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https://github.com/hyprwm/Hyprland
synced 2024-11-29 19:45:58 +01:00
Added pseudotiling
This commit is contained in:
parent
7add082217
commit
3f99dad7f5
9 changed files with 82 additions and 4 deletions
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@ -35,12 +35,17 @@ animations {
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fadein=1 # not yet implemented
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fadein=1 # not yet implemented
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}
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}
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dwindle {
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pseudotile=0 # enable pseudotiling on dwindle
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}
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# example window rules
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# example window rules
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# for windows named/classed as abc and xyz
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# for windows named/classed as abc and xyz
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windowrule=move 69 420,abc
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windowrule=move 69 420,abc
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windowrule=size 420 69,abc
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windowrule=size 420 69,abc
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windowrule=tile,xyz
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windowrule=tile,xyz
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windowrule=float,abc
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windowrule=float,abc
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windowrule=pseudo,abc
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windowrule=monitor 0,xyz
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windowrule=monitor 0,xyz
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# example binds
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# example binds
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@ -50,6 +55,7 @@ bind=SUPER,M,exec,pkill Hyprland
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bind=SUPER,E,exec,dolphin
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bind=SUPER,E,exec,dolphin
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bind=SUPER,V,togglefloating,
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bind=SUPER,V,togglefloating,
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bind=SUPER,R,exec,wofi --show drun -o DP-3
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bind=SUPER,R,exec,wofi --show drun -o DP-3
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bind=SUPER,P,pseudo,
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bind=SUPER,1,workspace,1
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bind=SUPER,1,workspace,1
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bind=SUPER,2,workspace,2
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bind=SUPER,2,workspace,2
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@ -24,8 +24,6 @@ public:
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wlr_xwayland_surface* xwayland;
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wlr_xwayland_surface* xwayland;
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} m_uSurface;
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} m_uSurface;
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// TODO: XWayland
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// this is the position and size of the "bounding box"
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// this is the position and size of the "bounding box"
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Vector2D m_vPosition = Vector2D(0,0);
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Vector2D m_vPosition = Vector2D(0,0);
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Vector2D m_vSize = Vector2D(0,0);
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Vector2D m_vSize = Vector2D(0,0);
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@ -38,6 +36,10 @@ public:
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Vector2D m_vRealPosition = Vector2D(0,0);
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Vector2D m_vRealPosition = Vector2D(0,0);
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Vector2D m_vRealSize = Vector2D(0,0);
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Vector2D m_vRealSize = Vector2D(0,0);
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// this is used for pseudotiling
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bool m_bIsPseudotiled = false;
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Vector2D m_vPseudoSize = Vector2D(0,0);
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uint64_t m_iTags = 0;
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uint64_t m_iTags = 0;
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bool m_bIsFloating = false;
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bool m_bIsFloating = false;
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bool m_bIsFullscreen = false;
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bool m_bIsFullscreen = false;
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@ -22,6 +22,8 @@ CConfigManager::CConfigManager() {
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configValues["general:col.active_border"].intValue = 0xffffffff;
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configValues["general:col.active_border"].intValue = 0xffffffff;
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configValues["general:col.inactive_border"].intValue = 0xff444444;
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configValues["general:col.inactive_border"].intValue = 0xff444444;
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configValues["dwindle:pseudotile"].intValue = 0;
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configValues["animations:enabled"].intValue = 1;
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configValues["animations:enabled"].intValue = 1;
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configValues["animations:speed"].floatValue = 7.f;
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configValues["animations:speed"].floatValue = 7.f;
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configValues["animations:windows_speed"].floatValue = 0.f;
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configValues["animations:windows_speed"].floatValue = 0.f;
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@ -186,6 +188,7 @@ void CConfigManager::handleWindowRule(const std::string& command, const std::str
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&& RULE != "tile"
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&& RULE != "tile"
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&& RULE.find("move") != 0
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&& RULE.find("move") != 0
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&& RULE.find("size") != 0
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&& RULE.find("size") != 0
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&& RULE.find("pseudo") != 0
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&& RULE.find("monitor") != 0) {
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&& RULE.find("monitor") != 0) {
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Debug::log(ERR, "Invalid rule found: %s", RULE.c_str());
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Debug::log(ERR, "Invalid rule found: %s", RULE.c_str());
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parseError = "Invalid rule found: " + RULE;
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parseError = "Invalid rule found: " + RULE;
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@ -73,6 +73,8 @@ void Events::listener_mapWindow(void* owner, void* data) {
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PWINDOW->m_bIsFloating = true;
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PWINDOW->m_bIsFloating = true;
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} else if (r.szRule.find("tile") == 0) {
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} else if (r.szRule.find("tile") == 0) {
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PWINDOW->m_bIsFloating = false;
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PWINDOW->m_bIsFloating = false;
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} else if (r.szRule.find("pseudo") == 0) {
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PWINDOW->m_bIsPseudotiled = true;
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}
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}
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}
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}
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@ -109,10 +111,19 @@ void Events::listener_mapWindow(void* owner, void* data) {
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}
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}
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}
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}
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}
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}
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// set the pseudo size to the GOAL of our current size
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// because the windows are animated on RealSize
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PWINDOW->m_vPseudoSize = PWINDOW->m_vEffectiveSize;
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}
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}
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else
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else {
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g_pLayoutManager->getCurrentLayout()->onWindowCreated(PWINDOW);
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g_pLayoutManager->getCurrentLayout()->onWindowCreated(PWINDOW);
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// Set the pseudo size here too so that it doesnt end up being 0x0
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PWINDOW->m_vPseudoSize = PWINDOW->m_vEffectiveSize - Vector2D(10,10);
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}
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PWINDOW->m_szTitle = g_pXWaylandManager->getTitle(PWINDOW);
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PWINDOW->m_szTitle = g_pXWaylandManager->getTitle(PWINDOW);
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if (!PWINDOW->m_bIsModal)
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if (!PWINDOW->m_bIsModal)
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@ -109,6 +109,30 @@ void CHyprDwindleLayout::applyNodeDataToWindow(SDwindleNodeData* pNode) {
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PWINDOW->m_vEffectivePosition = PWINDOW->m_vEffectivePosition + OFFSETTOPLEFT;
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PWINDOW->m_vEffectivePosition = PWINDOW->m_vEffectivePosition + OFFSETTOPLEFT;
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PWINDOW->m_vEffectiveSize = PWINDOW->m_vEffectiveSize - OFFSETTOPLEFT - OFFSETBOTTOMRIGHT;
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PWINDOW->m_vEffectiveSize = PWINDOW->m_vEffectiveSize - OFFSETTOPLEFT - OFFSETBOTTOMRIGHT;
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if (PWINDOW->m_bIsPseudotiled) {
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// Calculate pseudo
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float scale = 1;
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// adjust if doesnt fit
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if (PWINDOW->m_vPseudoSize.x > PWINDOW->m_vEffectiveSize.x || PWINDOW->m_vPseudoSize.y > PWINDOW->m_vEffectiveSize.y) {
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if (PWINDOW->m_vPseudoSize.x > PWINDOW->m_vEffectiveSize.x) {
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scale = PWINDOW->m_vEffectiveSize.x / PWINDOW->m_vPseudoSize.x;
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}
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if (PWINDOW->m_vPseudoSize.y * scale > PWINDOW->m_vEffectiveSize.y) {
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scale = PWINDOW->m_vEffectiveSize.y / PWINDOW->m_vPseudoSize.y;
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}
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auto DELTA = PWINDOW->m_vEffectiveSize - PWINDOW->m_vPseudoSize * scale;
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PWINDOW->m_vEffectiveSize = PWINDOW->m_vPseudoSize * scale;
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PWINDOW->m_vEffectivePosition = PWINDOW->m_vEffectivePosition + DELTA / 2.f; // center
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} else {
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auto DELTA = PWINDOW->m_vEffectiveSize - PWINDOW->m_vPseudoSize;
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PWINDOW->m_vEffectivePosition = PWINDOW->m_vEffectivePosition + DELTA / 2.f; // center
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PWINDOW->m_vEffectiveSize = PWINDOW->m_vPseudoSize;
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}
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}
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g_pXWaylandManager->setWindowSize(PWINDOW, PWINDOW->m_vEffectiveSize);
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g_pXWaylandManager->setWindowSize(PWINDOW, PWINDOW->m_vEffectiveSize);
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}
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}
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@ -271,6 +295,9 @@ void CHyprDwindleLayout::changeWindowFloatingMode(CWindow* pWindow) {
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const auto PSAVEDPOS = pWindow->m_vRealPosition;
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const auto PSAVEDPOS = pWindow->m_vRealPosition;
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const auto PSAVEDSIZE = pWindow->m_vRealSize;
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const auto PSAVEDSIZE = pWindow->m_vRealSize;
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// if the window is pseudo, update its size
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pWindow->m_vPseudoSize = pWindow->m_vRealSize;
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onWindowCreated(pWindow);
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onWindowCreated(pWindow);
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pWindow->m_vRealPosition = PSAVEDPOS;
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pWindow->m_vRealPosition = PSAVEDPOS;
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@ -430,3 +457,12 @@ void CHyprDwindleLayout::fullscreenRequestForWindow(CWindow* pWindow) {
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// because otherwise they'd still be recieving mouse events
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// because otherwise they'd still be recieving mouse events
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g_pCompositor->fixXWaylandWindowsOnWorkspace(PMONITOR->activeWorkspace);
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g_pCompositor->fixXWaylandWindowsOnWorkspace(PMONITOR->activeWorkspace);
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}
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}
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void CHyprDwindleLayout::recalculateWindow(CWindow* pWindow) {
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const auto PNODE = getNodeFromWindow(pWindow);
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if (!PNODE)
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return;
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PNODE->recalcSizePosRecursive();
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}
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@ -32,6 +32,7 @@ public:
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virtual void onWindowCreated(CWindow*);
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virtual void onWindowCreated(CWindow*);
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virtual void onWindowRemoved(CWindow*);
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virtual void onWindowRemoved(CWindow*);
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virtual void recalculateMonitor(const int&);
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virtual void recalculateMonitor(const int&);
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virtual void recalculateWindow(CWindow*);
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virtual void changeWindowFloatingMode(CWindow*);
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virtual void changeWindowFloatingMode(CWindow*);
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virtual void onBeginDragWindow();
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virtual void onBeginDragWindow();
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virtual void onMouseMove(const Vector2D&);
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virtual void onMouseMove(const Vector2D&);
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@ -15,11 +15,17 @@ public:
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*/
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*/
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virtual void onWindowRemoved(CWindow*) = 0;
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virtual void onWindowRemoved(CWindow*) = 0;
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/*
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/*
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Called when a the monitor requires a layout recalculation
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Called when the monitor requires a layout recalculation
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this usually means reserved area changes
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this usually means reserved area changes
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*/
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*/
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virtual void recalculateMonitor(const int&) = 0;
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virtual void recalculateMonitor(const int&) = 0;
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/*
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Called when the compositor requests a window
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to be recalculated, e.g. when pseudo is toggled.
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*/
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virtual void recalculateWindow(CWindow*) = 0;
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/*
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/*
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Called when a window is requested to be floated
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Called when a window is requested to be floated
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*/
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*/
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@ -53,6 +53,7 @@ bool CKeybindManager::handleKeybinds(const uint32_t& modmask, const xkb_keysym_t
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else if (k.handler == "workspace") { changeworkspace(k.arg); }
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else if (k.handler == "workspace") { changeworkspace(k.arg); }
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else if (k.handler == "fullscreen") { fullscreenActive(k.arg); }
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else if (k.handler == "fullscreen") { fullscreenActive(k.arg); }
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else if (k.handler == "movetoworkspace") { moveActiveToWorkspace(k.arg); }
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else if (k.handler == "movetoworkspace") { moveActiveToWorkspace(k.arg); }
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else if (k.handler == "pseudo") { toggleActivePseudo(k.arg); }
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found = true;
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found = true;
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}
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}
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@ -114,6 +115,17 @@ void CKeybindManager::toggleActiveFloating(std::string args) {
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}
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}
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}
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}
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void CKeybindManager::toggleActivePseudo(std::string args) {
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const auto ACTIVEWINDOW = g_pCompositor->m_pLastWindow;
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if (!g_pCompositor->windowValidMapped(ACTIVEWINDOW))
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return;
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ACTIVEWINDOW->m_bIsPseudotiled = !ACTIVEWINDOW->m_bIsPseudotiled;
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g_pLayoutManager->getCurrentLayout()->recalculateWindow(ACTIVEWINDOW);
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}
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void CKeybindManager::changeworkspace(std::string args) {
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void CKeybindManager::changeworkspace(std::string args) {
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int workspaceToChangeTo = 0;
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int workspaceToChangeTo = 0;
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try {
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try {
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@ -27,6 +27,7 @@ private:
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void killActive(std::string);
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void killActive(std::string);
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void spawn(std::string);
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void spawn(std::string);
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void toggleActiveFloating(std::string);
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void toggleActiveFloating(std::string);
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void toggleActivePseudo(std::string);
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void changeworkspace(std::string);
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void changeworkspace(std::string);
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void fullscreenActive(std::string);
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void fullscreenActive(std::string);
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void moveActiveToWorkspace(std::string);
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void moveActiveToWorkspace(std::string);
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