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7f4cdbcbe9
Torches are dug instantly again. When the digging time is 0, a delay of 0.15 seconds is added between digging nodes. If the left mouse button is released, the delay is set to 0, thus click-digging.
211 lines
5.9 KiB
C++
211 lines
5.9 KiB
C++
/*
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Minetest
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Copyright (C) 2013 celeron55, Perttu Ahola <celeron55@gmail.com>
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU Lesser General Public License as published by
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the Free Software Foundation; either version 2.1 of the License, or
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(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 Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public License along
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with this program; if not, write to the Free Software Foundation, Inc.,
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51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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*/
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#include "tool.h"
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#include "itemgroup.h"
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#include "log.h"
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#include "inventory.h"
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#include "exceptions.h"
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#include "util/serialize.h"
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#include "util/numeric.h"
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void ToolCapabilities::serialize(std::ostream &os, u16 protocol_version) const
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{
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writeU8(os, 2); // version (protocol >= 18)
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writeF1000(os, full_punch_interval);
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writeS16(os, max_drop_level);
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writeU32(os, groupcaps.size());
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for (ToolGCMap::const_iterator i = groupcaps.begin(); i != groupcaps.end(); ++i) {
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const std::string *name = &i->first;
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const ToolGroupCap *cap = &i->second;
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os << serializeString(*name);
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writeS16(os, cap->uses);
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writeS16(os, cap->maxlevel);
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writeU32(os, cap->times.size());
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for (UNORDERED_MAP<int, float>::const_iterator
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j = cap->times.begin(); j != cap->times.end(); ++j) {
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writeS16(os, j->first);
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writeF1000(os, j->second);
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}
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}
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writeU32(os, damageGroups.size());
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for (DamageGroup::const_iterator i = damageGroups.begin();
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i != damageGroups.end(); ++i) {
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os << serializeString(i->first);
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writeS16(os, i->second);
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}
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}
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void ToolCapabilities::deSerialize(std::istream &is)
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{
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int version = readU8(is);
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if(version != 1 && version != 2) throw SerializationError(
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"unsupported ToolCapabilities version");
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full_punch_interval = readF1000(is);
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max_drop_level = readS16(is);
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groupcaps.clear();
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u32 groupcaps_size = readU32(is);
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for(u32 i=0; i<groupcaps_size; i++){
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std::string name = deSerializeString(is);
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ToolGroupCap cap;
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cap.uses = readS16(is);
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cap.maxlevel = readS16(is);
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u32 times_size = readU32(is);
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for(u32 i=0; i<times_size; i++){
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int level = readS16(is);
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float time = readF1000(is);
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cap.times[level] = time;
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}
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groupcaps[name] = cap;
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}
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if(version == 2)
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{
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u32 damage_groups_size = readU32(is);
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for(u32 i=0; i<damage_groups_size; i++){
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std::string name = deSerializeString(is);
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s16 rating = readS16(is);
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damageGroups[name] = rating;
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}
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}
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}
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DigParams getDigParams(const ItemGroupList &groups,
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const ToolCapabilities *tp, float time_from_last_punch)
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{
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//infostream<<"getDigParams"<<std::endl;
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/* Check group dig_immediate */
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switch(itemgroup_get(groups, "dig_immediate")){
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case 2:
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//infostream<<"dig_immediate=2"<<std::endl;
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return DigParams(true, 0.5, 0, "dig_immediate");
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case 3:
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//infostream<<"dig_immediate=3"<<std::endl;
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return DigParams(true, 0, 0, "dig_immediate");
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default:
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break;
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}
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// Values to be returned (with a bit of conversion)
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bool result_diggable = false;
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float result_time = 0.0;
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float result_wear = 0.0;
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std::string result_main_group = "";
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int level = itemgroup_get(groups, "level");
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//infostream<<"level="<<level<<std::endl;
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for (ToolGCMap::const_iterator i = tp->groupcaps.begin();
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i != tp->groupcaps.end(); ++i) {
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const std::string &name = i->first;
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//infostream<<"group="<<name<<std::endl;
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const ToolGroupCap &cap = i->second;
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int rating = itemgroup_get(groups, name);
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float time = 0;
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bool time_exists = cap.getTime(rating, &time);
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if(!result_diggable || time < result_time){
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if(cap.maxlevel >= level && time_exists){
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result_diggable = true;
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int leveldiff = cap.maxlevel - level;
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result_time = time / MYMAX(1, leveldiff);
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if(cap.uses != 0)
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result_wear = 1.0 / cap.uses / pow(3.0, (double)leveldiff);
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else
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result_wear = 0;
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result_main_group = name;
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}
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}
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}
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//infostream<<"result_diggable="<<result_diggable<<std::endl;
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//infostream<<"result_time="<<result_time<<std::endl;
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//infostream<<"result_wear="<<result_wear<<std::endl;
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if(time_from_last_punch < tp->full_punch_interval){
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float f = time_from_last_punch / tp->full_punch_interval;
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//infostream<<"f="<<f<<std::endl;
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result_time /= f;
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result_wear /= f;
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}
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u16 wear_i = 65535.*result_wear;
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return DigParams(result_diggable, result_time, wear_i, result_main_group);
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}
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DigParams getDigParams(const ItemGroupList &groups,
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const ToolCapabilities *tp)
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{
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return getDigParams(groups, tp, 1000000);
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}
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HitParams getHitParams(const ItemGroupList &armor_groups,
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const ToolCapabilities *tp, float time_from_last_punch)
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{
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s16 damage = 0;
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float full_punch_interval = tp->full_punch_interval;
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for (DamageGroup::const_iterator i = tp->damageGroups.begin();
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i != tp->damageGroups.end(); ++i) {
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s16 armor = itemgroup_get(armor_groups, i->first);
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damage += i->second * rangelim(time_from_last_punch / full_punch_interval, 0.0, 1.0)
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* armor / 100.0;
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}
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return HitParams(damage, 0);
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}
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HitParams getHitParams(const ItemGroupList &armor_groups,
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const ToolCapabilities *tp)
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{
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return getHitParams(armor_groups, tp, 1000000);
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}
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PunchDamageResult getPunchDamage(
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const ItemGroupList &armor_groups,
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const ToolCapabilities *toolcap,
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const ItemStack *punchitem,
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float time_from_last_punch
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){
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bool do_hit = true;
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{
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if(do_hit && punchitem){
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if(itemgroup_get(armor_groups, "punch_operable") &&
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(toolcap == NULL || punchitem->name == ""))
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do_hit = false;
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}
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if(do_hit){
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if(itemgroup_get(armor_groups, "immortal"))
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do_hit = false;
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}
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}
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PunchDamageResult result;
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if(do_hit)
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{
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HitParams hitparams = getHitParams(armor_groups, toolcap,
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time_from_last_punch);
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result.did_punch = true;
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result.wear = hitparams.wear;
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result.damage = hitparams.hp;
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}
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return result;
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}
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