mirror of
https://github.com/libretro/scummvm.git
synced 2024-12-23 18:24:59 +00:00
66e9d4f5e8
svn-id: r30664
273 lines
7.7 KiB
C++
273 lines
7.7 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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* $URL$
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* $Id$
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*
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*/
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#include "lure/animseq.h"
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#include "lure/decode.h"
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#include "lure/events.h"
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#include "lure/lure.h"
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#include "lure/palette.h"
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#include "lure/sound.h"
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#include "common/endian.h"
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namespace Lure {
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// delay
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// Delays for a given number of milliseconds. If it returns true, it indicates that
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// Escape has been pressed, and the introduction should be aborted.
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AnimAbortType AnimationSequence::delay(uint32 milliseconds) {
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Events &events = Events::getReference();
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uint32 delayCtr = g_system->getMillis() + milliseconds;
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while (g_system->getMillis() < delayCtr) {
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while (events.pollEvent()) {
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if ((events.type() == Common::EVENT_KEYDOWN) && (events.event().kbd.ascii != 0)) {
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if (events.event().kbd.keycode == Common::KEYCODE_ESCAPE) return ABORT_END_INTRO;
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else return ABORT_NEXT_SCENE;
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} else if (events.type() == Common::EVENT_LBUTTONDOWN)
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return ABORT_NEXT_SCENE;
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else if (events.type() == Common::EVENT_QUIT)
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return ABORT_END_INTRO;
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}
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uint32 delayAmount = delayCtr - g_system->getMillis();
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if (delayAmount > 10) delayAmount = 10;
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g_system->delayMillis(delayAmount);
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}
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return ABORT_NONE;
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}
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// egaDecodeFrame
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// Decodes a single frame of a EGA animation sequence
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void AnimationSequence::egaDecodeFrame(byte *&pPixels) {
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Screen &screen = Screen::getReference();
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byte *screenData = screen.screen_raw();
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// Skip over the list of blocks that are changed
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int numBlocks = *pPixels++;
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pPixels += numBlocks;
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// Loop through the list of same/changed pixel ranges
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int len = *pPixels++;
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int offset = MENUBAR_Y_SIZE * FULL_SCREEN_WIDTH *
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EGA_NUM_LAYERS / EGA_PIXELS_PER_BYTE;
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while ((offset += len) < FULL_SCREEN_WIDTH * FULL_SCREEN_HEIGHT / 2) {
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int repeatLen = *pPixels++;
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if (repeatLen > 0) {
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byte *pDest = screenData + (offset / EGA_NUM_LAYERS) * EGA_PIXELS_PER_BYTE;
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// Copy over the following bytes - each four bytes contain the four
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// planes worth of data for 8 sequential pixels
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while (repeatLen-- > 0) {
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int planeNum = offset % EGA_NUM_LAYERS;
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byte v = *pPixels++;
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for (int bitCtr = 0; bitCtr < 8; ++bitCtr, v <<= 1) {
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if ((v & 0x80) != 0)
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*(pDest + bitCtr) |= 1 << planeNum;
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else
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*(pDest + bitCtr) &= ~(1 << planeNum);
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}
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if ((++offset % EGA_NUM_LAYERS) == 0)
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pDest += EGA_PIXELS_PER_BYTE;
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}
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}
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// Get next skip bytes length
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len = *pPixels++;
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}
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}
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// vgaDecodeFrame
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// Decodes a single frame of a VGA animation sequence
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void AnimationSequence::vgaDecodeFrame(byte *&pPixels, byte *&pLines) {
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Screen &screen = Screen::getReference();
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byte *screenData = screen.screen_raw();
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uint16 screenPos = 0;
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uint16 len;
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while (screenPos < SCREEN_SIZE) {
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// Get line length
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len = (uint16) *pLines++;
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if (len == 0) {
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len = READ_LE_UINT16(pLines);
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pLines += 2;
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}
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// Move the splice over
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memcpy(screenData, pPixels, len);
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screenData += len;
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screenPos += len;
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pPixels += len;
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// Get the offset inc amount
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len = (uint16) *pLines++;
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if (len == 0) {
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len = READ_LE_UINT16(pLines);
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pLines += 2;
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}
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screenData += len;
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screenPos += len;
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}
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}
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AnimationSequence::AnimationSequence(uint16 screenId, Palette &palette, bool fadeIn, int frameDelay,
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const AnimSoundSequence *soundList): _screenId(screenId), _palette(palette),
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_frameDelay(frameDelay), _soundList(soundList) {
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Screen &screen = Screen::getReference();
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PictureDecoder decoder;
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Disk &d = Disk::getReference();
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// Get the data and decode it. Note that VGA decompression is used
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// even if the decompressed contents is actually EGA data
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MemoryBlock *data = d.getEntry(_screenId);
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_decodedData = decoder.vgaDecode(data, MAX_ANIM_DECODER_BUFFER_SIZE);
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delete data;
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_isEGA = LureEngine::getReference().isEGA();
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if (_isEGA) {
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// Setup for EGA animation
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_lineRefs = NULL;
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// Reset the palette and clear the screen for EGA decoding
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screen.setPaletteEmpty(RES_PALETTE_ENTRIES);
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screen.screen().empty();
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// Load the screen - each four bytes contain the four planes
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// worth of data for 8 sequential pixels
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byte *pSrc = _decodedData->data();
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byte *pDest = screen.screen().data().data() +
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(FULL_SCREEN_WIDTH * MENUBAR_Y_SIZE);
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for (int ctr = 0; ctr < FULL_SCREEN_WIDTH * (FULL_SCREEN_HEIGHT -
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MENUBAR_Y_SIZE) / 8; ++ctr, pDest += EGA_PIXELS_PER_BYTE) {
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for (int planeCtr = 0; planeCtr < EGA_NUM_LAYERS; ++planeCtr, ++pSrc) {
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byte v = *pSrc;
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for (int bitCtr = 0; bitCtr < 8; ++bitCtr, v <<= 1) {
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if ((v & 0x80) != 0)
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*(pDest + bitCtr) |= 1 << planeCtr;
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}
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}
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}
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screen.update();
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screen.setPalette(&_palette, 0, _palette.numEntries());
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// Set pointers for animation
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_pPixels = pSrc;
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_pPixelsEnd = _decodedData->data() + _decodedData->size() - 1;
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_pLines = NULL;
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_pLinesEnd = NULL;
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} else {
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// Setup for VGA animation
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_lineRefs = d.getEntry(_screenId + 1);
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// Reset the palette and set the initial starting screen
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screen.setPaletteEmpty(RES_PALETTE_ENTRIES);
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screen.screen().data().copyFrom(_decodedData, 0, 0, FULL_SCREEN_HEIGHT * FULL_SCREEN_WIDTH);
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screen.update();
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// Set the palette
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if (fadeIn) screen.paletteFadeIn(&_palette);
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else screen.setPalette(&_palette, 0, _palette.numEntries());
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// Set up frame pointers
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_pPixels = _decodedData->data() + SCREEN_SIZE;
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_pPixelsEnd = _decodedData->data() + _decodedData->size() - 1;
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_pLines = _lineRefs->data();
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_pLinesEnd = _lineRefs->data() + _lineRefs->size() - 1;
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}
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}
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AnimationSequence::~AnimationSequence() {
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if (_lineRefs != NULL)
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delete _lineRefs;
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delete _decodedData;
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}
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// show
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// Main method for displaying the animation
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AnimAbortType AnimationSequence::show() {
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Screen &screen = Screen::getReference();
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AnimAbortType result;
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const AnimSoundSequence *soundFrame = _soundList;
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int frameCtr = 0;
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// Loop through displaying the animations
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while (_pPixels < _pPixelsEnd) {
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if ((soundFrame != NULL) && (frameCtr == 0))
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Sound.musicInterface_Play(
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Sound.isRoland() ? soundFrame->rolandSoundId : soundFrame->adlibSoundId,
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soundFrame->channelNum);
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if (_isEGA)
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egaDecodeFrame(_pPixels);
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else {
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if (_pLines >= _pLinesEnd) break;
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vgaDecodeFrame(_pPixels, _pLines);
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}
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// Make the decoded frame visible
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screen.update();
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result = delay(_frameDelay * 1000 / 50);
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if (result != ABORT_NONE) return result;
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if ((soundFrame != NULL) && (++frameCtr == soundFrame->numFrames)) {
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frameCtr = 0;
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++soundFrame;
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if (soundFrame->numFrames == 0) soundFrame = NULL;
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}
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}
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return ABORT_NONE;
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}
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bool AnimationSequence::step() {
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Screen &screen = Screen::getReference();
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if (_pPixels >= _pPixelsEnd) return false;
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if (_isEGA)
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egaDecodeFrame(_pPixels);
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else {
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if (_pLines >= _pLinesEnd) return false;
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vgaDecodeFrame(_pPixels, _pLines);
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}
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// Make the decoded frame visible
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screen.update();
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screen.setPalette(&_palette);
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return true;
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}
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} // end of namespace Lure
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