kwin/rules.cpp

1075 lines
34 KiB
C++
Raw Normal View History

/********************************************************************
KWin - the KDE window manager
This file is part of the KDE project.
Copyright (C) 2004 Lubos Lunak <l.lunak@kde.org>
This program 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 2 of the License, or
(at your option) any later version.
This program 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 this program. If not, see <http://www.gnu.org/licenses/>.
*********************************************************************/
#include "rules.h"
#include <fixx11h.h>
#include <kconfig.h>
#include <QRegExp>
#include <ktemporaryfile.h>
#include <QFile>
#include <ktoolinvocation.h>
#ifndef KCMRULES
2012-08-24 16:48:50 +00:00
#include <QDesktopWidget>
#include "client.h"
Improved resolving whether a window is on local machine Most windows use the hostname in WM_CLIENT_MACHINE, but there are windows using the FQDN (for example libreoffice). So instead of "foo" it is "foo.local.net" or similar. The logic so far has been unable to properly determine whether windows with FQDN are on the local system. In order to solve this problem the handling is split out into an own class which stores the information of hostname and whether it is a local machine. This is to not query multiple times. To determine whether the Client is on the local system getaddrinfo is used for the own hostname and the FQDN provided in WM_CLIENT_MACHINE. If one of the queried names matches, we know that it is on the local machine. The old logic to compare the hostname is still used and getaddrinfo is only a fallback in case hostname does not match. The problem with getaddrinfo is, that it accesses the network and by that could block. To circumvent this problem the calls are moved into threads by using QtConcurrent::run. Obviously this brings disadvantages. When trying to resolve whether a Client is on the local machine and a FQDN is used, the information is initially wrong. The new ClientMachine class emits a signal when the information that the system is local becomes available, but for some things this is just too late: * window rules are already gathered * Session Management has already taken place In both cases this is an acceptable loss. For window rules it just needs a proper matching of the machine in case of localhost (remote hosts are not affected). And the case of session management is very academic as it is unlikely that a restoring session contains remote windows. BUG: 308391 FIXED-IN: 4.11 REVIEW: 108235
2013-01-07 07:07:27 +00:00
#include "client_machine.h"
#include "workspace.h"
#endif
namespace KWin
{
Rules::Rules()
2011-01-30 14:34:42 +00:00
: temporary_state(0)
, wmclassmatch(UnimportantMatch)
, wmclasscomplete(UnimportantMatch)
, windowrolematch(UnimportantMatch)
, titlematch(UnimportantMatch)
, clientmachinematch(UnimportantMatch)
, types(NET::AllTypesMask)
, placementrule(UnusedForceRule)
, positionrule(UnusedSetRule)
, sizerule(UnusedSetRule)
, minsizerule(UnusedForceRule)
, maxsizerule(UnusedForceRule)
, opacityactiverule(UnusedForceRule)
, opacityinactiverule(UnusedForceRule)
, ignorepositionrule(UnusedForceRule)
, desktoprule(UnusedSetRule)
2012-08-24 16:48:50 +00:00
, screenrule(UnusedSetRule)
, activityrule(UnusedSetRule)
2011-01-30 14:34:42 +00:00
, typerule(UnusedForceRule)
, maximizevertrule(UnusedSetRule)
, maximizehorizrule(UnusedSetRule)
, minimizerule(UnusedSetRule)
, shaderule(UnusedSetRule)
, skiptaskbarrule(UnusedSetRule)
, skippagerrule(UnusedSetRule)
, skipswitcherrule(UnusedSetRule)
, aboverule(UnusedSetRule)
, belowrule(UnusedSetRule)
, fullscreenrule(UnusedSetRule)
, noborderrule(UnusedSetRule)
, blockcompositingrule(UnusedForceRule)
2011-01-30 14:34:42 +00:00
, fsplevelrule(UnusedForceRule)
, acceptfocusrule(UnusedForceRule)
, closeablerule(UnusedForceRule)
, autogrouprule(UnusedForceRule)
, autogroupfgrule(UnusedForceRule)
, autogroupidrule(UnusedForceRule)
, strictgeometryrule(UnusedForceRule)
, shortcutrule(UnusedSetRule)
, disableglobalshortcutsrule(UnusedForceRule)
{
}
2011-01-30 14:34:42 +00:00
Rules::Rules(const QString& str, bool temporary)
: temporary_state(temporary ? 2 : 0)
{
KTemporaryFile file;
2011-01-30 14:34:42 +00:00
if (file.open()) {
QByteArray s = str.toUtf8();
2011-01-30 14:34:42 +00:00
file.write(s.data(), s.length());
}
file.flush();
2011-01-30 14:34:42 +00:00
KConfig cfg(file.fileName(), KConfig::SimpleConfig);
readFromCfg(cfg.group(QString()));
if (description.isEmpty())
description = "temporary";
2011-01-30 14:34:42 +00:00
}
#define READ_MATCH_STRING( var, func ) \
var = cfg.readEntry( #var ) func; \
var##match = (StringMatch) qMax( FirstStringMatch, \
2011-01-30 14:34:42 +00:00
qMin( LastStringMatch, static_cast< StringMatch >( cfg.readEntry( #var "match",0 ))));
#define READ_SET_RULE( var, func, def ) \
var = func ( cfg.readEntry( #var, def)); \
var##rule = readSetRule( cfg, #var "rule" );
#define READ_SET_RULE_DEF( var , func, def ) \
var = func ( cfg.readEntry( #var, def )); \
var##rule = readSetRule( cfg, #var "rule" );
#define READ_FORCE_RULE( var, func, def) \
var = func ( cfg.readEntry( #var, def)); \
var##rule = readForceRule( cfg, #var "rule" );
#define READ_FORCE_RULE2( var, def, func, funcarg ) \
var = func ( cfg.readEntry( #var, def),funcarg ); \
var##rule = readForceRule( cfg, #var "rule" );
2011-01-30 14:34:42 +00:00
Rules::Rules(const KConfigGroup& cfg)
: temporary_state(0)
{
readFromCfg(cfg);
}
static int limit0to4(int i)
{
return qMax(0, qMin(4, i));
}
2011-01-30 14:34:42 +00:00
void Rules::readFromCfg(const KConfigGroup& cfg)
{
description = cfg.readEntry("Description");
if (description.isEmpty()) // capitalized first, lowercase for backwards compatibility
description = cfg.readEntry("description");
READ_MATCH_STRING(wmclass, .toLower().toLatin1());
wmclasscomplete = cfg.readEntry("wmclasscomplete" , false);
READ_MATCH_STRING(windowrole, .toLower().toLatin1());
READ_MATCH_STRING(title,);
READ_MATCH_STRING(clientmachine, .toLower().toLatin1());
types = cfg.readEntry("types", uint(NET::AllTypesMask));
READ_FORCE_RULE2(placement, QString(), Placement::policyFromString, false);
READ_SET_RULE_DEF(position, , invalidPoint);
READ_SET_RULE(size, , QSize());
if (size.isEmpty() && sizerule != (SetRule)Remember)
sizerule = UnusedSetRule;
2011-01-30 14:34:42 +00:00
READ_FORCE_RULE(minsize, , QSize());
if (!minsize.isValid())
minsize = QSize(1, 1);
READ_FORCE_RULE(maxsize, , QSize());
if (maxsize.isEmpty())
maxsize = QSize(32767, 32767);
READ_FORCE_RULE(opacityactive, , 0);
if (opacityactive < 0 || opacityactive > 100)
opacityactive = 100;
2011-01-30 14:34:42 +00:00
READ_FORCE_RULE(opacityinactive, , 0);
if (opacityinactive < 0 || opacityinactive > 100)
opacityinactive = 100;
2011-01-30 14:34:42 +00:00
READ_FORCE_RULE(ignoreposition, , false);
READ_SET_RULE(desktop, , 0);
2012-08-24 16:48:50 +00:00
READ_SET_RULE(screen, , 0);
READ_SET_RULE(activity, , QString());
2011-01-30 14:34:42 +00:00
type = readType(cfg, "type");
typerule = type != NET::Unknown ? readForceRule(cfg, "typerule") : UnusedForceRule;
READ_SET_RULE(maximizevert, , false);
READ_SET_RULE(maximizehoriz, , false);
READ_SET_RULE(minimize, , false);
READ_SET_RULE(shade, , false);
READ_SET_RULE(skiptaskbar, , false);
READ_SET_RULE(skippager, , false);
READ_SET_RULE(skipswitcher, , false);
READ_SET_RULE(above, , false);
READ_SET_RULE(below, , false);
READ_SET_RULE(fullscreen, , false);
READ_SET_RULE(noborder, , false);
READ_FORCE_RULE(blockcompositing, , false);
2011-01-30 14:34:42 +00:00
READ_FORCE_RULE(fsplevel, limit0to4, 0); // fsp is 0-4
READ_FORCE_RULE(acceptfocus, , false);
READ_FORCE_RULE(closeable, , false);
READ_FORCE_RULE(autogroup, , false);
READ_FORCE_RULE(autogroupfg, , true);
READ_FORCE_RULE(autogroupid, , QString());
READ_FORCE_RULE(strictgeometry, , false);
READ_SET_RULE(shortcut, , QString());
READ_FORCE_RULE(disableglobalshortcuts, , false);
}
#undef READ_MATCH_STRING
#undef READ_SET_RULE
#undef READ_FORCE_RULE
#undef READ_FORCE_RULE2
#define WRITE_MATCH_STRING( var, cast, force ) \
2011-01-30 14:34:42 +00:00
if ( !var.isEmpty() || force ) \
{ \
cfg.writeEntry( #var, cast var ); \
cfg.writeEntry( #var "match", (int)var##match ); \
2011-01-30 14:34:42 +00:00
} \
else \
2011-01-30 14:34:42 +00:00
{ \
cfg.deleteEntry( #var ); \
cfg.deleteEntry( #var "match" ); \
2011-01-30 14:34:42 +00:00
}
#define WRITE_SET_RULE( var, func ) \
2011-01-30 14:34:42 +00:00
if ( var##rule != UnusedSetRule ) \
{ \
cfg.writeEntry( #var, func ( var )); \
cfg.writeEntry( #var "rule", (int)var##rule ); \
2011-01-30 14:34:42 +00:00
} \
else \
2011-01-30 14:34:42 +00:00
{ \
cfg.deleteEntry( #var ); \
cfg.deleteEntry( #var "rule" ); \
2011-01-30 14:34:42 +00:00
}
#define WRITE_FORCE_RULE( var, func ) \
2011-01-30 14:34:42 +00:00
if ( var##rule != UnusedForceRule ) \
{ \
cfg.writeEntry( #var, func ( var )); \
cfg.writeEntry( #var "rule", (int)var##rule ); \
2011-01-30 14:34:42 +00:00
} \
else \
2011-01-30 14:34:42 +00:00
{ \
cfg.deleteEntry( #var ); \
cfg.deleteEntry( #var "rule" ); \
2011-01-30 14:34:42 +00:00
}
2011-01-30 14:34:42 +00:00
void Rules::write(KConfigGroup& cfg) const
{
cfg.writeEntry("Description", description);
// always write wmclass
2011-01-30 14:34:42 +00:00
WRITE_MATCH_STRING(wmclass, (const char*), true);
cfg.writeEntry("wmclasscomplete", wmclasscomplete);
WRITE_MATCH_STRING(windowrole, (const char*), false);
WRITE_MATCH_STRING(title, , false);
WRITE_MATCH_STRING(clientmachine, (const char*), false);
if (types != NET::AllTypesMask)
cfg.writeEntry("types", uint(types));
else
cfg.deleteEntry("types");
2011-01-30 14:34:42 +00:00
WRITE_FORCE_RULE(placement, Placement::policyToString);
WRITE_SET_RULE(position,);
WRITE_SET_RULE(size,);
WRITE_FORCE_RULE(minsize,);
WRITE_FORCE_RULE(maxsize,);
WRITE_FORCE_RULE(opacityactive,);
WRITE_FORCE_RULE(opacityinactive,);
WRITE_FORCE_RULE(ignoreposition,);
WRITE_SET_RULE(desktop,);
2012-08-24 16:48:50 +00:00
WRITE_SET_RULE(screen,);
WRITE_SET_RULE(activity,);
2011-01-30 14:34:42 +00:00
WRITE_FORCE_RULE(type, int);
WRITE_SET_RULE(maximizevert,);
WRITE_SET_RULE(maximizehoriz,);
WRITE_SET_RULE(minimize,);
WRITE_SET_RULE(shade,);
WRITE_SET_RULE(skiptaskbar,);
WRITE_SET_RULE(skippager,);
WRITE_SET_RULE(skipswitcher,);
WRITE_SET_RULE(above,);
WRITE_SET_RULE(below,);
WRITE_SET_RULE(fullscreen,);
WRITE_SET_RULE(noborder,);
WRITE_FORCE_RULE(blockcompositing,);
2011-01-30 14:34:42 +00:00
WRITE_FORCE_RULE(fsplevel,);
WRITE_FORCE_RULE(acceptfocus,);
WRITE_FORCE_RULE(closeable,);
WRITE_FORCE_RULE(autogroup,);
WRITE_FORCE_RULE(autogroupfg,);
WRITE_FORCE_RULE(autogroupid,);
WRITE_FORCE_RULE(strictgeometry,);
WRITE_SET_RULE(shortcut,);
WRITE_FORCE_RULE(disableglobalshortcuts,);
}
#undef WRITE_MATCH_STRING
#undef WRITE_SET_RULE
#undef WRITE_FORCE_RULE
// returns true if it doesn't affect anything
bool Rules::isEmpty() const
2011-01-30 14:34:42 +00:00
{
return(placementrule == UnusedForceRule
&& positionrule == UnusedSetRule
&& sizerule == UnusedSetRule
&& minsizerule == UnusedForceRule
&& maxsizerule == UnusedForceRule
&& opacityactiverule == UnusedForceRule
&& opacityinactiverule == UnusedForceRule
&& ignorepositionrule == UnusedForceRule
&& desktoprule == UnusedSetRule
2012-08-24 16:48:50 +00:00
&& screenrule == UnusedSetRule
&& activityrule == UnusedSetRule
2011-01-30 14:34:42 +00:00
&& typerule == UnusedForceRule
&& maximizevertrule == UnusedSetRule
&& maximizehorizrule == UnusedSetRule
&& minimizerule == UnusedSetRule
&& shaderule == UnusedSetRule
&& skiptaskbarrule == UnusedSetRule
&& skippagerrule == UnusedSetRule
&& skipswitcherrule == UnusedSetRule
&& aboverule == UnusedSetRule
&& belowrule == UnusedSetRule
&& fullscreenrule == UnusedSetRule
&& noborderrule == UnusedSetRule
&& blockcompositingrule == UnusedForceRule
2011-01-30 14:34:42 +00:00
&& fsplevelrule == UnusedForceRule
&& acceptfocusrule == UnusedForceRule
&& closeablerule == UnusedForceRule
&& autogrouprule == UnusedForceRule
&& autogroupfgrule == UnusedForceRule
&& autogroupidrule == UnusedForceRule
&& strictgeometryrule == UnusedForceRule
&& shortcutrule == UnusedSetRule
&& disableglobalshortcutsrule == UnusedForceRule);
}
Rules::SetRule Rules::readSetRule(const KConfigGroup& cfg, const QString& key)
{
int v = cfg.readEntry(key, 0);
if (v >= DontAffect && v <= ForceTemporarily)
return static_cast< SetRule >(v);
return UnusedSetRule;
2011-01-30 14:34:42 +00:00
}
2011-01-30 14:34:42 +00:00
Rules::ForceRule Rules::readForceRule(const KConfigGroup& cfg, const QString& key)
{
int v = cfg.readEntry(key, 0);
if (v == DontAffect || v == Force || v == ForceTemporarily)
return static_cast< ForceRule >(v);
return UnusedForceRule;
2011-01-30 14:34:42 +00:00
}
2011-01-30 14:34:42 +00:00
NET::WindowType Rules::readType(const KConfigGroup& cfg, const QString& key)
{
int v = cfg.readEntry(key, 0);
if (v >= NET::Normal && v <= NET::Splash)
return static_cast< NET::WindowType >(v);
return NET::Unknown;
2011-01-30 14:34:42 +00:00
}
2011-01-30 14:34:42 +00:00
bool Rules::matchType(NET::WindowType match_type) const
{
if (types != NET::AllTypesMask) {
if (match_type == NET::Unknown)
match_type = NET::Normal; // NET::Unknown->NET::Normal is only here for matching
2011-01-30 14:34:42 +00:00
if (!NET::typeMatchesMask(match_type, types))
return false;
}
2011-01-30 14:34:42 +00:00
return true;
}
2011-01-30 14:34:42 +00:00
bool Rules::matchWMClass(const QByteArray& match_class, const QByteArray& match_name) const
{
if (wmclassmatch != UnimportantMatch) {
// TODO optimize?
QByteArray cwmclass = wmclasscomplete
2011-01-30 14:34:42 +00:00
? match_name + ' ' + match_class : match_class;
if (wmclassmatch == RegExpMatch && QRegExp(wmclass).indexIn(cwmclass) == -1)
return false;
2011-01-30 14:34:42 +00:00
if (wmclassmatch == ExactMatch && wmclass != cwmclass)
return false;
2011-01-30 14:34:42 +00:00
if (wmclassmatch == SubstringMatch && !cwmclass.contains(wmclass))
return false;
}
2011-01-30 14:34:42 +00:00
return true;
}
2011-01-30 14:34:42 +00:00
bool Rules::matchRole(const QByteArray& match_role) const
{
if (windowrolematch != UnimportantMatch) {
if (windowrolematch == RegExpMatch && QRegExp(windowrole).indexIn(match_role) == -1)
return false;
2011-01-30 14:34:42 +00:00
if (windowrolematch == ExactMatch && windowrole != match_role)
return false;
2011-01-30 14:34:42 +00:00
if (windowrolematch == SubstringMatch && !match_role.contains(windowrole))
return false;
}
2011-01-30 14:34:42 +00:00
return true;
}
2011-01-30 14:34:42 +00:00
bool Rules::matchTitle(const QString& match_title) const
{
if (titlematch != UnimportantMatch) {
if (titlematch == RegExpMatch && QRegExp(title).indexIn(match_title) == -1)
return false;
2011-01-30 14:34:42 +00:00
if (titlematch == ExactMatch && title != match_title)
return false;
2011-01-30 14:34:42 +00:00
if (titlematch == SubstringMatch && !match_title.contains(title))
return false;
}
2011-01-30 14:34:42 +00:00
return true;
}
Improved resolving whether a window is on local machine Most windows use the hostname in WM_CLIENT_MACHINE, but there are windows using the FQDN (for example libreoffice). So instead of "foo" it is "foo.local.net" or similar. The logic so far has been unable to properly determine whether windows with FQDN are on the local system. In order to solve this problem the handling is split out into an own class which stores the information of hostname and whether it is a local machine. This is to not query multiple times. To determine whether the Client is on the local system getaddrinfo is used for the own hostname and the FQDN provided in WM_CLIENT_MACHINE. If one of the queried names matches, we know that it is on the local machine. The old logic to compare the hostname is still used and getaddrinfo is only a fallback in case hostname does not match. The problem with getaddrinfo is, that it accesses the network and by that could block. To circumvent this problem the calls are moved into threads by using QtConcurrent::run. Obviously this brings disadvantages. When trying to resolve whether a Client is on the local machine and a FQDN is used, the information is initially wrong. The new ClientMachine class emits a signal when the information that the system is local becomes available, but for some things this is just too late: * window rules are already gathered * Session Management has already taken place In both cases this is an acceptable loss. For window rules it just needs a proper matching of the machine in case of localhost (remote hosts are not affected). And the case of session management is very academic as it is unlikely that a restoring session contains remote windows. BUG: 308391 FIXED-IN: 4.11 REVIEW: 108235
2013-01-07 07:07:27 +00:00
bool Rules::matchClientMachine(const QByteArray& match_machine, bool local) const
2011-01-30 14:34:42 +00:00
{
if (clientmachinematch != UnimportantMatch) {
// if it's localhost, check also "localhost" before checking hostname
Improved resolving whether a window is on local machine Most windows use the hostname in WM_CLIENT_MACHINE, but there are windows using the FQDN (for example libreoffice). So instead of "foo" it is "foo.local.net" or similar. The logic so far has been unable to properly determine whether windows with FQDN are on the local system. In order to solve this problem the handling is split out into an own class which stores the information of hostname and whether it is a local machine. This is to not query multiple times. To determine whether the Client is on the local system getaddrinfo is used for the own hostname and the FQDN provided in WM_CLIENT_MACHINE. If one of the queried names matches, we know that it is on the local machine. The old logic to compare the hostname is still used and getaddrinfo is only a fallback in case hostname does not match. The problem with getaddrinfo is, that it accesses the network and by that could block. To circumvent this problem the calls are moved into threads by using QtConcurrent::run. Obviously this brings disadvantages. When trying to resolve whether a Client is on the local machine and a FQDN is used, the information is initially wrong. The new ClientMachine class emits a signal when the information that the system is local becomes available, but for some things this is just too late: * window rules are already gathered * Session Management has already taken place In both cases this is an acceptable loss. For window rules it just needs a proper matching of the machine in case of localhost (remote hosts are not affected). And the case of session management is very academic as it is unlikely that a restoring session contains remote windows. BUG: 308391 FIXED-IN: 4.11 REVIEW: 108235
2013-01-07 07:07:27 +00:00
if (match_machine != "localhost" && local
&& matchClientMachine("localhost", true))
return true;
2011-01-30 14:34:42 +00:00
if (clientmachinematch == RegExpMatch
&& QRegExp(clientmachine).indexIn(match_machine) == -1)
return false;
2011-01-30 14:34:42 +00:00
if (clientmachinematch == ExactMatch
&& clientmachine != match_machine)
return false;
2011-01-30 14:34:42 +00:00
if (clientmachinematch == SubstringMatch
&& !match_machine.contains(clientmachine))
return false;
}
2011-01-30 14:34:42 +00:00
return true;
}
#ifndef KCMRULES
2011-01-30 14:34:42 +00:00
bool Rules::match(const Client* c) const
{
if (!matchType(c->windowType(true)))
return false;
2011-01-30 14:34:42 +00:00
if (!matchWMClass(c->resourceClass(), c->resourceName()))
return false;
2011-01-30 14:34:42 +00:00
if (!matchRole(c->windowRole()))
return false;
2011-01-30 14:34:42 +00:00
if (!matchTitle(c->caption(false)))
return false;
Improved resolving whether a window is on local machine Most windows use the hostname in WM_CLIENT_MACHINE, but there are windows using the FQDN (for example libreoffice). So instead of "foo" it is "foo.local.net" or similar. The logic so far has been unable to properly determine whether windows with FQDN are on the local system. In order to solve this problem the handling is split out into an own class which stores the information of hostname and whether it is a local machine. This is to not query multiple times. To determine whether the Client is on the local system getaddrinfo is used for the own hostname and the FQDN provided in WM_CLIENT_MACHINE. If one of the queried names matches, we know that it is on the local machine. The old logic to compare the hostname is still used and getaddrinfo is only a fallback in case hostname does not match. The problem with getaddrinfo is, that it accesses the network and by that could block. To circumvent this problem the calls are moved into threads by using QtConcurrent::run. Obviously this brings disadvantages. When trying to resolve whether a Client is on the local machine and a FQDN is used, the information is initially wrong. The new ClientMachine class emits a signal when the information that the system is local becomes available, but for some things this is just too late: * window rules are already gathered * Session Management has already taken place In both cases this is an acceptable loss. For window rules it just needs a proper matching of the machine in case of localhost (remote hosts are not affected). And the case of session management is very academic as it is unlikely that a restoring session contains remote windows. BUG: 308391 FIXED-IN: 4.11 REVIEW: 108235
2013-01-07 07:07:27 +00:00
if (!matchClientMachine(c->clientMachine()->hostName(), c->clientMachine()->isLocal()))
return false;
return true;
2011-01-30 14:34:42 +00:00
}
#define NOW_REMEMBER(_T_, _V_) ((selection & _T_) && (_V_##rule == (SetRule)Remember))
bool Rules::update(Client* c, int selection)
2011-01-30 14:34:42 +00:00
{
// TODO check this setting is for this client ?
bool updated = false;
if NOW_REMEMBER(Position, position) {
2011-01-30 14:34:42 +00:00
if (!c->isFullScreen()) {
QPoint new_pos = position;
// don't use the position in the direction which is maximized
2011-01-30 14:34:42 +00:00
if ((c->maximizeMode() & MaximizeHorizontal) == 0)
new_pos.setX(c->pos().x());
if ((c->maximizeMode() & MaximizeVertical) == 0)
new_pos.setY(c->pos().y());
updated = updated || position != new_pos;
position = new_pos;
}
2011-01-30 14:34:42 +00:00
}
if NOW_REMEMBER(Size, size) {
2011-01-30 14:34:42 +00:00
if (!c->isFullScreen()) {
QSize new_size = size;
// don't use the position in the direction which is maximized
2011-01-30 14:34:42 +00:00
if ((c->maximizeMode() & MaximizeHorizontal) == 0)
new_size.setWidth(c->size().width());
if ((c->maximizeMode() & MaximizeVertical) == 0)
new_size.setHeight(c->size().height());
updated = updated || size != new_size;
size = new_size;
}
2011-01-30 14:34:42 +00:00
}
if NOW_REMEMBER(Desktop, desktop) {
updated = updated || desktop != c->desktop();
desktop = c->desktop();
2011-01-30 14:34:42 +00:00
}
2012-08-24 16:48:50 +00:00
if NOW_REMEMBER(Screen, screen) {
updated = updated || screen != c->screen();
screen = c->screen();
}
if NOW_REMEMBER(Activity, activity) {
// TODO: ivan - multiple activities support
const QString & joinedActivities = c->activities().join(",");
updated = updated || activity != joinedActivities;
activity = joinedActivities;
}
if NOW_REMEMBER(MaximizeVert, maximizevert) {
2011-01-30 14:34:42 +00:00
updated = updated || maximizevert != bool(c->maximizeMode() & MaximizeVertical);
maximizevert = c->maximizeMode() & MaximizeVertical;
2011-01-30 14:34:42 +00:00
}
if NOW_REMEMBER(MaximizeHoriz, maximizehoriz) {
2011-01-30 14:34:42 +00:00
updated = updated || maximizehoriz != bool(c->maximizeMode() & MaximizeHorizontal);
maximizehoriz = c->maximizeMode() & MaximizeHorizontal;
2011-01-30 14:34:42 +00:00
}
if NOW_REMEMBER(Minimize, minimize) {
updated = updated || minimize != c->isMinimized();
minimize = c->isMinimized();
2011-01-30 14:34:42 +00:00
}
if NOW_REMEMBER(Shade, shade) {
2011-01-30 14:34:42 +00:00
updated = updated || (shade != (c->shadeMode() != ShadeNone));
shade = c->shadeMode() != ShadeNone;
2011-01-30 14:34:42 +00:00
}
if NOW_REMEMBER(SkipTaskbar, skiptaskbar) {
updated = updated || skiptaskbar != c->skipTaskbar();
skiptaskbar = c->skipTaskbar();
2011-01-30 14:34:42 +00:00
}
if NOW_REMEMBER(SkipPager, skippager) {
updated = updated || skippager != c->skipPager();
skippager = c->skipPager();
2011-01-30 14:34:42 +00:00
}
if NOW_REMEMBER(SkipSwitcher, skipswitcher) {
updated = updated || skipswitcher != c->skipSwitcher();
skipswitcher = c->skipSwitcher();
2011-01-30 14:34:42 +00:00
}
if NOW_REMEMBER(Above, above) {
updated = updated || above != c->keepAbove();
above = c->keepAbove();
2011-01-30 14:34:42 +00:00
}
if NOW_REMEMBER(Below, below) {
updated = updated || below != c->keepBelow();
below = c->keepBelow();
2011-01-30 14:34:42 +00:00
}
if NOW_REMEMBER(Fullscreen, fullscreen) {
updated = updated || fullscreen != c->isFullScreen();
fullscreen = c->isFullScreen();
2011-01-30 14:34:42 +00:00
}
if NOW_REMEMBER(NoBorder, noborder) {
updated = updated || noborder != c->noBorder();
noborder = c->noBorder();
2011-01-30 14:34:42 +00:00
}
if NOW_REMEMBER(OpacityActive, opacityactive) {
// TODO
2011-01-30 14:34:42 +00:00
}
if NOW_REMEMBER(OpacityInactive, opacityinactive) {
// TODO
}
2011-01-30 14:34:42 +00:00
return updated;
}
#undef NOW_REMEMBER
#define APPLY_RULE( var, name, type ) \
2011-01-30 14:34:42 +00:00
bool Rules::apply##name( type& arg, bool init ) const \
{ \
2011-01-30 14:34:42 +00:00
if ( checkSetRule( var##rule, init )) \
arg = this->var; \
return checkSetStop( var##rule ); \
}
#define APPLY_FORCE_RULE( var, name, type ) \
2011-01-30 14:34:42 +00:00
bool Rules::apply##name( type& arg ) const \
{ \
2011-01-30 14:34:42 +00:00
if ( checkForceRule( var##rule )) \
arg = this->var; \
return checkForceStop( var##rule ); \
}
2011-01-30 14:34:42 +00:00
APPLY_FORCE_RULE(placement, Placement, Placement::Policy)
2011-01-30 14:34:42 +00:00
bool Rules::applyGeometry(QRect& rect, bool init) const
{
QPoint p = rect.topLeft();
QSize s = rect.size();
bool ret = false; // no short-circuiting
2011-01-30 14:34:42 +00:00
if (applyPosition(p, init)) {
rect.moveTopLeft(p);
ret = true;
2011-01-30 14:34:42 +00:00
}
if (applySize(s, init)) {
rect.setSize(s);
ret = true;
}
2011-01-30 14:34:42 +00:00
return ret;
}
2011-01-30 14:34:42 +00:00
bool Rules::applyPosition(QPoint& pos, bool init) const
{
if (this->position != invalidPoint && checkSetRule(positionrule, init))
pos = this->position;
2011-01-30 14:34:42 +00:00
return checkSetStop(positionrule);
}
2011-01-30 14:34:42 +00:00
bool Rules::applySize(QSize& s, bool init) const
{
if (this->size.isValid() && checkSetRule(sizerule, init))
s = this->size;
2011-01-30 14:34:42 +00:00
return checkSetStop(sizerule);
}
2011-01-30 14:34:42 +00:00
APPLY_FORCE_RULE(minsize, MinSize, QSize)
APPLY_FORCE_RULE(maxsize, MaxSize, QSize)
APPLY_FORCE_RULE(opacityactive, OpacityActive, int)
APPLY_FORCE_RULE(opacityinactive, OpacityInactive, int)
APPLY_FORCE_RULE(ignoreposition, IgnorePosition, bool)
// the cfg. entry needs to stay named the say for backwards compatibility
2011-01-30 14:34:42 +00:00
bool Rules::applyIgnoreGeometry(bool& ignore) const
{
return applyIgnorePosition(ignore);
}
2011-01-30 14:34:42 +00:00
APPLY_RULE(desktop, Desktop, int)
2012-08-24 16:48:50 +00:00
APPLY_RULE(screen, Screen, int)
APPLY_RULE(activity, Activity, QString)
2011-01-30 14:34:42 +00:00
APPLY_FORCE_RULE(type, Type, NET::WindowType)
2011-01-30 14:34:42 +00:00
bool Rules::applyMaximizeHoriz(MaximizeMode& mode, bool init) const
{
if (checkSetRule(maximizehorizrule, init))
mode = static_cast< MaximizeMode >((maximizehoriz ? MaximizeHorizontal : 0) | (mode & MaximizeVertical));
return checkSetStop(maximizehorizrule);
}
2011-01-30 14:34:42 +00:00
bool Rules::applyMaximizeVert(MaximizeMode& mode, bool init) const
{
if (checkSetRule(maximizevertrule, init))
mode = static_cast< MaximizeMode >((maximizevert ? MaximizeVertical : 0) | (mode & MaximizeHorizontal));
return checkSetStop(maximizevertrule);
}
2011-01-30 14:34:42 +00:00
APPLY_RULE(minimize, Minimize, bool)
2011-01-30 14:34:42 +00:00
bool Rules::applyShade(ShadeMode& sh, bool init) const
{
if (checkSetRule(shaderule, init)) {
if (!this->shade)
sh = ShadeNone;
2011-01-30 14:34:42 +00:00
if (this->shade && sh == ShadeNone)
sh = ShadeNormal;
}
2011-01-30 14:34:42 +00:00
return checkSetStop(shaderule);
}
APPLY_RULE(skiptaskbar, SkipTaskbar, bool)
APPLY_RULE(skippager, SkipPager, bool)
APPLY_RULE(skipswitcher, SkipSwitcher, bool)
APPLY_RULE(above, KeepAbove, bool)
APPLY_RULE(below, KeepBelow, bool)
APPLY_RULE(fullscreen, FullScreen, bool)
APPLY_RULE(noborder, NoBorder, bool)
APPLY_FORCE_RULE(blockcompositing, BlockCompositing, bool)
2011-01-30 14:34:42 +00:00
APPLY_FORCE_RULE(fsplevel, FSP, int)
APPLY_FORCE_RULE(acceptfocus, AcceptFocus, bool)
APPLY_FORCE_RULE(closeable, Closeable, bool)
APPLY_FORCE_RULE(autogroup, Autogrouping, bool)
APPLY_FORCE_RULE(autogroupfg, AutogroupInForeground, bool)
APPLY_FORCE_RULE(autogroupid, AutogroupById, QString)
APPLY_FORCE_RULE(strictgeometry, StrictGeometry, bool)
APPLY_RULE(shortcut, Shortcut, QString)
APPLY_FORCE_RULE(disableglobalshortcuts, DisableGlobalShortcuts, bool)
#undef APPLY_RULE
#undef APPLY_FORCE_RULE
bool Rules::isTemporary() const
2011-01-30 14:34:42 +00:00
{
return temporary_state > 0;
2011-01-30 14:34:42 +00:00
}
2011-01-30 14:34:42 +00:00
bool Rules::discardTemporary(bool force)
{
if (temporary_state == 0) // not temporary
return false;
2011-01-30 14:34:42 +00:00
if (force || --temporary_state == 0) { // too old
delete this;
return true;
}
2011-01-30 14:34:42 +00:00
return false;
}
#define DISCARD_USED_SET_RULE( var ) \
do { \
2011-01-30 14:34:42 +00:00
if ( var##rule == ( SetRule ) ApplyNow || ( withdrawn && var##rule == ( SetRule ) ForceTemporarily )) \
var##rule = UnusedSetRule; \
} while ( false )
#define DISCARD_USED_FORCE_RULE( var ) \
do { \
2011-01-30 14:34:42 +00:00
if ( withdrawn && var##rule == ( ForceRule ) ForceTemporarily ) \
var##rule = UnusedForceRule; \
} while ( false )
void Rules::discardUsed(bool withdrawn)
{
DISCARD_USED_FORCE_RULE(placement);
DISCARD_USED_SET_RULE(position);
DISCARD_USED_SET_RULE(size);
DISCARD_USED_FORCE_RULE(minsize);
DISCARD_USED_FORCE_RULE(maxsize);
DISCARD_USED_FORCE_RULE(opacityactive);
DISCARD_USED_FORCE_RULE(opacityinactive);
DISCARD_USED_FORCE_RULE(ignoreposition);
DISCARD_USED_SET_RULE(desktop);
2012-08-24 16:48:50 +00:00
DISCARD_USED_SET_RULE(screen);
DISCARD_USED_SET_RULE(activity);
2011-01-30 14:34:42 +00:00
DISCARD_USED_FORCE_RULE(type);
DISCARD_USED_SET_RULE(maximizevert);
DISCARD_USED_SET_RULE(maximizehoriz);
DISCARD_USED_SET_RULE(minimize);
DISCARD_USED_SET_RULE(shade);
DISCARD_USED_SET_RULE(skiptaskbar);
DISCARD_USED_SET_RULE(skippager);
DISCARD_USED_SET_RULE(skipswitcher);
DISCARD_USED_SET_RULE(above);
DISCARD_USED_SET_RULE(below);
DISCARD_USED_SET_RULE(fullscreen);
DISCARD_USED_SET_RULE(noborder);
DISCARD_USED_FORCE_RULE(blockcompositing);
2011-01-30 14:34:42 +00:00
DISCARD_USED_FORCE_RULE(fsplevel);
DISCARD_USED_FORCE_RULE(acceptfocus);
DISCARD_USED_FORCE_RULE(closeable);
DISCARD_USED_FORCE_RULE(autogroup);
DISCARD_USED_FORCE_RULE(autogroupfg);
DISCARD_USED_FORCE_RULE(autogroupid);
DISCARD_USED_FORCE_RULE(strictgeometry);
DISCARD_USED_SET_RULE(shortcut);
DISCARD_USED_FORCE_RULE(disableglobalshortcuts);
}
#undef DISCARD_USED_SET_RULE
#undef DISCARD_USED_FORCE_RULE
#endif
2011-01-30 14:34:42 +00:00
QDebug& operator<<(QDebug& stream, const Rules* r)
{
return stream << "[" << r->description << ":" << r->wmclass << "]" ;
2011-01-30 14:34:42 +00:00
}
#ifndef KCMRULES
void WindowRules::discardTemporary()
2011-01-30 14:34:42 +00:00
{
QVector< Rules* >::Iterator it2 = rules.begin();
2011-01-30 14:34:42 +00:00
for (QVector< Rules* >::Iterator it = rules.begin();
it != rules.end();
) {
if ((*it)->discardTemporary(true))
++it;
2011-01-30 14:34:42 +00:00
else {
*it2++ = *it++;
}
}
2011-01-30 14:34:42 +00:00
rules.erase(it2, rules.end());
}
void WindowRules::update(Client* c, int selection)
2011-01-30 14:34:42 +00:00
{
bool updated = false;
2011-01-30 14:34:42 +00:00
for (QVector< Rules* >::ConstIterator it = rules.constBegin();
it != rules.constEnd();
++it)
if ((*it)->update(c, selection)) // no short-circuiting here
updated = true;
2011-01-30 14:34:42 +00:00
if (updated)
Workspace::self()->rulesUpdated();
2011-01-30 14:34:42 +00:00
}
#define CHECK_RULE( rule, type ) \
2011-01-30 14:34:42 +00:00
type WindowRules::check##rule( type arg, bool init ) const \
{ \
2011-01-30 14:34:42 +00:00
if ( rules.count() == 0 ) \
return arg; \
type ret = arg; \
for ( QVector< Rules* >::ConstIterator it = rules.constBegin(); \
it != rules.constEnd(); \
++it ) \
{ \
2011-01-30 14:34:42 +00:00
if ( (*it)->apply##rule( ret, init )) \
break; \
} \
2011-01-30 14:34:42 +00:00
return ret; \
}
#define CHECK_FORCE_RULE( rule, type ) \
2011-01-30 14:34:42 +00:00
type WindowRules::check##rule( type arg ) const \
{ \
2011-01-30 14:34:42 +00:00
if ( rules.count() == 0 ) \
return arg; \
type ret = arg; \
for ( QVector< Rules* >::ConstIterator it = rules.begin(); \
it != rules.end(); \
++it ) \
{ \
2011-01-30 14:34:42 +00:00
if ( (*it)->apply##rule( ret )) \
break; \
} \
2011-01-30 14:34:42 +00:00
return ret; \
}
2011-01-30 14:34:42 +00:00
CHECK_FORCE_RULE(Placement, Placement::Policy)
2011-01-30 14:34:42 +00:00
QRect WindowRules::checkGeometry(QRect rect, bool init) const
{
return QRect(checkPosition(rect.topLeft(), init), checkSize(rect.size(), init));
}
CHECK_RULE(Position, QPoint)
CHECK_RULE(Size, QSize)
CHECK_FORCE_RULE(MinSize, QSize)
CHECK_FORCE_RULE(MaxSize, QSize)
CHECK_FORCE_RULE(OpacityActive, int)
CHECK_FORCE_RULE(OpacityInactive, int)
CHECK_FORCE_RULE(IgnorePosition, bool)
bool WindowRules::checkIgnoreGeometry(bool ignore) const
{
return checkIgnorePosition(ignore);
}
2011-01-30 14:34:42 +00:00
CHECK_RULE(Desktop, int)
CHECK_RULE(Activity, QString)
2011-01-30 14:34:42 +00:00
CHECK_FORCE_RULE(Type, NET::WindowType)
CHECK_RULE(MaximizeVert, KDecorationDefines::MaximizeMode)
CHECK_RULE(MaximizeHoriz, KDecorationDefines::MaximizeMode)
2011-01-30 14:34:42 +00:00
KDecorationDefines::MaximizeMode WindowRules::checkMaximize(MaximizeMode mode, bool init) const
{
bool vert = checkMaximizeVert(mode, init) & MaximizeVertical;
bool horiz = checkMaximizeHoriz(mode, init) & MaximizeHorizontal;
return static_cast< MaximizeMode >((vert ? MaximizeVertical : 0) | (horiz ? MaximizeHorizontal : 0));
}
2012-08-24 16:48:50 +00:00
int WindowRules::checkScreen(int screen, bool init) const
{
if ( rules.count() == 0 )
return screen;
int ret = screen;
for ( QVector< Rules* >::ConstIterator it = rules.constBegin(); it != rules.constEnd(); ++it ) {
if ( (*it)->applyScreen( ret, init ))
break;
}
if (ret >= QApplication::desktop()->screenCount())
ret = screen;
return ret;
}
2011-01-30 14:34:42 +00:00
CHECK_RULE(Minimize, bool)
CHECK_RULE(Shade, ShadeMode)
CHECK_RULE(SkipTaskbar, bool)
CHECK_RULE(SkipPager, bool)
CHECK_RULE(SkipSwitcher, bool)
CHECK_RULE(KeepAbove, bool)
CHECK_RULE(KeepBelow, bool)
CHECK_RULE(FullScreen, bool)
CHECK_RULE(NoBorder, bool)
CHECK_FORCE_RULE(BlockCompositing, bool)
2011-01-30 14:34:42 +00:00
CHECK_FORCE_RULE(FSP, int)
CHECK_FORCE_RULE(AcceptFocus, bool)
CHECK_FORCE_RULE(Closeable, bool)
CHECK_FORCE_RULE(Autogrouping, bool)
CHECK_FORCE_RULE(AutogroupInForeground, bool)
CHECK_FORCE_RULE(AutogroupById, QString)
CHECK_FORCE_RULE(StrictGeometry, bool)
CHECK_RULE(Shortcut, QString)
CHECK_FORCE_RULE(DisableGlobalShortcuts, bool)
#undef CHECK_RULE
#undef CHECK_FORCE_RULE
// Client
2011-01-30 14:34:42 +00:00
void Client::setupWindowRules(bool ignore_temporary)
{
client_rules = workspace()->findWindowRules(this, ignore_temporary);
// check only after getting the rules, because there may be a rule forcing window type
2011-01-30 14:34:42 +00:00
}
// Applies Force, ForceTemporarily and ApplyNow rules
// Used e.g. after the rules have been modified using the kcm.
void Client::applyWindowRules()
2011-01-30 14:34:42 +00:00
{
// apply force rules
// Placement - does need explicit update, just like some others below
// Geometry : setGeometry() doesn't check rules
2011-01-30 14:34:42 +00:00
QRect orig_geom = QRect(pos(), sizeForClientSize(clientSize())); // handle shading
QRect geom = client_rules.checkGeometry(orig_geom);
if (geom != orig_geom)
setGeometry(geom);
// MinSize, MaxSize handled by Geometry
// IgnorePosition
2011-01-30 14:34:42 +00:00
setDesktop(desktop());
2012-08-24 16:48:50 +00:00
workspace()->sendClientToScreen(this, screen());
setOnActivities(activities());
// Type
2011-01-30 14:34:42 +00:00
maximize(maximizeMode());
// Minimize : functions don't check, and there are two functions
2011-01-30 14:34:42 +00:00
if (client_rules.checkMinimize(isMinimized()))
minimize();
else
unminimize();
2011-01-30 14:34:42 +00:00
setShade(shadeMode());
setSkipTaskbar(skipTaskbar(), true);
setSkipPager(skipPager());
setSkipSwitcher(skipSwitcher());
setKeepAbove(keepAbove());
setKeepBelow(keepBelow());
setFullScreen(isFullScreen(), true);
setNoBorder(noBorder());
// FSP
// AcceptFocus :
2011-01-30 14:34:42 +00:00
if (workspace()->mostRecentlyActivatedClient() == this
&& !client_rules.checkAcceptFocus(true))
workspace()->activateNextClient(this);
// Closeable
QSize s = adjustedSize();
2011-01-30 14:34:42 +00:00
if (s != size())
resizeWithChecks(s);
// Autogrouping : Only checked on window manage
// AutogroupInForeground : Only checked on window manage
// AutogroupById : Only checked on window manage
// StrictGeometry
2011-01-30 14:34:42 +00:00
setShortcut(rules()->checkShortcut(shortcut().toString()));
// see also Client::setActive()
2011-01-30 14:34:42 +00:00
if (isActive()) {
setOpacity(rules()->checkOpacityActive(qRound(opacity() * 100.0)) / 100.0);
workspace()->disableGlobalShortcutsForClient(rules()->checkDisableGlobalShortcuts(false));
} else
setOpacity(rules()->checkOpacityInactive(qRound(opacity() * 100.0)) / 100.0);
}
void Client::updateWindowRules(Rules::Types selection)
2011-01-30 14:34:42 +00:00
{
if (!isManaged()) // not fully setup yet
return;
2011-01-30 14:34:42 +00:00
if (workspace()->rulesUpdatesDisabled())
return;
client_rules.update(this, selection);
2011-01-30 14:34:42 +00:00
}
void Client::finishWindowRules()
2011-01-30 14:34:42 +00:00
{
updateWindowRules(Rules::All);
client_rules = WindowRules();
2011-01-30 14:34:42 +00:00
}
// Workspace
2011-01-30 14:34:42 +00:00
WindowRules Workspace::findWindowRules(const Client* c, bool ignore_temporary)
{
QVector< Rules* > ret;
2011-01-30 14:34:42 +00:00
for (QList< Rules* >::Iterator it = rules.begin();
it != rules.end();
) {
if (ignore_temporary && (*it)->isTemporary()) {
++it;
continue;
2011-01-30 14:34:42 +00:00
}
if ((*it)->match(c)) {
Rules* rule = *it;
2011-01-30 14:34:42 +00:00
kDebug(1212) << "Rule found:" << rule << ":" << c;
if (rule->isTemporary())
it = rules.erase(it);
else
++it;
2011-01-30 14:34:42 +00:00
ret.append(rule);
continue;
}
2011-01-30 14:34:42 +00:00
++it;
}
2011-01-30 14:34:42 +00:00
return WindowRules(ret);
}
2011-01-30 14:34:42 +00:00
void Workspace::editWindowRules(Client* c, bool whole_app)
{
writeWindowRules();
QStringList args;
2011-01-30 14:34:42 +00:00
args << "--wid" << QString::number(c->window());
if (whole_app)
args << "--whole-app";
2011-01-30 14:34:42 +00:00
KToolInvocation::kdeinitExec("kwin_rules_dialog", args);
}
void Workspace::loadWindowRules()
2011-01-30 14:34:42 +00:00
{
while (!rules.isEmpty()) {
delete rules.front();
rules.pop_front();
}
KConfig cfg(QLatin1String(KWIN_NAME) + "rulesrc", KConfig::NoGlobals);
2011-01-30 14:34:42 +00:00
int count = cfg.group("General").readEntry("count", 0);
for (int i = 1;
i <= count;
++i) {
KConfigGroup cg(&cfg, QString::number(i));
Rules* rule = new Rules(cg);
rules.append(rule);
}
}
void Workspace::writeWindowRules()
2011-01-30 14:34:42 +00:00
{
rulesUpdatedTimer.stop();
KConfig cfg(QLatin1String(KWIN_NAME) + "rulesrc", KConfig::NoGlobals);
QStringList groups = cfg.groupList();
2011-01-30 14:34:42 +00:00
for (QStringList::ConstIterator it = groups.constBegin();
it != groups.constEnd();
++it)
cfg.deleteGroup(*it);
cfg.group("General").writeEntry("count", rules.count());
int i = 1;
2011-01-30 14:34:42 +00:00
for (QList< Rules* >::ConstIterator it = rules.constBegin();
it != rules.constEnd();
++it) {
if ((*it)->isTemporary())
continue;
2011-01-30 14:34:42 +00:00
KConfigGroup cg(&cfg, QString::number(i));
(*it)->write(cg);
++i;
}
2011-01-30 14:34:42 +00:00
}
2011-01-30 14:34:42 +00:00
void Workspace::gotTemporaryRulesMessage(const QString& message)
{
bool was_temporary = false;
2011-01-30 14:34:42 +00:00
for (QList< Rules* >::ConstIterator it = rules.constBegin();
it != rules.constEnd();
++it)
if ((*it)->isTemporary())
was_temporary = true;
2011-01-30 14:34:42 +00:00
Rules* rule = new Rules(message, true);
rules.prepend(rule); // highest priority first
if (!was_temporary)
QTimer::singleShot(60000, this, SLOT(cleanupTemporaryRules()));
}
void Workspace::cleanupTemporaryRules()
2011-01-30 14:34:42 +00:00
{
bool has_temporary = false;
2011-01-30 14:34:42 +00:00
for (QList< Rules* >::Iterator it = rules.begin();
it != rules.end();
) {
if ((*it)->discardTemporary(false))
it = rules.erase(it);
else {
if ((*it)->isTemporary())
has_temporary = true;
++it;
}
}
2011-01-30 14:34:42 +00:00
if (has_temporary)
QTimer::singleShot(60000, this, SLOT(cleanupTemporaryRules()));
}
2011-01-30 14:34:42 +00:00
void Workspace::discardUsedWindowRules(Client* c, bool withdrawn)
{
bool updated = false;
2011-01-30 14:34:42 +00:00
for (QList< Rules* >::Iterator it = rules.begin();
it != rules.end();
) {
if (c->rules()->contains(*it)) {
updated = true;
2011-01-30 14:34:42 +00:00
(*it)->discardUsed(withdrawn);
if ((*it)->isEmpty()) {
c->removeRule(*it);
Rules* r = *it;
2011-01-30 14:34:42 +00:00
it = rules.erase(it);
delete r;
continue;
}
}
2011-01-30 14:34:42 +00:00
++it;
}
2011-01-30 14:34:42 +00:00
if (updated)
rulesUpdated();
}
void Workspace::rulesUpdated()
2011-01-30 14:34:42 +00:00
{
rulesUpdatedTimer.setSingleShot(true);
rulesUpdatedTimer.start(1000);
}
2011-01-30 14:34:42 +00:00
void Workspace::disableRulesUpdates(bool disable)
{
rules_updates_disabled = disable;
if (!disable) {
2011-01-30 14:34:42 +00:00
foreach (Client * c, clients)
c->updateWindowRules(Rules::All);
}
2011-01-30 14:34:42 +00:00
}
#endif
} // namespace