mirror of
https://github.com/libretro/scummvm.git
synced 2024-12-22 01:39:57 +00:00
334 lines
9.9 KiB
C++
334 lines
9.9 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 "dreamweb/dreamweb.h"
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namespace DreamGen {
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void DreamGenContext::doblocks() {
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uint16 dstOffset = data.word(kMapady) * 320 + data.word(kMapadx);
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uint16 mapOffset = kMap + data.byte(kMapy) * kMapwidth + data.byte(kMapx);
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ds = data.word(kMapdata);
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const uint8 *mapData = ds.ptr(mapOffset, 0);
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ds = data.word(kBackdrop);
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const uint8 *blocks = ds.ptr(kBlocks, 0);
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es = data.word(kWorkspace);
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uint8 *dstBuffer = es.ptr(dstOffset, 0);
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for (size_t i = 0; i < 10; ++i) {
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for (size_t j = 0; j < 11; ++j) {
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uint16 blockType = mapData[j];
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if (blockType != 0) {
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uint8 *dst = dstBuffer + i * 320 * 16 + j * 16;
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const uint8 *block = blocks + blockType * 256;
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for (size_t k = 0; k < 4; ++k) {
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memcpy(dst, block, 16);
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block += 16;
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dst += 320;
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}
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for (size_t k = 0; k < 12; ++k) {
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memcpy(dst, block, 16);
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memset(dst + 16, 0xdf, 4);
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block += 16;
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dst += 320;
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}
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dst += 4;
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ax = 0x0dfdf;
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memset(dst, 0xdf, 16);
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dst += 320;
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memset(dst, 0xdf, 16);
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dst += 320;
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memset(dst, 0xdf, 16);
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dst += 320;
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memset(dst, 0xdf, 16);
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}
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}
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mapData += kMapwidth;
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}
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}
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uint8 DreamGenContext::getxad(const uint8 *setData, uint8 *result) {
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uint8 v0 = setData[0];
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uint8 v1 = setData[1];
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uint8 v2 = setData[2];
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if (v0 != 0)
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return 0;
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if (v1 < data.byte(kMapx))
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return 0;
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v1 -= data.byte(kMapx);
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if (v1 >= 11)
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return 0;
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*result = (v1 << 4) | v2;
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return 1;
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}
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uint8 DreamGenContext::getyad(const uint8 *setData, uint8 *result) {
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uint8 v0 = setData[3];
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uint8 v1 = setData[4];
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if (v0 < data.byte(kMapy))
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return 0;
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v0 -= data.byte(kMapy);
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if (v0 >= 10)
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return 0;
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*result = (v0 << 4) | v1;
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return 1;
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}
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void DreamGenContext::getmapad() {
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ch = getmapad((const uint8 *)es.ptr(si, 5));
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}
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uint8 DreamGenContext::getmapad(const uint8 *setData) {
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uint8 xad, yad;
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if (getxad(setData, &xad) == 0)
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return 0;
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data.word(kObjectx) = xad;
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if (getyad(setData, &yad) == 0)
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return 0;
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data.word(kObjecty) = yad;
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return 1;
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}
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void DreamGenContext::calcfrframe() {
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uint8 width, height;
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calcfrframe(&width, &height);
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cl = width;
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ch = height;
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}
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void DreamGenContext::calcfrframe(uint8* width, uint8* height) {
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const Frame *frame = (const Frame *)segRef(data.word(kFrsegment)).ptr(data.word(kCurrentframe) * sizeof(Frame), sizeof(Frame));
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data.word(kSavesource) = data.word(kFramesad) + frame->ptr();
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data.byte(kSavesize+0) = frame->width;
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data.byte(kSavesize+1) = frame->height;
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data.word(kOffsetx) = frame->x;
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data.word(kOffsety) = frame->y;
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*width = frame->width;
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*height = frame->height;
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}
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void DreamGenContext::finalframe() {
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uint16 x, y;
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finalframe(&x, &y);
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di = x;
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bx = y;
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}
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void DreamGenContext::finalframe(uint16 *x, uint16 *y) {
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data.byte(kSavex) = (data.word(kObjectx) + data.word(kOffsetx)) & 0xff;
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data.byte(kSavey) = (data.word(kObjecty) + data.word(kOffsety)) & 0xff;
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*x = data.word(kObjectx);
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*y = data.word(kObjecty);
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}
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void DreamGenContext::showallobs() {
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data.word(kListpos) = kSetlist;
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memset(segRef(data.word(kBuffers)).ptr(kSetlist, 0), 0xff, 128 * 5);
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data.word(kFrsegment) = data.word(kSetframes);
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data.word(kDataad) = kFramedata;
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data.word(kFramesad) = kFrames;
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const Frame *frames = (const Frame *)segRef(data.word(kFrsegment)).ptr(0, 0);
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SetObject *setEntries = (SetObject *)segRef(data.word(kSetdat)).ptr(0, 128 * sizeof(SetObject));
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for (size_t i = 0; i < 128; ++i) {
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SetObject *setEntry = setEntries + i;
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if (getmapad(setEntry->mapad) == 0)
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continue;
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uint8 currentFrame = setEntry->b18[0];
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data.word(kCurrentframe) = currentFrame;
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if (currentFrame == 0xff)
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continue;
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calcfrframe();
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uint16 x, y;
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finalframe(&x, &y);
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setEntry->index = setEntry->b18[0];
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if ((setEntry->type == 0) && (setEntry->priority != 5) && (setEntry->priority != 6)) {
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x += data.word(kMapadx);
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y += data.word(kMapady);
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showframe(frames, x, y, data.word(kCurrentframe), 0);
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} else
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makebackob(setEntry);
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ObjPos *objPos = (ObjPos *)segRef(data.word(kBuffers)).ptr(data.word(kListpos), sizeof(ObjPos));
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objPos->xMin = data.byte(kSavex);
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objPos->yMin = data.byte(kSavey);
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objPos->xMax = data.byte(kSavex) + data.byte(kSavesize+0);
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objPos->yMax = data.byte(kSavey) + data.byte(kSavesize+1);
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objPos->index = i;
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data.word(kListpos) += sizeof(ObjPos);
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}
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}
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void DreamGenContext::getdimension()
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{
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uint8 mapXstart, mapYstart;
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uint8 mapXsize, mapYsize;
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getdimension(&mapXstart, &mapYstart, &mapXsize, &mapYsize);
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cl = mapXstart;
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ch = mapYstart;
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dl = mapXsize;
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dh = mapYsize;
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}
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bool DreamGenContext::addalong(const uint8 *mapFlags) {
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for (size_t i = 0; i < 11; ++i) {
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if (mapFlags[3 * i] != 0)
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return true;
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}
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return false;
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}
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bool DreamGenContext::addlength(const uint8 *mapFlags) {
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for (size_t i = 0; i < 10; ++i) {
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if (mapFlags[3 * 11 * i] != 0)
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return true;
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}
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return false;
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}
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void DreamGenContext::getdimension(uint8 *mapXstart, uint8 *mapYstart, uint8 *mapXsize, uint8 *mapYsize) {
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const uint8 *mapFlags = segRef(data.word(kBuffers)).ptr(kMapflags, 0);
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uint8 yStart = 0;
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while (! addalong(mapFlags + 3 * 11 * yStart))
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++yStart;
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uint8 xStart = 0;
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while (! addlength(mapFlags + 3 * xStart))
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++xStart;
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uint8 yEnd = 10;
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while (! addalong(mapFlags + 3 * 11 * (yEnd - 1)))
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--yEnd;
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uint8 xEnd = 11;
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while (! addlength(mapFlags + 3 * (xEnd - 1)))
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--xEnd;
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*mapXstart = xStart;
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*mapYstart = yStart;
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*mapXsize = xEnd - xStart;
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*mapYsize = yEnd - yStart;
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data.word(kMapxstart) = xStart << 4;
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data.word(kMapystart) = yStart << 4;
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data.byte(kMapxsize) = *mapXsize << 4;
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data.byte(kMapysize) = *mapYsize << 4;
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}
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void DreamGenContext::calcmapad() {
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uint8 mapXstart, mapYstart;
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uint8 mapXsize, mapYsize;
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getdimension(&mapXstart, &mapYstart, &mapXsize, &mapYsize);
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data.word(kMapadx) = data.word(kMapoffsetx) - 8 * (mapXsize + 2 * mapXstart - 11);
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data.word(kMapady) = data.word(kMapoffsety) - 8 * (mapYsize + 2 * mapYstart - 10);
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}
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void DreamGenContext::showallfree() {
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data.word(kListpos) = kFreelist;
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ObjPos *listPos = (ObjPos *)segRef(data.word(kBuffers)).ptr(kFreelist, 80 * sizeof(ObjPos));
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memset(listPos, 0xff, 80 * sizeof(ObjPos));
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data.word(kFrsegment) = data.word(kFreeframes);
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data.word(kDataad) = kFrframedata;
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data.word(kFramesad) = kFrframes;
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data.byte(kCurrentfree) = 0;
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const DynObject *freeObjects = (const DynObject *)segRef(data.word(kFreedat)).ptr(0, 0);
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for(size_t i = 0; i < 80; ++i) {
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uint8 mapad = getmapad(freeObjects[i].mapad);
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if (mapad != 0) {
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data.word(kCurrentframe) = 3 * data.byte(kCurrentfree);
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uint8 width, height;
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calcfrframe(&width, &height);
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uint16 x, y;
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finalframe(&x, &y);
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if ((width != 0) || (height != 0)) {
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x += data.word(kMapadx);
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y += data.word(kMapady);
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showframe((Frame *)segRef(data.word(kFrsegment)).ptr(0, 0), x, y, data.word(kCurrentframe) & 0xff, 0);
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ObjPos *objPos = (ObjPos *)segRef(data.word(kBuffers)).ptr(data.word(kListpos), sizeof(ObjPos));
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objPos->xMin = data.byte(kSavex);
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objPos->yMin = data.byte(kSavey);
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objPos->xMax = data.byte(kSavex) + data.byte(kSavesize+0);
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objPos->yMax = data.byte(kSavey) + data.byte(kSavesize+1);
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objPos->index = i;
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data.word(kListpos) += sizeof(ObjPos);
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}
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}
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++data.byte(kCurrentfree);
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}
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}
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void DreamGenContext::drawflags() {
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uint8 *mapFlags = segRef(data.word(kBuffers)).ptr(kMapflags, 0);
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const uint8 *mapData = segRef(data.word(kMapdata)).ptr(kMap + data.byte(kMapy) * kMapwidth + data.byte(kMapx), 0);
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const uint8 *backdropFlags = segRef(data.word(kBackdrop)).ptr(kFlags, 0);
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for (size_t i = 0; i < 10; ++i) {
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for (size_t j = 0; j < 11; ++j) {
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uint8 tile = mapData[i * kMapwidth + j];
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mapFlags[0] = backdropFlags[2 * tile + 0];
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mapFlags[1] = backdropFlags[2 * tile + 1];
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mapFlags[2] = tile;
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mapFlags += 3;
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}
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}
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}
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void DreamGenContext::showallex() {
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data.word(kListpos) = kExlist;
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memset(segRef(data.word(kBuffers)).ptr(kExlist, 100 * 5), 0xff, 100 * 5);
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data.word(kFrsegment) = data.word(kExtras);
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data.word(kDataad) = kExframedata;
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data.word(kFramesad) = kExframes;
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data.byte(kCurrentex) = 0;
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DynObject *objects = (DynObject *)segRef(data.word(kExtras)).ptr(kExdata, sizeof(DynObject));
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for (size_t i = 0; i < 100; ++i, ++data.byte(kCurrentex)) {
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DynObject *object = objects + i;
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if (object->mapad[0] == 0xff)
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continue;
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if (object->currentLocation != data.byte(kReallocation))
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continue;
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if (getmapad(object->mapad) == 0)
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continue;
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data.word(kCurrentframe) = 3 * data.byte(kCurrentex);
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uint8 width, height;
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calcfrframe(&width, &height);
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uint16 x, y;
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finalframe(&x, &y);
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if ((width != 0) || (height != 0)) {
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showframe((Frame *)segRef(data.word(kFrsegment)).ptr(0, 0), x + data.word(kMapadx), y + data.word(kMapady), data.word(kCurrentframe) & 0xff, 0);
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ObjPos *objPos = (ObjPos *)segRef(data.word(kBuffers)).ptr(data.word(kListpos), sizeof(ObjPos));
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objPos->xMin = data.byte(kSavex);
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objPos->yMin = data.byte(kSavey);
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objPos->xMax = data.byte(kSavesize + 0) + data.byte(kSavex);
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objPos->yMax = data.byte(kSavesize + 1) + data.byte(kSavey);
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objPos->index = i;
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data.word(kListpos) += sizeof(ObjPos);
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}
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}
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}
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} /*namespace dreamgen */
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