mirror of
https://github.com/libretro/scummvm.git
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251 lines
7.8 KiB
C++
251 lines
7.8 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 "pegasus/graphics.h"
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#include "common/endian.h"
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#include "common/file.h"
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#include "common/textconsole.h"
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#include "engines/util.h"
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#include "graphics/cursorman.h"
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namespace Pegasus {
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GraphicsManager::GraphicsManager(PegasusEngine *vm) : _vm(vm) {
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initGraphics(640, 480, true, NULL);
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_pictDecoder = new Graphics::PictDecoder(_vm->_system->getScreenFormat());
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for (int i = 0; i < kImageCacheSize; i++)
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_cache[i].surface = 0;
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}
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GraphicsManager::~GraphicsManager() {
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delete _pictDecoder;
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for (int i = 0; i < kImageCacheSize; i++) {
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if (_cache[i].surface) {
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_cache[i].surface->free();
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delete _cache[i].surface;
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}
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}
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}
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Graphics::Surface *GraphicsManager::decodeImage(const Common::String &filename) {
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int imageSlot = getImageSlot(filename);
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if (_cache[imageSlot].surface)
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return _cache[imageSlot].surface;
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Common::File file;
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if (!file.open(filename))
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error("Could not open \'%s\'", filename.c_str());
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byte palette[256 * 3];
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Graphics::Surface *image = _pictDecoder->decodeImage(&file, palette);
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// For <= 8bpp, we need to convert
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if (image->format.bytesPerPixel == 1) {
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Graphics::PixelFormat format = _vm->_system->getScreenFormat();
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Graphics::Surface *output = new Graphics::Surface();
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output->create(image->w, image->h, format);
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for (uint16 y = 0; y < image->h; y++) {
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for (uint16 x = 0; x < image->w; x++) {
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byte c = *((byte *)image->getBasePtr(x, y));
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byte r = palette[c * 3];
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byte g = palette[c * 3 + 1];
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byte b = palette[c * 3 + 2];
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if (format.bytesPerPixel == 2) {
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uint16 color = format.RGBToColor(r, g, b);
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memcpy(output->getBasePtr(x, y), &color, 2);
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} else if (format.bytesPerPixel == 4) {
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uint32 color = format.RGBToColor(r, g, b);
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memcpy(output->getBasePtr(x, y), &color, 4);
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}
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}
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}
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image->free();
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delete image;
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image = output;
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}
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_cache[imageSlot].surface = image;
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return image;
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}
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void GraphicsManager::drawPict(Common::String filename, int x, int y, bool updateScreen) {
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Graphics::Surface *surface = decodeImage(filename);
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_vm->_system->copyRectToScreen((byte *)surface->pixels, surface->pitch, x, y, surface->w, surface->h);
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if (updateScreen)
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_vm->_system->updateScreen();
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}
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void GraphicsManager::drawPictTransparent(Common::String filename, int x, int y, uint32 transparency, bool updateScreen) {
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if (_vm->_system->getScreenFormat().bytesPerPixel == 2)
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transparency &= 0xffff;
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Graphics::Surface *surface = decodeImage(filename);
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Graphics::Surface *screen = _vm->_system->lockScreen();
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for (uint16 i = 0; i < surface->h; i++) {
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for (uint16 j = 0; j < surface->w; j++) {
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if (_vm->_system->getScreenFormat().bytesPerPixel == 2) {
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uint16 color = *((uint16 *)surface->getBasePtr(j, i));
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if (color != transparency)
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memcpy(screen->getBasePtr(j + x, i + y), &color, 2);
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} else if (_vm->_system->getScreenFormat().bytesPerPixel == 4) {
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uint32 color = *((uint32 *)surface->getBasePtr(j, i));
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if (color != transparency)
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memcpy(screen->getBasePtr(j + x, i + y), &color, 4);
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}
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}
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}
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_vm->_system->unlockScreen();
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if (updateScreen)
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_vm->_system->updateScreen();
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}
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uint32 GraphicsManager::getColor(byte r, byte g, byte b) {
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return _vm->_system->getScreenFormat().RGBToColor(r, g, b);
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}
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void GraphicsManager::setCursor(uint16 cursor) {
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Common::SeekableReadStream *cicnStream = _vm->_resFork->getResource(MKTAG('c', 'i', 'c', 'n'), cursor);
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// PixMap section
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Graphics::PictDecoder::PixMap pixMap = _pictDecoder->readPixMap(cicnStream);
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// Mask section
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cicnStream->readUint32BE(); // mask baseAddr
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uint16 maskRowBytes = cicnStream->readUint16BE(); // mask rowBytes
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cicnStream->skip(3 * 2); // mask rect
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/* uint16 maskHeight = */ cicnStream->readUint16BE();
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// Bitmap section
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cicnStream->readUint32BE(); // baseAddr
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uint16 rowBytes = cicnStream->readUint16BE();
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cicnStream->readUint16BE(); // top
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cicnStream->readUint16BE(); // left
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uint16 height = cicnStream->readUint16BE(); // bottom
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cicnStream->readUint16BE(); // right
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// Data section
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cicnStream->readUint32BE(); // icon handle
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cicnStream->skip(maskRowBytes * height); // FIXME: maskHeight doesn't work here, though the specs say it should
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cicnStream->skip(rowBytes * height);
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// Palette section
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cicnStream->readUint32BE(); // always 0
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cicnStream->readUint16BE(); // always 0
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uint16 colorCount = cicnStream->readUint16BE() + 1;
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byte *colors = new byte[256 * 3];;
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for (uint16 i = 0; i < colorCount; i++) {
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cicnStream->readUint16BE();
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colors[i * 3] = cicnStream->readUint16BE() >> 8;
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colors[i * 3 + 1] = cicnStream->readUint16BE() >> 8;
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colors[i * 3 + 2] = cicnStream->readUint16BE() >> 8;
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}
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// PixMap data
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byte *data = new byte[pixMap.rowBytes * pixMap.bounds.height()];
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cicnStream->read(data, pixMap.rowBytes * pixMap.bounds.height());
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delete cicnStream;
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// Now to go get the hotspots
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Common::SeekableReadStream *cursStream = NULL;
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if (cursor >= kMainCursor && cursor <= kGrabbingHand)
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cursStream = _vm->_resFork->getResource(MKTAG('C', 'u', 'r', 's'), kMainCursor);
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else // if (cursor == kTargetingReticle1 || cursor == kTargetingReticle2)
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cursStream = _vm->_resFork->getResource(MKTAG('C', 'u', 'r', 's'), kTargetingReticle1);
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// Go through the stream until we find the right cursor hotspot
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uint16 x = 0, y = 0;
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uint16 numHotspots = cursStream->readUint16BE();
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for (uint16 i = 0; i < numHotspots; i++) {
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uint16 res = cursStream->readUint16BE();
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uint16 tempX = cursStream->readUint16BE();
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uint16 tempY = cursStream->readUint16BE();
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if (res == cursor) {
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x = tempX;
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y = tempY;
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break;
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}
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}
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// We have the bitmap and the hotspot, let's do this!
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CursorMan.replaceCursorPalette(colors, 0, colorCount);
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CursorMan.replaceCursor(data, pixMap.rowBytes, pixMap.bounds.height(), x, y, 0);
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CursorMan.showMouse(true);
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_vm->_system->updateScreen();
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delete[] colors;
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delete[] data;
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}
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int GraphicsManager::getImageSlot(const Common::String &filename) {
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// Let's find a match, an open slot, or the oldest image slot
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uint32 oldestAge = 0xffffffff;
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int slot = 0;
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for (int i = 0; i < kImageCacheSize; i++) {
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if (_cache[i].filename.equalsIgnoreCase(filename)) {
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//warning("Found image %s at slot %d", filename.c_str(), i);
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_cache[i].lastUsed = _vm->_system->getMillis();
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return i;
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}
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if (!_cache[i].surface) {
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//warning("Putting image %s in empty slot %d", filename.c_str(), i);
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_cache[i].filename = filename;
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_cache[i].lastUsed = _vm->_system->getMillis();
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return i;
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}
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if (_cache[i].lastUsed < oldestAge) {
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oldestAge = _cache[i].lastUsed;
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slot = i;
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}
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}
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// Let's make sure that's cleaned out
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//warning("Replacing old image %s with %s in slot %d", _cache[slot].filename.c_str(), filename.c_str(), slot);
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_cache[slot].filename = filename;
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_cache[slot].surface->free();
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delete _cache[slot].surface;
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_cache[slot].surface = 0;
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_cache[slot].lastUsed = _vm->_system->getMillis();
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return slot;
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}
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} // End of namespace Pegasus
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