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https://github.com/libretro/scummvm.git
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a401f0a19e
All uses of the old target scale API actually wanted to disallow scaling of the mouse cursor. This commit adapts our API to this and thus simplifies backend implementations. Some backends, most notable the Wii and Android, did some implementation of the cursor target scale, which I didn't adapt yet. I added a TODO for the porters there.
433 lines
10 KiB
C++
433 lines
10 KiB
C++
/* ScummVM - Graphic Adventure Engine
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*
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* ScummVM is the legal property of its developers, whose names
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* are too numerous to list here. Please refer to the COPYRIGHT
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* file distributed with this source distribution.
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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* This program is distributed in the hope that it will be useful,
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* 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 this program; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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*
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*/
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#include "groovie/cursor.h"
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#include "groovie/groovie.h"
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#include "common/debug.h"
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#include "common/archive.h"
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#include "common/file.h"
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#include "common/macresman.h"
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#include "common/textconsole.h"
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#include "graphics/cursorman.h"
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namespace Groovie {
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// Cursor Manager
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GrvCursorMan::GrvCursorMan(OSystem *system) :
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_syst(system), _lastTime(0), _current(255), _cursor(NULL) {
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}
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GrvCursorMan::~GrvCursorMan() {
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// Delete the cursors
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for (uint cursor = 0; cursor < _cursors.size(); cursor++) {
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delete _cursors[cursor];
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}
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CursorMan.popAllCursors();
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}
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void GrvCursorMan::show(bool visible) {
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CursorMan.showMouse(visible);
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}
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uint8 GrvCursorMan::getStyle() {
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return _current;
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}
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void GrvCursorMan::setStyle(uint8 newStyle) {
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// Reset the animation
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_lastFrame = 254;
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_lastTime = 1;
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// Save the new cursor
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_current = newStyle;
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_cursor = _cursors[newStyle];
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// Show the first frame
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_cursor->enable();
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animate();
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}
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void GrvCursorMan::animate() {
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if (_lastTime) {
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int newTime = _syst->getMillis();
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if (_lastTime - newTime >= 75) {
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_lastFrame++;
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_lastFrame %= _cursor->getFrames();
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_cursor->showFrame(_lastFrame);
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_lastTime = _syst->getMillis();
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}
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}
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}
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// t7g Cursor
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class Cursor_t7g : public Cursor {
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public:
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Cursor_t7g(uint8 *img, uint8 *pal);
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void enable();
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void showFrame(uint16 frame);
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private:
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byte *_img;
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byte *_pal;
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};
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Cursor_t7g::Cursor_t7g(uint8 *img, uint8 *pal) :
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_pal(pal) {
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_width = img[0];
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_height = img[1];
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_numFrames = img[2];
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uint8 elinor1 = img[3];
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uint8 elinor2 = img[4];
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_img = img + 5;
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debugC(1, kGroovieDebugCursor | kGroovieDebugAll, "Groovie::Cursor: width: %d, height: %d, frames:%d", _width, _height, _numFrames);
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debugC(1, kGroovieDebugCursor | kGroovieDebugUnknown | kGroovieDebugAll, "Groovie::Cursor: elinor: 0x%02X (%d), 0x%02X (%d)", elinor1, elinor1, elinor2, elinor2);
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}
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void Cursor_t7g::enable() {
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// Apply the palette
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CursorMan.replaceCursorPalette(_pal, 0, 32);
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}
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void Cursor_t7g::showFrame(uint16 frame) {
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// Set the mouse cursor
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int offset = _width * _height * frame;
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CursorMan.replaceCursor((const byte *)_img + offset, _width, _height, _width >> 1, _height >> 1, 0);
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}
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// t7g Cursor Manager
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#define NUM_IMGS 9
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static const uint16 cursorDataOffsets[NUM_IMGS] = {
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0x0000, 0x182f, 0x3b6d, 0x50cc, 0x6e79, 0x825d, 0x96d7, 0xa455, 0xa776
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};
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#define NUM_PALS 7
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//Pals: 0xb794, 0xb7f4, 0xb854, 0xb8b4, 0xb914, 0xb974, 0xb9d4
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#define NUM_STYLES 11
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// pyramid is cursor 8, eyes are 9 & 10
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const uint GrvCursorMan_t7g::_cursorImg[NUM_STYLES] = {3, 5, 4, 3, 1, 0, 2, 6, 7, 8, 8};
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const uint GrvCursorMan_t7g::_cursorPal[NUM_STYLES] = {0, 0, 0, 0, 2, 0, 1, 3, 5, 4, 6};
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GrvCursorMan_t7g::GrvCursorMan_t7g(OSystem *system, Common::MacResManager *macResFork) :
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GrvCursorMan(system) {
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Common::SeekableReadStream *robgjd = 0;
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if (macResFork) {
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// Open the cursors file from the resource fork
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robgjd = macResFork->getResource("rob.gjd");
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} else {
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// Open the cursors file
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robgjd = SearchMan.createReadStreamForMember("rob.gjd");
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}
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if (!robgjd)
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error("Groovie::Cursor: Couldn't open rob.gjd");
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// Load the images
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for (uint imgnum = 0; imgnum < NUM_IMGS; imgnum++) {
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robgjd->seek(cursorDataOffsets[imgnum]);
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_images.push_back(loadImage(*robgjd));
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}
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// Load the palettes
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robgjd->seek(-0x60 * NUM_PALS, SEEK_END);
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for (uint palnum = 0; palnum < NUM_PALS; palnum++) {
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_palettes.push_back(loadPalette(*robgjd));
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}
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// Build the cursors
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for (uint cursor = 0; cursor < NUM_STYLES; cursor++) {
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Cursor *s = new Cursor_t7g(_images[_cursorImg[cursor]], _palettes[_cursorPal[cursor]]);
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_cursors.push_back(s);
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}
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delete robgjd;
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}
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GrvCursorMan_t7g::~GrvCursorMan_t7g() {
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// Delete the images
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for (uint img = 0; img < _images.size(); img++) {
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delete[] _images[img];
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}
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// Delete the palettes
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for (uint pal = 0; pal < _palettes.size(); pal++) {
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delete[] _palettes[pal];
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}
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}
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byte *GrvCursorMan_t7g::loadImage(Common::SeekableReadStream &file) {
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uint16 decompbytes = 0, offset, i, length;
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uint8 flagbyte, lengthmask = 0x0F, offsetlen, var_8;
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byte *cursorStorage = new byte[65536];
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uint8 *runningcursor = cursorStorage;
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bool finished = false;
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while (!(finished || file.eos())) {
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flagbyte = file.readByte();
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for (i = 1; i <= 8; i++) {
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if (!file.eos()) {
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if (flagbyte & 1) {
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*(runningcursor++) = file.readByte();
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decompbytes++;
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} else {
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var_8 = file.readByte();
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offsetlen = file.readByte();
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if (var_8 == 0 && offsetlen == 0) {
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finished = true;
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break;
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}
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length = (offsetlen & lengthmask) + 3;
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offsetlen >>= 4;
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offset = (offsetlen << 8) + var_8;
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decompbytes += length;
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for (; length > 0; length--, runningcursor++) {
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*(runningcursor) = *(runningcursor - offset);
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}
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}
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flagbyte = flagbyte >> 1;
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}
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}
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}
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return cursorStorage;
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}
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byte *GrvCursorMan_t7g::loadPalette(Common::SeekableReadStream &file) {
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byte *palette = new byte[3 * 32];
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file.read(palette, 3 * 32);
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return palette;
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}
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// v2 Cursor
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class Cursor_v2 : public Cursor {
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public:
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Cursor_v2(Common::File &file);
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~Cursor_v2();
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void enable();
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void showFrame(uint16 frame);
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private:
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// Currently locked to 16bit
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byte *_img;
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Graphics::PixelFormat _format;
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void decodeFrame(byte *pal, byte *data, byte *dest);
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};
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Cursor_v2::Cursor_v2(Common::File &file) {
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byte *pal = new byte[0x20 * 3];
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_format = g_system->getScreenFormat();
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_numFrames = file.readUint16LE();
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_width = file.readUint16LE();
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_height = file.readUint16LE();
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_img = new byte[_width * _height * _numFrames * 2];
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debugC(1, kGroovieDebugCursor | kGroovieDebugAll, "Groovie::Cursor: width: %d, height: %d, frames:%d", _width, _height, _numFrames);
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uint16 tmp16 = file.readUint16LE();
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debugC(5, kGroovieDebugCursor | kGroovieDebugAll, "hotspot x?: %d\n", tmp16);
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tmp16 = file.readUint16LE();
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debugC(5, kGroovieDebugCursor | kGroovieDebugAll, "hotspot y?: %d\n", tmp16);
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int loop2count = file.readUint16LE();
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debugC(5, kGroovieDebugCursor | kGroovieDebugAll, "loop2count?: %d\n", loop2count);
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for (int l = 0; l < loop2count; l++) {
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tmp16 = file.readUint16LE();
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debugC(5, kGroovieDebugCursor | kGroovieDebugAll, "loop2a: %d\n", tmp16); // Index frame can merge to/from?
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tmp16 = file.readUint16LE();
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debugC(5, kGroovieDebugCursor | kGroovieDebugAll, "loop2b: %d\n", tmp16); // Number of frames?
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}
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file.read(pal, 0x20 * 3);
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for (int f = 0; f < _numFrames; f++) {
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uint32 tmp32 = file.readUint32LE();
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debugC(5, kGroovieDebugCursor | kGroovieDebugAll, "loop3: %d\n", tmp32);
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byte *data = new byte[tmp32];
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file.read(data, tmp32);
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decodeFrame(pal, data, _img + (f * _width * _height * 2));
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delete[] data;
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}
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delete[] pal;
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}
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Cursor_v2::~Cursor_v2() {
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delete[] _img;
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}
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void Cursor_v2::decodeFrame(byte *pal, byte *data, byte *dest) {
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// Scratch memory
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byte *tmp = new byte[_width * _height * 4];
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byte *ptr = tmp;
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memset(tmp, 0, _width * _height * 4);
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byte ctrA = 0, ctrB = 0;
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byte alpha = 0, palIdx = 0;
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byte r, g, b;
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// Start frame decoding
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for (int y = 0; y < _height; y++) {
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for (int x = 0; x < _width; x++) {
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// If both counters are empty
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if (ctrA == 0 && ctrB == 0) {
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if (*data & 0x80) {
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ctrA = (*data++ & 0x7F) + 1;
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} else {
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ctrB = *data++ + 1;
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alpha = *data & 0xE0;
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palIdx = *data++ & 0x1F;
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}
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}
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if (ctrA) {
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// Block type A - chunk of non-continuous pixels
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palIdx = *data & 0x1F;
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alpha = *data++ & 0xE0;
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r = *(pal + palIdx);
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g = *(pal + palIdx + 0x20);
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b = *(pal + palIdx + 0x40);
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ctrA--;
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} else {
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// Block type B - chunk of continuous pixels
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r = *(pal + palIdx);
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g = *(pal + palIdx + 0x20);
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b = *(pal + palIdx + 0x40);
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ctrB--;
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}
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// Decode pixel
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if (alpha) {
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if (alpha != 0xE0) {
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alpha = ((alpha << 8) / 224);
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// TODO: The * 0 to be replaced by the component value of each pixel
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// below, respectively - does blending
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r = (byte)((alpha * r + (256 - alpha) * 0) >> 8);
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g = (byte)((alpha * g + (256 - alpha) * 0) >> 8);
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b = (byte)((alpha * b + (256 - alpha) * 0) >> 8);
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}
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*ptr = 1;
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*(ptr + 1) = r;
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*(ptr + 2) = g;
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*(ptr + 3) = b;
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}
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ptr += 4;
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}
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}
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// Convert to screen format
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// NOTE: Currently locked to 16bit
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ptr = tmp;
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for (int y = 0; y < _height; y++) {
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for (int x = 0; x < _width; x++) {
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if (*ptr == 1) {
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*(uint16 *)dest = (uint16)_format.RGBToColor(*(ptr + 1), *(ptr + 2), *(ptr + 3));
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} else {
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*(uint16 *)dest = 0;
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}
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dest += 2;
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ptr += 4;
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}
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}
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}
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void Cursor_v2::enable() {
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}
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void Cursor_v2::showFrame(uint16 frame) {
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int offset = _width * _height * frame * 2;
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CursorMan.replaceCursor((const byte *)(_img + offset), _width, _height, _width >> 1, _height >> 1, 0, false, &_format);
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}
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// v2 Cursor Manager
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GrvCursorMan_v2::GrvCursorMan_v2(OSystem *system) :
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GrvCursorMan(system) {
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// Open the icons file
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Common::File iconsFile;
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if (!iconsFile.open("icons.ph"))
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error("Groovie::Cursor: Couldn't open icons.ph");
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// Verify the signature
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uint32 tmp32 = iconsFile.readUint32BE();
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uint16 tmp16 = iconsFile.readUint16LE();
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if (tmp32 != MKTAG('i','c','o','n') || tmp16 != 1)
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error("Groovie::Cursor: icons.ph signature failed: %s %d", tag2str(tmp32), tmp16);
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// Read the number of icons
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uint16 nicons = iconsFile.readUint16LE();
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// Read the icons
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for (int i = 0; i < nicons; i++) {
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Cursor *s = new Cursor_v2(iconsFile);
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_cursors.push_back(s);
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}
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iconsFile.close();
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}
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GrvCursorMan_v2::~GrvCursorMan_v2() {
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}
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void GrvCursorMan_v2::setStyle(uint8 newStyle) {
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// Cursor 4 is actually cursor 3, but with some changes to alpha blending
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// (which is currently not handled)
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GrvCursorMan::setStyle(newStyle == 4 ? 3 : newStyle);
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}
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} // End of Groovie namespace
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