mirror of
https://bitbucket.org/CPMADevs/cnq3
synced 2024-11-27 14:22:32 +00:00
70f301e4ff
cvar type+range extension module tracking for cvars and commands lots of help text
1355 lines
32 KiB
C++
1355 lines
32 KiB
C++
/*
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===========================================================================
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Copyright (C) 1999-2005 Id Software, Inc.
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This file is part of Quake III Arena source code.
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Quake III Arena source code is free software; you can redistribute it
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and/or modify it under the terms of the GNU General Public License as
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published by the Free Software Foundation; either version 2 of the License,
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or (at your option) any later version.
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Quake III Arena source code is distributed in the hope that it will be
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useful, but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with Quake III Arena source code; if not, write to the Free Software
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Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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===========================================================================
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*/
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#include "../client/client.h"
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#include "win_local.h"
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#include "win_help.h"
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struct Mouse {
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Mouse() : active(qfalse), wheel(0) {}
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qbool IsActive() const { return active; }
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virtual qbool Init() { return qfalse; } // qtrue if successful
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virtual qbool Activate( qbool active ) { return qfalse; } // qtrue if successful
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virtual void Shutdown() {}
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virtual qbool ProcessMessage( UINT msg, WPARAM wParam, LPARAM lParam ) { return qfalse; } // qtrue if the event was handled
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protected:
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void UpdateWheel( int delta ); // queues mouse wheel events if needed
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qbool active;
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int wheel;
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};
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static Mouse* mouse;
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static qbool mouseSettingsSet = qfalse;
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void Mouse::UpdateWheel( int delta )
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{
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wheel += delta;
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while (wheel >= WHEEL_DELTA) {
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Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, K_MWHEELUP, qtrue, 0, NULL );
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Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, K_MWHEELUP, qfalse, 0, NULL );
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wheel -= WHEEL_DELTA;
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}
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while (wheel <= -WHEEL_DELTA) {
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Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, K_MWHEELDOWN, qtrue, 0, NULL );
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Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, K_MWHEELDOWN, qfalse, 0, NULL );
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wheel += WHEEL_DELTA;
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}
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}
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///////////////////////////////////////////////////////////////
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struct rawmouse_t : public Mouse {
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virtual qbool Init();
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virtual qbool Activate( qbool active );
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virtual void Shutdown();
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virtual qbool ProcessMessage( UINT msg, WPARAM wParam, LPARAM lParam );
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};
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static rawmouse_t rawmouse;
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qbool rawmouse_t::Init()
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{
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wheel = 0;
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// Problems with the RIDEV_NOLEGACY flag:
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// - When focusing the app while pressing a mouse button, the cursor becomes visible and stays so indefinitely
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// despite properly having done the repeated calls to ShowCursor(FALSE) until the counter is negative.
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// You have to wait for the mouse button to be released to call ReleaseCapture() and SetCapture(hWnd) again in order to
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// actually hide the cursor again.
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// - Unlike what the MSDN docs might let you think, some *really* important messages get dropped, not just mouse input ones.
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// The application won't get the focus back when being clicked!
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// It's a buggy mess, so don't use it.
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RAWINPUTDEVICE rid;
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rid.usUsagePage = 1;
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rid.usUsage = 2;
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rid.dwFlags = 0;
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rid.hwndTarget = NULL;
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if (!RegisterRawInputDevices( &rid, 1, sizeof(rid)) ) {
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active = qfalse;
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return qfalse;
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}
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active = qtrue;
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return qtrue;
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}
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qbool rawmouse_t::Activate( qbool _active )
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{
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wheel = 0;
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active = _active;
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return qtrue;
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}
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void rawmouse_t::Shutdown()
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{
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RAWINPUTDEVICE rid;
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rid.usUsagePage = 1;
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rid.usUsage = 2;
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rid.dwFlags = RIDEV_REMOVE;
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rid.hwndTarget = NULL;
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RegisterRawInputDevices( &rid, 1, sizeof(rid) );
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}
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// MSDN says you have to always let DefWindowProc run for WM_INPUT
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// regardless of whether you process the message or not, so ALWAYS return false here
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qbool rawmouse_t::ProcessMessage( UINT msg, WPARAM wParam, LPARAM lParam )
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{
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static const int riBtnDnFlags[5] = { RI_MOUSE_BUTTON_1_DOWN, RI_MOUSE_BUTTON_2_DOWN, RI_MOUSE_BUTTON_3_DOWN, RI_MOUSE_BUTTON_4_DOWN, RI_MOUSE_BUTTON_5_DOWN };
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static const int riBtnUpFlags[5] = { RI_MOUSE_BUTTON_1_UP, RI_MOUSE_BUTTON_2_UP, RI_MOUSE_BUTTON_3_UP, RI_MOUSE_BUTTON_4_UP, RI_MOUSE_BUTTON_5_UP };
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if (!active || msg != WM_INPUT)
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return qfalse;
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HRAWINPUT h = (HRAWINPUT)lParam;
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UINT size;
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if (GetRawInputData( h, RID_INPUT, NULL, &size, sizeof(RAWINPUTHEADER) ) == -1)
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return qfalse;
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RAWINPUT ri;
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if (GetRawInputData( h, RID_INPUT, &ri, &size, sizeof(RAWINPUTHEADER) ) != size)
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return qfalse;
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if ( (ri.header.dwType != RIM_TYPEMOUSE) || (ri.data.mouse.usFlags != MOUSE_MOVE_RELATIVE) )
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return qfalse;
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const int dx = (int)ri.data.mouse.lLastX;
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const int dy = (int)ri.data.mouse.lLastY;
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if (dx != 0 || dy != 0)
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Sys_QueEvent( g_wv.sysMsgTime, SE_MOUSE, dx, dy, 0, NULL );
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if (!ri.data.mouse.usButtonFlags) // no button or wheel transitions
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return qfalse;
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if (ri.data.mouse.usButtonFlags & RI_MOUSE_WHEEL)
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UpdateWheel( (SHORT)ri.data.mouse.usButtonData );
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for (int i = 0; i < 5; ++i) {
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if (ri.data.mouse.usButtonFlags & riBtnDnFlags[i])
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Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, K_MOUSE1 + i, qtrue, 0, NULL );
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if (ri.data.mouse.usButtonFlags & riBtnUpFlags[i])
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Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, K_MOUSE1 + i, qfalse, 0, NULL );
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}
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return qfalse;
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}
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///////////////////////////////////////////////////////////////
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struct winmouse_t : public Mouse {
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virtual qbool Init() { return qtrue; }
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virtual qbool Activate( qbool active );
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virtual qbool ProcessMessage( UINT msg, WPARAM wParam, LPARAM lParam );
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private:
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void UpdateWindowCenter();
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int window_center_x, window_center_y;
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};
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static winmouse_t winmouse;
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void winmouse_t::UpdateWindowCenter()
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{
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const RECT& rect = g_wv.monitorRects[g_wv.monitor];
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window_center_x = (int)( rect.left + rect.right ) / 2;
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window_center_y = (int)( rect.top + rect.bottom ) / 2;
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}
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qbool winmouse_t::Activate( qbool _active )
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{
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wheel = 0;
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active = _active;
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if (!_active)
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return qtrue;
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UpdateWindowCenter();
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SetCursorPos( window_center_x, window_center_y );
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return qtrue;
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}
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qbool winmouse_t::ProcessMessage( UINT msg, WPARAM wParam, LPARAM lParam )
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{
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if ( !active )
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return qfalse;
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UpdateWindowCenter();
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#define QUEUE_WM_BUTTON( qbutton, mask ) \
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Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, qbutton, (wParam & mask), 0, NULL );
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POINT p;
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GetCursorPos( &p );
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const int dx = p.x - window_center_x;
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const int dy = p.y - window_center_y;
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if (dx != 0 || dy != 0) {
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Sys_QueEvent( g_wv.sysMsgTime, SE_MOUSE, dx, dy, 0, NULL );
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SetCursorPos( window_center_x, window_center_y );
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}
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switch (msg) {
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case WM_LBUTTONDOWN:
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case WM_LBUTTONUP:
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QUEUE_WM_BUTTON( K_MOUSE1, MK_LBUTTON );
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break;
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case WM_RBUTTONDOWN:
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case WM_RBUTTONUP:
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QUEUE_WM_BUTTON( K_MOUSE2, MK_RBUTTON );
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break;
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case WM_MBUTTONDOWN:
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case WM_MBUTTONUP:
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QUEUE_WM_BUTTON( K_MOUSE3, MK_MBUTTON );
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break;
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case WM_XBUTTONDOWN:
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case WM_XBUTTONUP:
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if (GET_XBUTTON_WPARAM(wParam) == XBUTTON1)
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QUEUE_WM_BUTTON( K_MOUSE4, MK_XBUTTON1 );
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if (GET_XBUTTON_WPARAM(wParam) == XBUTTON2)
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QUEUE_WM_BUTTON( K_MOUSE5, MK_XBUTTON2 );
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break;
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#undef QUEUE_WM_BUTTON
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case WM_MOUSEWHEEL:
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UpdateWheel( GET_WHEEL_DELTA_WPARAM(wParam) );
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break;
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default:
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return qfalse;
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}
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return qtrue;
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}
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///////////////////////////////////////////////////////////////
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static void IN_StartupMouse()
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{
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assert( mouse == NULL );
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mouse = NULL;
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mouseSettingsSet = qfalse;
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cvar_t* in_mouse = Cvar_Get( "in_mouse", "1", CVAR_ARCHIVE|CVAR_LATCH );
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Cvar_SetRange( "in_mouse", CVART_INTEGER, "0", "2" );
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Cvar_SetHelp( "in_mouse", help_in_mouse );
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in_mouse->modified = qfalse;
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if (!in_mouse->integer) {
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Com_Printf( "Mouse not active.\n" );
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return;
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}
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if (in_mouse->integer == 1) {
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if (rawmouse.Init()) {
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mouse = &rawmouse;
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Com_Printf( "Using raw mouse input\n" );
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return;
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}
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Com_Printf( "Raw mouse initialization failed\n" );
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}
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if (winmouse.Init()) {
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mouse = &winmouse;
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Com_Printf( "Using Win32 mouse input\n" );
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} else {
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Com_Printf( "Win32 mouse initialization failed\n" );
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}
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}
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qbool IN_ProcessMessage( UINT msg, WPARAM wParam, LPARAM lParam )
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{
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if (!mouse)
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return qfalse;
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return mouse->ProcessMessage( msg, wParam, lParam );
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}
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///////////////////////////////////////////////////////////////
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static void IN_StartupMIDI();
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static void IN_ShutdownMIDI();
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static void IN_StartupJoystick();
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static void IN_JoyMove();
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static void IN_StartupHotKey( qbool fullStartUp );
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static void IN_ShutDownHotKey();
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static void IN_UpdateHotKey();
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cvar_t* in_joystick;
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cvar_t* in_midi;
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cvar_t* in_minimize;
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static void IN_Startup()
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{
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QSUBSYSTEM_INIT_START( "Input" );
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IN_StartupMouse();
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IN_StartupJoystick();
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IN_StartupMIDI();
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IN_StartupHotKey( qtrue );
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QSUBSYSTEM_INIT_DONE( "Input" );
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}
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void IN_Init()
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{
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if (g_wv.inputInitialized)
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return;
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in_midi = Cvar_Get( "in_midi", "0", CVAR_ARCHIVE );
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Cvar_SetModule( "in_midi", MODULE_INPUT );
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in_joystick = Cvar_Get( "in_joystick", "0", CVAR_ARCHIVE|CVAR_LATCH );
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Cvar_SetModule( "in_joystick", MODULE_INPUT );
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in_joystick->modified = qfalse;
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IN_Startup();
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g_wv.inputInitialized = qtrue;
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}
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void IN_Shutdown()
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{
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if (!g_wv.inputInitialized)
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return;
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g_wv.inputInitialized = qfalse;
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IN_Activate( qfalse );
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if (mouse) {
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mouse->Shutdown();
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mouse = NULL;
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}
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IN_ShutdownMIDI();
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IN_ShutDownHotKey();
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}
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static void IN_SetCursorSettings( qbool active )
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{
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if (active) {
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while (ShowCursor(FALSE) >= 0)
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;
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RECT rc;
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SetCapture( g_wv.hWnd );
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GetWindowRect( g_wv.hWnd, &rc );
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ClipCursor( &rc );
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} else {
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while (ShowCursor(TRUE) < 0)
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;
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ClipCursor( NULL );
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ReleaseCapture();
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}
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}
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// called when the window gains or loses focus or changes in some way
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// the window may have been destroyed and recreated between a deactivate and an activate
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void IN_Activate( qbool active )
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{
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if ( !mouse || (mouseSettingsSet && mouse->IsActive() == active) )
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return;
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if ( mouse->Activate( active ) )
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IN_SetCursorSettings( active );
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mouseSettingsSet = qtrue;
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}
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static qbool IN_ShouldBeActive()
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{
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return g_wv.activeApp && (!(cls.keyCatchers & KEYCATCH_CONSOLE) || Cvar_VariableIntegerValue("r_fullscreen"));
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}
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// called every frame, even if not generating commands
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void IN_Frame()
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{
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// lazily initialize if needed
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if ( !com_dedicated->integer && !g_wv.inputInitialized )
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IN_Init();
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IN_JoyMove();
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IN_UpdateHotKey();
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if (!mouse)
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return;
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IN_Activate( IN_ShouldBeActive() );
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}
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/*
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=========================================================================
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JOYSTICK
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=========================================================================
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*/
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typedef struct {
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qbool avail;
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int id; // joystick number
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JOYCAPS jc;
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int oldbuttonstate;
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int oldpovstate;
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JOYINFOEX ji;
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} joystickInfo_t;
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static joystickInfo_t joy;
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static const cvar_t* in_joyBallScale;
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static const cvar_t* in_debugJoystick;
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static const cvar_t* joy_threshold;
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static void IN_StartupJoystick()
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{
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// assume no joystick
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joy.avail = qfalse;
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if ( !in_joystick->integer )
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return;
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// verify joystick driver is present
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int numdevs;
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if ((numdevs = joyGetNumDevs()) == 0)
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{
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Com_Printf( "joystick not found -- driver not present\n" );
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return;
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}
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// cycle through the joystick ids for the first valid one
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MMRESULT mmr = !JOYERR_NOERROR;
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for (joy.id=0 ; joy.id<numdevs ; joy.id++)
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{
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Com_Memset (&joy.ji, 0, sizeof(joy.ji));
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joy.ji.dwSize = sizeof(joy.ji);
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joy.ji.dwFlags = JOY_RETURNCENTERED;
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if ((mmr = joyGetPosEx (joy.id, &joy.ji)) == JOYERR_NOERROR)
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break;
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}
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// abort startup if we didn't find a valid joystick
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if (mmr != JOYERR_NOERROR)
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{
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Com_Printf( "joystick not found -- no valid joysticks (%x)\n", mmr );
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return;
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}
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// get the capabilities of the selected joystick
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// abort startup if command fails
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Com_Memset (&joy.jc, 0, sizeof(joy.jc));
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if ((mmr = joyGetDevCaps (joy.id, &joy.jc, sizeof(joy.jc))) != JOYERR_NOERROR)
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{
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Com_Printf( "joystick not found -- invalid joystick capabilities (%x)\n", mmr );
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return;
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}
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// activate and archive the cvars since they actually want joystick support
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in_debugJoystick = Cvar_Get ("in_debugjoystick", "0", CVAR_TEMP);
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in_joyBallScale = Cvar_Get ("in_joyBallScale", "0.02", CVAR_ARCHIVE);
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joy_threshold = Cvar_Get ("joy_threshold", "0.15", CVAR_ARCHIVE);
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Com_Printf( "Joystick found.\n" );
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Com_Printf( "Pname: %s\n", joy.jc.szPname );
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Com_Printf( "OemVxD: %s\n", joy.jc.szOEMVxD );
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Com_Printf( "RegKey: %s\n", joy.jc.szRegKey );
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Com_Printf( "Numbuttons: %i / %i\n", joy.jc.wNumButtons, joy.jc.wMaxButtons );
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Com_Printf( "Axis: %i / %i\n", joy.jc.wNumAxes, joy.jc.wMaxAxes );
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Com_Printf( "Caps: 0x%x\n", joy.jc.wCaps );
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if ( joy.jc.wCaps & JOYCAPS_HASPOV ) {
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Com_Printf( "HASPOV\n" );
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} else {
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Com_Printf( "no POV\n" );
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}
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// old button and POV states default to no buttons pressed
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joy.oldbuttonstate = 0;
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joy.oldpovstate = 0;
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// mark the joystick as available
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joy.avail = qtrue;
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}
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static float JoyToF( int value )
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{
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float fValue;
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// move centerpoint to zero
|
|
value -= 32768;
|
|
|
|
// convert range from -32768..32767 to -1..1
|
|
fValue = (float)value / 32768.0;
|
|
|
|
return Com_Clamp( -1, 1, fValue );
|
|
}
|
|
|
|
|
|
static int JoyToI( int value )
|
|
{
|
|
// move centerpoint to zero
|
|
return (value - 32768);
|
|
}
|
|
|
|
|
|
static const int joyDirectionKeys[16] = {
|
|
K_LEFTARROW, K_RIGHTARROW,
|
|
K_UPARROW, K_DOWNARROW,
|
|
K_JOY16, K_JOY17,
|
|
K_JOY18, K_JOY19,
|
|
K_JOY20, K_JOY21,
|
|
K_JOY22, K_JOY23,
|
|
K_JOY24, K_JOY25,
|
|
K_JOY26, K_JOY27
|
|
};
|
|
|
|
|
|
static void IN_JoyMove()
|
|
{
|
|
float fAxisValue;
|
|
UINT i;
|
|
DWORD buttonstate, povstate;
|
|
int x, y;
|
|
|
|
// verify joystick is available and that the user wants to use it
|
|
if ( !joy.avail ) {
|
|
return;
|
|
}
|
|
|
|
// collect the joystick data, if possible
|
|
Com_Memset (&joy.ji, 0, sizeof(joy.ji));
|
|
joy.ji.dwSize = sizeof(joy.ji);
|
|
joy.ji.dwFlags = JOY_RETURNALL;
|
|
|
|
if ( joyGetPosEx (joy.id, &joy.ji) != JOYERR_NOERROR ) {
|
|
// read error occurred
|
|
// turning off the joystick seems too harsh for 1 read error,
|
|
// but what should be done?
|
|
// Com_Printf ("IN_ReadJoystick: no response\n");
|
|
// joy.avail = qfalse;
|
|
return;
|
|
}
|
|
|
|
if ( in_debugJoystick->integer ) {
|
|
Com_Printf( "%8x %5i %5.2f %5.2f %5.2f %5.2f %6i %6i\n",
|
|
joy.ji.dwButtons,
|
|
joy.ji.dwPOV,
|
|
JoyToF( joy.ji.dwXpos ), JoyToF( joy.ji.dwYpos ),
|
|
JoyToF( joy.ji.dwZpos ), JoyToF( joy.ji.dwRpos ),
|
|
JoyToI( joy.ji.dwUpos ), JoyToI( joy.ji.dwVpos ) );
|
|
}
|
|
|
|
// loop through the joystick buttons
|
|
// key a joystick event or auxillary event for higher number buttons for each state change
|
|
buttonstate = joy.ji.dwButtons;
|
|
for ( i=0 ; i < joy.jc.wNumButtons ; i++ ) {
|
|
if ( (buttonstate & (1<<i)) && !(joy.oldbuttonstate & (1<<i)) ) {
|
|
Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, K_JOY1 + i, qtrue, 0, NULL );
|
|
}
|
|
if ( !(buttonstate & (1<<i)) && (joy.oldbuttonstate & (1<<i)) ) {
|
|
Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, K_JOY1 + i, qfalse, 0, NULL );
|
|
}
|
|
}
|
|
joy.oldbuttonstate = buttonstate;
|
|
|
|
povstate = 0;
|
|
|
|
// convert main joystick motion into 6 direction button bits
|
|
for (i = 0; i < joy.jc.wNumAxes && i < 4 ; i++) {
|
|
// get the floating point zero-centered, potentially-inverted data for the current axis
|
|
fAxisValue = JoyToF( (&joy.ji.dwXpos)[i] );
|
|
|
|
if ( fAxisValue < -joy_threshold->value ) {
|
|
povstate |= (1<<(i*2));
|
|
} else if ( fAxisValue > joy_threshold->value ) {
|
|
povstate |= (1<<(i*2+1));
|
|
}
|
|
}
|
|
|
|
// convert POV information from a direction into 4 button bits
|
|
if ( joy.jc.wCaps & JOYCAPS_HASPOV ) {
|
|
if ( joy.ji.dwPOV != JOY_POVCENTERED ) {
|
|
if (joy.ji.dwPOV == JOY_POVFORWARD)
|
|
povstate |= 1<<12;
|
|
if (joy.ji.dwPOV == JOY_POVBACKWARD)
|
|
povstate |= 1<<13;
|
|
if (joy.ji.dwPOV == JOY_POVRIGHT)
|
|
povstate |= 1<<14;
|
|
if (joy.ji.dwPOV == JOY_POVLEFT)
|
|
povstate |= 1<<15;
|
|
}
|
|
}
|
|
|
|
// determine which bits have changed and key an auxillary event for each change
|
|
for (i=0 ; i < 16 ; i++) {
|
|
if ( (povstate & (1<<i)) && !(joy.oldpovstate & (1<<i)) ) {
|
|
Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, joyDirectionKeys[i], qtrue, 0, NULL );
|
|
}
|
|
|
|
if ( !(povstate & (1<<i)) && (joy.oldpovstate & (1<<i)) ) {
|
|
Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, joyDirectionKeys[i], qfalse, 0, NULL );
|
|
}
|
|
}
|
|
joy.oldpovstate = povstate;
|
|
|
|
// if there is a trackball like interface, simulate mouse moves
|
|
if ( joy.jc.wNumAxes >= 6 ) {
|
|
x = JoyToI( joy.ji.dwUpos ) * in_joyBallScale->value;
|
|
y = JoyToI( joy.ji.dwVpos ) * in_joyBallScale->value;
|
|
if ( x || y ) {
|
|
Sys_QueEvent( g_wv.sysMsgTime, SE_MOUSE, x, y, 0, NULL );
|
|
}
|
|
}
|
|
}
|
|
|
|
|
|
/*
|
|
=========================================================================
|
|
|
|
MIDI
|
|
|
|
=========================================================================
|
|
*/
|
|
|
|
|
|
#define MAX_MIDIIN_DEVICES 8
|
|
|
|
typedef struct {
|
|
int numDevices;
|
|
MIDIINCAPS caps[MAX_MIDIIN_DEVICES];
|
|
HMIDIIN hMidiIn;
|
|
} MidiInfo_t;
|
|
|
|
static MidiInfo_t s_midiInfo;
|
|
|
|
|
|
static const cvar_t* in_midiport;
|
|
static const cvar_t* in_midichannel;
|
|
static const cvar_t* in_mididevice;
|
|
|
|
|
|
static void MIDI_NoteOff( int note )
|
|
{
|
|
int qkey;
|
|
|
|
qkey = note - 60 + K_AUX1;
|
|
|
|
if ( qkey > 255 || qkey < K_AUX1 )
|
|
return;
|
|
|
|
Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, qkey, qfalse, 0, NULL );
|
|
}
|
|
|
|
static void MIDI_NoteOn( int note, int velocity )
|
|
{
|
|
int qkey;
|
|
|
|
if ( velocity == 0 )
|
|
MIDI_NoteOff( note );
|
|
|
|
qkey = note - 60 + K_AUX1;
|
|
|
|
if ( qkey > 255 || qkey < K_AUX1 )
|
|
return;
|
|
|
|
Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, qkey, qtrue, 0, NULL );
|
|
}
|
|
|
|
static void CALLBACK MidiInProc( HMIDIIN hMidiIn, UINT uMsg, DWORD dwInstance, DWORD dwParam1, DWORD dwParam2 )
|
|
{
|
|
int message;
|
|
|
|
switch ( uMsg )
|
|
{
|
|
case MIM_OPEN:
|
|
break;
|
|
case MIM_CLOSE:
|
|
break;
|
|
case MIM_DATA:
|
|
message = dwParam1 & 0xff;
|
|
if ( ( message & 0xf0 ) == 0x90 )
|
|
{
|
|
if ( ( ( message & 0x0f ) + 1 ) == in_midichannel->integer )
|
|
MIDI_NoteOn( ( dwParam1 & 0xff00 ) >> 8, ( dwParam1 & 0xff0000 ) >> 16 );
|
|
}
|
|
else if ( ( message & 0xf0 ) == 0x80 )
|
|
{
|
|
if ( ( ( message & 0x0f ) + 1 ) == in_midichannel->integer )
|
|
MIDI_NoteOff( ( dwParam1 & 0xff00 ) >> 8 );
|
|
}
|
|
break;
|
|
case MIM_LONGDATA:
|
|
break;
|
|
case MIM_ERROR:
|
|
break;
|
|
case MIM_LONGERROR:
|
|
break;
|
|
}
|
|
|
|
// Sys_QueEvent( sys_msg_time, SE_KEY, wMsg, qtrue, 0, NULL );
|
|
}
|
|
|
|
static void MidiInfo_f( void )
|
|
{
|
|
int i;
|
|
|
|
const char *enableStrings[] = { "disabled", "enabled" };
|
|
|
|
Com_Printf( "\nMIDI control: %s\n", enableStrings[in_midi->integer != 0] );
|
|
Com_Printf( "port: %d\n", in_midiport->integer );
|
|
Com_Printf( "channel: %d\n", in_midichannel->integer );
|
|
Com_Printf( "current device: %d\n", in_mididevice->integer );
|
|
Com_Printf( "number of devices: %d\n", s_midiInfo.numDevices );
|
|
|
|
for ( i = 0; i < s_midiInfo.numDevices; i++ )
|
|
{
|
|
if ( i == Cvar_VariableValue( "in_mididevice" ) )
|
|
Com_Printf( "***" );
|
|
else
|
|
Com_Printf( "..." );
|
|
Com_Printf( "device %2d: %s\n", i, s_midiInfo.caps[i].szPname );
|
|
Com_Printf( "...manufacturer ID: 0x%hx\n", s_midiInfo.caps[i].wMid );
|
|
Com_Printf( "...product ID: 0x%hx\n", s_midiInfo.caps[i].wPid );
|
|
Com_Printf( "\n" );
|
|
}
|
|
}
|
|
|
|
static void IN_StartupMIDI()
|
|
{
|
|
int i;
|
|
|
|
if ( !Cvar_VariableValue( "in_midi" ) )
|
|
return;
|
|
|
|
//
|
|
// enumerate MIDI IN devices
|
|
//
|
|
s_midiInfo.numDevices = midiInGetNumDevs();
|
|
|
|
for ( i = 0; i < s_midiInfo.numDevices; i++ )
|
|
{
|
|
midiInGetDevCaps( i, &s_midiInfo.caps[i], sizeof( s_midiInfo.caps[i] ) );
|
|
}
|
|
|
|
// activate and archive the cvars since they actually want midi support
|
|
in_midiport = Cvar_Get ("in_midiport", "1", CVAR_ARCHIVE);
|
|
in_midichannel = Cvar_Get ("in_midichannel", "1", CVAR_ARCHIVE);
|
|
in_mididevice = Cvar_Get ("in_mididevice", "0", CVAR_ARCHIVE);
|
|
|
|
Cmd_AddCommand( "midiinfo", MidiInfo_f );
|
|
Cmd_SetHelp( "midiinfo", "prints MIDI devices info" );
|
|
|
|
//
|
|
// open the MIDI IN port
|
|
//
|
|
if ( midiInOpen( &s_midiInfo.hMidiIn,
|
|
in_mididevice->integer,
|
|
( unsigned long ) MidiInProc,
|
|
( unsigned long ) NULL,
|
|
CALLBACK_FUNCTION ) != MMSYSERR_NOERROR )
|
|
{
|
|
Com_Printf( "WARNING: could not open MIDI device %d: '%s'\n", in_mididevice->integer , s_midiInfo.caps[( int ) in_mididevice->value] );
|
|
return;
|
|
}
|
|
|
|
midiInStart( s_midiInfo.hMidiIn );
|
|
}
|
|
|
|
static void IN_ShutdownMIDI()
|
|
{
|
|
if ( s_midiInfo.hMidiIn )
|
|
midiInClose( s_midiInfo.hMidiIn );
|
|
|
|
Com_Memset( &s_midiInfo, 0, sizeof( s_midiInfo ) );
|
|
Cmd_RemoveCommand( "midiinfo" );
|
|
}
|
|
|
|
|
|
/*
|
|
=========================================================================
|
|
|
|
MINIMIZE HOTKEY
|
|
|
|
=========================================================================
|
|
*/
|
|
|
|
|
|
#ifndef MOD_NOREPEAT
|
|
#define MOD_NOREPEAT 0x4000
|
|
#endif
|
|
|
|
|
|
static void WIN_RegisterHotKey( UINT modifiers, UINT key )
|
|
{
|
|
if ( g_wv.minimizeHotKeyValid )
|
|
return;
|
|
|
|
// the return value, when not 0, is guaranteed to be in
|
|
// the proper range for RegisterHotKey
|
|
const int atom = (int)GlobalAddAtom( "cnq3_minimize_hotkey" );
|
|
if ( atom == 0 )
|
|
return;
|
|
|
|
if ( RegisterHotKey(g_wv.hWnd, atom, modifiers | MOD_NOREPEAT, key) == 0 )
|
|
{
|
|
GlobalDeleteAtom( (ATOM)atom );
|
|
Com_Printf( "ERROR: the in_minimize hotkey registration failed\n" );
|
|
return;
|
|
}
|
|
|
|
g_wv.minimizeHotKeyValid = qtrue;
|
|
g_wv.minimizeHotKeyId = atom;
|
|
g_wv.minimizeHotKeyKey = key;
|
|
g_wv.minimizeHotKeyMods = modifiers;
|
|
}
|
|
|
|
|
|
void WIN_RegisterLastValidHotKey()
|
|
{
|
|
if ( g_wv.minimizeHotKeyKey != 0 )
|
|
WIN_RegisterHotKey( g_wv.minimizeHotKeyMods, g_wv.minimizeHotKeyKey );
|
|
}
|
|
|
|
|
|
void WIN_UnregisterHotKey()
|
|
{
|
|
if ( !g_wv.minimizeHotKeyValid )
|
|
return;
|
|
|
|
UnregisterHotKey( g_wv.hWnd, g_wv.minimizeHotKeyId );
|
|
GlobalDeleteAtom( (ATOM)g_wv.minimizeHotKeyId );
|
|
g_wv.minimizeHotKeyValid = qfalse;
|
|
g_wv.minimizeHotKeyId = 0;
|
|
}
|
|
|
|
|
|
typedef struct {
|
|
const char* name;
|
|
UINT key; // or flag
|
|
qbool reserved;
|
|
} win_keyMap_t;
|
|
|
|
|
|
#define KEY(Name, Key) { Name, Key, qfalse }
|
|
#define KEYR(Name, Key) { Name, Key, qtrue }
|
|
static const win_keyMap_t win_stdKeyMaps[] =
|
|
{
|
|
KEYR("back", VK_BACK),
|
|
KEYR("backspace", VK_BACK),
|
|
KEY("tab", VK_TAB),
|
|
KEYR("return", VK_RETURN),
|
|
KEYR("enter", VK_RETURN),
|
|
KEY("pause", VK_PAUSE),
|
|
KEY("capital", VK_CAPITAL),
|
|
KEY("caps", VK_CAPITAL),
|
|
KEY("capslock", VK_CAPITAL),
|
|
KEYR("esc", VK_ESCAPE),
|
|
KEYR("escape", VK_ESCAPE),
|
|
KEYR("space", VK_SPACE),
|
|
KEY("pageup", VK_PRIOR),
|
|
KEY("pgup", VK_PRIOR),
|
|
KEY("pagedown", VK_NEXT),
|
|
KEY("pgdn", VK_NEXT),
|
|
KEY("end", VK_END),
|
|
KEY("home", VK_HOME),
|
|
KEY("left", VK_LEFT),
|
|
KEY("leftarrow", VK_LEFT),
|
|
KEY("up", VK_UP),
|
|
KEY("uparrow", VK_UP),
|
|
KEY("right", VK_RIGHT),
|
|
KEY("rightarrow", VK_RIGHT),
|
|
KEY("down", VK_DOWN),
|
|
KEY("downarrow", VK_DOWN),
|
|
KEY("select", VK_SELECT),
|
|
KEY("print", VK_PRINT),
|
|
KEY("snapshot", VK_SNAPSHOT),
|
|
KEY("printscreen", VK_SNAPSHOT),
|
|
KEY("prtsc", VK_SNAPSHOT),
|
|
KEY("insert", VK_INSERT),
|
|
KEY("ins", VK_INSERT),
|
|
KEYR("delete", VK_DELETE),
|
|
KEYR("del", VK_DELETE),
|
|
KEY("kpmultiply", VK_MULTIPLY),
|
|
KEY("kpmul", VK_MULTIPLY),
|
|
KEY("kpadd", VK_ADD),
|
|
KEY("kpsubtract", VK_SUBTRACT),
|
|
KEY("kpsub", VK_SUBTRACT),
|
|
KEY("kpdecimal", VK_DECIMAL),
|
|
KEY("kpdec", VK_DECIMAL),
|
|
KEY("kpdelete", VK_DECIMAL),
|
|
KEY("kpdel", VK_DECIMAL),
|
|
KEY("kpdivide", VK_DIVIDE),
|
|
KEY("kpdiv", VK_DIVIDE),
|
|
KEY("numlock", VK_NUMLOCK),
|
|
KEY("kpnumlock", VK_NUMLOCK),
|
|
KEY("kplock", VK_NUMLOCK),
|
|
KEY("scrolllock", VK_SCROLL),
|
|
KEY("scroll", VK_SCROLL),
|
|
KEY("oem1", VK_OEM_1),
|
|
KEY(";", VK_OEM_1),
|
|
KEY(":", VK_OEM_1),
|
|
KEY("oem2", VK_OEM_2),
|
|
KEY("/", VK_OEM_2),
|
|
KEY("?", VK_OEM_2),
|
|
KEY("oem3", VK_OEM_3),
|
|
KEY("backtick", VK_OEM_3),
|
|
KEY("tilde", VK_OEM_3),
|
|
KEY("oem4", VK_OEM_4),
|
|
KEY("[", VK_OEM_4),
|
|
KEY("{", VK_OEM_4),
|
|
KEY("oem5", VK_OEM_5),
|
|
KEY("\\", VK_OEM_5),
|
|
KEY("|", VK_OEM_5),
|
|
KEY("oem6", VK_OEM_6),
|
|
KEY("]", VK_OEM_6),
|
|
KEY("}", VK_OEM_6),
|
|
KEY("oem7", VK_OEM_7),
|
|
KEY("\"", VK_OEM_7),
|
|
KEY("'", VK_OEM_7),
|
|
KEY("oem8", VK_OEM_8),
|
|
KEY("oem102", VK_OEM_102),
|
|
KEY("+", VK_OEM_PLUS),
|
|
KEY("=", VK_OEM_PLUS),
|
|
KEY(",", VK_OEM_COMMA),
|
|
KEY("<", VK_OEM_COMMA),
|
|
KEY("-", VK_OEM_MINUS),
|
|
KEY("_", VK_OEM_MINUS),
|
|
KEY(".", VK_OEM_PERIOD),
|
|
KEY(">", VK_OEM_PERIOD),
|
|
KEY("!", '1'),
|
|
KEY("@", '2'),
|
|
KEY("#", '3'),
|
|
KEY("$", '4'),
|
|
KEY("%", '5'),
|
|
KEY("^", '6'),
|
|
KEY("&", '7'),
|
|
KEY("*", '8'),
|
|
KEY("(", '9'),
|
|
KEY(")", '0'),
|
|
KEY("kp0", 0x60),
|
|
KEY("kp1", 0x61),
|
|
KEY("kp2", 0x62),
|
|
KEY("kp3", 0x63),
|
|
KEY("kp4", 0x64),
|
|
KEY("kp5", 0x65),
|
|
KEY("kp6", 0x66),
|
|
KEY("kp7", 0x67),
|
|
KEY("kp8", 0x68),
|
|
KEY("kp9", 0x69),
|
|
KEY("f1", 0x70),
|
|
KEY("f2", 0x71),
|
|
KEY("f3", 0x72),
|
|
KEY("f4", 0x73),
|
|
KEY("f5", 0x74),
|
|
KEY("f6", 0x75),
|
|
KEY("f7", 0x76),
|
|
KEY("f8", 0x77),
|
|
KEY("f9", 0x78),
|
|
KEY("f10", 0x79),
|
|
KEY("f11", 0x7A),
|
|
KEY("f12", 0x7B)
|
|
};
|
|
#undef KEY
|
|
|
|
|
|
#define MOD(Name, Flag) { Name, Flag }
|
|
static const win_keyMap_t win_modKeyMaps[] =
|
|
{
|
|
MOD("alt", MOD_ALT),
|
|
MOD("ctl", MOD_CONTROL),
|
|
MOD("ctrl", MOD_CONTROL),
|
|
MOD("control", MOD_CONTROL),
|
|
MOD("shift", MOD_SHIFT),
|
|
MOD("win", MOD_WIN),
|
|
MOD("windows", MOD_WIN)
|
|
};
|
|
#undef MOD
|
|
|
|
|
|
typedef struct {
|
|
const char* name;
|
|
UINT key;
|
|
UINT mod;
|
|
} win_hotKey_t;
|
|
|
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#define KEY(Name, Key, Mod) { Name, Key, Mod }
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static const win_hotKey_t win_allowedSingleKeys[] =
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{
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KEY("alt", VK_MENU, MOD_ALT),
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KEY("ctl", VK_CONTROL, MOD_CONTROL),
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KEY("ctrl", VK_CONTROL, MOD_CONTROL),
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KEY("control", VK_CONTROL, MOD_CONTROL),
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KEY("shift", VK_SHIFT, MOD_SHIFT)
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};
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#undef KEY
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#define KEY(Mod, Key, Name) { Name, Key, Mod }
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static const win_hotKey_t win_reservedHotkeys[] =
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{
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KEY(MOD_ALT, VK_RETURN, "fullscreen toggle"),
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KEY(MOD_ALT, VK_TAB, "task switch"),
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KEY(MOD_WIN, 'D', "show desktop toggle"),
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KEY(MOD_WIN, 'M', "minimize everything"),
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KEY(MOD_CONTROL | MOD_ALT, VK_DELETE, "log-in screen / task manager")
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};
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#undef KEY
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static qbool WIN_ParseKey( UINT* key, qbool* reserved, const char* name, const win_keyMap_t* keyMaps, int keyCount, qbool modsOnly )
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{
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if ( !modsOnly )
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{
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const int l = (int)strlen( name );
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if ( l == 1 )
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{
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const char c = name[0];
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// digits
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if ( c >= 0x30 && c <= 0x39 )
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{
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*key = (UINT)c;
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*reserved = qtrue;
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return qtrue;
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}
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// uppercase letters
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else if ( c >= 0x41 && c <= 0x5A )
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{
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*key = (UINT)c;
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*reserved = qtrue;
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return qtrue;
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}
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// lowercase letters
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else if ( c >= 0x61 && c <= 0x7A )
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{
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*key = (UINT)c - 0x20;
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*reserved = qtrue;
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return qtrue;
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}
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}
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}
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for ( int i = 0; i < keyCount; ++i )
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{
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if ( Q_stricmp( name, keyMaps[i].name ) == 0 )
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{
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*key = keyMaps[i].key;
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*reserved = keyMaps[i].reserved;
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return qtrue;
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}
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}
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return qfalse;
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}
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static qbool WIN_IsAllowedSingleHotKey( win_hotKey_t* hotKey, const char* name )
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{
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const int keyCount = ARRAY_LEN( win_allowedSingleKeys );
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for(int i = 0; i < keyCount; ++i)
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{
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if ( Q_stricmp( name, win_allowedSingleKeys[i].name ) == 0 )
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{
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*hotKey = win_allowedSingleKeys[i];
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return qtrue;
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}
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}
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UINT key;
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qbool reserved;
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if ( WIN_ParseKey( &key, &reserved, name, win_stdKeyMaps, ARRAY_LEN(win_stdKeyMaps), qfalse ) &&
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!reserved )
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{
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hotKey->key = key;
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hotKey->mod = 0;
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hotKey->name = "";
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return qtrue;
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}
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return qfalse;
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}
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static qbool WIN_IsReservedHotKey( win_hotKey_t* hotKey, UINT key, UINT mods )
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{
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const int keyCount = ARRAY_LEN( win_reservedHotkeys );
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for(int i = 0; i < keyCount; ++i)
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{
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if ( key == win_reservedHotkeys[i].key &&
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mods == win_reservedHotkeys[i].mod )
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{
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*hotKey = win_reservedHotkeys[i];
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return qtrue;
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}
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}
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return qfalse;
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}
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static void WIN_PrintHotKeyHelp()
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{
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Com_Printf( "The key names must be separated by whitespace,\n" );
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Com_Printf( "so use double quotes to enclose the key list.\n" );
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Com_Printf( "To print the key names, use the minimizekeynames command.\n" );
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}
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static qbool WIN_ParseHotKey( UINT* key, UINT* modifiers )
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{
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Cmd_TokenizeString( in_minimize->string );
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const int count = Cmd_Argc();
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if ( count <= 0 )
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return qfalse;
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if ( count == 1 )
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{
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win_hotKey_t hotKey;
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if( !WIN_IsAllowedSingleHotKey( &hotKey, Cmd_Argv(0) ) )
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{
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Com_Printf( "ERROR: this key can't be used alone\n" );
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WIN_PrintHotKeyHelp();
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return qfalse;
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}
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Com_Printf( "the key '%s' will be registered alone as a hotkey\n", Cmd_Argv(0) );
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*key = hotKey.key;
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*modifiers = hotKey.mod;
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return qtrue;
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}
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*modifiers = 0;
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qbool keyFound = qfalse;
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for ( int i = 0; i < count; ++i )
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{
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const char* const keyName = Cmd_Argv(i);
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if ( *keyName == '\0' )
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continue;
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qbool reserved;
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if ( WIN_ParseKey( key, &reserved, keyName, win_stdKeyMaps, ARRAY_LEN(win_stdKeyMaps), qfalse ) )
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{
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if ( keyFound ) // we allow at most 1 normal key
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{
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Com_Printf( "ERROR: in_minimize specified more than 1 non-modifier key\n" );
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WIN_PrintHotKeyHelp();
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return qfalse;
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}
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keyFound = qtrue;
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continue;
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}
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UINT mod;
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if ( WIN_ParseKey( &mod, &reserved, keyName, win_modKeyMaps, ARRAY_LEN(win_modKeyMaps), qtrue ) )
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{
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*modifiers |= mod;
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}
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else
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{
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Com_Printf( "ERROR: in_minimize doesn't recognize key name '%s'\n", keyName );
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WIN_PrintHotKeyHelp();
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return qfalse;
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}
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}
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if ( !keyFound )
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{
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Com_Printf("ERROR: in_minimize didn't specify a non-modifier key\n");
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WIN_PrintHotKeyHelp();
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return qfalse;
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}
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int modCount = 0;
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UINT mods = *modifiers;
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for ( UINT i = 0; i < 32; ++i )
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{
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if ((mods & 1) != 0 )
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++modCount;
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mods >>= 1;
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}
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// we require either 1 or 2 modifier keys
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if ( modCount < 1 || modCount > 2 )
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{
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Com_Printf("ERROR: in_minimize must specify at most 2 modifier keys\n");
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WIN_PrintHotKeyHelp();
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return qfalse;
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}
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// don't use reserved key combos
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win_hotKey_t hotKey;
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if( WIN_IsReservedHotKey( &hotKey, *key, *modifiers ) )
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{
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Com_Printf( "ERROR: this combo is reserved for: %s\n", hotKey.name );
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return qfalse;
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}
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return qtrue;
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}
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static void WIN_PrintKeyNames( const win_keyMap_t* keys, int keyCount )
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{
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const int columnCount = 4;
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const int lineCount = (keyCount + columnCount - 1) / columnCount;
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int maxColumnWidths[columnCount];
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for ( int x = 0; x < columnCount; ++x )
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{
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int maxWidth = 0;
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for ( int y = 0; y < lineCount; ++y )
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{
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const int k = x * lineCount + y;
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if ( k >= keyCount )
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break;
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const int l = (int)strlen( keys[k].name );
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maxWidth = max( maxWidth, l );
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}
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maxColumnWidths[x] = maxWidth;
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}
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for ( int y = 0; y < lineCount; ++y )
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{
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Com_Printf( " " );
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for ( int x = 0; x < columnCount; ++x )
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{
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const int k = x * lineCount + y;
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if ( k >= keyCount )
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break;
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const char* n = keys[k].name;
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const int l = (int)strlen(n);
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Com_Printf(n);
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const int spaceCount = maxColumnWidths[x] - l + 2;
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for ( int s = 0; s < spaceCount; ++s )
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Com_Printf( " " );
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}
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Com_Printf( "\n" );
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}
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}
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static void WIN_PrintMinimizeKeyNames()
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{
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Com_Printf( "Key Names:\n" );
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WIN_PrintKeyNames( win_stdKeyMaps, ARRAY_LEN( win_stdKeyMaps ) );
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Com_Printf( "\n" );
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Com_Printf( "Modifier Key Names:\n" );
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WIN_PrintKeyNames( win_modKeyMaps, ARRAY_LEN( win_modKeyMaps ) );
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}
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static void IN_StartupHotKey( qbool fullStartUp )
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{
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in_minimize = Cvar_Get( "in_minimize", "", CVAR_ARCHIVE );
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Cvar_SetHelp( "in_minimize", help_in_minimize );
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Cvar_SetModule( "in_minimize", MODULE_INPUT );
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in_minimize->modified = qfalse;
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if ( fullStartUp )
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{
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Cmd_AddCommand( "minimizekeynames", &WIN_PrintMinimizeKeyNames );
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Cmd_SetHelp( "minimizekeynames", "prints all key names usable with in_minimize" );
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Cmd_SetModule( "minimizekeynames", MODULE_INPUT );
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}
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WIN_UnregisterHotKey();
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if ( in_minimize->string[0] == '\0' )
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return;
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UINT key, modifiers;
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if ( !WIN_ParseHotKey( &key, &modifiers ) )
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return;
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WIN_RegisterHotKey( modifiers, key );
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}
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static void IN_ShutDownHotKey()
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{
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// @TODO: remove this once Sys_InitInput and Sys_ShutdownInput are done
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Cmd_RemoveCommand( "minimizekeynames" );
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WIN_UnregisterHotKey();
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}
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static void IN_UpdateHotKey()
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{
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if ( !in_minimize->modified )
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return;
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IN_StartupHotKey( qfalse );
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}
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