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511 lines
13 KiB
C++
511 lines
13 KiB
C++
#include "StdInc.h"
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#include "maphandler.h"
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#include "graphics.h"
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#include "../lib/mapping/CMap.h"
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#include "../lib/mapObjects/CGHeroInstance.h"
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#include "../lib/mapObjects/CObjectClassesHandler.h"
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#include "../lib/CHeroHandler.h"
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#include "../lib/CTownHandler.h"
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#include "../lib/CModHandler.h"
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#include "../lib/mapping/CMap.h"
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#include "../lib/GameConstants.h"
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#include "../lib/JsonDetail.h"
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const int tileSize = 32;
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static bool objectBlitOrderSorter(const TileObject & a, const TileObject & b)
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{
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return MapHandler::compareObjectBlitOrder(a.obj, b.obj);
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}
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int MapHandler::index(int x, int y, int z) const
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{
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return z * (sizes.x * sizes.y) + y * sizes.x + x;
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}
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int MapHandler::index(const int3 & p) const
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{
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return index(p.x, p.y, p.z);
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}
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MapHandler::MapHandler()
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{
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initTerrainGraphics();
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logGlobal->info("\tPreparing terrain, roads, rivers, borders");
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}
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void MapHandler::reset(const CMap * Map)
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{
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ttiles.clear();
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map = Map;
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//sizes of terrain
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sizes.x = map->width;
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sizes.y = map->height;
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sizes.z = map->twoLevel ? 2 : 1;
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initObjectRects();
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logGlobal->info("\tMaking object rects");
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}
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void MapHandler::initTerrainGraphics()
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{
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static const std::map<std::string, std::string> ROAD_FILES =
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{
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{ROAD_NAMES[1], "dirtrd"},
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{ROAD_NAMES[2], "gravrd"},
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{ROAD_NAMES[3], "cobbrd"}
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};
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static const std::map<std::string, std::string> RIVER_FILES =
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{
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{RIVER_NAMES[1], "clrrvr"},
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{RIVER_NAMES[2], "icyrvr"},
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{RIVER_NAMES[3], "mudrvr"},
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{RIVER_NAMES[4], "lavrvr"}
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};
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auto loadFlipped = [](TFlippedAnimations & animation, TFlippedCache & cache, const std::map<std::string, std::string> & files)
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{
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for(auto & type : files)
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{
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animation[type.first] = make_unique<Animation>(type.second);
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animation[type.first]->preload();
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const size_t views = animation[type.first]->size(0);
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cache[type.first].resize(views);
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for(int j = 0; j < views; j++)
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cache[type.first][j] = animation[type.first]->getImage(j);
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}
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};
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std::map<std::string, std::string> terrainFiles;
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for(auto & terrain : Terrain::Manager::terrains())
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{
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terrainFiles[terrain] = Terrain::Manager::getInfo(terrain).tilesFilename;
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}
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loadFlipped(terrainAnimations, terrainImages, terrainFiles);
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loadFlipped(roadAnimations, roadImages, ROAD_FILES);
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loadFlipped(riverAnimations, riverImages, RIVER_FILES);
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}
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void MapHandler::drawTerrainTile(QPainter & painter, int x, int y, int z)
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{
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auto & tinfo = map->getTile(int3(x, y, z));
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ui8 rotation = tinfo.extTileFlags % 4;
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if(terrainImages.at(tinfo.terType).size() <= tinfo.terView)
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return;
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bool hflip = (rotation == 1 || rotation == 3), vflip = (rotation == 2 || rotation == 3);
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painter.drawImage(x * tileSize, y * tileSize, terrainImages.at(tinfo.terType)[tinfo.terView]->mirrored(hflip, vflip));
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}
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void MapHandler::drawRoad(QPainter & painter, int x, int y, int z)
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{
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auto & tinfo = map->getTile(int3(x, y, z));
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auto * tinfoUpper = map->isInTheMap(int3(x, y - 1, z)) ? &map->getTile(int3(x, y - 1, z)) : nullptr;
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if(tinfo.roadType != ROAD_NAMES[0]) //print road from this tile
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{
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ui8 rotation = (tinfo.extTileFlags >> 4) % 4;
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bool hflip = (rotation == 1 || rotation == 3), vflip = (rotation == 2 || rotation == 3);
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if(roadImages.at(tinfo.roadType).size() > tinfo.roadDir)
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{
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painter.drawImage(x * tileSize, y * tileSize, roadImages.at(tinfo.roadType)[tinfo.roadDir]->mirrored(hflip, vflip));
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}
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}
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}
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void MapHandler::drawRiver(QPainter & painter, int x, int y, int z)
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{
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auto & tinfo = map->getTile(int3(x, y, z));
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if(tinfo.riverType == RIVER_NAMES[0])
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return;
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if(riverImages.at(tinfo.riverType).size() <= tinfo.riverDir)
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return;
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ui8 rotation = (tinfo.extTileFlags >> 2) % 4;
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bool hflip = (rotation == 1 || rotation == 3), vflip = (rotation == 2 || rotation == 3);
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painter.drawImage(x * tileSize, y * tileSize, riverImages.at(tinfo.riverType)[tinfo.riverDir]->mirrored(hflip, vflip));
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}
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void setPlayerColor(QImage * sur, PlayerColor player)
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{
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if(player == PlayerColor::UNFLAGGABLE)
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return;
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if(sur->format() == QImage::Format_Indexed8)
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{
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QRgb color = graphics->neutralColor;
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if(player != PlayerColor::NEUTRAL && player < PlayerColor::PLAYER_LIMIT)
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color = graphics->playerColors.at(player.getNum());
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sur->setColor(5, color);
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}
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else
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logGlobal->warn("Warning, setPlayerColor called on not 8bpp surface!");
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}
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void MapHandler::initObjectRects()
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{
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ttiles.resize(sizes.x * sizes.y * sizes.z);
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//initializing objects / rects
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for(const CGObjectInstance * elem : map->objects)
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{
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CGObjectInstance *obj = const_cast<CGObjectInstance *>(elem);
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if( !obj
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|| (obj->ID==Obj::HERO && static_cast<const CGHeroInstance*>(obj)->inTownGarrison) //garrisoned hero
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|| (obj->ID==Obj::BOAT && static_cast<const CGBoat*>(obj)->hero)) //boat with hero (hero graphics is used)
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{
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continue;
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}
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std::shared_ptr<Animation> animation = graphics->getAnimation(obj);
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//no animation at all
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if(!animation)
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continue;
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//empty animation
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if(animation->size(0) == 0)
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continue;
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auto image = animation->getImage(0,0);
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for(int fx=0; fx < obj->getWidth(); ++fx)
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{
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for(int fy=0; fy < obj->getHeight(); ++fy)
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{
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int3 currTile(obj->pos.x - fx, obj->pos.y - fy, obj->pos.z);
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QRect cr(image->width() - fx * tileSize - tileSize,
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image->height() - fy * tileSize - tileSize,
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image->width(),
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image->height());
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TileObject toAdd(obj, cr);
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if( map->isInTheMap(currTile) && // within map
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cr.x() + cr.width() > 0 && // image has data on this tile
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cr.y() + cr.height() > 0 &&
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obj->coveringAt(currTile.x, currTile.y) // object is visible here
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)
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{
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ttiles[index(currTile)].push_back(toAdd);
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}
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}
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}
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}
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for(auto & tt : ttiles)
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{
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stable_sort(tt.begin(), tt.end(), objectBlitOrderSorter);
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}
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}
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bool MapHandler::compareObjectBlitOrder(const CGObjectInstance * a, const CGObjectInstance * b)
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{
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if (!a)
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return true;
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if (!b)
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return false;
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if (a->appearance.printPriority != b->appearance.printPriority)
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return a->appearance.printPriority > b->appearance.printPriority;
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if(a->pos.y != b->pos.y)
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return a->pos.y < b->pos.y;
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if(b->ID==Obj::HERO && a->ID!=Obj::HERO)
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return true;
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if(b->ID!=Obj::HERO && a->ID==Obj::HERO)
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return false;
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if(!a->isVisitable() && b->isVisitable())
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return true;
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if(!b->isVisitable() && a->isVisitable())
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return false;
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if(a->pos.x < b->pos.x)
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return true;
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return false;
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}
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TileObject::TileObject(CGObjectInstance * obj_, QRect rect_)
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: obj(obj_),
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rect(rect_)
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{
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}
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TileObject::~TileObject()
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{
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}
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std::shared_ptr<QImage> MapHandler::findFlagBitmap(const CGHeroInstance * hero, int anim, const PlayerColor * color, int group) const
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{
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if(!hero || hero->boat)
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return std::shared_ptr<QImage>();
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return findFlagBitmapInternal(graphics->heroFlagAnimations.at(color->getNum()), anim, group, hero->moveDir, !hero->isStanding);
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}
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std::shared_ptr<QImage> MapHandler::findFlagBitmapInternal(std::shared_ptr<Animation> animation, int anim, int group, ui8 dir, bool moving) const
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{
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size_t groupSize = animation->size(group);
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if(groupSize == 0)
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return nullptr;
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if(moving)
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return animation->getImage(anim % groupSize, group);
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else
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return animation->getImage((anim / 4) % groupSize, group);
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}
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MapHandler::AnimBitmapHolder MapHandler::findObjectBitmap(const CGObjectInstance * obj, int anim) const
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{
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if(!obj || obj->ID == Obj::HERO || obj->ID == Obj::BOAT)
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return MapHandler::AnimBitmapHolder();
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// normal object
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std::shared_ptr<Animation> animation = graphics->getAnimation(obj);
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size_t groupSize = animation->size();
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if(groupSize == 0)
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return MapHandler::AnimBitmapHolder();
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animation->playerColored(obj->tempOwner);
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auto bitmap = animation->getImage(anim % groupSize);
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if(!bitmap)
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return MapHandler::AnimBitmapHolder();
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setPlayerColor(bitmap.get(), obj->tempOwner);
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return MapHandler::AnimBitmapHolder(bitmap);
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}
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std::vector<TileObject> & MapHandler::getObjects(int x, int y, int z)
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{
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return ttiles[index(x, y, z)];
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}
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void MapHandler::drawObjects(QPainter & painter, int x, int y, int z)
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{
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for(auto & object : getObjects(x, y, z))
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{
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const CGObjectInstance * obj = object.obj;
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if (!obj)
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{
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logGlobal->error("Stray map object that isn't fading");
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return;
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}
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uint8_t animationFrame = 0;
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auto objData = findObjectBitmap(obj, animationFrame);
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if (objData.objBitmap)
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{
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auto pos = obj->getPosition();
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painter.drawImage(QPoint(x * tileSize, y * tileSize), *objData.objBitmap, object.rect);
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if(objData.flagBitmap)
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{
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if (obj->pos.x == pos.x && obj->pos.y == pos.y)
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painter.drawImage(QPoint(x * tileSize, y * tileSize), *objData.flagBitmap, object.rect);
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}
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}
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}
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}
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void MapHandler::drawObject(QPainter & painter, const TileObject & object)
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{
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const CGObjectInstance * obj = object.obj;
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if (!obj)
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{
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logGlobal->error("Stray map object that isn't fading");
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return;
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}
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uint8_t animationFrame = 0;
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auto objData = findObjectBitmap(obj, animationFrame);
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if (objData.objBitmap)
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{
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auto pos = obj->getPosition();
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painter.drawImage(pos.x * tileSize - object.rect.x(), pos.y * tileSize - object.rect.y(), *objData.objBitmap);
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if (objData.flagBitmap)
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{
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if (obj->pos.x == pos.x && obj->pos.y == pos.y)
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{
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painter.drawImage(pos.x * tileSize - object.rect.x(), pos.y * tileSize - object.rect.y(), *objData.flagBitmap);
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}
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}
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}
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}
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void MapHandler::drawObjectAt(QPainter & painter, const CGObjectInstance * obj, int x, int y)
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{
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if (!obj)
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{
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logGlobal->error("Stray map object that isn't fading");
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return;
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}
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uint8_t animationFrame = 0;
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auto objData = findObjectBitmap(obj, animationFrame);
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if (objData.objBitmap)
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{
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painter.drawImage(QPoint((x + 1) * 32 - objData.objBitmap->width(), (y + 1) * 32 - objData.objBitmap->height()), *objData.objBitmap);
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if (objData.flagBitmap)
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{
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painter.drawImage(QPoint((x + 1) * 32 - objData.objBitmap->width(), (y + 1) * 32 - objData.objBitmap->height()), *objData.flagBitmap);
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}
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}
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}
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QRgb MapHandler::getTileColor(int x, int y, int z)
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{
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// if object at tile is owned - it will be colored as its owner
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for(auto & object : getObjects(x, y, z))
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{
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//heroes will be blitted later
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switch (object.obj->ID)
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{
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case Obj::HERO:
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case Obj::PRISON:
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continue;
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}
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PlayerColor player = object.obj->getOwner();
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if(player == PlayerColor::NEUTRAL)
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return graphics->neutralColor;
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else
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if (player < PlayerColor::PLAYER_LIMIT)
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return graphics->playerColors[player.getNum()];
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}
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// else - use terrain color (blocked version or normal)
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auto & tile = map->getTile(int3(x, y, z));
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auto color = Terrain::Manager::getInfo(tile.terType).minimapUnblocked;
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if (tile.blocked && (!tile.visitable))
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color = Terrain::Manager::getInfo(tile.terType).minimapBlocked;
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return qRgb(color[0], color[1], color[2]);
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}
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void MapHandler::drawMinimapTile(QPainter & painter, int x, int y, int z)
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{
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painter.setPen(getTileColor(x, y, z));
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painter.drawPoint(x, y);
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}
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void MapHandler::invalidate(int x, int y, int z)
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{
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auto & objects = getObjects(x, y, z);
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for(auto obj = objects.begin(); obj != objects.end();)
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{
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//object was removed
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if(std::find(map->objects.begin(), map->objects.end(), obj->obj) == map->objects.end())
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{
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obj = objects.erase(obj);
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continue;
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}
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//object was moved
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auto & pos = obj->obj->pos;
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if(pos.z != z || pos.x < x || pos.y < y || pos.x - obj->obj->getWidth() >= x || pos.y - obj->obj->getHeight() >= y)
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{
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obj = objects.erase(obj);
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continue;
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}
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++obj;
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}
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stable_sort(objects.begin(), objects.end(), objectBlitOrderSorter);
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}
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void MapHandler::invalidate(CGObjectInstance * obj)
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{
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std::shared_ptr<Animation> animation = graphics->getAnimation(obj);
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//no animation at all or empty animation
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if(!animation || animation->size(0) == 0)
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return;
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auto image = animation->getImage(0,0);
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for(int fx=0; fx < obj->getWidth(); ++fx)
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{
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for(int fy=0; fy < obj->getHeight(); ++fy)
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{
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//object presented on the tile
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int3 currTile(obj->pos.x - fx, obj->pos.y - fy, obj->pos.z);
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QRect cr(image->width() - fx * tileSize - tileSize, image->height() - fy * tileSize - tileSize, image->width(), image->height());
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if( map->isInTheMap(currTile) && // within map
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cr.x() + cr.width() > 0 && // image has data on this tile
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cr.y() + cr.height() > 0 &&
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obj->coveringAt(currTile.x, currTile.y) // object is visible here
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)
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{
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auto & objects = ttiles[index(currTile)];
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bool found = false;
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for(auto & o : objects)
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{
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if(o.obj == obj)
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{
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o.rect = cr;
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found = true;
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break;
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}
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}
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if(!found)
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objects.emplace_back(obj, cr);
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stable_sort(objects.begin(), objects.end(), objectBlitOrderSorter);
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}
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}
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}
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}
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std::vector<int3> MapHandler::geTilesUnderObject(CGObjectInstance * obj) const
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{
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std::vector<int3> result;
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for(int fx=0; fx < obj->getWidth(); ++fx)
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{
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for(int fy=0; fy < obj->getHeight(); ++fy)
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{
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//object presented on the tile
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int3 currTile(obj->pos.x - fx, obj->pos.y - fy, obj->pos.z);
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if(map->isInTheMap(currTile) && // within map
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obj->coveringAt(currTile.x, currTile.y) // object is visible here
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)
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{
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result.push_back(currTile);
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}
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}
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}
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return result;
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}
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void MapHandler::invalidateObjects()
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{
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for(auto obj : map->objects)
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{
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invalidate(obj);
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}
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}
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void MapHandler::invalidate(const std::vector<int3> & tiles)
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{
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for(auto & currTile : tiles)
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{
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invalidate(currTile.x, currTile.y, currTile.z);
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}
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}
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