#if defined(Hiro_Keyboard) namespace hiro { auto pKeyboard::poll() -> vector { if(Application::state().quit) return {}; vector result; char state[256]; #if defined(DISPLAY_XORG) XQueryKeymap(pApplication::state().display, state); #endif for(auto& code : settings.keycodes) { result.append(_pressed(state, code)); } return result; } auto pKeyboard::pressed(unsigned code) -> bool { char state[256]; #if defined(DISPLAY_XORG) XQueryKeymap(pApplication::state().display, state); #endif return _pressed(state, code); } auto pKeyboard::_pressed(const char* state, uint16_t code) -> bool { uint8_t lo = code >> 0; uint8_t hi = code >> 8; #if defined(DISPLAY_XORG) if(lo && state[lo >> 3] & (1 << (lo & 7))) return true; if(hi && state[hi >> 3] & (1 << (hi & 7))) return true; #endif return false; } auto pKeyboard::initialize() -> void { auto append = [](unsigned lo, unsigned hi = 0) { #if defined(DISPLAY_XORG) lo = lo ? (uint8_t)XKeysymToKeycode(pApplication::state().display, lo) : 0; hi = hi ? (uint8_t)XKeysymToKeycode(pApplication::state().display, hi) : 0; #endif settings.keycodes.append(lo << 0 | hi << 8); }; #define map(name, ...) if(key == name) { append(__VA_ARGS__); continue; } for(auto& key : Keyboard::keys) { #if defined(DISPLAY_XORG) #include #endif //print("[hiro/qt] warning: unhandled key: ", key, "\n"); append(0); } #undef map } } #endif