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/* ScummVM - Graphic Adventure Engine
*
* ScummVM is the legal property of its developers, whose names
* are too numerous to list here. Please refer to the COPYRIGHT
* file distributed with this source distribution.
*
* This program is free software; you can redistribute it and/or
* modify it under the terms of the GNU General Public License
* as published by the Free Software Foundation; either version 2
* of the License, or (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
*
*/
#include "common/scummsys.h"
#if defined(PSP2)
#include <psp2/kernel/processmgr.h>
#include <psp2/touch.h>
#include "backends/platform/sdl/psp2/psp2.h"
#include "backends/events/psp2sdl/psp2sdl-events.h"
#include "backends/platform/sdl/sdl.h"
#include "engines/engine.h"
#include "common/util.h"
#include "common/events.h"
#include "common/config-manager.h"
#include "math.h"
#define TOUCHSCREEN_WIDTH 960
#define TOUCHSCREEN_HEIGHT 544
PSP2EventSource::PSP2EventSource() {
for (int port = 0; port < SCE_TOUCH_PORT_MAX_NUM; port++) {
for (int i = 0; i < MAX_NUM_FINGERS; i++) {
_finger[port][i].id = -1;
}
_multiFingerDragging[port] = DRAG_NONE;
}
for (int port = 0; port < SCE_TOUCH_PORT_MAX_NUM; port++) {
for (int i = 0; i < 2; i++) {
_simulatedClickStartTime[port][i] = 0;
}
}
_hiresDX = 0;
_hiresDY = 0;
}
bool PSP2EventSource::pollEvent(Common::Event &event) {
finishSimulatedMouseClicks();
return SdlEventSource::pollEvent(event);
}
void PSP2EventSource::preprocessEvents(SDL_Event *event) {
// prevent suspend (scummvm games contain a lot of cutscenes..)
sceKernelPowerTick(SCE_KERNEL_POWER_TICK_DISABLE_AUTO_SUSPEND);
sceKernelPowerTick(SCE_KERNEL_POWER_TICK_DISABLE_OLED_OFF);
// Supported touch gestures:
// left mouse click: single finger short tap
// right mouse click: second finger short tap while first finger is still down
// pointer motion: single finger drag
if (event->type == SDL_FINGERDOWN || event->type == SDL_FINGERUP || event->type == SDL_FINGERMOTION) {
// front (0) or back (1) panel
SDL_TouchID port = event->tfinger.touchId;
if (port < SCE_TOUCH_PORT_MAX_NUM && port >= 0) {
// touchpad_mouse_mode off: use only front panel for direct touch control of pointer
// touchpad_mouse_mode on: also enable rear touch with indirect touch control
// where the finger can be somewhere else than the pointer and still move it
if (port == 0 || ConfMan.getBool("touchpad_mouse_mode")) {
switch (event->type) {
case SDL_FINGERDOWN:
preprocessFingerDown(event);
break;
case SDL_FINGERUP:
preprocessFingerUp(event);
break;
case SDL_FINGERMOTION:
preprocessFingerMotion(event);
break;
}
}
}
}
}
void PSP2EventSource::preprocessFingerDown(SDL_Event *event) {
// front (0) or back (1) panel
SDL_TouchID port = event->tfinger.touchId;
// id (for multitouch)
SDL_FingerID id = event->tfinger.fingerId;
int x = _km.x / MULTIPLIER;
int y = _km.y / MULTIPLIER;
if (port == 0 && !ConfMan.getBool("frontpanel_touchpad_mode")) {
convertTouchXYToGameXY(event->tfinger.x, event->tfinger.y, &x, &y);
}
// make sure each finger is not reported down multiple times
for (int i = 0; i < MAX_NUM_FINGERS; i++) {
if (_finger[port][i].id == id) {
_finger[port][i].id = -1;
}
}
// we need the timestamps to decide later if the user performed a short tap (click)
// or a long tap (drag)
// we also need the last coordinates for each finger to keep track of dragging
for (int i = 0; i < MAX_NUM_FINGERS; i++) {
if (_finger[port][i].id == -1) {
_finger[port][i].id = id;
_finger[port][i].timeLastDown = event->tfinger.timestamp;
_finger[port][i].lastDownX = event->tfinger.x;
_finger[port][i].lastDownY = event->tfinger.y;
_finger[port][i].lastX = x;
_finger[port][i].lastY = y;
break;
}
}
}
void PSP2EventSource::preprocessFingerUp(SDL_Event *event) {
// front (0) or back (1) panel
SDL_TouchID port = event->tfinger.touchId;
// id (for multitouch)
SDL_FingerID id = event->tfinger.fingerId;
// find out how many fingers were down before this event
int numFingersDown = 0;
for (int i = 0; i < MAX_NUM_FINGERS; i++) {
if (_finger[port][i].id >= 0) {
numFingersDown++;
}
}
int x = _km.x / MULTIPLIER;
int y = _km.y / MULTIPLIER;
for (int i = 0; i < MAX_NUM_FINGERS; i++) {
if (_finger[port][i].id == id) {
_finger[port][i].id = -1;
if (!_multiFingerDragging[port]) {
if ((event->tfinger.timestamp - _finger[port][i].timeLastDown) <= MAX_TAP_TIME) {
// short (<MAX_TAP_TIME ms) tap is interpreted as right/left mouse click depending on # fingers already down
// but only if the finger hasn't moved since it was pressed down by more than MAX_TAP_MOTION_DISTANCE pixels
float xrel = ((event->tfinger.x * 960.0) - (_finger[port][i].lastDownX * 960.0));
float yrel = ((event->tfinger.y * 544.0) - (_finger[port][i].lastDownY * 544.0));
float maxRSquared = (float) (MAX_TAP_MOTION_DISTANCE * MAX_TAP_MOTION_DISTANCE);
if ((xrel * xrel + yrel * yrel) < maxRSquared) {
if (numFingersDown == 2 || numFingersDown == 1) {
Uint8 simulatedButton = 0;
if (numFingersDown == 2) {
simulatedButton = SDL_BUTTON_RIGHT;
// need to raise the button later
_simulatedClickStartTime[port][1] = event->tfinger.timestamp;
} else if (numFingersDown == 1) {
simulatedButton = SDL_BUTTON_LEFT;
// need to raise the button later
_simulatedClickStartTime[port][0] = event->tfinger.timestamp;
if (port == 0 && !ConfMan.getBool("frontpanel_touchpad_mode")) {
convertTouchXYToGameXY(event->tfinger.x, event->tfinger.y, &x, &y);
}
}
event->type = SDL_MOUSEBUTTONDOWN;
event->button.button = simulatedButton;
event->button.x = x;
event->button.y = y;
}
}
}
} else if (numFingersDown == 1) {
// when dragging, and the last finger is lifted, the drag is over
if (port == 0 && !ConfMan.getBool("frontpanel_touchpad_mode")) {
convertTouchXYToGameXY(event->tfinger.x, event->tfinger.y, &x, &y);
}
Uint8 simulatedButton = 0;
if (_multiFingerDragging[port] == DRAG_THREE_FINGER)
simulatedButton = SDL_BUTTON_RIGHT;
else {
simulatedButton = SDL_BUTTON_LEFT;
}
event->type = SDL_MOUSEBUTTONUP;
event->button.button = simulatedButton;
event->button.x = x;
event->button.y = y;
_multiFingerDragging[port] = DRAG_NONE;
}
}
}
}
void PSP2EventSource::preprocessFingerMotion(SDL_Event *event) {
// front (0) or back (1) panel
SDL_TouchID port = event->tfinger.touchId;
// id (for multitouch)
SDL_FingerID id = event->tfinger.fingerId;
// find out how many fingers were down before this event
int numFingersDown = 0;
for (int i = 0; i < MAX_NUM_FINGERS; i++) {
if (_finger[port][i].id >= 0) {
numFingersDown++;
}
}
if (numFingersDown >= 1) {
int x = _km.x / MULTIPLIER;
int y = _km.y / MULTIPLIER;
if (port == 0 && !ConfMan.getBool("frontpanel_touchpad_mode")) {
convertTouchXYToGameXY(event->tfinger.x, event->tfinger.y, &x, &y);
} else {
// for relative mode, use the pointer speed setting
float speedFactor = 1.0;
switch (ConfMan.getInt("kbdmouse_speed")) {
// 0.25 keyboard pointer speed
case 0:
speedFactor = 0.25;
break;
// 0.5 speed
case 1:
speedFactor = 0.5;
break;
// 0.75 speed
case 2:
speedFactor = 0.75;
break;
// 1.0 speed
case 3:
speedFactor = 1.0;
break;
// 1.25 speed
case 4:
speedFactor = 1.25;
break;
// 1.5 speed
case 5:
speedFactor = 1.5;
break;
// 1.75 speed
case 6:
speedFactor = 1.75;
break;
// 2.0 speed
case 7:
speedFactor = 2.0;
break;
default:
speedFactor = 1.0;
}
// convert touch events to relative mouse pointer events
// track sub-pixel relative finger motion using the MULTIPLIER
_hiresDX += (event->tfinger.dx * 1.25 * speedFactor * _km.x_max * MULTIPLIER);
_hiresDY += (event->tfinger.dy * 1.25 * speedFactor * _km.y_max * MULTIPLIER);
int xRel = _hiresDX / MULTIPLIER;
int yRel = _hiresDY / MULTIPLIER;
x = (_km.x / MULTIPLIER) + xRel;
y = (_km.y / MULTIPLIER) + yRel;
_hiresDX %= MULTIPLIER;
_hiresDY %= MULTIPLIER;
}
if (x > _km.x_max) {
x = _km.x_max;
} else if (x < 0) {
x = 0;
}
if (y > _km.y_max) {
y = _km.y_max;
} else if (y < 0) {
y = 0;
}
// update the current finger's coordinates so we can track it later
for (int i = 0; i < MAX_NUM_FINGERS; i++) {
if (_finger[port][i].id == id) {
_finger[port][i].lastX = x;
_finger[port][i].lastY = y;
}
}
// If we are starting a multi-finger drag, start holding down the mouse button
if (numFingersDown >= 2) {
if (!_multiFingerDragging[port]) {
// only start a multi-finger drag if at least two fingers have been down long enough
int numFingersDownLong = 0;
for (int i = 0; i < MAX_NUM_FINGERS; i++) {
if (_finger[port][i].id >= 0) {
if (event->tfinger.timestamp - _finger[port][i].timeLastDown > MAX_TAP_TIME) {
numFingersDownLong++;
}
}
}
if (numFingersDownLong >= 2) {
// starting drag, so push mouse down at current location (back)
// or location of "oldest" finger (front)
int mouseDownX = _km.x / MULTIPLIER;
int mouseDownY = _km.y / MULTIPLIER;
if (port == 0 && !ConfMan.getBool("frontpanel_touchpad_mode")) {
for (int i = 0; i < MAX_NUM_FINGERS; i++) {
if (_finger[port][i].id == id) {
Uint32 earliestTime = _finger[port][i].timeLastDown;
for (int j = 0; j < MAX_NUM_FINGERS; j++) {
if (_finger[port][j].id >= 0 && (i != j) ) {
if (_finger[port][j].timeLastDown < earliestTime) {
mouseDownX = _finger[port][j].lastX;
mouseDownY = _finger[port][j].lastY;
earliestTime = _finger[port][j].timeLastDown;
}
}
}
break;
}
}
}
Uint8 simulatedButton = 0;
if (numFingersDownLong == 2) {
simulatedButton = SDL_BUTTON_LEFT;
_multiFingerDragging[port] = DRAG_TWO_FINGER;
} else {
simulatedButton = SDL_BUTTON_RIGHT;
_multiFingerDragging[port] = DRAG_THREE_FINGER;
}
SDL_Event ev;
ev.type = SDL_MOUSEBUTTONDOWN;
ev.button.button = simulatedButton;
ev.button.x = mouseDownX;
ev.button.y = mouseDownY;
SDL_PushEvent(&ev);
}
}
}
//check if this is the "oldest" finger down (or the only finger down), otherwise it will not affect mouse motion
bool updatePointer = true;
if (numFingersDown > 1) {
for (int i = 0; i < MAX_NUM_FINGERS; i++) {
if (_finger[port][i].id == id) {
for (int j = 0; j < MAX_NUM_FINGERS; j++) {
if (_finger[port][j].id >= 0 && (i != j) ) {
if (_finger[port][j].timeLastDown < _finger[port][i].timeLastDown) {
updatePointer = false;
}
}
}
}
}
}
if (updatePointer) {
event->type = SDL_MOUSEMOTION;
event->motion.x = x;
event->motion.y = y;
}
}
}
void PSP2EventSource::convertTouchXYToGameXY(float touchX, float touchY, int *gameX, int *gameY) {
int screenH = _km.y_max;
int screenW = _km.x_max;
const int dispW = TOUCHSCREEN_WIDTH;
const int dispH = TOUCHSCREEN_HEIGHT;
int x, y, w, h;
float sx, sy;
float ratio = (float)screenW / (float)screenH;
h = dispH;
w = h * ratio;
x = (dispW - w) / 2;
y = (dispH - h) / 2;
sy = (float)h / (float)screenH;
sx = (float)w / (float)screenW;
// Find touch coordinates in terms of screen pixels
float dispTouchX = (touchX * (float)dispW);
float dispTouchY = (touchY * (float)dispH);
*gameX = CLIP((int)((dispTouchX - x) / sx), 0, (int)_km.x_max);
*gameY = CLIP((int)((dispTouchY - y) / sy), 0, (int)_km.y_max);
}
void PSP2EventSource::finishSimulatedMouseClicks() {
for (int port = 0; port < SCE_TOUCH_PORT_MAX_NUM; port++) {
for (int i = 0; i < 2; i++) {
if (_simulatedClickStartTime[port][i] != 0) {
Uint32 currentTime = SDL_GetTicks();
if (currentTime - _simulatedClickStartTime[port][i] >= SIMULATED_CLICK_DURATION) {
int simulatedButton;
if (i == 0) {
simulatedButton = SDL_BUTTON_LEFT;
} else {
simulatedButton = SDL_BUTTON_RIGHT;
}
SDL_Event ev;
ev.type = SDL_MOUSEBUTTONUP;
ev.button.button = simulatedButton;
ev.button.x = _km.x / MULTIPLIER;
ev.button.y = _km.y / MULTIPLIER;
SDL_PushEvent(&ev);
_simulatedClickStartTime[port][i] = 0;
}
}
}
}
}
#endif
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