mirror of
https://github.com/libretro/scummvm.git
synced 2024-12-16 14:50:17 +00:00
468 lines
11 KiB
C++
468 lines
11 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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*
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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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*
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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 "common/endian.h"
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#include "engines/util.h"
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#include "graphics/cursorman.h"
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#include "graphics/palette.h"
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#include "graphics/surface.h"
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#include "gob/gob.h"
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#include "gob/video.h"
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#include "gob/global.h"
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#include "gob/util.h"
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#include "gob/dataio.h"
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#include "gob/draw.h"
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namespace Gob {
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Font::Font(const byte *data) : _dataPtr(data) {
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assert(data);
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bool hasWidths = _dataPtr[0] & 0x80;
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_data = _dataPtr + 4;
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_itemWidth = _dataPtr[0] & 0x7F;
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_itemHeight = _dataPtr[1];
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_startItem = _dataPtr[2];
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_endItem = _dataPtr[3];
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_charWidths = 0;
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uint8 rowAlignedBits = (_itemWidth - 1) / 8 + 1;
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_itemSize = rowAlignedBits * _itemHeight;
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_bitWidth = _itemWidth;
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if (hasWidths)
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_charWidths = _dataPtr + 4 + _itemSize * getCharCount();
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}
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Font::~Font() {
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delete[] _dataPtr;
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}
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uint8 Font::getCharWidth(uint8 c) const {
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if (!_charWidths || (_endItem == 0))
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return _itemWidth;
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if ((c < _startItem) || (c > _endItem))
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return _itemWidth;
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return _charWidths[c - _startItem];
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}
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uint8 Font::getCharWidth() const {
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return _itemWidth;
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}
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uint8 Font::getCharHeight() const {
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return _itemHeight;
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}
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uint16 Font::getCharCount() const {
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return _endItem - _startItem + 1;
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}
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bool Font::hasChar(uint8 c) const {
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return (c >= _startItem) && (c <= _endItem);
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}
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bool Font::isMonospaced() const {
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return _charWidths == 0;
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}
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void Font::drawLetter(Surface &surf, uint8 c, uint16 x, uint16 y,
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uint32 color1, uint32 color2, bool transp) const {
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uint16 data;
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const byte *src = getCharData(c);
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if (!src) {
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warning("Font::drawLetter(): getCharData() == 0");
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return;
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}
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Pixel dst = surf.get(x, y);
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int nWidth = _itemWidth;
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if (nWidth & 7)
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nWidth = (nWidth & 0xF8) + 8;
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nWidth >>= 3;
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for (int i = 0; (i < _itemHeight) && dst.isValid(); i++) {
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int width = _itemWidth;
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for (int k = 0; k < nWidth; k++) {
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data = *src++;
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for (int j = 0; j < MIN(8, width); j++) {
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if (dst.isValid()) {
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if (data & 0x80)
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dst.set(color1);
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else if (!transp)
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dst.set(color2);
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}
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dst++;
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data <<= 1;
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}
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width -= 8;
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}
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dst += surf.getWidth() - _itemWidth;
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}
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}
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void Font::drawString(const Common::String &str, int16 x, int16 y, int16 color1, int16 color2,
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bool transp, Surface &dest) const {
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const char *s = str.c_str();
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while (*s != '\0') {
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const int16 charRight = x + getCharWidth(*s);
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const int16 charBottom = y + getCharHeight();
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if ((x >= 0) && (y >= 0) && (charRight <= dest.getWidth()) && (charBottom <= dest.getHeight()))
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drawLetter(dest, *s, x, y, color1, color2, transp);
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x += getCharWidth(*s);
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s++;
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}
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}
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const byte *Font::getCharData(uint8 c) const {
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if (_endItem == 0) {
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warning("Font::getCharData(): _endItem == 0");
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return 0;
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}
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if ((c < _startItem) || (c > _endItem))
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return 0;
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return _data + (c - _startItem) * _itemSize;
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}
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Video::Video(GobEngine *vm) : _vm(vm) {
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_doRangeClamp = false;
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_surfWidth = 320;
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_surfHeight = 200;
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_scrollOffsetX = 0;
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_scrollOffsetY = 0;
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_splitHeight1 = 200;
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_splitHeight2 = 0;
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_splitStart = 0;
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_screenDeltaX = 0;
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_screenDeltaY = 0;
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_curSparse = 0;
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_lastSparse = 0xFFFFFFFF;
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_dirtyAll = false;
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}
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Video::~Video() {
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}
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void Video::initPrimary(int16 mode) {
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if ((mode != 3) && (mode != -1))
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_vm->validateVideoMode(mode);
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_vm->validateVideoMode(_vm->_global->_videoMode);
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if (mode == -1)
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mode = 3;
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_vm->_global->_oldMode = mode;
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if (mode != 3) {
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initSurfDesc(_surfWidth, _surfHeight, PRIMARY_SURFACE);
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if (!_vm->_global->_dontSetPalette)
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Video::setFullPalette(_vm->_global->_pPaletteDesc);
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}
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}
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SurfacePtr Video::initSurfDesc(int16 width, int16 height, int16 flags) {
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SurfacePtr descPtr;
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if (flags & PRIMARY_SURFACE)
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assert((width == _surfWidth) && (height == _surfHeight));
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if (flags & PRIMARY_SURFACE) {
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_vm->_global->_primaryWidth = width;
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_vm->_global->_primaryHeight = height;
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descPtr = _vm->_global->_primarySurfDesc;
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descPtr->resize(width, height);
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} else {
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assert(!(flags & DISABLE_SPR_ALLOC));
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if (!(flags & SCUMMVM_CURSOR))
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width = (width + 7) & 0xFFF8;
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descPtr = SurfacePtr(new Surface(width, height, _vm->getPixelFormat().bytesPerPixel));
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}
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return descPtr;
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}
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void Video::clearScreen() {
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g_system->fillScreen(0);
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}
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void Video::setSize(bool defaultTo1XScaler) {
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if (_vm->isTrueColor())
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initGraphics(_vm->_width, _vm->_height, defaultTo1XScaler, 0);
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else
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initGraphics(_vm->_width, _vm->_height, defaultTo1XScaler);
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}
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void Video::retrace(bool mouse) {
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if (mouse)
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CursorMan.showMouse((_vm->_draw->_showCursor & 6) != 0);
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if (_vm->_global->_primarySurfDesc) {
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int screenX = _screenDeltaX;
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int screenY = _screenDeltaY;
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int screenWidth = MIN<int>(_surfWidth - _scrollOffsetX, _vm->_width);
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int screenHeight = MIN<int>(_surfHeight - _splitHeight2 - _scrollOffsetY, _vm->_height - _splitHeight2);
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dirtyRectsApply(_scrollOffsetX, _scrollOffsetY, screenWidth, screenHeight,
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screenX, screenY);
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if (_splitSurf) {
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screenX = 0;
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screenY = _vm->_height - _splitSurf->getHeight();
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screenWidth = MIN<int>(_vm->_width, _splitSurf->getWidth());
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screenHeight = _splitSurf->getHeight();
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_splitSurf->blitToScreen(0, 0, screenWidth - 1, screenHeight - 1, screenX, screenY);
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} else if (_splitHeight2 > 0) {
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screenX = 0;
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screenY = _vm->_height - _splitHeight2;
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screenWidth = MIN<int>(_surfWidth, _vm->_width);
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screenHeight = _splitHeight2;
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dirtyRectsApply(0, _splitStart, screenWidth, screenHeight, screenX, screenY);
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}
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dirtyRectsClear();
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g_system->updateScreen();
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}
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}
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void Video::waitRetrace(bool mouse) {
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uint32 time = _vm->_util->getTimeKey();
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retrace(mouse);
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_vm->_util->delay(MAX(1, 10 - (int)(_vm->_util->getTimeKey() - time)));
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}
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void Video::sparseRetrace(int max) {
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uint32 timeKey = _vm->_util->getTimeKey();
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if ((_curSparse++ > max) || ((timeKey - _lastSparse) > 1000)) {
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_curSparse = 0;
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retrace(false);
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}
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_lastSparse = timeKey;
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}
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void Video::drawPacked(byte *sprBuf, int16 width, int16 height,
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int16 x, int16 y, byte transp, Surface &dest) {
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int destRight = x + width;
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int destBottom = y + height;
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Pixel dst = dest.get(x, y);
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int curx = x;
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int cury = y;
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while (1) {
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uint8 val = *sprBuf++;
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unsigned int repeat = val & 7;
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val &= 0xF8;
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if (!(val & 8)) {
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repeat <<= 8;
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repeat |= *sprBuf++;
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}
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repeat++;
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val >>= 4;
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for (unsigned int i = 0; i < repeat; ++i) {
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if (curx < dest.getWidth() && cury < dest.getHeight())
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if (!transp || val)
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dst.set(val);
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dst++;
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curx++;
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if (curx == destRight) {
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dst += dest.getWidth() + x - curx;
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curx = x;
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cury++;
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if (cury == destBottom)
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return;
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}
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}
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}
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}
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void Video::drawPackedSprite(byte *sprBuf, int16 width, int16 height,
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int16 x, int16 y, int16 transp, Surface &dest) {
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if (spriteUncompressor(sprBuf, width, height, x, y, transp, dest))
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return;
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drawPacked(sprBuf, width, height, x, y, transp, dest);
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}
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void Video::drawPackedSprite(const char *path, Surface &dest, int width) {
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int32 size;
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byte *data = _vm->_dataIO->getFile(path, size);
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if (!data) {
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warning("Video::drawPackedSprite(): Failed to open sprite \"%s\"", path);
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return;
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}
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drawPackedSprite(data, width, dest.getHeight(), 0, 0, 0, dest);
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delete[] data;
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}
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void Video::setPalElem(int16 index, char red, char green, char blue,
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int16 unused, int16 vidMode) {
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byte pal[3];
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_vm->validateVideoMode(vidMode);
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_vm->_global->_redPalette[index] = red;
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_vm->_global->_greenPalette[index] = green;
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_vm->_global->_bluePalette[index] = blue;
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setPalColor(pal, red, green, blue);
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if (_vm->getPixelFormat().bytesPerPixel == 1)
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g_system->getPaletteManager()->setPalette(pal, index, 1);
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}
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void Video::setPalette(PalDesc *palDesc) {
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byte pal[768];
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int16 numcolors;
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_vm->validateVideoMode(_vm->_global->_videoMode);
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numcolors = _vm->_global->_setAllPalette ? 256 : 16;
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for (int i = 0; i < numcolors; i++)
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setPalColor(pal + i * 3, palDesc->vgaPal[i]);
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if (_vm->getPixelFormat().bytesPerPixel == 1)
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g_system->getPaletteManager()->setPalette(pal, 0, numcolors);
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}
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void Video::setFullPalette(PalDesc *palDesc) {
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if (_vm->_global->_setAllPalette) {
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byte pal[768];
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Color *colors = palDesc->vgaPal;
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for (int i = 0; i < 256; i++) {
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_vm->_global->_redPalette[i] = colors[i].red;
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_vm->_global->_greenPalette[i] = colors[i].green;
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_vm->_global->_bluePalette[i] = colors[i].blue;
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setPalColor(pal + i * 3, colors[i]);
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}
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if (_vm->getPixelFormat().bytesPerPixel == 1)
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g_system->getPaletteManager()->setPalette(pal, 0, 256);
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} else
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Video::setPalette(palDesc);
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}
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void Video::setPalette(Color *palette) {
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Color *palBak;
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bool setAllPalBak;
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palBak = _vm->_global->_pPaletteDesc->vgaPal;
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setAllPalBak = _vm->_global->_setAllPalette;
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_vm->_global->_pPaletteDesc->vgaPal = palette;
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_vm->_global->_setAllPalette = true;
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setFullPalette(_vm->_global->_pPaletteDesc);
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_vm->_global->_setAllPalette = setAllPalBak;
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_vm->_global->_pPaletteDesc->vgaPal = palBak;
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}
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void Video::dirtyRectsClear() {
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_dirtyRects.clear();
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_dirtyAll = false;
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}
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void Video::dirtyRectsAll() {
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_dirtyRects.clear();
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_dirtyAll = true;
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}
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void Video::dirtyRectsAdd(int16 left, int16 top, int16 right, int16 bottom) {
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if (_dirtyAll)
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return;
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_dirtyRects.push_back(Common::Rect(left, top, right + 1, bottom + 1));
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}
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void Video::dirtyRectsApply(int left, int top, int width, int height, int x, int y) {
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if (_dirtyAll) {
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_vm->_global->_primarySurfDesc->blitToScreen(left, top, left + width - 1, top + height - 1, x, y);
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return;
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}
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int right = left + width;
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int bottom = top + height;
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Common::List<Common::Rect>::const_iterator it;
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for (it = _dirtyRects.begin(); it != _dirtyRects.end(); ++it) {
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int l = MAX<int>(left , it->left);
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int t = MAX<int>(top , it->top);
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int r = MIN<int>(right , it->right);
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int b = MIN<int>(bottom, it->bottom);
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if ((r <= l) || (b <= t))
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continue;
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_vm->_global->_primarySurfDesc->blitToScreen(l, t, r - 1, b - 1, x + (l - left), y + (t - top));
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}
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}
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} // End of namespace Gob
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