Files
rawTherapee/rtgui/thumbbrowserbase.cc
Thanatomanic b5310d4bc6 Scrolling speed changed to height of thumbnail.
This works really well in the browser. Horizontal scrolling has the same speed, which works reasonably well too (unless you have images with abnormal aspect ratio's).
2018-07-01 09:36:38 +02:00

1107 lines
33 KiB
C++

/*
* This file is part of RawTherapee.
*
* RawTherapee is free software: you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation, either version 3 of the License, or
* (at your option) any later version.
*
* RawTherapee is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with RawTherapee. If not, see <http://www.gnu.org/licenses/>.
*/
#include <numeric>
#include <glibmm.h>
#include "multilangmgr.h"
#include "options.h"
#include "thumbbrowserbase.h"
#include "../rtengine/mytime.h"
#include "../rtengine/rt_math.h"
using namespace std;
ThumbBrowserBase::ThumbBrowserBase ()
: location(THLOC_FILEBROWSER), inspector(nullptr), isInspectorActive(false), eventTime(0), lastClicked(nullptr), previewHeight(options.thumbSize), numOfCols(1), arrangement(TB_Horizontal)
{
inW = -1;
inH = -1;
setExpandAlignProperties(&internal, true, true, Gtk::ALIGN_FILL, Gtk::ALIGN_FILL);
setExpandAlignProperties(&hscroll, true, false, Gtk::ALIGN_FILL, Gtk::ALIGN_CENTER);
setExpandAlignProperties(&vscroll, false, true, Gtk::ALIGN_CENTER, Gtk::ALIGN_FILL);
attach (internal, 0, 0, 1, 1);
attach (vscroll, 1, 0, 1, 1);
attach (hscroll, 0, 1, 1, 1);
internal.setParent (this);
show_all ();
vscroll.signal_value_changed().connect( sigc::mem_fun(*this, &ThumbBrowserBase::scrollChanged) );
hscroll.signal_value_changed().connect( sigc::mem_fun(*this, &ThumbBrowserBase::scrollChanged) );
internal.signal_size_allocate().connect( sigc::mem_fun(*this, &ThumbBrowserBase::internalAreaResized) );
}
void ThumbBrowserBase::scrollChanged ()
{
{
MYWRITERLOCK(l, entryRW);
for (size_t i = 0; i < fd.size(); i++) {
fd[i]->setOffset ((int)(hscroll.get_value()), (int)(vscroll.get_value()));
}
}
internal.setPosition ((int)(hscroll.get_value()), (int)(vscroll.get_value()));
if (!internal.isDirty()) {
internal.setDirty ();
internal.queue_draw ();
}
}
void ThumbBrowserBase::scroll (int direction)
{
// GUI already acquired when here
if (direction == GDK_SCROLL_UP || direction == GDK_SCROLL_DOWN) {
if (arrangement == TB_Vertical) {
vscroll.set_value (vscroll.get_value() + (direction == GDK_SCROLL_DOWN ? +1 : -1) * vscroll.get_adjustment()->get_step_increment());
} else {
hscroll.set_value (hscroll.get_value() + (direction == GDK_SCROLL_DOWN ? +1 : -1) * hscroll.get_adjustment()->get_step_increment());
}
}
}
void ThumbBrowserBase::scrollPage (int direction)
{
// GUI already acquired when here
if (direction == GDK_SCROLL_UP || direction == GDK_SCROLL_DOWN) {
if (arrangement == TB_Vertical) {
vscroll.set_value (vscroll.get_value() + (direction == GDK_SCROLL_DOWN ? +1 : -1) * vscroll.get_adjustment()->get_page_increment());
} else {
hscroll.set_value (hscroll.get_value() + (direction == GDK_SCROLL_DOWN ? +1 : -1) * hscroll.get_adjustment()->get_page_increment());
}
}
}
namespace
{
typedef std::vector<ThumbBrowserEntryBase*> ThumbVector;
typedef ThumbVector::iterator ThumbIterator;
inline void clearSelection (ThumbVector& selected)
{
for (ThumbIterator thumb = selected.begin (); thumb != selected.end (); ++thumb)
(*thumb)->selected = false;
selected.clear ();
}
inline void addToSelection (ThumbBrowserEntryBase* entry, ThumbVector& selected)
{
if (entry->selected || entry->filtered)
return;
entry->selected = true;
selected.push_back (entry);
}
inline void removeFromSelection (const ThumbIterator& iterator, ThumbVector& selected)
{
(*iterator)->selected = false;
selected.erase (iterator);
}
}
void ThumbBrowserBase::selectSingle (ThumbBrowserEntryBase* clicked)
{
clearSelection (selected);
if (clicked)
addToSelection (clicked, selected);
}
void ThumbBrowserBase::selectRange (ThumbBrowserEntryBase* clicked, bool additional)
{
if (selected.empty ()) {
addToSelection (clicked, selected);
return;
}
if (!additional || !lastClicked) {
// Extend the current range w.r.t to first selected entry.
ThumbIterator front = std::find (fd.begin (), fd.end (), selected.front ());
ThumbIterator current = std::find (fd.begin (), fd.end (), clicked);
if (front > current)
std::swap (front, current);
clearSelection (selected);
for (; front <= current; ++front)
addToSelection (*front, selected);
} else {
// Add an additional range w.r.t. the last clicked entry.
ThumbIterator last = std::find (fd.begin (), fd.end (), lastClicked);
ThumbIterator current = std::find (fd.begin (), fd.end (), clicked);
if (last > current)
std::swap (last, current);
for (; last <= current; ++last)
addToSelection (*last, selected);
}
}
void ThumbBrowserBase::selectSet (ThumbBrowserEntryBase* clicked)
{
const ThumbIterator iterator = std::find (selected.begin (), selected.end (), clicked);
if (iterator != selected.end ()) {
removeFromSelection (iterator, selected);
} else {
addToSelection (clicked, selected);
}
}
static void scrollToEntry (double& h, double& v, int iw, int ih, ThumbBrowserEntryBase* entry)
{
const int hmin = entry->getX ();
const int hmax = hmin + entry->getEffectiveWidth () - iw;
const int vmin = entry->getY ();
const int vmax = vmin + entry->getEffectiveHeight () - ih;
if (hmin < 0) {
h += hmin;
} else if (hmax > 0) {
h += hmax;
}
if(vmin < 0) {
v += vmin;
} else if (vmax > 0) {
v += vmax;
}
}
void ThumbBrowserBase::selectPrev (int distance, bool enlarge)
{
double h, v;
getScrollPosition (h, v);
{
MYWRITERLOCK(l, entryRW);
if (!selected.empty ()) {
std::vector<ThumbBrowserEntryBase*>::iterator front = std::find (fd.begin (), fd.end (), selected.front ());
std::vector<ThumbBrowserEntryBase*>::iterator back = std::find (fd.begin (), fd.end (), selected.back ());
std::vector<ThumbBrowserEntryBase*>::iterator last = std::find (fd.begin (), fd.end (), lastClicked);
if (front > back) {
std::swap(front, back);
}
std::vector<ThumbBrowserEntryBase*>::iterator& curr = last == front ? front : back;
// find next thumbnail at filtered distance before current
for (; curr >= fd.begin (); --curr) {
if (!(*curr)->filtered) {
if (distance-- == 0) {
// clear current selection
for (size_t i = 0; i < selected.size (); ++i) {
selected[i]->selected = false;
redrawNeeded (selected[i]);
}
selected.clear ();
// make sure the newly selected thumbnail is visible and make it current
scrollToEntry (h, v, internal.get_width (), internal.get_height (), *curr);
lastClicked = *curr;
// either enlarge current selection or set new selection
if(enlarge) {
// reverse direction if distance is too large
if(front > back) {
std::swap(front, back);
}
for (; front <= back; ++front) {
if (!(*front)->filtered) {
(*front)->selected = true;
redrawNeeded (*front);
selected.push_back (*front);
}
}
} else {
(*curr)->selected = true;
redrawNeeded (*curr);
selected.push_back (*curr);
}
break;
}
}
}
}
MYWRITERLOCK_RELEASE(l);
selectionChanged ();
}
setScrollPosition (h, v);
}
void ThumbBrowserBase::selectNext (int distance, bool enlarge)
{
double h, v;
getScrollPosition (h, v);
{
MYWRITERLOCK(l, entryRW);
if (!selected.empty ()) {
std::vector<ThumbBrowserEntryBase*>::iterator front = std::find (fd.begin (), fd.end (), selected.front ());
std::vector<ThumbBrowserEntryBase*>::iterator back = std::find (fd.begin (), fd.end (), selected.back ());
std::vector<ThumbBrowserEntryBase*>::iterator last = std::find (fd.begin (), fd.end (), lastClicked);
if (front > back) {
std::swap(front, back);
}
std::vector<ThumbBrowserEntryBase*>::iterator& curr = last == back ? back : front;
// find next thumbnail at filtered distance after current
for (; curr < fd.end (); ++curr) {
if (!(*curr)->filtered) {
if (distance-- == 0) {
// clear current selection
for (size_t i = 0; i < selected.size (); ++i) {
selected[i]->selected = false;
redrawNeeded (selected[i]);
}
selected.clear ();
// make sure the newly selected thumbnail is visible and make it current
scrollToEntry (h, v, internal.get_width (), internal.get_height (), *curr);
lastClicked = *curr;
// either enlarge current selection or set new selection
if(enlarge) {
// reverse direction if distance is too large
if(front > back) {
std::swap(front, back);
}
for (; front <= back; ++front) {
if (!(*front)->filtered) {
(*front)->selected = true;
redrawNeeded (*front);
selected.push_back (*front);
}
}
} else {
(*curr)->selected = true;
redrawNeeded (*curr);
selected.push_back (*curr);
}
break;
}
}
}
}
MYWRITERLOCK_RELEASE(l);
selectionChanged ();
}
setScrollPosition (h, v);
}
void ThumbBrowserBase::selectFirst (bool enlarge)
{
double h, v;
getScrollPosition (h, v);
{
MYWRITERLOCK(l, entryRW);
if (!fd.empty ()) {
// find first unfiltered entry
std::vector<ThumbBrowserEntryBase*>::iterator first = fd.begin ();
for (; first < fd.end (); ++first) {
if (!(*first)->filtered) {
break;
}
}
scrollToEntry (h, v, internal.get_width (), internal.get_height (), *first);
ThumbBrowserEntryBase* lastEntry = lastClicked;
lastClicked = *first;
if(selected.empty ()) {
(*first)->selected = true;
redrawNeeded (*first);
selected.push_back (*first);
} else {
std::vector<ThumbBrowserEntryBase*>::iterator back = std::find (fd.begin (), fd.end (), lastEntry ? lastEntry : selected.back ());
if (first > back) {
std::swap(first, back);
}
// clear current selection
for (size_t i = 0; i < selected.size (); ++i) {
selected[i]->selected = false;
redrawNeeded (selected[i]);
}
selected.clear ();
// either enlarge current selection or set new selection
for (; first <= back; ++first) {
if (!(*first)->filtered) {
(*first)->selected = true;
redrawNeeded (*first);
selected.push_back (*first);
}
if (!enlarge) {
break;
}
}
}
}
MYWRITERLOCK_RELEASE(l);
selectionChanged ();
}
setScrollPosition (h, v);
}
void ThumbBrowserBase::selectLast (bool enlarge)
{
double h, v;
getScrollPosition (h, v);
{
MYWRITERLOCK(l, entryRW);
if (!fd.empty ()) {
// find last unfiltered entry
std::vector<ThumbBrowserEntryBase*>::iterator last = fd.end () - 1;
for (; last >= fd.begin (); --last) {
if (!(*last)->filtered) {
break;
}
}
scrollToEntry (h, v, internal.get_width (), internal.get_height (), *last);
ThumbBrowserEntryBase* lastEntry = lastClicked;
lastClicked = *last;
if(selected.empty()) {
(*last)->selected = true;
redrawNeeded (*last);
selected.push_back (*last);
} else {
std::vector<ThumbBrowserEntryBase*>::iterator front = std::find (fd.begin (), fd.end (), lastEntry ? lastEntry : selected.front ());
if (last < front) {
std::swap(last, front);
}
// clear current selection
for (size_t i = 0; i < selected.size (); ++i) {
selected[i]->selected = false;
redrawNeeded (selected[i]);
}
selected.clear ();
// either enlarge current selection or set new selection
for (; front <= last; --last) {
if (!(*last)->filtered) {
(*last)->selected = true;
redrawNeeded (*last);
selected.push_back (*last);
}
if (!enlarge) {
break;
}
}
std::reverse(selected.begin (), selected.end ());
}
}
MYWRITERLOCK_RELEASE(l);
selectionChanged ();
}
setScrollPosition (h, v);
}
void ThumbBrowserBase::resizeThumbnailArea (int w, int h)
{
inW = w;
inH = h;
if (hscroll.get_value() + internal.get_width() > inW) {
hscroll.set_value (inW - internal.get_width());
}
if (vscroll.get_value() + internal.get_height() > inH) {
vscroll.set_value (inH - internal.get_height());
}
configScrollBars ();
}
void ThumbBrowserBase::internalAreaResized (Gtk::Allocation& req)
{
if (inW > 0 && inH > 0) {
configScrollBars ();
redraw ();
}
}
void ThumbBrowserBase::configScrollBars ()
{
// HOMBRE:DELETE ME?
GThreadLock tLock; // Acquire the GUI
if (inW > 0 && inH > 0) {
int iw = internal.get_width ();
int ih = internal.get_height ();
hscroll.get_adjustment()->set_upper (inW);
vscroll.get_adjustment()->set_upper (inH);
hscroll.get_adjustment()->set_lower (0);
vscroll.get_adjustment()->set_lower (0);
hscroll.get_adjustment()->set_step_increment (getThumbnailHeight());
vscroll.get_adjustment()->set_step_increment (getThumbnailHeight());
hscroll.get_adjustment()->set_page_increment (iw);
vscroll.get_adjustment()->set_page_increment (ih);
hscroll.get_adjustment()->set_page_size (iw);
vscroll.get_adjustment()->set_page_size (ih);
if(iw >= inW) {
hscroll.hide();
} else {
hscroll.show();
}
if(ih >= inH) {
vscroll.hide();
} else {
vscroll.show();
}
}
}
void ThumbBrowserBase::arrangeFiles()
{
MYREADERLOCK(l, entryRW);
// GUI already locked by ::redraw, the only caller of this method for now.
// We could lock it one more time, there's no harm excepted (negligible) speed penalty
//GThreadLock lock;
int rowHeight = 0;
for (unsigned int i = 0; i < fd.size(); i++) {
// apply filter
fd[i]->filtered = !checkFilter (fd[i]);
// compute size of the items
if (!fd[i]->filtered && fd[i]->getMinimalHeight() > rowHeight) {
rowHeight = fd[i]->getMinimalHeight ();
}
}
if (arrangement == TB_Horizontal) {
numOfCols = 1;
int currx = 0;
for (unsigned int ct = 0; ct < fd.size(); ++ct) {
// arrange items in the column
int curry = 0;
for (; ct < fd.size() && fd[ct]->filtered; ++ct) {
fd[ct]->drawable = false;
}
if (ct < fd.size()) {
const int maxw = fd[ct]->getMinimalWidth();
fd[ct]->setPosition(currx, curry, maxw, rowHeight);
fd[ct]->drawable = true;
currx += maxw;
curry += rowHeight;
}
}
MYREADERLOCK_RELEASE(l);
// This will require a Writer access
resizeThumbnailArea(currx, rowHeight);
} else {
const int availWidth = internal.get_width();
// initial number of columns
numOfCols = 0;
int colsWidth = 0;
for (unsigned int i = 0; i < fd.size(); ++i) {
if (!fd[i]->filtered && colsWidth + fd[i]->getMinimalWidth() <= availWidth) {
colsWidth += fd[numOfCols]->getMinimalWidth();
++numOfCols;
if(colsWidth > availWidth) {
break;
}
}
}
if (numOfCols < 1) {
numOfCols = 1;
}
std::vector<int> colWidths;
for (; numOfCols > 0; --numOfCols) {
// compute column widths
colWidths.assign(numOfCols, 0);
for (unsigned int i = 0, j = 0; i < fd.size(); ++i) {
if (!fd[i]->filtered && fd[i]->getMinimalWidth() > colWidths[j % numOfCols]) {
colWidths[j % numOfCols] = fd[i]->getMinimalWidth();
}
if (!fd[i]->filtered) {
++j;
}
}
// if not wider than the space available, arrange it and we are ready
colsWidth = std::accumulate(colWidths.begin(), colWidths.end(), 0);
if (numOfCols == 1 || colsWidth < availWidth) {
break;
}
}
// arrange files
int curry = 0;
for (unsigned int ct = 0; ct < fd.size();) {
// arrange items in the row
int currx = 0;
for (int i = 0; ct < fd.size() && i < numOfCols; ++i, ++ct) {
for (; ct < fd.size() && fd[ct]->filtered; ++ct) {
fd[ct]->drawable = false;
}
if (ct < fd.size()) {
fd[ct]->setPosition(currx, curry, colWidths[i % numOfCols], rowHeight);
fd[ct]->drawable = true;
currx += colWidths[i % numOfCols];
}
}
if (currx > 0) { // there were thumbnails placed in the row
curry += rowHeight;
}
}
MYREADERLOCK_RELEASE(l);
// This will require a Writer access
resizeThumbnailArea (colsWidth, curry);
}
}
void ThumbBrowserBase::disableInspector()
{
if (inspector) {
inspector->setActive(false);
}
}
void ThumbBrowserBase::enableInspector()
{
if (inspector) {
inspector->setActive(true);
}
}
void ThumbBrowserBase::Internal::on_style_updated()
{
style = get_style_context ();
textn = style->get_color(Gtk::STATE_FLAG_NORMAL);
texts = style->get_color(Gtk::STATE_FLAG_SELECTED);
bgn = style->get_background_color(Gtk::STATE_FLAG_NORMAL);
bgs = style->get_background_color(Gtk::STATE_FLAG_SELECTED);
}
void ThumbBrowserBase::Internal::on_realize()
{
// Gtk signals automatically acquire the GUI (i.e. this method is enclosed by gdk_thread_enter and gdk_thread_leave)
Cairo::FontOptions cfo;
cfo.set_antialias (Cairo::ANTIALIAS_SUBPIXEL);
get_pango_context()->set_cairo_font_options (cfo);
Gtk::DrawingArea::on_realize();
style = get_style_context ();
textn = style->get_color(Gtk::STATE_FLAG_NORMAL);
texts = style->get_color(Gtk::STATE_FLAG_SELECTED);
bgn = style->get_background_color(Gtk::STATE_FLAG_NORMAL);
bgs = style->get_background_color(Gtk::STATE_FLAG_SELECTED);
set_can_focus(true);
add_events(Gdk::EXPOSURE_MASK | Gdk::BUTTON_PRESS_MASK | Gdk::BUTTON_RELEASE_MASK | Gdk::POINTER_MOTION_MASK | Gdk::SCROLL_MASK | Gdk::KEY_PRESS_MASK);
set_has_tooltip (true);
signal_query_tooltip().connect( sigc::mem_fun(*this, &ThumbBrowserBase::Internal::on_query_tooltip) );
}
bool ThumbBrowserBase::Internal::on_query_tooltip (int x, int y, bool keyboard_tooltip, const Glib::RefPtr<Gtk::Tooltip>& tooltip)
{
// Gtk signals automatically acquire the GUI (i.e. this method is enclosed by gdk_thread_enter and gdk_thread_leave)
Glib::ustring ttip = "";
{
MYREADERLOCK(l, parent->entryRW);
for (size_t i = 0; i < parent->fd.size(); i++)
if (parent->fd[i]->drawable && parent->fd[i]->inside (x, y)) {
ttip = parent->fd[i]->getToolTip (x, y);
break;
}
}
if (ttip != "") {
tooltip->set_markup (ttip);
return true;
} else {
return false;
}
}
void ThumbBrowserBase::on_style_updated ()
{
// GUI will be acquired by refreshThumbImages
refreshThumbImages ();
}
ThumbBrowserBase::Internal::Internal () : ofsX(0), ofsY(0), parent(nullptr), dirty(true)
{
Glib::RefPtr<Gtk::StyleContext> style = get_style_context();
set_name("FileCatalog");
}
void ThumbBrowserBase::Internal::setParent (ThumbBrowserBase* p)
{
parent = p;
}
void ThumbBrowserBase::Internal::setPosition (int x, int y)
{
ofsX = x;
ofsY = y;
}
bool ThumbBrowserBase::Internal::on_key_press_event (GdkEventKey* event)
{
// Gtk signals automatically acquire the GUI (i.e. this method is enclosed by gdk_thread_enter and gdk_thread_leave)
return parent->keyPressed (event);
}
bool ThumbBrowserBase::Internal::on_button_press_event (GdkEventButton* event)
{
// Gtk signals automatically acquire the GUI (i.e. this method is enclosed by gdk_thread_enter and gdk_thread_leave)
grab_focus ();
parent->eventTime = event->time;
parent->buttonPressed ((int)event->x, (int)event->y, event->button, event->type, event->state, 0, 0, get_width(), get_height());
Glib::RefPtr<Gdk::Window> window = get_window();
GdkRectangle rect;
rect.x = 0;
rect.y = 0;
rect.width = window->get_width();
rect.height = window->get_height();
gdk_window_invalidate_rect (window->gobj(), &rect, true);
gdk_window_process_updates (window->gobj(), true);
return true;
}
void ThumbBrowserBase::buttonPressed (int x, int y, int button, GdkEventType type, int state, int clx, int cly, int clw, int clh)
{
// GUI already acquired
ThumbBrowserEntryBase* fileDescr = nullptr;
bool handled = false;
{
MYREADERLOCK(l, entryRW);
for (size_t i = 0; i < fd.size(); i++)
if (fd[i]->drawable) {
if (fd[i]->inside (x, y) && fd[i]->insideWindow (clx, cly, clw, clh)) {
fileDescr = fd[i];
}
bool b = fd[i]->pressNotify (button, type, state, x, y);
handled = handled || b;
}
}
if (handled || (fileDescr && fileDescr->processing)) {
return;
}
{
MYWRITERLOCK(l, entryRW);
if (selected.size() == 1 && type == GDK_2BUTTON_PRESS && button == 1) {
doubleClicked (selected[0]);
} else if (button == 1 && type == GDK_BUTTON_PRESS) {
if (fileDescr && (state & GDK_SHIFT_MASK))
selectRange (fileDescr, state & GDK_CONTROL_MASK);
else if (fileDescr && (state & GDK_CONTROL_MASK))
selectSet (fileDescr);
else
selectSingle (fileDescr);
lastClicked = fileDescr;
MYWRITERLOCK_RELEASE(l);
selectionChanged ();
} else if (fileDescr && button == 3 && type == GDK_BUTTON_PRESS) {
if (!fileDescr->selected) {
selectSingle (fileDescr);
lastClicked = fileDescr;
MYWRITERLOCK_RELEASE(l);
selectionChanged ();
}
MYWRITERLOCK_RELEASE(l);
rightClicked (fileDescr);
}
} // end of MYWRITERLOCK(l, entryRW);
}
bool ThumbBrowserBase::Internal::on_draw(const ::Cairo::RefPtr< Cairo::Context> &cr)
{
// Gtk signals automatically acquire the GUI (i.e. this method is enclosed by gdk_thread_enter and gdk_thread_leave)
dirty = false;
int w = get_width();
int h = get_height();
// draw thumbnails
cr->set_antialias(Cairo::ANTIALIAS_NONE);
cr->set_line_join(Cairo::LINE_JOIN_MITER);
style->render_background(cr, 0., 0., w, h);
Glib::RefPtr<Pango::Context> context = get_pango_context ();
context->set_font_description (style->get_font());
{
MYWRITERLOCK(l, parent->entryRW);
for (size_t i = 0; i < parent->fd.size() && !dirty; i++) { // if dirty meanwhile, cancel and wait for next redraw
if (!parent->fd[i]->drawable || !parent->fd[i]->insideWindow (0, 0, w, h)) {
parent->fd[i]->updatepriority = false;
} else {
parent->fd[i]->updatepriority = true;
parent->fd[i]->draw (cr);
}
}
}
style->render_frame(cr, 0., 0., w, h);
return true;
}
Gtk::SizeRequestMode ThumbBrowserBase::Internal::get_request_mode_vfunc () const
{
return Gtk::SIZE_REQUEST_CONSTANT_SIZE;
}
void ThumbBrowserBase::Internal::get_preferred_height_vfunc (int &minimum_height, int &natural_height) const
{
minimum_height = 20;
natural_height = 80;
}
void ThumbBrowserBase::Internal::get_preferred_width_vfunc (int &minimum_width, int &natural_width) const
{
minimum_width = 200;
natural_width = 1000;
}
void ThumbBrowserBase::Internal::get_preferred_height_for_width_vfunc (int width, int &minimum_height, int &natural_height) const
{
get_preferred_height_vfunc(minimum_height, natural_height);
}
void ThumbBrowserBase::Internal::get_preferred_width_for_height_vfunc (int height, int &minimum_width, int &natural_width) const
{
get_preferred_width_vfunc (minimum_width, natural_width);
}
bool ThumbBrowserBase::Internal::on_button_release_event (GdkEventButton* event)
{
// Gtk signals automatically acquire the GUI (i.e. this method is enclosed by gdk_thread_enter and gdk_thread_leave)
int w = get_width();
int h = get_height();
MYREADERLOCK(l, parent->entryRW);
for (size_t i = 0; i < parent->fd.size(); i++)
if (parent->fd[i]->drawable && parent->fd[i]->insideWindow (0, 0, w, h)) {
ThumbBrowserEntryBase* tbe = parent->fd[i];
MYREADERLOCK_RELEASE(l);
// This will require a Writer access...
tbe->releaseNotify (event->button, event->type, event->state, (int)event->x, (int)event->y);
MYREADERLOCK_ACQUIRE(l);
}
return true;
}
bool ThumbBrowserBase::Internal::on_motion_notify_event (GdkEventMotion* event)
{
// Gtk signals automatically acquire the GUI (i.e. this method is enclosed by gdk_thread_enter and gdk_thread_leave)
int w = get_width();
int h = get_height();
MYREADERLOCK(l, parent->entryRW);
for (size_t i = 0; i < parent->fd.size(); i++)
if (parent->fd[i]->drawable && parent->fd[i]->insideWindow (0, 0, w, h)) {
parent->fd[i]->motionNotify ((int)event->x, (int)event->y);
}
return true;
}
bool ThumbBrowserBase::Internal::on_scroll_event (GdkEventScroll* event)
{
// Gtk signals automatically acquire the GUI (i.e. this method is enclosed by gdk_thread_enter and gdk_thread_leave)
parent->scroll (event->direction);
return true;
}
void ThumbBrowserBase::redraw ()
{
GThreadLock lock;
arrangeFiles ();
queue_draw ();
}
void ThumbBrowserBase::zoomChanged (bool zoomIn)
{
int newHeight = 0;
int optThumbSize = getThumbnailHeight();
if (zoomIn)
for (size_t i = 0; i < options.thumbnailZoomRatios.size(); i++) {
newHeight = (int)(options.thumbnailZoomRatios[i] * getMaxThumbnailHeight());
if (newHeight > optThumbSize) {
break;
}
}
else
for (size_t i = options.thumbnailZoomRatios.size() - 1; i > 0; i--) {
newHeight = (int)(options.thumbnailZoomRatios[i] * getMaxThumbnailHeight());
if (newHeight < optThumbSize) {
break;
}
}
previewHeight = newHeight;
saveThumbnailHeight(newHeight);
{
MYWRITERLOCK(l, entryRW);
for (size_t i = 0; i < fd.size(); i++) {
fd[i]->resize (previewHeight);
}
}
redraw ();
#ifdef WIN32
gdk_window_process_updates (get_window()->gobj(), true);
#endif
}
void ThumbBrowserBase::refreshThumbImages ()
{
int previewHeight = getThumbnailHeight();
{
MYWRITERLOCK(l, entryRW);
for (size_t i = 0; i < fd.size(); i++) {
fd[i]->resize (previewHeight);
}
}
redraw ();
}
void ThumbBrowserBase::refreshQuickThumbImages ()
{
MYWRITERLOCK(l, entryRW);
for (size_t i = 0; i < fd.size(); ++i) {
fd[i]->refreshQuickThumbnailImage ();
}
}
void ThumbBrowserBase::refreshEditedState (const std::set<Glib::ustring>& efiles)
{
editedFiles = efiles;
{
MYREADERLOCK(l, entryRW);
for (size_t i = 0; i < fd.size(); i++) {
fd[i]->framed = editedFiles.find (fd[i]->filename) != editedFiles.end();
}
}
queue_draw ();
}
void ThumbBrowserBase::setArrangement (Arrangement a)
{
arrangement = a;
redraw ();
}
void ThumbBrowserBase::enableTabMode(bool enable)
{
location = enable ? THLOC_EDITOR : THLOC_FILEBROWSER;
arrangement = enable ? ThumbBrowserBase::TB_Horizontal : ThumbBrowserBase::TB_Vertical;
if ((!options.sameThumbSize && (options.thumbSizeTab != options.thumbSize)) || (options.showFileNames || options.filmStripShowFileNames)) {
MYWRITERLOCK(l, entryRW);
for (size_t i = 0; i < fd.size(); i++) {
fd[i]->resize (getThumbnailHeight());
}
}
redraw ();
// Scroll to selected position if going into ribbon mode or back
// Tab mode is horizontal, file browser is vertical
{
MYREADERLOCK(l, entryRW);
if (!selected.empty()) {
if (enable) {
double h = selected[0]->getStartX();
MYREADERLOCK_RELEASE(l);
hscroll.set_value (min(h, hscroll.get_adjustment()->get_upper()));
} else {
double v = selected[0]->getStartY();
MYREADERLOCK_RELEASE(l);
vscroll.set_value (min(v, vscroll.get_adjustment()->get_upper()));
}
}
}
}
void ThumbBrowserBase::initEntry (ThumbBrowserEntryBase* entry)
{
entry->setOffset ((int)(hscroll.get_value()), (int)(vscroll.get_value()));
}
void ThumbBrowserBase::getScrollPosition (double& h, double& v)
{
h = hscroll.get_value ();
v = vscroll.get_value ();
}
void ThumbBrowserBase::setScrollPosition (double h, double v)
{
hscroll.set_value (h > hscroll.get_adjustment()->get_upper() ? hscroll.get_adjustment()->get_upper() : h);
vscroll.set_value (v > vscroll.get_adjustment()->get_upper() ? vscroll.get_adjustment()->get_upper() : v);
}
// needed for auto-height in single tab
int ThumbBrowserBase::getEffectiveHeight()
{
int h = hscroll.get_height() + 2; // have 2 pixels rounding error for scroll bars to appear
MYREADERLOCK(l, entryRW);
// Filtered items do not change in size, so take a non-filtered
for (size_t i = 0; i < fd.size(); i++)
if (!fd[i]->filtered) {
h += fd[i]->getEffectiveHeight();
break;
}
return h;
}
void ThumbBrowserBase::redrawNeeded (ThumbBrowserEntryBase* entry)
{
// HOMBRE:DELETE ME?
GThreadLock tLock; // Acquire the GUI
if (entry->insideWindow (0, 0, internal.get_width(), internal.get_height())) {
if (!internal.isDirty ()) {
internal.setDirty ();
internal.queue_draw ();
}
}
}