mirror of
https://github.com/vcmi/vcmi.git
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241 lines
5.4 KiB
C++
241 lines
5.4 KiB
C++
/*
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* Nullkiller.cpp, part of VCMI engine
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*
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* Authors: listed in file AUTHORS in main folder
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*
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* License: GNU General Public License v2.0 or later
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* Full text of license available in license.txt file, in main folder
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*
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*/
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#include "StdInc.h"
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#include "DeepDecomposer.h"
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#include "../AIGateway.h"
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#include "../Behaviors/CaptureObjectsBehavior.h"
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#include "../Behaviors/RecruitHeroBehavior.h"
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#include "../Behaviors/BuyArmyBehavior.h"
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#include "../Behaviors/StartupBehavior.h"
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#include "../Behaviors/DefenceBehavior.h"
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#include "../Behaviors/BuildingBehavior.h"
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#include "../Behaviors/GatherArmyBehavior.h"
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#include "../Behaviors/ClusterBehavior.h"
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#include "../Goals/Invalid.h"
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#include "../Goals/Composition.h"
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namespace NKAI
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{
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using namespace Goals;
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DeepDecomposer::DeepDecomposer(const Nullkiller * ai)
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:ai(ai), depth(0)
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{
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}
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void DeepDecomposer::reset()
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{
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decompositionCache.clear();
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goals.clear();
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}
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void DeepDecomposer::decompose(TGoalVec & result, TSubgoal behavior, int depthLimit)
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{
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goals.clear();
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goals.resize(depthLimit);
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decompositionCache.resize(depthLimit);
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depth = 0;
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goals[0] = {behavior};
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while(goals[0].size())
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{
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bool fromCache;
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TSubgoal current = goals[depth].back();
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TGoalVec subgoals = decomposeCached(unwrapComposition(current), fromCache);
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#if NKAI_TRACE_LEVEL >= 1
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logAi->trace("Decomposition level %d returned %d goals", depth, subgoals.size());
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#endif
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if(depth < depthLimit - 1)
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{
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goals[depth + 1].clear();
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}
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for(TSubgoal subgoal : subgoals)
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{
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if(subgoal->invalid())
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continue;
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if(subgoal->isElementar())
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{
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// need to get rid of priority control in behaviors like Startup to avoid this check.
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// 0 - goals directly from behavior
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Goals::TSubgoal task = depth >= 1 ? aggregateGoals(0, subgoal) : subgoal;
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#if NKAI_TRACE_LEVEL >= 1
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logAi->trace("Found task %s", task->toString());
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#endif
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if(!isCompositionLoop(subgoal))
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{
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result.push_back(task);
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if(!fromCache)
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{
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addToCache(subgoal);
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}
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}
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}
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else if(depth < depthLimit - 1)
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{
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#if NKAI_TRACE_LEVEL >= 1
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logAi->trace("Found abstract goal %s", subgoal->toString());
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#endif
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if(!isCompositionLoop(subgoal))
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{
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// depth 0 gives reward, deepest goal - task to execute, all the rest is not important
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// so avoid details to reduce decomposition complexity but they can give some negative effect so
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auto goalToAdd = depth >= 1 ? unwrapComposition(subgoal) : subgoal;
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if(!vstd::contains(goals[depth + 1], goalToAdd))
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{
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goals[depth + 1].push_back(subgoal);
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}
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}
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}
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}
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if(depth < depthLimit - 1 && goals[depth + 1].size())
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{
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depth++;
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}
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else
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{
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goals[depth].pop_back();
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while(depth > 0 && goals[depth].empty())
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{
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depth--;
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goals[depth].pop_back();
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}
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}
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}
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}
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Goals::TSubgoal DeepDecomposer::aggregateGoals(int startDepth, TSubgoal last)
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{
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Goals::Composition composition;
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for(int i = 0; i <= depth; i++)
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{
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composition.addNext(goals[i].back());
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}
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composition.addNext(last);
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return sptr(composition);
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}
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Goals::TSubgoal DeepDecomposer::unwrapComposition(Goals::TSubgoal goal)
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{
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return goal->goalType == Goals::COMPOSITION ? goal->decompose(ai).back() : goal;
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}
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bool isEquivalentGoals(TSubgoal goal1, TSubgoal goal2)
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{
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if(goal1 == goal2) return true;
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if(goal1->goalType == Goals::CAPTURE_OBJECT && goal2->goalType == Goals::CAPTURE_OBJECT)
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{
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auto o1 = cb->getObj(ObjectInstanceID(goal1->objid));
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auto o2 = cb->getObj(ObjectInstanceID(goal2->objid));
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return o1->ID == Obj::SHIPYARD && o1->ID == o2->ID;
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}
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return false;
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}
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bool DeepDecomposer::isCompositionLoop(TSubgoal goal)
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{
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auto goalsToTest = goal->goalType == Goals::COMPOSITION ? goal->decompose(ai) : TGoalVec{goal};
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for(auto goalToTest : goalsToTest)
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{
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for(int i = depth; i >= 0; i--)
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{
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auto parent = unwrapComposition(goals[i].back());
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if(isEquivalentGoals(parent, goalToTest))
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{
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return true;
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}
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}
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}
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return false;
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}
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TGoalVec DeepDecomposer::decomposeCached(TSubgoal goal, bool & fromCache)
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{
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#if NKAI_TRACE_LEVEL >= 1
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logAi->trace("Decomposing %s, level %s", goal->toString(), depth);
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#endif
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if(goal->hasHash())
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{
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for(int i = 0; i <= depth; i++)
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{
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auto cached = decompositionCache[i].find(goal);
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if(cached != decompositionCache[i].end())
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{
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#if NKAI_TRACE_LEVEL >= 1
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logAi->trace("Use decomposition cache for %s, level: %d", goal->toString(), depth);
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#endif
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fromCache = true;
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return cached->second;
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}
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}
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decompositionCache[depth][goal] = {}; // if goal decomposition yields no goals we still need it in cache to not decompose again
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}
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#if NKAI_TRACE_LEVEL >= 2
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logAi->trace("Calling decompose on %s, level %s", goal->toString(), depth);
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#endif
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fromCache = false;
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return goal->decompose(ai);
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}
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void DeepDecomposer::addToCache(TSubgoal goal)
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{
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bool trusted = true;
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for(int parentDepth = 1; parentDepth <= depth; parentDepth++)
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{
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TSubgoal parent = unwrapComposition(goals[parentDepth].back());
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if(parent->hasHash())
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{
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auto solution = parentDepth < depth ? aggregateGoals(parentDepth + 1, goal) : goal;
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#if NKAI_TRACE_LEVEL >= 2
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logAi->trace("Adding %s to decomosition cache of %s at level %d", solution->toString(), parent->toString(), parentDepth);
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#endif
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decompositionCache[parentDepth][parent].push_back(solution);
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if(trusted && parentDepth != 0)
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{
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decompositionCache[0][parent].push_back(solution);
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trusted = false;
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}
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}
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}
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}
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}
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