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86Box/src/qt/xinput2_mouse.cpp

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/*
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* 86Box A hypervisor and IBM PC system emulator that specializes in
* running old operating systems and software designed for IBM
* PC systems and compatibles from 1981 through fairly recent
* system designs based on the PCI bus.
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*
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* This file is part of the 86Box distribution.
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*
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* X11 Xinput2 mouse input module.
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*
*
*
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* Authors: Cacodemon345
* RichardG <richardg867@gmail.com>
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*
* Copyright 2022 Cacodemon345.
* Copyright 2023 RichardG.
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*/
#include <QDebug>
#include <QThread>
#include <QProcess>
#include <QApplication>
#include <QAbstractNativeEventFilter>
#include "qt_mainwindow.hpp"
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extern MainWindow *main_window;
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#include <stdint.h>
#include <stdlib.h>
#include <stdio.h>
#include <atomic>
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extern "C" {
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#include <X11/Xlib.h>
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#include <X11/keysym.h>
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#include <X11/extensions/XInput2.h>
#include <unistd.h>
#include <fcntl.h>
#include <86box/86box.h>
#include <86box/mouse.h>
#include <86box/plat.h>
}
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static Display *disp = nullptr;
static QThread *procThread = nullptr;
static XIEventMask ximask;
static std::atomic<bool> exitfromthread = false;
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static std::atomic<double> xi2_mouse_x = 0, xi2_mouse_y = 0, xi2_mouse_abs_x = 0, xi2_mouse_abs_y = 0;
static int xi2opcode = 0;
static double prev_coords[2] = { 0.0 };
static Time prev_time = 0;
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/* Based on SDL2. */
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static void
parse_valuators(const double *input_values,
const unsigned char *mask, int mask_len,
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double *output_values, int output_values_len)
{
int i = 0, z = 0;
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int top = mask_len * 8;
if (top > 16)
top = 16;
memset(output_values, 0, output_values_len * sizeof(output_values[0]));
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for (; i < top && z < output_values_len; i++) {
if (XIMaskIsSet(mask, i)) {
output_values[z] = *input_values;
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input_values++;
}
z++;
}
}
static bool exitthread = false;
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void
xinput2_proc()
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{
Window win;
win = DefaultRootWindow(disp);
ximask.deviceid = XIAllMasterDevices;
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ximask.mask_len = XIMaskLen(XI_LASTEVENT);
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ximask.mask = (unsigned char *) calloc(ximask.mask_len, sizeof(unsigned char));
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XISetMask(ximask.mask, XI_RawKeyPress);
XISetMask(ximask.mask, XI_RawKeyRelease);
XISetMask(ximask.mask, XI_RawButtonPress);
XISetMask(ximask.mask, XI_RawButtonRelease);
XISetMask(ximask.mask, XI_RawMotion);
XISetMask(ximask.mask, XI_Motion);
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XISelectEvents(disp, win, &ximask, 1);
XSync(disp, False);
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while (true) {
XEvent ev;
XGenericEventCookie *cookie = (XGenericEventCookie *) &ev.xcookie;
XNextEvent(disp, (XEvent *) &ev);
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if (XGetEventData(disp, cookie) && (cookie->type == GenericEvent) && (cookie->extension == xi2opcode)) {
const XIRawEvent *rawev = (const XIRawEvent *) cookie->data;
double coords[2] = { 0.0 };
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switch (cookie->evtype) {
case XI_Motion:
{
const XIDeviceEvent *devev = (const XIDeviceEvent *) cookie->data;
parse_valuators(devev->valuators.values, devev->valuators.mask, devev->valuators.mask_len, coords, 2);
/* XIDeviceEvent and XIRawEvent share the XIEvent base struct, which
doesn't contain deviceid, but that's at the same offset on both. */
goto common_motion;
}
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case XI_RawMotion:
{
parse_valuators(rawev->raw_values, rawev->valuators.mask, rawev->valuators.mask_len, coords, 2);
common_motion:
/* Ignore duplicated events. */
if ((rawev->time == prev_time) && (coords[0] == prev_coords[0]) && (coords[1] == prev_coords[1]))
break;
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/* SDL2 queries the device on every event, so doing that should be fine. */
int i;
XIDeviceInfo *xidevinfo = XIQueryDevice(disp, rawev->deviceid, &i);
if (xidevinfo) {
/* Process the device's axes. */
int axis = 0;
for (i = 0; i < xidevinfo->num_classes; i++) {
const XIValuatorClassInfo *v = (const XIValuatorClassInfo *) xidevinfo->classes[i];
if (v->type == XIValuatorClass) {
/* Is this an absolute or relative axis? */
if (v->mode == XIModeRelative) {
/* Set relative coordinates. */
if (axis == 0)
xi2_mouse_x = xi2_mouse_x + coords[axis];
else
xi2_mouse_y = xi2_mouse_y + coords[axis];
} else {
/* Convert absolute value range to pixel granularity, then to relative coordinates. */
int disp_screen = XDefaultScreen(disp);
double abs_div;
if (axis == 0) {
abs_div = (v->max - v->min) / (double) XDisplayWidth(disp, disp_screen);
if (abs_div <= 0)
abs_div = 1;
abs_div = (coords[axis] - v->min) / abs_div;
if (xi2_mouse_abs_x != 0)
xi2_mouse_x = xi2_mouse_x + (abs_div - xi2_mouse_abs_x);
xi2_mouse_abs_x = abs_div;
} else {
abs_div = (v->max - v->min) / (double) XDisplayHeight(disp, disp_screen);
if (abs_div <= 0)
abs_div = 1;
abs_div = (coords[axis] - v->min) / abs_div;
if (xi2_mouse_abs_y != 0)
xi2_mouse_y = xi2_mouse_y + (abs_div - xi2_mouse_abs_y);
xi2_mouse_abs_y = abs_div;
}
}
prev_coords[axis] = coords[axis];
if (++axis >= 2) /* stop after X and Y processed */
break;
}
}
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}
prev_time = rawev->time;
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if (!mouse_capture)
break;
XWindowAttributes winattrib {};
if (XGetWindowAttributes(disp, main_window->winId(), &winattrib)) {
auto globalPoint = main_window->mapToGlobal(QPoint(main_window->width() / 2, main_window->height() / 2));
XWarpPointer(disp, XRootWindow(disp, XScreenNumberOfScreen(winattrib.screen)), XRootWindow(disp, XScreenNumberOfScreen(winattrib.screen)), 0, 0, 0, 0, globalPoint.x(), globalPoint.y());
XFlush(disp);
}
break;
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}
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}
}
XFreeEventData(disp, cookie);
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if (exitthread)
break;
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}
XCloseDisplay(disp);
}
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void
xinput2_exit()
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{
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if (!exitthread) {
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exitthread = true;
procThread->wait(5000);
procThread->terminate();
}
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}
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void
xinput2_init()
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{
disp = XOpenDisplay(nullptr);
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if (!disp) {
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qWarning() << "Cannot open current X11 display";
return;
}
auto event = 0, err = 0, minor = 1, major = 2;
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if (XQueryExtension(disp, "XInputExtension", &xi2opcode, &event, &err)) {
if (XIQueryVersion(disp, &major, &minor) == Success) {
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procThread = QThread::create(xinput2_proc);
procThread->start();
atexit(xinput2_exit);
}
}
}
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void
xinput2_poll()
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{
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if (procThread && mouse_capture) {
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mouse_x = xi2_mouse_x;
mouse_y = xi2_mouse_y;
}
xi2_mouse_x = 0;
xi2_mouse_y = 0;
}