mirror of
https://github.com/hyprwm/Hyprland
synced 2024-11-26 14:26:00 +01:00
hyprctl-nopoll
This commit is contained in:
parent
f024d7114f
commit
82aa78916d
5 changed files with 34 additions and 96 deletions
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@ -245,7 +245,6 @@ void CCompositor::cleanup() {
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// end threads
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// end threads
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g_pEventManager->m_tThread = std::thread();
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g_pEventManager->m_tThread = std::thread();
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HyprCtl::tThread = std::thread();
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m_vWorkspaces.clear();
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m_vWorkspaces.clear();
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m_vWindows.clear();
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m_vWindows.clear();
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@ -1719,25 +1718,6 @@ CWindow* CCompositor::getWindowByRegex(const std::string& regexp) {
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return nullptr;
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return nullptr;
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}
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}
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wl_event_source* hyprCtlTickSource = nullptr;
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int hyprCtlTick(void* data) {
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HyprCtl::tickHyprCtl(); // so that we dont get that race condition multithread bullshit
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wl_event_source_timer_update(hyprCtlTickSource, 16); // tick it 60/s, should be enough.
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return 0;
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}
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void CCompositor::startHyprCtlTick() {
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if (hyprCtlTickSource)
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return;
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hyprCtlTickSource = wl_event_loop_add_timer(m_sWLEventLoop, hyprCtlTick, nullptr);
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wl_event_source_timer_update(hyprCtlTickSource, 16);
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}
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void CCompositor::warpCursorTo(const Vector2D& pos) {
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void CCompositor::warpCursorTo(const Vector2D& pos) {
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// warpCursorTo should only be used for warps that
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// warpCursorTo should only be used for warps that
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@ -166,11 +166,8 @@ public:
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void forceReportSizesToWindowsOnWorkspace(const int&);
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void forceReportSizesToWindowsOnWorkspace(const int&);
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bool cursorOnReservedArea();
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bool cursorOnReservedArea();
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std::string explicitConfigPath;
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std::string explicitConfigPath;
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void startHyprCtlTick();
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private:
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private:
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void initAllSignals();
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void initAllSignals();
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void setRandomSplash();
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void setRandomSplash();
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@ -721,9 +721,21 @@ std::string getReply(std::string request) {
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return "unknown request";
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return "unknown request";
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}
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}
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void HyprCtl::tickHyprCtl() {
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int hyprCtlFDTick(int fd, uint32_t mask, void* data) {
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if (!requestMade)
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if (mask & WL_EVENT_ERROR || mask & WL_EVENT_HANGUP)
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return;
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return 0;
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sockaddr_in clientAddress;
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socklen_t clientSize = sizeof(clientAddress);
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const auto ACCEPTEDCONNECTION = accept(HyprCtl::iSocketFD, (sockaddr*)&clientAddress, &clientSize);
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char readBuffer[1024];
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auto messageSize = read(ACCEPTEDCONNECTION, readBuffer, 1024);
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readBuffer[messageSize == 1024 ? 1023 : messageSize] = '\0';
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std::string request(readBuffer);
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std::string reply = "";
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std::string reply = "";
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@ -734,44 +746,22 @@ void HyprCtl::tickHyprCtl() {
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reply = "Err: " + std::string(e.what());
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reply = "Err: " + std::string(e.what());
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}
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}
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request = reply;
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write(ACCEPTEDCONNECTION, reply.c_str(), reply.length());
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requestMade = false;
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close(ACCEPTEDCONNECTION);
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requestReady = true;
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if (g_pConfigManager->m_bWantsMonitorReload) {
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if (g_pConfigManager->m_bWantsMonitorReload) {
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g_pConfigManager->ensureDPMS();
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g_pConfigManager->ensureDPMS();
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}
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}
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}
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std::string getRequestFromThread(std::string rq) {
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return 0;
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while (HyprCtl::request != "" || HyprCtl::requestMade || HyprCtl::requestReady) {
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std::this_thread::sleep_for(std::chrono::milliseconds(5));
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}
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HyprCtl::request = rq;
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HyprCtl::requestMade = true;
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while (!HyprCtl::requestReady) {
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std::this_thread::sleep_for(std::chrono::milliseconds(5));
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}
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HyprCtl::requestReady = false;
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HyprCtl::requestMade = false;
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std::string toReturn = HyprCtl::request;
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HyprCtl::request = "";
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return toReturn;
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}
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}
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void HyprCtl::startHyprCtlSocket() {
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void HyprCtl::startHyprCtlSocket() {
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tThread = std::thread([&]() {
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const auto SOCKET = socket(AF_UNIX, SOCK_STREAM, 0);
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if (SOCKET < 0) {
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iSocketFD = socket(AF_UNIX, SOCK_STREAM, 0);
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if (iSocketFD < 0) {
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Debug::log(ERR, "Couldn't start the Hyprland Socket. (1) IPC will not work.");
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Debug::log(ERR, "Couldn't start the Hyprland Socket. (1) IPC will not work.");
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return;
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return;
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}
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}
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@ -782,40 +772,12 @@ void HyprCtl::startHyprCtlSocket() {
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strcpy(SERVERADDRESS.sun_path, socketPath.c_str());
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strcpy(SERVERADDRESS.sun_path, socketPath.c_str());
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bind(SOCKET, (sockaddr*)&SERVERADDRESS, SUN_LEN(&SERVERADDRESS));
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bind(iSocketFD, (sockaddr*)&SERVERADDRESS, SUN_LEN(&SERVERADDRESS));
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// 10 max queued.
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// 10 max queued.
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listen(SOCKET, 10);
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listen(iSocketFD, 10);
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sockaddr_in clientAddress;
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socklen_t clientSize = sizeof(clientAddress);
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char readBuffer[1024] = {0};
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Debug::log(LOG, "Hypr socket started at %s", socketPath.c_str());
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Debug::log(LOG, "Hypr socket started at %s", socketPath.c_str());
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while(1) {
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wl_event_loop_add_fd(g_pCompositor->m_sWLEventLoop, iSocketFD, WL_EVENT_READABLE, hyprCtlFDTick, nullptr);
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const auto ACCEPTEDCONNECTION = accept(SOCKET, (sockaddr*)&clientAddress, &clientSize);
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if (ACCEPTEDCONNECTION < 0) {
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Debug::log(ERR, "Couldn't listen on the Hyprland Socket. (3) IPC will not work.");
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break;
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}
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auto messageSize = read(ACCEPTEDCONNECTION, readBuffer, 1024);
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readBuffer[messageSize == 1024 ? 1023 : messageSize] = '\0';
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std::string request(readBuffer);
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std::string reply = getRequestFromThread(request);
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write(ACCEPTEDCONNECTION, reply.c_str(), reply.length());
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close(ACCEPTEDCONNECTION);
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}
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close(SOCKET);
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});
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tThread.detach();
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}
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}
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@ -6,7 +6,6 @@
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namespace HyprCtl {
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namespace HyprCtl {
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void startHyprCtlSocket();
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void startHyprCtlSocket();
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void tickHyprCtl();
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// very simple thread-safe request method
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// very simple thread-safe request method
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inline bool requestMade = false;
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inline bool requestMade = false;
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@ -15,7 +14,9 @@ namespace HyprCtl {
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inline std::ifstream requestStream;
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inline std::ifstream requestStream;
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inline std::thread tThread;
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inline wl_event_source* hyprCtlTickSource = nullptr;
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inline int iSocketFD = -1;
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enum eHyprCtlOutputFormat {
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enum eHyprCtlOutputFormat {
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FORMAT_NORMAL = 0,
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FORMAT_NORMAL = 0,
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@ -22,8 +22,6 @@ CThreadManager::CThreadManager() {
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HyprCtl::startHyprCtlSocket();
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HyprCtl::startHyprCtlSocket();
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g_pCompositor->startHyprCtlTick();
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m_esConfigTimer = wl_event_loop_add_timer(g_pCompositor->m_sWLEventLoop, handleTimer, this);
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m_esConfigTimer = wl_event_loop_add_timer(g_pCompositor->m_sWLEventLoop, handleTimer, this);
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wl_event_source_timer_update(m_esConfigTimer, 1000);
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wl_event_source_timer_update(m_esConfigTimer, 1000);
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