEnsureVisible) {
1094 for (; parent && m_filteredItems.remove(parent->item); parent = parent->parent) {
1095 m_pendingItemsToInsert.append(parent);
1096 }
1097 }
1098 }
1099
1100 if (!m_maximumUpdateIntervalTimer->isActive()) {
1101 // Assure that items get dispatched if no completed() or canceled() signal is
1102 // emitted during the maximum update interval.
1103 m_maximumUpdateIntervalTimer->start();
1104 }
1105
1106 Q_EMIT fileItemsChanged({KFileItem(directoryUrl)});
1107 }
1108
1109 int KFileItemModel::filterChildlessParents(KItemRangeList &removedItemRanges, const QSet<ItemData *> &parentsToEnsureVisible)
1110 {
1111 int filteredParentsCount = 0;
1112 // The childless parents not yet removed will always be right above the start of a removed range.
1113 // We iterate backwards to ensure the deepest folders are processed before their parents
1114 for (int i = removedItemRanges.size() - 1; i >= 0; i--) {
1115 KItemRange itemRange = removedItemRanges.at(i);
1116 const ItemData *const firstInRange = m_itemData.at(itemRange.index);
1117 ItemData *itemAbove = itemRange.index - 1 >= 0 ? m_itemData.at(itemRange.index - 1) : nullptr;
1118 const ItemData *const itemBelow = itemRange.index + itemRange.count < m_itemData.count() ? m_itemData.at(itemRange.index + itemRange.count) : nullptr;
1119
1120 if (itemAbove && firstInRange->parent == itemAbove && !m_filter.matches(itemAbove->item) && (!itemBelow || itemBelow->parent != itemAbove)
1121 && !parentsToEnsureVisible.contains(itemAbove)) {
1122 // The item above exists, is the parent, doesn't pass the filter, does not belong to parentsToEnsureVisible
1123 // and this deleted range covers all of its descendents, so none will be left.
1124 m_filteredItems.insert(itemAbove->item, itemAbove);
1125 // This range's starting index will be extended to include the parent above:
1126 --itemRange.index;
1127 ++itemRange.count;
1128 ++filteredParentsCount;
1129 KItemRange previousRange = i > 0 ? removedItemRanges.at(i - 1) : KItemRange();
1130 // We must check if this caused the range to touch the previous range, if that's the case they shall be merged
1131 if (i > 0 && previousRange.index + previousRange.count == itemRange.index) {
1132 previousRange.count += itemRange.count;
1133 removedItemRanges.replace(i - 1, previousRange);
1134 removedItemRanges.removeAt(i);
1135 } else {
1136 removedItemRanges.replace(i, itemRange);
1137 // We must revisit this range in the next iteration since its starting index changed
1138 ++i;
1139 }
1140 }
1141 }
1142 return filteredParentsCount;
1143 }
1144
1145 void KFileItemModel::slotItemsDeleted(const KFileItemList& items)
1146 {
1147 dispatchPendingItemsToInsert();
1148
1149 QVector<int> indexesToRemove;
1150 indexesToRemove.reserve(items.count());
1151 KFileItemList dirsChanged;
1152
1153 for (const KFileItem& item : items) {
1154 const int indexForItem = index(item);
1155 if (indexForItem >= 0) {
1156 indexesToRemove.append(indexForItem);
1157 } else {
1158 // Probably the item has been filtered.
1159 QHash<KFileItem, ItemData*>::iterator it = m_filteredItems.find(item);
1160 if (it != m_filteredItems.end()) {
1161 delete it.value();
1162 m_filteredItems.erase(it);
1163 }
1164 }
1165
1166 QUrl parentUrl = item.url().adjusted(QUrl::RemoveFilename | QUrl::StripTrailingSlash);
1167 if (dirsChanged.findByUrl(parentUrl).isNull()) {
1168 dirsChanged << KFileItem(parentUrl);
1169 }
1170 }
1171
1172 std::sort(indexesToRemove.begin(), indexesToRemove.end());
1173
1174 if (m_requestRole[ExpandedParentsCountRole] && !m_expandedDirs.isEmpty()) {
1175 // Assure that removing a parent item also results in removing all children
1176 QVector<int> indexesToRemoveWithChildren;
1177 indexesToRemoveWithChildren.reserve(m_itemData.count());
1178
1179 const int itemCount = m_itemData.count();
1180 for (int index : qAsConst(indexesToRemove)) {
1181 indexesToRemoveWithChildren.append(index);
1182
1183 const int parentLevel = expandedParentsCount(index);
1184 int childIndex = index + 1;
1185 while (childIndex < itemCount && expandedParentsCount(childIndex) > parentLevel) {
1186 indexesToRemoveWithChildren.append(childIndex);
1187 ++childIndex;
1188 }
1189 }
1190
1191 indexesToRemove = indexesToRemoveWithChildren;
1192 }
1193
1194 KItemRangeList itemRanges = KItemRangeList::fromSortedContainer(indexesToRemove);
1195 removeFilteredChildren(itemRanges);
1196
1197 // This call will update itemRanges to include the childless parents that have been filtered.
1198 const int filteredParentsCount = filterChildlessParents(itemRanges);
1199
1200 // If any childless parents were filtered, then itemRanges got updated and now contains items that were really deleted
1201 // mixed with expanded folders that are just being filtered out.
1202 // If that's the case, we pass 'DeleteItemDataIfUnfiltered' as a hint
1203 // so removeItems() will check m_filteredItems to differentiate which is which.
1204 removeItems(itemRanges, filteredParentsCount > 0 ? DeleteItemDataIfUnfiltered : DeleteItemData);
1205
1206 Q_EMIT fileItemsChanged(dirsChanged);
1207 }
1208
1209 void KFileItemModel::slotRefreshItems(const QList<QPair<KFileItem, KFileItem> >& items)
1210 {
1211 Q_ASSERT(!items.isEmpty());
1212 #ifdef KFILEITEMMODEL_DEBUG
1213 qCDebug(DolphinDebug) << "Refreshing" << items.count() << "items";
1214 #endif
1215
1216 // Get the indexes of all items that have been refreshed
1217 QList<int> indexes;
1218 indexes.reserve(items.count());
1219
1220 QSet<QByteArray> changedRoles;
1221 KFileItemList changedFiles;
1222
1223 // Contains the indexes of the currently visible items
1224 // that should get hidden and hence moved to m_filteredItems.
1225 QVector<int> newFilteredIndexes;
1226
1227 // Contains currently hidden items that should
1228 // get visible and hence removed from m_filteredItems
1229 QList<ItemData*> newVisibleItems;
1230
1231 QListIterator<QPair<KFileItem, KFileItem> > it(items);
1232
1233 while (it.hasNext()) {
1234 const QPair<KFileItem, KFileItem>& itemPair = it.next();
1235 const KFileItem& oldItem = itemPair.first;
1236 const KFileItem& newItem = itemPair.second;
1237 const int indexForItem = index(oldItem);
1238 const bool newItemMatchesFilter = m_filter.matches(newItem);
1239 if (indexForItem >= 0) {
1240 m_itemData[indexForItem]->item = newItem;
1241
1242 // Keep old values as long as possible if they could not retrieved synchronously yet.
1243 // The update of the values will be done asynchronously by KFileItemModelRolesUpdater.
1244 ItemData * const itemData = m_itemData.at(indexForItem);
1245 QHashIterator<QByteArray, QVariant> it(retrieveData(newItem, itemData->parent));
1246 while (it.hasNext()) {
1247 it.next();
1248 const QByteArray& role = it.key();
1249 if (itemData->values.value(role) != it.value()) {
1250 itemData->values.insert(role, it.value());
1251 changedRoles.insert(role);
1252 }
1253 }
1254
1255 m_items.remove(oldItem.url());
1256 // We must maintain m_items consistent with m_itemData for now, this very loop is using it.
1257 // We leave it to be cleared by removeItems() later, when m_itemData actually gets updated.
1258 m_items.insert(newItem.url(), indexForItem);
1259 if (newItemMatchesFilter
1260 || (itemData->values.value("isExpanded").toBool()
1261 && (indexForItem + 1 < m_itemData.count() && m_itemData.at(indexForItem + 1)->parent == itemData))) {
1262 // We are lenient with expanded folders that originally had visible children.
1263 // If they become childless now they will be caught by filterChildlessParents()
1264 changedFiles.append(newItem);
1265 indexes.append(indexForItem);
1266 } else {
1267 newFilteredIndexes.append(indexForItem);
1268 m_filteredItems.insert(newItem, itemData);
1269 }
1270 } else {
1271 // Check if 'oldItem' is one of the filtered items.
1272 QHash<KFileItem, ItemData*>::iterator it = m_filteredItems.find(oldItem);
1273 if (it != m_filteredItems.end()) {
1274 ItemData *const itemData = it.value();
1275 itemData->item = newItem;
1276
1277 // The data stored in 'values' might have changed. Therefore, we clear
1278 // 'values' and re-populate it the next time it is requested via data(int).
1279 // Before clearing, we must remember if it was expanded and the expanded parents count,
1280 // otherwise these states would be lost. The data() method will deal with this special case.
1281 const bool isExpanded = itemData->values.value("isExpanded").toBool();
1282 bool hasExpandedParentsCount = false;
1283 const int expandedParentsCount = itemData->values.value("expandedParentsCount").toInt(&hasExpandedParentsCount);
1284 itemData->values.clear();
1285 if (isExpanded) {
1286 itemData->values.insert("isExpanded", true);
1287 if (hasExpandedParentsCount) {
1288 itemData->values.insert("expandedParentsCount", expandedParentsCount);
1289 }
1290 }
1291
1292 m_filteredItems.erase(it);
1293 if (newItemMatchesFilter) {
1294 newVisibleItems.append(itemData);
1295 } else {
1296 m_filteredItems.insert(newItem, itemData);
1297 }
1298 }
1299 }
1300 }
1301
1302 std::sort(newFilteredIndexes.begin(), newFilteredIndexes.end());
1303
1304 // We must keep track of parents of new visible items since they must be shown no matter what
1305 // They will be considered "immune" to filterChildlessParents()
1306 QSet<ItemData *> parentsToEnsureVisible;
1307
1308 for (ItemData *item : newVisibleItems) {
1309 for (ItemData *parent = item->parent; parent && !parentsToEnsureVisible.contains(parent); parent = parent->parent) {
1310 parentsToEnsureVisible.insert(parent);
1311 }
1312 }
1313 for (ItemData *parent : parentsToEnsureVisible) {
1314 // We make sure they are all unfiltered.
1315 if (m_filteredItems.remove(parent->item)) {
1316 // If it is being unfiltered now, we mark it to be inserted by appending it to newVisibleItems
1317 newVisibleItems.append(parent);
1318 // It could be in newFilteredIndexes, we must remove it if it's there:
1319 const int parentIndex = index(parent->item);
1320 if (parentIndex >= 0) {
1321 QVector<int>::iterator it = std::lower_bound(newFilteredIndexes.begin(), newFilteredIndexes.end(), parentIndex);
1322 if (it != newFilteredIndexes.end() && *it == parentIndex) {
1323 newFilteredIndexes.erase(it);
1324 }
1325 }
1326 }
1327 }
1328
1329 KItemRangeList removedRanges = KItemRangeList::fromSortedContainer(newFilteredIndexes);
1330
1331 // This call will update itemRanges to include the childless parents that have been filtered.
1332 filterChildlessParents(removedRanges, parentsToEnsureVisible);
1333
1334 removeItems(removedRanges, KeepItemData);
1335
1336 // Show previously hidden items that should get visible
1337 insertItems(newVisibleItems);
1338
1339 // Final step: we will emit 'itemsChanged' and 'fileItemsChanged' signals and trigger the asynchronous re-sorting logic.
1340
1341 // If the changed items have been created recently, they might not be in m_items yet.
1342 // In that case, the list 'indexes' might be empty.
1343 if (indexes.isEmpty()) {
1344 return;
1345 }
1346
1347 if (newVisibleItems.count() > 0 || removedRanges.count() > 0) {
1348 // The original indexes have changed and are now worthless since items were removed and/or inserted.
1349 indexes.clear();
1350 // m_items is not yet rebuilt at this point, so we use our own means to resolve the new indexes.
1351 const QSet<const KFileItem> changedFilesSet(changedFiles.cbegin(), changedFiles.cend());
1352 for (int i = 0; i < m_itemData.count(); i++) {
1353 if (changedFilesSet.contains(m_itemData.at(i)->item)) {
1354 indexes.append(i);
1355 }
1356 }
1357 } else {
1358 std::sort(indexes.begin(), indexes.end());
1359 }
1360
1361 // Extract the item-ranges out of the changed indexes
1362 const KItemRangeList itemRangeList = KItemRangeList::fromSortedContainer(indexes);
1363 emitItemsChangedAndTriggerResorting(itemRangeList, changedRoles);
1364
1365 Q_EMIT fileItemsChanged(changedFiles);
1366 }
1367
1368 void KFileItemModel::slotClear()
1369 {
1370 #ifdef KFILEITEMMODEL_DEBUG
1371 qCDebug(DolphinDebug) << "Clearing all items";
1372 #endif
1373
1374 qDeleteAll(m_filteredItems);
1375 m_filteredItems.clear();
1376 m_groups.clear();
1377
1378 m_maximumUpdateIntervalTimer->stop();
1379 m_resortAllItemsTimer->stop();
1380
1381 qDeleteAll(m_pendingItemsToInsert);
1382 m_pendingItemsToInsert.clear();
1383
1384 const int removedCount = m_itemData.count();
1385 if (removedCount > 0) {
1386 qDeleteAll(m_itemData);
1387 m_itemData.clear();
1388 m_items.clear();
1389 Q_EMIT itemsRemoved(KItemRangeList() << KItemRange(0, removedCount));
1390 }
1391
1392 m_expandedDirs.clear();
1393 }
1394
1395 void KFileItemModel::slotSortingChoiceChanged()
1396 {
1397 loadSortingSettings();
1398 resortAllItems();
1399 }
1400
1401 void KFileItemModel::dispatchPendingItemsToInsert()
1402 {
1403 if (!m_pendingItemsToInsert.isEmpty()) {
1404 insertItems(m_pendingItemsToInsert);
1405 m_pendingItemsToInsert.clear();
1406 }
1407 }
1408
1409 void KFileItemModel::insertItems(QList<ItemData*>& newItems)
1410 {
1411 if (newItems.isEmpty()) {
1412 return;
1413 }
1414
1415 #ifdef KFILEITEMMODEL_DEBUG
1416 QElapsedTimer timer;
1417 timer.start();
1418 qCDebug(DolphinDebug) << "===========================================================";
1419 qCDebug(DolphinDebug) << "Inserting" << newItems.count() << "items";
1420 #endif
1421
1422 m_groups.clear();
1423 prepareItemsForSorting(newItems);
1424
1425 // Natural sorting of items can be very slow. However, it becomes much faster
1426 // if the input sequence is already mostly sorted. Therefore, we first sort
1427 // 'newItems' according to the QStrings using QString::operator<(), which is quite fast.
1428 if (m_naturalSorting) {
1429 if (m_sortRole == NameRole) {
1430 parallelMergeSort(newItems.begin(), newItems.end(), nameLessThan, QThread::idealThreadCount());
1431 } else if (isRoleValueNatural(m_sortRole)) {
1432 auto lambdaLessThan = [&] (const KFileItemModel::ItemData* a, const KFileItemModel::ItemData* b)
1433 {
1434 const QByteArray role = roleForType(m_sortRole);
1435 return a->values.value(role).toString() < b->values.value(role).toString();
1436 };
1437 parallelMergeSort(newItems.begin(), newItems.end(), lambdaLessThan, QThread::idealThreadCount());
1438 }
1439 }
1440
1441 sort(newItems.begin(), newItems.end());
1442
1443 #ifdef KFILEITEMMODEL_DEBUG
1444 qCDebug(DolphinDebug) << "[TIME] Sorting:" << timer.elapsed();
1445 #endif
1446
1447 KItemRangeList itemRanges;
1448 const int existingItemCount = m_itemData.count();
1449 const int newItemCount = newItems.count();
1450 const int totalItemCount = existingItemCount + newItemCount;
1451
1452 if (existingItemCount == 0) {
1453 // Optimization for the common special case that there are no
1454 // items in the model yet. Happens, e.g., when entering a folder.
1455 m_itemData = newItems;
1456 itemRanges << KItemRange(0, newItemCount);
1457 } else {
1458 m_itemData.reserve(totalItemCount);
1459 for (int i = existingItemCount; i < totalItemCount; ++i) {
1460 m_itemData.append(nullptr);
1461 }
1462
1463 // We build the new list m_itemData in reverse order to minimize
1464 // the number of moves and guarantee O(N) complexity.
1465 int targetIndex = totalItemCount - 1;
1466 int sourceIndexExistingItems = existingItemCount - 1;
1467 int sourceIndexNewItems = newItemCount - 1;
1468
1469 int rangeCount = 0;
1470
1471 while (sourceIndexNewItems >= 0) {
1472 ItemData* newItem = newItems.at(sourceIndexNewItems);
1473 if (sourceIndexExistingItems >= 0 && lessThan(newItem, m_itemData.at(sourceIndexExistingItems), m_collator)) {
1474 // Move an existing item to its new position. If any new items
1475 // are behind it, push the item range to itemRanges.
1476 if (rangeCount > 0) {
1477 itemRanges << KItemRange(sourceIndexExistingItems + 1, rangeCount);
1478 rangeCount = 0;
1479 }
1480
1481 m_itemData[targetIndex] = m_itemData.at(sourceIndexExistingItems);
1482 --sourceIndexExistingItems;
1483 } else {
1484 // Insert a new item into the list.
1485 ++rangeCount;
1486 m_itemData[targetIndex] = newItem;
1487 --sourceIndexNewItems;
1488 }
1489 --targetIndex;
1490 }
1491
1492 // Push the final item range to itemRanges.
1493 if (rangeCount > 0) {
1494 itemRanges << KItemRange(sourceIndexExistingItems + 1, rangeCount);
1495 }
1496
1497 // Note that itemRanges is still sorted in reverse order.
1498 std::reverse(itemRanges.begin(), itemRanges.end());
1499 }
1500
1501 // The indexes in m_items are not correct anymore. Therefore, we clear m_items.
1502 // It will be re-populated with the updated indices if index(const QUrl&) is called.
1503 m_items.clear();
1504
1505 Q_EMIT itemsInserted(itemRanges);
1506
1507 #ifdef KFILEITEMMODEL_DEBUG
1508 qCDebug(DolphinDebug) << "[TIME] Inserting of" << newItems.count() << "items:" << timer.elapsed();
1509 #endif
1510 }
1511
1512 void KFileItemModel::removeItems(const KItemRangeList& itemRanges, RemoveItemsBehavior behavior)
1513 {
1514 if (itemRanges.isEmpty()) {
1515 return;
1516 }
1517
1518 m_groups.clear();
1519
1520 // Step 1: Remove the items from m_itemData, and free the ItemData.
1521 int removedItemsCount = 0;
1522 for (const KItemRange& range : itemRanges) {
1523 removedItemsCount += range.count;
1524
1525 for (int index = range.index; index < range.index + range.count; ++index) {
1526 if (behavior == DeleteItemData || (behavior == DeleteItemDataIfUnfiltered && !m_filteredItems.contains(m_itemData.at(index)->item))) {
1527 delete m_itemData.at(index);
1528 }
1529
1530 m_itemData[index] = nullptr;
1531 }
1532 }
1533
1534 // Step 2: Remove the ItemData pointers from the list m_itemData.
1535 int target = itemRanges.at(0).index;
1536 int source = itemRanges.at(0).index + itemRanges.at(0).count;
1537 int nextRange = 1;
1538
1539 const int oldItemDataCount = m_itemData.count();
1540 while (source < oldItemDataCount) {
1541 m_itemData[target] = m_itemData[source];
1542 ++target;
1543 ++source;
1544
1545 if (nextRange < itemRanges.count() && source == itemRanges.at(nextRange).index) {
1546 // Skip the items in the next removed range.
1547 source += itemRanges.at(nextRange).count;
1548 ++nextRange;
1549 }
1550 }
1551
1552 m_itemData.erase(m_itemData.end() - removedItemsCount, m_itemData.end());
1553
1554 // The indexes in m_items are not correct anymore. Therefore, we clear m_items.
1555 // It will be re-populated with the updated indices if index(const QUrl&) is called.
1556 m_items.clear();
1557
1558 Q_EMIT itemsRemoved(itemRanges);
1559 }
1560
1561 QList<KFileItemModel::ItemData*> KFileItemModel::createItemDataList(const QUrl& parentUrl, const KFileItemList& items) const
1562 {
1563 if (m_sortRole == TypeRole) {
1564 // Try to resolve the MIME-types synchronously to prevent a reordering of
1565 // the items when sorting by type (per default MIME-types are resolved
1566 // asynchronously by KFileItemModelRolesUpdater).
1567 determineMimeTypes(items, 200);
1568 }
1569
1570 // We search for the parent in m_itemData and then in m_filteredItems if necessary
1571 const int parentIndex = index(parentUrl);
1572 ItemData *parentItem = parentIndex < 0 ? m_filteredItems.value(KFileItem(parentUrl), nullptr) : m_itemData.at(parentIndex);
1573
1574 QList<ItemData*> itemDataList;
1575 itemDataList.reserve(items.count());
1576
1577 for (const KFileItem& item : items) {
1578 ItemData* itemData = new ItemData();
1579 itemData->item = item;
1580 itemData->parent = parentItem;
1581 itemDataList.append(itemData);
1582 }
1583
1584 return itemDataList;
1585 }
1586
1587 void KFileItemModel::prepareItemsForSorting(QList<ItemData*>& itemDataList)
1588 {
1589 switch (m_sortRole) {
1590 case ExtensionRole:
1591 case PermissionsRole:
1592 case OwnerRole:
1593 case GroupRole:
1594 case DestinationRole:
1595 case PathRole:
1596 case DeletionTimeRole:
1597 // These roles can be determined with retrieveData, and they have to be stored
1598 // in the QHash "values" for the sorting.
1599 for (ItemData* itemData : qAsConst(itemDataList)) {
1600 if (itemData->values.isEmpty()) {
1601 itemData->values = retrieveData(itemData->item, itemData->parent);
1602 }
1603 }
1604 break;
1605
1606 case TypeRole:
1607 // At least store the data including the file type for items with known MIME type.
1608 for (ItemData* itemData : qAsConst(itemDataList)) {
1609 if (itemData->values.isEmpty()) {
1610 const KFileItem item = itemData->item;
1611 if (item.isDir() || item.isMimeTypeKnown()) {
1612 itemData->values = retrieveData(itemData->item, itemData->parent);
1613 }
1614 }
1615 }
1616 break;
1617
1618 default:
1619 // The other roles are either resolved by KFileItemModelRolesUpdater
1620 // (this includes the SizeRole for directories), or they do not need
1621 // to be stored in the QHash "values" for sorting because the data can
1622 // be retrieved directly from the KFileItem (NameRole, SizeRole for files,
1623 // DateRole).
1624 break;
1625 }
1626 }
1627
1628 int KFileItemModel::expandedParentsCount(const ItemData* data)
1629 {
1630 // The hash 'values' is only guaranteed to contain the key "expandedParentsCount"
1631 // if the corresponding item is expanded, and it is not a top-level item.
1632 const ItemData* parent = data->parent;
1633 if (parent) {
1634 if (parent->parent) {
1635 Q_ASSERT(parent->values.contains("expandedParentsCount"));
1636 return parent->values.value("expandedParentsCount").toInt() + 1;
1637 } else {
1638 return 1;
1639 }
1640 } else {
1641 return 0;
1642 }
1643 }
1644
1645 void KFileItemModel::removeExpandedItems()
1646 {
1647 QVector<int> indexesToRemove;
1648
1649 const int maxIndex = m_itemData.count() - 1;
1650 for (int i = 0; i <= maxIndex; ++i) {
1651 const ItemData* itemData = m_itemData.at(i);
1652 if (itemData->parent) {
1653 indexesToRemove.append(i);
1654 }
1655 }
1656
1657 removeItems(KItemRangeList::fromSortedContainer(indexesToRemove), DeleteItemData);
1658 m_expandedDirs.clear();
1659
1660 // Also remove all filtered items which have a parent.
1661 QHash<KFileItem, ItemData*>::iterator it = m_filteredItems.begin();
1662 const QHash<KFileItem, ItemData*>::iterator end = m_filteredItems.end();
1663
1664 while (it != end) {
1665 if (it.value()->parent) {
1666 delete it.value();
1667 it = m_filteredItems.erase(it);
1668 } else {
1669 ++it;
1670 }
1671 }
1672 }
1673
1674 void KFileItemModel::emitItemsChangedAndTriggerResorting(const KItemRangeList& itemRanges, const QSet<QByteArray>& changedRoles)
1675 {
1676 Q_EMIT itemsChanged(itemRanges, changedRoles);
1677
1678 // Trigger a resorting if necessary. Note that this can happen even if the sort
1679 // role has not changed at all because the file name can be used as a fallback.
1680 if (changedRoles.contains(sortRole()) || changedRoles.contains(roleForType(NameRole))) {
1681 for (const KItemRange& range : itemRanges) {
1682 bool needsResorting = false;
1683
1684 const int first = range.index;
1685 const int last = range.index + range.count - 1;
1686
1687 // Resorting the model is necessary if
1688 // (a) The first item in the range is "lessThan" its predecessor,
1689 // (b) the successor of the last item is "lessThan" the last item, or
1690 // (c) the internal order of the items in the range is incorrect.
1691 if (first > 0
1692 && lessThan(m_itemData.at(first), m_itemData.at(first - 1), m_collator)) {
1693 needsResorting = true;
1694 } else if (last < count() - 1
1695 && lessThan(m_itemData.at(last + 1), m_itemData.at(last), m_collator)) {
1696 needsResorting = true;
1697 } else {
1698 for (int index = first; index < last; ++index) {
1699 if (lessThan(m_itemData.at(index + 1), m_itemData.at(index), m_collator)) {
1700 needsResorting = true;
1701 break;
1702 }
1703 }
1704 }
1705
1706 if (needsResorting) {
1707 m_resortAllItemsTimer->start();
1708 return;
1709 }
1710 }
1711 }
1712
1713 if (groupedSorting() && changedRoles.contains(sortRole())) {
1714 // The position is still correct, but the groups might have changed
1715 // if the changed item is either the first or the last item in a
1716 // group.
1717 // In principle, we could try to find out if the item really is the
1718 // first or last one in its group and then update the groups
1719 // (possibly with a delayed timer to make sure that we don't
1720 // re-calculate the groups very often if items are updated one by
1721 // one), but starting m_resortAllItemsTimer is easier.
1722 m_resortAllItemsTimer->start();
1723 }
1724 }
1725
1726 void KFileItemModel::resetRoles()
1727 {
1728 for (int i = 0; i < RolesCount; ++i) {
1729 m_requestRole[i] = false;
1730 }
1731 }
1732
1733 KFileItemModel::RoleType KFileItemModel::typeForRole(const QByteArray& role) const
1734 {
1735 static QHash<QByteArray, RoleType> roles;
1736 if (roles.isEmpty()) {
1737 // Insert user visible roles that can be accessed with
1738 // KFileItemModel::roleInformation()
1739 int count = 0;
1740 const RoleInfoMap* map = rolesInfoMap(count);
1741 for (int i = 0; i < count; ++i) {
1742 roles.insert(map[i].role, map[i].roleType);
1743 }
1744
1745 // Insert internal roles (take care to synchronize the implementation
1746 // with KFileItemModel::roleForType() in case if a change is done).
1747 roles.insert("isDir", IsDirRole);
1748 roles.insert("isLink", IsLinkRole);
1749 roles.insert("isHidden", IsHiddenRole);
1750 roles.insert("isExpanded", IsExpandedRole);
1751 roles.insert("isExpandable", IsExpandableRole);
1752 roles.insert("expandedParentsCount", ExpandedParentsCountRole);
1753
1754 Q_ASSERT(roles.count() == RolesCount);
1755 }
1756
1757 return roles.value(role, NoRole);
1758 }
1759
1760 QByteArray KFileItemModel::roleForType(RoleType roleType) const
1761 {
1762 static QHash<RoleType, QByteArray> roles;
1763 if (roles.isEmpty()) {
1764 // Insert user visible roles that can be accessed with
1765 // KFileItemModel::roleInformation()
1766 int count = 0;
1767 const RoleInfoMap* map = rolesInfoMap(count);
1768 for (int i = 0; i < count; ++i) {
1769 roles.insert(map[i].roleType, map[i].role);
1770 }
1771
1772 // Insert internal roles (take care to synchronize the implementation
1773 // with KFileItemModel::typeForRole() in case if a change is done).
1774 roles.insert(IsDirRole, "isDir");
1775 roles.insert(IsLinkRole, "isLink");
1776 roles.insert(IsHiddenRole, "isHidden");
1777 roles.insert(IsExpandedRole, "isExpanded");
1778 roles.insert(IsExpandableRole, "isExpandable");
1779 roles.insert(ExpandedParentsCountRole, "expandedParentsCount");
1780
1781 Q_ASSERT(roles.count() == RolesCount);
1782 };
1783
1784 return roles.value(roleType);
1785 }
1786
1787 QHash<QByteArray, QVariant> KFileItemModel::retrieveData(const KFileItem& item, const ItemData* parent) const
1788 {
1789 // It is important to insert only roles that are fast to retrieve. E.g.
1790 // KFileItem::iconName() can be very expensive if the MIME-type is unknown
1791 // and hence will be retrieved asynchronously by KFileItemModelRolesUpdater.
1792 QHash<QByteArray, QVariant> data;
1793 data.insert(sharedValue("url"), item.url());
1794
1795 const bool isDir = item.isDir();
1796 if (m_requestRole[IsDirRole] && isDir) {
1797 data.insert(sharedValue("isDir"), true);
1798 }
1799
1800 if (m_requestRole[IsLinkRole] && item.isLink()) {
1801 data.insert(sharedValue("isLink"), true);
1802 }
1803
1804 if (m_requestRole[IsHiddenRole]) {
1805 data.insert(sharedValue("isHidden"), item.isHidden());
1806 }
1807
1808 if (m_requestRole[NameRole]) {
1809 data.insert(sharedValue("text"), item.text());
1810 }
1811
1812 if (m_requestRole[ExtensionRole] && !isDir) {
1813 data.insert(sharedValue("extension"), QFileInfo(item.name()).suffix());
1814 }
1815
1816 if (m_requestRole[SizeRole] && !isDir) {
1817 data.insert(sharedValue("size"), item.size());
1818 }
1819
1820 if (m_requestRole[ModificationTimeRole]) {
1821 // Don't use KFileItem::timeString() or KFileItem::time() as this is too expensive when
1822 // having several thousands of items. Instead read the raw number from UDSEntry directly
1823 // and the formatting of the date-time will be done on-demand by the view when the date will be shown.
1824 const long long dateTime = item.entry().numberValue(KIO::UDSEntry::UDS_MODIFICATION_TIME, -1);
1825 data.insert(sharedValue("modificationtime"), dateTime);
1826 }
1827
1828 if (m_requestRole[CreationTimeRole]) {
1829 // Don't use KFileItem::timeString() or KFileItem::time() as this is too expensive when
1830 // having several thousands of items. Instead read the raw number from UDSEntry directly
1831 // and the formatting of the date-time will be done on-demand by the view when the date will be shown.
1832 const long long dateTime = item.entry().numberValue(KIO::UDSEntry::UDS_CREATION_TIME, -1);
1833 data.insert(sharedValue("creationtime"), dateTime);
1834 }
1835
1836 if (m_requestRole[AccessTimeRole]) {
1837 // Don't use KFileItem::timeString() or KFileItem::time() as this is too expensive when
1838 // having several thousands of items. Instead read the raw number from UDSEntry directly
1839 // and the formatting of the date-time will be done on-demand by the view when the date will be shown.
1840 const long long dateTime = item.entry().numberValue(KIO::UDSEntry::UDS_ACCESS_TIME, -1);
1841 data.insert(sharedValue("accesstime"), dateTime);
1842 }
1843
1844 if (m_requestRole[PermissionsRole]) {
1845 data.insert(sharedValue("permissions"), item.permissionsString());
1846 }
1847
1848 if (m_requestRole[OwnerRole]) {
1849 data.insert(sharedValue("owner"), item.user());
1850 }
1851
1852 if (m_requestRole[GroupRole]) {
1853 data.insert(sharedValue("group"), item.group());
1854 }
1855
1856 if (m_requestRole[DestinationRole]) {
1857 QString destination = item.linkDest();
1858 if (destination.isEmpty()) {
1859 destination = QLatin1Char('-');
1860 }
1861 data.insert(sharedValue("destination"), destination);
1862 }
1863
1864 if (m_requestRole[PathRole]) {
1865 QString path;
1866 if (item.url().scheme() == QLatin1String("trash")) {
1867 path = item.entry().stringValue(KIO::UDSEntry::UDS_EXTRA);
1868 } else {
1869 // For performance reasons cache the home-path in a static QString
1870 // (see QDir::homePath() for more details)
1871 static QString homePath;
1872 if (homePath.isEmpty()) {
1873 homePath = QDir::homePath();
1874 }
1875
1876 path = item.localPath();
1877 if (path.startsWith(homePath)) {
1878 path.replace(0, homePath.length(), QLatin1Char('~'));
1879 }
1880 }
1881
1882 const int index = path.lastIndexOf(item.text());
1883 path = path.mid(0, index - 1);
1884 data.insert(sharedValue("path"), path);
1885 }
1886
1887 if (m_requestRole[DeletionTimeRole]) {
1888 QDateTime deletionTime;
1889 if (item.url().scheme() == QLatin1String("trash")) {
1890 deletionTime = QDateTime::fromString(item.entry().stringValue(KIO::UDSEntry::UDS_EXTRA + 1), Qt::ISODate);
1891 }
1892 data.insert(sharedValue("deletiontime"), deletionTime);
1893 }
1894
1895 if (m_requestRole[IsExpandableRole] && isDir) {
1896 data.insert(sharedValue("isExpandable"), true);
1897 }
1898
1899 if (m_requestRole[ExpandedParentsCountRole]) {
1900 if (parent) {
1901 const int level = expandedParentsCount(parent) + 1;
1902 data.insert(sharedValue("expandedParentsCount"), level);
1903 }
1904 }
1905
1906 if (item.isMimeTypeKnown()) {
1907 QString iconName = item.iconName();
1908 if (!QIcon::hasThemeIcon(iconName)) {
1909 QMimeType mimeType = QMimeDatabase().mimeTypeForName(item.mimetype());
1910 iconName = mimeType.genericIconName();
1911 }
1912
1913 data.insert(sharedValue("iconName"), iconName);
1914
1915 if (m_requestRole[TypeRole]) {
1916 data.insert(sharedValue("type"), item.mimeComment());
1917 }
1918 } else if (m_requestRole[TypeRole] && isDir) {
1919 static const QString folderMimeType = item.mimeComment();
1920 data.insert(sharedValue("type"), folderMimeType);
1921 }
1922
1923 return data;
1924 }
1925
1926 bool KFileItemModel::lessThan(const ItemData* a, const ItemData* b, const QCollator& collator) const
1927 {
1928 int result = 0;
1929
1930 if (a->parent != b->parent) {
1931 const int expansionLevelA = expandedParentsCount(a);
1932 const int expansionLevelB = expandedParentsCount(b);
1933
1934 // If b has a higher expansion level than a, check if a is a parent
1935 // of b, and make sure that both expansion levels are equal otherwise.
1936 for (int i = expansionLevelB; i > expansionLevelA; --i) {
1937 if (b->parent == a) {
1938 return true;
1939 }
1940 b = b->parent;
1941 }
1942
1943 // If a has a higher expansion level than a, check if b is a parent
1944 // of a, and make sure that both expansion levels are equal otherwise.
1945 for (int i = expansionLevelA; i > expansionLevelB; --i) {
1946 if (a->parent == b) {
1947 return false;
1948 }
1949 a = a->parent;
1950 }
1951
1952 Q_ASSERT(expandedParentsCount(a) == expandedParentsCount(b));
1953
1954 // Compare the last parents of a and b which are different.
1955 while (a->parent != b->parent) {
1956 a = a->parent;
1957 b = b->parent;
1958 }
1959 }
1960
1961 // Show hidden files and folders last
1962 if (m_sortHiddenLast) {
1963 const bool isHiddenA = a->item.isHidden();
1964 const bool isHiddenB = b->item.isHidden();
1965 if (isHiddenA && !isHiddenB) {
1966 return false;
1967 } else if (!isHiddenA && isHiddenB) {
1968 return true;
1969 }
1970 }
1971
1972 if (m_sortDirsFirst || (DetailsModeSettings::directorySizeCount() && m_sortRole == SizeRole)) {
1973 const bool isDirA = a->item.isDir();
1974 const bool isDirB = b->item.isDir();
1975 if (isDirA && !isDirB) {
1976 return true;
1977 } else if (!isDirA && isDirB) {
1978 return false;
1979 }
1980 }
1981
1982 result = sortRoleCompare(a, b, collator);
1983
1984 return (sortOrder() == Qt::AscendingOrder) ? result < 0 : result > 0;
1985 }
1986
1987 void KFileItemModel::sort(const QList<KFileItemModel::ItemData*>::iterator &begin,
1988 const QList<KFileItemModel::ItemData*>::iterator &end) const
1989 {
1990 auto lambdaLessThan = [&] (const KFileItemModel::ItemData* a, const KFileItemModel::ItemData* b)
1991 {
1992 return lessThan(a, b, m_collator);
1993 };
1994
1995 if (m_sortRole == NameRole || isRoleValueNatural(m_sortRole)) {
1996 // Sorting by string can be expensive, in particular if natural sorting is
1997 // enabled. Use all CPU cores to speed up the sorting process.
1998 static const int numberOfThreads = QThread::idealThreadCount();
1999 parallelMergeSort(begin, end, lambdaLessThan, numberOfThreads);
2000 } else {
2001 // Sorting by other roles is quite fast. Use only one thread to prevent
2002 // problems caused by non-reentrant comparison functions, see
2003 // https://bugs.kde.org/show_bug.cgi?id=312679
2004 mergeSort(begin, end, lambdaLessThan);
2005 }
2006 }
2007
2008 int KFileItemModel::sortRoleCompare(const ItemData* a, const ItemData* b, const QCollator& collator) const
2009 {
2010 // This function must never return 0, because that would break stable
2011 // sorting, which leads to all kinds of bugs.
2012 // See: https://bugs.kde.org/show_bug.cgi?id=433247
2013 // If two items have equal sort values, let the fallbacks at the bottom of
2014 // the function handle it.
2015 const KFileItem& itemA = a->item;
2016 const KFileItem& itemB = b->item;
2017
2018 int result = 0;
2019
2020 switch (m_sortRole) {
2021 case NameRole:
2022 // The name role is handled as default fallback after the switch
2023 break;
2024
2025 case SizeRole: {
2026 if (DetailsModeSettings::directorySizeCount() && itemA.isDir()) {
2027 // folders first then
2028 // items A and B are folders thanks to lessThan checks
2029 auto valueA = a->values.value("count");
2030 auto valueB = b->values.value("count");
2031 if (valueA.isNull()) {
2032 if (!valueB.isNull()) {
2033 return -1;
2034 }
2035 } else if (valueB.isNull()) {
2036 return +1;
2037 } else {
2038 if (valueA.toLongLong() < valueB.toLongLong()) {
2039 return -1;
2040 } else if (valueA.toLongLong() > valueB.toLongLong()) {
2041 return +1;
2042 }
2043 }
2044 break;
2045 }
2046
2047 KIO::filesize_t sizeA = 0;
2048 if (itemA.isDir()) {
2049 sizeA = a->values.value("size").toULongLong();
2050 } else {
2051 sizeA = itemA.size();
2052 }
2053 KIO::filesize_t sizeB = 0;
2054 if (itemB.isDir()) {
2055 sizeB = b->values.value("size").toULongLong();
2056 } else {
2057 sizeB = itemB.size();
2058 }
2059 if (sizeA < sizeB) {
2060 return -1;
2061 } else if (sizeA > sizeB) {
2062 return +1;
2063 }
2064 break;
2065 }
2066
2067 case ModificationTimeRole: {
2068 const long long dateTimeA = itemA.entry().numberValue(KIO::UDSEntry::UDS_MODIFICATION_TIME, -1);
2069 const long long dateTimeB = itemB.entry().numberValue(KIO::UDSEntry::UDS_MODIFICATION_TIME, -1);
2070 if (dateTimeA < dateTimeB) {
2071 return -1;
2072 } else if (dateTimeA > dateTimeB) {
2073 return +1;
2074 }
2075 break;
2076 }
2077
2078 case AccessTimeRole: {
2079 const long long dateTimeA = itemA.entry().numberValue(KIO::UDSEntry::UDS_ACCESS_TIME, -1);
2080 const long long dateTimeB = itemB.entry().numberValue(KIO::UDSEntry::UDS_ACCESS_TIME, -1);
2081 if (dateTimeA < dateTimeB) {
2082 return -1;
2083 } else if (dateTimeA > dateTimeB) {
2084 return +1;
2085 }
2086 break;
2087 }
2088
2089 case CreationTimeRole: {
2090 const long long dateTimeA = itemA.entry().numberValue(KIO::UDSEntry::UDS_CREATION_TIME, -1);
2091 const long long dateTimeB = itemB.entry().numberValue(KIO::UDSEntry::UDS_CREATION_TIME, -1);
2092 if (dateTimeA < dateTimeB) {
2093 return -1;
2094 } else if (dateTimeA > dateTimeB) {
2095 return +1;
2096 }
2097 break;
2098 }
2099
2100 case DeletionTimeRole: {
2101 const QDateTime dateTimeA = a->values.value("deletiontime").toDateTime();
2102 const QDateTime dateTimeB = b->values.value("deletiontime").toDateTime();
2103 if (dateTimeA < dateTimeB) {
2104 return -1;
2105 } else if (dateTimeA > dateTimeB) {
2106 return +1;
2107 }
2108 break;
2109 }
2110
2111 case RatingRole:
2112 case WidthRole:
2113 case HeightRole:
2114 case WordCountRole:
2115 case LineCountRole:
2116 case TrackRole:
2117 case ReleaseYearRole: {
2118 result = a->values.value(roleForType(m_sortRole)).toInt() - b->values.value(roleForType(m_sortRole)).toInt();
2119 break;
2120 }
2121
2122 case DimensionsRole: {
2123 const QByteArray role = roleForType(m_sortRole);
2124 const QSize dimensionsA = a->values.value(role).toSize();
2125 const QSize dimensionsB = b->values.value(role).toSize();
2126
2127 if (dimensionsA.width() == dimensionsB.width()) {
2128 result = dimensionsA.height() - dimensionsB.height();
2129 } else {
2130 result = dimensionsA.width() - dimensionsB.width();
2131 }
2132 break;
2133 }
2134
2135 default: {
2136 const QByteArray role = roleForType(m_sortRole);
2137 const QString roleValueA = a->values.value(role).toString();
2138 const QString roleValueB = b->values.value(role).toString();
2139 if (!roleValueA.isEmpty() && roleValueB.isEmpty()) {
2140 return -1;
2141 } else if (roleValueA.isEmpty() && !roleValueB.isEmpty()) {
2142 return +1;
2143 } else if (isRoleValueNatural(m_sortRole)) {
2144 result = stringCompare(roleValueA, roleValueB, collator);
2145 } else {
2146 result = QString::compare(roleValueA, roleValueB);
2147 }
2148 break;
2149 }
2150
2151 }
2152
2153 if (result != 0) {
2154 // The current sort role was sufficient to define an order
2155 return result;
2156 }
2157
2158 // Fallback #1: Compare the text of the items
2159 result = stringCompare(itemA.text(), itemB.text(), collator);
2160 if (result != 0) {
2161 return result;
2162 }
2163
2164 // Fallback #2: KFileItem::text() may not be unique in case UDS_DISPLAY_NAME is used
2165 result = stringCompare(itemA.name(), itemB.name(), collator);
2166 if (result != 0) {
2167 return result;
2168 }
2169
2170 // Fallback #3: It must be assured that the sort order is always unique even if two values have been
2171 // equal. In this case a comparison of the URL is done which is unique in all cases
2172 // within KDirLister.
2173 return QString::compare(itemA.url().url(), itemB.url().url(), Qt::CaseSensitive);
2174 }
2175
2176 int KFileItemModel::stringCompare(const QString& a, const QString& b, const QCollator& collator) const
2177 {
2178 QMutexLocker collatorLock(s_collatorMutex());
2179
2180 if (m_naturalSorting) {
2181 return collator.compare(a, b);
2182 }
2183
2184 const int result = QString::compare(a, b, collator.caseSensitivity());
2185 if (result != 0 || collator.caseSensitivity() == Qt::CaseSensitive) {
2186 // Only return the result, if the strings are not equal. If they are equal by a case insensitive
2187 // comparison, still a deterministic sort order is required. A case sensitive
2188 // comparison is done as fallback.
2189 return result;
2190 }
2191
2192 return QString::compare(a, b, Qt::CaseSensitive);
2193 }
2194
2195 QList<QPair<int, QVariant> > KFileItemModel::nameRoleGroups() const
2196 {
2197 Q_ASSERT(!m_itemData.isEmpty());
2198
2199 const int maxIndex = count() - 1;
2200 QList<QPair<int, QVariant> > groups;
2201
2202 QString groupValue;
2203 QChar firstChar;
2204 for (int i = 0; i <= maxIndex; ++i) {
2205 if (isChildItem(i)) {
2206 continue;
2207 }
2208
2209 const QString name = m_itemData.at(i)->item.text();
2210
2211 // Use the first character of the name as group indication
2212 QChar newFirstChar = name.at(0).toUpper();
2213 if (newFirstChar == QLatin1Char('~') && name.length() > 1) {
2214 newFirstChar = name.at(1).toUpper();
2215 }
2216
2217 if (firstChar != newFirstChar) {
2218 QString newGroupValue;
2219 if (newFirstChar.isLetter()) {
2220
2221 if (m_collator.compare(newFirstChar, QChar(QLatin1Char('A'))) >= 0 && m_collator.compare(newFirstChar, QChar(QLatin1Char('Z'))) <= 0) {
2222 // WARNING! Symbols based on latin 'Z' like 'Z' with acute are treated wrong as non Latin and put in a new group.
2223
2224 // Try to find a matching group in the range 'A' to 'Z'.
2225 static std::vector<QChar> lettersAtoZ;
2226 lettersAtoZ.reserve('Z' - 'A' + 1);
2227 if (lettersAtoZ.empty()) {
2228 for (char c = 'A'; c <= 'Z'; ++c) {
2229 lettersAtoZ.push_back(QLatin1Char(c));
2230 }
2231 }
2232
2233 auto localeAwareLessThan = [this](QChar c1, QChar c2) -> bool {
2234 return m_collator.compare(c1, c2) < 0;
2235 };
2236
2237 std::vector<QChar>::iterator it = std::lower_bound(lettersAtoZ.begin(), lettersAtoZ.end(), newFirstChar, localeAwareLessThan);
2238 if (it != lettersAtoZ.end()) {
2239 if (localeAwareLessThan(newFirstChar, *it)) {
2240 // newFirstChar belongs to the group preceding *it.
2241 // Example: for an umlaut 'A' in the German locale, *it would be 'B' now.
2242 --it;
2243 }
2244 newGroupValue = *it;
2245 }
2246
2247 } else {
2248 // Symbols from non Latin-based scripts
2249 newGroupValue = newFirstChar;
2250 }
2251 } else if (newFirstChar >= QLatin1Char('0') && newFirstChar <= QLatin1Char('9')) {
2252 // Apply group '0 - 9' for any name that starts with a digit
2253 newGroupValue = i18nc("@title:group Groups that start with a digit", "0 - 9");
2254 } else {
2255 newGroupValue = i18nc("@title:group", "Others");
2256 }
2257
2258 if (newGroupValue != groupValue) {
2259 groupValue = newGroupValue;
2260 groups.append(QPair<int, QVariant>(i, newGroupValue));
2261 }
2262
2263 firstChar = newFirstChar;
2264 }
2265 }
2266 return groups;
2267 }
2268
2269 QList<QPair<int, QVariant> > KFileItemModel::sizeRoleGroups() const
2270 {
2271 Q_ASSERT(!m_itemData.isEmpty());
2272
2273 const int maxIndex = count() - 1;
2274 QList<QPair<int, QVariant> > groups;
2275
2276 QString groupValue;
2277 for (int i = 0; i <= maxIndex; ++i) {
2278 if (isChildItem(i)) {
2279 continue;
2280 }
2281
2282 const KFileItem& item = m_itemData.at(i)->item;
2283 KIO::filesize_t fileSize = !item.isNull() ? item.size() : ~0U;
2284 QString newGroupValue;
2285 if (!item.isNull() && item.isDir()) {
2286 if (DetailsModeSettings::directorySizeCount() || m_sortDirsFirst) {
2287 newGroupValue = i18nc("@title:group Size", "Folders");
2288 } else {
2289 fileSize = m_itemData.at(i)->values.value("size").toULongLong();
2290 }
2291 }
2292
2293 if (newGroupValue.isEmpty()) {
2294 if (fileSize < 5 * 1024 * 1024) { // < 5 MB
2295 newGroupValue = i18nc("@title:group Size", "Small");
2296 } else if (fileSize < 10 * 1024 * 1024) { // < 10 MB
2297 newGroupValue = i18nc("@title:group Size", "Medium");
2298 } else {
2299 newGroupValue = i18nc("@title:group Size", "Big");
2300 }
2301 }
2302
2303 if (newGroupValue != groupValue) {
2304 groupValue = newGroupValue;
2305 groups.append(QPair<int, QVariant>(i, newGroupValue));
2306 }
2307 }
2308
2309 return groups;
2310 }
2311
2312 QList<QPair<int, QVariant> > KFileItemModel::timeRoleGroups(const std::function<QDateTime(const ItemData *)> &fileTimeCb) const
2313 {
2314 Q_ASSERT(!m_itemData.isEmpty());
2315
2316 const int maxIndex = count() - 1;
2317 QList<QPair<int, QVariant> > groups;
2318
2319 const QDate currentDate = QDate::currentDate();
2320
2321 QDate previousFileDate;
2322 QString groupValue;
2323 for (int i = 0; i <= maxIndex; ++i) {
2324 if (isChildItem(i)) {
2325 continue;
2326 }
2327
2328 const QDateTime fileTime = fileTimeCb(m_itemData.at(i));
2329 const QDate fileDate = fileTime.date();
2330 if (fileDate == previousFileDate) {
2331 // The current item is in the same group as the previous item
2332 continue;
2333 }
2334 previousFileDate = fileDate;
2335
2336 const int daysDistance = fileDate.daysTo(currentDate);
2337
2338 QString newGroupValue;
2339 if (currentDate.year() == fileDate.year() &&
2340 currentDate.month() == fileDate.month()) {
2341
2342 switch (daysDistance / 7) {
2343 case 0:
2344 switch (daysDistance) {
2345 case 0: newGroupValue = i18nc("@title:group Date", "Today"); break;
2346 case 1: newGroupValue = i18nc("@title:group Date", "Yesterday"); break;
2347 default:
2348 newGroupValue = fileTime.toString(
2349 i18nc("@title:group Date: The week day name: dddd", "dddd"));
2350 newGroupValue = i18nc("Can be used to script translation of \"dddd\""
2351 "with context @title:group Date", "%1", newGroupValue);
2352 }
2353 break;
2354 case 1:
2355 newGroupValue = i18nc("@title:group Date", "One Week Ago");
2356 break;
2357 case 2:
2358 newGroupValue = i18nc("@title:group Date", "Two Weeks Ago");
2359 break;
2360 case 3:
2361 newGroupValue = i18nc("@title:group Date", "Three Weeks Ago");
2362 break;
2363 case 4:
2364 case 5:
2365 newGroupValue = i18nc("@title:group Date", "Earlier this Month");
2366 break;
2367 default:
2368 Q_ASSERT(false);
2369 }
2370 } else {
2371 const QDate lastMonthDate = currentDate.addMonths(-1);
2372 if (lastMonthDate.year() == fileDate.year() &&
2373 lastMonthDate.month() == fileDate.month()) {
2374
2375 if (daysDistance == 1) {
2376 const KLocalizedString format = ki18nc("@title:group Date: "
2377 "MMMM is full month name in current locale, and yyyy is "
2378 "full year number. You must keep the ' don't use any fancy \" or « or similar. The ' is not shown to the user, it's there to mark a part of the text that should not be formatted as a date", "'Yesterday' (MMMM, yyyy)");
2379 const QString translatedFormat = format.toString();
2380 if (translatedFormat.count(QLatin1Char('\'')) == 2) {
2381 newGroupValue = fileTime.toString(translatedFormat);
2382 newGroupValue = i18nc("Can be used to script translation of "
2383 "\"'Yesterday' (MMMM, yyyy)\" with context @title:group Date",
2384 "%1", newGroupValue);
2385 } else {
2386 qCWarning(DolphinDebug).nospace() << "A wrong translation was found: " << translatedFormat << ". Please file a bug report at bugs.kde.org";
2387 const QString untranslatedFormat = format.toString({ QLatin1String("en_US") });
2388 newGroupValue = fileTime.toString(untranslatedFormat);
2389 }
2390 } else if (daysDistance <= 7) {
2391 newGroupValue = fileTime.toString(i18nc("@title:group Date: "
2392 "The week day name: dddd, MMMM is full month name "
2393 "in current locale, and yyyy is full year number.",
2394 "dddd (MMMM, yyyy)"));
2395 newGroupValue = i18nc("Can be used to script translation of "
2396 "\"dddd (MMMM, yyyy)\" with context @title:group Date",
2397 "%1", newGroupValue);
2398 } else if (daysDistance <= 7 * 2) {
2399 const KLocalizedString format = ki18nc("@title:group Date: "
2400 "MMMM is full month name in current locale, and yyyy is "
2401 "full year number. You must keep the ' don't use any fancy \" or « or similar. The ' is not shown to the user, it's there to mark a part of the text that should not be formatted as a date", "'One Week Ago' (MMMM, yyyy)");
2402 const QString translatedFormat = format.toString();
2403 if (translatedFormat.count(QLatin1Char('\'')) == 2) {
2404 newGroupValue = fileTime.toString(translatedFormat);
2405 newGroupValue = i18nc("Can be used to script translation of "
2406 "\"'One Week Ago' (MMMM, yyyy)\" with context @title:group Date",
2407 "%1", newGroupValue);
2408 } else {
2409 qCWarning(DolphinDebug).nospace() << "A wrong translation was found: " << translatedFormat << ". Please file a bug report at bugs.kde.org";
2410 const QString untranslatedFormat = format.toString({ QLatin1String("en_US") });
2411 newGroupValue = fileTime.toString(untranslatedFormat);
2412 }
2413 } else if (daysDistance <= 7 * 3) {
2414 const KLocalizedString format = ki18nc("@title:group Date: "
2415 "MMMM is full month name in current locale, and yyyy is "
2416 "full year number. You must keep the ' don't use any fancy \" or « or similar. The ' is not shown to the user, it's there to mark a part of the text that should not be formatted as a date", "'Two Weeks Ago' (MMMM, yyyy)");
2417 const QString translatedFormat = format.toString();
2418 if (translatedFormat.count(QLatin1Char('\'')) == 2) {
2419 newGroupValue = fileTime.toString(translatedFormat);
2420 newGroupValue = i18nc("Can be used to script translation of "
2421 "\"'Two Weeks Ago' (MMMM, yyyy)\" with context @title:group Date",
2422 "%1", newGroupValue);
2423 } else {
2424 qCWarning(DolphinDebug).nospace() << "A wrong translation was found: " << translatedFormat << ". Please file a bug report at bugs.kde.org";
2425 const QString untranslatedFormat = format.toString({ QLatin1String("en_US") });
2426 newGroupValue = fileTime.toString(untranslatedFormat);
2427 }
2428 } else if (daysDistance <= 7 * 4) {
2429 const KLocalizedString format = ki18nc("@title:group Date: "
2430 "MMMM is full month name in current locale, and yyyy is "
2431 "full year number. You must keep the ' don't use any fancy \" or « or similar. The ' is not shown to the user, it's there to mark a part of the text that should not be formatted as a date", "'Three Weeks Ago' (MMMM, yyyy)");
2432 const QString translatedFormat = format.toString();
2433 if (translatedFormat.count(QLatin1Char('\'')) == 2) {
2434 newGroupValue = fileTime.toString(translatedFormat);
2435 newGroupValue = i18nc("Can be used to script translation of "
2436 "\"'Three Weeks Ago' (MMMM, yyyy)\" with context @title:group Date",
2437 "%1", newGroupValue);
2438 } else {
2439 qCWarning(DolphinDebug).nospace() << "A wrong translation was found: " << translatedFormat << ". Please file a bug report at bugs.kde.org";
2440 const QString untranslatedFormat = format.toString({ QLatin1String("en_US") });
2441 newGroupValue = fileTime.toString(untranslatedFormat);
2442 }
2443 } else {
2444 const KLocalizedString format = ki18nc("@title:group Date: "
2445 "MMMM is full month name in current locale, and yyyy is "
2446 "full year number. You must keep the ' don't use any fancy \" or « or similar. The ' is not shown to the user, it's there to mark a part of the text that should not be formatted as a date", "'Earlier on' MMMM, yyyy");
2447 const QString translatedFormat = format.toString();
2448 if (translatedFormat.count(QLatin1Char('\'')) == 2) {
2449 newGroupValue = fileTime.toString(translatedFormat);
2450 newGroupValue = i18nc("Can be used to script translation of "
2451 "\"'Earlier on' MMMM, yyyy\" with context @title:group Date",
2452 "%1", newGroupValue);
2453 } else {
2454 qCWarning(DolphinDebug).nospace() << "A wrong translation was found: " << translatedFormat << ". Please file a bug report at bugs.kde.org";
2455 const QString untranslatedFormat = format.toString({ QLatin1String("en_US") });
2456 newGroupValue = fileTime.toString(untranslatedFormat);
2457 }
2458 }
2459 } else {
2460 newGroupValue = fileTime.toString(i18nc("@title:group "
2461 "The month and year: MMMM is full month name in current locale, "
2462 "and yyyy is full year number", "MMMM, yyyy"));
2463 newGroupValue = i18nc("Can be used to script translation of "
2464 "\"MMMM, yyyy\" with context @title:group Date",
2465 "%1", newGroupValue);
2466 }
2467 }
2468
2469 if (newGroupValue != groupValue) {
2470 groupValue = newGroupValue;
2471 groups.append(QPair<int, QVariant>(i, newGroupValue));
2472 }
2473 }
2474
2475 return groups;
2476 }
2477
2478 QList<QPair<int, QVariant> > KFileItemModel::permissionRoleGroups() const
2479 {
2480 Q_ASSERT(!m_itemData.isEmpty());
2481
2482 const int maxIndex = count() - 1;
2483 QList<QPair<int, QVariant> > groups;
2484
2485 QString permissionsString;
2486 QString groupValue;
2487 for (int i = 0; i <= maxIndex; ++i) {
2488 if (isChildItem(i)) {
2489 continue;
2490 }
2491
2492 const ItemData* itemData = m_itemData.at(i);
2493 const QString newPermissionsString = itemData->values.value("permissions").toString();
2494 if (newPermissionsString == permissionsString) {
2495 continue;
2496 }
2497 permissionsString = newPermissionsString;
2498
2499 const QFileInfo info(itemData->item.url().toLocalFile());
2500
2501 // Set user string
2502 QString user;
2503 if (info.permission(QFile::ReadUser)) {
2504 user = i18nc("@item:intext Access permission, concatenated", "Read, ");
2505 }
2506 if (info.permission(QFile::WriteUser)) {
2507 user += i18nc("@item:intext Access permission, concatenated", "Write, ");
2508 }
2509 if (info.permission(QFile::ExeUser)) {
2510 user += i18nc("@item:intext Access permission, concatenated", "Execute, ");
2511 }
2512 user = user.isEmpty() ? i18nc("@item:intext Access permission, concatenated", "Forbidden") : user.mid(0, user.count() - 2);
2513
2514 // Set group string
2515 QString group;
2516 if (info.permission(QFile::ReadGroup)) {
2517 group = i18nc("@item:intext Access permission, concatenated", "Read, ");
2518 }
2519 if (info.permission(QFile::WriteGroup)) {
2520 group += i18nc("@item:intext Access permission, concatenated", "Write, ");
2521 }
2522 if (info.permission(QFile::ExeGroup)) {
2523 group += i18nc("@item:intext Access permission, concatenated", "Execute, ");
2524 }
2525 group = group.isEmpty() ? i18nc("@item:intext Access permission, concatenated", "Forbidden") : group.mid(0, group.count() - 2);
2526
2527 // Set others string
2528 QString others;
2529 if (info.permission(QFile::ReadOther)) {
2530 others = i18nc("@item:intext Access permission, concatenated", "Read, ");
2531 }
2532 if (info.permission(QFile::WriteOther)) {
2533 others += i18nc("@item:intext Access permission, concatenated", "Write, ");
2534 }
2535 if (info.permission(QFile::ExeOther)) {
2536 others += i18nc("@item:intext Access permission, concatenated", "Execute, ");
2537 }
2538 others = others.isEmpty() ? i18nc("@item:intext Access permission, concatenated", "Forbidden") : others.mid(0, others.count() - 2);
2539
2540 const QString newGroupValue = i18nc("@title:group Files and folders by permissions", "User: %1 | Group: %2 | Others: %3", user, group, others);
2541 if (newGroupValue != groupValue) {
2542 groupValue = newGroupValue;
2543 groups.append(QPair<int, QVariant>(i, newGroupValue));
2544 }
2545 }
2546
2547 return groups;
2548 }
2549
2550 QList<QPair<int, QVariant> > KFileItemModel::ratingRoleGroups() const
2551 {
2552 Q_ASSERT(!m_itemData.isEmpty());
2553
2554 const int maxIndex = count() - 1;
2555 QList<QPair<int, QVariant> > groups;
2556
2557 int groupValue = -1;
2558 for (int i = 0; i <= maxIndex; ++i) {
2559 if (isChildItem(i)) {
2560 continue;
2561 }
2562 const int newGroupValue = m_itemData.at(i)->values.value("rating", 0).toInt();
2563 if (newGroupValue != groupValue) {
2564 groupValue = newGroupValue;
2565 groups.append(QPair<int, QVariant>(i, newGroupValue));
2566 }
2567 }
2568
2569 return groups;
2570 }
2571
2572 QList<QPair<int, QVariant> > KFileItemModel::genericStringRoleGroups(const QByteArray& role) const
2573 {
2574 Q_ASSERT(!m_itemData.isEmpty());
2575
2576 const int maxIndex = count() - 1;
2577 QList<QPair<int, QVariant> > groups;
2578
2579 bool isFirstGroupValue = true;
2580 QString groupValue;
2581 for (int i = 0; i <= maxIndex; ++i) {
2582 if (isChildItem(i)) {
2583 continue;
2584 }
2585 const QString newGroupValue = m_itemData.at(i)->values.value(role).toString();
2586 if (newGroupValue != groupValue || isFirstGroupValue) {
2587 groupValue = newGroupValue;
2588 groups.append(QPair<int, QVariant>(i, newGroupValue));
2589 isFirstGroupValue = false;
2590 }
2591 }
2592
2593 return groups;
2594 }
2595
2596 void KFileItemModel::emitSortProgress(int resolvedCount)
2597 {
2598 // Be tolerant against a resolvedCount with a wrong range.
2599 // Although there should not be a case where KFileItemModelRolesUpdater
2600 // (= caller) provides a wrong range, it is important to emit
2601 // a useful progress information even if there is an unexpected
2602 // implementation issue.
2603
2604 const int itemCount = count();
2605 if (resolvedCount >= itemCount) {
2606 m_sortingProgressPercent = -1;
2607 if (m_resortAllItemsTimer->isActive()) {
2608 m_resortAllItemsTimer->stop();
2609 resortAllItems();
2610 }
2611
2612 Q_EMIT directorySortingProgress(100);
2613 } else if (itemCount > 0) {
2614 resolvedCount = qBound(0, resolvedCount, itemCount);
2615
2616 const int progress = resolvedCount * 100 / itemCount;
2617 if (m_sortingProgressPercent != progress) {
2618 m_sortingProgressPercent = progress;
2619 Q_EMIT directorySortingProgress(progress);
2620 }
2621 }
2622 }
2623
2624 const KFileItemModel::RoleInfoMap* KFileItemModel::rolesInfoMap(int& count)
2625 {
2626 static const RoleInfoMap rolesInfoMap[] = {
2627 // | role | roleType | role translation | group translation | requires Baloo | requires indexer
2628 { nullptr, NoRole, KLazyLocalizedString(), KLazyLocalizedString(), false, false },
2629 { "text", NameRole, kli18nc("@label", "Name"), KLazyLocalizedString(), false, false },
2630 { "size", SizeRole, kli18nc("@label", "Size"), KLazyLocalizedString(), false, false },
2631 { "modificationtime", ModificationTimeRole, kli18nc("@label", "Modified"), KLazyLocalizedString(), false, false },
2632 { "creationtime", CreationTimeRole, kli18nc("@label", "Created"), KLazyLocalizedString(), false, false },
2633 { "accesstime", AccessTimeRole, kli18nc("@label", "Accessed"), KLazyLocalizedString(), false, false },
2634 { "type", TypeRole, kli18nc("@label", "Type"), KLazyLocalizedString(), false, false },
2635 { "rating", RatingRole, kli18nc("@label", "Rating"), KLazyLocalizedString(), true, false },
2636 { "tags", TagsRole, kli18nc("@label", "Tags"), KLazyLocalizedString(), true, false },
2637 { "comment", CommentRole, kli18nc("@label", "Comment"), KLazyLocalizedString(), true, false },
2638 { "title", TitleRole, kli18nc("@label", "Title"), kli18nc("@label", "Document"), true, true },
2639 { "author", AuthorRole, kli18nc("@label", "Author"), kli18nc("@label", "Document"), true, true },
2640 { "wordCount", WordCountRole, kli18nc("@label", "Word Count"), kli18nc("@label", "Document"), true, true },
2641 { "lineCount", LineCountRole, kli18nc("@label", "Line Count"), kli18nc("@label", "Document"), true, true },
2642 { "imageDateTime", ImageDateTimeRole, kli18nc("@label", "Date Photographed"), kli18nc("@label", "Image"), true, true },
2643 { "dimensions", DimensionsRole, kli18nc("@label width x height", "Dimensions"), kli18nc("@label", "Image"), true, true },
2644 { "width", WidthRole, kli18nc("@label", "Width"), kli18nc("@label", "Image"), true, true },
2645 { "height", HeightRole, kli18nc("@label", "Height"), kli18nc("@label", "Image"), true, true },
2646 { "orientation", OrientationRole, kli18nc("@label", "Orientation"), kli18nc("@label", "Image"), true, true },
2647 { "artist", ArtistRole, kli18nc("@label", "Artist"), kli18nc("@label", "Audio"), true, true },
2648 { "genre", GenreRole, kli18nc("@label", "Genre"), kli18nc("@label", "Audio"), true, true },
2649 { "album", AlbumRole, kli18nc("@label", "Album"), kli18nc("@label", "Audio"), true, true },
2650 { "duration", DurationRole, kli18nc("@label", "Duration"), kli18nc("@label", "Audio"), true, true },
2651 { "bitrate", BitrateRole, kli18nc("@label", "Bitrate"), kli18nc("@label", "Audio"), true, true },
2652 { "track", TrackRole, kli18nc("@label", "Track"), kli18nc("@label", "Audio"), true, true },
2653 { "releaseYear", ReleaseYearRole, kli18nc("@label", "Release Year"), kli18nc("@label", "Audio"), true, true },
2654 { "aspectRatio", AspectRatioRole, kli18nc("@label", "Aspect Ratio"), kli18nc("@label", "Video"), true, true },
2655 { "frameRate", FrameRateRole, kli18nc("@label", "Frame Rate"), kli18nc("@label", "Video"), true, true },
2656 { "path", PathRole, kli18nc("@label", "Path"), kli18nc("@label", "Other"), false, false },
2657 { "extension", ExtensionRole, kli18nc("@label", "File Extension"), kli18nc("@label", "Other"), false, false },
2658 { "deletiontime", DeletionTimeRole, kli18nc("@label", "Deletion Time"), kli18nc("@label", "Other"), false, false },
2659 { "destination", DestinationRole, kli18nc("@label", "Link Destination"), kli18nc("@label", "Other"), false, false },
2660 { "originUrl", OriginUrlRole, kli18nc("@label", "Downloaded From"), kli18nc("@label", "Other"), true, false },
2661 { "permissions", PermissionsRole, kli18nc("@label", "Permissions"), kli18nc("@label", "Other"), false, false },
2662 { "owner", OwnerRole, kli18nc("@label", "Owner"), kli18nc("@label", "Other"), false, false },
2663 { "group", GroupRole, kli18nc("@label", "User Group"), kli18nc("@label", "Other"), false, false },
2664 };
2665
2666 count = sizeof(rolesInfoMap) / sizeof(RoleInfoMap);
2667 return rolesInfoMap;
2668 }
2669
2670 void KFileItemModel::determineMimeTypes(const KFileItemList& items, int timeout)
2671 {
2672 QElapsedTimer timer;
2673 timer.start();
2674 for (const KFileItem& item : items) {
2675 // Only determine mime types for files here. For directories,
2676 // KFileItem::determineMimeType() reads the .directory file inside to
2677 // load the icon, but this is not necessary at all if we just need the
2678 // type. Some special code for setting the correct mime type for
2679 // directories is in retrieveData().
2680 if (!item.isDir()) {
2681 item.determineMimeType();
2682 }
2683
2684 if (timer.elapsed() > timeout) {
2685 // Don't block the user interface, let the remaining items
2686 // be resolved asynchronously.
2687 return;
2688 }
2689 }
2690 }
2691
2692 QByteArray KFileItemModel::sharedValue(const QByteArray& value)
2693 {
2694 static QSet<QByteArray> pool;
2695 const QSet<QByteArray>::const_iterator it = pool.constFind(value);
2696
2697 if (it != pool.constEnd()) {
2698 return *it;
2699 } else {
2700 pool.insert(value);
2701 return value;
2702 }
2703 }
2704
2705 bool KFileItemModel::isConsistent() const
2706 {
2707 // m_items may contain less items than m_itemData because m_items
2708 // is populated lazily, see KFileItemModel::index(const QUrl& url).
2709 if (m_items.count() > m_itemData.count()) {
2710 return false;
2711 }
2712
2713 for (int i = 0, iMax = count(); i < iMax; ++i) {
2714 // Check if m_items and m_itemData are consistent.
2715 const KFileItem item = fileItem(i);
2716 if (item.isNull()) {
2717 qCWarning(DolphinDebug) << "Item" << i << "is null";
2718 return false;
2719 }
2720
2721 const int itemIndex = index(item);
2722 if (itemIndex != i) {
2723 qCWarning(DolphinDebug) << "Item" << i << "has a wrong index:" << itemIndex;
2724 return false;
2725 }
2726
2727 // Check if the items are sorted correctly.
2728 if (i > 0 && !lessThan(m_itemData.at(i - 1), m_itemData.at(i), m_collator)) {
2729 qCWarning(DolphinDebug) << "The order of items" << i - 1 << "and" << i << "is wrong:"
2730 << fileItem(i - 1) << fileItem(i);
2731 return false;
2732 }
2733
2734 // Check if all parent-child relationships are consistent.
2735 const ItemData* data = m_itemData.at(i);
2736 const ItemData* parent = data->parent;
2737 if (parent) {
2738 if (expandedParentsCount(data) != expandedParentsCount(parent) + 1) {
2739 qCWarning(DolphinDebug) << "expandedParentsCount is inconsistent for parent" << parent->item << "and child" << data->item;
2740 return false;
2741 }
2742
2743 const int parentIndex = index(parent->item);
2744 if (parentIndex >= i) {
2745 qCWarning(DolphinDebug) << "Index" << parentIndex << "of parent" << parent->item << "is not smaller than index" << i << "of child" << data->item;
2746 return false;
2747 }
2748 }
2749 }
2750
2751 return true;
2752 }
2753
2754 void KFileItemModel::slotListerError(KIO::Job *job)
2755 {
2756 if (job->error() == KIO::ERR_IS_FILE) {
2757 if (auto *listJob = qobject_cast<KIO::ListJob *>(job)) {
2758 Q_EMIT urlIsFileError(listJob->url());
2759 }
2760 } else {
2761 const QString errorString = job->errorString();
2762 Q_EMIT errorMessage(!errorString.isEmpty() ? errorString : i18nc("@info:status", "Unknown error."));
2763 }
2764 }